395 lines
11 KiB
C
395 lines
11 KiB
C
#include <rthw.h>
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#include <rtthread.h>
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#include <rtdevice.h>
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#include "board.h"
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#include "drv_codec.h"
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#include "fsl_wm8960.h"
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#include <fsl_sai.h>
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#include <fsl_sai_edma.h>
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#include <fsl_lpi2c.h>
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#include <fsl_dmamux.h>
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#define DEMO_CODEC_WM8960
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#define DEMO_SAI SAI1
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#define DEMO_SAI_IRQ SAI1_IRQn
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#define SAI_TxIRQHandler SAI1_IRQHandler
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/* Select Audio/Video PLL (786.48 MHz) as sai1 clock source */
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#define DEMO_SAI1_CLOCK_SOURCE_SELECT (2U)
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/* Clock pre divider for sai1 clock source */
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#define DEMO_SAI1_CLOCK_SOURCE_PRE_DIVIDER (1U)
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/* Clock divider for sai1 clock source */
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#define DEMO_SAI1_CLOCK_SOURCE_DIVIDER (63U)
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/* Get frequency of sai1 clock */
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#define DEMO_SAI_CLK_FREQ (CLOCK_GetFreq(kCLOCK_AudioPllClk) / (DEMO_SAI1_CLOCK_SOURCE_DIVIDER + 1U) / (DEMO_SAI1_CLOCK_SOURCE_PRE_DIVIDER + 1U))
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/* I2C instance and clock */
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#define DEMO_I2C LPI2C1
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/* Select USB1 PLL (480 MHz) as master lpi2c clock source */
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#define DEMO_LPI2C_CLOCK_SOURCE_SELECT (0U)
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/* Clock divider for master lpi2c clock source */
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#define DEMO_LPI2C_CLOCK_SOURCE_DIVIDER (5U)
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/* Get frequency of lpi2c clock */
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#define DEMO_I2C_CLK_FREQ ((CLOCK_GetFreq(kCLOCK_Usb1PllClk) / 8) / (DEMO_LPI2C_CLOCK_SOURCE_DIVIDER + 1U))
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/* DMA */
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#define DMAMUX0 DMAMUX
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#define EXAMPLE_DMA DMA0
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#define EXAMPLE_CHANNEL (0U)
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#define EXAMPLE_SAI_TX_SOURCE kDmaRequestMuxSai1Tx
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struct imxcodec
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{
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I2S_Type *sai;
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sai_edma_handle_t txHandle;
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wm8960_handle_t codecHandle;
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edma_handle_t dmaHandle;
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lpi2c_master_handle_t i2cHandle;
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sai_transfer_format_t format;
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};
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static void _InitPins(void)
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{
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CLOCK_EnableClock(kCLOCK_Iomuxc);
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IOMUXC_SetPinMux(IOMUXC_GPIO_AD_B1_00_LPI2C1_SCL, 1);
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IOMUXC_SetPinMux(IOMUXC_GPIO_AD_B1_01_LPI2C1_SDA, 1);
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IOMUXC_SetPinConfig( IOMUXC_GPIO_AD_B1_00_LPI2C1_SCL, 0xD8B0u);
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IOMUXC_SetPinConfig( IOMUXC_GPIO_AD_B1_01_LPI2C1_SDA, 0xD8B0u);
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IOMUXC_SetPinMux(IOMUXC_GPIO_AD_B1_09_SAI1_MCLK, 1U);
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IOMUXC_SetPinMux(IOMUXC_GPIO_AD_B1_13_SAI1_TX_DATA00, 1U);
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IOMUXC_SetPinMux(IOMUXC_GPIO_AD_B1_14_SAI1_TX_BCLK, 1U);
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IOMUXC_SetPinMux(IOMUXC_GPIO_AD_B1_15_SAI1_TX_SYNC, 1U);
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IOMUXC_SetPinConfig(IOMUXC_GPIO_AD_B1_09_SAI1_MCLK, 0x10B0u);
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IOMUXC_SetPinConfig(IOMUXC_GPIO_AD_B1_13_SAI1_TX_DATA00, 0x10B0u);
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IOMUXC_SetPinConfig(IOMUXC_GPIO_AD_B1_14_SAI1_TX_BCLK, 0x10B0u);
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IOMUXC_SetPinConfig(IOMUXC_GPIO_AD_B1_15_SAI1_TX_SYNC, 0x10B0u);
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}
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static void BOARD_EnableSaiMclkOutput(bool enable)
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{
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if (enable)
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{
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IOMUXC_GPR->GPR1 |= IOMUXC_GPR_GPR1_SAI1_MCLK_DIR_MASK;
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}
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else
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{
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IOMUXC_GPR->GPR1 &= (~IOMUXC_GPR_GPR1_SAI1_MCLK_DIR_MASK);
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}
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}
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static void saidma_callback(I2S_Type *base, sai_edma_handle_t *handle, status_t status, void *userData)
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{
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int ind = 0;
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rt_uint8_t *saddr;
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ind = handle->queueDriver;
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saddr = (rt_uint8_t*)handle->saiQueue[ind].data;
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rt_audio_tx_complete(userData, saddr);
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}
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/*********************************************************************************************************
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** Audio device
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*********************************************************************************************************/
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static rt_err_t icodec_getcaps(struct rt_audio_device *audio,struct rt_audio_caps *caps)
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{
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rt_err_t result = RT_EOK;
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struct imxcodec *icodec = (struct imxcodec *)audio->parent.user_data;
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switch (caps->main_type)
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{
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case AUDIO_TYPE_QUERY: /* qurey the types of hw_codec device */
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{
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switch (caps->sub_type)
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{
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case AUDIO_TYPE_QUERY:
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caps->udata.mask = AUDIO_TYPE_OUTPUT | AUDIO_TYPE_MIXER;
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break;
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default:
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result = -RT_ERROR;
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break;
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}
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break;
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}
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case AUDIO_TYPE_OUTPUT: /* Provide capabilities of OUTPUT unit */
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switch (caps->sub_type)
