Merge pull request #132 from nielsAD/master
Pascal and Register calling convention support on x86
This commit is contained in:
514
src/x86/ffi.c
514
src/x86/ffi.c
@@ -43,19 +43,21 @@
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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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void ffi_prep_args(char *stack, extended_cif *ecif);
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void ffi_prep_args(char *stack, extended_cif *ecif)
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unsigned int ffi_prep_args(char *stack, extended_cif *ecif);
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unsigned int ffi_prep_args(char *stack, extended_cif *ecif)
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{
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register unsigned int i;
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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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#ifndef X86_WIN64
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size_t p_stack_args[2];
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void *p_stack_data[2];
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const int cabi = ecif->cif->abi;
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const int dir = (cabi == FFI_PASCAL || cabi == FFI_REGISTER) ? -1 : +1;
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unsigned int stack_args_count = 0;
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void *p_stack_data[3];
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char *argp2 = stack;
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int stack_args_count = 0;
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int cabi = ecif->cif->abi;
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#else
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#define dir 1
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#endif
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argp = stack;
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@@ -63,48 +65,56 @@ void ffi_prep_args(char *stack, extended_cif *ecif)
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if ((ecif->cif->flags == FFI_TYPE_STRUCT
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|| ecif->cif->flags == FFI_TYPE_MS_STRUCT)
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#ifdef X86_WIN64
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&& (ecif->cif->rtype->size != 1 && ecif->cif->rtype->size != 2
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&& ecif->cif->rtype->size != 4 && ecif->cif->rtype->size != 8)
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&& ((ecif->cif->rtype->size & (1 | 2 | 4 | 8)) == 0)
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#endif
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)
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{
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*(void **) argp = ecif->rvalue;
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#ifndef X86_WIN64
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/* For fastcall/thiscall this is first register-passed
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/* For fastcall/thiscall/register this is first register-passed
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argument. */
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if (cabi == FFI_THISCALL || cabi == FFI_FASTCALL)
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{
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p_stack_args[stack_args_count] = sizeof (void*);
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p_stack_data[stack_args_count] = argp;
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++stack_args_count;
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}
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if (cabi == FFI_THISCALL || cabi == FFI_FASTCALL || cabi == FFI_REGISTER)
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{
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p_stack_data[stack_args_count] = argp;
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++stack_args_count;
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}
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#endif
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*(void **) argp = ecif->rvalue;
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argp += sizeof(void*);
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}
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p_arg = ecif->cif->arg_types;
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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;
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i--, p_arg++)
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if (dir < 0)
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{
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size_t z;
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const int nargs = ecif->cif->nargs - 1;
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if (nargs > 0)
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{
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p_arg += nargs;
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p_argv += nargs;
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}
