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Edit: /usr/bin/x86_64-linux-gnu-ld.bfd (1732192B)
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Copying and distribution of this script, with or without modification, are permitted in any medium without royalty provided the copyright notice and this notice are preserved. */ OUTPUT_FORMAT(pei-x86-64) SEARCH_DIR("=/usr/local/lib/x86_64-linux-gnu"); SEARCH_DIR("=/lib/x86_64-linux-gnu"); SEARCH_DIR("=/usr/lib/x86_64-linux-gnu"); SEARCH_DIR("=/usr/local/lib"); SEARCH_DIR("=/lib"); SEARCH_DIR("=/usr/lib"); SEARCH_DIR("=/usr/x86_64-pep/lib"); SECTIONS { /* Make the virtual address and file offset synced if the alignment is lower than the target page size. */ . = SIZEOF_HEADERS; . = ALIGN(__section_alignment__); .text __image_base__ + ( __section_alignment__ < 0x1000 ? . : __section_alignment__ ) : { KEEP (*(SORT_NONE(.init))) *(.text) *(SORT(.text$*)) *(.text.*) *(.gnu.linkonce.t.*) *(.glue_7t) *(.glue_7) . = ALIGN(8); /* Note: we always define __CTOR_LIST__ and ___CTOR_LIST__ here, we do not PROVIDE them. This is because the ctors.o startup code in libgcc defines them as common symbols, with the expectation that they will be overridden by the definitions here. If we PROVIDE the symbols then they will not be overridden and global constructors will not be run. See PR 22762 for more details. This does mean that it is not possible for a user to define their own __CTOR_LIST__ and __DTOR_LIST__ symbols; if they do, the content from those variables are included but the symbols defined here silently take precedence. If they truly need to be redefined, a custom linker script will have to be used. (The custom script can just be a copy of this script with the PROVIDE() qualifiers added). In particular this means that ld -Ur does not work, because the proper __CTOR_LIST__ set by ld -Ur is overridden by a bogus __CTOR_LIST__ set by the final link. See PR 46. */ ___CTOR_LIST__ = .; __CTOR_LIST__ = .; LONG (-1); LONG (-1); KEEP (*(.ctors)); KEEP (*(.ctor)); KEEP (*(SORT_BY_NAME(.ctors.*))); LONG (0); LONG (0); /* See comment about __CTOR_LIST__ above. The same reasoning applies here too. */ ___DTOR_LIST__ = .; __DTOR_LIST__ = .; LONG (-1); LONG (-1); KEEP (*(.dtors)); KEEP (*(.dtor)); KEEP (*(SORT_BY_NAME(.dtors.*))); LONG (0); LONG (0); KEEP (*(SORT_NONE(.fini))) /* ??? Why is .gcc_exc here? */ *(.gcc_exc) PROVIDE (etext = .); KEEP (*(.gcc_except_table)) } /* The Cygwin32 library uses a section to avoid copying certain data on fork. This used to be named ".data". The linker used to include this between __data_start__ and __data_end__, but that breaks building the cygwin32 dll. Instead, we name the section ".data_cygwin_nocopy" and explicitly include it after __data_end__. */ .data BLOCK(__section_alignment__) : { __data_start__ = . ; *(.data) *(.data2) *(SORT(.data$*)) KEEP(*(.jcr)) __data_end__ = . ; *(.data_cygwin_nocopy) } .rdata BLOCK(__section_alignment__) : { *(.rdata) *(SORT(.rdata$*)) . = ALIGN(4); __rt_psrelocs_start = .; KEEP(*(.rdata_runtime_pseudo_reloc)) __rt_psrelocs_end = .; } __rt_psrelocs_size = __rt_psrelocs_end - __rt_psrelocs_start; ___RUNTIME_PSEUDO_RELOC_LIST_END__ = .; __RUNTIME_PSEUDO_RELOC_LIST_END__ = .; ___RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; __RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; .eh_frame BLOCK(__section_alignment__) : { KEEP (*(.eh_frame*)) } .pdata BLOCK(__section_alignment__) : { KEEP(*(.pdata*)) } .xdata BLOCK(__section_alignment__) : { KEEP(*(.xdata*)) } .bss BLOCK(__section_alignment__) : { __bss_start__ = . ; *(.bss) *(COMMON) __bss_end__ = . ; } .edata BLOCK(__section_alignment__) : { *(.edata) } /DISCARD/ : { *(.debug$S) *(.debug$T) *(.debug$F) *(.drectve) *(.note.GNU-stack) *(.gnu.lto_*) } .idata BLOCK(__section_alignment__) : { /* This cannot currently be handled with grouped sections. See pep.em:sort_sections. */ KEEP (SORT(*)(.idata$2)) KEEP (SORT(*)(.idata$3)) /* These zeroes mark the end of the import list. */ LONG (0); LONG (0); LONG (0); LONG (0); LONG (0); KEEP (SORT(*)(.idata$4)) __IAT_start__ = .; SORT(*)(.idata$5) __IAT_end__ = .; KEEP (SORT(*)(.idata$6)) KEEP (SORT(*)(.idata$7)) } .CRT BLOCK(__section_alignment__) : { ___crt_xc_start__ = . ; KEEP (*(SORT(.CRT$XC*))) /* C initialization */ ___crt_xc_end__ = . ; ___crt_xi_start__ = . ; KEEP (*(SORT(.CRT$XI*))) /* C++ initialization */ ___crt_xi_end__ = . ; ___crt_xl_start__ = . ; KEEP (*(SORT(.CRT$XL*))) /* TLS callbacks */ /* ___crt_xl_end__ is defined in the TLS Directory support code */ ___crt_xp_start__ = . ; KEEP (*(SORT(.CRT$XP*))) /* Pre-termination */ ___crt_xp_end__ = . ; ___crt_xt_start__ = . ; KEEP (*(SORT(.CRT$XT*))) /* Termination */ ___crt_xt_end__ = . ; } /* Windows TLS expects .tls$AAA to be at the start and .tls$ZZZ to be at the end of the .tls section. This is important because _tls_start MUST be at the beginning of the section to enable SECREL32 relocations with TLS data. */ .tls BLOCK(__section_alignment__) : { ___tls_start__ = . ; KEEP (*(.tls$AAA)) KEEP (*(.tls)) KEEP (*(.tls$)) KEEP (*(SORT(.tls$*))) KEEP (*(.tls$ZZZ)) ___tls_end__ = . ; } .endjunk BLOCK(__section_alignment__) : { /* end is deprecated, don't use it */ PROVIDE (end = .); PROVIDE ( _end = .); __end__ = .; } .rsrc BLOCK(__section_alignment__) : SUBALIGN(4) { KEEP (*(.rsrc)) KEEP (*(.rsrc$*)) } .reloc BLOCK(__section_alignment__) : { *(.reloc) } .stab BLOCK(__section_alignment__) (NOLOAD) : { *(.stab) } .stabstr BLOCK(__section_alignment__) (NOLOAD) : { *(.stabstr) } /* DWARF debug sections. Symbols in the DWARF debugging sections are relative to the beginning of the section. Unlike other targets that fake this by putting the section VMA at 0, the PE format will not allow it. */ /* DWARF 1.1 and DWARF 2. */ .debug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_aranges) } .zdebug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_aranges) } .debug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubnames) } .zdebug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubnames) } .debug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubtypes) } .zdebug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubtypes) } /* DWARF 2. */ .debug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_info .gnu.linkonce.wi.*) } .zdebug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_info .zdebug.gnu.linkonce.wi.*) } .debug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_abbrev) } .zdebug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_abbrev) } .debug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_line) } .zdebug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_line) } .debug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_frame) } .zdebug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_frame) } .debug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_str) } .zdebug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_str) } .debug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_loc) } .zdebug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_loc) } .debug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macinfo) } .zdebug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macinfo) } /* SGI/MIPS DWARF 2 extensions. */ .debug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_weaknames) } .zdebug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_weaknames) } .debug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_funcnames) } .zdebug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_funcnames) } .debug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_typenames) } .zdebug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_typenames) } .debug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_varnames) } .zdebug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_varnames) } .debug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macro) } .zdebug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macro) } /* DWARF 3. */ .debug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_ranges) } .zdebug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_ranges) } /* DWARF 4. */ .debug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_types .gnu.linkonce.wt.*) } .zdebug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_types .zdebug.gnu.linkonce.wt.*) } /* For Go and Rust. */ .debug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_gdb_scripts) } .zdebug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_gdb_scripts) } } /* Script for -Ur */ /* Copyright (C) 2014-2020 Free Software Foundation, Inc. Copying and distribution of this script, with or without modification, are permitted in any medium without royalty provided the copyright notice and this notice are preserved. */ OUTPUT_FORMAT(pe-x86-64) SEARCH_DIR("=/usr/local/lib/x86_64-linux-gnu"); SEARCH_DIR("=/lib/x86_64-linux-gnu"); SEARCH_DIR("=/usr/lib/x86_64-linux-gnu"); SEARCH_DIR("=/usr/local/lib"); SEARCH_DIR("=/lib"); SEARCH_DIR("=/usr/lib"); SEARCH_DIR("=/usr/x86_64-pep/lib"); SECTIONS { .text : { *(.text) . = ALIGN(8); /* Note: we always define __CTOR_LIST__ and ___CTOR_LIST__ here, we do not PROVIDE them. This is because the ctors.o startup code in libgcc defines them as common symbols, with the expectation that they will be overridden by the definitions here. If we PROVIDE the symbols then they will not be overridden and global constructors will not be run. See PR 22762 for more details. This does mean that it is not possible for a user to define their own __CTOR_LIST__ and __DTOR_LIST__ symbols; if they do, the content from those variables are included but the symbols defined here silently take precedence. If they truly need to be redefined, a custom linker script will have to be used. (The custom script can just be a copy of this script with the PROVIDE() qualifiers added). In particular this means that ld -Ur does not work, because the proper __CTOR_LIST__ set by ld -Ur is overridden by a bogus __CTOR_LIST__ set by the final link. See PR 46. */ ___CTOR_LIST__ = .; __CTOR_LIST__ = .; LONG (-1); LONG (-1); KEEP (*(.ctors)); KEEP (*(.ctor)); KEEP (*(SORT_BY_NAME(.ctors.