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[/] [scarts/] [trunk/] [toolchain/] [scarts-memmap/] [src/] [make/] [scarts_32.ld] - Rev 8
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ENTRY(_start)OUTPUT_FORMAT("elf32-scarts_32", "elf32-scarts_32", "elf32-scarts_32")OUTPUT_ARCH(scarts_32)SEARCH_DIR(@SCARTS_SEARCH_DIR@)/** This is the map for the code memory (addresses grow downwards)* +--------------------+ <- @SCARTS_CODEMEM_VMA_START@* | .text |* +--------------------+ <- @SCARTS_CODEMEM_USABLE_VMA_END@** This is the map for the data memory (addresses grow downwards)* +--------------------+ <- @SCARTS_DATAMEM_VMA_START@* | .rodata | constant data goes here* +--------------------+* | .data | initialized data goes here* +--------------------+* | .bss |* | __bss_start | start of bss* | _end | start of heap* +--------------------+* . .* . .* . .* | __stack | top of stack* +--------------------+ <- @SCARTS_DATAMEM_USABLE_VMA_END@*//* MWA: please see important comments on the allocation of various sections inmemory throughout this document. */MEMORY{ROM (rx) : ORIGIN = @SCARTS_CODEMEM_VMA_START@, LENGTH = @SCARTS_CODEMEM_USABLE_SIZE@ROM_LMA (rx) : ORIGIN = @SCARTS_CODEMEM_LMA_START@, LENGTH = @SCARTS_CODEMEM_USABLE_SIZE@RAM (!rx) : ORIGIN = @SCARTS_DATAMEM_VMA_START@, LENGTH = @SCARTS_DATAMEM_USABLE_SIZE@RAM_LMA (!rx) : ORIGIN = @SCARTS_DATAMEM_LMA_START@, LENGTH = @SCARTS_DATAMEM_USABLE_SIZE@}/* Allocate the stack at the top of the data memory, since the stack grows down. */PROVIDE (__stack = @SCARTS_DATAMEM_USABLE_SIZE@);SECTIONS{/* Read-only sections, merged into text segment: */PROVIDE (__executable_start = 0); . = 0;.interp : { *(.interp) }.note.gnu.build-id : { *(.note.gnu.build-id) }.hash : { *(.hash) }.gnu.hash : { *(.gnu.hash) }.dynsym : { *(.dynsym) }.dynstr : { *(.dynstr) }.gnu.version : { *(.gnu.version) }.gnu.version_d : { *(.gnu.version_d) }.gnu.version_r : { *(.gnu.version_r) }.rel.init : { *(.rel.init) }.rela.init : { *(.rela.init) }.rel.text : { *(.rel.text .rel.text.* .rel.gnu.linkonce.t.*) }.rela.text : { *(.rela.text .rela.text.* .rela.gnu.linkonce.t.*) }.rel.fini : { *(.rel.fini) }.rela.fini : { *(.rela.fini) }.rel.rodata : { *(.rel.rodata .rel.rodata.* .rel.gnu.linkonce.r.*) }.rela.rodata : { *(.rela.rodata .rela.rodata.* .rela.gnu.linkonce.r.*) }.rel.data.rel.ro : { *(.rel.data.rel.ro* .rel.gnu.linkonce.d.rel.ro.*) }.rela.data.rel.ro : { *(.rela.data.rel.ro* .rela.gnu.linkonce.d.rel.ro.*) }.rel.data : { *(.rel.data .rel.data.* .rel.gnu.linkonce.d.*) }.rela.data : { *(.rela.data .rela.data.* .rela.gnu.linkonce.d.*) }.rel.tdata : { *(.rel.tdata .rel.tdata.* .rel.gnu.linkonce.td.*) }.rela.tdata : { *(.rela.tdata .rela.tdata.* .rela.gnu.linkonce.td.*) }.rel.tbss : { *(.rel.tbss .rel.tbss.* .rel.gnu.linkonce.tb.*) }.rela.tbss : { *(.rela.tbss .rela.tbss.* .rela.gnu.linkonce.tb.*) }.rel.ctors : { *(.rel.ctors) }.rela.ctors : { *(.rela.ctors) }.rel.dtors : { *(.rel.dtors) }.rela.dtors : { *(.rela.dtors) }.rel.got : { *(.rel.got) }.rela.got : { *(.rela.got) }.rel.sdata : { *(.rel.sdata .rel.sdata.* .rel.gnu.linkonce.s.*) }.rela.sdata : { *(.rela.sdata .rela.sdata.* .rela.gnu.linkonce.s.*) }.rel.sbss : { *(.rel.sbss .rel.sbss.* .rel.gnu.linkonce.sb.*) }.rela.sbss : { *(.rela.sbss .rela.sbss.