353 lines
13 KiB
ArmAsm
353 lines
13 KiB
ArmAsm
# RUN: rm -rf %t && mkdir -p %t
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# RUN: llvm-mc -triple=x86_64-apple-macosx10.9 -filetype=obj -o %t/macho_reloc.o %s
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# RUN: llvm-jitlink -noexec -slab-allocate 100Kb -slab-address 0xfff00000 \
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# RUN: -define-abs external_data=0x1 -define-abs external_func=0x2 \
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# RUN: -check=%s %t/macho_reloc.o
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#
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# Test standard MachO relocations. Simulates slab allocation in the top 1Mb of
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# memory and places external symbols in the lowest page to prevent GOT and stub
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# elimination.
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.section __TEXT,__text,regular,pure_instructions
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# Check that common symbols work.
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# jitlink-check: *{4}common_symbol = 0
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# jitlink-check: common_symbol[1:0] = 0
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.comm common_symbol,4,2
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.align 4, 0x90
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Lanon_func:
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retq
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.globl named_func
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.align 4, 0x90
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named_func:
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xorq %rax, %rax
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retq
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# Check X86_64_RELOC_BRANCH handling with a call to a local function.
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#
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# jitlink-check: decode_operand(test_local_call, 0) = named_func - next_pc(test_local_call)
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.globl test_local_call
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.align 4, 0x90
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test_local_call:
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callq named_func
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retq
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.globl _main
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.align 4, 0x90
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_main:
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retq
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# Check X86_64_RELOC_GOTPCREL handling with a load from an external symbol.
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# Validate both the reference to the GOT entry, and also the content of the GOT
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# entry.
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#
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# jitlink-check: decode_operand(test_gotld, 4) = got_addr(macho_reloc.o, external_data) - next_pc(test_gotld)
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# jitlink-check: *{8}(got_addr(macho_reloc.o, external_data)) = external_data
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.globl test_gotld
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.align 4, 0x90
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test_gotld:
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movq external_data@GOTPCREL(%rip), %rax
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retq
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# Check X86_64_RELOC_GOTPCREL handling with cmp instructions, which have
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# negative addends.
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#
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# jitlink-check: decode_operand(test_gotcmpq, 3) = got_addr(macho_reloc.o, external_data) - next_pc(test_gotcmpq)
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.globl test_gotcmpq
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.align 4, 0x90
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test_gotcmpq:
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cmpq $0, external_data@GOTPCREL(%rip)
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retq
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# Check that calls to external functions trigger the generation of stubs and GOT
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# entries.
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#
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# jitlink-check: decode_operand(test_external_call, 0) = stub_addr(macho_reloc.o, external_func) - next_pc(test_external_call)
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# jitlink-check: *{8}(got_addr(macho_reloc.o, external_func)) = external_func
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.globl test_external_call
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.align 4, 0x90
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test_external_call:
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callq external_func
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retq
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# Check signed relocation handling:
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#
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# X86_64_RELOC_SIGNED / Extern -- movq address of linker global
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# X86_64_RELOC_SIGNED1 / Extern -- movb immediate byte to linker global
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# X86_64_RELOC_SIGNED2 / Extern -- movw immediate word to linker global
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# X86_64_RELOC_SIGNED4 / Extern -- movl immediate long to linker global
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#
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# X86_64_RELOC_SIGNED / Anon -- movq address of linker private into register
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# X86_64_RELOC_SIGNED1 / Anon -- movb immediate byte to linker private
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# X86_64_RELOC_SIGNED2 / Anon -- movw immediate word to linker private
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# X86_64_RELOC_SIGNED4 / Anon -- movl immediate long to linker private
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signed_reloc_checks:
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.globl signed
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# jitlink-check: decode_operand(signed, 4) = named_data - next_pc(signed)
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signed:
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movq named_data(%rip), %rax
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.globl signed1
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# jitlink-check: decode_operand(signed1, 3) = named_data - next_pc(signed1)
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signed1:
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movb $0xAA, named_data(%rip)
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.globl signed2
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# jitlink-check: decode_operand(signed2, 3) = named_data - next_pc(signed2)
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signed2:
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movw $0xAAAA, named_data(%rip)
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.globl signed4
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# jitlink-check: decode_operand(signed4, 3) = named_data - next_pc(signed4)
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signed4:
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movl $0xAAAAAAAA, named_data(%rip)
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.globl signedanon
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# jitlink-check: decode_operand(signedanon, 4) = section_addr(macho_reloc.o, __data) - next_pc(signedanon)
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signedanon:
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movq Lanon_data(%rip), %rax
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.globl signed1anon
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# jitlink-check: decode_operand(signed1anon, 3) = section_addr(macho_reloc.o, __data) - next_pc(signed1anon)
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signed1anon:
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movb $0xAA, Lanon_data(%rip)
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.globl signed2anon
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# jitlink-check: decode_operand(signed2anon, 3) = section_addr(macho_reloc.o, __data) - next_pc(signed2anon)
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signed2anon:
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movw $0xAAAA, Lanon_data(%rip)
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.globl signed4anon
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# jitlink-check: decode_operand(signed4anon, 3) = section_addr(macho_reloc.o, __data) - next_pc(signed4anon)
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signed4anon:
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movl $0xAAAAAAAA, Lanon_data(%rip)
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.section __DATA,__data
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# Storage target for non-extern X86_64_RELOC_SIGNED_(1/2/4) relocs.
