bar*_*j.n 5 c assembly gcc gnu-assembler arm64
我试图了解这段内联汇编的作用,它是从 CDEFINE宏生成的:
#define DEFINE(sym, val) asm volatile("\n->" #sym " %0 " #val : : "i" (val))
#define offsetof(TYPE, MEMBER) ((size_t)&((TYPE *)0)->MEMBER)
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它被用于在linux-imxsmc内核分支中进行 AArch64 调用。使用上述 C 宏定义值的地方是:
// arch/arm64/kernel/asm-offsets.c
int main(void)
{
(...)
DEFINE(ARM_SMCCC_RES_X0_OFFS, offsetof(struct arm_smccc_res, a0));
DEFINE(ARM_SMCCC_RES_X2_OFFS, offsetof(struct arm_smccc_res, a2));
DEFINE(ARM_SMCCC_QUIRK_ID_OFFS, offsetof(struct arm_smccc_quirk, id));
DEFINE(ARM_SMCCC_QUIRK_STATE_OFFS, offsetof(struct arm_smccc_quirk, state));
(...)
}
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后来,这些定义在汇编宏中使用,可在此处使用(或者至少看起来像这样):
// arch/arm64/kernel/smccc-call.S
.macro SMCCC instr
.cfi_startproc
\instr #0
ldr x4, [sp]
stp x0, x1, [x4, #ARM_SMCCC_RES_X0_OFFS]
stp x2, x3, [x4, #ARM_SMCCC_RES_X2_OFFS]
ldr x4, [sp, #8]
cbz x4, 1f /* no quirk structure */
ldr x9, [x4, #ARM_SMCCC_QUIRK_ID_OFFS]
cmp x9, #ARM_SMCCC_QUIRK_QCOM_A6
b.ne 1f
str x6, [x4, ARM_SMCCC_QUIRK_STATE_OFFS]
1: ret
.cfi_endproc
.endm
ENTRY(__arm_smccc_smc)
SMCCC smc
ENDPROC(__arm_smccc_smc)
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最终,它在实践中使用,例如在gpc-psci 驱动程序中。
我尝试将代码隔离到一个单独的裸机 AArch64 程序中,以查看宏在实践中如何扩展和工作,但我得到的只是编译错误。
// main.c
// the struct arm_smccc_res and others are inserted here to satisfy the compiler
int
main()
{
DEFINE(ARM_SMCCC_RES_X0_OFFS, offsetof(struct arm_smccc_res, a0));
DEFINE(ARM_SMCCC_RES_X2_OFFS, offsetof(struct arm_smccc_res, a2));
DEFINE(ARM_SMCCC_QUIRK_ID_OFFS, offsetof(struct arm_smccc_quirk, id));
DEFINE(ARM_SMCCC_QUIRK_STATE_OFFS, offsetof(struct arm_smccc_quirk, state));
return 0;
}
// gcc output
/tmp/cccqaaY3.s: Assembler messages:
/tmp/cccqaaY3.s:459: Error: junk at end of line, first unrecognized character is `-'
/tmp/cccqaaY3.s:464: Error: junk at end of line, first unrecognized character is `-'
/tmp/cccqaaY3.s:469: Error: junk at end of line, first unrecognized character is `-'
/tmp/cccqaaY3.s:474: Error: junk at end of line, first unrecognized character is `-'
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该offsetof宏是不言自明的,但我无法理解字符串化和->在DEFINE宏中的使用。
有什么想法它扩展到什么,或者如何成功编译它?
您会收到错误,因为该文件不应编译为对象。它仅用于生成程序集输出,然后对其进行处理以创建标头asm_offsets.h。该标头是随后包含在其他地方的标头。您可以在 中找到它include/generated。创建它的规则位于顶层KBuild:
# Kbuild for top-level directory of the kernel
# This file takes care of the following:
# 1) Generate bounds.h
# 2) Generate timeconst.h
# 3) Generate asm-offsets.h (may need bounds.h and timeconst.h)
# 4) Check for missing system calls
# 5) Generate constants.py (may need bounds.h)
# Default sed regexp - multiline due to syntax constraints
define sed-y
"/^->/{s:->#\(.*\):/* \1 */:; \
s:^->\([^ ]*\) [\$$#]*\([-0-9]*\) \(.*\):#define \1 \2 /* \3 */:; \
s:^->\([^ ]*\) [\$$#]*\([^ ]*\) \(.*\):#define \1 \2 /* \3 */:; \
s:->::; p;}"
endef
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您可以看到它用于sed将程序集输出转换为标头。临时程序集文件可以在 中找到arch/<arch>/kernel/asm-offsets.s。示例行如下所示:
->pt_regs_bx $40 offsetof(struct pt_regs, bx) #
->pt_regs_cx $88 offsetof(struct pt_regs, cx) #
->pt_regs_dx $96 offsetof(struct pt_regs, dx) #
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请注意,这不是有效的汇编语法,但编译器并不关心,它会asm在进行参数替换后无意识地发出您放入块中的任何内容。然后该sed命令对它们进行转换,使标头中的匹配行看起来像:
#define pt_regs_bx 40 /* offsetof(struct pt_regs, bx) # */
#define pt_regs_cx 88 /* offsetof(struct pt_regs, cx) # */
#define pt_regs_dx 96 /* offsetof(struct pt_regs, dx) # */
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