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hailfingerdfb32a02010-01-19 11:15:48 +00001/*
2 * This file is part of the flashrom project.
3 *
4 * Copyright (C) 2010 Carl-Daniel Hailfinger
David Hendricksfe05e742015-08-15 17:29:39 -07005 * Copyright (C) 2015 Simon Glass
6 * Copyright (C) 2015 Stefan Tauner
hailfingerdfb32a02010-01-19 11:15:48 +00007 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; version 2 of the License.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
18 * along with this program; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
20 */
21
David Hendricksfe05e742015-08-15 17:29:39 -070022//#include "platform.h"
23
24#include <stdlib.h>
hailfinger7a009082010-11-09 23:30:43 +000025#include <stdio.h>
hailfingerdfb32a02010-01-19 11:15:48 +000026#include <string.h>
David Hendricksfe05e742015-08-15 17:29:39 -070027#include <limits.h>
28#include <errno.h>
29
30#if IS_WINDOWS
31#include <lusb0_usb.h>
32#else
hailfingerdfb32a02010-01-19 11:15:48 +000033#include <usb.h>
David Hendricksfe05e742015-08-15 17:29:39 -070034#endif
35
hailfingerdfb32a02010-01-19 11:15:48 +000036#include "flash.h"
snelson8913d082010-02-26 05:48:29 +000037#include "chipdrivers.h"
hailfinger428f6852010-07-27 22:41:39 +000038#include "programmer.h"
hailfingerdfb32a02010-01-19 11:15:48 +000039#include "spi.h"
40
stepan4c06de72011-01-28 09:00:15 +000041#define FIRMWARE_VERSION(x,y,z) ((x << 16) | (y << 8) | z)
hailfingerdfb32a02010-01-19 11:15:48 +000042#define DEFAULT_TIMEOUT 3000
David Hendricksfe05e742015-08-15 17:29:39 -070043#define REQTYPE_OTHER_OUT (USB_ENDPOINT_IN | USB_TYPE_VENDOR | USB_RECIP_OTHER) /* 0x43 */
44#define REQTYPE_OTHER_IN (USB_ENDPOINT_IN | USB_TYPE_VENDOR | USB_RECIP_OTHER) /* 0xC3 */
45#define REQTYPE_EP_OUT (USB_ENDPOINT_OUT | USB_TYPE_VENDOR | USB_RECIP_ENDPOINT) /* 0x42 */
46#define REQTYPE_EP_IN (USB_ENDPOINT_IN | USB_TYPE_VENDOR | USB_RECIP_ENDPOINT) /* 0xC2 */
hailfinger1ff33dc2010-07-03 11:02:10 +000047static usb_dev_handle *dediprog_handle;
David Hendricksd7468582015-11-12 15:21:12 -080048static int dediprog_in_endpoint;
49static int dediprog_out_endpoint;
hailfingerdfb32a02010-01-19 11:15:48 +000050
David Hendricks6702e072015-08-15 18:09:04 -070051enum dediprog_devtype {
52 DEV_UNKNOWN = 0,
53 DEV_SF100 = 100,
54 DEV_SF600 = 600,
55};
56
57enum dediprog_devtype dediprog_devicetype;
58
David Hendricksfe05e742015-08-15 17:29:39 -070059enum dediprog_leds {
60 LED_INVALID = -1,
61 LED_NONE = 0,
Simon Glasse53cc1d2015-01-08 05:48:51 -070062 LED_PASS = 1 << 0,
63 LED_BUSY = 1 << 1,
64 LED_ERROR = 1 << 2,
65 LED_ALL = 7,
66};
67
Simon Glassa1f80682015-01-08 05:55:29 -070068/* IO bits for CMD_SET_IO_LED message */
