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/*
 * tclThreadJoin.c --
 *
 *	This file implements a platform independent emulation layer for the
 *	handling of joinable threads. The Windows platform uses this code to
 *	provide the functionality of joining threads.  This code is currently
 *	not necessary on Unix.
 *
 * Copyright (c) 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: tclThreadJoin.c,v 1.7 2005/11/07 15:15:06 dkf Exp $
 */

#include "tclInt.h"

#ifdef WIN32

/*
 * The information about each joinable thread is remembered in a structure as
 * defined below.
 */

typedef struct JoinableThread {
    Tcl_ThreadId  id;		/* The id of the joinable thread. */
    int result;			/* A place for the result after the demise of
				 * the thread. */
    int done;			/* Boolean flag. Initialized to 0 and set to 1
				 * after the exit of the thread. This allows a
				 * thread requesting a join to detect when
				 * waiting is not necessary. */
    int waitedUpon;		/* Boolean flag. Initialized to 0 and set to 1
				 * by the thread waiting for this one via
				 * Tcl_JoinThread.  Used to lock any other
				 * thread trying to wait on this one. */
    Tcl_Mutex threadMutex;	/* The mutex used to serialize access to this
				 * structure. */
    Tcl_Condition cond;		/* This is the condition a thread has to wait
				 * upon to get notified of the end of the
				 * described thread. It is signaled indirectly
				 * by Tcl_ExitThread. */
    struct JoinableThread *nextThreadPtr;
				/* Reference to the next thread in the list of
				 * joinable threads. */
} JoinableThread;

/*
 * The following variable is used to maintain the global list of all joinable
 * threads. Usage by a thread is allowed only if the thread acquired the
 * 'joinMutex'.
 */

TCL_DECLARE_MUTEX(joinMutex)

static JoinableThread* firstThreadPtr;

/*
 *----------------------------------------------------------------------
 *
 * TclJoinThread --
 *
 *	This procedure waits for the exit of the thread with the specified id
 *	and returns its result.
 *
 * Results:
 *	A standard tcl result signaling the overall success/failure of the
 *	operation and an integer result delivered by the thread which was
 *	waited upon.
 *
 * Side effects:
 *	Deallocates the memory allocated by TclRememberJoinableThread.
 *	Removes the data associated to the thread waited upon from the list of
 *	joinable threads.
 *
 *----------------------------------------------------------------------
 */

int
TclJoinThread(
    Tcl_ThreadId id,		/* The id of the thread to wait upon. */
    int *result)		/* Reference to a location for the result of
				 * the thread we are waiting upon. */
{
    JoinableThread *threadPtr;

    /*
     * Steps done here:
     * i.    Acquire the joinMutex and search for the thread.
     * ii.   Error out if it could not be found.
     * iii.  If found, switch from exclusive access to the list to exclusive
     *	     access to the thread structure.
     * iv.   Error out if some other is already waiting.
     * v.    Skip the waiting part of the thread is already done.
     * vi.   Wait for the thread to exit, mark it as waited upon too.
     * vii.  Get the result form the structure,
     * viii. switch to exclusive access of the list,
     * ix.   remove the structure from the list,
     * x.    then switch back to exclusive access to the structure
     * xi.   and delete it.
     */

    Tcl_MutexLock(&joinMutex);

    threadPtr = firstThreadPtr;
    while (threadPtr!=NULL && threadPtr->id!=id) {
	threadPtr = threadPtr->nextThreadPtr;
    }

    if (threadPtr == NULL) {
	/*
	 * Thread not found. Either not joinable, or already waited upon and
	 * exited. Whatever, an error is in order.
	 */

	Tcl_MutexUnlock(&joinMutex);
	return TCL_ERROR;
    }

    /*
     * [1] If we don't lock the structure before giving up exclusive access to
     * the list some other thread just completing its wait on the same thread
     * can delete the structure from under us, leaving us with a dangling
     * pointer.
     */

    Tcl_MutexLock(&threadPtr->threadMutex);
    Tcl_MutexUnlock(&joinMutex);

    /*
     * [2] Now that we have the structure mutex any other thread that just
     * tries to delete structure will wait at location [3] until we are done
     * with the structure. And in that case we are done with it rather quickly
     * as 'waitedUpon' will be set and we will have to error out.
     */

    if (threadPtr->waitedUpon) {
	Tcl_MutexUnlock(&threadPtr->threadMutex);
	return TCL_ERROR;
    }

    /*
     * We are waiting now, let other threads recognize this.
     */

    threadPtr->waitedUpon = 1;

    while (!threadPtr->done) {
	Tcl_ConditionWait(&threadPtr->cond, &threadPtr->threadMutex, NULL);
    }

    /*
     * We have to release the structure before trying to access the list again
     * or we can run into deadlock with a thread at [1] (see above) because of
     * us holding the structure and the other holding the list.  There is no
     * problem with dangling pointers here as 'waitedUpon == 1' is still valid
     * and any other thread will error out and not come to this place. IOW,
     * the fact that we are here also means that no other thread came here
     * before us and is able to delete the structure.
     */

    Tcl_MutexUnlock(&threadPtr->threadMutex);
    Tcl_MutexLock(&joinMutex);

    /*
     * We have to search the list again as its structure may (may, almost
     * certainly) have changed while we were waiting. Especially now is the
     * time to compute the predecessor in the list. Any earlier result can be
     * dangling by now.
     */

    if (firstThreadPtr == threadPtr) {
	firstThreadPtr = threadPtr->nextThreadPtr;
    } else {
	JoinableThread *prevThreadPtr = firstThreadPtr;

	while (prevThreadPtr->nextThreadPtr != threadPtr) {
	    prevThreadPtr = prevThreadPtr->nextThreadPtr;
	}
	prevThreadPtr->nextThreadPtr = threadPtr->nextThreadPtr;
    }

    Tcl_MutexUnlock(&joinMutex);

    /*
     * [3] Now that the structure is not part of the list anymore no other
     * thread can acquire its mutex from now on. But it is possible that
     * another thread is still holding the mutex though, see location [2].  So
     * we have to acquire the mutex one more time to wait for that thread to
     * finish. We can (and have to) release the mutex immediately.
     */

    Tcl_MutexLock(&threadPtr->threadMutex);
    Tcl_MutexUnlock(&threadPtr->threadMutex);

    /*
     * Copy the result to us, finalize the synchronisation objects, then free
     * the structure and return.
     */

    *result = threadPtr->result;

    Tcl_ConditionFinalize(&threadPtr->cond);
    Tcl_MutexFinalize(&threadPtr->threadMutex);
    ckfree((char *) threadPtr);

    return TCL_OK;
}

/*
 *----------------------------------------------------------------------
 *
 * TclRememberJoinableThread --
 *
 *	This procedure remebers a thread as joinable. Only a call to
 *	TclJoinThread will remove the structre created (and initialized) here.
 *	IOW, not waiting upon a joinable thread will cause memory leaks.
 *
 * Results:
 *	None.
 *
 * Side effects:
 *	Allocates memory, adds it to the global list of all joinable threads.
 *
 *----------------------------------------------------------------------
 */

void
TclRememberJoinableThread(
    Tcl_ThreadId id)		/* The thread to remember as joinable */
{
    JoinableThread *threadPtr;

    threadPtr = (JoinableThread *) ckalloc(sizeof(JoinableThread));
    threadPtr->id = id;
    threadPtr->done = 0;
    threadPtr->waitedUpon = 0;
    threadPtr->threadMutex = (Tcl_Mutex) NULL;
    threadPtr->cond = (Tcl_Condition) NULL;

    Tcl_MutexLock(&joinMutex);

    threadPtr->nextThreadPtr = firstThreadPtr;
    firstThreadPtr = threadPtr;

    Tcl_MutexUnlock(&joinMutex);
}

/*
 *----------------------------------------------------------------------
 *
 * TclSignalExitThread --
 *
 *	This procedure signals that the specified thread is done with its
 *	work. If the thread is joinable this signal is propagated to the
 *	thread waiting upon it.
 *
 * Results:
 *	None.
 *
 * Side effects:
 *	Modifies the associated structure to hold the result.
 *
 *----------------------------------------------------------------------
 */

void
TclSignalExitThread(
    Tcl_ThreadId id,		/* Id of the thread signaling its exit. */
    int result)			/* The result from the thread. */
{
    JoinableThread *threadPtr;

    Tcl_MutexLock(&joinMutex);

    threadPtr = firstThreadPtr;
    while ((threadPtr != NULL) && (threadPtr->id != id)) {
	threadPtr = threadPtr->nextThreadPtr;
    }

    if (threadPtr == NULL) {
	/*
	 * Thread not found. Not joinable. No problem, nothing to do.
	 */

	Tcl_MutexUnlock(&joinMutex);
	return;
    }

    /*
     * Switch over the exclusive access from the list to the structure, then
     * store the result, set the flag and notify the waiting thread, provided
     * that it exists. The order of lock/unlock ensures that a thread entering
     * 'TclJoinThread' will not interfere with us.
     */

