mbed library sources. Supersedes mbed-src. Fixed broken STM32F1xx RTC on rtc_api.c

Dependents:   Nucleo_F103RB_RTC_battery_bkup_pwr_off_okay

Fork of mbed-dev by mbed official

Committer:
<>
Date:
Tue Mar 14 16:40:56 2017 +0000
Revision:
160:d5399cc887bb
Parent:
153:fa9ff456f731
Child:
163:74e0ce7f98e8
This updates the lib to the mbed lib v138

Who changed what in which revision?

UserRevisionLine numberNew contents of line
<> 149:156823d33999 1 /* mbed Microcontroller Library
<> 149:156823d33999 2 * Copyright (c) 2016, STMicroelectronics
<> 149:156823d33999 3 * All rights reserved.
<> 149:156823d33999 4 *
<> 149:156823d33999 5 * Redistribution and use in source and binary forms, with or without
<> 149:156823d33999 6 * modification, are permitted provided that the following conditions are met:
<> 149:156823d33999 7 *
<> 149:156823d33999 8 * 1. Redistributions of source code must retain the above copyright notice,
<> 149:156823d33999 9 * this list of conditions and the following disclaimer.
<> 149:156823d33999 10 * 2. Redistributions in binary form must reproduce the above copyright notice,
<> 149:156823d33999 11 * this list of conditions and the following disclaimer in the documentation
<> 149:156823d33999 12 * and/or other materials provided with the distribution.
<> 149:156823d33999 13 * 3. Neither the name of STMicroelectronics nor the names of its contributors
<> 149:156823d33999 14 * may be used to endorse or promote products derived from this software
<> 149:156823d33999 15 * without specific prior written permission.
<> 149:156823d33999 16 *
<> 149:156823d33999 17 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
<> 149:156823d33999 18 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
<> 149:156823d33999 19 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
<> 149:156823d33999 20 * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
<> 149:156823d33999 21 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
<> 149:156823d33999 22 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
<> 149:156823d33999 23 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
<> 149:156823d33999 24 * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
<> 149:156823d33999 25 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
<> 149:156823d33999 26 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
<> 149:156823d33999 27 */
<> 149:156823d33999 28 #include "mbed_assert.h"
<> 149:156823d33999 29 #include "analogin_api.h"
<> 149:156823d33999 30
<> 149:156823d33999 31 #if DEVICE_ANALOGIN
<> 149:156823d33999 32
<> 160:d5399cc887bb 33 #include "mbed_wait_api.h"
<> 149:156823d33999 34 #include "cmsis.h"
<> 149:156823d33999 35 #include "pinmap.h"
<> 149:156823d33999 36 #include "mbed_error.h"
<> 149:156823d33999 37 #include "PeripheralPins.h"
<> 149:156823d33999 38
<> 149:156823d33999 39 ADC_HandleTypeDef AdcHandle;
<> 149:156823d33999 40
<> 149:156823d33999 41 void analogin_init(analogin_t *obj, PinName pin)
<> 149:156823d33999 42 {
<> 149:156823d33999 43 #if defined(ADC1)
<> 149:156823d33999 44 static int adc1_inited = 0;
<> 149:156823d33999 45 #endif
<> 149:156823d33999 46 #if defined(ADC2)
<> 149:156823d33999 47 static int adc2_inited = 0;
<> 149:156823d33999 48 #endif
<> 149:156823d33999 49 #if defined(ADC3)
<> 149:156823d33999 50 static int adc3_inited = 0;
<> 149:156823d33999 51 #endif
<> 149:156823d33999 52 // Get the peripheral name from the pin and assign it to the object
<> 149:156823d33999 53 obj->adc = (ADCName)pinmap_peripheral(pin, PinMap_ADC);
<> 149:156823d33999 54 MBED_ASSERT(obj->adc != (ADCName)NC);
<> 149:156823d33999 55
<> 149:156823d33999 56 // Get the functions (adc channel) from the pin and assign it to the object
<> 149:156823d33999 57 uint32_t function = pinmap_function(pin, PinMap_ADC);
