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Changes In Branch core-8-3-1-io-rewrite Through [fa892d814d] Excluding Merge-Ins

This is equivalent to a diff from 87e0596e14 to fa892d814d

2000-07-26
23:53
* unix/Makefile.in: undid 07-25 Makefile.in changes because we don't really want to force all priv... check-in: 96e663cf32 user: hobbs tags: core-8-3-1-io-rewrite
04:56
Changed Unix to install all headers because they are used by packages like Itcl and Expect, and its ... check-in: fa892d814d user: welch tags: core-8-3-1-io-rewrite
2000-07-25
16:54
2000-07-25 Andreas Kupries <a.kupries@westend.com> * tests/iogt.test: (line 866f) New tests iogt-6... check-in: 10bfc475b0 user: kupries tags: core-8-3-1-io-rewrite
2000-07-13
01:08
*** empty log message *** check-in: 15e292afd9 user: welch tags: core-8-3-1-branch
2000-07-07
03:31
* tests/iogt.test: new tests for stacked channel stuff based off new 'testchannel transform|unstac... check-in: b684e61b81 user: hobbs tags: core-8-3-1-io-rewrite
2000-06-21
03:49
Fix Weak links check-in: 87e0596e14 user: jingham tags: core-8-3-1-branch
2000-06-14
01:38
fixed the arglist for scan--varNames are all optional check-in: e63242ecaa user: hershey tags: core-8-3-1-branch

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2000-06-02  Jeff Hobbs  <hobbs@scriptics.com>

	* generic/tclIO.c (CloseChannel): removed the &ing out of
	(TCL_READABLE|TCL_WRITABLE) from the flags, as CloseChannel does
	this on the next pass through for the top channel, and it appeared
	to be causing hangs by not allowing the final flush.

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2000-07-25 Brent Welch	<welch@ajubasolutions.com>

	* unix/Makefile.in: Need to install all the Tcl headers because
	Itcl depends on internal headers.

2000-07-25 Andreas Kupries <a.kupries@westend.com>

	* tests/iogt.test: (line 866f) New tests iogt-6.[01], highlighting
 	  buffering trouble when stacking and unstacking transformations.
	  iogt-6.0 is solved, see the changes below. iogt-6.1 remains, for
 	  now, due to the perceived complexity of solutions.

	* generic/tclIO.h: (line 139f) struct Channel, added a buffer
	  queue, to hold data pushed back when stacking a transformation.

	* generic/tclIO.c:
	  (line 91f, line 7434f) New internal function 'CopyBuffer'.
	  Derived from 'CopyAndTranslateBuffer', with translation
	  removed.
	  (line 1025f, line 1212f): Initialization of new queue.
	  (line 1164f, Tcl_StackChannel): Pushback of input queue.
	  (line 1293f, Tcl_UnstackChannel): Discard input and pushback.
	  (line 3748f, Tcl_ReadRaw): Modified to use data in the push back
	  area before going to the driver. Uses 'CopyBuffer', s.a.
	  (line 4702f, GetInput): Modified to use data in the push back
	  area before going to the driver.
 	  (line 4867f, Tcl_Seek): Modified to take pushback of the topmost
	  channel in a stack into account.
	  (line 5620f, Tcl_InputBuffered): See above. Added
	  'Tcl_ChannelBuffered'. Analogue to 'Tcl_InputBuffered' but for
	  the buffer area in the channel.

	* generic/tcl.decls: New public API 'Tcl_ChannelBuffered'. S.a.

2000-07-19  Jeff Hobbs  <hobbs@scriptics.com>

	* tests/socket.test: removed doTestsWithRemoteServer constraint
	from socket-12.*.  It requires 'exec', not a remote server.
	Cleaned up some coding errors.

2000-07-18 Brent Welch	<welch@ajubasolutions.com>

	* win/Makefile.in: Added rules for static tcldde and tclreg libraries.

2000-07-17  Jeff Hobbs  <hobbs@scriptics.com>

	* README:
	* win/README:
	* win/README.binary:
	* win/configure.in:
	* unix/configure.in:
	* unix/tcl.spec:
	* tools/tcl.wse.in:
	* generic/tcl.h (TCL_RELEASE_SERIAL): updated to patchlevel 8.3.2

	* unix/Makefile.in:
	* win/Makefile.in:
	* win/makefile.vc: added tclIOGT.c to objects list to compile.

	* generic/tclStubInit.c:
	* generic/tclIntDecls.h:
	* generic/tclInt.decls: commented out internal decls for
	TclTestChannelCmd and TclTestChannelEventCmd as they were moved to
	tclTest.c.  Added new decls for TclChannelEventScriptInvoker and
	TclChannelTransform.

	* generic/tclIO.h: new file that contains the main internal
	structures of Tcl_Channel code to allow for multiple files to
	access them.
	* generic/tclTest.c:
	* generic/tclIO.c: broke into 3 files - tclIO.c core code, tclIO.h
	header code, and tclIOGT.c - the giot test code from Kupries.  The
	channel test code also moved to tclTest.c.
	* generic/tclIO.c (CloseChannel): stopped masking out of the
	TCL_READABLE|TCL_WRITABLE bits from the state flags in
	CloseChannel, instead adding extra intelligence to
	CheckChannelErrors with a new CHANNEL_RAW_MODE bit for special
	behavior when called from Raw channel APIs.

2000-07-13  Jeff Hobbs  <hobbs@scriptics.com>

	* generic/tclIO.c (StackSetBlockMode): moved set of chanPtr
	outside of blockModeProc check to avoid infinite loop when
	blockModeProc was NULL (Kupries).  updated TransformSeekProc to
	not call Tcl_Seek directly (Kupries).

	* win/tclWinChan.c: updated fileChannelType to v2 channel struct
	* win/tclWinConsole.c: updated consoleChannelType to v2 channel struct
	* win/tclWinPipe.c: updated pipeChannelType to v2 channel struct
	* win/tclWinSerial.c: updated serialChannelType to v2 channel struct
	* win/tclWinSock.c: updated tcpChannelType to v2 channel struct

2000-07-11  Brent Welch	<welch@ajubasolutions.com>

	* win/tclConfig.sh.in: Cleaned up unix-specific autoconf variables.

2000-07-11  Jeff Hobbs  <hobbs@scriptics.com>

	* tests/iogt.test: made tests [345].0 not run by default as they
	were failing in the new design, but I'm not convinced that the
	returned result isn't correct.

	* generic/tclDecls.h:
	* generic/tclStubInit.c:
	* generic/tcl.decls: added Tcl_GetTopChannel C API that returns
	the current top channel of a channel stack.  Tcl_GetChannel was
	changed earlier to return the bottommost channel of a stack
	because that is the one that is guaranteed to stay around the
	longest, and this was needed to compensate for certain
	operations that want to look at the state of the main channel.
	Most channel APIs already compensate for grabbing the top, so it
	shouldn't be needed often.

	* generic/tclIO.c (Tcl_StackChannel, Tcl_UnstackChannel): Added
	flushing of buffers (Kupries), removed use of DownChannel macro,
	added Tcl_GetTopChannel public API to get to the top channel of
	the channel stack (necessary for TLS).  Rewrote Tcl_NotifyChannel
	for new channel design (Kupries).  Did some code cleanup in the
	transform code.  tclIO.c must still be broken into bits (separate
	out test code and giot code, create tclIO.h).

2000-07-10  Andreas Kupries <a.kupries@westend.com>

	* tests/iogt.test: Reverted some earlier changes as a fix by Jeff
	  revived the original and correct behaviour. IOW, the tests showed
	  a genuine error and I didn't see it :(.

	* generic/tclIO.c (Tcl_Read|Write_Raw): Changed to directly use
 	  the drivers and not DoRead|DoWrite. The latter use the buffering
 	  system, encoding and eol-translation and this wreaks havoc with
 	  the data going through the transformations. Both procedures use
 	  CheckForchannelErrors and let it believe that there is no
 	  background copy in progress or else stacked channels could not
	  be used for that.

	* generic/tclIO.c (TclCopyChannel, CopyData): Moved access to the
 	  topmost channel from the first to the second procedure to make
 	  the decision about that at the last possible time (Callbacks can
 	  change the stacking).

	test suite: failures of iogt-[345].0
	
2000-07-06  Jeff Hobbs  <hobbs@scriptics.com>

	* tests/iogt.test: new tests for stacked channel stuff based off
	new 'testchannel transform|unstack' code (Kupries IOGT extension).
	* generic/tcl.decls:
	* generic/tcl.h:
	* generic/tclDecls.h:
	* generic/tclStubsInit.c:
	* generic/tclIO.c (TclCopyChannel): complete rewrite of Tcl
	Channel code for stacked channels.  HOBBS: ADD MORE WHEN DONE.

2000-06-02  Jeff Hobbs  <hobbs@scriptics.com>

	* generic/tclIO.c (CloseChannel): removed the &ing out of
	(TCL_READABLE|TCL_WRITABLE) from the flags, as CloseChannel does
	this on the next pass through for the top channel, and it appeared
	to be causing hangs by not allowing the final flush.

Changes to README.
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README:  Tcl
    This is the Tcl 8.3.1 source distribution.
    You can get any release of Tcl from:
        http://dev.scriptics.com/registration/<version>.tml
    Tcl/Tk is also available through NetCVS:
	http://dev.scriptics.com/software/tcltk/netcvs.html

RCS: @(#) $Id: README,v 1.31 2000/04/26 17:31:19 hobbs Exp $

Contents
--------
    1. Introduction
    2. Documentation
    3. Compiling and installing Tcl
    4. Development tools

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README:  Tcl
    This is the Tcl 8.3.2 source distribution.
    You can get any release of Tcl from:
        http://dev.scriptics.com/registration/<version>.tml
    Tcl/Tk is also available through NetCVS:
	http://dev.scriptics.com/software/tcltk/netcvs.html

RCS: @(#) $Id: README,v 1.31.4.1 2000/07/17 23:09:53 hobbs Exp $

Contents
--------
    1. Introduction
    2. Documentation
    3. Compiling and installing Tcl
    4. Development tools
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---------------

Extensive documentation is available at our website.
The home page for this release, including new features, is
	http://dev.scriptics.com/software/tcltk/8.3.html

Detailed release notes can be found at
	http://dev.scriptics.com/software/tcltk/relnotes/tcl8.3.1.txt

Information about Tcl itself can be found at
	http://dev.scriptics.com/scripting/

There are many Tcl books on the market.  Most are listed at
	http://dev.scriptics.com/resource/doc/books/








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---------------

Extensive documentation is available at our website.
The home page for this release, including new features, is
	http://dev.scriptics.com/software/tcltk/8.3.html

Detailed release notes can be found at
	http://dev.scriptics.com/software/tcltk/relnotes/tcl8.3.2.txt

Information about Tcl itself can be found at
	http://dev.scriptics.com/scripting/

There are many Tcl books on the market.  Most are listed at
	http://dev.scriptics.com/resource/doc/books/

Deleted doc/DumpActiveMemory.3.
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'\"
'\" Copyright (c) 1992-1999 Karl Lehenbauer and Mark Diekhans.
'\" Copyright (c) 2000 by Scriptics Corporation.
'\" All rights reserved.
'\" 
'\" RCS: @(#) $Id: DumpActiveMemory.3,v 1.2 2000/04/28 00:47:48 ericm Exp $
'\" 
.so man.macros
.TH "Tcl_DumpActiveMemory" 3 8.1 Tcl "Tcl Library Procedures"
.BS
.SH NAME
Tcl_DumpActiveMemory, Tcl_InitMemory, Tcl_ValidateAllMemory \- Validated memory allocation interface.
.SH SYNOPSIS
.nf
\fB#include <tcl.h>\fR
.sp
int
\fBTcl_DumpActiveMemory\fR(\fIfileName\fR)
.sp
void
\fBTcl_InitMemory\fR(\fIinterp\fR)
.sp
void
\fBTcl_ValidateAllMemory\fR(\fIfileName, line\fR)

.SH ARGUMENTS
.AP Tcl_Interp *interp in
Tcl interpreter in which to add commands.
.AP char *fileName in
For \fBTcl_DumpActiveMemory\fR, name of the file to which memory
information will be written.  For \fBTcl_ValidateAllMemory\fR, name of
the file from which the call is being made (normally \fB__FILE__\fR).
.AP int line in
Line number at which the call to \fBTcl_ValidateAllMemory\fR is made
(normally \fB__LINE__\fR).
.BE

.SH DESCRIPTION
These functions provide access to Tcl memory debugging information.
They are only available when Tcl has been compiled with
\fBTCL_MEM_DEBUG\fR defined at compile-time.
.PP 
\fBTcl_DumpActiveMemory\fR will output a list of all currently
allocated memory to the specified file.  The information output for
each allocated block of memory is:  starting and ending addresses
(excluding guard zone), size, source file where \fBckalloc\fR was
called to allocate the block and line number in that file.  It is
especially useful to call \fBTcl_DumpActiveMemory\fR after the Tcl
interpreter has been deleted.
.PP
\fBTcl_InitMemory\fR adds the Tcl \fBmemory\fR command to the
interpreter given by \fIinterp\fR.  It is called by \fBTcl_Main\fR
when Tcl has been compiled with \fBTCL_MEM_DEBUG\fR defined.
.PP
\fBTcl_ValidateAllMemory\fR forces a validation of the guard zones of
all currently allocated blocks of memory.  Normally validation of a
block occurs when its freed, unless full validation is enabled, in
which case validation of all blocks occurs when \fBckalloc\fR and
\fBckfree\fR are called.  This function forces the validation to occur
at any point.

.SH "SEE ALSO"
TCL_MEM_DEBUG, memory

.SH KEYWORDS
memory, debug


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Deleted doc/Init.3.
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'\"
'\" Copyright (c) 1998-2000 by Scriptics Corporation.
'\" All rights reserved.
'\" 
'\" RCS: @(#) $Id: Init.3,v 1.1 2000/04/28 00:47:48 ericm Exp $
'\" 
.so man.macros
.TH Tcl_Init 3 8.0 Tcl "Tcl Library Procedures"
.BS
.SH NAME
Tcl_Init \- find and source initialization script
.SH SYNOPSIS
.nf
\fB#include <tcl.h>\fR
.sp
int
\fBTcl_Init\fR(\fIinterp\fR)
.SH ARGUMENTS
.AP Tcl_Interp *interp in
Interpreter to initialize.
.BE

.SH DESCRIPTION
.PP
\fBTcl_Init\fR is a helper procedure that finds and \fBsource\fR's the
\fBinit.tcl\fR script, which should exist somewhere on the Tcl library
path.  On Macintosh systems, it additionally checks for an \fBInit\fR
resource and sources the contents of that resource if \fBinit.tcl\fR
cannot be found.
.PP
\fBTcl_Init\fR is typically called from \fBTcl_AppInit\fR procedures.

.SH "SEE ALSO"
Tcl_AppInit, Tcl_Main

.SH KEYWORDS
application, initialization, interpreter
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Deleted doc/TCL_MEM_DEBUG.3.
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'\" 
'\" Copyright (c) 1992-1999 Karl Lehenbauer and Mark Diekhans.
'\" Copyright (c) 2000 by Scriptics Corporation.
'\" All rights reserved.
'\" 
'\" RCS: @(#) $Id: TCL_MEM_DEBUG.3,v 1.2 2000/04/28 00:47:49 ericm Exp $
'\" 
.so man.macros
.TH TCL_MEM_DEBUG 3 8.1 Tcl "Tcl Library Procedures"
.BS
.SH NAME
TCL_MEM_DEBUG \- Compile-time flag to enable Tcl memory debugging.

.SH DESCRIPTION
When Tcl is compiled with \fBTCL_MEM_DEBUG\fR defined, a powerful set
of memory debugging aids are included in the compiled binary.  This
includes C and Tcl functions which can aid with debugging
memory leaks, memory allocation overruns, and other memory related
errors.

.SH ENABLING MEMORY DEBUGGING
.PP
To enable memory debugging, Tcl should be recompiled from scratch with
\fBTCL_MEM_DEBUG\fR defined.  This will also compile in a non-stub
version of \fBTcl_InitMemory\fR to add the \fBmemory\fR command to Tcl.
.PP
\fBTCL_MEM_DEBUG\fR must be either left defined for all modules or undefined
for all modules that are going to be linked together.  If they are not, link
errors will occur, with either \fBTclDbCkfree\fR and \fBTcl_DbCkalloc\fR or
\fBTcl_Ckalloc\fR and \fBTcl_Ckfree\fR being undefined.
.PP
Once memory debugging support has been compiled into Tcl, the C
functions \fBTcl_ValidateAllMemory\fR, and \fBTcl_DumpActiveMemory\fR,
and the Tcl \fBmemory\fR command can be used to validate and examine
memory usage.

.SH GUARD ZONES
.PP
When memory debugging is enabled, whenever a call to \fBckalloc\fR is
made, slightly more memory than requested is allocated so the memory debugging
code can keep track of the allocated memory, and eight-byte ``guard
zones'' are placed in front of and behind the space that will be
returned to the caller.  (The size of the guard zone is defined by the
C #define \fBGUARD_SIZE\fR in \fIbaseline/src/ckalloc.c\fR -- it can
be extended if you suspect large overwrite problems, at some cost in
performance.)  A known pattern is written into the guard zones and, on
a call to \fBckfree\fR, the guard zones of the space being freed are
checked to see if either zone has been modified in any way.  If one
has been, the guard bytes and their new contents are identified, and a
``low guard failed'' or ``high guard failed'' message is issued.  The
``guard failed'' message includes the address of the memory packet and
the file name and line number of the code that called \fBckfree\fR.
This allows you to detect the common sorts of one-off problems, where
not enough space was allocated to contain the data written, for
example.

.SH DEBUGGING DIFFICULT MEMORY CORRUPTION PROBLEMS
.PP
Normally, Tcl compiled with memory debugging enabled will make it easy
to isolate a corruption problem.  Turning on memory validation with
the memory command can help isolate difficult problems.  If you
suspect (or know) that corruption is occurring before the Tcl
interpreter comes up far enough for you to issue commands, you can set
\fBMEM_VALIDATE\fR define, recompile tclCkalloc.c and rebuild Tcl.
This will enable memory validation from the first call to
\fBckalloc\fR, again, at a large performance impact.
.PP
If you are desperate and validating memory on every call to
\fBckalloc\fR and \fBckfree\fR isn't enough, you can explicitly call
\fBTcl_ValidateAllMemory\fR directly at any point.  It takes a \fIchar
*\fR and an \fIint\fR which are normally the filename and line number
of the caller, but they can actually be anything you want.  Remember
to remove the calls after you find the problem.

.SH "SEE ALSO"
memory, Tcl_ValidateAllMemory, Tcl_DumpActiveMemory

.SH KEYWORDS
memory, debug


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Deleted doc/memory.n.
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'\"
'\" Copyright (c) 1992-1999 by Karl Lehenbauer and Mark Diekhans
'\" Copyright (c) 2000 by Scriptics Corporation.
'\" All rights reserved.
'\" 
'\" RCS: @(#) $Id: memory.n,v 1.2 2000/04/28 00:47:49 ericm Exp $
'\" 
.so man.macros
.TH memory n 8.1 Tcl "Tcl Built-In Commands"
.BS
.SH NAME
memory \- Control Tcl memory debugging capabilities.
.SH SYNOPSIS
\fBmemory \fIoption \fR?\fIarg arg ...\fR?

.SH DESCRIPTION
.PP
The \fBmemory\fR command gives the Tcl developer control of Tcl's memory
debugging capabilities.  The memory command has several suboptions, which are
described below.  It is only available when Tcl has been compiled with
memory debugging enabled (when \fBTCL_MEM_DEBUG\fR is defined at
compile time).
.TP
\fBmemory info\fR
Produces a report containing the total allocations and frees since 
Tcl began, the current packets allocated (the current
number of calls to \fBckalloc\fR not met by a corresponding call 
to \fBckfree\fR), the current bytes allocated, and the maximum number
of packets and bytes allocated.
.TP
\fBmemory trace [on|off]\fR
.br
Turns memory tracing on or off.  When memory tracing is on, every call
to \fBckalloc\fR causes a line of trace information to be written to
\fIstderr\fR, consisting of the word \fIckalloc\fR, followed by the
address returned, the amount of memory allocated, and the C filename
and line number of the code performing the allocation.  For example:
.CS
ckalloc 40e478 98 tclProc.c 1406
.CE
Calls to \fBckfree\fR are traced in the same manner.
.TP
\fBmemory validate [on|off]\fR
Turns memory validation on or off. When memory validation is enabled,
on every call to \fBckalloc\fR or \fBckfree\fR, the guard zones are
checked for every piece of memory currently in existence that was
allocated by \fBckalloc\fR.  This has a large performance impact and
should only be used when overwrite problems are strongly suspected.
The advantage of enabling memory validation is that a guard zone
overwrite can be detected on the first call to \fBckalloc\fR or
\fBckfree\fR after the overwrite occurred, rather than when the
specific memory with the overwritten guard zone(s) is freed, which may
occur long after the overwrite occurred.
.TP
\fBmemory trace_on_at_malloc\fR \fIcount\fR
Enable memory tracing after \fIcount\fR \fBckalloc\fR's have been performed.
For example, if you enter \fBmemory trace_on_at_malloc 100\fR,
after the 100th call to \fBckalloc\fR, memory trace information will begin
being displayed for all allocations and frees.  Since there can be a lot
of memory activity before a problem occurs, judicious use of this option
can reduce the slowdown caused by tracing (and the amount of trace information
produced), if you can identify a number of allocations that occur before
the problem sets in.  The current number of memory allocations that have 
occurred since Tcl started is printed on a guard zone failure.
.TP
\fBmemory break_on_malloc\fR \fIcount\fR
After the \fBcount\fR allocations have been performed, \fBckalloc\fR's
output a message to this effect and that it is now attempting to enter
the C debugger.  Tcl will then issue a \fISIGINT\fR signal against itself.
If you are running Tcl under a C debugger, it should then enter the debugger
command mode.
.TP
\fB memory display\fR \fIfile\fR
Write a list of all currently allocated memory to the specified file.

.SH "SEE ALSO"
ckalloc, ckfree, Tcl_ValidateAllMemory, Tcl_DumpActiveMemory, TCL_MEM_DEBUG

.SH KEYWORDS
memory, debug


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Changes to generic/tcl.decls.
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# tcl.decls --
#
#	This file contains the declarations for all supported public
#	functions that are exported by the Tcl library via the stubs table.
#	This file is used to generate the tclDecls.h, tclPlatDecls.h,
#	tclStub.c, and tclPlatStub.c files.
#	
#
# Copyright (c) 1998-1999 by Scriptics Corporation.
# See the file "license.terms" for information on usage and redistribution
# of this file, and for a DISCLAIMER OF ALL WARRANTIES.
# 
# RCS: @(#) $Id: tcl.decls,v 1.33 2000/04/09 16:04:17 kupries Exp $

library tcl

# Define the tcl interface with several sub interfaces:
#     tclPlat	 - platform specific public
#     tclInt	 - generic private
#     tclPlatInt - platform specific private












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# tcl.decls --
#
#	This file contains the declarations for all supported public
#	functions that are exported by the Tcl library via the stubs table.
#	This file is used to generate the tclDecls.h, tclPlatDecls.h,
#	tclStub.c, and tclPlatStub.c files.
#	
#
# Copyright (c) 1998-1999 by Scriptics Corporation.
# See the file "license.terms" for information on usage and redistribution
# of this file, and for a DISCLAIMER OF ALL WARRANTIES.
# 
# RCS: @(#) $Id: tcl.decls,v 1.33.4.3 2000/07/25 16:54:47 kupries Exp $

library tcl

# Define the tcl interface with several sub interfaces:
#     tclPlat	 - platform specific public
#     tclInt	 - generic private
#     tclPlatInt - platform specific private
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declare 281 generic {
    Tcl_Channel Tcl_StackChannel(Tcl_Interp *interp, \
	    Tcl_ChannelType *typePtr, ClientData instanceData, \
	    int mask, Tcl_Channel prevChan)
}
declare 282 generic {
    void Tcl_UnstackChannel(Tcl_Interp *interp, Tcl_Channel chan)
}
declare 283 generic {
    Tcl_Channel Tcl_GetStackedChannel(Tcl_Channel chan)
}
# Reserved for future use (8.0.x vs. 8.1)
#  declare 284 generic {
#  }







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declare 281 generic {
    Tcl_Channel Tcl_StackChannel(Tcl_Interp *interp, \
	    Tcl_ChannelType *typePtr, ClientData instanceData, \
	    int mask, Tcl_Channel prevChan)
}
declare 282 generic {
    int Tcl_UnstackChannel(Tcl_Interp *interp, Tcl_Channel chan)
}
declare 283 generic {
    Tcl_Channel Tcl_GetStackedChannel(Tcl_Channel chan)
}
# Reserved for future use (8.0.x vs. 8.1)
#  declare 284 generic {
#  }
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declare 392 generic {
    void Tcl_MutexFinalize (Tcl_Mutex *mutex)
}
declare 393 generic {
    int Tcl_CreateThread (Tcl_ThreadId *idPtr, Tcl_ThreadCreateProc proc, \
	    ClientData clientData, int stackSize, int flags)
}














##############################################################################

# Define the platform specific public Tcl interface.  These functions are
# only available on the designated platform.

interface tclPlat







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declare 392 generic {
    void Tcl_MutexFinalize (Tcl_Mutex *mutex)
}
declare 393 generic {
    int Tcl_CreateThread (Tcl_ThreadId *idPtr, Tcl_ThreadCreateProc proc, \
	    ClientData clientData, int stackSize, int flags)
}

declare 394 generic {
    int Tcl_ReadRaw (Tcl_Channel chan, char *dst, int bytesToRead)
}
declare 395 generic {
    int Tcl_WriteRaw (Tcl_Channel chan, char *src, int srcLen)
}
declare 396 generic {
    Tcl_Channel Tcl_GetTopChannel (Tcl_Channel chan)
}
declare 397 generic {
    int Tcl_ChannelBuffered (Tcl_Channel chan)
}

##############################################################################

# Define the platform specific public Tcl interface.  These functions are
# only available on the designated platform.

interface tclPlat
Changes to generic/tcl.h.
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 * Copyright (c) 1993-1996 Lucent Technologies.
 * Copyright (c) 1994-1998 Sun Microsystems, Inc.
 * Copyright (c) 1998-2000 by Scriptics Corporation.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tcl.h,v 1.70 2000/04/19 08:32:44 hobbs Exp $
 */

#ifndef _TCL
#define _TCL

/*
 * For C++ compilers, use extern "C"







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 * Copyright (c) 1993-1996 Lucent Technologies.
 * Copyright (c) 1994-1998 Sun Microsystems, Inc.
 * Copyright (c) 1998-2000 by Scriptics Corporation.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tcl.h,v 1.70.4.2 2000/07/17 23:09:54 hobbs Exp $
 */

#ifndef _TCL
#define _TCL

/*
 * For C++ compilers, use extern "C"
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 * tools/tcl.wse.in	(for windows installer)
 * tools/tclSplash.bmp	(not patchlevel)
 */

#define TCL_MAJOR_VERSION   8
#define TCL_MINOR_VERSION   3
#define TCL_RELEASE_LEVEL   TCL_FINAL_RELEASE
#define TCL_RELEASE_SERIAL  1

#define TCL_VERSION	    "8.3"
#define TCL_PATCH_LEVEL	    "8.3.1"

/*
 * The following definitions set up the proper options for Windows
 * compilers.  We use this method because there is no autoconf equivalent.
 */

#ifndef __WIN32__







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 * tools/tcl.wse.in	(for windows installer)
 * tools/tclSplash.bmp	(not patchlevel)
 */

#define TCL_MAJOR_VERSION   8
#define TCL_MINOR_VERSION   3
#define TCL_RELEASE_LEVEL   TCL_FINAL_RELEASE
#define TCL_RELEASE_SERIAL  2

#define TCL_VERSION	    "8.3"
#define TCL_PATCH_LEVEL	    "8.3.2"

/*
 * The following definitions set up the proper options for Windows
 * compilers.  We use this method because there is no autoconf equivalent.
 */

#ifndef __WIN32__
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typedef struct Tcl_Pid_ *Tcl_Pid;
typedef struct Tcl_RegExp_ *Tcl_RegExp;
typedef struct Tcl_ThreadDataKey_ *Tcl_ThreadDataKey;
typedef struct Tcl_ThreadId_ *Tcl_ThreadId;
typedef struct Tcl_TimerToken_ *Tcl_TimerToken;
typedef struct Tcl_Trace_ *Tcl_Trace;
typedef struct Tcl_Var_ *Tcl_Var;


/*
 * Definition of the interface to procedures implementing threads.
 * A procedure following this definition is given to each call of
 * 'Tcl_CreateThread' and will be called as the main fuction of
 * the new thread created by that call.
 */







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typedef struct Tcl_Pid_ *Tcl_Pid;
typedef struct Tcl_RegExp_ *Tcl_RegExp;
typedef struct Tcl_ThreadDataKey_ *Tcl_ThreadDataKey;
typedef struct Tcl_ThreadId_ *Tcl_ThreadId;
typedef struct Tcl_TimerToken_ *Tcl_TimerToken;
typedef struct Tcl_Trace_ *Tcl_Trace;
typedef struct Tcl_Var_ *Tcl_Var;
typedef struct Tcl_ChannelVersion_ *Tcl_ChannelVersion;

/*
 * Definition of the interface to procedures implementing threads.
 * A procedure following this definition is given to each call of
 * 'Tcl_CreateThread' and will be called as the main fuction of
 * the new thread created by that call.
 */
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/*
 * Bits passed to Tcl_DriverClose2Proc to indicate which side of a channel
 * should be closed.
 */

#define TCL_CLOSE_READ		(1<<1)
#define TCL_CLOSE_WRITE	(1<<2)

/*
 * Value to use as the closeProc for a channel that supports the
 * close2Proc interface.
 */

#define TCL_CLOSE2PROC	((Tcl_DriverCloseProc *)1)








/*
 * Typedefs for the various operations in a channel type:
 */

typedef int	(Tcl_DriverBlockModeProc) _ANSI_ARGS_((
		    ClientData instanceData, int mode));
typedef int	(Tcl_DriverCloseProc) _ANSI_ARGS_((ClientData instanceData,







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/*
 * Bits passed to Tcl_DriverClose2Proc to indicate which side of a channel
 * should be closed.
 */

#define TCL_CLOSE_READ		(1<<1)
#define TCL_CLOSE_WRITE		(1<<2)

/*
 * Value to use as the closeProc for a channel that supports the
 * close2Proc interface.
 */

#define TCL_CLOSE2PROC	((Tcl_DriverCloseProc *)1)

/*
 * Channel version tag.  This was introduced in 8.3.2/8.4.
 */

#define TCL_CHANNEL_VERSION_1	((Tcl_ChannelVersion) 0x1)
#define TCL_CHANNEL_VERSION_2	((Tcl_ChannelVersion) 0x2)

/*
 * Typedefs for the various operations in a channel type:
 */

typedef int	(Tcl_DriverBlockModeProc) _ANSI_ARGS_((
		    ClientData instanceData, int mode));
typedef int	(Tcl_DriverCloseProc) _ANSI_ARGS_((ClientData instanceData,
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		    ClientData instanceData, Tcl_Interp *interp,
		    char *optionName, Tcl_DString *dsPtr));
typedef void	(Tcl_DriverWatchProc) _ANSI_ARGS_((
		    ClientData instanceData, int mask));
typedef int	(Tcl_DriverGetHandleProc) _ANSI_ARGS_((
		    ClientData instanceData, int direction,
		    ClientData *handlePtr));





/*
 * The following declarations either map ckalloc and ckfree to
 * malloc and free, or they map them to procedures with all sorts
 * of debugging hooks defined in tclCkalloc.c.
 */








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		    ClientData instanceData, Tcl_Interp *interp,
		    char *optionName, Tcl_DString *dsPtr));
typedef void	(Tcl_DriverWatchProc) _ANSI_ARGS_((
		    ClientData instanceData, int mask));
typedef int	(Tcl_DriverGetHandleProc) _ANSI_ARGS_((
		    ClientData instanceData, int direction,
		    ClientData *handlePtr));
typedef int	(Tcl_DriverFlushProc) _ANSI_ARGS_((
		    ClientData instanceData));
typedef int	(Tcl_DriverHandlerProc) _ANSI_ARGS_((
		    ClientData instanceData, int interestMask));

/*
 * The following declarations either map ckalloc and ckfree to
 * malloc and free, or they map them to procedures with all sorts
 * of debugging hooks defined in tclCkalloc.c.
 */

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 * One such structure exists for each type (kind) of channel.
 * It collects together in one place all the functions that are
 * part of the specific channel type.
 */

typedef struct Tcl_ChannelType {
    char *typeName;			/* The name of the channel type in Tcl
                                         * commands. This storage is owned by
                                         * channel type. */
    Tcl_DriverBlockModeProc *blockModeProc;
    					/* Set blocking mode for the
                                         * raw channel. May be NULL. */
    Tcl_DriverCloseProc *closeProc;	/* Procedure to call to close the
                                         * channel, or TCL_CLOSE2PROC if the
                                         * close2Proc should be used
                                         * instead. */
    Tcl_DriverInputProc *inputProc;	/* Procedure to call for input
                                         * on channel. */
    Tcl_DriverOutputProc *outputProc;	/* Procedure to call for output
                                         * on channel. */
    Tcl_DriverSeekProc *seekProc;	/* Procedure to call to seek
                                         * on the channel. May be NULL. */
    Tcl_DriverSetOptionProc *setOptionProc;
    					/* Set an option on a channel. */
    Tcl_DriverGetOptionProc *getOptionProc;
    					/* Get an option from a channel. */
    Tcl_DriverWatchProc *watchProc;	/* Set up the notifier to watch
                                         * for events on this channel. */
    Tcl_DriverGetHandleProc *getHandleProc;
					/* Get an OS handle from the channel
                                         * or NULL if not supported. */
    Tcl_DriverClose2Proc *close2Proc;   /* Procedure to call to close the
					 * channel if the device supports
					 * closing the read & write sides
					 * independently. */











} Tcl_ChannelType;


























/*
 * The following flags determine whether the blockModeProc above should
 * set the channel into blocking or nonblocking mode. They are passed
 * as arguments to the blockModeProc procedure in the above structure.
 */

#define TCL_MODE_BLOCKING 0		/* Put channel into blocking mode. */
#define TCL_MODE_NONBLOCKING 1		/* Put channel into nonblocking
					 * mode. */

/*
 * Enum for different types of file paths.
 */

typedef enum Tcl_PathType {







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 * One such structure exists for each type (kind) of channel.
 * It collects together in one place all the functions that are
 * part of the specific channel type.
 */

typedef struct Tcl_ChannelType {
    char *typeName;			/* The name of the channel type in Tcl
					 * commands. This storage is owned by
					 * channel type. */


    Tcl_ChannelVersion version;		/* Version of the channel. */
    Tcl_DriverCloseProc *closeProc;	/* Procedure to call to close the
					 * channel, or TCL_CLOSE2PROC if the
					 * close2Proc should be used
					 * instead. */
    Tcl_DriverInputProc *inputProc;	/* Procedure to call for input
					 * on channel. */
    Tcl_DriverOutputProc *outputProc;	/* Procedure to call for output
					 * on channel. */
    Tcl_DriverSeekProc *seekProc;	/* Procedure to call to seek
					 * on the channel. May be NULL. */
    Tcl_DriverSetOptionProc *setOptionProc;
					/* Set an option on a channel. */
    Tcl_DriverGetOptionProc *getOptionProc;
					/* Get an option from a channel. */
    Tcl_DriverWatchProc *watchProc;	/* Set up the notifier to watch
					 * for events on this channel. */
    Tcl_DriverGetHandleProc *getHandleProc;
					/* Get an OS handle from the channel
					 * or NULL if not supported. */
    Tcl_DriverClose2Proc *close2Proc;	/* Procedure to call to close the
					 * channel if the device supports
					 * closing the read & write sides
					 * independently. */
    Tcl_DriverBlockModeProc *blockModeProc;
					/* Set blocking mode for the
					 * raw channel. May be NULL. */
    /*
     * Only valid in TCL_CHANNEL_VERSION_2 channels
     */
    Tcl_DriverFlushProc *flushProc;	/* Procedure to call to flush a
					 * channel. May be NULL. */
    Tcl_DriverHandlerProc *handlerProc;	/* Procedure to call to handle a
					 * channel event.  This will be passed
					 * up the stacked channel chain. */
} Tcl_ChannelType;

/*
 * The following macros are provided as convenience functions
 * for accessing the internals of the Tcl_ChannelType
 */

#define Tcl_ChannelName(chanTypePtr)		((chanTypePtr)->typeName)
#define Tcl_ChannelVersion(chanTypePtr) \
	(((chanTypePtr)->version == TCL_CHANNEL_VERSION_2) ? \
		TCL_CHANNEL_VERSION_2 : TCL_CHANNEL_VERSION_1)
#define Tcl_ChannelBlockModeProc(chanTypePtr) \
	(((chanTypePtr)->version == TCL_CHANNEL_VERSION_2) ? \
		(chanTypePtr)->blockModeProc : \
		(Tcl_DriverBlockModeProc *) (chanTypePtr)->version)
#define Tcl_ChannelCloseProc(chanTypePtr)	((chanTypePtr)->closeProc)
#define Tcl_ChannelClose2Proc(chanTypePtr)	((chanTypePtr)->close2Proc)
#define Tcl_ChannelInputProc(chanTypePtr)	((chanTypePtr)->inputProc)
#define Tcl_ChannelOutputProc(chanTypePtr)	((chanTypePtr)->outputProc)
#define Tcl_ChannelSeekProc(chanTypePtr)	((chanTypePtr)->seekProc)
#define Tcl_ChannelSetOptionProc(chanTypePtr)	((chanTypePtr)->setOptionProc)
#define Tcl_ChannelGetOptionProc(chanTypePtr)	((chanTypePtr)->getOptionProc)
#define Tcl_ChannelWatchProc(chanTypePtr)	((chanTypePtr)->watchProc)
#define Tcl_ChannelGetHandleProc(chanTypePtr)	((chanTypePtr)->getHandleProc)
#define Tcl_ChannelFlushProc(chanTypePtr)	((chanTypePtr)->flushProc)
#define Tcl_ChannelHandlerProc(chanTypePtr)	((chanTypePtr)->handlerProc)

/*
 * The following flags determine whether the blockModeProc above should
 * set the channel into blocking or nonblocking mode. They are passed
 * as arguments to the blockModeProc procedure in the above structure.
 */

#define TCL_MODE_BLOCKING	0	/* Put channel into blocking mode. */
#define TCL_MODE_NONBLOCKING	1	/* Put channel into nonblocking
					 * mode. */

/*
 * Enum for different types of file paths.
 */

typedef enum Tcl_PathType {
Changes to generic/tclDecls.h.
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/*
 * tclDecls.h --
 *
 *	Declarations of functions in the platform independent public Tcl API.
 *
 * Copyright (c) 1998-1999 by Scriptics Corporation.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclDecls.h,v 1.34 2000/04/09 16:04:17 kupries Exp $
 */

#ifndef _TCLDECLS
#define _TCLDECLS

/*
 * WARNING: This file is automatically generated by the tools/genStubs.tcl










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/*
 * tclDecls.h --
 *
 *	Declarations of functions in the platform independent public Tcl API.
 *
 * Copyright (c) 1998-1999 by Scriptics Corporation.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclDecls.h,v 1.34.4.3 2000/07/25 16:54:48 kupries Exp $
 */

#ifndef _TCLDECLS
#define _TCLDECLS

/*
 * WARNING: This file is automatically generated by the tools/genStubs.tcl
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EXTERN void		Tcl_InitMemory _ANSI_ARGS_((Tcl_Interp * interp));
/* 281 */
EXTERN Tcl_Channel	Tcl_StackChannel _ANSI_ARGS_((Tcl_Interp * interp, 
				Tcl_ChannelType * typePtr, 
				ClientData instanceData, int mask, 
				Tcl_Channel prevChan));
/* 282 */
EXTERN void		Tcl_UnstackChannel _ANSI_ARGS_((Tcl_Interp * interp, 
				Tcl_Channel chan));
/* 283 */
EXTERN Tcl_Channel	Tcl_GetStackedChannel _ANSI_ARGS_((Tcl_Channel chan));
/* Slot 284 is reserved */
/* Slot 285 is reserved */
/* 286 */
EXTERN void		Tcl_AppendObjToObj _ANSI_ARGS_((Tcl_Obj * objPtr, 







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EXTERN void		Tcl_InitMemory _ANSI_ARGS_((Tcl_Interp * interp));
/* 281 */
EXTERN Tcl_Channel	Tcl_StackChannel _ANSI_ARGS_((Tcl_Interp * interp, 
				Tcl_ChannelType * typePtr, 
				ClientData instanceData, int mask, 
				Tcl_Channel prevChan));
/* 282 */
EXTERN int		Tcl_UnstackChannel _ANSI_ARGS_((Tcl_Interp * interp, 
				Tcl_Channel chan));
/* 283 */
EXTERN Tcl_Channel	Tcl_GetStackedChannel _ANSI_ARGS_((Tcl_Channel chan));
/* Slot 284 is reserved */
/* Slot 285 is reserved */
/* 286 */
EXTERN void		Tcl_AppendObjToObj _ANSI_ARGS_((Tcl_Obj * objPtr, 
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/* 392 */
EXTERN void		Tcl_MutexFinalize _ANSI_ARGS_((Tcl_Mutex * mutex));
/* 393 */
EXTERN int		Tcl_CreateThread _ANSI_ARGS_((Tcl_ThreadId * idPtr, 
				Tcl_ThreadCreateProc proc, 
				ClientData clientData, int stackSize, 
				int flags));











typedef struct TclStubHooks {
    struct TclPlatStubs *tclPlatStubs;
    struct TclIntStubs *tclIntStubs;
    struct TclIntPlatStubs *tclIntPlatStubs;
} TclStubHooks;








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/* 392 */
EXTERN void		Tcl_MutexFinalize _ANSI_ARGS_((Tcl_Mutex * mutex));
/* 393 */
EXTERN int		Tcl_CreateThread _ANSI_ARGS_((Tcl_ThreadId * idPtr, 
				Tcl_ThreadCreateProc proc, 
				ClientData clientData, int stackSize, 
				int flags));
/* 394 */
EXTERN int		Tcl_ReadRaw _ANSI_ARGS_((Tcl_Channel chan, 
				char * dst, int bytesToRead));
/* 395 */
EXTERN int		Tcl_WriteRaw _ANSI_ARGS_((Tcl_Channel chan, 
				char * src, int srcLen));
/* 396 */
EXTERN Tcl_Channel	Tcl_GetTopChannel _ANSI_ARGS_((Tcl_Channel chan));
/* 397 */
EXTERN int		Tcl_ChannelBuffered _ANSI_ARGS_((Tcl_Channel chan));

typedef struct TclStubHooks {
    struct TclPlatStubs *tclPlatStubs;
    struct TclIntStubs *tclIntStubs;
    struct TclIntPlatStubs *tclIntPlatStubs;
} TclStubHooks;

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#endif /* __WIN32__ */
#ifdef MAC_TCL
    void *reserved278;
#endif /* MAC_TCL */
    void (*tcl_GetVersion) _ANSI_ARGS_((int * major, int * minor, int * patchLevel, int * type)); /* 279 */
    void (*tcl_InitMemory) _ANSI_ARGS_((Tcl_Interp * interp)); /* 280 */
    Tcl_Channel (*tcl_StackChannel) _ANSI_ARGS_((Tcl_Interp * interp, Tcl_ChannelType * typePtr, ClientData instanceData, int mask, Tcl_Channel prevChan)); /* 281 */
    void (*tcl_UnstackChannel) _ANSI_ARGS_((Tcl_Interp * interp, Tcl_Channel chan)); /* 282 */
    Tcl_Channel (*tcl_GetStackedChannel) _ANSI_ARGS_((Tcl_Channel chan)); /* 283 */
    void *reserved284;
    void *reserved285;
    void (*tcl_AppendObjToObj) _ANSI_ARGS_((Tcl_Obj * objPtr, Tcl_Obj * appendObjPtr)); /* 286 */
    Tcl_Encoding (*tcl_CreateEncoding) _ANSI_ARGS_((Tcl_EncodingType * typePtr)); /* 287 */
    void (*tcl_CreateThreadExitHandler) _ANSI_ARGS_((Tcl_ExitProc * proc, ClientData clientData)); /* 288 */
    void (*tcl_DeleteThreadExitHandler) _ANSI_ARGS_((Tcl_ExitProc * proc, ClientData clientData)); /* 289 */







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#endif /* __WIN32__ */
#ifdef MAC_TCL
    void *reserved278;
#endif /* MAC_TCL */
    void (*tcl_GetVersion) _ANSI_ARGS_((int * major, int * minor, int * patchLevel, int * type)); /* 279 */
    void (*tcl_InitMemory) _ANSI_ARGS_((Tcl_Interp * interp)); /* 280 */
    Tcl_Channel (*tcl_StackChannel) _ANSI_ARGS_((Tcl_Interp * interp, Tcl_ChannelType * typePtr, ClientData instanceData, int mask, Tcl_Channel prevChan)); /* 281 */
    int (*tcl_UnstackChannel) _ANSI_ARGS_((Tcl_Interp * interp, Tcl_Channel chan)); /* 282 */
    Tcl_Channel (*tcl_GetStackedChannel) _ANSI_ARGS_((Tcl_Channel chan)); /* 283 */
    void *reserved284;
    void *reserved285;
    void (*tcl_AppendObjToObj) _ANSI_ARGS_((Tcl_Obj * objPtr, Tcl_Obj * appendObjPtr)); /* 286 */
    Tcl_Encoding (*tcl_CreateEncoding) _ANSI_ARGS_((Tcl_EncodingType * typePtr)); /* 287 */
    void (*tcl_CreateThreadExitHandler) _ANSI_ARGS_((Tcl_ExitProc * proc, ClientData clientData)); /* 288 */
    void (*tcl_DeleteThreadExitHandler) _ANSI_ARGS_((Tcl_ExitProc * proc, ClientData clientData)); /* 289 */
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    Tcl_Mutex * (*tcl_GetAllocMutex) _ANSI_ARGS_((void)); /* 387 */
    int (*tcl_GetChannelNames) _ANSI_ARGS_((Tcl_Interp * interp)); /* 388 */
    int (*tcl_GetChannelNamesEx) _ANSI_ARGS_((Tcl_Interp * interp, char * pattern)); /* 389 */
    int (*tcl_ProcObjCmd) _ANSI_ARGS_((ClientData clientData, Tcl_Interp * interp, int objc, Tcl_Obj *CONST objv[])); /* 390 */
    void (*tcl_ConditionFinalize) _ANSI_ARGS_((Tcl_Condition * condPtr)); /* 391 */
    void (*tcl_MutexFinalize) _ANSI_ARGS_((Tcl_Mutex * mutex)); /* 392 */
    int (*tcl_CreateThread) _ANSI_ARGS_((Tcl_ThreadId * idPtr, Tcl_ThreadCreateProc proc, ClientData clientData, int stackSize, int flags)); /* 393 */




} TclStubs;

#ifdef __cplusplus
extern "C" {
#endif
extern TclStubs *tclStubsPtr;
#ifdef __cplusplus







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    Tcl_Mutex * (*tcl_GetAllocMutex) _ANSI_ARGS_((void)); /* 387 */
    int (*tcl_GetChannelNames) _ANSI_ARGS_((Tcl_Interp * interp)); /* 388 */
    int (*tcl_GetChannelNamesEx) _ANSI_ARGS_((Tcl_Interp * interp, char * pattern)); /* 389 */
    int (*tcl_ProcObjCmd) _ANSI_ARGS_((ClientData clientData, Tcl_Interp * interp, int objc, Tcl_Obj *CONST objv[])); /* 390 */
    void (*tcl_ConditionFinalize) _ANSI_ARGS_((Tcl_Condition * condPtr)); /* 391 */
    void (*tcl_MutexFinalize) _ANSI_ARGS_((Tcl_Mutex * mutex)); /* 392 */
    int (*tcl_CreateThread) _ANSI_ARGS_((Tcl_ThreadId * idPtr, Tcl_ThreadCreateProc proc, ClientData clientData, int stackSize, int flags)); /* 393 */
    int (*tcl_ReadRaw) _ANSI_ARGS_((Tcl_Channel chan, char * dst, int bytesToRead)); /* 394 */
    int (*tcl_WriteRaw) _ANSI_ARGS_((Tcl_Channel chan, char * src, int srcLen)); /* 395 */
    Tcl_Channel (*tcl_GetTopChannel) _ANSI_ARGS_((Tcl_Channel chan)); /* 396 */
    int (*tcl_ChannelBuffered) _ANSI_ARGS_((Tcl_Channel chan)); /* 397 */
} TclStubs;

#ifdef __cplusplus
extern "C" {
#endif
extern TclStubs *tclStubsPtr;
#ifdef __cplusplus
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#define Tcl_MutexFinalize \
	(tclStubsPtr->tcl_MutexFinalize) /* 392 */
#endif
#ifndef Tcl_CreateThread
#define Tcl_CreateThread \
	(tclStubsPtr->tcl_CreateThread) /* 393 */
#endif

















#endif /* defined(USE_TCL_STUBS) && !defined(USE_TCL_STUB_PROCS) */

/* !END!: Do not edit above this line. */

#endif /* _TCLDECLS */








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#define Tcl_MutexFinalize \
	(tclStubsPtr->tcl_MutexFinalize) /* 392 */
#endif
#ifndef Tcl_CreateThread
#define Tcl_CreateThread \
	(tclStubsPtr->tcl_CreateThread) /* 393 */
#endif
#ifndef Tcl_ReadRaw
#define Tcl_ReadRaw \
	(tclStubsPtr->tcl_ReadRaw) /* 394 */
#endif
#ifndef Tcl_WriteRaw
#define Tcl_WriteRaw \
	(tclStubsPtr->tcl_WriteRaw) /* 395 */
#endif
#ifndef Tcl_GetTopChannel
#define Tcl_GetTopChannel \
	(tclStubsPtr->tcl_GetTopChannel) /* 396 */
#endif
#ifndef Tcl_ChannelBuffered
#define Tcl_ChannelBuffered \
	(tclStubsPtr->tcl_ChannelBuffered) /* 397 */
#endif

#endif /* defined(USE_TCL_STUBS) && !defined(USE_TCL_STUB_PROCS) */

/* !END!: Do not edit above this line. */

#endif /* _TCLDECLS */

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/* 
 * tclIO.c --
 *
 *	This file provides the generic portions (those that are the same on
 *	all platforms and for all channel types) of Tcl's IO facilities.
 *
 * Copyright (c) 1998 Scriptics Corporation
 * Copyright (c) 1995-1997 Sun Microsystems, Inc.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclIO.c,v 1.20.2.3 2000/06/02 20:04:06 hobbs Exp $
 */

#include "tclInt.h"
#include "tclPort.h"

/*
 * Make sure that both EAGAIN and EWOULDBLOCK are defined. This does not
 * compile on systems where neither is defined. We want both defined so
 * that we can test safely for both. In the code we still have to test for
 * both because there may be systems on which both are defined and have
 * different values.
 */

#if ((!defined(EWOULDBLOCK)) && (defined(EAGAIN)))
#   define EWOULDBLOCK EAGAIN
#endif
#if ((!defined(EAGAIN)) && (defined(EWOULDBLOCK)))
#   define EAGAIN EWOULDBLOCK
#endif
#if ((!defined(EAGAIN)) && (!defined(EWOULDBLOCK)))
error one of EWOULDBLOCK or EAGAIN must be defined
#endif

/*
 * The following structure encapsulates the state for a background channel
 * copy.  Note that the data buffer for the copy will be appended to this
 * structure.
 */

typedef struct CopyState {
    struct Channel *readPtr;	/* Pointer to input channel. */
    struct Channel *writePtr;	/* Pointer to output channel. */
    int readFlags;		/* Original read channel flags. */
    int writeFlags;		/* Original write channel flags. */
    int toRead;			/* Number of bytes to copy, or -1. */
    int total;			/* Total bytes transferred (written). */
    Tcl_Interp *interp;		/* Interp that started the copy. */
    Tcl_Obj *cmdPtr;		/* Command to be invoked at completion. */
    int bufSize;		/* Size of appended buffer. */
    char buffer[1];		/* Copy buffer, this must be the last
				 * field. */
} CopyState;

/*
 * struct ChannelBuffer:
 *
 * Buffers data being sent to or from a channel.
 */

typedef struct ChannelBuffer {
    int nextAdded;		/* The next position into which a character
                                 * will be put in the buffer. */
    int nextRemoved;		/* Position of next byte to be removed
                                 * from the buffer. */
    int bufLength;		/* How big is the buffer? */
    struct ChannelBuffer *nextPtr;
    				/* Next buffer in chain. */
    char buf[4];		/* Placeholder for real buffer. The real
                                 * buffer occuppies this space + bufSize-4
                                 * bytes. This must be the last field in
                                 * the structure. */
} ChannelBuffer;

#define CHANNELBUFFER_HEADER_SIZE	(sizeof(ChannelBuffer) - 4)

/*
 * How much extra space to allocate in buffer to hold bytes from previous
 * buffer (when converting to UTF-8) or to hold bytes that will go to
 * next buffer (when converting from UTF-8).
 */
 
#define BUFFER_PADDING	    16
 
/*
 * The following defines the *default* buffer size for channels.
 */

#define CHANNELBUFFER_DEFAULT_SIZE	(1024 * 4)

/*
 * Structure to record a close callback. One such record exists for
 * each close callback registered for a channel.
 */

typedef struct CloseCallback {
    Tcl_CloseProc *proc;		/* The procedure to call. */
    ClientData clientData;		/* Arbitrary one-word data to pass
                                         * to the callback. */
    struct CloseCallback *nextPtr;	/* For chaining close callbacks. */
} CloseCallback;

/*
 * The following structure describes the information saved from a call to
 * "fileevent". This is used later when the event being waited for to
 * invoke the saved script in the interpreter designed in this record.
 */

typedef struct EventScriptRecord {
    struct Channel *chanPtr;	/* The channel for which this script is
                                 * registered. This is used only when an
                                 * error occurs during evaluation of the
                                 * script, to delete the handler. */
    Tcl_Obj *scriptPtr;		/* Script to invoke. */
    Tcl_Interp *interp;		/* In what interpreter to invoke script? */
    int mask;			/* Events must overlap current mask for the
                                 * stored script to be invoked. */
    struct EventScriptRecord *nextPtr;
    				/* Next in chain of records. */
} EventScriptRecord;

/*
 * struct Channel:
 *
 * One of these structures is allocated for each open channel. It contains data
 * specific to the channel but which belongs to the generic part of the Tcl
 * channel mechanism, and it points at an instance specific (and type
 * specific) * instance data, and at a channel type structure.
 */

typedef struct Channel {
    char *channelName;		/* The name of the channel instance in Tcl
                                 * commands. Storage is owned by the generic IO
                                 * code,  is dynamically allocated. */
    int	flags;			/* ORed combination of the flags defined
                                 * below. */
    Tcl_Encoding encoding;	/* Encoding to apply when reading or writing
				 * data on this channel.  NULL means no
				 * encoding is applied to data. */
    Tcl_EncodingState inputEncodingState;
				/* Current encoding state, used when converting
				 * input data bytes to UTF-8. */
    int inputEncodingFlags;	/* Encoding flags to pass to conversion
				 * routine when converting input data bytes to
				 * UTF-8.  May be TCL_ENCODING_START before
				 * converting first byte and TCL_ENCODING_END
				 * when EOF is seen. */
    Tcl_EncodingState outputEncodingState;
				/* Current encoding state, used when converting
				 * UTF-8 to output data bytes. */
    int outputEncodingFlags;	/* Encoding flags to pass to conversion
				 * routine when converting UTF-8 to output
				 * data bytes.  May be TCL_ENCODING_START
				 * before converting first byte and
				 * TCL_ENCODING_END when EOF is seen. */
    Tcl_EolTranslation inputTranslation;
				/* What translation to apply for end of line
                                 * sequences on input? */    
    Tcl_EolTranslation outputTranslation;
    				/* What translation to use for generating
                                 * end of line sequences in output? */
    int inEofChar;		/* If nonzero, use this as a signal of EOF
                                 * on input. */
    int outEofChar;             /* If nonzero, append this to the channel
                                 * when it is closed if it is open for
                                 * writing. */
    int unreportedError;	/* Non-zero if an error report was deferred
                                 * because it happened in the background. The
                                 * value is the POSIX error code. */
    ClientData instanceData;	/* Instance-specific data provided by
				 * creator of channel. */

    Tcl_ChannelType *typePtr;	/* Pointer to channel type structure. */
    int refCount;		/* How many interpreters hold references to
                                 * this IO channel? */
    CloseCallback *closeCbPtr;	/* Callbacks registered to be called when the
                                 * channel is closed. */
    char *outputStage;		/* Temporary staging buffer used when
				 * translating EOL before converting from
				 * UTF-8 to external form. */
    ChannelBuffer *curOutPtr;	/* Current output buffer being filled. */
    ChannelBuffer *outQueueHead;/* Points at first buffer in output queue. */
    ChannelBuffer *outQueueTail;/* Points at last buffer in output queue. */

    ChannelBuffer *saveInBufPtr;/* Buffer saved for input queue - eliminates
                                 * need to allocate a new buffer for "gets"
                                 * that crosses buffer boundaries. */
    ChannelBuffer *inQueueHead;	/* Points at first buffer in input queue. */
    ChannelBuffer *inQueueTail;	/* Points at last buffer in input queue. */

    struct ChannelHandler *chPtr;/* List of channel handlers registered
                                  * for this channel. */
    int interestMask;		/* Mask of all events this channel has
                                 * handlers for. */
    struct Channel *nextChanPtr;/* Next in list of channels currently open. */
    EventScriptRecord *scriptRecordPtr;
    				/* Chain of all scripts registered for
                                 * event handlers ("fileevent") on this
                                 * channel. */
    int bufSize;		/* What size buffers to allocate? */
    Tcl_TimerToken timer;	/* Handle to wakeup timer for this channel. */
    CopyState *csPtr;		/* State of background copy, or NULL. */
    struct Channel* supercedes; /* Refers to channel this one was stacked upon.
				   This reference is NULL for normal channels.
				   See Tcl_StackChannel. */

} Channel;
    
/*
 * Values for the flags field in Channel. Any ORed combination of the
 * following flags can be stored in the field. These flags record various
 * options and state bits about the channel. In addition to the flags below,
 * the channel can also have TCL_READABLE (1<<1) and TCL_WRITABLE (1<<2) set.
 */

#define CHANNEL_NONBLOCKING	(1<<3)	/* Channel is currently in
					 * nonblocking mode. */
#define CHANNEL_LINEBUFFERED	(1<<4)	/* Output to the channel must be
					 * flushed after every newline. */
#define CHANNEL_UNBUFFERED	(1<<5)	/* Output to the channel must always
					 * be flushed immediately. */
#define BUFFER_READY		(1<<6)	/* Current output buffer (the
					 * curOutPtr field in the
                                         * channel structure) should be
                                         * output as soon as possible even
                                         * though it may not be full. */
#define BG_FLUSH_SCHEDULED	(1<<7)	/* A background flush of the
					 * queued output buffers has been
                                         * scheduled. */
#define CHANNEL_CLOSED		(1<<8)	/* Channel has been closed. No
					 * further Tcl-level IO on the
                                         * channel is allowed. */
#define CHANNEL_EOF		(1<<9)	/* EOF occurred on this channel.
					 * This bit is cleared before every
                                         * input operation. */
#define CHANNEL_STICKY_EOF	(1<<10)	/* EOF occurred on this channel because
					 * we saw the input eofChar. This bit
                                         * prevents clearing of the EOF bit
                                         * before every input operation. */
#define CHANNEL_BLOCKED	(1<<11)	/* EWOULDBLOCK or EAGAIN occurred
				 * on this channel. This bit is
				 * cleared before every input or
				 * output operation. */
#define INPUT_SAW_CR		(1<<12)	/* Channel is in CRLF eol input
					 * translation mode and the last
                                         * byte seen was a "\r". */
#define INPUT_NEED_NL		(1<<15)	/* Saw a '\r' at end of last buffer,
					 * and there should be a '\n' at
					 * beginning of next buffer. */
#define CHANNEL_DEAD		(1<<13)	/* The channel has been closed by
					 * the exit handler (on exit) but
                                         * not deallocated. When any IO
                                         * operation sees this flag on a
                                         * channel, it does not call driver
                                         * level functions to avoid referring
                                         * to deallocated data. */
#define CHANNEL_NEED_MORE_DATA	(1<<14)	/* The last input operation failed
					 * because there was not enough data
					 * to complete the operation.  This
					 * flag is set when gets fails to
					 * get a complete line or when read
					 * fails to get a complete character.
					 * When set, file events will not be
					 * delivered for buffered data until
					 * the state of the channel changes. */

/*
 * For each channel handler registered in a call to Tcl_CreateChannelHandler,
 * there is one record of the following type. All of records for a specific
 * channel are chained together in a singly linked list which is stored in
 * the channel structure.
 */

typedef struct ChannelHandler {
    Channel *chanPtr;		/* The channel structure for this channel. */
    int mask;			/* Mask of desired events. */
    Tcl_ChannelProc *proc;	/* Procedure to call in the type of
                                 * Tcl_CreateChannelHandler. */
    ClientData clientData;	/* Argument to pass to procedure. */
    struct ChannelHandler *nextPtr;
    				/* Next one in list of registered handlers. */
} ChannelHandler;

/*
 * This structure keeps track of the current ChannelHandler being invoked in
 * the current invocation of ChannelHandlerEventProc. There is a potential
 * problem if a ChannelHandler is deleted while it is the current one, since
 * ChannelHandlerEventProc needs to look at the nextPtr field. To handle this
 * problem, structures of the type below indicate the next handler to be
 * processed for any (recursively nested) dispatches in progress. The
 * nextHandlerPtr field is updated if the handler being pointed to is deleted.
 * The nextPtr field is used to chain together all recursive invocations, so
 * that Tcl_DeleteChannelHandler can find all the recursively nested
 * invocations of ChannelHandlerEventProc and compare the handler being
 * deleted against the NEXT handler to be invoked in that invocation; when it
 * finds such a situation, Tcl_DeleteChannelHandler updates the nextHandlerPtr
 * field of the structure to the next handler.
 */

typedef struct NextChannelHandler {
    ChannelHandler *nextHandlerPtr;	/* The next handler to be invoked in
                                         * this invocation. */
    struct NextChannelHandler *nestedHandlerPtr;
    /* Next nested invocation of
     * ChannelHandlerEventProc. */
} NextChannelHandler;


/*
 * The following structure describes the event that is added to the Tcl
 * event queue by the channel handler check procedure.
 */

typedef struct ChannelHandlerEvent {
    Tcl_Event header;		/* Standard header for all events. */
    Channel *chanPtr;		/* The channel that is ready. */
    int readyMask;		/* Events that have occurred. */
} ChannelHandlerEvent;

/*
 * The following structure is used by Tcl_GetsObj() to encapsulates the
 * state for a "gets" operation.
 */
 
typedef struct GetsState {
    Tcl_Obj *objPtr;		/* The object to which UTF-8 characters
				 * will be appended. */
    char **dstPtr;		/* Pointer into objPtr's string rep where
				 * next character should be stored. */
    Tcl_Encoding encoding;	/* The encoding to use to convert raw bytes
				 * to UTF-8.  */
    ChannelBuffer *bufPtr;	/* The current buffer of raw bytes being
				 * emptied. */
    Tcl_EncodingState state;	/* The encoding state just before the last
				 * external to UTF-8 conversion in
				 * FilterInputBytes(). */
    int rawRead;		/* The number of bytes removed from bufPtr
				 * in the last call to FilterInputBytes(). */
    int bytesWrote;		/* The number of bytes of UTF-8 data
				 * appended to objPtr during the last call to
				 * FilterInputBytes(). */
    int charsWrote;		/* The corresponding number of UTF-8
				 * characters appended to objPtr during the
				 * last call to FilterInputBytes(). */
    int totalChars;		/* The total number of UTF-8 characters
				 * appended to objPtr so far, just before the
				 * last call to FilterInputBytes(). */
} GetsState;

/*
 * All static variables used in this file are collected into a single
 * instance of the following structure.  For multi-threaded implementations,
 * there is one instance of this structure for each thread.
 *
 * Notice that different structures with the same name appear in other
 * files.  The structure defined below is used in this file only.
 */

typedef struct ThreadSpecificData {

    /*
     * This variable holds the list of nested ChannelHandlerEventProc 
     * invocations.
     */
    NextChannelHandler *nestedHandlerPtr;

    /*
     * List of all channels currently open.

     */
    Channel *firstChanPtr;
#ifdef oldcode
    /*
     * Has a channel exit handler been created yet?
     */
    int channelExitHandlerCreated;

    /*






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/* 
 * tclIO.c --
 *
 *	This file provides the generic portions (those that are the same on
 *	all platforms and for all channel types) of Tcl's IO facilities.
 *
 * Copyright (c) 1998-2000 Ajuba Solutions
 * Copyright (c) 1995-1997 Sun Microsystems, Inc.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclIO.c,v 1.20.2.3.2.6 2000/07/25 16:54:49 kupries Exp $
 */

#include "tclInt.h"
#include "tclPort.h"
#include "tclIO.h"













































































































































































































































































































































/*
 * All static variables used in this file are collected into a single
 * instance of the following structure.  For multi-threaded implementations,
 * there is one instance of this structure for each thread.
 *
 * Notice that different structures with the same name appear in other
 * files.  The structure defined below is used in this file only.
 */

typedef struct ThreadSpecificData {

    /*
     * This variable holds the list of nested ChannelHandlerEventProc 
     * invocations.
     */
    NextChannelHandler *nestedHandlerPtr;

    /*
     * List of all channels currently open, indexed by ChannelState,
     * as only one ChannelState exists per set of stacked channels.
     */
    ChannelState *firstCSPtr;
#ifdef oldcode
    /*
     * Has a channel exit handler been created yet?
     */
    int channelExitHandlerCreated;

    /*
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/*
 * Static functions in this file:
 */

static ChannelBuffer *	AllocChannelBuffer _ANSI_ARGS_((int length));
static void		ChannelEventScriptInvoker _ANSI_ARGS_((
    ClientData clientData, int flags));
static void		ChannelTimerProc _ANSI_ARGS_((
    ClientData clientData));
static int		CheckChannelErrors _ANSI_ARGS_((Channel *chanPtr,
	int direction));
static int		CheckFlush _ANSI_ARGS_((Channel *chanPtr,
	ChannelBuffer *bufPtr, int newlineFlag));
static int		CheckForDeadChannel _ANSI_ARGS_((Tcl_Interp *interp,
	Channel *chan));
static void		CheckForStdChannelsBeingClosed _ANSI_ARGS_((
    Tcl_Channel chan));
static void		CleanupChannelHandlers _ANSI_ARGS_((
    Tcl_Interp *interp, Channel *chanPtr));
static int		CloseChannel _ANSI_ARGS_((Tcl_Interp *interp,
	Channel *chanPtr, int errorCode));
static void		CommonGetsCleanup _ANSI_ARGS_((Channel *chanPtr,
	Tcl_Encoding encoding));
static int		CopyAndTranslateBuffer _ANSI_ARGS_((



    Channel *chanPtr, char *result, int space));

static int		CopyData _ANSI_ARGS_((CopyState *csPtr, int mask));
static void		CopyEventProc _ANSI_ARGS_((ClientData clientData,
	int mask));
static void		CreateScriptRecord _ANSI_ARGS_((
    Tcl_Interp *interp, Channel *chanPtr,
    int mask, Tcl_Obj *scriptPtr));
static void		DeleteChannelTable _ANSI_ARGS_((
    ClientData clientData, Tcl_Interp *interp));
static void		DeleteScriptRecord _ANSI_ARGS_((Tcl_Interp *interp,
	Channel *chanPtr, int mask));
static void		DiscardInputQueued _ANSI_ARGS_((
    Channel *chanPtr, int discardSavedBuffers));
static void		DiscardOutputQueued _ANSI_ARGS_((
    Channel *chanPtr));
static int		DoRead _ANSI_ARGS_((Channel *chanPtr, char *srcPtr,
	int slen));
static int		DoWrite _ANSI_ARGS_((Channel *chanPtr, char *src,
	int srcLen));
static int		FilterInputBytes _ANSI_ARGS_((Channel *chanPtr,
	GetsState *statePtr));
static int		FlushChannel _ANSI_ARGS_((Tcl_Interp *interp,
	Channel *chanPtr, int calledFromAsyncFlush));
static Tcl_HashTable *	GetChannelTable _ANSI_ARGS_((Tcl_Interp *interp));
static int		GetInput _ANSI_ARGS_((Channel *chanPtr));
static void		PeekAhead _ANSI_ARGS_((Channel *chanPtr,
	char **dstEndPtr, GetsState *gsPtr));
static int		ReadBytes _ANSI_ARGS_((Channel *chanPtr,
	Tcl_Obj *objPtr, int charsLeft, int *offsetPtr));

static int		ReadChars _ANSI_ARGS_((Channel *chanPtr,
	Tcl_Obj *objPtr, int charsLeft, int *offsetPtr,
	int *factorPtr));
static void		RecycleBuffer _ANSI_ARGS_((Channel *chanPtr,
	ChannelBuffer *bufPtr, int mustDiscard));


static int		SetBlockMode _ANSI_ARGS_((Tcl_Interp *interp,
	Channel *chanPtr, int mode));
static void		StopCopy _ANSI_ARGS_((CopyState *csPtr));
static int		TranslateInputEOL _ANSI_ARGS_((Channel *chanPtr,
	char *dst, CONST char *src, int *dstLenPtr,
	int *srcLenPtr));
static int		TranslateOutputEOL _ANSI_ARGS_((Channel *chanPtr,
	char *dst, CONST char *src, int *dstLenPtr,
	int *srcLenPtr));
static void		UpdateInterest _ANSI_ARGS_((Channel *chanPtr));
static int		WriteBytes _ANSI_ARGS_((Channel *chanPtr,
	CONST char *src, int srcLen));
static int		WriteChars _ANSI_ARGS_((Channel *chanPtr,
	CONST char *src, int srcLen));


/*
 *---------------------------------------------------------------------------
 *
 * TclInitIOSubsystem --
 *







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/*
 * Static functions in this file:
 */

static ChannelBuffer *	AllocChannelBuffer _ANSI_ARGS_((int length));


static void		ChannelTimerProc _ANSI_ARGS_((
				ClientData clientData));
static int		CheckChannelErrors _ANSI_ARGS_((ChannelState *statePtr,
				int direction));
static int		CheckFlush _ANSI_ARGS_((Channel *chanPtr,
				ChannelBuffer *bufPtr, int newlineFlag));
static int		CheckForDeadChannel _ANSI_ARGS_((Tcl_Interp *interp,
				ChannelState *statePtr));
static void		CheckForStdChannelsBeingClosed _ANSI_ARGS_((
				Tcl_Channel chan));
static void		CleanupChannelHandlers _ANSI_ARGS_((
				Tcl_Interp *interp, Channel *chanPtr));
static int		CloseChannel _ANSI_ARGS_((Tcl_Interp *interp,
				Channel *chanPtr, int errorCode));
static void		CommonGetsCleanup _ANSI_ARGS_((Channel *chanPtr,
				Tcl_Encoding encoding));
static int		CopyAndTranslateBuffer _ANSI_ARGS_((
				ChannelState *statePtr, char *result,
				int space));
static int		CopyBuffer _ANSI_ARGS_((
				Channel *chanPtr, char *result,
				int space));
static int		CopyData _ANSI_ARGS_((CopyState *csPtr, int mask));
static void		CopyEventProc _ANSI_ARGS_((ClientData clientData,
				int mask));
static void		CreateScriptRecord _ANSI_ARGS_((
				Tcl_Interp *interp, Channel *chanPtr,
				int mask, Tcl_Obj *scriptPtr));
static void		DeleteChannelTable _ANSI_ARGS_((
				ClientData clientData, Tcl_Interp *interp));
static void		DeleteScriptRecord _ANSI_ARGS_((Tcl_Interp *interp,
				Channel *chanPtr, int mask));
static void		DiscardInputQueued _ANSI_ARGS_((ChannelState *statePtr,
				int discardSavedBuffers));
static void		DiscardOutputQueued _ANSI_ARGS_((
				ChannelState *chanPtr));
static int		DoRead _ANSI_ARGS_((Channel *chanPtr, char *srcPtr,
				int slen));
static int		DoWrite _ANSI_ARGS_((Channel *chanPtr, char *src,
				int srcLen));
static int		FilterInputBytes _ANSI_ARGS_((Channel *chanPtr,
				GetsState *statePtr));
static int		FlushChannel _ANSI_ARGS_((Tcl_Interp *interp,
				Channel *chanPtr, int calledFromAsyncFlush));
static Tcl_HashTable *	GetChannelTable _ANSI_ARGS_((Tcl_Interp *interp));
static int		GetInput _ANSI_ARGS_((Channel *chanPtr));
static void		PeekAhead _ANSI_ARGS_((Channel *chanPtr,
				char **dstEndPtr, GetsState *gsPtr));
static int		ReadBytes _ANSI_ARGS_((ChannelState *statePtr,
				Tcl_Obj *objPtr, int charsLeft,
				int *offsetPtr));
static int		ReadChars _ANSI_ARGS_((ChannelState *statePtr,
				Tcl_Obj *objPtr, int charsLeft, int *offsetPtr,
				int *factorPtr));
static void		RecycleBuffer _ANSI_ARGS_((ChannelState *statePtr,
				ChannelBuffer *bufPtr, int mustDiscard));
static int		StackSetBlockMode _ANSI_ARGS_((Channel *chanPtr,
				int mode));
static int		SetBlockMode _ANSI_ARGS_((Tcl_Interp *interp,
				Channel *chanPtr, int mode));
static void		StopCopy _ANSI_ARGS_((CopyState *csPtr));
static int		TranslateInputEOL _ANSI_ARGS_((ChannelState *statePtr,
				char *dst, CONST char *src, int *dstLenPtr,
				int *srcLenPtr));
static int		TranslateOutputEOL _ANSI_ARGS_((ChannelState *statePtr,
				char *dst, CONST char *src, int *dstLenPtr,
				int *srcLenPtr));
static void		UpdateInterest _ANSI_ARGS_((Channel *chanPtr));
static int		WriteBytes _ANSI_ARGS_((Channel *chanPtr,
				CONST char *src, int srcLen));
static int		WriteChars _ANSI_ARGS_((Channel *chanPtr,
				CONST char *src, int srcLen));


/*
 *---------------------------------------------------------------------------
 *
 * TclInitIOSubsystem --
 *
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	/* ARGSUSED */
void
TclFinalizeIOSubsystem()
{
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);
    Channel *chanPtr;			/* Iterates over open channels. */
    Channel *nextChanPtr;		/* Iterates over open channels. */


    for (chanPtr = tsdPtr->firstChanPtr; chanPtr != (Channel *) NULL;
	 chanPtr = nextChanPtr) {
        nextChanPtr = chanPtr->nextChanPtr;


        /*
         * Set the channel back into blocking mode to ensure that we wait
         * for all data to flush out.
         */
        
        (void) Tcl_SetChannelOption(NULL, (Tcl_Channel) chanPtr,
                "-blocking", "on");

        if ((chanPtr == (Channel *) tsdPtr->stdinChannel) ||
                (chanPtr == (Channel *) tsdPtr->stdoutChannel) ||
                (chanPtr == (Channel *) tsdPtr->stderrChannel)) {

            /*
             * Decrement the refcount which was earlier artificially bumped
             * up to keep the channel from being closed.
             */

            chanPtr->refCount--;
        }

        if (chanPtr->refCount <= 0) {

	    /*
             * Close it only if the refcount indicates that the channel is not
             * referenced from any interpreter. If it is, that interpreter will
             * close the channel when it gets destroyed.
             */








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	/* ARGSUSED */
void
TclFinalizeIOSubsystem()
{
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);
    Channel *chanPtr;			/* Iterates over open channels. */
    ChannelState *nextCSPtr;		/* Iterates over open channels. */
    ChannelState *statePtr;		/* state of channel stack */

    for (statePtr = tsdPtr->firstCSPtr; statePtr != (ChannelState *) NULL;
	 statePtr = nextCSPtr) {
	chanPtr		= statePtr->topChanPtr;
        nextCSPtr	= statePtr->nextCSPtr;

        /*
         * Set the channel back into blocking mode to ensure that we wait
         * for all data to flush out.
         */
        
        (void) Tcl_SetChannelOption(NULL, (Tcl_Channel) chanPtr,
                "-blocking", "on");

        if ((chanPtr == (Channel *) tsdPtr->stdinChannel) ||
                (chanPtr == (Channel *) tsdPtr->stdoutChannel) ||
                (chanPtr == (Channel *) tsdPtr->stderrChannel)) {

            /*
             * Decrement the refcount which was earlier artificially bumped
             * up to keep the channel from being closed.
             */

            statePtr->refCount--;
        }

        if (statePtr->refCount <= 0) {

	    /*
             * Close it only if the refcount indicates that the channel is not
             * referenced from any interpreter. If it is, that interpreter will
             * close the channel when it gets destroyed.
             */

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             * Finally, we clean up the fields in the channel data structure
             * since all of them have been deleted already. We mark the
             * channel with CHANNEL_DEAD to prevent any further IO operations
             * on it.
             */

            chanPtr->instanceData = (ClientData) NULL;
            chanPtr->flags |= CHANNEL_DEAD;
        }
    }
}


/*
 *----------------------------------------------------------------------







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             * Finally, we clean up the fields in the channel data structure
             * since all of them have been deleted already. We mark the
             * channel with CHANNEL_DEAD to prevent any further IO operations
             * on it.
             */

            chanPtr->instanceData = (ClientData) NULL;
            statePtr->flags |= CHANNEL_DEAD;
        }
    }
}


/*
 *----------------------------------------------------------------------
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    Tcl_Channel chan;		/* The channel for which to create the
                                 * close callback. */
    Tcl_CloseProc *proc;	/* The callback routine to call when the
                                 * channel will be closed. */
    ClientData clientData;	/* Arbitrary data to pass to the
                                 * close callback. */
{
    Channel *chanPtr;
    CloseCallback *cbPtr;

    chanPtr = (Channel *) chan;

    cbPtr = (CloseCallback *) ckalloc((unsigned) sizeof(CloseCallback));
    cbPtr->proc = proc;
    cbPtr->clientData = clientData;

    cbPtr->nextPtr = chanPtr->closeCbPtr;
    chanPtr->closeCbPtr = cbPtr;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_DeleteCloseHandler --
 *







|


|





|
|







409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
    Tcl_Channel chan;		/* The channel for which to create the
                                 * close callback. */
    Tcl_CloseProc *proc;	/* The callback routine to call when the
                                 * channel will be closed. */
    ClientData clientData;	/* Arbitrary data to pass to the
                                 * close callback. */
{
    ChannelState *statePtr;
    CloseCallback *cbPtr;

    statePtr = ((Channel *) chan)->state;

    cbPtr = (CloseCallback *) ckalloc((unsigned) sizeof(CloseCallback));
    cbPtr->proc = proc;
    cbPtr->clientData = clientData;

    cbPtr->nextPtr = statePtr->closeCbPtr;
    statePtr->closeCbPtr = cbPtr;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_DeleteCloseHandler --
 *
774
775
776
777
778
779
780
781
782
783
784
785
786
787
788
789
790
791
792
793
794
795
796
797
    Tcl_Channel chan;		/* The channel for which to cancel the
                                 * close callback. */
    Tcl_CloseProc *proc;	/* The procedure for the callback to
                                 * remove. */
    ClientData clientData;	/* The callback data for the callback
                                 * to remove. */
{
    Channel *chanPtr;
    CloseCallback *cbPtr, *cbPrevPtr;

    chanPtr = (Channel *) chan;
    for (cbPtr = chanPtr->closeCbPtr, cbPrevPtr = (CloseCallback *) NULL;
	 cbPtr != (CloseCallback *) NULL;
	 cbPtr = cbPtr->nextPtr) {
        if ((cbPtr->proc == proc) && (cbPtr->clientData == clientData)) {
            if (cbPrevPtr == (CloseCallback *) NULL) {
                chanPtr->closeCbPtr = cbPtr->nextPtr;
            }
            ckfree((char *) cbPtr);
            break;
        } else {
            cbPrevPtr = cbPtr;
        }
    }







|


|
|




|







450
451
452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
470
471
472
473
    Tcl_Channel chan;		/* The channel for which to cancel the
                                 * close callback. */
    Tcl_CloseProc *proc;	/* The procedure for the callback to
                                 * remove. */
    ClientData clientData;	/* The callback data for the callback
                                 * to remove. */
{
    ChannelState *statePtr;
    CloseCallback *cbPtr, *cbPrevPtr;

    statePtr = ((Channel *) chan)->state;
    for (cbPtr = statePtr->closeCbPtr, cbPrevPtr = (CloseCallback *) NULL;
	 cbPtr != (CloseCallback *) NULL;
	 cbPtr = cbPtr->nextPtr) {
        if ((cbPtr->proc == proc) && (cbPtr->clientData == clientData)) {
            if (cbPrevPtr == (CloseCallback *) NULL) {
                statePtr->closeCbPtr = cbPtr->nextPtr;
            }
            ckfree((char *) cbPtr);
            break;
        } else {
            cbPrevPtr = cbPtr;
        }
    }
883
884
885
886
887
888
889
890

891
892
893
894
895
896
897
898
899
900
901
902
903
904
905
906

907
908
909
910
911
912
913
914
915
916
917
918
919
920
921
922
923
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925
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930
931
932
933
934
935
936
937
938
939
940
941
942
943
944
945
946
947
948
949
950
951
DeleteChannelTable(clientData, interp)
    ClientData clientData;	/* The per-interpreter data structure. */
    Tcl_Interp *interp;		/* The interpreter being deleted. */
{
    Tcl_HashTable *hTblPtr;	/* The hash table. */
    Tcl_HashSearch hSearch;	/* Search variable. */
    Tcl_HashEntry *hPtr;	/* Search variable. */
    Channel *chanPtr;	/* Channel being deleted. */

    EventScriptRecord *sPtr, *prevPtr, *nextPtr;
    				/* Variables to loop over all channel events
                                 * registered, to delete the ones that refer
                                 * to the interpreter being deleted. */
    
