Fork of mbed-src file paths change. LPC1114FN28 use only.

Fork of mbed-src by mbed official

Information

この情報は2013/10/28時点での解決方法です。
現在はmbed-src、標準ライブラリで問題なくコンパイルが可能です。

・使う物
LPC1114FN28
mbed SDK

LPC1114FN28でmbed-SDKのLibraryを使うとCompile出来ない。(2013/10/28) /media/uploads/minicube/mbed_lpc1114_sdk.png

パスが通ってないだけのようなのでファイルを以下に移動する。

mbed-src\targets\cmsis\TARGET_NXP\TARGET_LPC11XX_11CXX\
mbed-src\targets\cmsis\TARGET_NXP\TARGET_LPC11XX_11CXX\TARGET_LPC11XX\

にあるファイルをすべて

mbed-src\targets\cmsis\TARGET_NXP\

へ移動

mbed-src\targets\cmsis\TARGET_NXP\TARGET_LPC11XX_11CXX\にある

TOOLCHAIN_ARM_MICRO

をフォルダごと

mbed-src\targets\cmsis\TARGET_NXP\

へ移動

mbed-src\targets\hal\TARGET_NXP\TARGET_LPC11XX_11CXX\
mbed-src\targets\hal\TARGET_NXP\TARGET_LPC11XX_11CXX\TARGET_LPC11XX\

にあるファイルをすべて

mbed-src\targets\hal\TARGET_NXP\

へ移動

移動後は以下のような構成になると思います。
※不要なファイルは削除してあります。

/media/uploads/minicube/mbed_lpc1114_sdk_tree.png


ファイルの移動が面倒なので以下に本家からフォークしたライブラリを置いておきます。

Import librarymbed-src-LPC1114FN28

Fork of mbed-src file paths change. LPC1114FN28 use only.


エラーが出力される場合

"TOOLCHAIN_ARM_MICRO"が無いとエラーになる。

Error: Undefined symbol _initial_sp (referred from entry2.o).
Error: Undefined symbol _heap_base (referred from malloc.o).
Error: Undefined symbol _heap_limit (referred from malloc.o).

LPC1114FN28はMicrolibを使ってCompileされるため上記のエラーになるようです。

Committer:
bogdanm
Date:
Tue Sep 10 15:14:19 2013 +0300
Revision:
20:4263a77256ae
Sync with git revision 171dda705c947bf910926a0b73d6a4797802554d

Who changed what in which revision?

