mirror of
https://github.com/hathach/tinyusb.git
synced 2025-03-12 16:13:53 +00:00
add makefile support for lpcxpresso1347
This commit is contained in:
parent
b55c34564e
commit
2e07a09b0d
@ -81,7 +81,6 @@
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<file file_name="../../../../../hw/mcu/nxp/lpcopen/lpc_chip_13xx/src/gpio_13xx_1.c" />
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<file file_name="../../../../../hw/mcu/nxp/lpcopen/lpc_chip_13xx/src/sysctl_13xx.c" />
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<file file_name="../../../../../hw/mcu/nxp/lpcopen/lpc_chip_13xx/src/sysinit_13xx.c" />
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<file file_name="../../../../../hw/mcu/nxp/lpcopen/lpc_chip_13xx/src/uart_13xx.c" />
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<file file_name="../../../../../hw/mcu/nxp/lpcopen/lpc_chip_13xx/src/iocon_13xx.c" />
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</folder>
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</folder>
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@ -75,20 +75,18 @@ void board_init(void)
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// LED
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Chip_GPIO_SetPinDIROutput(LPC_GPIO, LED_PORT, LED_PIN);
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// BUTTON
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// Button
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Chip_GPIO_SetPinDIRInput(LPC_GPIO, BUTTON_PORT, BUTTON_PIN);
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// USB
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Chip_USB_Init(); // Setup PLL clock, and power
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// USB: Setup PLL clock, and power
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Chip_USB_Init();
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}
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/*------------------------------------------------------------------*/
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/* TUSB HAL MILLISECOND
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*------------------------------------------------------------------*/
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//--------------------------------------------------------------------+
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// Board porting API
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//--------------------------------------------------------------------+
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#if CFG_TUSB_OS == OPT_OS_NONE
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volatile uint32_t system_ticks = 0;
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void SysTick_Handler (void)
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{
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system_ticks++;
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@ -98,29 +96,20 @@ uint32_t board_millis(void)
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{
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return system_ticks;
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}
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#endif
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//--------------------------------------------------------------------+
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// LEDS
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//--------------------------------------------------------------------+
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void board_led_write(bool state)
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{
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Chip_GPIO_SetPinState(LPC_GPIO, LED_PORT, LED_PIN, state ? LED_STATE_ON : (1-LED_STATE_ON));
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}
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//--------------------------------------------------------------------+
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// Buttons
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//--------------------------------------------------------------------+
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uint32_t board_button_read(void)
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{
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// active low
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return Chip_GPIO_GetPinState(LPC_GPIO, BUTTON_PORT, BUTTON_PIN) ? 0 : 1;
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}
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//--------------------------------------------------------------------+
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// UART
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//--------------------------------------------------------------------+
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int board_uart_read(uint8_t* buf, int len)
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{
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(void) buf;
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39
hw/bsp/lpcxpresso1347/board.mk
Normal file
39
hw/bsp/lpcxpresso1347/board.mk
Normal file
@ -0,0 +1,39 @@
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CFLAGS += \
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-mthumb \
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-mabi=aapcs \
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-mcpu=cortex-m3 \
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-nostdlib \
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-DCORE_M3 \
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-D__VTOR_PRESENT=0 \
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-DCFG_TUSB_MCU=OPT_MCU_LPC13XX \
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-D__USE_LPCOPEN \
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-DCFG_TUSB_MEM_SECTION='__attribute__((section(".data.$$RAM3")))' \
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-DCFG_TUSB_MEM_ALIGN='__attribute__((aligned(64)))'
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# All source paths should be relative to the top level.
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LD_FILE = hw/bsp/lpcxpresso1347/lpc1347.ld
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SRC_C += \
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hw/mcu/nxp/lpcopen/lpc_chip_13xx/src/chip_13xx.c \
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hw/mcu/nxp/lpcopen/lpc_chip_13xx/src/clock_13xx.c \
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hw/mcu/nxp/lpcopen/lpc_chip_13xx/src/gpio_13xx_1.c \
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hw/mcu/nxp/lpcopen/lpc_chip_13xx/src/iocon_13xx.c \
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hw/mcu/nxp/lpcopen/lpc_chip_13xx/src/sysctl_13xx.c \
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hw/mcu/nxp/lpcopen/lpc_chip_13xx/src/sysinit_13xx.c
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INC += \
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$(TOP)/hw/mcu/nxp/lpcopen/lpc_chip_13xx/inc
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# For TinyUSB port source
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VENDOR = nxp
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CHIP_FAMILY = lpc11_13_15
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# For freeRTOS port source
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FREERTOS_PORT = ARM_CM3
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# For flash-jlink target
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JLINK_DEVICE = LPC1347
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JLINK_IF = swd
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# flash using jlink
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flash: flash-jlink
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@ -30,23 +30,22 @@
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#define LED_PORT 0
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#define LED_PIN 7
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static const struct {
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uint8_t port;
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uint8_t pin;
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} buttons[] =
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{
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{1, 22 }, // Joystick up
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{1, 20 }, // Joystick down
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{1, 23 }, // Joystick left
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{1, 21 }, // Joystick right
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{1, 19 }, // Joystick press
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{0, 1 }, // SW3
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// {1, 4 }, // SW4 (require to remove J28)
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};
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// Joytick UP if connected to LPCXpresso Base board
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#define BUTTON_PORT 1
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#define BUTTON_PIN 22
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enum {
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BOARD_BUTTON_COUNT = sizeof(buttons) / sizeof(buttons[0])
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};
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//static const struct {
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// uint8_t port;
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// uint8_t pin;
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//} buttons[] =
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//{
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// {1, 22 }, // Joystick up
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// {1, 20 }, // Joystick down
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// {1, 23 }, // Joystick left
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// {1, 21 }, // Joystick right
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// {1, 19 }, // Joystick press
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// {0, 1 }, // SW3
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//};
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/* System oscillator rate and RTC oscillator rate */
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const uint32_t OscRateIn = 12000000;
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@ -91,26 +90,21 @@ void board_init(void)
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Chip_GPIO_Init(LPC_GPIO_PORT);
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//------------- LED -------------//
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// LED