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}
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for (i = ecif->cif->nargs;
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i != 0;
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i--, p_arg += dir, p_argv += dir)
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{
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/* Align if necessary */
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if ((sizeof(void*) - 1) & (size_t) argp)
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argp = (char *) ALIGN(argp, sizeof(void*));
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z = (*p_arg)->size;
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size_t z = (*p_arg)->size;
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#ifdef X86_WIN64
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if (z > sizeof(ffi_arg)
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if (z > FFI_SIZEOF_ARG
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|| ((*p_arg)->type == FFI_TYPE_STRUCT
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&& (z != 1 && z != 2 && z != 4 && z != 8))
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&& (z & (1 | 2 | 4 | 8)) == 0)
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#if FFI_TYPE_DOUBLE != FFI_TYPE_LONGDOUBLE
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|| ((*p_arg)->type == FFI_TYPE_LONGDOUBLE)
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#endif
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)
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{
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z = sizeof(ffi_arg);
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z = FFI_SIZEOF_ARG;
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*(void **)argp = *p_argv;
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}
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else if ((*p_arg)->type == FFI_TYPE_FLOAT)
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@@ -113,9 +123,9 @@ void ffi_prep_args(char *stack, extended_cif *ecif)
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}
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else
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#endif
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if (z < sizeof(ffi_arg))
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if (z < FFI_SIZEOF_ARG)
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{
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z = sizeof(ffi_arg);
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z = FFI_SIZEOF_ARG;
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switch ((*p_arg)->type)
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{
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case FFI_TYPE_SINT8:
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@@ -156,23 +166,30 @@ void ffi_prep_args(char *stack, extended_cif *ecif)
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}
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#ifndef X86_WIN64
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/* For thiscall/fastcall convention register-passed arguments
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/* For thiscall/fastcall/register convention register-passed arguments
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are the first two none-floating-point arguments with a size
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smaller or equal to sizeof (void*). */
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if ((cabi == FFI_THISCALL && stack_args_count < 1)
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|| (cabi == FFI_FASTCALL && stack_args_count < 2))
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if ((z == FFI_SIZEOF_ARG)
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&& ((cabi == FFI_REGISTER)
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|| (cabi == FFI_THISCALL && stack_args_count < 1)
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|| (cabi == FFI_FASTCALL && stack_args_count < 2))
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&& ((*p_arg)->type != FFI_TYPE_FLOAT && (*p_arg)->type != FFI_TYPE_STRUCT)
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)
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{
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if (z <= 4
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&& ((*p_arg)->type != FFI_TYPE_FLOAT
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&& (*p_arg)->type != FFI_TYPE_STRUCT))
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{
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p_stack_args[stack_args_count] = z;
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p_stack_data[stack_args_count] = argp;
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++stack_args_count;
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}
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if (dir < 0 && stack_args_count > 2)
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{
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/* Iterating arguments backwards, so first register-passed argument
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will be passed last. Shift temporary values to make place. */