* .rela.gnu.linkonce.sb.*) }.rel.sdata2 : { *(.rel.sdata2 .rel.sdata2.* .rel.gnu.linkonce.s2.*) }.rela.sdata2 : { *(.rela.sdata2 .rela.sdata2.* .rela.gnu.linkonce.s2.*) }.rel.sbss2 : { *(.rel.sbss2 .rel.sbss2.* .rel.gnu.linkonce.sb2.*) }.rela.sbss2 : { *(.rela.sbss2 .rela.sbss2.* .rela.gnu.linkonce.sb2.*) }.rel.bss : { *(.rel.bss .rel.bss.* .rel.gnu.linkonce.b.*) }.rela.bss : { *(.rela.bss .rela.bss.* .rela.gnu.linkonce.b.*) }.rel.plt : { *(.rel.plt) }.rela.plt : { *(.rela.plt) }.init :{KEEP (*(.init))} =0.plt : { *(.plt) }.text :{*(.text .stub .text.* .gnu.linkonce.t.*)KEEP (*(.text.*personality*))/* .gnu.warning sections are handled specially by elf32.em. */*(.gnu.warning)} >ROM AT>ROM_LMA.fini :{KEEP (*(.fini))} =0PROVIDE (__etext = .);PROVIDE (_etext = .);PROVIDE (etext = .);/* MWA: The .rodata section is allocated in RAM, not in ROM, since, in theSCARTS architecture, the ROM can only be addressed instruction-wise. Asa result, the address for the data segment is reset before the .rodatasection is defined. *//* Adjust the address for the data segment. We want to adjust up tothe same address within the page on the next page up. */. = 0;/* MWA: For some, yet unknown, reason, large data types may be misaligned atthe LMA, but be correctly aligned at the VMA. As an imperfect workaroundwe enforce proper alignment by the following simple address arithmetic:LMA(x) = VMA(x) (for RAM == RAM_LMA) *//* .rodata : { *(.rodata .rodata.* .gnu.linkonce.r.*) } >RAM AT>RAM_LMA */.rodata : AT(ADDR(.rodata)){*(.rodata .rodata.* .gnu.linkonce.r.*)} >RAM.rodata1 : { *(.rodata1) }.sdata2 :{*(.sdata2 .sdata2.* .gnu.linkonce.s2.*)}.sbss2 : { *(.sbss2 .sbss2.* .gnu.linkonce.sb2.*) }.eh_frame_hdr : { *(.eh_frame_hdr) }.eh_frame : ONLY_IF_RO { KEEP (*(.eh_frame)) }.gcc_except_table : ONLY_IF_RO { *(.gcc_except_table .gcc_except_table.*) }/* Exception handling */.eh_frame : ONLY_IF_RW { KEEP (*(.eh_frame)) }.gcc_except_table : ONLY_IF_RW { *(.gcc_except_table .gcc_except_table.*) }/* Thread Local Storage sections */.tdata : { *(.tdata .tdata.* .gnu.linkonce.td.*) }.tbss : { *(.tbss .tbss.* .gnu.linkonce.tb.*) *(.tcommon) }.preinit_array :{PROVIDE_HIDDEN (__preinit_array_start = .);KEEP (*(.preinit_array))PROVIDE_HIDDEN (__preinit_array_end = .);}.init_array :{PROVIDE_HIDDEN (__init_array_start = .);KEEP (*(SORT(.init_array.*)))KEEP (*(.init_array))PROVIDE_HIDDEN (__init_array_end = .);}.fini_array :{PROVIDE_HIDDEN (__fini_array_start = .);KEEP (*(.fini_array))KEEP (*(SORT(.fini_array.*)))PROVIDE_HIDDEN (__fini_array_end = .);}.ctors :{/* gcc uses crtbegin.o to find the start ofthe constructors, so we make sure it isfirst. Because this is a wildcard, itdoesn't matter if the user does notactually link against crtbegin.o; thelinker won't look for a file to match awildcard. The wildcard also means that itdoesn't matter which directory crtbegin.ois in. */KEEP (*crtbegin.o(.ctors))KEEP (*crtbegin?.o(.ctors))/* We don't want to include the .ctor section fromthe crtend.o file until after the sorted ctors.The .ctor section from the crtend file contains theend of ctors marker and it must be last */KEEP (*(EXCLUDE_FILE (*crtend.o *crtend?.o ) .ctors))KEEP (*(SORT(.ctors.*)))KEEP (*(.ctors))}.dtors :{KEEP (*crtbegin.o(.dtors))KEEP (*crtbegin?.o(.dtors))KEEP (*(EXCLUDE_FILE (*crtend.o *crtend?.o ) .dtors))KEEP (*(SORT(.dtors.