*))); LONG (0); LONG (0); /* See comment about __CTOR_LIST__ above. The same reasoning applies here too. */ ___DTOR_LIST__ = .; __DTOR_LIST__ = .; LONG (-1); LONG (-1); KEEP (*(.dtors)); KEEP (*(.dtor)); KEEP (*(SORT_BY_NAME(.dtors.*))); LONG (0); LONG (0); } /* The Cygwin32 library uses a section to avoid copying certain data on fork. This used to be named ".data". The linker used to include this between __data_start__ and __data_end__, but that breaks building the cygwin32 dll. Instead, we name the section ".data_cygwin_nocopy" and explicitly include it after __data_end__. */ .data : { *(.data) KEEP(*(.jcr)) } .rdata : { *(.rdata) . = ALIGN(4); } .eh_frame : { KEEP (*(.eh_frame)) } .pdata : { KEEP(*(.pdata)) } .xdata : { KEEP(*(.xdata)) } .bss : { *(.bss) *(COMMON) } .edata : { *(.edata) } /DISCARD/ : { *(.debug$S) *(.debug$T) *(.debug$F) *(.drectve) } .idata : { /* This cannot currently be handled with grouped sections. See pep.em:sort_sections. */ } .CRT : { /* ___crt_xl_end__ is defined in the TLS Directory support code */ } /* Windows TLS expects .tls$AAA to be at the start and .tls$ZZZ to be at the end of the .tls section. This is important because _tls_start MUST be at the beginning of the section to enable SECREL32 relocations with TLS data. */ .tls : { *(.tls) } .endjunk : { /* end is deprecated, don't use it */ } .rsrc : SUBALIGN(4) { *(.rsrc) } .reloc : { *(.reloc) } .stab : { *(.stab) } .stabstr : { *(.stabstr) } /* DWARF debug sections. Symbols in the DWARF debugging sections are relative to the beginning of the section. Unlike other targets that fake this by putting the section VMA at 0, the PE format will not allow it. */ /* DWARF 1.1 and DWARF 2. */ .debug_aranges : { *(.debug_aranges) } .zdebug_aranges : { *(.zdebug_aranges) } .debug_pubnames : { *(.debug_pubnames) } .zdebug_pubnames : { *(.zdebug_pubnames) } .debug_pubtypes : { *(.debug_pubtypes) } .zdebug_pubtypes : { *(.zdebug_pubtypes) } /* DWARF 2. */ .debug_info : { *(.debug_info) } .zdebug_info : { *(.zdebug_info) } .debug_abbrev : { *(.debug_abbrev) } .zdebug_abbrev : { *(.zdebug_abbrev) } .debug_line : { *(.debug_line) } .zdebug_line : { *(.zdebug_line) } .debug_frame : { *(.debug_frame) } .zdebug_frame : { *(.zdebug_frame) } .debug_str : { *(.debug_str) } .zdebug_str : { *(.zdebug_str) } .debug_loc : { *(.debug_loc) } .zdebug_loc : { *(.zdebug_loc) } .debug_macinfo : { *(.debug_macinfo) } .zdebug_macinfo : { *(.zdebug_macinfo) } /* SGI/MIPS DWARF 2 extensions. */ .debug_weaknames : { *(.debug_weaknames) } .zdebug_weaknames : { *(.zdebug_weaknames) } .debug_funcnames : { *(.debug_funcnames) } .zdebug_funcnames : { *(.zdebug_funcnames) } .debug_typenames : { *(.debug_typenames) } .zdebug_typenames : { *(.zdebug_typenames) } .debug_varnames : { *(.debug_varnames) } .zdebug_varnames : { *(.zdebug_varnames) } .debug_macro : { *(.debug_macro) } .zdebug_macro : { *(.zdebug_macro) } /* DWARF 3. */ .debug_ranges : { *(.debug_ranges) } .zdebug_ranges : { *(.zdebug_ranges) } /* DWARF 4. */ .debug_types : { *(.debug_types) } .zdebug_types : { *(.zdebug_types) } /* For Go and Rust. */ .debug_gdb_scripts : { *(.debug_gdb_scripts) } .zdebug_gdb_scripts : { *(.zdebug_gdb_scripts) } } /* Script for -r */ /* Copyright (C) 2014-2020 Free Software Foundation, Inc. Copying and distribution of this script, with or without modification, are permitted in any medium without royalty provided the copyright notice and this notice are preserved. */ OUTPUT_FORMAT(pe-x86-64) SEARCH_DIR("=/usr/local/lib/x86_64-linux-gnu"); SEARCH_DIR("=/lib/x86_64-linux-gnu"); SEARCH_DIR("=/usr/lib/x86_64-linux-gnu"); SEARCH_DIR("=/usr/local/lib"); SEARCH_DIR("=/lib"); SEARCH_DIR("=/usr/lib"); SEARCH_DIR("=/usr/x86_64-pep/lib"); SECTIONS { .text : { *(.text) } /* The Cygwin32 library uses a section to avoid copying certain data on fork. This used to be named ".data". The linker used to include this between __data_start__ and __data_end__, but that breaks building the cygwin32 dll. Instead, we name the section ".data_cygwin_nocopy" and explicitly include it after __data_end__. */ .data : { *(.data) KEEP(*(.jcr)) } .rdata : { *(.rdata) . = ALIGN(4); } .eh_frame : { KEEP (*(.eh_frame)) } .pdata : { KEEP(*(.pdata)) } .xdata : { KEEP(*(.xdata)) } .bss : { *(.bss) *(COMMON) } .edata : { *(.edata) } /DISCARD/ : { *(.debug$S) *(.debug$T) *(.debug$F) *(.drectve) } .idata : { /* This cannot currently be handled with grouped sections. See pep.em:sort_sections. */ } .CRT : { /* ___crt_xl_end__ is defined in the TLS Directory support code */ } /* Windows TLS expects .tls$AAA to be at the start and .tls$ZZZ to be at the end of the .tls section. This is important because _tls_start MUST be at the beginning of the section to enable SECREL32 relocations with TLS data. */ .tls : { *(.tls) } .endjunk : { /* end is deprecated, don't use it */ } .rsrc : SUBALIGN(4) { *(.rsrc) } .reloc : { *(.reloc) } .stab : { *(.stab) } .stabstr : { *(.stabstr) } /* DWARF debug sections. Symbols in the DWARF debugging sections are relative to the beginning of the section. Unlike other targets that fake this by putting the section VMA at 0, the PE format will not allow it. */ /* DWARF 1.1 and DWARF 2. */ .debug_aranges : { *(.debug_aranges) } .zdebug_aranges : { *(.zdebug_aranges) } .debug_pubnames : { *(.debug_pubnames) } .zdebug_pubnames : { *(.zdebug_pubnames) } .debug_pubtypes : { *(.debug_pubtypes) } .zdebug_pubtypes : { *(.zdebug_pubtypes) } /* DWARF 2. */ .debug_info : { *(.debug_info) } .zdebug_info : { *(.zdebug_info) } .debug_abbrev : { *(.debug_abbrev) } .zdebug_abbrev : { *(.zdebug_abbrev) } .debug_line : { *(.debug_line) } .zdebug_line : { *(.zdebug_line) } .debug_frame : { *(.debug_frame) } .zdebug_frame : { *(.zdebug_frame) } .debug_str : { *(.debug_str) } .zdebug_str : { *(.zdebug_str) } .debug_loc : { *(.debug_loc) } .zdebug_loc : { *(.zdebug_loc) } .debug_macinfo : { *(.debug_macinfo) } .zdebug_macinfo : { *(.zdebug_macinfo) } /* SGI/MIPS DWARF 2 extensions. */ .debug_weaknames : { *(.debug_weaknames) } .zdebug_weaknames : { *(.zdebug_weaknames) } .debug_funcnames : { *(.debug_funcnames) } .zdebug_funcnames : { *(.zdebug_funcnames) } .debug_typenames : { *(.debug_typenames) } .zdebug_typenames : { *(.zdebug_typenames) } .debug_varnames : { *(.debug_varnames) } .zdebug_varnames : { *(.zdebug_varnames) } .debug_macro : { *(.debug_macro) } .zdebug_macro : { *(.zdebug_macro) } /* DWARF 3. */ .debug_ranges : { *(.debug_ranges) } .zdebug_ranges : { *(.zdebug_ranges) } /* DWARF 4. */ .debug_types : { *(.debug_types) } .zdebug_types : { *(.zdebug_types) } /* For Go and Rust. */ .debug_gdb_scripts : { *(.debug_gdb_scripts) } .zdebug_gdb_scripts : { *(.zdebug_gdb_scripts) } } /* Default linker script, for normal executables */ /* Copyright (C) 2014-2020 Free Software Foundation, Inc. Copying and distribution of this script, with or without modification, are permitted in any medium without royalty provided the copyright notice and this notice are preserved. */ OUTPUT_FORMAT(pei-x86-64) SEARCH_DIR("=/usr/local/lib/x86_64-linux-gnu"); SEARCH_DIR("=/lib/x86_64-linux-gnu"); SEARCH_DIR("=/usr/lib/x86_64-linux-gnu"); SEARCH_DIR("=/usr/local/lib"); SEARCH_DIR("=/lib"); SEARCH_DIR("=/usr/lib"); SEARCH_DIR("=/usr/x86_64-pep/lib"); SECTIONS { /* Make the virtual address and file offset synced if the alignment is lower than the target page size. */ . = SIZEOF_HEADERS; . = ALIGN(__section_alignment__); .text __image_base__ + ( __section_alignment__ < 0x1000 ? . : __section_alignment__ ) : { KEEP (*(SORT_NONE(.init))) *(.text) *(SORT(.text$*)) *(.text.*) *(.gnu.linkonce.t.*) *(.glue_7t) *(.glue_7) . = ALIGN(8); /* Note: we always define __CTOR_LIST__ and ___CTOR_LIST__ here, we do not PROVIDE them. This is because the ctors.o startup code in libgcc defines them as common symbols, with the expectation that they will be overridden by the definitions here. If we PROVIDE the symbols then they will not be overridden and global constructors will not be run. See PR 22762 for more details. This does mean that it is not possible for a user to define their own __CTOR_LIST__ and __DTOR_LIST__ symbols; if they do, the content from those variables are included but the symbols defined here silently take precedence. If they truly need to be redefined, a custom linker script will have to be used. (The custom script can just be a copy of this script with the PROVIDE() qualifiers added). In particular this means that ld -Ur does not work, because the proper __CTOR_LIST__ set by ld -Ur is overridden by a bogus __CTOR_LIST__ set by the final link. See PR 46. */ ___CTOR_LIST__ = .; __CTOR_LIST__ = .; LONG (-1); LONG (-1); KEEP (*(.ctors)); KEEP (*(.ctor)); KEEP (*(SORT_BY_NAME(.ctors.*))); LONG (0); LONG (0); /* See comment about __CTOR_LIST__ above. The same reasoning applies here too. */ ___DTOR_LIST__ = .; __DTOR_LIST__ = .; LONG (-1); LONG (-1); KEEP (*(.dtors)); KEEP (*(.dtor)); KEEP (*(SORT_BY_NAME(.dtors.