Jared Baxter
/
Impedance_Fast_Circuitry
Fork of DSP_200kHz by
dma.cpp
- Committer:
- timmey9
- Date:
- 2015-01-29
- Revision:
- 39:82dc3daecf32
- Parent:
- 37:8bdc71f3e874
- Child:
- 40:bd6d8c35e822
File content as of revision 39:82dc3daecf32:
/* * dma.c * * Created on: Nov 25, 2014 * Author: Manuel Alejandro */ #include "dma.h" /* dma_init() * Initializes the DMA module to read the ADC results every time a conversion has * finished and stores its value in a buffer * * @array0 = destination where DMA0 writes * @array1 = destination where DMA1 writes * @array2 = destination where DMA2 writes * @len = the length of array1 and array2, and the number of reads the DMA completes * */ void dma_init(uint16_t* array0, uint16_t* array1, uint16_t* array2, int len, Serial &pc) { // select round-robin arbitration priority DMA_CR |= DMA_CR_ERCA_MASK; // Enable clock for DMAMUX and DMA SIM_SCGC6 |= SIM_SCGC6_DMAMUX_MASK; SIM_SCGC7 |= SIM_SCGC7_DMA_MASK; // Enable Channel 0 and set ADC0 as DMA request source DMAMUX_CHCFG0 |= DMAMUX_CHCFG_ENBL_MASK | DMAMUX_CHCFG_SOURCE(40); // see page 95 of user manual DMAMUX_CHCFG1 |= DMAMUX_CHCFG_ENBL_MASK | DMAMUX_CHCFG_SOURCE(41); //DMAMUX_CHCFG2 |= DMAMUX_CHCFG_ENBL_MASK | // Enable request signal for channel 0 DMA_ERQ = DMA_ERQ_ERQ0_MASK | DMA_ERQ_ERQ1_MASK | DMA_ERQ_ERQ2_MASK; // Set memory address for source and destination for DMA0, DMA1, and DMA2 DMA_TCD0_SADDR = (uint32_t)&ADC0_RA; DMA_TCD0_DADDR = (uint32_t) array0; DMA_TCD1_SADDR = (uint32_t)&ADC1_RA; DMA_TCD1_DADDR = (uint32_t) array1; DMA_TCD2_SADDR = (uint32_t)&rotary_count; DMA_TCD2_DADDR = (uint32_t) array2; // Set an offset for source and destination address DMA_TCD0_SOFF = 0x00; // Source address offset of 2 bits per transaction DMA_TCD0_DOFF = 0x02; // Destination address offset of 1 bit per transaction DMA_TCD1_SOFF = 0x00; // Source address offset of 2 bits per transaction DMA_TCD1_DOFF = 0x02; // Destination address offset of 1 bit per transaction DMA_TCD2_SOFF = 0x00; // Source address offset of 2 bits per transaction DMA_TCD2_DOFF = 0x02; // Destination address offset of 1 bit per transaction // Set source and destination data transfer size DMA_TCD0_ATTR = DMA_ATTR_SSIZE(1) | DMA_ATTR_DSIZE(1); DMA_TCD1_ATTR = DMA_ATTR_SSIZE(1) | DMA_ATTR_DSIZE(1); DMA_TCD2_ATTR = DMA_ATTR_SSIZE(1) | DMA_ATTR_DSIZE(1); // Number of bytes to be transfered in each service request of the channel DMA_TCD0_NBYTES_MLNO = 0x02; DMA_TCD1_NBYTES_MLNO = 0x02; DMA_TCD2_NBYTES_MLNO = 0x02; // Current major iteration count (a single iteration of 5 bytes) DMA_TCD0_CITER_ELINKNO = DMA_CITER_ELINKNO_CITER(len); DMA_TCD0_BITER_ELINKNO = DMA_BITER_ELINKNO_BITER(len); DMA_TCD1_CITER_ELINKNO = DMA_CITER_ELINKNO_CITER(len); DMA_TCD1_BITER_ELINKNO = DMA_BITER_ELINKNO_BITER(len); DMA_TCD2_CITER_ELINKNO = DMA_CITER_ELINKNO_CITER(len); DMA_TCD2_BITER_ELINKNO = DMA_BITER_ELINKNO_BITER(len); // Adjustment value used to restore the source and destiny address to the initial value // After reading 'len' number of times, the DMA goes back to the beginning by subtracting len*2 from the address (going back to the address of 'array0') DMA_TCD0_SLAST = 0x00; // Source address adjustment DMA_TCD0_DLASTSGA = -(len*2); // Destination address adjustment DMA_TCD1_SLAST = 0x00; // Source address adjustment DMA_TCD1_DLASTSGA = -(len*2); // Destination address adjustment DMA_TCD2_SLAST = 0x00; // Source address adjustment DMA_TCD2_DLASTSGA = -(len*2); // Destination address adjustment // Setup control and status register DMA_TCD0_CSR = 0; DMA_TCD1_CSR = 0; DMA_TCD2_CSR = 1; pc.printf("DMA_CR: %08x\r\n", DMA_CR); pc.printf("DMA_ES: %08x\r\n", DMA_ES); pc.printf("DMA_ERQ: %08x\r\n", DMA_ERQ); pc.printf("DMA_EEI: %08x\r\n", DMA_EEI); pc.printf("DMA_CEEI: %02x\r\n", DMA_CEEI); pc.printf("DMA_SEEI: %02x\r\n", DMA_SEEI); pc.printf("DMA_CERQ: %02x\r\n", DMA_CERQ); pc.printf("DMA_SERQ: %02x\r\n", DMA_SERQ); pc.printf("DMA_CDNE: %02x\r\n", DMA_CDNE); pc.printf("DMA_SSRT: %02x\r\n", DMA_SSRT); pc.printf("DMA_CERR: %02x\r\n", DMA_CERR); pc.printf("DMA_CINT: %02x\r\n", DMA_CINT); pc.printf("DMA_INT: %08x\r\n", DMA_INT); pc.printf("DMA_ERR: %08x\r\n", DMA_ERR); pc.printf("DMA_HRS: %08x\r\n", DMA_HRS); }