mirror of
https://github.com/trezor/trezor-firmware.git
synced 2024-12-16 11:28:14 +00:00
107 lines
3.1 KiB
Plaintext
107 lines
3.1 KiB
Plaintext
/*
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TREZORv2 linker script
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based on common.ld and stm32f405.ld
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*/
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/* Specify the memory areas */
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MEMORY
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{
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FLASH (rx) : ORIGIN = 0x08010000, LENGTH = 64K
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CCMRAM (xrw) : ORIGIN = 0x10000000, LENGTH = 64K
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RAM (xrw) : ORIGIN = 0x20000000, LENGTH = 128K
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}
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/* produce a link error if there is not this amount of RAM for these sections */
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_minimum_stack_size = 2K;
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_minimum_heap_size = 16K;
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/* Define tho top end of the stack. The stack is full descending so begins just
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above last byte of RAM. Note that EABI requires the stack to be 8-byte
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aligned for a call. */
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_estack = ORIGIN(RAM) + LENGTH(RAM);
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ENTRY(Reset_Handler)
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/* define output sections */
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SECTIONS
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{
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/* Firmware Header */
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.header :
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{
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KEEP(*(.header))
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} > FLASH
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/* The startup code goes first into FLASH */
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.flash :
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{
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. = ALIGN(4);
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KEEP(*(.isr_vector)) /* Startup code */
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. = ALIGN(4);
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*(.text*) /* .text* sections (code) */
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*(.rodata*) /* .rodata* sections (constants, strings, etc.) */
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. = ALIGN(512);
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_etext = .; /* define a global symbol at end of code */
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} >FLASH
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/* used by the startup to initialize data */
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_sidata = LOADADDR(.data);
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/* This is the initialized data section
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The program executes knowing that the data is in the RAM
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but the loader puts the initial values in the FLASH (inidata).
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It is one task of the startup to copy the initial values from FLASH to RAM. */
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.data :
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{
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. = ALIGN(4);
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_sdata = .; /* create a global symbol at data start; used by startup code in order to initialise the .data section in RAM */
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*(.data*) /* .data* sections */
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. = ALIGN(512);
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_edata = .; /* define a global symbol at data end; used by startup code in order to initialise the .data section in RAM */
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} >RAM AT> FLASH
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/* Uninitialized data section */
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.bss :
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{
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. = ALIGN(4);
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_sbss = .; /* define a global symbol at bss start; used by startup code */
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*(.bss*)
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*(COMMON)
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. = ALIGN(4);
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_ebss = .; /* define a global symbol at bss end; used by startup code and GC */
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} >RAM
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/* this is to define the start of the heap, and make sure we have a minimum size */
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.heap :
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{
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. = ALIGN(4);
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. = . + _minimum_heap_size;
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. = ALIGN(4);
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} >RAM
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/* this just checks there is enough RAM for the stack */
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.stack :
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{
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. = ALIGN(4);
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. = . + _minimum_stack_size;
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. = ALIGN(4);
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} >RAM
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.ARM.attributes 0 : { *(.ARM.attributes) }
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}
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/* RAM extents for the garbage collector */
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_codelen = SIZEOF(.flash) + SIZEOF(.data);
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_ram_start = ORIGIN(RAM);
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_ram_end = ORIGIN(RAM) + LENGTH(RAM);
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_heap_start = _ebss; /* heap starts just after statically allocated memory */
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_heap_end = 0x2001c000; /* tunable */
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/* used by the startup code to wipe memory */
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ccmram_start = ORIGIN(CCMRAM);
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ccmram_end = ORIGIN(CCMRAM) + LENGTH(CCMRAM);
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/* used by the startup code to wipe memory */
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sram_start = ORIGIN(RAM);
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sram_end = ORIGIN(RAM) + LENGTH(RAM);
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