mirror of
https://review.coreboot.org/flashrom.git
synced 2025-04-26 22:52:34 +02:00

Drop the explicit need to specify the default 'fallback_{un}map' callback function pointer from the 'programmer_entry' struct. This is a reasonable default for every other driver in the tree with only a select few exceptions [atavia, serprog, dummyflasher and internal]. Thus this simplifies driver development and paves way to remove the 'programmer' global handle. Change-Id: I5ea7bd68f7ae2cd4af9902ef07255ab6ce0bfdb3 Signed-off-by: Edward O'Callaghan <quasisec@google.com> Reviewed-on: https://review.coreboot.org/c/flashrom/+/67404 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Felix Singer <felixsinger@posteo.net> Reviewed-by: Anastasia Klimchuk <aklm@chromium.org> Reviewed-by: Angel Pons <th3fanbus@gmail.com>
560 lines
15 KiB
C
560 lines
15 KiB
C
/*
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* This file is part of the flashrom project.
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*
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* Copyright (C) 2019 Miklós Márton martonmiklosqdev@gmail.com
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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*/
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/*
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* Driver for programming SPI flash chips using the SPI port
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* of the STMicroelectronics's STLINK-V3 programmer/debugger.
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*
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* The implementation is inspired by the ST's STLINK-V3-BRIDGE C++ API:
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* https://www.st.com/en/development-tools/stlink-v3-bridge.html
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*/
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#include "flash.h"
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#include "programmer.h"
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#include "spi.h"
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#include <libusb.h>
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#include <limits.h>
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#include <stdint.h>
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#include <stdlib.h>
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#include <string.h>
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enum fw_version_check_result {
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FW_VERSION_OK,
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FW_VERSION_OLD,
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};
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enum spi_prescaler {
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SPI_BAUDRATEPRESCALER_2 = 0,
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SPI_BAUDRATEPRESCALER_4 = 1,
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SPI_BAUDRATEPRESCALER_8 = 2,
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SPI_BAUDRATEPRESCALER_16 = 3,
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SPI_BAUDRATEPRESCALER_32 = 4,
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SPI_BAUDRATEPRESCALER_64 = 5,
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SPI_BAUDRATEPRESCALER_128 = 6,
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SPI_BAUDRATEPRESCALER_256 = 7
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};
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enum spi_dir {
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SPI_DIRECTION_2LINES_FULLDUPLEX = 0,
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SPI_DIRECTION_2LINES_RXONLY = 1,
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SPI_DIRECTION_1LINE_RX = 2,
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SPI_DIRECTION_1LINE_TX = 3
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};
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enum spi_mode {
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SPI_MODE_SLAVE = 0,
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SPI_MODE_MASTER = 1
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};
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enum spi_datasize {
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SPI_DATASIZE_16B = 0,
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SPI_DATASIZE_8B = 1
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};
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enum spi_cpol {
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SPI_CPOL_LOW = 0,
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SPI_CPOL_HIGH = 1
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};
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enum spi_cpha {
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SPI_CPHA_1EDGE = 0,
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SPI_CPHA_2EDGE = 1
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};
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enum spi_firstbit {
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SPI_FIRSTBIT_LSB = 0,
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SPI_FIRSTBIT_MSB = 1
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};
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// ST calls the Chip select (CS) NSS == Negated Slave Select
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enum spi_nss {
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SPI_NSS_SOFT = 0,
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SPI_NSS_HARD = 1
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};
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enum spi_nss_level {
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SPI_NSS_LOW = 0,
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SPI_NSS_HIGH = 1
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};
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#define ST_GETVERSION_EXT 0xFB
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#define STLINK_BRIDGE_COMMAND 0xFC
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#define STLINK_BRIDGE_CLOSE 0x01
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#define STLINK_BRIDGE_GET_RWCMD_STATUS 0x02
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#define STLINK_BRIDGE_GET_CLOCK 0x03
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#define STLINK_BRIDGE_INIT_SPI 0x20
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#define STLINK_BRIDGE_WRITE_SPI 0x21
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#define STLINK_BRIDGE_READ_SPI 0x22
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#define STLINK_BRIDGE_CS_SPI 0x23
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#define STLINK_BRIDGE_SPI_ERROR 0x02
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#define STLINK_SPI_COM 0x02
