blob: cc248e864e0cee73251f3e70f580f0691b8ffd8a [file] [log] [blame]
Anton Staafb2647882014-09-17 15:13:43 -07001/*
2 * This file is part of the flashrom project.
3 *
4 * Copyright 2014, Google Inc.
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions are
9 * met:
10 *
11 * * Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * * Redistributions in binary form must reproduce the above
14 * copyright notice, this list of conditions and the following disclaimer
15 * in the documentation and/or other materials provided with the
16 * distribution.
17 * * Neither the name of Google Inc. nor the names of its
18 * contributors may be used to endorse or promote products derived from
19 * this software without specific prior written permission.
20 *
21 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
22 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
23 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
24 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
25 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
26 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
27 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
31 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32 *
33 * Alternatively, this software may be distributed under the terms of the
34 * GNU General Public License ("GPL") version 2 as published by the Free
35 * Software Foundation.
36 */
37
38/*
39 * This SPI flash programming interface is designed to talk to a Chromium OS
40 * device over a Raiden USB connection. The USB connection is routed to a
41 * microcontroller running an image compiled from:
42 *
43 * https://chromium.googlesource.com/chromiumos/platform/ec
44 *
45 * The protocol for the USB-SPI bridge is documented in the following file in
46 * that respository:
47 *
48 * chip/stm32/usb_spi.c
Brian J. Nemecda496dc2020-02-04 11:13:05 -080049 *
50 * Version 1:
51 * SPI transactions of up to 62B in each direction with every command having
52 * a response. The initial packet from host contains a 2B header indicating
53 * write and read counts with an optional payload length equal to the write
54 * count. The device will respond with a message that reports the 2B status
55 * code and an optional payload response length equal to read count.
56 *
57 * Message Format:
58 *
59 * Command Packet:
60 * +------------------+-----------------+------------------------+
61 * | write count : 1B | read count : 1B | write payload : <= 62B |
62 * +------------------+-----------------+------------------------+
63 *
64 * write count: 1 byte, zero based count of bytes to write
65 *
66 * read count: 1 byte, zero based count of bytes to read
67 *
68 * write payload: Up to 62 bytes of data to write to SPI, the total
69 * length of all TX packets must match write count.
70 * Due to data alignment constraints, this must be an
71 * even number of bytes unless this is the final packet.
72 *
73 * Response Packet:
74 * +-------------+-----------------------+
75 * | status : 2B | read payload : <= 62B |
76 * +-------------+-----------------------+
77 *
78 * status: 2 byte status
79 * 0x0000: Success
80 * 0x0001: SPI timeout
81 * 0x0002: Busy, try again
82 * This can happen if someone else has acquired the shared memory
83 * buffer that the SPI driver uses as /dev/null
84 * 0x0003: Write count invalid (V1 > 62B)
85 * 0x0004: Read count invalid (V1 > 62B)
86 * 0x0005: The SPI bridge is disabled.
87 * 0x8000: Unknown error mask
88 * The bottom 15 bits will contain the bottom 15 bits from the EC
89 * error code.
90 *
91 * read payload: Up to 62 bytes of data read from SPI, the total
92 * length of all RX packets must match read count
93 * unless an error status was returned. Due to data
94 * alignment constraints, this must be a even number
95 * of bytes unless this is the final packet.
Brian J. Nemeccea6bec2020-02-25 14:12:46 -080096 *
97 * USB Error Codes:
98 *
99 * send_command return codes have the following format:
100 *
101 * 0x00000: Status code success.
102 * 0x00001-0x0FFFF: Error code returned by the USB SPI device.
103 * 0x10001-0x1FFFF: The host has determined an error has occurred.