*))); LONG (0); LONG (0); KEEP (*(SORT_NONE(.fini))) /* ??? Why is .gcc_exc here? */ *(.gcc_exc) PROVIDE (etext = .); KEEP (*(.gcc_except_table)) } /* The Cygwin32 library uses a section to avoid copying certain data on fork. This used to be named ".data". The linker used to include this between __data_start__ and __data_end__, but that breaks building the cygwin32 dll. Instead, we name the section ".data_cygwin_nocopy" and explicitly include it after __data_end__. */ .data BLOCK(__section_alignment__) : { __data_start__ = . ; *(.data) *(.data2) *(SORT(.data$*)) KEEP(*(.jcr)) __data_end__ = . ; *(.data_cygwin_nocopy) } .rdata BLOCK(__section_alignment__) : { *(.rdata) *(SORT(.rdata$*)) . = ALIGN(4); __rt_psrelocs_start = .; KEEP(*(.rdata_runtime_pseudo_reloc)) __rt_psrelocs_end = .; } __rt_psrelocs_size = __rt_psrelocs_end - __rt_psrelocs_start; ___RUNTIME_PSEUDO_RELOC_LIST_END__ = .; __RUNTIME_PSEUDO_RELOC_LIST_END__ = .; ___RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; __RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; .eh_frame BLOCK(__section_alignment__) : { KEEP (*(.eh_frame*)) } .pdata BLOCK(__section_alignment__) : { KEEP(*(.pdata*)) } .xdata BLOCK(__section_alignment__) : { KEEP(*(.xdata*)) } .bss BLOCK(__section_alignment__) : { __bss_start__ = . ; *(.bss) *(COMMON) __bss_end__ = . ; } .edata BLOCK(__section_alignment__) : { *(.edata) } /DISCARD/ : { *(.debug$S) *(.debug$T) *(.debug$F) *(.drectve) *(.note.GNU-stack) *(.gnu.lto_*) } .idata BLOCK(__section_alignment__) : { /* This cannot currently be handled with grouped sections. See pep.em:sort_sections. */ KEEP (SORT(*)(.idata$2)) KEEP (SORT(*)(.idata$3)) /* These zeroes mark the end of the import list. */ LONG (0); LONG (0); LONG (0); LONG (0); LONG (0); KEEP (SORT(*)(.idata$4)) __IAT_start__ = .; SORT(*)(.idata$5) __IAT_end__ = .; KEEP (SORT(*)(.idata$6)) KEEP (SORT(*)(.idata$7)) } .CRT BLOCK(__section_alignment__) : { ___crt_xc_start__ = . ; KEEP (*(SORT(.CRT$XC*))) /* C initialization */ ___crt_xc_end__ = . ; ___crt_xi_start__ = . ; KEEP (*(SORT(.CRT$XI*))) /* C++ initialization */ ___crt_xi_end__ = . ; ___crt_xl_start__ = . ; KEEP (*(SORT(.CRT$XL*))) /* TLS callbacks */ /* ___crt_xl_end__ is defined in the TLS Directory support code */ ___crt_xp_start__ = . ; KEEP (*(SORT(.CRT$XP*))) /* Pre-termination */ ___crt_xp_end__ = . ; ___crt_xt_start__ = . ; KEEP (*(SORT(.CRT$XT*))) /* Termination */ ___crt_xt_end__ = . ; } /* Windows TLS expects .tls$AAA to be at the start and .tls$ZZZ to be at the end of the .tls section. This is important because _tls_start MUST be at the beginning of the section to enable SECREL32 relocations with TLS data. */ .tls BLOCK(__section_alignment__) : { ___tls_start__ = . ; KEEP (*(.tls$AAA)) KEEP (*(.tls)) KEEP (*(.tls$)) KEEP (*(SORT(.tls$*))) KEEP (*(.tls$ZZZ)) ___tls_end__ = . ; } .endjunk BLOCK(__section_alignment__) : { /* end is deprecated, don't use it */ PROVIDE (end = .); PROVIDE ( _end = .); __end__ = .; } .rsrc BLOCK(__section_alignment__) : SUBALIGN(4) { KEEP (*(.rsrc)) KEEP (*(.rsrc$*)) } .reloc BLOCK(__section_alignment__) : { *(.reloc) } .stab BLOCK(__section_alignment__) (NOLOAD) : { *(.stab) } .stabstr BLOCK(__section_alignment__) (NOLOAD) : { *(.stabstr) } /* DWARF debug sections. Symbols in the DWARF debugging sections are relative to the beginning of the section. Unlike other targets that fake this by putting the section VMA at 0, the PE format will not allow it. */ /* DWARF 1.1 and DWARF 2. */ .debug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_aranges) } .zdebug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_aranges) } .debug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubnames) } .zdebug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubnames) } .debug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubtypes) } .zdebug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubtypes) } /* DWARF 2. */ .debug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_info .gnu.linkonce.wi.*) } .zdebug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_info .zdebug.gnu.linkonce.wi.*) } .debug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_abbrev) } .zdebug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_abbrev) } .debug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_line) } .zdebug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_line) } .debug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_frame) } .zdebug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_frame) } .debug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_str) } .zdebug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_str) } .debug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_loc) } .zdebug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_loc) } .debug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macinfo) } .zdebug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macinfo) } /* SGI/MIPS DWARF 2 extensions. */ .debug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_weaknames) } .zdebug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_weaknames) } .debug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_funcnames) } .zdebug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_funcnames) } .debug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_typenames) } .zdebug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_typenames) } .debug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_varnames) } .zdebug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_varnames) } .debug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macro) } .zdebug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macro) } /* DWARF 3. */ .debug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_ranges) } .zdebug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_ranges) } /* DWARF 4. */ .debug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_types .gnu.linkonce.wt.*) } .zdebug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_types .zdebug.gnu.linkonce.wt.*) } /* For Go and Rust. */ .debug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_gdb_scripts) } .zdebug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_gdb_scripts) } } /* Script for --enable-auto-import */ /* Copyright (C) 2014-2020 Free Software Foundation, Inc. Copying and distribution of this script, with or without modification, are permitted in any medium without royalty provided the copyright notice and this notice are preserved. */ OUTPUT_FORMAT(pei-x86-64) SEARCH_DIR("=/usr/local/lib/x86_64-linux-gnu"); SEARCH_DIR("=/lib/x86_64-linux-gnu"); SEARCH_DIR("=/usr/lib/x86_64-linux-gnu"); SEARCH_DIR("=/usr/local/lib"); SEARCH_DIR("=/lib"); SEARCH_DIR("=/usr/lib"); SEARCH_DIR("=/usr/x86_64-pep/lib"); SECTIONS { /* Make the virtual address and file offset synced if the alignment is lower than the target page size. */ . = SIZEOF_HEADERS; . = ALIGN(__section_alignment__); .text __image_base__ + ( __section_alignment__ < 0x1000 ? . : __section_alignment__ ) : { KEEP (*(SORT_NONE(.init))) *(.text) *(SORT(.text$*)) *(.text.*) *(.gnu.linkonce.t.*) *(.glue_7t) *(.glue_7) . = ALIGN(8); /* Note: we always define __CTOR_LIST__ and ___CTOR_LIST__ here, we do not PROVIDE them. This is because the ctors.o startup code in libgcc defines them as common symbols, with the expectation that they will be overridden by the definitions here. If we PROVIDE the symbols then they will not be overridden and global constructors will not be run. See PR 22762 for more details. This does mean that it is not possible for a user to define their own __CTOR_LIST__ and __DTOR_LIST__ symbols; if they do, the content from those variables are included but the symbols defined here silently take precedence. If they truly need to be redefined, a custom linker script will have to be used. (The custom script can just be a copy of this script with the PROVIDE() qualifiers added). In particular this means that ld -Ur does not work, because the proper __CTOR_LIST__ set by ld -Ur is overridden by a bogus __CTOR_LIST__ set by the final link. See PR 46. */ ___CTOR_LIST__ = .; __CTOR_LIST__ = .; LONG (-1); LONG (-1); KEEP (*(.ctors)); KEEP (*(.ctor)); KEEP (*(SORT_BY_NAME(.ctors.*))); LONG (0); LONG (0); /* See comment about __CTOR_LIST__ above. The same reasoning applies here too. */ ___DTOR_LIST__ = .; __DTOR_LIST__ = .; LONG (-1); LONG (-1); KEEP (*(.dtors)); KEEP (*(.dtor)); KEEP (*(SORT_BY_NAME(.dtors.*))); LONG (0); LONG (0); KEEP (*(SORT_NONE(.fini))) /* ??? Why is .gcc_exc here? */ *(.gcc_exc) PROVIDE (etext = .); KEEP (*(.gcc_except_table)) } /* The Cygwin32 library uses a section to avoid copying certain data on fork. This used to be named ".data". The linker used to include this between __data_start__ and __data_end__, but that breaks building the cygwin32 dll. Instead, we name the section ".data_cygwin_nocopy" and explicitly include it after __data_end__. */ .data BLOCK(__section_alignment__) : { __data_start__ = . ; *(.data) *(.data2) *(SORT(.data$*)) *(.rdata) *(SORT(.rdata$*)) KEEP(*(.jcr)) __data_end__ = . ; *(.data_cygwin_nocopy) } .rdata BLOCK(__section_alignment__) : { . = ALIGN(4); __rt_psrelocs_start = .; KEEP(*(.rdata_runtime_pseudo_reloc)) __rt_psrelocs_end = .; } __rt_psrelocs_size = __rt_psrelocs_end - __rt_psrelocs_start; ___RUNTIME_PSEUDO_RELOC_LIST_END__ = .; __RUNTIME_PSEUDO_RELOC_LIST_END__ = .; ___RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; __RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; .eh_frame BLOCK(__section_alignment__) : { KEEP (*(.eh_frame*)) } .pdata BLOCK(__section_alignment__) : { KEEP(*(.pdata*)) } .xdata BLOCK(__section_alignment__) : { KEEP(*(.xdata*)) } .bss BLOCK(__section_alignment__) : { __bss_start__ = . ; *(.bss) *(COMMON) __bss_end__ = . ; } .edata BLOCK(__section_alignment__) : { *(.edata) } /DISCARD/ : { *(.debug$S) *(.debug$T) *(.debug$F) *(.drectve) *(.note.GNU-stack) *(.gnu.lto_*) } .idata BLOCK(__section_alignment__) : { /* This cannot currently be handled with grouped sections. See pep.em:sort_sections. */ KEEP (SORT(*)(.idata$2)) KEEP (SORT(*)(.idata$3)) /* These zeroes mark the end of the import list. */ LONG (0); LONG (0); LONG (0); LONG (0); LONG (0); KEEP (SORT(*)(.idata$4)) __IAT_start__ = .; SORT(*)(.idata$5) __IAT_end__ = .; KEEP (SORT(*)(.idata$6)) KEEP (SORT(*)(.idata$7)) } .CRT BLOCK(__section_alignment__) : { ___crt_xc_start__ = . ; KEEP (*(SORT(.CRT$XC*))) /* C initialization */ ___crt_xc_end__ = . ; ___crt_xi_start__ = . ; KEEP (*(SORT(.CRT$XI*))) /* C++ initialization */ ___crt_xi_end__ = . ; ___crt_xl_start__ = . ; KEEP (*(SORT(.CRT$XL*))) /* TLS callbacks */ /* ___crt_xl_end__ is defined in the TLS Directory support code */ ___crt_xp_start__ = . ; KEEP (*(SORT(.CRT$XP*))) /* Pre-termination */ ___crt_xp_end__ = . ; ___crt_xt_start__ = . ; KEEP (*(SORT(.CRT$XT*))) /* Termination */ ___crt_xt_end__ = . ; } /* Windows TLS expects .tls$AAA to be at the start and .tls$ZZZ to be at the end of the .tls section. This is important because _tls_start MUST be at the beginning of the section to enable SECREL32 relocations with TLS data. */ .tls BLOCK(__section_alignment__) : { ___tls_start__ = . ; KEEP (*(.tls$AAA)) KEEP (*(.tls)) KEEP (*(.tls$)) KEEP (*(SORT(.tls$*))) KEEP (*(.tls$ZZZ)) ___tls_end__ = . ; } .endjunk BLOCK(__section_alignment__) : { /* end is deprecated, don't use it */ PROVIDE (end = .); PROVIDE ( _end = .); __end__ = .; } .rsrc BLOCK(__section_alignment__) : SUBALIGN(4) { KEEP (*(.rsrc)) KEEP (*(.rsrc$*)) } .reloc BLOCK(__section_alignment__) : { *(.reloc) } .stab BLOCK(__section_alignment__) (NOLOAD) : { *(.stab) } .stabstr BLOCK(__section_alignment__) (NOLOAD) : { *(.stabstr) } /* DWARF debug sections. Symbols in the DWARF debugging sections are relative to the beginning of the section. Unlike other targets that fake this by putting the section VMA at 0, the PE format will not allow it. */ /* DWARF 1.1 and DWARF 2. */ .debug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_aranges) } .zdebug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_aranges) } .debug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubnames) } .zdebug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubnames) } .debug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubtypes) } .zdebug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubtypes) } /* DWARF 2. */ .debug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_info .gnu.linkonce.wi.