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.p2align 3
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Lanon_data:
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.quad 0x1111111111111111
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# Check X86_64_RELOC_SUBTRACTOR Quad/Long in anonymous storage with anonymous
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# minuend: "LA: .quad LA - B + C". The anonymous subtrahend form
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# "LA: .quad B - LA + C" is not tested as subtrahends are not permitted to be
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# anonymous.
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#
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# Note: +8 offset in expression below to accounts for sizeof(Lanon_data).
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# jitlink-check: *{8}(section_addr(macho_reloc.o, __data) + 8) = (section_addr(macho_reloc.o, __data) + 8) - named_data - 2
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.p2align 3
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Lanon_minuend_quad:
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.quad Lanon_minuend_quad - named_data - 2
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# Note: +16 offset in expression below to accounts for sizeof(Lanon_data) + sizeof(Lanon_minuend_long).
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# jitlink-check: *{4}(section_addr(macho_reloc.o, __data) + 16) = ((section_addr(macho_reloc.o, __data) + 16) - named_data - 2)[31:0]
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.p2align 2
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Lanon_minuend_long:
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.long Lanon_minuend_long - named_data - 2
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# Named quad storage target (first named atom in __data).
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.globl named_data
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.p2align 3
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named_data:
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.quad 0x2222222222222222
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# An alt-entry point for named_data
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.globl named_data_alt_entry
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.p2align 3
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.alt_entry named_data_alt_entry
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named_data_alt_entry:
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.quad 0
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# Check X86_64_RELOC_UNSIGNED / quad / extern handling by putting the address of
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# a local named function into a quad symbol.
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#
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# jitlink-check: *{8}named_func_addr_quad = named_func
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.globl named_func_addr_quad
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.p2align 3
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named_func_addr_quad:
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.quad named_func
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# Check X86_64_RELOC_UNSIGNED / long / extern handling by putting the address of
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# an external function (defined to reside in the low 4Gb) into a long symbol.
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#
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# jitlink-check: *{4}named_func_addr_long = external_func
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.globl named_func_addr_long
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.p2align 2
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named_func_addr_long:
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.long external_func
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# Check X86_64_RELOC_UNSIGNED / quad / non-extern handling by putting the
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# address of a local anonymous function into a quad symbol.
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#
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# jitlink-check: *{8}anon_func_addr_quad = section_addr(macho_reloc.o, __text)
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.globl anon_func_addr_quad
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.p2align 3
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anon_func_addr_quad:
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.quad Lanon_func
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# X86_64_RELOC_SUBTRACTOR Quad/Long in named storage with anonymous minuend
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#
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# jitlink-check: *{8}anon_minuend_quad1 = section_addr(macho_reloc.o, __data) - anon_minuend_quad1 - 2
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# Only the form "B: .quad LA - B + C" is tested. The form "B: .quad B - LA + C" is
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# invalid because the subtrahend can not be local.
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.globl anon_minuend_quad1
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.p2align 3
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anon_minuend_quad1:
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.quad Lanon_data - anon_minuend_quad1 - 2
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# jitlink-check: *{4}anon_minuend_long1 = (section_addr(macho_reloc.o, __data) - anon_minuend_long1 - 2)[31:0]
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.globl anon_minuend_long1
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.p2align 2
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anon_minuend_long1:
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.long Lanon_data - anon_minuend_long1 - 2
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# Check X86_64_RELOC_SUBTRACTOR Quad/Long in named storage with minuend and subtrahend.
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# Both forms "A: .quad A - B + C" and "A: .quad B - A + C" are tested.
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#
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# Check "A: .quad B - A + C".
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# jitlink-check: *{8}subtrahend_quad2 = (named_data - subtrahend_quad2 - 2)
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.globl subtrahend_quad2
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.p2align 3
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subtrahend_quad2:
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.quad named_data - subtrahend_quad2 - 2
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# Check "A: .long B - A + C".
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# jitlink-check: *{4}subtrahend_long2 = (named_data - subtrahend_long2 - 2)[31:0]
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.globl subtrahend_long2
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.p2align 2
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subtrahend_long2:
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.long named_data - subtrahend_long2 - 2
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# Check "A: .quad A - B + C".
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# jitlink-check: *{8}minuend_quad3 = (minuend_quad3 - named_data - 2)
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.globl minuend_quad3
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.p2align 3
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minuend_quad3:
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.quad minuend_quad3 - named_data - 2
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# Check "A: .long B - A + C".
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# jitlink-check: *{4}minuend_long3 = (minuend_long3 - named_data - 2)[31:0]
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.globl minuend_long3
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.p2align 2
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minuend_long3:
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.long minuend_long3 - named_data - 2
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# Check X86_64_RELOC_SUBTRACTOR handling for exprs of the form
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# "A: .quad/long B - C + D", where 'B' or 'C' is at a fixed offset from 'A'
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# (i.e. is part of an alt_entry chain that includes 'A').
