📄 c-recursive.s
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# start of the file.include "defines.h" # system call numbers.include "c-recursive.literals" # include the string literal file .global _start .bss .align 4_data:.text .align 4_start: pushl %ebp # save the ebp address movl %esp, %ebp subl $4, %esp # allocate space for local variables movl $100, -4(%ebp) pushl %eax popl %eax leal -4(%ebp), %eax pushl %eax pushl -4(%ebp) call fun # call function to get result to return pop %edx # release pushed arguments memory after call pushl %eax popl %ebx popl %eax movl %ebx, (%eax) pushl (%eax) popl %eax movl $SYS_write, %eax # load the write call number movl $STDOUT, %ebx # get the output channel movl $literal0,%ecx # get the literal string movl $len0,%edx # string length int $0x80 movl -4(%ebp),%eax # get the integer value of the ID call ishow call newline pushl $0 popl %eax # save the return value in eax movl %ebp, %esp popl %ebp # restore the ebp address movl $SYS_exit,%eax # load the exit call number movl $0,%ebx # load the exit code int $0x80 # and exit! # end of the filefun: pushl %ebp # save the ebp address movl %esp, %ebp subl $0, %esp # allocate space for local variables pushl 8(%ebp) pushl $0 popl %ebx popl %eax cmpl %ebx, %eax sete %al movzbl %al, %eax pushl %eax cmpl $0, (%esp) je ENDIFlabel0 pushl 8(%ebp) popl %eax # save the return value in eax movl %ebp, %esp popl %ebp # restore the ebp address retENDIFlabel0: pushl 8(%ebp) pushl 8(%ebp) pushl $1 # arithmetic calculate popl %ebx subl %ebx, (%esp) call fun # call function to get result to return pop %edx # release pushed arguments memory after call pushl %eax # arithmetic calculate popl %ebx addl %ebx, (%esp) popl %eax # save the return value in eax movl %ebp, %esp popl %ebp # restore the ebp address ret
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