forked from Imagelibrary/rtems
824 lines
21 KiB
C
824 lines
21 KiB
C
/* SPDX-License-Identifier: BSD-2-Clause */
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/**
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* @file
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*
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* @ingroup mpc55xx_dspi
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*
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* @brief Source file for the LibI2C bus driver for the Deserial Serial Peripheral Interface (DSPI).
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*/
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/*
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* Copyright (c) 2008 embedded brains GmbH. All rights reserved.
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
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* LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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* CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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* POSSIBILITY OF SUCH DAMAGE.
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*/
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#include <mpc55xx/regs.h>
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#include <mpc55xx/dspi.h>
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#include <mpc55xx/mpc55xx.h>
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#include <bsp/irq.h>
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#include <libcpu/powerpc-utility.h>
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#define RTEMS_STATUS_CHECKS_USE_PRINTK
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#include <rtems/status-checks.h>
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#include <inttypes.h>
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#define MPC55XX_DSPI_FIFO_SIZE 4
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#define MPC55XX_DSPI_CTAR_NUMBER 8
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#define MPC55XX_DSPI_CTAR_DEFAULT 0
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#define MPC55XX_DSPI_EDMA_MAGIC_SIZE 128
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#define MPC55XX_DSPI_BAUDRATE_SCALER_TABLE_SIZE 63
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typedef struct {
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uint32_t scaler : 26;
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uint32_t pbr : 2;
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uint32_t br : 4;
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} mpc55xx_dspi_baudrate_scaler_entry;
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static const mpc55xx_dspi_baudrate_scaler_entry mpc55xx_dspi_baudrate_scaler_table [MPC55XX_DSPI_BAUDRATE_SCALER_TABLE_SIZE] = {
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{ 4, 0, 0 },
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{ 6, 1, 0 },
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{ 8, 0, 1 },
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{ 10, 2, 0 },
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{ 12, 1, 1 },
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{ 14, 3, 0 },
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{ 16, 0, 3 },
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{ 18, 1, 2 },
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{ 20, 2, 1 },
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{ 24, 1, 3 },
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{ 28, 3, 1 },
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{ 30, 2, 2 },
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{ 32, 0, 4 },
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{ 40, 2, 3 },
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{ 42, 3, 2 },
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{ 48, 1, 4 },
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{ 56, 3, 3 },
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{ 64, 0, 5 },
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{ 80, 2, 4 },
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{ 96, 1, 5 },
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{ 112, 3, 4 },
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{ 128, 0, 6 },
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{ 160, 2, 5 },
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{ 192, 1, 6 },
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{ 224, 3, 5 },
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{ 256, 0, 7 },
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{ 320, 2, 6 },
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{ 384, 1, 7 },
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{ 448, 3, 6 },
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{ 512, 0, 8 },
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{ 640, 2, 7 },
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{ 768, 1, 8 },
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{ 896, 3, 7 },
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{ 1024, 0, 9 },
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{ 1280, 2, 8 },
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{ 1536, 1, 9 },
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{ 1792, 3, 8 },
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{ 2048, 0, 10 },
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{ 2560, 2, 9 },
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{ 3072, 1, 10 },
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{ 3584, 3, 9 },
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{ 4096, 0, 11 },
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{ 5120, 2, 10 },
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{ 6144, 1, 11 },
