assembly 在Apple M1 / MacOS上从aarch 64 asm代码调用printf

h5qlskok  于 2023-01-13  发布在  Mac
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从aarch64 asm代码调用printf的常用方法在Linux上运行良好,但在Apple M1上运行的MacOS上似乎不起作用。
是否有任何文档说明发生了哪些变化?
我发现我在x0..x2中输入的参数在printf输出中变得混乱。

bxpogfeg

bxpogfeg1#

Darwin arm64 ABI传递堆栈上的所有varags参数,每个参数都填充到8字节的下一个倍数(不适合8字节的类型会传递一个指针。不适合x0-x7/q0-q7的常规参数在堆栈上位于varargs之前,自然对齐)。
下面是一个简单的例子:

.globl _main
.align 2
_main:
    stp x29, x30, [sp, -0x10]!
    sub sp, sp, 0x10

    mov x8, 66
    str x8, [sp]
    adr x0, Lstr
    bl _printf

    mov w0, 0
    add sp, sp, 0x10
    ldp x29, x30, [sp], 0x10
    ret

Lstr:
    .asciz "test: %x\n"

请注意,这与在堆栈上传递的非原型函数的非varargs参数不同,后者最多只填充4个字节(sizeof(int))。

#include <stdio.h>
#include <stdint.h>

extern void func();
__asm__
(
    "_func:\n"
    "    ret\n"
);

int main(void)
{
    uint8_t a = 1,
            b = 2,
            c = 3;
    printf("%hhx %hhx %hhx %hhx %hhx %hhx\n", a, b, c, a, b, c);
    func(a, b, c, a, b, c, a, b, c, a, b, c);
    return 0;
}

使用-O2编译为以下内容:

;-- _main:
0x100003ee8      ff0301d1       sub sp, sp, 0x40
0x100003eec      fd7b03a9       stp x29, x30, [sp, 0x30]
0x100003ef0      fdc30091       add x29, sp, 0x30
0x100003ef4      68008052       mov w8, 3
0x100003ef8      49008052       mov w9, 2
0x100003efc      e92302a9       stp x9, x8, [sp, 0x20]
0x100003f00      2a008052       mov w10, 1
0x100003f04      e82b01a9       stp x8, x10, [sp, 0x10]
0x100003f08      ea2700a9       stp x10, x9, [sp]
0x100003f0c      20040010       adr x0, str._hhx__hhx__hhx__hhx__hhx__hhx_n
0x100003f10      1f2003d5       nop
0x100003f14      13000094       bl sym.imp.printf
0x100003f18      480080d2       mov x8, 2
0x100003f1c      6800c0f2       movk x8, 3, lsl 32
0x100003f20      690080d2       mov x9, 3
0x100003f24      2900c0f2       movk x9, 1, lsl 32
0x100003f28      e92300a9       stp x9, x8, [sp]
0x100003f2c      20008052       mov w0, 1
0x100003f30      41008052       mov w1, 2
0x100003f34      62008052       mov w2, 3
0x100003f38      23008052       mov w3, 1
0x100003f3c      44008052       mov w4, 2
0x100003f40      65008052       mov w5, 3
0x100003f44      26008052       mov w6, 1
0x100003f48      47008052       mov w7, 2
0x100003f4c      e6ffff97       bl sym._func
0x100003f50      00008052       mov w0, 0
0x100003f54      fd7b43a9       ldp x29, x30, [sp, 0x30]
0x100003f58      ff030191       add sp, sp, 0x40
0x100003f5c      c0035fd6       ret

给函数一个实际的原型允许移除任何填充(除了用于对齐的填充),如下所示(注意最后一个参数是8个字节):

extern void func(uint8_t, uint8_t, uint8_t, uint8_t, uint8_t, uint8_t,
                 uint8_t, uint8_t, uint8_t, uint8_t, uint8_t, uint64_t);

然后代码编译为:

;-- _main:
0x100003ee4      ff4301d1       sub sp, sp, 0x50
0x100003ee8      f44f03a9       stp x20, x19, [sp, 0x30]
0x100003eec      fd7b04a9       stp x29, x30, [sp, 0x40]
0x100003ef0      fd030191       add x29, sp, 0x40
0x100003ef4      73008052       mov w19, 3
0x100003ef8      54008052       mov w20, 2
0x100003efc      f44f02a9       stp x20, x19, [sp, 0x20]
0x100003f00      28008052       mov w8, 1
0x100003f04      f32301a9       stp x19, x8, [sp, 0x10]
0x100003f08      e85300a9       stp x8, x20, [sp]
0x100003f0c      20040010       adr x0, str._hhx__hhx__hhx__hhx__hhx__hhx_n
0x100003f10      1f2003d5       nop
0x100003f14      13000094       bl sym.imp.printf
0x100003f18      68208052       mov w8, 0x103
0x100003f1c      f30700f9       str x19, [sp, 8]
0x100003f20      f40b0039       strb w20, [sp, 2]
0x100003f24      e8030079       strh w8, [sp]
0x100003f28      20008052       mov w0, 1
0x100003f2c      41008052       mov w1, 2
0x100003f30      62008052       mov w2, 3
0x100003f34      23008052       mov w3, 1
0x100003f38      44008052       mov w4, 2
0x100003f3c      65008052       mov w5, 3
0x100003f40      26008052       mov w6, 1
0x100003f44      47008052       mov w7, 2
0x100003f48      e6ffff97       bl sym._func
0x100003f4c      00008052       mov w0, 0
0x100003f50      fd7b44a9       ldp x29, x30, [sp, 0x40]
0x100003f54      f44f43a9       ldp x20, x19, [sp, 0x30]
0x100003f58      ff430191       add sp, sp, 0x50
0x100003f5c      c0035fd6       ret

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