*)))KEEP (*(.dtors))}.jcr : { KEEP (*(.jcr)) }.data.rel.ro : { *(.data.rel.ro.local* .gnu.linkonce.d.rel.ro.local.*) *(.data.rel.ro* .gnu.linkonce.d.rel.ro.*) }.dynamic : { *(.dynamic) }/* MWA: For some, yet unknown, reason, large data types may be misaligned atthe LMA, but be correctly aligned at the VMA. As an imperfect workaroundwe enforce proper alignment by the following simple address arithmetic:LMA(x) = VMA(x) (for RAM == RAM_LMA) *//* .data :{*(.data .data.* .gnu.linkonce.d.*)KEEP (*(.gnu.linkonce.d.*personality*))SORT(CONSTRUCTORS)} >RAM AT>RAM_LMA */.data : AT(ADDR(.data)){*(.data .data.* .gnu.linkonce.d.*)KEEP (*(.gnu.linkonce.d.*personality*))SORT(CONSTRUCTORS)} >RAM.data1 : { *(.data1) }.got : { *(.got.plt) *(.got) }/* We want the small data sections together, so single-instruction offsetscan access them all, and initialized data all before uninitialized, sowe can shorten the on-disk segment size. */.sdata :{*(.sdata .sdata.* .gnu.linkonce.s.*)}_edata = .; PROVIDE (edata = .);__bss_start = .;.sbss :{*(.dynsbss)*(.sbss .sbss.* .gnu.linkonce.sb.*)*(.scommon)}/* MWA: For some, yet unknown, reason, large data types may be misaligned atthe LMA, but be correctly aligned at the VMA. As an imperfect workaroundwe enforce proper alignment by the following simple address arithmetic:LMA(x) = VMA(x) (for RAM == RAM_LMA) *//* .bss :{*(.dynbss)*(.bss .bss.* .gnu.linkonce.b.*)*(COMMON). = ALIGN(. != 0 ? 2 : 1);} >RAM AT>RAM_LMA */.bss : AT(ADDR(.bss)){*(.dynbss)*(.bss .bss.* .gnu.linkonce.b.*)*(COMMON)/* Align here to ensure that the .bss section occupies space up to_end. Align after .bss to ensure correct alignment even if the.bss section disappears because there are no input sections.FIXME: Why do we need it? When there is no .bss section, we don'tpad the .data section. */. = ALIGN(. != 0 ? 2 : 1);} >RAM. = ALIGN(2);. = ALIGN(2);_end = .; PROVIDE (end = .);/* Stabs debugging sections. */.stab 0 : { *(.stab) }.stabstr 0 : { *(.stabstr) }.stab.excl 0 : { *(.stab.excl) }.stab.exclstr 0 : { *(.stab.exclstr) }.stab.index 0 : { *(.stab.index) }.stab.indexstr 0 : { *(.stab.indexstr) }.comment 0 : { *(.comment) }/* DWARF debug sections.Symbols in the DWARF debugging sections are relative to the beginningof the section so we begin them at 0. *//* DWARF 1 */.debug 0 : { *(.debug) }.line 0 : { *(.line) }/* GNU DWARF 1 extensions */.debug_srcinfo 0 : { *(.debug_srcinfo) }.debug_sfnames 0 : { *(.debug_sfnames) }/* DWARF 1.1 and DWARF 2 */.debug_aranges 0 : { *(.debug_aranges) }.debug_pubnames 0 : { *(.debug_pubnames) }/* DWARF 2 */.debug_info 0 : { *(.debug_info .gnu.linkonce.wi.*) }.debug_abbrev 0 : { *(.debug_abbrev) }.debug_line 0 : { *(.debug_line) }.debug_frame 0 : { *(.debug_frame) }.debug_str 0 : { *(.debug_str) }.debug_loc 0 : { *(.debug_loc) }.debug_macinfo 0 : { *(.debug_macinfo) }/* SGI/MIPS DWARF 2 extensions */.debug_weaknames 0 : { *(.debug_weaknames) }.debug_funcnames 0 : { *(.debug_funcnames) }.debug_typenames 0 : { *(.debug_typenames) }.debug_varnames 0 : { *(.debug_varnames) }/* DWARF 3 */.debug_pubtypes 0 : { *(.debug_pubtypes) }.debug_ranges 0 : { *(.debug_ranges) }.gnu.attributes 0 : { KEEP (*(.gnu.attributes)) }/DISCARD/ : { *(.note.GNU-stack) *(.gnu_debuglink) }}
