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guile/libguile/debug.c
Jim Blandy 20e6290e38 C files should #include only the header files they need, not
libguile.h (which #includes all the header files); the pointless
recompilation was wasting my time.
* Makefile.in (all .o dependency lists): Regenerated.
* libguile.h: Don't try to get a definition for size_t here...
* __scm.h: Do it here.
* _scm.h: Since this is the internal libguile header, put things
here that all (or a majority) of the libguile files will want.
Don't #include <libguile.h> here; that generates dependencies on
way too much.  Instead, get "__scm.h", "error.h", "pairs.h",
"list.h", "gc.h", "gsubr.h", "procs.h", "numbers.h", "symbols.h",
"boolean.h", "strings.h", "vectors.h", "root.h", "ports.h", and
"async.h".
* alist.c: Get "eq.h", "list.h", "alist.h".
* append.c: Get "append.h", "list.h".
* arbiters.c: Get "arbiters.h", "smob.h".
* async.c: Get "async.h", "smob.h", "throw.h", "eval.h".
* boolean.c: Get "boolean.h".
* chars.c: Get "chars.h".
* continuations.c: Get "continuations.h", "dynwind.h", "debug.h",
"stackchk.h".
* debug.c: Get "debug.h", "feature.h", "read.h", "strports.h",
"continuations.h", "alist.h", "srcprop.h", "procprop.h", "smob.h",
"genio.h", "throw.h", "eval.h".
* dynwind.c: Get "dynwind.h", "alist.h", "eval.h".
* eq.c: Get "eq.h", "unif.h", "smob.h", "strorder.h",
"stackchk.h".
* error.c: Get "error.h", "throw.h", "genio.h", "pairs.h".
* eval.c: Get "eval.h", "stackchk.h", "srcprop.h", "debug.h",
"hashtab.h", "procprop.h", "markers.h", "smob.h", "throw.h",
"continuations.h", "eq.h", "sequences.h", "alist.h", "append.h",
"debug.h".
* fdsocket.c: Get "fdsocket.h", "unif.h", "filesys.h".
* feature.c: Get "feature.h".
* files.c: Get "files.h".
* filesys.c: Get "filesys.h", "smob.h", "genio.h".
* fports.c: Get "fports.h", "markers.h".
* gc.c: Get "async.h", "unif.h", "smob.h", "weaks.h",
"genio.h", "struct.h", "stackchk.h", "stime.h".
* gdbint.c: Get "gdbint.h", "chars.h", "eval.h", "print.h",
"read.h", "strports.h", "tag.h".
* genio.c: Get "genio.h", "chars.h".
* gsubr.c: Get "gsubr.h", "genio.h".
* hash.c: Get "hash.h", "chars.h".
* hashtab.c: Get "hashtab.h", "eval.h", "hash.h", "alist.h".
* init.c: Get everyone who has an scm_init_mumble function:
"weaks.h", "vports.h", "version.h", "vectors.h", "variable.h",
"unif.h", "throw.h", "tag.h", "symbols.h", "struct.h",
"strports.h", "strorder.h", "strop.h", "strings.h", "stime.h",
"stackchk.h", "srcprop.h", "socket.h", "simpos.h", "sequences.h",
"scmsigs.h", "read.h", "ramap.h", "procs.h", "procprop.h",
"print.h", "posix.h", "ports.h", "pairs.h", "options.h",
"objprop.h", "numbers.h", "mbstrings.h", "mallocs.h", "load.h",
"list.h", "kw.h", "ioext.h", "hashtab.h", "hash.h", "gsubr.h",
"gdbint.h", "gc.h", "fports.h", "filesys.h", "files.h",
"feature.h", "fdsocket.h", "eval.h", "error.h", "eq.h",
"dynwind.h", "debug.h", "continuations.h", "chars.h", "boolean.h",
"async.h", "arbiters.h", "append.h", "alist.h".
* ioext.c: Get "ioext.h", "fports.h".
* kw.c: Get "kw.h", "smob.h", "mbstrings.h", "genio.h".
* list.c: Get "list.h", "eq.h".
* load.c: Get "load.h", "eval.h", "read.h", "fports.h".
* mallocs.c: Get "smob.h", "genio.h".
* markers.c: Get "markers.h".
* mbstrings.c: Get "mbstrings.h", "read.h", "genio.h", "unif.h",
"chars.h".
* numbers.c: Get "unif.h", "genio.h".