*) } .zdebug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_info .zdebug.gnu.linkonce.wi.*) } .debug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_abbrev) } .zdebug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_abbrev) } .debug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_line) } .zdebug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_line) } .debug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_frame) } .zdebug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_frame) } .debug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_str) } .zdebug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_str) } .debug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_loc) } .zdebug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_loc) } .debug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macinfo) } .zdebug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macinfo) } /* SGI/MIPS DWARF 2 extensions. */ .debug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_weaknames) } .zdebug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_weaknames) } .debug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_funcnames) } .zdebug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_funcnames) } .debug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_typenames) } .zdebug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_typenames) } .debug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_varnames) } .zdebug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_varnames) } .debug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macro) } .zdebug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macro) } /* DWARF 3. */ .debug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_ranges) } .zdebug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_ranges) } /* DWARF 4. */ .debug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_types .gnu.linkonce.wt.*) } .zdebug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_types .zdebug.gnu.linkonce.wt.*) } /* For Go and Rust. */ .debug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_gdb_scripts) } .zdebug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_gdb_scripts) } } %P: warning: unrecognized --build-id style ignored %P: warning: cannot create .buildid section, --build-id ignored %P: cannot perform PE operations on non PE output file '%pB' warning: resolving %s by linking to %s Use --enable-stdcall-fixup to disable these warnings Use --disable-stdcall-fixup to disable these fixups %X%P: unable to process relocs: %E %P: warning: --export-dynamic is not supported for PE+ targets, did you mean --export-all-symbols? %P: invalid hex number for PE parameter '%s' %P: strange hex info for PE parameter '%s' %P: warning: bad version number in -subsystem option %P: invalid subsystem type %s %P: warning, file alignment > section alignment %P: %C: cannot get section contents - auto-import exception import of 0x%lx(0x%lx) sec_addr=0x%lx%P: warning: .buildid section discarded, --build-id ignored use-nul-prefixed-import-tablesenable-runtime-pseudo-reloc-v2%0##""""p"P"0""P$P#`(!$$$p$!!!!x!`!%$P%0%%%%p%H!@(H! ((''''`'(@' ''&&&&`&@& (mainCRTStartuppep_fixup_stdcallsgld_i386pep_after_opengld_i386pep_set_symbolsset_pep_nameis_underscoringpei-i386pe-i386ei386pe.cDllMainCRTStartup@12thumb-entryenable-extra-pe-debugdisable-large-address-awarei386pe --thumb-entry= Set the entry point to be Thumb --[no-]insert-timestamp Use a real timestamp rather than zero (default). export, place into import library instead. --compat-implib Create backward compatible import libs; create __imp_ as well. --enable-auto-image-base[=
] Automatically choose image base for DLLs (optionally starting with address) unless specifically set with --image-base --disable-auto-image-base Do not auto-choose image base. (default) --enable-runtime-pseudo-reloc Work around auto-import limitations by adding pseudo-relocations resolved at runtime. --disable-runtime-pseudo-reloc Do not add runtime pseudo-relocations for auto-imported DATA. --enable-extra-pe-debug Enable verbose debug output when building or linking to DLLs (esp. auto-import) --large-address-aware Executable supports virtual addresses greater than 2 gigabytes --disable-large-address-aware Executable does not support virtual addresses greater than 2 gigabytes --no-seh Image does not use SEH. No SE handler may be called in this image %P: warning: resolving %s by linking to %s /* Script for -N */ /* Copyright (C) 2014-2020 Free Software Foundation, Inc. Copying and distribution of this script, with or without modification, are permitted in any medium without royalty provided the copyright notice and this notice are preserved. */ OUTPUT_FORMAT(pei-i386) SEARCH_DIR("=/usr/x86_64-pep/lib"); SECTIONS { /* Make the virtual address and file offset synced if the alignment is lower than the target page size. */ . = SIZEOF_HEADERS; . = ALIGN(__section_alignment__); .text __image_base__ + ( __section_alignment__ < 0x1000 ? . : __section_alignment__ ) : { KEEP (*(SORT_NONE(.init))) *(.text) *(SORT(.text$*)) *(.text.*) *(.gnu.linkonce.t.*) *(.glue_7t) *(.glue_7) /* Note: we always define __CTOR_LIST__ and ___CTOR_LIST__ here, we do not PROVIDE them. This is because the ctors.o startup code in libgcc defines them as common symbols, with the expectation that they will be overridden by the definitions here. If we PROVIDE the symbols then they will not be overridden and global constructors will not be run. See PR 22762 for more details. This does mean that it is not possible for a user to define their own __CTOR_LIST__ and __DTOR_LIST__ symbols; if they do, the content from those variables are included but the symbols defined here silently take precedence. If they truly need to be redefined, a custom linker script will have to be used. (The custom script can just be a copy of this script with the PROVIDE() qualifiers added). In particular this means that ld -Ur does not work, because the proper __CTOR_LIST__ set by ld -Ur is overridden by a bogus __CTOR_LIST__ set by the final link. See PR 46. */ ___CTOR_LIST__ = .; __CTOR_LIST__ = .; LONG (-1); KEEP(*(.ctors)); KEEP(*(.ctor)); KEEP(*(SORT_BY_NAME(.ctors.*))); LONG (0); /* See comment about __CTOR_LIST__ above. The same reasoning applies here too. */ ___DTOR_LIST__ = .; __DTOR_LIST__ = .; LONG (-1); KEEP(*(.dtors)); KEEP(*(.dtor)); KEEP(*(SORT_BY_NAME(.dtors.*))); LONG (0); KEEP (*(SORT_NONE(.fini))) /* ??? Why is .gcc_exc here? */ *(.gcc_exc) PROVIDE (etext = .); PROVIDE (_etext = .); KEEP (*(.gcc_except_table)) } /* The Cygwin32 library uses a section to avoid copying certain data on fork. This used to be named ".data". The linker used to include this between __data_start__ and __data_end__, but that breaks building the cygwin32 dll. Instead, we name the section ".data_cygwin_nocopy" and explicitly include it after __data_end__. */ .data BLOCK(__section_alignment__) : { __data_start__ = . ; *(.data) *(.data2) *(SORT(.data$*)) KEEP(*(.jcr)) __data_end__ = . ; *(.data_cygwin_nocopy) } .rdata BLOCK(__section_alignment__) : { *(.rdata) *(SORT(.rdata$*)) . = ALIGN(4); __rt_psrelocs_start = .; KEEP(*(.rdata_runtime_pseudo_reloc)) __rt_psrelocs_end = .; } __rt_psrelocs_size = __rt_psrelocs_end - __rt_psrelocs_start; ___RUNTIME_PSEUDO_RELOC_LIST_END__ = .; __RUNTIME_PSEUDO_RELOC_LIST_END__ = .; ___RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; __RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; .eh_frame BLOCK(__section_alignment__) : { KEEP(*(.eh_frame*)) } .pdata BLOCK(__section_alignment__) : { KEEP(*(.pdata*)) } .bss BLOCK(__section_alignment__) : { __bss_start__ = . ; *(.bss) *(COMMON) __bss_end__ = . ; } .edata BLOCK(__section_alignment__) : { *(.edata) } /DISCARD/ : { *(.debug$S) *(.debug$T) *(.debug$F) *(.drectve) *(.note.GNU-stack) *(.gnu.lto_*) } .idata BLOCK(__section_alignment__) : { /* This cannot currently be handled with grouped sections. See pe.em:sort_sections. */ KEEP (SORT(*)(.idata$2)) KEEP (SORT(*)(.idata$3)) /* These zeroes mark the end of the import list. */ LONG (0); LONG (0); LONG (0); LONG (0); LONG (0); KEEP (SORT(*)(.idata$4)) __IAT_start__ = .; KEEP (SORT(*)(.idata$5)) __IAT_end__ = .; KEEP (SORT(*)(.idata$6)) KEEP (SORT(*)(.idata$7)) } .CRT BLOCK(__section_alignment__) : { ___crt_xc_start__ = . ; KEEP (*(SORT(.CRT$XC*))) /* C initialization */ ___crt_xc_end__ = . ; ___crt_xi_start__ = . ; KEEP (*(SORT(.CRT$XI*))) /* C++ initialization */ ___crt_xi_end__ = . ; ___crt_xl_start__ = . ; KEEP (*(SORT(.CRT$XL*))) /* TLS callbacks */ /* ___crt_xl_end__ is defined in the TLS Directory support code */ ___crt_xp_start__ = . ; KEEP (*(SORT(.CRT$XP*))) /* Pre-termination */ ___crt_xp_end__ = . ; ___crt_xt_start__ = . ; KEEP (*(SORT(.CRT$XT*))) /* Termination */ ___crt_xt_end__ = . ; } /* Windows TLS expects .tls$AAA to be at the start and .tls$ZZZ to be at the end of section. This is important because _tls_start MUST be at the beginning of the section to enable SECREL32 relocations with TLS data. */ .tls BLOCK(__section_alignment__) : { ___tls_start__ = . ; KEEP (*(.tls$AAA)) KEEP (*(.tls)) KEEP (*(.tls$)) KEEP (*(SORT(.tls$*))) KEEP (*(.tls$ZZZ)) ___tls_end__ = . ; } .endjunk BLOCK(__section_alignment__) : { /* end is deprecated, don't use it */ PROVIDE (end = .); PROVIDE ( _end = .); __end__ = .; } .rsrc BLOCK(__section_alignment__) : SUBALIGN(4) { KEEP (*(.rsrc)) KEEP (*(.rsrc$*)) } .reloc BLOCK(__section_alignment__) : { *(.reloc) } .stab BLOCK(__section_alignment__) (NOLOAD) : { *(.stab) } .stabstr BLOCK(__section_alignment__) (NOLOAD) : { *(.stabstr) } /* DWARF debug sections. Symbols in the DWARF debugging sections are relative to the beginning of the section. Unlike other targets that fake this by putting the section VMA at 0, the PE format will not allow it. */ /* DWARF 1.1 and DWARF 2. */ .debug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_aranges) } .zdebug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_aranges) } .debug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubnames) } .zdebug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubnames) } .debug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubtypes) } .zdebug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubtypes) } /* DWARF 2. */ .debug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_info .gnu.linkonce.wi.