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{ 7168, 3, 10 },
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{ 8192, 0, 12 },
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{ 10240, 2, 11 },
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{ 12288, 1, 12 },
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{ 14336, 3, 11 },
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{ 16384, 0, 13 },
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{ 20480, 2, 12 },
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{ 24576, 1, 13 },
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{ 28672, 3, 12 },
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{ 32768, 0, 14 },
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{ 40960, 2, 13 },
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{ 49152, 1, 14 },
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{ 57344, 3, 13 },
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{ 65536, 0, 15 },
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{ 81920, 2, 14 },
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{ 98304, 1, 15 },
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{ 114688, 3, 14 },
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{ 163840, 2, 15 },
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{ 229376, 3, 15 },
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};
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static void mpc55xx_dspi_edma_done( edma_channel_context *ctx, uint32_t error_status)
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{
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const mpc55xx_dspi_edma_entry *e = (const mpc55xx_dspi_edma_entry *) ctx;
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rtems_semaphore_release( e->id);
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if (error_status != 0) {
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RTEMS_SYSLOG_ERROR( "eDMA error: 0x%08" PRIx32 "\n", error_status);
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}
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}
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static mpc55xx_dspi_baudrate_scaler_entry mpc55xx_dspi_search_baudrate_scaler( uint32_t scaler, int min, int mid, int max)
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{
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if (scaler <= mpc55xx_dspi_baudrate_scaler_table [mid].scaler) {
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max = mid;
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} else {
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min = mid;
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}
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mid = (min + max) / 2;
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if (mid == min) {
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return mpc55xx_dspi_baudrate_scaler_table [max];
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} else {
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return mpc55xx_dspi_search_baudrate_scaler( scaler, min, mid, max);
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}
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}
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static uint32_t mpc55xx_dspi_push_data [8 * MPC55XX_DSPI_NUMBER] __attribute__ ((aligned (32)));
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static inline void mpc55xx_dspi_store_push_data( mpc55xx_dspi_bus_entry *e)
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{
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mpc55xx_dspi_push_data [e->table_index * 8] = e->push_data.R;
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rtems_cache_flush_multiple_data_lines( &mpc55xx_dspi_push_data [e->table_index * 8], 4);
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}
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static inline uint32_t mpc55xx_dspi_push_data_address( mpc55xx_dspi_bus_entry *e)
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{
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return (uint32_t) &mpc55xx_dspi_push_data [e->table_index * 8];
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}
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static inline uint32_t mpc55xx_dspi_nirvana_address( mpc55xx_dspi_bus_entry *e)
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{
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return (uint32_t) &mpc55xx_dspi_push_data [e->table_index * 8 + 1];
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}
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static rtems_status_code mpc55xx_dspi_init( rtems_libi2c_bus_t *bus)
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{
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rtems_status_code sc = RTEMS_SUCCESSFUL;
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mpc55xx_dspi_bus_entry *e = (mpc55xx_dspi_bus_entry *) bus;
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union DSPI_MCR_tag mcr = MPC55XX_ZERO_FLAGS;
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union DSPI_CTAR_tag ctar = MPC55XX_ZERO_FLAGS;
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union DSPI_RSER_tag rser = MPC55XX_ZERO_FLAGS;
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struct tcd_t tcd_push = EDMA_TCD_DEFAULT;
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int i = 0;
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/* eDMA receive */
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sc = rtems_semaphore_create (
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rtems_build_name ( 'S', 'P', 'I', 'R'),
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0,
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RTEMS_SIMPLE_BINARY_SEMAPHORE,
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0,