    /*
     * Delete all the registered channels - this will close channels whose
     * refcount reaches zero.
     */
    
    hTblPtr = (Tcl_HashTable *) clientData;
    for (hPtr = Tcl_FirstHashEntry(hTblPtr, &hSearch);
	 hPtr != (Tcl_HashEntry *) NULL;
	 hPtr = Tcl_FirstHashEntry(hTblPtr, &hSearch)) {

        chanPtr = (Channel *) Tcl_GetHashValue(hPtr);


        /*
         * Remove any fileevents registered in this interpreter.
         */
        
        for (sPtr = chanPtr->scriptRecordPtr,
                 prevPtr = (EventScriptRecord *) NULL;
	     sPtr != (EventScriptRecord *) NULL;
	     sPtr = nextPtr) {
            nextPtr = sPtr->nextPtr;
            if (sPtr->interp == interp) {
                if (prevPtr == (EventScriptRecord *) NULL) {
                    chanPtr->scriptRecordPtr = nextPtr;
                } else {
                    prevPtr->nextPtr = nextPtr;
                }

                Tcl_DeleteChannelHandler((Tcl_Channel) chanPtr,
                        ChannelEventScriptInvoker, (ClientData) sPtr);

		Tcl_DecrRefCount(sPtr->scriptPtr);
                ckfree((char *) sPtr);
            } else {
                prevPtr = sPtr;
            }
        }

        /*
         * Cannot call Tcl_UnregisterChannel because that procedure calls
         * Tcl_GetAssocData to get the channel table, which might already
         * be inaccessible from the interpreter structure. Instead, we
         * emulate the behavior of Tcl_UnregisterChannel directly here.
         */

        Tcl_DeleteHashEntry(hPtr);
        chanPtr->refCount--;
        if (chanPtr->refCount <= 0) {
            if (!(chanPtr->flags & BG_FLUSH_SCHEDULED)) {
                (void) Tcl_Close(interp, (Tcl_Channel) chanPtr);
            }
        }
    }
    Tcl_DeleteHashTable(hTblPtr);
    ckfree((char *) hTblPtr);
}







|
>




|











>





|






|





|
















|
|
|







559
560
561
562
563
564
565
566
567
568
569
570
571
572
573
574
575
576
577
578
579
580
581
582
583
584
585
586
587
588
589
590
591
592
593
594
595
596
597
598
599
600
601
602
603
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606
607
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609
610
611
612
613
614
615
616
617
618
619
620
621
622
623
624
625
626
627
628
629
DeleteChannelTable(clientData, interp)
    ClientData clientData;	/* The per-interpreter data structure. */
    Tcl_Interp *interp;		/* The interpreter being deleted. */
{
    Tcl_HashTable *hTblPtr;	/* The hash table. */
    Tcl_HashSearch hSearch;	/* Search variable. */
    Tcl_HashEntry *hPtr;	/* Search variable. */
    Channel *chanPtr;		/* Channel being deleted. */
    ChannelState *statePtr;	/* State of Channel being deleted. */
    EventScriptRecord *sPtr, *prevPtr, *nextPtr;
    				/* Variables to loop over all channel events
                                 * registered, to delete the ones that refer
                                 * to the interpreter being deleted. */

    /*
     * Delete all the registered channels - this will close channels whose
     * refcount reaches zero.
     */
    
    hTblPtr = (Tcl_HashTable *) clientData;
    for (hPtr = Tcl_FirstHashEntry(hTblPtr, &hSearch);
	 hPtr != (Tcl_HashEntry *) NULL;
	 hPtr = Tcl_FirstHashEntry(hTblPtr, &hSearch)) {

        chanPtr = (Channel *) Tcl_GetHashValue(hPtr);
	statePtr = chanPtr->state;

        /*
         * Remove any fileevents registered in this interpreter.
         */
        
        for (sPtr = statePtr->scriptRecordPtr,
                 prevPtr = (EventScriptRecord *) NULL;
	     sPtr != (EventScriptRecord *) NULL;
	     sPtr = nextPtr) {
            nextPtr = sPtr->nextPtr;
            if (sPtr->interp == interp) {
                if (prevPtr == (EventScriptRecord *) NULL) {
                    statePtr->scriptRecordPtr = nextPtr;
                } else {
                    prevPtr->nextPtr = nextPtr;
                }

                Tcl_DeleteChannelHandler((Tcl_Channel) chanPtr,
                        TclChannelEventScriptInvoker, (ClientData) sPtr);

		Tcl_DecrRefCount(sPtr->scriptPtr);
                ckfree((char *) sPtr);
            } else {
                prevPtr = sPtr;
            }
        }

        /*
         * Cannot call Tcl_UnregisterChannel because that procedure calls
         * Tcl_GetAssocData to get the channel table, which might already
         * be inaccessible from the interpreter structure. Instead, we
         * emulate the behavior of Tcl_UnregisterChannel directly here.
         */

        Tcl_DeleteHashEntry(hPtr);
        statePtr->refCount--;
        if (statePtr->refCount <= 0) {
            if (!(statePtr->flags & BG_FLUSH_SCHEDULED)) {
                (void) Tcl_Close(interp, (Tcl_Channel) chanPtr);
            }
        }
    }
    Tcl_DeleteHashTable(hTblPtr);
    ckfree((char *) hTblPtr);
}
972
973
974
975
976
977
978
979
980
981
982
983
984
985
986
987
988

989
990
991
992
993
994

995
996
997
998
999
1000
1001
1002
1003
 *----------------------------------------------------------------------
 */

static void
CheckForStdChannelsBeingClosed(chan)
    Tcl_Channel chan;
{
    Channel *chanPtr = (Channel *) chan;
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);

    if ((chan == tsdPtr->stdinChannel) && (tsdPtr->stdinInitialized)) {
        if (chanPtr->refCount < 2) {
            chanPtr->refCount = 0;
            tsdPtr->stdinChannel = NULL;
            return;
        }
    } else if ((chan == tsdPtr->stdoutChannel) && (tsdPtr->stdoutInitialized)) {

        if (chanPtr->refCount < 2) {
            chanPtr->refCount = 0;
            tsdPtr->stdoutChannel = NULL;
            return;
        }
    } else if ((chan == tsdPtr->stderrChannel) && (tsdPtr->stderrInitialized)) {

        if (chanPtr->refCount < 2) {
            chanPtr->refCount = 0;
            tsdPtr->stderrChannel = NULL;
            return;
        }
    }
}

/*







|



|
|



|
>
|
|



|
>
|
|







650
651
652
653
654
655
656
657
658
659
660
661
662
663
664
665
666
667
668
669
670
671
672
673
674
675
676
677
678
679
680
681
682
683
 *----------------------------------------------------------------------
 */

static void
CheckForStdChannelsBeingClosed(chan)
    Tcl_Channel chan;
{
    ChannelState *statePtr = ((Channel *) chan)->state;
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);

    if ((chan == tsdPtr->stdinChannel) && (tsdPtr->stdinInitialized)) {
        if (statePtr->refCount < 2) {
            statePtr->refCount = 0;
            tsdPtr->stdinChannel = NULL;
            return;
        }
    } else if ((chan == tsdPtr->stdoutChannel)
	    && (tsdPtr->stdoutInitialized)) {
        if (statePtr->refCount < 2) {
            statePtr->refCount = 0;
            tsdPtr->stdoutChannel = NULL;
            return;
        }
    } else if ((chan == tsdPtr->stderrChannel)
	    && (tsdPtr->stderrInitialized)) {
        if (statePtr->refCount < 2) {
            statePtr->refCount = 0;
            tsdPtr->stderrChannel = NULL;
            return;
        }
    }
}

/*
1024
1025
1026
1027
1028
1029
1030

1031





1032

1033
1034
1035
1036
1037
1038
1039
1040
1041
1042
1043
1044
1045
1046
1047
1048
1049
1050
1051
1052
1053
1054
1055
1056
1057
1058
1059
1060
1061
1062
1063
1064
1065
1066
1067
1068
1069
    Tcl_Channel chan;		/* The channel to add to this interpreter
                                 * channel table. */
{
    Tcl_HashTable *hTblPtr;	/* Hash table of channels. */
    Tcl_HashEntry *hPtr;	/* Search variable. */
    int new;			/* Is the hash entry new or does it exist? */
    Channel *chanPtr;		/* The actual channel. */







    chanPtr = (Channel *) chan;


    if (chanPtr->channelName == (char *) NULL) {
        panic("Tcl_RegisterChannel: channel without name");
    }
    if (interp != (Tcl_Interp *) NULL) {
        hTblPtr = GetChannelTable(interp);
        hPtr = Tcl_CreateHashEntry(hTblPtr, chanPtr->channelName, &new);
        if (new == 0) {
            if (chan == (Tcl_Channel) Tcl_GetHashValue(hPtr)) {
                return;
            }

	    /* Andreas Kupries <a.kupries@westend.com>, 12/13/1998
	     * "Trf-Patch for filtering channels"
	     *
	     * This is the change to 'Tcl_RegisterChannel'.
	     *
	     * Explanation:
	     *		The moment a channel is stacked upon another he
	     *		takes the identity of the channel he supercedes,
	     *		i.e. he gets the *same* name. Because of this we
	     *		cannot check for duplicate names anymore, they
	     *		have to be allowed now.
	     */

	    /* panic("Tcl_RegisterChannel: duplicate channel names"); */
        }
        Tcl_SetHashValue(hPtr, (ClientData) chanPtr);
    }
    chanPtr->refCount++;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_UnregisterChannel --
 *







>

>
>
>
>
>
|
>

|




|





<
<
<
<
<
<
<
<
<
<
<
<
<
|



|







704
705
706
707
708
709
710
711
712
713
714
715
716
717
718
719
720
721
722
723
724
725
726
727
728
729
730
731













732
733
734
735
736
737
738
739
740
741
742
743
    Tcl_Channel chan;		/* The channel to add to this interpreter
                                 * channel table. */
{
    Tcl_HashTable *hTblPtr;	/* Hash table of channels. */
    Tcl_HashEntry *hPtr;	/* Search variable. */
    int new;			/* Is the hash entry new or does it exist? */
    Channel *chanPtr;		/* The actual channel. */
    ChannelState *statePtr;	/* State of the actual channel. */

    /*
     * Always (un)register bottom-most channel in the stack.  This makes
     * management of the channel list easier because no manipulation is
     * necessary during (un)stack operation.
     */
    chanPtr = ((Channel *) chan)->state->bottomChanPtr;
    statePtr = chanPtr->state;

    if (statePtr->channelName == (char *) NULL) {
        panic("Tcl_RegisterChannel: channel without name");
    }
    if (interp != (Tcl_Interp *) NULL) {
        hTblPtr = GetChannelTable(interp);
        hPtr = Tcl_CreateHashEntry(hTblPtr, statePtr->channelName, &new);
        if (new == 0) {
            if (chan == (Tcl_Channel) Tcl_GetHashValue(hPtr)) {
                return;
            }














	    panic("Tcl_RegisterChannel: duplicate channel names");
        }
        Tcl_SetHashValue(hPtr, (ClientData) chanPtr);
    }
    statePtr->refCount++;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_UnregisterChannel --
 *
1084
1085
1086
1087
1088
1089
1090

1091





1092

1093
1094
1095
1096
1097
1098
1099
1100
1101
1102
1103
1104
1105
1106
1107
1108
1109
1110
1111
1112
1113
1114
1115
1116
1117
1118
1119
1120
1121
1122
1123
1124
1125
1126
1127
1128
1129
1130
1131
1132
1133
1134
1135
1136
1137
1138
1139
1140
1141
1142
1143
1144
1145
1146
1147
1148
1149
1150
1151
1152
1153
1154
1155
Tcl_UnregisterChannel(interp, chan)
    Tcl_Interp *interp;		/* Interpreter in which channel is defined. */
    Tcl_Channel chan;		/* Channel to delete. */
{
    Tcl_HashTable *hTblPtr;	/* Hash table of channels. */
    Tcl_HashEntry *hPtr;	/* Search variable. */
    Channel *chanPtr;		/* The real IO channel. */







    chanPtr = (Channel *) chan;

    
    if (interp != (Tcl_Interp *) NULL) {
        hTblPtr = (Tcl_HashTable *) Tcl_GetAssocData(interp, "tclIO", NULL);
        if (hTblPtr == (Tcl_HashTable *) NULL) {
            return TCL_OK;
        }
        hPtr = Tcl_FindHashEntry(hTblPtr, chanPtr->channelName);
        if (hPtr == (Tcl_HashEntry *) NULL) {
            return TCL_OK;
        }
        if ((Channel *) Tcl_GetHashValue(hPtr) != chanPtr) {
            return TCL_OK;
        }
        Tcl_DeleteHashEntry(hPtr);

        /*
         * Remove channel handlers that refer to this interpreter, so that they
         * will not be present if the actual close is delayed and more events
         * happen on the channel. This may occur if the channel is shared
         * between several interpreters, or if the channel has async
         * flushing active.
         */
    
        CleanupChannelHandlers(interp, chanPtr);
    }

    chanPtr->refCount--;
    
    /*
     * Perform special handling for standard channels being closed. If the
     * refCount is now 1 it means that the last reference to the standard
     * channel is being explicitly closed, so bump the refCount down
     * artificially to 0. This will ensure that the channel is actually
     * closed, below. Also set the static pointer to NULL for the channel.
     */

    CheckForStdChannelsBeingClosed(chan);

    /*
     * If the refCount reached zero, close the actual channel.
     */

    if (chanPtr->refCount <= 0) {

        /*
         * Ensure that if there is another buffer, it gets flushed
         * whether or not we are doing a background flush.
         */

        if ((chanPtr->curOutPtr != NULL) &&
                (chanPtr->curOutPtr->nextAdded >
                        chanPtr->curOutPtr->nextRemoved)) {
            chanPtr->flags |= BUFFER_READY;
        }
        chanPtr->flags |= CHANNEL_CLOSED;
        if (!(chanPtr->flags & BG_FLUSH_SCHEDULED)) {
            if (Tcl_Close(interp, chan) != TCL_OK) {
                return TCL_ERROR;
            }
        }
    }
    return TCL_OK;
}







>

>
>
>
>
>
|
>
|





|



















|















|






|
|
|
|

|
|







758
759
760
761
762
763
764
765
766
767
768
769
770
771
772
773
774
775
776
777
778
779
780
781
782
783
784
785
786
787
788
789
790
791
792
793
794
795
796
797
798
799
800
801
802
803
804
805
806
807
808
809
810
811
812
813
814
815
816
817
818
819
820
821
822
823
824
825
826
827
828
829
830
831
832
833
834
835
836
Tcl_UnregisterChannel(interp, chan)
    Tcl_Interp *interp;		/* Interpreter in which channel is defined. */
    Tcl_Channel chan;		/* Channel to delete. */
{
    Tcl_HashTable *hTblPtr;	/* Hash table of channels. */
    Tcl_HashEntry *hPtr;	/* Search variable. */
    Channel *chanPtr;		/* The real IO channel. */
    ChannelState *statePtr;	/* State of the real channel. */

    /*
     * Always (un)register bottom-most channel in the stack.  This makes
     * management of the channel list easier because no manipulation is
     * necessary during (un)stack operation.
     */
    chanPtr = ((Channel *) chan)->state->bottomChanPtr;
    statePtr = chanPtr->state;

    if (interp != (Tcl_Interp *) NULL) {
        hTblPtr = (Tcl_HashTable *) Tcl_GetAssocData(interp, "tclIO", NULL);
        if (hTblPtr == (Tcl_HashTable *) NULL) {
            return TCL_OK;
        }
        hPtr = Tcl_FindHashEntry(hTblPtr, statePtr->channelName);
        if (hPtr == (Tcl_HashEntry *) NULL) {
            return TCL_OK;
        }
        if ((Channel *) Tcl_GetHashValue(hPtr) != chanPtr) {
            return TCL_OK;
        }
        Tcl_DeleteHashEntry(hPtr);

        /*
         * Remove channel handlers that refer to this interpreter, so that they
         * will not be present if the actual close is delayed and more events
         * happen on the channel. This may occur if the channel is shared
         * between several interpreters, or if the channel has async
         * flushing active.
         */
    
        CleanupChannelHandlers(interp, chanPtr);
    }

    statePtr->refCount--;
    
    /*
     * Perform special handling for standard channels being closed. If the
     * refCount is now 1 it means that the last reference to the standard
     * channel is being explicitly closed, so bump the refCount down
     * artificially to 0. This will ensure that the channel is actually
     * closed, below. Also set the static pointer to NULL for the channel.
     */

    CheckForStdChannelsBeingClosed(chan);

    /*
     * If the refCount reached zero, close the actual channel.
     */

    if (statePtr->refCount <= 0) {

        /*
         * Ensure that if there is another buffer, it gets flushed
         * whether or not we are doing a background flush.
         */

        if ((statePtr->curOutPtr != NULL) &&
                (statePtr->curOutPtr->nextAdded >
                        statePtr->curOutPtr->nextRemoved)) {
            statePtr->flags |= BUFFER_READY;
        }
        statePtr->flags |= CHANNEL_CLOSED;
        if (!(statePtr->flags & BG_FLUSH_SCHEDULED)) {
            if (Tcl_Close(interp, chan) != TCL_OK) {
                return TCL_ERROR;
            }
        }
    }
    return TCL_OK;
}
1197
1198
1199
1200
1201
1202
1203
1204
1205
1206
1207
1208
1209
1210
1211
1212
1213
1214
1215
1216
1217
1218
1219
1220
1221
1222






1223

1224
1225
1226
1227
1228
1229
1230
1231
1232
     * have access to the standard channels.
     */

    name = chanName;
    if ((chanName[0] == 's') && (chanName[1] == 't')) {
	chanPtr = NULL;
	if (strcmp(chanName, "stdin") == 0) {
	    chanPtr = (Channel *)Tcl_GetStdChannel(TCL_STDIN);
	} else if (strcmp(chanName, "stdout") == 0) {
	    chanPtr = (Channel *)Tcl_GetStdChannel(TCL_STDOUT);
	} else if (strcmp(chanName, "stderr") == 0) {
	    chanPtr = (Channel *)Tcl_GetStdChannel(TCL_STDERR);
	}
	if (chanPtr != NULL) {
	    name = chanPtr->channelName;
	}
    }
    
    hTblPtr = GetChannelTable(interp);
    hPtr = Tcl_FindHashEntry(hTblPtr, name);
    if (hPtr == (Tcl_HashEntry *) NULL) {
        Tcl_AppendResult(interp, "can not find channel named \"",
                chanName, "\"", (char *) NULL);
        return NULL;
    }







    chanPtr = (Channel *) Tcl_GetHashValue(hPtr);

    if (modePtr != NULL) {
        *modePtr = (chanPtr->flags & (TCL_READABLE|TCL_WRITABLE));
    }
    
    return (Tcl_Channel) chanPtr;
}

/*
 *----------------------------------------------------------------------







|

|

|


|


|








>
>
>
>
>
>

>

|







878
879
880
881
882
883
884
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     * have access to the standard channels.
     */

    name = chanName;
    if ((chanName[0] == 's') && (chanName[1] == 't')) {
	chanPtr = NULL;
	if (strcmp(chanName, "stdin") == 0) {
	    chanPtr = (Channel *) Tcl_GetStdChannel(TCL_STDIN);
	} else if (strcmp(chanName, "stdout") == 0) {
	    chanPtr = (Channel *) Tcl_GetStdChannel(TCL_STDOUT);
	} else if (strcmp(chanName, "stderr") == 0) {
	    chanPtr = (Channel *) Tcl_GetStdChannel(TCL_STDERR);
	}
	if (chanPtr != NULL) {
	    name = chanPtr->state->channelName;
	}
    }

    hTblPtr = GetChannelTable(interp);
    hPtr = Tcl_FindHashEntry(hTblPtr, name);
    if (hPtr == (Tcl_HashEntry *) NULL) {
        Tcl_AppendResult(interp, "can not find channel named \"",
                chanName, "\"", (char *) NULL);
        return NULL;
    }

    /*
     * Always return bottom-most channel in the stack.  This one lives
     * the longest - other channels may go away unnoticed.
     * The other APIs compensate where necessary to retrieve the
     * topmost channel again.
     */
    chanPtr = (Channel *) Tcl_GetHashValue(hPtr);
    chanPtr = chanPtr->state->bottomChanPtr;
    if (modePtr != NULL) {
        *modePtr = (chanPtr->state->flags & (TCL_READABLE|TCL_WRITABLE));
    }
    
    return (Tcl_Channel) chanPtr;
}

/*
 *----------------------------------------------------------------------
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    Tcl_ChannelType *typePtr;	/* The channel type record. */
    char *chanName;		/* Name of channel to record. */
    ClientData instanceData;	/* Instance specific data. */
    int mask;			/* TCL_READABLE & TCL_WRITABLE to indicate
                                 * if the channel is readable, writable. */
{
    Channel *chanPtr;		/* The channel structure newly created. */


    CONST char *name;
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);

    chanPtr = (Channel *) ckalloc((unsigned) sizeof(Channel));


    








    if (chanName != (char *) NULL) {
        chanPtr->channelName = ckalloc((unsigned) (strlen(chanName) + 1));
        strcpy(chanPtr->channelName, chanName);
    } else {
        panic("Tcl_CreateChannel: NULL channel name");
    }

    chanPtr->flags = mask;

    /*
     * Set the channel to system default encoding.
     */

    chanPtr->encoding = NULL;
    name = Tcl_GetEncodingName(NULL);
    if (strcmp(name, "binary") != 0) {
    	chanPtr->encoding = Tcl_GetEncoding(NULL, name);
    }
    chanPtr->inputEncodingState = NULL;
    chanPtr->inputEncodingFlags = TCL_ENCODING_START;
    chanPtr->outputEncodingState = NULL;
    chanPtr->outputEncodingFlags = TCL_ENCODING_START;

    /*
     * Set the channel up initially in AUTO input translation mode to
     * accept "\n", "\r" and "\r\n". Output translation mode is set to
     * a platform specific default value. The eofChar is set to 0 for both
     * input and output, so that Tcl does not look for an in-file EOF
     * indicator (e.g. ^Z) and does not append an EOF indicator to files.
     */

    chanPtr->inputTranslation = TCL_TRANSLATE_AUTO;
    chanPtr->outputTranslation = TCL_PLATFORM_TRANSLATION;
    chanPtr->inEofChar = 0;
    chanPtr->outEofChar = 0;

    chanPtr->unreportedError = 0;
    chanPtr->instanceData = instanceData;
    chanPtr->typePtr = typePtr;
    chanPtr->refCount = 0;
    chanPtr->closeCbPtr = (CloseCallback *) NULL;
    chanPtr->curOutPtr = (ChannelBuffer *) NULL;
    chanPtr->outQueueHead = (ChannelBuffer *) NULL;
    chanPtr->outQueueTail = (ChannelBuffer *) NULL;
    chanPtr->saveInBufPtr = (ChannelBuffer *) NULL;
    chanPtr->inQueueHead = (ChannelBuffer *) NULL;
    chanPtr->inQueueTail = (ChannelBuffer *) NULL;
    chanPtr->chPtr = (ChannelHandler *) NULL;
    chanPtr->interestMask = 0;
    chanPtr->scriptRecordPtr = (EventScriptRecord *) NULL;
    chanPtr->bufSize = CHANNELBUFFER_DEFAULT_SIZE;
    chanPtr->timer = NULL;
    chanPtr->csPtr = NULL;
    chanPtr->supercedes = (Channel*) NULL;

    chanPtr->outputStage = NULL;
    if ((chanPtr->encoding != NULL) && (chanPtr->flags & TCL_WRITABLE)) {
	chanPtr->outputStage = (char *)
	    ckalloc((unsigned) (chanPtr->bufSize + 2));
    }











    /*
     * Link the channel into the list of all channels; create an on-exit
     * handler if there is not one already, to close off all the channels
     * in the list on exit.
     */

    chanPtr->nextChanPtr = tsdPtr->firstChanPtr;
    tsdPtr->firstChanPtr = chanPtr;

    /*
     * Install this channel in the first empty standard channel slot, if
     * the channel was previously closed explicitly.
     */

    if ((tsdPtr->stdinChannel == NULL) && (tsdPtr->stdinInitialized == 1)) {

	Tcl_SetStdChannel((Tcl_Channel)chanPtr, TCL_STDIN);
        Tcl_RegisterChannel((Tcl_Interp *) NULL, (Tcl_Channel) chanPtr);
    } else if ((tsdPtr->stdoutChannel == NULL) && (tsdPtr->stdoutInitialized == 1)) {

	Tcl_SetStdChannel((Tcl_Channel)chanPtr, TCL_STDOUT);
        Tcl_RegisterChannel((Tcl_Interp *) NULL, (Tcl_Channel) chanPtr);
    } else if ((tsdPtr->stderrChannel == NULL) && (tsdPtr->stderrInitialized == 1)) {

	Tcl_SetStdChannel((Tcl_Channel)chanPtr, TCL_STDERR);
        Tcl_RegisterChannel((Tcl_Interp *) NULL, (Tcl_Channel) chanPtr);
    } 
    return (Tcl_Channel) chanPtr;
}

/*
 *----------------------------------------------------------------------







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    Tcl_ChannelType *typePtr;	/* The channel type record. */
    char *chanName;		/* Name of channel to record. */
    ClientData instanceData;	/* Instance specific data. */
    int mask;			/* TCL_READABLE & TCL_WRITABLE to indicate
                                 * if the channel is readable, writable. */
{
    Channel *chanPtr;		/* The channel structure newly created. */
    ChannelState *statePtr;	/* The stack-level independent state info
				 * for the channel. */
    CONST char *name;
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);

    chanPtr  = (Channel *) ckalloc((unsigned) sizeof(Channel));
    statePtr = (ChannelState *) ckalloc((unsigned) sizeof(ChannelState));
    chanPtr->state = statePtr;

    chanPtr->instanceData	= instanceData;
    chanPtr->typePtr		= typePtr;

    /*
     * Set all the bits that are part of the stack-independent state
     * information for the channel.
     */

    if (chanName != (char *) NULL) {
        statePtr->channelName = ckalloc((unsigned) (strlen(chanName) + 1));
        strcpy(statePtr->channelName, chanName);
    } else {
        panic("Tcl_CreateChannel: NULL channel name");
    }

    statePtr->flags		= mask;

    /*
     * Set the channel to system default encoding.
     */

    statePtr->encoding = NULL;
    name = Tcl_GetEncodingName(NULL);
    if (strcmp(name, "binary") != 0) {
    	statePtr->encoding = Tcl_GetEncoding(NULL, name);
    }
    statePtr->inputEncodingState	= NULL;
    statePtr->inputEncodingFlags	= TCL_ENCODING_START;
    statePtr->outputEncodingState	= NULL;
    statePtr->outputEncodingFlags	= TCL_ENCODING_START;

    /*
     * Set the channel up initially in AUTO input translation mode to
     * accept "\n", "\r" and "\r\n". Output translation mode is set to
     * a platform specific default value. The eofChar is set to 0 for both
     * input and output, so that Tcl does not look for an in-file EOF
     * indicator (e.g. ^Z) and does not append an EOF indicator to files.
     */

    statePtr->inputTranslation	= TCL_TRANSLATE_AUTO;
    statePtr->outputTranslation	= TCL_PLATFORM_TRANSLATION;
    statePtr->inEofChar		= 0;
    statePtr->outEofChar	= 0;

    statePtr->unreportedError	= 0;


    statePtr->refCount		= 0;
    statePtr->closeCbPtr	= (CloseCallback *) NULL;
    statePtr->curOutPtr		= (ChannelBuffer *) NULL;
    statePtr->outQueueHead	= (ChannelBuffer *) NULL;
    statePtr->outQueueTail	= (ChannelBuffer *) NULL;
    statePtr->saveInBufPtr	= (ChannelBuffer *) NULL;
    statePtr->inQueueHead	= (ChannelBuffer *) NULL;
    statePtr->inQueueTail	= (ChannelBuffer *) NULL;
    statePtr->chPtr		= (ChannelHandler *) NULL;
    statePtr->interestMask	= 0;
    statePtr->scriptRecordPtr	= (EventScriptRecord *) NULL;
    statePtr->bufSize		= CHANNELBUFFER_DEFAULT_SIZE;
    statePtr->timer		= NULL;
    statePtr->csPtr		= NULL;


    statePtr->outputStage	= NULL;
    if ((statePtr->encoding != NULL) && (statePtr->flags & TCL_WRITABLE)) {
	statePtr->outputStage = (char *)
	    ckalloc((unsigned) (statePtr->bufSize + 2));
    }

    /*
     * As we are creating the channel, it is obviously the top for now
     */
    statePtr->topChanPtr	= chanPtr;
    statePtr->bottomChanPtr	= chanPtr;
    chanPtr->downChanPtr	= (Channel *) NULL;
    chanPtr->upChanPtr		= (Channel *) NULL;
    chanPtr->inQueueHead        = (ChannelBuffer*) NULL;
    chanPtr->inQueueTail        = (ChannelBuffer*) NULL;

    /*
     * Link the channel into the list of all channels; create an on-exit
     * handler if there is not one already, to close off all the channels
     * in the list on exit.
     */

    statePtr->nextCSPtr  = tsdPtr->firstCSPtr;
    tsdPtr->firstCSPtr   = statePtr;

    /*
     * Install this channel in the first empty standard channel slot, if
     * the channel was previously closed explicitly.
     */

    if ((tsdPtr->stdinChannel == NULL) &&
	    (tsdPtr->stdinInitialized == 1)) {
	Tcl_SetStdChannel((Tcl_Channel) chanPtr, TCL_STDIN);
        Tcl_RegisterChannel((Tcl_Interp *) NULL, (Tcl_Channel) chanPtr);
    } else if ((tsdPtr->stdoutChannel == NULL) &&
	    (tsdPtr->stdoutInitialized == 1)) {
	Tcl_SetStdChannel((Tcl_Channel) chanPtr, TCL_STDOUT);
        Tcl_RegisterChannel((Tcl_Interp *) NULL, (Tcl_Channel) chanPtr);
    } else if ((tsdPtr->stderrChannel == NULL) &&
	    (tsdPtr->stderrInitialized == 1)) {
	Tcl_SetStdChannel((Tcl_Channel) chanPtr, TCL_STDERR);
        Tcl_RegisterChannel((Tcl_Interp *) NULL, (Tcl_Channel) chanPtr);
    } 
    return (Tcl_Channel) chanPtr;
}

/*
 *----------------------------------------------------------------------
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 *    replaced by the new typePtr.
 *
 *----------------------------------------------------------------------
 */

Tcl_Channel
Tcl_StackChannel(interp, typePtr, instanceData, mask, prevChan)
    Tcl_Interp*      interp;       /* The interpreter we are working in */
    Tcl_ChannelType *typePtr;	   /* The channel type record for the new
				    * channel. */
    ClientData       instanceData; /* Instance specific data for the new
				    * channel. */
    int              mask;	   /* TCL_READABLE & TCL_WRITABLE to indicate
				    * if the channel is readable, writable. */
    Tcl_Channel      prevChan;	   /* The channel structure to replace */
{
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);
    Channel            *chanPtr, *pt;
    int                 interest = 0;

    /*
     * AK, 06/30/1999
     *
     * Tcl_StackChannel differs from Tcl_ReplaceChannel of the
     * original "Trf" patch. Instead of seeing the
     * newly created structure as the *new* channel to cover the specified
     * one use it to *save* the current state of the specified channel and
     * then reinitialize the current structure for the given transformation.

     *
     * Advantages:
     * - No splicing into the (thread-)global list of channels (or the per-
     *   interp hash-tables).
     * - Users of the C-API still have valid channel references even after
     *   the call to this procedure.
     *
     * Disadvantages:
     * - Untested code.
     */

    /*
     * Find the given channel in the list of all channels.
     */

    pt     = (Channel*) tsdPtr->firstChanPtr;


    while (pt != (Channel *) prevChan) {
	pt = pt->nextChanPtr;
    }

    /*
     * 'pt == prevChan' now (or NULL, if not found).
     */

    if (!pt) {

        return (Tcl_Channel) NULL;
    }

    /*
     * Here we check if the given "mask" matches the "flags"
     * of the already existing channel.
     *
     *	  | - | R | W | RW |
     *	--+---+---+---+----+	<=>  0 != (chan->mask & prevChan->mask)
     *	- |   |   |   |    |
     *	R |   | + |   | +  |	The superceding channel is allowed to
     *	W |   |   | + | +  |	restrict the capabilities of the
     *	RW|   | + | + | +  |	superceded one !
     *	--+---+---+---+----+
     */




    if ((mask & Tcl_GetChannelMode (prevChan)) == 0) {
        return (Tcl_Channel) NULL;
    }







    chanPtr = (Channel *) ckalloc((unsigned) sizeof(Channel));















    /*

     * If there is some interest in the channel, remove it, break










     * down the whole chain. It will be reconstructed later.
     */







    interest = pt->interestMask;




    pt->interestMask = 0;

    if (interest) {
        (pt->typePtr->watchProc) (pt->instanceData, 0);

    }



    /*
     * Save some of the current state into the new structure,
     * reinitialize the parts which will stay with the transformation.
     *
     * Remarks:
     * - We cannot discard the buffers, and they cannot be used from the
     *   transformation placed later into the 'pt' structure. Save them,
     *   and believe that Tcl_SetChannelOption (buffering, none) will do
     *   the right thing.
     * - encoding and EOL-translation control information is initialized
     *   to values for 'binary'. This is later reinforced via
     *   Tcl_SetChanneloption to get the handling of flags and the event
     *   system right.
     * - The 'interestMask' of the saved channel is cleared, but the
     *   transformations WatchProc is used to establish the connection
     *   between transformation and underlying channel. This should
     *   reestablish the correct mask.
     * - TTO = Transform Takes Over.   The hidden channel no longer
     *         needs to perform this function.
     */

    chanPtr->channelName = (char *) ckalloc (strlen(pt->channelName)+1);
    strcpy (chanPtr->channelName, pt->channelName);

    chanPtr->flags               = pt->flags;           /* Save */

    chanPtr->encoding            = (Tcl_Encoding) NULL; /* == 'binary' */
    chanPtr->inputEncodingState  = (Tcl_EncodingState) NULL;
    chanPtr->inputEncodingFlags  = TCL_ENCODING_START;
    chanPtr->outputEncodingState = (Tcl_EncodingState) NULL;
    chanPtr->outputEncodingFlags = TCL_ENCODING_START;

    chanPtr->inputTranslation    = TCL_TRANSLATE_LF; /* == 'binary' */
    chanPtr->outputTranslation   = TCL_TRANSLATE_LF; /* == 'binary' */
    chanPtr->inEofChar           = pt->inEofChar;         /* Save */
    chanPtr->outEofChar          = pt->outEofChar;        /* Save */

    chanPtr->unreportedError     = pt->unreportedError;   /* Save */
    chanPtr->instanceData        = pt->instanceData;      /* Save */
    chanPtr->typePtr             = pt->typePtr;           /* Save */
    chanPtr->refCount            = 0;   /* None, as the structure is covered */
    chanPtr->closeCbPtr          = (CloseCallback*) NULL; /* TTO */

    chanPtr->outputStage         = (char*) NULL;
    chanPtr->curOutPtr           = pt->curOutPtr;    /* Save */
    chanPtr->outQueueHead        = pt->outQueueHead; /* Save */
    chanPtr->outQueueTail        = pt->outQueueTail; /* Save */
    chanPtr->saveInBufPtr        = pt->saveInBufPtr; /* Save */
    chanPtr->inQueueHead         = pt->inQueueHead;  /* Save */
    chanPtr->inQueueTail         = pt->inQueueTail;  /* Save */

    chanPtr->chPtr               = (ChannelHandler *) NULL;  /* TTO */
    chanPtr->interestMask        = 0;
    chanPtr->nextChanPtr         = (Channel*) NULL;     /* Is not in list! */
    chanPtr->scriptRecordPtr     = (EventScriptRecord *) NULL; /* TTO */
    chanPtr->bufSize             = CHANNELBUFFER_DEFAULT_SIZE;
    chanPtr->timer               = (Tcl_TimerToken) NULL;      /* TTO */
    chanPtr->csPtr               = (CopyState*) NULL;          /* TTO */

    /*
     * Place new block at the head of a possibly existing list of previously
     * stacked channels, then do the missing initializations of translation
     * and buffer system.
     */

    chanPtr->supercedes          = pt->supercedes;

    Tcl_SetChannelOption (interp, (Tcl_Channel) chanPtr,
	    "-translation", "binary");
    Tcl_SetChannelOption (interp, (Tcl_Channel) chanPtr,
	    "-buffering",   "none");

    /*
     * Save accomplished, now reinitialize the (old) structure for the
     * transformation.
     *
     * - The information about encoding and eol-translation is taken
     *   without change.  There is no need to fiddle with
     *   refCount et. al.
     *
     * Don't forget to use the same blocking mode as the old channel.
     */

    pt->flags               = mask | (chanPtr->flags & CHANNEL_NONBLOCKING);

    /*
     * EDITORS NOTE:  all the lines with "take it as is" should get
     * deleted once this code has been debugged.
     */

    /* pt->encoding,            take it as is */
    /* pt->inputEncodingState,  take it as is */
    /* pt->inputEncodingFlags,  take it as is */
    /* pt->outputEncodingState, take it as is */
    /* pt->outputEncodingFlags, take it as is */

    /* pt->inputTranslation,    take it as is */
    /* pt->outputTranslation,   take it as is */

    /*
     * No special EOF character, that condition is determined by the
     * old channel
     */

    pt->inEofChar           = 0;
    pt->outEofChar          = 0;

    pt->unreportedError     = 0; /* No errors yet */
    pt->instanceData        = instanceData; /* Transformation state */
    pt->typePtr             = typePtr;      /* Transformation type */
    /* pt->refCount,            take it as it is */
    /* pt->closeCbPtr,          take it as it is */

    /* pt->outputStage,         take it as it is */
    pt->curOutPtr           = (ChannelBuffer *) NULL;
    pt->outQueueHead        = (ChannelBuffer *) NULL;
    pt->outQueueTail        = (ChannelBuffer *) NULL;
    pt->saveInBufPtr        = (ChannelBuffer *) NULL;
    pt->inQueueHead         = (ChannelBuffer *) NULL;
    pt->inQueueTail         = (ChannelBuffer *) NULL;

    /* pt->chPtr,               take it as it is */
    /* pt->interestMask,        take it as it is */
    /* pt->nextChanPtr,         take it as it is */
    /* pt->scriptRecordPtr,     take it as it is */
    pt->bufSize             = CHANNELBUFFER_DEFAULT_SIZE;
    /* pt->timer,               take it as it is */
    /* pt->csPtr,               take it as it is */

    /*
     * Have the transformation reference the new structure containing
     * the saved channel.
     */

    pt->supercedes          = chanPtr;

    /*
     * Don't forget to reinitialize the output buffer used for encodings.
     */

    if ((chanPtr->encoding != NULL) && (chanPtr->flags & TCL_WRITABLE)) {
        chanPtr->outputStage = (char *)
	    ckalloc((unsigned) (chanPtr->bufSize + 2));
    }

    /*
     * Event handling: If the information in the old channel shows
     * that there was interest in some events call the 'WatchProc'
     * of the transformation to establish the proper connection
     * between them.
     */

    if (interest) {
        (pt->typePtr->watchProc) (pt->instanceData, interest);
    }

    /*
     * The superceded channel is effectively unregistered
     * We cannot decrement its reference count because that
     * can cause it to get garbage collected out from under us.
     * Don't add the following code:
     *
     * chanPtr->supercedes->refCount --;
     */

    return (Tcl_Channel) chanPtr;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_UnstackChannel --
 *
 *	Unstacks an entry in the hash table for a Tcl_Channel
 *	record. This is the reverse to 'Tcl_StackChannel'.
 *	The old, superceded channel is uncovered and re-registered
 *	in the appropriate data structures.
 *
 * Results:
 *	Returns the old Tcl_Channel, i.e. the one which was stacked over.

 *
 * Side effects:

 *	See above.
 *
 *----------------------------------------------------------------------
 */

void
Tcl_UnstackChannel (interp, chan)
    Tcl_Interp* interp; /* The interpreter we are working in */
    Tcl_Channel chan;   /* The channel to unstack */
{



    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);



    Channel* chanPtr = (Channel*) chan;


    if (chanPtr->supercedes != (Channel*) NULL) {
        /*
	 * Instead of manipulating the per-thread / per-interp list/hashtable
	 * of registered channels we wind down the state of the transformation,
	 * and then restore the state of underlying channel into the old
	 * structure.
	 */

	Tcl_DString       dsTrans; /* storage to save option information */
	Tcl_DString       dsBuf;   /* storage to save option information */
	Channel           top;     /* Save area for current transformation */
	Channel*          chanDownPtr = chanPtr->supercedes;
	int               interest;	/* interest mask of transformation
					 * before destruct. */
	int               saveInputEncodingFlags;  /* Save area for encoding */
 	int               saveOutputEncodingFlags; /* related information */
	Tcl_EncodingState saveInputEncodingState;
	Tcl_EncodingState saveOutputEncodingState;
	Tcl_Encoding      saveEncoding;

	/*
	 * Event handling: Disallow the delivery of events from the

	 * old, now uncovered channel to the transformation.
	 *
	 * This is done before everything else to avoid problems
	 * after our heavy-duty shuffling of pointers around.



	 */

	interest = chanPtr->interestMask;
        (chanPtr->typePtr->watchProc) (chanPtr->instanceData, 0);

	/* 1. Swap the information in the top channel (the transformation)
	 *    and the channel below, with some exceptions. This additionally
	 *    cuts the top channel out of the chain. Without the latter
	 *    a Tcl_Close on the transformation would be impossible, as that
	 *    procedure will free the structure, making 'top' unusable.
	 *
	 * chanPtr     -> top channel, transformation.
	 * chanDownPtr -> channel immediately below the transformation.
	 */


	memcpy ((void*) &top,        (void*) chanPtr,     sizeof (Channel));


	memcpy ((void*) chanPtr,     (void*) chanDownPtr, sizeof (Channel));
	top.supercedes = (Channel*) NULL;
	memcpy ((void*) chanDownPtr, (void*) &top,        sizeof (Channel));


	/* Now:
 	 * chanPtr     -> channel immediately below the transformation, now top
 	 * chanDownPtr -> transformation, cut loose.
 	 *
 	 * Handle the exceptions mentioned above, i.e. move the information
 	 * from the transformation into the new top, and reinitialize it to
 	 * safe values in the transformation.
 	 */

	chanPtr->refCount        = chanDownPtr->refCount;
	chanPtr->closeCbPtr      = chanDownPtr->closeCbPtr;
	chanPtr->chPtr           = chanDownPtr->chPtr;
	chanPtr->nextChanPtr     = chanDownPtr->nextChanPtr;
	chanPtr->scriptRecordPtr = chanDownPtr->scriptRecordPtr;
	chanPtr->timer           = chanDownPtr->timer;
	chanPtr->csPtr           = chanDownPtr->csPtr;

	chanDownPtr->refCount        = 0;
	chanDownPtr->closeCbPtr      = (CloseCallback*) NULL;
	chanDownPtr->chPtr           = (ChannelHandler*) NULL;
	chanDownPtr->nextChanPtr     = (Channel*) NULL;
	chanDownPtr->scriptRecordPtr = (EventScriptRecord*) NULL;
	chanDownPtr->timer           = (Tcl_TimerToken) NULL;
	chanDownPtr->csPtr           = (CopyState*) NULL;

	/* The now uncovered channel still has encoding and eol-translation
	 * deactivated, i.e. switched to 'binary'. *Don't* touch this until

	 * after the transformation is closed for good, as it may write
	 * information into it during that (-> flushing of data waiting in
	 * internal buffers!) and rely on these settings. Thanks to Matt
	 * Newman <matt@sensus.org> for finding this goof.
	 *

	 * But we also have to protect the state of the encoding from removal
	 * during the close. So we save it in some local variables.
	 * Additionally the current value of the options is lost after we

	 * close, we have to save them now.

	 */

 	saveEncoding            = chanDownPtr->encoding;
 	saveInputEncodingState  = chanDownPtr->inputEncodingState;
 	saveInputEncodingFlags  = chanDownPtr->inputEncodingFlags;
 	saveOutputEncodingState = chanDownPtr->outputEncodingState;
 	saveOutputEncodingFlags = chanDownPtr->outputEncodingFlags;

 	Tcl_DStringInit (&dsTrans);
 	Tcl_GetChannelOption (interp, (Tcl_Channel) chanDownPtr,




		"-translation", &dsTrans);

 	Tcl_DStringInit (&dsBuf);
 	Tcl_GetChannelOption (interp, (Tcl_Channel) chanDownPtr,
		"-buffering", &dsBuf);

	/*
	 * Prevent the accidential removal of the encoding during
	 * the destruction of the transformation channel.
	 */

	chanDownPtr->encoding            = (Tcl_Encoding) NULL;
	chanDownPtr->inputEncodingState  = (Tcl_EncodingState) NULL;
	chanDownPtr->inputEncodingFlags  = TCL_ENCODING_START;
	chanDownPtr->outputEncodingState = (Tcl_EncodingState) NULL;
	chanDownPtr->outputEncodingFlags = TCL_ENCODING_START;

	/*
	 * A little trick: Add the transformation structure to the
	 * per-thread list of existing channels (which it never were
	 * part of so far), or Tcl_Close/FlushChannel will panic
	 * ("damaged channel list").
	 *
	 * Afterward do a regular close upon the transformation.
	 * This may cause flushing of data into the old channel (if the
	 * transformation remembered its own channel in itself).


	 *
	 * We know that its refCount dropped to 0.
	 */


	chanDownPtr->nextChanPtr = tsdPtr->firstChanPtr;
	tsdPtr->firstChanPtr     = chanDownPtr;


	Tcl_Close (interp, (Tcl_Channel)chanDownPtr);

	/*
	 * Now it is possible to wind down the transformation (in 'top'),
	 * especially to copy the current encoding and translation control

	 * information down.
	 */
	
	/*


	 * Move the currently active encoding from the save area
	 * to the now uncovered channel. We assume here that this
	 * channel uses 'encoding binary' (==> encoding == NULL, etc.
	 * This allows us to simply copy the pointers without having to
	 * think about refcounts and deallocation of the old encoding.
	 *
	 * And don't forget to reenable the EOL-translation used by the
	 * transformation. Using a DString to do this *is* a bit awkward,
	 * but still the best way to handle the complexities here, like
	 * flag manipulation and event system.
	 */

	chanPtr->encoding            = saveEncoding;
	chanPtr->inputEncodingState  = saveInputEncodingState;
	chanPtr->inputEncodingFlags  = saveInputEncodingFlags;
	chanPtr->outputEncodingState = saveOutputEncodingState;
	chanPtr->outputEncodingFlags = saveOutputEncodingFlags;

	Tcl_SetChannelOption (interp, (Tcl_Channel) chanPtr,
		"-translation", dsTrans.string);


	Tcl_SetChannelOption (interp, (Tcl_Channel) chanPtr,
		"-buffering", dsBuf.string);

	Tcl_DStringFree (&dsTrans);
	Tcl_DStringFree (&dsBuf);


	/*
	 * Event handling: If the information from the now destroyed
	 * transformation shows that there was interest in some events
	 * call the 'WatchProc' of the now uncovered channel to renew
	 * that interest with underlying channels or the driver.
	 */

	if (interest) {
	    chanPtr->interestMask = 0;
	    (chanPtr->typePtr->watchProc) (chanPtr->instanceData,
		    interest);
	    chanPtr->interestMask = interest;
	}




    } else {

        /* This channel does not cover another one.
	 * Simply do a close, if necessary.
	 */

        if (chanPtr->refCount <= 0) {
	    Tcl_Close (interp, chan);

	}
    }



}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetStackedChannel --
 *
 *	Determines wether the specified channel is stacked upon another.
 *
 * Results:
 *	NULL if the channel is not stacked upon another one, or a reference
 *	to the channel it is stacked upon. This reference can be used in
 *	queries, but modification is not allowed.
 *
 * Side effects:
 *	None.
 *
 *----------------------------------------------------------------------
 */

Tcl_Channel
Tcl_GetStackedChannel(chan)
    Tcl_Channel chan;
{
    Channel* chanPtr = (Channel*) chan;

    return (Tcl_Channel) chanPtr->supercedes;













































































}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetChannelMode --
 *







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 *    replaced by the new typePtr.
 *
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 */

Tcl_Channel
Tcl_StackChannel(interp, typePtr, instanceData, mask, prevChan)
    Tcl_Interp	    *interp;	   /* The interpreter we are working in */
    Tcl_ChannelType *typePtr;	   /* The channel type record for the new
				    * channel. */
    ClientData	     instanceData; /* Instance specific data for the new
				    * channel. */
    int		     mask;	   /* TCL_READABLE & TCL_WRITABLE to indicate
				    * if the channel is readable, writable. */
    Tcl_Channel	     prevChan;	   /* The channel structure to replace */
{
    ThreadSpecificData	*tsdPtr = TCL_TSD_INIT(&dataKey);
    Channel		*chanPtr, *prevChanPtr;
    ChannelState	*statePtr;

    /*






     * Find the given channel in the list of all channels.
     * If we don't find it, then it was never registered correctly.
     *









     * This operation should occur at the top of a channel stack.


     */

    statePtr    = (ChannelState *) tsdPtr->firstCSPtr;
    prevChanPtr = ((Channel *) prevChan)->state->topChanPtr;

    while (statePtr->topChanPtr != prevChanPtr) {
	statePtr = statePtr->nextCSPtr;
    }


    if (statePtr == NULL) {

	Tcl_AppendResult(interp, "couldn't find state for channel \"",

		Tcl_GetChannelName(prevChan), "\"", (char *) NULL);
        return (Tcl_Channel) NULL;
    }

    /*
     * Here we check if the given "mask" matches the "flags"
     * of the already existing channel.
     *
     *	  | - | R | W | RW |
     *	--+---+---+---+----+	<=>  0 != (chan->mask & prevChan->mask)
     *	- |   |   |   |    |
     *	R |   | + |   | +  |	The superceding channel is allowed to
     *	W |   |   | + | +  |	restrict the capabilities of the
     *	RW|   | + | + | +  |	superceded one !
     *	--+---+---+---+----+
     */

    if ((mask & (statePtr->flags & (TCL_READABLE | TCL_WRITABLE))) == 0) {
	Tcl_AppendResult(interp,
		"reading and writing both disallowed for channel \"",
		Tcl_GetChannelName(prevChan), "\"", (char *) NULL);
        return (Tcl_Channel) NULL;
    }

    /*
     * Flush the buffers. This ensures that any data still in them
     * at this time is not handled by the new transformation. Restrict
     * this to writable channels. Take care to hide a possible bg-copy
     * in progress from Tcl_Flush and the CheckForChannelErrors inside.
     */

    if ((mask & TCL_WRITABLE) != 0) {
        CopyState *csPtr;

        csPtr           = statePtr->csPtr;
	statePtr->csPtr = (CopyState*) NULL;

	if (Tcl_Flush((Tcl_Channel) prevChanPtr) != TCL_OK) {
	    statePtr->csPtr = csPtr;
	    Tcl_AppendResult(interp, "could not flush channel \"",
		    Tcl_GetChannelName(prevChan), "\"", (char *) NULL);
	    return (Tcl_Channel) NULL;
	}

	statePtr->csPtr = csPtr;
    }
    /*
     * Discard any input in the buffers. They are not yet read by the
     * user of the channel, so they have to go through the new
     * transformation before reading. As the buffers contain the
     * untransformed form their contents are not only useless but actually
     * distorts our view of the system.
     *
     * To preserve the information without having to read them again and
     * to avoid problems with the location in the channel (seeking might
     * be impossible) we move the buffers from the common state structure
     * into the channel itself. We use the buffers in the channel below
     * the new transformation to hold the data. In the future this allows
     * us to write transformations which pre-read data and push the unused
     * part back when they are going away.
     */

    if (((mask & TCL_READABLE) != 0) &&
	(statePtr->inQueueHead != (ChannelBuffer*) NULL)) {
      /*
       * Remark: It is possible that the channel buffers contain data from
       * some earlier push-backs.
       */

      statePtr->inQueueTail->nextPtr = prevChanPtr->inQueueHead;
      prevChanPtr->inQueueHead       = statePtr->inQueueHead;

      if (prevChanPtr->inQueueTail == (ChannelBuffer*) NULL) {
	prevChanPtr->inQueueTail = statePtr->inQueueTail;
      }

      statePtr->inQueueHead          = (ChannelBuffer*) NULL;
      statePtr->inQueueTail          = (ChannelBuffer*) NULL;
    }

    chanPtr = (Channel *) ckalloc((unsigned) sizeof(Channel));

    /*
     * Save some of the current state into the new structure,
     * reinitialize the parts which will stay with the transformation.
     *
     * Remarks:














     */



    chanPtr->state		= statePtr;














    chanPtr->instanceData	= instanceData;
    chanPtr->typePtr		= typePtr;


    chanPtr->downChanPtr	= prevChanPtr;
    chanPtr->upChanPtr		= (Channel *) NULL;




    chanPtr->inQueueHead        = (ChannelBuffer*) NULL;
    chanPtr->inQueueTail        = (ChannelBuffer*) NULL;









    /*
     * Place new block at the head of a possibly existing list of previously
     * stacked channels.

     */


    prevChanPtr->upChanPtr	= chanPtr;




    statePtr->topChanPtr	= chanPtr;





























































































    return (Tcl_Channel) chanPtr;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_UnstackChannel --
 *
 *	Unstacks an entry in the hash table for a Tcl_Channel
 *	record. This is the reverse to 'Tcl_StackChannel'.


 *
 * Results:

 *	A standard Tcl result.
 *
 * Side effects:
 *	If TCL_ERROR is returned, the posix error code will be set
 *	with Tcl_SetErrno.
 *
 *----------------------------------------------------------------------
 */

int
Tcl_UnstackChannel (interp, chan)
    Tcl_Interp *interp; /* The interpreter we are working in */
    Tcl_Channel chan;   /* The channel to unstack */
{
    Channel      *chanPtr  = (Channel *) chan;
    ChannelState *statePtr = chanPtr->state;
    int result = 0;

    /*
     * This operation should occur at the top of a channel stack.
     */

    chanPtr = statePtr->topChanPtr;

    if (chanPtr->downChanPtr != (Channel *) NULL) {
        /*
	 * Instead of manipulating the per-thread / per-interp list/hashtable
	 * of registered channels we wind down the state of the transformation,
	 * and then restore the state of underlying channel into the old
	 * structure.
	 */
	Channel *downChanPtr = chanPtr->downChanPtr;












	/*

	 * Flush the buffers. This ensures that any data still in them
	 * at this time _is_ handled by the transformation we are unstacking



	 * right now. Restrict this to writable channels. Take care to hide
	 * a possible bg-copy in progress from Tcl_Flush and the
	 * CheckForChannelErrors inside.
	 */

	if (statePtr->flags & TCL_WRITABLE) {

	    CopyState*    csPtr;






	    csPtr           = statePtr->csPtr;


	    statePtr->csPtr = (CopyState*) NULL;

	    if (Tcl_Flush((Tcl_Channel) chanPtr) != TCL_OK) {
	        statePtr->csPtr = csPtr;
		Tcl_AppendResult(interp, "could not flush channel \"",
			Tcl_GetChannelName((Tcl_Channel) chanPtr), "\"",
			(char *) NULL);

		return TCL_ERROR;
	    }




	    statePtr->csPtr = csPtr;



	}















	/*


	 * Anything in the input queue and the push-back buffers of
	 * the transformation going away is transformed data, but not




	 * yet read. As unstacking means that the caller does not want
	 * to see transformed data any more we have to discard these


	 * bytes. To avoid writing an analogue to 'DiscardInputQueued'
	 * we move the information in the push back buffers to the
	 * input queue and then call 'DiscardInputQueued' on that.
	 */

	if (((statePtr->flags & TCL_READABLE)  != 0) &&
	    ((statePtr->inQueueHead != (ChannelBuffer*) NULL) ||
	     (chanPtr->inQueueHead  != (ChannelBuffer*) NULL))) {




	    if ((statePtr->inQueueHead != (ChannelBuffer*) NULL) &&
		(chanPtr->inQueueHead  != (ChannelBuffer*) NULL)) {
	        statePtr->inQueueTail->nextPtr = chanPtr->inQueueHead;
		statePtr->inQueueTail = chanPtr->inQueueTail;
	        statePtr->inQueueHead = statePtr->inQueueTail;





	    } else if (chanPtr->inQueueHead != (ChannelBuffer*) NULL) {




	        statePtr->inQueueHead = chanPtr->inQueueHead;


		statePtr->inQueueTail = chanPtr->inQueueTail;


	    }









	    chanPtr->inQueueHead          = (ChannelBuffer*) NULL;
	    chanPtr->inQueueTail          = (ChannelBuffer*) NULL;



	    DiscardInputQueued (statePtr, 0);
	}



	statePtr->topChanPtr	= downChanPtr;
	downChanPtr->upChanPtr	= (Channel *) NULL;

	/*


	 * Leave this link intact for closeproc
	 *  chanPtr->downChanPtr	= (Channel *) NULL;
	 */

	/*
	 * Close and free the channel driver state.
	 */











	if (chanPtr->typePtr->closeProc != TCL_CLOSE2PROC) {





	    result = (chanPtr->typePtr->closeProc)(chanPtr->instanceData,
		    interp);

	} else {
	    result = (chanPtr->typePtr->close2Proc)(chanPtr->instanceData,
		    interp, 0);

	}



	chanPtr->typePtr	= NULL;
	/*


	 * AK: Tcl_NotifyChannel may hold a reference to this block of memory

	 */
	Tcl_EventuallyFree((ClientData) chanPtr, TCL_DYNAMIC);



	UpdateInterest(downChanPtr);


	if (result != 0) {
	    Tcl_SetErrno(result);
	    return TCL_ERROR;
	}
    } else {
        /*
	 * This channel does not cover another one.
	 * Simply do a close, if necessary.
	 */

        if (statePtr->refCount <= 0) {
            if (Tcl_Close(interp, chan) != TCL_OK) {
                return TCL_ERROR;
            }
	}
    }

    return TCL_OK;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetStackedChannel --
 *
 *	Determines whether the specified channel is stacked upon another.
 *
 * Results:
 *	NULL if the channel is not stacked upon another one, or a reference
 *	to the channel it is stacked upon. This reference can be used in
 *	queries, but modification is not allowed.
 *
 * Side effects:
 *	None.
 *
 *----------------------------------------------------------------------
 */

Tcl_Channel
Tcl_GetStackedChannel(chan)
    Tcl_Channel chan;
{
    Channel *chanPtr = (Channel *) chan;	/* The actual channel. */

    return (Tcl_Channel) chanPtr->downChanPtr;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetTopChannel --
 *
 *	Returns the top channel of a channel stack.
 *
 * Results:
 *	NULL if the channel is not stacked upon another one, or a reference
 *	to the channel it is stacked upon. This reference can be used in
 *	queries, but modification is not allowed.
 *
 * Side effects:
 *	None.
 *
 *----------------------------------------------------------------------
 */

Tcl_Channel
Tcl_GetTopChannel(chan)
    Tcl_Channel chan;
{
    Channel *chanPtr = (Channel *) chan;	/* The actual channel. */

    return (Tcl_Channel) chanPtr->state->topChanPtr;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetChannelInstanceData --
 *
 *	Returns the client data associated with a channel.
 *
 * Results:
 *	The client data.
 *
 * Side effects:
 *	None.
 *
 *----------------------------------------------------------------------
 */

ClientData
Tcl_GetChannelInstanceData(chan)
    Tcl_Channel chan;		/* Channel for which to return client data. */
{
    Channel *chanPtr = (Channel *) chan;	/* The actual channel. */

    return chanPtr->instanceData;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetChannelType --
 *
 *	Given a channel structure, returns the channel type structure.
 *
 * Results:
 *	Returns a pointer to the channel type structure.
 *
 * Side effects:
 *	None.
 *
 *----------------------------------------------------------------------
 */

Tcl_ChannelType *
Tcl_GetChannelType(chan)
    Tcl_Channel chan;		/* The channel to return type for. */
{
    Channel *chanPtr = (Channel *) chan;	/* The actual channel. */

    return chanPtr->typePtr;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetChannelMode --
 *
1886
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1892

1893
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1895
1896
1897
1898
1899
1900
1901
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1903
 */

int
Tcl_GetChannelMode(chan)
    Tcl_Channel chan;		/* The channel for which the mode is
                                 * being computed. */
{

    Channel *chanPtr;		/* The actual channel. */

    chanPtr = (Channel *) chan;
    return (chanPtr->flags & (TCL_READABLE | TCL_WRITABLE));
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetChannelName --
 *







>
|

<
|







1493
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1500
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1503
1504
1505
1506
1507
1508
1509
1510
 */

int
Tcl_GetChannelMode(chan)
    Tcl_Channel chan;		/* The channel for which the mode is
                                 * being computed. */
{
    ChannelState *statePtr = ((Channel *) chan)->state;
					/* State of actual channel. */


    return (statePtr->flags & (TCL_READABLE | TCL_WRITABLE));
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetChannelName --
 *
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1945
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1951
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1953
1954
1955
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1957
 *----------------------------------------------------------------------
 */

char *
Tcl_GetChannelName(chan)
    Tcl_Channel chan;		/* The channel for which to return the name. */
{
    Channel *chanPtr;		/* The actual channel. */

    chanPtr = (Channel *) chan;
    return chanPtr->channelName;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetChannelType --
 *
 *	Given a channel structure, returns the channel type structure.
 *
 * Results:
 *	Returns a pointer to the channel type structure.
 *
 * Side effects:
 *	None.
 *
 *----------------------------------------------------------------------
 */

Tcl_ChannelType *
Tcl_GetChannelType(chan)
    Tcl_Channel chan;		/* The channel to return type for. */
{
    Channel *chanPtr;		/* The actual channel. */

    chanPtr = (Channel *) chan;
    return chanPtr->typePtr;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetChannelHandle --
 *







|

|
|
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<
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<
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<
<
<
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<
<
<







1521
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1527
1528
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1530
1531


























1532
1533
1534
1535
1536
1537
1538
 *----------------------------------------------------------------------
 */

char *
Tcl_GetChannelName(chan)
    Tcl_Channel chan;		/* The channel for which to return the name. */
{
    ChannelState *statePtr;	/* State of actual channel. */

    statePtr = ((Channel *) chan)->state;
    return statePtr->channelName;


























}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetChannelHandle --
 *
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1976
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1980
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1984
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2009
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2011
2012
2013
2014
2015
2016
2017
2018
2019
2020
    int direction;		/* TCL_WRITABLE or TCL_READABLE. */
    ClientData *handlePtr;	/* Where to store handle */
{
    Channel *chanPtr;		/* The actual channel. */
    ClientData handle;
    int result;

    chanPtr = (Channel *) chan;
    result = (chanPtr->typePtr->getHandleProc)(chanPtr->instanceData,
	    direction, &handle);
    if (handlePtr) {
	*handlePtr = handle;
    }
    return result;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetChannelInstanceData --
 *
 *	Returns the client data associated with a channel.
 *
 * Results:
 *	The client data.
 *
 * Side effects:
 *	None.
 *
 *----------------------------------------------------------------------
 */

ClientData
Tcl_GetChannelInstanceData(chan)
    Tcl_Channel chan;		/* Channel for which to return client data. */
{
    Channel *chanPtr;		/* The actual channel. */

    chanPtr = (Channel *) chan;
    return chanPtr->instanceData;
}

/*
 *---------------------------------------------------------------------------
 *
 * AllocChannelBuffer --
 *
 *	A channel buffer has BUFFER_PADDING bytes extra at beginning to







|







<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<







1554
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1566
1567
1568


























1569
1570
1571
1572
1573
1574
1575
    int direction;		/* TCL_WRITABLE or TCL_READABLE. */
    ClientData *handlePtr;	/* Where to store handle */
{
    Channel *chanPtr;		/* The actual channel. */
    ClientData handle;
    int result;

    chanPtr = ((Channel *) chan)->state->bottomChanPtr;
    result = (chanPtr->typePtr->getHandleProc)(chanPtr->instanceData,
	    direction, &handle);
    if (handlePtr) {
	*handlePtr = handle;
    }
    return result;
}



























/*
 *---------------------------------------------------------------------------
 *
 * AllocChannelBuffer --
 *
 *	A channel buffer has BUFFER_PADDING bytes extra at beginning to
2070
2071
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2073
2074
2075
2076
2077
2078
2079
2080
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2109
2110
2111
2112
2113
2114
2115
2116
2117
2118
2119
2120
2121
 * Side effects:
 *	May free a buffer to the OS.
 *
 *----------------------------------------------------------------------
 */

static void
RecycleBuffer(chanPtr, bufPtr, mustDiscard)
    Channel *chanPtr;		/* Channel for which to recycle buffers. */
    ChannelBuffer *bufPtr;	/* The buffer to recycle. */
    int mustDiscard;		/* If nonzero, free the buffer to the
                                 * OS, always. */
{
    /*
     * Do we have to free the buffer to the OS?
     */

    if (mustDiscard) {
        ckfree((char *) bufPtr);
        return;
    }
    
    /*
     * Only save buffers for the input queue if the channel is readable.
     */
    
    if (chanPtr->flags & TCL_READABLE) {
        if (chanPtr->inQueueHead == (ChannelBuffer *) NULL) {
            chanPtr->inQueueHead = bufPtr;
            chanPtr->inQueueTail = bufPtr;
            goto keepit;
        }
        if (chanPtr->saveInBufPtr == (ChannelBuffer *) NULL) {
            chanPtr->saveInBufPtr = bufPtr;
            goto keepit;
        }
    }

    /*
     * Only save buffers for the output queue if the channel is writable.
     */

    if (chanPtr->flags & TCL_WRITABLE) {
        if (chanPtr->curOutPtr == (ChannelBuffer *) NULL) {
            chanPtr->curOutPtr = bufPtr;
            goto keepit;
        }
    }

    /*
     * If we reached this code we return the buffer to the OS.
     */







|
|












|




|
|
|
|


|
|








|
|
|







1625
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 * Side effects:
 *	May free a buffer to the OS.
 *
 *----------------------------------------------------------------------
 */

static void
RecycleBuffer(statePtr, bufPtr, mustDiscard)
    ChannelState *statePtr;	/* ChannelState in which to recycle buffers. */
    ChannelBuffer *bufPtr;	/* The buffer to recycle. */
    int mustDiscard;		/* If nonzero, free the buffer to the
                                 * OS, always. */
{
    /*
     * Do we have to free the buffer to the OS?
     */

    if (mustDiscard) {
        ckfree((char *) bufPtr);
        return;
    }

    /*
     * Only save buffers for the input queue if the channel is readable.
     */
    
    if (statePtr->flags & TCL_READABLE) {
        if (statePtr->inQueueHead == (ChannelBuffer *) NULL) {
            statePtr->inQueueHead = bufPtr;
            statePtr->inQueueTail = bufPtr;
            goto keepit;
        }
        if (statePtr->saveInBufPtr == (ChannelBuffer *) NULL) {
            statePtr->saveInBufPtr = bufPtr;
            goto keepit;
        }
    }

    /*
     * Only save buffers for the output queue if the channel is writable.
     */

    if (statePtr->flags & TCL_WRITABLE) {
        if (statePtr->curOutPtr == (ChannelBuffer *) NULL) {
            statePtr->curOutPtr = bufPtr;
            goto keepit;
        }
    }

    /*
     * If we reached this code we return the buffer to the OS.
     */
2142
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2192
 * Side effects:
 *	Recycles buffers.
 *
 *----------------------------------------------------------------------
 */

static void
DiscardOutputQueued(chanPtr)
    Channel *chanPtr;		/* The channel for which to discard output. */
{
    ChannelBuffer *bufPtr;
    
    while (chanPtr->outQueueHead != (ChannelBuffer *) NULL) {
        bufPtr = chanPtr->outQueueHead;
        chanPtr->outQueueHead = bufPtr->nextPtr;
        RecycleBuffer(chanPtr, bufPtr, 0);
    }
    chanPtr->outQueueHead = (ChannelBuffer *) NULL;
    chanPtr->outQueueTail = (ChannelBuffer *) NULL;
}

/*
 *----------------------------------------------------------------------
 *
 * CheckForDeadChannel --
 *
 *	This function checks is a given channel is Dead.
 *      (A channel that has been closed but not yet deallocated.)
 *
 * Results:
 *	True (1) if channel is Dead, False (0) if channel is Ok
 *
 * Side effects:
 *      None
 *
 *----------------------------------------------------------------------
 */

static int
CheckForDeadChannel(interp, chanPtr)
    Tcl_Interp *interp;		/* For error reporting (can be NULL) */
    Channel    *chanPtr;	/* The channel to check. */
{
    if (chanPtr->flags & CHANNEL_DEAD) {
        Tcl_SetErrno(EINVAL);
	if (interp) {
	    Tcl_AppendResult(interp,
		    "unable to access channel: invalid channel",
		    (char *) NULL);   
	}
	return 1;







|
|



|
|
|
|

|
|




















|

|

|







1697
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1743
1744
1745
1746
1747
 * Side effects:
 *	Recycles buffers.
 *
 *----------------------------------------------------------------------
 */

static void
DiscardOutputQueued(statePtr)
    ChannelState *statePtr;	/* ChannelState for which to discard output. */
{
    ChannelBuffer *bufPtr;
    
    while (statePtr->outQueueHead != (ChannelBuffer *) NULL) {
        bufPtr = statePtr->outQueueHead;
        statePtr->outQueueHead = bufPtr->nextPtr;
        RecycleBuffer(statePtr, bufPtr, 0);
    }
    statePtr->outQueueHead = (ChannelBuffer *) NULL;
    statePtr->outQueueTail = (ChannelBuffer *) NULL;
}

/*
 *----------------------------------------------------------------------
 *
 * CheckForDeadChannel --
 *
 *	This function checks is a given channel is Dead.
 *      (A channel that has been closed but not yet deallocated.)
 *
 * Results:
 *	True (1) if channel is Dead, False (0) if channel is Ok
 *
 * Side effects:
 *      None
 *
 *----------------------------------------------------------------------
 */

static int
CheckForDeadChannel(interp, statePtr)
    Tcl_Interp *interp;		/* For error reporting (can be NULL) */
    ChannelState *statePtr;	/* The channel state to check. */
{
    if (statePtr->flags & CHANNEL_DEAD) {
        Tcl_SetErrno(EINVAL);
	if (interp) {
	    Tcl_AppendResult(interp,
		    "unable to access channel: invalid channel",
		    (char *) NULL);   
	}
	return 1;
2219
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2311
FlushChannel(interp, chanPtr, calledFromAsyncFlush)
    Tcl_Interp *interp;			/* For error reporting during close. */
    Channel *chanPtr;			/* The channel to flush on. */
    int calledFromAsyncFlush;		/* If nonzero then we are being
                                         * called from an asynchronous
                                         * flush callback. */
{


    ChannelBuffer *bufPtr;		/* Iterates over buffered output
                                         * queue. */
    int toWrite;			/* Amount of output data in current
                                         * buffer available to be written. */
    int written;			/* Amount of output data actually
                                         * written in current round. */
    int errorCode = 0;			/* Stores POSIX error codes from
                                         * channel driver operations. */
    int wroteSome;			/* Set to one if any data was
					 * written to the driver. */

    restartFlushChannel:
    wroteSome = 0;

    /*
     * Prevent writing on a dead channel -- a channel that has been closed
     * but not yet deallocated. This can occur if the exit handler for the
     * channel deallocation runs before all channels are deregistered in
     * all interpreters.
     */
    
    if (CheckForDeadChannel(interp,chanPtr)) return -1;
    
    /*
     * Loop over the queued buffers and attempt to flush as
     * much as possible of the queued output to the channel.
     */

    while (1) {

        /*
         * If the queue is empty and there is a ready current buffer, OR if
         * the current buffer is full, then move the current buffer to the
         * queue.
         */
        
        if (((chanPtr->curOutPtr != (ChannelBuffer *) NULL) &&
                (chanPtr->curOutPtr->nextAdded == chanPtr->curOutPtr->bufLength))
                || ((chanPtr->flags & BUFFER_READY) &&
                        (chanPtr->outQueueHead == (ChannelBuffer *) NULL))) {
            chanPtr->flags &= (~(BUFFER_READY));
            chanPtr->curOutPtr->nextPtr = (ChannelBuffer *) NULL;
            if (chanPtr->outQueueHead == (ChannelBuffer *) NULL) {
                chanPtr->outQueueHead = chanPtr->curOutPtr;
            } else {
                chanPtr->outQueueTail->nextPtr = chanPtr->curOutPtr;
            }
            chanPtr->outQueueTail = chanPtr->curOutPtr;
            chanPtr->curOutPtr = (ChannelBuffer *) NULL;
        }
        bufPtr = chanPtr->outQueueHead;

        /*
         * If we are not being called from an async flush and an async
         * flush is active, we just return without producing any output.
         */

        if ((!calledFromAsyncFlush) &&
                (chanPtr->flags & BG_FLUSH_SCHEDULED)) {
            return 0;
        }

        /*
         * If the output queue is still empty, break out of the while loop.
         */

        if (bufPtr == (ChannelBuffer *) NULL) {
            break;	/* Out of the "while (1)". */
        }

        /*
         * Produce the output on the channel.
         */
        
        toWrite = bufPtr->nextAdded - bufPtr->nextRemoved;
        written = (chanPtr->typePtr->outputProc) (chanPtr->instanceData,
                (char *) bufPtr->buf + bufPtr->nextRemoved, toWrite,
		&errorCode);
            
	/*
         * If the write failed completely attempt to start the asynchronous
         * flush mechanism and break out of this loop - do not attempt to
         * write any more output at this time.
         */

        if (written < 0) {







>
>








|


<
<
<







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|







1774
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1865
FlushChannel(interp, chanPtr, calledFromAsyncFlush)
    Tcl_Interp *interp;			/* For error reporting during close. */
    Channel *chanPtr;			/* The channel to flush on. */
    int calledFromAsyncFlush;		/* If nonzero then we are being
                                         * called from an asynchronous
                                         * flush callback. */
{
    ChannelState *statePtr = chanPtr->state;
					/* State of the channel stack. */
    ChannelBuffer *bufPtr;		/* Iterates over buffered output
                                         * queue. */
    int toWrite;			/* Amount of output data in current
                                         * buffer available to be written. */
    int written;			/* Amount of output data actually
                                         * written in current round. */
    int errorCode = 0;			/* Stores POSIX error codes from
                                         * channel driver operations. */
    int wroteSome = 0;			/* Set to one if any data was
					 * written to the driver. */




    /*
     * Prevent writing on a dead channel -- a channel that has been closed
     * but not yet deallocated. This can occur if the exit handler for the
     * channel deallocation runs before all channels are deregistered in
     * all interpreters.
     */
    
    if (CheckForDeadChannel(interp, statePtr)) return -1;
    
    /*
     * Loop over the queued buffers and attempt to flush as
     * much as possible of the queued output to the channel.
     */

    while (1) {

        /*
         * If the queue is empty and there is a ready current buffer, OR if
         * the current buffer is full, then move the current buffer to the
         * queue.
         */

        if (((statePtr->curOutPtr != (ChannelBuffer *) NULL) &&
                (statePtr->curOutPtr->nextAdded == statePtr->curOutPtr->bufLength))
                || ((statePtr->flags & BUFFER_READY) &&
                        (statePtr->outQueueHead == (ChannelBuffer *) NULL))) {
            statePtr->flags &= (~(BUFFER_READY));
            statePtr->curOutPtr->nextPtr = (ChannelBuffer *) NULL;
            if (statePtr->outQueueHead == (ChannelBuffer *) NULL) {
                statePtr->outQueueHead = statePtr->curOutPtr;
            } else {
                statePtr->outQueueTail->nextPtr = statePtr->curOutPtr;
            }
            statePtr->outQueueTail = statePtr->curOutPtr;
            statePtr->curOutPtr = (ChannelBuffer *) NULL;
        }
        bufPtr = statePtr->outQueueHead;

        /*
         * If we are not being called from an async flush and an async
         * flush is active, we just return without producing any output.
         */

        if ((!calledFromAsyncFlush) &&
                (statePtr->flags & BG_FLUSH_SCHEDULED)) {
            return 0;
        }

        /*
         * If the output queue is still empty, break out of the while loop.
         */

        if (bufPtr == (ChannelBuffer *) NULL) {
            break;	/* Out of the "while (1)". */
        }

        /*
         * Produce the output on the channel.
         */

        toWrite = bufPtr->nextAdded - bufPtr->nextRemoved;
        written = (chanPtr->typePtr->outputProc) (chanPtr->instanceData,
                (char *) bufPtr->buf + bufPtr->nextRemoved, toWrite,
		&errorCode);

	/*
         * If the write failed completely attempt to start the asynchronous
         * flush mechanism and break out of this loop - do not attempt to
         * write any more output at this time.
         */

        if (written < 0) {
2327
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            if ((errorCode == EWOULDBLOCK) || (errorCode == EAGAIN)) {
		/*
		 * This used to check for CHANNEL_NONBLOCKING, and panic
		 * if the channel was blocking.  However, it appears
		 * that setting stdin to -blocking 0 has some effect on
		 * the stdout when it's a tty channel (dup'ed underneath)
		 */
		if (!(chanPtr->flags & BG_FLUSH_SCHEDULED)) {
		    chanPtr->flags |= BG_FLUSH_SCHEDULED;
		    UpdateInterest(chanPtr);
		}
		errorCode = 0;
		break;
            }

            /*
             * Decide whether to report the error upwards or defer it.
             */

            if (calledFromAsyncFlush) {
                if (chanPtr->unreportedError == 0) {
                    chanPtr->unreportedError = errorCode;
                }
            } else {
                Tcl_SetErrno(errorCode);
		if (interp != NULL) {
		    Tcl_SetResult(interp,
			    Tcl_PosixError(interp), TCL_VOLATILE);
		}
            }

            /*
             * When we get an error we throw away all the output
             * currently queued.
             */

            DiscardOutputQueued(chanPtr);
            continue;
        } else {
	    wroteSome = 1;
	}

        bufPtr->nextRemoved += written;

        /*
         * If this buffer is now empty, recycle it.
         */

        if (bufPtr->nextRemoved == bufPtr->nextAdded) {
            chanPtr->outQueueHead = bufPtr->nextPtr;
            if (chanPtr->outQueueHead == (ChannelBuffer *) NULL) {
                chanPtr->outQueueTail = (ChannelBuffer *) NULL;
            }
            RecycleBuffer(chanPtr, bufPtr, 0);
        }
    }	/* Closes "while (1)". */

    /*
     * If we wrote some data while flushing in the background, we are done.
     * We can't finish the background flush until we run out of data and
     * the channel becomes writable again.  This ensures that all of the
     * pending data has been flushed at the system level.
     */

    if (chanPtr->flags & BG_FLUSH_SCHEDULED) {
	if (wroteSome) {
	    return errorCode;
	} else if (chanPtr->outQueueHead == (ChannelBuffer *) NULL) {
	    chanPtr->flags &= (~(BG_FLUSH_SCHEDULED));
	    (chanPtr->typePtr->watchProc)(chanPtr->instanceData,
		    chanPtr->interestMask);
	}
    }

    /*
     * If the channel is flagged as closed, delete it when the refCount
     * drops to zero, the output queue is empty and there is no output
     * in the current output buffer.
     */

    if ((chanPtr->flags & CHANNEL_CLOSED) && (chanPtr->refCount <= 0) &&
            (chanPtr->outQueueHead == (ChannelBuffer *) NULL) &&
            ((chanPtr->curOutPtr == (ChannelBuffer *) NULL) ||
                    (chanPtr->curOutPtr->nextAdded ==
                            chanPtr->curOutPtr->nextRemoved))) {
	/*
	 * CloseChannel may side-effect the errno value, so we seed it
	 * and retrieve the it once we have closed the final channel.
	 */
	Tcl_SetErrno(errorCode);
	if (CloseChannel(interp, chanPtr, errorCode)) {
	    goto restartFlushChannel;
	}
	errorCode = Tcl_GetErrno();
    }
    return errorCode;
}

/*
 *----------------------------------------------------------------------
 *







|
|











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<
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<







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            if ((errorCode == EWOULDBLOCK) || (errorCode == EAGAIN)) {
		/*
		 * This used to check for CHANNEL_NONBLOCKING, and panic
		 * if the channel was blocking.  However, it appears
		 * that setting stdin to -blocking 0 has some effect on
		 * the stdout when it's a tty channel (dup'ed underneath)
		 */
		if (!(statePtr->flags & BG_FLUSH_SCHEDULED)) {
		    statePtr->flags |= BG_FLUSH_SCHEDULED;
		    UpdateInterest(chanPtr);
		}
		errorCode = 0;
		break;
            }

            /*
             * Decide whether to report the error upwards or defer it.
             */

            if (calledFromAsyncFlush) {
                if (statePtr->unreportedError == 0) {
                    statePtr->unreportedError = errorCode;
                }
            } else {
                Tcl_SetErrno(errorCode);
		if (interp != NULL) {
		    Tcl_SetResult(interp,
			    Tcl_PosixError(interp), TCL_VOLATILE);
		}
            }

            /*
             * When we get an error we throw away all the output
             * currently queued.
             */

            DiscardOutputQueued(statePtr);
            continue;
        } else {
	    wroteSome = 1;
	}

        bufPtr->nextRemoved += written;

        /*
         * If this buffer is now empty, recycle it.
         */

        if (bufPtr->nextRemoved == bufPtr->nextAdded) {
            statePtr->outQueueHead = bufPtr->nextPtr;
            if (statePtr->outQueueHead == (ChannelBuffer *) NULL) {
                statePtr->outQueueTail = (ChannelBuffer *) NULL;
            }
            RecycleBuffer(statePtr, bufPtr, 0);
        }
    }	/* Closes "while (1)". */

    /*
     * If we wrote some data while flushing in the background, we are done.
     * We can't finish the background flush until we run out of data and
     * the channel becomes writable again.  This ensures that all of the
     * pending data has been flushed at the system level.
     */

    if (statePtr->flags & BG_FLUSH_SCHEDULED) {
	if (wroteSome) {
	    return errorCode;
	} else if (statePtr->outQueueHead == (ChannelBuffer *) NULL) {
	    statePtr->flags &= (~(BG_FLUSH_SCHEDULED));
	    (chanPtr->typePtr->watchProc)(chanPtr->instanceData,
		    statePtr->interestMask);
	}
    }

    /*
     * If the channel is flagged as closed, delete it when the refCount
     * drops to zero, the output queue is empty and there is no output
     * in the current output buffer.
     */

    if ((statePtr->flags & CHANNEL_CLOSED) && (statePtr->refCount <= 0) &&
            (statePtr->outQueueHead == (ChannelBuffer *) NULL) &&
            ((statePtr->curOutPtr == (ChannelBuffer *) NULL) ||
                    (statePtr->curOutPtr->nextAdded ==
                            statePtr->curOutPtr->nextRemoved))) {





	return CloseChannel(interp, chanPtr, errorCode);



