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3d2508df1f
``` // llvm-objdump -d output (before) 400000: e8 0b 00 00 00 callq 11 400005: e8 0b 00 00 00 callq 11 // llvm-objdump -d output (after) 400000: e8 0b 00 00 00 callq 0x400010 400005: e8 0b 00 00 00 callq 0x400015 // GNU objdump -d. The lack of 0x is not ideal because the result cannot be re-assembled 400000: e8 0b 00 00 00 callq 400010 400005: e8 0b 00 00 00 callq 400015 ``` In llvm-objdump, we pass the address of the next MCInst. Ideally we should just thread the address of the current address, unfortunately we cannot call X86MCCodeEmitter::encodeInstruction (X86MCCodeEmitter requires MCInstrInfo and MCContext) to get the length of the MCInst. MCInstPrinter::printInst has other callers (e.g llvm-mc -filetype=asm, llvm-mca) which set Address to 0. They leave MCInstPrinter::PrintBranchImmAsAddress as false and this change is a no-op for them. Reviewed By: jhenderson Differential Revision: https://reviews.llvm.org/D76580
201 lines
6.4 KiB
ArmAsm
201 lines
6.4 KiB
ArmAsm
# RUN: llvm-mc -triple=x86_64-windows -filetype=obj < %s -o %t.obj
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# RUN: llvm-objdump -d %t.obj | FileCheck %s --check-prefix=ASM
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# RUN: llvm-pdbutil dump -symbols %t.obj | FileCheck %s --check-prefix=CODEVIEW
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# C source to generate the assembly:
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# volatile int unlikely_cond = 0;
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# extern void __declspec(noreturn) abort();
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# __forceinline void f() {
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# if (unlikely_cond)
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# abort();
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# }
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# void g() {
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# unlikely_cond = 0;
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# f();
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# unlikely_cond = 0;
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# }
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# This test is interesting because the inlined instructions are discontiguous.
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# LLVM's block layout algorithms will put the 'abort' call last, as it is
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# considered highly unlikely to execute. This is similar to what it does for
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# calls to __asan_report*, for which it is very important to have an accurate
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# stack trace.
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# ASM: 0000000000000000 <g>:
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# ASM-NEXT: 0: 48 83 ec 28 subq $40, %rsp
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# ASM-NEXT: 4: c7 05 fc ff ff ff 00 00 00 00 movl $0, -4(%rip)
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# Begin inline loc (matches cv_loc below)
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# ASM-NEXT: e: 83 3d ff ff ff ff 00 cmpl $0, -1(%rip)
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# ASM-NEXT: 15: 75 0f jne 0x26 <g+0x26>
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# End inline loc
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# ASM-NEXT: 17: c7 05 fc ff ff ff 00 00 00 00 movl $0, -4(%rip)
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# ASM-NEXT: 21: 48 83 c4 28 addq $40, %rsp
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# ASM-NEXT: 25: c3 retq
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# Begin inline loc (matches cv_loc below)
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# ASM-NEXT: 26: e8 00 00 00 00 callq 0x2b <g+0x2b>
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# ASM-NEXT: 2b: 0f 0b ud2
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# End inline loc
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# CODEVIEW: S_INLINESITE [size = 24]
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# CODEVIEW-NEXT: inlinee = 0x1002 (f), parent = 0, end = 0
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# CODEVIEW-NEXT: 0B2E code 0xE (+0xE) line 1 (+1)
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# CODEVIEW-NEXT: 0409 code end 0x17 (+0x9)
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# CODEVIEW-NEXT: 0B2F code 0x26 (+0xF) line 2 (+1)
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# CODEVIEW-NEXT: 0407 code end 0x2D (+0x7)
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.text
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.globl g
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g: # @g
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.Lfunc_begin0:
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.cv_func_id 0
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.cv_file 1 "C:\\src\\llvm\\build\\t.cpp"
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.cv_loc 0 1 7 0 is_stmt 0 # t.cpp:7:0
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.seh_proc g
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subq $40, %rsp
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.seh_stackalloc 40
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.seh_endprologue
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.cv_loc 0 1 8 17 # t.cpp:8:17
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movl $0, unlikely_cond(%rip)
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.cv_inline_site_id 1 within 0 inlined_at 1 9 3
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.cv_loc 1 1 4 7 # t.cpp:4:7
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cmpl $0, unlikely_cond(%rip)
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jne .LBB0_1
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.cv_loc 0 1 10 17 # t.cpp:10:17
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movl $0, unlikely_cond(%rip)
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.cv_loc 0 1 11 1 # t.cpp:11:1
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addq $40, %rsp
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retq
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.LBB0_1: # %if.then.i
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.cv_loc 1 1 5 5 # t.cpp:5:5
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callq abort
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ud2
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.Lfunc_end0:
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.seh_handlerdata
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.text
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.seh_endproc
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.bss
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.globl unlikely_cond # @unlikely_cond
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.p2align 2
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unlikely_cond:
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.long 0 # 0x0
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.section .debug$S,"dr"
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.p2align 2
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.long 4 # Debug section magic
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.long 246 # Inlinee lines subsection
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.long .Ltmp9-.Ltmp8 # Subsection size
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.Ltmp8:
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.long 0 # Inlinee lines signature
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# Inlined function f starts at t.cpp:3
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.long 4098 # Type index of inlined function
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.long 0 # Offset into filechecksum table
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.long 3 # Starting line number
