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A NULL func pointer is necessary and sufficient for the condition `NULL func pointer => true' as to not need this boilerplate as it implies default behaviour of a supported opcode within the `check_block_eraser()` match supported loop. Ran; ``` $ find . -name '*.[c,h]' -exec sed -i '/.probe_opcode = default_spi_probe_opcode,/d' '{}' \; ``` Change-Id: Id502c5d2596ad1db52faf05723083620e4c52c12 Signed-off-by: Edward O'Callaghan <quasisec@google.com> Reviewed-on: https://review.coreboot.org/c/flashrom/+/70264 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Thomas Heijligen <src@posteo.de> Reviewed-by: Anastasia Klimchuk <aklm@chromium.org>
319 lines
8.4 KiB
C
319 lines
8.4 KiB
C
/*
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* This file is part of the flashrom project.
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*
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* Copyright (C) 2021-2022 Jean THOMAS <virgule@jeanthomas.me>
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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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* Driver for the DirtyJTAG project.
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* See https://github.com/jeanthom/dirtyjtag for more info.
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*
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* SPI-JTAG Pin Mapping
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* |=========|==========|
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* | SPI pin | JTAG pin |
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* |=========|==========|
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* | #CS | TMS |
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* | #WP | SRST |
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* | #HOLD | TRST |
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* | MISO | TDO |
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* | MOSI | TDI |
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* | CLK | TCK |
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* |=========|==========|
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*/
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#include <assert.h>
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#include <stdlib.h>
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#include <string.h>
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#include <errno.h>
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#include <libusb.h>
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#include "programmer.h"
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struct dirtyjtag_spi_data {
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struct libusb_context *libusb_ctx;
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struct libusb_device_handle *libusb_handle;
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};
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static const struct dev_entry devs_dirtyjtag_spi[] = {
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{ 0x1209, 0xc0ca, OK, "DirtyJTAG", "JTAG probe" },
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{ 0 },
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};
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static const char dirtyjtag_write_endpoint = 0x01;
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static const char dirtyjtag_read_endpoint = 0x82;
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static const int dirtyjtag_timeout = 100 * 10; /* 100 ms */
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enum dirtyjtag_command_identifier {
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CMD_STOP = 0x00,
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CMD_INFO = 0x01,
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CMD_FREQ = 0x02,
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CMD_XFER = 0x03,
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CMD_SETSIG = 0x04,
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CMD_GETSIG = 0x05,
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CMD_CLK = 0x06
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};
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enum dirtyjtag_signal_identifier {
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SIG_TCK = 1 << 1,
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SIG_TDI = 1 << 2,
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SIG_TDO = 1 << 3,
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SIG_TMS = 1 << 4,
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SIG_TRST = 1 << 5,
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SIG_SRST = 1 << 6
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};
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static int dirtyjtag_send(struct dirtyjtag_spi_data *djtag_data, uint8_t *data, size_t len)
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{
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int transferred;
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int ret = libusb_bulk_transfer(djtag_data->libusb_handle,
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dirtyjtag_write_endpoint,
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data,
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len,
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&transferred,
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dirtyjtag_timeout);
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if (ret != 0) {
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msg_perr("%s: failed to send query command\n", __func__);
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return -1;
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}
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if (transferred != (int)len) {
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msg_perr("%s: failed to send whole packet\n", __func__);
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return -1;
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}
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return 0;
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}
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static int dirtyjtag_receive(struct dirtyjtag_spi_data *djtag_data, uint8_t *data, size_t buffer_len, int expected)
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{
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int transferred;
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int ret = libusb_bulk_transfer(djtag_data->libusb_handle,
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dirtyjtag_read_endpoint,
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data,
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buffer_len,
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&transferred,
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dirtyjtag_timeout);
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if (ret != 0) {
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msg_perr("%s: Failed to read SPI commands\n", __func__);
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return -1;
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}