    }
    return errorCode;
}

/*
 *----------------------------------------------------------------------
 *
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2543








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CloseChannel(interp, chanPtr, errorCode)
    Tcl_Interp *interp;			/* For error reporting. */
    Channel *chanPtr;			/* The channel to close. */
    int errorCode;			/* Status of operation so far. */
{
    int result = 0;			/* Of calling driver close
                                         * operation. */
    Channel *prevChanPtr;		/* Preceding channel in list of
                                         * all channels - used to splice a
                                         * channel out of the list on close. */

    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);

    if (chanPtr == NULL) {
        return result;
    }

    
    /*
     * No more input can be consumed so discard any leftover input.
     */

    DiscardInputQueued(chanPtr, 1);

    /*
     * Discard a leftover buffer in the current output buffer field.
     */

    if (chanPtr->curOutPtr != (ChannelBuffer *) NULL) {
        ckfree((char *) chanPtr->curOutPtr);
        chanPtr->curOutPtr = (ChannelBuffer *) NULL;
    }
    
    /*
     * The caller guarantees that there are no more buffers
     * queued for output.
     */

    if (chanPtr->outQueueHead != (ChannelBuffer *) NULL) {
        panic("TclFlush, closed channel: queued output left");
    }

    /*
     * If the EOF character is set in the channel, append that to the
     * output device.
     */

    if ((chanPtr->outEofChar != 0) && (chanPtr->flags & TCL_WRITABLE)) {
        int dummy;
        char c;

        c = (char) chanPtr->outEofChar;
        (chanPtr->typePtr->outputProc) (chanPtr->instanceData, &c, 1, &dummy);
    }

    /*
     * Remove TCL_READABLE and TCL_WRITABLE from chanPtr->flags, so
     * that close callbacks can not do input or output (assuming they
     * squirreled the channel away in their clientData). This also
     * prevents infinite loops if the callback calls any C API that
     * could call FlushChannel.
     */




    chanPtr->flags &= (~(TCL_READABLE|TCL_WRITABLE));


    /*
     * Splice this channel out of the list of all channels.
     */

    if (chanPtr == tsdPtr->firstChanPtr) {
        tsdPtr->firstChanPtr = chanPtr->nextChanPtr;
    } else {
        for (prevChanPtr = tsdPtr->firstChanPtr;
	     prevChanPtr && (prevChanPtr->nextChanPtr != chanPtr);
	     prevChanPtr = prevChanPtr->nextChanPtr) {
            /* Empty loop body. */
        }
        if (prevChanPtr == (Channel *) NULL) {
            panic("FlushChannel: damaged channel list");
        }
        prevChanPtr->nextChanPtr = chanPtr->nextChanPtr;
    }

    /*
     * Close and free the channel driver state.
     */
            
    if (chanPtr->typePtr->closeProc != TCL_CLOSE2PROC) {
	result = (chanPtr->typePtr->closeProc)(chanPtr->instanceData, interp);
    } else {
	result = (chanPtr->typePtr->close2Proc)(chanPtr->instanceData, interp,
		0);
    }
    







    if (chanPtr->channelName != (char *) NULL) {
        ckfree(chanPtr->channelName);








    }

    /*
     * If we are being called synchronously, report either
     * any latent error on the channel or the current error.
     */

    if (chanPtr->unreportedError != 0) {
        errorCode = chanPtr->unreportedError;
    }
    if (errorCode == 0) {
        errorCode = result;
        if (errorCode != 0) {
            Tcl_SetErrno(errorCode);
        }
    }

    /*
     * Cancel any outstanding timer.
     */

    Tcl_DeleteTimerHandler(chanPtr->timer);

    /*
     * Mark the channel as deleted by clearing the type structure.
     */

    if (chanPtr->supercedes != (Channel *) NULL) {
        /*
	 * Unwind the state of the transformation, and then restore the state
	 * of (unstack) the underlying channel into the TOP channel structure.
	 */

	ChannelHandler *chPtr, *chNext;	/* Iterate over channel handlers. */
	NextChannelHandler *nhPtr;
	Channel *chanDownPtr = chanPtr->supercedes;

	/*
	 * Insert ourselves upon back into the list of open channels,
	 * because we are only eliminating the NEXT channel in the stack.
	 */
	chanPtr->nextChanPtr = tsdPtr->firstChanPtr;
	tsdPtr->firstChanPtr = chanPtr;

	/*
	 * Some initial bits taken from Tcl_Close, to be applied to our
	 * underlying channel.
	 */

	/*
	 * Remove any references to channel handlers for this channel that
	 * may be about to be invoked.
	 */

	for (nhPtr = tsdPtr->nestedHandlerPtr;
             nhPtr != (NextChannelHandler *) NULL;
             nhPtr = nhPtr->nestedHandlerPtr) {
	    if (nhPtr->nextHandlerPtr &&
		    (nhPtr->nextHandlerPtr->chanPtr == chanDownPtr)) {
		nhPtr->nextHandlerPtr = NULL;
	    }
	}

	/*
	 * Remove all the channel handler records attached to the channel
	 * itself.
	 */
        
	for (chPtr = chanDownPtr->chPtr; chPtr != NULL; chPtr = chNext) {
	    chNext = chPtr->nextPtr;
	    ckfree((char *) chPtr);
	}
	chanDownPtr->chPtr = (ChannelHandler *) NULL;

	/*
	 * Cancel any pending copy operation.
	 */

	StopCopy(chanDownPtr->csPtr);
  
	/*
	 * Ensure that the last output buffer will be flushed.
	 */
    
	if ((chanDownPtr->curOutPtr != (ChannelBuffer *) NULL) &&
		(chanDownPtr->curOutPtr->nextAdded >
			chanDownPtr->curOutPtr->nextRemoved)) {
	    chanDownPtr->flags |= BUFFER_READY;
	}

	/*
	 * Free timer associated with the TOP stacked channel, and
	 * moving the timer for the NEXT stacked channel to the TOP.
	 */
	if (chanDownPtr->timer != NULL) {
	    Tcl_DeleteTimerHandler(chanDownPtr->timer);
	    chanPtr->timer = Tcl_CreateTimerHandler(0, ChannelTimerProc,
		    (ClientData) chanPtr);
	} else {
	    chanPtr->timer = NULL;
	}

	/*
	 * Bring the information from the NEXT channel into the TOP
	 * channel, with some exceptions. This additionally
	 * cuts the NEXT channel out of the chain and frees it.
	 *
	 * We may want to extract unreportedError as well (hobbs).
	 */

	chanPtr->channelName	= chanDownPtr->channelName;
	chanPtr->flags		= chanDownPtr->flags | CHANNEL_CLOSED;

	Tcl_FreeEncoding(chanDownPtr->encoding);
	chanDownPtr->encoding	= NULL;

	chanPtr->instanceData	= chanDownPtr->instanceData;
	chanPtr->typePtr	= chanDownPtr->typePtr;

	if (chanDownPtr->outputStage != NULL) {
	    ckfree((char *) chanDownPtr->outputStage);
	}

	chanPtr->curOutPtr	= chanDownPtr->curOutPtr;
	chanPtr->outQueueHead	= chanDownPtr->outQueueHead;
	chanPtr->outQueueTail	= chanDownPtr->outQueueTail;
	chanPtr->saveInBufPtr	= chanDownPtr->saveInBufPtr;
	chanPtr->inQueueHead	= chanDownPtr->inQueueHead;
	chanPtr->inQueueTail	= chanDownPtr->inQueueTail;
	chanPtr->supercedes	= chanDownPtr->supercedes;

	/*
	 * Event handling: If the information from the now destroyed
	 * transformation shows that there was interest in some events
	 * call the 'WatchProc' of the now uncovered channel to renew
	 * that interest with underlying channels or the driver.
	 */

	if (chanDownPtr->interestMask) {
	    int interest = chanDownPtr->interestMask;

	    chanPtr->interestMask = 0;
	    (chanPtr->typePtr->watchProc)(chanPtr->instanceData, interest);
	    chanPtr->interestMask = interest;
	}

	Tcl_EventuallyFree((ClientData) chanDownPtr, TCL_DYNAMIC);
	return 1;
    } else {
	/*
	 * There is only the TOP Channel, so we free the remaining
	 * pointers we have and then ourselves.
	 */
	chanPtr->typePtr = NULL;

	Tcl_FreeEncoding(chanPtr->encoding);
	if (chanPtr->outputStage != NULL) {
	    ckfree((char *) chanPtr->outputStage);
	}

	Tcl_EventuallyFree((ClientData) chanPtr, TCL_DYNAMIC);
	return 0;

    }










}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_Close --
 *







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2185
CloseChannel(interp, chanPtr, errorCode)
    Tcl_Interp *interp;			/* For error reporting. */
    Channel *chanPtr;			/* The channel to close. */
    int errorCode;			/* Status of operation so far. */
{
    int result = 0;			/* Of calling driver close
                                         * operation. */
    ChannelState *prevCSPtr;		/* Preceding channel state in list of
                                         * all states - used to splice a
                                         * channel out of the list on close. */
    ChannelState *statePtr;		/* state of the channel stack. */
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);

    if (chanPtr == NULL) {
        return result;
    }
    statePtr = chanPtr->state;

    /*
     * No more input can be consumed so discard any leftover input.
     */

    DiscardInputQueued(statePtr, 1);

    /*
     * Discard a leftover buffer in the current output buffer field.
     */

    if (statePtr->curOutPtr != (ChannelBuffer *) NULL) {
        ckfree((char *) statePtr->curOutPtr);
        statePtr->curOutPtr = (ChannelBuffer *) NULL;
    }
    
    /*
     * The caller guarantees that there are no more buffers
     * queued for output.
     */

    if (statePtr->outQueueHead != (ChannelBuffer *) NULL) {
        panic("TclFlush, closed channel: queued output left");
    }

    /*
     * If the EOF character is set in the channel, append that to the
     * output device.
     */

    if ((statePtr->outEofChar != 0) && (statePtr->flags & TCL_WRITABLE)) {
        int dummy;
        char c;

        c = (char) statePtr->outEofChar;
        (chanPtr->typePtr->outputProc) (chanPtr->instanceData, &c, 1, &dummy);
    }
#if 0
    /*
     * Remove TCL_READABLE and TCL_WRITABLE from statePtr->flags, so
     * that close callbacks can not do input or output (assuming they
     * squirreled the channel away in their clientData). This also
     * prevents infinite loops if the callback calls any C API that
     * could call FlushChannel.
     */

    /*
     * This prevents any data from being flushed from stacked channels.
     */
    statePtr->flags &= (~(TCL_READABLE|TCL_WRITABLE));
#endif

    /*
     * Splice this channel out of the list of all channels.
     */

    if (tsdPtr->firstCSPtr && (statePtr == tsdPtr->firstCSPtr)) {
        tsdPtr->firstCSPtr = statePtr->nextCSPtr;
    } else {
        for (prevCSPtr = tsdPtr->firstCSPtr;
	     prevCSPtr && (prevCSPtr->nextCSPtr != statePtr);
	     prevCSPtr = prevCSPtr->nextCSPtr) {
            /* Empty loop body. */
        }
        if (prevCSPtr == (ChannelState *) NULL) {
            panic("FlushChannel: damaged channel list");
        }
        prevCSPtr->nextCSPtr = statePtr->nextCSPtr;
    }

    /*
     * Close and free the channel driver state.
     */

    if (chanPtr->typePtr->closeProc != TCL_CLOSE2PROC) {
	result = (chanPtr->typePtr->closeProc)(chanPtr->instanceData, interp);
    } else {
	result = (chanPtr->typePtr->close2Proc)(chanPtr->instanceData, interp,
		0);
    }

    /*
     * Some resources can be cleared only if the bottom channel
     * in a stack is closed. All the other channels in the stack
     * are not allowed to remove.
     */

    if (chanPtr == statePtr->bottomChanPtr) {
	if (statePtr->channelName != (char *) NULL) {
	    ckfree(statePtr->channelName);
	    statePtr->channelName = NULL;
	}

	Tcl_FreeEncoding(statePtr->encoding);
	if (statePtr->outputStage != NULL) {
	    ckfree((char *) statePtr->outputStage);
	    statePtr->outputStage = (char *) NULL;
	}
    }

    /*
     * If we are being called synchronously, report either
     * any latent error on the channel or the current error.
     */

    if (statePtr->unreportedError != 0) {
        errorCode = statePtr->unreportedError;
    }
    if (errorCode == 0) {
        errorCode = result;
        if (errorCode != 0) {
            Tcl_SetErrno(errorCode);
        }
    }

    /*
     * Cancel any outstanding timer.
     */

    Tcl_DeleteTimerHandler(statePtr->timer);

    /*
     * Mark the channel as deleted by clearing the type structure.
     */

    if (chanPtr->downChanPtr != (Channel *) NULL) {




#if 0



	int code = TCL_OK;











	while (chanPtr->downChanPtr != (Channel *) NULL) {
	    /*



	     * Unwind the state of the transformation, and then restore the








	     * state of (unstack) the underlying channel into the TOP channel




	     * structure.

























	     */



	    code = Tcl_UnstackChannel(interp, (Tcl_Channel) chanPtr);



	    if (code == TCL_ERROR) {







		errorCode = Tcl_GetErrno();


		break;


	    }


	    chanPtr = chanPtr->downChanPtr;


	}
#else
	Channel *downChanPtr = chanPtr->downChanPtr;













	statePtr->nextCSPtr	= tsdPtr->firstCSPtr;


	tsdPtr->firstCSPtr	= statePtr;




	statePtr->topChanPtr	= downChanPtr;




	downChanPtr->upChanPtr	= (Channel *) NULL;


	chanPtr->typePtr	= NULL;






	Tcl_EventuallyFree((ClientData) chanPtr, TCL_DYNAMIC);
	return Tcl_Close(interp, (Tcl_Channel) downChanPtr);
#endif
    }

    /*
     * There is only the TOP Channel, so we free the remaining
     * pointers we have and then ourselves.
     */
    chanPtr->typePtr = NULL;

    Tcl_EventuallyFree((ClientData) chanPtr, TCL_DYNAMIC);

    return errorCode;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_Close --
 *
2737
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2743

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2762



2763
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                                         * interpreter. */
{
    ChannelHandler *chPtr, *chNext;	/* Iterate over channel handlers. */
    CloseCallback *cbPtr;		/* Iterate over close callbacks
                                         * for this channel. */
    EventScriptRecord *ePtr, *eNextPtr;	/* Iterate over eventscript records. */
    Channel *chanPtr;			/* The real IO channel. */

    int result;				/* Of calling FlushChannel. */
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);
    NextChannelHandler *nhPtr;

    if (chan == (Tcl_Channel) NULL) {
        return TCL_OK;
    }
    
    /*
     * Perform special handling for standard channels being closed. If the
     * refCount is now 1 it means that the last reference to the standard
     * channel is being explicitly closed, so bump the refCount down
     * artificially to 0. This will ensure that the channel is actually
     * closed, below. Also set the static pointer to NULL for the channel.
     */

    CheckForStdChannelsBeingClosed(chan);





    chanPtr = (Channel *) chan;



    if (chanPtr->refCount > 0) {
        panic("called Tcl_Close on channel with refCount > 0");
    }

    /*
     * Remove any references to channel handlers for this channel that
     * may be about to be invoked.
     */







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                                         * interpreter. */
{
    ChannelHandler *chPtr, *chNext;	/* Iterate over channel handlers. */
    CloseCallback *cbPtr;		/* Iterate over close callbacks
                                         * for this channel. */
    EventScriptRecord *ePtr, *eNextPtr;	/* Iterate over eventscript records. */
    Channel *chanPtr;			/* The real IO channel. */
    ChannelState *statePtr;		/* State of real IO channel. */
    int result;				/* Of calling FlushChannel. */
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);
    NextChannelHandler *nhPtr;

    if (chan == (Tcl_Channel) NULL) {
        return TCL_OK;
    }

    /*
     * Perform special handling for standard channels being closed. If the
     * refCount is now 1 it means that the last reference to the standard
     * channel is being explicitly closed, so bump the refCount down
     * artificially to 0. This will ensure that the channel is actually
     * closed, below. Also set the static pointer to NULL for the channel.
     */

    CheckForStdChannelsBeingClosed(chan);

    /*
     * This operation should occur at the top of a channel stack.
     */

    chanPtr	= (Channel *) chan;
    statePtr	= chanPtr->state;
    chanPtr	= statePtr->topChanPtr;

    if (statePtr->refCount > 0) {
        panic("called Tcl_Close on channel with refCount > 0");
    }

    /*
     * Remove any references to channel handlers for this channel that
     * may be about to be invoked.
     */
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        }
    }

    /*
     * Remove all the channel handler records attached to the channel
     * itself.
     */
        
    for (chPtr = chanPtr->chPtr;
	 chPtr != (ChannelHandler *) NULL;
	 chPtr = chNext) {
        chNext = chPtr->nextPtr;
        ckfree((char *) chPtr);
    }
    chanPtr->chPtr = (ChannelHandler *) NULL;
    
    
    /*
     * Cancel any pending copy operation.
     */

    StopCopy(chanPtr->csPtr);

    /*
     * Must set the interest mask now to 0, otherwise infinite loops
     * will occur if Tcl_DoOneEvent is called before the channel is
     * finally deleted in FlushChannel. This can happen if the channel
     * has a background flush active.
     */
        
    chanPtr->interestMask = 0;
    
    /*
     * Remove any EventScript records for this channel.
     */

    for (ePtr = chanPtr->scriptRecordPtr;
	 ePtr != (EventScriptRecord *) NULL;
	 ePtr = eNextPtr) {
        eNextPtr = ePtr->nextPtr;
	Tcl_DecrRefCount(ePtr->scriptPtr);
        ckfree((char *) ePtr);
    }
    chanPtr->scriptRecordPtr = (EventScriptRecord *) NULL;
        
    /*
     * Invoke the registered close callbacks and delete their records.
     */

    while (chanPtr->closeCbPtr != (CloseCallback *) NULL) {
        cbPtr = chanPtr->closeCbPtr;
        chanPtr->closeCbPtr = cbPtr->nextPtr;
        (cbPtr->proc) (cbPtr->clientData);
        ckfree((char *) cbPtr);
    }

    /*
     * Ensure that the last output buffer will be flushed.
     */
    
    if ((chanPtr->curOutPtr != (ChannelBuffer *) NULL) &&
	    (chanPtr->curOutPtr->nextAdded > chanPtr->curOutPtr->nextRemoved)) {
        chanPtr->flags |= BUFFER_READY;
    }

    /*
     * If this channel supports it, close the read side, since we don't need it
     * anymore and this will help avoid deadlocks on some channel types.
     */

    if (chanPtr->typePtr->closeProc == TCL_CLOSE2PROC) {
	result = (chanPtr->typePtr->close2Proc)(chanPtr->instanceData, interp,
		TCL_CLOSE_READ);
    } else {
	result = 0;
    }

    /*
     * The call to FlushChannel will flush any queued output and invoke
     * the close function of the channel driver, or it will set up the
     * channel to be flushed and closed asynchronously.
     */

    chanPtr->flags |= CHANNEL_CLOSED;
    if ((FlushChannel(interp, chanPtr, 0) != 0) || (result != 0)) {
        return TCL_ERROR;
    }
    return TCL_OK;
}

/*







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        }
    }

    /*
     * Remove all the channel handler records attached to the channel
     * itself.
     */

    for (chPtr = statePtr->chPtr;
	 chPtr != (ChannelHandler *) NULL;
	 chPtr = chNext) {
        chNext = chPtr->nextPtr;
        ckfree((char *) chPtr);
    }
    statePtr->chPtr = (ChannelHandler *) NULL;


    /*
     * Cancel any pending copy operation.
     */

    StopCopy(statePtr->csPtr);

    /*
     * Must set the interest mask now to 0, otherwise infinite loops
     * will occur if Tcl_DoOneEvent is called before the channel is
     * finally deleted in FlushChannel. This can happen if the channel
     * has a background flush active.
     */
        
    statePtr->interestMask = 0;
    
    /*
     * Remove any EventScript records for this channel.
     */

    for (ePtr = statePtr->scriptRecordPtr;
	 ePtr != (EventScriptRecord *) NULL;
	 ePtr = eNextPtr) {
        eNextPtr = ePtr->nextPtr;
	Tcl_DecrRefCount(ePtr->scriptPtr);
        ckfree((char *) ePtr);
    }
    statePtr->scriptRecordPtr = (EventScriptRecord *) NULL;
        
    /*
     * Invoke the registered close callbacks and delete their records.
     */

    while (statePtr->closeCbPtr != (CloseCallback *) NULL) {
        cbPtr = statePtr->closeCbPtr;
        statePtr->closeCbPtr = cbPtr->nextPtr;
        (cbPtr->proc) (cbPtr->clientData);
        ckfree((char *) cbPtr);
    }

    /*
     * Ensure that the last output buffer will be flushed.
     */
    
    if ((statePtr->curOutPtr != (ChannelBuffer *) NULL) &&
	    (statePtr->curOutPtr->nextAdded > statePtr->curOutPtr->nextRemoved)) {
        statePtr->flags |= BUFFER_READY;
    }

    /*
     * If this channel supports it, close the read side, since we don't need it
     * anymore and this will help avoid deadlocks on some channel types.
     */

    if (chanPtr->typePtr->closeProc == TCL_CLOSE2PROC) {
	result = (chanPtr->typePtr->close2Proc)(chanPtr->instanceData, interp,
		TCL_CLOSE_READ);
    } else {
	result = 0;
    }

    /*
     * The call to FlushChannel will flush any queued output and invoke
     * the close function of the channel driver, or it will set up the
     * channel to be flushed and closed asynchronously.
     */

    statePtr->flags |= CHANNEL_CLOSED;
    if ((FlushChannel(interp, chanPtr, 0) != 0) || (result != 0)) {
        return TCL_ERROR;
    }
    return TCL_OK;
}

/*
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2896

2897
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2899
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2901

2902
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2907
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2913
int
Tcl_Write(chan, src, srcLen)
    Tcl_Channel chan;			/* The channel to buffer output for. */
    char *src;				/* Data to queue in output buffer. */
    int srcLen;				/* Length of data in bytes, or < 0 for
					 * strlen(). */
{



    Channel *chanPtr;


    chanPtr = (Channel *) chan;


    if (CheckChannelErrors(chanPtr, TCL_WRITABLE) != 0) {
	return -1;
    }

    if (srcLen < 0) {
        srcLen = strlen(src);
    }
    return DoWrite(chanPtr, src, srcLen);
}
























































/*
 *---------------------------------------------------------------------------
 *
 * Tcl_WriteChars --
 *
 *	Takes a sequence of UTF-8 characters and converts them for output







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2454
int
Tcl_Write(chan, src, srcLen)
    Tcl_Channel chan;			/* The channel to buffer output for. */
    char *src;				/* Data to queue in output buffer. */
    int srcLen;				/* Length of data in bytes, or < 0 for
					 * strlen(). */
{
    /*
     * Always use the topmost channel of the stack
     */
    Channel *chanPtr;
    ChannelState *statePtr;	/* state info for channel */

    statePtr = ((Channel *) chan)->state;
    chanPtr  = statePtr->topChanPtr;

    if (CheckChannelErrors(statePtr, TCL_WRITABLE) != 0) {
	return -1;
    }

    if (srcLen < 0) {
        srcLen = strlen(src);
    }
    return DoWrite(chanPtr, src, srcLen);
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_WriteRaw --
 *
 *	Puts a sequence of bytes into an output buffer, may queue the
 *	buffer for output if it gets full, and also remembers whether the
 *	current buffer is ready e.g. if it contains a newline and we are in
 *	line buffering mode.
 *
 * Results:
 *	The number of bytes written or -1 in case of error. If -1,
 *	Tcl_GetErrno will return the error code.
 *
 * Side effects:
 *	May buffer up output and may cause output to be produced on the
 *	channel.
 *
 *----------------------------------------------------------------------
 */

int
Tcl_WriteRaw(chan, src, srcLen)
    Tcl_Channel chan;			/* The channel to buffer output for. */
    char *src;				/* Data to queue in output buffer. */
    int srcLen;				/* Length of data in bytes, or < 0 for
					 * strlen(). */
{
    Channel *chanPtr = ((Channel *) chan);
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    int errorCode, written;

    if (CheckChannelErrors(statePtr, TCL_WRITABLE | CHANNEL_RAW_MODE) != 0) {
	return -1;
    }

    if (srcLen < 0) {
        srcLen = strlen(src);
    }

    /*
     * Go immediately to the driver, do all the error handling by ourselves.
     * The code was stolen from 'FlushChannel'.
     */

    written = (chanPtr->typePtr->outputProc) (chanPtr->instanceData,
	    src, srcLen, &errorCode);

    if (written < 0) {
	Tcl_SetErrno(errorCode);
    }

    return written;
}

/*
 *---------------------------------------------------------------------------
 *
 * Tcl_WriteChars --
 *
 *	Takes a sequence of UTF-8 characters and converts them for output
2930
2931
2932
2933
2934
2935
2936



2937

2938
2939


2940
2941
2942
2943
2944
2945
2946
2947
2948
2949
2950
2951
2952
2953
int
Tcl_WriteChars(chan, src, len)
    Tcl_Channel chan;		/* The channel to buffer output for. */
    CONST char *src;		/* UTF-8 characters to queue in output buffer. */
    int len;			/* Length of string in bytes, or < 0 for 
				 * strlen(). */
{



    Channel *chanPtr;


    chanPtr = (Channel *) chan;


    if (CheckChannelErrors(chanPtr, TCL_WRITABLE) != 0) {
	return -1;
    }
    if (len < 0) {
        len = strlen(src);
    }
    if (chanPtr->encoding == NULL) {
	/*
	 * Inefficient way to convert UTF-8 to byte-array, but the  
	 * code parallels the way it is done for objects.
	 */

	Tcl_Obj *objPtr;
	int result;







>
>
>

>

|
>
>
|





|







2471
2472
2473
2474
2475
2476
2477
2478
2479
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2485
2486
2487
2488
2489
2490
2491
2492
2493
2494
2495
2496
2497
2498
2499
2500
int
Tcl_WriteChars(chan, src, len)
    Tcl_Channel chan;		/* The channel to buffer output for. */
    CONST char *src;		/* UTF-8 characters to queue in output buffer. */
    int len;			/* Length of string in bytes, or < 0 for 
				 * strlen(). */
{
    /*
     * Always use the topmost channel of the stack
     */
    Channel *chanPtr;
    ChannelState *statePtr;	/* state info for channel */

    statePtr = ((Channel *) chan)->state;
    chanPtr  = statePtr->topChanPtr;

    if (CheckChannelErrors(statePtr, TCL_WRITABLE) != 0) {
	return -1;
    }
    if (len < 0) {
        len = strlen(src);
    }
    if (statePtr->encoding == NULL) {
	/*
	 * Inefficient way to convert UTF-8 to byte-array, but the  
	 * code parallels the way it is done for objects.
	 */

	Tcl_Obj *objPtr;
	int result;
2987
2988
2989
2990
2991
2992
2993



2994

2995
2996
2997
2998


2999
3000
3001
3002
3003
3004
3005
3006
3007
3008
3009
 */

int
Tcl_WriteObj(chan, objPtr)
    Tcl_Channel chan;		/* The channel to buffer output for. */
    Tcl_Obj *objPtr;		/* The object to write. */
{



    Channel *chanPtr;

    char *src;
    int srcLen;

    chanPtr = (Channel *) chan;


    if (CheckChannelErrors(chanPtr, TCL_WRITABLE) != 0) {
	return -1;
    }
    if (chanPtr->encoding == NULL) {
	src = (char *) Tcl_GetByteArrayFromObj(objPtr, &srcLen);
	return WriteBytes(chanPtr, src, srcLen);
    } else {
	src = Tcl_GetStringFromObj(objPtr, &srcLen);
	return WriteChars(chanPtr, src, srcLen);
    }
}







>
>
>

>



|
>
>
|


|







2534
2535
2536
2537
2538
2539
2540
2541
2542
2543
2544
2545
2546
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2548
2549
2550
2551
2552
2553
2554
2555
2556
2557
2558
2559
2560
2561
2562
 */

int
Tcl_WriteObj(chan, objPtr)
    Tcl_Channel chan;		/* The channel to buffer output for. */
    Tcl_Obj *objPtr;		/* The object to write. */
{
    /*
     * Always use the topmost channel of the stack
     */
    Channel *chanPtr;
    ChannelState *statePtr;	/* state info for channel */
    char *src;
    int srcLen;

    statePtr = ((Channel *) chan)->state;
    chanPtr  = statePtr->topChanPtr;

    if (CheckChannelErrors(statePtr, TCL_WRITABLE) != 0) {
	return -1;
    }
    if (statePtr->encoding == NULL) {
	src = (char *) Tcl_GetByteArrayFromObj(objPtr, &srcLen);
	return WriteBytes(chanPtr, src, srcLen);
    } else {
	src = Tcl_GetStringFromObj(objPtr, &srcLen);
	return WriteChars(chanPtr, src, srcLen);
    }
}
3031
3032
3033
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3035
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3037

3038
3039
3040
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3043
3044
3045
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3049
3050
3051
3052
3053
3054
3055
3056
3057
3058
3059
3060
3061
3062

static int
WriteBytes(chanPtr, src, srcLen)
    Channel *chanPtr;		/* The channel to buffer output for. */
    CONST char *src;		/* Bytes to write. */
    int srcLen;			/* Number of bytes to write. */
{

    ChannelBuffer *bufPtr;
    char *dst;
    int dstLen, dstMax, sawLF, savedLF, total, toWrite;
    
    total = 0;
    sawLF = 0;
    savedLF = 0;

    /*
     * Loop over all bytes in src, storing them in output buffer with
     * proper EOL translation.
     */

    while (srcLen + savedLF > 0) {
	bufPtr = chanPtr->curOutPtr;
	if (bufPtr == NULL) {
	    bufPtr = AllocChannelBuffer(chanPtr->bufSize);
	    chanPtr->curOutPtr	= bufPtr;
	}
	dst = bufPtr->buf + bufPtr->nextAdded;
	dstMax = bufPtr->bufLength - bufPtr->nextAdded;
	dstLen = dstMax;

	toWrite = dstLen;
	if (toWrite > srcLen) {







>














|

|
|







2584
2585
2586
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2589
2590
2591
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2595
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2602
2603
2604
2605
2606
2607
2608
2609
2610
2611
2612
2613
2614
2615
2616

static int
WriteBytes(chanPtr, src, srcLen)
    Channel *chanPtr;		/* The channel to buffer output for. */
    CONST char *src;		/* Bytes to write. */
    int srcLen;			/* Number of bytes to write. */
{
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    ChannelBuffer *bufPtr;
    char *dst;
    int dstLen, dstMax, sawLF, savedLF, total, toWrite;
    
    total = 0;
    sawLF = 0;
    savedLF = 0;

    /*
     * Loop over all bytes in src, storing them in output buffer with
     * proper EOL translation.
     */

    while (srcLen + savedLF > 0) {
	bufPtr = statePtr->curOutPtr;
	if (bufPtr == NULL) {
	    bufPtr = AllocChannelBuffer(statePtr->bufSize);
	    statePtr->curOutPtr	= bufPtr;
	}
	dst = bufPtr->buf + bufPtr->nextAdded;
	dstMax = bufPtr->bufLength - bufPtr->nextAdded;
	dstLen = dstMax;

	toWrite = dstLen;
	if (toWrite > srcLen) {
3070
3071
3072
3073
3074
3075
3076
3077
3078
3079
3080
3081
3082
3083
3084
	     * line-based, we will need to flush it.
	     */

	    *dst++ = '\n';
	    dstLen--;
	    sawLF++;
	}
	sawLF += TranslateOutputEOL(chanPtr, dst, src, &dstLen, &toWrite);
	dstLen += savedLF;
	savedLF = 0;

	if (dstLen > dstMax) {
	    savedLF = 1;
	    dstLen = dstMax;
	}







|







2624
2625
2626
2627
2628
2629
2630
2631
2632
2633
2634
2635
2636
2637
2638
	     * line-based, we will need to flush it.
	     */

	    *dst++ = '\n';
	    dstLen--;
	    sawLF++;
	}
	sawLF += TranslateOutputEOL(statePtr, dst, src, &dstLen, &toWrite);
	dstLen += savedLF;
	savedLF = 0;

	if (dstLen > dstMax) {
	    savedLF = 1;
	    dstLen = dstMax;
	}
3118
3119
3120
3121
3122
3123
3124

3125
3126
3127
3128
3129
3130
3131
3132
3133
3134
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3136
3137
3138
3139
3140
3141
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3144
3145
3146
3147
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3150
3151
3152
3153
3154
3155
3156
3157
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3159
3160
3161
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3164
3165
3166
3167
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3169
3170
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3174
3175
3176
3177
3178
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3180
3181
3182
3183
3184
3185
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3187
3188
3189
3190
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3194
3195
3196
3197
3198
3199
3200
3201
3202
3203
3204
3205
3206
3207
3208
3209
3210
3211
3212
3213
3214
3215
3216
3217
3218
3219

static int
WriteChars(chanPtr, src, srcLen)
    Channel *chanPtr;		/* The channel to buffer output for. */
    CONST char *src;		/* UTF-8 string to write. */
    int srcLen;			/* Length of UTF-8 string in bytes. */
{

    ChannelBuffer *bufPtr;
    char *dst, *stage;
    int saved, savedLF, sawLF, total, toWrite, flags;
    int dstWrote, dstLen, stageLen, stageMax, stageRead;
    Tcl_Encoding encoding;
    char safe[BUFFER_PADDING];
    
    total = 0;
    sawLF = 0;
    savedLF = 0;
    saved = 0;
    encoding = chanPtr->encoding;

    /*
     * Loop over all UTF-8 characters in src, storing them in staging buffer
     * with proper EOL translation.
     */

    while (srcLen + savedLF > 0) {
	stage = chanPtr->outputStage;
	stageMax = chanPtr->bufSize;
	stageLen = stageMax;

	toWrite = stageLen;
	if (toWrite > srcLen) {
	    toWrite = srcLen;
	}

	if (savedLF) {
	    /*
	     * A '\n' was left over from last call to TranslateOutputEOL()
	     * and we need to store it in the staging buffer.  If the
	     * channel is line-based, we will need to flush the output
	     * buffer (after translating the staging buffer).
	     */
	    
	    *stage++ = '\n';
	    stageLen--;
	    sawLF++;
	}
	sawLF += TranslateOutputEOL(chanPtr, stage, src, &stageLen, &toWrite);

	stage -= savedLF;
	stageLen += savedLF;
	savedLF = 0;

	if (stageLen > stageMax) {
	    savedLF = 1;
	    stageLen = stageMax;
	}
	src += toWrite;
	srcLen -= toWrite;

	flags = chanPtr->outputEncodingFlags;
	if (srcLen == 0) {
	    flags |= TCL_ENCODING_END;
	}

	/*
	 * Loop over all UTF-8 characters in staging buffer, converting them
	 * to external encoding, storing them in output buffer.
	 */

	while (stageLen + saved > 0) {
	    bufPtr = chanPtr->curOutPtr;
	    if (bufPtr == NULL) {
		bufPtr = AllocChannelBuffer(chanPtr->bufSize);
		chanPtr->curOutPtr = bufPtr;
	    }
	    dst = bufPtr->buf + bufPtr->nextAdded;
	    dstLen = bufPtr->bufLength - bufPtr->nextAdded;

	    if (saved != 0) {
		/*
		 * Here's some translated bytes left over from the last
		 * buffer that we need to stick at the beginning of this
		 * buffer.
		 */
		 
		memcpy((VOID *) dst, (VOID *) safe, (size_t) saved);
		bufPtr->nextAdded += saved;
		dst += saved;
		dstLen -= saved;
		saved = 0;
	    }

	    Tcl_UtfToExternal(NULL, encoding, stage, stageLen, flags,
		    &chanPtr->outputEncodingState, dst,
		    dstLen + BUFFER_PADDING, &stageRead, &dstWrote, NULL);
	    if (stageRead + dstWrote == 0) {
		/*
		 * We have an incomplete UTF-8 character at the end of the
		 * staging buffer.  It will get moved to the beginning of the
		 * staging buffer followed by more bytes from src.
		 */







>











|







|
|



















|












|










|

|
|



















|







2672
2673
2674
2675
2676
2677
2678
2679
2680
2681
2682
2683
2684
2685
2686
2687
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2690
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2692
2693
2694
2695
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2699
2700
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2709
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2715
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2719
2720
2721
2722
2723
2724
2725
2726
2727
2728
2729
2730
2731
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2733
2734
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2736
2737
2738
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2740
2741
2742
2743
2744
2745
2746
2747
2748
2749
2750
2751
2752
2753
2754
2755
2756
2757
2758
2759
2760
2761
2762
2763
2764
2765
2766
2767
2768
2769
2770
2771
2772
2773
2774

static int
WriteChars(chanPtr, src, srcLen)
    Channel *chanPtr;		/* The channel to buffer output for. */
    CONST char *src;		/* UTF-8 string to write. */
    int srcLen;			/* Length of UTF-8 string in bytes. */
{
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    ChannelBuffer *bufPtr;
    char *dst, *stage;
    int saved, savedLF, sawLF, total, toWrite, flags;
    int dstWrote, dstLen, stageLen, stageMax, stageRead;
    Tcl_Encoding encoding;
    char safe[BUFFER_PADDING];
    
    total = 0;
    sawLF = 0;
    savedLF = 0;
    saved = 0;
    encoding = statePtr->encoding;

    /*
     * Loop over all UTF-8 characters in src, storing them in staging buffer
     * with proper EOL translation.
     */

    while (srcLen + savedLF > 0) {
	stage = statePtr->outputStage;
	stageMax = statePtr->bufSize;
	stageLen = stageMax;

	toWrite = stageLen;
	if (toWrite > srcLen) {
	    toWrite = srcLen;
	}

	if (savedLF) {
	    /*
	     * A '\n' was left over from last call to TranslateOutputEOL()
	     * and we need to store it in the staging buffer.  If the
	     * channel is line-based, we will need to flush the output
	     * buffer (after translating the staging buffer).
	     */
	    
	    *stage++ = '\n';
	    stageLen--;
	    sawLF++;
	}
	sawLF += TranslateOutputEOL(statePtr, stage, src, &stageLen, &toWrite);

	stage -= savedLF;
	stageLen += savedLF;
	savedLF = 0;

	if (stageLen > stageMax) {
	    savedLF = 1;
	    stageLen = stageMax;
	}
	src += toWrite;
	srcLen -= toWrite;

	flags = statePtr->outputEncodingFlags;
	if (srcLen == 0) {
	    flags |= TCL_ENCODING_END;
	}

	/*
	 * Loop over all UTF-8 characters in staging buffer, converting them
	 * to external encoding, storing them in output buffer.
	 */

	while (stageLen + saved > 0) {
	    bufPtr = statePtr->curOutPtr;
	    if (bufPtr == NULL) {
		bufPtr = AllocChannelBuffer(statePtr->bufSize);
		statePtr->curOutPtr = bufPtr;
	    }
	    dst = bufPtr->buf + bufPtr->nextAdded;
	    dstLen = bufPtr->bufLength - bufPtr->nextAdded;

	    if (saved != 0) {
		/*
		 * Here's some translated bytes left over from the last
		 * buffer that we need to stick at the beginning of this
		 * buffer.
		 */
		 
		memcpy((VOID *) dst, (VOID *) safe, (size_t) saved);
		bufPtr->nextAdded += saved;
		dst += saved;
		dstLen -= saved;
		saved = 0;
	    }

	    Tcl_UtfToExternal(NULL, encoding, stage, stageLen, flags,
		    &statePtr->outputEncodingState, dst,
		    dstLen + BUFFER_PADDING, &stageRead, &dstWrote, NULL);
	    if (stageRead + dstWrote == 0) {
		/*
		 * We have an incomplete UTF-8 character at the end of the
		 * staging buffer.  It will get moved to the beginning of the
		 * staging buffer followed by more bytes from src.
		 */
3289
3290
3291
3292
3293
3294
3295
3296
3297
3298
3299
3300
3301
3302
3303
3304
3305
3306
3307
3308
3309
3310
3311
3312
3313
3314
3315
3316
3317
3318
3319
3320
3321
3322
3323
 *	buffer), the number of bytes consumed from the source buffer
 *	will be less than the number of bytes stored in the output buffer.
 *
 *---------------------------------------------------------------------------
 */

static int
TranslateOutputEOL(chanPtr, dst, src, dstLenPtr, srcLenPtr)
    Channel *chanPtr;		/* Channel being read, for translation and
				 * buffering modes. */
    char *dst;			/* Output buffer filled with UTF-8 chars by
				 * applying appropriate EOL translation to
				 * source characters. */
    CONST char *src;		/* Source UTF-8 characters. */
    int *dstLenPtr;		/* On entry, the maximum length of output
				 * buffer in bytes.  On exit, the number of
				 * bytes actually used in output buffer. */
    int *srcLenPtr;		/* On entry, the length of source buffer.
				 * On exit, the number of bytes read from
				 * the source buffer. */
{
    char *dstEnd;
    int srcLen, newlineFound;
    
    newlineFound = 0;
    srcLen = *srcLenPtr;

    switch (chanPtr->outputTranslation) {
	case TCL_TRANSLATE_LF: {
	    for (dstEnd = dst + srcLen; dst < dstEnd; ) {
		if (*src == '\n') {
		    newlineFound = 1;
		}
		*dst++ = *src++;
	    }







|
|


















|







2844
2845
2846
2847
2848
2849
2850
2851
2852
2853
2854
2855
2856
2857
2858
2859
2860
2861
2862
2863
2864
2865
2866
2867
2868
2869
2870
2871
2872
2873
2874
2875
2876
2877
2878
 *	buffer), the number of bytes consumed from the source buffer
 *	will be less than the number of bytes stored in the output buffer.
 *
 *---------------------------------------------------------------------------
 */

static int
TranslateOutputEOL(statePtr, dst, src, dstLenPtr, srcLenPtr)
    ChannelState *statePtr;	/* Channel being read, for translation and
				 * buffering modes. */
    char *dst;			/* Output buffer filled with UTF-8 chars by
				 * applying appropriate EOL translation to
				 * source characters. */
    CONST char *src;		/* Source UTF-8 characters. */
    int *dstLenPtr;		/* On entry, the maximum length of output
				 * buffer in bytes.  On exit, the number of
				 * bytes actually used in output buffer. */
    int *srcLenPtr;		/* On entry, the length of source buffer.
				 * On exit, the number of bytes read from
				 * the source buffer. */
{
    char *dstEnd;
    int srcLen, newlineFound;
    
    newlineFound = 0;
    srcLen = *srcLenPtr;

    switch (statePtr->outputTranslation) {
	case TCL_TRANSLATE_LF: {
	    for (dstEnd = dst + srcLen; dst < dstEnd; ) {
		if (*src == '\n') {
		    newlineFound = 1;
		}
		*dst++ = *src++;
	    }
3401
3402
3403
3404
3405
3406
3407

3408
3409
3410
3411
3412
3413
3414
3415
3416
3417
3418
3419
3420
3421
3422
3423
3424
3425
3426
3427
3428
3429
3430
3431
3432
3433
static int
CheckFlush(chanPtr, bufPtr, newlineFlag)
    Channel *chanPtr;		/* Channel being read, for buffering mode. */
    ChannelBuffer *bufPtr;	/* Channel buffer to possibly flush. */
    int newlineFlag;		/* Non-zero if a the channel buffer
				 * contains a newline. */
{

    /*
     * The current buffer is ready for output:
     * 1. if it is full.
     * 2. if it contains a newline and this channel is line-buffered.
     * 3. if it contains any output and this channel is unbuffered.
     */

    if ((chanPtr->flags & BUFFER_READY) == 0) {
	if (bufPtr->nextAdded == bufPtr->bufLength) {
	    chanPtr->flags |= BUFFER_READY;
	} else if (chanPtr->flags & CHANNEL_LINEBUFFERED) {
	    if (newlineFlag != 0) {
		chanPtr->flags |= BUFFER_READY;
	    }
	} else if (chanPtr->flags & CHANNEL_UNBUFFERED) {
	    chanPtr->flags |= BUFFER_READY;
	}
    }
    if (chanPtr->flags & BUFFER_READY) {
	if (FlushChannel(NULL, chanPtr, 0) != 0) {
	    return -1;
	}
    }
    return 0;
}








>







|

|
|

|

|
|


|







2956
2957
2958
2959
2960
2961
2962
2963
2964
2965
2966
2967
2968
2969
2970
2971
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2974
2975
2976
2977
2978
2979
2980
2981
2982
2983
2984
2985
2986
2987
2988
2989
static int
CheckFlush(chanPtr, bufPtr, newlineFlag)
    Channel *chanPtr;		/* Channel being read, for buffering mode. */
    ChannelBuffer *bufPtr;	/* Channel buffer to possibly flush. */
    int newlineFlag;		/* Non-zero if a the channel buffer
				 * contains a newline. */
{
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    /*
     * The current buffer is ready for output:
     * 1. if it is full.
     * 2. if it contains a newline and this channel is line-buffered.
     * 3. if it contains any output and this channel is unbuffered.
     */

    if ((statePtr->flags & BUFFER_READY) == 0) {
	if (bufPtr->nextAdded == bufPtr->bufLength) {
	    statePtr->flags |= BUFFER_READY;
	} else if (statePtr->flags & CHANNEL_LINEBUFFERED) {
	    if (newlineFlag != 0) {
		statePtr->flags |= BUFFER_READY;
	    }
	} else if (statePtr->flags & CHANNEL_UNBUFFERED) {
	    statePtr->flags |= BUFFER_READY;
	}
    }
    if (statePtr->flags & BUFFER_READY) {
	if (FlushChannel(NULL, chanPtr, 0) != 0) {
	    return -1;
	}
    }
    return 0;
}

3500
3501
3502
3503
3504
3505
3506
3507
3508
3509

3510
3511
3512
3513
3514




3515

3516
3517
3518
3519
3520
3521
3522
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3524
3525
3526
3527
3528
3529
3530
3531
3532
3533
3534
3535
3536
3537
3538
int
Tcl_GetsObj(chan, objPtr)
    Tcl_Channel chan;		/* Channel from which to read. */
    Tcl_Obj *objPtr;		/* The line read will be appended to this
				 * object as UTF-8 characters. */
{
    GetsState gs;
    Channel *chanPtr;
    int inEofChar, skip, copiedTotal;
    ChannelBuffer *bufPtr;

    Tcl_Encoding encoding;
    char *dst, *dstEnd, *eol, *eof;
    Tcl_EncodingState oldState;
    int oldLength, oldFlags, oldRemoved;





    chanPtr = (Channel *) chan;

    if (CheckChannelErrors(chanPtr, TCL_READABLE) != 0) {
	copiedTotal = -1;
	goto done;
    }

    bufPtr = chanPtr->inQueueHead;
    encoding = chanPtr->encoding;

    /*
     * Preserved so we can restore the channel's state in case we don't
     * find a newline in the available input.
     */

    Tcl_GetStringFromObj(objPtr, &oldLength);
    oldFlags = chanPtr->inputEncodingFlags;
    oldState = chanPtr->inputEncodingState;
    oldRemoved = BUFFER_PADDING;
    if (bufPtr != NULL) {
	oldRemoved = bufPtr->nextRemoved;
    }

    /*
     * If there is no encoding, use "iso8859-1" -- Tcl_GetsObj() doesn't







|
|

>





>
>
>
>
|
>
|




|
|







|
|







3056
3057
3058
3059
3060
3061
3062
3063
3064
3065
3066
3067
3068
3069
3070
3071
3072
3073
3074
3075
3076
3077
3078
3079
3080
3081
3082
3083
3084
3085
3086
3087
3088
3089
3090
3091
3092
3093
3094
3095
3096
3097
3098
3099
3100
int
Tcl_GetsObj(chan, objPtr)
    Tcl_Channel chan;		/* Channel from which to read. */
    Tcl_Obj *objPtr;		/* The line read will be appended to this
				 * object as UTF-8 characters. */
{
    GetsState gs;
    Channel *chanPtr = (Channel *) chan;
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    ChannelBuffer *bufPtr;
    int inEofChar, skip, copiedTotal;
    Tcl_Encoding encoding;
    char *dst, *dstEnd, *eol, *eof;
    Tcl_EncodingState oldState;
    int oldLength, oldFlags, oldRemoved;

    /*
     * This operation should occur at the top of a channel stack.
     */

    chanPtr = statePtr->topChanPtr;

    if (CheckChannelErrors(statePtr, TCL_READABLE) != 0) {
	copiedTotal = -1;
	goto done;
    }

    bufPtr = statePtr->inQueueHead;
    encoding = statePtr->encoding;

    /*
     * Preserved so we can restore the channel's state in case we don't
     * find a newline in the available input.
     */

    Tcl_GetStringFromObj(objPtr, &oldLength);
    oldFlags = statePtr->inputEncodingFlags;
    oldState = statePtr->inputEncodingState;
    oldRemoved = BUFFER_PADDING;
    if (bufPtr != NULL) {
	oldRemoved = bufPtr->nextRemoved;
    }

    /*
     * If there is no encoding, use "iso8859-1" -- Tcl_GetsObj() doesn't
3560
3561
3562
3563
3564
3565
3566
3567
3568
3569
3570
3571
3572
3573
3574
    gs.totalChars	= 0;

    dst = objPtr->bytes + oldLength;
    dstEnd = dst;

    skip = 0;
    eof = NULL;
    inEofChar = chanPtr->inEofChar;

    while (1) {
	if (dst >= dstEnd) {
	    if (FilterInputBytes(chanPtr, &gs) != 0) {
		goto restore;
	    }
	    dstEnd = dst + gs.bytesWrote;







|







3122
3123
3124
3125
3126
3127
3128
3129
3130
3131
3132
3133
3134
3135
3136
    gs.totalChars	= 0;

    dst = objPtr->bytes + oldLength;
    dstEnd = dst;

    skip = 0;
    eof = NULL;
    inEofChar = statePtr->inEofChar;

    while (1) {
	if (dst >= dstEnd) {
	    if (FilterInputBytes(chanPtr, &gs) != 0) {
		goto restore;
	    }
	    dstEnd = dst + gs.bytesWrote;
3591
3592
3593
3594
3595
3596
3597
3598
3599
3600
3601
3602
3603
3604
3605

	/*
	 * On EOL, leave current file position pointing after the EOL, but
	 * don't store the EOL in the output string.
	 */

	eol = dst;
	switch (chanPtr->inputTranslation) {
	    case TCL_TRANSLATE_LF: {
		for (eol = dst; eol < dstEnd; eol++) {
		    if (*eol == '\n') {
			skip = 1;
			goto goteol;
		    }
		}







|







3153
3154
3155
3156
3157
3158
3159
3160
3161
3162
3163
3164
3165
3166
3167

	/*
	 * On EOL, leave current file position pointing after the EOL, but
	 * don't store the EOL in the output string.
	 */

	eol = dst;
	switch (statePtr->inputTranslation) {
	    case TCL_TRANSLATE_LF: {
		for (eol = dst; eol < dstEnd; eol++) {
		    if (*eol == '\n') {
			skip = 1;
			goto goteol;
		    }
		}
3640
3641
3642
3643
3644
3645
3646
3647
3648
3649
3650
3651
3652
3653
3654
3655
3656
3657
3658
3659
3660
3661
3662
3663
3664
3665
3666
3667
			}
		    }
		}
		break;
	    }
	    case TCL_TRANSLATE_AUTO: {
		skip = 1;
		if (chanPtr->flags & INPUT_SAW_CR) {
		    chanPtr->flags &= ~INPUT_SAW_CR;
		    if (*eol == '\n') {
			/*
			 * Skip the raw bytes that make up the '\n'.
			 */

			char tmp[1 + TCL_UTF_MAX];
			int rawRead;

			bufPtr = gs.bufPtr;
			Tcl_ExternalToUtf(NULL, gs.encoding,
				bufPtr->buf + bufPtr->nextRemoved,
				gs.rawRead, chanPtr->inputEncodingFlags,
				&gs.state, tmp, 1 + TCL_UTF_MAX, &rawRead,
				NULL, NULL);
			bufPtr->nextRemoved += rawRead;
			gs.rawRead -= rawRead;
			gs.bytesWrote--;
			gs.charsWrote--;
			memmove(dst, dst + 1, (size_t) (dstEnd - dst));







|
|











|







3202
3203
3204
3205
3206
3207
3208
3209
3210
3211
3212
3213
3214
3215
3216
3217
3218
3219
3220
3221
3222
3223
3224
3225
3226
3227
3228
3229
			}
		    }
		}
		break;
	    }
	    case TCL_TRANSLATE_AUTO: {
		skip = 1;
		if (statePtr->flags & INPUT_SAW_CR) {
		    statePtr->flags &= ~INPUT_SAW_CR;
		    if (*eol == '\n') {
			/*
			 * Skip the raw bytes that make up the '\n'.
			 */

			char tmp[1 + TCL_UTF_MAX];
			int rawRead;

			bufPtr = gs.bufPtr;
			Tcl_ExternalToUtf(NULL, gs.encoding,
				bufPtr->buf + bufPtr->nextRemoved,
				gs.rawRead, statePtr->inputEncodingFlags,
				&gs.state, tmp, 1 + TCL_UTF_MAX, &rawRead,
				NULL, NULL);
			bufPtr->nextRemoved += rawRead;
			gs.rawRead -= rawRead;
			gs.bytesWrote--;
			gs.charsWrote--;
			memmove(dst, dst + 1, (size_t) (dstEnd - dst));
3681
3682
3683
3684
3685
3686
3687
3688
3689
3690
3691
3692
3693
3694
3695
			    
			    offset = eol - objPtr->bytes;
			    dst = dstEnd;
			    PeekAhead(chanPtr, &dstEnd, &gs);
			    eol = objPtr->bytes + offset;
			    if (eol >= dstEnd) {
				eol--;
				chanPtr->flags |= INPUT_SAW_CR;
				goto goteol;
			    }
			}
			if (*eol == '\n') {
			    skip++;
			}
			eol--;







|







3243
3244
3245
3246
3247
3248
3249
3250
3251
3252
3253
3254
3255
3256
3257
			    
			    offset = eol - objPtr->bytes;
			    dst = dstEnd;
			    PeekAhead(chanPtr, &dstEnd, &gs);
			    eol = objPtr->bytes + offset;
			    if (eol >= dstEnd) {
				eol--;
				statePtr->flags |= INPUT_SAW_CR;
				goto goteol;
			    }
			}
			if (*eol == '\n') {
			    skip++;
			}
			eol--;
3704
3705
3706
3707
3708
3709
3710
3711
3712
3713
3714
3715
3716
3717
3718
3719
3720
3721
	    /*
	     * EOF character was seen.  On EOF, leave current file position
	     * pointing at the EOF character, but don't store the EOF
	     * character in the output string.
	     */

	    dstEnd = eof;
	    chanPtr->flags |= (CHANNEL_EOF | CHANNEL_STICKY_EOF);
	    chanPtr->inputEncodingFlags |= TCL_ENCODING_END;
	}
	if (chanPtr->flags & CHANNEL_EOF) {
	    skip = 0;
	    eol = dstEnd;
	    if (eol == objPtr->bytes) {
		/*
		 * If we didn't produce any bytes before encountering EOF,
		 * caller needs to see -1.
		 */







|
|

|







3266
3267
3268
3269
3270
3271
3272
3273
3274
3275
3276
3277
3278
3279
3280
3281
3282
3283
	    /*
	     * EOF character was seen.  On EOF, leave current file position
	     * pointing at the EOF character, but don't store the EOF
	     * character in the output string.
	     */

	    dstEnd = eof;
	    statePtr->flags |= (CHANNEL_EOF | CHANNEL_STICKY_EOF);
	    statePtr->inputEncodingFlags |= TCL_ENCODING_END;
	}
	if (statePtr->flags & CHANNEL_EOF) {
	    skip = 0;
	    eol = dstEnd;
	    if (eol == objPtr->bytes) {
		/*
		 * If we didn't produce any bytes before encountering EOF,
		 * caller needs to see -1.
		 */
3736
3737
3738
3739
3740
3741
3742
3743
3744
3745
3746
3747
3748
3749
3750
3751
3752
3753
3754
3755
3756
3757
3758
3759
3760
3761
3762
3763
3764
3765
3766
3767
3768
3769
3770
3771
3772
3773
3774
3775
3776
3777
3778
3779
3780
3781
3782
3783
3784
3785
3786
3787
3788
3789
3790
3791
3792
3793
3794
3795
3796
3797
     * the number of UTF-8 characters we want, plus how many raw bytes
     * correspond to the character(s) making up EOL (if any), so we can
     * remove the correct number of bytes from the channel buffer.
     */
     
    goteol:
    bufPtr = gs.bufPtr;
    chanPtr->inputEncodingState = gs.state;
    Tcl_ExternalToUtf(NULL, gs.encoding, bufPtr->buf + bufPtr->nextRemoved,
	    gs.rawRead, chanPtr->inputEncodingFlags,
	    &chanPtr->inputEncodingState, dst, eol - dst + skip + TCL_UTF_MAX,
	    &gs.rawRead, NULL, &gs.charsWrote);
    bufPtr->nextRemoved += gs.rawRead;

    /*
     * Recycle all the emptied buffers.
     */

    Tcl_SetObjLength(objPtr, eol - objPtr->bytes);
    CommonGetsCleanup(chanPtr, encoding);
    chanPtr->flags &= ~CHANNEL_BLOCKED;
    copiedTotal = gs.totalChars + gs.charsWrote - skip;
    goto done;

    /*
     * Couldn't get a complete line.  This only happens if we get a error
     * reading from the channel or we are non-blocking and there wasn't
     * an EOL or EOF in the data available.
     */

    restore:
    bufPtr = chanPtr->inQueueHead;
    bufPtr->nextRemoved = oldRemoved;

    for (bufPtr = bufPtr->nextPtr; bufPtr != NULL; bufPtr = bufPtr->nextPtr) {
	bufPtr->nextRemoved = BUFFER_PADDING;
    }
    CommonGetsCleanup(chanPtr, encoding);

    chanPtr->inputEncodingState = oldState;
    chanPtr->inputEncodingFlags = oldFlags;
    Tcl_SetObjLength(objPtr, oldLength);

    /*
     * We didn't get a complete line so we need to indicate to UpdateInterest
     * that the gets blocked.  It will wait for more data instead of firing
     * a timer, avoiding a busy wait.  This is where we are assuming that the
     * next operation is a gets.  No more file events will be delivered on 
     * this channel until new data arrives or some operation is performed
     * on the channel (e.g. gets, read, fconfigure) that changes the blocking
     * state.  Note that this means a file event will not be delivered even
     * though a read would be able to consume the buffered data.
     */

    chanPtr->flags |= CHANNEL_NEED_MORE_DATA;
    copiedTotal = -1;

    done:
    /*
     * Update the notifier state so we don't block while there is still
     * data in the buffers.
     */







|

|
|









|










|







|
|













|







3298
3299
3300
3301
3302
3303
3304
3305
3306
3307
3308
3309
3310
3311
3312
3313
3314
3315
3316
3317
3318
3319
3320
3321
3322
3323
3324
3325
3326
3327
3328
3329
3330
3331
3332
3333
3334
3335
3336
3337
3338
3339
3340
3341
3342
3343
3344
3345
3346
3347
3348
3349
3350
3351
3352
3353
3354
3355
3356
3357
3358
3359
     * the number of UTF-8 characters we want, plus how many raw bytes
     * correspond to the character(s) making up EOL (if any), so we can
     * remove the correct number of bytes from the channel buffer.
     */
     
    goteol:
    bufPtr = gs.bufPtr;
    statePtr->inputEncodingState = gs.state;
    Tcl_ExternalToUtf(NULL, gs.encoding, bufPtr->buf + bufPtr->nextRemoved,
	    gs.rawRead, statePtr->inputEncodingFlags,
	    &statePtr->inputEncodingState, dst, eol - dst + skip + TCL_UTF_MAX,
	    &gs.rawRead, NULL, &gs.charsWrote);
    bufPtr->nextRemoved += gs.rawRead;

    /*
     * Recycle all the emptied buffers.
     */

    Tcl_SetObjLength(objPtr, eol - objPtr->bytes);
    CommonGetsCleanup(chanPtr, encoding);
    statePtr->flags &= ~CHANNEL_BLOCKED;
    copiedTotal = gs.totalChars + gs.charsWrote - skip;
    goto done;

    /*
     * Couldn't get a complete line.  This only happens if we get a error
     * reading from the channel or we are non-blocking and there wasn't
     * an EOL or EOF in the data available.
     */

    restore:
    bufPtr = statePtr->inQueueHead;
    bufPtr->nextRemoved = oldRemoved;

    for (bufPtr = bufPtr->nextPtr; bufPtr != NULL; bufPtr = bufPtr->nextPtr) {
	bufPtr->nextRemoved = BUFFER_PADDING;
    }
    CommonGetsCleanup(chanPtr, encoding);

    statePtr->inputEncodingState = oldState;
    statePtr->inputEncodingFlags = oldFlags;
    Tcl_SetObjLength(objPtr, oldLength);

    /*
     * We didn't get a complete line so we need to indicate to UpdateInterest
     * that the gets blocked.  It will wait for more data instead of firing
     * a timer, avoiding a busy wait.  This is where we are assuming that the
     * next operation is a gets.  No more file events will be delivered on 
     * this channel until new data arrives or some operation is performed
     * on the channel (e.g. gets, read, fconfigure) that changes the blocking
     * state.  Note that this means a file event will not be delivered even
     * though a read would be able to consume the buffered data.
     */

    statePtr->flags |= CHANNEL_NEED_MORE_DATA;
    copiedTotal = -1;

    done:
    /*
     * Update the notifier state so we don't block while there is still
     * data in the buffers.
     */
3825
3826
3827
3828
3829
3830
3831

3832
3833
3834
3835
3836
3837
3838
 */
 
static int
FilterInputBytes(chanPtr, gsPtr)
    Channel *chanPtr;		/* Channel to read. */
    GetsState *gsPtr;		/* Current state of gets operation. */
{

    ChannelBuffer *bufPtr;
    char *raw, *rawStart, *rawEnd;
    char *dst;
    int offset, toRead, dstNeeded, spaceLeft, result, rawLen, length;
    Tcl_Obj *objPtr;
#define ENCODING_LINESIZE   30	/* Lower bound on how many bytes to convert
				 * at a time.  Since we don't know a priori







>







3387
3388
3389
3390
3391
3392
3393
3394
3395
3396
3397
3398
3399
3400
3401
 */
 
static int
FilterInputBytes(chanPtr, gsPtr)
    Channel *chanPtr;		/* Channel to read. */
    GetsState *gsPtr;		/* Current state of gets operation. */
{
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    ChannelBuffer *bufPtr;
    char *raw, *rawStart, *rawEnd;
    char *dst;
    int offset, toRead, dstNeeded, spaceLeft, result, rawLen, length;
    Tcl_Obj *objPtr;
#define ENCODING_LINESIZE   30	/* Lower bound on how many bytes to convert
				 * at a time.  Since we don't know a priori
3861
3862
3863
3864
3865
3866
3867
3868
3869
3870
3871
3872
3873
3874
3875
3876
3877
3878
3879
3880
3881
3882
3883
3884
3885
3886
3887
3888
	/*
	 * All channel buffers were exhausted and the caller still hasn't
	 * seen EOL.  Need to read more bytes from the channel device.
	 * Side effect is to allocate another channel buffer.
	 */
	 
	read:
        if (chanPtr->flags & CHANNEL_BLOCKED) {
            if (chanPtr->flags & CHANNEL_NONBLOCKING) {
		gsPtr->charsWrote = 0;
		gsPtr->rawRead = 0;
		return -1;
	    }
            chanPtr->flags &= ~CHANNEL_BLOCKED;
        }
	if (GetInput(chanPtr) != 0) {
	    gsPtr->charsWrote = 0;
	    gsPtr->rawRead = 0;
	    return -1;
	}
	bufPtr = chanPtr->inQueueTail;
	gsPtr->bufPtr = bufPtr;
    }

    /*
     * Convert some of the bytes from the channel buffer to UTF-8.  Space in
     * objPtr's string rep is used to hold the UTF-8 characters.  Grow the
     * string rep if we need more space.







|
|




|






|







3424
3425
3426
3427
3428
3429
3430
3431
3432
3433
3434
3435
3436
3437
3438
3439
3440
3441
3442
3443
3444
3445
3446
3447
3448
3449
3450
3451
	/*
	 * All channel buffers were exhausted and the caller still hasn't
	 * seen EOL.  Need to read more bytes from the channel device.
	 * Side effect is to allocate another channel buffer.
	 */
	 
	read:
        if (statePtr->flags & CHANNEL_BLOCKED) {
            if (statePtr->flags & CHANNEL_NONBLOCKING) {
		gsPtr->charsWrote = 0;
		gsPtr->rawRead = 0;
		return -1;
	    }
            statePtr->flags &= ~CHANNEL_BLOCKED;
        }
	if (GetInput(chanPtr) != 0) {
	    gsPtr->charsWrote = 0;
	    gsPtr->rawRead = 0;
	    return -1;
	}
	bufPtr = statePtr->inQueueTail;
	gsPtr->bufPtr = bufPtr;
    }

    /*
     * Convert some of the bytes from the channel buffer to UTF-8.  Space in
     * objPtr's string rep is used to hold the UTF-8 characters.  Grow the
     * string rep if we need more space.
3908
3909
3910
3911
3912
3913
3914
3915
3916
3917
3918
3919
3920
3921
3922
3923
3924
3925
3926
3927
3928
3929
3930
3931
3932
3933
3934
3935
3936
3937
3938
3939
3940
3941
3942
3943
3944
3945
3946
3947
3948
3949
3950
3951
3952
3953
3954
3955
3956
3957
3958
3959
3960
3961
3962
3963
3964
	}
	length += TCL_UTF_MAX + 1;
	Tcl_SetObjLength(objPtr, length);
	spaceLeft = length - offset;
	dst = objPtr->bytes + offset;
	*gsPtr->dstPtr = dst;
    }
    gsPtr->state = chanPtr->inputEncodingState;
    result = Tcl_ExternalToUtf(NULL, gsPtr->encoding, raw, rawLen,
	    chanPtr->inputEncodingFlags, &chanPtr->inputEncodingState,
	    dst, spaceLeft, &gsPtr->rawRead, &gsPtr->bytesWrote,
	    &gsPtr->charsWrote); 
    if (result == TCL_CONVERT_MULTIBYTE) {
	/*
	 * The last few bytes in this channel buffer were the start of a
	 * multibyte sequence.  If this buffer was full, then move them to
	 * the next buffer so the bytes will be contiguous.  
	 */

	ChannelBuffer *nextPtr;
	int extra;
	
	nextPtr = bufPtr->nextPtr;
	if (bufPtr->nextAdded < bufPtr->bufLength) {
	    if (gsPtr->rawRead > 0) {
		/*
		 * Some raw bytes were converted to UTF-8.  Fall through,
		 * returning those UTF-8 characters because a EOL might be
		 * present in them.
		 */
	    } else if (chanPtr->flags & CHANNEL_EOF) {
		/*
		 * There was a partial character followed by EOF on the
		 * device.  Fall through, returning that nothing was found.
		 */

		bufPtr->nextRemoved = bufPtr->nextAdded;
	    } else {
		/*
		 * There are no more cached raw bytes left.  See if we can
		 * get some more.
		 */

		goto read;
	    }
	} else {
	    if (nextPtr == NULL) {
		nextPtr = AllocChannelBuffer(chanPtr->bufSize);
		bufPtr->nextPtr = nextPtr;
		chanPtr->inQueueTail = nextPtr;
	    }
	    extra = rawLen - gsPtr->rawRead;
	    memcpy((VOID *) (nextPtr->buf + BUFFER_PADDING - extra),
		    (VOID *) (raw + gsPtr->rawRead), (size_t) extra);
	    nextPtr->nextRemoved -= extra;
	    bufPtr->nextAdded -= extra;
	}







|

|




















|
















|

|







3471
3472
3473
3474
3475
3476
3477
3478
3479
3480
3481
3482
3483
3484
3485
3486
3487
3488
3489
3490
3491
3492
3493
3494
3495
3496
3497
3498
3499
3500
3501
3502
3503
3504
3505
3506
3507
3508
3509
3510
3511
3512
3513
3514
3515
3516
3517
3518
3519
3520
3521
3522
3523
3524
3525
3526
3527
	}
	length += TCL_UTF_MAX + 1;
	Tcl_SetObjLength(objPtr, length);
	spaceLeft = length - offset;
	dst = objPtr->bytes + offset;
	*gsPtr->dstPtr = dst;
    }
    gsPtr->state = statePtr->inputEncodingState;
    result = Tcl_ExternalToUtf(NULL, gsPtr->encoding, raw, rawLen,
	    statePtr->inputEncodingFlags, &statePtr->inputEncodingState,
	    dst, spaceLeft, &gsPtr->rawRead, &gsPtr->bytesWrote,
	    &gsPtr->charsWrote); 
    if (result == TCL_CONVERT_MULTIBYTE) {
	/*
	 * The last few bytes in this channel buffer were the start of a
	 * multibyte sequence.  If this buffer was full, then move them to
	 * the next buffer so the bytes will be contiguous.  
	 */

	ChannelBuffer *nextPtr;
	int extra;
	
	nextPtr = bufPtr->nextPtr;
	if (bufPtr->nextAdded < bufPtr->bufLength) {
	    if (gsPtr->rawRead > 0) {
		/*
		 * Some raw bytes were converted to UTF-8.  Fall through,
		 * returning those UTF-8 characters because a EOL might be
		 * present in them.
		 */
	    } else if (statePtr->flags & CHANNEL_EOF) {
		/*
		 * There was a partial character followed by EOF on the
		 * device.  Fall through, returning that nothing was found.
		 */

		bufPtr->nextRemoved = bufPtr->nextAdded;
	    } else {
		/*
		 * There are no more cached raw bytes left.  See if we can
		 * get some more.
		 */

		goto read;
	    }
	} else {
	    if (nextPtr == NULL) {
		nextPtr = AllocChannelBuffer(statePtr->bufSize);
		bufPtr->nextPtr = nextPtr;
		statePtr->inQueueTail = nextPtr;
	    }
	    extra = rawLen - gsPtr->rawRead;
	    memcpy((VOID *) (nextPtr->buf + BUFFER_PADDING - extra),
		    (VOID *) (raw + gsPtr->rawRead), (size_t) extra);
	    nextPtr->nextRemoved -= extra;
	    bufPtr->nextAdded -= extra;
	}
3993
3994
3995
3996
3997
3998
3999

4000
4001
4002
4003
4004
4005
4006
static void
PeekAhead(chanPtr, dstEndPtr, gsPtr)
    Channel *chanPtr;		/* The channel to read. */
    char **dstEndPtr;		/* Filled with pointer to end of new range
				 * of UTF-8 characters. */
    GetsState *gsPtr;		/* Current state of gets operation. */
{

    ChannelBuffer *bufPtr;
    Tcl_DriverBlockModeProc *blockModeProc;
    int bytesLeft;

    bufPtr = gsPtr->bufPtr;

    /*







>







3556
3557
3558
3559
3560
3561
3562
3563
3564
3565
3566
3567
3568
3569
3570
static void
PeekAhead(chanPtr, dstEndPtr, gsPtr)
    Channel *chanPtr;		/* The channel to read. */
    char **dstEndPtr;		/* Filled with pointer to end of new range
				 * of UTF-8 characters. */
    GetsState *gsPtr;		/* Current state of gets operation. */
{
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    ChannelBuffer *bufPtr;
    Tcl_DriverBlockModeProc *blockModeProc;
    int bytesLeft;

    bufPtr = gsPtr->bufPtr;

    /*
4018
4019
4020
4021
4022
4023
4024
4025
4026
4027
4028
4029
4030
4031
4032
4033
4034
4035
4036
4037
4038
4039
4040
4041
4042
4043
4044
4045
4046
4047
4048
4049
	    if (bufPtr->nextAdded < bufPtr->bufLength) {
		/*
		 * Don't peek ahead if last read was short read.
		 */
		 
		goto cleanup;
	    }
	    if ((chanPtr->flags & CHANNEL_NONBLOCKING) == 0) {
		blockModeProc = chanPtr->typePtr->blockModeProc;
		if (blockModeProc == NULL) {
		    /*
		     * Don't peek ahead if cannot set non-blocking mode.
		     */

		    goto cleanup;
		}
		(*blockModeProc)(chanPtr->instanceData, TCL_MODE_NONBLOCKING);
	    }
	}
    }
    if (FilterInputBytes(chanPtr, gsPtr) == 0) {
	*dstEndPtr = *gsPtr->dstPtr + gsPtr->bytesWrote;
    }
    if (blockModeProc != NULL) {
	(*blockModeProc)(chanPtr->instanceData, TCL_MODE_BLOCKING);
    }
    return;

    cleanup:
    bufPtr->nextRemoved += gsPtr->rawRead;
    gsPtr->rawRead = 0;
    gsPtr->totalChars += gsPtr->charsWrote;







|
|







|







|







3582
3583
3584
3585
3586
3587
3588
3589
3590
3591
3592
3593
3594
3595
3596
3597
3598
3599
3600
3601
3602
3603
3604
3605
3606
3607
3608
3609
3610
3611
3612
3613
	    if (bufPtr->nextAdded < bufPtr->bufLength) {
		/*
		 * Don't peek ahead if last read was short read.
		 */
		 
		goto cleanup;
	    }
	    if ((statePtr->flags & CHANNEL_NONBLOCKING) == 0) {
		blockModeProc = Tcl_ChannelBlockModeProc(chanPtr->typePtr);
		if (blockModeProc == NULL) {
		    /*
		     * Don't peek ahead if cannot set non-blocking mode.
		     */

		    goto cleanup;
		}
		StackSetBlockMode(chanPtr, TCL_MODE_NONBLOCKING);
	    }
	}
    }
    if (FilterInputBytes(chanPtr, gsPtr) == 0) {
	*dstEndPtr = *gsPtr->dstPtr + gsPtr->bytesWrote;
    }
    if (blockModeProc != NULL) {
	StackSetBlockMode(chanPtr, TCL_MODE_BLOCKING);
    }
    return;

    cleanup:
    bufPtr->nextRemoved += gsPtr->rawRead;
    gsPtr->rawRead = 0;
    gsPtr->totalChars += gsPtr->charsWrote;
4069
4070
4071
4072
4073
4074
4075

4076
4077
4078
4079
4080
4081
4082
4083
4084
4085
4086
4087
4088
4089
4090
4091
4092
4093
4094
4095
 */
 
static void
CommonGetsCleanup(chanPtr, encoding)
    Channel *chanPtr;
    Tcl_Encoding encoding;
{

    ChannelBuffer *bufPtr, *nextPtr;
    
    bufPtr = chanPtr->inQueueHead;
    for ( ; bufPtr != NULL; bufPtr = nextPtr) {
	nextPtr = bufPtr->nextPtr;
	if (bufPtr->nextRemoved < bufPtr->nextAdded) {
	    break;
	}
	RecycleBuffer(chanPtr, bufPtr, 0);
    }
    chanPtr->inQueueHead = bufPtr;
    if (bufPtr == NULL) {
	chanPtr->inQueueTail = NULL;
    } else {
	/*
	 * If any multi-byte characters were split across channel buffer
	 * boundaries, the split-up bytes were moved to the next channel
	 * buffer by FilterInputBytes().  Move the bytes back to their
	 * original buffer because the caller could change the channel's
	 * encoding which could change the interpretation of whether those







>


|





|

|

|







3633
3634
3635
3636
3637
3638
3639
3640
3641
3642
3643
3644
3645
3646
3647
3648
3649
3650
3651
3652
3653
3654
3655
3656
3657
3658
3659
3660
 */
 
static void
CommonGetsCleanup(chanPtr, encoding)
    Channel *chanPtr;
    Tcl_Encoding encoding;
{
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    ChannelBuffer *bufPtr, *nextPtr;
    
    bufPtr = statePtr->inQueueHead;
    for ( ; bufPtr != NULL; bufPtr = nextPtr) {
	nextPtr = bufPtr->nextPtr;
	if (bufPtr->nextRemoved < bufPtr->nextAdded) {
	    break;
	}
	RecycleBuffer(statePtr, bufPtr, 0);
    }
    statePtr->inQueueHead = bufPtr;
    if (bufPtr == NULL) {
	statePtr->inQueueTail = NULL;
    } else {
	/*
	 * If any multi-byte characters were split across channel buffer
	 * boundaries, the split-up bytes were moved to the next channel
	 * buffer by FilterInputBytes().  Move the bytes back to their
	 * original buffer because the caller could change the channel's
	 * encoding which could change the interpretation of whether those
4107
4108
4109
4110
4111
4112
4113
4114
4115
4116
4117
4118
4119
4120
4121
			(size_t) extra);
		bufPtr->nextAdded += extra;
		nextPtr->nextRemoved = BUFFER_PADDING;
	    }
	    bufPtr = nextPtr;
	}
    }
    if (chanPtr->encoding == NULL) {
	Tcl_FreeEncoding(encoding);
    }
}

/*
 *----------------------------------------------------------------------
 *







|







3672
3673
3674
3675
3676
3677
3678
3679
3680
3681
3682
3683
3684
3685
3686
			(size_t) extra);
		bufPtr->nextAdded += extra;
		nextPtr->nextRemoved = BUFFER_PADDING;
	    }
	    bufPtr = nextPtr;
	}
    }
    if (statePtr->encoding == NULL) {
	Tcl_FreeEncoding(encoding);
    }
}

/*
 *----------------------------------------------------------------------
 *
4140
4141
4142
4143
4144
4145
4146
4147

4148




4149

4150
4151
4152
4153
4154
4155

























































































































4156
4157
4158
4159
4160
4161
4162

int
Tcl_Read(chan, dst, bytesToRead)
    Tcl_Channel chan;		/* The channel from which to read. */
    char *dst;			/* Where to store input read. */
    int bytesToRead;		/* Maximum number of bytes to read. */
{
    Channel *chanPtr;		

    




    chanPtr = (Channel *) chan;

    if (CheckChannelErrors(chanPtr, TCL_READABLE) != 0) {
	return -1;
    }

    return DoRead(chanPtr, dst, bytesToRead);
}


























































































































/*
 *---------------------------------------------------------------------------
 *
 * Tcl_ReadChars --
 *
 *	Reads from the channel until the requested number of characters







|
>
|
>
>
>
>
|
>
|





>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>







3705
3706
3707
3708
3709
3710
3711
3712
3713
3714
3715
3716
3717
3718
3719
3720
3721
3722
3723
3724
3725
3726
3727
3728
3729
3730
3731
3732
3733
3734
3735
3736
3737
3738
3739
3740
3741
3742
3743
3744
3745
3746
3747
3748
3749
3750
3751
3752
3753
3754
3755
3756
3757
3758
3759
3760
3761
3762
3763
3764
3765
3766
3767
3768
3769
3770
3771
3772
3773
3774
3775
3776
3777
3778
3779
3780
3781
3782
3783
3784
3785
3786
3787
3788
3789
3790
3791
3792
3793
3794
3795
3796
3797
3798
3799
3800
3801
3802
3803
3804
3805
3806
3807
3808
3809
3810
3811
3812
3813
3814
3815
3816
3817
3818
3819
3820
3821
3822
3823
3824
3825
3826
3827
3828
3829
3830
3831
3832
3833
3834
3835
3836
3837
3838
3839
3840
3841
3842
3843
3844
3845
3846
3847
3848
3849
3850
3851
3852
3853
3854

int
Tcl_Read(chan, dst, bytesToRead)
    Tcl_Channel chan;		/* The channel from which to read. */
    char *dst;			/* Where to store input read. */
    int bytesToRead;		/* Maximum number of bytes to read. */
{
    Channel *chanPtr = (Channel *) chan;		
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */

    /*
     * This operation should occur at the top of a channel stack.
     */

    chanPtr = statePtr->topChanPtr;

    if (CheckChannelErrors(statePtr, TCL_READABLE) != 0) {
	return -1;
    }

    return DoRead(chanPtr, dst, bytesToRead);
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_ReadRaw --
 *
 *	Reads a given number of bytes from a channel.  EOL and EOF
 *	translation is done on the bytes being read, so the the number
 *	of bytes consumed from the channel may not be equal to the
 *	number of bytes stored in the destination buffer.
 *
 *	No encoding conversions are applied to the bytes being read.
 *
 * Results:
 *	The number of bytes read, or -1 on error. Use Tcl_GetErrno()
 *	to retrieve the error code for the error that occurred.
 *
 * Side effects:
 *	May cause input to be buffered.
 *
 *----------------------------------------------------------------------
 */

int
Tcl_ReadRaw(chan, bufPtr, bytesToRead)
    Tcl_Channel chan;		/* The channel from which to read. */
    char *bufPtr;			/* Where to store input read. */
    int bytesToRead;		/* Maximum number of bytes to read. */
{
    Channel *chanPtr = (Channel *) chan;		
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    int nread, result;
    int copied, copiedNow;

    /*
     * The check below does too much because it will reject a call to this
     * function with a channel which is part of an 'fcopy'. But we have to
     * allow this here or else the chaining in the transformation drivers
     * will fail with 'file busy' error instead of retrieving and
     * transforming the data to copy.
     *
     * We let the check procedure now believe that there is no fcopy in
     * progress. A better solution than this might be an additional flag
     * argument to switch off specific checks.
     */

    if (CheckChannelErrors(statePtr, TCL_READABLE | CHANNEL_RAW_MODE) != 0) {
	return -1;
    }

    /*
     * Check for information in the push-back buffers. If there is
     * some, use it. Go to the driver only if there is none (anymore)
     * and the caller requests more bytes.
     */

    for (copied = 0; copied < bytesToRead; copied += copiedNow) {
        copiedNow = CopyBuffer(chanPtr, bufPtr + copied,
                bytesToRead - copied);
        if (copiedNow == 0) {
            if (statePtr->flags & CHANNEL_EOF) {
		goto done;
            }
            if (statePtr->flags & CHANNEL_BLOCKED) {
                if (statePtr->flags & CHANNEL_NONBLOCKING) {
		    goto done;
                }
                statePtr->flags &= (~(CHANNEL_BLOCKED));
            }