    Tcl_MutexLock(&threadPtr->threadMutex);
    Tcl_MutexUnlock(&joinMutex);

    threadPtr->done = 1;
    threadPtr->result = result;

    if (threadPtr->waitedUpon) {
	Tcl_ConditionNotify(&threadPtr->cond);
    }

    Tcl_MutexUnlock(&threadPtr->threadMutex);
}
#endif /* WIN32 */

/*
 * Local Variables:
 * mode: c
 * c-basic-offset: 4
 * fill-column: 78
 * End:
 */
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/*
 * tclInt.h --
 *
 *	Declarations of things used internally by the Tcl interpreter.
 *
 * Copyright (c) 1987-1993 The Regents of the University of California.
 * Copyright (c) 1993-1997 Lucent Technologies.
 * Copyright (c) 1994-1998 Sun Microsystems, Inc.
 * Copyright (c) 1998-1999 by Scriptics Corporation.
 * Copyright (c) 2001, 2002 by Kevin B. Kenny.  All rights reserved.
 * Copyright (c) 2007 Daniel A. Steffen <das@users.sourceforge.net>
 * Copyright (c) 2006-2008 by Joe Mistachkin.  All rights reserved.
 * Copyright (c) 2008 by Miguel Sofer. All rights reserved.
 *
 * See the file "license.terms" for information on usage and redistribution of
 * this file, and for a DISCLAIMER OF ALL WARRANTIES.
 *
 * RCS: @(#) $Id: tclInt.h,v 1.394 2008/08/21 23:57:43 msofer Exp $
 */

#ifndef _TCLINT
#define _TCLINT

/*
 * Some numerics configuration options
 */

#undef NO_WIDE_TYPE
#undef ACCEPT_NAN

/*
 * Common include files needed by most of the Tcl source files are included
 * here, so that system-dependent personalizations for the include files only
 * have to be made in once place. This results in a few extra includes, but
 * greater modularity. The order of the three groups of #includes is
 * important. For example, stdio.h is needed by tcl.h, and the _ANSI_ARGS_
 * declaration in tcl.h is needed by stdlib.h in some configurations.
 */

#ifdef HAVE_TCL_CONFIG_H
#include "tclConfig.h"
#endif
#ifndef _TCL
#include "tcl.h"
#endif

#include <stdio.h>

#include <ctype.h>
#ifdef NO_LIMITS_H
#   include "../compat/limits.h"
#else
#   include <limits.h>
#endif
#ifdef NO_STDLIB_H
#   include "../compat/stdlib.h"
#else
#   include <stdlib.h>
#endif
#ifdef NO_STRING_H
#include "../compat/string.h"
#else
#include <string.h>
#endif
#ifdef STDC_HEADERS
#include <stddef.h>
#else
typedef int ptrdiff_t;
#endif

/*
 * Ensure WORDS_BIGENDIAN is defined correcly:
 * Needs to happen here in addition to configure to work with fat compiles on
 * Darwin (where configure runs only once for multiple architectures).
 */

#ifdef HAVE_SYS_TYPES_H
#    include <sys/types.h>
#endif
#ifdef HAVE_SYS_PARAM_H
#    include <sys/param.h>
#endif
#ifdef BYTE_ORDER
#    ifdef BIG_ENDIAN
#	 if BYTE_ORDER == BIG_ENDIAN
#	     undef WORDS_BIGENDIAN
#	     define WORDS_BIGENDIAN 1
#	 endif
#    endif
#    ifdef LITTLE_ENDIAN
#	 if BYTE_ORDER == LITTLE_ENDIAN
#	     undef WORDS_BIGENDIAN
#	 endif
#    endif
#endif

/*
 * Used to tag functions that are only to be visible within the module being
 * built and not outside it (where this is supported by the linker).
 */

#ifndef MODULE_SCOPE
#   ifdef __cplusplus
#	define MODULE_SCOPE extern "C"
#   else
#	define MODULE_SCOPE extern
#   endif
#endif

/*
 * When Tcl_WideInt and long are the same type, there's no value in
 * having a tclWideIntType separate from the tclIntType.
 */
#ifdef TCL_WIDE_INT_IS_LONG
#define NO_WIDE_TYPE
#endif

/*
 * Macros used to cast between pointers and integers (e.g. when storing an int
 * in ClientData), on 64-bit architectures they avoid gcc warning about "cast
 * to/from pointer from/to integer of different size".
 */

#if !defined(INT2PTR) && !defined(PTR2INT)
#   if defined(HAVE_INTPTR_T) || defined(intptr_t)
#	define INT2PTR(p) ((void*)(intptr_t)(p))
#	define PTR2INT(p) ((int)(intptr_t)(p))
#   else
#	define INT2PTR(p) ((void*)(p))
#	define PTR2INT(p) ((int)(p))
#   endif
#endif
#if !defined(UINT2PTR) && !defined(PTR2UINT)
#   if defined(HAVE_UINTPTR_T) || defined(uintptr_t)
#	define UINT2PTR(p) ((void*)(uintptr_t)(p))
#	define PTR2UINT(p) ((unsigned int)(uintptr_t)(p))
#   else
#	define UINT2PTR(p) ((void*)(p))
#	define PTR2UINT(p) ((unsigned int)(p))
#   endif
#endif

/*
 * The following procedures allow namespaces to be customized to support
 * special name resolution rules for commands/variables.
 */

struct Tcl_ResolvedVarInfo;

typedef Tcl_Var (Tcl_ResolveRuntimeVarProc)(Tcl_Interp *interp,
	struct Tcl_ResolvedVarInfo *vinfoPtr);

typedef void (Tcl_ResolveVarDeleteProc)(struct Tcl_ResolvedVarInfo *vinfoPtr);

/*
 * The following structure encapsulates the routines needed to resolve a
 * variable reference at runtime. Any variable specific state will typically
 * be appended to this structure.
 */

typedef struct Tcl_ResolvedVarInfo {
    Tcl_ResolveRuntimeVarProc *fetchProc;
    Tcl_ResolveVarDeleteProc *deleteProc;
} Tcl_ResolvedVarInfo;

typedef int (Tcl_ResolveCompiledVarProc) (Tcl_Interp *interp,
	const char *name, int length, Tcl_Namespace *context,
	Tcl_ResolvedVarInfo **rPtr);

typedef int (Tcl_ResolveVarProc) (Tcl_Interp *interp, const char *name,
	Tcl_Namespace *context, int flags, Tcl_Var *rPtr);

typedef int (Tcl_ResolveCmdProc) (Tcl_Interp *interp, const char *name,
	Tcl_Namespace *context, int flags, Tcl_Command *rPtr);

typedef struct Tcl_ResolverInfo {
    Tcl_ResolveCmdProc *cmdResProc;
				/* Procedure handling command name
				 * resolution. */
    Tcl_ResolveVarProc *varResProc;
				/* Procedure handling variable name resolution
				 * for variables that can only be handled at
				 * runtime. */
    Tcl_ResolveCompiledVarProc *compiledVarResProc;
				/* Procedure handling variable name resolution
				 * at compile time. */
} Tcl_ResolverInfo;

/*
 *----------------------------------------------------------------
 * Data structures related to namespaces.
 *----------------------------------------------------------------
 */

typedef struct Tcl_Ensemble Tcl_Ensemble;
typedef struct NamespacePathEntry NamespacePathEntry;

/*
 * Special hashtable for variables: this is just a Tcl_HashTable with an nsPtr
 * field added at the end: in this way variables can find their namespace
 * without having to copy a pointer in their struct: they can access it via
 * their hPtr->tablePtr.
 */

typedef struct TclVarHashTable {
    Tcl_HashTable table;
    struct Namespace *nsPtr;
} TclVarHashTable;

/*
 * This is for itcl - it likes to search our varTables directly :(
 */

#define TclVarHashFindVar(tablePtr, key) \
    TclVarHashCreateVar((tablePtr), (key), NULL)