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if (expected != -1 && transferred != expected) {
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msg_perr("%s: failed to meet expected\n", __func__);
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return -1;
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}
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return transferred;
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}
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static int dirtyjtag_spi_shutdown(void *data)
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{
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struct dirtyjtag_spi_data *djtag_data = (struct dirtyjtag_spi_data*)data;
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libusb_release_interface(djtag_data->libusb_handle, 0);
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libusb_attach_kernel_driver(djtag_data->libusb_handle, 0);
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libusb_close(djtag_data->libusb_handle);
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libusb_exit(djtag_data->libusb_ctx);
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free(data);
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return 0;
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}
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static int dirtyjtag_djtag1_spi_send_command(struct dirtyjtag_spi_data *context,
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unsigned int writecnt, unsigned int readcnt,
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const unsigned char *writearr, unsigned char *readarr)
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{
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const size_t max_xfer_size = 30; // max transfer size in DJTAG1
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size_t len = writecnt + readcnt;
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size_t num_xfer = (len + max_xfer_size - 1 ) / max_xfer_size; // ceil(len/max_xfer_size)
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uint8_t *rxtx_buffer = malloc(max_xfer_size * num_xfer);
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if (!rxtx_buffer) {
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msg_perr("%s: Failed rxtx_buffer allocation\n", __func__);
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return -1;
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}
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memcpy(rxtx_buffer, writearr, writecnt);
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for (size_t i = 0; i < num_xfer; i++) {
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const size_t xfer_offset = i * max_xfer_size;
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size_t txn_size = max_xfer_size;
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if (i == num_xfer-1 && len % max_xfer_size != 0)
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txn_size = len % max_xfer_size;
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uint8_t transfer_buffer[32] = {
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CMD_XFER,
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txn_size * 8
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};
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memcpy(transfer_buffer + 2, rxtx_buffer + xfer_offset, txn_size);
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if (dirtyjtag_send(context, transfer_buffer, sizeof(transfer_buffer)))
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goto cleanup_fail;
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if (dirtyjtag_receive(context, transfer_buffer, sizeof(transfer_buffer), 32) < 0)
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goto cleanup_fail;
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memcpy(rxtx_buffer + xfer_offset, transfer_buffer, txn_size);
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}
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memcpy(readarr, rxtx_buffer + writecnt, readcnt);
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free(rxtx_buffer);
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uint8_t tms_reset_buffer[] = {
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CMD_SETSIG,
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SIG_TMS,
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SIG_TMS,
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CMD_STOP,
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};
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dirtyjtag_send(context, tms_reset_buffer, sizeof(tms_reset_buffer));
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return 0;
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cleanup_fail:
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free(rxtx_buffer);
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return -1;
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}
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static int dirtyjtag_spi_spi_send_command(const struct flashctx *flash,
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unsigned int writecnt, unsigned int readcnt,
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const unsigned char *writearr, unsigned char *readarr)
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{
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struct dirtyjtag_spi_data *djtag_data = flash->mst->spi.data;
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return dirtyjtag_djtag1_spi_send_command(djtag_data, writecnt, readcnt, writearr, readarr);
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}
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static const struct spi_master spi_master_dirtyjtag_spi = {
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.features = SPI_MASTER_4BA,
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.max_data_read = MAX_DATA_READ_UNLIMITED,
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.max_data_write = MAX_DATA_WRITE_UNLIMITED,
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.command = dirtyjtag_spi_spi_send_command,
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.read = default_spi_read,
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.write_256 = default_spi_write_256,
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.write_aai = default_spi_write_aai,
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.shutdown = dirtyjtag_spi_shutdown,
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};
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static int dirtyjtag_spi_init(const struct programmer_cfg *cfg)
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{
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struct libusb_device_handle *handle = NULL;
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struct dirtyjtag_spi_data *djtag_data = NULL;
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djtag_data = calloc(1, sizeof(struct dirtyjtag_spi_data));
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if (djtag_data == NULL) {
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msg_perr("%s: failed to allocate internal driver data structure\n", __func__);
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return -1;
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}