* objprop.c: Get "objprop.h", "weaks.h", "alist.h", "hashtab.h".
* options.c: Get "options.h".
* ports.c: Get "ports.h", "vports.h", "strports.h", "fports.h",
"markers.h", "chars.h", "genio.h".
* posix.c: Get "posix.h", "sequences.h", "feature.h", "unif.h",
"read.h", "scmsigs.h", "genio.h", "fports.h".
* print.c: Get "print.h",  "unif.h", "weaks.h", "read.h",
"procprop.h", "eval.h", "smob.h", "mbstrings.h", "genio.h",
"chars.h".
* procprop.c: Get "procprop.h", "eval.h", "alist.h".
* procs.c: Get "procs.h".
* ramap.c: Get "ramap.h", "feature.h", "eval.h", "eq.h",
"chars.h", "smob.h", "unif.h".
* read.c: Get "alist.h", "kw.h", "mbstrings.h", "unif.h",
"eval.h", "genio.h", "chars.h".
* root.c: Get "root.h", "stackchk.h".
* scmsigs.c: Get "scmsigs.h".
* sequences.c: Get "sequences.h".
* simpos.c: Get "simpos.h", "scmsigs.h".
* smob.c: Get "smob.h".
* socket.c: Get "socket.h", "feature.h".
* srcprop.c: Get "srcprop.h", "weaks.h", "hashtab.h", "debug.h",
"alist.h", "smob.h".
* stackchk.c: Get "stackchk.h", "genio.h".
* stime.c: Get "stime.h"."libguile/continuations.h".
* strings.c: Get "strings.h", "chars.h".
* strop.c: Get "strop.h", "chars.h".
* strorder.c: Get "strorder.h", "chars.h".
* strports.c: Get "strports.h", "print.h", "eval.h", "unif.h".
* struct.c: Get "struct.h", "chars.h".
* symbols.c: Get "symbols.h", "mbstrings.h", "alist.h",
"variable.h", "eval.h", "chars.h".
* tag.c: Get "tag.h", "struct.h", "chars.h".
* throw.c: Get "throw.h", "continuations.h", "debug.h",
"dynwind.h", "eval.h", "alist.h", "smob.h", "genio.h".
* unif.c: Get "unif.h", "feature.h", "strop.h", "sequences.h",
"smob.h", "genio.h", "eval.h", "chars.h".
* variable.c: Get "variable.h", "smob.h", "genio.h".
* vectors.c: Get "vectors.h", "eq.h".
* version.c: Get "version.h".
* vports.c: Get "vports.h", "fports.h", "chars.h", "eval.h".
* weaks.c: Get "weaks.h".
1996-09-10 02:26:07 +00:00

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/* Debugging extensions for Guile
Copyright (C) 1995, 1996 Mikael Djurfeldt
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 1, or (at your option)
any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
The author can be reached at djurfeldt@nada.kth.se
Mikael Djurfeldt, SANS/NADA KTH, 10044 STOCKHOLM, SWEDEN
*/
#include <stdio.h>
#include "_scm.h"
#include "eval.h"
#include "throw.h"
#include "genio.h"
#include "smob.h"
#include "procprop.h"
#include "srcprop.h"
#include "alist.h"
#include "continuations.h"
#include "strports.h"
#include "read.h"
#include "feature.h"
#include "debug.h"
/* {Run time control of the debugging evaluator}
*/
SCM_PROC (s_debug_options, "debug-options-interface", 0, 1, 0, scm_debug_options);
#ifdef __STDC__
SCM
scm_debug_options (SCM setting)
#else
SCM
scm_debug_options (setting)
SCM setting;
#endif
{
SCM ans;
SCM_DEFER_INTS;
ans = scm_options (setting,
scm_debug_opts,
SCM_N_DEBUG_OPTIONS,
s_debug_options);
#ifndef SCM_RECKLESS
if (!(1 <= SCM_N_FRAMES && SCM_N_FRAMES <= SCM_MAX_FRAME_SIZE))
{
scm_options (ans, scm_debug_opts, SCM_N_DEBUG_OPTIONS, s_debug_options);
/* *fixme* Should SCM_ALLOW_INTS be called here? */