	    /*
	     * Now go to the driver to get as much as is possible to
	     * fill the remaining request. Do all the error handling
	     * by ourselves.  The code was stolen from 'GetInput' and
	     * slightly adapted (different return value here).
	     *
	     * The case of 'bytesToRead == 0' at this point cannot happen.
	     */

	    nread = (chanPtr->typePtr->inputProc)(chanPtr->instanceData,
			  bufPtr + copied, bytesToRead - copied, &result);
	    if (nread > 0) {
	        /*
		 * If we get a short read, signal up that we may be
		 * BLOCKED. We should avoid calling the driver because
		 * on some platforms we will block in the low level
		 * reading code even though the channel is set into
		 * nonblocking mode.
		 */
            
	        if (nread < (bytesToRead - copied)) {
		    statePtr->flags |= CHANNEL_BLOCKED;
		}
	    } else if (nread == 0) {
	        statePtr->flags |= CHANNEL_EOF;
		statePtr->inputEncodingFlags |= TCL_ENCODING_END;
	    } else if (nread < 0) {
	        if ((result == EWOULDBLOCK) || (result == EAGAIN)) {
		    if (copied > 0) {
		      /*
		       * Information that was copied earlier has precedence
		       * over EAGAIN/WOULDBLOCK handling.
		       */
		      return copied;
		    }

		    statePtr->flags |= CHANNEL_BLOCKED;
		    result = EAGAIN;
		}

		Tcl_SetErrno(result);
		return -1;
	    } 

	    return copied + nread;
        }
    }

done:
    return copied;
}

/*
 *---------------------------------------------------------------------------
 *
 * Tcl_ReadChars --
 *
 *	Reads from the channel until the requested number of characters
4185
4186
4187
4188
4189
4190
4191
4192
4193
4194

4195
4196
4197




4198

4199
4200
4201
4202
4203
4204
4205
4206
4207
4208
4209
4210
4211
4212
4213
4214
4215
4216
4217
4218
4219
4220
4221
4222
4223
4224
4225
4226
4227
4228
4229
4230
4231
4232
4233
4234
4235
4236
4237
4238
4239
4240
4241
4242
4243
4244
4245
4246
4247
4248
4249
4250
4251
4252
4253
4254
4255
4256
4257
4258
4259
4260
4261
4262
4263
4264
4265
4266
4267
4268
4269
4270
4271
4272
4273
4274
4275
4276
4277
4278
				 * or when channel blocks). */
    int appendFlag;		/* If non-zero, data read from the channel
				 * will be appended to the object.  Otherwise,
				 * the data will replace the existing contents
				 * of the object. */

{
    Channel *chanPtr;
    int offset, factor, copied, copiedNow, result;
    ChannelBuffer *bufPtr;

    Tcl_Encoding encoding;
#define UTF_EXPANSION_FACTOR	1024
    




    chanPtr = (Channel *) chan;

    if (CheckChannelErrors(chanPtr, TCL_READABLE) != 0) {
	copied = -1;
	goto done;
    }

    encoding = chanPtr->encoding;
    factor = UTF_EXPANSION_FACTOR;

    if (appendFlag == 0) {
	if (encoding == NULL) {
	    Tcl_SetByteArrayLength(objPtr, 0);
	} else {
	    Tcl_SetObjLength(objPtr, 0);
	}
	offset = 0;
    } else {
	if (encoding == NULL) {
	    Tcl_GetByteArrayFromObj(objPtr, &offset);
	} else {
	    Tcl_GetStringFromObj(objPtr, &offset);
	}
    }

    for (copied = 0; (unsigned) toRead > 0; ) {
	copiedNow = -1;
	if (chanPtr->inQueueHead != NULL) {
	    if (encoding == NULL) {
		copiedNow = ReadBytes(chanPtr, objPtr, toRead, &offset);
	    } else {
		copiedNow = ReadChars(chanPtr, objPtr, toRead, &offset,
			&factor);
	    }

	    /*
	     * If the current buffer is empty recycle it.
	     */

	    bufPtr = chanPtr->inQueueHead;
	    if (bufPtr->nextRemoved == bufPtr->nextAdded) {
		ChannelBuffer *nextPtr;

		nextPtr = bufPtr->nextPtr;
		RecycleBuffer(chanPtr, bufPtr, 0);
		chanPtr->inQueueHead = nextPtr;
		if (nextPtr == NULL) {
		    chanPtr->inQueueTail = nextPtr;
		}
	    }
	}
	if (copiedNow < 0) {
	    if (chanPtr->flags & CHANNEL_EOF) {
		break;
	    }
	    if (chanPtr->flags & CHANNEL_BLOCKED) {
		if (chanPtr->flags & CHANNEL_NONBLOCKING) {
		    break;
		}
		chanPtr->flags &= ~CHANNEL_BLOCKED;
	    }
	    result = GetInput(chanPtr);
	    if (result != 0) {
		if (result == EAGAIN) {
		    break;
		}
		copied = -1;
		goto done;
	    }
	} else {
	    copied += copiedNow;
	    toRead -= copiedNow;
	}
    }
    chanPtr->flags &= ~CHANNEL_BLOCKED;
    if (encoding == NULL) {
	Tcl_SetByteArrayLength(objPtr, offset);
    } else {
	Tcl_SetObjLength(objPtr, offset);
    }

    done:







|
|

>



>
>
>
>
|
>
|




|



















|

|

|







|




|
|

|




|


|
|


|














|







3877
3878
3879
3880
3881
3882
3883
3884
3885
3886
3887
3888
3889
3890
3891
3892
3893
3894
3895
3896
3897
3898
3899
3900
3901
3902
3903
3904
3905
3906
3907
3908
3909
3910
3911
3912
3913
3914
3915
3916
3917
3918
3919
3920
3921
3922
3923
3924
3925
3926
3927
3928
3929
3930
3931
3932
3933
3934
3935
3936
3937
3938
3939
3940
3941
3942
3943
3944
3945
3946
3947
3948
3949
3950
3951
3952
3953
3954
3955
3956
3957
3958
3959
3960
3961
3962
3963
3964
3965
3966
3967
3968
3969
3970
3971
3972
3973
3974
3975
3976
				 * or when channel blocks). */
    int appendFlag;		/* If non-zero, data read from the channel
				 * will be appended to the object.  Otherwise,
				 * the data will replace the existing contents
				 * of the object. */

{
    Channel *chanPtr = (Channel *) chan;
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    ChannelBuffer *bufPtr;
    int offset, factor, copied, copiedNow, result;
    Tcl_Encoding encoding;
#define UTF_EXPANSION_FACTOR	1024
    
    /*
     * This operation should occur at the top of a channel stack.
     */

    chanPtr = statePtr->topChanPtr;

    if (CheckChannelErrors(statePtr, TCL_READABLE) != 0) {
	copied = -1;
	goto done;
    }

    encoding = statePtr->encoding;
    factor = UTF_EXPANSION_FACTOR;

    if (appendFlag == 0) {
	if (encoding == NULL) {
	    Tcl_SetByteArrayLength(objPtr, 0);
	} else {
	    Tcl_SetObjLength(objPtr, 0);
	}
	offset = 0;
    } else {
	if (encoding == NULL) {
	    Tcl_GetByteArrayFromObj(objPtr, &offset);
	} else {
	    Tcl_GetStringFromObj(objPtr, &offset);
	}
    }

    for (copied = 0; (unsigned) toRead > 0; ) {
	copiedNow = -1;
	if (statePtr->inQueueHead != NULL) {
	    if (encoding == NULL) {
		copiedNow = ReadBytes(statePtr, objPtr, toRead, &offset);
	    } else {
		copiedNow = ReadChars(statePtr, objPtr, toRead, &offset,
			&factor);
	    }

	    /*
	     * If the current buffer is empty recycle it.
	     */

	    bufPtr = statePtr->inQueueHead;
	    if (bufPtr->nextRemoved == bufPtr->nextAdded) {
		ChannelBuffer *nextPtr;

		nextPtr = bufPtr->nextPtr;
		RecycleBuffer(statePtr, bufPtr, 0);
		statePtr->inQueueHead = nextPtr;
		if (nextPtr == NULL) {
		    statePtr->inQueueTail = nextPtr;
		}
	    }
	}
	if (copiedNow < 0) {
	    if (statePtr->flags & CHANNEL_EOF) {
		break;
	    }
	    if (statePtr->flags & CHANNEL_BLOCKED) {
		if (statePtr->flags & CHANNEL_NONBLOCKING) {
		    break;
		}
		statePtr->flags &= ~CHANNEL_BLOCKED;
	    }
	    result = GetInput(chanPtr);
	    if (result != 0) {
		if (result == EAGAIN) {
		    break;
		}
		copied = -1;
		goto done;
	    }
	} else {
	    copied += copiedNow;
	    toRead -= copiedNow;
	}
    }
    statePtr->flags &= ~CHANNEL_BLOCKED;
    if (encoding == NULL) {
	Tcl_SetByteArrayLength(objPtr, offset);
    } else {
	Tcl_SetObjLength(objPtr, offset);
    }

    done:
4307
4308
4309
4310
4311
4312
4313
4314
4315
4316
4317
4318
4319
4320
4321
4322
 * Side effects:
 *	None.
 *
 *---------------------------------------------------------------------------
 */

static int
ReadBytes(chanPtr, objPtr, bytesToRead, offsetPtr)
    Channel *chanPtr;		/* The channel to read. */
    int bytesToRead;		/* Maximum number of characters to store,
				 * or < 0 to get all available characters.
				 * Characters are obtained from the first
				 * buffer in the queue -- even if this number
				 * is larger than the number of characters
				 * available in the first buffer, only the
				 * characters from the first buffer are







|
|







4005
4006
4007
4008
4009
4010
4011
4012
4013
4014
4015
4016
4017
4018
4019
4020
 * Side effects:
 *	None.
 *
 *---------------------------------------------------------------------------
 */

static int
ReadBytes(statePtr, objPtr, bytesToRead, offsetPtr)
    ChannelState *statePtr;	/* State of the channel to read. */
    int bytesToRead;		/* Maximum number of characters to store,
				 * or < 0 to get all available characters.
				 * Characters are obtained from the first
				 * buffer in the queue -- even if this number
				 * is larger than the number of characters
				 * available in the first buffer, only the
				 * characters from the first buffer are
4333
4334
4335
4336
4337
4338
4339
4340
4341
4342
4343
4344
4345
4346
4347
{
    int toRead, srcLen, srcRead, dstWrote, offset, length;
    ChannelBuffer *bufPtr;
    char *src, *dst;

    offset = *offsetPtr;

    bufPtr = chanPtr->inQueueHead; 
    src = bufPtr->buf + bufPtr->nextRemoved;
    srcLen = bufPtr->nextAdded - bufPtr->nextRemoved;

    toRead = bytesToRead;
    if ((unsigned) toRead > (unsigned) srcLen) {
	toRead = srcLen;
    }







|







4031
4032
4033
4034
4035
4036
4037
4038
4039
4040
4041
4042
4043
4044
4045
{
    int toRead, srcLen, srcRead, dstWrote, offset, length;
    ChannelBuffer *bufPtr;
    char *src, *dst;

    offset = *offsetPtr;

    bufPtr = statePtr->inQueueHead; 
    src = bufPtr->buf + bufPtr->nextRemoved;
    srcLen = bufPtr->nextAdded - bufPtr->nextRemoved;

    toRead = bytesToRead;
    if ((unsigned) toRead > (unsigned) srcLen) {
	toRead = srcLen;
    }
4358
4359
4360
4361
4362
4363
4364
4365
4366
4367
4368
4369
4370
4371
4372
4373
4374
4375
4376
4377
4378
4379
4380
4381
4382
4383
4384
4385
4386
4387
	if (offset < toRead) {
	    length = offset + toRead + 1;
	}
	dst = (char *) Tcl_SetByteArrayLength(objPtr, length);
    }
    dst += offset;

    if (chanPtr->flags & INPUT_NEED_NL) {
	chanPtr->flags &= ~INPUT_NEED_NL;
	if ((srcLen == 0) || (*src != '\n')) {
	    *dst = '\r';
	    *offsetPtr += 1;
	    return 1;
	}
	*dst++ = '\n';
	src++;
	srcLen--;
	toRead--;
    }

    srcRead = srcLen;
    dstWrote = toRead;
    if (TranslateInputEOL(chanPtr, dst, src, &dstWrote, &srcRead) != 0) {
	if (dstWrote == 0) {
	    return -1;
	}
    }
    bufPtr->nextRemoved += srcRead;
    *offsetPtr += dstWrote;
    return dstWrote;







|
|













|







4056
4057
4058
4059
4060
4061
4062
4063
4064
4065
4066
4067
4068
4069
4070
4071
4072
4073
4074
4075
4076
4077
4078
4079
4080
4081
4082
4083
4084
4085
	if (offset < toRead) {
	    length = offset + toRead + 1;
	}
	dst = (char *) Tcl_SetByteArrayLength(objPtr, length);
    }
    dst += offset;

    if (statePtr->flags & INPUT_NEED_NL) {
	statePtr->flags &= ~INPUT_NEED_NL;
	if ((srcLen == 0) || (*src != '\n')) {
	    *dst = '\r';
	    *offsetPtr += 1;
	    return 1;
	}
	*dst++ = '\n';
	src++;
	srcLen--;
	toRead--;
    }

    srcRead = srcLen;
    dstWrote = toRead;
    if (TranslateInputEOL(statePtr, dst, src, &dstWrote, &srcRead) != 0) {
	if (dstWrote == 0) {
	    return -1;
	}
    }
    bufPtr->nextRemoved += srcRead;
    *offsetPtr += dstWrote;
    return dstWrote;
4411
4412
4413
4414
4415
4416
4417
4418
4419
4420
4421
4422
4423
4424
4425
4426
 * Side effects:
 *	None.
 *
 *---------------------------------------------------------------------------
 */

static int
ReadChars(chanPtr, objPtr, charsToRead, offsetPtr, factorPtr)
    Channel *chanPtr;		/* The channel to read. */
    int charsToRead;		/* Maximum number of characters to store,
				 * or -1 to get all available characters.
				 * Characters are obtained from the first
				 * buffer in the queue -- even if this number
				 * is larger than the number of characters
				 * available in the first buffer, only the
				 * characters from the first buffer are







|
|







4109
4110
4111
4112
4113
4114
4115
4116
4117
4118
4119
4120
4121
4122
4123
4124
 * Side effects:
 *	None.
 *
 *---------------------------------------------------------------------------
 */

static int
ReadChars(statePtr, objPtr, charsToRead, offsetPtr, factorPtr)
    ChannelState *statePtr;	/* State of channel to read. */
    int charsToRead;		/* Maximum number of characters to store,
				 * or -1 to get all available characters.
				 * Characters are obtained from the first
				 * buffer in the queue -- even if this number
				 * is larger than the number of characters
				 * available in the first buffer, only the
				 * characters from the first buffer are
4444
4445
4446
4447
4448
4449
4450
4451
4452
4453
4454
4455
4456
4457
4458
    ChannelBuffer *bufPtr;
    char *src, *dst;
    Tcl_EncodingState oldState;

    factor = *factorPtr;
    offset = *offsetPtr;

    bufPtr = chanPtr->inQueueHead; 
    src = bufPtr->buf + bufPtr->nextRemoved;
    srcLen = bufPtr->nextAdded - bufPtr->nextRemoved;

    toRead = charsToRead;
    if ((unsigned) toRead > (unsigned) srcLen) {
	toRead = srcLen;
    }







|







4142
4143
4144
4145
4146
4147
4148
4149
4150
4151
4152
4153
4154
4155
4156
    ChannelBuffer *bufPtr;
    char *src, *dst;
    Tcl_EncodingState oldState;

    factor = *factorPtr;
    offset = *offsetPtr;

    bufPtr = statePtr->inQueueHead; 
    src = bufPtr->buf + bufPtr->nextRemoved;
    srcLen = bufPtr->nextAdded - bufPtr->nextRemoved;

    toRead = charsToRead;
    if ((unsigned) toRead > (unsigned) srcLen) {
	toRead = srcLen;
    }
4489
4490
4491
4492
4493
4494
4495
4496
4497
4498
4499
4500
4501
4502
4503
4504
4505
4506
4507
4508
4509
4510
4511
4512
4513
4514
4515
4516
4517
4518
4519
4520
4521
4522
4523
4524
4525
4526
4527
4528
4529
4530
4531
4532
4533
4534
4535
4536
4537
4538
4539
4540
4541
4542
4543
4544
4545
4546
4547
4548
4549
4550
4551
4552
4553
4554
4555
4556
4557
4558
4559
4560
4561
4562
4563
4564
4565
4566
4567
4568
4569
4570
4571
4572
4573
4574
4575
4576
4577
4578
4579
4580
4581
4582
4583
4584
4585
4586
4587
4588
4589
4590
4591
4592
4593
4594
4595
4596
4597
4598
4599
4600
4601
4602
4603
	 * rather than using the factor.
	 */

	dstNeeded = spaceLeft;
    }
    dst = objPtr->bytes + offset;

    oldState = chanPtr->inputEncodingState;
    if (chanPtr->flags & INPUT_NEED_NL) {
	/*
	 * We want a '\n' because the last character we saw was '\r'.
	 */
	 
	chanPtr->flags &= ~INPUT_NEED_NL;
	Tcl_ExternalToUtf(NULL, chanPtr->encoding, src, srcLen,
		chanPtr->inputEncodingFlags, &chanPtr->inputEncodingState,
		dst, TCL_UTF_MAX + 1, &srcRead, &dstWrote, &numChars);
	if ((dstWrote > 0) && (*dst == '\n')) {
	    /*
	     * The next char was a '\n'.  Consume it and produce a '\n'.
	     */
	     
	    bufPtr->nextRemoved += srcRead;
	} else {
	    /*
	     * The next char was not a '\n'.  Produce a '\r'.
	     */

	    *dst = '\r';
	}
	chanPtr->inputEncodingFlags &= ~TCL_ENCODING_START;
	*offsetPtr += 1;
        return 1;
    }

    Tcl_ExternalToUtf(NULL, chanPtr->encoding, src, srcLen,
	    chanPtr->inputEncodingFlags, &chanPtr->inputEncodingState, dst,
	    dstNeeded + TCL_UTF_MAX, &srcRead, &dstWrote, &numChars);
    if (srcRead == 0) {
	/*
	 * Not enough bytes in src buffer to make a complete char.  Copy
	 * the bytes to the next buffer to make a new contiguous string,
	 * then tell the caller to fill the buffer with more bytes.
	 */

	ChannelBuffer *nextPtr;
	
	nextPtr = bufPtr->nextPtr;
	if (nextPtr == NULL) {
	    /*
	     * There isn't enough data in the buffers to complete the next
	     * character, so we need to wait for more data before the next
	     * file event can be delivered.
	     */

	    chanPtr->flags |= CHANNEL_NEED_MORE_DATA;
	    return -1;
	}
	nextPtr->nextRemoved -= srcLen;
	memcpy((VOID *) (nextPtr->buf + nextPtr->nextRemoved), (VOID *) src,
		(size_t) srcLen);
	RecycleBuffer(chanPtr, bufPtr, 0);
	chanPtr->inQueueHead = nextPtr;
	return ReadChars(chanPtr, objPtr, charsToRead, offsetPtr, factorPtr);
    }

    dstRead = dstWrote;
    if (TranslateInputEOL(chanPtr, dst, dst, &dstWrote, &dstRead) != 0) {
	/*
	 * Hit EOF char.  How many bytes of src correspond to where the
	 * EOF was located in dst?
	 */
	 
	if (dstWrote == 0) {
	    return -1;
	}
	chanPtr->inputEncodingState = oldState;
	Tcl_ExternalToUtf(NULL, chanPtr->encoding, src, srcLen,
		chanPtr->inputEncodingFlags, &chanPtr->inputEncodingState,
		dst, dstRead + TCL_UTF_MAX, &srcRead, &dstWrote, &numChars);
	TranslateInputEOL(chanPtr, dst, dst, &dstWrote, &dstRead);
    } 

    /*
     * The number of characters that we got may be less than the number
     * that we started with because "\r\n" sequences may have been
     * turned into just '\n' in dst.
     */

    numChars -= (dstRead - dstWrote);

    if ((unsigned) numChars > (unsigned) toRead) {
	/*
	 * Got too many chars.
	 */

	char *eof;

	eof = Tcl_UtfAtIndex(dst, toRead);
	chanPtr->inputEncodingState = oldState;
	Tcl_ExternalToUtf(NULL, chanPtr->encoding, src, srcLen,
		chanPtr->inputEncodingFlags, &chanPtr->inputEncodingState,
		dst, eof - dst + TCL_UTF_MAX, &srcRead, &dstWrote, &numChars);
	dstRead = dstWrote;
	TranslateInputEOL(chanPtr, dst, dst, &dstWrote, &dstRead);
	numChars -= (dstRead - dstWrote);
    }
    chanPtr->inputEncodingFlags &= ~TCL_ENCODING_START;

    bufPtr->nextRemoved += srcRead;
    if (dstWrote > srcRead + 1) {
	*factorPtr = dstWrote * UTF_EXPANSION_FACTOR / srcRead;
    }
    *offsetPtr += dstWrote;
    return numChars;







|
|



|
|
|
|





|








|




|
|


















|





|
|
|



|








|
|
|

|


















|
|
|


|


|







4187
4188
4189
4190
4191
4192
4193
4194
4195
4196
4197
4198
4199
4200
4201
4202
4203
4204
4205
4206
4207
4208
4209
4210
4211
4212
4213
4214
4215
4216
4217
4218
4219
4220
4221
4222
4223
4224
4225
4226
4227
4228
4229
4230
4231
4232
4233
4234
4235
4236
4237
4238
4239
4240
4241
4242
4243
4244
4245
4246
4247
4248
4249
4250
4251
4252
4253
4254
4255
4256
4257
4258
4259
4260
4261
4262
4263
4264
4265
4266
4267
4268
4269
4270
4271
4272
4273
4274
4275
4276
4277
4278
4279
4280
4281
4282
4283
4284
4285
4286
4287
4288
4289
4290
4291
4292
4293
4294
4295
4296
4297
4298
4299
4300
4301
	 * rather than using the factor.
	 */

	dstNeeded = spaceLeft;
    }
    dst = objPtr->bytes + offset;

    oldState = statePtr->inputEncodingState;
    if (statePtr->flags & INPUT_NEED_NL) {
	/*
	 * We want a '\n' because the last character we saw was '\r'.
	 */

	statePtr->flags &= ~INPUT_NEED_NL;
	Tcl_ExternalToUtf(NULL, statePtr->encoding, src, srcLen,
		statePtr->inputEncodingFlags, &statePtr->inputEncodingState,
		dst, TCL_UTF_MAX + 1, &srcRead, &dstWrote, &numChars);
	if ((dstWrote > 0) && (*dst == '\n')) {
	    /*
	     * The next char was a '\n'.  Consume it and produce a '\n'.
	     */

	    bufPtr->nextRemoved += srcRead;
	} else {
	    /*
	     * The next char was not a '\n'.  Produce a '\r'.
	     */

	    *dst = '\r';
	}
	statePtr->inputEncodingFlags &= ~TCL_ENCODING_START;
	*offsetPtr += 1;
        return 1;
    }

    Tcl_ExternalToUtf(NULL, statePtr->encoding, src, srcLen,
	    statePtr->inputEncodingFlags, &statePtr->inputEncodingState, dst,
	    dstNeeded + TCL_UTF_MAX, &srcRead, &dstWrote, &numChars);
    if (srcRead == 0) {
	/*
	 * Not enough bytes in src buffer to make a complete char.  Copy
	 * the bytes to the next buffer to make a new contiguous string,
	 * then tell the caller to fill the buffer with more bytes.
	 */

	ChannelBuffer *nextPtr;
	
	nextPtr = bufPtr->nextPtr;
	if (nextPtr == NULL) {
	    /*
	     * There isn't enough data in the buffers to complete the next
	     * character, so we need to wait for more data before the next
	     * file event can be delivered.
	     */

	    statePtr->flags |= CHANNEL_NEED_MORE_DATA;
	    return -1;
	}
	nextPtr->nextRemoved -= srcLen;
	memcpy((VOID *) (nextPtr->buf + nextPtr->nextRemoved), (VOID *) src,
		(size_t) srcLen);
	RecycleBuffer(statePtr, bufPtr, 0);
	statePtr->inQueueHead = nextPtr;
	return ReadChars(statePtr, objPtr, charsToRead, offsetPtr, factorPtr);
    }

    dstRead = dstWrote;
    if (TranslateInputEOL(statePtr, dst, dst, &dstWrote, &dstRead) != 0) {
	/*
	 * Hit EOF char.  How many bytes of src correspond to where the
	 * EOF was located in dst?
	 */
	 
	if (dstWrote == 0) {
	    return -1;
	}
	statePtr->inputEncodingState = oldState;
	Tcl_ExternalToUtf(NULL, statePtr->encoding, src, srcLen,
		statePtr->inputEncodingFlags, &statePtr->inputEncodingState,
		dst, dstRead + TCL_UTF_MAX, &srcRead, &dstWrote, &numChars);
	TranslateInputEOL(statePtr, dst, dst, &dstWrote, &dstRead);
    } 

    /*
     * The number of characters that we got may be less than the number
     * that we started with because "\r\n" sequences may have been
     * turned into just '\n' in dst.
     */

    numChars -= (dstRead - dstWrote);

    if ((unsigned) numChars > (unsigned) toRead) {
	/*
	 * Got too many chars.
	 */

	char *eof;

	eof = Tcl_UtfAtIndex(dst, toRead);
	statePtr->inputEncodingState = oldState;
	Tcl_ExternalToUtf(NULL, statePtr->encoding, src, srcLen,
		statePtr->inputEncodingFlags, &statePtr->inputEncodingState,
		dst, eof - dst + TCL_UTF_MAX, &srcRead, &dstWrote, &numChars);
	dstRead = dstWrote;
	TranslateInputEOL(statePtr, dst, dst, &dstWrote, &dstRead);
	numChars -= (dstRead - dstWrote);
    }
    statePtr->inputEncodingFlags &= ~TCL_ENCODING_START;

    bufPtr->nextRemoved += srcRead;
    if (dstWrote > srcRead + 1) {
	*factorPtr = dstWrote * UTF_EXPANSION_FACTOR / srcRead;
    }
    *offsetPtr += dstWrote;
    return numChars;
4618
4619
4620
4621
4622
4623
4624
4625
4626
4627
4628
4629
4630
4631
4632
4633
4634
4635
4636
4637
4638
4639
4640
4641
4642
4643
4644
4645
4646
4647
4648
4649
4650
4651
4652
4653
 * Side effects:
 *	None.
 *
 *---------------------------------------------------------------------------
 */

static int
TranslateInputEOL(chanPtr, dstStart, srcStart, dstLenPtr, srcLenPtr)
    Channel *chanPtr;		/* Channel being read, for EOL translation
				 * and EOF character. */
    char *dstStart;		/* Output buffer filled with chars by
				 * applying appropriate EOL translation to
				 * source characters. */
    CONST char *srcStart;	/* Source characters. */
    int *dstLenPtr;		/* On entry, the maximum length of output
				 * buffer in bytes; must be <= *srcLenPtr.  On
				 * exit, the number of bytes actually used in
				 * output buffer. */
    int *srcLenPtr;		/* On entry, the length of source buffer.
				 * On exit, the number of bytes read from
				 * the source buffer. */
{
    int dstLen, srcLen, inEofChar;
    CONST char *eof;

    dstLen = *dstLenPtr;

    eof = NULL;
    inEofChar = chanPtr->inEofChar;
    if (inEofChar != '\0') {
	/*
	 * Find EOF in translated buffer then compress out the EOL.  The
	 * source buffer may be much longer than the destination buffer --
	 * we only want to return EOF if the EOF has been copied to the
	 * destination buffer.
	 */







|
|



















|







4316
4317
4318
4319
4320
4321
4322
4323
4324
4325
4326
4327
4328
4329
4330
4331
4332
4333
4334
4335
4336
4337
4338
4339
4340
4341
4342
4343
4344
4345
4346
4347
4348
4349
4350
4351
 * Side effects:
 *	None.
 *
 *---------------------------------------------------------------------------
 */

static int
TranslateInputEOL(statePtr, dstStart, srcStart, dstLenPtr, srcLenPtr)
    ChannelState *statePtr;	/* Channel being read, for EOL translation
				 * and EOF character. */
    char *dstStart;		/* Output buffer filled with chars by
				 * applying appropriate EOL translation to
				 * source characters. */
    CONST char *srcStart;	/* Source characters. */
    int *dstLenPtr;		/* On entry, the maximum length of output
				 * buffer in bytes; must be <= *srcLenPtr.  On
				 * exit, the number of bytes actually used in
				 * output buffer. */
    int *srcLenPtr;		/* On entry, the length of source buffer.
				 * On exit, the number of bytes read from
				 * the source buffer. */
{
    int dstLen, srcLen, inEofChar;
    CONST char *eof;

    dstLen = *dstLenPtr;

    eof = NULL;
    inEofChar = statePtr->inEofChar;
    if (inEofChar != '\0') {
	/*
	 * Find EOF in translated buffer then compress out the EOL.  The
	 * source buffer may be much longer than the destination buffer --
	 * we only want to return EOF if the EOF has been copied to the
	 * destination buffer.
	 */
4663
4664
4665
4666
4667
4668
4669
4670
4671
4672
4673
4674
4675
4676
4677
		    dstLen = srcLen;
		}
		*srcLenPtr = srcLen;
		break;
	    }
	}
    }
    switch (chanPtr->inputTranslation) {
	case TCL_TRANSLATE_LF: {
	    if (dstStart != srcStart) {
		memcpy((VOID *) dstStart, (VOID *) srcStart, (size_t) dstLen);
	    }
	    srcLen = dstLen;
	    break;
	}







|







4361
4362
4363
4364
4365
4366
4367
4368
4369
4370
4371
4372
4373
4374
4375
		    dstLen = srcLen;
		}
		*srcLenPtr = srcLen;
		break;
	    }
	}
    }
    switch (statePtr->inputTranslation) {
	case TCL_TRANSLATE_LF: {
	    if (dstStart != srcStart) {
		memcpy((VOID *) dstStart, (VOID *) srcStart, (size_t) dstLen);
	    }
	    srcLen = dstLen;
	    break;
	}
4699
4700
4701
4702
4703
4704
4705
4706
4707
4708
4709
4710
4711
4712
4713
	    srcEnd = srcStart + dstLen;
	    srcMax = srcStart + *srcLenPtr;

	    for ( ; src < srcEnd; ) {
		if (*src == '\r') {
		    src++;
		    if (src >= srcMax) {
			chanPtr->flags |= INPUT_NEED_NL;
		    } else if (*src == '\n') {
			*dst++ = *src++;
		    } else {
			*dst++ = '\r';
		    }
		} else {
		    *dst++ = *src++;







|







4397
4398
4399
4400
4401
4402
4403
4404
4405
4406
4407
4408
4409
4410
4411
	    srcEnd = srcStart + dstLen;
	    srcMax = srcStart + *srcLenPtr;

	    for ( ; src < srcEnd; ) {
		if (*src == '\r') {
		    src++;
		    if (src >= srcMax) {
			statePtr->flags |= INPUT_NEED_NL;
		    } else if (*src == '\n') {
			*dst++ = *src++;
		    } else {
			*dst++ = '\r';
		    }
		} else {
		    *dst++ = *src++;
4722
4723
4724
4725
4726
4727
4728
4729
4730
4731
4732
4733
4734
4735
4736
4737
4738
4739
4740
4741
4742
4743
4744
4745
4746
	    CONST char *src, *srcEnd, *srcMax;

	    dst = dstStart;
	    src = srcStart;
	    srcEnd = srcStart + dstLen;
	    srcMax = srcStart + *srcLenPtr;

	    if ((chanPtr->flags & INPUT_SAW_CR) && (src < srcMax)) {
		if (*src == '\n') {
		    src++;
		}
		chanPtr->flags &= ~INPUT_SAW_CR;
	    }
	    for ( ; src < srcEnd; ) {
		if (*src == '\r') {
		    src++;
		    if (src >= srcMax) {
			chanPtr->flags |= INPUT_SAW_CR;
		    } else if (*src == '\n') {
			if (srcEnd < srcMax) {
			    srcEnd++;
			}
			src++;
		    }
		    *dst++ = '\n';







|



|





|







4420
4421
4422
4423
4424
4425
4426
4427
4428
4429
4430
4431
4432
4433
4434
4435
4436
4437
4438
4439
4440
4441
4442
4443
4444
	    CONST char *src, *srcEnd, *srcMax;

	    dst = dstStart;
	    src = srcStart;
	    srcEnd = srcStart + dstLen;
	    srcMax = srcStart + *srcLenPtr;

	    if ((statePtr->flags & INPUT_SAW_CR) && (src < srcMax)) {
		if (*src == '\n') {
		    src++;
		}
		statePtr->flags &= ~INPUT_SAW_CR;
	    }
	    for ( ; src < srcEnd; ) {
		if (*src == '\r') {
		    src++;
		    if (src >= srcMax) {
			statePtr->flags |= INPUT_SAW_CR;
		    } else if (*src == '\n') {
			if (srcEnd < srcMax) {
			    srcEnd++;
			}
			src++;
		    }
		    *dst++ = '\n';
4761
4762
4763
4764
4765
4766
4767
4768
4769
4770
4771
4772
4773
4774
4775
4776
4777
    if ((eof != NULL) && (srcStart + srcLen >= eof)) {
	/*
	 * EOF character was seen in EOL translated range.  Leave current
	 * file position pointing at the EOF character, but don't store the
	 * EOF character in the output string.
	 */

	chanPtr->flags |= (CHANNEL_EOF | CHANNEL_STICKY_EOF);
	chanPtr->inputEncodingFlags |= TCL_ENCODING_END;
	chanPtr->flags &= ~(INPUT_SAW_CR | INPUT_NEED_NL);
	return 1;
    }

    *srcLenPtr = srcLen;
    return 0;
}








|
|
|







4459
4460
4461
4462
4463
4464
4465
4466
4467
4468
4469
4470
4471
4472
4473
4474
4475
    if ((eof != NULL) && (srcStart + srcLen >= eof)) {
	/*
	 * EOF character was seen in EOL translated range.  Leave current
	 * file position pointing at the EOF character, but don't store the
	 * EOF character in the output string.
	 */

	statePtr->flags |= (CHANNEL_EOF | CHANNEL_STICKY_EOF);
	statePtr->inputEncodingFlags |= TCL_ENCODING_END;
	statePtr->flags &= ~(INPUT_SAW_CR | INPUT_NEED_NL);
	return 1;
    }

    *srcLenPtr = srcLen;
    return 0;
}

4797
4798
4799
4800
4801
4802
4803

4804
4805
4806
4807

4808






4809
4810
4811
4812
4813
4814
4815
4816
4817
4818
4819
4820
4821
4822
4823
4824
4825
4826
4827
4828
4829
4830
4831
4832
4833
4834
4835
4836
4837
4838
4839
4840
4841
4842
4843
4844
4845
4846
4847
4848
4849
4850
4851
4852
4853
4854
4855
4856
    Tcl_Channel chan;		/* The channel for which to add the input. */
    char *str;			/* The input itself. */
    int len;			/* The length of the input. */
    int atEnd;			/* If non-zero, add at end of queue; otherwise
                                 * add at head of queue. */    
{
    Channel *chanPtr;		/* The real IO channel. */

    ChannelBuffer *bufPtr;	/* Buffer to contain the data. */
    int i, flags;

    chanPtr = (Channel *) chan;

    






    /*
     * CheckChannelErrors clears too many flag bits in this one case.
     */
     
    flags = chanPtr->flags;
    if (CheckChannelErrors(chanPtr, TCL_READABLE) != 0) {
	len = -1;
	goto done;
    }
    chanPtr->flags = flags;

    /*
     * If we have encountered a sticky EOF, just punt without storing.
     * (sticky EOF is set if we have seen the input eofChar, to prevent
     * reading beyond the eofChar). Otherwise, clear the EOF flags, and
     * clear the BLOCKED bit. We want to discover these conditions anew
     * in each operation.
     */

    if (chanPtr->flags & CHANNEL_STICKY_EOF) {
	goto done;
    }
    chanPtr->flags &= (~(CHANNEL_BLOCKED | CHANNEL_EOF));

    bufPtr = AllocChannelBuffer(len);
    for (i = 0; i < len; i++) {
        bufPtr->buf[i] = str[i];
    }
    bufPtr->nextAdded += len;

    if (chanPtr->inQueueHead == (ChannelBuffer *) NULL) {
        bufPtr->nextPtr = (ChannelBuffer *) NULL;
        chanPtr->inQueueHead = bufPtr;
        chanPtr->inQueueTail = bufPtr;
    } else if (atEnd) {
        bufPtr->nextPtr = (ChannelBuffer *) NULL;
        chanPtr->inQueueTail->nextPtr = bufPtr;
        chanPtr->inQueueTail = bufPtr;
    } else {
        bufPtr->nextPtr = chanPtr->inQueueHead;
        chanPtr->inQueueHead = bufPtr;
    }

    done:
    /*
     * Update the notifier state so we don't block while there is still
     * data in the buffers.
     */







>




>
|
>
>
>
>
>
>




|
|



|









|


|







|

|
|


|
|

|
|







4495
4496
4497
4498
4499
4500
4501
4502
4503
4504
4505
4506
4507
4508
4509
4510
4511
4512
4513
4514
4515
4516
4517
4518
4519
4520
4521
4522
4523
4524
4525
4526
4527
4528
4529
4530
4531
4532
4533
4534
4535
4536
4537
4538
4539
4540
4541
4542
4543
4544
4545
4546
4547
4548
4549
4550
4551
4552
4553
4554
4555
4556
4557
4558
4559
4560
4561
4562
    Tcl_Channel chan;		/* The channel for which to add the input. */
    char *str;			/* The input itself. */
    int len;			/* The length of the input. */
    int atEnd;			/* If non-zero, add at end of queue; otherwise
                                 * add at head of queue. */    
{
    Channel *chanPtr;		/* The real IO channel. */
    ChannelState *statePtr;	/* State of actual channel. */
    ChannelBuffer *bufPtr;	/* Buffer to contain the data. */
    int i, flags;

    chanPtr = (Channel *) chan;
    statePtr = chanPtr->state;

    /*
     * This operation should occur at the top of a channel stack.
     */

    chanPtr = statePtr->topChanPtr;

    /*
     * CheckChannelErrors clears too many flag bits in this one case.
     */
     
    flags = statePtr->flags;
    if (CheckChannelErrors(statePtr, TCL_READABLE) != 0) {
	len = -1;
	goto done;
    }
    statePtr->flags = flags;

    /*
     * If we have encountered a sticky EOF, just punt without storing.
     * (sticky EOF is set if we have seen the input eofChar, to prevent
     * reading beyond the eofChar). Otherwise, clear the EOF flags, and
     * clear the BLOCKED bit. We want to discover these conditions anew
     * in each operation.
     */

    if (statePtr->flags & CHANNEL_STICKY_EOF) {
	goto done;
    }
    statePtr->flags &= (~(CHANNEL_BLOCKED | CHANNEL_EOF));

    bufPtr = AllocChannelBuffer(len);
    for (i = 0; i < len; i++) {
        bufPtr->buf[i] = str[i];
    }
    bufPtr->nextAdded += len;

    if (statePtr->inQueueHead == (ChannelBuffer *) NULL) {
        bufPtr->nextPtr = (ChannelBuffer *) NULL;
        statePtr->inQueueHead = bufPtr;
        statePtr->inQueueTail = bufPtr;
    } else if (atEnd) {
        bufPtr->nextPtr = (ChannelBuffer *) NULL;
        statePtr->inQueueTail->nextPtr = bufPtr;
        statePtr->inQueueTail = bufPtr;
    } else {
        bufPtr->nextPtr = statePtr->inQueueHead;
        statePtr->inQueueHead = bufPtr;
    }

    done:
    /*
     * Update the notifier state so we don't block while there is still
     * data in the buffers.
     */
4876
4877
4878
4879
4880
4881
4882
4883

4884




4885

4886
4887
4888
4889
4890
4891
4892
4893
4894
4895
4896
4897
4898
4899
4900
4901
4902
4903
 */

int
Tcl_Flush(chan)
    Tcl_Channel chan;			/* The Channel to flush. */
{
    int result;				/* Of calling FlushChannel. */
    Channel *chanPtr;			/* The actual channel. */






    chanPtr = (Channel *) chan;

    if (CheckChannelErrors(chanPtr, TCL_WRITABLE) != 0) {
	return -1;
    }

    /*
     * Force current output buffer to be output also.
     */
    
    if ((chanPtr->curOutPtr != NULL)
	    && (chanPtr->curOutPtr->nextAdded > 0)) {
        chanPtr->flags |= BUFFER_READY;
    }
    
    result = FlushChannel(NULL, chanPtr, 0);
    if (result != 0) {
        return TCL_ERROR;
    }








|
>

>
>
>
>
|
>
|






|
|
|
|







4582
4583
4584
4585
4586
4587
4588
4589
4590
4591
4592
4593
4594
4595
4596
4597
4598
4599
4600
4601
4602
4603
4604
4605
4606
4607
4608
4609
4610
4611
4612
4613
4614
4615
 */

int
Tcl_Flush(chan)
    Tcl_Channel chan;			/* The Channel to flush. */
{
    int result;				/* Of calling FlushChannel. */
    Channel *chanPtr  = (Channel *) chan;	/* The actual channel. */
    ChannelState *statePtr = chanPtr->state;	/* State of actual channel. */

    /*
     * This operation should occur at the top of a channel stack.
     */

    chanPtr = statePtr->topChanPtr;

    if (CheckChannelErrors(statePtr, TCL_WRITABLE) != 0) {
	return -1;
    }

    /*
     * Force current output buffer to be output also.
     */

    if ((statePtr->curOutPtr != NULL)
	    && (statePtr->curOutPtr->nextAdded > 0)) {
        statePtr->flags |= BUFFER_READY;
    }
    
    result = FlushChannel(NULL, chanPtr, 0);
    if (result != 0) {
        return TCL_ERROR;
    }

4919
4920
4921
4922
4923
4924
4925
4926
4927
4928
4929
4930
4931
4932
4933
4934
4935
4936
4937
4938
4939
4940
4941
4942
4943
4944
4945
4946
4947
4948
4949
4950
4951
4952
4953
4954
4955
4956
4957
 *	May discard input from the channel. If discardLastBuffer is zero,
 *	leaves one buffer in place for back-filling.
 *
 *----------------------------------------------------------------------
 */

static void
DiscardInputQueued(chanPtr, discardSavedBuffers)
    Channel *chanPtr;		/* Channel on which to discard
                                 * the queued input. */
    int discardSavedBuffers;	/* If non-zero, discard all buffers including
                                 * last one. */
{
    ChannelBuffer *bufPtr, *nxtPtr;	/* Loop variables. */

    bufPtr = chanPtr->inQueueHead;
    chanPtr->inQueueHead = (ChannelBuffer *) NULL;
    chanPtr->inQueueTail = (ChannelBuffer *) NULL;
    for (; bufPtr != (ChannelBuffer *) NULL; bufPtr = nxtPtr) {
        nxtPtr = bufPtr->nextPtr;
        RecycleBuffer(chanPtr, bufPtr, discardSavedBuffers);
    }

    /*
     * If discardSavedBuffers is nonzero, must also discard any previously
     * saved buffer in the saveInBufPtr field.
     */
    
    if (discardSavedBuffers) {
        if (chanPtr->saveInBufPtr != (ChannelBuffer *) NULL) {
            ckfree((char *) chanPtr->saveInBufPtr);
            chanPtr->saveInBufPtr = (ChannelBuffer *) NULL;
        }
    }
}

/*
 *---------------------------------------------------------------------------
 *







|
|






|
|
|


|








|
|
|







4631
4632
4633
4634
4635
4636
4637
4638
4639
4640
4641
4642
4643
4644
4645
4646
4647
4648
4649
4650
4651
4652
4653
4654
4655
4656
4657
4658
4659
4660
4661
4662
4663
4664
4665
4666
4667
4668
4669
 *	May discard input from the channel. If discardLastBuffer is zero,
 *	leaves one buffer in place for back-filling.
 *
 *----------------------------------------------------------------------
 */

static void
DiscardInputQueued(statePtr, discardSavedBuffers)
    ChannelState *statePtr;	/* Channel on which to discard
                                 * the queued input. */
    int discardSavedBuffers;	/* If non-zero, discard all buffers including
                                 * last one. */
{
    ChannelBuffer *bufPtr, *nxtPtr;	/* Loop variables. */

    bufPtr = statePtr->inQueueHead;
    statePtr->inQueueHead = (ChannelBuffer *) NULL;
    statePtr->inQueueTail = (ChannelBuffer *) NULL;
    for (; bufPtr != (ChannelBuffer *) NULL; bufPtr = nxtPtr) {
        nxtPtr = bufPtr->nextPtr;
        RecycleBuffer(statePtr, bufPtr, discardSavedBuffers);
    }

    /*
     * If discardSavedBuffers is nonzero, must also discard any previously
     * saved buffer in the saveInBufPtr field.
     */
    
    if (discardSavedBuffers) {
        if (statePtr->saveInBufPtr != (ChannelBuffer *) NULL) {
            ckfree((char *) statePtr->saveInBufPtr);
            statePtr->saveInBufPtr = (ChannelBuffer *) NULL;
        }
    }
}

/*
 *---------------------------------------------------------------------------
 *
4973
4974
4975
4976
4977
4978
4979

4980
4981
4982
4983
4984
4985
4986
4987
4988
4989
4990
4991




























4992
4993
4994
4995
4996
4997
4998
4999
5000
5001
5002
5003
5004
5005
5006
5007
5008
5009
5010
5011
5012
5013
5014
5015
5016
5017
5018
5019
5020
5021
5022
5023
5024
5025
5026
5027
5028
5029
5030
5031
5032
5033
5034
5035
5036
5037
5038
5039
5040
5041
5042
5043
5044
5045
5046
5047
5048
5049
5050
5051
5052
5053
5054
5055
GetInput(chanPtr)
    Channel *chanPtr;		/* Channel to read input from. */
{
    int toRead;			/* How much to read? */
    int result;			/* Of calling driver. */
    int nread;			/* How much was read from channel? */
    ChannelBuffer *bufPtr;	/* New buffer to add to input queue. */


    /*
     * Prevent reading from a dead channel -- a channel that has been closed
     * but not yet deallocated, which can happen if the exit handler for
     * channel cleanup has run but the channel is still registered in some
     * interpreter.
     */
    
    if (CheckForDeadChannel(NULL, chanPtr)) {
	return EINVAL;
    }





























    /*
     * See if we can fill an existing buffer. If we can, read only
     * as much as will fit in it. Otherwise allocate a new buffer,
     * add it to the input queue and attempt to fill it to the max.
     */

    bufPtr = chanPtr->inQueueTail;
    if ((bufPtr != NULL) && (bufPtr->nextAdded < bufPtr->bufLength)) {
        toRead = bufPtr->bufLength - bufPtr->nextAdded;
    } else {
	bufPtr = chanPtr->saveInBufPtr;
	chanPtr->saveInBufPtr = NULL;
	if (bufPtr == NULL) {
	    bufPtr = AllocChannelBuffer(chanPtr->bufSize);
	}
        bufPtr->nextPtr = (ChannelBuffer *) NULL;

        toRead = chanPtr->bufSize;
        if (chanPtr->inQueueTail == NULL) {
            chanPtr->inQueueHead = bufPtr;
        } else {
            chanPtr->inQueueTail->nextPtr = bufPtr;
        }
        chanPtr->inQueueTail = bufPtr;
    }
      
    /*
     * If EOF is set, we should avoid calling the driver because on some
     * platforms it is impossible to read from a device after EOF.
     */

    if (chanPtr->flags & CHANNEL_EOF) {
	return 0;
    }

    nread = (*chanPtr->typePtr->inputProc)(chanPtr->instanceData,
	    bufPtr->buf + bufPtr->nextAdded, toRead, &result);

    if (nread > 0) {
	bufPtr->nextAdded += nread;

	/*
	 * If we get a short read, signal up that we may be BLOCKED. We
	 * should avoid calling the driver because on some platforms we
	 * will block in the low level reading code even though the
	 * channel is set into nonblocking mode.
	 */
            
	if (nread < toRead) {
	    chanPtr->flags |= CHANNEL_BLOCKED;
	}
    } else if (nread == 0) {
	chanPtr->flags |= CHANNEL_EOF;
	chanPtr->inputEncodingFlags |= TCL_ENCODING_END;
    } else if (nread < 0) {
	if ((result == EWOULDBLOCK) || (result == EAGAIN)) {
	    chanPtr->flags |= CHANNEL_BLOCKED;
	    result = EAGAIN;
	}
	Tcl_SetErrno(result);
	return result;
    } 
    return 0;
}







>








|



>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>






|



|
|

|



|
|
|

|

|







|



|













|


|
|


|







4685
4686
4687
4688
4689
4690
4691
4692
4693
4694
4695
4696
4697
4698
4699
4700
4701
4702
4703
4704
4705
4706
4707
4708
4709
4710
4711
4712
4713
4714
4715
4716
4717
4718
4719
4720
4721
4722
4723
4724
4725
4726
4727
4728
4729
4730
4731
4732
4733
4734
4735
4736
4737
4738
4739
4740
4741
4742
4743
4744
4745
4746
4747
4748
4749
4750
4751
4752
4753
4754
4755
4756
4757
4758
4759
4760
4761
4762
4763
4764
4765
4766
4767
4768
4769
4770
4771
4772
4773
4774
4775
4776
4777
4778
4779
4780
4781
4782
4783
4784
4785
4786
4787
4788
4789
4790
4791
4792
4793
4794
4795
4796
GetInput(chanPtr)
    Channel *chanPtr;		/* Channel to read input from. */
{
    int toRead;			/* How much to read? */
    int result;			/* Of calling driver. */
    int nread;			/* How much was read from channel? */
    ChannelBuffer *bufPtr;	/* New buffer to add to input queue. */
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */

    /*
     * Prevent reading from a dead channel -- a channel that has been closed
     * but not yet deallocated, which can happen if the exit handler for
     * channel cleanup has run but the channel is still registered in some
     * interpreter.
     */
    
    if (CheckForDeadChannel(NULL, statePtr)) {
	return EINVAL;
    }

    /*
     * First check for more buffers in the pushback area of the
     * topmost channel in the stack and use them. They can be the
     * result of a transformation which went away without reading all
     * the information placed in the area when it was stacked.
     *
     * Two possibilities for the state: No buffers in it, or a single
     * empty buffer. In the latter case we can recycle it now.
     */

    if (chanPtr->inQueueHead != (ChannelBuffer*) NULL) {
        if (statePtr->inQueueHead != (ChannelBuffer*) NULL) {
	    RecycleBuffer(statePtr, statePtr->inQueueHead, 0);
	    statePtr->inQueueHead = (ChannelBuffer*) NULL;
	}

	statePtr->inQueueHead = chanPtr->inQueueHead;
	statePtr->inQueueTail = chanPtr->inQueueTail;
	chanPtr->inQueueHead  = (ChannelBuffer*) NULL;
	chanPtr->inQueueTail  = (ChannelBuffer*) NULL;
	return 0;
    }

    /*
     * Nothing in the pushback area, fall back to the usual handling
     * (driver, etc.)
     */

    /*
     * See if we can fill an existing buffer. If we can, read only
     * as much as will fit in it. Otherwise allocate a new buffer,
     * add it to the input queue and attempt to fill it to the max.
     */

    bufPtr = statePtr->inQueueTail;
    if ((bufPtr != NULL) && (bufPtr->nextAdded < bufPtr->bufLength)) {
        toRead = bufPtr->bufLength - bufPtr->nextAdded;
    } else {
	bufPtr = statePtr->saveInBufPtr;
	statePtr->saveInBufPtr = NULL;
	if (bufPtr == NULL) {
	    bufPtr = AllocChannelBuffer(statePtr->bufSize);
	}
        bufPtr->nextPtr = (ChannelBuffer *) NULL;

        toRead = statePtr->bufSize;
        if (statePtr->inQueueTail == NULL) {
            statePtr->inQueueHead = bufPtr;
        } else {
            statePtr->inQueueTail->nextPtr = bufPtr;
        }
        statePtr->inQueueTail = bufPtr;
    }
      
    /*
     * If EOF is set, we should avoid calling the driver because on some
     * platforms it is impossible to read from a device after EOF.
     */

    if (statePtr->flags & CHANNEL_EOF) {
	return 0;
    }

    nread = (chanPtr->typePtr->inputProc)(chanPtr->instanceData,
	    bufPtr->buf + bufPtr->nextAdded, toRead, &result);

    if (nread > 0) {
	bufPtr->nextAdded += nread;

	/*
	 * If we get a short read, signal up that we may be BLOCKED. We
	 * should avoid calling the driver because on some platforms we
	 * will block in the low level reading code even though the
	 * channel is set into nonblocking mode.
	 */
            
	if (nread < toRead) {
	    statePtr->flags |= CHANNEL_BLOCKED;
	}
    } else if (nread == 0) {
	statePtr->flags |= CHANNEL_EOF;
	statePtr->inputEncodingFlags |= TCL_ENCODING_END;
    } else if (nread < 0) {
	if ((result == EWOULDBLOCK) || (result == EAGAIN)) {
	    statePtr->flags |= CHANNEL_BLOCKED;
	    result = EAGAIN;
	}
	Tcl_SetErrno(result);
	return result;
    } 
    return 0;
}
5074
5075
5076
5077
5078
5079
5080
5081

5082
5083
5084
5085
5086
5087
5088
5089
5090
5091
5092
5093
5094
5095
5096
5097
5098
5099
5100
5101
5102






5103
5104
5105
5106
5107
5108
5109
5110
5111
5112
5113
5114
5115
5116
5117
5118
5119










5120
5121
5122
5123

5124
5125
5126
5127
5128
5129
5130
5131
5132
5133
5134
5135
5136
5137
5138
5139
5140

int
Tcl_Seek(chan, offset, mode)
    Tcl_Channel chan;		/* The channel on which to seek. */
    int offset;			/* Offset to seek to. */
    int mode;			/* Relative to which location to seek? */
{
    Channel *chanPtr;		/* The real IO channel. */

    ChannelBuffer *bufPtr;
    int inputBuffered, outputBuffered;
    int result;			/* Of device driver operations. */
    int curPos;			/* Position on the device. */
    int wasAsync;		/* Was the channel nonblocking before the
                                 * seek operation? If so, must restore to
                                 * nonblocking mode after the seek. */

    chanPtr = (Channel *) chan;
    if (CheckChannelErrors(chanPtr, TCL_WRITABLE | TCL_READABLE) != 0) {
	return -1;
    }

    /*
     * Disallow seek on dead channels -- channels that have been closed but
     * not yet been deallocated. Such channels can be found if the exit
     * handler for channel cleanup has run but the channel is still
     * registered in an interpreter.
     */

    if (CheckForDeadChannel(NULL,chanPtr)) return -1;







    /*
     * Disallow seek on channels whose type does not have a seek procedure
     * defined. This means that the channel does not support seeking.
     */

    if (chanPtr->typePtr->seekProc == (Tcl_DriverSeekProc *) NULL) {
        Tcl_SetErrno(EINVAL);
        return -1;
    }

    /*
     * Compute how much input and output is buffered. If both input and
     * output is buffered, cannot compute the current position.
     */

    for (bufPtr = chanPtr->inQueueHead, inputBuffered = 0;










	 bufPtr != (ChannelBuffer *) NULL;
	 bufPtr = bufPtr->nextPtr) {
        inputBuffered += (bufPtr->nextAdded - bufPtr->nextRemoved);
    }

    for (bufPtr = chanPtr->outQueueHead, outputBuffered = 0;
	 bufPtr != (ChannelBuffer *) NULL;
	 bufPtr = bufPtr->nextPtr) {
        outputBuffered += (bufPtr->nextAdded - bufPtr->nextRemoved);
    }
    if ((chanPtr->curOutPtr != (ChannelBuffer *) NULL) &&
	    (chanPtr->curOutPtr->nextAdded > chanPtr->curOutPtr->nextRemoved)) {
        chanPtr->flags |= BUFFER_READY;
        outputBuffered +=
            (chanPtr->curOutPtr->nextAdded - chanPtr->curOutPtr->nextRemoved);
    }

    if ((inputBuffered != 0) && (outputBuffered != 0)) {
        Tcl_SetErrno(EFAULT);
        return -1;
    }








|
>








<
|










|
>
>
>
>
>
>
















|
>
>
>
>
>
>
>
>
>
>




>
|




|
|
|

|







4815
4816
4817
4818
4819
4820
4821
4822
4823
4824
4825
4826
4827
4828
4829
4830
4831

4832
4833
4834
4835
4836
4837
4838
4839
4840
4841
4842
4843
4844
4845
4846
4847
4848
4849
4850
4851
4852
4853
4854
4855
4856
4857
4858
4859
4860
4861
4862
4863
4864
4865
4866
4867
4868
4869
4870
4871
4872
4873
4874
4875
4876
4877
4878
4879
4880
4881
4882
4883
4884
4885
4886
4887
4888
4889
4890
4891
4892
4893
4894
4895
4896
4897
4898

int
Tcl_Seek(chan, offset, mode)
    Tcl_Channel chan;		/* The channel on which to seek. */
    int offset;			/* Offset to seek to. */
    int mode;			/* Relative to which location to seek? */
{
    Channel *chanPtr = (Channel *) chan;	/* The real IO channel. */
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    ChannelBuffer *bufPtr;
    int inputBuffered, outputBuffered;
    int result;			/* Of device driver operations. */
    int curPos;			/* Position on the device. */
    int wasAsync;		/* Was the channel nonblocking before the
                                 * seek operation? If so, must restore to
                                 * nonblocking mode after the seek. */


    if (CheckChannelErrors(statePtr, TCL_WRITABLE | TCL_READABLE) != 0) {
	return -1;
    }

    /*
     * Disallow seek on dead channels -- channels that have been closed but
     * not yet been deallocated. Such channels can be found if the exit
     * handler for channel cleanup has run but the channel is still
     * registered in an interpreter.
     */

    if (CheckForDeadChannel(NULL, statePtr)) return -1;

    /*
     * This operation should occur at the top of a channel stack.
     */

    chanPtr = statePtr->topChanPtr;

    /*
     * Disallow seek on channels whose type does not have a seek procedure
     * defined. This means that the channel does not support seeking.
     */

    if (chanPtr->typePtr->seekProc == (Tcl_DriverSeekProc *) NULL) {
        Tcl_SetErrno(EINVAL);
        return -1;
    }

    /*
     * Compute how much input and output is buffered. If both input and
     * output is buffered, cannot compute the current position.
     */

    for (bufPtr = statePtr->inQueueHead, inputBuffered = 0;
	 bufPtr != (ChannelBuffer *) NULL;
	 bufPtr = bufPtr->nextPtr) {
        inputBuffered += (bufPtr->nextAdded - bufPtr->nextRemoved);
    }

    /*
     * Don't forget the bytes in the topmost pushback area.
     */

    for (bufPtr = statePtr->topChanPtr->inQueueHead;
	 bufPtr != (ChannelBuffer *) NULL;
	 bufPtr = bufPtr->nextPtr) {
        inputBuffered += (bufPtr->nextAdded - bufPtr->nextRemoved);
    }

    for (bufPtr = statePtr->outQueueHead, outputBuffered = 0;
	 bufPtr != (ChannelBuffer *) NULL;
	 bufPtr = bufPtr->nextPtr) {
        outputBuffered += (bufPtr->nextAdded - bufPtr->nextRemoved);
    }
    if ((statePtr->curOutPtr != (ChannelBuffer *) NULL) &&
	    (statePtr->curOutPtr->nextAdded > statePtr->curOutPtr->nextRemoved)) {
        statePtr->flags |= BUFFER_READY;
        outputBuffered +=
            (statePtr->curOutPtr->nextAdded - statePtr->curOutPtr->nextRemoved);
    }

    if ((inputBuffered != 0) && (outputBuffered != 0)) {
        Tcl_SetErrno(EFAULT);
        return -1;
    }

5148
5149
5150
5151
5152
5153
5154
5155
5156
5157
5158
5159
5160
5161
5162
5163
5164
5165
5166
5167
5168
5169
5170
5171
5172
5173
5174
5175
5176
5177
5178
5179
5180
5181
5182
5183
5184
5185
5186
5187
5188
5189
5190
5191
5192
5193
    }

    /*
     * Discard any queued input - this input should not be read after
     * the seek.
     */

    DiscardInputQueued(chanPtr, 0);

    /*
     * Reset EOF and BLOCKED flags. We invalidate them by moving the
     * access point. Also clear CR related flags.
     */

    chanPtr->flags &=
        (~(CHANNEL_EOF | CHANNEL_STICKY_EOF | CHANNEL_BLOCKED | INPUT_SAW_CR));
    
    /*
     * If the channel is in asynchronous output mode, switch it back
     * to synchronous mode and cancel any async flush that may be
     * scheduled. After the flush, the channel will be put back into
     * asynchronous output mode.
     */

    wasAsync = 0;
    if (chanPtr->flags & CHANNEL_NONBLOCKING) {
        wasAsync = 1;
        result = 0;
        if (chanPtr->typePtr->blockModeProc != NULL) {
            result = (chanPtr->typePtr->blockModeProc) (chanPtr->instanceData,
                    TCL_MODE_BLOCKING);
        }
        if (result != 0) {
            Tcl_SetErrno(result);
            return -1;
        }
        chanPtr->flags &= (~(CHANNEL_NONBLOCKING));
        if (chanPtr->flags & BG_FLUSH_SCHEDULED) {
            chanPtr->flags &= (~(BG_FLUSH_SCHEDULED));
        }
    }
    
    /*
     * If the flush fails we cannot recover the original position. In
     * that case the seek is not attempted because we do not know where
     * the access position is - instead we return the error. FlushChannel







|






|










|

<
<
<
|
<
|
<
|
|
|
|
|







4906
4907
4908
4909
4910
4911
4912
4913
4914
4915
4916
4917
4918
4919
4920
4921
4922
4923
4924
4925
4926
4927
4928
4929
4930
4931
4932



4933

4934

4935
4936
4937
4938
4939
4940
4941
4942
4943
4944
4945
4946
    }

    /*
     * Discard any queued input - this input should not be read after
     * the seek.
     */

    DiscardInputQueued(statePtr, 0);

    /*
     * Reset EOF and BLOCKED flags. We invalidate them by moving the
     * access point. Also clear CR related flags.
     */

    statePtr->flags &=
        (~(CHANNEL_EOF | CHANNEL_STICKY_EOF | CHANNEL_BLOCKED | INPUT_SAW_CR));
    
    /*
     * If the channel is in asynchronous output mode, switch it back
     * to synchronous mode and cancel any async flush that may be
     * scheduled. After the flush, the channel will be put back into
     * asynchronous output mode.
     */

    wasAsync = 0;
    if (statePtr->flags & CHANNEL_NONBLOCKING) {
        wasAsync = 1;



        result = StackSetBlockMode(chanPtr, TCL_MODE_BLOCKING);

	if (result != 0) {

	    return -1;
	}
        statePtr->flags &= (~(CHANNEL_NONBLOCKING));
        if (statePtr->flags & BG_FLUSH_SCHEDULED) {
            statePtr->flags &= (~(BG_FLUSH_SCHEDULED));
        }
    }
    
    /*
     * If the flush fails we cannot recover the original position. In
     * that case the seek is not attempted because we do not know where
     * the access position is - instead we return the error. FlushChannel
5215
5216
5217
5218
5219
5220
5221
5222
5223
5224
5225
5226
5227
5228
5229
5230
5231
5232
5233
5234
5235
5236
5237
5238
     * Restore to nonblocking mode if that was the previous behavior.
     *
     * NOTE: Even if there was an async flush active we do not restore
     * it now because we already flushed all the queued output, above.
     */
    
    if (wasAsync) {
        chanPtr->flags |= CHANNEL_NONBLOCKING;
        result = 0;
        if (chanPtr->typePtr->blockModeProc != NULL) {
            result = (chanPtr->typePtr->blockModeProc) (chanPtr->instanceData,
                    TCL_MODE_NONBLOCKING);
        }
        if (result != 0) {
            Tcl_SetErrno(result);
            return -1;
        }
    }

    return curPos;
}

/*
 *----------------------------------------------------------------------







|
<
<
<
|
<
|
<
|
|







4968
4969
4970
4971
4972
4973
4974
4975



4976

4977

4978
4979
4980
4981
4982
4983
4984
4985
4986
     * Restore to nonblocking mode if that was the previous behavior.
     *
     * NOTE: Even if there was an async flush active we do not restore
     * it now because we already flushed all the queued output, above.
     */
    
    if (wasAsync) {
        statePtr->flags |= CHANNEL_NONBLOCKING;



        result = StackSetBlockMode(chanPtr, TCL_MODE_NONBLOCKING);

	if (result != 0) {

	    return -1;
	}
    }

    return curPos;
}

/*
 *----------------------------------------------------------------------
5253
5254
5255
5256
5257
5258
5259
5260

5261
5262
5263
5264
5265
5266
5267
5268
5269
5270
5271
5272
5273
5274
5275
5276
5277
5278
5279
5280
5281






5282
5283
5284
5285
5286
5287
5288
5289
5290
5291
5292
5293
5294
5295
5296
5297
5298
5299
5300
5301
5302
5303
5304
5305
5306
5307
5308
5309
5310
5311
5312
5313
5314
5315
5316
5317
5318
 *----------------------------------------------------------------------
 */

int
Tcl_Tell(chan)
    Tcl_Channel chan;			/* The channel to return pos for. */
{
    Channel *chanPtr;			/* The actual channel to tell on. */

    ChannelBuffer *bufPtr;
    int inputBuffered, outputBuffered;
    int result;				/* Of calling device driver. */
    int curPos;				/* Position on device. */

    chanPtr = (Channel *) chan;
    if (CheckChannelErrors(chanPtr, TCL_WRITABLE | TCL_READABLE) != 0) {
	return -1;
    }

    /*
     * Disallow tell on dead channels -- channels that have been closed but
     * not yet been deallocated. Such channels can be found if the exit
     * handler for channel cleanup has run but the channel is still
     * registered in an interpreter.
     */

    if (CheckForDeadChannel(NULL,chanPtr)) {
	return -1;
    }







    /*
     * Disallow tell on channels whose type does not have a seek procedure
     * defined. This means that the channel does not support seeking.
     */

    if (chanPtr->typePtr->seekProc == (Tcl_DriverSeekProc *) NULL) {
        Tcl_SetErrno(EINVAL);
        return -1;
    }

    /*
     * Compute how much input and output is buffered. If both input and
     * output is buffered, cannot compute the current position.
     */

    for (bufPtr = chanPtr->inQueueHead, inputBuffered = 0;
	 bufPtr != (ChannelBuffer *) NULL;
	 bufPtr = bufPtr->nextPtr) {
        inputBuffered += (bufPtr->nextAdded - bufPtr->nextRemoved);
    }
    for (bufPtr = chanPtr->outQueueHead, outputBuffered = 0;
	 bufPtr != (ChannelBuffer *) NULL;
	 bufPtr = bufPtr->nextPtr) {
        outputBuffered += (bufPtr->nextAdded - bufPtr->nextRemoved);
    }
    if ((chanPtr->curOutPtr != (ChannelBuffer *) NULL) &&
	    (chanPtr->curOutPtr->nextAdded > chanPtr->curOutPtr->nextRemoved)) {
        chanPtr->flags |= BUFFER_READY;
        outputBuffered +=
            (chanPtr->curOutPtr->nextAdded - chanPtr->curOutPtr->nextRemoved);
    }

    if ((inputBuffered != 0) && (outputBuffered != 0)) {
        Tcl_SetErrno(EFAULT);
        return -1;
    }








|
>





<
|










|



>
>
>
>
>
>















|




|




|
|
|

|







5001
5002
5003
5004
5005
5006
5007
5008
5009
5010
5011
5012
5013
5014

5015
5016
5017
5018
5019
5020
5021
5022
5023
5024
5025
5026
5027
5028
5029
5030
5031
5032
5033
5034
5035
5036
5037
5038
5039
5040
5041
5042
5043
5044
5045
5046
5047
5048
5049
5050
5051
5052
5053
5054
5055
5056
5057
5058
5059
5060
5061
5062
5063
5064
5065
5066
5067
5068
5069
5070
5071
5072
 *----------------------------------------------------------------------
 */

int
Tcl_Tell(chan)
    Tcl_Channel chan;			/* The channel to return pos for. */
{
    Channel *chanPtr = (Channel *) chan;	/* The real IO channel. */
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    ChannelBuffer *bufPtr;
    int inputBuffered, outputBuffered;
    int result;				/* Of calling device driver. */
    int curPos;				/* Position on device. */


    if (CheckChannelErrors(statePtr, TCL_WRITABLE | TCL_READABLE) != 0) {
	return -1;
    }

    /*
     * Disallow tell on dead channels -- channels that have been closed but
     * not yet been deallocated. Such channels can be found if the exit
     * handler for channel cleanup has run but the channel is still
     * registered in an interpreter.
     */

    if (CheckForDeadChannel(NULL, statePtr)) {
	return -1;
    }

    /*
     * This operation should occur at the top of a channel stack.
     */

    chanPtr = statePtr->topChanPtr;

    /*
     * Disallow tell on channels whose type does not have a seek procedure
     * defined. This means that the channel does not support seeking.
     */

    if (chanPtr->typePtr->seekProc == (Tcl_DriverSeekProc *) NULL) {
        Tcl_SetErrno(EINVAL);
        return -1;
    }

    /*
     * Compute how much input and output is buffered. If both input and
     * output is buffered, cannot compute the current position.
     */

    for (bufPtr = statePtr->inQueueHead, inputBuffered = 0;
	 bufPtr != (ChannelBuffer *) NULL;
	 bufPtr = bufPtr->nextPtr) {
        inputBuffered += (bufPtr->nextAdded - bufPtr->nextRemoved);
    }
    for (bufPtr = statePtr->outQueueHead, outputBuffered = 0;
	 bufPtr != (ChannelBuffer *) NULL;
	 bufPtr = bufPtr->nextPtr) {
        outputBuffered += (bufPtr->nextAdded - bufPtr->nextRemoved);
    }
    if ((statePtr->curOutPtr != (ChannelBuffer *) NULL) &&
	    (statePtr->curOutPtr->nextAdded > statePtr->curOutPtr->nextRemoved)) {
        statePtr->flags |= BUFFER_READY;
        outputBuffered +=
            (statePtr->curOutPtr->nextAdded - statePtr->curOutPtr->nextRemoved);
    }

    if ((inputBuffered != 0) && (outputBuffered != 0)) {
        Tcl_SetErrno(EFAULT);
        return -1;
    }

5348
5349
5350
5351
5352
5353
5354
5355
5356
5357
5358


5359


5360
5361
5362
5363
5364
5365
5366











5367
5368
5369
5370
5371
5372
5373
5374
5375
5376
5377
5378
5379
5380




5381
5382
5383
5384
5385
5386
5387
5388
5389
5390
5391
5392
5393
5394
5395
5396
5397
5398
5399
5400
5401
5402
5403
5404
5405
5406
 * Side effects:
 *	May clear the EOF and/or BLOCKED bits if reading from channel.
 *
 *---------------------------------------------------------------------------
 */
 
static int
CheckChannelErrors(chanPtr, direction)
    Channel *chanPtr;	    /* Channel to check. */
    int direction;	    /* Test if channel supports desired operation:
			     * TCL_READABLE, TCL_WRITABLE. */


{


    /*
     * Check for unreported error.
     */

    if (chanPtr->unreportedError != 0) {
        Tcl_SetErrno(chanPtr->unreportedError);
        chanPtr->unreportedError = 0;











        return -1;
    }

    /*
     * Fail if the channel is not opened for desired operation.
     */

    if ((chanPtr->flags & direction) == 0) {
        Tcl_SetErrno(EACCES);
        return -1;
    }

    /*
     * Fail if the channel is in the middle of a background copy.




