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Commits
fed8829bba
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main
| Author | SHA1 | Date | |
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36f179566b | ||
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3e063e12b0 | ||
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4a2c9d01b2 | ||
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488e6ea813 | ||
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736cd974ad | ||
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0805b387ee | ||
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4f2d9dbfb4 |
Vendored
+4
-2
@@ -1,6 +1,8 @@
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{
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"files.associations": {
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"neopixel_driver.h": "c",
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"bit_bang_neopixel.h": "c"
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}
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"bit_bang_neopixel.h": "c",
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"i2c_slave.h": "c"
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},
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"idf.portWin": "COM9"
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}
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@@ -12,3 +12,4 @@
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platform = ch32v
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board = genericCH32V003F4P6
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framework = noneos-sdk
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monitor_speed = 115200
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@@ -0,0 +1,69 @@
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#include "hall_driver.h"
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volatile uint8_t adcFlag = 0;
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void ADCConfig(void) {
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ADC_InitTypeDef ADC_InitStructure = {0};
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GPIO_InitTypeDef GPIO_InitStructure = {0};
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NVIC_InitTypeDef NVIC_InitStructure = {0};
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RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOC, ENABLE);
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RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOD, ENABLE);
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RCC_APB2PeriphClockCmd(RCC_APB2Periph_ADC1, ENABLE);
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RCC_ADCCLKConfig(RCC_PCLK2_Div8);
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GPIO_InitStructure.GPIO_Pin = GPIO_Pin_4;
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GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AIN;
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GPIO_Init(GPIOC, &GPIO_InitStructure);
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GPIO_InitStructure.GPIO_Pin = GPIO_Pin_2;
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GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AIN;
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GPIO_Init(GPIOD, &GPIO_InitStructure);
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GPIO_InitStructure.GPIO_Pin = GPIO_Pin_3;
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GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AIN;
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GPIO_Init(GPIOD, &GPIO_InitStructure);
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GPIO_InitStructure.GPIO_Pin = GPIO_Pin_4;
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GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AIN;
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GPIO_Init(GPIOD, &GPIO_InitStructure);
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ADC_DeInit(ADC1);
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ADC_InitStructure.ADC_Mode = ADC_Mode_Independent;
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ADC_InitStructure.ADC_ScanConvMode = ENABLE; // multiple channels
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ADC_InitStructure.ADC_ContinuousConvMode = DISABLE;
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ADC_InitStructure.ADC_ExternalTrigConv = ADC_ExternalTrigInjecConv_None;
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ADC_InitStructure.ADC_DataAlign = ADC_DataAlign_Right;
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ADC_InitStructure.ADC_NbrOfChannel = 4;
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ADC_Init(ADC1, &ADC_InitStructure);
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ADC_InjectedSequencerLengthConfig(ADC1, 4);
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ADC_InjectedChannelConfig(ADC1, ADC_Channel_2, 1, ADC_SampleTime_241Cycles);
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ADC_InjectedChannelConfig(ADC1, ADC_Channel_3, 2, ADC_SampleTime_241Cycles);
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ADC_InjectedChannelConfig(ADC1, ADC_Channel_4, 3, ADC_SampleTime_241Cycles);
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ADC_InjectedChannelConfig(ADC1, ADC_Channel_7, 4, ADC_SampleTime_241Cycles);
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ADC_ExternalTrigInjectedConvCmd(ADC1, DISABLE);
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NVIC_EnableIRQ(ADC_IRQn);
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ADC_ITConfig(ADC1, ADC_IT_JEOC, ENABLE);
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ADC_Cmd(ADC1, ENABLE);
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ADC_ResetCalibration(ADC1);
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while (ADC_GetResetCalibrationStatus(ADC1));
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ADC_StartCalibration(ADC1);
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while (ADC_GetCalibrationStatus(ADC1));
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}
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/**
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* The function ADC1_IRQHandler handles the interrupt for ADC1 and prints the value of the injected
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* conversion.