David Hendricksfe05e742015-08-15 17:29:39 -070069enum dediprog_ios {
Simon Glassa1f80682015-01-08 05:55:29 -070070 IO1 = 1 << 0,
71 IO2 = 1 << 1,
72 IO3 = 1 << 2,
73 IO4 = 1 << 3,
74};
75
David Hendricksfe05e742015-08-15 17:29:39 -070076enum dediprog_cmds {
77 CMD_TRANSCEIVE = 0x01,
78 CMD_POLL_STATUS_REG = 0x02,
79 CMD_SET_VPP = 0x03,
80 CMD_SET_TARGET = 0x04,
81 CMD_READ_EEPROM = 0x05,
82 CMD_WRITE_EEPROM = 0x06,
83 CMD_SET_IO_LED = 0x07,
84 CMD_READ_PROG_INFO = 0x08,
85 CMD_SET_VCC = 0x09,
86 CMD_SET_STANDALONE = 0x0A,
David Hendricks28fbdfb2015-08-15 18:04:37 -070087 CMD_SET_VOLTAGE = 0x0B, /* Only in firmware older than 6.0.0 */
David Hendricksfe05e742015-08-15 17:29:39 -070088 CMD_GET_BUTTON = 0x11,
89 CMD_GET_UID = 0x12,
90 CMD_SET_CS = 0x14,
91 CMD_IO_MODE = 0x15,
92 CMD_FW_UPDATE = 0x1A,
93 CMD_FPGA_UPDATE = 0x1B,
94 CMD_READ_FPGA_VERSION = 0x1C,
95 CMD_SET_HOLD = 0x1D,
96 CMD_READ = 0x20,
97 CMD_WRITE = 0x30,
98 CMD_WRITE_AT45DB = 0x31,
99 CMD_NAND_WRITE = 0x32,
100 CMD_NAND_READ = 0x33,
101 CMD_SET_SPI_CLK = 0x61,
102 CMD_CHECK_SOCKET = 0x62,
103 CMD_DOWNLOAD_PRJ = 0x63,
104 CMD_READ_PRJ_NAME = 0x64,
105 // New protocol/firmware only
106 CMD_CHECK_SDCARD = 0x65,
107 CMD_READ_PRJ = 0x66,
Simon Glassa1f80682015-01-08 05:55:29 -0700108};
109
David Hendricksfe05e742015-08-15 17:29:39 -0700110enum dediprog_target {
111 FLASH_TYPE_APPLICATION_FLASH_1 = 0,
112 FLASH_TYPE_FLASH_CARD,
113 FLASH_TYPE_APPLICATION_FLASH_2,
114 FLASH_TYPE_SOCKET,
Simon Glassa1f80682015-01-08 05:55:29 -0700115};
116
David Hendricksfe05e742015-08-15 17:29:39 -0700117enum dediprog_readmode {
118 READ_MODE_STD = 1,
119 READ_MODE_FAST = 2,
120 READ_MODE_ATMEL45 = 3,
121 READ_MODE_4B_ADDR_FAST = 4,
122 READ_MODE_4B_ADDR_FAST_0x0C = 5, /* New protocol only */
Simon Glassd01002b2015-01-08 05:44:16 -0700123};
124
David Hendricksfe05e742015-08-15 17:29:39 -0700125enum dediprog_writemode {
126 WRITE_MODE_PAGE_PGM = 1,
127 WRITE_MODE_PAGE_WRITE = 2,
128 WRITE_MODE_1B_AAI = 3,
129 WRITE_MODE_2B_AAI = 4,
130 WRITE_MODE_128B_PAGE = 5,
131 WRITE_MODE_PAGE_AT26DF041 = 6,
132 WRITE_MODE_SILICON_BLUE_FPGA = 7,
133 WRITE_MODE_64B_PAGE_NUMONYX_PCM = 8, /* unit of length 512 bytes */
134 WRITE_MODE_4B_ADDR_256B_PAGE_PGM = 9,
135 WRITE_MODE_32B_PAGE_PGM_MXIC_512K = 10, /* unit of length 512 bytes */
136 WRITE_MODE_4B_ADDR_256B_PAGE_PGM_0x12 = 11,
137 WRITE_MODE_4B_ADDR_256B_PAGE_PGM_FLAGS = 12,
Simon Glassd01002b2015-01-08 05:44:16 -0700138};
139
David Hendricksfe05e742015-08-15 17:29:39 -0700140
141static int dediprog_firmwareversion = FIRMWARE_VERSION(0, 0, 0);
142
David Hendricks14e82e52015-08-15 17:59:03 -0700143/* Returns true if firmware (and thus hardware) supports the "new" protocol */
144static int is_new_prot(void)