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&e->edma_receive.id
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);
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RTEMS_CHECK_SC( sc, "create receive update semaphore");
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sc = mpc55xx_edma_obtain_channel( &e->edma_receive.edma, MPC55XX_INTC_DEFAULT_PRIORITY);
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RTEMS_CHECK_SC( sc, "obtain receive eDMA channel");
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/* eDMA transmit */
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sc = rtems_semaphore_create (
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rtems_build_name ( 'S', 'P', 'I', 'T'),
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0,
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RTEMS_SIMPLE_BINARY_SEMAPHORE,
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0,
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&e->edma_transmit.id
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);
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RTEMS_CHECK_SC( sc, "create transmit update semaphore");
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sc = mpc55xx_edma_obtain_channel( &e->edma_transmit.edma, MPC55XX_INTC_DEFAULT_PRIORITY);
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RTEMS_CHECK_SC( sc, "obtain transmit eDMA channel");
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sc = mpc55xx_edma_obtain_channel( &e->edma_push.edma, MPC55XX_INTC_DEFAULT_PRIORITY);
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RTEMS_CHECK_SC( sc, "obtain push eDMA channel");
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tcd_push.SADDR = mpc55xx_dspi_push_data_address( e);
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tcd_push.SDF.B.SSIZE = 2;
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tcd_push.SDF.B.SOFF = 0;
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tcd_push.DADDR = (uint32_t) &e->regs->PUSHR.R;
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tcd_push.SDF.B.DSIZE = 2;
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tcd_push.CDF.B.DOFF = 0;
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tcd_push.NBYTES = 4;
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tcd_push.CDF.B.CITER = 1;
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tcd_push.BMF.B.BITER = 1;
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*e->edma_push.edma.edma_tcd = tcd_push;
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/* Module Control Register */
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mcr.B.MSTR = e->master ? 1 : 0;
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mcr.B.CONT_SCKE = 0;
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mcr.B.DCONF = 0;
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mcr.B.FRZ = 0;
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mcr.B.MTFE = 0;
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mcr.B.PCSSE = 0;
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mcr.B.ROOE = 0;
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mcr.B.PCSIS0 = 1;
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mcr.B.PCSIS1 = 1;
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mcr.B.PCSIS2 = 1;
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mcr.B.PCSIS3 = 1;
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mcr.B.PCSIS5 = 1;
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mcr.B.MDIS = 0;
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mcr.B.DIS_TXF = 0;
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mcr.B.DIS_RXF = 0;
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mcr.B.CLR_TXF = 0;
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mcr.B.CLR_RXF = 0;
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mcr.B.SMPL_PT = 0;
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mcr.B.HALT = 0;
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e->regs->MCR.R = mcr.R;
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/* Clock and Transfer Attributes Register */
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ctar.B.DBR = 0;
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ctar.B.FMSZ = 0x7;
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ctar.B.CPOL = 0;
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ctar.B.CPHA = 0;
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ctar.B.LSBFE = 0;
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ctar.B.PCSSCK = 0;
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ctar.B.PASC = 0;
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ctar.B.PDT = 0;
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ctar.B.PBR = 0;
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ctar.B.CSSCK = 0;
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ctar.B.ASC = 0;
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ctar.B.DT = 0;
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ctar.B.BR = 0;
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for (i = 0; i < MPC55XX_DSPI_CTAR_NUMBER; ++i) {
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e->regs->CTAR [i].R = ctar.R;
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}
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/* DMA/Interrupt Request Select and Enable Register */
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rser.B.TFFFRE = 1;
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rser.B.TFFFDIRS = 1;
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rser.B.RFDFRE = 1;
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rser.B.RFDFDIRS = 1;
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e->regs->RSER.R = rser.R;
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return RTEMS_SUCCESSFUL;
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}