scm_wta (setting, (char *) SCM_OUTOFRANGE, "frames");
}
#endif
SCM_RESET_DEBUG_MODE;
scm_debug_eframe_size = 2 * SCM_N_FRAMES;
SCM_ALLOW_INTS
return ans;
}
SCM_PROC (s_evaluator_traps, "evaluator-traps-interface", 0, 1, 0, scm_evaluator_traps);
#ifdef __STDC__
SCM
scm_evaluator_traps (SCM setting)
#else
SCM
scm_evaluator_traps (setting)
SCM setting;
#endif
{
SCM ans;
SCM_DEFER_INTS;
ans = scm_options (setting,
scm_evaluator_trap_table,
SCM_N_EVALUATOR_TRAPS,
s_evaluator_traps);
SCM_RESET_DEBUG_MODE;
SCM_ALLOW_INTS
return ans;
}
SCM_PROC (s_single_step, "single-step", 2, 0, 0, scm_single_step);
#ifdef __STDC__
SCM
scm_single_step (SCM cont, SCM val)
#else
SCM
scm_single_step (val)
SCM cont, SCM val;
#endif
{
SCM_DEFER_INTS;
SCM_ENTER_FRAME_P = SCM_EXIT_FRAME_P = 1;
SCM_RESET_DEBUG_MODE;
SCM_ALLOW_INTS;
scm_throw (cont, val);
return SCM_BOOL_F; /* never returns */
}
static SCM scm_i_source, scm_i_more;
static SCM scm_i_proc, scm_i_args, scm_i_eval_args;
static SCM scm_i_procname;
/* {Memoized Source}
*/
long scm_tc16_memoized;
#ifdef __STDC__
static int
prinmemoized (SCM obj, SCM port, int writing)
#else
static int
prinmemoized (obj, port, writing)
SCM obj;
SCM port;
int writing;
#endif
{
scm_gen_puts (scm_regular_string, "#<memoized ", port);
scm_iprin1 (scm_unmemoize (obj), port, 1);
scm_gen_putc ('>', port);
return 1;
}
static scm_smobfuns memoizedsmob =
{scm_markcdr, scm_free0, prinmemoized, 0};
SCM_PROC (s_memoized_p, "memoized?", 1, 0, 0, scm_memoized_p);
#ifdef __STDC__
SCM
scm_memoized_p (SCM obj)
#else
SCM
scm_memoized_p (obj)
SCM obj;
#endif
{
return SCM_NIMP (obj) && SCM_MEMOIZEDP (obj) ? SCM_BOOL_T : SCM_BOOL_F;
}
#ifdef __STDC__
SCM
scm_make_memoized (SCM exp, SCM env)
#else
SCM
scm_make_memoized (env)
SCM exp, SCM env;
#endif
{
register SCM z, ans;
SCM_DEFER_INTS;
SCM_NEWCELL (z);
SCM_CAR (z) = exp;
SCM_CDR (z) = env;
SCM_NEWCELL (ans);
SCM_CAR (ans) = scm_tc16_memoized;
SCM_CDR (ans) = z;
SCM_ALLOW_INTS;
return ans;
}
SCM_PROC (s_unmemoize, "unmemoize", 1, 0, 0, scm_unmemoize);
#ifdef __STDC__
SCM
scm_unmemoize (SCM m)
#else
SCM
scm_unmemoize (m)
SCM m;
#endif
{
SCM_ASSERT (SCM_MEMOIZEDP (m), m, SCM_ARG1, s_unmemoize);
return scm_unmemocopy (SCM_MEMOEXP (m), SCM_MEMOENV (m));
}
SCM_PROC (s_memoized_environment, "memoized-environment", 1, 0, 0, scm_memoized_environment);
#ifdef __STDC__
SCM
scm_memoized_environment (SCM m)
#else
SCM
scm_memoized_environment (m)
SCM m;
#endif
{
SCM_ASSERT (SCM_MEMOIZEDP (m), m, SCM_ARG1, s_unmemoize);
return SCM_MEMOENV (m);
}
SCM_PROC (s_procedure_name, "procedure-name", 1, 0, 0, scm_procedure_name);
#ifdef __STDC__
SCM
scm_procedure_name (SCM proc)
#else
SCM
scm_procedure_name (proc)
SCM proc;
#endif
{
SCM_ASSERT(scm_procedure_p (proc) == SCM_BOOL_T,
proc,
SCM_ARG1,
s_procedure_name);
switch (SCM_TYP7 (proc)) {
case scm_tcs_closures:
{
SCM name = scm_procedure_property (proc, scm_i_name);
#if 0
/* Procedure property scm_i_procname not implemented yet... */
SCM name = scm_source_property (SCM_CAR (SCM_CDR (SCM_CODE (proc))), scm_i_procname);
if (SCM_FALSEP (name))
name = scm_procedure_property (proc, scm_i_name);
