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📄 win32.s

📁 gcc3.2.1源代码
💻 S
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/* -----------------------------------------------------------------------   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:

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