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static rtems_status_code mpc55xx_dspi_send_start( rtems_libi2c_bus_t *bus)
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{
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mpc55xx_dspi_bus_entry *e = (mpc55xx_dspi_bus_entry *) bus;
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/* Reset chip selects */
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e->push_data.B.PCS0 = 0;
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e->push_data.B.PCS1 = 0;
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e->push_data.B.PCS2 = 0;
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e->push_data.B.PCS3 = 0;
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e->push_data.B.PCS4 = 0;
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e->push_data.B.PCS5 = 0;
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mpc55xx_dspi_store_push_data( e);
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return RTEMS_SUCCESSFUL;
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}
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static rtems_status_code mpc55xx_dspi_send_stop( rtems_libi2c_bus_t *bus)
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{
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return RTEMS_SUCCESSFUL;
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}
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static rtems_status_code mpc55xx_dspi_send_addr( rtems_libi2c_bus_t *bus, uint32_t addr, int rw)
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{
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mpc55xx_dspi_bus_entry *e = (mpc55xx_dspi_bus_entry *) bus;
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union DSPI_SR_tag sr = MPC55XX_ZERO_FLAGS;
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/* Flush transmit and receive FIFO */
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e->regs->MCR.B.CLR_TXF = 1;
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e->regs->MCR.B.CLR_RXF = 1;
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/* Clear status flags */
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sr.B.EOQF = 1;
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sr.B.TFFF = 1;
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sr.B.RFDF = 1;
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e->regs->SR.R = sr.R;
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/* Frame command */
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e->push_data.R = 0;
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e->push_data.B.CONT = 0;
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e->push_data.B.CTAS = MPC55XX_DSPI_CTAR_DEFAULT;
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e->push_data.B.EOQ = 0;
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e->push_data.B.CTCNT = 0;
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switch (addr) {
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case 0:
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e->push_data.B.PCS0 = 1;
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break;
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case 1:
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e->push_data.B.PCS1 = 1;
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break;
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case 2:
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e->push_data.B.PCS2 = 1;
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break;
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case 3:
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e->push_data.B.PCS3 = 1;
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break;
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case 4:
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e->push_data.B.PCS4 = 1;
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break;
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case 5:
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e->push_data.B.PCS5 = 1;
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break;
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default:
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return -RTEMS_INVALID_ADDRESS;
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}
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mpc55xx_dspi_store_push_data( e);
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return RTEMS_SUCCESSFUL;
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}
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/* FIXME, TODO */
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extern uint32_t bsp_clock_speed;
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static int mpc55xx_dspi_set_transfer_mode( rtems_libi2c_bus_t *bus, const rtems_libi2c_tfr_mode_t *mode)
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{
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mpc55xx_dspi_bus_entry *e = (mpc55xx_dspi_bus_entry *) bus;
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union DSPI_CTAR_tag ctar = MPC55XX_ZERO_FLAGS;
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if (mode->bits_per_char != 8) {
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return -RTEMS_INVALID_NUMBER;
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}
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e->idle_char = mode->idle_char;
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ctar.R = e->regs->CTAR [MPC55XX_DSPI_CTAR_DEFAULT].R;
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ctar.B.PCSSCK = 0;
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ctar.B.CSSCK = 0;
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ctar.B.PASC = 0;
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ctar.B.ASC = 0;
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ctar.B.LSBFE = mode->lsb_first ? 1 : 0;