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#define STLINK_EP_OUT 0x06
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#define STLINK_EP_IN 0x86
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#define FIRST_COMPATIBLE_BRIDGE_FW_VERSION 3
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#define USB_TIMEOUT_IN_MS 5000
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static const struct dev_entry devs_stlinkv3_spi[] = {
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{0x0483, 0x374E, NT, "STMicroelectronics", "STLINK-V3E"},
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{0x0483, 0x374F, OK, "STMicroelectronics", "STLINK-V3S"},
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{0x0483, 0x3753, OK, "STMicroelectronics", "STLINK-V3 dual VCP"},
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{0x0483, 0x3754, NT, "STMicroelectronics", "STLINK-V3 no MSD"},
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{0}
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};
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struct stlinkv3_spi_data {
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struct libusb_context *usb_ctx;
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libusb_device_handle *handle;
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};
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static int stlinkv3_command(uint8_t *command, size_t command_length,
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uint8_t *answer, size_t answer_length, const char *command_name,
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libusb_device_handle *stlinkv3_handle)
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{
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int actual_length = 0;
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int rc = libusb_bulk_transfer(stlinkv3_handle, STLINK_EP_OUT,
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command, command_length,
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&actual_length, USB_TIMEOUT_IN_MS);
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if (rc != LIBUSB_TRANSFER_COMPLETED || (size_t)actual_length != command_length) {
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msg_perr("Failed to issue the %s command: '%s'\n",
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command_name,
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libusb_error_name(rc));
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return -1;
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}
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rc = libusb_bulk_transfer(stlinkv3_handle, STLINK_EP_IN,
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answer, answer_length,
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&actual_length, USB_TIMEOUT_IN_MS);
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if (rc != LIBUSB_TRANSFER_COMPLETED || (size_t)actual_length != answer_length) {
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msg_perr("Failed to get %s answer: '%s'\n",
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command_name,
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libusb_error_name(rc));
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return -1;
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}
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return 0;
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}
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/**
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* @param[out] bridge_input_clk Current input frequency in kHz of the given com.
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*/
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static int stlinkv3_get_clk(uint32_t *bridge_input_clk, libusb_device_handle *stlinkv3_handle)
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{
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uint8_t command[16] = { 0 };
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uint8_t answer[12];
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if (bridge_input_clk == NULL)
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return -1;
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command[0] = STLINK_BRIDGE_COMMAND;
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command[1] = STLINK_BRIDGE_GET_CLOCK;
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command[2] = STLINK_SPI_COM;
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if (stlinkv3_command(command, sizeof(command),
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answer, sizeof(answer),
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"STLINK_BRIDGE_GET_CLOCK",
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stlinkv3_handle) != 0)
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return -1;
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*bridge_input_clk = (uint32_t)answer[4]
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| (uint32_t)answer[5]<<8
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| (uint32_t)answer[6]<<16
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| (uint32_t)answer[7]<<24;
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return 0;
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}
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static int stlinkv3_spi_calc_prescaler(uint16_t reqested_freq_in_kHz,
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enum spi_prescaler *prescaler,
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uint16_t *calculated_freq_in_kHz,
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libusb_device_handle *stlinkv3_handle)
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{
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uint32_t bridge_clk_in_kHz;
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uint32_t calculated_prescaler = 1;
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uint16_t prescaler_value;
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if (stlinkv3_get_clk(&bridge_clk_in_kHz, stlinkv3_handle))
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return -1;
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calculated_prescaler = bridge_clk_in_kHz/reqested_freq_in_kHz;
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// Apply a smaller frequency if not exact
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if (calculated_prescaler <= 2) {
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*prescaler = SPI_BAUDRATEPRESCALER_2;
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prescaler_value = 2;
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} else if (calculated_prescaler <= 4) {
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*prescaler = SPI_BAUDRATEPRESCALER_4;
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prescaler_value = 4;
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} else if (calculated_prescaler <= 8) {