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Chip_GPIO_SetPinDIROutput(LPC_GPIO_PORT, LED_PORT, LED_PIN);
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//------------- BUTTON -------------//
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// for(uint8_t i=0; i<BOARD_BUTTON_COUNT; i++) GPIOSetDir(buttons[i].port, TU_BIT(buttons[i].pin), 0);
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// Button
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Chip_GPIO_SetPinDIRInput(LPC_GPIO_PORT, BUTTON_PORT, BUTTON_PIN);
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//------------- UART -------------//
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//UARTInit(CFG_UART_BAUDRATE);
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// USB
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Chip_USB_Init(); // Setup PLL clock, and power
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// USB: Setup PLL clock, and power
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Chip_USB_Init();
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}
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/*------------------------------------------------------------------*/
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/* TUSB HAL MILLISECOND
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*------------------------------------------------------------------*/
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//--------------------------------------------------------------------+
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// Board porting API
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//--------------------------------------------------------------------+
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#if CFG_TUSB_OS == OPT_OS_NONE
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volatile uint32_t system_ticks = 0;
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void SysTick_Handler (void)
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{
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system_ticks++;
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@ -120,42 +114,19 @@ uint32_t board_millis(void)
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{
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return system_ticks;
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}
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#endif
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//--------------------------------------------------------------------+
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// LEDS
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//--------------------------------------------------------------------+
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void board_led_write(bool state)
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{
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Chip_GPIO_SetPinState(LPC_GPIO_PORT, LED_PORT, LED_PIN, state);
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}
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//--------------------------------------------------------------------+
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// BUTTONS
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//--------------------------------------------------------------------+
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#if 0
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static bool button_read(uint8_t id)
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{
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(void) id;
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// return !GPIOGetPinValue(buttons[id].port, buttons[id].pin); // button is active low
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return 0;
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}
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#endif
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uint32_t board_button_read(void)
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{
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uint32_t result = 0;
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// for(uint8_t i=0; i<BOARD_BUTTON_COUNT; i++) result |= (button_read(i) ? TU_BIT(i) : 0);
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return result;
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// active low
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return Chip_GPIO_GetPinState(LPC_GPIO_PORT, BUTTON_PORT, BUTTON_PIN) ? 0 : 1;
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}
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//--------------------------------------------------------------------+
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// UART
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//--------------------------------------------------------------------+
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int board_uart_read(uint8_t* buf, int len)
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{
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(void) buf;
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@ -165,7 +136,6 @@ int board_uart_read(uint8_t* buf, int len)
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int board_uart_write(void const * buf, int len)
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{
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// UARTSend(&c, 1);
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(void) buf;
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(void) len;
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return 0;
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473
hw/bsp/lpcxpresso1347/cr_startup_lpc13xx.c
Normal file
473
hw/bsp/lpcxpresso1347/cr_startup_lpc13xx.c
Normal file
@ -0,0 +1,473 @@
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//*****************************************************************************
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// +--+
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// | ++----+
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// +-++ |
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// | |
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// +-+--+ |
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// | +--+--+
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// +----+ Copyright (c) 2011-12 Code Red Technologies Ltd.
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//
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// Microcontroller Startup code for use with Red Suite
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//
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// Version : 120126
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//
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// Software License Agreement
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//
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// The software is owned by Code Red Technologies and/or its suppliers, and is
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// protected under applicable copyright laws. All rights are reserved. Any
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// use in violation of the foregoing restrictions may subject the user to criminal
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// sanctions under applicable laws, as well as to civil liability for the breach
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// of the terms and conditions of this license.
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//
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// THIS SOFTWARE IS PROVIDED "AS IS". NO WARRANTIES, WHETHER EXPRESS, IMPLIED
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// OR STATUTORY, INCLUDING, BUT NOT LIMITED TO, IMPLIED WARRANTIES OF
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// MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE APPLY TO THIS SOFTWARE.
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// USE OF THIS SOFTWARE FOR COMMERCIAL DEVELOPMENT AND/OR EDUCATION IS SUBJECT
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// TO A CURRENT END USER LICENSE AGREEMENT (COMMERCIAL OR EDUCATIONAL) WITH
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// CODE RED TECHNOLOGIES LTD.
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//
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//*****************************************************************************
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#if defined (__cplusplus)
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#ifdef __REDLIB__
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#error Redlib does not support C++
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#else
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//*****************************************************************************
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//
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// The entry point for the C++ library startup
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//
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//*****************************************************************************
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extern "C" {
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extern void __libc_init_array(void);
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}
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#endif
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#endif
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#define WEAK __attribute__ ((weak))
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#define ALIAS(f) __attribute__ ((weak, alias (#f)))
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/* Include sys_config.h to get the CHIP_11* device identifier */
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#include "sys_config.h"
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// Code Red - if CMSIS is being used, then SystemInit() routine
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// will be called by startup code rather than in application's main()
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extern void SystemInit(void);
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//*****************************************************************************
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#if defined (__cplusplus)
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extern "C" {
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#endif
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//*****************************************************************************
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//
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// Forward declaration of the default handlers. These are aliased.