104 * 0x20001-0x20063 Lower bits store the positive value representation
105 * of the libusb_error enum. See the libusb documentation:
106 * http://libusb.sourceforge.net/api-1.0/group__misc.html
Anton Staafb2647882014-09-17 15:13:43 -0700107 */
108
Anton Staafb2647882014-09-17 15:13:43 -0700109#include "programmer.h"
110#include "spi.h"
Anton Staaf5614e252015-03-24 14:33:33 -0700111#include "usb_device.h"
Anton Staafb2647882014-09-17 15:13:43 -0700112
113#include <libusb.h>
Anton Staaf5614e252015-03-24 14:33:33 -0700114#include <stdio.h>
Anton Staafb2647882014-09-17 15:13:43 -0700115#include <stdlib.h>
Anton Staaf5614e252015-03-24 14:33:33 -0700116#include <string.h>
Keith Short8453b552020-02-03 18:10:14 -0700117#include <unistd.h>
Anton Staafb2647882014-09-17 15:13:43 -0700118
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800119#define GOOGLE_VID (0x18D1)
120#define GOOGLE_RAIDEN_SPI_SUBCLASS (0x51)
121#define GOOGLE_RAIDEN_SPI_PROTOCOL (0x01)
Anton Staafb2647882014-09-17 15:13:43 -0700122
Brian J. Nemeccea6bec2020-02-25 14:12:46 -0800123enum usb_spi_error {
124 USB_SPI_SUCCESS = 0x0000,
125 USB_SPI_TIMEOUT = 0x0001,
126 USB_SPI_BUSY = 0x0002,
127 USB_SPI_WRITE_COUNT_INVALID = 0x0003,
128 USB_SPI_READ_COUNT_INVALID = 0x0004,
129 USB_SPI_DISABLED = 0x0005,
130 USB_SPI_UNKNOWN_ERROR = 0x8000,
131};
132
Anton Staaf4589cd12015-03-23 13:36:44 -0700133enum raiden_debug_spi_request {
Mary Ruthveneafafd82016-05-03 14:33:53 -0700134 RAIDEN_DEBUG_SPI_REQ_ENABLE = 0x0000,
135 RAIDEN_DEBUG_SPI_REQ_DISABLE = 0x0001,
136 RAIDEN_DEBUG_SPI_REQ_ENABLE_AP = 0x0002,
137 RAIDEN_DEBUG_SPI_REQ_ENABLE_EC = 0x0003,
Anton Staaf4589cd12015-03-23 13:36:44 -0700138};
139
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800140#define PACKET_HEADER_SIZE (2)
141#define MAX_PACKET_SIZE (64)
142#define PAYLOAD_SIZE (MAX_PACKET_SIZE - PACKET_HEADER_SIZE)
Anton Staafb2647882014-09-17 15:13:43 -0700143
Brian J. Nemeccea6bec2020-02-25 14:12:46 -0800144/*
145 * Servo Micro has an error where it is capable of acknowledging USB packets
146 * without loading it into the USB endpoint buffers or triggering interrupts.
147 * See crbug.com/952494. Retry mechanisms have been implemented to recover
148 * from these rare failures allowing the process to continue.
149 */
Brian J. Nemec1118a582020-02-04 18:26:02 -0800150#define WRITE_RETY_ATTEMPTS (3)
151#define READ_RETY_ATTEMPTS (3)
152#define RETY_INTERVAL_US (100 * 1000)
153
Anton Staafb2647882014-09-17 15:13:43 -0700154/*
155 * This timeout is so large because the Raiden SPI timeout is 800ms.
156 */
Edward O'Callaghanf1e6ef52020-03-03 13:57:15 +1100157#define TRANSFER_TIMEOUT_MS (200 + 800)
Anton Staafb2647882014-09-17 15:13:43 -0700158
Anton Staaf5614e252015-03-24 14:33:33 -0700159struct usb_device *device = NULL;
160uint8_t in_endpoint = 0;
161uint8_t out_endpoint = 0;
Anton Staafb2647882014-09-17 15:13:43 -0700162
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800163typedef struct {
164 int8_t write_count;
165 /* -1 Indicates readback all on halfduplex compliant devices. */
166 int8_t read_count;
167 uint8_t data[PAYLOAD_SIZE];
168} __attribute__((packed)) usb_spi_command_t;
Anton Staafb2647882014-09-17 15:13:43 -0700169
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800170typedef struct {
171 uint16_t status_code;
172 uint8_t data[PAYLOAD_SIZE];
173} __attribute__((packed)) usb_spi_response_t;
174
Brian J. Nemeccea6bec2020-02-25 14:12:46 -0800175/*
176 * This function will return true when an error code can potentially recover
177 * if we attempt to write SPI data to the device or read from it. We know
178 * that some conditions are not recoverable in the current state so allows us
179 * to bypass the retry logic and terminate early.
