Many changes. Not quite there yet.
This commit is contained in:
509
libffi/x86/ffi.c
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509
libffi/x86/ffi.c
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@@ -0,0 +1,509 @@
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/* -----------------------------------------------------------------------
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ffi.c - Copyright (c) 1996, 1998, 1999 Cygnus Solutions
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x86 Foreign Function Interface
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Permission is hereby granted, free of charge, to any person obtaining
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a copy of this software and associated documentation files (the
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``Software''), to deal in the Software without restriction, including
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without limitation the rights to use, copy, modify, merge, publish,
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distribute, sublicense, and/or sell copies of the Software, and to
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permit persons to whom the Software is furnished to do so, subject to
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the following conditions:
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The above copyright notice and this permission notice shall be included
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in all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED ``AS IS'', WITHOUT WARRANTY OF ANY KIND, EXPRESS
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OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
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IN NO EVENT SHALL CYGNUS SOLUTIONS BE LIABLE FOR ANY CLAIM, DAMAGES OR
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OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
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ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
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OTHER DEALINGS IN THE SOFTWARE.
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----------------------------------------------------------------------- */
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#include <ffi.h>
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#include <ffi_private.h>
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#include <ffi_common.h>
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#include <stdlib.h>
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/* ffi_prep_args is called by the assembly routine once stack space
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has been allocated for the function's arguments */
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/*@-exportheader@*/
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void ffi_prep_args(char *stack, extended_cif *ecif)
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/*@=exportheader@*/
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{
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register unsigned int i;
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register int tmp;
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register unsigned int avn;
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register void **p_argv;
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register char *argp;
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register ffi_type **p_arg;
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tmp = 0;
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argp = stack;
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if ( ecif->cif->rtype->type == FFI_TYPE_STRUCT ) {
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*(void **) argp = ecif->rvalue;
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argp += 4;
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}
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avn = ecif->cif->nargs;
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p_argv = ecif->avalue;
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for (i = ecif->cif->nargs, p_arg = ecif->cif->arg_types;
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(i != 0) && (avn != 0);
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i--, p_arg++)
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{
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size_t z;
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/* Align if necessary */
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if (((*p_arg)->alignment - 1) & (unsigned) argp) {
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argp = (char *) ALIGN(argp, (*p_arg)->alignment);
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}
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if (avn != 0)
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{
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avn--;
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z = (*p_arg)->size;
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if (z < sizeof(int))
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{
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z = sizeof(int);
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switch ((*p_arg)->type)
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{
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case FFI_TYPE_SINT8:
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*(signed int *) argp = (signed int)*(SINT8 *)(* p_argv);
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break;
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case FFI_TYPE_UINT8:
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*(unsigned int *) argp = (unsigned int)*(UINT8 *)(* p_argv);
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break;
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case FFI_TYPE_SINT16:
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*(signed int *) argp = (signed int)*(SINT16 *)(* p_argv);
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break;
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case FFI_TYPE_UINT16:
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*(unsigned int *) argp = (unsigned int)*(UINT16 *)(* p_argv);
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break;
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case FFI_TYPE_SINT32:
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*(signed int *) argp = (signed int)*(SINT32 *)(* p_argv);
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break;
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case FFI_TYPE_UINT32:
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*(unsigned int *) argp = (unsigned int)*(UINT32 *)(* p_argv);
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break;
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case FFI_TYPE_STRUCT:
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*(unsigned int *) argp = (unsigned int)*(UINT32 *)(* p_argv);
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break;
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default:
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FFI_ASSERT(0);
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}
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}
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else
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{
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memcpy(argp, *p_argv, z);
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}
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p_argv++;
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argp += z;
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}
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}
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return;
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}
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/* Perform machine dependent cif processing */
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ffi_status ffi_prep_cif_machdep(ffi_cif *cif)
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{
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/* Set the return type flag */
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switch (cif->rtype->type)
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{
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case FFI_TYPE_VOID:
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case FFI_TYPE_STRUCT:
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case FFI_TYPE_SINT64:
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case FFI_TYPE_FLOAT:
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case FFI_TYPE_DOUBLE:
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case FFI_TYPE_LONGDOUBLE:
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cif->flags = (unsigned) cif->rtype->type;
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break;
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case FFI_TYPE_UINT64:
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cif->flags = FFI_TYPE_SINT64;
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break;
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default:
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cif->flags = FFI_TYPE_INT;
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break;
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}
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return FFI_OK;
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}
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/*@-declundef@*/
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/*@-exportheader@*/
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extern void ffi_call_SYSV(void (*)(char *, extended_cif *),
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/*@out@*/ extended_cif *,
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unsigned, unsigned,
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/*@out@*/ unsigned *,
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void (*fn)());
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/*@=declundef@*/
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/*@=exportheader@*/
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void ffi_call(/*@dependent@*/ ffi_cif *cif,
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void (*fn)(),
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/*@out@*/ void *rvalue,
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/*@dependent@*/ void **avalue)
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{
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extended_cif ecif;
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ecif.cif = cif;
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ecif.avalue = avalue;
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/* If the return value is a struct and we don't have a return */
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/* value address then we need to make one */
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if ((rvalue == NULL) &&
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(cif->rtype->type == FFI_TYPE_STRUCT))
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{
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/*@-sysunrecog@*/
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ecif.rvalue = alloca(cif->rtype->size);
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/*@=sysunrecog@*/
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}
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else
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ecif.rvalue = rvalue;
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switch (cif->abi)
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{
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case FFI_SYSV:
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/*@-usedef@*/
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ffi_call_SYSV(ffi_prep_args, &ecif, cif->bytes,
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cif->flags, ecif.rvalue, fn);
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/*@=usedef@*/
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break;
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default:
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FFI_ASSERT(0);
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break;
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}
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}
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/** private members **/
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static void ffi_prep_incoming_args_SYSV (char *stack, void **ret,
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void** args, ffi_cif* cif);
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static void ffi_closure_SYSV ();
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static void ffi_closure_raw_SYSV ();
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/* This function is jumped to by the trampoline, on entry, %ecx (a
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* caller-save register) holds the address of the closure.
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* Clearly, this requires __GNUC__, so perhaps we should translate this
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* into an assembly file if this is to be distributed with ffi.
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*/
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static void
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ffi_closure_SYSV ()
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{
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// this is our return value storage
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long double res;
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// our various things...
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void *args;
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ffi_cif *cif;
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void **arg_area;
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ffi_closure *closure;
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unsigned short rtype;
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void *resp = (void*)&res;
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/* grab the trampoline context pointer */
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asm ("movl %%ecx,%0" : "=r" (closure));
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cif = closure->cif;
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arg_area = (void**) alloca (cif->nargs * sizeof (void*));
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asm ("leal 8(%%ebp),%0" : "=q" (args));
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/* this call will initialize ARG_AREA, such that each
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* element in that array points to the corresponding
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* value on the stack; and if the function returns
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* a structure, it will re-set RESP to point to the
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* structure return address. */
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ffi_prep_incoming_args_SYSV(args, (void**)&resp, arg_area, cif);
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(closure->fun) (cif, resp, arg_area, closure->user_data);
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rtype = cif->flags;
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/* now, do a generic return based on the value of rtype */
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if (rtype == FFI_TYPE_INT)
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{
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asm ("movl (%0),%%eax" : : "r" (resp) : "eax");
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}
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else if (rtype == FFI_TYPE_FLOAT)
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{
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asm ("flds (%0)" : : "r" (resp) : "st" );
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}
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else if (rtype == FFI_TYPE_DOUBLE)
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{
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asm ("fldl (%0)" : : "r" (resp) : "st", "st(1)" );
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}
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else if (rtype == FFI_TYPE_LONGDOUBLE)
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{
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asm ("fldt (%0)" : : "r" (resp) : "st", "st(1)" );
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}
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else if (rtype == FFI_TYPE_SINT64)
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{
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asm ("movl 0(%0),%%eax;"
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"movl 4(%0),%%edx"
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: : "r"(resp)
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: "eax", "edx");
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}
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}
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/*@-exportheader@*/
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static void
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ffi_prep_incoming_args_SYSV(char *stack, void **rvalue,
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void **avalue, ffi_cif *cif)
