raspiezo / mbed-dev

Dependents:   Nucleo_L432KC_Quadrature_Decoder_with_ADC_and_DAC

Fork of mbed-dev by mbed official

Committer:
bogdanm
Date:
Thu Oct 01 15:25:22 2015 +0300
Revision:
0:9b334a45a8ff
Child:
144:ef7eb2e8f9f7
Initial commit on mbed-dev

Replaces mbed-src (now inactive)

Who changed what in which revision?

UserRevisionLine numberNew contents of line
bogdanm 0:9b334a45a8ff 1 /* mbed Microcontroller Library
bogdanm 0:9b334a45a8ff 2 * Copyright (c) 2006-2013 ARM Limited
bogdanm 0:9b334a45a8ff 3 *
bogdanm 0:9b334a45a8ff 4 * Licensed under the Apache License, Version 2.0 (the "License");
bogdanm 0:9b334a45a8ff 5 * you may not use this file except in compliance with the License.
bogdanm 0:9b334a45a8ff 6 * You may obtain a copy of the License at
bogdanm 0:9b334a45a8ff 7 *
bogdanm 0:9b334a45a8ff 8 * http://www.apache.org/licenses/LICENSE-2.0
bogdanm 0:9b334a45a8ff 9 *
bogdanm 0:9b334a45a8ff 10 * Unless required by applicable law or agreed to in writing, software
bogdanm 0:9b334a45a8ff 11 * distributed under the License is distributed on an "AS IS" BASIS,
bogdanm 0:9b334a45a8ff 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
bogdanm 0:9b334a45a8ff 13 * See the License for the specific language governing permissions and
bogdanm 0:9b334a45a8ff 14 * limitations under the License.
bogdanm 0:9b334a45a8ff 15 */
bogdanm 0:9b334a45a8ff 16 #include "mbed_assert.h"
bogdanm 0:9b334a45a8ff 17 #include "analogin_api.h"
bogdanm 0:9b334a45a8ff 18 #include "cmsis.h"
bogdanm 0:9b334a45a8ff 19 #include "pinmap.h"
bogdanm 0:9b334a45a8ff 20 #include "mbed_error.h"
bogdanm 0:9b334a45a8ff 21 #include "PeripheralPins.h" // For the Peripheral to Pin Definitions found in the individual Target's Platform
bogdanm 0:9b334a45a8ff 22
bogdanm 0:9b334a45a8ff 23 #define ANALOGIN_MEDIAN_FILTER 1
bogdanm 0:9b334a45a8ff 24
bogdanm 0:9b334a45a8ff 25 #define ADC_10BIT_RANGE 0x3FF
bogdanm 0:9b334a45a8ff 26 #define ADC_12BIT_RANGE 0xFFF
bogdanm 0:9b334a45a8ff 27
bogdanm 0:9b334a45a8ff 28 static inline int div_round_up(int x, int y) {
bogdanm 0:9b334a45a8ff 29 return (x + (y - 1)) / y;
bogdanm 0:9b334a45a8ff 30 }
bogdanm 0:9b334a45a8ff 31
bogdanm 0:9b334a45a8ff 32 #define LPC_IOCON0_BASE (LPC_IOCON_BASE)
bogdanm 0:9b334a45a8ff 33 #define LPC_IOCON1_BASE (LPC_IOCON_BASE + 0x60)
bogdanm 0:9b334a45a8ff 34
bogdanm 0:9b334a45a8ff 35 #define ADC_RANGE ADC_10BIT_RANGE
bogdanm 0:9b334a45a8ff 36
bogdanm 0:9b334a45a8ff 37 void analogin_init(analogin_t *obj, PinName pin) {
bogdanm 0:9b334a45a8ff 38 obj->adc = (ADCName)pinmap_peripheral(pin, PinMap_ADC);
bogdanm 0:9b334a45a8ff 39 MBED_ASSERT(obj->adc != (ADCName)NC);
bogdanm 0:9b334a45a8ff 40
bogdanm 0:9b334a45a8ff 41 // Power up ADC
bogdanm 0:9b334a45a8ff 42 LPC_SYSCON->PDRUNCFG &= ~ (1 << 4);
bogdanm 0:9b334a45a8ff 43 LPC_SYSCON->SYSAHBCLKCTRL |= ((uint32_t)1 << 13);
bogdanm 0:9b334a45a8ff 44
bogdanm 0:9b334a45a8ff 45 uint32_t pin_number = (uint32_t)pin;
bogdanm 0:9b334a45a8ff 46 __IO uint32_t *reg = (pin_number < 32) ? (__IO uint32_t*)(LPC_IOCON0_BASE + 4 * pin_number) : (__IO uint32_t*)(LPC_IOCON1_BASE + 4 * (pin_number - 32));
bogdanm 0:9b334a45a8ff 47
bogdanm 0:9b334a45a8ff 48 // set pin to ADC mode