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p_stack_data[0] = p_stack_data[1];
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p_stack_data[1] = p_stack_data[2];
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stack_args_count = 2;
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}
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p_stack_data[stack_args_count] = argp;
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++stack_args_count;
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}
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#endif
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p_argv++;
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#ifdef X86_WIN64
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argp += (z + sizeof(void*) - 1) & ~(sizeof(void*) - 1);
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#else
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@@ -181,44 +198,35 @@ void ffi_prep_args(char *stack, extended_cif *ecif)
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}
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#ifndef X86_WIN64
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/* We need to move the register-passed arguments for thiscall/fastcall
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on top of stack, so that those can be moved to registers ecx/edx by
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call-handler. */
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/* We need to move the register-passed arguments for thiscall/fastcall/register
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on top of stack, so that those can be moved to registers by call-handler. */
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if (stack_args_count > 0)
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{
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size_t zz = (p_stack_args[0] + 3) & ~3;
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char *h;
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if (dir < 0 && stack_args_count > 1)
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{
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/* Reverse order if iterating arguments backwards */
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ffi_arg tmp = *(ffi_arg*) p_stack_data[0];
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*(ffi_arg*) p_stack_data[0] = *(ffi_arg*) p_stack_data[stack_args_count - 1];
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*(ffi_arg*) p_stack_data[stack_args_count - 1] = tmp;
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}
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int i;
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for (i = 0; i < stack_args_count; i++)
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{
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if (p_stack_data[i] != argp2)
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{
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ffi_arg tmp = *(ffi_arg*) p_stack_data[i];
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memmove (argp2 + FFI_SIZEOF_ARG, argp2, (size_t) ((char*) p_stack_data[i] - (char*)argp2));
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*(ffi_arg *) argp2 = tmp;
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}
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/* Move first argument to top-stack position. */
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if (p_stack_data[0] != argp2)
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{
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h = alloca (zz + 1);
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memcpy (h, p_stack_data[0], zz);
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memmove (argp2 + zz, argp2,
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(size_t) ((char *) p_stack_data[0] - (char*)argp2));
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memcpy (argp2, h, zz);
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}
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argp2 += zz;
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--stack_args_count;
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if (zz > 4)
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stack_args_count = 0;
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/* If we have a second argument, then move it on top
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after the first one. */
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if (stack_args_count > 0 && p_stack_data[1] != argp2)
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{
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zz = p_stack_args[1];
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zz = (zz + 3) & ~3;
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h = alloca (zz + 1);
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h = alloca (zz + 1);
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memcpy (h, p_stack_data[1], zz);
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memmove (argp2 + zz, argp2, (size_t) ((char*) p_stack_data[1] - (char*)argp2));
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memcpy (argp2, h, zz);
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}
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argp2 += FFI_SIZEOF_ARG;