/*
 * The structure below defines a namespace.
 * Note: the first five fields must match exactly the fields in a
 * Tcl_Namespace structure (see tcl.h). If you change one, be sure to change
 * the other.
 */

typedef struct Namespace {
    char *name;			/* The namespace's simple (unqualified) name.
				 * This contains no ::'s. The name of the
				 * global namespace is "" although "::" is an
				 * synonym. */
    char *fullName;		/* The namespace's fully qualified name. This
				 * starts with ::. */
    ClientData clientData;	/* An arbitrary value associated with this
				 * namespace. */
    Tcl_NamespaceDeleteProc *deleteProc;
				/* Procedure invoked when deleting the
				 * namespace to, e.g., free clientData. */
    struct Namespace *parentPtr;/* Points to the namespace that contains this
				 * one. NULL if this is the global
				 * namespace. */
    Tcl_HashTable childTable;	/* Contains any child namespaces. Indexed by
				 * strings; values have type (Namespace *). */
    long nsId;			/* Unique id for the namespace. */
    Tcl_Interp *interp;		/* The interpreter containing this
				 * namespace. */
    int flags;			/* OR-ed combination of the namespace status
				 * flags NS_DYING and NS_DEAD listed below. */
    int activationCount;	/* Number of "activations" or active call
				 * frames for this namespace that are on the
				 * Tcl call stack. The namespace won't be
				 * freed until activationCount becomes zero. */
    int refCount;		/* Count of references by namespaceName
				 * objects. The namespace can't be freed until
				 * refCount becomes zero. */
    Tcl_HashTable cmdTable;	/* Contains all the commands currently
				 * registered in the namespace. Indexed by
				 * strings; values have type (Command *).
				 * Commands imported by Tcl_Import have
				 * Command structures that point (via an
				 * ImportedCmdRef structure) to the Command
				 * structure in the source namespace's command
				 * table. */
    TclVarHashTable varTable;	/* Contains all the (global) variables
				 * currently in this namespace. Indexed by
				 * strings; values have type (Var *). */
    char **exportArrayPtr;	/* Points to an array of string patterns
				 * specifying which commands are exported. A
				 * pattern may include "string match" style
				 * wildcard characters to specify multiple
				 * commands; however, no namespace qualifiers
				 * are allowed. NULL if no export patterns are
				 * registered. */
    int numExportPatterns;	/* Number of export patterns currently
				 * registered using "namespace export". */
    int maxExportPatterns;	/* Mumber of export patterns for which space
				 * is currently allocated. */
    int cmdRefEpoch;		/* Incremented if a newly added command
				 * shadows a command for which this namespace
				 * has already cached a Command * pointer;
				 * this causes all its cached Command*
				 * pointers to be invalidated. */
    int resolverEpoch;		/* Incremented whenever (a) the name
				 * resolution rules change for this namespace
				 * or (b) a newly added command shadows a
				 * command that is compiled to bytecodes. This
				 * invalidates all byte codes compiled in the
				 * namespace, causing the code to be
				 * recompiled under the new rules.*/
    Tcl_ResolveCmdProc *cmdResProc;
				/* If non-null, this procedure overrides the
				 * usual command resolution mechanism in Tcl.
				 * This procedure is invoked within
				 * Tcl_FindCommand to resolve all command
				 * references within the namespace. */
    Tcl_ResolveVarProc *varResProc;
				/* If non-null, this procedure overrides the
				 * usual variable resolution mechanism in Tcl.
				 * This procedure is invoked within
				 * Tcl_FindNamespaceVar to resolve all
				 * variable references within the namespace at
				 * runtime. */
    Tcl_ResolveCompiledVarProc *compiledVarResProc;
				/* If non-null, this procedure overrides the
				 * usual variable resolution mechanism in Tcl.
				 * This procedure is invoked within
				 * LookupCompiledLocal to resolve variable
				 * references within the namespace at compile
				 * time. */
    int exportLookupEpoch;	/* Incremented whenever a command is added to
				 * a namespace, removed from a namespace or
				 * the exports of a namespace are changed.
				 * Allows TIP#112-driven command lists to be
				 * validated efficiently. */
    Tcl_Ensemble *ensembles;	/* List of structures that contain the details
				 * of the ensembles that are implemented on
				 * top of this namespace. */
    Tcl_Obj *unknownHandlerPtr;	/* A script fragment to be used when command
				 * resolution in this namespace fails. TIP
				 * 181. */
    int commandPathLength;	/* The length of the explicit path. */
    NamespacePathEntry *commandPathArray;
				/* The explicit path of the namespace as an
				 * array. */
    NamespacePathEntry *commandPathSourceList;
				/* Linked list of path entries that point to
				 * this namespace. */
} Namespace;

/*
 * An entry on a namespace's command resolution path.
 */

struct NamespacePathEntry {
    Namespace *nsPtr;		/* What does this path entry point to? If it
				 * is NULL, this path entry points is
				 * redundant and should be skipped. */
    Namespace *creatorNsPtr;	/* Where does this path entry point from? This
				 * allows for efficient invalidation of
				 * references when the path entry's target
				 * updates its current list of defined
				 * commands. */
    NamespacePathEntry *prevPtr, *nextPtr;
				/* Linked list pointers or NULL at either end
				 * of the list that hangs off Namespace's
				 * commandPathSourceList field. */
};

/*
 * Flags used to represent the status of a namespace:
 *
 * NS_DYING -	1 means Tcl_DeleteNamespace has been called to delete the
 *		namespace but there are still active call frames on the Tcl
 *		stack that refer to the namespace. When the last call frame
 *		referring to it has been popped, it's variables and command
 *		will be destroyed and it will be marked "dead" (NS_DEAD). The
 *		namespace can no longer be looked up by name.
 * NS_DEAD -	1 means Tcl_DeleteNamespace has been called to delete the
 *		namespace and no call frames still refer to it. Its variables
 *		and command have already been destroyed. This bit allows the
 *		namespace resolution code to recognize that the namespace is
 *		"deleted". When the last namespaceName object in any byte code
 *		unit that refers to the namespace has been freed (i.e., when
 *		the namespace's refCount is 0), the namespace's storage will
 *		be freed.
 * NS_KILLED -  1 means that TclTeardownNamespace has already been called on
 *		this namespace and it should not be called again [Bug 1355942]
 * NS_SUPPRESS_COMPILATION -
 *		Marks the commands in this namespace for not being compiled,
 *		forcing them to be looked up every time.
 */

#define NS_DYING	0x01
#define NS_DEAD		0x02
#define NS_KILLED	0x04
#define NS_SUPPRESS_COMPILATION	0x08

/*
 * Flags passed to TclGetNamespaceForQualName:
 *
 * TCL_GLOBAL_ONLY		- (see tcl.h) Look only in the global ns.
 * TCL_NAMESPACE_ONLY		- (see tcl.h) Look only in the context ns.
 * TCL_CREATE_NS_IF_UNKNOWN	- Create unknown namespaces.
 * TCL_FIND_ONLY_NS		- The name sought is a namespace name.
 */

#define TCL_CREATE_NS_IF_UNKNOWN	0x800
#define TCL_FIND_ONLY_NS		0x1000

/*
 * The data cached in an ensemble subcommand's Tcl_Obj rep (reference in
 * otherValuePtr field). This structure is not shared between Tcl_Objs
 * referring to the same subcommand, even where one is a duplicate of another.
 */

typedef struct {
    Namespace *nsPtr;		/* The namespace backing the ensemble which
				 * this is a subcommand of. */
    int epoch;			/* Used to confirm when the data in this
				 * really structure matches up with the
				 * ensemble. */
    Tcl_Command token;		/* Reference to the comamnd for which this
				 * structure is a cache of the resolution. */
    char *fullSubcmdName;	/* The full (local) name of the subcommand,
				 * allocated with ckalloc(). */
    Tcl_Obj *realPrefixObj;	/* Object containing the prefix words of the
				 * command that implements this ensemble
				 * subcommand. */
} EnsembleCmdRep;

/*
 * Flag to enable bytecode compilation of an ensemble.
 */

#define ENSEMBLE_COMPILE 0x4

/*
 *----------------------------------------------------------------
 * Data structures related to variables. These are used primarily in tclVar.c
 *----------------------------------------------------------------
 */

/*
 * The following structure defines a variable trace, which is used to invoke a
 * specific C procedure whenever certain operations are performed on a
 * variable.
 */

typedef struct VarTrace {
    Tcl_VarTraceProc *traceProc;/* Procedure to call when operations given by
				 * flags are performed on variable. */
    ClientData clientData;	/* Argument to pass to proc. */
    int flags;			/* What events the trace procedure is
				 * interested in: OR-ed combination of
				 * TCL_TRACE_READS, TCL_TRACE_WRITES,
				 * TCL_TRACE_UNSETS and TCL_TRACE_ARRAY. */
    struct VarTrace *nextPtr;	/* Next in list of traces associated with a
				 * particular variable. */
} VarTrace;

/*
 * The following structure defines a command trace, which is used to invoke a
 * specific C procedure whenever certain operations are performed on a
 * command.
 */

typedef struct CommandTrace {
    Tcl_CommandTraceProc *traceProc;
				/* Procedure to call when operations given by
				 * flags are performed on command. */
    ClientData clientData;	/* Argument to pass to proc. */
    int flags;			/* What events the trace procedure is
				 * interested in: OR-ed combination of
				 * TCL_TRACE_RENAME, TCL_TRACE_DELETE. */
    struct CommandTrace *nextPtr;
				/* Next in list of traces associated with a
				 * particular command. */
    int refCount;		/* Used to ensure this structure is not
				 * deleted too early. Keeps track of how many
				 * pieces of code have a pointer to this
				 * structure. */
} CommandTrace;

