1
Fork 0
mirror of https://git.savannah.gnu.org/git/guile.git synced 2025-04-30 03:40:34 +02:00
guile/libguile/dynl.c
2000-11-22 11:20:03 +00:00

523 lines
16 KiB
C

/* dynl.c - dynamic linking
*
* Copyright (C) 1990, 91, 92, 93, 94, 95, 96, 97, 98, 99, 2000 Free Software Foundation, Inc.
*
* 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 2, 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 software; see the file COPYING. If not, write to
* the Free Software Foundation, Inc., 59 Temple Place, Suite 330,
* Boston, MA 02111-1307 USA
*
* As a special exception, the Free Software Foundation gives permission
* for additional uses of the text contained in its release of GUILE.
*
* The exception is that, if you link the GUILE library with other files
* to produce an executable, this does not by itself cause the
* resulting executable to be covered by the GNU General Public License.
* Your use of that executable is in no way restricted on account of
* linking the GUILE library code into it.
*
* This exception does not however invalidate any other reasons why
* the executable file might be covered by the GNU General Public License.
*
* This exception applies only to the code released by the
* Free Software Foundation under the name GUILE. If you copy
* code from other Free Software Foundation releases into a copy of
* GUILE, as the General Public License permits, the exception does
* not apply to the code that you add in this way. To avoid misleading
* anyone as to the status of such modified files, you must delete
* this exception notice from them.
*
* If you write modifications of your own for GUILE, it is your choice
* whether to permit this exception to apply to your modifications.
* If you do not wish that, delete this exception notice. */
/* Software engineering face-lift by Greg J. Badros, 11-Dec-1999,
gjb@cs.washington.edu, http://www.cs.washington.edu/homes/gjb */
/* "dynl.c" dynamically link&load object files.
Author: Aubrey Jaffer
Modified for libguile by Marius Vollmer */
#if 0 /* Disabled until we know for sure that it isn't needed */
/* XXX - This is only here to drag in a definition of __eprintf. This
is needed for proper operation of dynamic linking. The real
solution would probably be a shared libgcc. */
#undef NDEBUG
#include <assert.h>
static void
maybe_drag_in_eprintf ()
{
assert (!maybe_drag_in_eprintf);
}
#endif
#include <stdio.h>
#include "libguile/_scm.h"
#include "libguile/dynl.h"
#include "libguile/smob.h"
#include "libguile/keywords.h"
#include "libguile/ports.h"
#include "libguile/strings.h"
#include "libguile/validate.h"
/* Create a new C argv array from a scheme list of strings. */
/* Dirk:FIXME:: A quite similar function is implemented in posix.c */
/* Dirk:FIXME:: In case of assertion errors, we get memory leaks */
/* Converting a list of SCM strings into a argv-style array. You must
have ints disabled for the whole lifetime of the created argv (from
before MAKE_ARGV_FROM_STRINGLIST until after
MUST_FREE_ARGV). Atleast this is was the documentation for
MAKARGVFROMSTRS says, it isn't really used that way.
This code probably belongs into strings.c
(Dirk: IMO strings.c is not the right place.) */
static char **
scm_make_argv_from_stringlist (SCM args,int *argcp,const char *subr,int argn)
{
char **argv;
int argc;
int i;
argc = scm_ilength (args);
SCM_ASSERT (argc >= 0, args, argn, subr);
argv = (char **) scm_must_malloc ((argc + 1) * sizeof (char *), subr);
for (i = 0; !SCM_NULLP (args); args = SCM_CDR (args), ++i) {
SCM arg = SCM_CAR (args);
scm_sizet len;
char *dst;
char *src;
SCM_ASSERT (SCM_STRINGP (arg), args, argn, subr);
len = SCM_STRING_LENGTH (arg);
src = SCM_STRING_CHARS (arg);
dst = (char *) scm_must_malloc (len + 1, subr);
memcpy (dst, src, len);
dst[len] = 0;
argv[i] = dst;
}
if (argcp)
*argcp = argc;
argv[argc] = 0;
return argv;
}
static void
scm_must_free_argv(char **argv)
{
char **av = argv;
while (*av)
free (*(av++));
free (argv);
}
/* Module registry
*/
/* We can't use SCM objects here. One should be able to call
SCM_REGISTER_MODULE from a C++ constructor for a static
object. This happens before main and thus before libguile is
initialized. */
struct moddata {
struct moddata *link;
char *module_name;
void *init_func;
};
static struct moddata *registered_mods = NULL;
void
scm_register_module_xxx (char *module_name, void *init_func)
{
struct moddata *md;
/* XXX - should we (and can we) DEFER_INTS here? */
for (md = registered_mods; md; md = md->link)
if (!strcmp (md->module_name, module_name))
{
md->init_func = init_func;
return;
}
md = (struct moddata *) malloc (sizeof (struct moddata));
if (md == NULL)
{
fprintf (stderr,
"guile: can't register module (%s): not enough memory",
module_name);
return;
}
md->module_name = module_name;
md->init_func = init_func;
md->link = registered_mods;
registered_mods = md;
}
SCM_DEFINE (scm_registered_modules, "c-registered-modules", 0, 0, 0,
(),
"Return a list of the object code modules that have been imported into\n"
"the current Guile process. Each element of the list is a pair whose\n"
"car is the name of the module, and whose cdr is the function handle\n"
"for that module's initializer function. The name is the string that\n"
"has been passed to scm_register_module_xxx.")