     */

    if (chanPtr->csPtr != NULL) {
	Tcl_SetErrno(EBUSY);
	return -1;
    }

    if (direction == TCL_READABLE) {
	/*
	 * If we have not encountered a sticky EOF, clear the EOF bit
	 * (sticky EOF is set if we have seen the input eofChar, to prevent
	 * reading beyond the eofChar). Also, always clear the BLOCKED bit.
	 * We want to discover these conditions anew in each operation.
	 */
	
	if ((chanPtr->flags & CHANNEL_STICKY_EOF) == 0) {
	    chanPtr->flags &= ~CHANNEL_EOF;
	}
	chanPtr->flags &= ~(CHANNEL_BLOCKED | CHANNEL_NEED_MORE_DATA);
    }

    return 0;
}

/*
 *----------------------------------------------------------------------







|
|
|
|
>
>

>
>




|
|
|
>
>
>
>
>
>
>
>
>
>
>







|






>
>
>
>


|












|
|

|







5102
5103
5104
5105
5106
5107
5108
5109
5110
5111
5112
5113
5114
5115
5116
5117
5118
5119
5120
5121
5122
5123
5124
5125
5126
5127
5128
5129
5130
5131
5132
5133
5134
5135
5136
5137
5138
5139
5140
5141
5142
5143
5144
5145
5146
5147
5148
5149
5150
5151
5152
5153
5154
5155
5156
5157
5158
5159
5160
5161
5162
5163
5164
5165
5166
5167
5168
5169
5170
5171
5172
5173
5174
5175
5176
5177
5178
5179
 * Side effects:
 *	May clear the EOF and/or BLOCKED bits if reading from channel.
 *
 *---------------------------------------------------------------------------
 */
 
static int
CheckChannelErrors(statePtr, flags)
    ChannelState *statePtr;	/* Channel to check. */
    int flags;			/* Test if channel supports desired operation:
				 * TCL_READABLE, TCL_WRITABLE.  Also indicates
				 * Raw read or write for special close
				 * processing*/
{
    int direction = flags & (TCL_READABLE|TCL_WRITABLE);

    /*
     * Check for unreported error.
     */

    if (statePtr->unreportedError != 0) {
        Tcl_SetErrno(statePtr->unreportedError);
        statePtr->unreportedError = 0;
        return -1;
    }

    /*
     * Only the raw read and write operations are allowed during close
     * in order to drain data from stacked channels.
     */

    if ((statePtr->flags & CHANNEL_CLOSED) &&
	    ((flags & CHANNEL_RAW_MODE) == 0)) {
        Tcl_SetErrno(EACCES);
        return -1;
    }

    /*
     * Fail if the channel is not opened for desired operation.
     */

    if ((statePtr->flags & direction) == 0) {
        Tcl_SetErrno(EACCES);
        return -1;
    }

    /*
     * Fail if the channel is in the middle of a background copy.
     *
     * Don't do this tests for raw channels here or else the chaining in the
     * transformation drivers will fail with 'file busy' error instead of
     * retrieving and transforming the data to copy.
     */

    if ((statePtr->csPtr != NULL) && ((flags & CHANNEL_RAW_MODE) == 0)) {
	Tcl_SetErrno(EBUSY);
	return -1;
    }

    if (direction == TCL_READABLE) {
	/*
	 * If we have not encountered a sticky EOF, clear the EOF bit
	 * (sticky EOF is set if we have seen the input eofChar, to prevent
	 * reading beyond the eofChar). Also, always clear the BLOCKED bit.
	 * We want to discover these conditions anew in each operation.
	 */
	
	if ((statePtr->flags & CHANNEL_STICKY_EOF) == 0) {
	    statePtr->flags &= ~CHANNEL_EOF;
	}
	statePtr->flags &= ~(CHANNEL_BLOCKED | CHANNEL_NEED_MORE_DATA);
    }

    return 0;
}

/*
 *----------------------------------------------------------------------
5418
5419
5420
5421
5422
5423
5424

5425
5426
5427
5428
5429
5430
5431
5432
5433
5434
5435
5436
5437
 *----------------------------------------------------------------------
 */

int
Tcl_Eof(chan)
    Tcl_Channel chan;			/* Does this channel have EOF? */
{

    Channel *chanPtr;		/* The real channel structure. */

    chanPtr = (Channel *) chan;
    return ((chanPtr->flags & CHANNEL_STICKY_EOF) ||
            ((chanPtr->flags & CHANNEL_EOF) && (Tcl_InputBuffered(chan) == 0)))
        ? 1 : 0;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_InputBlocked --
 *







>
|

<
|
|
|







5191
5192
5193
5194
5195
5196
5197
5198
5199
5200

5201
5202
5203
5204
5205
5206
5207
5208
5209
5210
 *----------------------------------------------------------------------
 */

int
Tcl_Eof(chan)
    Tcl_Channel chan;			/* Does this channel have EOF? */
{
    ChannelState *statePtr = ((Channel *) chan)->state;
					/* State of real channel structure. */


    return ((statePtr->flags & CHANNEL_STICKY_EOF) ||
            ((statePtr->flags & CHANNEL_EOF) &&
		    (Tcl_InputBuffered(chan) == 0))) ? 1 : 0;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_InputBlocked --
 *
5446
5447
5448
5449
5450
5451
5452

5453
5454
5455
5456
5457
5458
5459
5460
5461
5462
5463
5464
5465
5466
5467
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5469
5470
5471
5472
5473
5474
5475
5476
5477
5478
5479
5480


5481
5482























5483
5484

















5485




5486
5487
5488
5489
5490

5491
5492
5493
5494
5495
5496
5497
 *----------------------------------------------------------------------
 */

int
Tcl_InputBlocked(chan)
    Tcl_Channel chan;			/* Is this channel blocked? */
{

    Channel *chanPtr;		/* The real channel structure. */

    chanPtr = (Channel *) chan;
    return (chanPtr->flags & CHANNEL_BLOCKED) ? 1 : 0;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_InputBuffered --
 *
 *	Returns the number of bytes of input currently buffered in the
 *	internal buffer of a channel.
 *
 * Results:
 *	The number of input bytes buffered, or zero if the channel is not
 *	open for reading.
 *
 * Side effects:
 *	None.
 *
 *----------------------------------------------------------------------
 */

int
Tcl_InputBuffered(chan)
    Tcl_Channel chan;			/* The channel to query. */
{


    Channel *chanPtr;
    int bytesBuffered;























    ChannelBuffer *bufPtr;


















    chanPtr = (Channel *) chan;




    for (bytesBuffered = 0, bufPtr = chanPtr->inQueueHead;
	 bufPtr != (ChannelBuffer *) NULL;
	 bufPtr = bufPtr->nextPtr) {
        bytesBuffered += (bufPtr->nextAdded - bufPtr->nextRemoved);
    }

    return bytesBuffered;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_SetChannelBufferSize --







>
|

<
|








|















>
>
|

>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
|
|
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
|
>
>
>
>





>







5219
5220
5221
5222
5223
5224
5225
5226
5227
5228

5229
5230
5231
5232
5233
5234
5235
5236
5237
5238
5239
5240
5241
5242
5243
5244
5245
5246
5247
5248
5249
5250
5251
5252
5253
5254
5255
5256
5257
5258
5259
5260
5261
5262
5263
5264
5265
5266
5267
5268
5269
5270
5271
5272
5273
5274
5275
5276
5277
5278
5279
5280
5281
5282
5283
5284
5285
5286
5287
5288
5289
5290
5291
5292
5293
5294
5295
5296
5297
5298
5299
5300
5301
5302
5303
5304
5305
5306
5307
5308
5309
5310
5311
5312
5313
5314
5315
5316
5317
 *----------------------------------------------------------------------
 */

int
Tcl_InputBlocked(chan)
    Tcl_Channel chan;			/* Is this channel blocked? */
{
    ChannelState *statePtr = ((Channel *) chan)->state;
					/* State of real channel structure. */


    return (statePtr->flags & CHANNEL_BLOCKED) ? 1 : 0;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_InputBuffered --
 *
 *	Returns the number of bytes of input currently buffered in the
 *	common internal buffer of a channel.
 *
 * Results:
 *	The number of input bytes buffered, or zero if the channel is not
 *	open for reading.
 *
 * Side effects:
 *	None.
 *
 *----------------------------------------------------------------------
 */

int
Tcl_InputBuffered(chan)
    Tcl_Channel chan;			/* The channel to query. */
{
    ChannelState *statePtr = ((Channel *) chan)->state;
					/* State of real channel structure. */
    ChannelBuffer *bufPtr;
    int bytesBuffered;

    for (bytesBuffered = 0, bufPtr = statePtr->inQueueHead;
	 bufPtr != (ChannelBuffer *) NULL;
	 bufPtr = bufPtr->nextPtr) {
        bytesBuffered += (bufPtr->nextAdded - bufPtr->nextRemoved);
    }

    /*
     * Don't forget the bytes in the topmost pushback area.
     */

    for (bufPtr = statePtr->topChanPtr->inQueueHead;
	 bufPtr != (ChannelBuffer *) NULL;
	 bufPtr = bufPtr->nextPtr) {
        bytesBuffered += (bufPtr->nextAdded - bufPtr->nextRemoved);
    }

    return bytesBuffered;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_ChannelBuffered --
 *
 *	Returns the number of bytes of input currently buffered in the
 *	internal buffer (push back area) of a channel.
 *
 * Results:
 *	The number of input bytes buffered, or zero if the channel is not
 *	open for reading.
 *
 * Side effects:
 *	None.
 *
 *----------------------------------------------------------------------
 */

int
Tcl_ChannelBuffered(chan)
    Tcl_Channel chan;			/* The channel to query. */
{
    Channel *chanPtr = (Channel *) chan;
					/* State of real channel structure. */
    ChannelBuffer *bufPtr;
    int bytesBuffered;

    for (bytesBuffered = 0, bufPtr = chanPtr->inQueueHead;
	 bufPtr != (ChannelBuffer *) NULL;
	 bufPtr = bufPtr->nextPtr) {
        bytesBuffered += (bufPtr->nextAdded - bufPtr->nextRemoved);
    }

    return bytesBuffered;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_SetChannelBufferSize --
5510
5511
5512
5513
5514
5515
5516
5517
5518
5519
5520
5521
5522
5523
5524
5525
5526
5527
5528
5529
5530
5531
5532
5533
5534
5535
5536
5537
5538
5539
5540
5541
5542
5543
5544
5545
5546
5547

void
Tcl_SetChannelBufferSize(chan, sz)
    Tcl_Channel chan;			/* The channel whose buffer size
                                         * to set. */
    int sz;				/* The size to set. */
{
    Channel *chanPtr;
    
    /*
     * If the buffer size is smaller than 10 bytes or larger than one MByte,
     * do not accept the requested size and leave the current buffer size.
     */
    
    if (sz < 10) {
        return;
    }
    if (sz > (1024 * 1024)) {
        return;
    }

    chanPtr = (Channel *) chan;
    chanPtr->bufSize = sz;

    if (chanPtr->outputStage != NULL) {
	ckfree((char *) chanPtr->outputStage);
	chanPtr->outputStage = NULL;
    }
    if ((chanPtr->encoding != NULL) && (chanPtr->flags & TCL_WRITABLE)) {
	chanPtr->outputStage = (char *)
	    ckalloc((unsigned) (chanPtr->bufSize + 2));
    }
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetChannelBufferSize --







|













|
|

|
|
|

|
|
|







5330
5331
5332
5333
5334
5335
5336
5337
5338
5339
5340
5341
5342
5343
5344
5345
5346
5347
5348
5349
5350
5351
5352
5353
5354
5355
5356
5357
5358
5359
5360
5361
5362
5363
5364
5365
5366
5367

void
Tcl_SetChannelBufferSize(chan, sz)
    Tcl_Channel chan;			/* The channel whose buffer size
                                         * to set. */
    int sz;				/* The size to set. */
{
    ChannelState *statePtr;		/* State of real channel structure. */
    
    /*
     * If the buffer size is smaller than 10 bytes or larger than one MByte,
     * do not accept the requested size and leave the current buffer size.
     */
    
    if (sz < 10) {
        return;
    }
    if (sz > (1024 * 1024)) {
        return;
    }

    statePtr = ((Channel *) chan)->state;
    statePtr->bufSize = sz;

    if (statePtr->outputStage != NULL) {
	ckfree((char *) statePtr->outputStage);
	statePtr->outputStage = NULL;
    }
    if ((statePtr->encoding != NULL) && (statePtr->flags & TCL_WRITABLE)) {
	statePtr->outputStage = (char *)
	    ckalloc((unsigned) (statePtr->bufSize + 2));
    }
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_GetChannelBufferSize --
5558
5559
5560
5561
5562
5563
5564
5565

5566
5567
5568
5569
5570
5571
5572
5573
5574
5575
 */

int
Tcl_GetChannelBufferSize(chan)
    Tcl_Channel chan;		/* The channel for which to find the
                                 * buffer size. */
{
    Channel *chanPtr;


    chanPtr = (Channel *) chan;
    return chanPtr->bufSize;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_BadChannelOption --
 *







|
>

<
|







5378
5379
5380
5381
5382
5383
5384
5385
5386
5387

5388
5389
5390
5391
5392
5393
5394
5395
 */

int
Tcl_GetChannelBufferSize(chan)
    Tcl_Channel chan;		/* The channel for which to find the
                                 * buffer size. */
{
    ChannelState *statePtr = ((Channel *) chan)->state;
					/* State of real channel structure. */


    return statePtr->bufSize;
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_BadChannelOption --
 *
5664
5665
5666
5667
5668
5669
5670

5671
5672
5673
5674
5675
5676
5677
5678
5679
5680
5681
5682
5683
5684
5685
5686
5687
5688
5689
5690
5691
5692
5693
5694






















5695
5696
5697
5698
5699
5700
5701
    Tcl_Channel chan;		/* Channel on which to get option. */
    char *optionName;		/* Option to get. */
    Tcl_DString *dsPtr;		/* Where to store value(s). */
{
    size_t len;			/* Length of optionName string. */
    char optionVal[128];	/* Buffer for sprintf. */
    Channel *chanPtr = (Channel *) chan;

    int flags;

    /*
     * If we are in the middle of a background copy, use the saved flags.
     */

    if (chanPtr->csPtr) {
	if (chanPtr == chanPtr->csPtr->readPtr) {
	    flags = chanPtr->csPtr->readFlags;
	} else {
	    flags = chanPtr->csPtr->writeFlags;
	}
    } else {
	flags = chanPtr->flags;
    }

    /*
     * Disallow options on dead channels -- channels that have been closed but
     * not yet been deallocated. Such channels can be found if the exit
     * handler for channel cleanup has run but the channel is still
     * registered in an interpreter.
     */

    if (CheckForDeadChannel(interp,chanPtr)) return TCL_ERROR;























    /*
     * If the optionName is NULL it means that we want a list of all
     * options and values.
     */
    
    if (optionName == (char *) NULL) {







>


<
<
<
<
<
<
<
<
<
<
<
<
<
<







|
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>







5484
5485
5486
5487
5488
5489
5490
5491
5492
5493














5494
5495
5496
5497
5498
5499
5500
5501
5502
5503
5504
5505
5506
5507
5508
5509
5510
5511
5512
5513
5514
5515
5516
5517
5518
5519
5520
5521
5522
5523
5524
5525
5526
5527
5528
5529
5530
    Tcl_Channel chan;		/* Channel on which to get option. */
    char *optionName;		/* Option to get. */
    Tcl_DString *dsPtr;		/* Where to store value(s). */
{
    size_t len;			/* Length of optionName string. */
    char optionVal[128];	/* Buffer for sprintf. */
    Channel *chanPtr = (Channel *) chan;
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    int flags;















    /*
     * Disallow options on dead channels -- channels that have been closed but
     * not yet been deallocated. Such channels can be found if the exit
     * handler for channel cleanup has run but the channel is still
     * registered in an interpreter.
     */

    if (CheckForDeadChannel(interp, statePtr)) {
	return TCL_ERROR;
    }

    /*
     * This operation should occur at the top of a channel stack.
     */

    chanPtr = statePtr->topChanPtr;

    /*
     * If we are in the middle of a background copy, use the saved flags.
     */

    if (statePtr->csPtr) {
	if (chanPtr == statePtr->csPtr->readPtr) {
	    flags = statePtr->csPtr->readFlags;
	} else {
	    flags = statePtr->csPtr->writeFlags;
	}
    } else {
	flags = statePtr->flags;
    }

    /*
     * If the optionName is NULL it means that we want a list of all
     * options and values.
     */
    
    if (optionName == (char *) NULL) {
5732
5733
5734
5735
5736
5737
5738
5739
5740
5741
5742
5743
5744
5745
5746
5747
5748
5749
5750
5751
5752
5753
5754
5755
5756
5757
5758
5759
5760
5761
5762
5763
5764
5765
5766
5767
5768
5769
5770
5771
5772
5773
5774
5775
5776
5777
5778
5779
5780
5781
5782
5783
5784
5785
5786
5787
5788
5789
5790
5791
5792
5793
5794
        }
    }
    if ((len == 0) || ((len > 7) && (optionName[1] == 'b') &&
            (strncmp(optionName, "-buffersize", len) == 0))) {
        if (len == 0) {
            Tcl_DStringAppendElement(dsPtr, "-buffersize");
        }
        TclFormatInt(optionVal, chanPtr->bufSize);
        Tcl_DStringAppendElement(dsPtr, optionVal);
        if (len > 0) {
            return TCL_OK;
        }
    }
    if ((len == 0) ||
	    ((len > 2) && (optionName[1] == 'e') &&
		    (strncmp(optionName, "-encoding", len) == 0))) {
	if (len == 0) {
	    Tcl_DStringAppendElement(dsPtr, "-encoding");
	}
	if (chanPtr->encoding == NULL) {
	    Tcl_DStringAppendElement(dsPtr, "binary");
	} else {
	    Tcl_DStringAppendElement(dsPtr,
		    Tcl_GetEncodingName(chanPtr->encoding));
	}
	if (len > 0) {
	    return TCL_OK;
	}
    }
    if ((len == 0) ||
            ((len > 2) && (optionName[1] == 'e') &&
                    (strncmp(optionName, "-eofchar", len) == 0))) {
        if (len == 0) {
            Tcl_DStringAppendElement(dsPtr, "-eofchar");
        }
        if (((flags & (TCL_READABLE|TCL_WRITABLE)) ==
                (TCL_READABLE|TCL_WRITABLE)) && (len == 0)) {
            Tcl_DStringStartSublist(dsPtr);
        }
        if (flags & TCL_READABLE) {
            if (chanPtr->inEofChar == 0) {
                Tcl_DStringAppendElement(dsPtr, "");
            } else {
                char buf[4];

                sprintf(buf, "%c", chanPtr->inEofChar);
                Tcl_DStringAppendElement(dsPtr, buf);
            }
        }
        if (flags & TCL_WRITABLE) {
            if (chanPtr->outEofChar == 0) {
                Tcl_DStringAppendElement(dsPtr, "");
            } else {
                char buf[4];

                sprintf(buf, "%c", chanPtr->outEofChar);
                Tcl_DStringAppendElement(dsPtr, buf);
            }
        }
        if (((flags & (TCL_READABLE|TCL_WRITABLE)) ==
                (TCL_READABLE|TCL_WRITABLE)) && (len == 0)) {
            Tcl_DStringEndSublist(dsPtr);
        }







|











|



|
















|




|




|




|







5561
5562
5563
5564
5565
5566
5567
5568
5569
5570
5571
5572
5573
5574
5575
5576
5577
5578
5579
5580
5581
5582
5583
5584
5585
5586
5587
5588
5589
5590
5591
5592
5593
5594
5595
5596
5597
5598
5599
5600
5601
5602
5603
5604
5605
5606
5607
5608
5609
5610
5611
5612
5613
5614
5615
5616
5617
5618
5619
5620
5621
5622
5623
        }
    }
    if ((len == 0) || ((len > 7) && (optionName[1] == 'b') &&
            (strncmp(optionName, "-buffersize", len) == 0))) {
        if (len == 0) {
            Tcl_DStringAppendElement(dsPtr, "-buffersize");
        }
        TclFormatInt(optionVal, statePtr->bufSize);
        Tcl_DStringAppendElement(dsPtr, optionVal);
        if (len > 0) {
            return TCL_OK;
        }
    }
    if ((len == 0) ||
	    ((len > 2) && (optionName[1] == 'e') &&
		    (strncmp(optionName, "-encoding", len) == 0))) {
	if (len == 0) {
	    Tcl_DStringAppendElement(dsPtr, "-encoding");
	}
	if (statePtr->encoding == NULL) {
	    Tcl_DStringAppendElement(dsPtr, "binary");
	} else {
	    Tcl_DStringAppendElement(dsPtr,
		    Tcl_GetEncodingName(statePtr->encoding));
	}
	if (len > 0) {
	    return TCL_OK;
	}
    }
    if ((len == 0) ||
            ((len > 2) && (optionName[1] == 'e') &&
                    (strncmp(optionName, "-eofchar", len) == 0))) {
        if (len == 0) {
            Tcl_DStringAppendElement(dsPtr, "-eofchar");
        }
        if (((flags & (TCL_READABLE|TCL_WRITABLE)) ==
                (TCL_READABLE|TCL_WRITABLE)) && (len == 0)) {
            Tcl_DStringStartSublist(dsPtr);
        }
        if (flags & TCL_READABLE) {
            if (statePtr->inEofChar == 0) {
                Tcl_DStringAppendElement(dsPtr, "");
            } else {
                char buf[4];

                sprintf(buf, "%c", statePtr->inEofChar);
                Tcl_DStringAppendElement(dsPtr, buf);
            }
        }
        if (flags & TCL_WRITABLE) {
            if (statePtr->outEofChar == 0) {
                Tcl_DStringAppendElement(dsPtr, "");
            } else {
                char buf[4];

                sprintf(buf, "%c", statePtr->outEofChar);
                Tcl_DStringAppendElement(dsPtr, buf);
            }
        }
        if (((flags & (TCL_READABLE|TCL_WRITABLE)) ==
                (TCL_READABLE|TCL_WRITABLE)) && (len == 0)) {
            Tcl_DStringEndSublist(dsPtr);
        }
5803
5804
5805
5806
5807
5808
5809
5810
5811
5812
5813
5814
5815
5816
5817
5818
5819
5820
5821
5822
5823
5824
5825
5826
5827
5828
5829
5830
5831
5832
            Tcl_DStringAppendElement(dsPtr, "-translation");
        }
        if (((flags & (TCL_READABLE|TCL_WRITABLE)) ==
                (TCL_READABLE|TCL_WRITABLE)) && (len == 0)) {
            Tcl_DStringStartSublist(dsPtr);
        }
        if (flags & TCL_READABLE) {
            if (chanPtr->inputTranslation == TCL_TRANSLATE_AUTO) {
                Tcl_DStringAppendElement(dsPtr, "auto");
            } else if (chanPtr->inputTranslation == TCL_TRANSLATE_CR) {
                Tcl_DStringAppendElement(dsPtr, "cr");
            } else if (chanPtr->inputTranslation == TCL_TRANSLATE_CRLF) {
                Tcl_DStringAppendElement(dsPtr, "crlf");
            } else {
                Tcl_DStringAppendElement(dsPtr, "lf");
            }
        }
        if (flags & TCL_WRITABLE) {
            if (chanPtr->outputTranslation == TCL_TRANSLATE_AUTO) {
                Tcl_DStringAppendElement(dsPtr, "auto");
            } else if (chanPtr->outputTranslation == TCL_TRANSLATE_CR) {
                Tcl_DStringAppendElement(dsPtr, "cr");
            } else if (chanPtr->outputTranslation == TCL_TRANSLATE_CRLF) {
                Tcl_DStringAppendElement(dsPtr, "crlf");
            } else {
                Tcl_DStringAppendElement(dsPtr, "lf");
            }
        }
        if (((flags & (TCL_READABLE|TCL_WRITABLE)) ==
                (TCL_READABLE|TCL_WRITABLE)) && (len == 0)) {







|

|

|






|

|

|







5632
5633
5634
5635
5636
5637
5638
5639
5640
5641
5642
5643
5644
5645
5646
5647
5648
5649
5650
5651
5652
5653
5654
5655
5656
5657
5658
5659
5660
5661
            Tcl_DStringAppendElement(dsPtr, "-translation");
        }
        if (((flags & (TCL_READABLE|TCL_WRITABLE)) ==
                (TCL_READABLE|TCL_WRITABLE)) && (len == 0)) {
            Tcl_DStringStartSublist(dsPtr);
        }
        if (flags & TCL_READABLE) {
            if (statePtr->inputTranslation == TCL_TRANSLATE_AUTO) {
                Tcl_DStringAppendElement(dsPtr, "auto");
            } else if (statePtr->inputTranslation == TCL_TRANSLATE_CR) {
                Tcl_DStringAppendElement(dsPtr, "cr");
            } else if (statePtr->inputTranslation == TCL_TRANSLATE_CRLF) {
                Tcl_DStringAppendElement(dsPtr, "crlf");
            } else {
                Tcl_DStringAppendElement(dsPtr, "lf");
            }
        }
        if (flags & TCL_WRITABLE) {
            if (statePtr->outputTranslation == TCL_TRANSLATE_AUTO) {
                Tcl_DStringAppendElement(dsPtr, "auto");
            } else if (statePtr->outputTranslation == TCL_TRANSLATE_CR) {
                Tcl_DStringAppendElement(dsPtr, "cr");
            } else if (statePtr->outputTranslation == TCL_TRANSLATE_CRLF) {
                Tcl_DStringAppendElement(dsPtr, "crlf");
            } else {
                Tcl_DStringAppendElement(dsPtr, "lf");
            }
        }
        if (((flags & (TCL_READABLE|TCL_WRITABLE)) ==
                (TCL_READABLE|TCL_WRITABLE)) && (len == 0)) {
5877
5878
5879
5880
5881
5882
5883
5884

5885
5886
5887
5888
5889
5890
5891
5892
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5897
5898
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5900
5901
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5903
5904
5905
5906
5907
5908
5909
5910
5911
5912

5913







5914
5915
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5920
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Tcl_SetChannelOption(interp, chan, optionName, newValue)
    Tcl_Interp *interp;		/* For error reporting - can be NULL. */
    Tcl_Channel chan;		/* Channel on which to set mode. */
    char *optionName;		/* Which option to set? */
    char *newValue;		/* New value for option. */
{
    int newMode;		/* New (numeric) mode to sert. */
    Channel *chanPtr;		/* The real IO channel. */

    size_t len;			/* Length of optionName string. */
    int argc;
    char **argv;
    
    chanPtr = (Channel *) chan;

    /*
     * If the channel is in the middle of a background copy, fail.
     */

    if (chanPtr->csPtr) {
	if (interp) {
	    Tcl_AppendResult(interp,
		    "unable to set channel options: background copy in progress",
		    (char *) NULL);
	}
        return TCL_ERROR;
    }


    /*
     * Disallow options on dead channels -- channels that have been closed but
     * not yet been deallocated. Such channels can be found if the exit
     * handler for channel cleanup has run but the channel is still
     * registered in an interpreter.
     */

    if (CheckForDeadChannel(NULL,chanPtr)) return TCL_ERROR;

    







    len = strlen(optionName);

    if ((len > 2) && (optionName[1] == 'b') &&
            (strncmp(optionName, "-blocking", len) == 0)) {
        if (Tcl_GetBoolean(interp, newValue, &newMode) == TCL_ERROR) {
            return TCL_ERROR;
        }
        if (newMode) {
            newMode = TCL_MODE_BLOCKING;
        } else {
            newMode = TCL_MODE_NONBLOCKING;
        }
	return SetBlockMode(interp, chanPtr, newMode);
    } else if ((len > 7) && (optionName[1] == 'b') &&
            (strncmp(optionName, "-buffering", len) == 0)) {
        len = strlen(newValue);
        if ((newValue[0] == 'f') && (strncmp(newValue, "full", len) == 0)) {
            chanPtr->flags &=
                (~(CHANNEL_UNBUFFERED|CHANNEL_LINEBUFFERED));
        } else if ((newValue[0] == 'l') &&
                (strncmp(newValue, "line", len) == 0)) {
            chanPtr->flags &= (~(CHANNEL_UNBUFFERED));
            chanPtr->flags |= CHANNEL_LINEBUFFERED;
        } else if ((newValue[0] == 'n') &&
                (strncmp(newValue, "none", len) == 0)) {
            chanPtr->flags &= (~(CHANNEL_LINEBUFFERED));
            chanPtr->flags |= CHANNEL_UNBUFFERED;
        } else {
            if (interp) {
                Tcl_AppendResult(interp, "bad value for -buffering: ",
                        "must be one of full, line, or none",
                        (char *) NULL);
                return TCL_ERROR;
            }
        }
	return TCL_OK;
    } else if ((len > 7) && (optionName[1] == 'b') &&
            (strncmp(optionName, "-buffersize", len) == 0)) {
        chanPtr->bufSize = atoi(newValue);	/* INTL: "C", UTF safe. */
        if ((chanPtr->bufSize < 10) || (chanPtr->bufSize > (1024 * 1024))) {
            chanPtr->bufSize = CHANNELBUFFER_DEFAULT_SIZE;
        }
    } else if ((len > 2) && (optionName[1] == 'e') &&
	    (strncmp(optionName, "-encoding", len) == 0)) {
	Tcl_Encoding encoding;

	if ((newValue[0] == '\0') || (strcmp(newValue, "binary") == 0)) {
	    encoding = NULL;
	} else {
	    encoding = Tcl_GetEncoding(interp, newValue);
	    if (encoding == NULL) {
		return TCL_ERROR;
	    }
	}
	Tcl_FreeEncoding(chanPtr->encoding);
	chanPtr->encoding = encoding;
	chanPtr->inputEncodingState = NULL;
	chanPtr->inputEncodingFlags = TCL_ENCODING_START;
	chanPtr->outputEncodingState = NULL;
	chanPtr->outputEncodingFlags = TCL_ENCODING_START;
	chanPtr->flags &= ~CHANNEL_NEED_MORE_DATA;
	UpdateInterest(chanPtr);
    } else if ((len > 2) && (optionName[1] == 'e') &&
            (strncmp(optionName, "-eofchar", len) == 0)) {
        if (Tcl_SplitList(interp, newValue, &argc, &argv) == TCL_ERROR) {
            return TCL_ERROR;
        }
        if (argc == 0) {
            chanPtr->inEofChar = 0;
            chanPtr->outEofChar = 0;
        } else if (argc == 1) {
            if (chanPtr->flags & TCL_WRITABLE) {
                chanPtr->outEofChar = (int) argv[0][0];
            }
            if (chanPtr->flags & TCL_READABLE) {
                chanPtr->inEofChar = (int) argv[0][0];
            }
        } else if (argc != 2) {
            if (interp) {
                Tcl_AppendResult(interp,
                        "bad value for -eofchar: should be a list of one or",
                        " two elements", (char *) NULL);
            }
            ckfree((char *) argv);
            return TCL_ERROR;
        } else {
            if (chanPtr->flags & TCL_READABLE) {
                chanPtr->inEofChar = (int) argv[0][0];
            }
            if (chanPtr->flags & TCL_WRITABLE) {
                chanPtr->outEofChar = (int) argv[1][0];
            }
        }
        if (argv != (char **) NULL) {
            ckfree((char *) argv);
        }
	return TCL_OK;
    } else if ((len > 1) && (optionName[1] == 't') &&
            (strncmp(optionName, "-translation", len) == 0)) {
	char *readMode, *writeMode;

        if (Tcl_SplitList(interp, newValue, &argc, &argv) == TCL_ERROR) {
            return TCL_ERROR;
        }

        if (argc == 1) {
	    readMode = (chanPtr->flags & TCL_READABLE) ? argv[0] : NULL;
	    writeMode = (chanPtr->flags & TCL_WRITABLE) ? argv[0] : NULL;
	} else if (argc == 2) {
	    readMode = (chanPtr->flags & TCL_READABLE) ? argv[0] : NULL;
	    writeMode = (chanPtr->flags & TCL_WRITABLE) ? argv[1] : NULL;
	} else {
            if (interp) {
                Tcl_AppendResult(interp,
                        "bad value for -translation: must be a one or two",
                        " element list", (char *) NULL);
            }
            ckfree((char *) argv);
            return TCL_ERROR;
	}

	if (readMode) {
	    if (*readMode == '\0') {
		newMode = chanPtr->inputTranslation;
	    } else if (strcmp(readMode, "auto") == 0) {
		newMode = TCL_TRANSLATE_AUTO;
	    } else if (strcmp(readMode, "binary") == 0) {
		newMode = TCL_TRANSLATE_LF;
		chanPtr->inEofChar = 0;
		Tcl_FreeEncoding(chanPtr->encoding);		    
		chanPtr->encoding = NULL;
	    } else if (strcmp(readMode, "lf") == 0) {
		newMode = TCL_TRANSLATE_LF;
	    } else if (strcmp(readMode, "cr") == 0) {
		newMode = TCL_TRANSLATE_CR;
	    } else if (strcmp(readMode, "crlf") == 0) {
		newMode = TCL_TRANSLATE_CRLF;
	    } else if (strcmp(readMode, "platform") == 0) {







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5718
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5886
Tcl_SetChannelOption(interp, chan, optionName, newValue)
    Tcl_Interp *interp;		/* For error reporting - can be NULL. */
    Tcl_Channel chan;		/* Channel on which to set mode. */
    char *optionName;		/* Which option to set? */
    char *newValue;		/* New value for option. */
{
    int newMode;		/* New (numeric) mode to sert. */
    Channel *chanPtr = (Channel *) chan;	/* The real IO channel. */
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    size_t len;			/* Length of optionName string. */
    int argc;
    char **argv;



    /*
     * If the channel is in the middle of a background copy, fail.
     */

    if (statePtr->csPtr) {
	if (interp) {
	    Tcl_AppendResult(interp,
		    "unable to set channel options: background copy in progress",
		    (char *) NULL);
	}
        return TCL_ERROR;
    }


    /*
     * Disallow options on dead channels -- channels that have been closed but
     * not yet been deallocated. Such channels can be found if the exit
     * handler for channel cleanup has run but the channel is still
     * registered in an interpreter.
     */

    if (CheckForDeadChannel(NULL, statePtr)) {
	return TCL_ERROR;
    }

    /*
     * This operation should occur at the top of a channel stack.
     */

    chanPtr = statePtr->topChanPtr;

    len = strlen(optionName);

    if ((len > 2) && (optionName[1] == 'b') &&
            (strncmp(optionName, "-blocking", len) == 0)) {
        if (Tcl_GetBoolean(interp, newValue, &newMode) == TCL_ERROR) {
            return TCL_ERROR;
        }
        if (newMode) {
            newMode = TCL_MODE_BLOCKING;
        } else {
            newMode = TCL_MODE_NONBLOCKING;
        }
	return SetBlockMode(interp, chanPtr, newMode);
    } else if ((len > 7) && (optionName[1] == 'b') &&
            (strncmp(optionName, "-buffering", len) == 0)) {
        len = strlen(newValue);
        if ((newValue[0] == 'f') && (strncmp(newValue, "full", len) == 0)) {
            statePtr->flags &=
                (~(CHANNEL_UNBUFFERED|CHANNEL_LINEBUFFERED));
        } else if ((newValue[0] == 'l') &&
                (strncmp(newValue, "line", len) == 0)) {
            statePtr->flags &= (~(CHANNEL_UNBUFFERED));
            statePtr->flags |= CHANNEL_LINEBUFFERED;
        } else if ((newValue[0] == 'n') &&
                (strncmp(newValue, "none", len) == 0)) {
            statePtr->flags &= (~(CHANNEL_LINEBUFFERED));
            statePtr->flags |= CHANNEL_UNBUFFERED;
        } else {
            if (interp) {
                Tcl_AppendResult(interp, "bad value for -buffering: ",
                        "must be one of full, line, or none",
                        (char *) NULL);
                return TCL_ERROR;
            }
        }
	return TCL_OK;
    } else if ((len > 7) && (optionName[1] == 'b') &&
            (strncmp(optionName, "-buffersize", len) == 0)) {
        statePtr->bufSize = atoi(newValue);	/* INTL: "C", UTF safe. */
        if ((statePtr->bufSize < 10) || (statePtr->bufSize > (1024 * 1024))) {
            statePtr->bufSize = CHANNELBUFFER_DEFAULT_SIZE;
        }
    } else if ((len > 2) && (optionName[1] == 'e') &&
	    (strncmp(optionName, "-encoding", len) == 0)) {
	Tcl_Encoding encoding;

	if ((newValue[0] == '\0') || (strcmp(newValue, "binary") == 0)) {
	    encoding = NULL;
	} else {
	    encoding = Tcl_GetEncoding(interp, newValue);
	    if (encoding == NULL) {
		return TCL_ERROR;
	    }
	}
	Tcl_FreeEncoding(statePtr->encoding);
	statePtr->encoding = encoding;
	statePtr->inputEncodingState = NULL;
	statePtr->inputEncodingFlags = TCL_ENCODING_START;
	statePtr->outputEncodingState = NULL;
	statePtr->outputEncodingFlags = TCL_ENCODING_START;
	statePtr->flags &= ~CHANNEL_NEED_MORE_DATA;
	UpdateInterest(chanPtr);
    } else if ((len > 2) && (optionName[1] == 'e') &&
            (strncmp(optionName, "-eofchar", len) == 0)) {
        if (Tcl_SplitList(interp, newValue, &argc, &argv) == TCL_ERROR) {
            return TCL_ERROR;
        }
        if (argc == 0) {
            statePtr->inEofChar = 0;
            statePtr->outEofChar = 0;
        } else if (argc == 1) {
            if (statePtr->flags & TCL_WRITABLE) {
                statePtr->outEofChar = (int) argv[0][0];
            }
            if (statePtr->flags & TCL_READABLE) {
                statePtr->inEofChar = (int) argv[0][0];
            }
        } else if (argc != 2) {
            if (interp) {
                Tcl_AppendResult(interp,
                        "bad value for -eofchar: should be a list of one or",
                        " two elements", (char *) NULL);
            }
            ckfree((char *) argv);
            return TCL_ERROR;
        } else {
            if (statePtr->flags & TCL_READABLE) {
                statePtr->inEofChar = (int) argv[0][0];
            }
            if (statePtr->flags & TCL_WRITABLE) {
                statePtr->outEofChar = (int) argv[1][0];
            }
        }
        if (argv != (char **) NULL) {
            ckfree((char *) argv);
        }
	return TCL_OK;
    } else if ((len > 1) && (optionName[1] == 't') &&
            (strncmp(optionName, "-translation", len) == 0)) {
	char *readMode, *writeMode;

        if (Tcl_SplitList(interp, newValue, &argc, &argv) == TCL_ERROR) {
            return TCL_ERROR;
        }

        if (argc == 1) {
	    readMode = (statePtr->flags & TCL_READABLE) ? argv[0] : NULL;
	    writeMode = (statePtr->flags & TCL_WRITABLE) ? argv[0] : NULL;
	} else if (argc == 2) {
	    readMode = (statePtr->flags & TCL_READABLE) ? argv[0] : NULL;
	    writeMode = (statePtr->flags & TCL_WRITABLE) ? argv[1] : NULL;
	} else {
            if (interp) {
                Tcl_AppendResult(interp,
                        "bad value for -translation: must be a one or two",
                        " element list", (char *) NULL);
            }
            ckfree((char *) argv);
            return TCL_ERROR;
	}

	if (readMode) {
	    if (*readMode == '\0') {
		newMode = statePtr->inputTranslation;
	    } else if (strcmp(readMode, "auto") == 0) {
		newMode = TCL_TRANSLATE_AUTO;
	    } else if (strcmp(readMode, "binary") == 0) {
		newMode = TCL_TRANSLATE_LF;
		statePtr->inEofChar = 0;
		Tcl_FreeEncoding(statePtr->encoding);		    
		statePtr->encoding = NULL;
	    } else if (strcmp(readMode, "lf") == 0) {
		newMode = TCL_TRANSLATE_LF;
	    } else if (strcmp(readMode, "cr") == 0) {
		newMode = TCL_TRANSLATE_CR;
	    } else if (strcmp(readMode, "crlf") == 0) {
		newMode = TCL_TRANSLATE_CRLF;
	    } else if (strcmp(readMode, "platform") == 0) {
6063
6064
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6066
6067
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6069
6070
6071
6072
6073
6074
6075
6076
6077
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6112

	    /*
	     * Reset the EOL flags since we need to look at any buffered
	     * data to see if the new translation mode allows us to
	     * complete the line.
	     */

	    if (newMode != chanPtr->inputTranslation) {
		chanPtr->inputTranslation = (Tcl_EolTranslation) newMode;
		chanPtr->flags &= ~(INPUT_SAW_CR);
		chanPtr->flags &= ~(CHANNEL_NEED_MORE_DATA);
		UpdateInterest(chanPtr);
	    }
	}
	if (writeMode) {
	    if (*writeMode == '\0') {
		/* Do nothing. */
	    } else if (strcmp(writeMode, "auto") == 0) {
		/*
		 * This is a hack to get TCP sockets to produce output
		 * in CRLF mode if they are being set into AUTO mode.
		 * A better solution for achieving this effect will be
		 * coded later.
		 */

		if (strcmp(chanPtr->typePtr->typeName, "tcp") == 0) {
		    chanPtr->outputTranslation = TCL_TRANSLATE_CRLF;
		} else {
		    chanPtr->outputTranslation = TCL_PLATFORM_TRANSLATION;
		}
	    } else if (strcmp(writeMode, "binary") == 0) {
		chanPtr->outEofChar = 0;
		chanPtr->outputTranslation = TCL_TRANSLATE_LF;
		Tcl_FreeEncoding(chanPtr->encoding);		    
		chanPtr->encoding = NULL;
	    } else if (strcmp(writeMode, "lf") == 0) {
		chanPtr->outputTranslation = TCL_TRANSLATE_LF;
	    } else if (strcmp(writeMode, "cr") == 0) {
		chanPtr->outputTranslation = TCL_TRANSLATE_CR;
	    } else if (strcmp(writeMode, "crlf") == 0) {
		chanPtr->outputTranslation = TCL_TRANSLATE_CRLF;
	    } else if (strcmp(writeMode, "platform") == 0) {
		chanPtr->outputTranslation = TCL_PLATFORM_TRANSLATION;
	    } else {
		if (interp) {
		    Tcl_AppendResult(interp,
			    "bad value for -translation: ",
			    "must be one of auto, binary, cr, lf, crlf,",
			    " or platform", (char *) NULL);
		}







|
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|

|


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|

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|







5898
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5947

	    /*
	     * Reset the EOL flags since we need to look at any buffered
	     * data to see if the new translation mode allows us to
	     * complete the line.
	     */

	    if (newMode != statePtr->inputTranslation) {
		statePtr->inputTranslation = (Tcl_EolTranslation) newMode;
		statePtr->flags &= ~(INPUT_SAW_CR);
		statePtr->flags &= ~(CHANNEL_NEED_MORE_DATA);
		UpdateInterest(chanPtr);
	    }
	}
	if (writeMode) {
	    if (*writeMode == '\0') {
		/* Do nothing. */
	    } else if (strcmp(writeMode, "auto") == 0) {
		/*
		 * This is a hack to get TCP sockets to produce output
		 * in CRLF mode if they are being set into AUTO mode.
		 * A better solution for achieving this effect will be
		 * coded later.
		 */

		if (strcmp(chanPtr->typePtr->typeName, "tcp") == 0) {
		    statePtr->outputTranslation = TCL_TRANSLATE_CRLF;
		} else {
		    statePtr->outputTranslation = TCL_PLATFORM_TRANSLATION;
		}
	    } else if (strcmp(writeMode, "binary") == 0) {
		statePtr->outEofChar = 0;
		statePtr->outputTranslation = TCL_TRANSLATE_LF;
		Tcl_FreeEncoding(statePtr->encoding);		    
		statePtr->encoding = NULL;
	    } else if (strcmp(writeMode, "lf") == 0) {
		statePtr->outputTranslation = TCL_TRANSLATE_LF;
	    } else if (strcmp(writeMode, "cr") == 0) {
		statePtr->outputTranslation = TCL_TRANSLATE_CR;
	    } else if (strcmp(writeMode, "crlf") == 0) {
		statePtr->outputTranslation = TCL_TRANSLATE_CRLF;
	    } else if (strcmp(writeMode, "platform") == 0) {
		statePtr->outputTranslation = TCL_PLATFORM_TRANSLATION;
	    } else {
		if (interp) {
		    Tcl_AppendResult(interp,
			    "bad value for -translation: ",
			    "must be one of auto, binary, cr, lf, crlf,",
			    " or platform", (char *) NULL);
		}
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	return Tcl_BadChannelOption(interp, optionName, (char *) NULL);
    }

    /*
     * If bufsize changes, need to get rid of old utility buffer.
     */

    if (chanPtr->saveInBufPtr != NULL) {
	RecycleBuffer(chanPtr, chanPtr->saveInBufPtr, 1);
	chanPtr->saveInBufPtr = NULL;
    }
    if (chanPtr->inQueueHead != NULL) {
	if ((chanPtr->inQueueHead->nextPtr == NULL)
		&& (chanPtr->inQueueHead->nextAdded ==
			chanPtr->inQueueHead->nextRemoved)) {
	    RecycleBuffer(chanPtr, chanPtr->inQueueHead, 1);
	    chanPtr->inQueueHead = NULL;
	    chanPtr->inQueueTail = NULL;
	}
    }

    /*
     * If encoding or bufsize changes, need to update output staging buffer.
     */

    if (chanPtr->outputStage != NULL) {
	ckfree((char *) chanPtr->outputStage);
	chanPtr->outputStage = NULL;
    }
    if ((chanPtr->encoding != NULL) && (chanPtr->flags & TCL_WRITABLE)) {
	chanPtr->outputStage = (char *) 
	    ckalloc((unsigned) (chanPtr->bufSize + 2));
    }
    return TCL_OK;
}

/*
 *----------------------------------------------------------------------
 *







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5982
5983
5984
5985
5986
5987
5988
5989
5990
5991
5992
5993
5994
5995
5996
	return Tcl_BadChannelOption(interp, optionName, (char *) NULL);
    }

    /*
     * If bufsize changes, need to get rid of old utility buffer.
     */

    if (statePtr->saveInBufPtr != NULL) {
	RecycleBuffer(statePtr, statePtr->saveInBufPtr, 1);
	statePtr->saveInBufPtr = NULL;
    }
    if (statePtr->inQueueHead != NULL) {
	if ((statePtr->inQueueHead->nextPtr == NULL)
		&& (statePtr->inQueueHead->nextAdded ==
			statePtr->inQueueHead->nextRemoved)) {
	    RecycleBuffer(statePtr, statePtr->inQueueHead, 1);
	    statePtr->inQueueHead = NULL;
	    statePtr->inQueueTail = NULL;
	}
    }

    /*
     * If encoding or bufsize changes, need to update output staging buffer.
     */

    if (statePtr->outputStage != NULL) {
	ckfree((char *) statePtr->outputStage);
	statePtr->outputStage = NULL;
    }
    if ((statePtr->encoding != NULL) && (statePtr->flags & TCL_WRITABLE)) {
	statePtr->outputStage = (char *) 
	    ckalloc((unsigned) (statePtr->bufSize + 2));
    }
    return TCL_OK;
}

/*
 *----------------------------------------------------------------------
 *
6177
6178
6179
6180
6181
6182
6183

6184
6185
6186
6187
6188
6189
6190
6191
6192
6193
6194
6195
6196
6197
6198
6199
6200
6201
6202
6203
6204
6205
6206
6207
6208
6209
6210
6211
 */

static void
CleanupChannelHandlers(interp, chanPtr)
    Tcl_Interp *interp;
    Channel *chanPtr;
{

    EventScriptRecord *sPtr, *prevPtr, *nextPtr;

    /*
     * Remove fileevent records on this channel that refer to the
     * given interpreter.
     */
    
    for (sPtr = chanPtr->scriptRecordPtr,
             prevPtr = (EventScriptRecord *) NULL;
	 sPtr != (EventScriptRecord *) NULL;
	 sPtr = nextPtr) {
        nextPtr = sPtr->nextPtr;
        if (sPtr->interp == interp) {
            if (prevPtr == (EventScriptRecord *) NULL) {
                chanPtr->scriptRecordPtr = nextPtr;
            } else {
                prevPtr->nextPtr = nextPtr;
            }

            Tcl_DeleteChannelHandler((Tcl_Channel) chanPtr,
                    ChannelEventScriptInvoker, (ClientData) sPtr);

	    Tcl_DecrRefCount(sPtr->scriptPtr);
            ckfree((char *) sPtr);
        } else {
            prevPtr = sPtr;
        }
    }







>







|






|





|







6012
6013
6014
6015
6016
6017
6018
6019
6020
6021
6022
6023
6024
6025
6026
6027
6028
6029
6030
6031
6032
6033
6034
6035
6036
6037
6038
6039
6040
6041
6042
6043
6044
6045
6046
6047
 */

static void
CleanupChannelHandlers(interp, chanPtr)
    Tcl_Interp *interp;
    Channel *chanPtr;
{
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    EventScriptRecord *sPtr, *prevPtr, *nextPtr;

    /*
     * Remove fileevent records on this channel that refer to the
     * given interpreter.
     */
    
    for (sPtr = statePtr->scriptRecordPtr,
             prevPtr = (EventScriptRecord *) NULL;
	 sPtr != (EventScriptRecord *) NULL;
	 sPtr = nextPtr) {
        nextPtr = sPtr->nextPtr;
        if (sPtr->interp == interp) {
            if (prevPtr == (EventScriptRecord *) NULL) {
                statePtr->scriptRecordPtr = nextPtr;
            } else {
                prevPtr->nextPtr = nextPtr;
            }

            Tcl_DeleteChannelHandler((Tcl_Channel) chanPtr,
                    TclChannelEventScriptInvoker, (ClientData) sPtr);

	    Tcl_DecrRefCount(sPtr->scriptPtr);
            ckfree((char *) sPtr);
        } else {
            prevPtr = sPtr;
        }
    }
6234
6235
6236
6237
6238
6239
6240

6241
6242
6243



6244










































































































6245
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6272
6273
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6275
6276
6277
6278
6279
6280
6281
6282
6283
Tcl_NotifyChannel(channel, mask)
    Tcl_Channel channel;	/* Channel that detected an event. */
    int mask;			/* OR'ed combination of TCL_READABLE,
				 * TCL_WRITABLE, or TCL_EXCEPTION: indicates
				 * which events were detected. */
{
    Channel *chanPtr = (Channel *) channel;

    ChannelHandler *chPtr;
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);
    NextChannelHandler nh;














































































































    /* Walk all channels in a stack ! and notify them in order.
     */

    while (chanPtr !=  (Channel *) NULL) {
        /*
	 * Preserve the channel struct in case the script closes it.
	 */
     
        Tcl_Preserve((ClientData) channel);

	/*
	 * If we are flushing in the background, be sure to call FlushChannel
	 * for writable events.  Note that we have to discard the writable
	 * event so we don't call any write handlers before the flush is
	 * complete.
	 */

	if ((chanPtr->flags & BG_FLUSH_SCHEDULED) && (mask & TCL_WRITABLE)) {
	    FlushChannel(NULL, chanPtr, 1);
	    mask &= ~TCL_WRITABLE;
	}

	/*
	 * Add this invocation to the list of recursive invocations of
	 * ChannelHandlerEventProc.
	 */
    
	nh.nextHandlerPtr = (ChannelHandler *) NULL;
	nh.nestedHandlerPtr = tsdPtr->nestedHandlerPtr;
	tsdPtr->nestedHandlerPtr = &nh;
    
	for (chPtr = chanPtr->chPtr; chPtr != (ChannelHandler *) NULL; ) {

	    /*
	     * If this channel handler is interested in any of the events that
	     * have occurred on the channel, invoke its procedure.
	     */
        
	    if ((chPtr->mask & mask) != 0) {







>



>
>
>

>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
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>
>
>
>
>
>
>
>
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>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
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>
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>
>
>
>
>
>
>
>
>
>
>
>
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>
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>
>
>
>
>
>
>
>
>
>
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>
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>
>
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>
>
>
>
>
>
>
>
>
>
>
>
>



|













|












|
|







6070
6071
6072
6073
6074
6075
6076
6077
6078
6079
6080
6081
6082
6083
6084
6085
6086
6087
6088
6089
6090
6091
6092
6093
6094
6095
6096
6097
6098
6099
6100
6101
6102
6103
6104
6105
6106
6107
6108
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6110
6111
6112
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6119
6120
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6123
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6153
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6162
6163
6164
6165
6166
6167
6168
6169
6170
6171
6172
6173
6174
6175
6176
6177
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6179
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6181
6182
6183
6184
6185
6186
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6193
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6195
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6203
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6205
6206
6207
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6209
6210
6211
6212
6213
6214
6215
6216
6217
6218
6219
6220
6221
6222
6223
6224
6225
6226
6227
6228
6229
Tcl_NotifyChannel(channel, mask)
    Tcl_Channel channel;	/* Channel that detected an event. */
    int mask;			/* OR'ed combination of TCL_READABLE,
				 * TCL_WRITABLE, or TCL_EXCEPTION: indicates
				 * which events were detected. */
{
    Channel *chanPtr = (Channel *) channel;
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    ChannelHandler *chPtr;
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);
    NextChannelHandler nh;
#ifdef TCL_CHANNEL_VERSION_2
    Channel* upChanPtr;
    Tcl_ChannelType* upTypePtr;

    /*
     * In contrast to the other API functions this procedure walks towards
     * the top of a stack and not down from it.
     *
     * The channel calling this procedure is the one who generated the event,
     * and thus does not take part in handling it. IOW, its HandlerProc is
     * not called, instead we begin with the channel above it.
     *
     * This behaviour also allows the transformation channels to
     * generate their own events and pass them upward.
     */

    while (mask && (chanPtr->upChanPtr != ((Channel*) NULL))) {
        upChanPtr = chanPtr->upChanPtr;
	upTypePtr = upChanPtr->typePtr;

	if ((Tcl_ChannelVersion(upTypePtr) == TCL_CHANNEL_VERSION_2) &&
		(Tcl_ChannelHandlerProc(upTypePtr) !=
			((Tcl_DriverHandlerProc *) NULL))) {

	    Tcl_DriverHandlerProc* handlerProc =
		Tcl_ChannelHandlerProc(upTypePtr);

	  mask = (*handlerProc) (upChanPtr->instanceData, mask);
	}

	/* ELSE:
	 * Ignore transformations which are unable to handle the event
	 * coming from below. Assume that they don't change the mask and
	 * pass it on.
	 */

	chanPtr = upChanPtr;
    }

    channel = (Tcl_Channel) chanPtr;

    /*
     * Here we have either reached the top of the stack or the mask is
     * empty.  We break out of the procedure if it is the latter.
     */

    if (!mask) {
        return;
    }

    /*
     * We are now above the topmost channel in a stack and have events
     * left. Now call the channel handlers as usual.
     *
     * Preserve the channel struct in case the script closes it.
     */
     
    Tcl_Preserve((ClientData) channel);

    /*
     * If we are flushing in the background, be sure to call FlushChannel
     * for writable events.  Note that we have to discard the writable
     * event so we don't call any write handlers before the flush is
     * complete.
     */

    if ((statePtr->flags & BG_FLUSH_SCHEDULED) && (mask & TCL_WRITABLE)) {
      FlushChannel(NULL, chanPtr, 1);
      mask &= ~TCL_WRITABLE;
    }

    /*
     * Add this invocation to the list of recursive invocations of
     * ChannelHandlerEventProc.
     */
    
    nh.nextHandlerPtr = (ChannelHandler *) NULL;
    nh.nestedHandlerPtr = tsdPtr->nestedHandlerPtr;
    tsdPtr->nestedHandlerPtr = &nh;

    for (chPtr = statePtr->chPtr; chPtr != (ChannelHandler *) NULL; ) {

      /*
       * If this channel handler is interested in any of the events that
       * have occurred on the channel, invoke its procedure.
       */
        
      if ((chPtr->mask & mask) != 0) {
	nh.nextHandlerPtr = chPtr->nextPtr;
	(*(chPtr->proc))(chPtr->clientData, mask);
	chPtr = nh.nextHandlerPtr;
      } else {
	chPtr = chPtr->nextPtr;
      }
    }

    /*
     * Update the notifier interest, since it may have changed after
     * invoking event handlers. Skip that if the channel was deleted
     * in the call to the channel handler.
     */

    if (chanPtr->typePtr != NULL) {
        UpdateInterest(chanPtr);
    }

    Tcl_Release((ClientData) channel);

    tsdPtr->nestedHandlerPtr = nh.nestedHandlerPtr;
#else
    /* Walk all channels in a stack ! and notify them in order.
     */

    while (chanPtr != (Channel *) NULL) {
        /*
	 * Preserve the channel struct in case the script closes it.
	 */
     
        Tcl_Preserve((ClientData) channel);

	/*
	 * If we are flushing in the background, be sure to call FlushChannel
	 * for writable events.  Note that we have to discard the writable
	 * event so we don't call any write handlers before the flush is
	 * complete.
	 */

	if ((statePtr->flags & BG_FLUSH_SCHEDULED) && (mask & TCL_WRITABLE)) {
	    FlushChannel(NULL, chanPtr, 1);
	    mask &= ~TCL_WRITABLE;
	}

	/*
	 * Add this invocation to the list of recursive invocations of
	 * ChannelHandlerEventProc.
	 */
    
	nh.nextHandlerPtr = (ChannelHandler *) NULL;
	nh.nestedHandlerPtr = tsdPtr->nestedHandlerPtr;
	tsdPtr->nestedHandlerPtr = &nh;

	for (chPtr = statePtr->chPtr; chPtr != (ChannelHandler *) NULL; ) {

	    /*
	     * If this channel handler is interested in any of the events that
	     * have occurred on the channel, invoke its procedure.
	     */
        
	    if ((chPtr->mask & mask) != 0) {
6296
6297
6298
6299
6300
6301
6302
6303
6304
6305
6306
6307
6308
6309
6310
6311
6312
6313
6314
6315

6316
6317
6318
6319
6320
6321
6322
	 */

	if (chanPtr->typePtr != NULL) {
	    UpdateInterest(chanPtr);

	    /* Walk down the stack.
	     */
	    chanPtr = chanPtr->supercedes;
	} else {
	    /* Stop walking the chain, the whole stack was destroyed!
	     */
	    chanPtr = (Channel*) NULL;
	}

	Tcl_Release((ClientData) channel);

	tsdPtr->nestedHandlerPtr = nh.nestedHandlerPtr;

	channel = (Tcl_Channel) chanPtr;
    }

}

/*
 *----------------------------------------------------------------------
 *
 * UpdateInterest --
 *







|



|








>







6242
6243
6244
6245
6246
6247
6248
6249
6250
6251
6252
6253
6254
6255
6256
6257
6258
6259
6260
6261
6262
6263
6264
6265
6266
6267
6268
6269
	 */

	if (chanPtr->typePtr != NULL) {
	    UpdateInterest(chanPtr);

	    /* Walk down the stack.
	     */
	    chanPtr = chanPtr->downChanPtr;
	} else {
	    /* Stop walking the chain, the whole stack was destroyed!
	     */
	    chanPtr = (Channel *) NULL;
	}

	Tcl_Release((ClientData) channel);

	tsdPtr->nestedHandlerPtr = nh.nestedHandlerPtr;

	channel = (Tcl_Channel) chanPtr;
    }
#endif
}

/*
 *----------------------------------------------------------------------
 *
 * UpdateInterest --
 *
6332
6333
6334
6335
6336
6337
6338

6339
6340
6341
6342
6343
6344
6345
6346
6347
6348
6349
6350
6351
6352
6353
6354
6355
6356
6357
6358
6359
6360
6361
6362
6363
6364
6365
6366
6367
6368
6369
6370
6371
 *----------------------------------------------------------------------
 */

static void
UpdateInterest(chanPtr)
    Channel *chanPtr;		/* Channel to update. */
{

    int mask = chanPtr->interestMask;

    /*
     * If there are flushed buffers waiting to be written, then
     * we need to watch for the channel to become writable.
     */

    if (chanPtr->flags & BG_FLUSH_SCHEDULED) {
	mask |= TCL_WRITABLE;
    }

    /*
     * If there is data in the input queue, and we aren't waiting for more
     * data, then we need to schedule a timer so we don't block in the
     * notifier.  Also, cancel the read interest so we don't get duplicate
     * events.
     */

    if (mask & TCL_READABLE) {
	if (!(chanPtr->flags & CHANNEL_NEED_MORE_DATA)
		&& (chanPtr->inQueueHead != (ChannelBuffer *) NULL)
		&& (chanPtr->inQueueHead->nextRemoved <
			chanPtr->inQueueHead->nextAdded)) {
	    mask &= ~TCL_READABLE;
	    if (!chanPtr->timer) {
		chanPtr->timer = Tcl_CreateTimerHandler(0, ChannelTimerProc,
			(ClientData) chanPtr);
	    }
	}
    }
    (chanPtr->typePtr->watchProc)(chanPtr->instanceData, mask);
}








>
|






|











|
|
|
|

|
|







6279
6280
6281
6282
6283
6284
6285
6286
6287
6288
6289
6290
6291
6292
6293
6294
6295
6296
6297
6298
6299
6300
6301
6302
6303
6304
6305
6306
6307
6308
6309
6310
6311
6312
6313
6314
6315
6316
6317
6318
6319
 *----------------------------------------------------------------------
 */

static void
UpdateInterest(chanPtr)
    Channel *chanPtr;		/* Channel to update. */
{
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    int mask = statePtr->interestMask;

    /*
     * If there are flushed buffers waiting to be written, then
     * we need to watch for the channel to become writable.
     */

    if (statePtr->flags & BG_FLUSH_SCHEDULED) {
	mask |= TCL_WRITABLE;
    }

    /*
     * If there is data in the input queue, and we aren't waiting for more
     * data, then we need to schedule a timer so we don't block in the
     * notifier.  Also, cancel the read interest so we don't get duplicate
     * events.
     */

    if (mask & TCL_READABLE) {
	if (!(statePtr->flags & CHANNEL_NEED_MORE_DATA)
		&& (statePtr->inQueueHead != (ChannelBuffer *) NULL)
		&& (statePtr->inQueueHead->nextRemoved <
			statePtr->inQueueHead->nextAdded)) {
	    mask &= ~TCL_READABLE;
	    if (!statePtr->timer) {
		statePtr->timer = Tcl_CreateTimerHandler(0, ChannelTimerProc,
			(ClientData) chanPtr);
	    }
	}
    }
    (chanPtr->typePtr->watchProc)(chanPtr->instanceData, mask);
}

6387
6388
6389
6390
6391
6392
6393

6394
6395
6396
6397
6398
6399
6400
6401
6402
6403
6404
6405
6406
6407
6408
6409
6410
6411
6412
6413
6414
6415
6416
6417
 */

static void
ChannelTimerProc(clientData)
    ClientData clientData;
{
    Channel *chanPtr = (Channel *) clientData;


    if (!(chanPtr->flags & CHANNEL_NEED_MORE_DATA)
	    && (chanPtr->interestMask & TCL_READABLE)
	    && (chanPtr->inQueueHead != (ChannelBuffer *) NULL)
	    && (chanPtr->inQueueHead->nextRemoved <
		    chanPtr->inQueueHead->nextAdded)) {
	/*
	 * Restart the timer in case a channel handler reenters the
	 * event loop before UpdateInterest gets called by Tcl_NotifyChannel.
	 */

	chanPtr->timer = Tcl_CreateTimerHandler(0, ChannelTimerProc,
		(ClientData) chanPtr);
	Tcl_NotifyChannel((Tcl_Channel)chanPtr, TCL_READABLE);
 
    } else {
	chanPtr->timer = NULL;
	UpdateInterest(chanPtr);
    }
}

/*
 *----------------------------------------------------------------------
 *







>

|
|
|
|
|





|




|







6335
6336
6337
6338
6339
6340
6341
6342
6343
6344
6345
6346
6347
6348
6349
6350
6351
6352
6353
6354
6355
6356
6357
6358
6359
6360
6361
6362
6363
6364
6365
6366
 */

static void
ChannelTimerProc(clientData)
    ClientData clientData;
{
    Channel *chanPtr = (Channel *) clientData;
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */

    if (!(statePtr->flags & CHANNEL_NEED_MORE_DATA)
	    && (statePtr->interestMask & TCL_READABLE)
	    && (statePtr->inQueueHead != (ChannelBuffer *) NULL)
	    && (statePtr->inQueueHead->nextRemoved <
		    statePtr->inQueueHead->nextAdded)) {
	/*
	 * Restart the timer in case a channel handler reenters the
	 * event loop before UpdateInterest gets called by Tcl_NotifyChannel.
	 */

	statePtr->timer = Tcl_CreateTimerHandler(0, ChannelTimerProc,
		(ClientData) chanPtr);
	Tcl_NotifyChannel((Tcl_Channel)chanPtr, TCL_READABLE);
 
    } else {
	statePtr->timer = NULL;
	UpdateInterest(chanPtr);
    }
}

/*
 *----------------------------------------------------------------------
 *
6443
6444
6445
6446
6447
6448
6449
6450
6451
6452
6453
6454
6455
6456
6457
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6463
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6465
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6492
6493
6494
6495
6496
6497
6498
6499
6500
6501
6502
6503
6504
6505
				 * proc should be called. Use 0 to
                                 * disable a registered handler. */
    Tcl_ChannelProc *proc;	/* Procedure to call for each
				 * selected event. */
    ClientData clientData;	/* Arbitrary data to pass to proc. */
{
    ChannelHandler *chPtr;
    Channel *chanPtr;

    chanPtr = (Channel *) chan;
    
    /*
     * Check whether this channel handler is not already registered. If
     * it is not, create a new record, else reuse existing record (smash
     * current values).
     */

    for (chPtr = chanPtr->chPtr;
	 chPtr != (ChannelHandler *) NULL;
	 chPtr = chPtr->nextPtr) {
        if ((chPtr->chanPtr == chanPtr) && (chPtr->proc == proc) &&
                (chPtr->clientData == clientData)) {
            break;
        }
    }
    if (chPtr == (ChannelHandler *) NULL) {
        chPtr = (ChannelHandler *) ckalloc((unsigned) sizeof(ChannelHandler));
        chPtr->mask = 0;
        chPtr->proc = proc;
        chPtr->clientData = clientData;
        chPtr->chanPtr = chanPtr;
        chPtr->nextPtr = chanPtr->chPtr;
        chanPtr->chPtr = chPtr;
    }

    /*
     * The remainder of the initialization below is done regardless of
     * whether or not this is a new record or a modification of an old
     * one.
     */

    chPtr->mask = mask;

    /*
     * Recompute the interest mask for the channel - this call may actually
     * be disabling an existing handler.
     */
    
    chanPtr->interestMask = 0;
    for (chPtr = chanPtr->chPtr;
	 chPtr != (ChannelHandler *) NULL;
	 chPtr = chPtr->nextPtr) {
	chanPtr->interestMask |= chPtr->mask;
    }

    UpdateInterest(chanPtr);
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_DeleteChannelHandler --
 *







|
|
<
|






|













|
|















|
|


|


|







6392
6393
6394
6395
6396
6397
6398
6399
6400

6401
6402
6403
6404
6405
6406
6407
6408
6409
6410
6411
6412
6413
6414
6415
6416
6417
6418
6419
6420
6421
6422
6423
6424
6425
6426
6427
6428
6429
6430
6431
6432
6433
6434
6435
6436
6437
6438
6439
6440
6441
6442
6443
6444
6445
6446
6447
6448
6449
6450
6451
6452
6453
				 * proc should be called. Use 0 to
                                 * disable a registered handler. */
    Tcl_ChannelProc *proc;	/* Procedure to call for each
				 * selected event. */
    ClientData clientData;	/* Arbitrary data to pass to proc. */
{
    ChannelHandler *chPtr;
    Channel *chanPtr = (Channel *) chan;
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */


    /*
     * Check whether this channel handler is not already registered. If
     * it is not, create a new record, else reuse existing record (smash
     * current values).
     */

    for (chPtr = statePtr->chPtr;
	 chPtr != (ChannelHandler *) NULL;
	 chPtr = chPtr->nextPtr) {
        if ((chPtr->chanPtr == chanPtr) && (chPtr->proc == proc) &&
                (chPtr->clientData == clientData)) {
            break;
        }
    }
    if (chPtr == (ChannelHandler *) NULL) {
        chPtr = (ChannelHandler *) ckalloc((unsigned) sizeof(ChannelHandler));
        chPtr->mask = 0;
        chPtr->proc = proc;
        chPtr->clientData = clientData;
        chPtr->chanPtr = chanPtr;
        chPtr->nextPtr = statePtr->chPtr;
        statePtr->chPtr = chPtr;
    }

    /*
     * The remainder of the initialization below is done regardless of
     * whether or not this is a new record or a modification of an old
     * one.
     */

    chPtr->mask = mask;

    /*
     * Recompute the interest mask for the channel - this call may actually
     * be disabling an existing handler.
     */
    
    statePtr->interestMask = 0;
    for (chPtr = statePtr->chPtr;
	 chPtr != (ChannelHandler *) NULL;
	 chPtr = chPtr->nextPtr) {
	statePtr->interestMask |= chPtr->mask;
    }

    UpdateInterest(statePtr->topChanPtr);
}

/*
 *----------------------------------------------------------------------
 *
 * Tcl_DeleteChannelHandler --
 *
6522
6523
6524
6525
6526
6527
6528

6529
6530
6531
6532
6533
6534
6535
6536
6537
6538
6539
6540
6541
6542
6543
6544
6545
6546
6547
6548
6549
6550
6551
6552
6553
6554
6555
6556
    Tcl_Channel chan;		/* The channel for which to remove the
                                 * callback. */
    Tcl_ChannelProc *proc;	/* The procedure in the callback to delete. */
    ClientData clientData;	/* The client data in the callback
                                 * to delete. */
    
{

    ChannelHandler *chPtr, *prevChPtr;
    Channel *chanPtr;
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);
    NextChannelHandler *nhPtr;

    chanPtr = (Channel *) chan;

    /*
     * Find the entry and the previous one in the list.
     */

    for (prevChPtr = (ChannelHandler *) NULL, chPtr = chanPtr->chPtr;
	 chPtr != (ChannelHandler *) NULL;
	 chPtr = chPtr->nextPtr) {
        if ((chPtr->chanPtr == chanPtr) && (chPtr->clientData == clientData)
                && (chPtr->proc == proc)) {
            break;
        }
        prevChPtr = chPtr;
    }
    
    /*
     * If not found, return without doing anything.
     */

    if (chPtr == (ChannelHandler *) NULL) {
        return;
    }







>

|
|


<
<




|








|







6470
6471
6472
6473
6474
6475
6476
6477
6478
6479
6480
6481
6482


6483
6484
6485
6486
6487
6488
6489
6490
6491
6492
6493
6494
6495
6496
6497
6498
6499
6500
6501
6502
6503
    Tcl_Channel chan;		/* The channel for which to remove the
                                 * callback. */
    Tcl_ChannelProc *proc;	/* The procedure in the callback to delete. */
    ClientData clientData;	/* The client data in the callback
                                 * to delete. */
    
{
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);
    ChannelHandler *chPtr, *prevChPtr;
    Channel *chanPtr = (Channel *) chan;
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    NextChannelHandler *nhPtr;



    /*
     * Find the entry and the previous one in the list.
     */

    for (prevChPtr = (ChannelHandler *) NULL, chPtr = statePtr->chPtr;
	 chPtr != (ChannelHandler *) NULL;
	 chPtr = chPtr->nextPtr) {
        if ((chPtr->chanPtr == chanPtr) && (chPtr->clientData == clientData)
                && (chPtr->proc == proc)) {
            break;
        }
        prevChPtr = chPtr;
    }

    /*
     * If not found, return without doing anything.
     */

    if (chPtr == (ChannelHandler *) NULL) {
        return;
    }
6569
6570
6571
6572
6573
6574
6575
6576
6577
6578
6579
6580
6581
6582
6583
6584
6585
6586
6587
6588
6589
6590
6591
6592
6593
6594
6595
6596
6597
6598
6599
6600
6601
6602
    }

    /*
     * Splice it out of the list of channel handlers.
     */
    
    if (prevChPtr == (ChannelHandler *) NULL) {
        chanPtr->chPtr = chPtr->nextPtr;
    } else {
        prevChPtr->nextPtr = chPtr->nextPtr;
    }
    ckfree((char *) chPtr);

    /*
     * Recompute the interest list for the channel, so that infinite loops
     * will not result if Tcl_DeleteChannelHandler is called inside an
     * event.
     */

    chanPtr->interestMask = 0;
    for (chPtr = chanPtr->chPtr;
	 chPtr != (ChannelHandler *) NULL;
	 chPtr = chPtr->nextPtr) {
        chanPtr->interestMask |= chPtr->mask;
    }

    UpdateInterest(chanPtr);
}

/*
 *----------------------------------------------------------------------
 *
 * DeleteScriptRecord --
 *







|











|
|


|


|







6516
6517
6518
6519
6520
6521
6522
6523
6524
6525
6526
6527
6528
6529
6530
6531
6532
6533
6534
6535
6536
6537
6538
6539
6540
6541
6542
6543
6544
6545
6546
6547
6548
6549
    }

    /*
     * Splice it out of the list of channel handlers.
     */
    
    if (prevChPtr == (ChannelHandler *) NULL) {
        statePtr->chPtr = chPtr->nextPtr;
    } else {
        prevChPtr->nextPtr = chPtr->nextPtr;
    }
    ckfree((char *) chPtr);

    /*
     * Recompute the interest list for the channel, so that infinite loops
     * will not result if Tcl_DeleteChannelHandler is called inside an
     * event.
     */

    statePtr->interestMask = 0;
    for (chPtr = statePtr->chPtr;
	 chPtr != (ChannelHandler *) NULL;
	 chPtr = chPtr->nextPtr) {
        statePtr->interestMask |= chPtr->mask;
    }

    UpdateInterest(statePtr->topChanPtr);
}

/*
 *----------------------------------------------------------------------
 *
 * DeleteScriptRecord --
 *
6617
6618
6619
6620
6621
6622
6623

6624
6625
6626
6627
6628
6629
6630
6631
6632
6633
6634
6635
6636
6637
6638
6639
6640
6641
6642
6643
6644
6645
    Tcl_Interp *interp;		/* Interpreter in which script was to be
                                 * executed. */
    Channel *chanPtr;		/* The channel for which to delete the
                                 * script record (if any). */
    int mask;			/* Events in mask must exactly match mask
                                 * of script to delete. */
{

    EventScriptRecord *esPtr, *prevEsPtr;

    for (esPtr = chanPtr->scriptRecordPtr,
             prevEsPtr = (EventScriptRecord *) NULL;
	 esPtr != (EventScriptRecord *) NULL;
	 prevEsPtr = esPtr, esPtr = esPtr->nextPtr) {
        if ((esPtr->interp == interp) && (esPtr->mask == mask)) {
            if (esPtr == chanPtr->scriptRecordPtr) {
                chanPtr->scriptRecordPtr = esPtr->nextPtr;
            } else {
                prevEsPtr->nextPtr = esPtr->nextPtr;
            }

            Tcl_DeleteChannelHandler((Tcl_Channel) chanPtr,
                    ChannelEventScriptInvoker, (ClientData) esPtr);
            
	    Tcl_DecrRefCount(esPtr->scriptPtr);
            ckfree((char *) esPtr);

            break;
        }
    }







>


|




|
|





|







6564
6565
6566
6567
6568
6569
6570
6571
6572
6573
6574
6575
6576
6577
6578
6579
6580
6581
6582
6583
6584
6585
6586
6587
6588
6589
6590
6591
6592
6593
    Tcl_Interp *interp;		/* Interpreter in which script was to be
                                 * executed. */
    Channel *chanPtr;		/* The channel for which to delete the
                                 * script record (if any). */
    int mask;			/* Events in mask must exactly match mask
                                 * of script to delete. */
{
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    EventScriptRecord *esPtr, *prevEsPtr;

    for (esPtr = statePtr->scriptRecordPtr,
             prevEsPtr = (EventScriptRecord *) NULL;
	 esPtr != (EventScriptRecord *) NULL;
	 prevEsPtr = esPtr, esPtr = esPtr->nextPtr) {
        if ((esPtr->interp == interp) && (esPtr->mask == mask)) {
            if (esPtr == statePtr->scriptRecordPtr) {
                statePtr->scriptRecordPtr = esPtr->nextPtr;
            } else {
                prevEsPtr->nextPtr = esPtr->nextPtr;
            }

            Tcl_DeleteChannelHandler((Tcl_Channel) chanPtr,
                    TclChannelEventScriptInvoker, (ClientData) esPtr);
            
	    Tcl_DecrRefCount(esPtr->scriptPtr);
            ckfree((char *) esPtr);

            break;
        }
    }
6668
6669
6670
6671
6672
6673
6674

6675
6676
6677
6678
6679
6680
6681
6682
6683
6684
6685
6686
6687
6688
6689
6690
6691
6692
6693
6694
6695
6696
6697
6698
6699
6700
6701
6702
6703
6704
6705
6706
6707
6708
6709
6710
6711
6712
6713
6714
6715
6716
6717
6718
6719
6720
6721
6722
6723
6724
6725
6726
6727
6728
6729
6730
6731
6732
6733
6734
6735
6736
6737
6738
6739
6740
6741
6742
6743
                                         * the stored script. */
    Channel *chanPtr;			/* Channel for which script is to
                                         * be stored. */
    int mask;				/* Set of events for which script
                                         * will be invoked. */
    Tcl_Obj *scriptPtr;			/* Pointer to script object. */
{

    EventScriptRecord *esPtr;

    for (esPtr = chanPtr->scriptRecordPtr;
	 esPtr != (EventScriptRecord *) NULL;
	 esPtr = esPtr->nextPtr) {
        if ((esPtr->interp == interp) && (esPtr->mask == mask)) {
	    Tcl_DecrRefCount(esPtr->scriptPtr);
	    esPtr->scriptPtr = (Tcl_Obj *) NULL;
            break;
        }
    }
    if (esPtr == (EventScriptRecord *) NULL) {
        esPtr = (EventScriptRecord *) ckalloc((unsigned)
                sizeof(EventScriptRecord));
        Tcl_CreateChannelHandler((Tcl_Channel) chanPtr, mask,
                ChannelEventScriptInvoker, (ClientData) esPtr);
        esPtr->nextPtr = chanPtr->scriptRecordPtr;
        chanPtr->scriptRecordPtr = esPtr;
    }
    esPtr->chanPtr = chanPtr;
    esPtr->interp = interp;
    esPtr->mask = mask;
    Tcl_IncrRefCount(scriptPtr);
    esPtr->scriptPtr = scriptPtr;
}

/*
 *----------------------------------------------------------------------
 *
 * ChannelEventScriptInvoker --
 *
 *	Invokes a script scheduled by "fileevent" for when the channel
 *	becomes ready for IO. This function is invoked by the channel
 *	handler which was created by the Tcl "fileevent" command.
 *
 * Results:
 *	None.
 *
 * Side effects:
 *	Whatever the script does.
 *
 *----------------------------------------------------------------------
 */

static void
ChannelEventScriptInvoker(clientData, mask)
    ClientData clientData;	/* The script+interp record. */
    int mask;			/* Not used. */
{
    Tcl_Interp *interp;		/* Interpreter in which to eval the script. */
    Channel *chanPtr;		/* The channel for which this handler is
                                 * registered. */
    EventScriptRecord *esPtr;	/* The event script + interpreter to eval it
                                 * in. */
    int result;			/* Result of call to eval script. */

    esPtr = (EventScriptRecord *) clientData;

    chanPtr = esPtr->chanPtr;
    mask = esPtr->mask;
    interp = esPtr->interp;
    
    /*
     * We must preserve the interpreter so we can report errors on it
     * later.  Note that we do not need to preserve the channel because
     * that is done by Tcl_NotifyChannel before calling channel handlers.
     */
    
    Tcl_Preserve((ClientData) interp);







>


|












|
|
|











|














|
|










|
<
|
|
|
|







6616
6617
6618
6619
6620
6621
6622
6623
6624
6625
6626
6627
6628
6629
6630
6631
6632
6633
6634
6635
6636
6637
6638
6639
6640
6641
6642
6643
6644
6645
6646
6647
6648
6649
6650
6651
6652
6653
6654
6655
6656
6657
6658
6659
6660
6661
6662
6663
6664
6665
6666
6667
6668
6669
6670
6671
6672
6673
6674
6675
6676
6677
6678
6679
6680

6681
6682
6683
6684
6685
6686
6687
6688
6689
6690
6691
                                         * the stored script. */
    Channel *chanPtr;			/* Channel for which script is to
                                         * be stored. */
    int mask;				/* Set of events for which script
                                         * will be invoked. */
    Tcl_Obj *scriptPtr;			/* Pointer to script object. */
{
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    EventScriptRecord *esPtr;

    for (esPtr = statePtr->scriptRecordPtr;
	 esPtr != (EventScriptRecord *) NULL;
	 esPtr = esPtr->nextPtr) {
        if ((esPtr->interp == interp) && (esPtr->mask == mask)) {
	    Tcl_DecrRefCount(esPtr->scriptPtr);
	    esPtr->scriptPtr = (Tcl_Obj *) NULL;
            break;
        }
    }
    if (esPtr == (EventScriptRecord *) NULL) {
        esPtr = (EventScriptRecord *) ckalloc((unsigned)
                sizeof(EventScriptRecord));
        Tcl_CreateChannelHandler((Tcl_Channel) chanPtr, mask,
                TclChannelEventScriptInvoker, (ClientData) esPtr);
        esPtr->nextPtr = statePtr->scriptRecordPtr;
        statePtr->scriptRecordPtr = esPtr;
    }
    esPtr->chanPtr = chanPtr;
    esPtr->interp = interp;
    esPtr->mask = mask;
    Tcl_IncrRefCount(scriptPtr);
    esPtr->scriptPtr = scriptPtr;
}

/*
 *----------------------------------------------------------------------
 *
 * TclChannelEventScriptInvoker --
 *
 *	Invokes a script scheduled by "fileevent" for when the channel
 *	becomes ready for IO. This function is invoked by the channel
 *	handler which was created by the Tcl "fileevent" command.
 *
 * Results:
 *	None.
 *
 * Side effects:
 *	Whatever the script does.
 *
 *----------------------------------------------------------------------
 */

void
TclChannelEventScriptInvoker(clientData, mask)
    ClientData clientData;	/* The script+interp record. */
    int mask;			/* Not used. */
{
    Tcl_Interp *interp;		/* Interpreter in which to eval the script. */
    Channel *chanPtr;		/* The channel for which this handler is
                                 * registered. */
    EventScriptRecord *esPtr;	/* The event script + interpreter to eval it
                                 * in. */
    int result;			/* Result of call to eval script. */

    esPtr	= (EventScriptRecord *) clientData;

    chanPtr	= esPtr->chanPtr;
    mask	= esPtr->mask;
    interp	= esPtr->interp;

    /*
     * We must preserve the interpreter so we can report errors on it
     * later.  Note that we do not need to preserve the channel because
     * that is done by Tcl_NotifyChannel before calling channel handlers.
     */
    
    Tcl_Preserve((ClientData) interp);
6787
6788
6789
6790
6791
6792
6793

6794
6795
6796
6797
6798
6799
6800
                                         * for which to create the handler
                                         * is found. */
    int objc;				/* Number of arguments. */
    Tcl_Obj *CONST objv[];		/* Argument objects. */
{
    Channel *chanPtr;			/* The channel to create
                                         * the handler for. */

    Tcl_Channel chan;			/* The opaque type for the channel. */
    char *chanName;
    int modeIndex;			/* Index of mode argument. */
    int mask;
    static char *modeOptions[] = {"readable", "writable", NULL};
    static int maskArray[] = {TCL_READABLE, TCL_WRITABLE};








>







6735
6736
6737
6738
6739
6740
6741
6742
6743
6744
6745
6746
6747
6748
6749
                                         * for which to create the handler
                                         * is found. */
    int objc;				/* Number of arguments. */
    Tcl_Obj *CONST objv[];		/* Argument objects. */
{
    Channel *chanPtr;			/* The channel to create
                                         * the handler for. */
    ChannelState *statePtr;		/* state info for channel */
    Tcl_Channel chan;			/* The opaque type for the channel. */
    char *chanName;
    int modeIndex;			/* Index of mode argument. */
    int mask;
    static char *modeOptions[] = {"readable", "writable", NULL};
    static int maskArray[] = {TCL_READABLE, TCL_WRITABLE};

6809
6810
6811
6812
6813
6814
6815
6816

6817
6818
6819
6820
6821
6822
6823
6824
6825
6826
6827
6828
6829
6830
6831
6832
6833
6834
6835
6836
6837
    mask = maskArray[modeIndex];

    chanName = Tcl_GetString(objv[1]);
    chan = Tcl_GetChannel(interp, chanName, NULL);
    if (chan == (Tcl_Channel) NULL) {
	return TCL_ERROR;
    }
    chanPtr = (Channel *) chan;

    if ((chanPtr->flags & mask) == 0) {
        Tcl_AppendResult(interp, "channel is not ",
                (mask == TCL_READABLE) ? "readable" : "writable",
                (char *) NULL);
        return TCL_ERROR;
    }
    
    /*
     * If we are supposed to return the script, do so.
     */

    if (objc == 3) {
	EventScriptRecord *esPtr;
	for (esPtr = chanPtr->scriptRecordPtr;
             esPtr != (EventScriptRecord *) NULL;
             esPtr = esPtr->nextPtr) {
	    if ((esPtr->interp == interp) && (esPtr->mask == mask)) {
		Tcl_SetObjResult(interp, esPtr->scriptPtr);
		break;
	    }
	}







|
>
|












|







6758
6759
6760
6761
6762
6763
6764
6765
6766
6767
6768
6769
6770
6771
6772
6773
6774
6775
6776
6777
6778
6779
6780
6781
6782
6783
6784
6785
6786
6787
    mask = maskArray[modeIndex];

    chanName = Tcl_GetString(objv[1]);
    chan = Tcl_GetChannel(interp, chanName, NULL);
    if (chan == (Tcl_Channel) NULL) {
	return TCL_ERROR;
    }
    chanPtr  = (Channel *) chan;
    statePtr = chanPtr->state;
    if ((statePtr->flags & mask) == 0) {
        Tcl_AppendResult(interp, "channel is not ",
                (mask == TCL_READABLE) ? "readable" : "writable",
                (char *) NULL);
        return TCL_ERROR;
    }
    
    /*
     * If we are supposed to return the script, do so.
     */

    if (objc == 3) {
	EventScriptRecord *esPtr;
	for (esPtr = statePtr->scriptRecordPtr;
             esPtr != (EventScriptRecord *) NULL;
             esPtr = esPtr->nextPtr) {
	    if ((esPtr->interp == interp) && (esPtr->mask == mask)) {
		Tcl_SetObjResult(interp, esPtr->scriptPtr);
		break;
	    }
	}
6857
6858
6859
6860
6861
6862
6863
6864
6865
6866
6867
6868
6869
6870
6871
6872
6873
6874
6875
6876
6877
6878
6879
6880
6881
6882
6883
6884
6885
6886
6887
6888
6889
6890
6891
6892
6893
6894
6895
6896
6897
6898
6899
6900
6901
6902
6903
6904
6905
6906
6907
6908
6909
6910
6911
6912
6913
6914
6915
6916
6917
6918
6919
6920
6921
6922
6923
6924
6925
6926
6927
6928
6929
6930
6931
6932
6933
6934
6935
6936
6937
6938
6939
6940
6941
6942
6943
6944
6945
6946
6947
6948
6949
6950
6951
6952
6953
6954
6955
6956
6957
6958
6959
6960
6961
6962
6963
6964
6965
6966
6967
6968
6969
6970
6971
6972
6973
6974
6975
6976
6977
6978
6979
6980
6981
6982
6983
6984
6985
6986
6987
6988
6989
6990
6991
6992
6993
6994
6995
6996
6997
6998
6999
7000
7001
7002
7003
7004
7005
7006
7007
7008
7009
7010
7011
7012
7013
7014
7015
7016
7017
7018
7019
7020
7021
7022
7023
7024
7025
7026
7027
7028
7029
7030
7031
7032
7033
7034
7035
7036
7037
7038
7039
7040
7041
7042
7043
7044
7045
7046
7047
7048
7049
7050
7051
7052
7053
7054
7055
7056
7057
7058
7059
7060
7061
7062
7063
7064
7065
7066
7067
7068
7069
7070
7071
7072
7073
7074
7075
7076
7077
7078
7079
7080
7081
7082
7083
7084
7085
7086
7087
7088
7089
7090
7091
7092
7093
7094
7095
7096
7097
7098
7099
7100
7101
7102
7103
7104
7105
7106
7107
7108
7109
7110
7111
7112
7113
7114
7115
7116
7117
7118
7119
7120
7121
7122
7123
7124
7125
7126
7127
7128
7129
7130
7131
7132
7133
7134
7135
7136
7137
7138
7139
7140
7141
7142
7143
7144
7145
7146
7147
7148
7149
7150
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7203
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7205
7206
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7208
7209
7210
7211
7212
7213
7214
7215
7216
7217
7218
7219
7220
7221
7222
7223
7224
7225
7226
7227
7228
7229
7230
7231
7232
7233
7234
7235
7236
7237
7238
7239
7240
7241
7242
7243
7244
7245
7246
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7248
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7251
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7253
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7255
7256
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7258
7259
7260
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7262
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7264
7265
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7267
7268
7269
7270
7271
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7276
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7280
7281
7282
7283
7284
7285
7286
7287
7288
7289
7290
7291
7292
7293
7294
7295
7296
7297
7298
7299
7300
7301
7302
7303
7304
7305
7306
7307
7308
7309
7310
7311
7312
7313
7314
7315
7316
7317
7318
7319
7320
7321
7322
7323
7324
7325
7326
7327
7328
7329
7330
7331
7332
7333
7334
7335
7336
7337
7338
7339
7340
7341
7342
7343
7344
7345
7346
7347
7348
7349
7350
7351
7352
7353
7354
7355
7356
7357
7358
7359
7360
7361
7362
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7364
7365
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7390
7391
7392
7393
7394
7395
7396
7397
7398
7399
7400
7401
7402
7403
    
    return TCL_OK;
}

/*
 *----------------------------------------------------------------------
 *
 * TclTestChannelCmd --
 *
 *	Implements the Tcl "testchannel" debugging command and its
 *	subcommands. This is part of the testing environment but must be
 *	in this file instead of tclTest.c because it needs access to the
 *	fields of struct Channel.
 *
 * Results:
 *	A standard Tcl result.
 *
 * Side effects:
 *	None.
 *
 *----------------------------------------------------------------------
 */

	/* ARGSUSED */
int
TclTestChannelCmd(clientData, interp, argc, argv)
    ClientData clientData;	/* Not used. */
    Tcl_Interp *interp;		/* Interpreter for result. */
    int argc;			/* Count of additional args. */
    char **argv;		/* Additional arg strings. */
{
    char *cmdName;		/* Sub command. */
    Tcl_HashTable *hTblPtr;	/* Hash table of channels. */
    Tcl_HashSearch hSearch;	/* Search variable. */
    Tcl_HashEntry *hPtr;	/* Search variable. */
    Channel *chanPtr;		/* The actual channel. */
    Tcl_Channel chan;		/* The opaque type. */
    size_t len;			/* Length of subcommand string. */
    int IOQueued;		/* How much IO is queued inside channel? */
    ChannelBuffer *bufPtr;	/* For iterating over queued IO. */
    char buf[TCL_INTEGER_SPACE];/* For sprintf. */
    
    if (argc < 2) {
        Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                " subcommand ?additional args..?\"", (char *) NULL);
        return TCL_ERROR;
    }
    cmdName = argv[1];
    len = strlen(cmdName);

    chanPtr = (Channel *) NULL;

    if (argc > 2) {
        chan = Tcl_GetChannel(interp, argv[2], NULL);
        if (chan == (Tcl_Channel) NULL) {
            return TCL_ERROR;
        }
        chanPtr = (Channel *) chan;
    }


    if ((cmdName[0] == 'i') && (strncmp(cmdName, "info", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                    " info channelName\"", (char *) NULL);
            return TCL_ERROR;
        }
        Tcl_AppendElement(interp, argv[2]);
        Tcl_AppendElement(interp, chanPtr->typePtr->typeName);
        if (chanPtr->flags & TCL_READABLE) {
            Tcl_AppendElement(interp, "read");
        } else {
            Tcl_AppendElement(interp, "");
        }
        if (chanPtr->flags & TCL_WRITABLE) {
            Tcl_AppendElement(interp, "write");
        } else {
            Tcl_AppendElement(interp, "");
        }
        if (chanPtr->flags & CHANNEL_NONBLOCKING) {
            Tcl_AppendElement(interp, "nonblocking");
        } else {
            Tcl_AppendElement(interp, "blocking");
        }
        if (chanPtr->flags & CHANNEL_LINEBUFFERED) {
            Tcl_AppendElement(interp, "line");
        } else if (chanPtr->flags & CHANNEL_UNBUFFERED) {
            Tcl_AppendElement(interp, "none");
        } else {
            Tcl_AppendElement(interp, "full");
        }
        if (chanPtr->flags & BG_FLUSH_SCHEDULED) {
            Tcl_AppendElement(interp, "async_flush");
        } else {
            Tcl_AppendElement(interp, "");
        }
        if (chanPtr->flags & CHANNEL_EOF) {
            Tcl_AppendElement(interp, "eof");
        } else {
            Tcl_AppendElement(interp, "");
        }
        if (chanPtr->flags & CHANNEL_BLOCKED) {
            Tcl_AppendElement(interp, "blocked");
        } else {
            Tcl_AppendElement(interp, "unblocked");
        }
        if (chanPtr->inputTranslation == TCL_TRANSLATE_AUTO) {
            Tcl_AppendElement(interp, "auto");
            if (chanPtr->flags & INPUT_SAW_CR) {
                Tcl_AppendElement(interp, "saw_cr");
            } else {
                Tcl_AppendElement(interp, "");
            }
        } else if (chanPtr->inputTranslation == TCL_TRANSLATE_LF) {
            Tcl_AppendElement(interp, "lf");
            Tcl_AppendElement(interp, "");
        } else if (chanPtr->inputTranslation == TCL_TRANSLATE_CR) {
            Tcl_AppendElement(interp, "cr");
            Tcl_AppendElement(interp, "");
        } else if (chanPtr->inputTranslation == TCL_TRANSLATE_CRLF) {
            Tcl_AppendElement(interp, "crlf");
            if (chanPtr->flags & INPUT_SAW_CR) {
                Tcl_AppendElement(interp, "queued_cr");
            } else {
                Tcl_AppendElement(interp, "");
            }
        }
        if (chanPtr->outputTranslation == TCL_TRANSLATE_AUTO) {
            Tcl_AppendElement(interp, "auto");
        } else if (chanPtr->outputTranslation == TCL_TRANSLATE_LF) {
            Tcl_AppendElement(interp, "lf");
        } else if (chanPtr->outputTranslation == TCL_TRANSLATE_CR) {
            Tcl_AppendElement(interp, "cr");
        } else if (chanPtr->outputTranslation == TCL_TRANSLATE_CRLF) {
            Tcl_AppendElement(interp, "crlf");
        }
        for (IOQueued = 0, bufPtr = chanPtr->inQueueHead;
	     bufPtr != (ChannelBuffer *) NULL;
	     bufPtr = bufPtr->nextPtr) {
            IOQueued += bufPtr->nextAdded - bufPtr->nextRemoved;
        }
        TclFormatInt(buf, IOQueued);
        Tcl_AppendElement(interp, buf);
        