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int ret = libusb_init(&djtag_data->libusb_ctx);
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if (ret < 0) {
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msg_perr("%s: couldn't initialize libusb!\n", __func__);
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goto cleanup_djtag_struct;
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}
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#if LIBUSB_API_VERSION < 0x01000106
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libusb_set_debug(djtag_data->libusb_ctx, 3);
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#else
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libusb_set_option(djtag_data->libusb_ctx, LIBUSB_OPTION_LOG_LEVEL, LIBUSB_LOG_LEVEL_INFO);
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#endif
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uint16_t vid = devs_dirtyjtag_spi[0].vendor_id;
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uint16_t pid = devs_dirtyjtag_spi[0].device_id;
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handle = libusb_open_device_with_vid_pid(djtag_data->libusb_ctx, vid, pid);
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if (handle == NULL) {
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msg_perr("%s: couldn't open device %04x:%04x.\n", __func__, vid, pid);
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goto cleanup_libusb_ctx;
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}
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ret = libusb_detach_kernel_driver(handle, 0);
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if (ret != 0 && ret != LIBUSB_ERROR_NOT_FOUND) {
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msg_pwarn("Cannot detach the existing USB driver. Claiming the interface may fail. %s\n",
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libusb_error_name(ret));
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}
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ret = libusb_claim_interface(handle, 0);
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if (ret != 0) {
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msg_perr("%s: failed to claim interface 0: '%s'\n", __func__, libusb_error_name(ret));
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goto cleanup_libusb_handle;
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}
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djtag_data->libusb_handle = handle;
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unsigned long int freq = 100;
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char *tmp = extract_programmer_param_str(cfg, "spispeed");
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if (tmp) {
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char *units = tmp;
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errno = 0;
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freq = strtoul(tmp, &units, 0);
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if (errno) {
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msg_perr("Invalid frequency \"%s\", %s\n", tmp, strerror(errno));
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free(tmp);
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goto cleanup_libusb_handle;
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}
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if (!strcasecmp(units, "hz")) {
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freq /= 1000;
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} else if (!strcasecmp(units, "khz")) {
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/* Do nothing, already in the right unit */
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} else if (!strcasecmp(units, "mhz")) {
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freq *= 1000;
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} else {
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msg_perr("Invalid unit: %s, use hz, khz or mhz\n", units);
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free(tmp);
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goto cleanup_libusb_handle;
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}
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if (freq > UINT16_MAX) {
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msg_perr("%s: Frequency set above DJTAG1 limits (%d kHz)", __func__, UINT16_MAX);
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free(tmp);
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goto cleanup_libusb_handle;
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}
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msg_pinfo("%s: programmer speed set to %lu kHz\n", __func__, freq);
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}
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free(tmp);
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uint8_t commands[] = {
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CMD_SETSIG, /* Set TDI/TCK to low, SRST/TRST/TMS to high */
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SIG_TDI | SIG_TMS | SIG_TCK | SIG_SRST | SIG_TRST,
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SIG_SRST | SIG_TRST | SIG_TMS,
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CMD_FREQ, /* Set frequency */
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(freq >> 8) & 0xff,
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freq & 0xff,
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CMD_STOP,
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};
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ret = dirtyjtag_send(djtag_data, commands, sizeof(commands));
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if (ret != 0) {
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msg_perr("%s: failed to configure DirtyJTAG into initialized state\n", __func__);
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goto cleanup_libusb_handle;
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}
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return register_spi_master(&spi_master_dirtyjtag_spi, (void*)djtag_data);
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cleanup_libusb_handle:
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libusb_attach_kernel_driver(handle, 0);
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libusb_close(handle);
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cleanup_libusb_ctx:
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libusb_exit(djtag_data->libusb_ctx);
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cleanup_djtag_struct:
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free(djtag_data);
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return -1;
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}
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const struct programmer_entry programmer_dirtyjtag_spi = {
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.name = "dirtyjtag_spi",
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.type = USB,
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.devs.dev = devs_dirtyjtag_spi,
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.init = dirtyjtag_spi_init,
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};
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