I am trying to use core-coupled memory (CCMRAM) of my cortex-m4 (STM32F407). It works fine with Keil MDK-ARM but gcc-arm-none-eabi ignores __attribute__((section("CCMRAM")))
.
#define configTOTAL_HEAP_SIZE 1000*1024
#define region1_HEAP_SIZE (40*1024)
#define region2_HEAP_SIZE (configTOTAL_HEAP_SIZE - region1_HEAP_SIZE)
static uint8_t ucHeap1[ region1_HEAP_SIZE ] __attribute__((section("CCMRAM")));
static uint8_t ucHeap2[ region2_HEAP_SIZE ];
const HeapRegion_t xHeapRegions[] =
{
{ ucHeap1, sizeof(ucHeap1) },
{ ucHeap2, sizeof(ucHeap2) },
{ NULL, 0 } /* Terminates the array. */
};
According to manual I also tried to initialize ucHeap1
static uint8_t ucHeap1[ region1_HEAP_SIZE ] __attribute__((section("CCMRAM"))) = {0};
But does no effect.
Map-file contains nothing about ucHeap1
. GCC compiles with no warnings about attribute. But fail to link because of:
arm-none-eabi/bin/ld: avds.elf section `.bss' will not fit in region `RAM'
arm-none-eabi/bin/ld: region `RAM' overflowed by 55032 bytes
These 55032 should be allocated in CCMRAM. But it tries to use RAM. Please help me to understand what to do to make it work.
Linker script:
ENTRY(Reset_Handler)
_estack = 0x20000000 + 128K - 1;
_Min_Heap_Size = 0;
_Min_Stack_Size = 0x200;
MEMORY
{
FLASH (rx) : ORIGIN = 0x08000000, LENGTH = 1024K
RAM (xrw) : ORIGIN = 0x20000000, LENGTH = 128K
CCMRAM (rw) : ORIGIN = 0x10000000, LENGTH = 64K
}
SECTIONS
{
.isr_vector :
{
. = ALIGN(4);
KEEP(*(.isr_vector))
. = ALIGN(4);
} >FLASH
.text :
{
. = ALIGN(4);
*(.text)
*(.text*)
*(.glue_7)
*(.glue_7t)
*(.eh_frame)
KEEP (*(.init))
KEEP (*(.fini))
. = ALIGN(4);
_etext = .;
} >FLASH
.rodata :
{
. = ALIGN(4);
*(.rodata)
*(.rodata*)
. = ALIGN(4);
} >FLASH
.ARM.extab : { *(.ARM.extab* .gnu.linkonce.armextab.*) } >FLASH
.ARM : {
__exidx_start = .;
*(.ARM.exidx*)
__exidx_end = .;
} >FLASH
.preinit_array :
{
PROVIDE_HIDDEN (__preinit_array_start = .);
KEEP (*(.preinit_array*))
PROVIDE_HIDDEN (__preinit_array_end = .);
} >FLASH
.init_array :
{
PROVIDE_HIDDEN (__init_array_start = .);
KEEP (*(SORT(.init_array.*)))
KEEP (*(.init_array*))
PROVIDE_HIDDEN (__init_array_end = .);
} >FLASH
.fini_array :
{
PROVIDE_HIDDEN (__fini_array_start = .);
KEEP (*(SORT(.fini_array.*)))
KEEP (*(.fini_array*))
PROVIDE_HIDDEN (__fini_array_end = .);
} >FLASH
_sidata = LOADADDR(.data);
.data :
{
. = ALIGN(4);
_sdata = .;
*(.data)
*(.data*)
. = ALIGN(4);
_edata = .;
} >RAM AT> FLASH
_siccmram = LOADADDR(.ccmram);
.ccmram :
{ . = ALIGN(4);
_sccmram = .;
*(.ccmram)
*(.ccmram*)
. = ALIGN(4);
_eccmram = .;
} >CCMRAM AT> FLASH
. = ALIGN(4);
.bss :
{
_sbss = .;
__bss_start__ = _sbss;
*(.bss)
*(.bss*)
*(COMMON)
. = ALIGN(4);
_ebss = .;
__bss_end__ = _ebss;
} >RAM
._user_heap_stack :
{
. = ALIGN(4);
PROVIDE ( end = . );
PROVIDE ( _end = . );
. = . + _Min_Heap_Size;
. = . + _Min_Stack_Size;
. = ALIGN(4);
} >RAM
/DISCARD/ :
{
libc.a ( * )
libm.a ( * )
libgcc.a ( * )
}
.ARM.attributes 0 : { *(.ARM.attributes) }
}
HeapRegion_t
?*(.ccmram)
but.ccram
!=CCRAM
, no?