/*
 * When a command trace is active (i.e. its associated procedure is executing)
 * one of the following structures is linked into a list associated with the
 * command's interpreter. The information in the structure is needed in order
 * for Tcl to behave reasonably if traces are deleted while traces are active.
 */

typedef struct ActiveCommandTrace {
    struct Command *cmdPtr;	/* Command that's being traced. */
    struct ActiveCommandTrace *nextPtr;
				/* Next in list of all active command traces
				 * for the interpreter, or NULL if no more. */
    CommandTrace *nextTracePtr;	/* Next trace to check after current trace
				 * procedure returns; if this trace gets
				 * deleted, must update pointer to avoid using
				 * free'd memory. */
    int reverseScan;		/* Boolean set true when traces are scanning
				 * in reverse order. */
} ActiveCommandTrace;

/*
 * When a variable trace is active (i.e. its associated procedure is
 * executing) one of the following structures is linked into a list associated
 * with the variable's interpreter. The information in the structure is needed
 * in order for Tcl to behave reasonably if traces are deleted while traces
 * are active.
 */

typedef struct ActiveVarTrace {
    struct Var *varPtr;		/* Variable that's being traced. */
    struct ActiveVarTrace *nextPtr;
				/* Next in list of all active variable traces
				 * for the interpreter, or NULL if no more. */
    VarTrace *nextTracePtr;	/* Next trace to check after current trace
				 * procedure returns; if this trace gets
				 * deleted, must update pointer to avoid using
				 * free'd memory. */
} ActiveVarTrace;

/*
 * The following structure describes an enumerative search in progress on an
 * array variable; this are invoked with options to the "array" command.
 */

typedef struct ArraySearch {
    int id;			/* Integer id used to distinguish among
				 * multiple concurrent searches for the same
				 * array. */
    struct Var *varPtr;		/* Pointer to array variable that's being
				 * searched. */
    Tcl_HashSearch search;	/* Info kept by the hash module about progress
				 * through the array. */
    Tcl_HashEntry *nextEntry;	/* Non-null means this is the next element to
				 * be enumerated (it's leftover from the
				 * Tcl_FirstHashEntry call or from an "array
				 * anymore" command). NULL means must call
				 * Tcl_NextHashEntry to get value to
				 * return. */
    struct ArraySearch *nextPtr;/* Next in list of all active searches for
				 * this variable, or NULL if this is the last
				 * one. */
} ArraySearch;

/*
 * The structure below defines a variable, which associates a string name with
 * a Tcl_Obj value. These structures are kept in procedure call frames (for
 * local variables recognized by the compiler) or in the heap (for global
 * variables and any variable not known to the compiler). For each Var
 * structure in the heap, a hash table entry holds the variable name and a
 * pointer to the Var structure.
 */

typedef struct Var {
    int flags;			/* Miscellaneous bits of information about
				 * variable. See below for definitions. */
    union {
	Tcl_Obj *objPtr;	/* The variable's object value. Used for
				 * scalar variables and array elements. */
	TclVarHashTable *tablePtr;/* For array variables, this points to
				 * information about the hash table used to
				 * implement the associative array. Points to
				 * ckalloc-ed data. */
	struct Var *linkPtr;	/* If this is a global variable being referred
				 * to in a procedure, or a variable created by
				 * "upvar", this field points to the
				 * referenced variable's Var struct. */
    } value;
} Var;

typedef struct VarInHash {
    Var var;
    int refCount;		/* Counts number of active uses of this
				 * variable: 1 for the entry in the hash
				 * table, 1 for each additional variable whose
				 * linkPtr points here, 1 for each nested
				 * trace active on variable, and 1 if the
				 * variable is a namespace variable. This
				 * record can't be deleted until refCount
				 * becomes 0. */
    Tcl_HashEntry entry;	/* The hash table entry that refers to this
				 * variable. This is used to find the name of
				 * the variable and to delete it from its
				 * hashtable if it is no longer needed. It
				 * also holds the variable's name. */
} VarInHash;

/*
 * Flag bits for variables. The first two (VAR_ARRAY and VAR_LINK) are
 * mutually exclusive and give the "type" of the variable. If none is set,
 * this is a scalar variable.
 *
 * VAR_ARRAY -			1 means this is an array variable rather than
 *				a scalar variable or link. The "tablePtr"
 *				field points to the array's hashtable for its
 *				elements.
 * VAR_LINK -			1 means this Var structure contains a pointer
 *				to another Var structure that either has the
 *				real value or is itself another VAR_LINK
 *				pointer. Variables like this come about
 *				through "upvar" and "global" commands, or
 *				through references to variables in enclosing
 *				namespaces.
 *
 * Flags that indicate the type and status of storage; none is set for
 * compiled local variables (Var structs).
 *
 * VAR_IN_HASHTABLE -		1 means this variable is in a hashtable and
 *				the Var structure is malloced. 0 if it is a
 *				local variable that was assigned a slot in a
 *				procedure frame by the compiler so the Var
 *				storage is part of the call frame.
 * VAR_DEAD_HASH                1 means that this var's entry in the hashtable
 *                              has already been deleted.
 * VAR_ARRAY_ELEMENT -		1 means that this variable is an array
 *				element, so it is not legal for it to be an
 *				array itself (the VAR_ARRAY flag had better
 *				not be set).
 * VAR_NAMESPACE_VAR -		1 means that this variable was declared as a
 *				namespace variable. This flag ensures it
 *				persists until its namespace is destroyed or
 *				until the variable is unset; it will persist
 *				even if it has not been initialized and is
 *				marked undefined. The variable's refCount is
 *				incremented to reflect the "reference" from
 *				its namespace.
 *
 * Flag values relating to the variable's trace and search status.
 *
 * VAR_TRACED_READ
 * VAR_TRACED_WRITE
 * VAR_TRACED_UNSET
 * VAR_TRACED_ARRAY
 * VAR_TRACE_ACTIVE -		1 means that trace processing is currently
 *				underway for a read or write access, so new
 *				read or write accesses should not cause trace
 *				procedures to be called and the variable can't
 *				be deleted.
 * VAR_SEARCH_ACTIVE
 *
 * The following additional flags are used with the CompiledLocal type defined
 * below:
 *
 * VAR_ARGUMENT -		1 means that this variable holds a procedure
 *				argument.
 * VAR_TEMPORARY -		1 if the local variable is an anonymous
 *				temporary variable. Temporaries have a NULL
 *				name.
 * VAR_RESOLVED -		1 if name resolution has been done for this
 *				variable.
 * VAR_IS_ARGS                  1 if this variable is the last argument and is
 *                              named "args".
 */

/*
 * FLAGS RENUMBERED: everything breaks already, make things simpler.
 *
 * IMPORTANT: skip the values 0x10, 0x20, 0x40, 0x800 corresponding to
 * TCL_TRACE_(READS/WRITES/UNSETS/ARRAY): makes code simpler in tclTrace.c
 *
 * Keep the flag values for VAR_ARGUMENT and VAR_TEMPORARY so that old values
 * in precompiled scripts keep working.
 */


/* Type of value (0 is scalar) */
#define VAR_ARRAY		0x1
#define VAR_LINK		0x2

/* Type of storage (0 is compiled local) */
#define VAR_IN_HASHTABLE	0x4
#define VAR_DEAD_HASH           0x8
#define VAR_ARRAY_ELEMENT	0x1000
#define VAR_NAMESPACE_VAR	0x80      /* KEEP OLD VALUE for Itcl */

#define VAR_ALL_HASH \
	(VAR_IN_HASHTABLE|VAR_DEAD_HASH|VAR_NAMESPACE_VAR|VAR_ARRAY_ELEMENT)

/* Trace and search state */

#define VAR_TRACED_READ        0x10       /* TCL_TRACE_READS  */
#define VAR_TRACED_WRITE       0x20       /* TCL_TRACE_WRITES */
#define VAR_TRACED_UNSET       0x40       /* TCL_TRACE_UNSETS */
#define VAR_TRACED_ARRAY       0x800	  /* TCL_TRACE_ARRAY  */
#define VAR_TRACE_ACTIVE       0x2000
#define VAR_SEARCH_ACTIVE      0x4000
#define VAR_ALL_TRACES \
	(VAR_TRACED_READ|VAR_TRACED_WRITE|VAR_TRACED_ARRAY|VAR_TRACED_UNSET)


/* Special handling on initialisation (only CompiledLocal) */
#define VAR_ARGUMENT		0x100	  /* KEEP OLD VALUE! See tclProc.c */
#define VAR_TEMPORARY		0x200	  /* KEEP OLD VALUE! See tclProc.c */
#define VAR_IS_ARGS		0x400
#define VAR_RESOLVED		0x8000