#define FUNC_NAME s_scm_registered_modules
{
SCM res;
struct moddata *md;
res = SCM_EOL;
for (md = registered_mods; md; md = md->link)
res = scm_cons (scm_cons (scm_makfrom0str (md->module_name),
scm_ulong2num ((unsigned long) md->init_func)),
res);
return res;
}
#undef FUNC_NAME
SCM_DEFINE (scm_clear_registered_modules, "c-clear-registered-modules", 0, 0, 0,
(),
"Destroy the list of modules registered with the current Guile process.\n"
"The return value is unspecified. @strong{Warning:} this function does\n"
"not actually unlink or deallocate these modules, but only destroys the\n"
"records of which modules have been loaded. It should therefore be used\n"
"only by module bookkeeping operations.")
#define FUNC_NAME s_scm_clear_registered_modules
{
struct moddata *md1, *md2;
SCM_DEFER_INTS;
for (md1 = registered_mods; md1; md1 = md2)
{
md2 = md1->link;
free (md1);
}
registered_mods = NULL;
SCM_ALLOW_INTS;
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
/* Dispatch to the system dependent files
*
* They define some static functions. These functions are called with
* deferred interrupts. When they want to throw errors, they are
* expected to insert a SCM_ALLOW_INTS before doing the throw. It
* might work to throw an error while interrupts are deferred (because
* they will be unconditionally allowed the next time a SCM_ALLOW_INTS
* is executed, SCM_DEFER_INTS and SCM_ALLOW_INTS do not nest).
*/
#ifdef DYNAMIC_LINKING
#include "libltdl/ltdl.h"
static void *
sysdep_dynl_link (const char *fname, const char *subr)
{
lt_dlhandle handle;
handle = lt_dlopenext (fname);
if (NULL == handle)
{
SCM_ALLOW_INTS;
scm_misc_error (subr, (char *) lt_dlerror (), SCM_EOL);
}
return (void *) handle;
}
static void
sysdep_dynl_unlink (void *handle, const char *subr)
{
if (lt_dlclose ((lt_dlhandle) handle))
{
SCM_ALLOW_INTS;
scm_misc_error (subr, (char *) lt_dlerror (), SCM_EOL);
}
}
static void *
sysdep_dynl_func (const char *symb, void *handle, const char *subr)
{
void *fptr;
fptr = lt_dlsym ((lt_dlhandle) handle, symb);
if (!fptr)
{
SCM_ALLOW_INTS;
scm_misc_error (subr, (char *) lt_dlerror (), SCM_EOL);
}
return fptr;
}
static void
sysdep_dynl_init ()
{
lt_dlinit ();
}
#else
/* no dynamic linking available, throw errors. */
static void
sysdep_dynl_init (void)
{
}
static void
no_dynl_error (const char *subr)
{
SCM_ALLOW_INTS;
scm_misc_error (subr, "dynamic linking not available", SCM_EOL);
}
static void *
sysdep_dynl_link (const char *filename, const char *subr)
{
no_dynl_error (subr);
return NULL;
}
static void
sysdep_dynl_unlink (void *handle,
const char *subr)
{
no_dynl_error (subr);
}
static void *
sysdep_dynl_func (const char *symbol,
void *handle,
const char *subr)
{
no_dynl_error (subr);
return NULL;
}
#endif
int scm_tc16_dynamic_obj;
#define DYNL_FILENAME(x) (SCM_CELL_OBJECT_1 (x))
#define DYNL_HANDLE(x) ((void *) SCM_CELL_WORD_2 (x))
#define SET_DYNL_HANDLE(x, v) (SCM_SET_CELL_WORD_2 ((x), (v)))
static SCM
mark_dynl_obj (SCM ptr)
{
return DYNL_FILENAME (ptr);
}
static int
print_dynl_obj (SCM exp,SCM port,scm_print_state *pstate)
{
scm_puts ("#<dynamic-object ", port);
scm_iprin1 (DYNL_FILENAME (exp), port, pstate);
if (DYNL_HANDLE (exp) == NULL)
scm_puts (" (unlinked)", port);
scm_putc ('>', port);
return 1;
}
SCM_DEFINE (scm_dynamic_link, "dynamic-link", 1, 0, 0,
(SCM fname),
"Open the dynamic library @var{library-file}. A library handle\n"
"representing the opened library is returned; this handle should be used\n"
"as the @var{lib} argument to the following functions.")
