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Overview
Comment:merge novem
Downloads: Tarball | ZIP archive | SQL archive
Timelines: family | ancestors | descendants | both | dgp-refactor
Files: files | file ages | folders
SHA1: 491c1074c5168e1d0a19a2320186c2266f7e1322
User & Date: dgp 2017-04-27 13:28:51
Context
2017-05-08
16:34
merge novem check-in: 4b307fb502 user: dgp tags: dgp-refactor
2017-04-27
13:28
merge novem check-in: 491c1074c5 user: dgp tags: dgp-refactor
12:54
merge trunk check-in: a7adf2c06d user: dgp tags: novem
2017-04-21
12:45
merge novem check-in: d0afdcd2a7 user: dgp tags: dgp-refactor
Changes
Hide Diffs Unified Diffs Ignore Whitespace Patch

Changes to generic/tclDisassemble.c.

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static Tcl_Obj *	DisassembleByteCodeAsDicts(Tcl_Interp *interp,
			    Tcl_Obj *objPtr);
static Tcl_Obj *	DisassembleByteCodeObj(Tcl_Interp *interp,
			    Tcl_Obj *objPtr);
static int		FormatInstruction(ByteCode *codePtr,
			    const unsigned char *pc, Tcl_Obj *bufferObj);
static void		GetLocationInformation(Tcl_Interp *interp,
			    Proc *procPtr, Tcl_Obj **fileObjPtr,
			    int *linePtr);
static void		PrintSourceToObj(Tcl_Obj *appendObj,
			    const char *stringPtr, int maxChars);
static void		UpdateStringOfInstName(Tcl_Obj *objPtr);

/*
 * The structure below defines an instruction name Tcl object to allow
 * reporting of inner contexts in errorstack without string allocation.
................................................................................
 *	None.
 *
 *----------------------------------------------------------------------
 */

static void
GetLocationInformation(
    Tcl_Interp *interp,		/* Where to look up the location
				 * information. */
    Proc *procPtr,		/* What to look up the information for. */
    Tcl_Obj **fileObjPtr,	/* Where to write the information about what
				 * file the code came from. Will be written
				 * to, either with the object (assume shared!)
				 * that describes what the file was, or with
				 * NULL if the information is not
				 * available. */
    int *linePtr)		/* Where to write the information about what
				 * line number represented the start of the
				 * code in question. Will be written to,
				 * either with the line number or with -1 if
				 * the information is not available. */
{
    Interp *iPtr = (Interp *) interp;
    Tcl_HashEntry *hePtr;
    CmdFrame *cfPtr;

    *fileObjPtr = NULL;
    *linePtr = -1;
    if (iPtr != NULL && procPtr != NULL) {
	hePtr = Tcl_FindHashEntry(iPtr->linePBodyPtr, procPtr);
	if (hePtr != NULL && (cfPtr = Tcl_GetHashValue(hePtr)) != NULL) {






	    *linePtr = cfPtr->line[0];
	    if (cfPtr->type == TCL_LOCATION_SOURCE) {
		*fileObjPtr = cfPtr->data.eval.path;
	    }
	}
    }
}
 
#ifdef TCL_COMPILE_DEBUG
/*
 *----------------------------------------------------------------------
 *
................................................................................
    Tcl_AppendPrintfToObj(bufferObj,
	    "ByteCode %p, refCt %" TCL_LL_MODIFIER "u, epoch %" TCL_LL_MODIFIER "u, interp %p (epoch %" TCL_LL_MODIFIER "u)\n",
	    codePtr, (Tcl_WideInt)codePtr->refCount, (Tcl_WideInt)codePtr->compileEpoch, iPtr,
	    (Tcl_WideInt)iPtr->compileEpoch);
    Tcl_AppendToObj(bufferObj, "  Source ", -1);
    PrintSourceToObj(bufferObj, codePtr->source,
	    TclMin(codePtr->numSrcBytes, 55));
    GetLocationInformation(interp, codePtr->procPtr, &fileObj, &line);
    if (line > -1 && fileObj != NULL) {
	Tcl_AppendPrintfToObj(bufferObj, "\n  File \"%s\" Line %d",
		Tcl_GetString(fileObj), line);
    }
    Tcl_AppendPrintfToObj(bufferObj,
	    "\n  Cmds %d, src %d, inst %d, litObjs %u, aux %d, stkDepth %u, code/src %.2f\n",
	    numCmds, codePtr->numSrcBytes, codePtr->numCodeBytes,
................................................................................
#undef Decode

    /*
     * Get the source file and line number information from the CmdFrame
     * system if it is available.
     */

    GetLocationInformation(interp, codePtr->procPtr, &file, &line);

    /*
     * Build the overall result.
     */

    description = Tcl_NewObj();
    Tcl_DictObjPut(NULL, description, Tcl_NewStringObj("literals", -1),






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static Tcl_Obj *	DisassembleByteCodeAsDicts(Tcl_Interp *interp,
			    Tcl_Obj *objPtr);
static Tcl_Obj *	DisassembleByteCodeObj(Tcl_Interp *interp,
			    Tcl_Obj *objPtr);
static int		FormatInstruction(ByteCode *codePtr,
			    const unsigned char *pc, Tcl_Obj *bufferObj);
static void		GetLocationInformation(Proc *procPtr,
			    Tcl_Obj **fileObjPtr, int *linePtr);

static void		PrintSourceToObj(Tcl_Obj *appendObj,
			    const char *stringPtr, int maxChars);
static void		UpdateStringOfInstName(Tcl_Obj *objPtr);

/*
 * The structure below defines an instruction name Tcl object to allow
 * reporting of inner contexts in errorstack without string allocation.
................................................................................
 *	None.
 *
 *----------------------------------------------------------------------
 */

static void
GetLocationInformation(


    Proc *procPtr,		/* What to look up the information for. */
    Tcl_Obj **fileObjPtr,	/* Where to write the information about what
				 * file the code came from. Will be written
				 * to, either with the object (assume shared!)
				 * that describes what the file was, or with
				 * NULL if the information is not
				 * available. */
    int *linePtr)		/* Where to write the information about what
				 * line number represented the start of the
				 * code in question. Will be written to,
				 * either with the line number or with -1 if
				 * the information is not available. */
{


    CmdFrame *cfPtr = TclGetCmdFrameForProcedure(procPtr);

    *fileObjPtr = NULL;
    *linePtr = -1;
    if (cfPtr == NULL) {
	return;

    }

    /*
     * Get the source location data out of the CmdFrame.
     */

    *linePtr = cfPtr->line[0];
    if (cfPtr->type == TCL_LOCATION_SOURCE) {
	*fileObjPtr = cfPtr->data.eval.path;


    }
}
 
#ifdef TCL_COMPILE_DEBUG
/*
 *----------------------------------------------------------------------
 *
................................................................................
    Tcl_AppendPrintfToObj(bufferObj,
	    "ByteCode %p, refCt %" TCL_LL_MODIFIER "u, epoch %" TCL_LL_MODIFIER "u, interp %p (epoch %" TCL_LL_MODIFIER "u)\n",
	    codePtr, (Tcl_WideInt)codePtr->refCount, (Tcl_WideInt)codePtr->compileEpoch, iPtr,
	    (Tcl_WideInt)iPtr->compileEpoch);
    Tcl_AppendToObj(bufferObj, "  Source ", -1);
    PrintSourceToObj(bufferObj, codePtr->source,
	    TclMin(codePtr->numSrcBytes, 55));
    GetLocationInformation(codePtr->procPtr, &fileObj, &line);
    if (line > -1 && fileObj != NULL) {
	Tcl_AppendPrintfToObj(bufferObj, "\n  File \"%s\" Line %d",
		Tcl_GetString(fileObj), line);
    }
    Tcl_AppendPrintfToObj(bufferObj,
	    "\n  Cmds %d, src %d, inst %d, litObjs %u, aux %d, stkDepth %u, code/src %.2f\n",
	    numCmds, codePtr->numSrcBytes, codePtr->numCodeBytes,
................................................................................
#undef Decode

    /*
     * Get the source file and line number information from the CmdFrame
     * system if it is available.
     */

    GetLocationInformation(codePtr->procPtr, &file, &line);

    /*
     * Build the overall result.
     */

    description = Tcl_NewObj();
    Tcl_DictObjPut(NULL, description, Tcl_NewStringObj("literals", -1),

Changes to generic/tclInt.h.