hailfingerdfb32a02010-01-19 11:15:48 +0000145{
David Hendricks6702e072015-08-15 18:09:04 -0700146 switch (dediprog_devicetype) {
147 case DEV_SF100:
148 return dediprog_firmwareversion >= FIRMWARE_VERSION(5, 5, 0);
149 case DEV_SF600:
150 return dediprog_firmwareversion >= FIRMWARE_VERSION(6, 9, 0);
151 default:
152 return 0;
153 }
hailfingerdfb32a02010-01-19 11:15:48 +0000154}
David Hendricks14e82e52015-08-15 17:59:03 -0700155
156static int dediprog_read(enum dediprog_cmds cmd, unsigned int value, unsigned int idx, uint8_t *bytes, size_t size)
157{
158 return usb_control_msg(dediprog_handle, REQTYPE_EP_IN, cmd, value, idx,
159 (char *)bytes, size, DEFAULT_TIMEOUT);
160}
161
162static int dediprog_write(enum dediprog_cmds cmd, unsigned int value, unsigned int idx, const uint8_t *bytes, size_t size)
163{
164 return usb_control_msg(dediprog_handle, REQTYPE_EP_OUT, cmd, value, idx,
165 (char *)bytes, size, DEFAULT_TIMEOUT);
166}
hailfingerdfb32a02010-01-19 11:15:48 +0000167
hailfinger1ff33dc2010-07-03 11:02:10 +0000168/* Might be useful for other USB devices as well. static for now. */
David Hendricksfe05e742015-08-15 17:29:39 -0700169/* device parameter allows user to specify one device of multiple installed */
170static struct usb_device *get_device_by_vid_pid(uint16_t vid, uint16_t pid, unsigned int device)
hailfingerdfb32a02010-01-19 11:15:48 +0000171{
172 struct usb_bus *bus;
173 struct usb_device *dev;
174
175 for (bus = usb_get_busses(); bus; bus = bus->next)
176 for (dev = bus->devices; dev; dev = dev->next)
177 if ((dev->descriptor.idVendor == vid) &&
David Hendricksfe05e742015-08-15 17:29:39 -0700178 (dev->descriptor.idProduct == pid)) {
179 if (device == 0)
180 return dev;
181 device--;
182 }
hailfingerdfb32a02010-01-19 11:15:48 +0000183
184 return NULL;
185}
186
David Hendricksfe05e742015-08-15 17:29:39 -0700187/* This function sets the GPIOs connected to the LEDs as well as IO1-IO4. */
stepan4c06de72011-01-28 09:00:15 +0000188static int dediprog_set_leds(int leds)
189{
David Hendricksfe05e742015-08-15 17:29:39 -0700190 if (leds < LED_NONE || leds > LED_ALL)
Simon Glasse53cc1d2015-01-08 05:48:51 -0700191 leds = LED_ALL;
stepan4c06de72011-01-28 09:00:15 +0000192
David Hendricks14e82e52015-08-15 17:59:03 -0700193 /* Older Dediprogs with 2.x.x and 3.x.x firmware only had two LEDs, assigned to different bits. So map
194 * them around if we have an old device. On those devices the LEDs map as follows:
stepan4c06de72011-01-28 09:00:15 +0000195 * bit 2 == 0: green light is on.
David Hendricks14e82e52015-08-15 17:59:03 -0700196 * bit 0 == 0: red light is on.
197 *
198 * Additionally, the command structure has changed with the "new" protocol.