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}
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}
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return stack_args_count;
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#endif
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return;
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return 0;
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}
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/* Perform machine dependent cif processing */
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@@ -314,12 +322,12 @@ ffi_status ffi_prep_cif_machdep(ffi_cif *cif)
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#ifdef X86_WIN64
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/* ensure space for storing four registers */
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cif->bytes += 4 * sizeof(ffi_arg);
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cif->bytes += 4 * FFI_SIZEOF_ARG;
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#endif
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#ifndef X86_WIN32
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#ifndef X86_WIN64
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if (cif->abi != FFI_STDCALL && cif->abi != FFI_THISCALL && cif->abi != FFI_FASTCALL)
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if (cif->abi == FFI_SYSV || cif->abi == FFI_UNIX64)
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#endif
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cif->bytes = (cif->bytes + 15) & ~0xF;
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#endif
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@@ -329,11 +337,11 @@ ffi_status ffi_prep_cif_machdep(ffi_cif *cif)
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#ifdef X86_WIN64
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extern int
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ffi_call_win64(void (*)(char *, extended_cif *), extended_cif *,
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ffi_call_win64(unsigned int (*)(char *, extended_cif *), extended_cif *,
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unsigned, unsigned, unsigned *, void (*fn)(void));
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#else
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extern void
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ffi_call_win32(void (*)(char *, extended_cif *), extended_cif *,
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ffi_call_win32(unsigned int (*)(char *, extended_cif *), extended_cif *,
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unsigned, unsigned, unsigned, unsigned *, void (*fn)(void));
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extern void ffi_call_SYSV(void (*)(char *, extended_cif *), extended_cif *,
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unsigned, unsigned, unsigned *, void (*fn)(void));
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@@ -352,8 +360,7 @@ void ffi_call(ffi_cif *cif, void (*fn)(void), void *rvalue, void **avalue)
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#ifdef X86_WIN64
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if (rvalue == NULL
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&& cif->flags == FFI_TYPE_STRUCT
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&& cif->rtype->size != 1 && cif->rtype->size != 2
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&& cif->rtype->size != 4 && cif->rtype->size != 8)
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&& ((cif->rtype->size & (1 | 2 | 4 | 8)) == 0))
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{
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ecif.rvalue = alloca((cif->rtype->size + 0xF) & ~0xF);
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}
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@@ -387,37 +394,12 @@ void ffi_call(ffi_cif *cif, void (*fn)(void), void *rvalue, void **avalue)
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case FFI_MS_CDECL:
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#endif
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case FFI_STDCALL:
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ffi_call_win32(ffi_prep_args, &ecif, cif->abi, cif->bytes, cif->flags,
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ecif.rvalue, fn);
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break;
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case FFI_THISCALL:
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case FFI_FASTCALL:
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{
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unsigned int abi = cif->abi;
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unsigned int i, passed_regs = 0;
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if (cif->flags == FFI_TYPE_STRUCT)
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++passed_regs;
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for (i=0; i < cif->nargs && passed_regs < 2;i++)
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{
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size_t sz;
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if (cif->arg_types[i]->type == FFI_TYPE_FLOAT
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|| cif->arg_types[i]->type == FFI_TYPE_STRUCT)