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ctar.B.CPOL = mode->clock_inv ? 1 : 0;
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ctar.B.CPHA = mode->clock_phs ? 1 : 0;
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if (mode->baudrate != e->baud) {
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uint32_t scaler = bsp_clock_speed / mode->baudrate;
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mpc55xx_dspi_baudrate_scaler_entry bse = mpc55xx_dspi_search_baudrate_scaler( scaler, 0, MPC55XX_DSPI_BAUDRATE_SCALER_TABLE_SIZE / 2, MPC55XX_DSPI_BAUDRATE_SCALER_TABLE_SIZE);
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ctar.B.PBR = bse.pbr;
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ctar.B.BR = bse.br;
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e->baud = mode->baudrate;
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}
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e->regs->CTAR [MPC55XX_DSPI_CTAR_DEFAULT].R = ctar.R;
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return 0;
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}
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/**
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* @brief Writes @a n characters from @a out to bus @a bus and synchronously stores the received data in @a in.
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*
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* eDMA channel usage for transmission:
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* @dot
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* digraph push {
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* push [label="Push Register"];
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* push_data [label="Push Data"];
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* idle_push_data [label="Idle Push Data"];
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* out [shape=box,label="Output Buffer"];
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* edge [color=red,fontcolor=red];
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* push -> idle_push_data [label="Transmit Request",URL="\ref mpc55xx_dspi_bus_entry::edma_transmit"];
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* push -> out [label="Transmit Request",URL="\ref mpc55xx_dspi_bus_entry::edma_transmit"];
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* out -> push_data [label="Channel Link",URL="\ref mpc55xx_dspi_bus_entry::edma_push"];
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* edge [color=blue,fontcolor=blue];
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* out -> push_data [label="Data"];
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* push_data -> push [label="Data"];
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* idle_push_data -> push [label="Data"];
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* }
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* @enddot
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*
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* eDMA channel usage for receiving:
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* @dot
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* digraph pop {
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* pop [label="Pop Register"];
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* nirvana [label="Nirvana"];
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* in [shape=box,label="Input Buffer"];
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* edge [color=red,fontcolor=red];
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* pop -> nirvana [label="Receive Request",URL="\ref mpc55xx_dspi_bus_entry::edma_receive"];
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* pop -> in [label="Receive Request",URL="\ref mpc55xx_dspi_bus_entry::edma_receive"];
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* edge [color=blue,fontcolor=blue];
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* pop -> nirvana [label="Data"];
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* pop -> in [label="Data"];
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* }
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* @enddot
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*/
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static int mpc55xx_dspi_read_write( rtems_libi2c_bus_t *bus, unsigned char *in, const unsigned char *out, int n)
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{
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mpc55xx_dspi_bus_entry *e = (mpc55xx_dspi_bus_entry *) bus;
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/* Non cache aligned characters */
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int n_nc = n;
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/* Cache aligned characters */
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int n_c = 0;
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/* Register addresses */
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volatile void *push = &e->regs->PUSHR.R;
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volatile void *pop = &e->regs->POPR.R;
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volatile union DSPI_SR_tag *status = &e->regs->SR;
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/* Push and pop data */
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union DSPI_PUSHR_tag push_data = e->push_data;
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union DSPI_POPR_tag pop_data;
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/* Status register */
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union DSPI_SR_tag sr;
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/* Read and write indices */
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int r = 0;
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int w = 0;