199 *
200 * FIXME: take IO pins into account
stepan4c06de72011-01-28 09:00:15 +0000201 */
David Hendricks14e82e52015-08-15 17:59:03 -0700202 int target_leds, ret;
203 if (is_new_prot()) {
204 target_leds = (leds ^ 7) << 8;
205 ret = dediprog_write(CMD_SET_IO_LED, target_leds, 0, NULL, 0);
stepan4c06de72011-01-28 09:00:15 +0000206 } else {
David Hendricks14e82e52015-08-15 17:59:03 -0700207 if (dediprog_firmwareversion < FIRMWARE_VERSION(5, 0, 0)) {
208 target_leds = ((leds & LED_ERROR) >> 2) | ((leds & LED_PASS) << 2);
209 } else {
210 target_leds = leds;
211 }
212 target_leds ^= 7;
213
214 ret = dediprog_write(CMD_SET_IO_LED, 0x9, target_leds, NULL, 0);
Simon Glass543101a2015-01-08 06:28:13 -0700215 }
David Hendricksfe05e742015-08-15 17:29:39 -0700216
stepan4c06de72011-01-28 09:00:15 +0000217 if (ret != 0x0) {
David Hendricksfe05e742015-08-15 17:29:39 -0700218 msg_perr("Command Set LED 0x%x failed (%s)!\n", leds, usb_strerror());
stepan4c06de72011-01-28 09:00:15 +0000219 return 1;
220 }
221
stepan4c06de72011-01-28 09:00:15 +0000222 return 0;
223}
224
hailfingerf76cc322010-11-09 22:00:31 +0000225static int dediprog_set_spi_voltage(int millivolt)
hailfingerdfb32a02010-01-19 11:15:48 +0000226{
227 int ret;
hailfingerf76cc322010-11-09 22:00:31 +0000228 uint16_t voltage_selector;
hailfingerdfb32a02010-01-19 11:15:48 +0000229
hailfingerf76cc322010-11-09 22:00:31 +0000230 switch (millivolt) {
231 case 0:
hailfingerdfb32a02010-01-19 11:15:48 +0000232 /* Admittedly this one is an assumption. */
hailfingerf76cc322010-11-09 22:00:31 +0000233 voltage_selector = 0x0;
hailfingerdfb32a02010-01-19 11:15:48 +0000234 break;
hailfingerf76cc322010-11-09 22:00:31 +0000235 case 1800:
236 voltage_selector = 0x12;
hailfingerdfb32a02010-01-19 11:15:48 +0000237 break;
hailfingerf76cc322010-11-09 22:00:31 +0000238 case 2500:
239 voltage_selector = 0x11;
hailfingerdfb32a02010-01-19 11:15:48 +0000240 break;
hailfingerf76cc322010-11-09 22:00:31 +0000241 case 3500:
242 voltage_selector = 0x10;
hailfingerdfb32a02010-01-19 11:15:48 +0000243 break;
244 default:
hailfingerf76cc322010-11-09 22:00:31 +0000245 msg_perr("Unknown voltage %i mV! Aborting.\n", millivolt);
hailfingerdfb32a02010-01-19 11:15:48 +0000246 return 1;
247 }
hailfingerf76cc322010-11-09 22:00:31 +0000248 msg_pdbg("Setting SPI voltage to %u.%03u V\n", millivolt / 1000,
249 millivolt % 1000);
hailfingerdfb32a02010-01-19 11:15:48 +0000250
David Hendricksfe05e742015-08-15 17:29:39 -0700251 if (voltage_selector == 0) {
252 /* Wait some time as the original driver does. */
253 programmer_delay(200 * 1000);
254 }
David Hendricks14e82e52015-08-15 17:59:03 -0700255 ret = dediprog_write(CMD_SET_VCC, voltage_selector, 0, NULL, 0);
hailfingerdfb32a02010-01-19 11:15:48 +0000256 if (ret != 0x0) {
uwe8d342eb2011-07-28 08:13:25 +0000257 msg_perr("Command Set SPI Voltage 0x%x failed!\n",
258 voltage_selector);
hailfingerdfb32a02010-01-19 11:15:48 +0000259 return 1;
260 }
David Hendricksfe05e742015-08-15 17:29:39 -0700261 if (voltage_selector != 0) {
262 /* Wait some time as the original driver does. */
263 programmer_delay(200 * 1000);
264 }
hailfingerdfb32a02010-01-19 11:15:48 +0000265 return 0;
266}
267
David Hendricksfe05e742015-08-15 17:29:39 -0700268struct dediprog_spispeeds {