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*prescaler = SPI_BAUDRATEPRESCALER_8;
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prescaler_value = 8;
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} else if (calculated_prescaler <= 16) {
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*prescaler = SPI_BAUDRATEPRESCALER_16;
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prescaler_value = 16;
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} else if (calculated_prescaler <= 32) {
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*prescaler = SPI_BAUDRATEPRESCALER_32;
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prescaler_value = 32;
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} else if (calculated_prescaler <= 64) {
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*prescaler = SPI_BAUDRATEPRESCALER_64;
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prescaler_value = 64;
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} else if (calculated_prescaler <= 128) {
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*prescaler = SPI_BAUDRATEPRESCALER_128;
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prescaler_value = 128;
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} else if (calculated_prescaler <= 256) {
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*prescaler = SPI_BAUDRATEPRESCALER_256;
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prescaler_value = 256;
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} else {
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// smaller frequency not possible
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*prescaler = SPI_BAUDRATEPRESCALER_256;
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prescaler_value = 256;
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}
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*calculated_freq_in_kHz = bridge_clk_in_kHz / prescaler_value;
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return 0;
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}
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static int stlinkv3_check_version(enum fw_version_check_result *result, libusb_device_handle *stlinkv3_handle)
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{
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uint8_t answer[12];
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uint8_t command[16] = { 0 };
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command[0] = ST_GETVERSION_EXT;
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command[1] = 0x80;
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if (stlinkv3_command(command, sizeof(command),
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answer, sizeof(answer),
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"ST_GETVERSION_EXT",
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stlinkv3_handle) != 0)
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return -1;
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msg_pinfo("Connected to STLink V3 with bridge FW version: %d\n", answer[4]);
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*result = answer[4] >= FIRST_COMPATIBLE_BRIDGE_FW_VERSION
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? FW_VERSION_OK
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: FW_VERSION_OLD;
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return 0;
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}
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static int stlinkv3_spi_open(uint16_t reqested_freq_in_kHz, libusb_device_handle *stlinkv3_handle)
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{
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uint8_t command[16] = { 0 };
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uint8_t answer[2];
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uint16_t SCK_freq_in_kHz;
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enum spi_prescaler prescaler;
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enum fw_version_check_result fw_check_result;
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if (stlinkv3_check_version(&fw_check_result, stlinkv3_handle)) {
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msg_perr("Failed to query FW version\n");
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return -1;
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}
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if (fw_check_result != FW_VERSION_OK) {
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msg_pinfo("Your STLink V3 has a too old version of the bridge interface\n"
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"Please update the firmware to version 2.33.25 or newer of the STSW-LINK007\n"
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"which can be downloaded from here:\n"
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"https://www.st.com/en/development-tools/stsw-link007.html\n");
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return -1;
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}
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if (stlinkv3_spi_calc_prescaler(reqested_freq_in_kHz,
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&prescaler,
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&SCK_freq_in_kHz,
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stlinkv3_handle)) {
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msg_perr("Failed to calculate SPI clock prescaler\n");
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return -1;
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}
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msg_pinfo("SCK frequency set to %d kHz\n", SCK_freq_in_kHz);
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command[0] = STLINK_BRIDGE_COMMAND;
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command[1] = STLINK_BRIDGE_INIT_SPI;
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command[2] = SPI_DIRECTION_2LINES_FULLDUPLEX;
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command[3] = (SPI_MODE_MASTER
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| (SPI_CPHA_1EDGE << 1)
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| (SPI_CPOL_LOW << 2)
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| (SPI_FIRSTBIT_MSB << 3));
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command[4] = SPI_DATASIZE_8B;
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command[5] = SPI_NSS_SOFT;
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command[6] = (uint8_t)prescaler;
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return stlinkv3_command(command, sizeof(command),
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answer, sizeof(answer),
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"STLINK_BRIDGE_INIT_SPI",
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stlinkv3_handle);