/*
 * Macros to ensure that various flag bits are set properly for variables.
 * The ANSI C "prototypes" for these macros are:
 *
 * MODULE_SCOPE void	TclSetVarScalar(Var *varPtr);
 * MODULE_SCOPE void	TclSetVarArray(Var *varPtr);
 * MODULE_SCOPE void	TclSetVarLink(Var *varPtr);
 * MODULE_SCOPE void	TclSetVarArrayElement(Var *varPtr);
 * MODULE_SCOPE void	TclSetVarUndefined(Var *varPtr);
 * MODULE_SCOPE void	TclClearVarUndefined(Var *varPtr);
 */

#define TclSetVarScalar(varPtr) \
    (varPtr)->flags &= ~(VAR_ARRAY|VAR_LINK)

#define TclSetVarArray(varPtr) \
    (varPtr)->flags = ((varPtr)->flags & ~VAR_LINK) | VAR_ARRAY

#define TclSetVarLink(varPtr) \
    (varPtr)->flags = ((varPtr)->flags & ~VAR_ARRAY) | VAR_LINK

#define TclSetVarArrayElement(varPtr) \
    (varPtr)->flags = ((varPtr)->flags & ~VAR_ARRAY) | VAR_ARRAY_ELEMENT

#define TclSetVarUndefined(varPtr) \
    (varPtr)->flags &= ~(VAR_ARRAY|VAR_LINK);\
    (varPtr)->value.objPtr = NULL

#define TclClearVarUndefined(varPtr)

#define TclSetVarTraceActive(varPtr) \
    (varPtr)->flags |= VAR_TRACE_ACTIVE

#define TclClearVarTraceActive(varPtr) \
    (varPtr)->flags &= ~VAR_TRACE_ACTIVE

#define TclSetVarNamespaceVar(varPtr) \
    if (!TclIsVarNamespaceVar(varPtr)) {\
	(varPtr)->flags |= VAR_NAMESPACE_VAR;\
	((VarInHash *)(varPtr))->refCount++;\
    }

#define TclClearVarNamespaceVar(varPtr) \
    if (TclIsVarNamespaceVar(varPtr)) {\
	(varPtr)->flags &= ~VAR_NAMESPACE_VAR;\
	((VarInHash *)(varPtr))->refCount--;\
    }

/*
 * Macros to read various flag bits of variables.
 * The ANSI C "prototypes" for these macros are:
 *
 * MODULE_SCOPE int	TclIsVarScalar(Var *varPtr);
 * MODULE_SCOPE int	TclIsVarLink(Var *varPtr);
 * MODULE_SCOPE int	TclIsVarArray(Var *varPtr);
 * MODULE_SCOPE int	TclIsVarUndefined(Var *varPtr);
 * MODULE_SCOPE int	TclIsVarArrayElement(Var *varPtr);
 * MODULE_SCOPE int	TclIsVarTemporary(Var *varPtr);
 * MODULE_SCOPE int	TclIsVarArgument(Var *varPtr);
 * MODULE_SCOPE int	TclIsVarResolved(Var *varPtr);
 */

#define TclIsVarScalar(varPtr) \
    !((varPtr)->flags & (VAR_ARRAY|VAR_LINK))

#define TclIsVarLink(varPtr) \
    ((varPtr)->flags & VAR_LINK)

#define TclIsVarArray(varPtr) \
    ((varPtr)->flags & VAR_ARRAY)

#define TclIsVarUndefined(varPtr) \
    ((varPtr)->value.objPtr == NULL)

#define TclIsVarArrayElement(varPtr) \
    ((varPtr)->flags & VAR_ARRAY_ELEMENT)

#define TclIsVarNamespaceVar(varPtr) \
    ((varPtr)->flags & VAR_NAMESPACE_VAR)

#define TclIsVarTemporary(varPtr) \
    ((varPtr)->flags & VAR_TEMPORARY)

#define TclIsVarArgument(varPtr) \
    ((varPtr)->flags & VAR_ARGUMENT)

#define TclIsVarResolved(varPtr) \
    ((varPtr)->flags & VAR_RESOLVED)

#define TclIsVarTraceActive(varPtr) \
    ((varPtr)->flags & VAR_TRACE_ACTIVE)

#define TclIsVarTraced(varPtr) \
   ((varPtr)->flags & VAR_ALL_TRACES)

#define TclIsVarInHash(varPtr) \
    ((varPtr)->flags & VAR_IN_HASHTABLE)

#define TclIsVarDeadHash(varPtr) \
    ((varPtr)->flags & VAR_DEAD_HASH)

#define TclGetVarNsPtr(varPtr) \
    (TclIsVarInHash(varPtr) \
         ? ((TclVarHashTable *) ((((VarInHash *) (varPtr))->entry.tablePtr)))->nsPtr \
	 : NULL)

#define VarHashRefCount(varPtr) \
    ((VarInHash *) (varPtr))->refCount

/*
 * Macros for direct variable access by TEBC
 */

#define TclIsVarDirectReadable(varPtr) \
    (   !((varPtr)->flags & (VAR_ARRAY|VAR_LINK|VAR_TRACED_READ)) \
    &&  (varPtr)->value.objPtr)

#define TclIsVarDirectWritable(varPtr) \
    !((varPtr)->flags & (VAR_ARRAY|VAR_LINK|VAR_TRACED_WRITE|VAR_DEAD_HASH))

#define TclIsVarDirectModifyable(varPtr) \
    (   !((varPtr)->flags & (VAR_ARRAY|VAR_LINK|VAR_TRACED_READ|VAR_TRACED_WRITE)) \
    &&  (varPtr)->value.objPtr)

#define TclIsVarDirectReadable2(varPtr, arrayPtr) \
    (TclIsVarDirectReadable(varPtr) &&\
        (!(arrayPtr) || !((arrayPtr)->flags & VAR_TRACED_READ)))

#define TclIsVarDirectWritable2(varPtr, arrayPtr) \
    (TclIsVarDirectWritable(varPtr) &&\
        (!(arrayPtr) || !((arrayPtr)->flags & VAR_TRACED_WRITE)))

#define TclIsVarDirectModifyable2(varPtr, arrayPtr) \
    (TclIsVarDirectModifyable(varPtr) &&\
        (!(arrayPtr) || !((arrayPtr)->flags & (VAR_TRACED_READ|VAR_TRACED_WRITE))))


/*
 *----------------------------------------------------------------
 * Data structures related to procedures. These are used primarily in
 * tclProc.c, tclCompile.c, and tclExecute.c.
 *----------------------------------------------------------------
 */

/*
 * Forward declaration to prevent an error when the forward reference to
 * Command is encountered in the Proc and ImportRef types declared below.
 */

struct Command;

/*
 * The variable-length structure below describes a local variable of a
 * procedure that was recognized by the compiler. These variables have a name,
 * an element in the array of compiler-assigned local variables in the
 * procedure's call frame, and various other items of information. If the
 * local variable is a formal argument, it may also have a default value. The
 * compiler can't recognize local variables whose names are expressions (these
 * names are only known at runtime when the expressions are evaluated) or
 * local variables that are created as a result of an "upvar" or "uplevel"
 * command. These other local variables are kept separately in a hash table in
 * the call frame.
 */

typedef struct CompiledLocal {
    struct CompiledLocal *nextPtr;
				/* Next compiler-recognized local variable for
				 * this procedure, or NULL if this is the last
				 * local. */
    int nameLength;		/* The number of characters in local
				 * variable's name. Used to speed up variable
				 * lookups. */
    int frameIndex;		/* Index in the array of compiler-assigned
				 * variables in the procedure call frame. */
    int flags;			/* Flag bits for the local variable. Same as
				 * the flags for the Var structure above,
				 * although only VAR_ARGUMENT, VAR_TEMPORARY,
				 * and VAR_RESOLVED make sense. */
    Tcl_Obj *defValuePtr;	/* Pointer to the default value of an
				 * argument, if any. NULL if not an argument
				 * or, if an argument, no default value. */
    Tcl_ResolvedVarInfo *resolveInfo;
				/* Customized variable resolution info
				 * supplied by the Tcl_ResolveCompiledVarProc
				 * associated with a namespace. Each variable
				 * is marked by a unique ClientData tag during
				 * compilation, and that same tag is used to
				 * find the variable at runtime. */
    char name[4];		/* Name of the local variable starts here. If
				 * the name is NULL, this will just be '\0'.
				 * The actual size of this field will be large
				 * enough to hold the name. MUST BE THE LAST
				 * FIELD IN THE STRUCTURE! */
} CompiledLocal;

