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Best efforts were made to upstream older Chromebook support for good intentions for folks interested. However, we no longer have the hardware available to test and maintain the code as the hardware is now end of life. Therefore the code state has sadly fallen into a unknown state. BUG=none BRANCH=none TEST=builds and ninja test passes Signed-off-by: Victor Ding <victording@google.com> Change-Id: I3f40db22c42c04ce029c4defd837e05ebb550c9b Reviewed-on: https://review.coreboot.org/c/flashrom/+/56475 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Nico Huber <nico.h@gmx.de>
296 lines
7.2 KiB
C
296 lines
7.2 KiB
C
/*
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* This file is part of the flashrom project.
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*
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* Copyright 2021 Google LLC
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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; version 2 of the License.
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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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#include <include/test.h>
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#include <string.h>
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#include "io_mock.h"
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#include "programmer.h"
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#define NOT_NULL ((void *)0xf000baaa)
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static void run_lifecycle(void **state, const struct programmer_entry *prog, const char *param)
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{
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(void) state; /* unused */
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char *param_dup = strdup(param);
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printf("Testing programmer_init for programmer=%s ...\n", prog->name);
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assert_int_equal(0, programmer_init(prog, param_dup));
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printf("... programmer_init for programmer=%s successful\n", prog->name);
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printf("Testing programmer_shutdown for programmer=%s ...\n", prog->name);
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assert_int_equal(0, programmer_shutdown());
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printf("... programmer_shutdown for programmer=%s successful\n", prog->name);
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free(param_dup);
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}
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void dummy_init_and_shutdown_test_success(void **state)
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{
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#if CONFIG_DUMMY == 1
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run_lifecycle(state, &programmer_dummy, "bus=parallel+lpc+fwh+spi");
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#else
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skip();
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#endif
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}
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struct mec1308_io_state {
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unsigned char outb_val;
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};
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void mec1308_outb(void *state, unsigned char value, unsigned short port)
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{
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struct mec1308_io_state *io_state = state;
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io_state->outb_val = value;
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}
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unsigned char mec1308_inb(void *state, unsigned short port)
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{
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struct mec1308_io_state *io_state = state;
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return ((port == 0x2e /* MEC1308_SIO_PORT1 */
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|| port == 0x4e /* MEC1308_SIO_PORT2 */)
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? 0x20 /* MEC1308_DEVICE_ID_REG */
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: ((io_state->outb_val == 0x84 /* MEC1308_MBX_DATA_START */)
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? 0xaa /* MEC1308_CMD_PASSTHRU_SUCCESS */
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: 0));
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}
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void mec1308_init_and_shutdown_test_success(void **state)
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{
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#if CONFIG_MEC1308 == 1
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struct mec1308_io_state mec1308_io_state = { 0 };
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const struct io_mock mec1308_io = {
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.state = &mec1308_io_state,
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.outb = mec1308_outb,
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.inb = mec1308_inb,
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};
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io_mock_register(&mec1308_io);
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will_return_always(__wrap_sio_read, 0x4d); /* MEC1308_DEVICE_ID_VAL */
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run_lifecycle(state, &programmer_mec1308, "");
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io_mock_register(NULL);
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#else
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skip();
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#endif
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}
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void nicrealtek_init_and_shutdown_test_success(void **state)
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{
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#if CONFIG_NICREALTEK == 1
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run_lifecycle(state, &programmer_nicrealtek, "");
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#else
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skip();
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#endif
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}
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int dediprog_libusb_control_transfer(void *state,
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libusb_device_handle *devh,
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uint8_t bmRequestType,
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uint8_t bRequest,
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uint16_t wValue,
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uint16_t wIndex,
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unsigned char *data,
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uint16_t wLength,
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unsigned int timeout)
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{
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if (bRequest == 0x08 /* dediprog_cmds CMD_READ_PROG_INFO */) {
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/* Provide dediprog Device String into data buffer */
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memcpy(data, "SF600 V:7.2.2 ", wLength);
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}
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return wLength;
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}
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void dediprog_init_and_shutdown_test_success(void **state)
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{
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#if CONFIG_DEDIPROG == 1
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const struct io_mock dediprog_io = {
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.libusb_control_transfer = dediprog_libusb_control_transfer,
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};
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io_mock_register(&dediprog_io);
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run_lifecycle(state, &programmer_dediprog, "voltage=3.5V");
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io_mock_register(NULL);
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#else
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skip();
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#endif
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}
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struct linux_mtd_io_state {
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char *fopen_path;
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};
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FILE *linux_mtd_fopen(void *state, const char *pathname, const char *mode)
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{
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struct linux_mtd_io_state *io_state = state;
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io_state->fopen_path = strdup(pathname);
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return NOT_NULL;
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}
