/* * Copyright (c) 2019, Arm Limited and affiliates. * SPDX-License-Identifier: Apache-2.0 * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ #ifndef SPI_MASTER_TESTER_H #define SPI_MASTER_TESTER_H #include "SPITester.h" class SPIMasterTester: public SPITester { public: SPIMasterTester(const PinList *form_factor, const PinList *exclude_pins) : SPITester(form_factor, exclude_pins) { } /** * Read the number of transfers which have occurred * * @return The number of SPI transfers that have completed since * spi was reset. */ uint16_t get_transfer_count(); /** * Read a checksum of data send to the tester * * @return The sum of all bytes sent to the tester since reset. */ uint32_t get_receive_checksum(); /** * Set the clock mode of the spi_slave module. * * @param mode Spi clock mode */ void set_mode(SpiMode mode); /** * Set bit order durring transmission of the spi_slave module. * * @param mode Spi clock mode */ void set_bit_order(SpiBitOrder bit_order); /** * Set symbol size used durring transmission of the spi_slave module. * * @param mode Spi clock mode */ void set_sym_size(uint32_t sym_size); /** * Set full-duplex/half-duplex transmission mode of the spi_slave module. * * @param duplex duplex mode used for the transmission */ void set_duplex_mode(SpiDuplex duplex); /** * Set tx/rx symbol count. * * @tx_cnt TX symbol count * @rx_cnt RX symbol count * * @note Required only in Half-Duplex mode. */ void set_hd_tx_rx_cnt(uint16_t tx_cnt, uint16_t rx_cnt); /** * Get nano seconds between chip select assertion and the first spi clock edge. * * @return nano seconds between chip select assertion and the first spi clock edge. * * @note Number of nano seconds is calculated based of number of counted clk changes and * clk frequency (100 MHz => 1 clk tick corresponds to 10 ns). * Accuracy of the returned value is +/- 10 ns. */ uint32_t get_cs_to_first_clk_edge_ns(); /** * Get nano seconds between last spi clock edge and chip select de-assertion. * * @return nano seconds between last spi clock edge and chip select de-assertion. * * @note Number of nano seconds is calculated based of number of counted clk changes and * clk frequency (100 MHz => 1 clk tick corresponds to 10 ns). * Accuracy of the returned value is +/- 10 ns. */ uint32_t get_last_clk_edge_to_cs_ns(); }; #endif