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// When the application defines a handler (with the same name), this will
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// automatically take precedence over these weak definitions
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//
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//*****************************************************************************
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void ResetISR(void);
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WEAK void NMI_Handler(void);
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WEAK void HardFault_Handler(void);
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WEAK void SVC_Handler(void);
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WEAK void PendSV_Handler(void);
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WEAK void SysTick_Handler(void);
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WEAK void IntDefaultHandler(void);
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//*****************************************************************************
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//
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// Forward declaration of the specific IRQ handlers. These are aliased
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// to the IntDefaultHandler, which is a 'forever' loop. When the application
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// defines a handler (with the same name), this will automatically take
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// precedence over these weak definitions
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//
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//*****************************************************************************
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#if defined(CHIP_LPC1343)
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void WAKEUP_IRQHandler (void) ALIAS(IntDefaultHandler);
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void I2C_IRQHandler (void) ALIAS(IntDefaultHandler);
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void TIMER16_0_IRQHandler (void) ALIAS(IntDefaultHandler);
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void TIMER16_1_IRQHandler (void) ALIAS(IntDefaultHandler);
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void TIMER32_0_IRQHandler (void) ALIAS(IntDefaultHandler);
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void TIMER32_1_IRQHandler (void) ALIAS(IntDefaultHandler);
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void SSP0_IRQHandler (void) ALIAS(IntDefaultHandler);
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void UART_IRQHandler (void) ALIAS(IntDefaultHandler);
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void USB_IRQHandler (void) ALIAS(IntDefaultHandler);
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void USB_FIQHandler (void) ALIAS(IntDefaultHandler);
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void ADC_IRQHandler (void) ALIAS(IntDefaultHandler);
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void WDT_IRQHandler (void) ALIAS(IntDefaultHandler);
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void BOD_IRQHandler (void) ALIAS(IntDefaultHandler);
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void FMC_IRQHandler (void) ALIAS(IntDefaultHandler);
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void PIOINT3_IRQHandler (void) ALIAS(IntDefaultHandler);
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void PIOINT2_IRQHandler (void) ALIAS(IntDefaultHandler);
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void PIOINT1_IRQHandler (void) ALIAS(IntDefaultHandler);
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void PIOINT0_IRQHandler (void) ALIAS(IntDefaultHandler);
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#elif defined(CHIP_LPC1347)
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void PIN_INT0_IRQHandler (void) ALIAS(IntDefaultHandler);
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void PIN_INT1_IRQHandler (void) ALIAS(IntDefaultHandler);
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void PIN_INT2_IRQHandler (void) ALIAS(IntDefaultHandler);
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void PIN_INT3_IRQHandler (void) ALIAS(IntDefaultHandler);
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void PIN_INT4_IRQHandler (void) ALIAS(IntDefaultHandler);
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void PIN_INT5_IRQHandler (void) ALIAS(IntDefaultHandler);
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void PIN_INT6_IRQHandler (void) ALIAS(IntDefaultHandler);
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void PIN_INT7_IRQHandler (void) ALIAS(IntDefaultHandler);
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void GINT0_IRQHandler (void) ALIAS(IntDefaultHandler);
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void GINT1_IRQHandler (void) ALIAS(IntDefaultHandler);
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void RIT_IRQHandler (void) ALIAS(IntDefaultHandler);
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void SSP1_IRQHandler (void) ALIAS(IntDefaultHandler);
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void I2C_IRQHandler (void) ALIAS(IntDefaultHandler);
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void TIMER16_0_IRQHandler (void) ALIAS(IntDefaultHandler);
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void TIMER16_1_IRQHandler (void) ALIAS(IntDefaultHandler);
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void TIMER32_0_IRQHandler (void) ALIAS(IntDefaultHandler);
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void TIMER32_1_IRQHandler (void) ALIAS(IntDefaultHandler);
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void SSP0_IRQHandler (void) ALIAS(IntDefaultHandler);
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void UART_IRQHandler (void) ALIAS(IntDefaultHandler);
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void USB_IRQHandler (void) ALIAS(IntDefaultHandler);
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void USB_FIQHandler (void) ALIAS(IntDefaultHandler);
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void ADC_IRQHandler (void) ALIAS(IntDefaultHandler);
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void WDT_IRQHandler (void) ALIAS(IntDefaultHandler);
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void BOD_IRQHandler (void) ALIAS(IntDefaultHandler);
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void FMC_IRQHandler (void) ALIAS(IntDefaultHandler);
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void OSCFAIL_IRQHandler (void) ALIAS(IntDefaultHandler);
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void PVTCIRCUIT_IRQHandler (void) ALIAS(IntDefaultHandler);
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void USBWakeup_IRQHandler (void) ALIAS(IntDefaultHandler);
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#else
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#error No CHIP_134* device defined
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#endif
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//*****************************************************************************
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//
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// The entry point for the application.
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// __main() is the entry point for redlib based applications
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// main() is the entry point for newlib based applications
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//
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//*****************************************************************************
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//
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// The entry point for the application.
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// __main() is the entry point for Redlib based applications
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// main() is the entry point for Newlib based applications
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//
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//*****************************************************************************
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#if defined (__REDLIB__)
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extern void __main(void);
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#endif
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extern int main(void);
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//*****************************************************************************
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//
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// External declaration for the pointer to the stack top from the Linker Script
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//
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//*****************************************************************************
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extern void _vStackTop(void);
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//*****************************************************************************
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#if defined (__cplusplus)
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} // extern "C"
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#endif
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//*****************************************************************************
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//
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// The vector table. Note that the proper constructs must be placed on this to
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// ensure that it ends up at physical address 0x0000.0000.