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#
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# Check "A: .long B - C + D" where 'B' is an alt_entry for 'A'.
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# jitlink-check: *{4}subtractor_with_alt_entry_minuend_long = (subtractor_with_alt_entry_minuend_long_B - named_data - 2)[31:0]
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.globl subtractor_with_alt_entry_minuend_long
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.p2align 2
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subtractor_with_alt_entry_minuend_long:
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.long subtractor_with_alt_entry_minuend_long_B - named_data - 2
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.globl subtractor_with_alt_entry_minuend_long_B
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.p2align 2
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.alt_entry subtractor_with_alt_entry_minuend_long_B
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subtractor_with_alt_entry_minuend_long_B:
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.long 0
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# Check "A: .quad B - C + D" where 'B' is an alt_entry for 'A'.
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# jitlink-check: *{8}subtractor_with_alt_entry_minuend_quad = (subtractor_with_alt_entry_minuend_quad_B - named_data - 2)
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.globl subtractor_with_alt_entry_minuend_quad
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.p2align 3
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subtractor_with_alt_entry_minuend_quad:
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.quad subtractor_with_alt_entry_minuend_quad_B - named_data - 2
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.globl subtractor_with_alt_entry_minuend_quad_B
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.p2align 3
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.alt_entry subtractor_with_alt_entry_minuend_quad_B
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subtractor_with_alt_entry_minuend_quad_B:
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.quad 0
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# Check "A: .long B - C + D" where 'C' is an alt_entry for 'A'.
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# jitlink-check: *{4}subtractor_with_alt_entry_subtrahend_long = (named_data - subtractor_with_alt_entry_subtrahend_long_B - 2)[31:0]
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.globl subtractor_with_alt_entry_subtrahend_long
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.p2align 2
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subtractor_with_alt_entry_subtrahend_long:
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.long named_data - subtractor_with_alt_entry_subtrahend_long_B - 2
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.globl subtractor_with_alt_entry_subtrahend_long_B
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.p2align 2
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.alt_entry subtractor_with_alt_entry_subtrahend_long_B
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subtractor_with_alt_entry_subtrahend_long_B:
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.long 0
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# Check "A: .quad B - C + D" where 'B' is an alt_entry for 'A'.
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# jitlink-check: *{8}subtractor_with_alt_entry_subtrahend_quad = (named_data - subtractor_with_alt_entry_subtrahend_quad_B - 2)
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.globl subtractor_with_alt_entry_subtrahend_quad
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.p2align 3
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subtractor_with_alt_entry_subtrahend_quad:
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.quad named_data - subtractor_with_alt_entry_subtrahend_quad_B - 2
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.globl subtractor_with_alt_entry_subtrahend_quad_B
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.p2align 3
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.alt_entry subtractor_with_alt_entry_subtrahend_quad_B
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subtractor_with_alt_entry_subtrahend_quad_B:
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.quad 0
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# Check X86_64_RELOC_GOT handling.
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# X86_64_RELOC_GOT is the data-section counterpart to X86_64_RELOC_GOTLD. It is
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# handled exactly the same way, including having an implicit PC-rel offset of -4
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# (despite this not making sense in a data section, and requiring an explicit
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# +4 addend to cancel it out and get the correct result).
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#
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# jitlink-check: *{4}test_got = (got_addr(macho_reloc.o, external_data) - test_got)[31:0]
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.globl test_got
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.p2align 2
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test_got:
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.long external_data@GOTPCREL + 4
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# Check that unreferenced atoms in no-dead-strip sections are not dead stripped.
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# We need to use a local symbol for this as any named symbol will end up in the
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# ORC responsibility set, which is automatically marked live and would couse
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# spurious passes.
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#
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# jitlink-check: *{8}section_addr(macho_reloc.o, __nds_test_sect) = 0
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.section __DATA,__nds_test_sect,regular,no_dead_strip
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.quad 0
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# Check that unreferenced local symbols that have been marked no-dead-strip are
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# not dead-striped.
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#
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# jitlink-check: *{8}section_addr(macho_reloc.o, __nds_test_nlst) = 0
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.section __DATA,__nds_test_nlst,regular
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.no_dead_strip no_dead_strip_test_symbol
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no_dead_strip_test_symbol:
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.quad 0
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# Check that explicit zero-fill symbols are supported
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# jitlink-check: *{8}zero_fill_test = 0
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.globl zero_fill_test
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.zerofill __DATA,__zero_fill_test,zero_fill_test,8,3
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# Check that section alignments are respected.
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# We test this by introducing two segments with alignment 8, each containing one
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# byte of data. We require both symbols to have an aligned address.
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#
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# jitlink-check: section_alignment_check1[2:0] = 0
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# jitlink-check: section_alignment_check2[2:0] = 0
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.section __DATA,__sec_align_chk1
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.p2align 3
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.globl section_alignment_check1
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section_alignment_check1:
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.byte 0
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.section __DATA,__sec_align_chk2
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.p2align 3
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.globl section_alignment_check2
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section_alignment_check2:
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.byte 0
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.subsections_via_symbols
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