*) } .zdebug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_info .zdebug.gnu.linkonce.wi.*) } .debug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_abbrev) } .zdebug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_abbrev) } .debug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_line) } .zdebug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_line) } .debug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_frame*) } .zdebug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_frame*) } .debug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_str) } .zdebug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_str) } .debug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_loc) } .zdebug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_loc) } .debug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macinfo) } .zdebug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macinfo) } /* SGI/MIPS DWARF 2 extensions. */ .debug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_weaknames) } .zdebug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_weaknames) } .debug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_funcnames) } .zdebug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_funcnames) } .debug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_typenames) } .zdebug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_typenames) } .debug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_varnames) } .zdebug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_varnames) } .debug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macro) } .zdebug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macro) } /* DWARF 3. */ .debug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_ranges) } .zdebug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_ranges) } /* DWARF 4. */ .debug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_types .gnu.linkonce.wt.*) } .zdebug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_types .gnu.linkonce.wt.*) } /* For Go and Rust. */ .debug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_gdb_scripts) } .zdebug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_gdb_scripts) } } /* Script for --enable-auto-import */ /* Copyright (C) 2014-2020 Free Software Foundation, Inc. Copying and distribution of this script, with or without modification, are permitted in any medium without royalty provided the copyright notice and this notice are preserved. */ OUTPUT_FORMAT(pei-i386) SEARCH_DIR("=/usr/x86_64-pep/lib"); SECTIONS { /* Make the virtual address and file offset synced if the alignment is lower than the target page size. */ . = SIZEOF_HEADERS; . = ALIGN(__section_alignment__); .text __image_base__ + ( __section_alignment__ < 0x1000 ? . : __section_alignment__ ) : { KEEP (*(SORT_NONE(.init))) *(.text) *(SORT(.text$*)) *(.text.*) *(.gnu.linkonce.t.*) *(.glue_7t) *(.glue_7) /* Note: we always define __CTOR_LIST__ and ___CTOR_LIST__ here, we do not PROVIDE them. This is because the ctors.o startup code in libgcc defines them as common symbols, with the expectation that they will be overridden by the definitions here. If we PROVIDE the symbols then they will not be overridden and global constructors will not be run. See PR 22762 for more details. This does mean that it is not possible for a user to define their own __CTOR_LIST__ and __DTOR_LIST__ symbols; if they do, the content from those variables are included but the symbols defined here silently take precedence. If they truly need to be redefined, a custom linker script will have to be used. (The custom script can just be a copy of this script with the PROVIDE() qualifiers added). In particular this means that ld -Ur does not work, because the proper __CTOR_LIST__ set by ld -Ur is overridden by a bogus __CTOR_LIST__ set by the final link. See PR 46. */ ___CTOR_LIST__ = .; __CTOR_LIST__ = .; LONG (-1); KEEP(*(.ctors)); KEEP(*(.ctor)); KEEP(*(SORT_BY_NAME(.ctors.*))); LONG (0); /* See comment about __CTOR_LIST__ above. The same reasoning applies here too. */ ___DTOR_LIST__ = .; __DTOR_LIST__ = .; LONG (-1); KEEP(*(.dtors)); KEEP(*(.dtor)); KEEP(*(SORT_BY_NAME(.dtors.*))); LONG (0); KEEP (*(SORT_NONE(.fini))) /* ??? Why is .gcc_exc here? */ *(.gcc_exc) PROVIDE (etext = .); PROVIDE (_etext = .); KEEP (*(.gcc_except_table)) } /* The Cygwin32 library uses a section to avoid copying certain data on fork. This used to be named ".data". The linker used to include this between __data_start__ and __data_end__, but that breaks building the cygwin32 dll. Instead, we name the section ".data_cygwin_nocopy" and explicitly include it after __data_end__. */ .data BLOCK(__section_alignment__) : { __data_start__ = . ; *(.data) *(.data2) *(SORT(.data$*)) *(.rdata) *(SORT(.rdata$*)) KEEP(*(.jcr)) __data_end__ = . ; *(.data_cygwin_nocopy) } .rdata BLOCK(__section_alignment__) : { . = ALIGN(4); __rt_psrelocs_start = .; KEEP(*(.rdata_runtime_pseudo_reloc)) __rt_psrelocs_end = .; } __rt_psrelocs_size = __rt_psrelocs_end - __rt_psrelocs_start; ___RUNTIME_PSEUDO_RELOC_LIST_END__ = .; __RUNTIME_PSEUDO_RELOC_LIST_END__ = .; ___RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; __RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; .eh_frame BLOCK(__section_alignment__) : { KEEP(*(.eh_frame*)) } .pdata BLOCK(__section_alignment__) : { KEEP(*(.pdata*)) } .bss BLOCK(__section_alignment__) : { __bss_start__ = . ; *(.bss) *(COMMON) __bss_end__ = . ; } .edata BLOCK(__section_alignment__) : { *(.edata) } /DISCARD/ : { *(.debug$S) *(.debug$T) *(.debug$F) *(.drectve) *(.note.GNU-stack) *(.gnu.lto_*) } .idata BLOCK(__section_alignment__) : { /* This cannot currently be handled with grouped sections. See pe.em:sort_sections. */ KEEP (SORT(*)(.idata$2)) KEEP (SORT(*)(.idata$3)) /* These zeroes mark the end of the import list. */ LONG (0); LONG (0); LONG (0); LONG (0); LONG (0); KEEP (SORT(*)(.idata$4)) __IAT_start__ = .; KEEP (SORT(*)(.idata$5)) __IAT_end__ = .; KEEP (SORT(*)(.idata$6)) KEEP (SORT(*)(.idata$7)) } .CRT BLOCK(__section_alignment__) : { ___crt_xc_start__ = . ; KEEP (*(SORT(.CRT$XC*))) /* C initialization */ ___crt_xc_end__ = . ; ___crt_xi_start__ = . ; KEEP (*(SORT(.CRT$XI*))) /* C++ initialization */ ___crt_xi_end__ = . ; ___crt_xl_start__ = . ; KEEP (*(SORT(.CRT$XL*))) /* TLS callbacks */ /* ___crt_xl_end__ is defined in the TLS Directory support code */ ___crt_xp_start__ = . ; KEEP (*(SORT(.CRT$XP*))) /* Pre-termination */ ___crt_xp_end__ = . ; ___crt_xt_start__ = . ; KEEP (*(SORT(.CRT$XT*))) /* Termination */ ___crt_xt_end__ = . ; } /* Windows TLS expects .tls$AAA to be at the start and .tls$ZZZ to be at the end of section. This is important because _tls_start MUST be at the beginning of the section to enable SECREL32 relocations with TLS data. */ .tls BLOCK(__section_alignment__) : { ___tls_start__ = . ; KEEP (*(.tls$AAA)) KEEP (*(.tls)) KEEP (*(.tls$)) KEEP (*(SORT(.tls$*))) KEEP (*(.tls$ZZZ)) ___tls_end__ = . ; } .endjunk BLOCK(__section_alignment__) : { /* end is deprecated, don't use it */ PROVIDE (end = .); PROVIDE ( _end = .); __end__ = .; } .rsrc BLOCK(__section_alignment__) : SUBALIGN(4) { KEEP (*(.rsrc)) KEEP (*(.rsrc$*)) } .reloc BLOCK(__section_alignment__) : { *(.reloc) } .stab BLOCK(__section_alignment__) (NOLOAD) : { *(.stab) } .stabstr BLOCK(__section_alignment__) (NOLOAD) : { *(.stabstr) } /* DWARF debug sections. Symbols in the DWARF debugging sections are relative to the beginning of the section. Unlike other targets that fake this by putting the section VMA at 0, the PE format will not allow it. */ /* DWARF 1.1 and DWARF 2. */ .debug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_aranges) } .zdebug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_aranges) } .debug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubnames) } .zdebug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubnames) } .debug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubtypes) } .zdebug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubtypes) } /* DWARF 2. */ .debug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_info .gnu.linkonce.wi.*) } .zdebug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_info .zdebug.gnu.linkonce.wi.*) } .debug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_abbrev) } .zdebug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_abbrev) } .debug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_line) } .zdebug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_line) } .debug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_frame*) } .zdebug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_frame*) } .debug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_str) } .zdebug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_str) } .debug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_loc) } .zdebug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_loc) } .debug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macinfo) } .zdebug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macinfo) } /* SGI/MIPS DWARF 2 extensions. */ .debug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_weaknames) } .zdebug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_weaknames) } .debug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_funcnames) } .zdebug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_funcnames) } .debug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_typenames) } .zdebug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_typenames) } .debug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_varnames) } .zdebug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_varnames) } .debug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macro) } .zdebug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macro) } /* DWARF 3. */ .debug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_ranges) } .zdebug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_ranges) } /* DWARF 4. */ .debug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_types .gnu.linkonce.wt.