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if (n == 0) {
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return 0;
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} else if (in == NULL && out == NULL) {
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return -RTEMS_INVALID_ADDRESS;
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}
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if (n > MPC55XX_DSPI_EDMA_MAGIC_SIZE) {
|
|
n_nc = (int) mpc55xx_non_cache_aligned_size( in);
|
|
n_c = (int) mpc55xx_cache_aligned_size( in, (size_t) n);
|
|
if (n_c > EDMA_TCD_BITER_LINKED_SIZE) {
|
|
RTEMS_SYSLOG_WARNING( "buffer size out of range, cannot use eDMA\n");
|
|
n_nc = n;
|
|
n_c = 0;
|
|
} else if (n_nc + n_c != n) {
|
|
RTEMS_SYSLOG_WARNING( "input buffer not proper cache aligned, cannot use eDMA\n");
|
|
n_nc = n;
|
|
n_c = 0;
|
|
}
|
|
}
|
|
|
|
#ifdef DEBUG
|
|
if (e->regs->SR.B.TXCTR != e->regs->SR.B.RXCTR) {
|
|
RTEMS_SYSLOG_WARNING( "FIFO counter not equal\n");
|
|
}
|
|
#endif /* DEBUG */
|
|
|
|
/* Direct IO */
|
|
if (out == NULL) {
|
|
push_data.B.TXDATA = e->idle_char;
|
|
while (r < n_nc || w < n_nc) {
|
|
/* Wait for available FIFO */
|
|
do {
|
|
sr.R = status->R;
|
|
} while (sr.B.TXCTR == MPC55XX_DSPI_FIFO_SIZE && sr.B.RXCTR == 0);
|
|
|
|
/* Write */
|
|
if (w < n_nc && (w - r) < MPC55XX_DSPI_FIFO_SIZE && sr.B.TXCTR != MPC55XX_DSPI_FIFO_SIZE) {
|
|
++w;
|
|
ppc_write_word( push_data.R, push);
|
|
}
|
|
|
|
/* Read */
|
|
if (r < n_nc && sr.B.RXCTR != 0) {
|
|
pop_data.R = ppc_read_word( pop);
|
|
in [r] = (unsigned char) pop_data.B.RXDATA;
|
|
++r;
|
|
}
|
|
}
|
|
} else if (in == NULL) {
|
|
while (r < n_nc || w < n_nc) {
|
|
/* Wait for available FIFO */
|
|
do {
|
|
sr.R = status->R;
|
|
} while (sr.B.TXCTR == MPC55XX_DSPI_FIFO_SIZE && sr.B.RXCTR == 0);
|
|
|
|
/* Write */
|
|
if (w < n_nc && (w - r) < MPC55XX_DSPI_FIFO_SIZE && sr.B.TXCTR != MPC55XX_DSPI_FIFO_SIZE) {
|
|
push_data.B.TXDATA = out [w];
|
|
++w;
|
|
ppc_write_word( push_data.R, push);
|
|
}
|
|
|
|
/* Read */
|
|
if (r < n_nc && sr.B.RXCTR != 0) {
|
|
pop_data.R = ppc_read_word( pop);
|
|
++r;
|
|
}
|
|
}
|
|
} else {
|
|
while (r < n_nc || w < n_nc) {
|
|
/* Wait for available FIFO */
|
|
do {
|
|
sr.R = status->R;
|
|
} while (sr.B.TXCTR == MPC55XX_DSPI_FIFO_SIZE && sr.B.RXCTR == 0);
|
|
|
|
/* Write */
|
|
if (w < n_nc && (w - r) < MPC55XX_DSPI_FIFO_SIZE && sr.B.TXCTR != MPC55XX_DSPI_FIFO_SIZE) {
|
|
push_data.B.TXDATA = out [w];
|
|
++w;
|
|
ppc_write_word( push_data.R, push);
|
|
}
|
|
|
|
/* Read */
|
|
if (r < n_nc && sr.B.RXCTR != 0) {
|
|
pop_data.R = ppc_read_word( pop);
|
|
in [r] = (unsigned char) pop_data.B.RXDATA;
|
|
++r;
|
|
}
|
|
}
|
|
}
|
|
|
|
/* eDMA transfers */
|
|
if (n_c > 0) {
|
|
rtems_status_code sc = RTEMS_SUCCESSFUL;
|
|
unsigned char *in_c = in + n_nc;
|
|
const unsigned char *out_c = out + n_nc;
|
|
struct tcd_t tcd_transmit = EDMA_TCD_DEFAULT;
|
|
struct tcd_t tcd_receive = EDMA_TCD_DEFAULT;
|
|
|
|
/* Cache operations */
|
|
rtems_cache_flush_multiple_data_lines( out_c, (size_t) n_c);
|
|
rtems_cache_invalidate_multiple_data_lines( in_c, (size_t) n_c);
|
|
|
|
/* Set transmit TCD */
|
|
if (out == NULL) {
|
|
e->push_data.B.TXDATA = e->idle_char;
|
|
mpc55xx_dspi_store_push_data( e);
|
|
tcd_transmit.SADDR = mpc55xx_dspi_push_data_address( e);
|
|
tcd_transmit.SDF.B.SSIZE = 2;
|
|
tcd_transmit.SDF.B.SOFF = 0;
|
|
tcd_transmit.DADDR = (uint32_t) push;
|
|
tcd_transmit.SDF.B.DSIZE = 2;
|
|
tcd_transmit.CDF.B.DOFF = 0;
|
|
tcd_transmit.NBYTES = 4;
|
|
tcd_transmit.CDF.B.CITER = n_c;
|
|
tcd_transmit.BMF.B.BITER = n_c;
|
|
} else {
|
|
unsigned push_channel = mpc55xx_edma_channel_by_tcd( e->edma_push.edma.edma_tcd);
|
|
mpc55xx_edma_clear_done( e->edma_transmit.edma.edma_tcd);
|
|
tcd_transmit.SADDR = (uint32_t) out_c;
|
|
tcd_transmit.SDF.B.SSIZE = 0;
|
|
tcd_transmit.SDF.B.SOFF = 1;
|
|
tcd_transmit.DADDR = mpc55xx_dspi_push_data_address( e) + 3;
|
|
tcd_transmit.SDF.B.DSIZE = 0;
|
|
tcd_transmit.CDF.B.DOFF = 0;
|
|
tcd_transmit.NBYTES = 1;
|
|
tcd_transmit.CDF.B.CITERE_LINK = 1;
|
|
tcd_transmit.BMF.B.BITERE_LINK = 1;
|
|
tcd_transmit.BMF.B.MAJORLINKCH = push_channel;
|
|
tcd_transmit.CDF.B.CITER = EDMA_TCD_LINK_AND_BITER( push_channel, n_c);
|
|
tcd_transmit.BMF.B.BITER = EDMA_TCD_LINK_AND_BITER( push_channel, n_c);
|
|
tcd_transmit.BMF.B.MAJORE_LINK = 1;
|
|
}
|
|
tcd_transmit.BMF.B.D_REQ = 1;
|
|
tcd_transmit.BMF.B.INT_MAJ = 1;
|
|
*e->edma_transmit.edma.edma_tcd = tcd_transmit;
|
|
|
|
/* Set receive TCD */
|
|
if (in == NULL) {
|
|
tcd_receive.CDF.B.DOFF = 0;
|
|
tcd_receive.DADDR = mpc55xx_dspi_nirvana_address( e);
|
|
} else {
|
|
tcd_receive.CDF.B.DOFF = 1;
|
|
tcd_receive.DADDR = (uint32_t) in_c;
|
|
}
|
|
tcd_receive.SADDR = (uint32_t) pop + 3;
|
|
tcd_receive.SDF.B.SSIZE = 0;
|
|
tcd_receive.SDF.B.SOFF = 0;
|
|
tcd_receive.SDF.B.DSIZE = 0;
|
|
tcd_receive.NBYTES = 1;
|
|
tcd_receive.BMF.B.D_REQ = 1;
|
|
tcd_receive.BMF.B.INT_MAJ = 1;
|
|
tcd_receive.CDF.B.CITER = n_c;
|
|
tcd_receive.BMF.B.BITER = n_c;
|
|
*e->edma_receive.edma.edma_tcd = tcd_receive;
|
|
|
|
/* Clear request flags */
|
|
sr.R = 0;
|
|
sr.B.TFFF = 1;
|
|
sr.B.RFDF = 1;
|
|
status->R = sr.R;
|
|
|
|
/* Enable hardware requests */
|
|
mpc55xx_edma_enable_hardware_requests( e->edma_receive.edma.edma_tcd);
|
|
mpc55xx_edma_enable_hardware_requests( e->edma_transmit.edma.edma_tcd);
|
|
|
|
/* Wait for transmit update */
|
|
sc = rtems_semaphore_obtain( e->edma_transmit.id, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
|
|
RTEMS_CHECK_SC_RV( sc, "transmit update");
|
|
|
|
/* Wait for receive update */
|
|
sc = rtems_semaphore_obtain( e->edma_receive.id, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
|
|
RTEMS_CHECK_SC_RV( sc, "receive update");
|
|
}
|
|
|
|
return n;
|
|
}
|
|
|
|
/**
|
|
* @brief Reads @a n characters from bus @a bus and stores it in @a in.