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/*@=exportheader@*/
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{
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register unsigned int i;
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register int tmp;
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register unsigned int avn;
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register void **p_argv;
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register char *argp;
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register ffi_type **p_arg;
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tmp = 0;
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argp = stack;
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if ( cif->rtype->type == FFI_TYPE_STRUCT ) {
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*rvalue = *(void **) argp;
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argp += 4;
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}
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avn = cif->nargs;
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p_argv = avalue;
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for (i = cif->nargs, p_arg = cif->arg_types;
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(i != 0) && (avn != 0);
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i--, p_arg++)
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{
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size_t z;
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/* Align if necessary */
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if (((*p_arg)->alignment - 1) & (unsigned) argp) {
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argp = (char *) ALIGN(argp, (*p_arg)->alignment);
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}
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if (avn != 0)
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{
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avn--;
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z = (*p_arg)->size;
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/* because we're little endian, this is
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what it turns into. */
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*p_argv = (void*) argp;
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p_argv++;
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argp += z;
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}
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}
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return;
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}
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/* How to make a trampoline. Derived from gcc/config/i386/i386.c. */
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#define FFI_INIT_TRAMPOLINE(TRAMP,FUN,CTX) \
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({ unsigned char *__tramp = (unsigned char*)(TRAMP); \
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unsigned int __fun = (unsigned int)(FUN); \
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unsigned int __ctx = (unsigned int)(CTX); \
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unsigned int __dis = __fun - ((unsigned int) __tramp + 10); \
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*(unsigned char*) &__tramp[0] = 0xb9; \
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*(unsigned int*) &__tramp[1] = __ctx; \
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*(unsigned char*) &__tramp[5] = 0xe9; \
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*(unsigned int*) &__tramp[6] = __dis; \
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})
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/* the cif must already be prep'ed */
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ffi_status
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ffi_prep_closure (ffi_closure* closure,
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ffi_cif* cif,
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void (*fun)(ffi_cif*,void*,void**,void*),
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void *user_data)
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{
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FFI_ASSERT (cif->abi == FFI_SYSV);
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FFI_INIT_TRAMPOLINE (&closure->tramp[0], \
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&ffi_closure_SYSV, \
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(void*)closure);
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closure->cif = cif;
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closure->user_data = user_data;
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closure->fun = fun;
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return FFI_OK;
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}
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/* ------- Native raw API support -------------------------------- */
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#if !FFI_NO_RAW_API
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static void
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ffi_closure_raw_SYSV ()
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{
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// this is our return value storage
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long double res;
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// our various things...
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void *args;
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ffi_raw *raw_args;
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ffi_cif *cif;
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ffi_raw_closure *closure;
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unsigned short rtype;
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void *resp = (void*)&res;
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/* grab the trampoline context pointer */
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asm ("movl %%ecx,%0" : "=r" (closure));
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/* take the argument pointer */
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asm ("leal 8(%%ebp),%0" : "=q" (args));
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/* get the cif */
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cif = closure->cif;
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/* the SYSV/X86 abi matches the RAW API exactly, well.. almost */
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raw_args = (ffi_raw*) args;
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(closure->fun) (cif, resp, raw_args, closure->user_data);
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rtype = cif->flags;
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/* now, do a generic return based on the value of rtype */
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if (rtype == FFI_TYPE_INT)
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{
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asm ("movl (%0),%%eax" : : "r" (resp) : "eax");
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||||
}
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else if (rtype == FFI_TYPE_FLOAT)
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||||
{
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||||
asm ("flds (%0)" : : "r" (resp) : "st" );
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||||
}
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||||
else if (rtype == FFI_TYPE_DOUBLE)
|
||||
{
|
||||
asm ("fldl (%0)" : : "r" (resp) : "st", "st(1)" );
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||||
}
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||||
else if (rtype == FFI_TYPE_LONGDOUBLE)
|
||||
{
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||||
asm ("fldt (%0)" : : "r" (resp) : "st", "st(1)" );
|
||||
}
|
||||
else if (rtype == FFI_TYPE_SINT64)
|
||||
{
|
||||
asm ("movl 0(%0),%%eax; movl 4(%0),%%edx"
|
||||
: : "r"(resp)
|
||||
: "eax", "edx");
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
|
||||
|
||||
ffi_status
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||||
ffi_prep_raw_closure (ffi_raw_closure* closure,
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||||
ffi_cif* cif,
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||||
void (*fun)(ffi_cif*,void*,ffi_raw*,void*),
|
||||
void *user_data)
|
||||
{
|
||||
int i;
|
||||
|
||||
FFI_ASSERT (cif->abi == FFI_SYSV);
|
||||
|
||||
// we currently don't support certain kinds of arguments for raw
|
||||
// closures. This should be implemented by a seperate assembly language
|
||||
// routine, since it would require argument processing, something we
|
||||
// don't do now for performance.