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size_t linux_mtd_fread(void *state, void *buf, size_t size, size_t len, FILE *fp)
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{
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struct linux_mtd_fread_mock_entry {
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const char *path;
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const char *data;
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};
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const struct linux_mtd_fread_mock_entry fread_mock_map[] = {
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{ "/sys/class/mtd/mtd0//type", "nor" },
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{ "/sys/class/mtd/mtd0//name", "Device" },
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{ "/sys/class/mtd/mtd0//flags", "" },
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{ "/sys/class/mtd/mtd0//size", "1024" },
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{ "/sys/class/mtd/mtd0//erasesize", "512" },
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{ "/sys/class/mtd/mtd0//numeraseregions", "0" },
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};
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struct linux_mtd_io_state *io_state = state;
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unsigned int i;
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if (!io_state->fopen_path)
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return 0;
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for (i = 0; i < ARRAY_SIZE(fread_mock_map); i++) {
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const struct linux_mtd_fread_mock_entry *entry = &fread_mock_map[i];
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if (!strcmp(io_state->fopen_path, entry->path)) {
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size_t data_len = min(size * len, strlen(entry->data));
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memcpy(buf, entry->data, data_len);
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return data_len;
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}
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}
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return 0;
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}
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int linux_mtd_fclose(void *state, FILE *fp)
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{
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struct linux_mtd_io_state *io_state = state;
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free(io_state->fopen_path);
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return 0;
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}
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void linux_mtd_init_and_shutdown_test_success(void **state)
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{
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#if CONFIG_LINUX_MTD == 1
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struct linux_mtd_io_state linux_mtd_io_state = { NULL };
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const struct io_mock linux_mtd_io = {
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.state = &linux_mtd_io_state,
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.fopen = linux_mtd_fopen,
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.fread = linux_mtd_fread,
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.fclose = linux_mtd_fclose,
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};
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io_mock_register(&linux_mtd_io);
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run_lifecycle(state, &programmer_linux_mtd, "");
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io_mock_register(NULL);
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#else
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skip();
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#endif
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}
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char *linux_spi_fgets(void *state, char *buf, int len, FILE *fp)
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{
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/* Emulate reading max buffer size from sysfs. */
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const char *max_buf_size = "1048576";
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return memcpy(buf, max_buf_size, min(len, strlen(max_buf_size) + 1));
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}
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void linux_spi_init_and_shutdown_test_success(void **state)
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{
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/*
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* Current implementation tests a particular path of the init procedure.
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* Specifically, it is reading the buffer size from sysfs.
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*/
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#if CONFIG_LINUX_SPI == 1
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const struct io_mock linux_spi_io = {
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.fgets = linux_spi_fgets,
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};
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io_mock_register(&linux_spi_io);
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run_lifecycle(state, &programmer_linux_spi, "dev=/dev/null");
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io_mock_register(NULL);
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#else
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skip();
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#endif
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}
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#define REALTEK_MST_MOCK_FD 0x10ec
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static int realtek_mst_open(void *state, const char *pathname, int flags)
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{
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assert_string_equal(pathname, "/dev/i2c-254");
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assert_int_equal(flags & O_RDWR, O_RDWR);
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return REALTEK_MST_MOCK_FD;
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}
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static int realtek_mst_ioctl(void *state, int fd, unsigned long request, va_list args)
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{
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assert_int_equal(fd, REALTEK_MST_MOCK_FD);
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assert_int_equal(request, I2C_SLAVE);
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/* Only access to I2C address 0x4a is expected */
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unsigned long addr = va_arg(args, unsigned long);
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assert_int_equal(addr, 0x4a);
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return 0;
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}
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static int realtek_mst_read(void *state, int fd, void *buf, size_t sz)
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{
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assert_int_equal(fd, REALTEK_MST_MOCK_FD);
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assert_int_equal(sz, 1);
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return sz;
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}
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static int realtek_mst_write(void *state, int fd, const void *buf, size_t sz)
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{
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assert_int_equal(fd, REALTEK_MST_MOCK_FD);
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const LargestIntegralType accepted_sizes[] = {1, 2};
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assert_in_set(sz, accepted_sizes, ARRAY_SIZE(accepted_sizes));
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return sz;
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}
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void realtek_mst_init_and_shutdown_test_success(void **state)
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{
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#if CONFIG_REALTEK_MST_I2C_SPI == 1
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const struct io_mock realtek_mst_io = {
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.open = realtek_mst_open,
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.ioctl = realtek_mst_ioctl,
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.read = realtek_mst_read,
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.write = realtek_mst_write,
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};
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io_mock_register(&realtek_mst_io);
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run_lifecycle(state, &programmer_realtek_mst_i2c_spi, "bus=254,enter-isp=0");
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io_mock_register(NULL);
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#else
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skip();
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#endif /* CONFIG_REALTEK_I2C_SPI */
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}
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