/*
 * The structure below defines a command procedure, which consists of a
 * collection of Tcl commands plus information about arguments and other local
 * variables recognized at compile time.
 */

typedef struct Proc {
    struct Interp *iPtr;	/* Interpreter for which this command is
				 * defined. */
    int refCount;		/* Reference count: 1 if still present in
				 * command table plus 1 for each call to the
				 * procedure that is currently active. This
				 * structure can be freed when refCount
				 * becomes zero. */
    struct Command *cmdPtr;	/* Points to the Command structure for this
				 * procedure. This is used to get the
				 * namespace in which to execute the
				 * procedure. */
    Tcl_Obj *bodyPtr;		/* Points to the ByteCode object for
				 * procedure's body command. */
    int numArgs;		/* Number of formal parameters. */
    int numCompiledLocals;	/* Count of local variables recognized by the
				 * compiler including arguments and
				 * temporaries. */
    CompiledLocal *firstLocalPtr;
				/* Pointer to first of the procedure's
				 * compiler-allocated local variables, or NULL
				 * if none. The first numArgs entries in this
				 * list describe the procedure's formal
				 * arguments. */
    CompiledLocal *lastLocalPtr;/* Pointer to the last allocated local
				 * variable or NULL if none. This has frame
				 * index (numCompiledLocals-1). */
} Proc;

/*
 * The type of functions called to process errors found during the execution
 * of a procedure (or lambda term or ...).
 */

typedef void (*ProcErrorProc)(Tcl_Interp *interp, Tcl_Obj *procNameObj);

/*
 * The structure below defines a command trace. This is used to allow Tcl
 * clients to find out whenever a command is about to be executed.
 */

typedef struct Trace {
    int level;			/* Only trace commands at nesting level less
				 * than or equal to this. */
    Tcl_CmdObjTraceProc *proc;	/* Procedure to call to trace command. */
    ClientData clientData;	/* Arbitrary value to pass to proc. */
    struct Trace *nextPtr;	/* Next in list of traces for this interp. */
    int flags;			/* Flags governing the trace - see
				 * Tcl_CreateObjTrace for details */
    Tcl_CmdObjTraceDeleteProc* delProc;
				/* Procedure to call when trace is deleted */
} Trace;

/*
 * When an interpreter trace is active (i.e. its associated procedure is
 * executing), one of the following structures is linked into a list
 * associated with the interpreter. The information in the structure is needed
 * in order for Tcl to behave reasonably if traces are deleted while traces
 * are active.
 */

typedef struct ActiveInterpTrace {
    struct ActiveInterpTrace *nextPtr;
				/* Next in list of all active command traces
				 * for the interpreter, or NULL if no more. */
    Trace *nextTracePtr;	/* Next trace to check after current trace
				 * procedure returns; if this trace gets
				 * deleted, must update pointer to avoid using
				 * free'd memory. */
    int reverseScan;		/* Boolean set true when traces are scanning
				 * in reverse order. */
} ActiveInterpTrace;

/*
 * Flag values designating types of execution traces. See tclTrace.c for
 * related flag values.
 *
 * TCL_TRACE_ENTER_EXEC		- triggers enter/enterstep traces.
 * 				- passed to Tcl_CreateObjTrace to set up
 *				  "enterstep" traces.
 * TCL_TRACE_LEAVE_EXEC		- triggers leave/leavestep traces.
 * 				- passed to Tcl_CreateObjTrace to set up
 *				  "leavestep" traces.
 *
 */
#define TCL_TRACE_ENTER_EXEC	1
#define TCL_TRACE_LEAVE_EXEC	2

/*
 * The structure below defines an entry in the assocData hash table which is
 * associated with an interpreter. The entry contains a pointer to a function
 * to call when the interpreter is deleted, and a pointer to a user-defined
 * piece of data.
 */

typedef struct AssocData {
    Tcl_InterpDeleteProc *proc;	/* Proc to call when deleting. */
    ClientData clientData;	/* Value to pass to proc. */
} AssocData;

/*
 * The structure below defines a call frame. A call frame defines a naming
 * context for a procedure call: its local naming scope (for local variables)
 * and its global naming scope (a namespace, perhaps the global :: namespace).
 * A call frame can also define the naming context for a namespace eval or
 * namespace inscope command: the namespace in which the command's code should
 * execute. The Tcl_CallFrame structures exist only while procedures or
 * namespace eval/inscope's are being executed, and provide a kind of Tcl call
 * stack.
 *
 * WARNING!! The structure definition must be kept consistent with the
 * Tcl_CallFrame structure in tcl.h. If you change one, change the other.
 */

/*
 * Will be grown to contain: pointers to the varnames (allocated at the end),
 * plus the init values for each variable (suitable to be memcopied on init)
 */

typedef struct LocalCache {
    int refCount;
    int numVars;
    Tcl_Obj *varName0;
} LocalCache;

#define localName(framePtr, i) \
    ((&((framePtr)->localCachePtr->varName0))[(i)])

MODULE_SCOPE void	TclFreeLocalCache(Tcl_Interp *interp,
			    LocalCache *localCachePtr);

typedef struct CallFrame {
    Namespace *nsPtr;		/* Points to the namespace used to resolve
				 * commands and global variables. */
    int isProcCallFrame;	/* If 0, the frame was pushed to execute a
				 * namespace command and var references are
				 * treated as references to namespace vars;
				 * varTablePtr and compiledLocals are ignored.
				 * If FRAME_IS_PROC is set, the frame was
				 * pushed to execute a Tcl procedure and may
				 * have local vars. */
    int objc;			/* This and objv below describe the arguments
				 * for this procedure call. */
    Tcl_Obj *const *objv;	/* Array of argument objects. */
    struct CallFrame *callerPtr;
				/* Value of interp->framePtr when this
				 * procedure was invoked (i.e. next higher in
				 * stack of all active procedures). */
    struct CallFrame *callerVarPtr;
				/* Value of interp->varFramePtr when this
				 * procedure was invoked (i.e. determines
				 * variable scoping within caller). Same as
				 * callerPtr unless an "uplevel" command or
				 * something equivalent was active in the
				 * caller). */
    int level;			/* Level of this procedure, for "uplevel"
				 * purposes (i.e. corresponds to nesting of
				 * callerVarPtr's, not callerPtr's). 1 for
				 * outermost procedure, 0 for top-level. */
    Proc *procPtr;		/* Points to the structure defining the called
				 * procedure. Used to get information such as
				 * the number of compiled local variables
				 * (local variables assigned entries ["slots"]
				 * in the compiledLocals array below). */
    TclVarHashTable *varTablePtr;
                                /* Hash table containing local variables not
				 * recognized by the compiler, or created at
				 * execution time through, e.g., upvar.
				 * Initially NULL and created if needed. */
    int numCompiledLocals;	/* Count of local variables recognized by the
				 * compiler including arguments. */
    Var *compiledLocals;	/* Points to the array of local variables
				 * recognized by the compiler. The compiler
				 * emits code that refers to these variables
				 * using an index into this array. */
    ClientData clientData;	/* Pointer to some context that is used by
				 * object systems. The meaning of the contents
				 * of this field is defined by the code that
				 * sets it, and it should only ever be set by
				 * the code that is pushing the frame. In that
				 * case, the code that sets it should also
				 * have some means of discovering what the
				 * meaning of the value is, which we do not
				 * specify. */
    LocalCache *localCachePtr;
} CallFrame;

#define FRAME_IS_PROC   0x1
#define FRAME_IS_LAMBDA 0x2
#define FRAME_IS_METHOD	0x4	/* The frame is a method body, and the frame's
				 * clientData field contains a CallContext
				 * reference. Part of TIP#257. */
#define FRAME_IS_OO_DEFINE 0x8	/* The frame is part of the inside workings of
				 * the [oo::define] command; the clientData
				 * field contains an Object reference that has
				 * been confirmed to refer to a class. Part of
				 * TIP#257. */

/*
 * TIP #280
 * The structure below defines a command frame. A command frame provides
 * location information for all commands executing a tcl script (source, eval,
 * uplevel, procedure bodies, ...). The runtime structure essentially contains
 * the stack trace as it would be if the currently executing command were to
 * throw an error.
 *
 * For commands where it makes sense it refers to the associated CallFrame as
 * well.
 *
 * The structures are chained in a single list, with the top of the stack
 * anchored in the Interp structure.
 *
 * Instances can be allocated on the C stack, or the heap, the former making
 * cleanup a bit simpler.
 */

typedef struct CmdFrame {
    /*
     * General data. Always available.
     */

    int type;			/* Values see below. */
    int level;			/* #Frames in stack, prevent O(n) scan of
				 * list. */
    int numLevels;              /* value of interp's numLevels when the frame
				 * was pushed */
    int *line;			/* Lines the words of the command start on. */
    int nline;

    CallFrame *framePtr;	/* Procedure activation record, may be
				 * NULL. */
    struct CmdFrame *nextPtr;	/* Link to calling frame */