|
|
*
|
|
* Writes idle characters to receive data.
|
|
*
|
|
* @see mpc55xx_dspi_read_write().
|
|
*/
|
|
static int mpc55xx_dspi_read( rtems_libi2c_bus_t *bus, unsigned char *in, int n)
|
|
{
|
|
return mpc55xx_dspi_read_write( bus, in, NULL, n);
|
|
}
|
|
|
|
/**
|
|
* @brief Writes @a n characters from @a out to bus @a bus.
|
|
*
|
|
* Discards the synchronously received data.
|
|
*
|
|
* @see mpc55xx_dspi_read_write().
|
|
*/
|
|
static int mpc55xx_dspi_write( rtems_libi2c_bus_t *bus, unsigned char *out, int n)
|
|
{
|
|
return mpc55xx_dspi_read_write( bus, NULL, out, n);
|
|
}
|
|
|
|
static int mpc55xx_dspi_ioctl( rtems_libi2c_bus_t *bus, int cmd, void *arg)
|
|
{
|
|
int rv = -1;
|
|
switch (cmd) {
|
|
case RTEMS_LIBI2C_IOCTL_SET_TFRMODE:
|
|
rv = mpc55xx_dspi_set_transfer_mode( bus, (const rtems_libi2c_tfr_mode_t *) arg);
|
|
break;
|
|
case RTEMS_LIBI2C_IOCTL_READ_WRITE:
|
|
rv = mpc55xx_dspi_read_write(
|
|
bus,
|
|
((rtems_libi2c_read_write_t *) arg)->rd_buf,
|
|
((rtems_libi2c_read_write_t *) arg)->wr_buf,
|
|
((rtems_libi2c_read_write_t *) arg)->byte_cnt
|
|
);
|
|
break;
|
|
default:
|
|
rv = -RTEMS_NOT_DEFINED;
|
|
break;
|
|
}
|
|
return rv;
|
|
}
|
|
|
|
static const rtems_libi2c_bus_ops_t mpc55xx_dspi_ops = {
|
|
.init = mpc55xx_dspi_init,
|
|
.send_start = mpc55xx_dspi_send_start,
|
|
.send_stop = mpc55xx_dspi_send_stop,
|
|
.send_addr = mpc55xx_dspi_send_addr,
|
|
.read_bytes = mpc55xx_dspi_read,
|
|
.write_bytes = mpc55xx_dspi_write,
|
|
.ioctl = mpc55xx_dspi_ioctl
|
|
};
|
|
|
|
mpc55xx_dspi_bus_entry mpc55xx_dspi_bus_table [MPC55XX_DSPI_NUMBER] = {
|
|
{
|
|
/* DSPI A */
|
|
.bus = {
|
|
.ops = &mpc55xx_dspi_ops,
|
|
.size = sizeof( mpc55xx_dspi_bus_entry)
|
|
},
|
|
.table_index = 0,
|
|
.bus_number = 0,
|
|
.regs = &DSPI_A,
|
|
.master = true,
|
|
.push_data = MPC55XX_ZERO_FLAGS,
|
|
.edma_transmit = {
|
|
.edma = {
|
|
.edma_tcd = EDMA_TCD_BY_CHANNEL_INDEX(EDMA_DSPI_A_SR_TFFF),
|
|
.done = mpc55xx_dspi_edma_done
|
|
},
|
|
.id = RTEMS_ID_NONE
|
|
},
|
|
.edma_push = {
|
|
.edma = {
|
|
.edma_tcd = &EDMA.TCD [43],
|
|
.done = mpc55xx_dspi_edma_done
|
|
},
|
|
.id = RTEMS_ID_NONE
|
|
},
|
|
.edma_receive = {
|
|
.edma = {
|
|
.edma_tcd = EDMA_TCD_BY_CHANNEL_INDEX(EDMA_DSPI_A_SR_RFDF),
|
|
.done = mpc55xx_dspi_edma_done
|
|
},
|
|
.id = RTEMS_ID_NONE
|
|
},
|
|
.idle_char = 0xffffffff,
|
|