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			    const char *encodingName);
MODULE_SCOPE void	TclFSUnloadTempFile(Tcl_LoadHandle loadHandle);
MODULE_SCOPE int *	TclGetAsyncReadyPtr(void);
MODULE_SCOPE Tcl_Obj *	TclGetBgErrorHandler(Tcl_Interp *interp);
MODULE_SCOPE int	TclGetChannelFromObj(Tcl_Interp *interp,
			    Tcl_Obj *objPtr, Tcl_Channel *chanPtr,
			    int *modePtr, int flags);

MODULE_SCOPE int TclGetCompletionCodeFromObj(Tcl_Interp *interp,
			    Tcl_Obj *value, int *code);
MODULE_SCOPE int	TclGetNumberFromObj(Tcl_Interp *interp,
			    Tcl_Obj *objPtr, ClientData *clientDataPtr,
			    int *typePtr);
MODULE_SCOPE int	TclGetOpenModeEx(Tcl_Interp *interp,
			    const char *modeString, int *seekFlagPtr,
			    int *binaryPtr);
................................................................................
			    struct CompileEnv *envPtr);

MODULE_SCOPE int	TclCompileAssembleCmd(Tcl_Interp *interp,
			    Tcl_Parse *parsePtr, Command *cmdPtr,
			    struct CompileEnv *envPtr);

/*
 * Functions defined in generic/tclVar.c and currenttly exported only for use
 * by the bytecode compiler and engine. Some of these could later be placed in
 * the public interface.
 */

MODULE_SCOPE Var *	TclObjLookupVarEx(Tcl_Interp * interp,
			    Tcl_Obj *part1Ptr, Tcl_Obj *part2Ptr, int flags,
			    const char *msg, const int createPart1,






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			    const char *encodingName);
MODULE_SCOPE void	TclFSUnloadTempFile(Tcl_LoadHandle loadHandle);
MODULE_SCOPE int *	TclGetAsyncReadyPtr(void);
MODULE_SCOPE Tcl_Obj *	TclGetBgErrorHandler(Tcl_Interp *interp);
MODULE_SCOPE int	TclGetChannelFromObj(Tcl_Interp *interp,
			    Tcl_Obj *objPtr, Tcl_Channel *chanPtr,
			    int *modePtr, int flags);
MODULE_SCOPE CmdFrame *	TclGetCmdFrameForProcedure(Proc *procPtr);
MODULE_SCOPE int	TclGetCompletionCodeFromObj(Tcl_Interp *interp,
			    Tcl_Obj *value, int *code);
MODULE_SCOPE int	TclGetNumberFromObj(Tcl_Interp *interp,
			    Tcl_Obj *objPtr, ClientData *clientDataPtr,
			    int *typePtr);
MODULE_SCOPE int	TclGetOpenModeEx(Tcl_Interp *interp,
			    const char *modeString, int *seekFlagPtr,
			    int *binaryPtr);
................................................................................
			    struct CompileEnv *envPtr);

MODULE_SCOPE int	TclCompileAssembleCmd(Tcl_Interp *interp,
			    Tcl_Parse *parsePtr, Command *cmdPtr,
			    struct CompileEnv *envPtr);

/*
 * Functions defined in generic/tclVar.c and currently exported only for use
 * by the bytecode compiler and engine. Some of these could later be placed in
 * the public interface.
 */

MODULE_SCOPE Var *	TclObjLookupVarEx(Tcl_Interp * interp,
			    Tcl_Obj *part1Ptr, Tcl_Obj *part2Ptr, int flags,
			    const char *msg, const int createPart1,

Changes to generic/tclProc.c.

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    overflow = (nameLen > limit);
    Tcl_AppendObjToErrorInfo(interp, Tcl_ObjPrintf(
	    "\n    (lambda term \"%.*s%s\" line %d)",
	    (overflow ? limit : nameLen), procName,
	    (overflow ? "..." : ""), Tcl_GetErrorLine(interp)));
}



































 
/*
 * Local Variables:
 * mode: c
 * c-basic-offset: 4
 * fill-column: 78
 * End:
 */






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    overflow = (nameLen > limit);
    Tcl_AppendObjToErrorInfo(interp, Tcl_ObjPrintf(
	    "\n    (lambda term \"%.*s%s\" line %d)",
	    (overflow ? limit : nameLen), procName,
	    (overflow ? "..." : ""), Tcl_GetErrorLine(interp)));
}
 
/*
 *----------------------------------------------------------------------
 *
 * TclGetCmdFrameForProcedure --
 *
 *	How to get the CmdFrame information for a procedure.
 *
 * Results:
 *	A pointer to the CmdFrame (only guaranteed to be valid until the next
 *	Tcl command is processed or the interpreter's state is otherwise
 *	modified) or a NULL if the information is not available.
 *
 * Side effects:
 *	none.
 *
 *----------------------------------------------------------------------
 */

CmdFrame *
TclGetCmdFrameForProcedure(
    Proc *procPtr)		/* The procedure whose cmd-frame is to be
				 * looked up. */
{
    Tcl_HashEntry *hePtr;

    if (procPtr == NULL || procPtr->iPtr == NULL) {
	return NULL;
    }
    hePtr = Tcl_FindHashEntry(procPtr->iPtr->linePBodyPtr, procPtr);
    if (hePtr == NULL) {
	return NULL;
    }
    return (CmdFrame *) Tcl_GetHashValue(hePtr);
}
 
/*
 * Local Variables:
 * mode: c
 * c-basic-offset: 4
 * fill-column: 78
 * End:
 */

Changes to generic/tclZlib.c.

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    int e, produced;
    Tcl_Obj *errObj;

    if (cd->mode == TCL_ZLIB_STREAM_INFLATE) {
	return outProc(Tcl_GetChannelInstanceData(cd->parent), buf, toWrite,
		errorCodePtr);
    }









    cd->outStream.next_in = (Bytef *) buf;
    cd->outStream.avail_in = toWrite;
    do {
	e = Deflate(&cd->outStream, cd->outBuffer, cd->outAllocated,
		Z_NO_FLUSH, &produced);


	if ((e == Z_OK && produced > 0) || e == Z_BUF_ERROR) {
	    /*
	     * deflate() indicates that it is out of space by returning
	     * Z_BUF_ERROR *or* by simply returning Z_OK with no remaining
	     * space; in either case, we must write the whole buffer out and
	     * retry to compress what is left.
	     */

	    if (e == Z_BUF_ERROR) {
		produced = cd->outAllocated;
		e = Z_OK;
	    }
	    if (Tcl_WriteRaw(cd->parent, cd->outBuffer, produced) < 0) {
		*errorCodePtr = Tcl_GetErrno();
		return -1;
	    }
	}
    } while (e == Z_OK && produced > 0 && cd->outStream.avail_in > 0);

    if (e == Z_OK) {
	return toWrite - cd->outStream.avail_in;
    }

    errObj = Tcl_NewListObj(0, NULL);
    Tcl_ListObjAppendElement(NULL, errObj, Tcl_NewStringObj("-errorcode",-1));






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    int e, produced;
    Tcl_Obj *errObj;

    if (cd->mode == TCL_ZLIB_STREAM_INFLATE) {
	return outProc(Tcl_GetChannelInstanceData(cd->parent), buf, toWrite,
		errorCodePtr);
    }

    /*
     * No zero-length writes. Flushes must be explicit.
     */

    if (toWrite == 0) {
	return 0;
    }

    cd->outStream.next_in = (Bytef *) buf;
    cd->outStream.avail_in = toWrite;
    while (cd->outStream.avail_in > 0) {
	e = Deflate(&cd->outStream, cd->outBuffer, cd->outAllocated,
		Z_NO_FLUSH, &produced);

	if (e != Z_OK || produced == 0) {
	    break;






	}




	if (Tcl_WriteRaw(cd->parent, cd->outBuffer, produced) < 0) {
	    *errorCodePtr = Tcl_GetErrno();
	    return -1;
	}
    }


    if (e == Z_OK) {
	return toWrite - cd->outStream.avail_in;
    }

    errObj = Tcl_NewListObj(0, NULL);
    Tcl_ListObjAppendElement(NULL, errObj, Tcl_NewStringObj("-errorcode",-1));

Changes to tests/zlib.test.