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continue;
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sz = (cif->arg_types[i]->size + 3) & ~3;
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if (sz == 0 || sz > 4)
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continue;
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++passed_regs;
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}
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if (passed_regs < 2 && abi == FFI_FASTCALL)
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abi = FFI_THISCALL;
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if (passed_regs < 1 && abi == FFI_THISCALL)
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abi = FFI_STDCALL;
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ffi_call_win32(ffi_prep_args, &ecif, abi, cif->bytes, cif->flags,
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ecif.rvalue, fn);
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}
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case FFI_PASCAL:
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case FFI_REGISTER:
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ffi_call_win32(ffi_prep_args, &ecif, cif->abi, cif->bytes, cif->flags,
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ecif.rvalue, fn);
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break;
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#endif
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default:
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@@ -431,12 +413,14 @@ void ffi_call(ffi_cif *cif, void (*fn)(void), void *rvalue, void **avalue)
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/* The following __attribute__((regparm(1))) decorations will have no effect
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on MSVC or SUNPRO_C -- standard conventions apply. */
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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 unsigned int ffi_prep_incoming_args (char *stack, void **ret,
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void** args, ffi_cif* cif);
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void FFI_HIDDEN ffi_closure_SYSV (ffi_closure *)
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__attribute__ ((regparm(1)));
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unsigned int FFI_HIDDEN ffi_closure_SYSV_inner (ffi_closure *, void **, void *)
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__attribute__ ((regparm(1)));
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unsigned int FFI_HIDDEN ffi_closure_WIN32_inner (ffi_closure *, void **, void *)
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__attribute__ ((regparm(1)));
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void FFI_HIDDEN ffi_closure_raw_SYSV (ffi_raw_closure *)
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__attribute__ ((regparm(1)));
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#ifdef X86_WIN32
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@@ -444,12 +428,10 @@ void FFI_HIDDEN ffi_closure_raw_THISCALL (ffi_raw_closure *)
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__attribute__ ((regparm(1)));
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#endif
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#ifndef X86_WIN64
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void FFI_HIDDEN ffi_closure_STDCALL (ffi_closure *)
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__attribute__ ((regparm(1)));
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void FFI_HIDDEN ffi_closure_THISCALL (ffi_closure *)
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__attribute__ ((regparm(1)));
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void FFI_HIDDEN ffi_closure_FASTCALL (ffi_closure *)
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__attribute__ ((regparm(1)));
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void FFI_HIDDEN ffi_closure_STDCALL (ffi_closure *);
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void FFI_HIDDEN ffi_closure_THISCALL (ffi_closure *);
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void FFI_HIDDEN ffi_closure_FASTCALL (ffi_closure *);
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void FFI_HIDDEN ffi_closure_REGISTER (ffi_closure *);
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#else
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void FFI_HIDDEN ffi_closure_win64 (ffi_closure *);
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#endif
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@@ -473,7 +455,7 @@ ffi_closure_win64_inner (ffi_closure *closure, void *args) {
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* a structure, it will change RESP to point to the
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* structure return address. */
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ffi_prep_incoming_args_SYSV(args, &resp, arg_area, cif);
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ffi_prep_incoming_args(args, &resp, arg_area, cif);
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(closure->fun) (cif, resp, arg_area, closure->user_data);
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@@ -502,80 +484,165 @@ ffi_closure_SYSV_inner (ffi_closure *closure, void **respp, void *args)