#define FUNC_NAME s_scm_dynamic_link
{
void *handle;
SCM_VALIDATE_STRING (1, fname);
SCM_STRING_COERCE_0TERMINATION_X (fname);
handle = sysdep_dynl_link (SCM_STRING_CHARS (fname), FUNC_NAME);
SCM_RETURN_NEWSMOB2 (scm_tc16_dynamic_obj, SCM_UNPACK (fname), handle);
}
#undef FUNC_NAME
SCM_DEFINE (scm_dynamic_object_p, "dynamic-object?", 1, 0, 0,
(SCM obj),
"Return @code{#t} if @var{obj} is a dynamic library handle, or @code{#f}\n"
"otherwise.")
#define FUNC_NAME s_scm_dynamic_object_p
{
return SCM_BOOL (SCM_SMOB_PREDICATE (scm_tc16_dynamic_obj, obj));
}
#undef FUNC_NAME
SCM_DEFINE (scm_dynamic_unlink, "dynamic-unlink", 1, 0, 0,
(SCM dobj),
"Unlink the library represented by @var{library-handle},\n"
"and remove any imported symbols from the address space.\n"
"GJB:FIXME:DOC: 2nd version below:\n"
"Unlink the indicated object file from the application. The\n"
"argument @var{dynobj} must have been obtained by a call to\n"
"@code{dynamic-link}. After @code{dynamic-unlink} has been\n"
"called on @var{dynobj}, its content is no longer accessible.")
#define FUNC_NAME s_scm_dynamic_unlink
{
/*fixme* GC-problem */
SCM_VALIDATE_SMOB (SCM_ARG1, dobj, dynamic_obj);
if (DYNL_HANDLE (dobj) == NULL) {
SCM_MISC_ERROR ("Already unlinked: ~S", dobj);
} else {
SCM_DEFER_INTS;
sysdep_dynl_unlink (DYNL_HANDLE (dobj), FUNC_NAME);
SET_DYNL_HANDLE (dobj, NULL);
SCM_ALLOW_INTS;
return SCM_UNSPECIFIED;
}
}
#undef FUNC_NAME
SCM_DEFINE (scm_dynamic_func, "dynamic-func", 2, 0, 0,
(SCM name, SCM dobj),
"Search the dynamic object @var{dobj} for the C function\n"
"indicated by the string @var{name} and return some Scheme\n"
"handle that can later be used with @code{dynamic-call} to\n"
"actually call the function.\n\n"
"Regardless whether your C compiler prepends an underscore @samp{_} to\n"
"the global names in a program, you should @strong{not} include this\n"
"underscore in @var{function}. Guile knows whether the underscore is\n"
"needed or not and will add it when necessary.")