*) } .zdebug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_types .gnu.linkonce.wt.*) } /* For Go and Rust. */ .debug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_gdb_scripts) } .zdebug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_gdb_scripts) } } /* Script for -Ur */ /* Copyright (C) 2014-2020 Free Software Foundation, Inc. Copying and distribution of this script, with or without modification, are permitted in any medium without royalty provided the copyright notice and this notice are preserved. */ OUTPUT_FORMAT(pe-i386) SEARCH_DIR("=/usr/x86_64-pep/lib"); SECTIONS { .text : { *(.text) /* Note: we always define __CTOR_LIST__ and ___CTOR_LIST__ here, we do not PROVIDE them. This is because the ctors.o startup code in libgcc defines them as common symbols, with the expectation that they will be overridden by the definitions here. If we PROVIDE the symbols then they will not be overridden and global constructors will not be run. See PR 22762 for more details. This does mean that it is not possible for a user to define their own __CTOR_LIST__ and __DTOR_LIST__ symbols; if they do, the content from those variables are included but the symbols defined here silently take precedence. If they truly need to be redefined, a custom linker script will have to be used. (The custom script can just be a copy of this script with the PROVIDE() qualifiers added). In particular this means that ld -Ur does not work, because the proper __CTOR_LIST__ set by ld -Ur is overridden by a bogus __CTOR_LIST__ set by the final link. See PR 46. */ ___CTOR_LIST__ = .; __CTOR_LIST__ = .; LONG (-1); KEEP(*(.ctors)); KEEP(*(.ctor)); KEEP(*(SORT_BY_NAME(.ctors.*))); LONG (0); /* See comment about __CTOR_LIST__ above. The same reasoning applies here too. */ ___DTOR_LIST__ = .; __DTOR_LIST__ = .; LONG (-1); KEEP(*(.dtors)); KEEP(*(.dtor)); KEEP(*(SORT_BY_NAME(.dtors.*))); LONG (0); } /* The Cygwin32 library uses a section to avoid copying certain data on fork. This used to be named ".data". The linker used to include this between __data_start__ and __data_end__, but that breaks building the cygwin32 dll. Instead, we name the section ".data_cygwin_nocopy" and explicitly include it after __data_end__. */ .data : { *(.data) KEEP(*(.jcr)) } .rdata : { *(.rdata) . = ALIGN(4); } .eh_frame : { KEEP(*(.eh_frame)) } .pdata : { KEEP(*(.pdata)) } .bss : { *(.bss) *(COMMON) } .edata : { *(.edata) } /DISCARD/ : { *(.debug$S) *(.debug$T) *(.debug$F) *(.drectve) } .idata : { /* This cannot currently be handled with grouped sections. See pe.em:sort_sections. */ } .CRT : { /* ___crt_xl_end__ is defined in the TLS Directory support code */ } /* Windows TLS expects .tls$AAA to be at the start and .tls$ZZZ to be at the end of section. This is important because _tls_start MUST be at the beginning of the section to enable SECREL32 relocations with TLS data. */ .tls : { *(.tls) } .endjunk : { /* end is deprecated, don't use it */ } .rsrc : SUBALIGN(4) { *(.rsrc) } .reloc : { *(.reloc) } .stab : { *(.stab) } .stabstr : { *(.stabstr) } /* DWARF debug sections. Symbols in the DWARF debugging sections are relative to the beginning of the section. Unlike other targets that fake this by putting the section VMA at 0, the PE format will not allow it. */ /* DWARF 1.1 and DWARF 2. */ .debug_aranges : { *(.debug_aranges) } .zdebug_aranges : { *(.zdebug_aranges) } .debug_pubnames : { *(.debug_pubnames) } .zdebug_pubnames : { *(.zdebug_pubnames) } .debug_pubtypes : { *(.debug_pubtypes) } .zdebug_pubtypes : { *(.zdebug_pubtypes) } /* DWARF 2. */ .debug_info : { *(.debug_info) } .zdebug_info : { *(.zdebug_info) } .debug_abbrev : { *(.debug_abbrev) } .zdebug_abbrev : { *(.zdebug_abbrev) } .debug_line : { *(.debug_line) } .zdebug_line : { *(.zdebug_line) } .debug_frame : { *(.debug_frame*) } .zdebug_frame : { *(.zdebug_frame*) } .debug_str : { *(.debug_str) } .zdebug_str : { *(.zdebug_str) } .debug_loc : { *(.debug_loc) } .zdebug_loc : { *(.zdebug_loc) } .debug_macinfo : { *(.debug_macinfo) } .zdebug_macinfo : { *(.zdebug_macinfo) } /* SGI/MIPS DWARF 2 extensions. */ .debug_weaknames : { *(.debug_weaknames) } .zdebug_weaknames : { *(.zdebug_weaknames) } .debug_funcnames : { *(.debug_funcnames) } .zdebug_funcnames : { *(.zdebug_funcnames) } .debug_typenames : { *(.debug_typenames) } .zdebug_typenames : { *(.zdebug_typenames) } .debug_varnames : { *(.debug_varnames) } .zdebug_varnames : { *(.zdebug_varnames) } .debug_macro : { *(.debug_macro) } .zdebug_macro : { *(.zdebug_macro) } /* DWARF 3. */ .debug_ranges : { *(.debug_ranges) } .zdebug_ranges : { *(.zdebug_ranges) } /* DWARF 4. */ .debug_types : { *(.debug_types) } .zdebug_types : { *(.zdebug_types) } /* For Go and Rust. */ .debug_gdb_scripts : { *(.debug_gdb_scripts) } .zdebug_gdb_scripts : { *(.zdebug_gdb_scripts) } } /* Script for -r */ /* Copyright (C) 2014-2020 Free Software Foundation, Inc. Copying and distribution of this script, with or without modification, are permitted in any medium without royalty provided the copyright notice and this notice are preserved. */ OUTPUT_FORMAT(pe-i386) SEARCH_DIR("=/usr/x86_64-pep/lib"); SECTIONS { .text : { *(.text) } /* The Cygwin32 library uses a section to avoid copying certain data on fork. This used to be named ".data". The linker used to include this between __data_start__ and __data_end__, but that breaks building the cygwin32 dll. Instead, we name the section ".data_cygwin_nocopy" and explicitly include it after __data_end__. */ .data : { *(.data) KEEP(*(.jcr)) } .rdata : { *(.rdata) . = ALIGN(4); } .eh_frame : { KEEP(*(.eh_frame)) } .pdata : { KEEP(*(.pdata)) } .bss : { *(.bss) *(COMMON) } .edata : { *(.edata) } /DISCARD/ : { *(.debug$S) *(.debug$T) *(.debug$F) *(.drectve) } .idata : { /* This cannot currently be handled with grouped sections. See pe.em:sort_sections. */ } .CRT : { /* ___crt_xl_end__ is defined in the TLS Directory support code */ } /* Windows TLS expects .tls$AAA to be at the start and .tls$ZZZ to be at the end of section. This is important because _tls_start MUST be at the beginning of the section to enable SECREL32 relocations with TLS data. */ .tls : { *(.tls) } .endjunk : { /* end is deprecated, don't use it */ } .rsrc : SUBALIGN(4) { *(.rsrc) } .reloc : { *(.reloc) } .stab : { *(.stab) } .stabstr : { *(.stabstr) } /* DWARF debug sections. Symbols in the DWARF debugging sections are relative to the beginning of the section. Unlike other targets that fake this by putting the section VMA at 0, the PE format will not allow it. */ /* DWARF 1.1 and DWARF 2. */ .debug_aranges : { *(.debug_aranges) } .zdebug_aranges : { *(.zdebug_aranges) } .debug_pubnames : { *(.debug_pubnames) } .zdebug_pubnames : { *(.zdebug_pubnames) } .debug_pubtypes : { *(.debug_pubtypes) } .zdebug_pubtypes : { *(.zdebug_pubtypes) } /* DWARF 2. */ .debug_info : { *(.debug_info) } .zdebug_info : { *(.zdebug_info) } .debug_abbrev : { *(.debug_abbrev) } .zdebug_abbrev : { *(.zdebug_abbrev) } .debug_line : { *(.debug_line) } .zdebug_line : { *(.zdebug_line) } .debug_frame : { *(.debug_frame*) } .zdebug_frame : { *(.zdebug_frame*) } .debug_str : { *(.debug_str) } .zdebug_str : { *(.zdebug_str) } .debug_loc : { *(.debug_loc) } .zdebug_loc : { *(.zdebug_loc) } .debug_macinfo : { *(.debug_macinfo) } .zdebug_macinfo : { *(.zdebug_macinfo) } /* SGI/MIPS DWARF 2 extensions. */ .debug_weaknames : { *(.debug_weaknames) } .zdebug_weaknames : { *(.zdebug_weaknames) } .debug_funcnames : { *(.debug_funcnames) } .zdebug_funcnames : { *(.zdebug_funcnames) } .debug_typenames : { *(.debug_typenames) } .zdebug_typenames : { *(.zdebug_typenames) } .debug_varnames : { *(.debug_varnames) } .zdebug_varnames : { *(.zdebug_varnames) } .debug_macro : { *(.debug_macro) } .zdebug_macro : { *(.zdebug_macro) } /* DWARF 3. */ .debug_ranges : { *(.debug_ranges) } .zdebug_ranges : { *(.zdebug_ranges) } /* DWARF 4. */ .debug_types : { *(.debug_types) } .zdebug_types : { *(.zdebug_types) } /* For Go and Rust. */ .debug_gdb_scripts : { *(.debug_gdb_scripts) } .zdebug_gdb_scripts : { *(.zdebug_gdb_scripts) } } /* Script for -n */ /* Copyright (C) 2014-2020 Free Software Foundation, Inc. Copying and distribution of this script, with or without modification, are permitted in any medium without royalty provided the copyright notice and this notice are preserved. */ OUTPUT_FORMAT(pei-i386) SEARCH_DIR("=/usr/x86_64-pep/lib"); SECTIONS { /* Make the virtual address and file offset synced if the alignment is lower than the target page size. */ . = SIZEOF_HEADERS; . = ALIGN(__section_alignment__); .text __image_base__ + ( __section_alignment__ < 0x1000 ? . : __section_alignment__ ) : { KEEP (*(SORT_NONE(.init))) *(.text) *(SORT(.text$*)) *(.text.*) *(.gnu.linkonce.t.*) *(.glue_7t) *(.glue_7) /* Note: we always define __CTOR_LIST__ and ___CTOR_LIST__ here, we do not PROVIDE them. This is because the ctors.o startup code in libgcc defines them as common symbols, with the expectation that they will be overridden by the definitions here. If we PROVIDE the symbols then they will not be overridden and global constructors will not be run. See PR 22762 for more details. This does mean that it is not possible for a user to define their own __CTOR_LIST__ and __DTOR_LIST__ symbols; if they do, the content from those variables are included but the symbols defined here silently take precedence. If they truly need to be redefined, a custom linker script will have to be used. (The custom script can just be a copy of this script with the PROVIDE() qualifiers added). In particular this means that ld -Ur does not work, because the proper __CTOR_LIST__ set by ld -Ur is overridden by a bogus __CTOR_LIST__ set by the final link. See PR 46. */ ___CTOR_LIST__ = .; __CTOR_LIST__ = .; LONG (-1); KEEP(*(.ctors)); KEEP(*(.ctor)); KEEP(*(SORT_BY_NAME(.ctors.