2008-03-27 23:58:03 +00:00
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#include "config.h"
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ENTRY(start)
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2009-04-01 03:21:18 +00:00
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2008-03-27 23:58:03 +00:00
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OUTPUT_FORMAT(elf32-littlearm)
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OUTPUT_ARCH(arm)
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2008-04-29 06:19:32 +00:00
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STARTUP(target/arm/tms320dm320/crt0.o)
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2008-03-27 23:58:03 +00:00
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2009-04-10 04:48:44 +00:00
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#ifndef LCD_NATIVE_WIDTH
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#define LCD_NATIVE_WIDTH LCD_WIDTH
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#endif
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#ifndef LCD_NATIVE_HEIGHT
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#define LCD_NATIVE_HEIGHT LCD_HEIGHT
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#endif
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#define LCD_FUDGE LCD_NATIVE_WIDTH%32
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#define LCD_BUFFER_SIZE ((LCD_NATIVE_WIDTH+LCD_FUDGE)*LCD_NATIVE_HEIGHT*2)
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2009-04-01 03:21:18 +00:00
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/* must be 16Kb (0x4000) aligned */
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#define TTB_SIZE (0x4000)
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2009-12-15 01:30:59 +00:00
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/* Give this some memory to allow it to align to the MMU boundary.
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* Note that since there are two buffers (YUV/RGB) it calculates the approximate
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* memory needed in steps of 1 Meg.
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*/
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#define LCD_TTB_AREA 0x100000*((LCD_BUFFER_SIZE>>19)+1)
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2009-04-10 04:48:44 +00:00
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#define BOOT_OFFSET 0x1000000
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2008-03-27 23:58:03 +00:00
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2010-09-20 17:09:55 +00:00
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#define DRAMSIZE (MEMORYSIZE * 0x100000) - BOOT_OFFSET
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2008-03-27 23:58:03 +00:00
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2009-04-10 04:48:44 +00:00
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#define DRAMORIG (0x00900000+BOOT_OFFSET) /* actually it's 0x00900000 */
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#define IRAMORIG 0x00000000
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#define IRAMSIZE 0x4000
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#define FLASHORIG 0x00100000
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#define FLASHSIZE 8M
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2009-04-01 03:21:18 +00:00
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2009-04-10 04:48:44 +00:00
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/* End of the audio buffer, where the codec buffer starts */
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#define TTB_BEGIN (DRAMORIG + DRAMSIZE - LCD_TTB_AREA)
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2009-04-01 03:21:18 +00:00
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2008-03-27 23:58:03 +00:00
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MEMORY
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{
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DRAM : ORIGIN = DRAMORIG, LENGTH = DRAMSIZE
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IRAM : ORIGIN = IRAMORIG, LENGTH = IRAMSIZE
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FLASH : ORIGIN = FLASHORIG, LENGTH = FLASHSIZE
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}
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SECTIONS
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{
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2008-08-27 20:32:12 +00:00
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. = DRAMORIG;
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2008-03-27 23:58:03 +00:00
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.text : {
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loadaddress = .;
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_loadaddress = .;
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*(.init.text)
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*(.text*)
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*(.glue_7)
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*(.glue_7t)
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. = ALIGN(0x4);
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} > DRAM
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.rodata :
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{
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*(.rodata) /* problems without this, dunno why */
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*(.rodata*)
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*(.rodata.str1.1)
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*(.rodata.str1.4)
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. = ALIGN(0x4);
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/* Pseudo-allocate the copies of the data sections */
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_datacopy = .;
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} > DRAM
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.data : {
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*(.data*)
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. = ALIGN(0x4);
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_dataend = . ;
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} > DRAM
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.vectors IRAMORIG :
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{
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_vectorsstart = .;
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KEEP(*(.resetvectors));
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*(.resetvectors);
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KEEP(*(.vectors));
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*(.vectors);
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_vectorsend = .;
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2009-04-10 04:48:44 +00:00
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} > IRAM AT > DRAM
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2008-03-27 23:58:03 +00:00
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_vectorscopy = LOADADDR(.vectors);
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2009-04-01 03:21:18 +00:00
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2009-04-10 04:48:44 +00:00
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.iram :
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2009-04-01 03:21:18 +00:00
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{
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2009-04-10 04:48:44 +00:00
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_iramstart = .;
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*(.icode)
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*(.irodata*)
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*(.idata)
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. = ALIGN(0x4);
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_iramend = .;
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} > IRAM AT> DRAM
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_iramcopy = LOADADDR(.iram);
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.ibss (NOLOAD) :
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{
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_iedata = .;
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*(.ibss)
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. = ALIGN(0x4);
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_iend = .;
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} > IRAM
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.stack (NOLOAD) :
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{
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*(.stack)
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stackbegin = .;
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. += 0x2000;
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stackend = .;
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} > IRAM
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2009-08-12 02:34:07 +00:00
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.irqstack (NOLOAD) :
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{
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*(.stack)
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. += 0x400;
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irq_stack = .;
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} > IRAM
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.fiqstack (NOLOAD) :
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{
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*(.stack)
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. += 0x100;
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fiq_stack = .;
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} > IRAM
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2009-04-10 04:48:44 +00:00
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.bss (NOLOAD) :
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{
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. = ADDR(.data) + SIZEOF(.data) + SIZEOF(.vectors) + SIZEOF(.iram);
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_edata = .;
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*(.bss*)
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*(COMMON)
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. = ALIGN(0x4);
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_end = .;
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} > DRAM
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2009-04-01 03:21:18 +00:00
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2009-04-10 04:48:44 +00:00
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.ttbtable TTB_BEGIN (NOLOAD) :
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2009-04-01 03:21:18 +00:00
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{
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2009-04-10 04:48:44 +00:00
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. = ALIGN (0x4000);
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2009-04-01 03:21:18 +00:00
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_ttbstart = .;
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2009-04-10 04:48:44 +00:00
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. += TTB_SIZE;
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} > DRAM
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2009-06-08 00:19:16 +00:00
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/* The LCD buffer should be at the end of memory to protect against
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* overflowing something else when the YUV blitter is fudging the screen
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* size.
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*/
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2009-04-10 04:48:44 +00:00
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.lcdbuffer (NOLOAD) :
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{
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_lcdbuf = .;
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. += LCD_BUFFER_SIZE;
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} > DRAM
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2009-06-08 00:19:16 +00:00
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.lcdbuffer2 (NOLOAD) :
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{
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_lcdbuf2 = .;
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. += LCD_BUFFER_SIZE;
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} > DRAM
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2008-03-27 23:58:03 +00:00
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}
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