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//
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//*****************************************************************************
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extern void (* const g_pfnVectors[])(void);
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__attribute__ ((section(".isr_vector"))) __attribute__ ((used))
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void (* const g_pfnVectors[])(void) = {
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&_vStackTop, // The initial stack pointer
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ResetISR, // The reset handler
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NMI_Handler, // The NMI handler
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HardFault_Handler, // The hard fault handler
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0, // Reserved
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0, // Reserved
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0, // Reserved
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0, // Reserved
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0, // Reserved
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0, // Reserved
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0, // Reserved
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SVC_Handler, // SVCall handler
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0, // Reserved
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0, // Reserved
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PendSV_Handler, // The PendSV handler
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SysTick_Handler, // The SysTick handler
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#if defined(CHIP_LPC1343)
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WAKEUP_IRQHandler, // Wakeup PIO0.0
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WAKEUP_IRQHandler, // Wakeup PIO0.1
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WAKEUP_IRQHandler, // Wakeup PIO0.2
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WAKEUP_IRQHandler, // Wakeup PIO0.3
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WAKEUP_IRQHandler, // Wakeup PIO0.4
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WAKEUP_IRQHandler, // Wakeup PIO0.5
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WAKEUP_IRQHandler, // Wakeup PIO0.6
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WAKEUP_IRQHandler, // Wakeup PIO0.7
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WAKEUP_IRQHandler, // Wakeup PIO0.8
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WAKEUP_IRQHandler, // Wakeup PIO0.9
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WAKEUP_IRQHandler, // Wakeup PIO0.10
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WAKEUP_IRQHandler, // Wakeup PIO0.11
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WAKEUP_IRQHandler, // Wakeup PIO1.0
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WAKEUP_IRQHandler, // Wakeup PIO1.1
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WAKEUP_IRQHandler, // Wakeup PIO1.2
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WAKEUP_IRQHandler, // Wakeup PIO1.3
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WAKEUP_IRQHandler, // Wakeup PIO1.4
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WAKEUP_IRQHandler, // Wakeup PIO1.5
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WAKEUP_IRQHandler, // Wakeup PIO1.6
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WAKEUP_IRQHandler, // Wakeup PIO1.7
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WAKEUP_IRQHandler, // Wakeup PIO1.8
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WAKEUP_IRQHandler, // Wakeup PIO1.9
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WAKEUP_IRQHandler, // Wakeup PIO1.10
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WAKEUP_IRQHandler, // Wakeup PIO1.11
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||||
WAKEUP_IRQHandler, // Wakeup PIO2.0
|
||||
WAKEUP_IRQHandler, // Wakeup PIO2.1
|
||||
WAKEUP_IRQHandler, // Wakeup PIO2.2
|
||||
WAKEUP_IRQHandler, // Wakeup PIO2.3
|
||||
WAKEUP_IRQHandler, // Wakeup PIO2.4
|
||||
WAKEUP_IRQHandler, // Wakeup PIO2.5
|
||||
WAKEUP_IRQHandler, // Wakeup PIO2.6
|
||||
WAKEUP_IRQHandler, // Wakeup PIO2.7
|
||||
WAKEUP_IRQHandler, // Wakeup PIO2.8
|
||||
WAKEUP_IRQHandler, // Wakeup PIO2.9
|
||||
WAKEUP_IRQHandler, // Wakeup PIO2.10
|
||||
WAKEUP_IRQHandler, // Wakeup PIO2.11
|
||||
WAKEUP_IRQHandler, // Wakeup PIO3.0
|
||||
WAKEUP_IRQHandler, // Wakeup PIO3.1
|
||||
WAKEUP_IRQHandler, // Wakeup PIO3.2
|
||||
WAKEUP_IRQHandler, // Wakeup PIO3.3
|
||||
I2C_IRQHandler, // I2C
|
||||
TIMER16_0_IRQHandler, // 16-bit Counter-Timer 0
|
||||
TIMER16_1_IRQHandler, // 16-bit Counter-Timer 1
|
||||
TIMER32_0_IRQHandler, // 32-bit Counter-Timer 0
|
||||
TIMER32_1_IRQHandler, // 32-bit Counter-Timer 1
|
||||
SSP0_IRQHandler, // SSP0
|
||||
UART_IRQHandler, // UART
|
||||
USB_IRQHandler, // USB IRQ
|
||||
USB_FIQHandler, // USB FIQ
|
||||
ADC_IRQHandler, // A/D Converter
|
||||
WDT_IRQHandler, // Watchdog Timer
|
||||
BOD_IRQHandler, // Brown Out Detect
|
||||
FMC_IRQHandler, // IP2111 Flash Memory Controller