|
||||
|
||||
for (i = cif->nargs-1; i >= 0; i--)
|
||||
{
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||||
FFI_ASSERT (cif->arg_types[i]->type != FFI_TYPE_STRUCT);
|
||||
FFI_ASSERT (cif->arg_types[i]->type != FFI_TYPE_LONGDOUBLE);
|
||||
}
|
||||
|
||||
|
||||
FFI_INIT_TRAMPOLINE (&closure->tramp[0], &ffi_closure_raw_SYSV,
|
||||
(void*)closure);
|
||||
|
||||
closure->cif = cif;
|
||||
closure->user_data = user_data;
|
||||
closure->fun = fun;
|
||||
|
||||
return FFI_OK;
|
||||
}
|
||||
|
||||
static void
|
||||
ffi_prep_args_raw(char *stack, extended_cif *ecif)
|
||||
{
|
||||
memcpy (stack, ecif->avalue, ecif->cif->bytes);
|
||||
}
|
||||
|
||||
/* we borrow this routine from libffi (it must be changed, though, to
|
||||
* actually call the function passed in the first argument. as of
|
||||
* libffi-1.20, this is not the case.)
|
||||
*/
|
||||
|
||||
extern void
|
||||
ffi_call_SYSV(void (*)(char *, extended_cif *),
|
||||
/*@out@*/ extended_cif *,
|
||||
unsigned, unsigned,
|
||||
/*@out@*/ unsigned *,
|
||||
void (*fn)());
|
||||
|
||||
void
|
||||
ffi_raw_call(/*@dependent@*/ ffi_cif *cif,
|
||||
void (*fn)(),
|
||||
/*@out@*/ void *rvalue,
|
||||
/*@dependent@*/ ffi_raw *fake_avalue)
|
||||
{
|
||||
extended_cif ecif;
|
||||
void **avalue = (void **)fake_avalue;
|
||||
|
||||
ecif.cif = cif;
|
||||
ecif.avalue = avalue;
|
||||
|
||||
/* If the return value is a struct and we don't have a return */
|
||||
/* value address then we need to make one */
|
||||
|
||||
if ((rvalue == NULL) &&
|
||||
(cif->rtype->type == FFI_TYPE_STRUCT))
|
||||
{
|
||||
/*@-sysunrecog@*/
|
||||
ecif.rvalue = alloca(cif->rtype->size);
|
||||
/*@=sysunrecog@*/
|
||||
}
|
||||
else
|
||||
ecif.rvalue = rvalue;
|
||||
|
||||
|
||||
switch (cif->abi)
|
||||
{
|
||||
case FFI_SYSV:
|
||||
/*@-usedef@*/
|
||||
ffi_call_SYSV(ffi_prep_args_raw, &ecif, cif->bytes,
|
||||
cif->flags, ecif.rvalue, fn);
|
||||
/*@=usedef@*/
|
||||
break;
|
||||
default:
|
||||
FFI_ASSERT(0);
|
||||
break;
|
||||
}
|
||||
}
|
||||
|
||||
#endif
|
||||
167
libffi/x86/sysv.S
Normal file
167
libffi/x86/sysv.S
Normal file
@@ -0,0 +1,167 @@
|
||||
/* -----------------------------------------------------------------------
|
||||
sysv.S - Copyright (c) 1996, 1998 Cygnus Solutions
|
||||
|
||||
X86 Foreign Function Interface
|
||||
|
||||
Permission is hereby granted, free of charge, to any person obtaining
|
||||
a copy of this software and associated documentation files (the
|
||||
``Software''), to deal in the Software without restriction, including
|
||||
without limitation the rights to use, copy, modify, merge, publish,
|
||||
distribute, sublicense, and/or sell copies of the Software, and to
|
||||
permit persons to whom the Software is furnished to do so, subject to
|
||||
the following conditions:
|
||||
|
||||
The above copyright notice and this permission notice shall be included
|
||||
in all copies or substantial portions of the Software.