    /*
     * Data needed for Eval vs TEBC
     *
     * EXECUTION CONTEXTS and usage of CmdFrame
     *
     * Field	  TEBC		  EvalEx	  EvalObjEx
     * =======	  ====		  ======	  =========
     * level	  yes		  yes		  yes
     * type	  BC/PREBC	  SRC/EVAL	  EVAL_LIST
     * line0	  yes		  yes		  yes
     * framePtr	  yes		  yes		  yes
     * =======	  ====		  ======	  =========
     *
     * =======	  ====		  ======	  ========= union data
     * line1	  -		  yes		  -
     * line3	  -		  yes		  -
     * path	  -		  yes		  -
     * -------	  ----		  ------	  ---------
     * codePtr	  yes		  -		  -
     * pc	  yes		  -		  -
     * =======	  ====		  ======	  =========
     *
     * =======	  ====		  ======	  ========= | union cmd
     * listPtr	  -		  -		  yes	    |
     * -------	  ----		  ------	  --------- |
     * cmd	  yes		  yes		  -	    |
     * cmdlen	  yes		  yes		  -	    |
     * -------	  ----		  ------	  --------- |
     */

    union {
	struct {
	    Tcl_Obj *path;	/* Path of the sourced file the command is
				 * in. */
	} eval;
	struct {
	    const void *codePtr;/* Byte code currently executed */
	    const char *pc;	/* and instruction pointer. */
	} tebc;
    } data;
    union {
	struct {
	    const char *cmd;	/* The executed command, if possible */
	    int len;		/* And its length */
	} str;
	Tcl_Obj *listPtr;	/* Tcl_EvalObjEx, cmd list */
    } cmd;
} CmdFrame;

typedef struct CFWord {
    CmdFrame* framePtr;  /* CmdFrame to acess */
    int       word;      /* Index of the word in the command */
    int       refCount;  /* #times the word is on the stack */
} CFWord;

typedef struct ExtIndex {
    Tcl_Obj* obj; /* Reference to the word */
    int pc;   /* Instruction pointer of a command in ExtCmdLoc.loc[.] */
    int word; /* Index of word in ExtCmdLoc.loc[cmd]->line[.] */
} ExtIndex;


typedef struct CFWordBC {
    CmdFrame* framePtr;  /* CmdFrame to acess */
    ExtIndex* eiPtr;     /* Word info: PC and index */
    int       refCount;  /* #times the word is on the stack */
} CFWordBC;

/*
 * The following macros define the allowed values for the type field of the
 * CmdFrame structure above. Some of the values occur only in the extended
 * location data referenced via the 'baseLocPtr'.
 *
 * TCL_LOCATION_EVAL	  : Frame is for a script evaluated by EvalEx.
 * TCL_LOCATION_EVAL_LIST : Frame is for a script evaluated by the list
 *			    optimization path of EvalObjEx.
 * TCL_LOCATION_BC	  : Frame is for bytecode.
 * TCL_LOCATION_PREBC	  : Frame is for precompiled bytecode.
 * TCL_LOCATION_SOURCE	  : Frame is for a script evaluated by EvalEx, from a
 *			    sourced file.
 * TCL_LOCATION_PROC	  : Frame is for bytecode of a procedure.
 *
 * A TCL_LOCATION_BC type in a frame can be overridden by _SOURCE and _PROC
 * types, per the context of the byte code in execution.
 */

#define TCL_LOCATION_EVAL      (0) /* Location in a dynamic eval script */
#define TCL_LOCATION_EVAL_LIST (1) /* Location in a dynamic eval script,
				    * list-path */
#define TCL_LOCATION_BC	       (2) /* Location in byte code */
#define TCL_LOCATION_PREBC     (3) /* Location in precompiled byte code, no
				    * location */
#define TCL_LOCATION_SOURCE    (4) /* Location in a file */
#define TCL_LOCATION_PROC      (5) /* Location in a dynamic proc */

#define TCL_LOCATION_LAST      (6) /* Number of values in the enum */

/*
 * Structure passed to describe procedure-like "procedures" that are not
 * procedures (e.g. a lambda) so that their details can be reported correctly
 * by [info frame]. Contains a sub-structure for each extra field.
 */

typedef Tcl_Obj *(*GetFrameInfoValueProc)(ClientData clientData);
typedef struct {
    const char *name;		/* Name of this field. */
    GetFrameInfoValueProc proc;	/* Function to generate a Tcl_Obj* from the
				 * clientData, or just use the clientData
				 * directly (after casting) if NULL. */
    ClientData clientData;	/* Context for above function, or Tcl_Obj* if
				 * proc field is NULL. */
} ExtraFrameInfoField;
typedef struct {
    int length;			/* Length of array. */
    ExtraFrameInfoField fields[2];
				/* Really as long as necessary, but this is
				 * long enough for nearly anything. */
} ExtraFrameInfo;

/*
 *----------------------------------------------------------------
 * Data structures and procedures related to TclHandles, which are a very
 * lightweight method of preserving enough information to determine if an
 * arbitrary malloc'd block has been deleted.
 *----------------------------------------------------------------
 */

typedef void **TclHandle;

/*
 *----------------------------------------------------------------
 * Experimental flag value passed to Tcl_GetRegExpFromObj. Intended for use
 * only by Expect. It will probably go away in a later release.
 *----------------------------------------------------------------
 */

#define TCL_REG_BOSONLY 002000	/* Prepend \A to pattern so it only matches at
				 * the beginning of the string. */

/*
 * These are a thin layer over TclpThreadKeyDataGet and TclpThreadKeyDataSet
 * when threads are used, or an emulation if there are no threads. These are
 * really internal and Tcl clients should use Tcl_GetThreadData.
 */

MODULE_SCOPE void *	TclThreadDataKeyGet(Tcl_ThreadDataKey *keyPtr);
MODULE_SCOPE void	TclThreadDataKeySet(Tcl_ThreadDataKey *keyPtr,
			    void *data);

/*
 * This is a convenience macro used to initialize a thread local storage ptr.
 */

#define TCL_TSD_INIT(keyPtr) \
  (ThreadSpecificData *)Tcl_GetThreadData((keyPtr), sizeof(ThreadSpecificData))


/*
 *----------------------------------------------------------------
 * Data structures related to bytecode compilation and execution. These are
 * used primarily in tclCompile.c, tclExecute.c, and tclBasic.c.
 *----------------------------------------------------------------
 */

/*
 * Forward declaration to prevent errors when the forward references to
 * Tcl_Parse and CompileEnv are encountered in the procedure type CompileProc
 * declared below.
 */

struct CompileEnv;

/*
 * The type of procedures called by the Tcl bytecode compiler to compile
 * commands. Pointers to these procedures are kept in the Command structure
 * describing each command. The integer value returned by a CompileProc must
 * be one of the following:
 *
 * TCL_OK		Compilation completed normally.
 * TCL_ERROR 		Compilation could not be completed. This can be just a
 * 			judgment by the CompileProc that the command is too
 * 			complex to compile effectively, or it can indicate
 * 			that in the current state of the interp, the command
 * 			would raise an error. The bytecode compiler will not
 * 			do any error reporting at compiler time. Error
 * 			reporting is deferred until the actual runtime,
 * 			because by then changes in the interp state may allow
 * 			the command to be successfully evaluated.
 * TCL_OUT_LINE_COMPILE	A source-compatible alias for TCL_ERROR, kept for the
 * 			sake of old code only.
 */

#define TCL_OUT_LINE_COMPILE	TCL_ERROR

typedef int (CompileProc) (Tcl_Interp *interp, Tcl_Parse *parsePtr,
	struct Command *cmdPtr, struct CompileEnv *compEnvPtr);

/*
 * The type of procedure called from the compilation hook point in
 * SetByteCodeFromAny.
 */

typedef int (CompileHookProc) (Tcl_Interp *interp,
	struct CompileEnv *compEnvPtr, ClientData clientData);

/*
 * The data structure for a (linked list of) execution stacks.
 */

typedef struct ExecStack {
    struct ExecStack *prevPtr;
    struct ExecStack *nextPtr;
    Tcl_Obj **markerPtr;
    Tcl_Obj **endPtr;
    Tcl_Obj **tosPtr;
    Tcl_Obj *stackWords[1];
} ExecStack;

/*
 * The data structure defining the execution environment for ByteCode's.
 * There is one ExecEnv structure per Tcl interpreter. It holds the evaluation
 * stack that holds command operands and results. The stack grows towards
 * increasing addresses. The member stackPtr points to the stackItems of the
 * currently active execution stack.
 */

typedef struct CorContext {
    struct CallFrame *framePtr;
    struct CallFrame *varFramePtr;
    struct CmdFrame *cmdFramePtr;
} CorContext;

typedef struct CoroutineData {
    struct Command *cmdPtr;
    struct ExecEnv *eePtr;
    struct ExecEnv *callerEEPtr;
    CorContext caller;
    CorContext running;
    CorContext base;
    int *stackLevel;
} CoroutineData;

typedef struct ExecEnv {
    ExecStack *execStackPtr;	    /* Points to the first item in the
				     * evaluation stack on the heap. */
    Tcl_Obj *constants[2];	    /* Pointers to constant "0" and "1"
				     * objs. */ 
    struct Tcl_Interp *interp;
    struct TEOV_callback *callbackPtr;
                                    /* Top callback in TEOV's stack */
    struct CoroutineData *corPtr;
    struct BottomData *bottomPtr;
    int rewind;
} ExecEnv;