        IOQueued = 0;
        if (chanPtr->curOutPtr != (ChannelBuffer *) NULL) {
            IOQueued = chanPtr->curOutPtr->nextAdded -
                chanPtr->curOutPtr->nextRemoved;
        }
        for (bufPtr = chanPtr->outQueueHead;
	     bufPtr != (ChannelBuffer *) NULL;
	     bufPtr = bufPtr->nextPtr) {
            IOQueued += (bufPtr->nextAdded - bufPtr->nextRemoved);
        }
        TclFormatInt(buf, IOQueued);
        Tcl_AppendElement(interp, buf);
        
        TclFormatInt(buf, Tcl_Tell((Tcl_Channel) chanPtr));
        Tcl_AppendElement(interp, buf);

        TclFormatInt(buf, chanPtr->refCount);
        Tcl_AppendElement(interp, buf);

        return TCL_OK;
    }

    if ((cmdName[0] == 'i') &&
            (strncmp(cmdName, "inputbuffered", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }
        
        for (IOQueued = 0, bufPtr = chanPtr->inQueueHead;
	     bufPtr != (ChannelBuffer *) NULL;
	     bufPtr = bufPtr->nextPtr) {
            IOQueued += bufPtr->nextAdded - bufPtr->nextRemoved;
        }
        TclFormatInt(buf, IOQueued);
        Tcl_AppendResult(interp, buf, (char *) NULL);
        return TCL_OK;
    }
        
    if ((cmdName[0] == 'm') && (strncmp(cmdName, "mode", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }
        
        if (chanPtr->flags & TCL_READABLE) {
            Tcl_AppendElement(interp, "read");
        } else {
            Tcl_AppendElement(interp, "");
        }
        if (chanPtr->flags & TCL_WRITABLE) {
            Tcl_AppendElement(interp, "write");
        } else {
            Tcl_AppendElement(interp, "");
        }
        return TCL_OK;
    }
    
    if ((cmdName[0] == 'n') && (strncmp(cmdName, "name", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }
        Tcl_AppendResult(interp, chanPtr->channelName, (char *) NULL);
        return TCL_OK;
    }

    if ((cmdName[0] == 'o') && (strncmp(cmdName, "open", len) == 0)) {
        hTblPtr = (Tcl_HashTable *) Tcl_GetAssocData(interp, "tclIO", NULL);
        if (hTblPtr == (Tcl_HashTable *) NULL) {
            return TCL_OK;
        }
        for (hPtr = Tcl_FirstHashEntry(hTblPtr, &hSearch);
	     hPtr != (Tcl_HashEntry *) NULL;
	     hPtr = Tcl_NextHashEntry(&hSearch)) {
            Tcl_AppendElement(interp, Tcl_GetHashKey(hTblPtr, hPtr));
        }
        return TCL_OK;
    }

    if ((cmdName[0] == 'o') &&
            (strncmp(cmdName, "outputbuffered", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }
        
        IOQueued = 0;
        if (chanPtr->curOutPtr != (ChannelBuffer *) NULL) {
            IOQueued = chanPtr->curOutPtr->nextAdded -
                chanPtr->curOutPtr->nextRemoved;
        }
        for (bufPtr = chanPtr->outQueueHead;
	     bufPtr != (ChannelBuffer *) NULL;
	     bufPtr = bufPtr->nextPtr) {
            IOQueued += (bufPtr->nextAdded - bufPtr->nextRemoved);
        }
        TclFormatInt(buf, IOQueued);
        Tcl_AppendResult(interp, buf, (char *) NULL);
        return TCL_OK;
    }

    if ((cmdName[0] == 'q') &&
            (strncmp(cmdName, "queuedcr", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }
        
        Tcl_AppendResult(interp,
                (chanPtr->flags & INPUT_SAW_CR) ? "1" : "0",
                (char *) NULL);
        return TCL_OK;
    }

    if ((cmdName[0] == 'r') && (strncmp(cmdName, "readable", len) == 0)) {
        hTblPtr = (Tcl_HashTable *) Tcl_GetAssocData(interp, "tclIO", NULL);
        if (hTblPtr == (Tcl_HashTable *) NULL) {
            return TCL_OK;
        }
        for (hPtr = Tcl_FirstHashEntry(hTblPtr, &hSearch);
	     hPtr != (Tcl_HashEntry *) NULL;
	     hPtr = Tcl_NextHashEntry(&hSearch)) {
            chanPtr = (Channel *) Tcl_GetHashValue(hPtr);
            if (chanPtr->flags & TCL_READABLE) {
                Tcl_AppendElement(interp, Tcl_GetHashKey(hTblPtr, hPtr));
            }
        }
        return TCL_OK;
    }

    if ((cmdName[0] == 'r') && (strncmp(cmdName, "refcount", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }
        
        TclFormatInt(buf, chanPtr->refCount);
        Tcl_AppendResult(interp, buf, (char *) NULL);
        return TCL_OK;
    }

    if ((cmdName[0] == 't') && (strncmp(cmdName, "type", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }
        Tcl_AppendResult(interp, chanPtr->typePtr->typeName, (char *) NULL);
        return TCL_OK;
    }

    if ((cmdName[0] == 'w') && (strncmp(cmdName, "writable", len) == 0)) {
        hTblPtr = (Tcl_HashTable *) Tcl_GetAssocData(interp, "tclIO", NULL);
        if (hTblPtr == (Tcl_HashTable *) NULL) {
            return TCL_OK;
        }
        for (hPtr = Tcl_FirstHashEntry(hTblPtr, &hSearch);
	     hPtr != (Tcl_HashEntry *) NULL;
	     hPtr = Tcl_NextHashEntry(&hSearch)) {
            chanPtr = (Channel *) Tcl_GetHashValue(hPtr);
            if (chanPtr->flags & TCL_WRITABLE) {
                Tcl_AppendElement(interp, Tcl_GetHashKey(hTblPtr, hPtr));
            }
        }
        return TCL_OK;
    }

    Tcl_AppendResult(interp, "bad option \"", cmdName, "\": should be ",
            "info, open, readable, or writable",
            (char *) NULL);
    return TCL_ERROR;
}

/*
 *----------------------------------------------------------------------
 *
 * TclTestChannelEventCmd --
 *
 *	This procedure implements the "testchannelevent" command. It is
 *	used to test the Tcl channel event mechanism. It is present in
 *	this file instead of tclTest.c because it needs access to the
 *	internal structure of the channel.
 *
 * Results:
 *	A standard Tcl result.
 *
 * Side effects:
 *	Creates, deletes and returns channel event handlers.
 *
 *----------------------------------------------------------------------
 */

	/* ARGSUSED */
int
TclTestChannelEventCmd(dummy, interp, argc, argv)
    ClientData dummy;			/* Not used. */
    Tcl_Interp *interp;			/* Current interpreter. */
    int argc;				/* Number of arguments. */
    char **argv;			/* Argument strings. */
{
    Tcl_Obj *resultListPtr;
    Channel *chanPtr;
    EventScriptRecord *esPtr, *prevEsPtr, *nextEsPtr;
    char *cmd;
    int index, i, mask, len;

    if ((argc < 3) || (argc > 5)) {
        Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                " channelName cmd ?arg1? ?arg2?\"", (char *) NULL);
        return TCL_ERROR;
    }
    chanPtr = (Channel *) Tcl_GetChannel(interp, argv[1], NULL);
    if (chanPtr == (Channel *) NULL) {
        return TCL_ERROR;
    }
    cmd = argv[2];
    len = strlen(cmd);
    if ((cmd[0] == 'a') && (strncmp(cmd, "add", (unsigned) len) == 0)) {
        if (argc != 5) {
            Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                    " channelName add eventSpec script\"", (char *) NULL);
            return TCL_ERROR;
        }
        if (strcmp(argv[3], "readable") == 0) {
            mask = TCL_READABLE;
        } else if (strcmp(argv[3], "writable") == 0) {
            mask = TCL_WRITABLE;
        } else if (strcmp(argv[3], "none") == 0) {
            mask = 0;
	} else {
            Tcl_AppendResult(interp, "bad event name \"", argv[3],
                    "\": must be readable, writable, or none", (char *) NULL);
            return TCL_ERROR;
        }

        esPtr = (EventScriptRecord *) ckalloc((unsigned)
                sizeof(EventScriptRecord));
        esPtr->nextPtr = chanPtr->scriptRecordPtr;
        chanPtr->scriptRecordPtr = esPtr;
        
        esPtr->chanPtr = chanPtr;
        esPtr->interp = interp;
        esPtr->mask = mask;
	esPtr->scriptPtr = Tcl_NewStringObj(argv[4], -1);
	Tcl_IncrRefCount(esPtr->scriptPtr);

        Tcl_CreateChannelHandler((Tcl_Channel) chanPtr, mask,
                ChannelEventScriptInvoker, (ClientData) esPtr);
        
        return TCL_OK;
    }

    if ((cmd[0] == 'd') && (strncmp(cmd, "delete", (unsigned) len) == 0)) {
        if (argc != 4) {
            Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                    " channelName delete index\"", (char *) NULL);
            return TCL_ERROR;
        }
        if (Tcl_GetInt(interp, argv[3], &index) == TCL_ERROR) {
            return TCL_ERROR;
        }
        if (index < 0) {
            Tcl_AppendResult(interp, "bad event index: ", argv[3],
                    ": must be nonnegative", (char *) NULL);
            return TCL_ERROR;
        }
        for (i = 0, esPtr = chanPtr->scriptRecordPtr;
	     (i < index) && (esPtr != (EventScriptRecord *) NULL);
	     i++, esPtr = esPtr->nextPtr) {
	    /* Empty loop body. */
        }
        if (esPtr == (EventScriptRecord *) NULL) {
            Tcl_AppendResult(interp, "bad event index ", argv[3],
                    ": out of range", (char *) NULL);
            return TCL_ERROR;
        }
        if (esPtr == chanPtr->scriptRecordPtr) {
            chanPtr->scriptRecordPtr = esPtr->nextPtr;
        } else {
            for (prevEsPtr = chanPtr->scriptRecordPtr;
		 (prevEsPtr != (EventScriptRecord *) NULL) &&
		     (prevEsPtr->nextPtr != esPtr);
		 prevEsPtr = prevEsPtr->nextPtr) {
                /* Empty loop body. */
            }
            if (prevEsPtr == (EventScriptRecord *) NULL) {
                panic("TclTestChannelEventCmd: damaged event script list");
            }
            prevEsPtr->nextPtr = esPtr->nextPtr;
        }
        Tcl_DeleteChannelHandler((Tcl_Channel) chanPtr,
                ChannelEventScriptInvoker, (ClientData) esPtr);
	Tcl_DecrRefCount(esPtr->scriptPtr);
        ckfree((char *) esPtr);

        return TCL_OK;
    }

    if ((cmd[0] == 'l') && (strncmp(cmd, "list", (unsigned) len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                    " channelName list\"", (char *) NULL);
            return TCL_ERROR;
        }
	resultListPtr = Tcl_GetObjResult(interp);
        for (esPtr = chanPtr->scriptRecordPtr;
	     esPtr != (EventScriptRecord *) NULL;
	     esPtr = esPtr->nextPtr) {
	    if (esPtr->mask) {
 	        Tcl_ListObjAppendElement(interp, resultListPtr, Tcl_NewStringObj(
		    (esPtr->mask == TCL_READABLE) ? "readable" : "writable", -1));
 	    } else {
 	        Tcl_ListObjAppendElement(interp, resultListPtr, 
			Tcl_NewStringObj("none", -1));
	    }
  	    Tcl_ListObjAppendElement(interp, resultListPtr, esPtr->scriptPtr);
        }
	Tcl_SetObjResult(interp, resultListPtr);
        return TCL_OK;
    }

    if ((cmd[0] == 'r') && (strncmp(cmd, "removeall", (unsigned) len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                    " channelName removeall\"", (char *) NULL);
            return TCL_ERROR;
        }
        for (esPtr = chanPtr->scriptRecordPtr;
	     esPtr != (EventScriptRecord *) NULL;
	     esPtr = nextEsPtr) {
            nextEsPtr = esPtr->nextPtr;
            Tcl_DeleteChannelHandler((Tcl_Channel) chanPtr,
                    ChannelEventScriptInvoker, (ClientData) esPtr);
	    Tcl_DecrRefCount(esPtr->scriptPtr);
            ckfree((char *) esPtr);
        }
        chanPtr->scriptRecordPtr = (EventScriptRecord *) NULL;
        return TCL_OK;
    }

    if  ((cmd[0] == 's') && (strncmp(cmd, "set", (unsigned) len) == 0)) {
        if (argc != 5) {
            Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                    " channelName delete index event\"", (char *) NULL);
            return TCL_ERROR;
        }
        if (Tcl_GetInt(interp, argv[3], &index) == TCL_ERROR) {
            return TCL_ERROR;
        }
        if (index < 0) {
            Tcl_AppendResult(interp, "bad event index: ", argv[3],
                    ": must be nonnegative", (char *) NULL);
            return TCL_ERROR;
        }
        for (i = 0, esPtr = chanPtr->scriptRecordPtr;
	     (i < index) && (esPtr != (EventScriptRecord *) NULL);
	     i++, esPtr = esPtr->nextPtr) {
	    /* Empty loop body. */
        }
        if (esPtr == (EventScriptRecord *) NULL) {
            Tcl_AppendResult(interp, "bad event index ", argv[3],
                    ": out of range", (char *) NULL);
            return TCL_ERROR;
        }

        if (strcmp(argv[4], "readable") == 0) {
            mask = TCL_READABLE;
        } else if (strcmp(argv[4], "writable") == 0) {
            mask = TCL_WRITABLE;
        } else if (strcmp(argv[4], "none") == 0) {
            mask = 0;
	} else {
            Tcl_AppendResult(interp, "bad event name \"", argv[4],
                    "\": must be readable, writable, or none", (char *) NULL);
            return TCL_ERROR;
        }
	esPtr->mask = mask;
        Tcl_CreateChannelHandler((Tcl_Channel) chanPtr, mask,
                ChannelEventScriptInvoker, (ClientData) esPtr);
	return TCL_OK;
    }    
    Tcl_AppendResult(interp, "bad command ", cmd, ", must be one of ",
            "add, delete, list, set, or removeall", (char *) NULL);
    return TCL_ERROR;
}

/*
 *----------------------------------------------------------------------
 *
 * TclCopyChannel --
 *
 *	This routine copies data from one channel to another, either
 *	synchronously or asynchronously.  If a command script is
 *	supplied, the operation runs in the background.  The script
 *	is invoked when the copy completes.  Otherwise the function
 *	waits until the copy is completed before returning.







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<
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<
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<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
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<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<
<







6807
6808
6809
6810
6811
6812
6813





















































































































































































































































































































































































































































































































































6814
6815
6816
6817
6818
6819
6820
    
    return TCL_OK;
}

/*
 *----------------------------------------------------------------------
 *





















































































































































































































































































































































































































































































































































 * TclCopyChannel --
 *
 *	This routine copies data from one channel to another, either
 *	synchronously or asynchronously.  If a command script is
 *	supplied, the operation runs in the background.  The script
 *	is invoked when the copy completes.  Otherwise the function
 *	waits until the copy is completed before returning.
7418
7419
7420
7421
7422
7423
7424

7425
7426
7427
7428



7429
7430
7431
7432
7433
7434
7435
7436
7437
7438
7439
7440
7441
7442
7443
7444
7445
7446
7447
7448
    Tcl_Channel inChan;		/* Channel to read from. */
    Tcl_Channel outChan;	/* Channel to write to. */
    int toRead;			/* Amount of data to copy, or -1 for all. */
    Tcl_Obj *cmdPtr;		/* Pointer to script to execute or NULL. */
{
    Channel *inPtr = (Channel *) inChan;
    Channel *outPtr = (Channel *) outChan;

    int readFlags, writeFlags;
    CopyState *csPtr;
    int nonBlocking = (cmdPtr) ? CHANNEL_NONBLOCKING : 0;




    if (inPtr->csPtr) {
	Tcl_AppendStringsToObj(Tcl_GetObjResult(interp), "channel \"",
		Tcl_GetChannelName(inChan), "\" is busy", NULL);
	return TCL_ERROR;
    }
    if (outPtr->csPtr) {
	Tcl_AppendStringsToObj(Tcl_GetObjResult(interp), "channel \"",
		Tcl_GetChannelName(outChan), "\" is busy", NULL);
	return TCL_ERROR;
    }

    readFlags = inPtr->flags;
    writeFlags = outPtr->flags;

    /*
     * Set up the blocking mode appropriately.  Background copies need
     * non-blocking channels.  Foreground copies need blocking channels.
     * If there is an error, restore the old blocking mode.
     */








>




>
>
>
|




|





|
|







6835
6836
6837
6838
6839
6840
6841
6842
6843
6844
6845
6846
6847
6848
6849
6850
6851
6852
6853
6854
6855
6856
6857
6858
6859
6860
6861
6862
6863
6864
6865
6866
6867
6868
6869
    Tcl_Channel inChan;		/* Channel to read from. */
    Tcl_Channel outChan;	/* Channel to write to. */
    int toRead;			/* Amount of data to copy, or -1 for all. */
    Tcl_Obj *cmdPtr;		/* Pointer to script to execute or NULL. */
{
    Channel *inPtr = (Channel *) inChan;
    Channel *outPtr = (Channel *) outChan;
    ChannelState *inStatePtr, *outStatePtr;
    int readFlags, writeFlags;
    CopyState *csPtr;
    int nonBlocking = (cmdPtr) ? CHANNEL_NONBLOCKING : 0;

    inStatePtr	= inPtr->state;
    outStatePtr	= outPtr->state;

    if (inStatePtr->csPtr) {
	Tcl_AppendStringsToObj(Tcl_GetObjResult(interp), "channel \"",
		Tcl_GetChannelName(inChan), "\" is busy", NULL);
	return TCL_ERROR;
    }
    if (outStatePtr->csPtr) {
	Tcl_AppendStringsToObj(Tcl_GetObjResult(interp), "channel \"",
		Tcl_GetChannelName(outChan), "\" is busy", NULL);
	return TCL_ERROR;
    }

    readFlags	= inStatePtr->flags;
    writeFlags	= outStatePtr->flags;

    /*
     * Set up the blocking mode appropriately.  Background copies need
     * non-blocking channels.  Foreground copies need blocking channels.
     * If there is an error, restore the old blocking mode.
     */

7468
7469
7470
7471
7472
7473
7474
7475
7476
7477
7478
7479
7480
7481
7482
7483
7484
7485
7486
7487
7488
7489
7490
7491
7492
7493
7494
7495
7496
7497
7498
7499
7500
7501
7502
7503
7504
7505
	}
    }

    /*
     * Make sure the output side is unbuffered.
     */

    outPtr->flags = (outPtr->flags & ~(CHANNEL_LINEBUFFERED))
	| CHANNEL_UNBUFFERED;

    /*
     * Allocate a new CopyState to maintain info about the current copy in
     * progress.  This structure will be deallocated when the copy is
     * completed.
     */

    csPtr = (CopyState*) ckalloc(sizeof(CopyState) + inPtr->bufSize);
    csPtr->bufSize = inPtr->bufSize;
    csPtr->readPtr = inPtr;
    csPtr->writePtr = outPtr;
    csPtr->readFlags = readFlags;
    csPtr->writeFlags = writeFlags;
    csPtr->toRead = toRead;
    csPtr->total = 0;
    csPtr->interp = interp;
    if (cmdPtr) {
	Tcl_IncrRefCount(cmdPtr);
    }
    csPtr->cmdPtr = cmdPtr;
    inPtr->csPtr = csPtr;
    outPtr->csPtr = csPtr;

    /*
     * Start copying data between the channels.
     */

    return CopyData(csPtr, 0);
}







|








|
|
|
|
|

|
|
|




|
|







6889
6890
6891
6892
6893
6894
6895
6896
6897
6898
6899
6900
6901
6902
6903
6904
6905
6906
6907
6908
6909
6910
6911
6912
6913
6914
6915
6916
6917
6918
6919
6920
6921
6922
6923
6924
6925
6926
	}
    }

    /*
     * Make sure the output side is unbuffered.
     */

    outStatePtr->flags = (outStatePtr->flags & ~(CHANNEL_LINEBUFFERED))
	| CHANNEL_UNBUFFERED;

    /*
     * Allocate a new CopyState to maintain info about the current copy in
     * progress.  This structure will be deallocated when the copy is
     * completed.
     */

    csPtr = (CopyState*) ckalloc(sizeof(CopyState) + inStatePtr->bufSize);
    csPtr->bufSize    = inStatePtr->bufSize;
    csPtr->readPtr    = inPtr;
    csPtr->writePtr   = outPtr;
    csPtr->readFlags  = readFlags;
    csPtr->writeFlags = writeFlags;
    csPtr->toRead     = toRead;
    csPtr->total      = 0;
    csPtr->interp     = interp;
    if (cmdPtr) {
	Tcl_IncrRefCount(cmdPtr);
    }
    csPtr->cmdPtr = cmdPtr;
    inStatePtr->csPtr = csPtr;
    outStatePtr->csPtr = csPtr;

    /*
     * Start copying data between the channels.
     */

    return CopyData(csPtr, 0);
}
7525
7526
7527
7528
7529
7530
7531

7532
7533
7534
7535
7536


7537
7538
7539
7540
7541
7542




7543
7544
7545
7546
7547
7548
7549
7550
7551
7552
7553
7554
7555
7556
7557
7558
7559
7560
7561
7562
7563
7564
7565
7566
7567
7568
7569
7570
7571
7572
7573
7574
7575
7576
7577
7578
7579
CopyData(csPtr, mask)
    CopyState *csPtr;		/* State of copy operation. */
    int mask;			/* Current channel event flags. */
{
    Tcl_Interp *interp;
    Tcl_Obj *cmdPtr, *errObj = NULL;
    Tcl_Channel inChan, outChan;

    int result = TCL_OK;
    int size;
    int total;

    inChan = (Tcl_Channel)csPtr->readPtr;


    outChan = (Tcl_Channel)csPtr->writePtr;
    interp = csPtr->interp;
    cmdPtr = csPtr->cmdPtr;

    /*
     * Copy the data the slow way, using the translation mechanism.




     */

    while (csPtr->toRead != 0) {

	/*
	 * Check for unreported background errors.
	 */

	if (csPtr->readPtr->unreportedError != 0) {
	    Tcl_SetErrno(csPtr->readPtr->unreportedError);
	    csPtr->readPtr->unreportedError = 0;
	    goto readError;
	}
	if (csPtr->writePtr->unreportedError != 0) {
	    Tcl_SetErrno(csPtr->writePtr->unreportedError);
	    csPtr->writePtr->unreportedError = 0;
	    goto writeError;
	}
	
	/*
	 * Read up to bufSize bytes.
	 */

	if ((csPtr->toRead == -1)
		|| (csPtr->toRead > csPtr->bufSize)) {
	    size = csPtr->bufSize;
	} else {
	    size = csPtr->toRead;
	}
	size = DoRead(csPtr->readPtr, csPtr->buffer, size);

	if (size < 0) {
	    readError:
	    errObj = Tcl_NewObj();
	    Tcl_AppendStringsToObj(errObj, "error reading \"",
		    Tcl_GetChannelName(inChan), "\": ",
		    Tcl_PosixError(interp), (char *) NULL);







>




|
>
>
|
|
|



>
>
>
>








|
|
|


|
|
|







|
<




|







6946
6947
6948
6949
6950
6951
6952
6953
6954
6955
6956
6957
6958
6959
6960
6961
6962
6963
6964
6965
6966
6967
6968
6969
6970
6971
6972
6973
6974
6975
6976
6977
6978
6979
6980
6981
6982
6983
6984
6985
6986
6987
6988
6989
6990
6991
6992
6993
6994

6995
6996
6997
6998
6999
7000
7001
7002
7003
7004
7005
7006
CopyData(csPtr, mask)
    CopyState *csPtr;		/* State of copy operation. */
    int mask;			/* Current channel event flags. */
{
    Tcl_Interp *interp;
    Tcl_Obj *cmdPtr, *errObj = NULL;
    Tcl_Channel inChan, outChan;
    ChannelState *inStatePtr, *outStatePtr;
    int result = TCL_OK;
    int size;
    int total;

    inChan	= (Tcl_Channel) csPtr->readPtr;
    outChan	= (Tcl_Channel) csPtr->writePtr;
    inStatePtr	= csPtr->readPtr->state;
    outStatePtr	= csPtr->writePtr->state;
    interp	= csPtr->interp;
    cmdPtr	= csPtr->cmdPtr;

    /*
     * Copy the data the slow way, using the translation mechanism.
     *
     * Note: We have make sure that we use the topmost channel in a stack
     * for the copying. The caller uses Tcl_GetChannel to access it, and
     * thus gets the bottom of the stack.
     */

    while (csPtr->toRead != 0) {

	/*
	 * Check for unreported background errors.
	 */

	if (inStatePtr->unreportedError != 0) {
	    Tcl_SetErrno(inStatePtr->unreportedError);
	    inStatePtr->unreportedError = 0;
	    goto readError;
	}
	if (outStatePtr->unreportedError != 0) {
	    Tcl_SetErrno(outStatePtr->unreportedError);
	    outStatePtr->unreportedError = 0;
	    goto writeError;
	}
	
	/*
	 * Read up to bufSize bytes.
	 */

	if ((csPtr->toRead == -1) || (csPtr->toRead > csPtr->bufSize)) {

	    size = csPtr->bufSize;
	} else {
	    size = csPtr->toRead;
	}
	size = DoRead(inStatePtr->topChanPtr, csPtr->buffer, size);

	if (size < 0) {
	    readError:
	    errObj = Tcl_NewObj();
	    Tcl_AppendStringsToObj(errObj, "error reading \"",
		    Tcl_GetChannelName(inChan), "\": ",
		    Tcl_PosixError(interp), (char *) NULL);
7598
7599
7600
7601
7602
7603
7604
7605
7606
7607
7608
7609
7610
7611
7612
7613
7614
7615
7616
7617
7618
7619
7620
7621
7622
7623
7624
7625
7626
7627
	    return TCL_OK;
	}

	/*
	 * Now write the buffer out.
	 */

	size = DoWrite(csPtr->writePtr, csPtr->buffer, size);
	if (size < 0) {
	    writeError:
	    errObj = Tcl_NewObj();
	    Tcl_AppendStringsToObj(errObj, "error writing \"",
		    Tcl_GetChannelName(outChan), "\": ",
		    Tcl_PosixError(interp), (char *) NULL);
	    break;
	}

	/*
	 * Check to see if the write is happening in the background.  If so,
	 * stop copying and wait for the channel to become writable again.
	 */

	if (csPtr->writePtr->flags & BG_FLUSH_SCHEDULED) {
	    if (!(mask & TCL_WRITABLE)) {
		if (mask & TCL_READABLE) {
		    Tcl_DeleteChannelHandler(outChan, CopyEventProc,
			    (ClientData) csPtr);
		}
		Tcl_CreateChannelHandler(outChan, TCL_WRITABLE,
			CopyEventProc, (ClientData) csPtr);







|














|







7025
7026
7027
7028
7029
7030
7031
7032
7033
7034
7035
7036
7037
7038
7039
7040
7041
7042
7043
7044
7045
7046
7047
7048
7049
7050
7051
7052
7053
7054
	    return TCL_OK;
	}

	/*
	 * Now write the buffer out.
	 */

	size = DoWrite(outStatePtr->topChanPtr, csPtr->buffer, size);
	if (size < 0) {
	    writeError:
	    errObj = Tcl_NewObj();
	    Tcl_AppendStringsToObj(errObj, "error writing \"",
		    Tcl_GetChannelName(outChan), "\": ",
		    Tcl_PosixError(interp), (char *) NULL);
	    break;
	}

	/*
	 * Check to see if the write is happening in the background.  If so,
	 * stop copying and wait for the channel to become writable again.
	 */

	if (outStatePtr->flags & BG_FLUSH_SCHEDULED) {
	    if (!(mask & TCL_WRITABLE)) {
		if (mask & TCL_READABLE) {
		    Tcl_DeleteChannelHandler(outChan, CopyEventProc,
			    (ClientData) csPtr);
		}
		Tcl_CreateChannelHandler(outChan, TCL_WRITABLE,
			CopyEventProc, (ClientData) csPtr);
7717
7718
7719
7720
7721
7722
7723

7724
7725
7726
7727
7728
7729
7730
7731
7732
7733
7734
7735
7736
7737
7738
7739
7740
7741
7742
7743
7744
7745
7746
7747
7748
7749
7750
7751
7752
7753
7754
7755
7756
7757
7758
7759
7760
7761
7762
7763
7764
7765
7766
7767
7768
7769
7770
7771

static int
DoRead(chanPtr, bufPtr, toRead)
    Channel *chanPtr;		/* The channel from which to read. */
    char *bufPtr;		/* Where to store input read. */
    int toRead;			/* Maximum number of bytes to read. */
{

    int copied;			/* How many characters were copied into
                                 * the result string? */
    int copiedNow;		/* How many characters were copied from
                                 * the current input buffer? */
    int result;			/* Of calling GetInput. */
    
    /*
     * If we have not encountered a sticky EOF, clear the EOF bit. Either
     * way clear the BLOCKED bit. We want to discover these anew during
     * each operation.
     */

    if (!(chanPtr->flags & CHANNEL_STICKY_EOF)) {
        chanPtr->flags &= ~CHANNEL_EOF;
    }
    chanPtr->flags &= ~(CHANNEL_BLOCKED | CHANNEL_NEED_MORE_DATA);
    
    for (copied = 0; copied < toRead; copied += copiedNow) {
        copiedNow = CopyAndTranslateBuffer(chanPtr, bufPtr + copied,
                toRead - copied);
        if (copiedNow == 0) {
            if (chanPtr->flags & CHANNEL_EOF) {
		goto done;
            }
            if (chanPtr->flags & CHANNEL_BLOCKED) {
                if (chanPtr->flags & CHANNEL_NONBLOCKING) {
		    goto done;
                }
                chanPtr->flags &= (~(CHANNEL_BLOCKED));
            }
            result = GetInput(chanPtr);
            if (result != 0) {
                if (result != EAGAIN) {
                    copied = -1;
                }
		goto done;
            }
        }
    }

    chanPtr->flags &= (~(CHANNEL_BLOCKED));

    done:
    /*
     * Update the notifier state so we don't block while there is still
     * data in the buffers.
     */








>





|






|
|

|


|


|


|
|


|











|







7144
7145
7146
7147
7148
7149
7150
7151
7152
7153
7154
7155
7156
7157
7158
7159
7160
7161
7162
7163
7164
7165
7166
7167
7168
7169
7170
7171
7172
7173
7174
7175
7176
7177
7178
7179
7180
7181
7182
7183
7184
7185
7186
7187
7188
7189
7190
7191
7192
7193
7194
7195
7196
7197
7198
7199

static int
DoRead(chanPtr, bufPtr, toRead)
    Channel *chanPtr;		/* The channel from which to read. */
    char *bufPtr;		/* Where to store input read. */
    int toRead;			/* Maximum number of bytes to read. */
{
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    int copied;			/* How many characters were copied into
                                 * the result string? */
    int copiedNow;		/* How many characters were copied from
                                 * the current input buffer? */
    int result;			/* Of calling GetInput. */

    /*
     * If we have not encountered a sticky EOF, clear the EOF bit. Either
     * way clear the BLOCKED bit. We want to discover these anew during
     * each operation.
     */

    if (!(statePtr->flags & CHANNEL_STICKY_EOF)) {
        statePtr->flags &= ~CHANNEL_EOF;
    }
    statePtr->flags &= ~(CHANNEL_BLOCKED | CHANNEL_NEED_MORE_DATA);
    
    for (copied = 0; copied < toRead; copied += copiedNow) {
        copiedNow = CopyAndTranslateBuffer(statePtr, bufPtr + copied,
                toRead - copied);
        if (copiedNow == 0) {
            if (statePtr->flags & CHANNEL_EOF) {
		goto done;
            }
            if (statePtr->flags & CHANNEL_BLOCKED) {
                if (statePtr->flags & CHANNEL_NONBLOCKING) {
		    goto done;
                }
                statePtr->flags &= (~(CHANNEL_BLOCKED));
            }
            result = GetInput(chanPtr);
            if (result != 0) {
                if (result != EAGAIN) {
                    copied = -1;
                }
		goto done;
            }
        }
    }

    statePtr->flags &= (~(CHANNEL_BLOCKED));

    done:
    /*
     * Update the notifier state so we don't block while there is still
     * data in the buffers.
     */

7789
7790
7791
7792
7793
7794
7795
7796
7797
7798
7799
7800
7801

7802
7803
7804
7805
7806
7807
7808
7809
7810
7811
7812
7813
7814
7815
7816
7817
7818
7819
7820
7821
7822
7823
7824
7825
7826
7827
7828
7829
7830
7831
 * Side effects:
 *	Consumes buffered input. May deallocate one buffer.
 *
 *----------------------------------------------------------------------
 */

static int
CopyAndTranslateBuffer(chanPtr, result, space)
    Channel *chanPtr;		/* The channel from which to read input. */
    char *result;		/* Where to store the copied input. */
    int space;			/* How many bytes are available in result
                                 * to store the copied input? */
{

    int bytesInBuffer;		/* How many bytes are available to be
                                 * copied in the current input buffer? */
    int copied;			/* How many characters were already copied
                                 * into the destination space? */
    ChannelBuffer *bufPtr;	/* The buffer from which to copy bytes. */
    int i;			/* Iterates over the copied input looking
                                 * for the input eofChar. */
    
    /*
     * If there is no input at all, return zero. The invariant is that either
     * there is no buffer in the queue, or if the first buffer is empty, it
     * is also the last buffer (and thus there is no input in the queue).
     * Note also that if the buffer is empty, we leave it in the queue.
     */
    
    if (chanPtr->inQueueHead == (ChannelBuffer *) NULL) {
        return 0;
    }
    bufPtr = chanPtr->inQueueHead;
    bytesInBuffer = bufPtr->nextAdded - bufPtr->nextRemoved;

    copied = 0;
    switch (chanPtr->inputTranslation) {
        case TCL_TRANSLATE_LF: {
            if (bytesInBuffer == 0) {
                return 0;
            }

	    /*
             * Copy the current chunk into the result buffer.







|
|




>




<










|


|



|







7217
7218
7219
7220
7221
7222
7223
7224
7225
7226
7227
7228
7229
7230
7231
7232
7233
7234

7235
7236
7237
7238
7239
7240
7241
7242
7243
7244
7245
7246
7247
7248
7249
7250
7251
7252
7253
7254
7255
7256
7257
7258
7259
 * Side effects:
 *	Consumes buffered input. May deallocate one buffer.
 *
 *----------------------------------------------------------------------
 */

static int
CopyAndTranslateBuffer(statePtr, result, space)
    ChannelState *statePtr;	/* Channel state from which to read input. */
    char *result;		/* Where to store the copied input. */
    int space;			/* How many bytes are available in result
                                 * to store the copied input? */
{
    ChannelBuffer *bufPtr;	/* The buffer from which to copy bytes. */
    int bytesInBuffer;		/* How many bytes are available to be
                                 * copied in the current input buffer? */
    int copied;			/* How many characters were already copied
                                 * into the destination space? */

    int i;			/* Iterates over the copied input looking
                                 * for the input eofChar. */
    
    /*
     * If there is no input at all, return zero. The invariant is that either
     * there is no buffer in the queue, or if the first buffer is empty, it
     * is also the last buffer (and thus there is no input in the queue).
     * Note also that if the buffer is empty, we leave it in the queue.
     */
    
    if (statePtr->inQueueHead == (ChannelBuffer *) NULL) {
        return 0;
    }
    bufPtr = statePtr->inQueueHead;
    bytesInBuffer = bufPtr->nextAdded - bufPtr->nextRemoved;

    copied = 0;
    switch (statePtr->inputTranslation) {
        case TCL_TRANSLATE_LF: {
            if (bytesInBuffer == 0) {
                return 0;
            }

	    /*
             * Copy the current chunk into the result buffer.
7874
7875
7876
7877
7878
7879
7880
7881
7882
7883
7884
7885
7886
7887
7888
7889
7890
7891
	    int curByte;
	    
            /*
             * If there is a held-back "\r" at EOF, produce it now.
             */
            
	    if (bytesInBuffer == 0) {
                if ((chanPtr->flags & (INPUT_SAW_CR | CHANNEL_EOF)) ==
                        (INPUT_SAW_CR | CHANNEL_EOF)) {
                    result[0] = '\r';
                    chanPtr->flags &= ~INPUT_SAW_CR;
                    return 1;
                }
                return 0;
            }

            /*
             * Copy the current chunk and replace "\r\n" with "\n"







|


|







7302
7303
7304
7305
7306
7307
7308
7309
7310
7311
7312
7313
7314
7315
7316
7317
7318
7319
	    int curByte;
	    
            /*
             * If there is a held-back "\r" at EOF, produce it now.
             */
            
	    if (bytesInBuffer == 0) {
                if ((statePtr->flags & (INPUT_SAW_CR | CHANNEL_EOF)) ==
                        (INPUT_SAW_CR | CHANNEL_EOF)) {
                    result[0] = '\r';
                    statePtr->flags &= ~INPUT_SAW_CR;
                    return 1;
                }
                return 0;
            }

            /*
             * Copy the current chunk and replace "\r\n" with "\n"
7902
7903
7904
7905
7906
7907
7908
7909
7910
7911
7912
7913
7914
7915
7916
7917
7918
7919
7920
7921
7922
7923
	    copied = space;

	    end = result + copied;
	    dst = result;
	    for (src = result; src < end; src++) {
		curByte = *src;
		if (curByte == '\n') {
                    chanPtr->flags &= ~INPUT_SAW_CR;
		} else if (chanPtr->flags & INPUT_SAW_CR) {
		    chanPtr->flags &= ~INPUT_SAW_CR;
		    *dst = '\r';
		    dst++;
		}
		if (curByte == '\r') {
		    chanPtr->flags |= INPUT_SAW_CR;
		} else {
		    *dst = (char) curByte;
		    dst++;
		}
	    }
	    copied = dst - result;
	    break;







|
|
|




|







7330
7331
7332
7333
7334
7335
7336
7337
7338
7339
7340
7341
7342
7343
7344
7345
7346
7347
7348
7349
7350
7351
	    copied = space;

	    end = result + copied;
	    dst = result;
	    for (src = result; src < end; src++) {
		curByte = *src;
		if (curByte == '\n') {
                    statePtr->flags &= ~INPUT_SAW_CR;
		} else if (statePtr->flags & INPUT_SAW_CR) {
		    statePtr->flags &= ~INPUT_SAW_CR;
		    *dst = '\r';
		    dst++;
		}
		if (curByte == '\r') {
		    statePtr->flags |= INPUT_SAW_CR;
		} else {
		    *dst = (char) curByte;
		    dst++;
		}
	    }
	    copied = dst - result;
	    break;
7945
7946
7947
7948
7949
7950
7951
7952
7953
7954
7955
7956
7957
7958
7959
7960
7961
7962
7963
7964
7965
7966
7967
7968
7969
7970
7971
7972
7973
7974
7975
7976
7977
7978
7979
7980
7981
7982
7983
7984
7985
7986
7987
7988
7989
7990
7991
7992
7993
7994
7995
7996
7997
7998
7999
8000
8001
8002
8003
8004
8005
8006
8007
8008
8009
8010




























































































8011
8012
8013
8014
8015
8016
8017
	    copied = space;

	    end = result + copied;
	    dst = result;
	    for (src = result; src < end; src++) {
		curByte = *src;
		if (curByte == '\r') {
		    chanPtr->flags |= INPUT_SAW_CR;
		    *dst = '\n';
		    dst++;
		} else {
		    if ((curByte != '\n') || 
			    !(chanPtr->flags & INPUT_SAW_CR)) {
			*dst = (char) curByte;
			dst++;
		    }
		    chanPtr->flags &= ~INPUT_SAW_CR;
		}
	    }
	    copied = dst - result;
            break;
	}
        default: {
            panic("unknown eol translation mode");
	}
    }

    /*
     * If an in-stream EOF character is set for this channel, check that
     * the input we copied so far does not contain the EOF char.  If it does,
     * copy only up to and excluding that character.
     */
    
    if (chanPtr->inEofChar != 0) {
        for (i = 0; i < copied; i++) {
            if (result[i] == (char) chanPtr->inEofChar) {
		/*
		 * Set sticky EOF so that no further input is presented
		 * to the caller.
		 */
		
		chanPtr->flags |= (CHANNEL_EOF | CHANNEL_STICKY_EOF);
		chanPtr->inputEncodingFlags |= TCL_ENCODING_END;
		copied = i;
                break;
            }
        }
    }

    /*
     * If the current buffer is empty recycle it.
     */

    if (bufPtr->nextRemoved == bufPtr->nextAdded) {
        chanPtr->inQueueHead = bufPtr->nextPtr;
        if (chanPtr->inQueueHead == (ChannelBuffer *) NULL) {
            chanPtr->inQueueTail = (ChannelBuffer *) NULL;
        }
        RecycleBuffer(chanPtr, bufPtr, 0);
    }

    /*
     * Return the number of characters copied into the result buffer.
     * This may be different from the number of bytes consumed, because
     * of EOL translations.
     */





























































































    return copied;
}

/*
 *----------------------------------------------------------------------
 *







|




|



|
















|

|





|
|











|
|
|

|







>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>
>







7373
7374
7375
7376
7377
7378
7379
7380
7381
7382
7383
7384
7385
7386
7387
7388
7389
7390
7391
7392
7393
7394
7395
7396
7397
7398
7399
7400
7401
7402
7403
7404
7405
7406
7407
7408
7409
7410
7411
7412
7413
7414
7415
7416
7417
7418
7419
7420
7421
7422
7423
7424
7425
7426
7427
7428
7429
7430
7431
7432
7433
7434
7435
7436
7437
7438
7439
7440
7441
7442
7443
7444
7445
7446
7447
7448
7449
7450
7451
7452
7453
7454
7455
7456
7457
7458
7459
7460
7461
7462
7463
7464
7465
7466
7467
7468
7469
7470
7471
7472
7473
7474
7475
7476
7477
7478
7479
7480
7481
7482
7483
7484
7485
7486
7487
7488
7489
7490
7491
7492
7493
7494
7495
7496
7497
7498
7499
7500
7501
7502
7503
7504
7505
7506
7507
7508
7509
7510
7511
7512
7513
7514
7515
7516
7517
7518
7519
7520
7521
7522
7523
7524
7525
7526
7527
7528
7529
7530
7531
7532
7533
7534
7535
7536
7537
	    copied = space;

	    end = result + copied;
	    dst = result;
	    for (src = result; src < end; src++) {
		curByte = *src;
		if (curByte == '\r') {
		    statePtr->flags |= INPUT_SAW_CR;
		    *dst = '\n';
		    dst++;
		} else {
		    if ((curByte != '\n') || 
			    !(statePtr->flags & INPUT_SAW_CR)) {
			*dst = (char) curByte;
			dst++;
		    }
		    statePtr->flags &= ~INPUT_SAW_CR;
		}
	    }
	    copied = dst - result;
            break;
	}
        default: {
            panic("unknown eol translation mode");
	}
    }

    /*
     * If an in-stream EOF character is set for this channel, check that
     * the input we copied so far does not contain the EOF char.  If it does,
     * copy only up to and excluding that character.
     */
    
    if (statePtr->inEofChar != 0) {
        for (i = 0; i < copied; i++) {
            if (result[i] == (char) statePtr->inEofChar) {
		/*
		 * Set sticky EOF so that no further input is presented
		 * to the caller.
		 */
		
		statePtr->flags |= (CHANNEL_EOF | CHANNEL_STICKY_EOF);
		statePtr->inputEncodingFlags |= TCL_ENCODING_END;
		copied = i;
                break;
            }
        }
    }

    /*
     * If the current buffer is empty recycle it.
     */

    if (bufPtr->nextRemoved == bufPtr->nextAdded) {
        statePtr->inQueueHead = bufPtr->nextPtr;
        if (statePtr->inQueueHead == (ChannelBuffer *) NULL) {
            statePtr->inQueueTail = (ChannelBuffer *) NULL;
        }
        RecycleBuffer(statePtr, bufPtr, 0);
    }

    /*
     * Return the number of characters copied into the result buffer.
     * This may be different from the number of bytes consumed, because
     * of EOL translations.
     */

    return copied;
}

/*
 *----------------------------------------------------------------------
 *
 * CopyBuffer --
 *
 *	Copy at most one buffer of input to the result space.
 *
 * Results:
 *	Number of bytes stored in the result buffer.  May return
 *	zero if no input is available.
 *
 * Side effects:
 *	Consumes buffered input. May deallocate one buffer.
 *
 *----------------------------------------------------------------------
 */

static int
CopyBuffer(chanPtr, result, space)
    Channel *chanPtr;		/* Channel from which to read input. */
    char *result;		/* Where to store the copied input. */
    int space;			/* How many bytes are available in result
                                 * to store the copied input? */
{
    ChannelBuffer *bufPtr;	/* The buffer from which to copy bytes. */
    int bytesInBuffer;		/* How many bytes are available to be
                                 * copied in the current input buffer? */
    int copied;			/* How many characters were already copied
                                 * into the destination space? */
    
    /*
     * If there is no input at all, return zero. The invariant is that
     * either there is no buffer in the queue, or if the first buffer
     * is empty, it is also the last buffer (and thus there is no
     * input in the queue).  Note also that if the buffer is empty, we
     * don't leave it in the queue, but recycle it.
     */
    
    if (chanPtr->inQueueHead == (ChannelBuffer *) NULL) {
        return 0;
    }
    bufPtr = chanPtr->inQueueHead;
    bytesInBuffer = bufPtr->nextAdded - bufPtr->nextRemoved;

    copied = 0;

    if (bytesInBuffer == 0) {
        RecycleBuffer(chanPtr->state, bufPtr, 0);
	chanPtr->inQueueHead = (ChannelBuffer*) NULL;
	chanPtr->inQueueTail = (ChannelBuffer*) NULL;
        return 0;
    }

    /*
     * Copy the current chunk into the result buffer.
     */

    if (bytesInBuffer < space) {
        space = bytesInBuffer;
    }

    memcpy((VOID *) result,
	   (VOID *) (bufPtr->buf + bufPtr->nextRemoved),
	   (size_t) space);
    bufPtr->nextRemoved += space;
    copied = space;

    /*
     * We don't care about in-stream EOF characters here as the data
     * read here may still flow through one or more transformations,
     * i.e. is not in its final state yet.
     */

    /*
     * If the current buffer is empty recycle it.
     */

    if (bufPtr->nextRemoved == bufPtr->nextAdded) {
        chanPtr->inQueueHead = bufPtr->nextPtr;
        if (chanPtr->inQueueHead == (ChannelBuffer *) NULL) {
            chanPtr->inQueueTail = (ChannelBuffer *) NULL;
        }
        RecycleBuffer(chanPtr->state, bufPtr, 0);
    }

    /*
     * Return the number of characters copied into the result buffer.
     */

    return copied;
}

/*
 *----------------------------------------------------------------------
 *
8035
8036
8037
8038
8039
8040
8041

8042
8043
8044
8045
8046
8047
8048

static int
DoWrite(chanPtr, src, srcLen)
    Channel *chanPtr;			/* The channel to buffer output for. */
    char *src;				/* Data to write. */
    int srcLen;				/* Number of bytes to write. */
{

    ChannelBuffer *outBufPtr;		/* Current output buffer. */
    int foundNewline;			/* Did we find a newline in output? */
    char *dPtr;
    char *sPtr;				/* Search variables for newline. */
    int crsent;				/* In CRLF eol translation mode,
                                         * remember the fact that a CR was
                                         * output to the channel without







>







7555
7556
7557
7558
7559
7560
7561
7562
7563
7564
7565
7566
7567
7568
7569

static int
DoWrite(chanPtr, src, srcLen)
    Channel *chanPtr;			/* The channel to buffer output for. */
    char *src;				/* Data to write. */
    int srcLen;				/* Number of bytes to write. */
{
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    ChannelBuffer *outBufPtr;		/* Current output buffer. */
    int foundNewline;			/* Did we find a newline in output? */
    char *dPtr;
    char *sPtr;				/* Search variables for newline. */
    int crsent;				/* In CRLF eol translation mode,
                                         * remember the fact that a CR was
                                         * output to the channel without
8074
8075
8076
8077
8078
8079
8080
8081
8082
8083
8084
8085
8086
8087
8088
8089
8090
8091
8092
8093
8094
8095
8096
8097
8098
8099
8100

    while (srcLen > 0) {
        
        /*
         * Make sure there is a current output buffer to accept output.
         */

        if (chanPtr->curOutPtr == (ChannelBuffer *) NULL) {
            chanPtr->curOutPtr = AllocChannelBuffer(chanPtr->bufSize);
        }

        outBufPtr = chanPtr->curOutPtr;

        destCopied = outBufPtr->bufLength - outBufPtr->nextAdded;
        if (destCopied > srcLen) {
            destCopied = srcLen;
        }
        
        destPtr = outBufPtr->buf + outBufPtr->nextAdded;
        switch (chanPtr->outputTranslation) {
            case TCL_TRANSLATE_LF:
                srcCopied = destCopied;
                memcpy((VOID *) destPtr, (VOID *) src, (size_t) destCopied);
                break;
            case TCL_TRANSLATE_CR:
                srcCopied = destCopied;
                memcpy((VOID *) destPtr, (VOID *) src, (size_t) destCopied);







|
|


|







|







7595
7596
7597
7598
7599
7600
7601
7602
7603
7604
7605
7606
7607
7608
7609
7610
7611
7612
7613
7614
7615
7616
7617
7618
7619
7620
7621

    while (srcLen > 0) {
        
        /*
         * Make sure there is a current output buffer to accept output.
         */

        if (statePtr->curOutPtr == (ChannelBuffer *) NULL) {
            statePtr->curOutPtr = AllocChannelBuffer(statePtr->bufSize);
        }

        outBufPtr = statePtr->curOutPtr;

        destCopied = outBufPtr->bufLength - outBufPtr->nextAdded;
        if (destCopied > srcLen) {
            destCopied = srcLen;
        }
        
        destPtr = outBufPtr->buf + outBufPtr->nextAdded;
        switch (statePtr->outputTranslation) {
            case TCL_TRANSLATE_LF:
                srcCopied = destCopied;
                memcpy((VOID *) destPtr, (VOID *) src, (size_t) destCopied);
                break;
            case TCL_TRANSLATE_CR:
                srcCopied = destCopied;
                memcpy((VOID *) destPtr, (VOID *) src, (size_t) destCopied);
8131
8132
8133
8134
8135
8136
8137
8138
8139
8140
8141
8142
8143
8144
8145
8146
8147
8148
8149
8150
8151
8152
8153
8154
8155
8156
8157
8158
8159
8160
8161
8162
8163
8164
8165
8166
8167
8168
8169
        /*
         * The current buffer is ready for output if it is full, or if it
         * contains a newline and this channel is line-buffered, or if it
         * contains any output and this channel is unbuffered.
         */

        outBufPtr->nextAdded += destCopied;
        if (!(chanPtr->flags & BUFFER_READY)) {
            if (outBufPtr->nextAdded == outBufPtr->bufLength) {
                chanPtr->flags |= BUFFER_READY;
            } else if (chanPtr->flags & CHANNEL_LINEBUFFERED) {
                for (sPtr = src, i = 0, foundNewline = 0;
		     (i < srcCopied) && (!foundNewline);
		     i++, sPtr++) {
                    if (*sPtr == '\n') {
                        foundNewline = 1;
                        break;
                    }
                }
                if (foundNewline) {
                    chanPtr->flags |= BUFFER_READY;
                }
            } else if (chanPtr->flags & CHANNEL_UNBUFFERED) {
                chanPtr->flags |= BUFFER_READY;
            }
        }
        
        totalDestCopied += srcCopied;
        src += srcCopied;
        srcLen -= srcCopied;

        if (chanPtr->flags & BUFFER_READY) {
            if (FlushChannel(NULL, chanPtr, 0) != 0) {
                return -1;
            }
        }
    } /* Closes "while" */

    return totalDestCopied;







|

|
|









|

|
|







|







7652
7653
7654
7655
7656
7657
7658
7659
7660
7661
7662
7663
7664
7665
7666
7667
7668
7669
7670
7671
7672
7673
7674
7675
7676
7677
7678
7679
7680
7681
7682
7683
7684
7685
7686
7687
7688
7689
7690
        /*
         * The current buffer is ready for output if it is full, or if it
         * contains a newline and this channel is line-buffered, or if it
         * contains any output and this channel is unbuffered.
         */

        outBufPtr->nextAdded += destCopied;
        if (!(statePtr->flags & BUFFER_READY)) {
            if (outBufPtr->nextAdded == outBufPtr->bufLength) {
                statePtr->flags |= BUFFER_READY;
            } else if (statePtr->flags & CHANNEL_LINEBUFFERED) {
                for (sPtr = src, i = 0, foundNewline = 0;
		     (i < srcCopied) && (!foundNewline);
		     i++, sPtr++) {
                    if (*sPtr == '\n') {
                        foundNewline = 1;
                        break;
                    }
                }
                if (foundNewline) {
                    statePtr->flags |= BUFFER_READY;
                }
            } else if (statePtr->flags & CHANNEL_UNBUFFERED) {
                statePtr->flags |= BUFFER_READY;
            }
        }
        
        totalDestCopied += srcCopied;
        src += srcCopied;
        srcLen -= srcCopied;

        if (statePtr->flags & BUFFER_READY) {
            if (FlushChannel(NULL, chanPtr, 0) != 0) {
                return -1;
            }
        }
    } /* Closes "while" */

    return totalDestCopied;
8212
8213
8214
8215
8216
8217
8218

8219
8220
8221
8222
8223
8224



8225
8226
8227
8228
8229
8230
8231
8232
8233
8234
8235
8236
8237
8238
8239
8240
8241
8242
8243
8244
8245
8246
8247
8248
8249
8250
8251
8252
8253
8254
8255
8256
8257














































8258
8259
8260
8261
8262
8263
8264
 *----------------------------------------------------------------------
 */

static void
StopCopy(csPtr)
    CopyState *csPtr;		/* State for bg copy to stop . */
{

    int nonBlocking;

    if (!csPtr) {
	return;
    }




    /*
     * Restore the old blocking mode and output buffering mode.
     */

    nonBlocking = (csPtr->readFlags & CHANNEL_NONBLOCKING);
    if (nonBlocking != (csPtr->readPtr->flags & CHANNEL_NONBLOCKING)) {
	SetBlockMode(NULL, csPtr->readPtr,
		nonBlocking ? TCL_MODE_NONBLOCKING : TCL_MODE_BLOCKING);
    }
    if (csPtr->writePtr != csPtr->writePtr) {
	if (nonBlocking != (csPtr->writePtr->flags & CHANNEL_NONBLOCKING)) {
	    SetBlockMode(NULL, csPtr->writePtr,
		    nonBlocking ? TCL_MODE_NONBLOCKING : TCL_MODE_BLOCKING);
	}
    }
    csPtr->writePtr->flags &= ~(CHANNEL_LINEBUFFERED | CHANNEL_UNBUFFERED);
    csPtr->writePtr->flags |=
	csPtr->writeFlags & (CHANNEL_LINEBUFFERED | CHANNEL_UNBUFFERED);
	    

    if (csPtr->cmdPtr) {
	Tcl_DeleteChannelHandler((Tcl_Channel)csPtr->readPtr, CopyEventProc,
		(ClientData)csPtr);
	if (csPtr->readPtr != csPtr->writePtr) {
	    Tcl_DeleteChannelHandler((Tcl_Channel)csPtr->writePtr,
		    CopyEventProc, (ClientData)csPtr);
	}
        Tcl_DecrRefCount(csPtr->cmdPtr);
    }
    csPtr->readPtr->csPtr = NULL;
    csPtr->writePtr->csPtr = NULL;
    ckfree((char*) csPtr);
}















































/*
 *----------------------------------------------------------------------
 *
 * SetBlockMode --
 *
 *	This function sets the blocking mode for a channel and updates







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 *----------------------------------------------------------------------
 */

static void
StopCopy(csPtr)
    CopyState *csPtr;		/* State for bg copy to stop . */
{
    ChannelState *inStatePtr, *outStatePtr;
    int nonBlocking;

    if (!csPtr) {
	return;
    }

    inStatePtr	= csPtr->readPtr->state;
    outStatePtr	= csPtr->writePtr->state;

    /*
     * Restore the old blocking mode and output buffering mode.
     */

    nonBlocking = (csPtr->readFlags & CHANNEL_NONBLOCKING);
    if (nonBlocking != (inStatePtr->flags & CHANNEL_NONBLOCKING)) {
	SetBlockMode(NULL, csPtr->readPtr,
		nonBlocking ? TCL_MODE_NONBLOCKING : TCL_MODE_BLOCKING);
    }
    if (csPtr->readPtr != csPtr->writePtr) {
	if (nonBlocking != (outStatePtr->flags & CHANNEL_NONBLOCKING)) {
	    SetBlockMode(NULL, csPtr->writePtr,
		    nonBlocking ? TCL_MODE_NONBLOCKING : TCL_MODE_BLOCKING);
	}
    }
    outStatePtr->flags &= ~(CHANNEL_LINEBUFFERED | CHANNEL_UNBUFFERED);
    outStatePtr->flags |=
	csPtr->writeFlags & (CHANNEL_LINEBUFFERED | CHANNEL_UNBUFFERED);


    if (csPtr->cmdPtr) {
	Tcl_DeleteChannelHandler((Tcl_Channel)csPtr->readPtr, CopyEventProc,
		(ClientData)csPtr);
	if (csPtr->readPtr != csPtr->writePtr) {
	    Tcl_DeleteChannelHandler((Tcl_Channel)csPtr->writePtr,
		    CopyEventProc, (ClientData)csPtr);
	}
        Tcl_DecrRefCount(csPtr->cmdPtr);
    }
    inStatePtr->csPtr  = NULL;
    outStatePtr->csPtr = NULL;
    ckfree((char*) csPtr);
}

/*
 *----------------------------------------------------------------------
 *
 * StackSetBlockMode --
 *
 *	This function sets the blocking mode for a channel, iterating
 *	through each channel in a stack and updates the state flags.
 *
 * Results:
 *	0 if OK, result code from failed blockModeProc otherwise.
 *
 * Side effects:
 *	Modifies the blocking mode of the channel and possibly generates
 *	an error.
 *
 *----------------------------------------------------------------------
 */

static int
StackSetBlockMode(chanPtr, mode)
    Channel *chanPtr;		/* Channel to modify. */
    int mode;			/* One of TCL_MODE_BLOCKING or
				 * TCL_MODE_NONBLOCKING. */
{
    int result = 0;
    Tcl_DriverBlockModeProc *blockModeProc;

    /*
     * Start at the top of the channel stack
     */

    chanPtr = chanPtr->state->topChanPtr;
    while (chanPtr != (Channel *) NULL) {
	blockModeProc = Tcl_ChannelBlockModeProc(chanPtr->typePtr);
	if (blockModeProc != NULL) {
	    result = (*blockModeProc) (chanPtr->instanceData, mode);
	    if (result != 0) {
		Tcl_SetErrno(result);
		return result;
	    }
	}
	chanPtr = chanPtr->downChanPtr;
    }
    return 0;
}

/*
 *----------------------------------------------------------------------
 *
 * SetBlockMode --
 *
 *	This function sets the blocking mode for a channel and updates
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static int
SetBlockMode(interp, chanPtr, mode)
    Tcl_Interp *interp;		/* Interp for error reporting. */
    Channel *chanPtr;		/* Channel to modify. */
    int mode;			/* One of TCL_MODE_BLOCKING or
				 * TCL_MODE_NONBLOCKING. */
{

    int result = 0;
    if (chanPtr->typePtr->blockModeProc != NULL) {
	result = (chanPtr->typePtr->blockModeProc) (chanPtr->instanceData,
		mode);
    }

    if (result != 0) {
	Tcl_SetErrno(result);
	if (interp != (Tcl_Interp *) NULL) {
	    Tcl_AppendResult(interp, "error setting blocking mode: ",
		    Tcl_PosixError(interp), (char *) NULL);
	}
	return TCL_ERROR;
    }
    if (mode == TCL_MODE_BLOCKING) {
	chanPtr->flags &= (~(CHANNEL_NONBLOCKING | BG_FLUSH_SCHEDULED));
    } else {
	chanPtr->flags |= CHANNEL_NONBLOCKING;
    }
    return TCL_OK;
}

/*
 *----------------------------------------------------------------------
 *







>

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static int
SetBlockMode(interp, chanPtr, mode)
    Tcl_Interp *interp;		/* Interp for error reporting. */
    Channel *chanPtr;		/* Channel to modify. */
    int mode;			/* One of TCL_MODE_BLOCKING or
				 * TCL_MODE_NONBLOCKING. */
{
    ChannelState *statePtr = chanPtr->state;	/* state info for channel */
    int result = 0;




    result = StackSetBlockMode(chanPtr, mode);
    if (result != 0) {

	if (interp != (Tcl_Interp *) NULL) {
	    Tcl_AppendResult(interp, "error setting blocking mode: ",
		    Tcl_PosixError(interp), (char *) NULL);
	}
	return TCL_ERROR;
    }
    if (mode == TCL_MODE_BLOCKING) {
	statePtr->flags &= (~(CHANNEL_NONBLOCKING | BG_FLUSH_SCHEDULED));
    } else {
	statePtr->flags |= CHANNEL_NONBLOCKING;
    }
    return TCL_OK;
}

/*
 *----------------------------------------------------------------------
 *
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 */

int
Tcl_GetChannelNamesEx(interp, pattern)
    Tcl_Interp *interp;		/* Interp for error reporting. */
    char *pattern;		/* pattern to filter on. */
{
    Channel *chanPtr;
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);
    char *name;
    Tcl_Obj *resultPtr;

    resultPtr = Tcl_GetObjResult(interp);
    for (chanPtr = tsdPtr->firstChanPtr;
	 chanPtr != NULL;
	 chanPtr = chanPtr->nextChanPtr) {
        if (chanPtr == (Channel *) tsdPtr->stdinChannel) {
	    name = "stdin";
	} else if (chanPtr == (Channel *) tsdPtr->stdoutChannel) {
	    name = "stdout";
	} else if (chanPtr == (Channel *) tsdPtr->stderrChannel) {
	    name = "stderr";
	} else {
	    name = chanPtr->channelName;
	}
	if (((pattern == NULL) || Tcl_StringMatch(name, pattern)) &&
		(Tcl_ListObjAppendElement(interp, resultPtr,
			Tcl_NewStringObj(name, -1)) != TCL_OK)) {
	    return TCL_ERROR;
	}
    }
    return TCL_OK;
}







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 */

int
Tcl_GetChannelNamesEx(interp, pattern)
    Tcl_Interp *interp;		/* Interp for error reporting. */
    char *pattern;		/* pattern to filter on. */
{
    ChannelState *statePtr;
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);
    char *name;
    Tcl_Obj *resultPtr;

    resultPtr = Tcl_GetObjResult(interp);
    for (statePtr = tsdPtr->firstCSPtr;
	 statePtr != NULL;
	 statePtr = statePtr->nextCSPtr) {
        if (statePtr->topChanPtr == (Channel *) tsdPtr->stdinChannel) {
	    name = "stdin";
	} else if (statePtr->topChanPtr == (Channel *) tsdPtr->stdoutChannel) {
	    name = "stdout";
	} else if (statePtr->topChanPtr == (Channel *) tsdPtr->stderrChannel) {
	    name = "stderr";
	} else {
	    name = statePtr->channelName;
	}
	if (((pattern == NULL) || Tcl_StringMatch(name, pattern)) &&
		(Tcl_ListObjAppendElement(interp, resultPtr,
			Tcl_NewStringObj(name, -1)) != TCL_OK)) {
	    return TCL_ERROR;
	}
    }
    return TCL_OK;
}
Added generic/tclIO.h.






















































































































































































































































































































































































































































































































































































































































































































































































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/* 
 * tclIO.h --
 *
 *	This file provides the generic portions (those that are the same on
 *	all platforms and for all channel types) of Tcl's IO facilities.
 *
 * Copyright (c) 1998-2000 Ajuba Solutions
 * Copyright (c) 1995-1997 Sun Microsystems, Inc.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclIO.h,v 1.1.2.2 2000/07/25 16:54:52 kupries Exp $
 */

/*
 * Make sure that both EAGAIN and EWOULDBLOCK are defined. This does not
 * compile on systems where neither is defined. We want both defined so
 * that we can test safely for both. In the code we still have to test for
 * both because there may be systems on which both are defined and have
 * different values.
 */

#if ((!defined(EWOULDBLOCK)) && (defined(EAGAIN)))
#   define EWOULDBLOCK EAGAIN
#endif
#if ((!defined(EAGAIN)) && (defined(EWOULDBLOCK)))
#   define EAGAIN EWOULDBLOCK
#endif
#if ((!defined(EAGAIN)) && (!defined(EWOULDBLOCK)))
error one of EWOULDBLOCK or EAGAIN must be defined
#endif

/*
 * The following structure encapsulates the state for a background channel
 * copy.  Note that the data buffer for the copy will be appended to this
 * structure.
 */

typedef struct CopyState {
    struct Channel *readPtr;	/* Pointer to input channel. */
    struct Channel *writePtr;	/* Pointer to output channel. */
    int readFlags;		/* Original read channel flags. */
    int writeFlags;		/* Original write channel flags. */
    int toRead;			/* Number of bytes to copy, or -1. */
    int total;			/* Total bytes transferred (written). */
    Tcl_Interp *interp;		/* Interp that started the copy. */
    Tcl_Obj *cmdPtr;		/* Command to be invoked at completion. */
    int bufSize;		/* Size of appended buffer. */
    char buffer[1];		/* Copy buffer, this must be the last
				 * field. */
} CopyState;

/*
 * struct ChannelBuffer:
 *
 * Buffers data being sent to or from a channel.
 */

typedef struct ChannelBuffer {
    int nextAdded;		/* The next position into which a character
                                 * will be put in the buffer. */
    int nextRemoved;		/* Position of next byte to be removed
                                 * from the buffer. */
    int bufLength;		/* How big is the buffer? */
    struct ChannelBuffer *nextPtr;
    				/* Next buffer in chain. */
    char buf[4];		/* Placeholder for real buffer. The real
                                 * buffer occuppies this space + bufSize-4
                                 * bytes. This must be the last field in
                                 * the structure. */
} ChannelBuffer;

#define CHANNELBUFFER_HEADER_SIZE	(sizeof(ChannelBuffer) - 4)

/*
 * How much extra space to allocate in buffer to hold bytes from previous
 * buffer (when converting to UTF-8) or to hold bytes that will go to
 * next buffer (when converting from UTF-8).
 */
 
#define BUFFER_PADDING	    16
 
/*
 * The following defines the *default* buffer size for channels.
 */

#define CHANNELBUFFER_DEFAULT_SIZE	(1024 * 4)

/*
 * Structure to record a close callback. One such record exists for
 * each close callback registered for a channel.
 */

typedef struct CloseCallback {
    Tcl_CloseProc *proc;		/* The procedure to call. */
    ClientData clientData;		/* Arbitrary one-word data to pass
					 * to the callback. */
    struct CloseCallback *nextPtr;	/* For chaining close callbacks. */
} CloseCallback;

/*
 * The following structure describes the information saved from a call to
 * "fileevent". This is used later when the event being waited for to
 * invoke the saved script in the interpreter designed in this record.
 */

typedef struct EventScriptRecord {
    struct Channel *chanPtr;	/* The channel for which this script is
				 * registered. This is used only when an
				 * error occurs during evaluation of the
				 * script, to delete the handler. */
    Tcl_Obj *scriptPtr;		/* Script to invoke. */
    Tcl_Interp *interp;		/* In what interpreter to invoke script? */
    int mask;			/* Events must overlap current mask for the
				 * stored script to be invoked. */
    struct EventScriptRecord *nextPtr;
				/* Next in chain of records. */
} EventScriptRecord;

/*
 * struct Channel:
 *
 * One of these structures is allocated for each open channel. It contains data
 * specific to the channel but which belongs to the generic part of the Tcl
 * channel mechanism, and it points at an instance specific (and type
 * specific) * instance data, and at a channel type structure.
 */

typedef struct Channel {
    struct ChannelState *state; /* Split out state information */

    ClientData instanceData;	/* Instance-specific data provided by
				 * creator of channel. */
    Tcl_ChannelType *typePtr;	/* Pointer to channel type structure. */

    struct Channel *downChanPtr;/* Refers to channel this one was stacked
				 * upon.  This reference is NULL for normal
				 * channels.  See Tcl_StackChannel. */
    struct Channel *upChanPtr;	/* Refers to the channel above stacked this
				 * one. NULL for the top most channel. */

    /*
     * Intermediate buffers to hold pre-read data for consumption by a
     * newly stacked transformation. See 'Tcl_StackChannel'.
     */
    ChannelBuffer *inQueueHead;	/* Points at first buffer in input queue. */
    ChannelBuffer *inQueueTail;	/* Points at last buffer in input queue. */
} Channel;

/*
 * struct ChannelState:
 *
 * One of these structures is allocated for each open channel. It contains data
 * specific to the channel but which belongs to the generic part of the Tcl
 * channel mechanism, and it points at an instance specific (and type
 * specific) * instance data, and at a channel type structure.
 */

typedef struct ChannelState {
    char *channelName;		/* The name of the channel instance in Tcl
				 * commands. Storage is owned by the generic IO
				 * code, is dynamically allocated. */
    int	flags;			/* ORed combination of the flags defined
				 * below. */
    Tcl_Encoding encoding;	/* Encoding to apply when reading or writing
				 * data on this channel.  NULL means no
				 * encoding is applied to data. */
    Tcl_EncodingState inputEncodingState;
				/* Current encoding state, used when converting
				 * input data bytes to UTF-8. */
    int inputEncodingFlags;	/* Encoding flags to pass to conversion
				 * routine when converting input data bytes to
				 * UTF-8.  May be TCL_ENCODING_START before
				 * converting first byte and TCL_ENCODING_END
				 * when EOF is seen. */
    Tcl_EncodingState outputEncodingState;
				/* Current encoding state, used when converting
				 * UTF-8 to output data bytes. */
    int outputEncodingFlags;	/* Encoding flags to pass to conversion
				 * routine when converting UTF-8 to output
				 * data bytes.  May be TCL_ENCODING_START
				 * before converting first byte and
				 * TCL_ENCODING_END when EOF is seen. */
    Tcl_EolTranslation inputTranslation;
				/* What translation to apply for end of line
				 * sequences on input? */    
    Tcl_EolTranslation outputTranslation;
				/* What translation to use for generating
				 * end of line sequences in output? */
    int inEofChar;		/* If nonzero, use this as a signal of EOF
				 * on input. */
    int outEofChar;             /* If nonzero, append this to the channel
				 * when it is closed if it is open for
				 * writing. */
    int unreportedError;	/* Non-zero if an error report was deferred
				 * because it happened in the background. The
				 * value is the POSIX error code. */
    int refCount;		/* How many interpreters hold references to
				 * this IO channel? */

    CloseCallback *closeCbPtr;	/* Callbacks registered to be called when the
				 * channel is closed. */
    char *outputStage;		/* Temporary staging buffer used when
				 * translating EOL before converting from
				 * UTF-8 to external form. */
    ChannelBuffer *curOutPtr;	/* Current output buffer being filled. */
    ChannelBuffer *outQueueHead;/* Points at first buffer in output queue. */
    ChannelBuffer *outQueueTail;/* Points at last buffer in output queue. */

    ChannelBuffer *saveInBufPtr;/* Buffer saved for input queue - eliminates
				 * need to allocate a new buffer for "gets"
				 * that crosses buffer boundaries. */
    ChannelBuffer *inQueueHead;	/* Points at first buffer in input queue. */
    ChannelBuffer *inQueueTail;	/* Points at last buffer in input queue. */

    struct ChannelHandler *chPtr;/* List of channel handlers registered
				  * for this channel. */
    int interestMask;		/* Mask of all events this channel has
				 * handlers for. */
    EventScriptRecord *scriptRecordPtr;
				/* Chain of all scripts registered for
				 * event handlers ("fileevent") on this
				 * channel. */

    int bufSize;		/* What size buffers to allocate? */
    Tcl_TimerToken timer;	/* Handle to wakeup timer for this channel. */
    CopyState *csPtr;		/* State of background copy, or NULL. */
    Channel *topChanPtr;	/* Refers to topmost channel in a stack.
				 * Never NULL. */
    Channel *bottomChanPtr;	/* Refers to bottommost channel in a stack.
				 * This channel can be relied on to live as
				 * long as the channel state. Never NULL. */
    struct ChannelState *nextCSPtr;
				/* Next in list of channels currently open. */
} ChannelState;
    
/*
 * Values for the flags field in Channel. Any ORed combination of the
 * following flags can be stored in the field. These flags record various
 * options and state bits about the channel. In addition to the flags below,
 * the channel can also have TCL_READABLE (1<<1) and TCL_WRITABLE (1<<2) set.
 */

#define CHANNEL_NONBLOCKING	(1<<3)	/* Channel is currently in
					 * nonblocking mode. */
#define CHANNEL_LINEBUFFERED	(1<<4)	/* Output to the channel must be
					 * flushed after every newline. */
#define CHANNEL_UNBUFFERED	(1<<5)	/* Output to the channel must always
					 * be flushed immediately. */
#define BUFFER_READY		(1<<6)	/* Current output buffer (the
					 * curOutPtr field in the
                                         * channel structure) should be
                                         * output as soon as possible even
                                         * though it may not be full. */
#define BG_FLUSH_SCHEDULED	(1<<7)	/* A background flush of the
					 * queued output buffers has been
                                         * scheduled. */
#define CHANNEL_CLOSED		(1<<8)	/* Channel has been closed. No
					 * further Tcl-level IO on the
                                         * channel is allowed. */
#define CHANNEL_EOF		(1<<9)	/* EOF occurred on this channel.
					 * This bit is cleared before every
                                         * input operation. */
#define CHANNEL_STICKY_EOF	(1<<10)	/* EOF occurred on this channel because
					 * we saw the input eofChar. This bit
                                         * prevents clearing of the EOF bit
                                         * before every input operation. */
#define CHANNEL_BLOCKED		(1<<11)	/* EWOULDBLOCK or EAGAIN occurred
					 * on this channel. This bit is
					 * cleared before every input or
					 * output operation. */
#define INPUT_SAW_CR		(1<<12)	/* Channel is in CRLF eol input
					 * translation mode and the last
                                         * byte seen was a "\r". */
#define INPUT_NEED_NL		(1<<15)	/* Saw a '\r' at end of last buffer,
					 * and there should be a '\n' at
					 * beginning of next buffer. */
#define CHANNEL_DEAD		(1<<13)	/* The channel has been closed by
					 * the exit handler (on exit) but
                                         * not deallocated. When any IO
                                         * operation sees this flag on a
                                         * channel, it does not call driver
                                         * level functions to avoid referring
                                         * to deallocated data. */
#define CHANNEL_NEED_MORE_DATA	(1<<14)	/* The last input operation failed
					 * because there was not enough data
					 * to complete the operation.  This
					 * flag is set when gets fails to
					 * get a complete line or when read
					 * fails to get a complete character.
					 * When set, file events will not be
					 * delivered for buffered data until
					 * the state of the channel changes. */
#define CHANNEL_RAW_MODE	(1<<16)	/* When set, notes that the Raw API is
					 * being used. */

/*
 * For each channel handler registered in a call to Tcl_CreateChannelHandler,
 * there is one record of the following type. All of records for a specific
 * channel are chained together in a singly linked list which is stored in
 * the channel structure.
 */

typedef struct ChannelHandler {
    Channel *chanPtr;		/* The channel structure for this channel. */
    int mask;			/* Mask of desired events. */
    Tcl_ChannelProc *proc;	/* Procedure to call in the type of
                                 * Tcl_CreateChannelHandler. */
    ClientData clientData;	/* Argument to pass to procedure. */
    struct ChannelHandler *nextPtr;
    				/* Next one in list of registered handlers. */
} ChannelHandler;

/*
 * This structure keeps track of the current ChannelHandler being invoked in
 * the current invocation of ChannelHandlerEventProc. There is a potential
 * problem if a ChannelHandler is deleted while it is the current one, since
 * ChannelHandlerEventProc needs to look at the nextPtr field. To handle this
 * problem, structures of the type below indicate the next handler to be
 * processed for any (recursively nested) dispatches in progress. The
 * nextHandlerPtr field is updated if the handler being pointed to is deleted.
 * The nextPtr field is used to chain together all recursive invocations, so
 * that Tcl_DeleteChannelHandler can find all the recursively nested
 * invocations of ChannelHandlerEventProc and compare the handler being
 * deleted against the NEXT handler to be invoked in that invocation; when it
 * finds such a situation, Tcl_DeleteChannelHandler updates the nextHandlerPtr
 * field of the structure to the next handler.
 */

typedef struct NextChannelHandler {
    ChannelHandler *nextHandlerPtr;	/* The next handler to be invoked in
                                         * this invocation. */
    struct NextChannelHandler *nestedHandlerPtr;
    /* Next nested invocation of
     * ChannelHandlerEventProc. */
} NextChannelHandler;


/*
 * The following structure describes the event that is added to the Tcl
 * event queue by the channel handler check procedure.
 */

typedef struct ChannelHandlerEvent {
    Tcl_Event header;		/* Standard header for all events. */
    Channel *chanPtr;		/* The channel that is ready. */
    int readyMask;		/* Events that have occurred. */
} ChannelHandlerEvent;

/*
 * The following structure is used by Tcl_GetsObj() to encapsulates the
 * state for a "gets" operation.
 */
 
typedef struct GetsState {
    Tcl_Obj *objPtr;		/* The object to which UTF-8 characters
				 * will be appended. */
    char **dstPtr;		/* Pointer into objPtr's string rep where
				 * next character should be stored. */
    Tcl_Encoding encoding;	/* The encoding to use to convert raw bytes
				 * to UTF-8.  */
    ChannelBuffer *bufPtr;	/* The current buffer of raw bytes being
				 * emptied. */
    Tcl_EncodingState state;	/* The encoding state just before the last
				 * external to UTF-8 conversion in
				 * FilterInputBytes(). */
    int rawRead;		/* The number of bytes removed from bufPtr
				 * in the last call to FilterInputBytes(). */
    int bytesWrote;		/* The number of bytes of UTF-8 data
				 * appended to objPtr during the last call to
				 * FilterInputBytes(). */
    int charsWrote;		/* The corresponding number of UTF-8
				 * characters appended to objPtr during the
				 * last call to FilterInputBytes(). */
    int totalChars;		/* The total number of UTF-8 characters
				 * appended to objPtr so far, just before the
				 * last call to FilterInputBytes(). */
} GetsState;
Added generic/tclIOGT.c.


