|
||||
|
||||
THE SOFTWARE IS PROVIDED ``AS IS'', WITHOUT WARRANTY OF ANY KIND, EXPRESS
|
||||
OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
|
||||
MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
|
||||
IN NO EVENT SHALL CYGNUS SOLUTIONS BE LIABLE FOR ANY CLAIM, DAMAGES OR
|
||||
OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
|
||||
ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
|
||||
OTHER DEALINGS IN THE SOFTWARE.
|
||||
----------------------------------------------------------------------- */
|
||||
|
||||
#define LIBFFI_ASM
|
||||
#include <ffi.h>
|
||||
#include <ffi_private.h>
|
||||
|
||||
.text
|
||||
|
||||
.globl ffi_prep_args
|
||||
|
||||
# This assumes we are using gas.
|
||||
.balign 16
|
||||
.globl ffi_call_SYSV
|
||||
.type ffi_call_SYSV,@function
|
||||
|
||||
ffi_call_SYSV:
|
||||
.LFB1:
|
||||
pushl %ebp
|
||||
.LCFI0:
|
||||
movl %esp,%ebp
|
||||
.LCFI1:
|
||||
# Make room for all of the new args.
|
||||
movl 16(%ebp),%ecx
|
||||
subl %ecx,%esp
|
||||
|
||||
movl %esp,%eax
|
||||
|
||||
# Place all of the ffi_prep_args in position
|
||||
pushl 12(%ebp)
|
||||
pushl %eax
|
||||
call *8(%ebp)
|
||||
|
||||
# Return stack to previous state and call the function
|
||||
addl $8,%esp
|
||||
|
||||
call *28(%ebp)
|
||||
|
||||
# Remove the space we pushed for the args
|
||||
movl 16(%ebp),%ecx
|
||||
addl %ecx,%esp
|
||||
|
||||
# Load %ecx with the return type code
|
||||
movl 20(%ebp),%ecx
|
||||
|
||||
# If the return value pointer is NULL, assume no return value.
|
||||
cmpl $0,24(%ebp)