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* a structure, it will change RESP to point to the
|
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* structure return address. */
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ffi_prep_incoming_args_SYSV(args, respp, arg_area, cif);
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ffi_prep_incoming_args(args, respp, arg_area, cif);
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(closure->fun) (cif, *respp, arg_area, closure->user_data);
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return cif->flags;
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}
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unsigned int FFI_HIDDEN __attribute__ ((regparm(1)))
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ffi_closure_WIN32_inner (ffi_closure *closure, void **respp, void *args)
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{
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/* our various things... */
|
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ffi_cif *cif;
|
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void **arg_area;
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unsigned int ret;
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cif = closure->cif;
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arg_area = (void**) alloca (cif->nargs * sizeof (void*));
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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 change RESP to point to the
|
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* structure return address. */
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ret = ffi_prep_incoming_args(args, respp, arg_area, cif);
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(closure->fun) (cif, *respp, arg_area, closure->user_data);
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return ret;
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}
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#endif /* !X86_WIN64 */
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static void
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ffi_prep_incoming_args_SYSV(char *stack, void **rvalue, void **avalue,
|
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ffi_cif *cif)
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static unsigned int
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ffi_prep_incoming_args(char *stack, void **rvalue, void **avalue,
|
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ffi_cif *cif)
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{
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register unsigned int i;
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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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argp = stack;
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#ifdef X86_WIN64
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if (cif->rtype->size > sizeof(ffi_arg)
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|| (cif->flags == FFI_TYPE_STRUCT
|
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&& (cif->rtype->size != 1 && cif->rtype->size != 2
|
||||
&& cif->rtype->size != 4 && cif->rtype->size != 8))) {
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*rvalue = *(void **) argp;
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argp += sizeof(void *);
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}
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#ifndef X86_WIN64
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const int cabi = cif->abi;
|
||||
const int dir = (cabi == FFI_PASCAL || cabi == FFI_REGISTER) ? -1 : +1;
|
||||
const unsigned int max_stack_count = (cabi == FFI_THISCALL) ? 1
|
||||
: (cabi == FFI_FASTCALL) ? 2
|
||||
: (cabi == FFI_REGISTER) ? 3
|
||||
: 0;
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||||
unsigned int passed_regs = 0;
|
||||
void *p_stack_data[3] = { stack - 1 };
|
||||
#else
|
||||
if ( cif->flags == FFI_TYPE_STRUCT
|
||||
|| cif->flags == FFI_TYPE_MS_STRUCT ) {
|
||||
*rvalue = *(void **) argp;
|
||||
argp += sizeof(void *);
|
||||
}
|
||||
#define dir 1
|
||||
#endif
|
||||
|
||||
p_argv = avalue;
|
||||
|
||||
for (i = cif->nargs, p_arg = cif->arg_types; (i != 0); i--, p_arg++)
|
||||
{
|
||||
size_t z;
|
||||
|
||||
/* Align if necessary */
|
||||
if ((sizeof(void*) - 1) & (size_t) argp) {
|
||||
argp = (char *) ALIGN(argp, sizeof(void*));
|
||||
}
|
||||
argp = stack;
|
||||
#ifndef X86_WIN64
|
||||
argp += max_stack_count * FFI_SIZEOF_ARG;
|
||||
#endif
|
||||
|
||||
if ((cif->flags == FFI_TYPE_STRUCT
|
||||
|| cif->flags == FFI_TYPE_MS_STRUCT)
|
||||
#ifdef X86_WIN64
|
||||
if ((*p_arg)->size > sizeof(ffi_arg)
|
||||
|| ((*p_arg)->type == FFI_TYPE_STRUCT
|
||||
&& ((*p_arg)->size != 1 && (*p_arg)->size != 2
|
||||
&& (*p_arg)->size != 4 && (*p_arg)->size != 8)))
|
||||
&& ((cif->rtype->size & (1 | 2 | 4 | 8)) == 0)
|
||||
#endif
|
||||
)
|
||||
{
|
||||
#ifndef X86_WIN64
|
||||
if (passed_regs < max_stack_count)
|
||||
{
|
||||
z = sizeof(void *);
|
||||
*p_argv = *(void **)argp;
|
||||
*rvalue = *(void**) (stack + (passed_regs*FFI_SIZEOF_ARG));
|
||||
++passed_regs;
|
||||
}
|
||||
else
|
||||
#endif
|
||||
{
|
||||
*rvalue = *(void **) argp;
|
||||
argp += sizeof(void *);
|
||||