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{
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case AUDIO_DSP_PARAM:
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if (audio->replay == NULL)
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{
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result = -RT_ERROR;
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break;
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}
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caps->udata.config.channels = 1;
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caps->udata.config.samplefmt = 1;
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caps->udata.config.samplerate = 1;
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caps->udata.config.samplefmts = 1;
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break;
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default:
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result = -RT_ERROR;
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break;
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}
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break;
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case AUDIO_TYPE_MIXER: /* report the Mixer Units */
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switch (caps->sub_type)
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{
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case AUDIO_MIXER_QUERY:
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caps->udata.mask = AUDIO_MIXER_VOLUME | AUDIO_MIXER_DIGITAL | AUDIO_MIXER_LINE;
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break;
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case AUDIO_MIXER_VOLUME:
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caps->udata.value = WM8960_GetVolume(&icodec->codecHandle, kWM8960_ModuleDAC);
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break;
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case AUDIO_MIXER_DIGITAL:
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break;
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case AUDIO_MIXER_LINE:
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break;
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default:
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result = -RT_ERROR;
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break;
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}
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break;
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default:
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result = -RT_ERROR;
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break;
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}
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return result;
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}
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static rt_err_t icodec_configure(struct rt_audio_device *audio,struct rt_audio_caps *caps)
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{
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rt_err_t result = RT_EOK;
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struct imxcodec *icodec = (struct imxcodec *)audio->parent.user_data;
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switch (caps->main_type)
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{
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case AUDIO_TYPE_MIXER:
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{
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switch (caps->sub_type)
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{
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case AUDIO_MIXER_VOLUME:
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{
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WM8960_SetVolume(&icodec->codecHandle, kWM8960_ModuleDAC,
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caps->udata.value);
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}
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break;
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default:
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{
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result = -RT_ERROR;
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}
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break;
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}
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}
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break;
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case AUDIO_TYPE_OUTPUT:
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{
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switch (caps->sub_type)
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{
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case AUDIO_DSP_PARAM:
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{
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} break;
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case AUDIO_DSP_SAMPLERATE:
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{
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int rate = caps->udata.value;
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icodec->format.sampleRate_Hz = rate;
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SAI_TxSetFormat(icodec->sai, &icodec->format, icodec->format.masterClockHz, icodec->format.masterClockHz);
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}
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break;
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default:
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{
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result = -RT_ERROR;
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}
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break;
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}
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}
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break;
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default:
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result = -RT_ERROR;
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break;
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}
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return result;
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}
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static rt_err_t icodec_init(struct rt_audio_device *audio)
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{
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sai_config_t config;
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uint32_t mclkSourceClockHz = 0U;
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edma_config_t dmaConfig = {0};
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lpi2c_master_config_t i2cConfig = {0};
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uint32_t i2cSourceClock;
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clock_audio_pll_config_t audioPllConfig = {32, 1, 77, 100};
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struct imxcodec *icodec = audio->parent.user_data;
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sai_transfer_format_t *format;
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icodec->sai = DEMO_SAI;
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format = &icodec->format;
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_InitPins();
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CLOCK_InitAudioPll(&audioPllConfig);
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/*Clock setting for LPI2C*/
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CLOCK_SetMux(kCLOCK_Lpi2cMux, DEMO_LPI2C_CLOCK_SOURCE_SELECT);
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CLOCK_SetDiv(kCLOCK_Lpi2cDiv, DEMO_LPI2C_CLOCK_SOURCE_DIVIDER);
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/*Clock setting for SAI1*/
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CLOCK_SetMux(kCLOCK_Sai1Mux, DEMO_SAI1_CLOCK_SOURCE_SELECT);
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CLOCK_SetDiv(kCLOCK_Sai1PreDiv, DEMO_SAI1_CLOCK_SOURCE_PRE_DIVIDER);
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CLOCK_SetDiv(kCLOCK_Sai1Div, DEMO_SAI1_CLOCK_SOURCE_DIVIDER);
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/*Enable MCLK clock*/
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BOARD_EnableSaiMclkOutput(true);
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/* Create EDMA handle */
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EDMA_GetDefaultConfig(&dmaConfig);
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EDMA_Init(EXAMPLE_DMA, &dmaConfig);