bogdanm 0:9b334a45a8ff 49 *reg &= ~(1 << 7); // set ADMODE = 0 (analog mode)
bogdanm 0:9b334a45a8ff 50
bogdanm 0:9b334a45a8ff 51 uint32_t PCLK = SystemCoreClock;
bogdanm 0:9b334a45a8ff 52 uint32_t MAX_ADC_CLK = 4500000;
bogdanm 0:9b334a45a8ff 53 uint32_t clkdiv = div_round_up(PCLK, MAX_ADC_CLK) - 1;
bogdanm 0:9b334a45a8ff 54
bogdanm 0:9b334a45a8ff 55 LPC_ADC->CR = (0 << 0) // no channels selected
bogdanm 0:9b334a45a8ff 56 | (clkdiv << 8) // max of 4.5MHz
bogdanm 0:9b334a45a8ff 57 | (0 << 16) // BURST = 0, software controlled
bogdanm 0:9b334a45a8ff 58 | ( 0 << 17 ); // CLKS = 0, not applicable
bogdanm 0:9b334a45a8ff 59
bogdanm 0:9b334a45a8ff 60 pinmap_pinout(pin, PinMap_ADC);
bogdanm 0:9b334a45a8ff 61 }
bogdanm 0:9b334a45a8ff 62
bogdanm 0:9b334a45a8ff 63 static inline uint32_t adc_read(analogin_t *obj) {
bogdanm 0:9b334a45a8ff 64 // Select the appropriate channel and start conversion
bogdanm 0:9b334a45a8ff 65 LPC_ADC->CR &= ~0xFF;
bogdanm 0:9b334a45a8ff 66 LPC_ADC->CR |= 1 << (int)obj->adc;
bogdanm 0:9b334a45a8ff 67 LPC_ADC->CR |= 1 << 24;
bogdanm 0:9b334a45a8ff 68
bogdanm 0:9b334a45a8ff 69 // Repeatedly get the sample data until DONE bit
bogdanm 0:9b334a45a8ff 70 unsigned int data;
bogdanm 0:9b334a45a8ff 71 do {
bogdanm 0:9b334a45a8ff 72 data = LPC_ADC->GDR;
bogdanm 0:9b334a45a8ff 73 } while ((data & ((unsigned int)1 << 31)) == 0);
bogdanm 0:9b334a45a8ff 74
bogdanm 0:9b334a45a8ff 75 // Stop conversion
bogdanm 0:9b334a45a8ff 76 LPC_ADC->CR &= ~(1 << 24);
bogdanm 0:9b334a45a8ff 77
bogdanm 0:9b334a45a8ff 78 return (data >> 6) & ADC_RANGE; // 10 bit
bogdanm 0:9b334a45a8ff 79 }
bogdanm 0:9b334a45a8ff 80
bogdanm 0:9b334a45a8ff 81 static inline void order(uint32_t *a, uint32_t *b) {
bogdanm 0:9b334a45a8ff 82 if (*a > *b) {
bogdanm 0:9b334a45a8ff 83 uint32_t t = *a;
bogdanm 0:9b334a45a8ff 84 *a = *b;
bogdanm 0:9b334a45a8ff 85 *b = t;
bogdanm 0:9b334a45a8ff 86 }
bogdanm 0:9b334a45a8ff 87 }
bogdanm 0:9b334a45a8ff 88
bogdanm 0:9b334a45a8ff 89 static inline uint32_t adc_read_u32(analogin_t *obj) {
bogdanm 0:9b334a45a8ff 90 uint32_t value;
bogdanm 0:9b334a45a8ff 91 #if ANALOGIN_MEDIAN_FILTER
bogdanm 0:9b334a45a8ff 92 uint32_t v1 = adc_read(obj);
bogdanm 0:9b334a45a8ff 93 uint32_t v2 = adc_read(obj);
bogdanm 0:9b334a45a8ff 94 uint32_t v3 = adc_read(obj);
bogdanm 0:9b334a45a8ff 95 order(&v1, &v2);
bogdanm 0:9b334a45a8ff 96 order(&v2, &v3);
bogdanm 0:9b334a45a8ff 97 order(&v1, &v2);
bogdanm 0:9b334a45a8ff 98 value = v2;
bogdanm 0:9b334a45a8ff 99 #else
bogdanm 0:9b334a45a8ff 100 value = adc_read(obj);
bogdanm 0:9b334a45a8ff 101 #endif
bogdanm 0:9b334a45a8ff 102 return value;
bogdanm 0:9b334a45a8ff 103 }
bogdanm 0:9b334a45a8ff 104
bogdanm 0:9b334a45a8ff 105 uint16_t analogin_read_u16(analogin_t *obj) {
bogdanm 0:9b334a45a8ff 106 uint32_t value = adc_read_u32(obj);
bogdanm 0:9b334a45a8ff 107
bogdanm 0:9b334a45a8ff 108 return (value << 6) | ((value >> 4) & 0x003F); // 10 bit
bogdanm 0:9b334a45a8ff 109 }
bogdanm 0:9b334a45a8ff 110
bogdanm 0:9b334a45a8ff 111 float analogin_read(analogin_t *obj) {
bogdanm 0:9b334a45a8ff 112 uint32_t value = adc_read_u32(obj);
bogdanm 0:9b334a45a8ff 113 return (float)value * (1.0f / (float)ADC_RANGE);
bogdanm 0:9b334a45a8ff 114 }