#endif
return name;
}
case scm_tcs_subrs:
return SCM_SNAME (proc);
default:
return SCM_BOOL_F;
}
}
SCM_PROC (s_procedure_source, "procedure-source", 1, 0, 0, scm_procedure_source);
#ifdef __STDC__
SCM
scm_procedure_source (SCM proc)
#else
SCM
scm_procedure_source (proc)
SCM proc;
#endif
{
SCM_ASSERT(SCM_NIMP (proc), proc, SCM_ARG1, s_procedure_source);
switch (SCM_TYP7 (proc)) {
case scm_tcs_closures:
{
SCM src;
src = scm_source_property (SCM_CDR (SCM_CODE (proc)), scm_i_copy);
if (src != SCM_BOOL_F)
return scm_cons2 (scm_i_lambda, SCM_CAR (SCM_CODE (proc)), src);
src = SCM_CODE (proc);
return scm_cons (scm_i_lambda,
scm_unmemocopy (src,
SCM_EXTEND_SCM_ENV (SCM_CAR (src),
SCM_EOL,
SCM_ENV (proc))));
}
case scm_tc7_contin:
case scm_tcs_subrs:
#ifdef CCLO
case scm_tc7_cclo:
#endif
/* It would indeed be a nice thing if we supplied source even for
built in procedures! */
return scm_procedure_property (proc, scm_i_source);
default:
scm_wta (proc, (char *) SCM_ARG1, s_procedure_source);
return 0;
}
}
SCM_PROC (s_procedure_environment, "procedure-environment", 1, 0, 0, scm_procedure_environment);
#ifdef __STDC__
SCM
scm_procedure_environment (SCM proc)
#else
SCM
scm_procedure_environment (proc)
SCM proc;
#endif
{
SCM_ASSERT (SCM_NIMP (proc), proc, SCM_ARG1, s_procedure_environment);
switch (SCM_TYP7 (proc)) {
case scm_tcs_closures:
return SCM_ENV (proc);
case scm_tc7_contin:
case scm_tcs_subrs:
#ifdef CCLO
case scm_tc7_cclo:
#endif
return SCM_EOL;
default:
scm_wta (proc, (char *) SCM_ARG1, s_procedure_environment);
return 0;
}
}
/* Eval in a local environment. We would like to have the ability to
* evaluate in a specified local environment, but due to the memoization
* this isn't normally possible. We solve it by copying the code before
* evaluating. Probably the best solution would be to have eval.c generate
* yet another evaluator. They are not very big actually.
*/
SCM_PROC (s_local_eval, "local-eval", 2, 0, 0, scm_local_eval);
#ifdef __STDC__
SCM
scm_local_eval (SCM exp, SCM env)
#else
SCM
scm_local_eval (exp, env)
SCM exp;
SCM env;
#endif
{
return scm_eval_3 (exp, 1, env);
}
/* {Stack Frames}
*
* The stack is a list of stackframes, from root to current.
*
* A stackframe is a list of virtual stackframes, which occur due to
* the evaluators tail recursion. A virtual stackframe normally
* corresponds to an eval/apply pair, but macros and special forms
* (which are implemented as macros in scm...) only have eval
* information and apply calls leads to apply only frames.
*
* A virtual stackframe is either a property list or the symbol
* ... which marks the location of virtual stackframes which could not
* be stored with the current debug-depth.
*
* Property Type Description
*
* These three only present in eval frames:
*
* sexpr memoized Source code expression and environment.
* proc procedure The procedure being applied.
* (Not present if pre-apply state.)
* args list The arguments evaluated so far.
* eval-args boolean True if evaluation of arguments not finished.
*/
/* {Debug Objects}
*
* The debugging evaluator throws these on frame traps.