269 const char *const name;
270 const int speed;
271};
272
273static const struct dediprog_spispeeds spispeeds[] = {
274 { "24M", 0x0 },
275 { "12M", 0x2 },
276 { "8M", 0x1 },
277 { "3M", 0x3 },
278 { "2.18M", 0x4 },
279 { "1.5M", 0x5 },
280 { "750k", 0x6 },
281 { "375k", 0x7 },
282 { NULL, 0x0 },
283};
284
285static int dediprog_set_spi_speed(unsigned int spispeed_idx)
hailfingerdfb32a02010-01-19 11:15:48 +0000286{
David Hendricksfe05e742015-08-15 17:29:39 -0700287 if (dediprog_firmwareversion < FIRMWARE_VERSION(5, 0, 0)) {
288 msg_pinfo("Skipping to set SPI speed because firmware is too old.\n");
289 return 0;
290 }
hailfingerdfb32a02010-01-19 11:15:48 +0000291
David Hendricksfe05e742015-08-15 17:29:39 -0700292 const struct dediprog_spispeeds *spispeed = &spispeeds[spispeed_idx];
293 msg_pdbg("SPI speed is %sHz\n", spispeed->name);
hailfingerdfb32a02010-01-19 11:15:48 +0000294
David Hendricks14e82e52015-08-15 17:59:03 -0700295 int ret = dediprog_write(CMD_SET_SPI_CLK, spispeed->speed, 0, NULL, 0);
hailfingerdfb32a02010-01-19 11:15:48 +0000296 if (ret != 0x0) {
David Hendricksfe05e742015-08-15 17:29:39 -0700297 msg_perr("Command Set SPI Speed 0x%x failed!\n", spispeed->speed);
hailfingerdfb32a02010-01-19 11:15:48 +0000298 return 1;
299 }
300 return 0;
301}
302
hailfingerfb6287d2010-11-16 21:25:29 +0000303/* Bulk read interface, will read multiple 512 byte chunks aligned to 512 bytes.
304 * @start start address
305 * @len length
306 * @return 0 on success, 1 on failure
307 */
308static int dediprog_spi_bulk_read(struct flashchip *flash, uint8_t *buf,
stefanctc5eb8a92011-11-23 09:13:48 +0000309 unsigned int start, unsigned int len)
hailfingerfb6287d2010-11-16 21:25:29 +0000310{
311 int ret;
stefanctc5eb8a92011-11-23 09:13:48 +0000312 unsigned int i;
hailfingerfb6287d2010-11-16 21:25:29 +0000313 /* chunksize must be 512, other sizes will NOT work at all. */
stefanctc5eb8a92011-11-23 09:13:48 +0000314 const unsigned int chunksize = 0x200;
315 const unsigned int count = len / chunksize;
David Hendricks14e82e52015-08-15 17:59:03 -0700316 unsigned int cmd_len;
hailfingerfb6287d2010-11-16 21:25:29 +0000317
318 if ((start % chunksize) || (len % chunksize)) {
319 msg_perr("%s: Unaligned start=%i, len=%i! Please report a bug "
320 "at flashrom@flashrom.org\n", __func__, start, len);
321 return 1;
322 }
323
324 /* No idea if the hardware can handle empty reads, so chicken out. */
325 if (!len)
326 return 0;
David Hendricks14e82e52015-08-15 17:59:03 -0700327 /* Command Read SPI Bulk. */
328 if (is_new_prot()) {
329 const uint8_t read_cmd[] = {
330 count & 0xff,
331 (count >> 8) & 0xff,
332 0,
333 READ_MODE_FAST,
334 0,
335 0,
336 start & 0xff,
337 (start >> 8) & 0xff,
338 (start >> 16) & 0xff,
339 (start >> 24) & 0xff,
340 };
341
342 cmd_len = sizeof(read_cmd);
343 ret = dediprog_write(CMD_READ, 0, 0, read_cmd, cmd_len);
344 } else {
345 const uint8_t read_cmd[] = {count & 0xff,
346 (count >> 8) & 0xff,
347 chunksize & 0xff,
348 (chunksize >> 8) & 0xff};
349
350 cmd_len = sizeof(read_cmd);
351 ret = dediprog_write(CMD_READ, start % 0x10000, start / 0x10000, read_cmd, cmd_len);
352 }
353 if (ret != cmd_len) {
354 msg_perr("Command Read SPI Bulk failed, %i %s!\n", ret, usb_strerror());