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	close $fin
	close $fout
    }
    file size $filedst
} -cleanup {
    removeFile $filesrc
    removeFile $filedst
} -result 4152
 
::tcltest::cleanupTests
return

# Local Variables:
# mode: tcl
# End:






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	close $fin
	close $fout
    }
    file size $filedst
} -cleanup {
    removeFile $filesrc
    removeFile $filedst
} -result 56
 
::tcltest::cleanupTests
return

# Local Variables:
# mode: tcl
# End:

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	 * system calls results should be checked there. - dl
	 */

	TtySetAttributes(fsPtr->fd, &tty);
	return TCL_OK;
    }


    /*
     * Option -handshake none|xonxoff|rtscts|dtrdsr
     */

    if ((len > 1) && (strncmp(optionName, "-handshake", len) == 0)) {
	/*
	 * Reset all handshake options. DTR and RTS are ON by default.
................................................................................
	tcsetattr(fsPtr->fd, TCSADRAIN, &iostate);
	return TCL_OK;
    }

    /*
     * Option -ttycontrol {DTR 1 RTS 0 BREAK 0}
     */

    if ((len > 4) && (strncmp(optionName, "-ttycontrol", len) == 0)) {
#if defined(TIOCMGET) && defined(TIOCMSET)
	int i, control, flag;

	if (Tcl_SplitList(interp, value, &argc, &argv) == TCL_ERROR) {
	    return TCL_ERROR;
	}
................................................................................

#if defined(TIOCMGET)
    /*
     * Get option -ttystatus
     * Option is readonly and returned by [fconfigure chan -ttystatus] but not
     * returned by unnamed [fconfigure chan].
     */

    if ((len > 4) && (strncmp(optionName, "-ttystatus", len) == 0)) {
	int status;

	valid = 1;
	ioctl(fsPtr->fd, TIOCMGET, &status);
	TtyModemStatusStr(status, dsPtr);
    }
#endif /* TIOCMGET */

    if (valid) {
	return TCL_OK;
    }
    return Tcl_BadChannelOption(interp, optionName, "mode"
	    " queue ttystatus xchar"
	    );
}
 

static const struct {int baud; speed_t speed;} speeds[] = {
#ifdef B0
    {0, B0},
#endif
#ifdef B50
    {50, B50},
#endif
................................................................................
    {3500000,B3500000},
#endif
#ifdef B4000000
    {4000000,B4000000},
#endif
    {-1, 0}
};

/*
 *---------------------------------------------------------------------------
 *
 * TtyGetSpeed --
 *
 *	Given an integer baud rate, get the speed_t value that should be
 *	used to select that baud rate.
................................................................................
 *	All other modes can be simulated on top of this in Tcl.
 *
 *---------------------------------------------------------------------------
 */

static void
TtyInit(
    int fd)	/* Open file descriptor for serial port to be initialized. */

{
    struct termios iostate;
    tcgetattr(fd, &iostate);

    if (iostate.c_iflag != IGNBRK
	    || iostate.c_oflag != 0
	    || iostate.c_lflag != 0
	    || iostate.c_cflag & CREAD
	    || iostate.c_cc[VMIN] != 1
	    || iostate.c_cc[VTIME] != 0)
    {
	iostate.c_iflag = IGNBRK;
	iostate.c_oflag = 0;
	iostate.c_lflag = 0;
	iostate.c_cflag |= CREAD;
	iostate.c_cc[VMIN] = 1;
	iostate.c_cc[VTIME] = 0;







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	 * system calls results should be checked there. - dl
	 */

	TtySetAttributes(fsPtr->fd, &tty);
	return TCL_OK;
    }


    /*
     * Option -handshake none|xonxoff|rtscts|dtrdsr
     */

    if ((len > 1) && (strncmp(optionName, "-handshake", len) == 0)) {
	/*
	 * Reset all handshake options. DTR and RTS are ON by default.
................................................................................
	tcsetattr(fsPtr->fd, TCSADRAIN, &iostate);
	return TCL_OK;
    }

    /*
     * Option -ttycontrol {DTR 1 RTS 0 BREAK 0}
     */

    if ((len > 4) && (strncmp(optionName, "-ttycontrol", len) == 0)) {
#if defined(TIOCMGET) && defined(TIOCMSET)
	int i, control, flag;

	if (Tcl_SplitList(interp, value, &argc, &argv) == TCL_ERROR) {
	    return TCL_ERROR;
	}
................................................................................

#if defined(TIOCMGET)
    /*
     * Get option -ttystatus
     * Option is readonly and returned by [fconfigure chan -ttystatus] but not
     * returned by unnamed [fconfigure chan].
     */

    if ((len > 4) && (strncmp(optionName, "-ttystatus", len) == 0)) {
	int status;

	valid = 1;
	ioctl(fsPtr->fd, TIOCMGET, &status);
	TtyModemStatusStr(status, dsPtr);
    }
#endif /* TIOCMGET */

    if (valid) {
	return TCL_OK;
    }
    return Tcl_BadChannelOption(interp, optionName,
		"mode queue ttystatus xchar");

}
 

static const struct {int baud; speed_t speed;} speeds[] = {
#ifdef B0
    {0, B0},
#endif
#ifdef B50
    {50, B50},
#endif
................................................................................
    {3500000,B3500000},
#endif
#ifdef B4000000
    {4000000,B4000000},
#endif
    {-1, 0}
};
 
/*
 *---------------------------------------------------------------------------
 *
 * TtyGetSpeed --
 *
 *	Given an integer baud rate, get the speed_t value that should be
 *	used to select that baud rate.
................................................................................
 *	All other modes can be simulated on top of this in Tcl.
 *
 *---------------------------------------------------------------------------
 */

static void
TtyInit(
    int fd)			/* Open file descriptor for serial port to be
				 * initialized. */
{
    struct termios iostate;
    tcgetattr(fd, &iostate);

    if (iostate.c_iflag != IGNBRK
	    || iostate.c_oflag != 0
	    || iostate.c_lflag != 0
	    || iostate.c_cflag & CREAD
	    || iostate.c_cc[VMIN] != 1
	    || iostate.c_cc[VTIME] != 0) {

	iostate.c_iflag = IGNBRK;
	iostate.c_oflag = 0;
	iostate.c_lflag = 0;
	iostate.c_cflag |= CREAD;
	iostate.c_cc[VMIN] = 1;
	iostate.c_cc[VTIME] = 0;

Changes to unix/tclUnixInit.c.

