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fix - 1 优化中断中打印日志问题;2 优化SPI写外部FLASH慢的问题 (#10009)
* 1. 优化中断中打印日志问题;2 优化SPI写外部FLASH慢的问题 * 2. 在spi驱动中有在中断中打印调试信息的问题,增加ISR log判断进行 * 3. spi+DMA 写外部flash,由于spi速度很快,不进行delay就可以;同时,仿照Linux的驱动框架进行优化,数据小不使用DMA
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@ -358,7 +358,9 @@ static void hc32_eth_irq_handle(stc_eth_handle_t *eth_handle)
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result = eth_device_ready(&(hc32_eth_device.parent));
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result = eth_device_ready(&(hc32_eth_device.parent));
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if (result != RT_EOK)
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if (result != RT_EOK)
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{
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{
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#if defined (RT_USING_ULOG) || defined (ULOG_USING_ISR_LOG)
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LOG_I("eth rx complete callback err = %d", result);
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LOG_I("eth rx complete callback err = %d", result);
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#endif
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}
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}
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/* Clear the Eth DMA Rx IT pending bits */
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/* Clear the Eth DMA Rx IT pending bits */
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ETH_DMA_ClearStatus(ETH_DMA_FLAG_RIS | ETH_DMA_FLAG_NIS);
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ETH_DMA_ClearStatus(ETH_DMA_FLAG_RIS | ETH_DMA_FLAG_NIS);
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@ -465,7 +467,9 @@ static void eth_phy_irq_handler(void *args)
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rt_uint16_t status = 0;
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rt_uint16_t status = 0;
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ETH_PHY_ReadReg(&EthHandle, PHY_IISDR, &status);
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ETH_PHY_ReadReg(&EthHandle, PHY_IISDR, &status);
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#if defined (RT_USING_ULOG) || defined (ULOG_USING_ISR_LOG)
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LOG_D("phy interrupt status reg is 0x%X", status);
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LOG_D("phy interrupt status reg is 0x%X", status);
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#endif
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#endif
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#endif
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hc32_phy_link_change();
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hc32_phy_link_change();
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}
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}
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@ -473,8 +473,6 @@ static int32_t hc32_spi_dma_trans(struct hc32_spi_config *spi_config, const uint
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while ((RESET == DMA_GetTransCompleteStatus(DmaInstance, DmaFlag)) &&
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while ((RESET == DMA_GetTransCompleteStatus(DmaInstance, DmaFlag)) &&
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(u32TimeoutCnt < spi_config->timeout))
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(u32TimeoutCnt < spi_config->timeout))
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{
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{
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rt_thread_mdelay(1);
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u32TimeoutCnt++;
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}
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}
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if (u32TimeoutCnt >= spi_config->timeout)
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if (u32TimeoutCnt >= spi_config->timeout)
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{
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{
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@ -544,7 +542,7 @@ static rt_ssize_t hc32_spi_xfer(struct rt_spi_device *device, struct rt_spi_mess
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if (message->send_buf && message->recv_buf)
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if (message->send_buf && message->recv_buf)
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{
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{
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hc32_spi_set_trans_mode(spi_instance, SPI_FULL_DUPLEX);
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hc32_spi_set_trans_mode(spi_instance, SPI_FULL_DUPLEX);
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if ((spi_drv->spi_dma_flag & RT_DEVICE_FLAG_DMA_TX) && (spi_drv->spi_dma_flag & RT_DEVICE_FLAG_DMA_RX))
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if ((spi_drv->spi_dma_flag & RT_DEVICE_FLAG_DMA_TX) && (spi_drv->spi_dma_flag & RT_DEVICE_FLAG_DMA_RX) && (send_length > 32))
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{
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{
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state = hc32_spi_dma_trans(spi_drv->config, send_buf, recv_buf, send_length);
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state = hc32_spi_dma_trans(spi_drv->config, send_buf, recv_buf, send_length);
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}
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}
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@ -557,7 +555,7 @@ static rt_ssize_t hc32_spi_xfer(struct rt_spi_device *device, struct rt_spi_mess
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else if (message->send_buf)
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else if (message->send_buf)
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{
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{
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hc32_spi_set_trans_mode(spi_instance, SPI_SEND_ONLY);
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hc32_spi_set_trans_mode(spi_instance, SPI_SEND_ONLY);
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if (spi_drv->spi_dma_flag & RT_DEVICE_FLAG_DMA_TX)
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if ((spi_drv->spi_dma_flag & RT_DEVICE_FLAG_DMA_TX) && (send_length > 32))
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{
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{
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state = hc32_spi_dma_trans(spi_drv->config, send_buf, RT_NULL, send_length);
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state = hc32_spi_dma_trans(spi_drv->config, send_buf, RT_NULL, send_length);
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}
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}
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@ -601,8 +599,6 @@ static rt_ssize_t hc32_spi_xfer(struct rt_spi_device *device, struct rt_spi_mess
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while ((RESET == SPI_GetStatus(spi_instance, SPI_FLAG_IDLE)) &&
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while ((RESET == SPI_GetStatus(spi_instance, SPI_FLAG_IDLE)) &&
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(u32TimeoutCnt < spi_drv->config->timeout))
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(u32TimeoutCnt < spi_drv->config->timeout))
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{
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{
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rt_thread_mdelay(1);
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u32TimeoutCnt++;
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}
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}
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if (u32TimeoutCnt >= spi_drv->config->timeout)
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if (u32TimeoutCnt >= spi_drv->config->timeout)
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{
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{
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