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}
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static int stlinkv3_get_last_readwrite_status(uint32_t *status, libusb_device_handle *stlinkv3_handle)
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{
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uint8_t command[16] = { 0 };
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uint16_t answer[4];
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command[0] = STLINK_BRIDGE_COMMAND;
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command[1] = STLINK_BRIDGE_GET_RWCMD_STATUS;
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if (stlinkv3_command(command, sizeof(command),
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(uint8_t *)answer, sizeof(answer),
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"STLINK_BRIDGE_GET_RWCMD_STATUS",
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stlinkv3_handle) != 0)
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return -1;
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*status = (uint32_t)answer[2] | (uint32_t)answer[3]<<16;
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return 0;
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}
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static int stlinkv3_spi_set_SPI_NSS(enum spi_nss_level nss_level, libusb_device_handle *stlinkv3_handle)
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{
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uint8_t command[16] = { 0 };
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uint8_t answer[2];
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command[0] = STLINK_BRIDGE_COMMAND;
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command[1] = STLINK_BRIDGE_CS_SPI;
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command[2] = (uint8_t) (nss_level);
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if (stlinkv3_command(command, sizeof(command),
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answer, sizeof(answer),
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"STLINK_BRIDGE_CS_SPI",
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stlinkv3_handle) != 0)
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return -1;
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return 0;
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}
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static int stlinkv3_spi_transmit(const struct flashctx *flash,
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unsigned int write_cnt,
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unsigned int read_cnt,
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const unsigned char *write_arr,
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unsigned char *read_arr)
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{
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struct stlinkv3_spi_data *stlinkv3_data = flash->mst->spi.data;
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libusb_device_handle *stlinkv3_handle = stlinkv3_data->handle;
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uint8_t command[16] = { 0 };
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int rc = 0;
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int actual_length = 0;
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uint32_t rw_status = 0;
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unsigned int i;
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if (stlinkv3_spi_set_SPI_NSS(SPI_NSS_LOW, stlinkv3_handle)) {
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msg_perr("Failed to set the NSS pin to low\n");
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return -1;
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}
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command[0] = STLINK_BRIDGE_COMMAND;
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command[1] = STLINK_BRIDGE_WRITE_SPI;
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command[2] = (uint8_t)write_cnt;
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command[3] = (uint8_t)(write_cnt >> 8);
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for (i = 0; (i < 8) && (i < write_cnt); i++)
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command[4+i] = write_arr[i];
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rc = libusb_bulk_transfer(stlinkv3_handle, STLINK_EP_OUT,
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command, sizeof(command),
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&actual_length, USB_TIMEOUT_IN_MS);
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if (rc != LIBUSB_TRANSFER_COMPLETED || actual_length != sizeof(command)) {
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msg_perr("Failed to issue the STLINK_BRIDGE_WRITE_SPI command: '%s'\n",
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libusb_error_name(rc));
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goto transmit_err;
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}
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if (write_cnt > 8) {
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rc = libusb_bulk_transfer(stlinkv3_handle,
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STLINK_EP_OUT,
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(unsigned char *)&write_arr[8],
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(unsigned int)(write_cnt - 8),
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&actual_length,
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USB_TIMEOUT_IN_MS);
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if (rc != LIBUSB_TRANSFER_COMPLETED || (unsigned int)actual_length != (write_cnt - 8)) {
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msg_perr("Failed to send the data after the STLINK_BRIDGE_WRITE_SPI command: '%s'\n",
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libusb_error_name(rc));
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goto transmit_err;
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}
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}
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if (stlinkv3_get_last_readwrite_status(&rw_status, stlinkv3_handle))
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return -1;
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if (rw_status != 0) {
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msg_perr("SPI read/write failure: %d\n", rw_status);
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goto transmit_err;
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}
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if (read_cnt) {
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command[1] = STLINK_BRIDGE_READ_SPI;
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command[2] = (uint8_t)read_cnt;