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 * Side effects:
 *	Sets "tclDefaultLibrary", "tcl_pkgPath", and "tcl_platform" Tcl
 *	variables.
 *
 *----------------------------------------------------------------------
 */






































void
TclpSetVariables(
    Tcl_Interp *interp)
{
#ifdef __CYGWIN__
    SYSTEM_INFO sysInfo;
    static OSVERSIONINFOW osInfo;
................................................................................
#endif
    int unameOK;
    Tcl_DString ds;

#ifdef HAVE_COREFOUNDATION
    char tclLibPath[MAXPATHLEN + 1];

#if MAC_OS_X_VERSION_MAX_ALLOWED > 1020
    /*
     * Set msgcat fallback locale to current CFLocale identifier.
     */

    CFLocaleRef localeRef;

    if (&CFLocaleCopyCurrent != NULL && &CFLocaleGetIdentifier != NULL &&
	    (localeRef = CFLocaleCopyCurrent())) {
	CFStringRef locale = CFLocaleGetIdentifier(localeRef);

	if (locale) {
	    char loc[256];

	    if (CFStringGetCString(locale, loc, 256, kCFStringEncodingUTF8)) {
		if (!Tcl_CreateNamespace(interp, "::tcl::mac", NULL, NULL)) {
		    Tcl_ResetResult(interp);
		}
		Tcl_SetVar2(interp, "::tcl::mac::locale", NULL, loc, TCL_GLOBAL_ONLY);
	    }
	}
	CFRelease(localeRef);
    }

#endif /* MAC_OS_X_VERSION_MAX_ALLOWED > 1020 */

    if (MacOSXGetLibraryPath(interp, MAXPATHLEN, tclLibPath) == TCL_OK) {
	const char *str;
	CFBundleRef bundleRef;

	Tcl_SetVar2(interp, "tclDefaultLibrary", NULL, tclLibPath, TCL_GLOBAL_ONLY);






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 * Side effects:
 *	Sets "tclDefaultLibrary", "tcl_pkgPath", and "tcl_platform" Tcl
 *	variables.
 *
 *----------------------------------------------------------------------
 */

#if defined(HAVE_COREFOUNDATION) && MAC_OS_X_VERSION_MAX_ALLOWED > 1020
/*
 * Helper because whether CFLocaleCopyCurrent and CFLocaleGetIdentifier are
 * strongly or weakly bound varies by version of OSX, triggering warnings.
 */

static inline void
InitMacLocaleInfoVar(
    CFLocaleRef (*localeCopyCurrent)(void),
    CFStringRef (*localeGetIdentifier)(CFLocaleRef),
    Tcl_Interp *interp)
{
    CFLocaleRef localeRef;
    CFStringRef locale;
    char loc[256];

    if (localeCopyCurrent == NULL || localeGetIdentifier == NULL) {
	return;
    }

    localeRef = localeCopyCurrent();
    if (!localeRef) {
	return;
    }

    locale = localeGetIdentifier(localeRef);
    if (locale && CFStringGetCString(locale, loc, 256,
	    kCFStringEncodingUTF8)) {
	if (!Tcl_CreateNamespace(interp, "::tcl::mac", NULL, NULL)) {
	    Tcl_ResetResult(interp);
	}
	Tcl_SetVar2(interp, "::tcl::mac::locale", NULL, loc, TCL_GLOBAL_ONLY);
    }
    CFRelease(localeRef);
}
#endif /*defined(HAVE_COREFOUNDATION) && MAC_OS_X_VERSION_MAX_ALLOWED > 1020*/

void
TclpSetVariables(
    Tcl_Interp *interp)
{
#ifdef __CYGWIN__
    SYSTEM_INFO sysInfo;
    static OSVERSIONINFOW osInfo;
................................................................................
#endif
    int unameOK;
    Tcl_DString ds;

#ifdef HAVE_COREFOUNDATION
    char tclLibPath[MAXPATHLEN + 1];


    /*
     * Set msgcat fallback locale to current CFLocale identifier.
     */

#if MAC_OS_X_VERSION_MAX_ALLOWED > 1020

















    InitMacLocaleInfoVar(CFLocaleCopyCurrent, CFLocaleGetIdentifier, interp);
#endif /* MAC_OS_X_VERSION_MAX_ALLOWED > 1020 */

    if (MacOSXGetLibraryPath(interp, MAXPATHLEN, tclLibPath) == TCL_OK) {
	const char *str;
	CFBundleRef bundleRef;

	Tcl_SetVar2(interp, "tclDefaultLibrary", NULL, tclLibPath, TCL_GLOBAL_ONLY);

Changes to unix/tclUnixSock.c.

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 *	None.
 *
 * Side effects:
 *	Adds three elements do dsPtr
 *
 *----------------------------------------------------------------------
 */



























static void
TcpHostPortList(
    Tcl_Interp *interp,
    Tcl_DString *dsPtr,
    address addr,
    socklen_t salen)
{
................................................................................

    if (addr.sa.sa_family == AF_INET) {
        if (addr.sa4.sin_addr.s_addr == INADDR_ANY) {
            flags |= NI_NUMERICHOST;
        }
#ifndef NEED_FAKE_RFC2553
    } else if (addr.sa.sa_family == AF_INET6) {
        if ((IN6_ARE_ADDR_EQUAL(&addr.sa6.sin6_addr, &in6addr_any))
            || (IN6_IS_ADDR_V4MAPPED(&addr.sa6.sin6_addr) &&
                addr.sa6.sin6_addr.s6_addr[12] == 0 &&
                addr.sa6.sin6_addr.s6_addr[13] == 0 &&
                addr.sa6.sin6_addr.s6_addr[14] == 0 &&
                addr.sa6.sin6_addr.s6_addr[15] == 0)) {
            flags |= NI_NUMERICHOST;
        }
#endif /* NEED_FAKE_RFC2553 */
    }

    /*
     * Check if reverse DNS has been switched off globally.






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 *	None.
 *
 * Side effects:
 *	Adds three elements do dsPtr
 *
 *----------------------------------------------------------------------
 */

#ifndef NEED_FAKE_RFC2553
static inline int
IPv6AddressNeedsNumericRendering(
    struct in6_addr addr)
{
    if (IN6_ARE_ADDR_EQUAL(&addr, &in6addr_any)) {
        return 1;
    }

    /*
     * The IN6_IS_ADDR_V4MAPPED macro has a problem with aliasing warnings on
     * at least some versions of OSX.
     */

#pragma GCC diagnostic push 
#pragma GCC diagnostic ignored "-Wstrict-aliasing"
    if (!IN6_IS_ADDR_V4MAPPED(&addr)) {
#pragma GCC diagnostic pop
        return 0;
    }

    return (addr.s6_addr[12] == 0 && addr.s6_addr[13] == 0
            && addr.s6_addr[14] == 0 && addr.s6_addr[15] == 0);
}
#endif /* NEED_FAKE_RFC2553 */

static void
TcpHostPortList(
    Tcl_Interp *interp,
    Tcl_DString *dsPtr,
    address addr,
    socklen_t salen)
{
................................................................................

    if (addr.sa.sa_family == AF_INET) {
        if (addr.sa4.sin_addr.s_addr == INADDR_ANY) {
            flags |= NI_NUMERICHOST;
        }
#ifndef NEED_FAKE_RFC2553
    } else if (addr.sa.sa_family == AF_INET6) {


        if (IPv6AddressNeedsNumericRendering(addr.sa6.sin6_addr)) {



            flags |= NI_NUMERICHOST;
        }
#endif /* NEED_FAKE_RFC2553 */
    }

    /*
     * Check if reverse DNS has been switched off globally.

Changes to win/tclWinChan.c.

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#define FILE_ASYNC	(1<<1)	/* Channel is non-blocking. */
#define FILE_APPEND	(1<<2)	/* File is in append mode. */

#define FILE_TYPE_SERIAL  (FILE_TYPE_PIPE+1)
#define FILE_TYPE_CONSOLE (FILE_TYPE_PIPE+2)

/*
 * The following structure contains per-instance data for a file based channel.