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*/
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void ADC1_IRQHandler() {
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// UartStringSend("interupt!!!\r\n");
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if (ADC_GetITStatus(ADC1, ADC_IT_JEOC) == SET) {
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adcFlag = 1;
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ADC_ClearITPendingBit(ADC1, ADC_IT_JEOC);
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}
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}
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+4
-74
@@ -3,84 +3,14 @@
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#include <ch32v00x.h>
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void ADC1_IRQHandler() __attribute__((interrupt("WCH-Interrupt-fast")));
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void ADCConfig(void) {
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ADC_InitTypeDef ADC_InitStructure = {0};
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GPIO_InitTypeDef GPIO_InitStructure = {0};
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NVIC_InitTypeDef NVIC_InitStructure = {0};
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RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOC, ENABLE);
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RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOD, ENABLE);
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RCC_APB2PeriphClockCmd(RCC_APB2Periph_ADC1, ENABLE);
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RCC_ADCCLKConfig(RCC_PCLK2_Div8);
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GPIO_InitStructure.GPIO_Pin = GPIO_Pin_4;
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GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AIN;
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GPIO_Init(GPIOC, &GPIO_InitStructure);
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GPIO_InitStructure.GPIO_Pin = GPIO_Pin_2;
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GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AIN;
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GPIO_Init(GPIOD, &GPIO_InitStructure);
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GPIO_InitStructure.GPIO_Pin = GPIO_Pin_3;
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GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AIN;
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GPIO_Init(GPIOD, &GPIO_InitStructure);
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GPIO_InitStructure.GPIO_Pin = GPIO_Pin_4;
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GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AIN;
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GPIO_Init(GPIOD, &GPIO_InitStructure);
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ADC_DeInit(ADC1);
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ADC_InitStructure.ADC_Mode = ADC_Mode_Independent;
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ADC_InitStructure.ADC_ScanConvMode = ENABLE; // multiple channels
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ADC_InitStructure.ADC_ContinuousConvMode = DISABLE;
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ADC_InitStructure.ADC_ExternalTrigConv = ADC_ExternalTrigInjecConv_None;
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ADC_InitStructure.ADC_DataAlign = ADC_DataAlign_Right;
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ADC_InitStructure.ADC_NbrOfChannel = 2;
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ADC_Init(ADC1, &ADC_InitStructure);
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ADC_InjectedSequencerLengthConfig(ADC1, 4);
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ADC_InjectedChannelConfig(ADC1, ADC_Channel_2, 1, ADC_SampleTime_241Cycles);
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ADC_InjectedChannelConfig(ADC1, ADC_Channel_3, 2, ADC_SampleTime_241Cycles);
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ADC_InjectedChannelConfig(ADC1, ADC_Channel_4, 3, ADC_SampleTime_241Cycles);
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ADC_InjectedChannelConfig(ADC1, ADC_Channel_7, 4, ADC_SampleTime_241Cycles);
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ADC_ExternalTrigInjectedConvCmd(ADC1, DISABLE);
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NVIC_InitStructure.NVIC_IRQChannel = ADC_IRQn;
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NVIC_InitStructure.NVIC_IRQChannelPreemptionPriority = 2;
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NVIC_InitStructure.NVIC_IRQChannelSubPriority = 0;
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NVIC_InitStructure.NVIC_IRQChannelCmd = ENABLE;
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NVIC_Init(&NVIC_InitStructure);
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// ADC_Calibration_Vol(ADC1, ADC_CALVOL_75PERCENT);
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// ADC_Calibration_Vol(ADC1, ADC_CALVOL_50PERCENT);
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ADC_ITConfig(ADC1, ADC_IT_JEOC, ENABLE);
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ADC_Cmd(ADC1, ENABLE);
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ADC_ResetCalibration(ADC1);
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while (ADC_GetResetCalibrationStatus(ADC1));
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ADC_StartCalibration(ADC1);
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while (ADC_GetCalibrationStatus(ADC1));
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}
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int adcFlag = 0;
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extern volatile uint8_t adcFlag;
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/**
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* The function ADC1_IRQHandler handles the interrupt for ADC1 and prints the value of the injected
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* conversion.
