mbed library sources with internal temperature sensor for nucleo f401

Committer:
elessair
Date:
Sat Jan 17 18:03:58 2015 +0000
Revision:
0:7e2bd16f80af
nucleo f401re internal temperature added

Who changed what in which revision?

UserRevisionLine numberNew contents of line
elessair 0:7e2bd16f80af 1 /* mbed Microcontroller Library
elessair 0:7e2bd16f80af 2 * Copyright (c) 2006-2013 ARM Limited
elessair 0:7e2bd16f80af 3 *
elessair 0:7e2bd16f80af 4 * Licensed under the Apache License, Version 2.0 (the "License");
elessair 0:7e2bd16f80af 5 * you may not use this file except in compliance with the License.
elessair 0:7e2bd16f80af 6 * You may obtain a copy of the License at
elessair 0:7e2bd16f80af 7 *
elessair 0:7e2bd16f80af 8 * http://www.apache.org/licenses/LICENSE-2.0
elessair 0:7e2bd16f80af 9 *
elessair 0:7e2bd16f80af 10 * Unless required by applicable law or agreed to in writing, software
elessair 0:7e2bd16f80af 11 * distributed under the License is distributed on an "AS IS" BASIS,
elessair 0:7e2bd16f80af 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
elessair 0:7e2bd16f80af 13 * See the License for the specific language governing permissions and
elessair 0:7e2bd16f80af 14 * limitations under the License.
elessair 0:7e2bd16f80af 15 */
elessair 0:7e2bd16f80af 16 #include "gpio_api.h"
elessair 0:7e2bd16f80af 17 #include "wait_api.h"
elessair 0:7e2bd16f80af 18 #include "toolchain.h"
elessair 0:7e2bd16f80af 19 #include "mbed_interface.h"
elessair 0:7e2bd16f80af 20
elessair 0:7e2bd16f80af 21 WEAK void mbed_die(void) {
elessair 0:7e2bd16f80af 22 #ifndef NRF51_H
elessair 0:7e2bd16f80af 23 __disable_irq(); // dont allow interrupts to disturb the flash pattern
elessair 0:7e2bd16f80af 24 #endif
elessair 0:7e2bd16f80af 25 #if (DEVICE_ERROR_RED == 1)
elessair 0:7e2bd16f80af 26 gpio_t led_red; gpio_init_out(&led_red, LED_RED);
elessair 0:7e2bd16f80af 27 #elif (DEVICE_ERROR_PATTERN == 1)
elessair 0:7e2bd16f80af 28 gpio_t led_1; gpio_init_out(&led_1, LED1);
elessair 0:7e2bd16f80af 29 gpio_t led_2; gpio_init_out(&led_2, LED2);
elessair 0:7e2bd16f80af 30 gpio_t led_3; gpio_init_out(&led_3, LED3);
elessair 0:7e2bd16f80af 31 gpio_t led_4; gpio_init_out(&led_4, LED4);
elessair 0:7e2bd16f80af 32 #endif
elessair 0:7e2bd16f80af 33
elessair 0:7e2bd16f80af 34 while (1) {
elessair 0:7e2bd16f80af 35 #if (DEVICE_ERROR_RED == 1)
elessair 0:7e2bd16f80af 36 gpio_write(&led_red, 1);
elessair 0:7e2bd16f80af 37
elessair 0:7e2bd16f80af 38 #elif (DEVICE_ERROR_PATTERN == 1)
elessair 0:7e2bd16f80af 39 gpio_write(&led_1, 1);
elessair 0:7e2bd16f80af 40 gpio_write(&led_2, 0);
elessair 0:7e2bd16f80af 41 gpio_write(&led_3, 0);
elessair 0:7e2bd16f80af 42 gpio_write(&led_4, 1);
elessair 0:7e2bd16f80af 43 #endif
elessair 0:7e2bd16f80af 44
elessair 0:7e2bd16f80af 45 wait_ms(150);
elessair 0:7e2bd16f80af 46
elessair 0:7e2bd16f80af 47 #if (DEVICE_ERROR_RED == 1)
elessair 0:7e2bd16f80af 48 gpio_write(&led_red, 0);
elessair 0:7e2bd16f80af 49
elessair 0:7e2bd16f80af 50 #elif (DEVICE_ERROR_PATTERN == 1)
elessair 0:7e2bd16f80af 51 gpio_write(&led_1, 0);
elessair 0:7e2bd16f80af 52 gpio_write(&led_2, 1);
elessair 0:7e2bd16f80af 53 gpio_write(&led_3, 1);
elessair 0:7e2bd16f80af 54 gpio_write(&led_4, 0);
elessair 0:7e2bd16f80af 55 #endif
elessair 0:7e2bd16f80af 56
elessair 0:7e2bd16f80af 57 wait_ms(150);
elessair 0:7e2bd16f80af 58 }
elessair 0:7e2bd16f80af 59 }