 */

typedef struct FileInfo {
    Tcl_Channel channel;	/* Pointer to channel structure. */
    int validMask;		/* OR'ed combination of TCL_READABLE,
				 * TCL_WRITABLE, or TCL_EXCEPTION: indicates
				 * which operations are valid on the file. */
................................................................................
static void		FileWatchProc(ClientData instanceData, int mask);
static void		FileThreadActionProc(ClientData instanceData,
			    int action);
static int		FileTruncateProc(ClientData instanceData,
			    Tcl_WideInt length);
static DWORD		FileGetType(HANDLE handle);
static int		NativeIsComPort(const TCHAR *nativeName);

/*
 * This structure describes the channel type structure for file based IO.
 */

static const Tcl_ChannelType fileChannelType = {
    "file",			/* Type name. */
    TCL_CHANNEL_VERSION_5,	/* v5 channel */
................................................................................
    FileBlockProc,		/* Set blocking or non-blocking mode.*/
    NULL,			/* flush proc. */
    NULL,			/* handler proc. */
    FileWideSeekProc,		/* Wide seek proc. */
    FileThreadActionProc,	/* Thread action proc. */
    FileTruncateProc		/* Truncate proc. */
};








 
/*
 *----------------------------------------------------------------------
 *
 * FileInit --
 *
 *	This function creates the window used to simulate file events.
................................................................................
 *----------------------------------------------------------------------
 */

static ThreadSpecificData *
FileInit(void)
{
    ThreadSpecificData *tsdPtr =
	    (ThreadSpecificData *)TclThreadDataKeyGet(&dataKey);

    if (tsdPtr == NULL) {
	tsdPtr = TCL_TSD_INIT(&dataKey);
	tsdPtr->firstFilePtr = NULL;
	Tcl_CreateEventSource(FileSetupProc, FileCheckProc, NULL);
	Tcl_CreateThreadExitHandler(FileChannelExitHandler, NULL);
    }
................................................................................
    ClientData data,		/* Not used. */
    int flags)			/* Event flags as passed to Tcl_DoOneEvent. */
{
    FileInfo *infoPtr;
    Tcl_Time blockTime = { 0, 0 };
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);

    if (!(flags & TCL_FILE_EVENTS)) {
	return;
    }

    /*
     * Check to see if there is a ready file. If so, poll.
     */

................................................................................
    ClientData data,		/* Not used. */
    int flags)			/* Event flags as passed to Tcl_DoOneEvent. */
{
    FileEvent *evPtr;
    FileInfo *infoPtr;
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);

    if (!(flags & TCL_FILE_EVENTS)) {
	return;
    }

    /*
     * Queue events for any ready files that don't already have events queued
     * (caused by persistent states that won't generate WinSock events).
     */

    for (infoPtr = tsdPtr->firstFilePtr; infoPtr != NULL;
	    infoPtr = infoPtr->nextPtr) {
	if (infoPtr->watchMask && !(infoPtr->flags & FILE_PENDING)) {
	    infoPtr->flags |= FILE_PENDING;
	    evPtr = ckalloc(sizeof(FileEvent));
	    evPtr->header.proc = FileEventProc;
	    evPtr->infoPtr = infoPtr;
	    Tcl_QueueEvent((Tcl_Event *) evPtr, TCL_QUEUE_TAIL);
	}
    }
}
................................................................................
    int flags)			/* Flags that indicate what events to handle,
				 * such as TCL_FILE_EVENTS. */
{
    FileEvent *fileEvPtr = (FileEvent *)evPtr;
    FileInfo *infoPtr;
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);

    if (!(flags & TCL_FILE_EVENTS)) {
	return 0;
    }

    /*
     * Search through the list of watched files for the one whose handle
     * matches the event. We do this rather than simply dereferencing the
     * handle in the event so that files can be deleted while the event is in
     * the queue.
     */

    for (infoPtr = tsdPtr->firstFilePtr; infoPtr != NULL;
	    infoPtr = infoPtr->nextPtr) {
	if (fileEvPtr->infoPtr == infoPtr) {
	    infoPtr->flags &= ~(FILE_PENDING);
	    Tcl_NotifyChannel(infoPtr->channel, infoPtr->watchMask);
	    break;
	}
    }
    return 1;
}
 
................................................................................
     * Files on Windows can not be switched between blocking and nonblocking,
     * hence we have to emulate the behavior. This is done in the input
     * function by checking against a bit in the state. We set or unset the
     * bit here to cause the input function to emulate the correct behavior.
     */

    if (mode == TCL_MODE_NONBLOCKING) {
	infoPtr->flags |= FILE_ASYNC;
    } else {
	infoPtr->flags &= ~(FILE_ASYNC);
    }
    return 0;
}
 
/*
 *----------------------------------------------------------------------
 *
................................................................................

    /*
     * Save our current place in case we need to roll-back the seek.
     */

    oldPosHigh = 0;
    oldPos = SetFilePointer(infoPtr->handle, 0, &oldPosHigh, FILE_CURRENT);
    if (oldPos == (LONG)INVALID_SET_FILE_POINTER) {
	DWORD winError = GetLastError();

	if (winError != NO_ERROR) {
	    TclWinConvertError(winError);
	    *errorCodePtr = errno;
	    return -1;
	}
    }

    newPosHigh = (offset < 0 ? -1 : 0);
    newPos = SetFilePointer(infoPtr->handle, offset, &newPosHigh, moveMethod);
    if (newPos == (LONG)INVALID_SET_FILE_POINTER) {
	DWORD winError = GetLastError();

	if (winError != NO_ERROR) {
	    TclWinConvertError(winError);
	    *errorCodePtr = errno;
	    return -1;
	}
................................................................................
    } else {
	moveMethod = FILE_END;
    }

    newPosHigh = Tcl_WideAsLong(offset >> 32);
    newPos = SetFilePointer(infoPtr->handle, Tcl_WideAsLong(offset),
	    &newPosHigh, moveMethod);
    if (newPos == (LONG)INVALID_SET_FILE_POINTER) {
	DWORD winError = GetLastError();

	if (winError != NO_ERROR) {
	    TclWinConvertError(winError);
	    *errorCodePtr = errno;
	    return -1;
	}
    }
    return (((Tcl_WideInt)((unsigned)newPos)) | (Tcl_LongAsWide(newPosHigh) << 32));

}
 
/*
 *----------------------------------------------------------------------
 *
 * FileTruncateProc --
 *
................................................................................

    /*
     * Save where we were...
     */

    oldPosHigh = 0;
    oldPos = SetFilePointer(infoPtr->handle, 0, &oldPosHigh, FILE_CURRENT);
    if (oldPos == (LONG)INVALID_SET_FILE_POINTER) {
	DWORD winError = GetLastError();

	if (winError != NO_ERROR) {
	    TclWinConvertError(winError);
	    return errno;
	}
    }

    /*
     * Move to where we want to truncate
     */

    newPosHigh = Tcl_WideAsLong(length >> 32);
    newPos = SetFilePointer(infoPtr->handle, Tcl_WideAsLong(length),
	    &newPosHigh, FILE_BEGIN);
    if (newPos == (LONG)INVALID_SET_FILE_POINTER) {
	DWORD winError = GetLastError();

	if (winError != NO_ERROR) {
	    TclWinConvertError(winError);
	    return errno;
	}
    }

    /*
................................................................................
{
    FileInfo *infoPtr = instanceData;
    DWORD bytesRead;

    *errorCode = 0;

    /*
     * TODO: This comment appears to be out of date.  We *do* have a
     * console driver, over in tclWinConsole.c.  After some Windows
     * developer confirms, this comment should be revised.
     *
     * Note that we will block on reads from a console buffer until a full
     * line has been entered. The only way I know of to get around this is to
     * write a console driver. We should probably do this at some point, but
     * for now, we just block. The same problem exists for files being read
     * over the network.
     */
................................................................................
    *errorCode = 0;

    /*
     * If we are writing to a file that was opened with O_APPEND, we need to
     * seek to the end of the file before writing the current buffer.
     */

    if (infoPtr->flags & FILE_APPEND) {
	SetFilePointer(infoPtr->handle, 0, NULL, FILE_END);
    }

    if (WriteFile(infoPtr->handle, (LPVOID) buf, (DWORD) toWrite,
	    &bytesWritten, (LPOVERLAPPED) NULL) == FALSE) {
	TclWinConvertError(GetLastError());
	*errorCode = errno;
................................................................................
FileGetHandleProc(
    ClientData instanceData,	/* The file state. */
    int direction,		/* TCL_READABLE or TCL_WRITABLE */
    ClientData *handlePtr)	/* Where to store the handle.  */
{
    FileInfo *infoPtr = instanceData;

    if (direction & infoPtr->validMask) {
	*handlePtr = (ClientData) infoPtr->handle;
	return TCL_OK;
    } else {
	return TCL_ERROR;
    }