180 */
181static bool retry_recovery(int error_code)
182{
183 if (error_code < 0x10000) {
Brian J. Nemec1a61f722020-05-04 20:58:06 -0700184 /*
185 * Handle error codes returned from the device. USB_SPI_TIMEOUT,
186 * USB_SPI_BUSY, and USB_SPI_WRITE_COUNT_INVALID have been observed
187 * during transfer errors to the device and can be recovered.
188 */
189 if (USB_SPI_READ_COUNT_INVALID <= error_code &&
190 error_code <= USB_SPI_DISABLED) {
Brian J. Nemeccea6bec2020-02-25 14:12:46 -0800191 return false;
192 }
193 } else if (usb_device_is_libusb_error(error_code)) {
194 /* Handle error codes returned from libusb. */
195 if (error_code == LIBUSB_ERROR(LIBUSB_ERROR_NO_DEVICE)) {
196 return false;
197 }
198 }
199 return true;
200}
201
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800202static int write_command(const struct flashctx *flash,
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700203 unsigned int write_count,
204 unsigned int read_count,
205 const unsigned char *write_buffer,
206 unsigned char *read_buffer)
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800207{
208
209 int transferred;
210 int ret;
211 usb_spi_command_t command_packet;
212
213 if (write_count > PAYLOAD_SIZE) {
Edward O'Callaghan8eb829a2020-03-03 13:55:08 +1100214 msg_perr("Raiden: Invalid write_count of %d\n", write_count);
Anton Staafb2647882014-09-17 15:13:43 -0700215 return SPI_INVALID_LENGTH;
216 }
217
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800218 if (read_count > PAYLOAD_SIZE) {
Edward O'Callaghan8eb829a2020-03-03 13:55:08 +1100219 msg_perr("Raiden: Invalid read_count of %d\n", read_count);
Anton Staafb2647882014-09-17 15:13:43 -0700220 return SPI_INVALID_LENGTH;
221 }
222
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800223 command_packet.write_count = write_count;
224 command_packet.read_count = read_count;
Anton Staafb2647882014-09-17 15:13:43 -0700225
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800226 memcpy(command_packet.data, write_buffer, write_count);
Anton Staafb2647882014-09-17 15:13:43 -0700227
Edward O'Callaghan5c81bf32020-01-29 14:26:55 +1100228 ret = LIBUSB(libusb_bulk_transfer(device->handle,
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700229 out_endpoint,
230 (void*)&command_packet,
231 write_count + PACKET_HEADER_SIZE,
232 &transferred,
233 TRANSFER_TIMEOUT_MS));
Edward O'Callaghan5c81bf32020-01-29 14:26:55 +1100234 if (ret != 0) {
235 msg_perr("Raiden: OUT transfer failed\n"
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800236 " write_count = %d\n"
237 " read_count = %d\n",
238 write_count, read_count);
Edward O'Callaghan5c81bf32020-01-29 14:26:55 +1100239 return ret;
240 }
Anton Staafb2647882014-09-17 15:13:43 -0700241
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700242 if ((unsigned) transferred != write_count + PACKET_HEADER_SIZE) {
Anton Staafb2647882014-09-17 15:13:43 -0700243 msg_perr("Raiden: Write failure (wrote %d, expected %d)\n",
244 transferred, write_count + PACKET_HEADER_SIZE);
245 return 0x10001;
246 }
247
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800248 return 0;
249}
250
251static int read_response(const struct flashctx *flash,
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700252 unsigned int write_count,
253 unsigned int read_count,
254 const unsigned char *write_buffer,
255 unsigned char *read_buffer)
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800256{
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800257 int transferred;
258 int ret;
259 usb_spi_response_t response_packet;
260
Edward O'Callaghan5c81bf32020-01-29 14:26:55 +1100261 ret = LIBUSB(libusb_bulk_transfer(device->handle,
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700262 in_endpoint,
263 (void*)&response_packet,
264 read_count + PACKET_HEADER_SIZE,
265 &transferred,
266 TRANSFER_TIMEOUT_MS));
Edward O'Callaghan5c81bf32020-01-29 14:26:55 +1100267 if (ret != 0) {
268 msg_perr("Raiden: IN transfer failed\n"
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800269 " write_count = %d\n"