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































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/*
 * tclIOGT.c --
 *
 *	Implements a generic transformation exposing the underlying API
 *	at the script level.  Contributed by Andreas Kupries.
 *
 * Copyright (c) 2000 Ajuba Solutions
 * Copyright (c) 1999-2000 Andreas Kupries (a.kupries@westend.com)
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * CVS: $Id: tclIOGT.c,v 1.1.2.1 2000/07/17 22:59:40 hobbs Exp $
 */

#include "tclInt.h"
#include "tclPort.h"
#include "tclIO.h"


/*
 * Forward declarations of internal procedures.
 * First the driver procedures of the transformation.
 */

static int		TransformBlockModeProc _ANSI_ARGS_ ((
				ClientData instanceData, int mode));
static int		TransformCloseProc _ANSI_ARGS_ ((
				ClientData instanceData, Tcl_Interp* interp));
static int		TransformInputProc _ANSI_ARGS_ ((
				ClientData instanceData,
				char* buf, int toRead, int* errorCodePtr));
static int		TransformOutputProc _ANSI_ARGS_ ((
				ClientData instanceData,
				char*  buf, int toWrite, int* errorCodePtr));
static int		TransformSeekProc _ANSI_ARGS_ ((
				ClientData instanceData, long offset,
				int mode, int* errorCodePtr));
static int		TransformSetOptionProc _ANSI_ARGS_((
				ClientData instanceData, Tcl_Interp *interp,
				char *optionName, char *value));
static int		TransformGetOptionProc _ANSI_ARGS_((
				ClientData instanceData, Tcl_Interp *interp,
				char *optionName, Tcl_DString *dsPtr));
static void		TransformWatchProc _ANSI_ARGS_ ((
				ClientData instanceData, int mask));
static int		TransformGetFileHandleProc _ANSI_ARGS_ ((
				ClientData instanceData, int direction,
				ClientData* handlePtr));
static int		TransformNotifyProc _ANSI_ARGS_ ((
				ClientData instanceData, int mask));

/*
 * Forward declarations of internal procedures.
 * Secondly the procedures for handling and generating fileeevents.
 */

static void		TransformChannelHandlerTimer _ANSI_ARGS_ ((
				ClientData clientData));

/*
 * Forward declarations of internal procedures.
 * Third, helper procedures encapsulating essential tasks.
 */

typedef struct TransformChannelData TransformChannelData;

static int		ExecuteCallback _ANSI_ARGS_ ((
				TransformChannelData* ctrl, Tcl_Interp* interp,
				unsigned char* op, unsigned char* buf,
				int bufLen, int transmit, int preserve));

/*
 * Action codes to give to 'ExecuteCallback' (argument 'transmit')
 * confering to the procedure what to do with the result of the script
 * it calls.
 */

#define TRANSMIT_DONT  (0) /* No transfer to do */
#define TRANSMIT_DOWN  (1) /* Transfer to the underlying channel */
#define TRANSMIT_SELF  (2) /* Transfer into our channel. */
#define TRANSMIT_IBUF  (3) /* Transfer to internal input buffer */
#define TRANSMIT_NUM   (4) /* Transfer number to 'maxRead' */

/*
 * Codes for 'preserve' of 'ExecuteCallback'
 */

#define P_PRESERVE    (1)
#define P_NO_PRESERVE (0)

/*
 * Strings for the action codes delivered to the script implementing
 * a transformation. Argument 'op' of 'ExecuteCallback'.
 */

#define A_CREATE_WRITE	(UCHARP ("create/write"))
#define A_DELETE_WRITE	(UCHARP ("delete/write"))
#define A_FLUSH_WRITE	(UCHARP ("flush/write"))
#define A_WRITE		(UCHARP ("write"))

#define A_CREATE_READ	(UCHARP ("create/read"))
#define A_DELETE_READ	(UCHARP ("delete/read"))
#define A_FLUSH_READ	(UCHARP ("flush/read"))
#define A_READ		(UCHARP ("read"))

#define A_QUERY_MAXREAD (UCHARP ("query/maxRead"))
#define A_CLEAR_READ	(UCHARP ("clear/read"))

/*
 * Management of a simple buffer.
 */

typedef struct ResultBuffer ResultBuffer;

static void		ResultClear  _ANSI_ARGS_ ((ResultBuffer* r));
static void		ResultInit   _ANSI_ARGS_ ((ResultBuffer* r));
static int		ResultLength _ANSI_ARGS_ ((ResultBuffer* r));
static int		ResultCopy   _ANSI_ARGS_ ((ResultBuffer* r,
				unsigned char* buf, int toRead));
static void		ResultAdd    _ANSI_ARGS_ ((ResultBuffer* r,
				unsigned char* buf, int toWrite));

/*
 * This structure describes the channel type structure for tcl based
 * transformations.
 */

static Tcl_ChannelType transformChannelType = {
    "transform",			/* Type name. */
    TCL_CHANNEL_VERSION_2,
    TransformCloseProc,			/* Close proc. */
    TransformInputProc,			/* Input proc. */
    TransformOutputProc,		/* Output proc. */
    TransformSeekProc,			/* Seek proc. */
    TransformSetOptionProc,		/* Set option proc. */
    TransformGetOptionProc,		/* Get option proc. */
    TransformWatchProc,			/* Initialize notifier. */
    TransformGetFileHandleProc,		/* Get OS handles out of channel. */
    NULL,				/* close2proc */
    TransformBlockModeProc,		/* Set blocking/nonblocking mode.*/
    NULL,				/* Flush proc. */
    TransformNotifyProc,                /* Handling of events bubbling up */
};

/*
 * Possible values for 'flags' field in control structure, see below.
 */

#define CHANNEL_ASYNC		(1<<0) /* non-blocking mode */

/*
 * Definition of the structure containing the information about the
 * internal input buffer.
 */

struct ResultBuffer {
    unsigned char* buf;       /* Reference to the buffer area */
    int            allocated; /* Allocated size of the buffer area */
    int            used;      /* Number of bytes in the buffer, <= allocated */
};

/*
 * Additional bytes to allocate during buffer expansion
 */

#define INCREMENT (512)

/*
 * Number of milliseconds to wait before firing an event to flush
 * out information waiting in buffers (fileevent support).
 */

#define DELAY (5)

/*
 * Convenience macro to make some casts easier to use.
 */

#define UCHARP(x) ((unsigned char*) (x))
#define NO_INTERP ((Tcl_Interp*) NULL)

/*
 * Definition of a structure used by all transformations generated here to
 * maintain their local state.
 */

struct TransformChannelData {

    /*
     * General section. Data to integrate the transformation into the channel
     * system.
     */

    Tcl_Channel self;     /* Our own Channel handle */
    int readIsFlushed;    /* Flag to note wether in.flushProc was called or not
			   */
    int flags;            /* Currently CHANNEL_ASYNC or zero */
    int watchMask;        /* Current watch/event/interest mask */
    int mode;             /* mode of parent channel, OR'ed combination of
			   * TCL_READABLE, TCL_WRITABLE */
    Tcl_TimerToken timer; /* Timer for automatic flushing of information
			   * sitting in an internal buffer. Required for full
			   * fileevent support */
    /*
     * Transformation specific data.
     */

    int maxRead;            /* Maximum allowed number of bytes to read, as
			     * given to us by the tcl script implementing the
			     * transformation. */
    Tcl_Interp*    interp;  /* Reference to the interpreter which created the
			     * transformation. Used to execute the code
			     * below. */
    Tcl_Obj*       command; /* Tcl code to execute for a buffer */
    ResultBuffer   result;  /* Internal buffer used to store the result of a
			     * transformation of incoming data. Additionally
			     * serves as buffer of all data not yet consumed by
			     * the reader. */
};


/*
 *----------------------------------------------------------------------
 *
 * TclChannelTransform --
 *
 *	Implements the Tcl "testchannel transform" debugging command.
 *	This is part of the testing environment.  This sets up a tcl
 *	script (cmdObjPtr) to be used as a transform on the channel.
 *
 * Results:
 *	A standard Tcl result.
 *
 * Side effects:
 *	None.
 *
 *----------------------------------------------------------------------
 */

	/* ARGSUSED */
int
TclChannelTransform(interp, chan, cmdObjPtr)
    Tcl_Interp	*interp;	/* Interpreter for result. */
    Tcl_Channel chan;		/* Channel to transform. */
    Tcl_Obj	*cmdObjPtr;	/* Script to use for transform. */
{
    Channel			*chanPtr;	/* The actual channel. */
    ChannelState		*statePtr;	/* state info for channel */
    int				mode;		/* rw mode of the channel */
    TransformChannelData	*dataPtr;
    int				res;
    Tcl_DString			ds;

    if (chan == (Tcl_Channel) NULL) {
	return TCL_ERROR;
    }
    chanPtr	= (Channel *) chan;
    statePtr	= chanPtr->state;
    chanPtr	= statePtr->topChanPtr;
    chan	= (Tcl_Channel) chanPtr;
    mode	= (statePtr->flags & (TCL_READABLE|TCL_WRITABLE));

    /*
     * Now initialize the transformation state and stack it upon the
     * specified channel. One of the necessary things to do is to
     * retrieve the blocking regime of the underlying channel and to
     * use the same for us too.
     */

    dataPtr = (TransformChannelData*) ckalloc(sizeof(TransformChannelData));

    Tcl_DStringInit (&ds);
    Tcl_GetChannelOption(interp, chan, "-blocking", &ds);

    dataPtr->readIsFlushed = 0;
    dataPtr->flags	= 0;

    if (ds.string[0] == '0') {
	dataPtr->flags |= CHANNEL_ASYNC;
    }

    Tcl_DStringFree (&ds);

    dataPtr->self	= chan;
    dataPtr->watchMask	= 0;
    dataPtr->mode	= mode;
    dataPtr->timer	= (Tcl_TimerToken) NULL;
    dataPtr->maxRead	= 4096; /* Initial value not relevant */
    dataPtr->interp	= interp;
    dataPtr->command	= cmdObjPtr;

    Tcl_IncrRefCount(dataPtr->command);

    ResultInit(&dataPtr->result);

    dataPtr->self = Tcl_StackChannel(interp, &transformChannelType,
	    (ClientData) dataPtr, mode, chan);
    if (dataPtr->self == (Tcl_Channel) NULL) {
	Tcl_AppendResult(interp, "\nfailed to stack channel \"",
		Tcl_GetChannelName(chan), "\"", (char *) NULL);
	goto cleanup;
    }

    /*
     * At last initialize the transformation at the script level.
     */

    if (dataPtr->mode & TCL_WRITABLE) {
	res = ExecuteCallback (dataPtr, NO_INTERP, A_CREATE_WRITE,
		NULL, 0, TRANSMIT_DONT, P_NO_PRESERVE);

	if (res != TCL_OK) {
	    Tcl_UnstackChannel(interp, chan);
	    goto cleanup;
	}
    }

    if (dataPtr->mode & TCL_READABLE) {
	res = ExecuteCallback (dataPtr, NO_INTERP, A_CREATE_READ,
		NULL, 0, TRANSMIT_DONT, P_NO_PRESERVE);

	if (res != TCL_OK) {
	    ExecuteCallback (dataPtr, NO_INTERP, A_DELETE_WRITE,
		    NULL, 0, TRANSMIT_DONT, P_NO_PRESERVE);

	    Tcl_UnstackChannel(interp, chan);
	    goto cleanup;
	}
    }

    return TCL_OK;

    cleanup:
    Tcl_DecrRefCount(dataPtr->command);
    ResultClear(&dataPtr->result);
    ckfree((VOID *) dataPtr);
    return TCL_ERROR;
}

/*
 *------------------------------------------------------*
 *
 *	ExecuteCallback --
 *
 *	Executes the defined callback for buffer and
 *	operation.
 *
 *	Sideeffects:
 *		As of the executed tcl script.
 *
 *	Result:
 *		A standard TCL error code. In case of an
 *		error a message is left in the result area
 *		of the specified interpreter.
 *
 *------------------------------------------------------*
 */

static int
ExecuteCallback (dataPtr, interp, op, buf, bufLen, transmit, preserve)
    TransformChannelData* dataPtr;     /* Transformation with the callback */
    Tcl_Interp*           interp;   /* Current interpreter, possibly NULL */
    unsigned char*        op;       /* Operation invoking the callback */
    unsigned char*        buf;      /* Buffer to give to the script. */
    int                   bufLen;   /* Ands its length */
    int                   transmit; /* Flag, determines whether the result
				     * of the callback is sent to the
				     * underlying channel or not. */
    int                   preserve; /* Flag. If true the procedure will
				     * preserver the result state of all
				     * accessed interpreters. */
{
    /*
     * Step 1, create the complete command to execute. Do this by appending
     * operation and buffer to operate upon to a copy of the callback
     * definition. We *cannot* create a list containing 3 objects and then use
     * 'Tcl_EvalObjv', because the command may contain additional prefixed
     * arguments. Feather's curried commands would come in handy here.
     */

    Tcl_Obj*        resObj; /* See below, switch (transmit) */
    int             resLen;
    unsigned char*  resBuf;
    Tcl_SavedResult ciSave;

    int res = TCL_OK;
    Tcl_Obj* command = Tcl_DuplicateObj (dataPtr->command);
    Tcl_Obj* temp;


    if (preserve) {
	Tcl_SaveResult (dataPtr->interp, &ciSave);
    }

    if (command == (Tcl_Obj*) NULL) {
        /* Memory allocation problem */
        res = TCL_ERROR;
        goto cleanup;
    }

    Tcl_IncrRefCount(command);

    temp = Tcl_NewStringObj((char*) op, -1);

    if (temp == (Tcl_Obj*) NULL) {
        /* Memory allocation problem */
        res = TCL_ERROR;
        goto cleanup;
    }

    res = Tcl_ListObjAppendElement(dataPtr->interp, command, temp);

    if (res != TCL_OK)
	goto cleanup;

    /*
     * Use a byte-array to prevent the misinterpretation of binary data
     * coming through as UTF while at the tcl level.
     */

    temp = Tcl_NewByteArrayObj(buf, bufLen);

    if (temp == (Tcl_Obj*) NULL) {
        /* Memory allocation problem */
	res = TCL_ERROR;
        goto cleanup;
    }

    res = Tcl_ListObjAppendElement (dataPtr->interp, command, temp);

    if (res != TCL_OK)
        goto cleanup;

    /*
     * Step 2, execute the command at the global level of the interpreter
     * used to create the transformation. Destroy the command afterward.
     * If an error occured and the current interpreter is defined and not
     * equal to the interpreter for the callback, then copy the error
     * message into current interpreter. Don't copy if in preservation mode.
     */

    res = Tcl_GlobalEvalObj (dataPtr->interp, command);
    Tcl_DecrRefCount (command);
    command = (Tcl_Obj*) NULL;

    if ((res != TCL_OK) && (interp != NO_INTERP) &&
	    (dataPtr->interp != interp) && !preserve) {
        Tcl_SetObjResult(interp, Tcl_GetObjResult(dataPtr->interp));
	return res;
    }

    /*
     * Step 3, transmit a possible conversion result to the underlying
     * channel, or ourselves.
     */

    switch (transmit) {
	case TRANSMIT_DONT:
	    /* nothing to do */
	    break;

	case TRANSMIT_DOWN:
	    resObj = Tcl_GetObjResult(dataPtr->interp);
	    resBuf = (unsigned char*) Tcl_GetByteArrayFromObj(resObj, &resLen);
	    Tcl_WriteRaw(Tcl_GetStackedChannel(dataPtr->self),
		    (char*) resBuf, resLen);
	    break;

	case TRANSMIT_SELF:
	    resObj = Tcl_GetObjResult (dataPtr->interp);
	    resBuf = (unsigned char*) Tcl_GetByteArrayFromObj(resObj, &resLen);
	    Tcl_WriteRaw(dataPtr->self, (char*) resBuf, resLen);
	    break;

	case TRANSMIT_IBUF:
	    resObj = Tcl_GetObjResult (dataPtr->interp);
	    resBuf = (unsigned char*) Tcl_GetByteArrayFromObj(resObj, &resLen);
	    ResultAdd(&dataPtr->result, resBuf, resLen);
	    break;

	case TRANSMIT_NUM:
	    /* Interpret result as integer number */
	    resObj = Tcl_GetObjResult (dataPtr->interp);
	    Tcl_GetIntFromObj(dataPtr->interp, resObj, &dataPtr->maxRead);
	    break;
    }

    Tcl_ResetResult(dataPtr->interp);

    if (preserve) {
	Tcl_RestoreResult(dataPtr->interp, &ciSave);
    }

    return res;

    cleanup:
    if (preserve) {
	Tcl_RestoreResult(dataPtr->interp, &ciSave);
    }

    if (command != (Tcl_Obj*) NULL) {
        Tcl_DecrRefCount(command);
    }

    return res;
}

/*
 *------------------------------------------------------*
 *
 *	TransformBlockModeProc --
 *
 *	Trap handler. Called by the generic IO system
 *	during option processing to change the blocking
 *	mode of the channel.
 *
 *	Sideeffects:
 *		Forwards the request to the underlying
 *		channel.
 *
 *	Result:
 *		0 if successful, errno when failed.
 *
 *------------------------------------------------------*
 */

static int
TransformBlockModeProc (instanceData, mode)
    ClientData  instanceData; /* State of transformation */
    int         mode;         /* New blocking mode */
{
    TransformChannelData* dataPtr = (TransformChannelData*) instanceData;

    if (mode == TCL_MODE_NONBLOCKING) {
        dataPtr->flags |= CHANNEL_ASYNC;
    } else {
        dataPtr->flags &= ~(CHANNEL_ASYNC);
    }
    return 0;
}

/*
 *------------------------------------------------------*
 *
 *	TransformCloseProc --
 *
 *	Trap handler. Called by the generic IO system
 *	during destruction of the transformation channel.
 *
 *	Sideeffects:
 *		Releases the memory allocated in
 *		'Tcl_TransformObjCmd'.
 *
 *	Result:
 *		None.
 *
 *------------------------------------------------------*
 */

static int
TransformCloseProc (instanceData, interp)
    ClientData  instanceData;
    Tcl_Interp* interp;
{
    TransformChannelData* dataPtr = (TransformChannelData*) instanceData;

    /*
     * Important: In this procedure 'dataPtr->self' already points to
     * the underlying channel.
     */

    /*
     * There is no need to cancel an existing channel handler, this is already
     * done. Either by 'Tcl_UnstackChannel' or by the general cleanup in
     * 'Tcl_Close'.
     *
     * But we have to cancel an active timer to prevent it from firing on the
     * removed channel.
     */

    if (dataPtr->timer != (Tcl_TimerToken) NULL) {
        Tcl_DeleteTimerHandler (dataPtr->timer);
	dataPtr->timer = (Tcl_TimerToken) NULL;
    }

    /*
     * Now flush data waiting in internal buffers to output and input. The
     * input must be done despite the fact that there is no real receiver
     * for it anymore. But the scripts might have sideeffects other parts
     * of the system rely on (f.e. signaling the close to interested parties).
     */

    if (dataPtr->mode & TCL_WRITABLE) {
        ExecuteCallback (dataPtr, interp, A_FLUSH_WRITE,
		NULL, 0, TRANSMIT_DOWN, 1);
    }

    if ((dataPtr->mode & TCL_READABLE) && !dataPtr->readIsFlushed) {
	dataPtr->readIsFlushed = 1;
        ExecuteCallback (dataPtr, interp, A_FLUSH_READ,
		NULL, 0, TRANSMIT_IBUF, 1);
    }

    if (dataPtr->mode & TCL_WRITABLE) {
        ExecuteCallback (dataPtr, interp, A_DELETE_WRITE,
		NULL, 0, TRANSMIT_DONT, 1);
    }

    if (dataPtr->mode & TCL_READABLE) {
        ExecuteCallback (dataPtr, interp, A_DELETE_READ,
		NULL, 0, TRANSMIT_DONT, 1);
    }

    /*
     * General cleanup
     */

    ResultClear(&dataPtr->result);
    Tcl_DecrRefCount(dataPtr->command);
    ckfree((VOID*) dataPtr);

    return TCL_OK;
}

/*
 *------------------------------------------------------*
 *
 *	TransformInputProc --
 *
 *	Called by the generic IO system to convert read data.
 *
 *	Sideeffects:
 *		As defined by the conversion.
 *
 *	Result:
 *		A transformed buffer.
 *
 *------------------------------------------------------*
 */

static int
TransformInputProc (instanceData, buf, toRead, errorCodePtr)
    ClientData instanceData;
    char*      buf;
    int        toRead;
    int*       errorCodePtr;
{
    TransformChannelData* dataPtr = (TransformChannelData*) instanceData;
    int gotBytes, read, res, copied;
    Tcl_Channel downChan;

    /* should assert (dataPtr->mode & TCL_READABLE) */

    if (toRead == 0) {
	/* Catch a no-op.
	 */
	return 0;
    }

    gotBytes = 0;
    downChan = Tcl_GetStackedChannel(dataPtr->self);

    while (toRead > 0) {
        /*
	 * Loop until the request is satisfied (or no data is available from
	 * below, possibly EOF).
	 */

        copied    = ResultCopy (&dataPtr->result, UCHARP (buf), toRead);

	toRead   -= copied;
	buf      += copied;
	gotBytes += copied;

	if (toRead == 0) {
	    /* The request was completely satisfied from our buffers.
	     * We can break out of the loop and return to the caller.
	     */
	    return gotBytes;
	}

	/*
	 * Length (dataPtr->result) == 0, toRead > 0 here . Use the incoming
	 * 'buf'! as target to store the intermediary information read
	 * from the underlying channel.
	 *
	 * Ask the tcl level how much data it allows us to read from
	 * the underlying channel. This feature allows the transform to
	 * signal EOF upstream although there is none downstream. Useful
	 * to control an unbounded 'fcopy', either through counting bytes,
	 * or by pattern matching.
	 */

	ExecuteCallback (dataPtr, NO_INTERP, A_QUERY_MAXREAD,
		NULL, 0, TRANSMIT_NUM /* -> maxRead */, 1);

	if (dataPtr->maxRead >= 0) {
	    if (dataPtr->maxRead < toRead) {
	        toRead = dataPtr->maxRead;
	    }
	} /* else: 'maxRead < 0' == Accept the current value of toRead */

	if (toRead <= 0) {
	    return gotBytes;
	}

	read = Tcl_ReadRaw(downChan, buf, toRead);

	if (read < 0) {
	    /* Report errors to caller. EAGAIN is a special situation.
	     * If we had some data before we report that instead of the
	     * request to re-try.
	     */

	    if ((Tcl_GetErrno() == EAGAIN) && (gotBytes > 0)) {
	        return gotBytes;
	    }

	    *errorCodePtr = Tcl_GetErrno();
	    return -1;      
	}

	if (read == 0) {
	    /*
	     * Check wether we hit on EOF in the underlying channel or
	     * not. If not differentiate between blocking and
	     * non-blocking modes. In non-blocking mode we ran
	     * temporarily out of data. Signal this to the caller via
	     * EWOULDBLOCK and error return (-1). In the other cases
	     * we simply return what we got and let the caller wait
	     * for more. On the other hand, if we got an EOF we have
	     * to convert and flush all waiting partial data.
	     */

	    if (! Tcl_Eof (downChan)) {
	        if ((gotBytes == 0) && (dataPtr->flags & CHANNEL_ASYNC)) {
		    *errorCodePtr = EWOULDBLOCK;
		    return -1;
		} else {
		    return gotBytes;
		}
	    } else {
	        if (dataPtr->readIsFlushed) {
		    /* Already flushed, nothing to do anymore
		     */
		    return gotBytes;
		}

		dataPtr->readIsFlushed = 1;

		ExecuteCallback (dataPtr, NO_INTERP, A_FLUSH_READ,
			NULL, 0, TRANSMIT_IBUF, P_PRESERVE);

		if (ResultLength (&dataPtr->result) == 0) {
		    /* we had nothing to flush */
		    return gotBytes;
		}

		continue; /* at: while (toRead > 0) */
	    }
	} /* read == 0 */

	/* Transform the read chunk and add the result to our
	 * read buffer (dataPtr->result)
	 */

	res = ExecuteCallback (dataPtr, NO_INTERP, A_READ,
		UCHARP (buf), read, TRANSMIT_IBUF,
		P_PRESERVE);

	if (res != TCL_OK) {
	    *errorCodePtr = EINVAL;
	    return -1;
	}
    } /* while toRead > 0 */

    return gotBytes;
}

/*
 *------------------------------------------------------*
 *
 *	TransformOutputProc --
 *
 *	Called by the generic IO system to convert data
 *	waiting to be written.
 *
 *	Sideeffects:
 *		As defined by the transformation.
 *
 *	Result:
 *		A transformed buffer.
 *
 *------------------------------------------------------*
 */

static int
TransformOutputProc (instanceData, buf, toWrite, errorCodePtr)
    ClientData instanceData;
    char*      buf;
    int        toWrite;
    int*       errorCodePtr;
{
    TransformChannelData* dataPtr = (TransformChannelData*) instanceData;
    int res;

    /* should assert (dataPtr->mode & TCL_WRITABLE) */

    if (toWrite == 0) {
	/* Catch a no-op.
	 */
	return 0;
    }

    res = ExecuteCallback (dataPtr, NO_INTERP, A_WRITE,
	    UCHARP (buf), toWrite,
	    TRANSMIT_DOWN, P_NO_PRESERVE);

    if (res != TCL_OK) {
        *errorCodePtr = EINVAL;
	return -1;
    }

    return toWrite;
}

/*
 *------------------------------------------------------*
 *
 *	TransformSeekProc --
 *
 *	This procedure is called by the generic IO level
 *	to move the access point in a channel.
 *
 *	Sideeffects:
 *		Moves the location at which the channel
 *		will be accessed in future operations.
 *		Flushes all transformation buffers, then
 *		forwards it to the underlying channel.
 *
 *	Result:
 *		-1 if failed, the new position if
 *		successful. An output argument contains
 *		the POSIX error code if an error
 *		occurred, or zero.
 *
 *------------------------------------------------------*
 */

static int
TransformSeekProc (instanceData, offset, mode, errorCodePtr)
    ClientData instanceData;	/* The channel to manipulate */
    long       offset;		/* Size of movement. */
    int        mode;		/* How to move */
    int*       errorCodePtr;	/* Location of error flag. */
{
    int result;
    TransformChannelData* dataPtr	= (TransformChannelData*) instanceData;
    Tcl_Channel           parent        = Tcl_GetStackedChannel(dataPtr->self);
    Tcl_ChannelType*      parentType	= Tcl_GetChannelType(parent);
    Tcl_DriverSeekProc*   parentSeekProc = Tcl_ChannelSeekProc(parentType);

    if ((offset == 0) && (mode == SEEK_CUR)) {
        /* This is no seek but a request to tell the caller the current
	 * location. Simply pass the request down.
	 */

	result = (*parentSeekProc) (Tcl_GetChannelInstanceData(parent),
		offset, mode, errorCodePtr);
	return result;
    }

    /*
     * It is a real request to change the position. Flush all data waiting
     * for output and discard everything in the input buffers. Then pass
     * the request down, unchanged.
     */

    if (dataPtr->mode & TCL_WRITABLE) {
        ExecuteCallback (dataPtr, NO_INTERP, A_FLUSH_WRITE,
		NULL, 0, TRANSMIT_DOWN, P_NO_PRESERVE);
    }

    if (dataPtr->mode & TCL_READABLE) {
        ExecuteCallback (dataPtr, NO_INTERP, A_CLEAR_READ,
		NULL, 0, TRANSMIT_DONT, P_NO_PRESERVE);
	ResultClear(&dataPtr->result);
	dataPtr->readIsFlushed = 0;
    }

    result = (*parentSeekProc) (Tcl_GetChannelInstanceData(parent),
	    offset, mode, errorCodePtr);
    return result;
}

/*
 *------------------------------------------------------*
 *
 *	TransformSetOptionProc --
 *
 *	Called by generic layer to handle the reconfi-
 *	guration of channel specific options. As this
 *	channel type does not have such, it simply passes
 *	all requests downstream.
 *
 *	Sideeffects:
 *		As defined by the channel downstream.
 *
 *	Result:
 *		A standard TCL error code.
 *
 *------------------------------------------------------*
 */

static int
TransformSetOptionProc (instanceData, interp, optionName, value)
    ClientData instanceData;
    Tcl_Interp *interp;
    char *optionName;
    char *value;
{
    TransformChannelData* dataPtr = (TransformChannelData*) instanceData;
    Tcl_Channel downChan = Tcl_GetStackedChannel(dataPtr->self);
    Tcl_DriverSetOptionProc *setOptionProc;

    setOptionProc = Tcl_ChannelSetOptionProc(Tcl_GetChannelType(downChan));
    if (setOptionProc != NULL) {
	return (*setOptionProc)(Tcl_GetChannelInstanceData(downChan),
		interp, optionName, value);
    }
    return TCL_ERROR;
}

/*
 *------------------------------------------------------*
 *
 *	TransformGetOptionProc --
 *
 *	Called by generic layer to handle requests for
 *	the values of channel specific options. As this
 *	channel type does not have such, it simply passes
 *	all requests downstream.
 *
 *	Sideeffects:
 *		As defined by the channel downstream.
 *
 *	Result:
 *		A standard TCL error code.
 *
 *------------------------------------------------------*
 */

static int
TransformGetOptionProc (instanceData, interp, optionName, dsPtr)
    ClientData   instanceData;
    Tcl_Interp*  interp;
    char*        optionName;
    Tcl_DString* dsPtr;
{
    TransformChannelData* dataPtr = (TransformChannelData*) instanceData;
    Tcl_Channel downChan = Tcl_GetStackedChannel(dataPtr->self);
    Tcl_DriverGetOptionProc *getOptionProc;

    getOptionProc = Tcl_ChannelGetOptionProc(Tcl_GetChannelType(downChan));
    if (getOptionProc != NULL) {
	return (*getOptionProc)(Tcl_GetChannelInstanceData(downChan),
		interp, optionName, dsPtr);
    } else if (optionName == (char*) NULL) {
	/*
	 * Request is query for all options, this is ok.
	 */
	return TCL_OK;
    }
    /*
     * Request for a specific option has to fail, we don't have any.
     */
    return TCL_ERROR;
}

/*
 *------------------------------------------------------*
 *
 *	TransformWatchProc --
 *
 *	Initialize the notifier to watch for events from
 *	this channel.
 *
 *	Sideeffects:
 *		Sets up the notifier so that a future
 *		event on the channel will be seen by Tcl.
 *
 *	Result:
 *		None.
 *
 *------------------------------------------------------*
 */
	/* ARGSUSED */
static void
TransformWatchProc (instanceData, mask)
    ClientData instanceData;	/* Channel to watch */
    int        mask;		/* Events of interest */
{
    /* The caller expressed interest in events occuring for this
     * channel. We are forwarding the call to the underlying
     * channel now.
     */

    TransformChannelData* dataPtr = (TransformChannelData*) instanceData;
    Tcl_Channel     downChan;

    dataPtr->watchMask = mask;

    /* No channel handlers any more. We will be notified automatically
     * about events on the channel below via a call to our
     * 'TransformNotifyProc'. But we have to pass the interest down now.
     * We are allowed to add additional 'interest' to the mask if we want
     * to. But this transformation has no such interest. It just passes
     * the request down, unchanged.
     */

    downChan = Tcl_GetStackedChannel(dataPtr->self);

    (Tcl_GetChannelType(downChan))
	->watchProc(Tcl_GetChannelInstanceData(downChan), mask);

    /*
     * Management of the internal timer.
     */

    if ((dataPtr->timer != (Tcl_TimerToken) NULL) &&
	    (!(mask & TCL_READABLE) || (ResultLength(&dataPtr->result) == 0))) {

        /* A pending timer exists, but either is there no (more)
	 * interest in the events it generates or nothing is availablee
	 * for reading, so remove it.
	 */

        Tcl_DeleteTimerHandler (dataPtr->timer);
	dataPtr->timer = (Tcl_TimerToken) NULL;
    }

    if ((dataPtr->timer == (Tcl_TimerToken) NULL) &&
	    (mask & TCL_READABLE) && (ResultLength (&dataPtr->result) > 0)) {

        /* There is no pending timer, but there is interest in readable
	 * events and we actually have data waiting, so generate a timer
	 * to flush that.
	 */

	dataPtr->timer = Tcl_CreateTimerHandler (DELAY,
		TransformChannelHandlerTimer, (ClientData) dataPtr);
    }
}

/*
 *------------------------------------------------------*
 *
 *	TransformGetFileHandleProc --
 *
 *	Called from Tcl_GetChannelHandle to retrieve
 *	OS specific file handle from inside this channel.
 *
 *	Sideeffects:
 *		None.
 *
 *	Result:
 *		The appropriate Tcl_File or NULL if not
 *		present. 
 *
 *------------------------------------------------------*
 */
static int
TransformGetFileHandleProc (instanceData, direction, handlePtr)
    ClientData  instanceData;	/* Channel to query */
    int         direction;	/* Direction of interest */
    ClientData* handlePtr;	/* Place to store the handle into */
{
    /*
     * Return the handle belonging to parent channel.
     * IOW, pass the request down and the result up.
     */

    TransformChannelData* dataPtr = (TransformChannelData*) instanceData;

    return Tcl_GetChannelHandle(Tcl_GetStackedChannel(dataPtr->self),
	    direction, handlePtr);
}

/*
 *------------------------------------------------------*
 *
 *	TransformNotifyProc --
 *
 *	------------------------------------------------*
 *	Handler called by Tcl to inform us of activity
 *	on the underlying channel.
 *	------------------------------------------------*
 *
 *	Sideeffects:
 *		May process the incoming event by itself.
 *
 *	Result:
 *		None.
 *
 *------------------------------------------------------*
 */

static int
TransformNotifyProc (clientData, mask)
    ClientData	   clientData; /* The state of the notified transformation */
    int		   mask;       /* The mask of occuring events */
{
    TransformChannelData* dataPtr = (TransformChannelData*) clientData;

    /*
     * An event occured in the underlying channel.  This
     * transformation doesn't process such events thus returns the
     * incoming mask unchanged.
     */

    if (dataPtr->timer != (Tcl_TimerToken) NULL) {
	/*
	 * Delete an existing timer. It was not fired, yet we are
	 * here, so the channel below generated such an event and we
	 * don't have to. The renewal of the interest after the
	 * execution of channel handlers will eventually cause us to
	 * recreate the timer (in TransformWatchProc).
	 */

	Tcl_DeleteTimerHandler (dataPtr->timer);
	dataPtr->timer = (Tcl_TimerToken) NULL;
    }

    return mask;
}

/*
 *------------------------------------------------------*
 *
 *	TransformChannelHandlerTimer --
 *
 *	Called by the notifier (-> timer) to flush out
 *	information waiting in the input buffer.
 *
 *	Sideeffects:
 *		As of 'Tcl_NotifyChannel'.
 *
 *	Result:
 *		None.
 *
 *------------------------------------------------------*
 */

static void
TransformChannelHandlerTimer (clientData)
    ClientData clientData; /* Transformation to query */
{
    TransformChannelData* dataPtr = (TransformChannelData*) clientData;

    dataPtr->timer = (Tcl_TimerToken) NULL;

    if (!(dataPtr->watchMask & TCL_READABLE) ||
	    (ResultLength (&dataPtr->result) == 0)) {
	/* The timer fired, but either is there no (more)
	 * interest in the events it generates or nothing is available
	 * for reading, so ignore it and don't recreate it.
	 */

	return;
    }

    Tcl_NotifyChannel(dataPtr->self, TCL_READABLE);
}

/*
 *------------------------------------------------------*
 *
 *	ResultClear --
 *
 *	Deallocates any memory allocated by 'ResultAdd'.
 *
 *	Sideeffects:
 *		See above.
 *
 *	Result:
 *		None.
 *
 *------------------------------------------------------*
 */

static void
ResultClear (r)
    ResultBuffer* r; /* Reference to the buffer to clear out */
{
    r->used = 0;

    if (r->allocated) {
        ckfree((char*) r->buf);
	r->buf       = UCHARP (NULL);
	r->allocated = 0;
    }
}

/*
 *------------------------------------------------------*
 *
 *	ResultInit --
 *
 *	Initializes the specified buffer structure. The
 *	structure will contain valid information for an
 *	emtpy buffer.
 *
 *	Sideeffects:
 *		See above.
 *
 *	Result:
 *		None.
 *
 *------------------------------------------------------*
 */

static void
ResultInit (r)
    ResultBuffer* r; /* Reference to the structure to initialize */
{
    r->used      = 0;
    r->allocated = 0;
    r->buf       = UCHARP (NULL);
}

/*
 *------------------------------------------------------*
 *
 *	ResultLength --
 *
 *	Returns the number of bytes stored in the buffer.
 *
 *	Sideeffects:
 *		None.
 *
 *	Result:
 *		An integer, see above too.
 *
 *------------------------------------------------------*
 */

static int
ResultLength (r)
    ResultBuffer* r; /* The structure to query */
{
    return r->used;
}

/*
 *------------------------------------------------------*
 *
 *	ResultCopy --
 *
 *	Copies the requested number of bytes from the
 *	buffer into the specified array and removes them
 *	from the buffer afterward. Copies less if there
 *	is not enough data in the buffer.
 *
 *	Sideeffects:
 *		See above.
 *
 *	Result:
 *		The number of actually copied bytes,
 *		possibly less than 'toRead'.
 *
 *------------------------------------------------------*
 */

static int
ResultCopy (r, buf, toRead)
    ResultBuffer*  r;      /* The buffer to read from */
    unsigned char* buf;    /* The buffer to copy into */
    int            toRead; /* Number of requested bytes */
{
    if (r->used == 0) {
        /* Nothing to copy in the case of an empty buffer.
	 */

        return 0;
    }

    if (r->used == toRead) {
        /* We have just enough. Copy everything to the caller.
	 */

        memcpy ((VOID*) buf, (VOID*) r->buf, (size_t) toRead);
	r->used = 0;
	return toRead;
    }

    if (r->used > toRead) {
        /* The internal buffer contains more than requested.
	 * Copy the requested subset to the caller, and shift
	 * the remaining bytes down.
	 */

        memcpy  ((VOID*) buf,    (VOID*) r->buf,            (size_t) toRead);
	memmove ((VOID*) r->buf, (VOID*) (r->buf + toRead),
		(size_t) r->used - toRead);

	r->used -= toRead;
	return toRead;
    }

    /* There is not enough in the buffer to satisfy the caller, so
     * take everything.
     */

    memcpy((VOID*) buf, (VOID*) r->buf, (size_t) r->used);
    toRead  = r->used;
    r->used = 0;
    return toRead;
}

/*
 *------------------------------------------------------*
 *
 *	ResultAdd --
 *
 *	Adds the bytes in the specified array to the
 *	buffer, by appending it.
 *
 *	Sideeffects:
 *		See above.
 *
 *	Result:
 *		None.
 *
 *------------------------------------------------------*
 */

static void
ResultAdd (r, buf, toWrite)
    ResultBuffer*  r;       /* The buffer to extend */
    unsigned char* buf;     /* The buffer to read from */
    int            toWrite; /* The number of bytes in 'buf' */
{
    if ((r->used + toWrite) > r->allocated) {
        /* Extension of the internal buffer is required.
	 */

        if (r->allocated == 0) {
	    r->allocated = toWrite + INCREMENT;
	    r->buf       = UCHARP (ckalloc((unsigned) r->allocated));
	} else {
	    r->allocated += toWrite + INCREMENT;
	    r->buf        = UCHARP (ckrealloc((char*) r->buf,
		    (unsigned) r->allocated));
	}
    }

    /* now copy data */
    memcpy(r->buf + r->used, buf, (size_t) toWrite);
    r->used += toWrite;
}
Changes to generic/tclInt.decls.
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# tclInt.decls --
#
#	This file contains the declarations for all unsupported
#	functions that are exported by the Tcl library.  This file
#	is used to generate the tclIntDecls.h, tclIntPlatDecls.h,
#	tclIntStub.c, tclPlatStub.c, tclCompileDecls.h and tclCompileStub.c
#	files
#
# Copyright (c) 1998-1999 by Scriptics Corporation.
# See the file "license.terms" for information on usage and redistribution
# of this file, and for a DISCLAIMER OF ALL WARRANTIES.
# 
# RCS: @(#) $Id: tclInt.decls,v 1.20 2000/03/31 08:52:04 hobbs Exp $

library tcl

# Define the unsupported generic interfaces.

interface tclInt













|







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# tclInt.decls --
#
#	This file contains the declarations for all unsupported
#	functions that are exported by the Tcl library.  This file
#	is used to generate the tclIntDecls.h, tclIntPlatDecls.h,
#	tclIntStub.c, tclPlatStub.c, tclCompileDecls.h and tclCompileStub.c
#	files
#
# Copyright (c) 1998-1999 by Scriptics Corporation.
# See the file "license.terms" for information on usage and redistribution
# of this file, and for a DISCLAIMER OF ALL WARRANTIES.
# 
# RCS: @(#) $Id: tclInt.decls,v 1.20.4.1 2000/07/17 22:59:41 hobbs Exp $

library tcl

# Define the unsupported generic interfaces.

interface tclInt

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declare 152 generic {
    void TclSetLibraryPath(Tcl_Obj *pathPtr)
}
declare 153 generic {
    Tcl_Obj *TclGetLibraryPath(void)
}


declare 154 generic {
    int TclTestChannelCmd(ClientData clientData,
    Tcl_Interp *interp, int argc, char **argv)
}

declare 155 generic {
    int TclTestChannelEventCmd(ClientData clientData, \
	    Tcl_Interp *interp, int argc, char **argv)

}
declare 156 generic {
    void TclRegError (Tcl_Interp *interp, char *msg, \
	    int status)
}
declare 157 generic {
    Var * TclVarTraceExists (Tcl_Interp *interp, char *varName)
}
declare 158 generic {
    void TclSetStartupScriptFileName(char *filename)
}
declare 159 generic {
    char *TclGetStartupScriptFileName(void)
}
declare 160 generic {
    int TclpMatchFilesTypes(Tcl_Interp *interp, char *separators, \
	    Tcl_DString *dirPtr, char *pattern, char *tail, GlobTypeData *types)
}










##############################################################################

# Define the platform specific internal Tcl interface. These functions are
# only available on the designated platform.

interface tclIntPlat







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declare 152 generic {
    void TclSetLibraryPath(Tcl_Obj *pathPtr)
}
declare 153 generic {
    Tcl_Obj *TclGetLibraryPath(void)
}

# moved to tclTest.c in 8.3.2/8.4a2
#declare 154 generic {
#    int TclTestChannelCmd(ClientData clientData,
#    Tcl_Interp *interp, int argc, char **argv)

#}
#declare 155 generic {
#    int TclTestChannelEventCmd(ClientData clientData, \
#	     Tcl_Interp *interp, int argc, char **argv)
#}

declare 156 generic {
    void TclRegError (Tcl_Interp *interp, char *msg, \
	    int status)
}
declare 157 generic {
    Var * TclVarTraceExists (Tcl_Interp *interp, char *varName)
}
declare 158 generic {
    void TclSetStartupScriptFileName(char *filename)
}
declare 159 generic {
    char *TclGetStartupScriptFileName(void)
}
declare 160 generic {
    int TclpMatchFilesTypes(Tcl_Interp *interp, char *separators, \
	    Tcl_DString *dirPtr, char *pattern, char *tail, GlobTypeData *types)
}

# new in 8.3.2/8.4a2
declare 161 generic {
    int TclChannelTransform(Tcl_Interp *interp, Tcl_Channel chan, \
	    Tcl_Obj *cmdObjPtr)
}
declare 162 generic {
    void TclChannelEventScriptInvoker(ClientData clientData, int flags)
}

##############################################################################

# Define the platform specific internal Tcl interface. These functions are
# only available on the designated platform.

interface tclIntPlat
Changes to generic/tclIntDecls.h.
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/*
 * tclIntDecls.h --
 *
 *	This file contains the declarations for all unsupported
 *	functions that are exported by the Tcl library.  These
 *	interfaces are not guaranteed to remain the same between
 *	versions.  Use at your own risk.
 *
 * Copyright (c) 1998-1999 by Scriptics Corporation.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclIntDecls.h,v 1.19 1999/12/12 22:46:42 hobbs Exp $
 */

#ifndef _TCLINTDECLS
#define _TCLINTDECLS

/*
 * WARNING: This file is automatically generated by the tools/genStubs.tcl













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/*
 * tclIntDecls.h --
 *
 *	This file contains the declarations for all unsupported
 *	functions that are exported by the Tcl library.  These
 *	interfaces are not guaranteed to remain the same between
 *	versions.  Use at your own risk.
 *
 * Copyright (c) 1998-1999 by Scriptics Corporation.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclIntDecls.h,v 1.19.4.1 2000/07/17 22:59:42 hobbs Exp $
 */

#ifndef _TCLINTDECLS
#define _TCLINTDECLS

/*
 * WARNING: This file is automatically generated by the tools/genStubs.tcl
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/* 151 */
EXTERN void		TclRegExpRangeUniChar _ANSI_ARGS_((Tcl_RegExp re, 
				int index, int * startPtr, int * endPtr));
/* 152 */
EXTERN void		TclSetLibraryPath _ANSI_ARGS_((Tcl_Obj * pathPtr));
/* 153 */
EXTERN Tcl_Obj *	TclGetLibraryPath _ANSI_ARGS_((void));
/* 154 */
EXTERN int		TclTestChannelCmd _ANSI_ARGS_((ClientData clientData, 
				Tcl_Interp * interp, int argc, char ** argv));
/* 155 */
EXTERN int		TclTestChannelEventCmd _ANSI_ARGS_((
				ClientData clientData, Tcl_Interp * interp, 
				int argc, char ** argv));
/* 156 */
EXTERN void		TclRegError _ANSI_ARGS_((Tcl_Interp * interp, 
				char * msg, int status));
/* 157 */
EXTERN Var *		TclVarTraceExists _ANSI_ARGS_((Tcl_Interp * interp, 
				char * varName));
/* 158 */
EXTERN void		TclSetStartupScriptFileName _ANSI_ARGS_((
				char * filename));
/* 159 */
EXTERN char *		TclGetStartupScriptFileName _ANSI_ARGS_((void));
/* 160 */
EXTERN int		TclpMatchFilesTypes _ANSI_ARGS_((Tcl_Interp * interp, 
				char * separators, Tcl_DString * dirPtr, 
				char * pattern, char * tail, 
				GlobTypeData * types));







typedef struct TclIntStubs {
    int magic;
    struct TclIntStubHooks *hooks;

    int (*tclAccess) _ANSI_ARGS_((CONST char * path, int mode)); /* 0 */
    int (*tclAccessDeleteProc) _ANSI_ARGS_((TclAccessProc_ * proc)); /* 1 */







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/* 151 */
EXTERN void		TclRegExpRangeUniChar _ANSI_ARGS_((Tcl_RegExp re, 
				int index, int * startPtr, int * endPtr));
/* 152 */
EXTERN void		TclSetLibraryPath _ANSI_ARGS_((Tcl_Obj * pathPtr));
/* 153 */
EXTERN Tcl_Obj *	TclGetLibraryPath _ANSI_ARGS_((void));
/* Slot 154 is reserved */


/* Slot 155 is reserved */



/* 156 */
EXTERN void		TclRegError _ANSI_ARGS_((Tcl_Interp * interp, 
				char * msg, int status));
/* 157 */
EXTERN Var *		TclVarTraceExists _ANSI_ARGS_((Tcl_Interp * interp, 
				char * varName));
/* 158 */
EXTERN void		TclSetStartupScriptFileName _ANSI_ARGS_((
				char * filename));
/* 159 */
EXTERN char *		TclGetStartupScriptFileName _ANSI_ARGS_((void));
/* 160 */
EXTERN int		TclpMatchFilesTypes _ANSI_ARGS_((Tcl_Interp * interp, 
				char * separators, Tcl_DString * dirPtr, 
				char * pattern, char * tail, 
				GlobTypeData * types));
/* 161 */
EXTERN int		TclChannelTransform _ANSI_ARGS_((Tcl_Interp * interp, 
				Tcl_Channel chan, Tcl_Obj * cmdObjPtr));
/* 162 */
EXTERN void		TclChannelEventScriptInvoker _ANSI_ARGS_((
				ClientData clientData, int flags));

typedef struct TclIntStubs {
    int magic;
    struct TclIntStubHooks *hooks;

    int (*tclAccess) _ANSI_ARGS_((CONST char * path, int mode)); /* 0 */
    int (*tclAccessDeleteProc) _ANSI_ARGS_((TclAccessProc_ * proc)); /* 1 */
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    void (*tclHandleFree) _ANSI_ARGS_((TclHandle handle)); /* 147 */
    TclHandle (*tclHandlePreserve) _ANSI_ARGS_((TclHandle handle)); /* 148 */
    void (*tclHandleRelease) _ANSI_ARGS_((TclHandle handle)); /* 149 */
    int (*tclRegAbout) _ANSI_ARGS_((Tcl_Interp * interp, Tcl_RegExp re)); /* 150 */
    void (*tclRegExpRangeUniChar) _ANSI_ARGS_((Tcl_RegExp re, int index, int * startPtr, int * endPtr)); /* 151 */
    void (*tclSetLibraryPath) _ANSI_ARGS_((Tcl_Obj * pathPtr)); /* 152 */
    Tcl_Obj * (*tclGetLibraryPath) _ANSI_ARGS_((void)); /* 153 */
    int (*tclTestChannelCmd) _ANSI_ARGS_((ClientData clientData, Tcl_Interp * interp, int argc, char ** argv)); /* 154 */
    int (*tclTestChannelEventCmd) _ANSI_ARGS_((ClientData clientData, Tcl_Interp * interp, int argc, char ** argv)); /* 155 */
    void (*tclRegError) _ANSI_ARGS_((Tcl_Interp * interp, char * msg, int status)); /* 156 */
    Var * (*tclVarTraceExists) _ANSI_ARGS_((Tcl_Interp * interp, char * varName)); /* 157 */
    void (*tclSetStartupScriptFileName) _ANSI_ARGS_((char * filename)); /* 158 */
    char * (*tclGetStartupScriptFileName) _ANSI_ARGS_((void)); /* 159 */
    int (*tclpMatchFilesTypes) _ANSI_ARGS_((Tcl_Interp * interp, char * separators, Tcl_DString * dirPtr, char * pattern, char * tail, GlobTypeData * types)); /* 160 */


} TclIntStubs;

#ifdef __cplusplus
extern "C" {
#endif
extern TclIntStubs *tclIntStubsPtr;
#ifdef __cplusplus







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    void (*tclHandleFree) _ANSI_ARGS_((TclHandle handle)); /* 147 */
    TclHandle (*tclHandlePreserve) _ANSI_ARGS_((TclHandle handle)); /* 148 */
    void (*tclHandleRelease) _ANSI_ARGS_((TclHandle handle)); /* 149 */
    int (*tclRegAbout) _ANSI_ARGS_((Tcl_Interp * interp, Tcl_RegExp re)); /* 150 */
    void (*tclRegExpRangeUniChar) _ANSI_ARGS_((Tcl_RegExp re, int index, int * startPtr, int * endPtr)); /* 151 */
    void (*tclSetLibraryPath) _ANSI_ARGS_((Tcl_Obj * pathPtr)); /* 152 */
    Tcl_Obj * (*tclGetLibraryPath) _ANSI_ARGS_((void)); /* 153 */
    void *reserved154;
    void *reserved155;
    void (*tclRegError) _ANSI_ARGS_((Tcl_Interp * interp, char * msg, int status)); /* 156 */
    Var * (*tclVarTraceExists) _ANSI_ARGS_((Tcl_Interp * interp, char * varName)); /* 157 */
    void (*tclSetStartupScriptFileName) _ANSI_ARGS_((char * filename)); /* 158 */
    char * (*tclGetStartupScriptFileName) _ANSI_ARGS_((void)); /* 159 */
    int (*tclpMatchFilesTypes) _ANSI_ARGS_((Tcl_Interp * interp, char * separators, Tcl_DString * dirPtr, char * pattern, char * tail, GlobTypeData * types)); /* 160 */
    int (*tclChannelTransform) _ANSI_ARGS_((Tcl_Interp * interp, Tcl_Channel chan, Tcl_Obj * cmdObjPtr)); /* 161 */
    void (*tclChannelEventScriptInvoker) _ANSI_ARGS_((ClientData clientData, int flags)); /* 162 */
} TclIntStubs;

#ifdef __cplusplus
extern "C" {
#endif
extern TclIntStubs *tclIntStubsPtr;
#ifdef __cplusplus
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#define TclSetLibraryPath \
	(tclIntStubsPtr->tclSetLibraryPath) /* 152 */
#endif
#ifndef TclGetLibraryPath
#define TclGetLibraryPath \
	(tclIntStubsPtr->tclGetLibraryPath) /* 153 */
#endif
#ifndef TclTestChannelCmd
#define TclTestChannelCmd \
	(tclIntStubsPtr->tclTestChannelCmd) /* 154 */
#endif
#ifndef TclTestChannelEventCmd
#define TclTestChannelEventCmd \
	(tclIntStubsPtr->tclTestChannelEventCmd) /* 155 */
#endif
#ifndef TclRegError
#define TclRegError \
	(tclIntStubsPtr->tclRegError) /* 156 */
#endif
#ifndef TclVarTraceExists
#define TclVarTraceExists \
	(tclIntStubsPtr->tclVarTraceExists) /* 157 */
#endif
#ifndef TclSetStartupScriptFileName
#define TclSetStartupScriptFileName \
	(tclIntStubsPtr->tclSetStartupScriptFileName) /* 158 */
#endif
#ifndef TclGetStartupScriptFileName
#define TclGetStartupScriptFileName \
	(tclIntStubsPtr->tclGetStartupScriptFileName) /* 159 */
#endif
#ifndef TclpMatchFilesTypes
#define TclpMatchFilesTypes \
	(tclIntStubsPtr->tclpMatchFilesTypes) /* 160 */
#endif









#endif /* defined(USE_TCL_STUBS) && !defined(USE_TCL_STUB_PROCS) */

/* !END!: Do not edit above this line. */

#endif /* _TCLINTDECLS */







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#define TclSetLibraryPath \
	(tclIntStubsPtr->tclSetLibraryPath) /* 152 */
#endif
#ifndef TclGetLibraryPath
#define TclGetLibraryPath \
	(tclIntStubsPtr->tclGetLibraryPath) /* 153 */
#endif


/* Slot 154 is reserved */



/* Slot 155 is reserved */

#ifndef TclRegError
#define TclRegError \
	(tclIntStubsPtr->tclRegError) /* 156 */
#endif
#ifndef TclVarTraceExists
#define TclVarTraceExists \
	(tclIntStubsPtr->tclVarTraceExists) /* 157 */
#endif
#ifndef TclSetStartupScriptFileName
#define TclSetStartupScriptFileName \
	(tclIntStubsPtr->tclSetStartupScriptFileName) /* 158 */
#endif
#ifndef TclGetStartupScriptFileName
#define TclGetStartupScriptFileName \
	(tclIntStubsPtr->tclGetStartupScriptFileName) /* 159 */
#endif
#ifndef TclpMatchFilesTypes
#define TclpMatchFilesTypes \
	(tclIntStubsPtr->tclpMatchFilesTypes) /* 160 */
#endif
#ifndef TclChannelTransform
#define TclChannelTransform \
	(tclIntStubsPtr->tclChannelTransform) /* 161 */
#endif
#ifndef TclChannelEventScriptInvoker
#define TclChannelEventScriptInvoker \
	(tclIntStubsPtr->tclChannelEventScriptInvoker) /* 162 */
#endif

#endif /* defined(USE_TCL_STUBS) && !defined(USE_TCL_STUB_PROCS) */

/* !END!: Do not edit above this line. */

#endif /* _TCLINTDECLS */
Changes to generic/tclStubInit.c.
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/* 
 * tclStubInit.c --
 *
 *	This file contains the initializers for the Tcl stub vectors.
 *
 * Copyright (c) 1998-1999 by Scriptics Corporation.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclStubInit.c,v 1.35 2000/04/09 16:04:18 kupries Exp $
 */

#include "tclInt.h"
#include "tclPort.h"

/*
 * Remove macros that will interfere with the definitions below.










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/* 
 * tclStubInit.c --
 *
 *	This file contains the initializers for the Tcl stub vectors.
 *
 * Copyright (c) 1998-1999 by Scriptics Corporation.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclStubInit.c,v 1.35.4.4 2000/07/25 16:54:52 kupries Exp $
 */

#include "tclInt.h"
#include "tclPort.h"

/*
 * Remove macros that will interfere with the definitions below.
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    TclHandleFree, /* 147 */
    TclHandlePreserve, /* 148 */
    TclHandleRelease, /* 149 */
    TclRegAbout, /* 150 */
    TclRegExpRangeUniChar, /* 151 */
    TclSetLibraryPath, /* 152 */
    TclGetLibraryPath, /* 153 */
    TclTestChannelCmd, /* 154 */
    TclTestChannelEventCmd, /* 155 */
    TclRegError, /* 156 */
    TclVarTraceExists, /* 157 */
    TclSetStartupScriptFileName, /* 158 */
    TclGetStartupScriptFileName, /* 159 */
    TclpMatchFilesTypes, /* 160 */


};

TclIntPlatStubs tclIntPlatStubs = {
    TCL_STUB_MAGIC,
    NULL,
#if !defined(__WIN32__) && !defined(MAC_TCL) /* UNIX */
    TclGetAndDetachPids, /* 0 */







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    TclHandleFree, /* 147 */
    TclHandlePreserve, /* 148 */
    TclHandleRelease, /* 149 */
    TclRegAbout, /* 150 */
    TclRegExpRangeUniChar, /* 151 */
    TclSetLibraryPath, /* 152 */
    TclGetLibraryPath, /* 153 */
    NULL, /* 154 */
    NULL, /* 155 */
    TclRegError, /* 156 */
    TclVarTraceExists, /* 157 */
    TclSetStartupScriptFileName, /* 158 */
    TclGetStartupScriptFileName, /* 159 */
    TclpMatchFilesTypes, /* 160 */
    TclChannelTransform, /* 161 */
    TclChannelEventScriptInvoker, /* 162 */
};

TclIntPlatStubs tclIntPlatStubs = {
    TCL_STUB_MAGIC,
    NULL,
#if !defined(__WIN32__) && !defined(MAC_TCL) /* UNIX */
    TclGetAndDetachPids, /* 0 */
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    Tcl_GetAllocMutex, /* 387 */
    Tcl_GetChannelNames, /* 388 */
    Tcl_GetChannelNamesEx, /* 389 */
    Tcl_ProcObjCmd, /* 390 */
    Tcl_ConditionFinalize, /* 391 */
    Tcl_MutexFinalize, /* 392 */
    Tcl_CreateThread, /* 393 */




};

/* !END!: Do not edit above this line. */







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    Tcl_GetAllocMutex, /* 387 */
    Tcl_GetChannelNames, /* 388 */
    Tcl_GetChannelNamesEx, /* 389 */
    Tcl_ProcObjCmd, /* 390 */
    Tcl_ConditionFinalize, /* 391 */
    Tcl_MutexFinalize, /* 392 */
    Tcl_CreateThread, /* 393 */
    Tcl_ReadRaw, /* 394 */
    Tcl_WriteRaw, /* 395 */
    Tcl_GetTopChannel, /* 396 */
    Tcl_ChannelBuffered, /* 397 */
};

/* !END!: Do not edit above this line. */
Changes to generic/tclTest.c.
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/* 
 * tclTest.c --
 *
 *	This file contains C command procedures for a bunch of additional
 *	Tcl commands that are used for testing out Tcl's C interfaces.
 *	These commands are not normally included in Tcl applications;
 *	they're only used for testing.
 *
 * Copyright (c) 1993-1994 The Regents of the University of California.
 * Copyright (c) 1994-1997 Sun Microsystems, Inc.
 * Copyright (c) 1998-1999 by Scriptics Corporation.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclTest.c,v 1.17 1999/10/13 02:22:18 hobbs Exp $
 */

#define TCL_TEST

#include "tclInt.h"
#include "tclPort.h"
#include "tclRegexp.h"

#include <locale.h>

/*
 * Declare external functions used in Windows tests.
 */

/*










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/* 
 * tclTest.c --
 *
 *	This file contains C command procedures for a bunch of additional
 *	Tcl commands that are used for testing out Tcl's C interfaces.
 *	These commands are not normally included in Tcl applications;
 *	they're only used for testing.
 *
 * Copyright (c) 1993-1994 The Regents of the University of California.
 * Copyright (c) 1994-1997 Sun Microsystems, Inc.
 * Copyright (c) 1998-2000 Ajuba Solutions.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclTest.c,v 1.17.4.1 2000/07/17 22:59:44 hobbs Exp $
 */

#define TCL_TEST

#include "tclInt.h"
#include "tclPort.h"
#include "tclRegexp.h"
#include "tclIO.h"
#include <locale.h>

/*
 * Declare external functions used in Windows tests.
 */

/*
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			    struct stat *buf));
static int		TeststatprocCmd _ANSI_ARGS_((ClientData dummy,
			    Tcl_Interp *interp, int argc, char **argv));
static int		TesttranslatefilenameCmd _ANSI_ARGS_((ClientData dummy,
			    Tcl_Interp *interp, int argc, char **argv));
static int		TestupvarCmd _ANSI_ARGS_((ClientData dummy,
			    Tcl_Interp *interp, int argc, char **argv));





/*
 * External (platform specific) initialization routine, these declarations
 * explicitly don't use EXTERN since this code does not get compiled
 * into the library:
 */








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			    struct stat *buf));
static int		TeststatprocCmd _ANSI_ARGS_((ClientData dummy,
			    Tcl_Interp *interp, int argc, char **argv));
static int		TesttranslatefilenameCmd _ANSI_ARGS_((ClientData dummy,
			    Tcl_Interp *interp, int argc, char **argv));
static int		TestupvarCmd _ANSI_ARGS_((ClientData dummy,
			    Tcl_Interp *interp, int argc, char **argv));
static int		TestChannelCmd _ANSI_ARGS_((ClientData dummy,
			    Tcl_Interp *interp, int argc, char **argv));
static int		TestChannelEventCmd _ANSI_ARGS_((ClientData dummy,
			    Tcl_Interp *interp, int argc, char **argv));

/*
 * External (platform specific) initialization routine, these declarations
 * explicitly don't use EXTERN since this code does not get compiled
 * into the library:
 */

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	    (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateObjCommand(interp, "noop", NoopObjCmd, (ClientData) 0,
	    (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testaccessproc", TestaccessprocCmd, (ClientData) 0,
	    (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testasync", TestasyncCmd, (ClientData) 0,
	    (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testchannel", TclTestChannelCmd,
            (ClientData) 0, (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testchannelevent", TclTestChannelEventCmd,
            (ClientData) 0, (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testchmod", TestchmodCmd,
            (ClientData) 0, (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testcmdtoken", TestcmdtokenCmd, (ClientData) 0,
	    (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testcmdinfo", TestcmdinfoCmd, (ClientData) 0,
	    (Tcl_CmdDeleteProc *) NULL);







|

|







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	    (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateObjCommand(interp, "noop", NoopObjCmd, (ClientData) 0,
	    (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testaccessproc", TestaccessprocCmd, (ClientData) 0,
	    (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testasync", TestasyncCmd, (ClientData) 0,
	    (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testchannel", TestChannelCmd,
            (ClientData) 0, (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testchannelevent", TestChannelEventCmd,
            (ClientData) 0, (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testchmod", TestchmodCmd,
            (ClientData) 0, (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testcmdtoken", TestcmdtokenCmd, (ClientData) 0,
	    (Tcl_CmdDeleteProc *) NULL);
    Tcl_CreateCommand(interp, "testcmdinfo", TestcmdinfoCmd, (ClientData) 0,
	    (Tcl_CmdDeleteProc *) NULL);
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    if (!strcmp("testOpenFileChannel3%.fil", fileName)) {
	return (TclpOpenFileChannel(interp, "__testOpenFileChannel3%__.fil",
		modeString, permissions));
    } else {
	return (NULL);
    }
}



































































































































































































































































































































































































































































































































































































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    if (!strcmp("testOpenFileChannel3%.fil", fileName)) {
	return (TclpOpenFileChannel(interp, "__testOpenFileChannel3%__.fil",
		modeString, permissions));
    } else {
	return (NULL);
    }
}

/*
 *----------------------------------------------------------------------
 *
 * TestChannelCmd --
 *
 *	Implements the Tcl "testchannel" debugging command and its
 *	subcommands. This is part of the testing environment.
 *
 * Results:
 *	A standard Tcl result.
 *
 * Side effects:
 *	None.
 *
 *----------------------------------------------------------------------
 */

	/* ARGSUSED */
int
TestChannelCmd(clientData, interp, argc, argv)
    ClientData clientData;	/* Not used. */
    Tcl_Interp *interp;		/* Interpreter for result. */
    int argc;			/* Count of additional args. */
    char **argv;		/* Additional arg strings. */
{
    char *cmdName;		/* Sub command. */
    Tcl_HashTable *hTblPtr;	/* Hash table of channels. */
    Tcl_HashSearch hSearch;	/* Search variable. */
    Tcl_HashEntry *hPtr;	/* Search variable. */
    Channel *chanPtr;		/* The actual channel. */
    ChannelState *statePtr;	/* state info for channel */
    Tcl_Channel chan;		/* The opaque type. */
    size_t len;			/* Length of subcommand string. */
    int IOQueued;		/* How much IO is queued inside channel? */
    ChannelBuffer *bufPtr;	/* For iterating over queued IO. */
    char buf[TCL_INTEGER_SPACE];/* For sprintf. */
    int mode;			/* rw mode of the channel */
    
    if (argc < 2) {
        Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                " subcommand ?additional args..?\"", (char *) NULL);
        return TCL_ERROR;
    }
    cmdName = argv[1];
    len = strlen(cmdName);

    chanPtr = (Channel *) NULL;

    if (argc > 2) {
        chan = Tcl_GetChannel(interp, argv[2], &mode);
        if (chan == (Tcl_Channel) NULL) {
            return TCL_ERROR;
        }
        chanPtr		= (Channel *) chan;
	statePtr	= chanPtr->state;
        chanPtr		= statePtr->topChanPtr;
	chan		= (Tcl_Channel) chanPtr;
    }

    if ((cmdName[0] == 'i') && (strncmp(cmdName, "info", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                    " info channelName\"", (char *) NULL);
            return TCL_ERROR;
        }
        Tcl_AppendElement(interp, argv[2]);
        Tcl_AppendElement(interp, chanPtr->typePtr->typeName);
        if (statePtr->flags & TCL_READABLE) {
            Tcl_AppendElement(interp, "read");
        } else {
            Tcl_AppendElement(interp, "");
        }
        if (statePtr->flags & TCL_WRITABLE) {
            Tcl_AppendElement(interp, "write");
        } else {
            Tcl_AppendElement(interp, "");
        }
        if (statePtr->flags & CHANNEL_NONBLOCKING) {
            Tcl_AppendElement(interp, "nonblocking");
        } else {
            Tcl_AppendElement(interp, "blocking");
        }
        if (statePtr->flags & CHANNEL_LINEBUFFERED) {
            Tcl_AppendElement(interp, "line");
        } else if (statePtr->flags & CHANNEL_UNBUFFERED) {
            Tcl_AppendElement(interp, "none");
        } else {
            Tcl_AppendElement(interp, "full");
        }
        if (statePtr->flags & BG_FLUSH_SCHEDULED) {
            Tcl_AppendElement(interp, "async_flush");
        } else {
            Tcl_AppendElement(interp, "");
        }
        if (statePtr->flags & CHANNEL_EOF) {
            Tcl_AppendElement(interp, "eof");
        } else {
            Tcl_AppendElement(interp, "");
        }
        if (statePtr->flags & CHANNEL_BLOCKED) {
            Tcl_AppendElement(interp, "blocked");
        } else {
            Tcl_AppendElement(interp, "unblocked");
        }
        if (statePtr->inputTranslation == TCL_TRANSLATE_AUTO) {
            Tcl_AppendElement(interp, "auto");
            if (statePtr->flags & INPUT_SAW_CR) {
                Tcl_AppendElement(interp, "saw_cr");
            } else {
                Tcl_AppendElement(interp, "");
            }
        } else if (statePtr->inputTranslation == TCL_TRANSLATE_LF) {
            Tcl_AppendElement(interp, "lf");
            Tcl_AppendElement(interp, "");
        } else if (statePtr->inputTranslation == TCL_TRANSLATE_CR) {
            Tcl_AppendElement(interp, "cr");
            Tcl_AppendElement(interp, "");
        } else if (statePtr->inputTranslation == TCL_TRANSLATE_CRLF) {
            Tcl_AppendElement(interp, "crlf");
            if (statePtr->flags & INPUT_SAW_CR) {
                Tcl_AppendElement(interp, "queued_cr");
            } else {
                Tcl_AppendElement(interp, "");
            }
        }
        if (statePtr->outputTranslation == TCL_TRANSLATE_AUTO) {
            Tcl_AppendElement(interp, "auto");
        } else if (statePtr->outputTranslation == TCL_TRANSLATE_LF) {
            Tcl_AppendElement(interp, "lf");
        } else if (statePtr->outputTranslation == TCL_TRANSLATE_CR) {
            Tcl_AppendElement(interp, "cr");
        } else if (statePtr->outputTranslation == TCL_TRANSLATE_CRLF) {
            Tcl_AppendElement(interp, "crlf");
        }
        for (IOQueued = 0, bufPtr = statePtr->inQueueHead;
	     bufPtr != (ChannelBuffer *) NULL;
	     bufPtr = bufPtr->nextPtr) {
            IOQueued += bufPtr->nextAdded - bufPtr->nextRemoved;
        }
        TclFormatInt(buf, IOQueued);
        Tcl_AppendElement(interp, buf);
        
        IOQueued = 0;
        if (statePtr->curOutPtr != (ChannelBuffer *) NULL) {
            IOQueued = statePtr->curOutPtr->nextAdded -
                statePtr->curOutPtr->nextRemoved;
        }
        for (bufPtr = statePtr->outQueueHead;
	     bufPtr != (ChannelBuffer *) NULL;
	     bufPtr = bufPtr->nextPtr) {
            IOQueued += (bufPtr->nextAdded - bufPtr->nextRemoved);
        }
        TclFormatInt(buf, IOQueued);
        Tcl_AppendElement(interp, buf);
        
        TclFormatInt(buf, Tcl_Tell((Tcl_Channel) chanPtr));
        Tcl_AppendElement(interp, buf);

        TclFormatInt(buf, statePtr->refCount);
        Tcl_AppendElement(interp, buf);

        return TCL_OK;
    }

    if ((cmdName[0] == 'i') &&
            (strncmp(cmdName, "inputbuffered", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }
        
        for (IOQueued = 0, bufPtr = statePtr->inQueueHead;
	     bufPtr != (ChannelBuffer *) NULL;
	     bufPtr = bufPtr->nextPtr) {
            IOQueued += bufPtr->nextAdded - bufPtr->nextRemoved;
        }
        TclFormatInt(buf, IOQueued);
        Tcl_AppendResult(interp, buf, (char *) NULL);
        return TCL_OK;
    }

    if ((cmdName[0] == 'm') && (strncmp(cmdName, "mode", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }
        
        if (statePtr->flags & TCL_READABLE) {
            Tcl_AppendElement(interp, "read");
        } else {
            Tcl_AppendElement(interp, "");
        }
        if (statePtr->flags & TCL_WRITABLE) {
            Tcl_AppendElement(interp, "write");
        } else {
            Tcl_AppendElement(interp, "");
        }
        return TCL_OK;
    }
    
    if ((cmdName[0] == 'n') && (strncmp(cmdName, "name", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }
        Tcl_AppendResult(interp, statePtr->channelName, (char *) NULL);
        return TCL_OK;
    }

    if ((cmdName[0] == 'o') && (strncmp(cmdName, "open", len) == 0)) {
        hTblPtr = (Tcl_HashTable *) Tcl_GetAssocData(interp, "tclIO", NULL);
        if (hTblPtr == (Tcl_HashTable *) NULL) {
            return TCL_OK;
        }
        for (hPtr = Tcl_FirstHashEntry(hTblPtr, &hSearch);
	     hPtr != (Tcl_HashEntry *) NULL;
	     hPtr = Tcl_NextHashEntry(&hSearch)) {
            Tcl_AppendElement(interp, Tcl_GetHashKey(hTblPtr, hPtr));
        }
        return TCL_OK;
    }

    if ((cmdName[0] == 'o') &&
            (strncmp(cmdName, "outputbuffered", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }

        IOQueued = 0;
        if (statePtr->curOutPtr != (ChannelBuffer *) NULL) {
            IOQueued = statePtr->curOutPtr->nextAdded -
                statePtr->curOutPtr->nextRemoved;
        }
        for (bufPtr = statePtr->outQueueHead;
	     bufPtr != (ChannelBuffer *) NULL;
	     bufPtr = bufPtr->nextPtr) {
            IOQueued += (bufPtr->nextAdded - bufPtr->nextRemoved);
        }
        TclFormatInt(buf, IOQueued);
        Tcl_AppendResult(interp, buf, (char *) NULL);
        return TCL_OK;
    }

    if ((cmdName[0] == 'q') &&
            (strncmp(cmdName, "queuedcr", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }

        Tcl_AppendResult(interp,
                (statePtr->flags & INPUT_SAW_CR) ? "1" : "0",
                (char *) NULL);
        return TCL_OK;
    }

    if ((cmdName[0] == 'r') && (strncmp(cmdName, "readable", len) == 0)) {
        hTblPtr = (Tcl_HashTable *) Tcl_GetAssocData(interp, "tclIO", NULL);
        if (hTblPtr == (Tcl_HashTable *) NULL) {
            return TCL_OK;
        }
        for (hPtr = Tcl_FirstHashEntry(hTblPtr, &hSearch);
	     hPtr != (Tcl_HashEntry *) NULL;
	     hPtr = Tcl_NextHashEntry(&hSearch)) {
            chanPtr  = (Channel *) Tcl_GetHashValue(hPtr);
	    statePtr = chanPtr->state;
            if (statePtr->flags & TCL_READABLE) {
                Tcl_AppendElement(interp, Tcl_GetHashKey(hTblPtr, hPtr));
            }
        }
        return TCL_OK;
    }

    if ((cmdName[0] == 'r') && (strncmp(cmdName, "refcount", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }
        
        TclFormatInt(buf, statePtr->refCount);
        Tcl_AppendResult(interp, buf, (char *) NULL);
        return TCL_OK;
    }

    if ((cmdName[0] == 't') && (strncmp(cmdName, "type", len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "channel name required",
                    (char *) NULL);
            return TCL_ERROR;
        }
        Tcl_AppendResult(interp, chanPtr->typePtr->typeName,
		(char *) NULL);
        return TCL_OK;
    }

    if ((cmdName[0] == 'w') && (strncmp(cmdName, "writable", len) == 0)) {
        hTblPtr = (Tcl_HashTable *) Tcl_GetAssocData(interp, "tclIO", NULL);
        if (hTblPtr == (Tcl_HashTable *) NULL) {
            return TCL_OK;
        }
        for (hPtr = Tcl_FirstHashEntry(hTblPtr, &hSearch);
	     hPtr != (Tcl_HashEntry *) NULL;
	     hPtr = Tcl_NextHashEntry(&hSearch)) {
            chanPtr = (Channel *) Tcl_GetHashValue(hPtr);
	    statePtr = chanPtr->state;
            if (statePtr->flags & TCL_WRITABLE) {
                Tcl_AppendElement(interp, Tcl_GetHashKey(hTblPtr, hPtr));
            }
        }
        return TCL_OK;
    }

    if ((cmdName[0] == 't') && (strncmp(cmdName, "transform", len) == 0)) {
	/*
	 * Syntax: transform channel -command command
	 */

        if (argc != 5) {
	    Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
		    " transform channelId -command cmd\"", (char *) NULL);
            return TCL_ERROR;
        }
	if (strcmp(argv[3], "-command") != 0) {
	    Tcl_AppendResult(interp, "bad argument \"", argv[3],
		    "\": should be \"-command\"", (char *) NULL);
	    return TCL_ERROR;
	}

	return TclChannelTransform(interp, chan,
		Tcl_NewStringObj(argv[4], -1));
    }

    if ((cmdName[0] == 'u') && (strncmp(cmdName, "unstack", len) == 0)) {
	/*
	 * Syntax: unstack channel
	 */

        if (argc != 3) {
	    Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
		    " unstack channel\"", (char *) NULL);
            return TCL_ERROR;
        }
	return Tcl_UnstackChannel(interp, chan);
    }

    Tcl_AppendResult(interp, "bad option \"", cmdName, "\": should be ",
            "info, open, readable, writable, transform, unstack",
            (char *) NULL);
    return TCL_ERROR;
}

/*
 *----------------------------------------------------------------------
 *
 * TestChannelEventCmd --
 *
 *	This procedure implements the "testchannelevent" command. It is
 *	used to test the Tcl channel event mechanism.
 *
 * Results:
 *	A standard Tcl result.
 *
 * Side effects:
 *	Creates, deletes and returns channel event handlers.
 *
 *----------------------------------------------------------------------
 */

	/* ARGSUSED */
int
TestChannelEventCmd(dummy, interp, argc, argv)
    ClientData dummy;			/* Not used. */
    Tcl_Interp *interp;			/* Current interpreter. */
    int argc;				/* Number of arguments. */
    char **argv;			/* Argument strings. */
{
    Tcl_Obj *resultListPtr;
    Channel *chanPtr;
    ChannelState *statePtr;	/* state info for channel */
    EventScriptRecord *esPtr, *prevEsPtr, *nextEsPtr;
    char *cmd;
    int index, i, mask, len;

    if ((argc < 3) || (argc > 5)) {
        Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                " channelName cmd ?arg1? ?arg2?\"", (char *) NULL);
        return TCL_ERROR;
    }
    chanPtr = (Channel *) Tcl_GetChannel(interp, argv[1], NULL);
    if (chanPtr == (Channel *) NULL) {
        return TCL_ERROR;
    }
    statePtr = chanPtr->state;

    cmd = argv[2];
    len = strlen(cmd);
    if ((cmd[0] == 'a') && (strncmp(cmd, "add", (unsigned) len) == 0)) {
        if (argc != 5) {
            Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                    " channelName add eventSpec script\"", (char *) NULL);
            return TCL_ERROR;
        }
        if (strcmp(argv[3], "readable") == 0) {
            mask = TCL_READABLE;
        } else if (strcmp(argv[3], "writable") == 0) {
            mask = TCL_WRITABLE;
        } else if (strcmp(argv[3], "none") == 0) {
            mask = 0;
	} else {
            Tcl_AppendResult(interp, "bad event name \"", argv[3],
                    "\": must be readable, writable, or none", (char *) NULL);
            return TCL_ERROR;
        }

        esPtr = (EventScriptRecord *) ckalloc((unsigned)
                sizeof(EventScriptRecord));
        esPtr->nextPtr = statePtr->scriptRecordPtr;
        statePtr->scriptRecordPtr = esPtr;
        
        esPtr->chanPtr = chanPtr;
        esPtr->interp = interp;
        esPtr->mask = mask;
	esPtr->scriptPtr = Tcl_NewStringObj(argv[4], -1);
	Tcl_IncrRefCount(esPtr->scriptPtr);

        Tcl_CreateChannelHandler((Tcl_Channel) chanPtr, mask,
                TclChannelEventScriptInvoker, (ClientData) esPtr);
        
        return TCL_OK;
    }

    if ((cmd[0] == 'd') && (strncmp(cmd, "delete", (unsigned) len) == 0)) {
        if (argc != 4) {
            Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                    " channelName delete index\"", (char *) NULL);
            return TCL_ERROR;
        }
        if (Tcl_GetInt(interp, argv[3], &index) == TCL_ERROR) {
            return TCL_ERROR;
        }
        if (index < 0) {
            Tcl_AppendResult(interp, "bad event index: ", argv[3],
                    ": must be nonnegative", (char *) NULL);
            return TCL_ERROR;
        }
        for (i = 0, esPtr = statePtr->scriptRecordPtr;
	     (i < index) && (esPtr != (EventScriptRecord *) NULL);
	     i++, esPtr = esPtr->nextPtr) {
	    /* Empty loop body. */
        }
        if (esPtr == (EventScriptRecord *) NULL) {
            Tcl_AppendResult(interp, "bad event index ", argv[3],
                    ": out of range", (char *) NULL);
            return TCL_ERROR;
        }
        if (esPtr == statePtr->scriptRecordPtr) {
            statePtr->scriptRecordPtr = esPtr->nextPtr;
        } else {
            for (prevEsPtr = statePtr->scriptRecordPtr;
		 (prevEsPtr != (EventScriptRecord *) NULL) &&
		     (prevEsPtr->nextPtr != esPtr);
		 prevEsPtr = prevEsPtr->nextPtr) {
                /* Empty loop body. */
            }
            if (prevEsPtr == (EventScriptRecord *) NULL) {
                panic("TestChannelEventCmd: damaged event script list");
            }
            prevEsPtr->nextPtr = esPtr->nextPtr;
        }
        Tcl_DeleteChannelHandler((Tcl_Channel) chanPtr,
                TclChannelEventScriptInvoker, (ClientData) esPtr);
	Tcl_DecrRefCount(esPtr->scriptPtr);
        ckfree((char *) esPtr);

        return TCL_OK;
    }

    if ((cmd[0] == 'l') && (strncmp(cmd, "list", (unsigned) len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                    " channelName list\"", (char *) NULL);
            return TCL_ERROR;
        }
	resultListPtr = Tcl_GetObjResult(interp);
        for (esPtr = statePtr->scriptRecordPtr;
	     esPtr != (EventScriptRecord *) NULL;
	     esPtr = esPtr->nextPtr) {
	    if (esPtr->mask) {
 	        Tcl_ListObjAppendElement(interp, resultListPtr, Tcl_NewStringObj(
		    (esPtr->mask == TCL_READABLE) ? "readable" : "writable", -1));
 	    } else {
 	        Tcl_ListObjAppendElement(interp, resultListPtr, 
			Tcl_NewStringObj("none", -1));
	    }
  	    Tcl_ListObjAppendElement(interp, resultListPtr, esPtr->scriptPtr);
        }
	Tcl_SetObjResult(interp, resultListPtr);
        return TCL_OK;
    }

    if ((cmd[0] == 'r') && (strncmp(cmd, "removeall", (unsigned) len) == 0)) {
        if (argc != 3) {
            Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                    " channelName removeall\"", (char *) NULL);
            return TCL_ERROR;
        }
        for (esPtr = statePtr->scriptRecordPtr;
	     esPtr != (EventScriptRecord *) NULL;
	     esPtr = nextEsPtr) {
            nextEsPtr = esPtr->nextPtr;
            Tcl_DeleteChannelHandler((Tcl_Channel) chanPtr,
                    TclChannelEventScriptInvoker, (ClientData) esPtr);
	    Tcl_DecrRefCount(esPtr->scriptPtr);
            ckfree((char *) esPtr);
        }
        statePtr->scriptRecordPtr = (EventScriptRecord *) NULL;
        return TCL_OK;
    }

    if  ((cmd[0] == 's') && (strncmp(cmd, "set", (unsigned) len) == 0)) {
        if (argc != 5) {
            Tcl_AppendResult(interp, "wrong # args: should be \"", argv[0],
                    " channelName delete index event\"", (char *) NULL);
            return TCL_ERROR;
        }
        if (Tcl_GetInt(interp, argv[3], &index) == TCL_ERROR) {
            return TCL_ERROR;
        }
        if (index < 0) {
            Tcl_AppendResult(interp, "bad event index: ", argv[3],
                    ": must be nonnegative", (char *) NULL);
            return TCL_ERROR;
        }
        for (i = 0, esPtr = statePtr->scriptRecordPtr;
	     (i < index) && (esPtr != (EventScriptRecord *) NULL);
	     i++, esPtr = esPtr->nextPtr) {
	    /* Empty loop body. */
        }
        if (esPtr == (EventScriptRecord *) NULL) {
            Tcl_AppendResult(interp, "bad event index ", argv[3],
                    ": out of range", (char *) NULL);
            return TCL_ERROR;
        }

        if (strcmp(argv[4], "readable") == 0) {
            mask = TCL_READABLE;
        } else if (strcmp(argv[4], "writable") == 0) {
            mask = TCL_WRITABLE;
        } else if (strcmp(argv[4], "none") == 0) {
            mask = 0;
	} else {
            Tcl_AppendResult(interp, "bad event name \"", argv[4],
                    "\": must be readable, writable, or none", (char *) NULL);
            return TCL_ERROR;
        }
	esPtr->mask = mask;
        Tcl_CreateChannelHandler((Tcl_Channel) chanPtr, mask,
                TclChannelEventScriptInvoker, (ClientData) esPtr);
	return TCL_OK;
    }    
    Tcl_AppendResult(interp, "bad command ", cmd, ", must be one of ",
            "add, delete, list, set, or removeall", (char *) NULL);
    return TCL_ERROR;
}
Changes to tests/all.tcl.
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# all.tcl --
#
# This file contains a top-level script to run all of the Tcl
# tests.  Execute it by invoking "source all.test" when running tcltest
# in this directory.
#
# Copyright (c) 1998-1999 by Scriptics Corporation.
# All rights reserved.
# 
# RCS: @(#) $Id: all.tcl,v 1.10 2000/04/10 17:18:56 ericm Exp $

if {[lsearch [namespace children] ::tcltest] == -1} {
    package require tcltest
    namespace import -force ::tcltest::*
}

set ::tcltest::testSingleFile false
set ::tcltest::testsDirectory [file dir [info script]]

# We need to ensure that the testsDirectory is absolute
::tcltest::normalizePath ::tcltest::testsDirectory




puts stdout "Tcl $tcl_patchLevel tests running in interp:  [info nameofexecutable]"
puts stdout "Tests running in working dir:  $::tcltest::testsDirectory"
if {[llength $::tcltest::skip] > 0} {
    puts stdout "Skipping tests that match:  $::tcltest::skip"
}
if {[llength $::tcltest::match] > 0} {









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# all.tcl --
#
# This file contains a top-level script to run all of the Tcl
# tests.  Execute it by invoking "source all.test" when running tcltest
# in this directory.
#
# Copyright (c) 1998-1999 by Scriptics Corporation.
# All rights reserved.
# 
# RCS: @(#) $Id: all.tcl,v 1.10.4.1 2000/07/25 16:54:53 kupries Exp $

if {[lsearch [namespace children] ::tcltest] == -1} {
    package require tcltest
    namespace import -force ::tcltest::*
}

set ::tcltest::testSingleFile false
set ::tcltest::testsDirectory [file dir [info script]]

# We need to ensure that the testsDirectory is absolute
::tcltest::normalizePath ::tcltest::testsDirectory

set ::tcltest::matchFiles iogt*.test
set ::tcltest::match      iogt-3.0x

puts stdout "Tcl $tcl_patchLevel tests running in interp:  [info nameofexecutable]"
puts stdout "Tests running in working dir:  $::tcltest::testsDirectory"
if {[llength $::tcltest::skip] > 0} {
    puts stdout "Skipping tests that match:  $::tcltest::skip"
}
if {[llength $::tcltest::match] > 0} {
Added tests/iogt.test.












































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































































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# -*- tcl -*-
# Commands covered:  transform, and stacking in general
#
# This file contains a collection of tests for Giot
#
# See the file "license.terms" for information on usage and redistribution
# of this file, and for a DISCLAIMER OF ALL WARRANTIES.


if {[lsearch [namespace children] ::tcltest] == -1} {
    package require tcltest
    namespace import -force ::tcltest::*
}

if {[info commands testchannel] == ""} {
    puts "Skipping io tests. This application does not seem to have the"
    puts "testchannel command that is needed to run these tests."
    return
}

::tcltest::saveState

#::tcltest::makeFile contents name

::tcltest::makeFile {abcdefghijklmnopqrstuvwxyz0123456789,./?><;'\|":[]\}\{`~!@#$%^&*()_+-=} dummy

# " capture coloring of quotes

::tcltest::makeFile {} dummyout

::tcltest::makeFile {
#!/usr/local/bin/tclsh
# -*- tcl -*-
# echo server
#
# arguments, options: port to listen on for connections.
#                     delay till echo of first block
#                     delay between blocks
#                     blocksize ...

set port   [lindex $argv 0]
set fdelay [lindex $argv 1]
set idelay [lindex $argv 2]
set bsizes [lrange $argv 3 end]
set c      0

proc newconn {sock rhost rport} {
    global c fdelay
    incr   c

    #puts stdout "C $sock $rhost $rport / $fdelay" ; flush stdout

    upvar #0 c$c conn
    set conn(after) {}
    set conn(state) 0
    set conn(size)  0
    set conn(data)  ""
    set conn(delay) $fdelay

    fileevent  $sock readable [list echoGet $c $sock]
    fconfigure $sock -translation binary -buffering none -blocking 0
}

proc echoGet {c sock} {
    global fdelay
    upvar #0 c$c conn

    if {[eof $sock]} {
	# one-shot echo
	exit
    }

    append conn(data) [read $sock]

    #puts stdout "G $c $sock $conn(data) <<$conn(data)>>" ; flush stdout

    if {$conn(after) == {}} {
	set conn(after) [after $conn(delay) [list echoPut $c $sock]]
    }
}

proc echoPut {c sock} {
    global idelay fdelay bsizes
    upvar #0 c$c conn

    if {[string length $conn(data)] == 0} {
	#puts stdout "C $c $sock" ; flush stdout
	# auto terminate
	close $sock
	exit
	#set conn(delay) $fdelay
	return
    }


    set conn(delay) $idelay

    set n [lindex $bsizes $conn(size)]

    #puts stdout "P $c $sock $n >>" ; flush stdout

    #puts __________________________________________
    #parray conn
    #puts n=<$n>


    if {[string length $conn(data)] >= $n} {
	puts -nonewline $sock [string range $conn(data) 0 $n]
	set conn(data) [string range $conn(data) [incr n] end]
    }

    incr conn(size)
    if {$conn(size) >= [llength $bsizes]} {
	set conn(size) [expr {[llength $bsizes]-1}]
    }

    set conn(after) [after $conn(delay) [list echoPut $c $sock]]
}

#fileevent stdin readable {exit ;#cut}

# main
socket -server newconn $port
vwait forever
} __echo_srv__.tcl


########################################################################

proc fevent {fdelay idelay blocks script data} {
    # start and initialize an echo server, prepare data
    # transmission, then hand over to the test script.
    # this has to start real transmission via 'flush'.
    # The server is stopped after completion of the test.