UserRevisionLine numberNew contents of line
bogdanm 20:4263a77256ae 1 /* Linker script to configure memory regions. */
bogdanm 20:4263a77256ae 2 MEMORY
bogdanm 20:4263a77256ae 3 {
bogdanm 20:4263a77256ae 4 FLASH (rx) : ORIGIN = 0x00000000, LENGTH = 64K
bogdanm 20:4263a77256ae 5 RAM (rwx) : ORIGIN = 0x100000C0, LENGTH = 0x1F40
bogdanm 20:4263a77256ae 6 USB_RAM (rwx): ORIGIN = 0x20004000, LENGTH = 0x800
bogdanm 20:4263a77256ae 7 }
bogdanm 20:4263a77256ae 8
bogdanm 20:4263a77256ae 9 /* Linker script to place sections and symbol values. Should be used together
bogdanm 20:4263a77256ae 10 * with other linker script that defines memory regions FLASH and RAM.
bogdanm 20:4263a77256ae 11 * It references following symbols, which must be defined in code:
bogdanm 20:4263a77256ae 12 * Reset_Handler : Entry of reset handler
bogdanm 20:4263a77256ae 13 *
bogdanm 20:4263a77256ae 14 * It defines following symbols, which code can use without definition:
bogdanm 20:4263a77256ae 15 * __exidx_start
bogdanm 20:4263a77256ae 16 * __exidx_end
bogdanm 20:4263a77256ae 17 * __etext
bogdanm 20:4263a77256ae 18 * __data_start__
bogdanm 20:4263a77256ae 19 * __preinit_array_start
bogdanm 20:4263a77256ae 20 * __preinit_array_end
bogdanm 20:4263a77256ae 21 * __init_array_start
bogdanm 20:4263a77256ae 22 * __init_array_end
bogdanm 20:4263a77256ae 23 * __fini_array_start
bogdanm 20:4263a77256ae 24 * __fini_array_end
bogdanm 20:4263a77256ae 25 * __data_end__
bogdanm 20:4263a77256ae 26 * __bss_start__
bogdanm 20:4263a77256ae 27 * __bss_end__
bogdanm 20:4263a77256ae 28 * __end__
bogdanm 20:4263a77256ae 29 * end
bogdanm 20:4263a77256ae 30 * __HeapLimit
bogdanm 20:4263a77256ae 31 * __StackLimit
bogdanm 20:4263a77256ae 32 * __StackTop
bogdanm 20:4263a77256ae 33 * __stack
bogdanm 20:4263a77256ae 34 */
bogdanm 20:4263a77256ae 35 ENTRY(Reset_Handler)
bogdanm 20:4263a77256ae 36
bogdanm 20:4263a77256ae 37 SECTIONS
bogdanm 20:4263a77256ae 38 {
bogdanm 20:4263a77256ae 39 .text :
bogdanm 20:4263a77256ae 40 {
bogdanm 20:4263a77256ae 41 KEEP(*(.isr_vector))
bogdanm 20:4263a77256ae 42 *(.text.Reset_Handler)
bogdanm 20:4263a77256ae 43 *(.text.SystemInit)
bogdanm 20:4263a77256ae 44
bogdanm 20:4263a77256ae 45 /* Only vectors and code running at reset are safe to be in first 512
bogdanm 20:4263a77256ae 46 bytes since RAM can be mapped into this area for RAM based interrupt
bogdanm 20:4263a77256ae 47 vectors. */
bogdanm 20:4263a77256ae 48 . = 0x00000200;
bogdanm 20:4263a77256ae 49 *(.text*)
bogdanm 20:4263a77256ae 50
bogdanm 20:4263a77256ae 51 KEEP(*(.init))
bogdanm 20:4263a77256ae 52 KEEP(*(.fini))
bogdanm 20:4263a77256ae 53
bogdanm 20:4263a77256ae 54 /* .ctors */
bogdanm 20:4263a77256ae 55 *crtbegin.o(.ctors)
bogdanm 20:4263a77256ae 56 *crtbegin?.o(.ctors)
bogdanm 20:4263a77256ae 57 *(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors)
bogdanm 20:4263a77256ae 58 *(SORT(.ctors.*))
bogdanm 20:4263a77256ae 59 *(.ctors)
bogdanm 20:4263a77256ae 60
bogdanm 20:4263a77256ae 61 /* .dtors */
bogdanm 20:4263a77256ae 62 *crtbegin.o(.dtors)
bogdanm 20:4263a77256ae 63 *crtbegin?.o(.dtors)
bogdanm 20:4263a77256ae 64 *(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors)
bogdanm 20:4263a77256ae 65 *(SORT(.dtors.*))
bogdanm 20:4263a77256ae 66 *(.dtors)
bogdanm 20:4263a77256ae 67
bogdanm 20:4263a77256ae 68 *(.rodata*)
bogdanm 20:4263a77256ae 69
bogdanm 20:4263a77256ae 70 KEEP(*(.eh_frame*))
bogdanm 20:4263a77256ae 71 } > FLASH
bogdanm 20:4263a77256ae 72
bogdanm 20:4263a77256ae 73 .ARM.extab :
bogdanm 20:4263a77256ae 74 {