}
 
/*
 *----------------------------------------------------------------------
 *
 * TclpOpenFileChannel --
 *
................................................................................
    const TCHAR *nativeName;
    HANDLE handle;
    char channelName[16 + TCL_INTEGER_SPACE];
    TclFile readFile = NULL, writeFile = NULL;

    nativeName = Tcl_FSGetNativePath(pathPtr);
    if (nativeName == NULL) {
	if (interp != (Tcl_Interp *) NULL) {
	    Tcl_AppendResult(interp, "couldn't open \"",
	    TclGetString(pathPtr), "\": filename is invalid on this platform",
	    NULL);
	}
	return NULL;
    }

    switch (mode & (O_RDONLY | O_WRONLY | O_RDWR)) {
    case O_RDONLY:
	accessMode = GENERIC_READ;
................................................................................
	break;
    default:
	createMode = OPEN_EXISTING;
	break;
    }

    /*
     * [2413550] Avoid double-open of serial ports on Windows
     * Special handling for Windows serial ports by a "name-hint"
     * to directly open it with the OVERLAPPED flag set.
     */

    if( NativeIsComPort(nativeName) ) {

	handle = TclWinSerialOpen(INVALID_HANDLE_VALUE, nativeName, accessMode);
	if (handle == INVALID_HANDLE_VALUE) {
	    TclWinConvertError(GetLastError());
	    if (interp != (Tcl_Interp *) NULL) {

		Tcl_AppendResult(interp, "couldn't open serial \"",
			TclGetString(pathPtr), "\": ",
			Tcl_PosixError(interp), NULL);
	    }
	    return NULL;
	}

	/*
	* For natively named Windows serial ports we are done.
	*/

	channel = TclWinOpenSerialChannel(handle, channelName,
		channelPermissions);

	return channel;
    }

    /*
     * If the file is being created, get the file attributes from the
     * permissions argument, else use the existing file attributes.
     */

    if (mode & O_CREAT) {
	if (permissions & S_IWRITE) {
	    flags = FILE_ATTRIBUTE_NORMAL;
	} else {
	    flags = FILE_ATTRIBUTE_READONLY;
	}
    } else {
	flags = GetFileAttributes(nativeName);
	if (flags == 0xFFFFFFFF) {
................................................................................
    handle = CreateFile(nativeName, accessMode, shareMode,
	    NULL, createMode, flags, (HANDLE) NULL);

    if (handle == INVALID_HANDLE_VALUE) {
	DWORD err = GetLastError();

	if ((err & 0xffffL) == ERROR_OPEN_FAILED) {

	    err = (mode & O_CREAT) ? ERROR_FILE_EXISTS : ERROR_FILE_NOT_FOUND;
	}
	TclWinConvertError(err);
	if (interp != (Tcl_Interp *) NULL) {
	    Tcl_SetObjResult(interp, Tcl_ObjPrintf(
		    "couldn't open \"%s\": %s",
		    TclGetString(pathPtr), Tcl_PosixError(interp)));
	}
	return NULL;
    }

    channel = NULL;

    switch (FileGetType(handle)) {
    case FILE_TYPE_SERIAL:
	/*
	 * Natively named serial ports "com1-9", "\\\\.\\comXX" are
	 * already done with the code above.
	 * Here we handle all other serial port names.
	 *
	 * Reopen channel for OVERLAPPED operation. Normally this shouldn't
	 * fail, because the channel exists.
	 */

	handle = TclWinSerialOpen(handle, nativeName, accessMode);
	if (handle == INVALID_HANDLE_VALUE) {
	    TclWinConvertError(GetLastError());
	    if (interp != (Tcl_Interp *) NULL) {
		Tcl_SetObjResult(interp, Tcl_ObjPrintf(
			"couldn't reopen serial \"%s\": %s",
			TclGetString(pathPtr), Tcl_PosixError(interp)));
	    }
	    return NULL;
	}
	channel = TclWinOpenSerialChannel(handle, channelName,
................................................................................
		channelPermissions);
	break;
    case FILE_TYPE_CONSOLE:
	channel = TclWinOpenConsoleChannel(handle, channelName,
		channelPermissions);
	break;
    case FILE_TYPE_PIPE:
	if (channelPermissions & TCL_READABLE) {
	    readFile = TclWinMakeFile(handle);
	}
	if (channelPermissions & TCL_WRITABLE) {
	    writeFile = TclWinMakeFile(handle);
	}
	channel = TclpCreateCommandChannel(readFile, writeFile, NULL, 0, NULL);
	break;
    case FILE_TYPE_CHAR:
    case FILE_TYPE_DISK:
    case FILE_TYPE_UNKNOWN:
	channel = TclWinOpenFileChannel(handle, channelName,

		channelPermissions, (mode & O_APPEND) ? FILE_APPEND : 0);
	break;

    default:
	/*
	 * The handle is of an unknown type, probably /dev/nul equivalent or
	 * possibly a closed handle.
	 */
................................................................................
    case FILE_TYPE_SERIAL:
	channel = TclWinOpenSerialChannel(handle, channelName, mode);
	break;
    case FILE_TYPE_CONSOLE:
	channel = TclWinOpenConsoleChannel(handle, channelName, mode);
	break;
    case FILE_TYPE_PIPE:
	if (mode & TCL_READABLE) {
	    readFile = TclWinMakeFile(handle);
	}
	if (mode & TCL_WRITABLE) {
	    writeFile = TclWinMakeFile(handle);
	}
	channel = TclpCreateCommandChannel(readFile, writeFile, NULL, 0, NULL);
	break;

    case FILE_TYPE_DISK:
    case FILE_TYPE_CHAR:
................................................................................
}
 
 /*
 *----------------------------------------------------------------------
 *
 * NativeIsComPort --
 *
 *	Determines if a path refers to a Windows serial port.
 *	A simple and efficient solution is to use a "name hint" to detect
 *      COM ports by their filename instead of resorting to a syscall
 *	to detect serialness after the fact.

 *	The following patterns cover common serial port names:
 *	    COM[1-9]
 *	    \\.\COM[0-9]+
 *
 * Results:
 *	1 = serial port, 0 = not.
 *
................................................................................
    const WCHAR *p = (const WCHAR *) nativePath;
    int i, len = wcslen(p);

    /*
     * 1. Look for com[1-9]:?
     */

    if ( (len == 4) && (_wcsnicmp(p, L"com", 3) == 0) ) {
	/*
	* The 4th character must be a digit 1..9
	*/

	if ( (p[3] < L'1') || (p[3] > L'9') ) {
	    return 0;
	}
	return 1;
    }

    /*
     * 2. Look for \\.\com[0-9]+
     */

    if ((len >= 8) && (_wcsnicmp(p, L"\\\\.\\com", 7) == 0)) {
	/*
	* Charaters 8..end must be a digits 0..9
	*/

	for ( i=7; i<len; i++ ) {
	    if ( (p[i] < '0') || (p[i] > '9') ) {
		return 0;
	    }
	}
	return 1;
    }
    return 0;
}






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#define FILE_ASYNC	(1<<1)	/* Channel is non-blocking. */
#define FILE_APPEND	(1<<2)	/* File is in append mode. */

#define FILE_TYPE_SERIAL  (FILE_TYPE_PIPE+1)
#define FILE_TYPE_CONSOLE (FILE_TYPE_PIPE+2)

/*
 * The following structure contains per-instance data for a file based
 * channel.
 */

typedef struct FileInfo {
    Tcl_Channel channel;	/* Pointer to channel structure. */
    int validMask;		/* OR'ed combination of TCL_READABLE,
				 * TCL_WRITABLE, or TCL_EXCEPTION: indicates
				 * which operations are valid on the file. */
................................................................................
static void		FileWatchProc(ClientData instanceData, int mask);
static void		FileThreadActionProc(ClientData instanceData,
			    int action);
static int		FileTruncateProc(ClientData instanceData,
			    Tcl_WideInt length);
static DWORD		FileGetType(HANDLE handle);
static int		NativeIsComPort(const TCHAR *nativeName);