*/
long scm_tc16_debugobj;
#define DEBUGOBJP(x) (scm_tc16_debugobj == SCM_TYP16 (x))
#define DBGFRAME(x) SCM_CDR (x)
#ifdef __STDC__
static int
prindebugobj (SCM obj, SCM port, int writing)
#else
static int
prindebugobj (writing)
SCM obj, SCM port, int writing;
#endif
{
scm_gen_puts (scm_regular_string, "#<debug-object ", port);
scm_intprint (DBGFRAME (obj), 16, port);
scm_gen_putc ('>', port);
return 1;
}
static scm_smobfuns debugobjsmob =
{scm_mark0, scm_free0, prindebugobj, 0};
SCM_PROC (s_debug_object_p, "debug-object?", 1, 0, 0, scm_debug_object_p);
#ifdef __STDC__
SCM
scm_debug_object_p (SCM obj)
#else
SCM
scm_debug_object_p (obj)
SCM obj;
#endif
{
return SCM_NIMP (obj) && DEBUGOBJP (obj) ? SCM_BOOL_T : SCM_BOOL_F;
}
#ifdef __STDC__
SCM
scm_make_debugobj (scm_debug_frame *frame)
#else
SCM
scm_make_debugobj (frame)
scm_debug_frame *frame;
#endif
{
register SCM z;
SCM_DEFER_INTS;
SCM_NEWCELL (z);
SCM_CAR (z) = scm_tc16_debugobj;
DBGFRAME (z) = (SCM) frame;
SCM_ALLOW_INTS;
return z;
}
#ifdef __STDC__
static SCM
_scm_stack_frame_to_plist (scm_debug_frame *frame, long offset)
#else
static SCM
_scm_stack_frame_to_plist (frame, offset)
scm_debug_frame *frame;
long offset;
#endif
{
int size;
scm_debug_info *info;
if (SCM_EVALFRAMEP (*frame))
{
size = frame->status & SCM_MAX_FRAME_SIZE;
info = (scm_debug_info *) (*((SCM_STACKITEM **) &frame->vect[size]) + offset);
if ((info - frame->vect) & 1)
{
/* Debug.vect ends with apply info. */
SCM p;
--info;
if (info[1].a.proc == SCM_UNDEFINED)
p = SCM_EOL;
else
p = scm_acons (scm_i_proc,
info[1].a.proc,
scm_acons (scm_i_args,
info[1].a.args,
SCM_ARGS_READY_P (*frame)
? SCM_EOL
: scm_acons (scm_i_eval_args,
SCM_BOOL_T,
SCM_EOL)));
return scm_acons (scm_i_source,
scm_make_memoized (info[0].e.exp, info[0].e.env),
p);
}
else
/* Debug.vect ends with eval info. */
return scm_acons (scm_i_source,
scm_make_memoized (info[0].e.exp, info[0].e.env),
SCM_EOL);
}
else
return scm_acons (scm_i_proc,
frame->vect[0].a.proc,
scm_acons (scm_i_args, frame->vect[0].a.args, SCM_EOL));
}
SCM_PROC (s_last_stack_frame, "last-stack-frame", 1, 0, 0, scm_last_stack_frame);
#ifdef __STDC__
SCM
scm_last_stack_frame (SCM obj)
#else
SCM
scm_last_stack_frame (obj)
SCM obj;
#endif
{
scm_debug_frame *frame;
long offset = 0;
SCM_ASSERT (SCM_NIMP (obj), obj, SCM_ARG1, s_last_stack_frame);
if (scm_tc16_debugobj == SCM_TYP16 (obj))
frame = (scm_debug_frame *) DBGFRAME (obj);
else if (scm_tc7_contin == SCM_TYP7 (obj))
{
frame = SCM_DFRAME (obj);
offset = (SCM_STACKITEM *) (SCM_CHARS (obj) + sizeof (regs)) - SCM_BASE (obj);
#ifndef STACK_GROWS_UP
offset += SCM_LENGTH (obj);
#endif
}
else scm_wta (obj, (char *) SCM_ARG1, s_last_stack_frame);
if (!frame)
return SCM_BOOL_F;
return _scm_stack_frame_to_plist ((scm_debug_frame *) ((SCM_STACKITEM *) frame + offset), offset);
}
/* Make a scheme object of the current evaluation stack.