|
||||
PIOINT3_IRQHandler, // PIO INT3
|
||||
PIOINT2_IRQHandler, // PIO INT2
|
||||
PIOINT1_IRQHandler, // PIO INT1
|
||||
PIOINT0_IRQHandler, // PIO INT0
|
||||
|
||||
#elif defined(CHIP_LPC1347)
|
||||
PIN_INT0_IRQHandler, // All GPIO pin can be routed to PIN_INTx
|
||||
PIN_INT1_IRQHandler,
|
||||
PIN_INT2_IRQHandler,
|
||||
PIN_INT3_IRQHandler,
|
||||
PIN_INT4_IRQHandler,
|
||||
PIN_INT5_IRQHandler,
|
||||
PIN_INT6_IRQHandler,
|
||||
PIN_INT7_IRQHandler,
|
||||
GINT0_IRQHandler,
|
||||
GINT1_IRQHandler, // PIO0 (0:7)
|
||||
0,
|
||||
0,
|
||||
RIT_IRQHandler,
|
||||
0,
|
||||
SSP1_IRQHandler, // SSP1
|
||||
I2C_IRQHandler, // I2C
|
||||
TIMER16_0_IRQHandler, // 16-bit Counter-Timer 0
|
||||
TIMER16_1_IRQHandler, // 16-bit Counter-Timer 1
|
||||
TIMER32_0_IRQHandler, // 32-bit Counter-Timer 0
|
||||
TIMER32_1_IRQHandler, // 32-bit Counter-Timer 1
|
||||
SSP0_IRQHandler, // SSP0
|
||||
UART_IRQHandler, // UART
|
||||
USB_IRQHandler, // USB IRQ
|
||||
USB_FIQHandler, // USB FIQ
|
||||
ADC_IRQHandler, // A/D Converter
|
||||
WDT_IRQHandler, // Watchdog Timer
|
||||
BOD_IRQHandler, // Brown Out Detect
|
||||
FMC_IRQHandler, // IP2111 Flash Memory Controller
|
||||
OSCFAIL_IRQHandler, // OSC FAIL
|
||||
PVTCIRCUIT_IRQHandler, // PVT CIRCUIT
|
||||
USBWakeup_IRQHandler, // USB wake up
|
||||
0,
|
||||
|
||||
#else
|
||||
#error No CHIP_13* device defined
|
||||
#endif
|
||||
};
|
||||
|
||||
//*****************************************************************************
|
||||
// Functions to carry out the initialization of RW and BSS data sections. These
|
||||
// are written as separate functions rather than being inlined within the
|
||||
// ResetISR() function in order to cope with MCUs with multiple banks of
|
||||
// memory.
|
||||
//*****************************************************************************
|
||||
__attribute__ ((section(".after_vectors")))
|
||||
void data_init(unsigned int romstart, unsigned int start, unsigned int len) {
|
||||
unsigned int *pulDest = (unsigned int*) start;
|
||||
unsigned int *pulSrc = (unsigned int*) romstart;
|
||||
unsigned int loop;
|
||||
for (loop = 0; loop < len; loop = loop + 4)
|
||||
*pulDest++ = *pulSrc++;
|
||||
}
|
||||
|
||||
__attribute__ ((section(".after_vectors")))
|
||||
void bss_init(unsigned int start, unsigned int len) {
|
||||
unsigned int *pulDest = (unsigned int*) start;
|
||||
unsigned int loop;
|
||||
for (loop = 0; loop < len; loop = loop + 4)
|
||||
*pulDest++ = 0;
|
||||
}
|
||||
|
||||
#ifndef USE_OLD_STYLE_DATA_BSS_INIT
|
||||
//*****************************************************************************
|
||||
// The following symbols are constructs generated by the linker, indicating
|
||||
// the location of various points in the "Global Section Table". This table is
|
||||
// created by the linker via the Code Red managed linker script mechanism. It
|
||||
// contains the load address, execution address and length of each RW data
|
||||
// section and the execution and length of each BSS (zero initialized) section.
|
||||
//*****************************************************************************
|
||||
extern unsigned int __data_section_table;
|
||||
extern unsigned int __data_section_table_end;
|
||||
extern unsigned int __bss_section_table;
|
||||
extern unsigned int __bss_section_table_end;
|
||||
#else
|
||||
//*****************************************************************************
|
||||
// The following symbols are constructs generated by the linker, indicating
|
||||
// the load address, execution address and length of the RW data section and
|
||||
// the execution and length of the BSS (zero initialized) section.
|
||||
// Note that these symbols are not normally used by the managed linker script
|
||||
// mechanism in Red Suite/LPCXpresso 3.6 (Windows) and LPCXpresso 3.8 (Linux).
|
||||
// They are provide here simply so this startup code can be used with earlier
|
||||
// versions of Red Suite which do not support the more advanced managed linker
|
||||
// script mechanism introduced in the above version. To enable their use,
|
||||
// define "USE_OLD_STYLE_DATA_BSS_INIT".
|
||||
//*****************************************************************************
|
||||
extern unsigned int _etext;
|
||||
extern unsigned int _data;
|
||||
extern unsigned int _edata;
|
||||
extern unsigned int _bss;
|
||||
extern unsigned int _ebss;
|
||||
#endif
|
||||
|
||||
|
||||
//*****************************************************************************
|
||||
// Reset entry point for your code.
|
||||
// Sets up a simple runtime environment and initializes the C/C++
|
||||
// library.
|
||||
//*****************************************************************************
|
||||
__attribute__ ((section(".after_vectors")))
|
||||
void
|
||||
ResetISR(void) {
|
||||
|
||||
#ifndef USE_OLD_STYLE_DATA_BSS_INIT
|
||||
//
|
||||
// Copy the data sections from flash to SRAM.
|
||||
//
|
||||
unsigned int LoadAddr, ExeAddr, SectionLen;
|
||||
unsigned int *SectionTableAddr;
|
||||
|
||||
// Load base address of Global Section Table
|
||||
SectionTableAddr = &__data_section_table;
|
||||
|
||||
// Copy the data sections from flash to SRAM.