*))); LONG (0); /* See comment about __CTOR_LIST__ above. The same reasoning applies here too. */ ___DTOR_LIST__ = .; __DTOR_LIST__ = .; LONG (-1); KEEP(*(.dtors)); KEEP(*(.dtor)); KEEP(*(SORT_BY_NAME(.dtors.*))); LONG (0); KEEP (*(SORT_NONE(.fini))) /* ??? Why is .gcc_exc here? */ *(.gcc_exc) PROVIDE (etext = .); PROVIDE (_etext = .); KEEP (*(.gcc_except_table)) } /* The Cygwin32 library uses a section to avoid copying certain data on fork. This used to be named ".data". The linker used to include this between __data_start__ and __data_end__, but that breaks building the cygwin32 dll. Instead, we name the section ".data_cygwin_nocopy" and explicitly include it after __data_end__. */ .data BLOCK(__section_alignment__) : { __data_start__ = . ; *(.data) *(.data2) *(SORT(.data$*)) KEEP(*(.jcr)) __data_end__ = . ; *(.data_cygwin_nocopy) } .rdata BLOCK(__section_alignment__) : { *(.rdata) *(SORT(.rdata$*)) . = ALIGN(4); __rt_psrelocs_start = .; KEEP(*(.rdata_runtime_pseudo_reloc)) __rt_psrelocs_end = .; } __rt_psrelocs_size = __rt_psrelocs_end - __rt_psrelocs_start; ___RUNTIME_PSEUDO_RELOC_LIST_END__ = .; __RUNTIME_PSEUDO_RELOC_LIST_END__ = .; ___RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; __RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; .eh_frame BLOCK(__section_alignment__) : { KEEP(*(.eh_frame*)) } .pdata BLOCK(__section_alignment__) : { KEEP(*(.pdata*)) } .bss BLOCK(__section_alignment__) : { __bss_start__ = . ; *(.bss) *(COMMON) __bss_end__ = . ; } .edata BLOCK(__section_alignment__) : { *(.edata) } /DISCARD/ : { *(.debug$S) *(.debug$T) *(.debug$F) *(.drectve) *(.note.GNU-stack) *(.gnu.lto_*) } .idata BLOCK(__section_alignment__) : { /* This cannot currently be handled with grouped sections. See pe.em:sort_sections. */ KEEP (SORT(*)(.idata$2)) KEEP (SORT(*)(.idata$3)) /* These zeroes mark the end of the import list. */ LONG (0); LONG (0); LONG (0); LONG (0); LONG (0); KEEP (SORT(*)(.idata$4)) __IAT_start__ = .; KEEP (SORT(*)(.idata$5)) __IAT_end__ = .; KEEP (SORT(*)(.idata$6)) KEEP (SORT(*)(.idata$7)) } .CRT BLOCK(__section_alignment__) : { ___crt_xc_start__ = . ; KEEP (*(SORT(.CRT$XC*))) /* C initialization */ ___crt_xc_end__ = . ; ___crt_xi_start__ = . ; KEEP (*(SORT(.CRT$XI*))) /* C++ initialization */ ___crt_xi_end__ = . ; ___crt_xl_start__ = . ; KEEP (*(SORT(.CRT$XL*))) /* TLS callbacks */ /* ___crt_xl_end__ is defined in the TLS Directory support code */ ___crt_xp_start__ = . ; KEEP (*(SORT(.CRT$XP*))) /* Pre-termination */ ___crt_xp_end__ = . ; ___crt_xt_start__ = . ; KEEP (*(SORT(.CRT$XT*))) /* Termination */ ___crt_xt_end__ = . ; } /* Windows TLS expects .tls$AAA to be at the start and .tls$ZZZ to be at the end of section. This is important because _tls_start MUST be at the beginning of the section to enable SECREL32 relocations with TLS data. */ .tls BLOCK(__section_alignment__) : { ___tls_start__ = . ; KEEP (*(.tls$AAA)) KEEP (*(.tls)) KEEP (*(.tls$)) KEEP (*(SORT(.tls$*))) KEEP (*(.tls$ZZZ)) ___tls_end__ = . ; } .endjunk BLOCK(__section_alignment__) : { /* end is deprecated, don't use it */ PROVIDE (end = .); PROVIDE ( _end = .); __end__ = .; } .rsrc BLOCK(__section_alignment__) : SUBALIGN(4) { KEEP (*(.rsrc)) KEEP (*(.rsrc$*)) } .reloc BLOCK(__section_alignment__) : { *(.reloc) } .stab BLOCK(__section_alignment__) (NOLOAD) : { *(.stab) } .stabstr BLOCK(__section_alignment__) (NOLOAD) : { *(.stabstr) } /* DWARF debug sections. Symbols in the DWARF debugging sections are relative to the beginning of the section. Unlike other targets that fake this by putting the section VMA at 0, the PE format will not allow it. */ /* DWARF 1.1 and DWARF 2. */ .debug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_aranges) } .zdebug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_aranges) } .debug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubnames) } .zdebug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubnames) } .debug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubtypes) } .zdebug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubtypes) } /* DWARF 2. */ .debug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_info .gnu.linkonce.wi.*) } .zdebug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_info .zdebug.gnu.linkonce.wi.*) } .debug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_abbrev) } .zdebug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_abbrev) } .debug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_line) } .zdebug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_line) } .debug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_frame*) } .zdebug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_frame*) } .debug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_str) } .zdebug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_str) } .debug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_loc) } .zdebug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_loc) } .debug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macinfo) } .zdebug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macinfo) } /* SGI/MIPS DWARF 2 extensions. */ .debug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_weaknames) } .zdebug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_weaknames) } .debug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_funcnames) } .zdebug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_funcnames) } .debug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_typenames) } .zdebug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_typenames) } .debug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_varnames) } .zdebug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_varnames) } .debug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macro) } .zdebug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macro) } /* DWARF 3. */ .debug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_ranges) } .zdebug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_ranges) } /* DWARF 4. */ .debug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_types .gnu.linkonce.wt.*) } .zdebug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_types .gnu.linkonce.wt.*) } /* For Go and Rust. */ .debug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_gdb_scripts) } .zdebug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_gdb_scripts) } } /* Default linker script, for normal executables */ /* Copyright (C) 2014-2020 Free Software Foundation, Inc. Copying and distribution of this script, with or without modification, are permitted in any medium without royalty provided the copyright notice and this notice are preserved. */ OUTPUT_FORMAT(pei-i386) SEARCH_DIR("=/usr/x86_64-pep/lib"); SECTIONS { /* Make the virtual address and file offset synced if the alignment is lower than the target page size. */ . = SIZEOF_HEADERS; . = ALIGN(__section_alignment__); .text __image_base__ + ( __section_alignment__ < 0x1000 ? . : __section_alignment__ ) : { KEEP (*(SORT_NONE(.init))) *(.text) *(SORT(.text$*)) *(.text.*) *(.gnu.linkonce.t.*) *(.glue_7t) *(.glue_7) /* Note: we always define __CTOR_LIST__ and ___CTOR_LIST__ here, we do not PROVIDE them. This is because the ctors.o startup code in libgcc defines them as common symbols, with the expectation that they will be overridden by the definitions here. If we PROVIDE the symbols then they will not be overridden and global constructors will not be run. See PR 22762 for more details. This does mean that it is not possible for a user to define their own __CTOR_LIST__ and __DTOR_LIST__ symbols; if they do, the content from those variables are included but the symbols defined here silently take precedence. If they truly need to be redefined, a custom linker script will have to be used. (The custom script can just be a copy of this script with the PROVIDE() qualifiers added). In particular this means that ld -Ur does not work, because the proper __CTOR_LIST__ set by ld -Ur is overridden by a bogus __CTOR_LIST__ set by the final link. See PR 46. */ ___CTOR_LIST__ = .; __CTOR_LIST__ = .; LONG (-1); KEEP(*(.ctors)); KEEP(*(.ctor)); KEEP(*(SORT_BY_NAME(.ctors.*))); LONG (0); /* See comment about __CTOR_LIST__ above. The same reasoning applies here too. */ ___DTOR_LIST__ = .; __DTOR_LIST__ = .; LONG (-1); KEEP(*(.dtors)); KEEP(*(.dtor)); KEEP(*(SORT_BY_NAME(.dtors.