<> 149:156823d33999 58 MBED_ASSERT(function != (uint32_t)NC);
<> 149:156823d33999 59 obj->channel = STM_PIN_CHANNEL(function);
<> 149:156823d33999 60
<> 150:02e0a0aed4ec 61 // Configure GPIO excepted for internal channels (Temperature, Vref, Vbat, ...)
<> 150:02e0a0aed4ec 62 // ADC Internal Channels "pins" are described in PinNames.h and must have a value >= 0xF0
<> 150:02e0a0aed4ec 63 if (pin < 0xF0) {
<> 149:156823d33999 64 pinmap_pinout(pin, PinMap_ADC);
<> 149:156823d33999 65 }
<> 149:156823d33999 66
<> 149:156823d33999 67 // Save pin number for the read function
<> 149:156823d33999 68 obj->pin = pin;
<> 149:156823d33999 69
<> 149:156823d33999 70 // Check if ADC is already initialized
<> 149:156823d33999 71 // Enable ADC clock
<> 149:156823d33999 72 #if defined(ADC1)
<> 149:156823d33999 73 if ((obj->adc == ADC_1) && adc1_inited) return;
<> 149:156823d33999 74 if (obj->adc == ADC_1) {
<> 149:156823d33999 75 __ADC1_CLK_ENABLE();
<> 149:156823d33999 76 adc1_inited = 1;
<> 149:156823d33999 77 }
<> 149:156823d33999 78 #endif
<> 149:156823d33999 79 #if defined(ADC2)
<> 149:156823d33999 80 if ((obj->adc == ADC_2) && adc2_inited) return;
<> 149:156823d33999 81 if (obj->adc == ADC_2) {
<> 149:156823d33999 82 __ADC2_CLK_ENABLE();
<> 149:156823d33999 83 adc2_inited = 1;
<> 149:156823d33999 84 }
<> 149:156823d33999 85 #endif
<> 149:156823d33999 86 #if defined(ADC3)
<> 149:156823d33999 87 if ((obj->adc == ADC_3) && adc3_inited) return;
<> 149:156823d33999 88 if (obj->adc == ADC_3) {
<> 149:156823d33999 89 __ADC3_CLK_ENABLE();
<> 149:156823d33999 90 adc3_inited = 1;
<> 149:156823d33999 91 }
<> 149:156823d33999 92 #endif
<> 149:156823d33999 93 // Configure ADC
<> 149:156823d33999 94 AdcHandle.Instance = (ADC_TypeDef *)(obj->adc);
<> 149:156823d33999 95 AdcHandle.Init.ClockPrescaler = ADC_CLOCKPRESCALER_PCLK_DIV2;
<> 149:156823d33999 96 AdcHandle.Init.Resolution = ADC_RESOLUTION12b;
<> 149:156823d33999 97 AdcHandle.Init.ScanConvMode = DISABLE;
<> 149:156823d33999 98 AdcHandle.Init.ContinuousConvMode = DISABLE;
<> 149:156823d33999 99 AdcHandle.Init.DiscontinuousConvMode = DISABLE;
<> 149:156823d33999 100 AdcHandle.Init.NbrOfDiscConversion = 0;
<> 149:156823d33999 101 AdcHandle.Init.ExternalTrigConvEdge = ADC_EXTERNALTRIGCONVEDGE_NONE;
<> 149:156823d33999 102 AdcHandle.Init.ExternalTrigConv = ADC_EXTERNALTRIGCONV_T1_CC1;
<> 149:156823d33999 103 AdcHandle.Init.DataAlign = ADC_DATAALIGN_RIGHT;
<> 149:156823d33999 104 AdcHandle.Init.NbrOfConversion = 1;
<> 149:156823d33999 105 AdcHandle.Init.DMAContinuousRequests = DISABLE;
<> 149:156823d33999 106 AdcHandle.Init.EOCSelection = DISABLE;
<> 149:156823d33999 107
<> 149:156823d33999 108 if (HAL_ADC_Init(&AdcHandle) != HAL_OK) {
<> 149:156823d33999 109 error("Cannot initialize ADC\n");
<> 149:156823d33999 110 }
<> 149:156823d33999 111 }
<> 149:156823d33999 112
<> 149:156823d33999 113 static inline uint16_t adc_read(analogin_t *obj)
<> 149:156823d33999 114 {
<> 149:156823d33999 115 ADC_ChannelConfTypeDef sConfig = {0};
<> 149:156823d33999 116
<> 149:156823d33999 117 AdcHandle.Instance = (ADC_TypeDef *)(obj->adc);
<> 149:156823d33999 118
<> 149:156823d33999 119 // Configure ADC channel
<> 149:156823d33999 120 sConfig.Rank = 1;
<> 149:156823d33999 121 sConfig.SamplingTime = ADC_SAMPLETIME_15CYCLES;
<> 149:156823d33999 122 sConfig.Offset = 0;
<> 149:156823d33999 123
<> 149:156823d33999 124 switch (obj->channel) {
<> 149:156823d33999 125 case 0:
<> 149:156823d33999 126 sConfig.Channel = ADC_CHANNEL_0;
<> 149:156823d33999 127 break;
<> 149:156823d33999 128 case 1:
<> 149:156823d33999 129 sConfig.Channel = ADC_CHANNEL_1;
<> 149:156823d33999 130 break;
<> 149:156823d33999 131 case 2:
<> 149:156823d33999 132 sConfig.Channel = ADC_CHANNEL_2;
<> 149:156823d33999 133 break;