/*
 * This structure describes the channel type structure for file based IO.
 */

static const Tcl_ChannelType fileChannelType = {
    "file",			/* Type name. */
    TCL_CHANNEL_VERSION_5,	/* v5 channel */
................................................................................
    FileBlockProc,		/* Set blocking or non-blocking mode.*/
    NULL,			/* flush proc. */
    NULL,			/* handler proc. */
    FileWideSeekProc,		/* Wide seek proc. */
    FileThreadActionProc,	/* Thread action proc. */
    FileTruncateProc		/* Truncate proc. */
};

/*
 * General useful clarification macros.
 */

#define SET_FLAG(var, flag)	((var) |= (flag))
#define CLEAR_FLAG(var, flag)	((var) &= ~(flag))
#define TEST_FLAG(value, flag)	((value) & (flag) != 0)
 
/*
 *----------------------------------------------------------------------
 *
 * FileInit --
 *
 *	This function creates the window used to simulate file events.
................................................................................
 *----------------------------------------------------------------------
 */

static ThreadSpecificData *
FileInit(void)
{
    ThreadSpecificData *tsdPtr =
	    (ThreadSpecificData *) TclThreadDataKeyGet(&dataKey);

    if (tsdPtr == NULL) {
	tsdPtr = TCL_TSD_INIT(&dataKey);
	tsdPtr->firstFilePtr = NULL;
	Tcl_CreateEventSource(FileSetupProc, FileCheckProc, NULL);
	Tcl_CreateThreadExitHandler(FileChannelExitHandler, NULL);
    }
................................................................................
    ClientData data,		/* Not used. */
    int flags)			/* Event flags as passed to Tcl_DoOneEvent. */
{
    FileInfo *infoPtr;
    Tcl_Time blockTime = { 0, 0 };
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);

    if (!TEST_FLAG(flags, TCL_FILE_EVENTS)) {
	return;
    }

    /*
     * Check to see if there is a ready file. If so, poll.
     */

................................................................................
    ClientData data,		/* Not used. */
    int flags)			/* Event flags as passed to Tcl_DoOneEvent. */
{
    FileEvent *evPtr;
    FileInfo *infoPtr;
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);

    if (!TEST_FLAG(flags, TCL_FILE_EVENTS)) {
	return;
    }

    /*
     * Queue events for any ready files that don't already have events queued
     * (caused by persistent states that won't generate WinSock events).
     */

    for (infoPtr = tsdPtr->firstFilePtr; infoPtr != NULL;
	    infoPtr = infoPtr->nextPtr) {
	if (infoPtr->watchMask && !TEST_FLAG(infoPtr->flags, FILE_PENDING)) {
	    SET_FLAG(infoPtr->flags, FILE_PENDING);
	    evPtr = ckalloc(sizeof(FileEvent));
	    evPtr->header.proc = FileEventProc;
	    evPtr->infoPtr = infoPtr;
	    Tcl_QueueEvent((Tcl_Event *) evPtr, TCL_QUEUE_TAIL);
	}
    }
}
................................................................................
    int flags)			/* Flags that indicate what events to handle,
				 * such as TCL_FILE_EVENTS. */
{
    FileEvent *fileEvPtr = (FileEvent *)evPtr;
    FileInfo *infoPtr;
    ThreadSpecificData *tsdPtr = TCL_TSD_INIT(&dataKey);

    if (!TEST_FLAG(flags, TCL_FILE_EVENTS)) {
	return 0;
    }

    /*
     * Search through the list of watched files for the one whose handle
     * matches the event. We do this rather than simply dereferencing the
     * handle in the event so that files can be deleted while the event is in
     * the queue.
     */

    for (infoPtr = tsdPtr->firstFilePtr; infoPtr != NULL;
	    infoPtr = infoPtr->nextPtr) {
	if (fileEvPtr->infoPtr == infoPtr) {
	    CLEAR_FLAG(infoPtr->flags, FILE_PENDING);
	    Tcl_NotifyChannel(infoPtr->channel, infoPtr->watchMask);
	    break;
	}
    }
    return 1;
}
 
................................................................................
     * Files on Windows can not be switched between blocking and nonblocking,
     * hence we have to emulate the behavior. This is done in the input
     * function by checking against a bit in the state. We set or unset the
     * bit here to cause the input function to emulate the correct behavior.
     */

    if (mode == TCL_MODE_NONBLOCKING) {
	SET_FLAG(infoPtr->flags, FILE_ASYNC);
    } else {
	CLEAR_FLAG(infoPtr->flags, FILE_ASYNC);
    }
    return 0;
}
 
/*
 *----------------------------------------------------------------------
 *
................................................................................

    /*
     * Save our current place in case we need to roll-back the seek.
     */

    oldPosHigh = 0;
    oldPos = SetFilePointer(infoPtr->handle, 0, &oldPosHigh, FILE_CURRENT);
    if (oldPos == (LONG) INVALID_SET_FILE_POINTER) {
	DWORD winError = GetLastError();

	if (winError != NO_ERROR) {
	    TclWinConvertError(winError);
	    *errorCodePtr = errno;
	    return -1;
	}
    }

    newPosHigh = (offset < 0 ? -1 : 0);
    newPos = SetFilePointer(infoPtr->handle, offset, &newPosHigh, moveMethod);
    if (newPos == (LONG) INVALID_SET_FILE_POINTER) {
	DWORD winError = GetLastError();

	if (winError != NO_ERROR) {
	    TclWinConvertError(winError);
	    *errorCodePtr = errno;
	    return -1;
	}
................................................................................
    } else {
	moveMethod = FILE_END;
    }

    newPosHigh = Tcl_WideAsLong(offset >> 32);
    newPos = SetFilePointer(infoPtr->handle, Tcl_WideAsLong(offset),
	    &newPosHigh, moveMethod);
    if (newPos == (LONG) INVALID_SET_FILE_POINTER) {
	DWORD winError = GetLastError();

	if (winError != NO_ERROR) {
	    TclWinConvertError(winError);
	    *errorCodePtr = errno;
	    return -1;
	}
    }
    return (((Tcl_WideInt)((unsigned)newPos))
	    | (Tcl_LongAsWide(newPosHigh) << 32));
}
 
/*
 *----------------------------------------------------------------------
 *
 * FileTruncateProc --
 *
................................................................................

    /*
     * Save where we were...
     */

    oldPosHigh = 0;
    oldPos = SetFilePointer(infoPtr->handle, 0, &oldPosHigh, FILE_CURRENT);
    if (oldPos == (LONG) INVALID_SET_FILE_POINTER) {
	DWORD winError = GetLastError();

	if (winError != NO_ERROR) {
	    TclWinConvertError(winError);
	    return errno;
	}
    }

    /*
     * Move to where we want to truncate
     */

    newPosHigh = Tcl_WideAsLong(length >> 32);
    newPos = SetFilePointer(infoPtr->handle, Tcl_WideAsLong(length),
	    &newPosHigh, FILE_BEGIN);
    if (newPos == (LONG) INVALID_SET_FILE_POINTER) {
	DWORD winError = GetLastError();

	if (winError != NO_ERROR) {
	    TclWinConvertError(winError);
	    return errno;
	}
    }

    /*
................................................................................
{
    FileInfo *infoPtr = instanceData;
    DWORD bytesRead;

    *errorCode = 0;

    /*
     * TODO: This comment appears to be out of date. We *do* have a console
     * driver, over in tclWinConsole.c. After some Windows developer confirms,
     * this comment should be revised.
     *
     * Note that we will block on reads from a console buffer until a full
     * line has been entered. The only way I know of to get around this is to
     * write a console driver. We should probably do this at some point, but
     * for now, we just block. The same problem exists for files being read
     * over the network.
     */
................................................................................
    *errorCode = 0;