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*/
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void ADC1_IRQHandler() {
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// UartStringSend("interupt!!!\r\n");
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if (ADC_GetITStatus(ADC1, ADC_IT_JEOC) == SET) {
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adcFlag = 1;
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ADC_ClearITPendingBit(ADC1, ADC_IT_JEOC);
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}
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if (ADC_GetITStatus(ADC1, ADC_IT_JEOC) == SET) {
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adcFlag = 1;
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ADC_ClearITPendingBit(ADC1, ADC_IT_JEOC);
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}
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}
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void ADC1_IRQHandler() __attribute__((interrupt("WCH-Interrupt-fast")));
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void ADCConfig(void);
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#endif
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@@ -0,0 +1,73 @@
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#include "ch32v00x.h"
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#include "i2c_slave.h"
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#include <stdio.h>
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// https://pallavaggarwal.in/2023/10/05/ch32v003-programming-i2c-eeprom/
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void i2c_init() {
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// Enable clocks
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RCC->APB2ENR |= RCC_APB2ENR_IOPBEN;
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RCC->APB1ENR |= RCC_APB1ENR_I2C1EN;
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// Set PB6/PB7 to AF Open-Drain
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GPIOB->CFGLR &= ~((0xF << (4 * 6)) | (0xF << (4 * 7)));
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GPIOB->CFGLR |= (0xF << (4 * 6)) | (0xF << (4 * 7)); // 0xF = AF OD 50MHz
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I2C1->CTLR1 = I2C_CTLR1_SWRST;
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I2C1->CTLR1 = 0;
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I2C1->OADDR1 = (address << 1) & 0xFE;
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I2C1->OADDR1 |= I2C_OADDR1_ADDMODE; // 7-bit addr
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I2C1->CTLR2 = 36; // 36 MHz APB1
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I2C1->STAR1 = 0;
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I2C1->STAR2 = 0;
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I2C1->CTLR1 |= I2C_CTLR1_ACK | I2C_CTLR1_PE;
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I2C1->CTLR1 |= I2C_CTLR1_ITBUFEN | I2C_CTLR1_ITEVTEN;
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NVIC_EnableIRQ(I2C1_EV_IRQn);
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}
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void I2C1_EV_IRQHandler(void) {
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uint16_t STAR1, STAR2 __attribute__((unused));
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STAR1 = I2C1->STAR1;
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STAR2 = I2C1->STAR2;
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if (STAR1 & I2C_STAR1_ADDR) { // Start event
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printf("Start Event\r\n");
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}
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if (STAR1 & I2C_STAR1_RXNE) { // Write event
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printf("Write Event\r\n");
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}
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if (STAR1 & I2C_STAR1_TXE) { // Read event
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printf("Read Event\r\n");
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}
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if (STAR1 & I2C_STAR1_STOPF) { // Stop event
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I2C1->CTLR1 &= ~(I2C_CTLR1_STOP); // Clear stop
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printf("Stop Event\r\n");
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}
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}
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void I2C1_ER_IRQHandler(void) {
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uint16_t STAR1 = I2C1->STAR1;
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if (STAR1 & I2C_STAR1_BERR) { // Bus error
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I2C1->STAR1 &= ~(I2C_STAR1_BERR); // Clear error
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printf("Bus error\r\n");
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}
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if (STAR1 & I2C_STAR1_ARLO) { // Arbitration lost error
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I2C1->STAR1 &= ~(I2C_STAR1_ARLO); // Clear error
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printf("Arbitration lost error\r\n");
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}
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if (STAR1 & I2C_STAR1_AF) { // Acknowledge failure
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I2C1->STAR1 &= ~(I2C_STAR1_AF); // Clear error
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printf("Ack Failure\r\n");
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}
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}
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@@ -0,0 +1,14 @@
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#ifndef I2C_SLAVE_H
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#define I2C_SLAVE_H
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#include <ch32v00x.h>
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#define I2C_SLAVE_ADDR 0x33
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void i2c_init();
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void I2C1_EV_IRQHandler(void) __attribute__((interrupt("WCH-Interrupt-fast")));
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void I2C1_ER_IRQHandler(void) __attribute__((interrupt("WCH-Interrupt-fast")));
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#endif /* I2C_SLAVE_H */
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+8
-11
@@ -2,8 +2,8 @@
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#include <debug.h>
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#include "neopixel_driver.h"