*))); LONG (0); KEEP (*(SORT_NONE(.fini))) /* ??? Why is .gcc_exc here? */ *(.gcc_exc) PROVIDE (etext = .); PROVIDE (_etext = .); KEEP (*(.gcc_except_table)) } /* The Cygwin32 library uses a section to avoid copying certain data on fork. This used to be named ".data". The linker used to include this between __data_start__ and __data_end__, but that breaks building the cygwin32 dll. Instead, we name the section ".data_cygwin_nocopy" and explicitly include it after __data_end__. */ .data BLOCK(__section_alignment__) : { __data_start__ = . ; *(.data) *(.data2) *(SORT(.data$*)) KEEP(*(.jcr)) __data_end__ = . ; *(.data_cygwin_nocopy) } .rdata BLOCK(__section_alignment__) : { *(.rdata) *(SORT(.rdata$*)) . = ALIGN(4); __rt_psrelocs_start = .; KEEP(*(.rdata_runtime_pseudo_reloc)) __rt_psrelocs_end = .; } __rt_psrelocs_size = __rt_psrelocs_end - __rt_psrelocs_start; ___RUNTIME_PSEUDO_RELOC_LIST_END__ = .; __RUNTIME_PSEUDO_RELOC_LIST_END__ = .; ___RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; __RUNTIME_PSEUDO_RELOC_LIST__ = . - __rt_psrelocs_size; .eh_frame BLOCK(__section_alignment__) : { KEEP(*(.eh_frame*)) } .pdata BLOCK(__section_alignment__) : { KEEP(*(.pdata*)) } .bss BLOCK(__section_alignment__) : { __bss_start__ = . ; *(.bss) *(COMMON) __bss_end__ = . ; } .edata BLOCK(__section_alignment__) : { *(.edata) } /DISCARD/ : { *(.debug$S) *(.debug$T) *(.debug$F) *(.drectve) *(.note.GNU-stack) *(.gnu.lto_*) } .idata BLOCK(__section_alignment__) : { /* This cannot currently be handled with grouped sections. See pe.em:sort_sections. */ KEEP (SORT(*)(.idata$2)) KEEP (SORT(*)(.idata$3)) /* These zeroes mark the end of the import list. */ LONG (0); LONG (0); LONG (0); LONG (0); LONG (0); KEEP (SORT(*)(.idata$4)) __IAT_start__ = .; KEEP (SORT(*)(.idata$5)) __IAT_end__ = .; KEEP (SORT(*)(.idata$6)) KEEP (SORT(*)(.idata$7)) } .CRT BLOCK(__section_alignment__) : { ___crt_xc_start__ = . ; KEEP (*(SORT(.CRT$XC*))) /* C initialization */ ___crt_xc_end__ = . ; ___crt_xi_start__ = . ; KEEP (*(SORT(.CRT$XI*))) /* C++ initialization */ ___crt_xi_end__ = . ; ___crt_xl_start__ = . ; KEEP (*(SORT(.CRT$XL*))) /* TLS callbacks */ /* ___crt_xl_end__ is defined in the TLS Directory support code */ ___crt_xp_start__ = . ; KEEP (*(SORT(.CRT$XP*))) /* Pre-termination */ ___crt_xp_end__ = . ; ___crt_xt_start__ = . ; KEEP (*(SORT(.CRT$XT*))) /* Termination */ ___crt_xt_end__ = . ; } /* Windows TLS expects .tls$AAA to be at the start and .tls$ZZZ to be at the end of section. This is important because _tls_start MUST be at the beginning of the section to enable SECREL32 relocations with TLS data. */ .tls BLOCK(__section_alignment__) : { ___tls_start__ = . ; KEEP (*(.tls$AAA)) KEEP (*(.tls)) KEEP (*(.tls$)) KEEP (*(SORT(.tls$*))) KEEP (*(.tls$ZZZ)) ___tls_end__ = . ; } .endjunk BLOCK(__section_alignment__) : { /* end is deprecated, don't use it */ PROVIDE (end = .); PROVIDE ( _end = .); __end__ = .; } .rsrc BLOCK(__section_alignment__) : SUBALIGN(4) { KEEP (*(.rsrc)) KEEP (*(.rsrc$*)) } .reloc BLOCK(__section_alignment__) : { *(.reloc) } .stab BLOCK(__section_alignment__) (NOLOAD) : { *(.stab) } .stabstr BLOCK(__section_alignment__) (NOLOAD) : { *(.stabstr) } /* DWARF debug sections. Symbols in the DWARF debugging sections are relative to the beginning of the section. Unlike other targets that fake this by putting the section VMA at 0, the PE format will not allow it. */ /* DWARF 1.1 and DWARF 2. */ .debug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_aranges) } .zdebug_aranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_aranges) } .debug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubnames) } .zdebug_pubnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubnames) } .debug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_pubtypes) } .zdebug_pubtypes BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_pubtypes) } /* DWARF 2. */ .debug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_info .gnu.linkonce.wi.*) } .zdebug_info BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_info .zdebug.gnu.linkonce.wi.*) } .debug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_abbrev) } .zdebug_abbrev BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_abbrev) } .debug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_line) } .zdebug_line BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_line) } .debug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_frame*) } .zdebug_frame BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_frame*) } .debug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_str) } .zdebug_str BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_str) } .debug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_loc) } .zdebug_loc BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_loc) } .debug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macinfo) } .zdebug_macinfo BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macinfo) } /* SGI/MIPS DWARF 2 extensions. */ .debug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_weaknames) } .zdebug_weaknames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_weaknames) } .debug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_funcnames) } .zdebug_funcnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_funcnames) } .debug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_typenames) } .zdebug_typenames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_typenames) } .debug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_varnames) } .zdebug_varnames BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_varnames) } .debug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_macro) } .zdebug_macro BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_macro) } /* DWARF 3. */ .debug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_ranges) } .zdebug_ranges BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_ranges) } /* DWARF 4. */ .debug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_types .gnu.linkonce.wt.*) } .zdebug_types BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_types .gnu.linkonce.wt.*) } /* For Go and Rust. */ .debug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.debug_gdb_scripts) } .zdebug_gdb_scripts BLOCK(__section_alignment__) (NOLOAD) : { *(.zdebug_gdb_scripts) } } %P: warning: --export-dynamic is not supported for PE targets, did you mean --export-all-symbols? enable-runtime-pseudo-reloc-v10ИpP0ȕ`@ ȕ`@ pX@ `@ ЖpP8 pmainCRTStartuppe_fixup_stdcallsgld_i386pe_after_opengld_i386pe_set_symbolsset_pe_nameis_underscoringinclude%P: %pB: bfd_stat failed: %E .so.libc.sofound %s at %s lib64RIGIN}IB}../../ld/ldelf.c%.*s%s/%s%.*s%s.note.gnu.build-id.note.GNU-stack.eh_frame_entry.eh_frame.eh_frame_hdr%s needed by %pB LD_LIBRARY_PATHLD_RUN_PATH/var/run/ld-elf.so.hints/etc/ld.so.conf__ehdr_start.gnu.warning%s/lib%s%s.so.rela.dyn.mbind.rodata.mbind.bss.mbind.data.mbind.text.rel.dyn.rel.gnu.warning..note.plt.tdata.interp.sdata.comment%P: warning: %s, needed by %pB, may conflict with %s %P: warning: .note.gnu.build-id section discarded, --build-id ignored %P: failed to record assignment to %s: %E %P: %pB: bfd_elf_get_bfd_needed_list failed: %E unrecognised or unsupported token '%s' in search path %P: warning: -z dynamic-undefined-weak ignored %P: %pB: --just-symbols may not be used on DSO %P: warning: cannot create .note.gnu.build-id section, --build-id ignored %P: %s: can't open for writing: %E %P: compact frame descriptions incompatible with DWARF2 .eh_frame from %pB %P: warning: cannot create .eh_frame_hdr section, --eh-frame-hdr ignored %P: failed to parse EH frame entries %P: warning: %s, needed by %pB, not found (try using -rpath or -rpath-link) %P: failed to set dynamic section sizes: %E %P: %pB: can't read contents of section %pA: %E 0ldelf_search_needed../../ld/ldelfgen.c%P: looping in map_segments %P: map sections to segments failed: %E %P: warning: CTF strtab association failed; strings will not be shared: %s %P: warning: CTF symbol shuffling failed; slight space cost: %s LIBRARY%s.%s$:-_?@$:-_?/@<>CODEconstantDESCRIPTIONDIRECTIVEEXPORTSHEAPSIZEIMPORTSnonameprivateSTACKSIZEVERSION%s.%s%s%P: %s:%d: %s SEGMENTS-heap-attr-export-aligncomm%s:%d: Warning: path components stripped from %s, '%s' Warning: .drectve `%s' unrecognized Warning: corrupt .drectve at end of def file 1pjxxxyxxxJ_uu__xx ?AxxJxx5u_w% S@'hh@@B5@B@7@C@@IqOXXXXXXXXXXXXXXXXXXXXXXXXXXXXOXXX#$$%%%%%%%%%%%%%%&&&'(())))))))**++++++,,--..//0011112222222222222222222222333334455667788999::;;<=   g ' :7G JNW ! \_!"!f   u: >8R/'+/<r6,s@0123A7BSqI !"#$%-&r'=xyD<Tz{|}G~`^_ac0123JeQYKZ-Nj-mW\]fEbph iQkn uvrF V [UdPH +M :;>?894RO5()*tgXLClw.okAKR]9feRRBHCD=LQZZb112345 - ) X ![MN.+*(V \_PO0,W/T^acYU'`]//STTTT&$%TT"#z 55  _ /CC6600 :2=@! / ? 50 %s LIBRARY NAME BASE=0xDESCRIPTION VERSION %d.%d VERSION %d STACKSIZE 0x%x,0x%x STACKSIZE 0x%x HEAPSIZE 0x%x,0x%x HEAPSIZE 0x%x SECTIONS CLASS READ WRITE EXECUTE SHAREDEXPORTS @%d PRIVATE CONSTANT NONAME DATA IMPORTS == ; no contents available __pei386_runtime_relocator__fu%d_nmth%06d.o__nm_thnk_fu%06d.o.rdata_runtime_pseudo_relocertr%06d.oCreating library file: %s %X%P: bfd_openr %s: %E %X%P: bfd_close %s: %E %s%s%s(data)%X%P: open %s: %E %s is already loaded .drectverel: %s _NULL_THUNK_DATA__builtin__IMPORT_DESCRIPTOR_dllcrt1.odllcrt2.ogcrt0.ogcrt1.ogcrt2.ocrtbegin.ocrtend.olibcygwinlibgcclibgcc_slibstdc++libmingw32libmingwexlibg2clibsupc++libobjclibgcjlibmsvcrtlibmsvcrt-oslibucrtbasepe-bigobj-x86-64pei-shlpe-shlpei-mipspe-mipspei-arm-littlepe-arm-littlepei-arm-wince-littlepe-arm-wince-little_NULL_IMPORT_DESCRIPTORcygwin_crt0DllMainDllEntryPoint_cygwin_dll_entry_cygwin_crt0_common_cygwin_noncygwin_dll_entrycygwin_premain0cygwin_premain1cygwin_premain2cygwin_premain3do_pseudo_reloc_impure_ptr_fmodeenviron__dso_handle_DllMainCRTStartup%X%P: can not create .edata section: %E %X%P: can not create .reloc section: %E considering exporting: %s, abfd=%p, abfd->my_arc=%p %X%P: unsupported PEI architecture: %s Info: resolving %s by linking to %s (auto-import) %P: warning: auto-importing has been activated without --enable-auto-import specified on the command line; this should work unless it involves constant data structures referencing symbols from auto-imported DLLs %P: can't open output def file %s creating runtime pseudo-reloc entry for %s (addend=%d) %X%P: %C: variable '%pT' can't be auto-imported; please read the documentation for ld's --enable-auto-import for details %X%P: can't open .lib file: %s %X%P: %s(%s): can't find member in non-archive file%X%P: bfd_set_archive_head: %E %X%P: %s(%s): can't find member in archive%X%P: %s: this doesn't appear to be a DLL %s %s: 0x%08lx-0x%08lx (0x%08lx) %s dll-name: %s sym: %s addr: 0x%lx %s %X%P: error: can't use long section names on this arch %X%P: cannot export %s: invalid export name %X%P: error, duplicate EXPORT with ordinals: %s (%d vs %d) %P: warning, duplicate EXPORT: %s %X%P: cannot export %s: symbol not defined %X%P: cannot export %s: symbol wrong type (%d vs %d) %X%P: cannot export %s: symbol not found %X%P: error: ordinal used twice: %d (%s vs %s) %X%P: error: export ordinal too large: %d %P: zero vma section reloc detected: `%s' #%d f=%d %X%P: error: %d-bit reloc in dll pep_implied_import_dllmake_onepep_find_data_importspep_dll_id_target<`+@ %@feat.00DllMain@12DllEntryPoint@0_cygwin_dll_entry@12_cygwin_crt0_common@8cygwin_attach_dll_cygwin_noncygwin_dll_entry@12pe_implied_import_dllmake_onepe_find_data_importspe_dll_id_target<`+@ %%s: error: too many @-files encountered %s: error: @-file refers to a directory ;Đ<Dd|DUlX! 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