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EDMA_CreateHandle(&icodec->dmaHandle, EXAMPLE_DMA, EXAMPLE_CHANNEL);
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DMAMUX_Init(DMAMUX0);
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DMAMUX_SetSource(DMAMUX0, EXAMPLE_CHANNEL, EXAMPLE_SAI_TX_SOURCE);
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DMAMUX_EnableChannel(DMAMUX0, EXAMPLE_CHANNEL);
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/* Init SAI module */
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SAI_TxGetDefaultConfig(&config);
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SAI_TxInit(DEMO_SAI, &config);
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/* Configure the audio format */
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format->bitWidth = kSAI_WordWidth16bits;
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format->channel = 0U;
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format->sampleRate_Hz = kSAI_SampleRate48KHz;
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format->masterClockHz = DEMO_SAI_CLK_FREQ;
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format->protocol = config.protocol;
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format->stereo = kSAI_Stereo;
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format->isFrameSyncCompact = 0;
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format->watermark = FSL_FEATURE_SAI_FIFO_COUNT / 2U;
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/* Configure Sgtl5000 I2C */
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icodec->codecHandle.base = DEMO_I2C;
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icodec->codecHandle.i2cHandle = &icodec->i2cHandle;
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i2cSourceClock = DEMO_I2C_CLK_FREQ;
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LPI2C_MasterGetDefaultConfig(&i2cConfig);
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LPI2C_MasterInit(DEMO_I2C, &i2cConfig, i2cSourceClock);
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LPI2C_MasterTransferCreateHandle(DEMO_I2C, &icodec->i2cHandle, NULL, NULL);
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WM8960_Init(&icodec->codecHandle, NULL);
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WM8960_ConfigDataFormat(&icodec->codecHandle, format->masterClockHz, format->sampleRate_Hz, format->bitWidth);
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SAI_TransferTxCreateHandleEDMA(icodec->sai, &icodec->txHandle, saidma_callback, audio, &icodec->dmaHandle);
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mclkSourceClockHz = DEMO_SAI_CLK_FREQ;
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SAI_TransferTxSetFormatEDMA(icodec->sai, &icodec->txHandle, format, mclkSourceClockHz, format->masterClockHz);
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return RT_EOK;
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}
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static rt_err_t icodec_shutdown(struct rt_audio_device *audio)
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{
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return RT_EOK;
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}
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rt_err_t icodec_start(struct rt_audio_device *audio,int stream)
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{
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return RT_EOK;
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}
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rt_err_t icodec_stop(struct rt_audio_device *audio,int stream)
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{
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return RT_EOK;
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}
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static rt_err_t icodec_suspend(struct rt_audio_device *audio,int stream)
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{
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return RT_EOK;
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}
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static rt_err_t icodec_resume(struct rt_audio_device *audio,int stream)
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{
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return RT_EOK;
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}
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static rt_err_t icodec_control (struct rt_audio_device *audio, int cmd, void *args)
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{
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rt_err_t result = RT_EOK;
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switch (cmd)
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{
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case AUDIO_CTL_HWRESET:
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break;
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default:
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result = -RT_ERROR;
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break;
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}
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return result;
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}
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static rt_size_t icodec_transmit(struct rt_audio_device *audio, const void *writeBuf, void *readBuf, rt_size_t size)
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{
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struct imxcodec *icodec = (struct imxcodec *)audio->parent.user_data;
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if(writeBuf != RT_NULL)
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{
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sai_transfer_t xfer;
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xfer.data = (uint8_t *)writeBuf;
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xfer.dataSize = size;
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if (size%32 == 0)
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icodec->txHandle.count = 16;
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else
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icodec->txHandle.count = 1;
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rt_hw_cpu_dcache_ops(RT_HW_CACHE_FLUSH, (void*)writeBuf, size);
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if (SAI_TransferSendEDMA(icodec->sai, &icodec->txHandle, &xfer) != kStatus_Success)
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return 0;
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return size;
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}
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return 0;
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}
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static struct imxcodec _g_imxcodec;
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static struct rt_audio_device _g_audio_device;
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const struct rt_audio_ops _g_audio_ops =
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{
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.getcaps = icodec_getcaps,
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.configure = icodec_configure,
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.init = icodec_init,
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.shutdown = icodec_shutdown,
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.start = icodec_start,
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.stop = icodec_stop,
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.suspend = icodec_suspend,
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.resume = icodec_resume,
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.control = icodec_control,
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.transmit = icodec_transmit,
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};
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int rt_hw_codec_init(void)
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{
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int result;
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struct rt_audio_device *audio = &_g_audio_device;
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audio->ops = (struct rt_audio_ops*)&_g_audio_ops;
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_g_imxcodec.sai = DEMO_SAI;
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result = rt_audio_register(audio,"sound0", RT_DEVICE_FLAG_WRONLY, &_g_imxcodec);
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return result;
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}
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INIT_DEVICE_EXPORT(rt_hw_codec_init);
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