#define FUNC_NAME s_scm_dynamic_func
{
/* The returned handle is formed by casting the address of the function to a
* long value and converting this to a scheme number
*/
void (*func) ();
SCM_VALIDATE_STRING (1, name);
/*fixme* GC-problem */
SCM_VALIDATE_SMOB (SCM_ARG2, dobj, dynamic_obj);
if (DYNL_HANDLE (dobj) == NULL) {
SCM_MISC_ERROR ("Already unlinked: ~S", dobj);
} else {
char *chars;
SCM_DEFER_INTS;
SCM_STRING_COERCE_0TERMINATION_X (name);
chars = SCM_STRING_CHARS (name);
func = (void (*) ()) sysdep_dynl_func (chars, DYNL_HANDLE (dobj), FUNC_NAME);
SCM_ALLOW_INTS;
return scm_ulong2num ((unsigned long) func);
}
}
#undef FUNC_NAME
SCM_DEFINE (scm_dynamic_call, "dynamic-call", 2, 0, 0,
(SCM func, SCM dobj),
"Call @var{lib-thunk}, a procedure of no arguments. If @var{lib-thunk}\n"
"is a string, it is assumed to be a symbol found in the dynamic library\n"
"@var{lib} and is fetched with @code{dynamic-func}. Otherwise, it should\n"
"be a function handle returned by a previous call to @code{dynamic-func}.\n"
"The return value is unspecified.\n"
"GJB:FIXME:DOC 2nd version below\n"
"Call the C function indicated by @var{function} and @var{dynobj}. The\n"
"function is passed no arguments and its return value is ignored. When\n"
"@var{function} is something returned by @code{dynamic-func}, call that\n"
"function and ignore @var{dynobj}. When @var{function} is a string (or\n"
"symbol, etc.), look it up in @var{dynobj}; this is equivalent to\n\n"
"@smallexample\n"
"(dynamic-call (dynamic-func @var{function} @var{dynobj} #f))\n"
"@end smallexample\n\n"
"Interrupts are deferred while the C function is executing (with\n"
"@code{SCM_DEFER_INTS}/@code{SCM_ALLOW_INTS}).")
#define FUNC_NAME s_scm_dynamic_call
{
void (*fptr) ();
if (SCM_STRINGP (func))
func = scm_dynamic_func (func, dobj);
fptr = (void (*) ()) SCM_NUM2ULONG (1, func);
SCM_DEFER_INTS;
fptr ();
SCM_ALLOW_INTS;
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
SCM_DEFINE (scm_dynamic_args_call, "dynamic-args-call", 3, 0, 0,
(SCM func, SCM dobj, SCM args),
"Call @var{proc}, a dynamically loaded function, passing it the argument\n"
"list @var{args} (a list of strings). As with @code{dynamic-call},\n"
"@var{proc} should be either a function handle or a string, in which case\n"
"it is first fetched from @var{lib} with @code{dynamic-func}.\n\n"
"@var{proc} is assumed to return an integer, which is used as the return\n"
"value from @code{dynamic-args-call}.\n\n"
"GJB:FIXME:DOC 2nd version below\n"
"Call the C function indicated by @var{function} and @var{dynobj}, just\n"
"like @code{dynamic-call}, but pass it some arguments and return its\n"
"return value. The C function is expected to take two arguments and\n"
"return an @code{int}, just like @code{main}:\n\n"
"@smallexample\n"
"int c_func (int argc, char **argv);\n"
"@end smallexample\n\n"
"The parameter @var{args} must be a list of strings and is converted into\n"
"an array of @code{char *}. The array is passed in @var{argv} and its\n"
"size in @var{argc}. The return value is converted to a Scheme number\n"
"and returned from the call to @code{dynamic-args-call}.")
#define FUNC_NAME s_scm_dynamic_args_call
{
int (*fptr) (int argc, char **argv);
int result, argc;
char **argv;
if (SCM_STRINGP (func))
func = scm_dynamic_func (func, dobj);
fptr = (int (*) (int, char **)) SCM_NUM2ULONG (1, func);
SCM_DEFER_INTS;
argv = scm_make_argv_from_stringlist (args, &argc, FUNC_NAME, SCM_ARG3);
result = (*fptr) (argc, argv);
scm_must_free_argv (argv);
SCM_ALLOW_INTS;
return SCM_MAKINUM (0L + result);
}
#undef FUNC_NAME
void
scm_init_dynamic_linking ()
{
scm_tc16_dynamic_obj = scm_make_smob_type ("dynamic-object", 0);
scm_set_smob_mark (scm_tc16_dynamic_obj, mark_dynl_obj);
scm_set_smob_print (scm_tc16_dynamic_obj, print_dynl_obj);
sysdep_dynl_init ();
#ifndef SCM_MAGIC_SNARFER
#include "libguile/dynl.x"
#endif
}
/*
Local Variables:
c-file-style: "gnu"
End:
*/