hailfingerfb6287d2010-11-16 21:25:29 +0000355 return 1;
356 }
357
358 for (i = 0; i < count; i++) {
David Hendricksd7468582015-11-12 15:21:12 -0800359 ret = usb_bulk_read(dediprog_handle, 0x80 | dediprog_in_endpoint,
hailfingerfb6287d2010-11-16 21:25:29 +0000360 (char *)buf + i * chunksize, chunksize,
361 DEFAULT_TIMEOUT);
362 if (ret != chunksize) {
363 msg_perr("SPI bulk read %i failed, expected %i, got %i "
364 "%s!\n", i, chunksize, ret, usb_strerror());
365 return 1;
366 }
367 }
368
369 return 0;
370}
371
stefanctc5eb8a92011-11-23 09:13:48 +0000372static int dediprog_spi_read(struct flashchip *flash, uint8_t *buf,
373 unsigned int start, unsigned int len)
hailfingerdfb32a02010-01-19 11:15:48 +0000374{
hailfingerfb6287d2010-11-16 21:25:29 +0000375 int ret;
376 /* chunksize must be 512, other sizes will NOT work at all. */
stefanctc5eb8a92011-11-23 09:13:48 +0000377 const unsigned int chunksize = 0x200;
378 unsigned int residue = start % chunksize ? chunksize - start % chunksize : 0;
379 unsigned int bulklen;
hailfingerfb6287d2010-11-16 21:25:29 +0000380
Simon Glasse53cc1d2015-01-08 05:48:51 -0700381 dediprog_set_leds(LED_BUSY);
stepan4c06de72011-01-28 09:00:15 +0000382
hailfingerfb6287d2010-11-16 21:25:29 +0000383 if (residue) {
384 msg_pdbg("Slow read for partial block from 0x%x, length 0x%x\n",
385 start, residue);
386 ret = spi_read_chunked(flash, buf, start, residue, 16);
Simon Glasse53cc1d2015-01-08 05:48:51 -0700387 if (ret)
388 goto err;
hailfingerfb6287d2010-11-16 21:25:29 +0000389 }
390
391 /* Round down. */
392 bulklen = (len - residue) / chunksize * chunksize;
393 ret = dediprog_spi_bulk_read(flash, buf + residue, start + residue,
394 bulklen);
Simon Glasse53cc1d2015-01-08 05:48:51 -0700395 if (ret)
396 goto err;
hailfingerfb6287d2010-11-16 21:25:29 +0000397
398 len -= residue + bulklen;
399 if (len) {
400 msg_pdbg("Slow read for partial block from 0x%x, length 0x%x\n",
401 start, len);
402 ret = spi_read_chunked(flash, buf + residue + bulklen,
403 start + residue + bulklen, len, 16);
Simon Glasse53cc1d2015-01-08 05:48:51 -0700404 if (ret)
405 goto err;
hailfingerfb6287d2010-11-16 21:25:29 +0000406 }
407
Simon Glasse53cc1d2015-01-08 05:48:51 -0700408 dediprog_set_leds(LED_PASS);
hailfingerfb6287d2010-11-16 21:25:29 +0000409 return 0;
Simon Glasse53cc1d2015-01-08 05:48:51 -0700410err:
411 dediprog_set_leds(LED_ERROR);
412 return ret;
hailfingerdfb32a02010-01-19 11:15:48 +0000413}
414
David Hendricksfe05e742015-08-15 17:29:39 -0700415/* Bulk write interface, will write multiple chunksize byte chunks aligned to chunksize bytes.
416 * @chunksize length of data chunks, only 256 supported by now
417 * @start start address
418 * @len length
419 * @dedi_spi_cmd dediprog specific write command for spi bus
420 * @return 0 on success, 1 on failure
421 */
422static int dediprog_spi_bulk_write(struct flashchip *flash, const uint8_t *buf, unsigned int chunksize,
423 unsigned int start, unsigned int len, uint8_t dedi_spi_cmd)
hailfinger556e9c32010-11-23 21:28:16 +0000424{
stepan4c06de72011-01-28 09:00:15 +0000425 int ret;
David Hendricksfe05e742015-08-15 17:29:39 -0700426 unsigned int i;
427 /* USB transfer size must be 512, other sizes will NOT work at all.