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// #include "bit_bang_neopixel.h"
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#include "uart_driver.h"
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#include "hall_driver.h"
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#include "i2c_slave.h"
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void NMI_Handler(void) __attribute__((interrupt("WCH-Interrupt-fast")));
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void HardFault_Handler(void) __attribute__((interrupt("WCH-Interrupt-fast")));
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@@ -13,19 +13,21 @@ void init_button(void);
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int main(void)
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{
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NVIC_PriorityGroupConfig(NVIC_PriorityGroup_2);
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NVIC_PriorityGroupConfig(NVIC_PriorityGroup_1);
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SystemCoreClockUpdate();
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Delay_Init();
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// allow some time to enter flash mode, in case something gets screwed up
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Delay_Ms(1000);
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USARTx_CFG();
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// UartStringSend("Hello World!\r\n");
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USART_Printf_Init(115200);
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printf("Hello World!\r\n");
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SPINeoPixelDriverInit();
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// BBNeoPixelDriverInit();
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i2c_init();
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init_button();
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ADCConfig();
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@@ -56,9 +58,7 @@ int main(void)
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adcFlag = 0;
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char buffer[64] = {0};
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sprintf(buffer, "%d\t%d\t%d\t%d\r\n", adc_readings[0], adc_readings[1], adc_readings[2], adc_readings[3]);
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UartStringSend(buffer);
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// printf("%d\t%d\t%d\t%d\r\n", adc_readings[0], adc_readings[1], adc_readings[2], adc_readings[3]);
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for (int i = 0; i < 4; i++) {
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if (adc_readings[i] > adc_calibration_values[i] + 5) {
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@@ -106,8 +106,5 @@ void NMI_Handler(void) {
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void HardFault_Handler(void)
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{
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SendNeoPixelColor(0, 255, 0);
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while (1)
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{
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}
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while (1);
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}
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@@ -0,0 +1,81 @@
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#include "neopixel_driver.h"
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void SPINeoPixelDriverInit(void) {
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GPIO_InitTypeDef GPIO_InitStructure={0};
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SPI_InitTypeDef SPI_InitStructure={0};
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RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOC | RCC_APB2Periph_SPI1, ENABLE);
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// init MOSI on PC6
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GPIO_InitStructure.GPIO_Pin = GPIO_Pin_6;
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GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AF_PP;
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GPIO_InitStructure.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(GPIOC, &GPIO_InitStructure);
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SPI_InitStructure.SPI_Direction = SPI_Direction_1Line_Tx;
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SPI_InitStructure.SPI_Mode = SPI_Mode_Master;
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SPI_InitStructure.SPI_DataSize = SPI_DataSize_8b;
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SPI_InitStructure.SPI_CPOL = SPI_CPOL_Low;
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SPI_InitStructure.SPI_CPHA = SPI_CPHA_2Edge;
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SPI_InitStructure.SPI_NSS = SPI_NSS_Soft;
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SPI_InitStructure.SPI_FirstBit = SPI_FirstBit_MSB;
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#ifdef CLK_24MHZ
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SPI_InitStructure.SPI_BaudRatePrescaler = SPI_BaudRatePrescaler_8;
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#endif
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#ifdef CLK_8MHZ
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SPI_InitStructure.SPI_BaudRatePrescaler = SPI_BaudRatePrescaler_4;
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#endif
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SPI_Init(SPI1, &SPI_InitStructure);
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SPI_Cmd(SPI1, ENABLE);
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SPISendByte(0);
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}
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void SPISendByte(uint8_t byte) {
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// wait while flag is zero or TX buffer not empty
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// while( SPI_I2S_GetFlagStatus(SPI1, SPI_I2S_FLAG_TXE) == RESET);
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SPI_I2S_SendData(SPI1, byte);
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}
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void SendNeoPixel0() {
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#ifdef CLK_24MHZ
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// 420ns High at 24MHz
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SPISendByte(0b11000000);
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#endif
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#ifdef CLK_8MHZ
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// ????????