}
|
||||
}
|
||||
|
||||
#ifndef X86_WIN64
|
||||
/* Do register arguments first */
|
||||
for (i = 0, p_arg = cif->arg_types;
|
||||
i < cif->nargs && passed_regs < max_stack_count;
|
||||
i++, p_arg++)
|
||||
{
|
||||
if ((*p_arg)->type == FFI_TYPE_FLOAT
|
||||
|| (*p_arg)->type == FFI_TYPE_STRUCT)
|
||||
continue;
|
||||
|
||||
size_t sz = (*p_arg)->size;
|
||||
if(sz == 0 || sz > FFI_SIZEOF_ARG)
|
||||
continue;
|
||||
|
||||
p_stack_data[passed_regs] = avalue + i;
|
||||
avalue[i] = stack + (passed_regs*FFI_SIZEOF_ARG);
|
||||
++passed_regs;
|
||||
}
|
||||
#endif
|
||||
|
||||
p_arg = cif->arg_types;
|
||||
p_argv = avalue;
|
||||
if (dir < 0)
|
||||
{
|
||||
const int nargs = cif->nargs - 1;
|
||||
if (nargs > 0)
|
||||
{
|
||||
p_arg += nargs;
|
||||
p_argv += nargs;
|
||||
}
|
||||
}
|
||||
|
||||
for (i = cif->nargs;
|
||||
i != 0;
|
||||
i--, p_arg += dir, p_argv += dir)
|
||||
{
|
||||
/* Align if necessary */
|
||||
if ((sizeof(void*) - 1) & (size_t) argp)
|
||||
argp = (char *) ALIGN(argp, sizeof(void*));
|
||||
|
||||
size_t z = (*p_arg)->size;
|
||||
|
||||
#ifdef X86_WIN64
|
||||
if (z > FFI_SIZEOF_ARG
|
||||
|| ((*p_arg)->type == FFI_TYPE_STRUCT
|
||||
&& (z & (1 | 2 | 4 | 8)) == 0)
|
||||
#if FFI_TYPE_DOUBLE != FFI_TYPE_LONGDOUBLE
|
||||
|| ((*p_arg)->type == FFI_TYPE_LONGDOUBLE)
|
||||
#endif
|
||||
)
|
||||
{
|
||||
z = FFI_SIZEOF_ARG;
|
||||
*p_argv = *(void **)argp;
|
||||
}
|
||||
else
|
||||
#else
|
||||
if (passed_regs > 0
|
||||
&& z <= FFI_SIZEOF_ARG
|
||||
&& (p_argv == p_stack_data[0]
|
||||
|| p_argv == p_stack_data[1]
|
||||
|| p_argv == p_stack_data[2]))
|
||||
{
|
||||
/* Already assigned a register value */
|
||||
continue;
|
||||
}
|
||||
else
|
||||
#endif
|
||||
{
|
||||
z = (*p_arg)->size;
|
||||
|
||||
/* because we're little endian, this is what it turns into. */
|
||||
|
||||
*p_argv = (void*) argp;
|
||||
}
|
||||
|
||||
p_argv++;
|
||||
|
||||
#ifdef X86_WIN64
|
||||
argp += (z + sizeof(void*) - 1) & ~(sizeof(void*) - 1);
|
||||
#else
|
||||
argp += z;
|
||||
#endif
|
||||
}
|
||||
|
||||
return;
|
||||
|
||||
return (size_t)argp - (size_t)stack;
|
||||
}
|
||||
|
||||
#define FFI_INIT_TRAMPOLINE_WIN64(TRAMP,FUN,CTX,MASK) \
|
||||
@@ -605,7 +672,7 @@ ffi_prep_incoming_args_SYSV(char *stack, void **rvalue, void **avalue,
|
||||
unsigned int __dis = __fun - (__ctx + 10); \
|
||||
*(unsigned char*) &__tramp[0] = 0xb8; \
|
||||
*(unsigned int*) &__tramp[1] = __ctx; /* movl __ctx, %eax */ \
|
||||
*(unsigned char *) &__tramp[5] = 0xe9; \
|
||||
*(unsigned char*) &__tramp[5] = 0xe9; \
|
||||
*(unsigned int*) &__tramp[6] = __dis; /* jmp __fun */ \
|
||||
}
|
||||
|
||||
@@ -615,36 +682,36 @@ ffi_prep_incoming_args_SYSV(char *stack, void **rvalue, void **avalue,
|
||||
unsigned int __ctx = (unsigned int)(CTX); \
|
||||
unsigned int __dis = __fun - (__ctx + 49); \
|
||||
unsigned short __size = (unsigned short)(SIZE); \
|
||||
*(unsigned int *) &__tramp[0] = 0x8324048b; /* mov (%esp), %eax */ \
|
||||
*(unsigned int *) &__tramp[4] = 0x4c890cec; /* sub $12, %esp */ \
|
||||
*(unsigned int *) &__tramp[8] = 0x04890424; /* mov %ecx, 4(%esp) */ \
|
||||
*(unsigned char*) &__tramp[12] = 0x24; /* mov %eax, (%esp) */ \
|
||||
*(unsigned int *) &__tramp[0] = 0x8324048b; /* mov (%esp), %eax */ \
|
||||
*(unsigned int *) &__tramp[4] = 0x4c890cec; /* sub $12, %esp */ \
|
||||
*(unsigned int *) &__tramp[8] = 0x04890424; /* mov %ecx, 4(%esp) */ \
|
||||
*(unsigned char*) &__tramp[12] = 0x24; /* mov %eax, (%esp) */ \
|
||||
*(unsigned char*) &__tramp[13] = 0xb8; \
|
||||
*(unsigned int *) &__tramp[14] = __size; /* mov __size, %eax */ \
|
||||
*(unsigned int *) &__tramp[18] = 0x08244c8d; /* lea 8(%esp), %ecx */ \
|
||||
*(unsigned int *) &__tramp[22] = 0x4802e8c1; /* shr $2, %eax ; dec %eax */ \
|
||||
*(unsigned short*) &__tramp[26] = 0x0b74; /* jz 1f */ \
|
||||
*(unsigned int *) &__tramp[28] = 0x8908518b; /* 2b: mov 8(%ecx), %edx */ \
|
||||
*(unsigned int *) &__tramp[32] = 0x04c18311; /* mov %edx, (%ecx) ; add $4, %ecx */ \
|
||||
*(unsigned char*) &__tramp[36] = 0x48; /* dec %eax */ \
|
||||
*(unsigned short*) &__tramp[37] = 0xf575; /* jnz 2b ; 1f: */ \
|
||||
*(unsigned int *) &__tramp[14] = __size; /* mov __size, %eax */ \
|
||||
*(unsigned int *) &__tramp[18] = 0x08244c8d; /* lea 8(%esp), %ecx */ \
|
||||
*(unsigned int *) &__tramp[22] = 0x4802e8c1; /* shr $2, %eax ; dec %eax */ \
|
||||
*(unsigned short*) &__tramp[26] = 0x0b74; /* jz 1f */ \
|
||||
*(unsigned int *) &__tramp[28] = 0x8908518b; /* 2b: mov 8(%ecx), %edx */ \
|
||||
*(unsigned int *) &__tramp[32] = 0x04c18311; /* mov %edx, (%ecx) ; add $4, %ecx */ \
|
||||
*(unsigned char*) &__tramp[36] = 0x48; /* dec %eax */ \
|
||||
*(unsigned short*) &__tramp[37] = 0xf575; /* jnz 2b ; 1f: */ \
|
||||
*(unsigned char*) &__tramp[39] = 0xb8; \
|
||||
*(unsigned int*) &__tramp[40] = __ctx; /* movl __ctx, %eax */ \
|
||||
*(unsigned int*) &__tramp[40] = __ctx; /* movl __ctx, %eax */ \
|
||||
*(unsigned char *) &__tramp[44] = 0xe8; \
|
||||
*(unsigned int*) &__tramp[45] = __dis; /* call __fun */ \
|
||||
*(unsigned char*) &__tramp[49] = 0xc2; /* ret */ \
|
||||
*(unsigned int*) &__tramp[45] = __dis; /* call __fun */ \
|
||||
*(unsigned char*) &__tramp[49] = 0xc2; /* ret */ \
|
||||
*(unsigned short*) &__tramp[50] = (__size + 8); /* ret (__size + 8) */ \
|
||||
}
|
||||
|
||||
#define FFI_INIT_TRAMPOLINE_STDCALL(TRAMP,FUN,CTX) \