|
||||
while (SectionTableAddr < &__data_section_table_end) {
|
||||
LoadAddr = *SectionTableAddr++;
|
||||
ExeAddr = *SectionTableAddr++;
|
||||
SectionLen = *SectionTableAddr++;
|
||||
data_init(LoadAddr, ExeAddr, SectionLen);
|
||||
}
|
||||
// At this point, SectionTableAddr = &__bss_section_table;
|
||||
// Zero fill the bss segment
|
||||
while (SectionTableAddr < &__bss_section_table_end) {
|
||||
ExeAddr = *SectionTableAddr++;
|
||||
SectionLen = *SectionTableAddr++;
|
||||
bss_init(ExeAddr, SectionLen);
|
||||
}
|
||||
#else
|
||||
// Use Old Style Data and BSS section initialization.
|
||||
// This will only initialize a single RAM bank.
|
||||
unsigned int * LoadAddr, *ExeAddr, *EndAddr, SectionLen;
|
||||
|
||||
// Copy the data segment from flash to SRAM.
|
||||
LoadAddr = &_etext;
|
||||
ExeAddr = &_data;
|
||||
EndAddr = &_edata;
|
||||
SectionLen = (void*)EndAddr - (void*)ExeAddr;
|
||||
data_init((unsigned int)LoadAddr, (unsigned int)ExeAddr, SectionLen);
|
||||
// Zero fill the bss segment
|
||||
ExeAddr = &_bss;
|
||||
EndAddr = &_ebss;
|
||||
SectionLen = (void*)EndAddr - (void*)ExeAddr;
|
||||
bss_init ((unsigned int)ExeAddr, SectionLen);
|
||||
#endif
|
||||
|
||||
// extern void SystemInit(void);
|
||||
SystemInit();
|
||||
|
||||
#if defined (__cplusplus)
|
||||
//
|
||||
// Call C++ library initialisation
|
||||
//
|
||||
__libc_init_array();
|
||||
#endif
|
||||
|
||||
#if defined (__REDLIB__)
|
||||
// Call the Redlib library, which in turn calls main()
|
||||
__main() ;
|
||||
#else
|
||||
main();
|
||||
#endif
|
||||
//
|
||||
// main() shouldn't return, but if it does, we'll just enter an infinite loop
|
||||
//
|
||||
while (1) {
|
||||
;
|
||||
}
|
||||
}
|
||||
|
||||
//*****************************************************************************
|
||||
// Default exception handlers. Override the ones here by defining your own
|
||||
// handler routines in your application code.
|
||||
//*****************************************************************************
|
||||
__attribute__ ((section(".after_vectors")))
|
||||
void NMI_Handler(void)
|
||||
{
|
||||
while(1)
|
||||
{
|
||||
}
|
||||
}
|
||||
__attribute__ ((section(".after_vectors")))
|
||||
void HardFault_Handler(void)
|
||||
{
|
||||
while(1)
|
||||
{
|
||||
}
|
||||
}
|
||||
__attribute__ ((section(".after_vectors")))
|
||||
void SVC_Handler(void)
|
||||
{
|
||||
while(1)
|
||||
{
|
||||
}
|
||||
}
|
||||
__attribute__ ((section(".after_vectors")))
|
||||
void PendSV_Handler(void)
|
||||
{
|
||||
while(1)
|
||||
{
|
||||
}
|
||||
}
|
||||
__attribute__ ((section(".after_vectors")))
|
||||
void SysTick_Handler(void)
|
||||
{
|
||||
while(1)
|
||||
{
|
||||
}
|
||||
}
|
||||
|
||||
//*****************************************************************************
|
||||
//
|
||||
// Processor ends up here if an unexpected interrupt occurs or a specific
|
||||
// handler is not present in the application code.
|
||||
//
|
||||
//*****************************************************************************
|
||||
__attribute__ ((section(".after_vectors")))
|
||||
void IntDefaultHandler(void)
|
||||
{
|
||||
while(1)
|
||||
{
|
||||
}
|
||||
}
|
||||
|
225
hw/bsp/lpcxpresso1347/lpc1347.ld
Normal file
225
hw/bsp/lpcxpresso1347/lpc1347.ld
Normal file
@ -0,0 +1,225 @@
|
||||
/*
|
||||
* GENERATED FILE - DO NOT EDIT
|
||||
* (c) Code Red Technologies Ltd, 2008-2013
|
||||
* (c) NXP Semiconductors 2013-2019
|
||||
* Generated linker script file for LPC1347
|
||||
* Created from linkscript.ldt by FMCreateLinkLibraries
|
||||
* Using Freemarker v2.3.23
|
||||
* MCUXpresso IDE v10.2.1 [Build 795] [2018-07-25] on May 14, 2019 6:01:58 PM