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SPISendByte(0b10000000);
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#endif
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}
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void SendNeoPixel1() {
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#ifdef CLK_24MHZ
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// 750ns High at 24MHz
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SPISendByte(0b11110000);
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#endif
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#ifdef CLK_8MHZ
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// ????????
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SPISendByte(0b1110000);
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#endif
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}
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void SendNeoPixelByte(uint8_t byte) {
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for (int i = 7; i >= 0; i--) {
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if ((byte >> i) & 1) {
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SendNeoPixel1();
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} else {
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SendNeoPixel0();
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}
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}
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}
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void SendNeoPixelColor(uint8_t red, uint8_t green, uint8_t blue) {
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// Send in GRB order, MSB first
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SendNeoPixelByte(green);
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SendNeoPixelByte(red);
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SendNeoPixelByte(blue);
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}
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+5
-79
@@ -6,84 +6,10 @@
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// #define CLK_24MHZ
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#define CLK_8MHZ
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void SPINeoPixelDriverInit(void) {
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GPIO_InitTypeDef GPIO_InitStructure={0};
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SPI_InitTypeDef SPI_InitStructure={0};
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RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOC | RCC_APB2Periph_SPI1, ENABLE);
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// init MOSI on PC6
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GPIO_InitStructure.GPIO_Pin = GPIO_Pin_6;
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GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AF_PP;
|
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GPIO_InitStructure.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_Init(GPIOC, &GPIO_InitStructure);
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SPI_InitStructure.SPI_Direction = SPI_Direction_1Line_Tx;
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|
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SPI_InitStructure.SPI_Mode = SPI_Mode_Master;
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SPI_InitStructure.SPI_DataSize = SPI_DataSize_8b;
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SPI_InitStructure.SPI_CPOL = SPI_CPOL_Low;
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SPI_InitStructure.SPI_CPHA = SPI_CPHA_2Edge;
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SPI_InitStructure.SPI_NSS = SPI_NSS_Soft;
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SPI_InitStructure.SPI_FirstBit = SPI_FirstBit_MSB;
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||||
|
||||
#ifdef CLK_24MHZ
|
||||
SPI_InitStructure.SPI_BaudRatePrescaler = SPI_BaudRatePrescaler_8;
|
||||
#endif
|
||||
#ifdef CLK_8MHZ
|
||||
SPI_InitStructure.SPI_BaudRatePrescaler = SPI_BaudRatePrescaler_4;
|
||||
#endif
|
||||
SPI_Init(SPI1, &SPI_InitStructure);
|
||||
|
||||
SPI_Cmd(SPI1, ENABLE);
|
||||
|
||||
SPISendByte(0);
|
||||
}
|
||||
|
||||
void SPISendByte(uint8_t byte) {
|
||||
// wait while flag is zero or TX buffer not empty
|
||||
// while( SPI_I2S_GetFlagStatus(SPI1, SPI_I2S_FLAG_TXE) == RESET);
|
||||
SPI_I2S_SendData(SPI1, byte);
|
||||
}
|
||||
|
||||
void SendNeoPixel0() {
|
||||
#ifdef CLK_24MHZ
|
||||
// 420ns High at 24MHz
|
||||
SPISendByte(0b11000000);
|
||||
#endif
|
||||
#ifdef CLK_8MHZ
|
||||
// ????????
|
||||
SPISendByte(0b10000000);
|
||||
#endif
|
||||
}
|
||||
|
||||
void SendNeoPixel1() {
|
||||
#ifdef CLK_24MHZ
|
||||
// 750ns High at 24MHz
|
||||
SPISendByte(0b11110000);
|
||||
#endif
|
||||
#ifdef CLK_8MHZ
|
||||
// ????????