.baud = 0
|
|
}, {
|
|
/* DSPI B */
|
|
.bus = {
|
|
.ops = &mpc55xx_dspi_ops,
|
|
.size = sizeof( mpc55xx_dspi_bus_entry)
|
|
},
|
|
.table_index = 1,
|
|
.bus_number = 0,
|
|
.regs = &DSPI_B,
|
|
.master = true,
|
|
.push_data = MPC55XX_ZERO_FLAGS,
|
|
.edma_transmit = {
|
|
.edma = {
|
|
.edma_tcd = EDMA_TCD_BY_CHANNEL_INDEX(EDMA_DSPI_B_SR_TFFF),
|
|
.done = mpc55xx_dspi_edma_done
|
|
},
|
|
.id = RTEMS_ID_NONE
|
|
},
|
|
.edma_push = {
|
|
.edma = {
|
|
.edma_tcd = &EDMA.TCD [10],
|
|
.done = mpc55xx_dspi_edma_done
|
|
},
|
|
.id = RTEMS_ID_NONE
|
|
},
|
|
.edma_receive = {
|
|
.edma = {
|
|
.edma_tcd = EDMA_TCD_BY_CHANNEL_INDEX(EDMA_DSPI_B_SR_RFDF),
|
|
.done = mpc55xx_dspi_edma_done
|
|
},
|
|
.id = RTEMS_ID_NONE
|
|
},
|
|
.idle_char = 0xffffffff,
|
|
.baud = 0
|
|
}, {
|
|
/* DSPI C */
|
|
.bus = {
|
|
.ops = &mpc55xx_dspi_ops,
|
|
.size = sizeof( mpc55xx_dspi_bus_entry)
|
|
},
|
|
.table_index = 2,
|
|
.bus_number = 0,
|
|
.regs = &DSPI_C,
|
|
.master = true,
|
|
.push_data = MPC55XX_ZERO_FLAGS,
|
|
.edma_transmit = {
|
|
.edma = {
|
|
.edma_tcd = EDMA_TCD_BY_CHANNEL_INDEX(EDMA_DSPI_C_SR_TFFF),
|
|
.done = mpc55xx_dspi_edma_done
|
|
},
|
|
.id = RTEMS_ID_NONE
|
|
},
|
|
.edma_push = {
|
|
.edma = {
|
|
.edma_tcd = &EDMA.TCD [11],
|
|
.done = mpc55xx_dspi_edma_done
|
|
},
|
|
.id = RTEMS_ID_NONE
|
|
},
|
|
.edma_receive = {
|
|
.edma = {
|
|
.edma_tcd = EDMA_TCD_BY_CHANNEL_INDEX(EDMA_DSPI_C_SR_RFDF),
|
|
.done = mpc55xx_dspi_edma_done
|
|
},
|
|
.id = RTEMS_ID_NONE
|
|
},
|
|
.idle_char = 0xffffffff,
|
|
.baud = 0
|
|
#ifdef DSPI_D
|
|
}, {
|
|
/* DSPI D */
|
|
.bus = {
|
|
.ops = &mpc55xx_dspi_ops,
|
|
.size = sizeof( mpc55xx_dspi_bus_entry)
|
|
},
|
|
.table_index = 3,
|
|
.bus_number = 0,
|
|
.regs = &DSPI_D,
|
|
.master = true,
|
|
.push_data = MPC55XX_ZERO_FLAGS,
|
|
.edma_transmit = {
|
|
.edma = {
|
|
.edma_tcd = EDMA_TCD_BY_CHANNEL_INDEX(EDMA_DSPI_D_SR_TFFF),
|
|
.done = mpc55xx_dspi_edma_done
|
|
},
|
|
.id = RTEMS_ID_NONE
|
|
},
|
|
.edma_push = {
|
|
.edma = {
|
|
.edma_tcd = &EDMA.TCD [18],
|
|
.done = mpc55xx_dspi_edma_done
|
|
},
|
|
.id = RTEMS_ID_NONE
|
|
},
|
|
.edma_receive = {
|
|
.edma = {
|
|
.edma_tcd = EDMA_TCD_BY_CHANNEL_INDEX(EDMA_DSPI_D_SR_RFDF),
|
|
.done = mpc55xx_dspi_edma_done
|
|
},
|
|
.id = RTEMS_ID_NONE
|
|
},
|
|
.idle_char = 0xffffffff,
|
|
.baud = 0
|
|
#endif
|
|
}
|
|
};
|