|
||||
*/
|
||||
|
||||
MEMORY
|
||||
{
|
||||
/* Define each memory region */
|
||||
MFlash64 (rx) : ORIGIN = 0x0, LENGTH = 0x10000 /* 64K bytes (alias Flash) */
|
||||
RamLoc8 (rwx) : ORIGIN = 0x10000000, LENGTH = 0x2000 /* 8K bytes (alias RAM) */
|
||||
RamUsb2 (rwx) : ORIGIN = 0x20004000, LENGTH = 0x800 /* 2K bytes (alias RAM2) */
|
||||
RamPeriph2 (rwx) : ORIGIN = 0x20000000, LENGTH = 0x800 /* 2K bytes (alias RAM3) */
|
||||
}
|
||||
|
||||
/* Define a symbol for the top of each memory region */
|
||||
__base_MFlash64 = 0x0 ; /* MFlash64 */
|
||||
__base_Flash = 0x0 ; /* Flash */
|
||||
__top_MFlash64 = 0x0 + 0x10000 ; /* 64K bytes */
|
||||
__top_Flash = 0x0 + 0x10000 ; /* 64K bytes */
|
||||
__base_RamLoc8 = 0x10000000 ; /* RamLoc8 */
|
||||
__base_RAM = 0x10000000 ; /* RAM */
|
||||
__top_RamLoc8 = 0x10000000 + 0x2000 ; /* 8K bytes */
|
||||
__top_RAM = 0x10000000 + 0x2000 ; /* 8K bytes */
|
||||
__base_RamUsb2 = 0x20004000 ; /* RamUsb2 */
|
||||
__base_RAM2 = 0x20004000 ; /* RAM2 */
|
||||
__top_RamUsb2 = 0x20004000 + 0x800 ; /* 2K bytes */
|
||||
__top_RAM2 = 0x20004000 + 0x800 ; /* 2K bytes */
|
||||
__base_RamPeriph2 = 0x20000000 ; /* RamPeriph2 */
|
||||
__base_RAM3 = 0x20000000 ; /* RAM3 */
|
||||
__top_RamPeriph2 = 0x20000000 + 0x800 ; /* 2K bytes */
|
||||
__top_RAM3 = 0x20000000 + 0x800 ; /* 2K bytes */
|
||||
|
||||
ENTRY(ResetISR)
|
||||
|
||||
SECTIONS
|
||||
{
|
||||
/* MAIN TEXT SECTION */
|
||||
.text : ALIGN(4)
|
||||
{
|
||||
FILL(0xff)
|
||||
__vectors_start__ = ABSOLUTE(.) ;
|
||||
KEEP(*(.isr_vector))
|
||||
/* Global Section Table */
|
||||
. = ALIGN(4) ;
|
||||
__section_table_start = .;
|
||||
__data_section_table = .;
|
||||
LONG(LOADADDR(.data));
|
||||
LONG( ADDR(.data));
|
||||
LONG( SIZEOF(.data));
|
||||
LONG(LOADADDR(.data_RAM2));
|
||||
LONG( ADDR(.data_RAM2));
|
||||
LONG( SIZEOF(.data_RAM2));
|
||||
LONG(LOADADDR(.data_RAM3));
|
||||
LONG( ADDR(.data_RAM3));
|
||||
LONG( SIZEOF(.data_RAM3));
|
||||
__data_section_table_end = .;
|
||||
__bss_section_table = .;
|
||||
LONG( ADDR(.bss));
|
||||
LONG( SIZEOF(.bss));
|
||||
LONG( ADDR(.bss_RAM2));
|
||||
LONG( SIZEOF(.bss_RAM2));
|
||||
LONG( ADDR(.bss_RAM3));
|
||||
LONG( SIZEOF(.bss_RAM3));
|
||||
__bss_section_table_end = .;
|
||||
__section_table_end = . ;
|
||||
/* End of Global Section Table */
|
||||
|
||||
*(.after_vectors*)
|
||||
|
||||
} > MFlash64
|
||||
|
||||
.text : ALIGN(4)
|
||||
{
|
||||
*(.text*)
|
||||
*(.rodata .rodata.* .constdata .constdata.*)
|
||||
. = ALIGN(4);
|
||||
} > MFlash64
|
||||
/*
|
||||
* for exception handling/unwind - some Newlib functions (in common
|
||||
* with C++ and STDC++) use this.
|
||||
*/
|
||||
.ARM.extab : ALIGN(4)
|
||||
{
|
||||
*(.ARM.extab* .gnu.linkonce.armextab.*)
|
||||
} > MFlash64
|
||||
|
||||
__exidx_start = .;
|
||||
|
||||
.ARM.exidx : ALIGN(4)
|
||||
{
|
||||
*(.ARM.exidx* .gnu.linkonce.armexidx.*)
|
||||
} > MFlash64
|
||||
__exidx_end = .;
|
||||
|
||||
_etext = .;
|
||||
|
||||
/* DATA section for RamUsb2 */
|
||||
|
||||
.data_RAM2 : ALIGN(4)
|
||||
{
|
||||
FILL(0xff)
|
||||
PROVIDE(__start_data_RAM2 = .) ;
|
||||
*(.ramfunc.$RAM2)
|
||||
*(.ramfunc.$RamUsb2)
|
||||
*(.data.$RAM2*)
|
||||
*(.data.$RamUsb2*)
|
||||
. = ALIGN(4) ;
|
||||
PROVIDE(__end_data_RAM2 = .) ;
|
||||
} > RamUsb2 AT>MFlash64
|
||||
/* DATA section for RamPeriph2 */
|
||||
|
||||
.data_RAM3 : ALIGN(4)
|
||||
{
|
||||
FILL(0xff)
|
||||
PROVIDE(__start_data_RAM3 = .) ;
|
||||
*(.ramfunc.$RAM3)
|
||||
*(.ramfunc.$RamPeriph2)
|
||||
*(.data.$RAM3*)
|
||||
*(.data.$RamPeriph2*)
|
||||
. = ALIGN(4) ;
|
||||
PROVIDE(__end_data_RAM3 = .) ;
|
||||
} > RamPeriph2 AT>MFlash64
|
||||
/* MAIN DATA SECTION */