    /*
     * If we are writing to a file that was opened with O_APPEND, we need to
     * seek to the end of the file before writing the current buffer.
     */

    if (TEST_FLAG(infoPtr->flags, FILE_APPEND)) {
	SetFilePointer(infoPtr->handle, 0, NULL, FILE_END);
    }

    if (WriteFile(infoPtr->handle, (LPVOID) buf, (DWORD) toWrite,
	    &bytesWritten, (LPOVERLAPPED) NULL) == FALSE) {
	TclWinConvertError(GetLastError());
	*errorCode = errno;
................................................................................
FileGetHandleProc(
    ClientData instanceData,	/* The file state. */
    int direction,		/* TCL_READABLE or TCL_WRITABLE */
    ClientData *handlePtr)	/* Where to store the handle.  */
{
    FileInfo *infoPtr = instanceData;

    if (!TEST_FLAG(direction, infoPtr->validMask)) {



	return TCL_ERROR;
    }

    *handlePtr = (ClientData) infoPtr->handle;
    return TCL_OK;
}
 
/*
 *----------------------------------------------------------------------
 *
 * TclpOpenFileChannel --
 *
................................................................................
    const TCHAR *nativeName;
    HANDLE handle;
    char channelName[16 + TCL_INTEGER_SPACE];
    TclFile readFile = NULL, writeFile = NULL;

    nativeName = Tcl_FSGetNativePath(pathPtr);
    if (nativeName == NULL) {
	if (interp) {
	    Tcl_SetObjResult(interp, Tcl_ObjPrintf(
		    "couldn't open \"%s\": filename is invalid on this platform",
		    TclGetString(pathPtr)));
	}
	return NULL;
    }

    switch (mode & (O_RDONLY | O_WRONLY | O_RDWR)) {
    case O_RDONLY:
	accessMode = GENERIC_READ;
................................................................................
	break;
    default:
	createMode = OPEN_EXISTING;
	break;
    }

    /*
     * [2413550] Avoid double-open of serial ports on Windows.  Special
     * handling for Windows serial ports by a "name-hint" to directly open it
     * with the OVERLAPPED flag set.
     */

    if (NativeIsComPort(nativeName)) {

	handle = TclWinSerialOpen(INVALID_HANDLE_VALUE, nativeName, accessMode);
	if (handle == INVALID_HANDLE_VALUE) {
	    TclWinConvertError(GetLastError());
	    if (interp) {
		Tcl_SetObjResult(interp, Tcl_ObjPrintf(
			"couldn't open serial \"%s\": %s",
			TclGetString(pathPtr), Tcl_PosixError(interp)));

	    }
	    return NULL;
	}

	/*
	 * For natively named Windows serial ports we are done.
	 */

	channel = TclWinOpenSerialChannel(handle, channelName,
		channelPermissions);

	return channel;
    }

    /*
     * If the file is being created, get the file attributes from the
     * permissions argument, else use the existing file attributes.
     */

    if (TEST_FLAG(mode, O_CREAT)) {
	if (TEST_FLAG(permissions, S_IWRITE)) {
	    flags = FILE_ATTRIBUTE_NORMAL;
	} else {
	    flags = FILE_ATTRIBUTE_READONLY;
	}
    } else {
	flags = GetFileAttributes(nativeName);
	if (flags == 0xFFFFFFFF) {
................................................................................
    handle = CreateFile(nativeName, accessMode, shareMode,
	    NULL, createMode, flags, (HANDLE) NULL);

    if (handle == INVALID_HANDLE_VALUE) {
	DWORD err = GetLastError();

	if ((err & 0xffffL) == ERROR_OPEN_FAILED) {
	    err = TEST_FLAG(mode, O_CREAT) ? ERROR_FILE_EXISTS
		    : ERROR_FILE_NOT_FOUND;
	}
	TclWinConvertError(err);
	if (interp) {
	    Tcl_SetObjResult(interp, Tcl_ObjPrintf(
		    "couldn't open \"%s\": %s",
		    TclGetString(pathPtr), Tcl_PosixError(interp)));
	}
	return NULL;
    }

    channel = NULL;

    switch (FileGetType(handle)) {
    case FILE_TYPE_SERIAL:
	/*
	 * Natively named serial ports "com1-9", "\\\\.\\comXX" are already
	 * done with the code above.  Here we handle all other serial port
	 * names.
	 *
	 * Reopen channel for OVERLAPPED operation. Normally this shouldn't
	 * fail, because the channel exists.
	 */

	handle = TclWinSerialOpen(handle, nativeName, accessMode);
	if (handle == INVALID_HANDLE_VALUE) {
	    TclWinConvertError(GetLastError());
	    if (interp) {
		Tcl_SetObjResult(interp, Tcl_ObjPrintf(
			"couldn't reopen serial \"%s\": %s",
			TclGetString(pathPtr), Tcl_PosixError(interp)));
	    }
	    return NULL;
	}
	channel = TclWinOpenSerialChannel(handle, channelName,
................................................................................
		channelPermissions);
	break;
    case FILE_TYPE_CONSOLE:
	channel = TclWinOpenConsoleChannel(handle, channelName,
		channelPermissions);
	break;
    case FILE_TYPE_PIPE:
	if (TEST_FLAG(channelPermissions, TCL_READABLE)) {
	    readFile = TclWinMakeFile(handle);
	}
	if (TEST_FLAG(channelPermissions, TCL_WRITABLE)) {
	    writeFile = TclWinMakeFile(handle);
	}
	channel = TclpCreateCommandChannel(readFile, writeFile, NULL, 0, NULL);
	break;
    case FILE_TYPE_CHAR:
    case FILE_TYPE_DISK:
    case FILE_TYPE_UNKNOWN:
	channel = TclWinOpenFileChannel(handle, channelName,
		channelPermissions,
		TEST_FLAG(mode, O_APPEND) ? FILE_APPEND : 0);
	break;

    default:
	/*
	 * The handle is of an unknown type, probably /dev/nul equivalent or
	 * possibly a closed handle.
	 */
................................................................................
    case FILE_TYPE_SERIAL:
	channel = TclWinOpenSerialChannel(handle, channelName, mode);
	break;
    case FILE_TYPE_CONSOLE:
	channel = TclWinOpenConsoleChannel(handle, channelName, mode);
	break;
    case FILE_TYPE_PIPE:
	if (TEST_FLAG(mode, TCL_READABLE)) {
	    readFile = TclWinMakeFile(handle);
	}
	if (TEST_FLAG(mode, TCL_WRITABLE)) {
	    writeFile = TclWinMakeFile(handle);
	}
	channel = TclpCreateCommandChannel(readFile, writeFile, NULL, 0, NULL);
	break;

    case FILE_TYPE_DISK:
    case FILE_TYPE_CHAR:
................................................................................
}
 
 /*
 *----------------------------------------------------------------------
 *
 * NativeIsComPort --
 *
 *	Determines if a path refers to a Windows serial port.  A simple and
 *	efficient solution is to use a "name hint" to detect COM ports by
 *	their filename instead of resorting to a syscall to detect serialness
 *	after the fact.
 *
 *	The following patterns cover common serial port names:
 *	    COM[1-9]
 *	    \\.\COM[0-9]+
 *
 * Results:
 *	1 = serial port, 0 = not.
 *
................................................................................
    const WCHAR *p = (const WCHAR *) nativePath;
    int i, len = wcslen(p);

    /*
     * 1. Look for com[1-9]:?
     */

    if ((len == 4) && (_wcsnicmp(p, L"com", 3) == 0)) {
	/*
	 * The 4th character must be a digit 1..9
	 */

	if ((p[3] < L'1') || (p[3] > L'9')) {
	    return 0;
	}
	return 1;
    }

    /*
     * 2. Look for \\.\com[0-9]+
     */

    if ((len >= 8) && (_wcsnicmp(p, L"\\\\.\\com", 7) == 0)) {
	/*
	 * Charaters 8..end must be a digits 0..9
	 */

	for (i=7; i<len; i++) {
	    if ((p[i] < '0') || (p[i] > '9')) {
		return 0;
	    }
	}
	return 1;
    }
    return 0;
}