270 " read_count = %d\n",
271 write_count, read_count);
Edward O'Callaghan5c81bf32020-01-29 14:26:55 +1100272 return ret;
273 }
Anton Staafb2647882014-09-17 15:13:43 -0700274
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700275 if ((unsigned) transferred != read_count + PACKET_HEADER_SIZE) {
Anton Staafb2647882014-09-17 15:13:43 -0700276 msg_perr("Raiden: Read failure (read %d, expected %d)\n",
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700277 transferred, read_count + PACKET_HEADER_SIZE);
Anton Staafb2647882014-09-17 15:13:43 -0700278 return 0x10002;
279 }
280
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800281 memcpy(read_buffer, response_packet.data, read_count);
Anton Staafb2647882014-09-17 15:13:43 -0700282
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800283 return response_packet.status_code;
284}
285
286static int send_command(const struct flashctx *flash,
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700287 unsigned int write_count,
288 unsigned int read_count,
289 const unsigned char *write_buffer,
290 unsigned char *read_buffer)
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800291{
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800292 int status = -1;
293
Brian J. Nemec1118a582020-02-04 18:26:02 -0800294 for (int write_attempt = 0; write_attempt < WRITE_RETY_ATTEMPTS;
295 write_attempt++) {
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800296
Brian J. Nemec1118a582020-02-04 18:26:02 -0800297 status = write_command(flash, write_count, read_count,
298 write_buffer, read_buffer);
299
300 if (status) {
301 /* Write operation failed. */
302 msg_perr("Raiden: Write command failed\n"
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700303 "Write attempt = %d\n"
304 "status = %d\n",
305 write_attempt + 1, status);
Brian J. Nemeccea6bec2020-02-25 14:12:46 -0800306 if (!retry_recovery(status)) {
307 /* Reattempting will not result in a recovery. */
308 return status;
309 }
Brian J. Nemec1118a582020-02-04 18:26:02 -0800310 programmer_delay(RETY_INTERVAL_US);
311 continue;
312 }
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700313 for (int read_attempt = 0; read_attempt < READ_RETY_ATTEMPTS; read_attempt++) {
Brian J. Nemec1118a582020-02-04 18:26:02 -0800314
315 status = read_response(flash, write_count, read_count,
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700316 write_buffer, read_buffer);
Brian J. Nemec1118a582020-02-04 18:26:02 -0800317
318 if (status != 0) {
319 /* Read operation failed. */
320 msg_perr("Raiden: Read response failed\n"
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700321 "Write attempt = %d\n"
322 "Read attempt = %d\n"
323 "status = %d\n",
324 write_attempt + 1, read_attempt + 1, status);
Brian J. Nemeccea6bec2020-02-25 14:12:46 -0800325 if (!retry_recovery(status)) {
326 /* Reattempting will not result in a recovery. */
327 return status;
328 }
Brian J. Nemec1118a582020-02-04 18:26:02 -0800329 programmer_delay(RETY_INTERVAL_US);
330 } else {
331 /* We were successful at performing the SPI transfer. */
332 return status;
333 }
334 }
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800335 }
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800336 return status;
Anton Staafb2647882014-09-17 15:13:43 -0700337}
338
339/*
340 * Unfortunately there doesn't seem to be a way to specify the maximum number
341 * of bytes that your SPI device can read/write, these values are the maximum
Duncan Laurie537fd1d2018-10-05 10:53:20 -0700342 * data chunk size that flashrom will package up with an additional five bytes
Anton Staafb2647882014-09-17 15:13:43 -0700343 * of command for the flash device, resulting in a 62 byte packet, that we then
344 * add two bytes to in either direction, making our way up to the 64 byte
345 * maximum USB packet size for the device.
346 *
347 * The largest command that flashrom generates is the byte program command, so
Duncan Laurie537fd1d2018-10-05 10:53:20 -0700348 * we use that command header maximum size here.