|
||||
.uninit_RESERVED : ALIGN(4)
|
||||
{
|
||||
KEEP(*(.bss.$RESERVED*))
|
||||
. = ALIGN(4) ;
|
||||
_end_uninit_RESERVED = .;
|
||||
} > RamLoc8
|
||||
|
||||
/* Main DATA section (RamLoc8) */
|
||||
.data : ALIGN(4)
|
||||
{
|
||||
FILL(0xff)
|
||||
_data = . ;
|
||||
*(vtable)
|
||||
*(.ramfunc*)
|
||||
*(.data*)
|
||||
. = ALIGN(4) ;
|
||||
_edata = . ;
|
||||
} > RamLoc8 AT>MFlash64
|
||||
|
||||
/* BSS section for RamUsb2 */
|
||||
.bss_RAM2 : ALIGN(4)
|
||||
{
|
||||
PROVIDE(__start_bss_RAM2 = .) ;
|
||||
*(.bss.$RAM2*)
|
||||
*(.bss.$RamUsb2*)
|
||||
. = ALIGN (. != 0 ? 4 : 1) ; /* avoid empty segment */
|
||||
PROVIDE(__end_bss_RAM2 = .) ;
|
||||
} > RamUsb2
|
||||
|
||||
/* BSS section for RamPeriph2 */
|
||||
.bss_RAM3 : ALIGN(4)
|
||||
{
|
||||
PROVIDE(__start_bss_RAM3 = .) ;
|
||||
*(.bss.$RAM3*)
|
||||
*(.bss.$RamPeriph2*)
|
||||
. = ALIGN (. != 0 ? 4 : 1) ; /* avoid empty segment */
|
||||
PROVIDE(__end_bss_RAM3 = .) ;
|
||||
} > RamPeriph2
|
||||
|
||||
/* MAIN BSS SECTION */
|
||||
.bss : ALIGN(4)
|
||||
{
|
||||
_bss = .;
|
||||
*(.bss*)
|
||||
*(COMMON)
|
||||
. = ALIGN(4) ;
|
||||
_ebss = .;
|
||||
PROVIDE(end = .);
|
||||
} > RamLoc8
|
||||
|
||||
/* NOINIT section for RamUsb2 */
|
||||
.noinit_RAM2 (NOLOAD) : ALIGN(4)
|
||||
{
|
||||
*(.noinit.$RAM2*)
|
||||
*(.noinit.$RamUsb2*)
|
||||
. = ALIGN(4) ;
|
||||
} > RamUsb2
|
||||
|
||||
/* NOINIT section for RamPeriph2 */
|
||||
.noinit_RAM3 (NOLOAD) : ALIGN(4)
|
||||
{
|
||||
*(.noinit.$RAM3*)
|
||||
*(.noinit.$RamPeriph2*)
|
||||
. = ALIGN(4) ;
|
||||
} > RamPeriph2
|
||||
|
||||
/* DEFAULT NOINIT SECTION */
|
||||
.noinit (NOLOAD): ALIGN(4)
|
||||
{
|
||||
_noinit = .;
|
||||
*(.noinit*)
|
||||
. = ALIGN(4) ;
|
||||
_end_noinit = .;
|
||||
} > RamLoc8
|
||||
PROVIDE(_pvHeapStart = DEFINED(__user_heap_base) ? __user_heap_base : .);
|
||||
PROVIDE(_vStackTop = DEFINED(__user_stack_top) ? __user_stack_top : __top_RamLoc8 - 0);
|
||||
|
||||
/* ## Create checksum value (used in startup) ## */
|
||||
PROVIDE(__valid_user_code_checksum = 0 -
|
||||
(_vStackTop
|
||||
+ (ResetISR + 1)
|
||||
+ (NMI_Handler + 1)
|
||||
+ (HardFault_Handler + 1)
|
||||
+ (( DEFINED(MemManage_Handler) ? MemManage_Handler : 0 ) + 1) /* MemManage_Handler may not be defined */
|
||||
+ (( DEFINED(BusFault_Handler) ? BusFault_Handler : 0 ) + 1) /* BusFault_Handler may not be defined */
|
||||
+ (( DEFINED(UsageFault_Handler) ? UsageFault_Handler : 0 ) + 1) /* UsageFault_Handler may not be defined */
|
||||
) );
|
||||
|
||||
/* Provide basic symbols giving location and size of main text
|
||||
* block, including initial values of RW data sections. Note that
|
||||
* these will need extending to give a complete picture with
|
||||
* complex images (e.g multiple Flash banks).
|
||||
*/
|
||||
_image_start = LOADADDR(.text);
|
||||
_image_end = LOADADDR(.data) + SIZEOF(.data);
|
||||
_image_size = _image_end - _image_start;
|
||||
}
|
@ -13,7 +13,7 @@ fail_count = 0
|
||||
exit_status = 0
|
||||
|
||||
all_device_example = ["cdc_msc_hid", "msc_dual_lun", "hid_generic_inout"]
|
||||
all_boards = ["metro_m0_express", "metro_m4_express", "pca10056", "feather_nrf52840_express", "stm32f407g_disc1", "lpcxpresso11u68"]
|
||||
all_boards = ["metro_m0_express", "metro_m4_express", "pca10056", "feather_nrf52840_express", "stm32f407g_disc1", "lpcxpresso11u68", "lpcxpresso1347"]
|
||||
|
||||
def build_example(example, board):
|
||||
subprocess.run("make -C examples/device/{} BOARD={} clean".format(example, board), shell=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT)
|
||||
|
Loading…
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Reference in New Issue
Block a user