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command[3] = (uint8_t)(read_cnt >> 8);
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rc = libusb_bulk_transfer(stlinkv3_handle, STLINK_EP_OUT,
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command, sizeof(command),
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&actual_length, USB_TIMEOUT_IN_MS);
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if (rc != LIBUSB_TRANSFER_COMPLETED || (unsigned int)actual_length != sizeof(command)) {
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msg_perr("Failed to issue the STLINK_BRIDGE_READ_SPI command: '%s'\n",
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libusb_error_name(rc));
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goto transmit_err;
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}
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rc = libusb_bulk_transfer(stlinkv3_handle,
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STLINK_EP_IN,
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(unsigned char *)read_arr,
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(int)read_cnt,
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&actual_length,
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USB_TIMEOUT_IN_MS);
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if (rc != LIBUSB_TRANSFER_COMPLETED || (unsigned int)actual_length != read_cnt) {
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msg_perr("Failed to retrieve the STLINK_BRIDGE_READ_SPI answer: '%s'\n",
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libusb_error_name(rc));
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goto transmit_err;
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}
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}
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if (stlinkv3_get_last_readwrite_status(&rw_status, stlinkv3_handle))
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goto transmit_err;
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if (rw_status != 0) {
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msg_perr("SPI read/write failure: %d\n", rw_status);
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goto transmit_err;
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}
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if (stlinkv3_spi_set_SPI_NSS(SPI_NSS_HIGH, stlinkv3_handle)) {
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msg_perr("Failed to set the NSS pin to high\n");
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return -1;
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}
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return 0;
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transmit_err:
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if (stlinkv3_spi_set_SPI_NSS(SPI_NSS_HIGH, stlinkv3_handle))
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msg_perr("Failed to set the NSS pin to high\n");
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return -1;
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}
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static int stlinkv3_spi_shutdown(void *data)
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{
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struct stlinkv3_spi_data *stlinkv3_data = data;
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uint8_t command[16] = { 0 };
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uint8_t answer[2];
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command[0] = STLINK_BRIDGE_COMMAND;
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command[1] = STLINK_BRIDGE_CLOSE;
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command[2] = STLINK_SPI_COM;
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stlinkv3_command(command, sizeof(command),
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answer, sizeof(answer),
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"STLINK_BRIDGE_CLOSE",
|
|
stlinkv3_data->handle);
|
|
|
|
libusb_close(stlinkv3_data->handle);
|
|
libusb_exit(stlinkv3_data->usb_ctx);
|
|
|
|
free(data);
|
|
return 0;
|
|
}
|
|
|
|
static const struct spi_master spi_programmer_stlinkv3 = {
|
|
.max_data_read = UINT16_MAX,
|
|
.max_data_write = UINT16_MAX,
|
|
.command = stlinkv3_spi_transmit,
|
|
.multicommand = default_spi_send_multicommand,
|
|
.read = default_spi_read,
|
|
.write_256 = default_spi_write_256,
|
|
.write_aai = default_spi_write_aai,
|
|
.shutdown = stlinkv3_spi_shutdown,
|
|
.probe_opcode = default_spi_probe_opcode,
|
|
};
|
|
|
|
static int stlinkv3_spi_init(const struct programmer_cfg *cfg)
|
|
{
|
|
uint16_t sck_freq_kHz = 1000; // selecting 1 MHz SCK is a good bet
|
|
char *param_str;
|
|
char *endptr = NULL;
|
|
int ret = 1;
|
|
int devIndex = 0;
|
|
struct libusb_context *usb_ctx;
|
|
libusb_device_handle *stlinkv3_handle;
|
|
struct stlinkv3_spi_data *stlinkv3_data;
|
|
|
|
if (libusb_init(&usb_ctx)) {
|
|
msg_perr("Could not initialize libusb!\n");
|
|
return 1;
|
|
}
|
|
|
|
param_str = extract_programmer_param_str(cfg, "serial");
|
|
if (param_str)
|
|
msg_pdbg("Opening STLINK-V3 with serial: %s\n", param_str);
|
|
|
|
|
|
while (devs_stlinkv3_spi[devIndex].vendor_id != 0) {
|
|
stlinkv3_handle = usb_dev_get_by_vid_pid_serial(usb_ctx,
|
|
devs_stlinkv3_spi[devIndex].vendor_id,
|
|
devs_stlinkv3_spi[devIndex].device_id,
|
|
param_str);
|
|
if (stlinkv3_handle)
|
|
break;
|
|
devIndex++;
|
|
}
|
|
|
|
if (!stlinkv3_handle) {
|
|
if (param_str)
|
|
msg_perr("No STLINK-V3 seems to be connected with serial %s\n", param_str);
|
|
else
|
|
msg_perr("Could not find any connected STLINK-V3\n");
|
|
free(param_str);
|
|
goto init_err_exit;
|
|
}
|
|
free(param_str);
|
|
|
|
param_str = extract_programmer_param_str(cfg, "spispeed");
|
|
if (param_str) {
|
|
sck_freq_kHz = strtoul(param_str, &endptr, 0);
|
|
if (*endptr || sck_freq_kHz == 0) {
|
|
msg_perr("The spispeed parameter passed with invalid format: %s\n",
|
|
param_str);
|
|
msg_perr("Please pass the parameter "
|
|
"with a simple non-zero number in kHz\n");
|
|
free(param_str);
|
|
ret = -1;
|
|
goto init_err_exit;
|
|
}
|
|
free(param_str);
|
|
}
|
|
|
|
if (stlinkv3_spi_open(sck_freq_kHz, stlinkv3_handle))
|
|
goto init_err_exit;
|
|
|
|
stlinkv3_data = calloc(1, sizeof(*stlinkv3_data));
|
|
if (!stlinkv3_data) {
|
|
msg_perr("Unable to allocate space for SPI master data\n");
|
|
goto init_err_exit;
|
|
}
|
|
|
|
stlinkv3_data->usb_ctx = usb_ctx;
|
|
stlinkv3_data->handle = stlinkv3_handle;
|
|
|
|
return register_spi_master(&spi_programmer_stlinkv3, stlinkv3_data);
|
|
|
|
init_err_exit:
|
|
if (stlinkv3_handle)
|
|
libusb_close(stlinkv3_handle);
|
|
libusb_exit(usb_ctx);
|
|
return ret;
|
|
}
|
|
|
|
const struct programmer_entry programmer_stlinkv3_spi = {
|
|
.name = "stlinkv3_spi",
|
|
.type = USB,
|
|
.devs.dev = devs_stlinkv3_spi,
|
|
.init = stlinkv3_spi_init,
|
|
};
|