<> 149:156823d33999 134 case 3:
<> 149:156823d33999 135 sConfig.Channel = ADC_CHANNEL_3;
<> 149:156823d33999 136 break;
<> 149:156823d33999 137 case 4:
<> 149:156823d33999 138 sConfig.Channel = ADC_CHANNEL_4;
<> 149:156823d33999 139 break;
<> 149:156823d33999 140 case 5:
<> 149:156823d33999 141 sConfig.Channel = ADC_CHANNEL_5;
<> 149:156823d33999 142 break;
<> 149:156823d33999 143 case 6:
<> 149:156823d33999 144 sConfig.Channel = ADC_CHANNEL_6;
<> 149:156823d33999 145 break;
<> 149:156823d33999 146 case 7:
<> 149:156823d33999 147 sConfig.Channel = ADC_CHANNEL_7;
<> 149:156823d33999 148 break;
<> 149:156823d33999 149 case 8:
<> 149:156823d33999 150 sConfig.Channel = ADC_CHANNEL_8;
<> 149:156823d33999 151 break;
<> 149:156823d33999 152 case 9:
<> 149:156823d33999 153 sConfig.Channel = ADC_CHANNEL_9;
<> 149:156823d33999 154 break;
<> 149:156823d33999 155 case 10:
<> 149:156823d33999 156 sConfig.Channel = ADC_CHANNEL_10;
<> 149:156823d33999 157 break;
<> 149:156823d33999 158 case 11:
<> 149:156823d33999 159 sConfig.Channel = ADC_CHANNEL_11;
<> 149:156823d33999 160 break;
<> 149:156823d33999 161 case 12:
<> 149:156823d33999 162 sConfig.Channel = ADC_CHANNEL_12;
<> 149:156823d33999 163 break;
<> 149:156823d33999 164 case 13:
<> 149:156823d33999 165 sConfig.Channel = ADC_CHANNEL_13;
<> 149:156823d33999 166 break;
<> 149:156823d33999 167 case 14:
<> 149:156823d33999 168 sConfig.Channel = ADC_CHANNEL_14;
<> 149:156823d33999 169 break;
<> 149:156823d33999 170 case 15:
<> 149:156823d33999 171 sConfig.Channel = ADC_CHANNEL_15;
<> 149:156823d33999 172 break;
<> 149:156823d33999 173 case 16:
<> 149:156823d33999 174 sConfig.Channel = ADC_CHANNEL_TEMPSENSOR;
<> 149:156823d33999 175 break;
<> 149:156823d33999 176 case 17:
<> 149:156823d33999 177 sConfig.Channel = ADC_CHANNEL_VREFINT;
<> 149:156823d33999 178 break;
<> 149:156823d33999 179 case 18:
<> 149:156823d33999 180 sConfig.Channel = ADC_CHANNEL_VBAT;
<> 149:156823d33999 181 break;
<> 149:156823d33999 182 default:
<> 149:156823d33999 183 return 0;
<> 149:156823d33999 184 }
<> 149:156823d33999 185
<> 153:fa9ff456f731 186 // Measuring VBAT sets the ADC_CCR_VBATE bit in ADC->CCR, and there is not
<> 153:fa9ff456f731 187 // possibility with the ST HAL driver to clear it. If it isn't cleared,
<> 153:fa9ff456f731 188 // VBAT remains connected to the ADC channel in preference to temperature,
<> 153:fa9ff456f731 189 // so VBAT readings are returned in place of temperature.
<> 153:fa9ff456f731 190 ADC->CCR &= ~(ADC_CCR_VBATE | ADC_CCR_TSVREFE);
<> 153:fa9ff456f731 191
<> 149:156823d33999 192 HAL_ADC_ConfigChannel(&AdcHandle, &sConfig);
<> 149:156823d33999 193
<> 149:156823d33999 194 HAL_ADC_Start(&AdcHandle); // Start conversion
<> 149:156823d33999 195
<> 149:156823d33999 196 // Wait end of conversion and get value
<> 149:156823d33999 197 if (HAL_ADC_PollForConversion(&AdcHandle, 10) == HAL_OK) {
<> 153:fa9ff456f731 198 return (uint16_t)HAL_ADC_GetValue(&AdcHandle);
<> 149:156823d33999 199 } else {
<> 149:156823d33999 200 return 0;
<> 149:156823d33999 201 }
<> 149:156823d33999 202 }
<> 149:156823d33999 203
<> 149:156823d33999 204 uint16_t analogin_read_u16(analogin_t *obj)
<> 149:156823d33999 205 {
<> 149:156823d33999 206 uint16_t value = adc_read(obj);
<> 149:156823d33999 207 // 12-bit to 16-bit conversion
<> 149:156823d33999 208 value = ((value << 4) & (uint16_t)0xFFF0) | ((value >> 8) & (uint16_t)0x000F);
<> 149:156823d33999 209 return value;
<> 149:156823d33999 210 }
<> 149:156823d33999 211
<> 149:156823d33999 212 float analogin_read(analogin_t *obj)
<> 149:156823d33999 213 {
<> 149:156823d33999 214 uint16_t value = adc_read(obj);
<> 149:156823d33999 215 return (float)value * (1.0f / (float)0xFFF); // 12 bits range
<> 149:156823d33999 216 }
<> 149:156823d33999 217
<> 149:156823d33999 218 #endif