*/
SCM_PROC (s_expr_stack, "expr-stack", 0, 1, 0, scm_expr_stack);
#ifdef __STDC__
SCM
scm_expr_stack (SCM obj)
#else
SCM
scm_expr_stack (obj)
SCM obj;
#endif
{
SCM frs = SCM_EOL, vfrs, p;
int size;
int max_vfrs = SCM_BACKTRACE_DEPTH;
scm_debug_info *info;
scm_debug_frame *frame;
long offset = 0;
if (SCM_UNBNDP (obj))
frame = last_debug_info_frame;
else
{
SCM_ASSERT (SCM_NIMP (obj), obj, SCM_ARG1, s_expr_stack);
if (scm_tc16_debugobj == SCM_TYP16 (obj))
frame = (scm_debug_frame *) DBGFRAME (obj);
else if (scm_tc7_contin == SCM_TYP7 (obj))
{
frame = SCM_DFRAME (obj);
offset = (SCM_STACKITEM *) (SCM_CHARS (obj) + sizeof (regs)) - SCM_BASE (obj);
#ifndef STACK_GROWS_UP
offset += SCM_LENGTH (obj);
#endif
}
else scm_wta (obj, (char *) SCM_ARG1, s_expr_stack);
}
for (; frame && max_vfrs > 0; frame = frame->prev)
{
frame = (scm_debug_frame *) ((SCM_STACKITEM *) frame + offset);
p = _scm_stack_frame_to_plist (frame, offset);
if (SCM_EVALFRAMEP (*frame))
{
size = frame->status & SCM_MAX_FRAME_SIZE;
info = (scm_debug_info *) (*((SCM_STACKITEM **) &frame->vect[size]) + offset);
vfrs = SCM_EOL;
if ((info - frame->vect) & 1)
--info;
/* Data in the apply part of an eval info frame comes from
previous stack frame if the scm_debug_info vector is overflowed. */
else if (SCM_OVERFLOWP (*frame)
&& !SCM_UNBNDP (info[1].a.proc))
{
vfrs = scm_cons (p, SCM_EOL);
--max_vfrs;
p = scm_acons (scm_i_proc,
info[1].a.proc,
scm_acons (scm_i_args, info[1].a.args, SCM_EOL));
}
info -= 2;
vfrs = scm_cons (p, vfrs);
--max_vfrs;
if (SCM_OVERFLOWP (*frame))
vfrs = scm_cons (scm_i_more, vfrs);
while (info >= frame->vect)
{
p = SCM_EOL;
if (!SCM_UNBNDP (info[1].a.proc))
p = scm_acons (scm_i_proc,
info[1].a.proc,
scm_acons (scm_i_args, info[1].a.args, SCM_EOL));
p = scm_acons (scm_i_source,
scm_make_memoized (info[0].e.exp, info[0].e.env),
p);
info -= 2;
vfrs = scm_cons (p, vfrs);
--max_vfrs;
}
}
else
{
vfrs = scm_cons (p, SCM_EOL);
--max_vfrs;
}
frs = scm_cons (vfrs, frs);
}
if (max_vfrs <= 0)
frs = scm_cons (scm_i_more, frs);
return frs;
}
/* {Support for debugging with gdb}
*
* Gdb's support for debugging with Guile is written by Per Bothner at
* Cygnus Support with modifications by Mikael Djurfeldt.
*
* Gdb wants to see the functions:
*
* scm_lookup_cstr, scm_evstr, and, scm_ready_p.
*/
/* Avoid calling Guile when this macro is false.
scm_gc_heap_lock is set during gc.
*/
#define SCM_READY_P (!scm_gc_heap_lock)
/* Macros that encapsulate blocks of code which can be called by the
* debugger.
*/
#define SCM_BEGIN_FOREIGN_BLOCK \
{ \
++scm_ints_disabled; \
++scm_block_gc; \
} \
#define SCM_END_FOREIGN_BLOCK \
{ \
--scm_block_gc; \
--scm_ints_disabled; \
} \
/* debug_print is a handy function for calling from a debugger.
* Given an SCM object, o, it executes (write o) to stdout.
*/
#ifdef __STDC__
void
debug_print (SCM obj)
#else
void
debug_print (obj)
SCM obj;
#endif
{
if (!SCM_READY_P)
{
fputs ("debug_print called when Guile not ready", stderr);
return;
}
SCM_BEGIN_FOREIGN_BLOCK;
scm_write(obj, scm_def_outp);
SCM_END_FOREIGN_BLOCK;
fflush(NULL);
}
/* Gdb uses the following function to determine whether Guile is
* prepared to run.