|
||||
#define FFI_INIT_TRAMPOLINE_WIN32(TRAMP,FUN,CTX) \
|
||||
{ unsigned char *__tramp = (unsigned char*)(TRAMP); \
|
||||
unsigned int __fun = (unsigned int)(FUN); \
|
||||
unsigned int __ctx = (unsigned int)(CTX); \
|
||||
unsigned int __dis = __fun - (__ctx + 10); \
|
||||
*(unsigned char*) &__tramp[0] = 0xb8; \
|
||||
*(unsigned int*) &__tramp[1] = __ctx; /* movl __ctx, %eax */ \
|
||||
*(unsigned char *) &__tramp[5] = 0xe8; \
|
||||
*(unsigned int*) &__tramp[6] = __dis; /* call __fun */ \
|
||||
*(unsigned char*) &__tramp[0] = 0x68; \
|
||||
*(unsigned int*) &__tramp[1] = __ctx; /* push __ctx */ \
|
||||
*(unsigned char*) &__tramp[5] = 0xe9; \
|
||||
*(unsigned int*) &__tramp[6] = __dis; /* jmp __fun */ \
|
||||
}
|
||||
|
||||
/* the cif must already be prep'ed */
|
||||
@@ -674,21 +741,27 @@ ffi_prep_closure_loc (ffi_closure* closure,
|
||||
&ffi_closure_SYSV,
|
||||
(void*)codeloc);
|
||||
}
|
||||
else if (cif->abi == FFI_REGISTER)
|
||||
{
|
||||
FFI_INIT_TRAMPOLINE_WIN32 (&closure->tramp[0],
|
||||
&ffi_closure_REGISTER,
|
||||
(void*)codeloc);
|
||||
}
|
||||
else if (cif->abi == FFI_FASTCALL)
|
||||
{
|
||||
FFI_INIT_TRAMPOLINE_STDCALL (&closure->tramp[0],
|
||||
&ffi_closure_FASTCALL,
|
||||
(void*)codeloc);
|
||||
FFI_INIT_TRAMPOLINE_WIN32 (&closure->tramp[0],
|
||||
&ffi_closure_FASTCALL,
|
||||
(void*)codeloc);
|
||||
}
|
||||
else if (cif->abi == FFI_THISCALL)
|
||||
{
|
||||
FFI_INIT_TRAMPOLINE_STDCALL (&closure->tramp[0],
|
||||
&ffi_closure_THISCALL,
|
||||
(void*)codeloc);
|
||||
FFI_INIT_TRAMPOLINE_WIN32 (&closure->tramp[0],
|
||||
&ffi_closure_THISCALL,
|
||||
(void*)codeloc);
|
||||
}
|
||||
else if (cif->abi == FFI_STDCALL)
|
||||
else if (cif->abi == FFI_STDCALL || cif->abi == FFI_PASCAL)
|
||||
{
|
||||
FFI_INIT_TRAMPOLINE_STDCALL (&closure->tramp[0],
|
||||
FFI_INIT_TRAMPOLINE_WIN32 (&closure->tramp[0],
|
||||
&ffi_closure_STDCALL,
|
||||
(void*)codeloc);
|
||||
}
|
||||
@@ -764,10 +837,38 @@ ffi_prep_raw_closure_loc (ffi_raw_closure* closure,
|
||||
return FFI_OK;
|
||||
}
|
||||
|
||||
static void
|
||||
static unsigned int
|
||||
ffi_prep_args_raw(char *stack, extended_cif *ecif)
|
||||
{
|
||||
memcpy (stack, ecif->avalue, ecif->cif->bytes);
|
||||
const ffi_cif *cif = ecif->cif;
|
||||
unsigned int i, passed_regs = 0;
|
||||
|
||||
#ifndef X86_WIN64
|
||||
const unsigned int abi = cif->abi;
|
||||
const unsigned int max_regs = (abi == FFI_THISCALL) ? 1
|
||||
: (abi == FFI_FASTCALL) ? 2
|
||||
: (abi == FFI_REGISTER) ? 3
|
||||
: 0;
|
||||
|
||||
if (cif->flags == FFI_TYPE_STRUCT)
|
||||
++passed_regs;
|
||||
|
||||
for (i = 0; i < cif->nargs && passed_regs <= max_regs; i++)
|
||||
{
|
||||
if (cif->arg_types[i]->type == FFI_TYPE_FLOAT
|
||||
|| cif->arg_types[i]->type == FFI_TYPE_STRUCT)
|
||||
continue;
|
||||
|
||||
size_t sz = cif->arg_types[i]->size;
|
||||
if (sz == 0 || sz > FFI_SIZEOF_ARG)
|
||||
continue;
|
||||
|
||||
++passed_regs;
|
||||
}
|
||||
#endif
|
||||
|
||||
memcpy (stack, ecif->avalue, cif->bytes);
|
||||
return passed_regs;
|
||||
}
|
||||
|
||||
/* we borrow this routine from libffi (it must be changed, though, to
|
||||
@@ -810,37 +911,12 @@ ffi_raw_call(ffi_cif *cif, void (*fn)(void), void *rvalue, ffi_raw *fake_avalue)
|
||||
#endif
|
||||
#ifndef X86_WIN64
|
||||
case FFI_STDCALL:
|
||||
ffi_call_win32(ffi_prep_args_raw, &ecif, cif->abi, cif->bytes, cif->flags,
|
||||
ecif.rvalue, fn);
|
||||
break;
|
||||
case FFI_THISCALL:
|
||||
case FFI_FASTCALL:
|
||||
{
|
||||
unsigned int abi = cif->abi;
|
||||
unsigned int i, passed_regs = 0;
|
||||
|
||||
if (cif->flags == FFI_TYPE_STRUCT)
|
||||
++passed_regs;
|
||||
|
||||
for (i=0; i < cif->nargs && passed_regs < 2;i++)
|
||||
{
|
||||
size_t sz;
|
||||
|
||||
if (cif->arg_types[i]->type == FFI_TYPE_FLOAT
|
||||
|| cif->arg_types[i]->type == FFI_TYPE_STRUCT)
|
||||
continue;
|
||||
sz = (cif->arg_types[i]->size + 3) & ~3;
|
||||
if (sz == 0 || sz > 4)
|
||||
continue;
|
||||
++passed_regs;
|
||||
}
|
||||
if (passed_regs < 2 && abi == FFI_FASTCALL)
|
||||
cif->abi = abi = FFI_THISCALL;
|
||||
if (passed_regs < 1 && abi == FFI_THISCALL)
|
||||
cif->abi = abi = FFI_STDCALL;
|
||||
ffi_call_win32(ffi_prep_args_raw, &ecif, abi, cif->bytes, cif->flags,
|
||||
ecif.rvalue, fn);
|
||||
}
|
||||
case FFI_PASCAL:
|
||||
case FFI_REGISTER:
|
||||
ffi_call_win32(ffi_prep_args_raw, &ecif, cif->abi, cif->bytes, cif->flags,
|
||||
ecif.rvalue, fn);
|
||||
break;
|
||||
#endif
|
||||
default:
|
||||
|
||||
@@ -82,6 +82,8 @@ typedef enum ffi_abi {
|
||||
FFI_THISCALL,
|
||||
FFI_FASTCALL,
|
||||
FFI_MS_CDECL,
|
||||
FFI_PASCAL,
|
||||
FFI_REGISTER,
|
||||
FFI_LAST_ABI,
|
||||
#ifdef _MSC_VER
|
||||
FFI_DEFAULT_ABI = FFI_MS_CDECL
|
||||
@@ -101,6 +103,8 @@ typedef enum ffi_abi {
|
||||
FFI_THISCALL,
|
||||
FFI_FASTCALL,
|
||||
FFI_STDCALL,
|
||||
FFI_PASCAL,
|
||||
FFI_REGISTER,
|
||||
FFI_LAST_ABI,
|
||||
#if defined(__i386__) || defined(__i386)
|
||||
FFI_DEFAULT_ABI = FFI_SYSV
|
||||
@@ -135,7 +139,7 @@ typedef enum ffi_abi {
|
||||
#endif
|
||||
#endif
|
||||
#ifndef X86_WIN64
|
||||
#define FFI_NATIVE_RAW_API 1 /* x86 has native raw api support */
|
||||
#define FFI_NATIVE_RAW_API 1 /* x86 has native raw api support */
|
||||
#endif
|
||||
#endif
|
||||
|
||||
|
||||
1031
src/x86/win32.S
1031
src/x86/win32.S
File diff suppressed because it is too large
Load Diff
Reference in New Issue
Block a user