bogdanm 20:4263a77256ae 75 *(.ARM.extab* .gnu.linkonce.armextab.*)
bogdanm 20:4263a77256ae 76 } > FLASH
bogdanm 20:4263a77256ae 77
bogdanm 20:4263a77256ae 78 __exidx_start = .;
bogdanm 20:4263a77256ae 79 .ARM.exidx :
bogdanm 20:4263a77256ae 80 {
bogdanm 20:4263a77256ae 81 *(.ARM.exidx* .gnu.linkonce.armexidx.*)
bogdanm 20:4263a77256ae 82 } > FLASH
bogdanm 20:4263a77256ae 83 __exidx_end = .;
bogdanm 20:4263a77256ae 84
bogdanm 20:4263a77256ae 85 __etext = .;
bogdanm 20:4263a77256ae 86
bogdanm 20:4263a77256ae 87 .data : AT (__etext)
bogdanm 20:4263a77256ae 88 {
bogdanm 20:4263a77256ae 89 __data_start__ = .;
bogdanm 20:4263a77256ae 90 *(vtable)
bogdanm 20:4263a77256ae 91 *(.data*)
bogdanm 20:4263a77256ae 92
bogdanm 20:4263a77256ae 93 . = ALIGN(4);
bogdanm 20:4263a77256ae 94 /* preinit data */
bogdanm 20:4263a77256ae 95 PROVIDE (__preinit_array_start = .);
bogdanm 20:4263a77256ae 96 KEEP(*(.preinit_array))
bogdanm 20:4263a77256ae 97 PROVIDE (__preinit_array_end = .);
bogdanm 20:4263a77256ae 98
bogdanm 20:4263a77256ae 99 . = ALIGN(4);
bogdanm 20:4263a77256ae 100 /* init data */
bogdanm 20:4263a77256ae 101 PROVIDE (__init_array_start = .);
bogdanm 20:4263a77256ae 102 KEEP(*(SORT(.init_array.*)))
bogdanm 20:4263a77256ae 103 KEEP(*(.init_array))
bogdanm 20:4263a77256ae 104 PROVIDE (__init_array_end = .);
bogdanm 20:4263a77256ae 105
bogdanm 20:4263a77256ae 106
bogdanm 20:4263a77256ae 107 . = ALIGN(4);
bogdanm 20:4263a77256ae 108 /* finit data */
bogdanm 20:4263a77256ae 109 PROVIDE (__fini_array_start = .);
bogdanm 20:4263a77256ae 110 KEEP(*(SORT(.fini_array.*)))
bogdanm 20:4263a77256ae 111 KEEP(*(.fini_array))
bogdanm 20:4263a77256ae 112 PROVIDE (__fini_array_end = .);
bogdanm 20:4263a77256ae 113
bogdanm 20:4263a77256ae 114 . = ALIGN(4);
bogdanm 20:4263a77256ae 115 /* All data end */
bogdanm 20:4263a77256ae 116 __data_end__ = .;
bogdanm 20:4263a77256ae 117
bogdanm 20:4263a77256ae 118 } > RAM
bogdanm 20:4263a77256ae 119
bogdanm 20:4263a77256ae 120 .bss :
bogdanm 20:4263a77256ae 121 {
bogdanm 20:4263a77256ae 122 __bss_start__ = .;
bogdanm 20:4263a77256ae 123 *(.bss*)
bogdanm 20:4263a77256ae 124 *(COMMON)
bogdanm 20:4263a77256ae 125 __bss_end__ = .;
bogdanm 20:4263a77256ae 126 } > RAM
bogdanm 20:4263a77256ae 127
bogdanm 20:4263a77256ae 128 .heap :
bogdanm 20:4263a77256ae 129 {
bogdanm 20:4263a77256ae 130 __end__ = .;
bogdanm 20:4263a77256ae 131 end = __end__;
bogdanm 20:4263a77256ae 132 *(.heap*)
bogdanm 20:4263a77256ae 133 __HeapLimit = .;
bogdanm 20:4263a77256ae 134 } > RAM
bogdanm 20:4263a77256ae 135
bogdanm 20:4263a77256ae 136 /* .stack_dummy section doesn't contains any symbols. It is only
bogdanm 20:4263a77256ae 137 * used for linker to calculate size of stack sections, and assign
bogdanm 20:4263a77256ae 138 * values to stack symbols later */
bogdanm 20:4263a77256ae 139 .stack_dummy :
bogdanm 20:4263a77256ae 140 {
bogdanm 20:4263a77256ae 141 *(.stack)
bogdanm 20:4263a77256ae 142 } > RAM
bogdanm 20:4263a77256ae 143
bogdanm 20:4263a77256ae 144 /* Set stack top to end of RAM, and stack limit move down by
bogdanm 20:4263a77256ae 145 * size of stack_dummy section */
bogdanm 20:4263a77256ae 146 __StackTop = ORIGIN(RAM) + LENGTH(RAM);
bogdanm 20:4263a77256ae 147 __StackLimit = __StackTop - SIZEOF(.stack_dummy);
bogdanm 20:4263a77256ae 148 PROVIDE(__stack = __StackTop);
bogdanm 20:4263a77256ae 149
bogdanm 20:4263a77256ae 150 /* Check if data + heap + stack exceeds RAM limit */
bogdanm 20:4263a77256ae 151 ASSERT(__StackLimit >= __HeapLimit, "region RAM overflowed with stack")
bogdanm 20:4263a77256ae 152 }