|
||||
jne retint
|
||||
|
||||
# Even if there is no space for the return value, we are
|
||||
# obliged to handle floating-point values.
|
||||
cmpl $FFI_TYPE_FLOAT,%ecx
|
||||
jne noretval
|
||||
fstp %st(0)
|
||||
|
||||
jmp epilogue
|
||||
|
||||
retint:
|
||||
cmpl $FFI_TYPE_INT,%ecx
|
||||
jne retfloat
|
||||
# Load %ecx with the pointer to storage for the return value
|
||||
movl 24(%ebp),%ecx
|
||||
movl %eax,0(%ecx)
|
||||
jmp epilogue
|
||||
|
||||
retfloat:
|
||||
cmpl $FFI_TYPE_FLOAT,%ecx
|
||||
jne retdouble
|
||||
# Load %ecx with the pointer to storage for the return value
|
||||
movl 24(%ebp),%ecx
|
||||
fstps (%ecx)
|
||||
jmp epilogue
|
||||
|
||||
retdouble:
|
||||
cmpl $FFI_TYPE_DOUBLE,%ecx
|
||||
jne retlongdouble
|
||||
# Load %ecx with the pointer to storage for the return value
|
||||
movl 24(%ebp),%ecx
|
||||
fstpl (%ecx)
|
||||
jmp epilogue
|
||||
|
||||
retlongdouble:
|
||||
cmpl $FFI_TYPE_LONGDOUBLE,%ecx
|
||||
jne retint64
|
||||
# Load %ecx with the pointer to storage for the return value
|
||||
movl 24(%ebp),%ecx
|
||||
fstpt (%ecx)
|
||||
jmp epilogue
|
||||
|
||||
retint64:
|
||||
cmpl $FFI_TYPE_SINT64,%ecx
|
||||
jne retstruct
|
||||
# Load %ecx with the pointer to storage for the return value
|
||||
movl 24(%ebp),%ecx
|
||||
movl %eax,0(%ecx)
|
||||
movl %edx,4(%ecx)
|
||||
|
||||
retstruct:
|
||||
# Nothing to do!
|
||||
|
||||
noretval:
|
||||
epilogue:
|
||||
movl %ebp,%esp
|
||||
popl %ebp
|
||||
ret
|
||||
.LFE1:
|
||||
.ffi_call_SYSV_end:
|
||||
.size ffi_call_SYSV,.ffi_call_SYSV_end-ffi_call_SYSV
|
||||
|
||||
.section .eh_frame,"aw",@progbits
|
||||
__FRAME_BEGIN__:
|
||||
.4byte .LLCIE1
|
||||
.LSCIE1:
|
||||
.4byte 0x0
|
||||
.byte 0x1
|
||||
.byte 0x0
|
||||
.byte 0x1
|
||||
.byte 0x7c
|
||||
.byte 0x8
|
||||
.byte 0xc
|
||||
.byte 0x4
|
||||
.byte 0x4
|
||||
.byte 0x88
|
||||
.byte 0x1
|
||||
.align 4
|
||||
.LECIE1:
|
||||
.set .LLCIE1,.LECIE1-.LSCIE1
|
||||
.4byte .LLFDE1
|
||||
.LSFDE1:
|
||||
.4byte .LSFDE1-__FRAME_BEGIN__
|
||||
.4byte .LFB1
|
||||
.4byte .LFE1-.LFB1
|
||||
.byte 0x4
|
||||
.4byte .LCFI0-.LFB1
|
||||
.byte 0xe
|
||||
.byte 0x8
|
||||
.byte 0x85
|
||||
.byte 0x2
|
||||
.byte 0x4
|
||||
.4byte .LCFI1-.LCFI0
|
||||
.byte 0xd
|
||||
.byte 0x5
|
||||
.align 4
|
||||
.LEFDE1:
|
||||
.set .LLFDE1,.LEFDE1-.LSFDE1
|
||||
125
libffi/x86/win32.S
Normal file
125
libffi/x86/win32.S
Normal file
@@ -0,0 +1,125 @@
|
||||
/* -----------------------------------------------------------------------
|
||||
win32.S - Copyright (c) 1996, 1998, 2001 Cygnus Solutions
|
||||
|
||||
X86 Foreign Function Interface
|
||||
|
||||
Permission is hereby granted, free of charge, to any person obtaining
|
||||
a copy of this software and associated documentation files (the
|
||||
``Software''), to deal in the Software without restriction, including
|
||||
without limitation the rights to use, copy, modify, merge, publish,
|
||||
distribute, sublicense, and/or sell copies of the Software, and to
|
||||
permit persons to whom the Software is furnished to do so, subject to
|
||||
the following conditions:
|
||||
|
||||
The above copyright notice and this permission notice shall be included
|
||||
in all copies or substantial portions of the Software.