Anton Staafb2647882014-09-17 15:13:43 -0700349 */
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800350#define MAX_DATA_SIZE (PAYLOAD_SIZE - JEDEC_BYTE_PROGRAM_OUTSIZE)
Anton Staafb2647882014-09-17 15:13:43 -0700351
Patrick Georgif4f1e2f2017-03-10 17:38:40 +0100352static const struct spi_master spi_master_raiden_debug = {
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700353 .features = SPI_MASTER_4BA,
354 .max_data_read = MAX_DATA_SIZE,
355 .max_data_write = MAX_DATA_SIZE,
356 .command = send_command,
357 .multicommand = default_spi_send_multicommand,
358 .read = default_spi_read,
359 .write_256 = default_spi_write_256,
Anton Staafb2647882014-09-17 15:13:43 -0700360};
361
Anton Staaf5614e252015-03-24 14:33:33 -0700362static int match_endpoint(struct libusb_endpoint_descriptor const *descriptor,
Brian J. Nemecda496dc2020-02-04 11:13:05 -0800363 enum libusb_endpoint_direction direction)
Anton Staafd27536d2014-09-30 08:10:17 -0700364{
Anton Staaf5614e252015-03-24 14:33:33 -0700365 return (((descriptor->bEndpointAddress & LIBUSB_ENDPOINT_DIR_MASK) ==
366 direction) &&
367 ((descriptor->bmAttributes & LIBUSB_TRANSFER_TYPE_MASK) ==
368 LIBUSB_TRANSFER_TYPE_BULK));
369}
Anton Staafd27536d2014-09-30 08:10:17 -0700370
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700371static int find_endpoints(struct usb_device *dev, uint8_t *in_ep, uint8_t *out_ep)
Anton Staaf5614e252015-03-24 14:33:33 -0700372{
373 int i;
374 int in_count = 0;
375 int out_count = 0;
Anton Staafd27536d2014-09-30 08:10:17 -0700376
Edward O'Callaghandabf7e82019-11-19 15:11:18 +1100377 for (i = 0; i < dev->interface_descriptor->bNumEndpoints; i++) {
Anton Staaf5614e252015-03-24 14:33:33 -0700378 struct libusb_endpoint_descriptor const *endpoint =
Edward O'Callaghandabf7e82019-11-19 15:11:18 +1100379 &dev->interface_descriptor->endpoint[i];
Anton Staafd27536d2014-09-30 08:10:17 -0700380
Anton Staaf5614e252015-03-24 14:33:33 -0700381 if (match_endpoint(endpoint, LIBUSB_ENDPOINT_IN)) {
382 in_count++;
Edward O'Callaghandabf7e82019-11-19 15:11:18 +1100383 *in_ep = endpoint->bEndpointAddress;
Anton Staaf5614e252015-03-24 14:33:33 -0700384 } else if (match_endpoint(endpoint, LIBUSB_ENDPOINT_OUT)) {
385 out_count++;
Edward O'Callaghandabf7e82019-11-19 15:11:18 +1100386 *out_ep = endpoint->bEndpointAddress;
Anton Staaf5614e252015-03-24 14:33:33 -0700387 }
388 }
389
390 if (in_count != 1 || out_count != 1) {
391 msg_perr("Raiden: Failed to find one IN and one OUT endpoint\n"
392 " found %d IN and %d OUT endpoints\n",
393 in_count,
394 out_count);
395 return 1;
396 }
397
Edward O'Callaghandabf7e82019-11-19 15:11:18 +1100398 msg_pdbg("Raiden: Found IN endpoint = 0x%02x\n", *in_ep);
399 msg_pdbg("Raiden: Found OUT endpoint = 0x%02x\n", *out_ep);
Anton Staaf5614e252015-03-24 14:33:33 -0700400
401 return 0;
Anton Staafd27536d2014-09-30 08:10:17 -0700402}
403
David Hendricks93784b42016-08-09 17:00:38 -0700404static int shutdown(void * data)
Anton Staaf4589cd12015-03-23 13:36:44 -0700405{
Edward O'Callaghan5c81bf32020-01-29 14:26:55 +1100406 int ret = LIBUSB(libusb_control_transfer(
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700407 device->handle,
408 LIBUSB_ENDPOINT_OUT |
409 LIBUSB_REQUEST_TYPE_VENDOR |
410 LIBUSB_RECIPIENT_INTERFACE,
411 RAIDEN_DEBUG_SPI_REQ_DISABLE,
412 0,
413 device->interface_descriptor->bInterfaceNumber,
414 NULL,
415 0,
416 TRANSFER_TIMEOUT_MS));
Edward O'Callaghan5c81bf32020-01-29 14:26:55 +1100417 if (ret != 0) {