|
||||
SPISendByte(0b1110000);
|
||||
#endif
|
||||
}
|
||||
|
||||
void SendNeoPixelByte(uint8_t byte) {
|
||||
for (int i = 7; i >= 0; i--) {
|
||||
if ((byte >> i) & 1) {
|
||||
SendNeoPixel1();
|
||||
} else {
|
||||
SendNeoPixel0();
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
void SendNeoPixelColor(uint8_t red, uint8_t green, uint8_t blue) {
|
||||
// Send in GRB order, MSB first
|
||||
SendNeoPixelByte(green);
|
||||
SendNeoPixelByte(red);
|
||||
SendNeoPixelByte(blue);
|
||||
}
|
||||
void SPINeoPixelDriverInit(void);
|
||||
void SPISendByte(uint8_t byte);
|
||||
void SendNeoPixel0();
|
||||
void SendNeoPixelByte(uint8_t byte);
|
||||
void SendNeoPixelColor(uint8_t red, uint8_t green, uint8_t blue);
|
||||
|
||||
#endif // NEOPIXEL_DRIVER_H
|
||||
@@ -1,61 +0,0 @@
|
||||
#ifndef UART_DRIVER_H
|
||||
#define UART_DRIVER_H
|
||||
|
||||
#include <ch32v00x.h>
|
||||
|
||||
void USARTx_CFG(void) {
|
||||
GPIO_InitTypeDef GPIO_InitStructure = {0};
|
||||
USART_InitTypeDef USART_InitStructure = {0};
|
||||
NVIC_InitTypeDef NVIC_InitStructure = {0};
|
||||
|
||||
RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOD | RCC_APB2Periph_USART1, ENABLE);
|
||||
|
||||
/* USART1 TX-->D.5 RX-->D.6 */
|
||||
GPIO_InitStructure.GPIO_Pin = GPIO_Pin_5;
|
||||
GPIO_InitStructure.GPIO_Speed = GPIO_Speed_50MHz;
|
||||
GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AF_PP;
|
||||
GPIO_Init(GPIOD, &GPIO_InitStructure);
|
||||
|
||||
GPIO_InitStructure.GPIO_Pin = GPIO_Pin_6;
|
||||
GPIO_InitStructure.GPIO_Mode = GPIO_Mode_IN_FLOATING;
|
||||
GPIO_Init(GPIOD, &GPIO_InitStructure);
|
||||
|
||||
USART_InitStructure.USART_BaudRate = 9600;
|
||||
USART_InitStructure.USART_WordLength = USART_WordLength_8b;
|
||||
USART_InitStructure.USART_StopBits = USART_StopBits_1;
|
||||
USART_InitStructure.USART_Parity = USART_Parity_No;
|
||||
USART_InitStructure.USART_HardwareFlowControl = USART_HardwareFlowControl_None;
|
||||
USART_InitStructure.USART_Mode = USART_Mode_Tx | USART_Mode_Rx;
|
||||
|
||||
USART_Init(USART1, &USART_InitStructure);
|
||||
USART_ITConfig(USART1, USART_IT_RXNE, ENABLE);
|
||||
|
||||
NVIC_InitStructure.NVIC_IRQChannel = USART1_IRQn;
|
||||
NVIC_InitStructure.NVIC_IRQChannelPreemptionPriority = 1;
|
||||
NVIC_InitStructure.NVIC_IRQChannelSubPriority = 1;
|
||||
NVIC_InitStructure.NVIC_IRQChannelCmd = ENABLE;
|
||||
NVIC_Init(&NVIC_InitStructure);;
|
||||
|
||||
USART_Cmd(USART1, ENABLE);
|
||||
}
|
||||
|
||||
void UartBufferSend(uint8_t* buffer, uint16_t length)
|
||||
{
|
||||
uint16_t i = 0;
|
||||
for(i =0; i < length; i++)
|
||||
{
|
||||
while(USART_GetFlagStatus(USART1, USART_FLAG_TXE) == RESET); /* waiting for sending finish */
|
||||
USART_SendData(USART1, buffer[i]);
|
||||
}
|
||||
}
|
||||
|
||||
void UartStringSend(char* string) {
|
||||
uint16_t i = 0;
|
||||
while (string[i] != '\0') {
|
||||
while(USART_GetFlagStatus(USART1, USART_FLAG_TXE) == RESET); /* waiting for sending finish */
|
||||
USART_SendData(USART1, string[i]);
|
||||
i += 1;
|
||||
}
|
||||
}
|
||||
|
||||
#endif // UART_DRIVER_H
|
||||
Reference in New Issue
Block a user