*/
#ifdef __STDC__
int
scm_ready_p (void)
#else
int
scm_ready_p ()
#endif
{
return SCM_READY_P;
}
SCM_PROC (s_eval_string, "eval-string", 1, 0, 0, scm_eval_string);
#ifdef __STDC__
SCM
scm_eval_string (SCM str)
#else
SCM
scm_eval_string (str)
SCM str;
#endif
{
str = scm_mkstrport (SCM_INUM0, str, SCM_OPN | SCM_RDNG, s_eval_string);
str = scm_read (str, SCM_UNDEFINED, SCM_UNDEFINED);
return XEVAL(str, (SCM) SCM_EOL);
}
#ifdef __STDC__
SCM
scm_evstr (char *str)
#else
SCM
scm_evstr (str)
char *str;
#endif
{
SCM ans;
if (!SCM_READY_P)
{
fputs ("scm_evstr called when Guile not ready", stderr);
return SCM_UNDEFINED;
}
SCM_BEGIN_FOREIGN_BLOCK;
SCM_NEWCELL(ans);
SCM_SETLENGTH (ans, strlen(str)+0L, scm_tc7_ssymbol);
SCM_SETCHARS (ans, str);
ans = scm_eval_string (ans);
SCM_END_FOREIGN_BLOCK;
return ans;
}
/* Lookup a symbol var in the environment genv.
* Return a pointer to the storage location if symbol is found.
* Return NULL otherwise.
*/
#ifdef __STDC__
SCM *
scm_lookup_soft (SCM var, SCM genv)
#else
SCM *
scm_lookup_soft (var, genv)
SCM vloc;
SCM genv;
#endif
{
SCM env = genv;
register SCM *al, fl;
for (; SCM_NIMP (env); env = SCM_CDR (env))
{
if (SCM_BOOL_T == scm_procedure_p (SCM_CAR (env)))
break;
al = &SCM_CAR (env);
for (fl = SCM_CAR (*al); SCM_NIMP (fl); fl = SCM_CDR (fl))
{
if (SCM_NCONSP (fl))
if (fl == var)
return &SCM_CDR (*al);
else
break;
al = &SCM_CDR (*al);
if (SCM_CAR (fl) == var)
return &SCM_CAR (*al);
}
}
{
SCM top_thunk, vcell;
if (SCM_NIMP(env))
{
top_thunk = SCM_CAR(env); /* env now refers to a top level env thunk */
env = SCM_CDR (env);
}
else
top_thunk = SCM_BOOL_F;
vcell = scm_sym2vcell (var, top_thunk, SCM_BOOL_F);
if (vcell == SCM_BOOL_F)
goto errout;
else
var = vcell;
}
#ifndef RECKLESS
if (SCM_NNULLP (env) || SCM_UNBNDP (SCM_CDR (var)))
{
var = SCM_CAR (var);
errout:
return NULL;
}
#endif
return &SCM_CDR (var);
}
#ifdef __STDC__
SCM *
scm_lookup_cstr (char *str, int len, SCM env)
#else
SCM *
scm_lookup_cstr (str, len, env)
char *str;
int len;
SCM env;
#endif
{
SCM *ans;
if (!SCM_READY_P)
{
fputs ("scm_lookup_cstr called when Guile not ready", stderr);
return NULL;
}
fprintf (stderr, "env = 0x%lx\n", env);
SCM_BEGIN_FOREIGN_BLOCK;
/* Ignore env until gdb is fixed. */
ans = scm_lookup_soft (SCM_CAR (scm_intern (str, len)),
scm_top_level_env (SCM_CDR
(scm_top_level_lookup_thunk_var)));
SCM_END_FOREIGN_BLOCK;
return ans;
}
void
scm_init_debug ()
{
scm_init_opts (scm_debug_options, scm_debug_opts, SCM_N_DEBUG_OPTIONS);
scm_init_opts (scm_evaluator_traps,
scm_evaluator_trap_table,
SCM_N_EVALUATOR_TRAPS);
scm_tc16_memoized = scm_newsmob (&memoizedsmob);
scm_tc16_debugobj = scm_newsmob (&debugobjsmob);
scm_i_procname = SCM_CAR (scm_sysintern ("procname", SCM_UNDEFINED));
scm_i_more = SCM_CAR (scm_sysintern ("...", SCM_UNDEFINED));
scm_i_source = SCM_CAR (scm_sysintern ("source", SCM_UNDEFINED));
scm_i_proc = SCM_CAR (scm_sysintern ("proc", SCM_UNDEFINED));
scm_i_args = SCM_CAR (scm_sysintern ("args", SCM_UNDEFINED));
scm_i_eval_args = SCM_CAR (scm_sysintern ("eval-args", SCM_UNDEFINED));
scm_add_feature ("debug-extensions");
#include "debug.x"
}