418 msg_perr("Raiden: Failed to disable SPI bridge\n");
419 return ret;
420 }
Anton Staaf4589cd12015-03-23 13:36:44 -0700421
Anton Staaf5614e252015-03-24 14:33:33 -0700422 usb_device_free(device);
423
424 device = NULL;
Anton Staaf4589cd12015-03-23 13:36:44 -0700425 libusb_exit(NULL);
426
427 return 0;
428}
429
Edward O'Callaghandda1e542020-02-03 12:45:01 +1100430static int get_target(void)
Anton Staafb2647882014-09-17 15:13:43 -0700431{
Mary Ruthveneafafd82016-05-03 14:33:53 -0700432 int request_enable = RAIDEN_DEBUG_SPI_REQ_ENABLE;
Mary Ruthveneafafd82016-05-03 14:33:53 -0700433
Edward O'Callaghan8d2f6482019-11-19 15:42:44 +1100434 char *target_str = extract_programmer_param("target");
Mary Ruthveneafafd82016-05-03 14:33:53 -0700435 if (target_str) {
436 if (!strcasecmp(target_str, "ap"))
437 request_enable = RAIDEN_DEBUG_SPI_REQ_ENABLE_AP;
438 else if (!strcasecmp(target_str, "ec"))
439 request_enable = RAIDEN_DEBUG_SPI_REQ_ENABLE_EC;
440 else {
441 msg_perr("Invalid target: %s\n", target_str);
Edward O'Callaghan8d2f6482019-11-19 15:42:44 +1100442 request_enable = -1;
Mary Ruthveneafafd82016-05-03 14:33:53 -0700443 }
444 }
David Hendricks98b3c572016-11-30 01:50:08 +0000445 free(target_str);
Anton Staafd27536d2014-09-30 08:10:17 -0700446
Edward O'Callaghan8d2f6482019-11-19 15:42:44 +1100447 return request_enable;
448}
449
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700450static void free_dev_list(struct usb_device **dev_lst)
451{
452 struct usb_device *dev = *dev_lst;
453 /* free devices we don't care about */
454 dev = dev->next;
455 while (dev)
456 dev = usb_device_free(dev);
457}
458
Edward O'Callaghan8d2f6482019-11-19 15:42:44 +1100459int raiden_debug_spi_init(void)
460{
461 struct usb_match match;
462 char *serial = extract_programmer_param("serial");
463 struct usb_device *current;
464 int found = 0;
Edward O'Callaghan5c81bf32020-01-29 14:26:55 +1100465 int ret;
Edward O'Callaghan8d2f6482019-11-19 15:42:44 +1100466
467 int request_enable = get_target();
468 if (request_enable < 0)
469 return 1;
470
Anton Staaf5614e252015-03-24 14:33:33 -0700471 usb_match_init(&match);
Anton Staafb2647882014-09-17 15:13:43 -0700472
Anton Staaf5614e252015-03-24 14:33:33 -0700473 usb_match_value_default(&match.vid, GOOGLE_VID);
474 usb_match_value_default(&match.class, LIBUSB_CLASS_VENDOR_SPEC);
475 usb_match_value_default(&match.subclass, GOOGLE_RAIDEN_SPI_SUBCLASS);
476 usb_match_value_default(&match.protocol, GOOGLE_RAIDEN_SPI_PROTOCOL);
Anton Staafb2647882014-09-17 15:13:43 -0700477
Edward O'Callaghan5c81bf32020-01-29 14:26:55 +1100478 ret = LIBUSB(libusb_init(NULL));
479 if (ret != 0) {
480 msg_perr("Raiden: libusb_init failed\n");
481 return ret;
482 }
Anton Staaf5614e252015-03-24 14:33:33 -0700483
Edward O'Callaghan5c81bf32020-01-29 14:26:55 +1100484 ret = usb_device_find(&match, &current);
485 if (ret != 0) {
486 msg_perr("Raiden: Failed to find devices\n");
487 return ret;
488 }
Anton Staaf5614e252015-03-24 14:33:33 -0700489
David Hendricks5c79a492016-06-14 20:56:36 -0700490 while (current) {
491 device = current;
Anton Staaf5614e252015-03-24 14:33:33 -0700492
Edward O'Callaghandabf7e82019-11-19 15:11:18 +1100493 if (find_endpoints(device, &in_endpoint, &out_endpoint)) {
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700494 msg_pdbg("Raiden: Failed to find valid endpoints on device");
495 usb_device_show(" ", current);
496 goto loop_end;