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.Ltmp9:
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.p2align 2
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.long 241 # Symbol subsection for g
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.long .Ltmp11-.Ltmp10 # Subsection size
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.Ltmp10:
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.short .Ltmp13-.Ltmp12 # Record length
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.Ltmp12:
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.short 4423 # Record kind: S_GPROC32_ID
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.long 0 # PtrParent
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.long 0 # PtrEnd
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.long 0 # PtrNext
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.long .Lfunc_end0-g # Code size
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.long 0 # Offset after prologue
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.long 0 # Offset before epilogue
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.long 4099 # Function type index
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.secrel32 g # Function section relative address
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.secidx g # Function section index
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.byte 0 # Flags
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.asciz "g" # Function name
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.Ltmp13:
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.short .Ltmp15-.Ltmp14 # Record length
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.Ltmp14:
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.short 4429 # Record kind: S_INLINESITE
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.long 0 # PtrParent
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.long 0 # PtrEnd
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.long 4098 # Inlinee type index
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.cv_inline_linetable 1 1 3 .Lfunc_begin0 .Lfunc_end0
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.Ltmp15:
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.short 2 # Record length
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.short 4430 # Record kind: S_INLINESITE_END
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.short 2 # Record length
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.short 4431 # Record kind: S_PROC_ID_END
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.Ltmp11:
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.p2align 2
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.cv_linetable 0, g, .Lfunc_end0
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.long 241 # Symbol subsection for globals
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.long .Ltmp17-.Ltmp16 # Subsection size
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.Ltmp16:
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.short .Ltmp19-.Ltmp18 # Record length
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.Ltmp18:
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.short 4365 # Record kind: S_GDATA32
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.long 4100 # Type
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.secrel32 unlikely_cond # DataOffset
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.secidx unlikely_cond # Segment
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.asciz "unlikely_cond" # Name
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.Ltmp19:
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.Ltmp17:
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.p2align 2
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.cv_filechecksums # File index to string table offset subsection
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.cv_stringtable # String table
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.section .debug$T,"dr"
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.p2align 2
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.long 4 # Debug section magic
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# ArgList (0x1000) {
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# TypeLeafKind: LF_ARGLIST (0x1201)
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# NumArgs: 0
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# Arguments [
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# ]
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# }
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.byte 0x06, 0x00, 0x01, 0x12
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.byte 0x00, 0x00, 0x00, 0x00
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# Procedure (0x1001) {
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# TypeLeafKind: LF_PROCEDURE (0x1008)
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# ReturnType: void (0x3)
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# CallingConvention: NearC (0x0)
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# FunctionOptions [ (0x0)
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# ]
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# NumParameters: 0
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# ArgListType: () (0x1000)
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# }
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.byte 0x0e, 0x00, 0x08, 0x10
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.byte 0x03, 0x00, 0x00, 0x00
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.byte 0x00, 0x00, 0x00, 0x00
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.byte 0x00, 0x10, 0x00, 0x00
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# FuncId (0x1002) {
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# TypeLeafKind: LF_FUNC_ID (0x1601)
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# ParentScope: 0x0
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# FunctionType: void () (0x1001)
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# Name: f
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# }
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.byte 0x0e, 0x00, 0x01, 0x16
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.byte 0x00, 0x00, 0x00, 0x00
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.byte 0x01, 0x10, 0x00, 0x00
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.byte 0x66, 0x00, 0xf2, 0xf1
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# FuncId (0x1003) {
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# TypeLeafKind: LF_FUNC_ID (0x1601)
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# ParentScope: 0x0
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# FunctionType: void () (0x1001)
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# Name: g
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# }
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.byte 0x0e, 0x00, 0x01, 0x16
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.byte 0x00, 0x00, 0x00, 0x00
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.byte 0x01, 0x10, 0x00, 0x00
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.byte 0x67, 0x00, 0xf2, 0xf1
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# Modifier (0x1004) {
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# TypeLeafKind: LF_MODIFIER (0x1001)
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# ModifiedType: int (0x74)
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# Modifiers [ (0x2)
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# Volatile (0x2)
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# ]
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# }
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.byte 0x0a, 0x00, 0x01, 0x10
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.byte 0x74, 0x00, 0x00, 0x00
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.byte 0x02, 0x00, 0xf2, 0xf1
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