179 lines
4.1 KiB
C
179 lines
4.1 KiB
C
#include "includes.h"
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#include "usart.h"
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#define BUFF_SIZE 512
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/* ?????????????????????????????? volatile????
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?????????????????? volatile ???? Pa082 ????????? */
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#define IS_FULL(head, tail) ((((head) + 1) % BUFF_SIZE) == (tail))
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#define IS_EMPTY(head, tail) ((head) == (tail))
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/* ==================== ???????????? ==================== */
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/* ????????????????????????????? */
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typedef struct
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{
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uint8_t rx_buff[BUFF_SIZE];
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volatile uint16_t rx_head;
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volatile uint16_t rx_tail;
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uint8_t tx_buff[BUFF_SIZE];
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volatile uint16_t tx_head;
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volatile uint16_t tx_tail;
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usart_type *usart; /* ??????????????USART2 / UART4?? */
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} uart_ring_t;
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/* USART2 ?? UART4 ???????? */
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static uart_ring_t uart2;
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static uart_ring_t uart4;
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/* ?????????????????????? wk_usart2_init / wk_uart4_init ????? */
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void uart_ring_usart2_init(void)
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{
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uart2.usart = USART2;
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}
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void uart_ring_uart4_init(void)
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{
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uart4.usart = UART4;
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}
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/* ==================== ??????/???????????????? ==================== */
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/* ????ISR ???????????? volatile ???????????? Pa082 */
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static void ring_rx_push(uart_ring_t *rb, uint8_t c)
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{
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uint16_t h = rb->rx_head;
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uint16_t t = rb->rx_tail;
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if(IS_FULL(h, t)) return; /* ???????????????????? */
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rb->rx_buff[h] = c;
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rb->rx_head = (h + 1) % BUFF_SIZE;
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}
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/* ??????????????? */
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static uint8_t ring_rx_pop(uart_ring_t *rb, uint8_t *c)
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{
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uint16_t h = rb->rx_head;
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uint16_t t = rb->rx_tail;
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if(IS_EMPTY(h, t)) return 0;
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*c = rb->rx_buff[t];
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rb->rx_tail = (t + 1) % BUFF_SIZE;
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return 1;
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}
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/* ???? tx ??????????????????????? ISR ?????? */
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static void ring_tx_write(uart_ring_t *rb, uint8_t *data, uint16_t len)
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{
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uint16_t h = rb->tx_head;
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uint16_t t = rb->tx_tail;
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for(uint16_t i = 0; i < len; i++)
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{
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if(IS_FULL(h, t)) break; /* ?? tx ???? */
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rb->tx_buff[h] = data[i];
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h = (h + 1) % BUFF_SIZE;
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}
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rb->tx_head = h; /* ???????????? volatile */
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}
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/* ==================== ?????????????????? ==================== */
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/* ?????????????? ?? ?????? ?? ?? TDBE ??????????? */
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static void uart_ring_send(uart_ring_t *rb, uint8_t *data, uint16_t len)
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{
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rt_base_t level = rt_hw_interrupt_disable();
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ring_tx_write(rb, data, len);
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usart_interrupt_enable(rb->usart, USART_TDBE_INT, TRUE); /* ?????????? */
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rt_hw_interrupt_enable(level);
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}
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/* USART2 ?????????midi_send.c ??????? */
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void USART2_SendData(uint8_t *data, uint16_t len)
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{
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uart_ring_send(&uart2, data, len);
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}
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/* UART4 ????????? */
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void USART4_SendData(uint8_t *data, uint16_t len)
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{
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uart_ring_send(&uart4, data, len);
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}
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void USART4_WaitTxIdle(uint32_t timeout_ms)
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{
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uint32_t t0 = rt_tick_get();
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while ((rt_tick_get() - t0) < rt_tick_from_millisecond(timeout_ms ? timeout_ms : 1))
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{
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uint16_t h = uart4.tx_head;
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uint16_t t = uart4.tx_tail;
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if (IS_EMPTY(h, t))
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{
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/* <20><><EFBFBD><EFBFBD>պ<EFBFBD><D5BA>ٵ<EFBFBD><D9B5><EFBFBD>λ<EFBFBD>Ĵ<EFBFBD><C4B4><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> */
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if (usart_flag_get(uart4.usart, USART_TDC_FLAG) == SET)
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return;
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}
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rt_thread_mdelay(1);
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}
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}
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/* USART2 ???????????? */
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uint8_t USART2_RxPop(uint8_t *c)
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{
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return ring_rx_pop(&uart2, c);
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}
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/* UART4 ???????????? */
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uint8_t UART4_RxPop(uint8_t *c)
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{
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return ring_rx_pop(&uart4, c);
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}
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/* ==================== ???????? ==================== */
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static void uart_ring_isr(uart_ring_t *rb)
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{
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if(usart_flag_get(rb->usart, USART_RDBF_FLAG) == SET)
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{
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uint8_t data = usart_data_receive(rb->usart);
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ring_rx_push(rb, data);
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if(rb->usart == UART4)
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{
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rt_sem_release(UART4_sem);
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}
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}
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if(usart_flag_get(rb->usart, USART_TDBE_FLAG) == SET)
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{
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uint16_t h = rb->tx_head;
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uint16_t t = rb->tx_tail;
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if(!IS_EMPTY(h, t))
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{
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usart_data_transmit(rb->usart, rb->tx_buff[t]);
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rb->tx_tail = (t + 1) % BUFF_SIZE;
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}
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else
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{
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usart_interrupt_enable(rb->usart, USART_TDBE_INT, FALSE);
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}
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}
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if(usart_flag_get(rb->usart, USART_ROERR_FLAG) == SET)
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usart_flag_clear(rb->usart, USART_ROERR_FLAG);
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}
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void USART2_IRQHandler(void)
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{
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rt_interrupt_enter();
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uart_ring_isr(&uart2);
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rt_interrupt_leave();
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}
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void UART4_IRQHandler(void)
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{
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rt_interrupt_enter();
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uart_ring_isr(&uart4);
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rt_interrupt_leave();
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}
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