    # fixed port, not so good. lets hope for the best, for now.
    set port 4000

    eval exec tclsh __echo_srv__.tcl \
	    $port $fdelay $idelay $blocks >@stdout &

    after 500

    #puts stdout "> $port" ; flush stdout

    set         sk [socket localhost $port]
    fconfigure $sk           \
	    -blocking   0    \
	    -buffering  full \
	    -buffersize [expr {10+[llength $data]}]

    puts -nonewline $sk $data

    # The channel is prepared to go off.

    #puts stdout ">>>>>" ; flush stdout

    uplevel #0 set sock $sk
    set res [uplevel #0 $script]

    catch {close $sk}
    return $res
}

# --------------------------------------------------------------
# utility transformations ...

proc id {op data} {
    switch -- $op {
	create/write -
	create/read  -
	delete/write -
	delete/read  -
	clear_read   {;#ignore}
	flush/write -
	flush/read  -
	write       -
	read        {
	    return $data
	}
	query/maxRead {return -1}
    }
}

proc id_optrail {var op data} {
    upvar #0 $var trail

    lappend trail $op

    switch -- $op {
	create/write	-	create/read	-
	delete/write	-	delete/read	-
	flush/read	-
	clear/read	{ #ignore }
	flush/write	-
	write		-
	read		{
	    return $data
	}
	query/maxRead	{
	    return -1
	}
	default		{
	    lappend trail "error $op"
	    error $op
	}
    }
}


proc id_fulltrail {var op data} {
    upvar #0 $var trail

    #puts stdout ">> $var $op $data" ; flush stdout

    switch -- $op {
	create/write -	create/read  -
	delete/write -	delete/read  -
	clear_read   {
	    set res *ignored*
	}
	flush/write -	flush/read  -
	write       -
	read        {
	    set res $data
	}
	query/maxRead {
	    set res -1
	}
    }

    #catch {puts stdout "\t>* $res" ; flush stdout}
    #catch {puts stdout "x$res"} msg

    lappend trail [list $op $data $res]
    return $res
}

proc counter {var op data} {
    upvar #0 $var n

    switch -- $op {
	create/write -	create/read  -
	delete/write -	delete/read  -
	clear_read   {;#ignore}
	flush/write  -	flush/read   {return {}}
	write {
	    return $data
	}
	read  {
	    if {$n > 0} {
		incr n -[string length $data]
		if {$n < 0} {
		    set n 0
		}
	    }
	    return $data
	}
	query/maxRead {
	    return $n
	}
    }
}


proc counter_audit {var vtrail op data} {
    upvar #0 $var n $vtrail trail

    switch -- $op {
	create/write -	create/read  -
	delete/write -	delete/read  -
	clear_read   {
	    set res {}
	}
	flush/write  -	flush/read   {
	    set res {}
	}
	write {
	    set res $data
	}
	read  {
	    if {$n > 0} {
		incr n -[string length $data]
		if {$n < 0} {
		    set n 0
		}
	    }
	    set res $data
	}
	query/maxRead {
	    set res $n
	}
    }

    lappend trail [list counter:$op $data $res]
    return $res
}


proc rblocks {var vtrail n op data} {
    upvar #0 $var buf $vtrail trail

    set res {}

    switch -- $op {
	create/write -	create/read  -
	delete/write -	delete/read  -
	clear_read   {
	    set buf {}
	}
	flush/write {
	}
	flush/read  {
	    set res $buf
	    set buf {}
	}
	write       {
	    set data
	}
	read        {
	    append buf $data

	    set b [expr {$n * ([string length $buf] / $n)}]

	    append op " $n [string length $buf] :- $b"

	    set res [string range $buf 0 [incr b -1]]
	    set buf [string range $buf [incr b] end]
	    #return $res
	}
	query/maxRead {
	    set res -1
	}
    }

    lappend trail [list rblock | $op $data $res | $buf]
    return $res
}


# --------------------------------------------------------------
# ... and convenience procedures to stack them

proc identity {-attach channel} {
    testchannel transform $channel -command id
}

proc audit_ops {var -attach channel} {
    testchannel transform $channel -command [list id_optrail $var]
}

proc audit_flow {var -attach channel} {
    testchannel transform $channel -command [list id_fulltrail $var]
}

proc stopafter {var n -attach channel} {
    upvar #0 $var vn
    set vn $n
    testchannel transform $channel -command [list counter $var]
}

proc stopafter_audit {var trail n -attach channel} {
    upvar #0 $var vn
    set vn $n
    testchannel transform $channel -command [list counter_audit $var $trail]
}

proc rblocks_t {var trail n -attach channel} {
    testchannel transform $channel -command [list rblocks $var $trail $n]
}

# --------------------------------------------------------------
# serialize an array, with keys in sorted order.

proc array_sget {v} {
    upvar $v a

    set res [list]
    foreach n [lsort [array names a]] {
	lappend res $n $a($n)
    }
    set res
}

proc asort {alist} {
    # sort a list of key/value pairs by key, removes duplicates too.

    array set  a $alist
    array_sget a
}

########################################################################


test iogt-1.1 {stack/unstack} {
    set fh [open dummy r]
    identity -attach $fh
    testchannel unstack $fh
    close   $fh
} {}

test iogt-1.2 {stack/close} {
    set fh [open dummy r]
    identity -attach $fh
    close   $fh
} {}

test iogt-1.3 {stack/unstack, configuration, options} {
    set fh [open dummy r]
    set ca [asort [fconfigure $fh]]
    identity -attach $fh
    set cb [asort [fconfigure $fh]]
    testchannel unstack $fh
    set cc [asort [fconfigure $fh]]
    close $fh

    # With this system none of the buffering, translation and
    # encoding option may change their values with channels
    # stacked upon each other or not.

    # cb == ca == cc

    list [string equal $ca $cb] [string equal $cb $cc] [string equal $ca $cc]
} {1 1 1}

test iogt-1.4 {stack/unstack, configuration} {
    set fh [open dummy r]
    set ca [asort [fconfigure $fh]]
    identity -attach $fh
    fconfigure $fh \
	    -buffering   line \
	    -translation cr   \
	    -encoding    shiftjis
    testchannel unstack $fh
    set cc [asort [fconfigure $fh]]

    set res [list \
	    [string equal $ca $cc]   \
	    [fconfigure $fh -buffering]  \
	    [fconfigure $fh -translation] \
	    [fconfigure $fh -encoding]    \
	    ]

    close $fh
    set res
} {0 line cr shiftjis}

test iogt-2.0 {basic I/O going through transform} {
    set fin  [open dummy    r]
    set fout [open dummyout w]

    identity -attach $fin
    identity -attach $fout

    fcopy $fin $fout

    close $fin
    close $fout

    set fin  [open dummy    r]
    set fout [open dummyout r]

    set res     [string equal [set in [read $fin]] [set out [read $fout]]]
    lappend res [string length $in] [string length $out]

    close $fin
    close $fout

    set res
} {1 71 71}


test iogt-2.1 {basic I/O, operation trail} {
    set fin  [open dummy    r]
    set fout [open dummyout w]

    set ain [list] ; set aout [list]
    audit_ops ain  -attach $fin
    audit_ops aout -attach $fout

    fconfigure $fin  -buffersize 10
    fconfigure $fout -buffersize 5

    fcopy $fin $fout

    close $fin
    close $fout

    set res "[join $ain \n]\n--------\n[join $aout \n]"
} {create/read
query/maxRead
read
query/maxRead
read
query/maxRead
read
query/maxRead
read
query/maxRead
read
query/maxRead
read
query/maxRead
read
query/maxRead
read
query/maxRead
flush/read
query/maxRead
delete/read
--------
create/write
write
write
write
write
write
write
write
write
flush/write
delete/write}

test iogt-2.2 {basic I/O, data trail} {
    set fin  [open dummy    r]
    set fout [open dummyout w]

    set ain [list] ; set aout [list]
    audit_flow ain  -attach $fin
    audit_flow aout -attach $fout

    fconfigure $fin  -buffersize 10
    fconfigure $fout -buffersize 5

    fcopy $fin $fout

    close $fin
    close $fout

    set res "[join $ain \n]\n--------\n[join $aout \n]"
} {create/read {} *ignored*
query/maxRead {} -1
read abcdefghij abcdefghij
query/maxRead {} -1
read klmnopqrst klmnopqrst
query/maxRead {} -1
read uvwxyz0123 uvwxyz0123
query/maxRead {} -1
read 456789,./? 456789,./?
query/maxRead {} -1
read {><;'\|":[]} {><;'\|":[]}
query/maxRead {} -1
read {\}\{`~!@#$} {\}\{`~!@#$}
query/maxRead {} -1
read %^&*()_+-= %^&*()_+-=
query/maxRead {} -1
read {
} {
}
query/maxRead {} -1
flush/read {} {}
query/maxRead {} -1
delete/read {} *ignored*
--------
create/write {} *ignored*
write abcdefghij abcdefghij
write klmnopqrst klmnopqrst
write uvwxyz0123 uvwxyz0123
write 456789,./? 456789,./?
write {><;'\|":[]} {><;'\|":[]}
write {\}\{`~!@#$} {\}\{`~!@#$}
write %^&*()_+-= %^&*()_+-=
write {
} {
}
flush/write {} {}
delete/write {} *ignored*}


test iogt-2.3 {basic I/O, mixed trail} {
    set fin  [open dummy    r]
    set fout [open dummyout w]

    set trail [list]
    audit_flow trail -attach $fin
    audit_flow trail -attach $fout

    fconfigure $fin  -buffersize 20
    fconfigure $fout -buffersize 10

    fcopy $fin $fout

    close $fin
    close $fout

    join $trail \n
} {create/read {} *ignored*
create/write {} *ignored*
query/maxRead {} -1
read abcdefghijklmnopqrst abcdefghijklmnopqrst
write abcdefghij abcdefghij
write klmnopqrst klmnopqrst
query/maxRead {} -1
read uvwxyz0123456789,./? uvwxyz0123456789,./?
write uvwxyz0123 uvwxyz0123
write 456789,./? 456789,./?
query/maxRead {} -1
read {><;'\|":[]\}\{`~!@#$} {><;'\|":[]\}\{`~!@#$}
write {><;'\|":[]} {><;'\|":[]}
write {\}\{`~!@#$} {\}\{`~!@#$}
query/maxRead {} -1
read {%^&*()_+-=
} {%^&*()_+-=
}
query/maxRead {} -1
flush/read {} {}
write %^&*()_+-= %^&*()_+-=
write {
} {
}
query/maxRead {} -1
delete/read {} *ignored*
flush/write {} {}
delete/write {} *ignored*}


test iogt-3.0 {Tcl_Channel valid after stack/unstack, fevent handling} \
	{unknownFailure} {
    # This test to check the validity of aquired Tcl_Channel references is
    # not possible because even a backgrounded fcopy will immediately start
    # to copy data, without waiting for the event loop. This is done only in
    # case of an underflow on the read size!. So stacking transforms after the
    # fcopy will miss information, or are not used at all.
    #
    # I was able to circumvent this by using the echo.tcl server with a big
    # delay, causing the fcopy to underflow immediately.

    proc DoneCopy {n {err {}}} {
	global copy ; set copy 1
    }

    set fin  [open dummy    r]

    fevent 1000 500 {20 20 20 10 1 1} {
	close $fin

	set          fout [open dummyout w]

	flush $sock ; # now, or fcopy will error us out
	# But the 1 second delay should be enough to
	# initialize everything else here.

	fcopy $sock $fout -command DoneCopy

	# transform after fcopy got its handles !
	# They should be still valid for fcopy.

	set trail [list]
	audit_ops trail -attach $fout

	vwait copy
    } [read $fin] ; # {}

    close $fout

    rename DoneCopy {}

    # Check result of copy.

    set fin  [open dummy    r]
    set fout [open dummyout r]

    set res [string equal [read $fin] [read $fout]]

    close $fin
    close $fout

    list $res $trail
} {1 {create/write create/read write flush/write flush/read delete/write delete/read}}


test iogt-4.0 {fileevent readable, after transform} {unknownFailure} {
    set fin  [open dummy    r]
    set data [read $fin]
    close $fin

    set trail [list]
    set got   [list]

    proc Done {args} {
	global stop
	set    stop 1
    }

    proc Get {sock} {
	global trail got
	if {[eof $sock]} {
	    Done
	    lappend trail "xxxxxxxxxxxxx"
	    close $sock
	    return
	}
	lappend trail "vvvvvvvvvvvvv"
	lappend trail "\tgot: [lappend got "\[\[[read $sock]\]\]"]"
	lappend trail "============="
	#puts stdout $__ ; flush stdout
	#read $sock
    }

    fevent 1000 500 {20 20 20 10 1} {
	audit_flow trail   -attach $sock
	rblocks_t  rbuf trail 23 -attach $sock

	fileevent $sock readable [list Get $sock]

	flush $sock ; # now, or fcopy will error us out
	# But the 1 second delay should be enough to
	# initialize everything else here.

	vwait stop
    } $data


    rename Done {}
    rename Get {}

    join [list [join $got \n] ~~~~~~~~ [join $trail \n]] \n
} {[[]]
[[abcdefghijklmnopqrstuvw]]
[[xyz0123456789,./?><;'\|]]
[[]]
[[]]
[[":[]\}\{`~!@#$%^&*()]]
[[]]
~~~~~~~~
create/write {} *ignored*
create/read {} *ignored*
rblock | create/write {} {} | {}
rblock | create/read {} {} | {}
vvvvvvvvvvvvv
rblock | query/maxRead {} -1 | {}
query/maxRead {} -1
read abcdefghijklmnopqrstu abcdefghijklmnopqrstu
query/maxRead {} -1
rblock | {read 23 21 :- 0} abcdefghijklmnopqrstu {} | abcdefghijklmnopqrstu
rblock | query/maxRead {} -1 | abcdefghijklmnopqrstu
query/maxRead {} -1
	got: {[[]]}
=============
vvvvvvvvvvvvv
rblock | query/maxRead {} -1 | abcdefghijklmnopqrstu
query/maxRead {} -1
read vwxyz0123456789,./?>< vwxyz0123456789,./?><
query/maxRead {} -1
rblock | {read 23 42 :- 23} vwxyz0123456789,./?>< abcdefghijklmnopqrstuvw | xyz0123456789,./?><
rblock | query/maxRead {} -1 | xyz0123456789,./?><
query/maxRead {} -1
	got: {[[]]} {[[abcdefghijklmnopqrstuvw]]}
=============
vvvvvvvvvvvvv
rblock | query/maxRead {} -1 | xyz0123456789,./?><
query/maxRead {} -1
read {;'\|":[]\}\{`~!@#$%^&} {;'\|":[]\}\{`~!@#$%^&}
query/maxRead {} -1
rblock | {read 23 40 :- 23} {;'\|":[]\}\{`~!@#$%^&} {xyz0123456789,./?><;'\|} | {":[]\}\{`~!@#$%^&}
rblock | query/maxRead {} -1 | {":[]\}\{`~!@#$%^&}
query/maxRead {} -1
	got: {[[]]} {[[abcdefghijklmnopqrstuvw]]} {[[xyz0123456789,./?><;'\|]]}
=============
vvvvvvvvvvvvv
rblock | query/maxRead {} -1 | {":[]\}\{`~!@#$%^&}
query/maxRead {} -1
read *( *(
query/maxRead {} -1
rblock | {read 23 19 :- 0} *( {} | {":[]\}\{`~!@#$%^&*(}
rblock | query/maxRead {} -1 | {":[]\}\{`~!@#$%^&*(}
query/maxRead {} -1
	got: {[[]]} {[[abcdefghijklmnopqrstuvw]]} {[[xyz0123456789,./?><;'\|]]} {[[]]}
=============
vvvvvvvvvvvvv
rblock | query/maxRead {} -1 | {":[]\}\{`~!@#$%^&*(}
query/maxRead {} -1
read ) )
query/maxRead {} -1
rblock | {read 23 20 :- 0} ) {} | {":[]\}\{`~!@#$%^&*()}
rblock | query/maxRead {} -1 | {":[]\}\{`~!@#$%^&*()}
query/maxRead {} -1
	got: {[[]]} {[[abcdefghijklmnopqrstuvw]]} {[[xyz0123456789,./?><;'\|]]} {[[]]} {[[]]}
=============
vvvvvvvvvvvvv
rblock | query/maxRead {} -1 | {":[]\}\{`~!@#$%^&*()}
query/maxRead {} -1
flush/read {} {}
rblock | flush/read {} {":[]\}\{`~!@#$%^&*()} | {}
rblock | query/maxRead {} -1 | {}
query/maxRead {} -1
	got: {[[]]} {[[abcdefghijklmnopqrstuvw]]} {[[xyz0123456789,./?><;'\|]]} {[[]]} {[[]]} {[[":[]\}\{`~!@#$%^&*()]]}
=============
vvvvvvvvvvvvv
rblock | query/maxRead {} -1 | {}
query/maxRead {} -1
	got: {[[]]} {[[abcdefghijklmnopqrstuvw]]} {[[xyz0123456789,./?><;'\|]]} {[[]]} {[[]]} {[[":[]\}\{`~!@#$%^&*()]]} {[[]]}
xxxxxxxxxxxxx
rblock | flush/write {} {} | {}
rblock | delete/write {} {} | {}
rblock | delete/read {} {} | {}
flush/write {} {}
delete/write {} *ignored*
delete/read {} *ignored*}  ; # catch unescaped quote "


test iogt-5.0 {EOF simulation} {unknownFailure} {
    set fin  [open dummy    r]
    set fout [open dummyout w]

    set trail [list]

    audit_flow trail -attach $fin
    stopafter_audit d trail 20 -attach   $fin
    audit_flow trail -attach $fout

    fconfigure $fin  -buffersize 20
    fconfigure $fout -buffersize 10

    fcopy   $fin $fout
    testchannel unstack $fin

    # now copy the rest in the channel
    lappend trail {**after unstack**}

    fcopy $fin $fout

    close $fin
    close $fout

    join $trail \n
} {create/read {} *ignored*
counter:create/read {} {}
create/write {} *ignored*
counter:query/maxRead {} 20
query/maxRead {} -1
read {abcdefghijklmnopqrstuvwxyz0123456789,./?><;'\|":[]\}\{`~!@#$%^&*()_+-=
} {abcdefghijklmnopqrstuvwxyz0123456789,./?><;'\|":[]\}\{`~!@#$%^&*()_+-=
}
query/maxRead {} -1
flush/read {} {}
counter:read abcdefghijklmnopqrst abcdefghijklmnopqrst
write abcdefghij abcdefghij
write klmnopqrst klmnopqrst
counter:query/maxRead {} 0
counter:flush/read {} {}
counter:delete/read {} {}
**after unstack**
query/maxRead {} -1
write uvwxyz0123 uvwxyz0123
write 456789,./? 456789,./?
write {><;'\|":[]} {><;'\|":[]}
write {\}\{`~!@#$} {\}\{`~!@#$}
write %^&*()_+-= %^&*()_+-=
write {
} {
}
query/maxRead {} -1
delete/read {} *ignored*
flush/write {} {}
delete/write {} *ignored*}





proc constX {op data} {
    # replace anything coming in with a same-length string of x'es.
    switch -- $op {
	create/write -	create/read  -
	delete/write -	delete/read  -
	clear_read   {;#ignore}
	flush/write -	flush/read  -
	write       -
	read        {
	    return [string repeat x [string length $data]]
	}
	query/maxRead {return -1}
    }
}

proc constx {-attach channel} {
    testchannel transform $channel -command constX
}

test iogt-6.0 {Push back} {
    set f [open dummy r]

    # contents of dummy = "abcdefghi..."
    read $f 3 ; # skip behind "abc"

    constx -attach $f

    # expect to get "xxx" from the transform because
    # of unread "def" input to transform which returns "xxx".
    #
    # Actually the IO layer pre-read the whole file and will
    # read "def" directly from the buffer without bothering
    # to consult the newly stacked transformation. This is
    # wrong.

    set res [read $f 3]
    close $f
    set res
} {xxx}

test iogt-6.1 {Push back and up} {knownBug} {
    set f [open dummy r]

    # contents of dummy = "abcdefghi..."
    read $f 3 ; # skip behind "abc"

    constx -attach $f
    set res [read $f 3]

    testchannel unstack $f
    append res [read $f 3]
    close $f
    set res
} {xxxghi}


# cleanup
foreach file [list dummy dummyout __echo_srv__.tcl] {
    ::tcltest::removeFile $file
}
::tcltest::restoreState
::tcltest::cleanupTests
return
Changes to tests/socket.test.
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# Commands tested in this file: socket.
#
# This file contains a collection of tests for one or more of the Tcl
# built-in commands.  Sourcing this file into Tcl runs the tests and
# generates output for errors.  No output means no errors were found.
#
# Copyright (c) 1994-1996 Sun Microsystems, Inc.
# Copyright (c) 1998-1999 by Scriptics Corporation.
#
# See the file "license.terms" for information on usage and redistribution
# of this file, and for a DISCLAIMER OF ALL WARRANTIES.
#
# RCS: @(#) $Id: socket.test,v 1.14 2000/04/10 17:19:04 ericm Exp $

# Running socket tests with a remote server:
# ------------------------------------------
# 
# Some tests in socket.test depend on the existence of a remote server to
# which they connect. The remote server must be an instance of tcltest and it
# must run the script found in the file "remote.tcl" in this directory. You







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# Commands tested in this file: socket.
#
# This file contains a collection of tests for one or more of the Tcl
# built-in commands.  Sourcing this file into Tcl runs the tests and
# generates output for errors.  No output means no errors were found.
#
# Copyright (c) 1994-1996 Sun Microsystems, Inc.
# Copyright (c) 1998-2000 Ajuba Solutions.
#
# See the file "license.terms" for information on usage and redistribution
# of this file, and for a DISCLAIMER OF ALL WARRANTIES.
#
# RCS: @(#) $Id: socket.test,v 1.14.4.1 2000/07/21 05:08:52 hobbs Exp $

# Running socket tests with a remote server:
# ------------------------------------------
# 
# Some tests in socket.test depend on the existence of a remote server to
# which they connect. The remote server must be an instance of tcltest and it
# must run the script found in the file "remote.tcl" in this directory. You
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# using the remote server are not performed.

if {[lsearch [namespace children] ::tcltest] == -1} {
    package require tcltest
    namespace import -force ::tcltest::*
}

# Some tests require the testthread command

set ::tcltest::testConstraints(testthread) \
	[expr {[info commands testthread] != {}}]


#
# If remoteServerIP or remoteServerPort are not set, check in the
# environment variables for externally set values.
#

if {![info exists remoteServerIP]} {







|



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# using the remote server are not performed.

if {[lsearch [namespace children] ::tcltest] == -1} {
    package require tcltest
    namespace import -force ::tcltest::*
}

# Some tests require the testthread and exec commands

set ::tcltest::testConstraints(testthread) \
	[expr {[info commands testthread] != {}}]
set ::tcltest::testConstraints(exec) [expr {[info commands exec] != {}}]

#
# If remoteServerIP or remoteServerPort are not set, check in the
# environment variables for externally set values.
#

if {![info exists remoteServerIP]} {
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    set sock ""
    set s2 [socket 127.0.0.1 2400]
    vwait sock
    puts $s2 one
    flush $s2
    after 500
    fconfigure $sock -blocking 0
    set result [gets $sock]
    lappend result [gets $sock]
    fconfigure $sock -blocking 1
    puts $s2 two
    flush $s2
    fconfigure $sock -blocking 0
    lappend result [gets $sock]
    fconfigure $sock -blocking 1
    close $s2
    close $s
    close $sock
    set result
} {one {} two}


test socket-3.1 {socket conflict} {socket stdio} {
    removeFile script
    set f [open script w]
    puts $f {
	set f [socket -server accept 2828]







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    set sock ""
    set s2 [socket 127.0.0.1 2400]
    vwait sock
    puts $s2 one
    flush $s2
    after 500
    fconfigure $sock -blocking 0
    set result a:[gets $sock]
    lappend result b:[gets $sock]
    fconfigure $sock -blocking 1
    puts $s2 two
    flush $s2
    fconfigure $sock -blocking 0
    lappend result c:[gets $sock]
    fconfigure $sock -blocking 1
    close $s2
    close $s
    close $sock
    set result
} {a:one b: c:two}


test socket-3.1 {socket conflict} {socket stdio} {
    removeFile script
    set f [open script w]
    puts $f {
	set f [socket -server accept 2828]
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    fileevent $c readable "readlittle $c"
    set timer [after 10000 "set done timed_out"]
    vwait done
    after cancel $timer
    sendCommand {close $socket10_13_test_server}
    list $spurious $len
} {0 2690}

test socket-11.12 {testing EOF stickyness} {socket doTestsWithRemoteServer} {
    set counter 0
    set done 0
    proc count_up {s} {
	global counter done after_id
	set l [gets $s]
	if {[eof $s]} {







>







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    fileevent $c readable "readlittle $c"
    set timer [after 10000 "set done timed_out"]
    vwait done
    after cancel $timer
    sendCommand {close $socket10_13_test_server}
    list $spurious $len
} {0 2690}

test socket-11.12 {testing EOF stickyness} {socket doTestsWithRemoteServer} {
    set counter 0
    set done 0
    proc count_up {s} {
	global counter done after_id
	set l [gets $s]
	if {[eof $s]} {
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    sendCommand {
	set socket10_14_test_server [socket -server accept 2836]
	proc accept {s a p} {
	    after 100 close $s
	}
    }
    set c [socket $remoteServerIP 2836]
    fileevent $c readable "count_up $c"
    set after_id [after 1000 timed_out]
    vwait done
    sendCommand {close $socket10_14_test_server}
    set done
} {EOF is sticky}

test socket-11.13 {testing async write, async flush, async close} \
	{socket doTestsWithRemoteServer} {
    proc readit {s} {
	global count done
	set l [read $s]
	incr count [string length $l]
	if {[eof $s]} {







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    sendCommand {
	set socket10_14_test_server [socket -server accept 2836]
	proc accept {s a p} {
	    after 100 close $s
	}
    }
    set c [socket $remoteServerIP 2836]
    fileevent $c readable [list count_up $c]
    set after_id [after 1000 timed_out]
    vwait done
    sendCommand {close $socket10_14_test_server}
    set done
} {EOF is sticky}

test socket-11.13 {testing async write, async flush, async close} \
	{socket doTestsWithRemoteServer} {
    proc readit {s} {
	global count done
	set l [read $s]
	incr count [string length $l]
	if {[eof $s]} {
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    set timer [after 10000 "set done timed_out"]
    vwait done
    after cancel $timer
    sendCommand {close $l}
    set count
} 65566

test socket-12.1 {testing inheritance of server sockets} \
	{socket doTestsWithRemoteServer} {
    removeFile script1
    removeFile script2

    # Script1 is just a 10 second delay.  If the server socket
    # is inherited, it will be held open for 10 seconds

    set f [open script1 w]
    puts $f {
	after 10000 exit
	vwait forever
    }
    close $f

    # Script2 creates the server socket, launches script1,
    # waits a second, and exits.  The server socket will now
    # be closed unless script1 inherited it.

    set f [open script2 w]
    puts $f [list set tcltest $::tcltest::tcltest]
    puts $f {
	package require tcltest
	set f [socket -server accept 2828]
	proc accept { file addr port } {
	    close $file
	}
	exec $::tcltest::tcltest script1 &
	close $f
	after 1000 exit
	vwait forever
    }
    close $f
	
    # Launch script2 and wait 5 seconds







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    set timer [after 10000 "set done timed_out"]
    vwait done
    after cancel $timer
    sendCommand {close $l}
    set count
} 65566

test socket-12.1 {testing inheritance of server sockets} {socket exec} {

    removeFile script1
    removeFile script2

    # Script1 is just a 10 second delay.  If the server socket
    # is inherited, it will be held open for 10 seconds

    set f [open script1 w]
    puts $f {
	after 10000 exit
	vwait forever
    }
    close $f

    # Script2 creates the server socket, launches script1,
    # waits a second, and exits.  The server socket will now
    # be closed unless script1 inherited it.

    set f [open script2 w]
    puts $f [list set tclsh $::tcltest::tcltest]
    puts $f {

	set f [socket -server accept 2828]
	proc accept { file addr port } {
	    close $file
	}
	exec $tclsh script1 &
	close $f
	after 1000 exit
	vwait forever
    }
    close $f
	
    # Launch script2 and wait 5 seconds
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	set x {server socket was inherited}
    }

    removeFile script1
    removeFile script2
    set x
} {server socket was not inherited}
test socket-12.2 {testing inheritance of client sockets} \
	{socket doTestsWithRemoteServer} {
    removeFile script1
    removeFile script2

    # Script1 is just a 10 second delay.  If the server socket
    # is inherited, it will be held open for 10 seconds

    set f [open script1 w]
    puts $f {
	after 10000 exit
	vwait forever
    }
    close $f

    # Script2 opens the client socket and writes to it.  It then
    # launches script1 and exits.  If the child process inherited the
    # client socket, the socket will still be open.

    set f [open script2 w]
    puts $f [list set tcltest $::tcltest::tcltest]
    puts $f {
	set f [socket 127.0.0.1 2829]
	exec $::tcltest::tcltest script1 &
	puts $f testing
	flush $f
	after 1000 exit
	vwait forever
    }
    close $f

    # Create the server socket

    set server [socket -server accept 2829]
    proc accept { file host port } {

	# When the client connects, establish the read handler
	global server
	close $server
	fileevent $file readable [list getdata $file]
	fconfigure $file -buffering line -blocking 0
	return
    }
    proc getdata { file } {

	# Read handler on the accepted socket.
	global x
	global failed
	set status [catch {read $file} data]
	if {$status != 0} {
	    set x {read failed, error was $data}
	    catch { close $file }







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<








<







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	set x {server socket was inherited}
    }

    removeFile script1
    removeFile script2
    set x
} {server socket was not inherited}
test socket-12.2 {testing inheritance of client sockets} {socket exec} {

    removeFile script1
    removeFile script2

    # Script1 is just a 10 second delay.  If the server socket
    # is inherited, it will be held open for 10 seconds

    set f [open script1 w]
    puts $f {
	after 10000 exit
	vwait forever
    }
    close $f

    # Script2 opens the client socket and writes to it.  It then
    # launches script1 and exits.  If the child process inherited the
    # client socket, the socket will still be open.

    set f [open script2 w]
    puts $f [list set tclsh $::tcltest::tcltest]
    puts $f {
	set f [socket 127.0.0.1 2829]
	exec $tclsh script1 &
	puts $f testing
	flush $f
	after 1000 exit
	vwait forever
    }
    close $f

    # Create the server socket

    set server [socket -server accept 2829]
    proc accept { file host port } {

	# When the client connects, establish the read handler
	global server
	close $server
	fileevent $file readable [list getdata $file]
	fconfigure $file -buffering line -blocking 0
	return
    }
    proc getdata { file } {

	# Read handler on the accepted socket.
	global x
	global failed
	set status [catch {read $file} data]
	if {$status != 0} {
	    set x {read failed, error was $data}
	    catch { close $file }
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1557
    if {!$failed} {
	vwait failed
    }
    removeFile script1
    removeFile script2
    set x
} {client socket was not inherited}
test socket-12.3 {testing inheritance of accepted sockets} \
	{socket doTestsWithRemoteServer} {
    removeFile script1
    removeFile script2

    set f [open script1 w]
    puts $f {
	after 10000 exit
	vwait forever
    }
    close $f

    set f [open script2 w]
    puts $f [list set tcltest $::tcltest::tcltest]
    puts $f {
	set server [socket -server accept 2930]
	proc accept { file host port } {
	    global tcltest
	    puts $file {test data on socket}
	    exec $::tcltest::tcltest script1 &
	    after 1000 exit
	}
	vwait forever
    }
    close $f

    # Launch the script2 process and connect to it.  See how long
    # the socket stays open

    exec $::tcltest::tcltest script2 &

    after 1000 set ok_to_proceed 1
    vwait ok_to_proceed

    set f [socket 127.0.0.1 2930]
    fconfigure $f -buffering full -blocking 0
    fileevent $f readable [list getdata $f]

    # If the socket is still open after 5 seconds, the script1 process
    # must have inherited the accepted socket.

    set failed 0
    after 5000 set failed 1

    proc getdata { file } {

	# Read handler on the client socket.
	global x
	global failed
	set status [catch {read $file} data]
	if {$status != 0} {
	    set x {read failed, error was $data}
	    catch { close $file }







|
<











|

|

|

|














|










<







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    if {!$failed} {
	vwait failed
    }
    removeFile script1
    removeFile script2
    set x
} {client socket was not inherited}
test socket-12.3 {testing inheritance of accepted sockets} {socket exec} {

    removeFile script1
    removeFile script2

    set f [open script1 w]
    puts $f {
	after 10000 exit
	vwait forever
    }
    close $f

    set f [open script2 w]
    puts $f [list set tclsh $::tcltest::tcltest]
    puts $f {
	set server [socket -server accept 2931]
	proc accept { file host port } {
	    global tclsh
	    puts $file {test data on socket}
	    exec $tclsh script1 &
	    after 1000 exit
	}
	vwait forever
    }
    close $f

    # Launch the script2 process and connect to it.  See how long
    # the socket stays open

    exec $::tcltest::tcltest script2 &

    after 1000 set ok_to_proceed 1
    vwait ok_to_proceed

    set f [socket 127.0.0.1 2931]
    fconfigure $f -buffering full -blocking 0
    fileevent $f readable [list getdata $f]

    # If the socket is still open after 5 seconds, the script1 process
    # must have inherited the accepted socket.

    set failed 0
    after 5000 set failed 1

    proc getdata { file } {

	# Read handler on the client socket.
	global x
	global failed
	set status [catch {read $file} data]
	if {$status != 0} {
	    set x {read failed, error was $data}
	    catch { close $file }
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   flush $commandSocket
}
catch {close $commandSocket}
catch {close $remoteProcChan}
::tcltest::cleanupTests
flush stdout
return


















<
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<
<
<
<
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   flush $commandSocket
}
catch {close $commandSocket}
catch {close $remoteProcChan}
::tcltest::cleanupTests
flush stdout
return











Changes to tools/tcl.wse.in.
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  Japanese Font Size=10
  Start Gradient=0 0 255
  End Gradient=0 0 0
  Windows Flags=00000000000000010010110000001000
  Log Pathname=%MAINDIR%\INSTALL.LOG
  Message Font=MS Sans Serif
  Font Size=8
  Disk Label=tcl8.3.1
  Disk Filename=setup
  Patch Flags=0000000000000001
  Patch Threshold=85
  Patch Memory=4000
  Variable Name1=_SYS_
  Variable Default1=C:\WINDOWS\SYSTEM
  Variable Flags1=00001000







|







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  Japanese Font Size=10
  Start Gradient=0 0 255
  End Gradient=0 0 0
  Windows Flags=00000000000000010010110000001000
  Log Pathname=%MAINDIR%\INSTALL.LOG
  Message Font=MS Sans Serif
  Font Size=8
  Disk Label=tcl8.3.2
  Disk Filename=setup
  Patch Flags=0000000000000001
  Patch Threshold=85
  Patch Memory=4000
  Variable Name1=_SYS_
  Variable Default1=C:\WINDOWS\SYSTEM
  Variable Flags1=00001000
Changes to unix/Makefile.in.
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#
# This file is a Makefile for Tcl.  If it has the name "Makefile.in"
# then it is a template for a Makefile;  to generate the actual Makefile,
# run "./configure", which is a configuration script generated by the
# "autoconf" program (constructs like "@foo@" will get replaced in the
# actual Makefile.
#
# RCS: @(#) $Id: Makefile.in,v 1.63 2000/04/25 20:58:48 hobbs Exp $

VERSION 		= @TCL_VERSION@

#----------------------------------------------------------------
# Things you can change to personalize the Makefile for your own
# site (you can make these changes in either Makefile.in or
# Makefile, but changes to Makefile will get lost if you re-run







|







1
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#
# This file is a Makefile for Tcl.  If it has the name "Makefile.in"
# then it is a template for a Makefile;  to generate the actual Makefile,
# run "./configure", which is a configuration script generated by the
# "autoconf" program (constructs like "@foo@" will get replaced in the
# actual Makefile.
#
# RCS: @(#) $Id: Makefile.in,v 1.63.4.2 2000/07/26 04:57:08 welch Exp $

VERSION 		= @TCL_VERSION@

#----------------------------------------------------------------
# Things you can change to personalize the Makefile for your own
# site (you can make these changes in either Makefile.in or
# Makefile, but changes to Makefile will get lost if you re-run
262
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	tclThreadTest.o	tclUnixTest.o tclXtNotify.o tclXtTest.o 

GENERIC_OBJS = regcomp.o regexec.o regfree.o regerror.o tclAlloc.o \
	tclAsync.o tclBasic.o tclBinary.o \
	tclCkalloc.o tclClock.o tclCmdAH.o tclCmdIL.o tclCmdMZ.o \
	tclCompCmds.o tclCompExpr.o tclCompile.o tclDate.o tclEncoding.o \
	tclEnv.o tclEvent.o tclExecute.o tclFCmd.o tclFileName.o tclGet.o \
	tclHash.o tclHistory.o tclIndexObj.o tclInterp.o tclIO.o \
	tclIOCmd.o tclIOSock.o tclIOUtil.o tclLink.o tclListObj.o \
	tclLiteral.o tclLoad.o tclMain.o tclNamesp.o tclNotify.o \
	tclObj.o tclPanic.o tclParse.o tclParseExpr.o tclPipe.o \
	tclPkg.o tclPosixStr.o tclPreserve.o tclProc.o tclRegexp.o \
	tclResolve.o tclResult.o tclScan.o tclStringObj.o tclThread.o \
	tclStubInit.o tclStubLib.o tclTimer.o tclUtf.o tclUtil.o tclVar.o

STUB_LIB_OBJS = tclStubLib.o ${COMPAT_OBJS}







|
|







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	tclThreadTest.o	tclUnixTest.o tclXtNotify.o tclXtTest.o 

GENERIC_OBJS = regcomp.o regexec.o regfree.o regerror.o tclAlloc.o \
	tclAsync.o tclBasic.o tclBinary.o \
	tclCkalloc.o tclClock.o tclCmdAH.o tclCmdIL.o tclCmdMZ.o \
	tclCompCmds.o tclCompExpr.o tclCompile.o tclDate.o tclEncoding.o \
	tclEnv.o tclEvent.o tclExecute.o tclFCmd.o tclFileName.o tclGet.o \
	tclHash.o tclHistory.o tclIndexObj.o tclInterp.o tclIO.o tclIOCmd.o \
	tclIOGT.o tclIOSock.o tclIOUtil.o tclLink.o tclListObj.o \
	tclLiteral.o tclLoad.o tclMain.o tclNamesp.o tclNotify.o \
	tclObj.o tclPanic.o tclParse.o tclParseExpr.o tclPipe.o \
	tclPkg.o tclPosixStr.o tclPreserve.o tclProc.o tclRegexp.o \
	tclResolve.o tclResult.o tclScan.o tclStringObj.o tclThread.o \
	tclStubInit.o tclStubLib.o tclTimer.o tclUtf.o tclUtil.o tclVar.o

STUB_LIB_OBJS = tclStubLib.o ${COMPAT_OBJS}
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	$(GENERIC_DIR)/tclInt.h \
	$(GENERIC_DIR)/tclIntDecls.h \
	$(GENERIC_DIR)/tclIntPlatDecls.h \
	$(GENERIC_DIR)/tclPatch.h \
	$(GENERIC_DIR)/tclPlatDecls.h \
	$(GENERIC_DIR)/tclPort.h \
	$(GENERIC_DIR)/tclRegexp.h



GENERIC_SRCS = \
	$(GENERIC_DIR)/regcomp.c \
	$(GENERIC_DIR)/regexec.c \
	$(GENERIC_DIR)/regfree.c \
	$(GENERIC_DIR)/regerror.c \
	$(GENERIC_DIR)/tclAlloc.c \







>
>







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	$(GENERIC_DIR)/tclInt.h \
	$(GENERIC_DIR)/tclIntDecls.h \
	$(GENERIC_DIR)/tclIntPlatDecls.h \
	$(GENERIC_DIR)/tclPatch.h \
	$(GENERIC_DIR)/tclPlatDecls.h \
	$(GENERIC_DIR)/tclPort.h \
	$(GENERIC_DIR)/tclRegexp.h

INSTALL_HDRS = $(GENERIC_HDRS)

GENERIC_SRCS = \
	$(GENERIC_DIR)/regcomp.c \
	$(GENERIC_DIR)/regexec.c \
	$(GENERIC_DIR)/regfree.c \
	$(GENERIC_DIR)/regerror.c \
	$(GENERIC_DIR)/tclAlloc.c \
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327
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	$(GENERIC_DIR)/tclGet.c \
	$(GENERIC_DIR)/tclHash.c \
	$(GENERIC_DIR)/tclHistory.c \
	$(GENERIC_DIR)/tclIndexObj.c \
	$(GENERIC_DIR)/tclInterp.c \
	$(GENERIC_DIR)/tclIO.c \
	$(GENERIC_DIR)/tclIOCmd.c \

	$(GENERIC_DIR)/tclIOSock.c \
	$(GENERIC_DIR)/tclIOUtil.c \
	$(GENERIC_DIR)/tclLink.c \
	$(GENERIC_DIR)/tclListObj.c \
	$(GENERIC_DIR)/tclLiteral.c \
	$(GENERIC_DIR)/tclLoad.c \
	$(GENERIC_DIR)/tclMain.c \







>







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	$(GENERIC_DIR)/tclGet.c \
	$(GENERIC_DIR)/tclHash.c \
	$(GENERIC_DIR)/tclHistory.c \
	$(GENERIC_DIR)/tclIndexObj.c \
	$(GENERIC_DIR)/tclInterp.c \
	$(GENERIC_DIR)/tclIO.c \
	$(GENERIC_DIR)/tclIOCmd.c \
	$(GENERIC_DIR)/tclIOGT.c \
	$(GENERIC_DIR)/tclIOSock.c \
	$(GENERIC_DIR)/tclIOUtil.c \
	$(GENERIC_DIR)/tclLink.c \
	$(GENERIC_DIR)/tclListObj.c \
	$(GENERIC_DIR)/tclLiteral.c \
	$(GENERIC_DIR)/tclLoad.c \
	$(GENERIC_DIR)/tclMain.c \
469
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# only run by hand as yacc is not available in all environments.
# The name of the .c file is different than the name of the .y file
# so that make doesn't try to automatically regenerate the .c file.

gendate:
	yacc -l $(GENERIC_DIR)/tclGetDate.y
	sed -e 's/yy/TclDate/g' -e '/^#include <values.h>/d' \
	    -e 's?SCCSID?RCS: @(#) $$Id: Makefile.in,v 1.63 2000/04/25 20:58:48 hobbs Exp $$?' \
	    -e '/#ifdef __STDC__/,/#endif/d' -e '/TclDateerrlab:/d' \
	    -e '/TclDatenewstate:/d' -e '/#pragma/d' \
	    -e '/#include <inttypes.h>/d' -e 's/const /CONST /g' \
	    <y.tab.c >$(GENERIC_DIR)/tclDate.c
	rm y.tab.c

# The following targets generate the shared libraries in dltest that







|







472
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486
# only run by hand as yacc is not available in all environments.
# The name of the .c file is different than the name of the .y file
# so that make doesn't try to automatically regenerate the .c file.

gendate:
	yacc -l $(GENERIC_DIR)/tclGetDate.y
	sed -e 's/yy/TclDate/g' -e '/^#include <values.h>/d' \
	    -e 's?SCCSID?RCS: @(#) $$Id: Makefile.in,v 1.63.4.2 2000/07/26 04:57:08 welch Exp $$?' \
	    -e '/#ifdef __STDC__/,/#endif/d' -e '/TclDateerrlab:/d' \
	    -e '/TclDatenewstate:/d' -e '/#pragma/d' \
	    -e '/#include <inttypes.h>/d' -e 's/const /CONST /g' \
	    <y.tab.c >$(GENERIC_DIR)/tclDate.c
	rm y.tab.c

# The following targets generate the shared libraries in dltest that
558
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563
564
565
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567
568
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570
571
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		else true; \
		fi; \
	    done;
	@if test ! -x $(SRC_DIR)/install-sh; then \
	    chmod +x $(SRC_DIR)/install-sh; \
	    fi
	@echo "Installing header files";
	@for i in $(GENERIC_DIR)/tcl.h $(GENERIC_DIR)/tclDecls.h ; \
	    do \
	    $(INSTALL_DATA) $$i $(INCLUDE_INSTALL_DIR); \
	    done;
	@echo "Installing library files to $(SCRIPT_INSTALL_DIR)";
	@for i in $(TOP_DIR)/library/*.tcl $(TOP_DIR)/library/tclIndex $(UNIX_DIR)/tclAppInit.c $(UNIX_DIR)/ldAix; \
	    do \
	    $(INSTALL_DATA) $$i $(SCRIPT_INSTALL_DIR); \







|







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		else true; \
		fi; \
	    done;
	@if test ! -x $(SRC_DIR)/install-sh; then \
	    chmod +x $(SRC_DIR)/install-sh; \
	    fi
	@echo "Installing header files";
	@for i in $(INSTALL_HDRS) ; \
	    do \
	    $(INSTALL_DATA) $$i $(INCLUDE_INSTALL_DIR); \
	    done;
	@echo "Installing library files to $(SCRIPT_INSTALL_DIR)";
	@for i in $(TOP_DIR)/library/*.tcl $(TOP_DIR)/library/tclIndex $(UNIX_DIR)/tclAppInit.c $(UNIX_DIR)/ldAix; \
	    do \
	    $(INSTALL_DATA) $$i $(SCRIPT_INSTALL_DIR); \
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784



785
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tclIO.o: $(GENERIC_DIR)/tclIO.c
	$(CC) -c $(CC_SWITCHES) $(GENERIC_DIR)/tclIO.c

tclIOCmd.o: $(GENERIC_DIR)/tclIOCmd.c
	$(CC) -c $(CC_SWITCHES) $(GENERIC_DIR)/tclIOCmd.c




tclIOSock.o: $(GENERIC_DIR)/tclIOSock.c
	$(CC) -c $(CC_SWITCHES) $(GENERIC_DIR)/tclIOSock.c

tclIOUtil.o: $(GENERIC_DIR)/tclIOUtil.c
	$(CC) -c $(CC_SWITCHES) $(GENERIC_DIR)/tclIOUtil.c

tclLink.o: $(GENERIC_DIR)/tclLink.c







>
>
>







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tclIO.o: $(GENERIC_DIR)/tclIO.c
	$(CC) -c $(CC_SWITCHES) $(GENERIC_DIR)/tclIO.c

tclIOCmd.o: $(GENERIC_DIR)/tclIOCmd.c
	$(CC) -c $(CC_SWITCHES) $(GENERIC_DIR)/tclIOCmd.c

tclIOGT.o: $(GENERIC_DIR)/tclIOGT.c
	$(CC) -c $(CC_SWITCHES) $(GENERIC_DIR)/tclIOGT.c

tclIOSock.o: $(GENERIC_DIR)/tclIOSock.c
	$(CC) -c $(CC_SWITCHES) $(GENERIC_DIR)/tclIOSock.c

tclIOUtil.o: $(GENERIC_DIR)/tclIOUtil.c
	$(CC) -c $(CC_SWITCHES) $(GENERIC_DIR)/tclIOUtil.c

tclLink.o: $(GENERIC_DIR)/tclLink.c
Changes to unix/configure.in.
1
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3
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5
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7
8
9
10
11
12
13
14
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18
#! /bin/bash -norc
dnl	This file is an input file used by the GNU "autoconf" program to
dnl	generate the file "configure", which is run during Tcl installation
dnl	to configure the system for the local environment.
AC_INIT(../generic/tcl.h)
# RCS: @(#) $Id: configure.in,v 1.57 2000/04/19 08:32:45 hobbs Exp $

TCL_VERSION=8.3
TCL_MAJOR_VERSION=8
TCL_MINOR_VERSION=3
TCL_PATCH_LEVEL=".1"
VERSION=${TCL_VERSION}

#------------------------------------------------------------------------
# Handle the --prefix=... option
#------------------------------------------------------------------------

if test "${prefix}" = "NONE"; then





|




|







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#! /bin/bash -norc
dnl	This file is an input file used by the GNU "autoconf" program to
dnl	generate the file "configure", which is run during Tcl installation
dnl	to configure the system for the local environment.
AC_INIT(../generic/tcl.h)
# RCS: @(#) $Id: configure.in,v 1.57.4.1 2000/07/17 23:09:56 hobbs Exp $

TCL_VERSION=8.3
TCL_MAJOR_VERSION=8
TCL_MINOR_VERSION=3
TCL_PATCH_LEVEL=".2"
VERSION=${TCL_VERSION}

#------------------------------------------------------------------------
# Handle the --prefix=... option
#------------------------------------------------------------------------

if test "${prefix}" = "NONE"; then
Changes to unix/tcl.spec.
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7
8
9
10
11
# $Id: tcl.spec,v 1.4 2000/04/26 17:31:21 hobbs Exp $
# This file is the basis for a binary Tcl RPM for Linux.

%define version 8.3.1
%define directory /usr/local

Summary: Tcl scripting language development environment
Name: tcl
Version: %{version}
Release: 1
Copyright: BSD
|


|







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# $Id: tcl.spec,v 1.4.4.1 2000/07/17 23:09:56 hobbs Exp $
# This file is the basis for a binary Tcl RPM for Linux.

%define version 8.3.2
%define directory /usr/local

Summary: Tcl scripting language development environment
Name: tcl
Version: %{version}
Release: 1
Copyright: BSD
Changes to win/Makefile.in.
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7
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12
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#
# This file is a Makefile for Tcl.  If it has the name "Makefile.in"
# then it is a template for a Makefile;  to generate the actual Makefile,
# run "./configure", which is a configuration script generated by the
# "autoconf" program (constructs like "@foo@" will get replaced in the
# actual Makefile.
#
# RCS: @(#) $Id: Makefile.in,v 1.33 2000/04/25 20:58:48 hobbs Exp $

VERSION = @TCL_VERSION@

#----------------------------------------------------------------
# Things you can change to personalize the Makefile for your own
# site (you can make these changes in either Makefile.in or
# Makefile, but changes to Makefile will get lost if you re-run







|







1
2
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7
8
9
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11
12
13
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#
# This file is a Makefile for Tcl.  If it has the name "Makefile.in"
# then it is a template for a Makefile;  to generate the actual Makefile,
# run "./configure", which is a configuration script generated by the
# "autoconf" program (constructs like "@foo@" will get replaced in the
# actual Makefile.
#
# RCS: @(#) $Id: Makefile.in,v 1.33.4.2 2000/07/19 01:08:19 welch Exp $

VERSION = @TCL_VERSION@

#----------------------------------------------------------------
# Things you can change to personalize the Makefile for your own
# site (you can make these changes in either Makefile.in or
# Makefile, but changes to Makefile will get lost if you re-run
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
DDE_LIB_FILE		= tcldde$(VER)${LIBSUFFIX}
REG_DLL_FILE		= tclreg$(VER)${DLLSUFFIX}
REG_LIB_FILE		= tclreg$(VER)${LIBSUFFIX}
PIPE_DLL_FILE		= tclpip$(VER).dll

SHARED_LIBRARIES 	= $(TCL_DLL_FILE) $(TCL_STUB_LIB_FILE) \
			  $(DDE_DLL_FILE) $(REG_DLL_FILE) $(PIPE_DLL_FILE)
STATIC_LIBRARIES	= $(TCL_LIB_FILE)

TCLSH			= tclsh$(VER)${EXESUFFIX}
TCLTEST			= tcltest${EXEEXT}
CAT32			= cat32$(EXEEXT)
MAN2TCL			= man2tcl$(EXEEXT)

@SET_MAKE@







|







130
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DDE_LIB_FILE		= tcldde$(VER)${LIBSUFFIX}
REG_DLL_FILE		= tclreg$(VER)${DLLSUFFIX}
REG_LIB_FILE		= tclreg$(VER)${LIBSUFFIX}
PIPE_DLL_FILE		= tclpip$(VER).dll

SHARED_LIBRARIES 	= $(TCL_DLL_FILE) $(TCL_STUB_LIB_FILE) \
			  $(DDE_DLL_FILE) $(REG_DLL_FILE) $(PIPE_DLL_FILE)
STATIC_LIBRARIES	= $(TCL_LIB_FILE) $(REG_LIB_FILE) $(DDE_LIB_FILE)

TCLSH			= tclsh$(VER)${EXESUFFIX}
TCLTEST			= tcltest${EXEEXT}
CAT32			= cat32$(EXEEXT)
MAN2TCL			= man2tcl$(EXEEXT)

@SET_MAKE@
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	tclGet.$(OBJEXT) \
	tclHash.$(OBJEXT) \
	tclHistory.$(OBJEXT) \
	tclIndexObj.$(OBJEXT) \
	tclInterp.$(OBJEXT) \
	tclIO.$(OBJEXT) \
	tclIOCmd.$(OBJEXT) \

	tclIOSock.$(OBJEXT) \
	tclIOUtil.$(OBJEXT) \
	tclLink.$(OBJEXT) \
	tclLiteral.$(OBJEXT) \
	tclListObj.$(OBJEXT) \
	tclLoad.$(OBJEXT) \
	tclMain.$(OBJEXT) \







>







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	tclGet.$(OBJEXT) \
	tclHash.$(OBJEXT) \
	tclHistory.$(OBJEXT) \
	tclIndexObj.$(OBJEXT) \
	tclInterp.$(OBJEXT) \
	tclIO.$(OBJEXT) \
	tclIOCmd.$(OBJEXT) \
	tclIOGT.$(OBJEXT) \
	tclIOSock.$(OBJEXT) \
	tclIOUtil.$(OBJEXT) \
	tclLink.$(OBJEXT) \
	tclLiteral.$(OBJEXT) \
	tclListObj.$(OBJEXT) \
	tclLoad.$(OBJEXT) \
	tclMain.$(OBJEXT) \
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${TCL_LIB_FILE}: ${TCL_OBJS}
	@$(RM) ${TCL_LIB_FILE}
	@MAKE_LIB@ ${TCL_OBJS}

${DDE_DLL_FILE}: ${DDE_OBJS} ${TCL_STUB_LIB_FILE}
	@$(RM) ${DDE_DLL_FILE}
	@MAKE_DLL@ ${DDE_OBJS} ${TCL_STUB_LIB_FILE}





${REG_DLL_FILE}: ${REG_OBJS} ${TCL_STUB_LIB_FILE}
	@$(RM) ${REG_DLL_FILE}
	@MAKE_DLL@ ${REG_OBJS} ${TCL_STUB_LIB_FILE}





# PIPE_DLL_FILE is actually an executable, don't build it
# like a DLL.

${PIPE_DLL_FILE}: ${PIPE_OBJS}
	@$(RM) ${PIPE_DLL_FILE}
	$(CC) $(CFLAGS) ${PIPE_OBJS} $(LIBS) -Fe$(PIPE_DLL_FILE) 







>
>
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>




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>







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${TCL_LIB_FILE}: ${TCL_OBJS}
	@$(RM) ${TCL_LIB_FILE}
	@MAKE_LIB@ ${TCL_OBJS}

${DDE_DLL_FILE}: ${DDE_OBJS} ${TCL_STUB_LIB_FILE}
	@$(RM) ${DDE_DLL_FILE}
	@MAKE_DLL@ ${DDE_OBJS} ${TCL_STUB_LIB_FILE}

${DDE_LIB_FILE}: ${DDE_OBJS} ${TCL_LIB_FILE}
	@$(RM) ${DDE_LIB_FILE}
	@MAKE_LIB@ ${DDE_OBJS} ${TCL_LIB_FILE}

${REG_DLL_FILE}: ${REG_OBJS} ${TCL_STUB_LIB_FILE}
	@$(RM) ${REG_DLL_FILE}
	@MAKE_DLL@ ${REG_OBJS} ${TCL_STUB_LIB_FILE}

${REG_LIB_FILE}: ${REG_OBJS} ${TCL_LIB_FILE}
	@$(RM) ${REG_LIB_FILE}
	@MAKE_LIB@ ${REG_OBJS} ${TCL_LIB_FILE}

# PIPE_DLL_FILE is actually an executable, don't build it
# like a DLL.

${PIPE_DLL_FILE}: ${PIPE_OBJS}
	@$(RM) ${PIPE_DLL_FILE}
	$(CC) $(CFLAGS) ${PIPE_OBJS} $(LIBS) -Fe$(PIPE_DLL_FILE) 
Changes to win/README.binary.
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Tcl/Tk 8.3 for Windows, Binary Distribution

RCS: @(#) $Id: README.binary,v 1.19 2000/04/26 17:31:22 hobbs Exp $ 

1. Introduction
--------------- 

This directory contains the binary distribution of Tcl/Tk 8.3.1 for
Windows.  It was compiled with Microsoft Visual C++ 5.0 using Win32
API, so that it will run under Windows NT, 95, 98 and 2000.

Tcl provides a powerful platform for creating integration applications
that tie together diverse applications, protocols, devices, and
frameworks.  When paired with the Tk toolkit, Tcl provides the fastest
and most powerful way to create GUI applications that run on PCs, Unix,


|




|







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Tcl/Tk 8.3 for Windows, Binary Distribution

RCS: @(#) $Id: README.binary,v 1.19.4.1 2000/07/17 23:09:56 hobbs Exp $ 

1. Introduction
--------------- 

This directory contains the binary distribution of Tcl/Tk 8.3.2 for
Windows.  It was compiled with Microsoft Visual C++ 5.0 using Win32
API, so that it will run under Windows NT, 95, 98 and 2000.

Tcl provides a powerful platform for creating integration applications
that tie together diverse applications, protocols, devices, and
frameworks.  When paired with the Tk toolkit, Tcl provides the fastest
and most powerful way to create GUI applications that run on PCs, Unix,
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The official home for Tcl and Tk on the Web is at:
	http://dev.scriptics.com

The home page for the Tcl/Tk 8.3 release is
	http://dev.scriptics.com/software/tcltk/8.3.html

Detailed release notes can be found at
	http://dev.scriptics.com/software/tcltk/relnotes/tcl8.3.1.txt

Information about Tcl itself can be found at
	http://dev.scriptics.com/scripting/

There are many Tcl books on the market.  Most are listed at
	http://dev.scriptics.com/resource/doc/books/








|







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The official home for Tcl and Tk on the Web is at:
	http://dev.scriptics.com

The home page for the Tcl/Tk 8.3 release is
	http://dev.scriptics.com/software/tcltk/8.3.html

Detailed release notes can be found at
	http://dev.scriptics.com/software/tcltk/relnotes/tcl8.3.2.txt

Information about Tcl itself can be found at
	http://dev.scriptics.com/scripting/

There are many Tcl books on the market.  Most are listed at
	http://dev.scriptics.com/resource/doc/books/

Changes to win/configure.in.
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# This file is an input file used by the GNU "autoconf" program to
# generate the file "configure", which is run during Tcl installation
# to configure the system for the local environment.
#
# RCS: @(#) $Id: configure.in,v 1.20 2000/04/19 08:32:46 hobbs Exp $

AC_INIT(../generic/tcl.h)

TCL_VERSION=8.3
TCL_MAJOR_VERSION=8
TCL_MINOR_VERSION=3
TCL_PATCH_LEVEL=".1"
VER=$TCL_MAJOR_VERSION$TCL_MINOR_VERSION

#--------------------------------------------------------------------
# Check whether --enable-gcc or --disable-gcc was given.  Do this 
# before AC_PROG_CC and AC_CYGWIN are called so the compiler can 
# be fully tested by built-in autoconf tools.
#--------------------------------------------------------------------




|






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# This file is an input file used by the GNU "autoconf" program to
# generate the file "configure", which is run during Tcl installation
# to configure the system for the local environment.
#
# RCS: @(#) $Id: configure.in,v 1.20.4.1 2000/07/17 23:09:57 hobbs Exp $

AC_INIT(../generic/tcl.h)

TCL_VERSION=8.3
TCL_MAJOR_VERSION=8
TCL_MINOR_VERSION=3
TCL_PATCH_LEVEL=".2"
VER=$TCL_MAJOR_VERSION$TCL_MINOR_VERSION

#--------------------------------------------------------------------
# Check whether --enable-gcc or --disable-gcc was given.  Do this 
# before AC_PROG_CC and AC_CYGWIN are called so the compiler can 
# be fully tested by built-in autoconf tools.
#--------------------------------------------------------------------
Changes to win/makefile.vc.
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# Visual C++ 2.x and 4.0 makefile
#
# See the file "license.terms" for information on usage and redistribution
# of this file, and for a DISCLAIMER OF ALL WARRANTIES.
# 
# Copyright (c) 1995-1996 Sun Microsystems, Inc.
# Copyright (c) 1998-1999 by Scriptics Corporation.
#
# RCS: @(#) $Id: makefile.vc,v 1.50 2000/04/25 20:58:48 hobbs Exp $

# Does not depend on the presence of any environment variables in
# order to compile tcl; all needed information is derived from 
# location of the compiler directories.

#
# Project directories








|







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# Visual C++ 2.x and 4.0 makefile
#
# See the file "license.terms" for information on usage and redistribution
# of this file, and for a DISCLAIMER OF ALL WARRANTIES.
# 
# Copyright (c) 1995-1996 Sun Microsystems, Inc.
# Copyright (c) 1998-1999 by Scriptics Corporation.
#
# RCS: @(#) $Id: makefile.vc,v 1.50.4.1 2000/07/17 22:58:48 hobbs Exp $

# Does not depend on the presence of any environment variables in
# order to compile tcl; all needed information is derived from 
# location of the compiler directories.

#
# Project directories
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	$(TMPDIR)\tclGet.obj \
	$(TMPDIR)\tclHash.obj \
	$(TMPDIR)\tclHistory.obj \
	$(TMPDIR)\tclIndexObj.obj \
	$(TMPDIR)\tclInterp.obj \
	$(TMPDIR)\tclIO.obj \
	$(TMPDIR)\tclIOCmd.obj \

	$(TMPDIR)\tclIOSock.obj \
	$(TMPDIR)\tclIOUtil.obj \
	$(TMPDIR)\tclLink.obj \
	$(TMPDIR)\tclLiteral.obj \
	$(TMPDIR)\tclListObj.obj \
	$(TMPDIR)\tclLoad.obj \
	$(TMPDIR)\tclMain.obj \







>







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	$(TMPDIR)\tclGet.obj \
	$(TMPDIR)\tclHash.obj \
	$(TMPDIR)\tclHistory.obj \
	$(TMPDIR)\tclIndexObj.obj \
	$(TMPDIR)\tclInterp.obj \
	$(TMPDIR)\tclIO.obj \
	$(TMPDIR)\tclIOCmd.obj \
	$(TMPDIR)\tclIOGT.obj \
	$(TMPDIR)\tclIOSock.obj \
	$(TMPDIR)\tclIOUtil.obj \
	$(TMPDIR)\tclLink.obj \
	$(TMPDIR)\tclLiteral.obj \
	$(TMPDIR)\tclListObj.obj \
	$(TMPDIR)\tclLoad.obj \
	$(TMPDIR)\tclMain.obj \
Changes to win/tclWinChan.c.
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/* 
 * tclWinChan.c
 *
 *	Channel drivers for Windows channels based on files, command
 *	pipes and TCP sockets.
 *
 * Copyright (c) 1995-1997 Sun Microsystems, Inc.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclWinChan.c,v 1.10 2000/04/20 01:30:20 hobbs Exp $
 */

#include "tclWinInt.h"

/*
 * State flags used in the info structures below.
 */











|







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/* 
 * tclWinChan.c
 *
 *	Channel drivers for Windows channels based on files, command
 *	pipes and TCP sockets.
 *
 * Copyright (c) 1995-1997 Sun Microsystems, Inc.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclWinChan.c,v 1.10.4.1 2000/07/14 04:16:30 hobbs Exp $
 */

#include "tclWinInt.h"

/*
 * State flags used in the info structures below.
 */
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/*
 * This structure describes the channel type structure for file based IO.
 */

static Tcl_ChannelType fileChannelType = {
    "file",			/* Type name. */
    FileBlockProc,		/* Set blocking or non-blocking mode.*/
    FileCloseProc,		/* Close proc. */
    FileInputProc,		/* Input proc. */
    FileOutputProc,		/* Output proc. */
    FileSeekProc,		/* Seek proc. */
    NULL,			/* Set option proc. */
    NULL,			/* Get option proc. */
    FileWatchProc,		/* Set up the notifier to watch the channel. */
    FileGetHandleProc,		/* Get an OS handle from channel. */




};


/*
 *----------------------------------------------------------------------
 *
 * FileInit --







|








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>







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/*
 * This structure describes the channel type structure for file based IO.
 */

static Tcl_ChannelType fileChannelType = {
    "file",			/* Type name. */
    TCL_CHANNEL_VERSION_2,	/* v2 channel */
    FileCloseProc,		/* Close proc. */
    FileInputProc,		/* Input proc. */
    FileOutputProc,		/* Output proc. */
    FileSeekProc,		/* Seek proc. */
    NULL,			/* Set option proc. */
    NULL,			/* Get option proc. */
    FileWatchProc,		/* Set up the notifier to watch the channel. */
    FileGetHandleProc,		/* Get an OS handle from channel. */
    NULL,			/* close2proc. */
    FileBlockProc,		/* Set blocking or non-blocking mode.*/
    NULL,			/* flush proc. */
    NULL,			/* handler proc. */
};


/*
 *----------------------------------------------------------------------
 *
 * FileInit --
Changes to win/tclWinConsole.c.
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/* 
 * tclWinConsole.c --
 *
 *	This file implements the Windows-specific console functions,
 *	and the "console" channel driver.
 *
 * Copyright (c) 1999 by Scriptics Corp.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclWinConsole.c,v 1.3 1999/07/27 01:42:25 redman Exp $
 */

#include "tclWinInt.h"

#include <dos.h>
#include <fcntl.h>
#include <io.h>











|







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/* 
 * tclWinConsole.c --
 *
 *	This file implements the Windows-specific console functions,
 *	and the "console" channel driver.
 *
 * Copyright (c) 1999 by Scriptics Corp.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclWinConsole.c,v 1.3.12.1 2000/07/14 04:16:30 hobbs Exp $
 */

#include "tclWinInt.h"

#include <dos.h>
#include <fcntl.h>
#include <io.h>
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/*
 * This structure describes the channel type structure for command console
 * based IO.
 */

static Tcl_ChannelType consoleChannelType = {
    "console",			/* Type name. */
    ConsoleBlockModeProc,	/* Set blocking or non-blocking mode.*/
    ConsoleCloseProc,		/* Close proc. */
    ConsoleInputProc,		/* Input proc. */
    ConsoleOutputProc,		/* Output proc. */
    NULL,			/* Seek proc. */
    NULL,			/* Set option proc. */
    NULL,			/* Get option proc. */
    ConsoleWatchProc,		/* Set up notifier to watch the channel. */
    ConsoleGetHandleProc,	/* Get an OS handle from channel. */




};

/*
 *----------------------------------------------------------------------
 *
 * ConsoleInit --
 *







|








>
>
>
>







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/*
 * This structure describes the channel type structure for command console
 * based IO.
 */

static Tcl_ChannelType consoleChannelType = {
    "console",			/* Type name. */
    TCL_CHANNEL_VERSION_2,	/* v2 channel */
    ConsoleCloseProc,		/* Close proc. */
    ConsoleInputProc,		/* Input proc. */
    ConsoleOutputProc,		/* Output proc. */
    NULL,			/* Seek proc. */
    NULL,			/* Set option proc. */
    NULL,			/* Get option proc. */
    ConsoleWatchProc,		/* Set up notifier to watch the channel. */
    ConsoleGetHandleProc,	/* Get an OS handle from channel. */
    NULL,			/* close2proc. */
    ConsoleBlockModeProc,	/* Set blocking or non-blocking mode.*/
    NULL,			/* flush proc. */
    NULL,			/* handler proc. */
};

/*
 *----------------------------------------------------------------------
 *
 * ConsoleInit --
 *
Changes to win/tclWinPipe.c.
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/* 
 * tclWinPipe.c --
 *
 *	This file implements the Windows-specific exec pipeline functions,
 *	the "pipe" channel driver, and the "pid" Tcl command.
 *
 * Copyright (c) 1996-1997 by Sun Microsystems, Inc.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclWinPipe.c,v 1.11 2000/04/11 21:42:12 ericm Exp $
 */

#include "tclWinInt.h"

#include <dos.h>
#include <fcntl.h>
#include <io.h>











|







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/* 
 * tclWinPipe.c --
 *
 *	This file implements the Windows-specific exec pipeline functions,
 *	the "pipe" channel driver, and the "pid" Tcl command.
 *
 * Copyright (c) 1996-1997 by Sun Microsystems, Inc.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclWinPipe.c,v 1.11.4.1 2000/07/14 04:16:30 hobbs Exp $
 */

#include "tclWinInt.h"

#include <dos.h>
#include <fcntl.h>
#include <io.h>
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/*
 * This structure describes the channel type structure for command pipe
 * based IO.
 */

static Tcl_ChannelType pipeChannelType = {
    "pipe",			/* Type name. */
    PipeBlockModeProc,		/* Set blocking or non-blocking mode.*/
    TCL_CLOSE2PROC,		/* Close proc. */
    PipeInputProc,		/* Input proc. */
    PipeOutputProc,		/* Output proc. */
    NULL,			/* Seek proc. */
    NULL,			/* Set option proc. */
    NULL,			/* Get option proc. */
    PipeWatchProc,		/* Set up notifier to watch the channel. */
    PipeGetHandleProc,		/* Get an OS handle from channel. */
    PipeClose2Proc



};

/*
 *----------------------------------------------------------------------
 *
 * PipeInit --
 *







|








|
>
>
>







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/*
 * This structure describes the channel type structure for command pipe
 * based IO.
 */

static Tcl_ChannelType pipeChannelType = {
    "pipe",			/* Type name. */
    TCL_CHANNEL_VERSION_2,	/* v2 channel */
    TCL_CLOSE2PROC,		/* Close proc. */
    PipeInputProc,		/* Input proc. */
    PipeOutputProc,		/* Output proc. */
    NULL,			/* Seek proc. */
    NULL,			/* Set option proc. */
    NULL,			/* Get option proc. */
    PipeWatchProc,		/* Set up notifier to watch the channel. */
    PipeGetHandleProc,		/* Get an OS handle from channel. */
    PipeClose2Proc,		/* close2proc */
    PipeBlockModeProc,		/* Set blocking or non-blocking mode.*/
    NULL,			/* flush proc. */
    NULL,			/* handler proc. */
};

/*
 *----------------------------------------------------------------------
 *
 * PipeInit --
 *
Changes to win/tclWinSerial.c.
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/*
 * Tclwinserial.c --
 *
 *  This file implements the Windows-specific serial port functions,
 *  and the "serial" channel driver.
 *
 * Copyright (c) 1999 by Scriptics Corp.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 * Changes by Rolf.Schroedter@dlr.de June 25-27, 1999
 *
 * RCS: @(#) $Id: tclWinSerial.c,v 1.9 1999/11/24 20:55:17 hobbs Exp $
 */

#include "tclWinInt.h"

#include <dos.h>
#include <fcntl.h>
#include <io.h>












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/*
 * Tclwinserial.c --
 *
 *  This file implements the Windows-specific serial port functions,
 *  and the "serial" channel driver.
 *
 * Copyright (c) 1999 by Scriptics Corp.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 * Changes by Rolf.Schroedter@dlr.de June 25-27, 1999
 *
 * RCS: @(#) $Id: tclWinSerial.c,v 1.9.4.1 2000/07/14 04:16:31 hobbs Exp $
 */

#include "tclWinInt.h"

#include <dos.h>
#include <fcntl.h>
#include <io.h>
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/*
 * This structure describes the channel type structure for command serial
 * based IO.
 */

static Tcl_ChannelType serialChannelType = {
    "serial",               /* Type name. */
    SerialBlockProc,        /* Set blocking or non-blocking mode.*/
    SerialCloseProc,        /* Close proc. */
    SerialInputProc,        /* Input proc. */
    SerialOutputProc,       /* Output proc. */
    NULL,                   /* Seek proc. */
    SerialSetOptionProc,    /* Set option proc. */
    SerialGetOptionProc,    /* Get option proc. */
    SerialWatchProc,        /* Set up notifier to watch the channel. */
    SerialGetHandleProc,    /* Get an OS handle from channel. */




};

/*
 *----------------------------------------------------------------------
 *
 * SerialInit --
 *







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/*
 * This structure describes the channel type structure for command serial
 * based IO.
 */

static Tcl_ChannelType serialChannelType = {
    "serial",			/* Type name. */
    TCL_CHANNEL_VERSION_2,	/* v2 channel */
    SerialCloseProc,		/* Close proc. */
    SerialInputProc,		/* Input proc. */
    SerialOutputProc,		/* Output proc. */
    NULL,			/* Seek proc. */
    SerialSetOptionProc,	/* Set option proc. */
    SerialGetOptionProc,	/* Get option proc. */
    SerialWatchProc,		/* Set up notifier to watch the channel. */
    SerialGetHandleProc,	/* Get an OS handle from channel. */
    NULL,			/* close2proc. */
    SerialBlockProc,		/* Set blocking or non-blocking mode.*/
    NULL,			/* flush proc. */
    NULL,			/* handler proc. */
};

/*
 *----------------------------------------------------------------------
 *
 * SerialInit --
 *
Changes to win/tclWinSock.c.
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/* 
 * tclWinSock.c --
 *
 *	This file contains Windows-specific socket related code.
 *
 * Copyright (c) 1995-1997 Sun Microsystems, Inc.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclWinSock.c,v 1.18 1999/12/09 14:44:11 hobbs Exp $
 */

#include "tclWinInt.h"

/*
 * The following variable is used to tell whether this module has been
 * initialized.










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/* 
 * tclWinSock.c --
 *
 *	This file contains Windows-specific socket related code.
 *
 * Copyright (c) 1995-1997 Sun Microsystems, Inc.
 *
 * See the file "license.terms" for information on usage and redistribution
 * of this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclWinSock.c,v 1.18.4.1 2000/07/14 04:16:31 hobbs Exp $
 */

#include "tclWinInt.h"

/*
 * The following variable is used to tell whether this module has been
 * initialized.
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/*
 * This structure describes the channel type structure for TCP socket
 * based IO.
 */

static Tcl_ChannelType tcpChannelType = {
    "tcp",		/* Type name. */
    TcpBlockProc,	/* Set socket into blocking/non-blocking mode. */
    TcpCloseProc,	/* Close proc. */
    TcpInputProc,	/* Input proc. */
    TcpOutputProc,	/* Output proc. */
    NULL,		/* Seek proc. */
    NULL,		/* Set option proc. */
    TcpGetOptionProc,	/* Get option proc. */
    TcpWatchProc,	/* Initialize notifier to watch this channel. */
    TcpGetHandleProc,	/* Get an OS handle from channel. */




};

/*
 * Define version of Winsock required by Tcl.
 */

#define WSA_VERSION_REQD MAKEWORD(1,1)







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/*
 * This structure describes the channel type structure for TCP socket
 * based IO.
 */

static Tcl_ChannelType tcpChannelType = {
    "tcp",			/* Type name. */
    TCL_CHANNEL_VERSION_2,	/* v2 channel */
    TcpCloseProc,		/* Close proc. */
    TcpInputProc,		/* Input proc. */
    TcpOutputProc,		/* Output proc. */
    NULL,			/* Seek proc. */
    NULL,			/* Set option proc. */
    TcpGetOptionProc,		/* Get option proc. */
    TcpWatchProc,		/* Set up notifier to watch this channel. */
    TcpGetHandleProc,		/* Get an OS handle from channel. */
    NULL,			/* close2proc. */
    TcpBlockProc,		/* Set blocking/non-blocking mode. */
    NULL,			/* flush proc. */
    NULL,			/* handler proc. */
};

/*
 * Define version of Winsock required by Tcl.
 */

#define WSA_VERSION_REQD MAKEWORD(1,1)