|
||||
|
||||
THE SOFTWARE IS PROVIDED ``AS IS'', WITHOUT WARRANTY OF ANY KIND, EXPRESS
|
||||
OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
|
||||
MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
|
||||
IN NO EVENT SHALL CYGNUS SOLUTIONS BE LIABLE FOR ANY CLAIM, DAMAGES OR
|
||||
OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
|
||||
ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
|
||||
OTHER DEALINGS IN THE SOFTWARE.
|
||||
----------------------------------------------------------------------- */
|
||||
|
||||
#define LIBFFI_ASM
|
||||
#include <ffi.h>
|
||||
|
||||
.text
|
||||
|
||||
.globl ffi_prep_args
|
||||
|
||||
# This assumes we are using gas.
|
||||
.balign 16
|
||||
.globl _ffi_call_SYSV
|
||||
|
||||
_ffi_call_SYSV:
|
||||
pushl %ebp
|
||||
movl %esp,%ebp
|
||||
|
||||
# Make room for all of the new args.
|
||||
movl 16(%ebp),%ecx
|
||||
subl %ecx,%esp
|
||||
|
||||
movl %esp,%eax
|
||||
|
||||
# Place all of the ffi_prep_args in position
|
||||
pushl 12(%ebp)
|
||||
pushl %eax
|
||||
call *8(%ebp)
|
||||
|
||||
# Return stack to previous state and call the function
|
||||
addl $8,%esp
|
||||
|
||||
call *28(%ebp)
|
||||
|
||||
# Remove the space we pushed for the args
|
||||
movl 16(%ebp),%ecx
|
||||
addl %ecx,%esp
|
||||
|
||||
# Load %ecx with the return type code
|
||||
movl 20(%ebp),%ecx
|
||||
|
||||
# If the return value pointer is NULL, assume no return value.
|
||||
cmpl $0,24(%ebp)
|
||||
jne retint
|
||||
|
||||
# Even if there is no space for the return value, we are
|
||||
# obliged to handle floating-point values.
|
||||
cmpl $FFI_TYPE_FLOAT,%ecx
|
||||
jne noretval
|
||||
fstp %st(0)
|
||||
|
||||
jmp epilogue
|
||||
|
||||
retint:
|
||||
cmpl $FFI_TYPE_INT,%ecx
|
||||
jne retfloat
|
||||
# Load %ecx with the pointer to storage for the return value
|
||||
movl 24(%ebp),%ecx
|
||||
movl %eax,0(%ecx)
|
||||
jmp epilogue
|
||||
|
||||
retfloat:
|
||||
cmpl $FFI_TYPE_FLOAT,%ecx
|
||||
jne retdouble
|
||||
# Load %ecx with the pointer to storage for the return value
|
||||
movl 24(%ebp),%ecx
|
||||
fstps (%ecx)
|
||||
jmp epilogue
|
||||
|
||||
retdouble:
|
||||
cmpl $FFI_TYPE_DOUBLE,%ecx
|
||||
jne retlongdouble
|
||||
# Load %ecx with the pointer to storage for the return value
|
||||
movl 24(%ebp),%ecx
|
||||
fstpl (%ecx)
|
||||
jmp epilogue
|
||||
|
||||
retlongdouble:
|
||||
cmpl $FFI_TYPE_LONGDOUBLE,%ecx
|
||||
jne retint64
|
||||
# Load %ecx with the pointer to storage for the return value
|
||||
movl 24(%ebp),%ecx
|
||||
fstpt (%ecx)
|
||||
jmp epilogue
|
||||
|
||||
retint64:
|
||||
cmpl $FFI_TYPE_SINT64,%ecx
|
||||
jne retstruct
|
||||
# Load %ecx with the pointer to storage for the return value
|
||||
movl 24(%ebp),%ecx
|
||||
movl %eax,0(%ecx)
|
||||
movl %edx,4(%ecx)
|
||||
|
||||
retstruct:
|
||||
# Nothing to do!
|
||||
|
||||
noretval:
|
||||
epilogue:
|
||||
movl %ebp,%esp
|
||||
popl %ebp
|
||||
ret
|
||||
|
||||
.ffi_call_SYSV_end:
|
||||
Reference in New Issue
Block a user