David Hendricks5c79a492016-06-14 20:56:36 -0700497 }
Anton Staaf5614e252015-03-24 14:33:33 -0700498
David Hendricks5c79a492016-06-14 20:56:36 -0700499 if (usb_device_claim(device)) {
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700500 msg_pdbg("Raiden: Failed to claim USB device");
501 usb_device_show(" ", current);
502 goto loop_end;
David Hendricks5c79a492016-06-14 20:56:36 -0700503 }
Anton Staaf5614e252015-03-24 14:33:33 -0700504
David Hendricks5c79a492016-06-14 20:56:36 -0700505 if (!serial) {
506 found = 1;
507 goto loop_end;
508 } else {
509 unsigned char dev_serial[32];
510 struct libusb_device_descriptor descriptor;
511 int rc;
Anton Staaf5614e252015-03-24 14:33:33 -0700512
David Hendricks5c79a492016-06-14 20:56:36 -0700513 memset(dev_serial, 0, sizeof(dev_serial));
514
515 if (libusb_get_device_descriptor(device->device, &descriptor)) {
516 msg_pdbg("USB: Failed to get device descriptor.\n");
517 goto loop_end;
518 }
519
520 rc = libusb_get_string_descriptor_ascii(device->handle,
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700521 descriptor.iSerialNumber,
522 dev_serial,
523 sizeof(dev_serial));
David Hendricks5c79a492016-06-14 20:56:36 -0700524 if (rc < 0) {
525 LIBUSB(rc);
526 } else {
527 if (strcmp(serial, (char *)dev_serial)) {
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700528 msg_pdbg("Raiden: Serial number %s did not match device", serial);
David Hendricks5c79a492016-06-14 20:56:36 -0700529 usb_device_show(" ", current);
530 } else {
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700531 msg_pinfo("Raiden: Serial number %s matched device", serial);
David Hendricks5c79a492016-06-14 20:56:36 -0700532 usb_device_show(" ", current);
533 found = 1;
534 }
535 }
536 }
537
538loop_end:
539 if (found)
540 break;
541 else
542 current = usb_device_free(current);
543 }
544
545 if (!device || !found) {
546 msg_perr("Raiden: No usable device found.\n");
David Hendricks98b3c572016-11-30 01:50:08 +0000547 return 1;
Anton Staafb2647882014-09-17 15:13:43 -0700548 }
549
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700550 free_dev_list(&current);
Anton Staafb4661ee2014-10-21 11:24:36 -0700551
Edward O'Callaghan5c81bf32020-01-29 14:26:55 +1100552 ret = LIBUSB(libusb_control_transfer(
Brian J. Nemecec15cc42020-07-22 02:30:55 -0700553 device->handle,
554 LIBUSB_ENDPOINT_OUT |
555 LIBUSB_REQUEST_TYPE_VENDOR |
556 LIBUSB_RECIPIENT_INTERFACE,
557 request_enable,
558 0,
559 device->interface_descriptor->bInterfaceNumber,
560 NULL,
561 0,
562 TRANSFER_TIMEOUT_MS));
Edward O'Callaghan5c81bf32020-01-29 14:26:55 +1100563 if (ret != 0) {
564 msg_perr("Raiden: Failed to enable SPI bridge\n");
565 return ret;
566 }
Anton Staaf4589cd12015-03-23 13:36:44 -0700567
Keith Short8453b552020-02-03 18:10:14 -0700568 /*
569 * Allow for power to settle on the AP and EC flash devices.
570 * Load switches can have a 1-3 ms turn on time, and SPI flash devices
571 * can require up to 10 ms from power on to the first write.
572 */
573 if ((request_enable == RAIDEN_DEBUG_SPI_REQ_ENABLE_AP) ||
574 (request_enable == RAIDEN_DEBUG_SPI_REQ_ENABLE_EC))
575 usleep(50 * 1000);
576
Patrick Georgif4f1e2f2017-03-10 17:38:40 +0100577 register_spi_master(&spi_master_raiden_debug);
Anton Staaf4589cd12015-03-23 13:36:44 -0700578 register_shutdown(shutdown, NULL);
Anton Staafb2647882014-09-17 15:13:43 -0700579
David Hendricks98b3c572016-11-30 01:50:08 +0000580 return 0;
Anton Staafb2647882014-09-17 15:13:43 -0700581}