#define COR_IS_SUSPENDED(corPtr) \
    ((corPtr)->stackLevel == NULL)

/*
 * The definitions for the LiteralTable and LiteralEntry structures. Each
 * interpreter contains a LiteralTable. It is used to reduce the storage
 * needed for all the Tcl objects that hold the literals of scripts compiled
 * by the interpreter. A literal's object is shared by all the ByteCodes that
 * refer to the literal. Each distinct literal has one LiteralEntry entry in
 * the LiteralTable. A literal table is a specialized hash table that is
 * indexed by the literal's string representation, which may contain null
 * characters.
 *
 * Note that we reduce the space needed for literals by sharing literal
 * objects both within a ByteCode (each ByteCode contains a local
 * LiteralTable) and across all an interpreter's ByteCodes (with the
 * interpreter's global LiteralTable).
 */

typedef struct LiteralEntry {
    struct LiteralEntry *nextPtr;
				/* Points to next entry in this hash bucket or
				 * NULL if end of chain. */
    Tcl_Obj *objPtr;		/* Points to Tcl object that holds the
				 * literal's bytes and length. */
    int refCount;		/* If in an interpreter's global literal
				 * table, the number of ByteCode structures
				 * that share the literal object; the literal
				 * entry can be freed when refCount drops to
				 * 0. If in a local literal table, -1. */
    Namespace *nsPtr;		/* Namespace in which this literal is used. We
				 * try to avoid sharing literal non-FQ command
				 * names among different namespaces to reduce
				 * shimmering. */
} LiteralEntry;

typedef struct LiteralTable {
    LiteralEntry **buckets;	/* Pointer to bucket array. Each element
				 * points to first entry in bucket's hash
				 * chain, or NULL. */
    LiteralEntry *staticBuckets[TCL_SMALL_HASH_TABLE];
				/* Bucket array used for small tables to avoid
				 * mallocs and frees. */
    int numBuckets;		/* Total number of buckets allocated at
				 * **buckets. */
    int numEntries;		/* Total number of entries present in
				 * table. */
    int rebuildSize;		/* Enlarge table when numEntries gets to be
				 * this large. */
    int mask;			/* Mask value used in hashing function. */
} LiteralTable;

/*
 * The following structure defines for each Tcl interpreter various
 * statistics-related information about the bytecode compiler and
 * interpreter's operation in that interpreter.
 */

#ifdef TCL_COMPILE_STATS
typedef struct ByteCodeStats {
    long numExecutions;		/* Number of ByteCodes executed. */
    long numCompilations;	/* Number of ByteCodes created. */
    long numByteCodesFreed;	/* Number of ByteCodes destroyed. */
    long instructionCount[256];	/* Number of times each instruction was
				 * executed. */

    double totalSrcBytes;	/* Total source bytes ever compiled. */
    double totalByteCodeBytes;	/* Total bytes for all ByteCodes. */
    double currentSrcBytes;	/* Src bytes for all current ByteCodes. */
    double currentByteCodeBytes;/* Code bytes in all current ByteCodes. */

    long srcCount[32];		/* Source size distribution: # of srcs of
				 * size [2**(n-1)..2**n), n in [0..32). */
    long byteCodeCount[32];	/* ByteCode size distribution. */
    long lifetimeCount[32];	/* ByteCode lifetime distribution (ms). */

    double currentInstBytes;	/* Instruction bytes-current ByteCodes. */
    double currentLitBytes;	/* Current literal bytes. */
    double currentExceptBytes;	/* Current exception table bytes. */
    double currentAuxBytes;	/* Current auxiliary information bytes. */
    double currentCmdMapBytes;	/* Current src<->code map bytes. */

    long numLiteralsCreated;	/* Total literal objects ever compiled. */
    double totalLitStringBytes;	/* Total string bytes in all literals. */
    double currentLitStringBytes;
				/* String bytes in current literals. */
    long literalCount[32];	/* Distribution of literal string sizes. */
} ByteCodeStats;
#endif /* TCL_COMPILE_STATS */

/*
 * Structure used in implementation of those core ensembles which are
 * partially compiled.
 */

typedef struct {
    const char *name;		/* The name of the subcommand. */
    Tcl_ObjCmdProc *proc;	/* The implementation of the subcommand. */
    CompileProc *compileProc;	/* The compiler for the subcommand. */
} EnsembleImplMap;

/*
 *----------------------------------------------------------------
 * Data structures related to commands.
 *----------------------------------------------------------------
 */

/*
 * An imported command is created in an namespace when it imports a "real"
 * command from another namespace. An imported command has a Command structure
 * that points (via its ClientData value) to the "real" Command structure in
 * the source namespace's command table. The real command records all the
 * imported commands that refer to it in a list of ImportRef structures so
 * that they can be deleted when the real command is deleted.
 */

typedef struct ImportRef {
    struct Command *importedCmdPtr;
				/* Points to the imported command created in
				 * an importing namespace; this command
				 * redirects its invocations to the "real"
				 * command. */
    struct ImportRef *nextPtr;	/* Next element on the linked list of imported
				 * commands that refer to the "real" command.
				 * The real command deletes these imported
				 * commands on this list when it is
				 * deleted. */
} ImportRef;

/*
 * Data structure used as the ClientData of imported commands: commands
 * created in an namespace when it imports a "real" command from another
 * namespace.
 */

typedef struct ImportedCmdData {
    struct Command *realCmdPtr;	/* "Real" command that this imported command
				 * refers to. */
    struct Command *selfPtr;	/* Pointer to this imported command. Needed
				 * only when deleting it in order to remove it
				 * from the real command's linked list of
				 * imported commands that refer to it. */
} ImportedCmdData;

/*
 * A Command structure exists for each command in a namespace. The Tcl_Command
 * opaque type actually refers to these structures.
 */

typedef struct Command {
    Tcl_HashEntry *hPtr;	/* Pointer to the hash table entry that refers
				 * to this command. The hash table is either a
				 * namespace's command table or an
				 * interpreter's hidden command table. This
				 * pointer is used to get a command's name
				 * from its Tcl_Command handle. NULL means
				 * that the hash table entry has been removed
				 * already (this can happen if deleteProc
				 * causes the command to be deleted or
				 * recreated). */
    Namespace *nsPtr;		/* Points to the namespace containing this
				 * command. */
    int refCount;		/* 1 if in command hashtable plus 1 for each
				 * reference from a CmdName Tcl object
				 * representing a command's name in a ByteCode
				 * instruction sequence. This structure can be
				 * freed when refCount becomes zero. */
    int cmdEpoch;		/* Incremented to invalidate any references
				 * that point to this command when it is
				 * renamed, deleted, hidden, or exposed. */
    CompileProc *compileProc;	/* Procedure called to compile command. NULL
				 * if no compile proc exists for command. */
    Tcl_ObjCmdProc *objProc;	/* Object-based command procedure. */
    ClientData objClientData;	/* Arbitrary value passed to object proc. */
    Tcl_CmdProc *proc;		/* String-based command procedure. */
    ClientData clientData;	/* Arbitrary value passed to string proc. */
    Tcl_CmdDeleteProc *deleteProc;
				/* Procedure invoked when deleting command to,
				 * e.g., free all client data. */
    ClientData deleteData;	/* Arbitrary value passed to deleteProc. */
    int flags;			/* Miscellaneous bits of information about
				 * command. See below for definitions. */
    ImportRef *importRefPtr;	/* List of each imported Command created in
				 * another namespace when this command is
				 * imported. These imported commands redirect
				 * invocations back to this command. The list
				 * is used to remove all those imported
				 * commands when deleting this "real"
				 * command. */
    CommandTrace *tracePtr;	/* First in list of all traces set for this
				 * command. */
    Tcl_ObjCmdProc *nreProc;    /* NRE implementation of this command */
} Command;

/*
 * Flag bits for commands.
 *
 * CMD_IS_DELETED -		Means that the command is in the process of
 *				being deleted (its deleteProc is currently
 *				executing). Other attempts to delete the
 *				command should be ignored.
 * CMD_TRACE_ACTIVE -		1 means that trace processing is currently
 *				underway for a rename/delete change. See the
 *				two flags below for which is currently being
 *				processed.
 * CMD_HAS_EXEC_TRACES -	1 means that this command has at least one
 *				execution trace (as opposed to simple
 *				delete/rename traces) in its tracePtr list.
 * TCL_TRACE_RENAME -		A rename trace is in progress. Further
 *				recursive renames will not be traced.
 * TCL_TRACE_DELETE -		A delete trace is in progress. Further
 *				recursive deletes will not be traced.
 * (these last two flags are defined in tcl.h)
 */

#define CMD_IS_DELETED		    0x1
#define CMD_TRACE_ACTIVE	    0x2
#define CMD_HAS_EXEC_TRACES	    0x4

/*
 *----------------------------------------------------------------
 * Data structures related to name resolution procedures.
 *----------------------------------------------------------------
 */