428 * chunksize is the real data size per USB bulk transfer. The remaining
429 * space in a USB bulk transfer must be filled with 0xff padding.
430 */
431 const unsigned int count = len / chunksize;
432 const char count_and_cmd[] = {count & 0xff, (count >> 8) & 0xff, 0x00, dedi_spi_cmd};
433 char usbbuf[512];
434
435 /*
436 * We should change this check to
437 * chunksize > 512
438 * once we know how to handle different chunk sizes.
439 */
440 if (chunksize != 256) {
441 msg_perr("%s: Chunk sizes other than 256 bytes are unsupported, chunksize=%u!\n"
442 "Please report a bug at flashrom@flashrom.org\n", __func__, chunksize);
443 return 1;
444 }
445
446 if ((start % chunksize) || (len % chunksize)) {
447 msg_perr("%s: Unaligned start=%i, len=%i! Please report a bug "
448 "at flashrom@flashrom.org\n", __func__, start, len);
449 return 1;
450 }
451
452 /* No idea if the hardware can handle empty writes, so chicken out. */
453 if (!len)
454 return 0;
455 /* Command Write SPI Bulk. No idea which write command is used on the
456 * SPI side.
457 */
458 ret = usb_control_msg(dediprog_handle, REQTYPE_EP_OUT, CMD_WRITE, start % 0x10000, start / 0x10000,
459 (char *)count_and_cmd, sizeof(count_and_cmd), DEFAULT_TIMEOUT);
460 if (ret != sizeof(count_and_cmd)) {
461 msg_perr("Command Write SPI Bulk failed, %i %s!\n", ret,
462 usb_strerror());
463 return 1;
464 }
465
466 for (i = 0; i < count; i++) {
467 memset(usbbuf, 0xff, sizeof(usbbuf));
468 memcpy(usbbuf, buf + i * chunksize, chunksize);
David Hendricksd7468582015-11-12 15:21:12 -0800469 ret = usb_bulk_write(dediprog_handle, dediprog_out_endpoint,
David Hendricksfe05e742015-08-15 17:29:39 -0700470 usbbuf, 512,
471 DEFAULT_TIMEOUT);
472 if (ret != 512) {
473 msg_perr("SPI bulk write failed, expected %i, got %i "
474 "%s!\n", 512, ret, usb_strerror());
475 return 1;
476 }
477 }
478
479 return 0;
480}
481
482static int dediprog_spi_write(struct flashchip *flash, const uint8_t *buf,
483 unsigned int start, unsigned int len, uint8_t dedi_spi_cmd)
484{
485 int ret;
486// const unsigned int chunksize = flash->chip->page_size;
487 const unsigned int chunksize = flash->page_size;
488 unsigned int residue = start % chunksize ? chunksize - start % chunksize : 0;
489 unsigned int bulklen;
stepan4c06de72011-01-28 09:00:15 +0000490
Simon Glasse53cc1d2015-01-08 05:48:51 -0700491 dediprog_set_leds(LED_BUSY);
stepan4c06de72011-01-28 09:00:15 +0000492
David Hendricksfe05e742015-08-15 17:29:39 -0700493 if (chunksize != 256) {
494 msg_pdbg("Page sizes other than 256 bytes are unsupported as "
495 "we don't know how dediprog\nhandles them.\n");
496 /* Write everything like it was residue. */
497 residue = len;
498 }
stepan4c06de72011-01-28 09:00:15 +0000499
David Hendricksfe05e742015-08-15 17:29:39 -0700500 if (residue) {
501 msg_pdbg("Slow write for partial block from 0x%x, length 0x%x\n",
502 start, residue);
503 /* No idea about the real limit. Maybe 12, maybe more. */
504 ret = spi_write_chunked(flash, (uint8_t *)buf, start, residue, 12);
505 if (ret) {
506 dediprog_set_leds(LED_ERROR);
507 return ret;
508 }
509 }
510
511 /* Round down. */
512 bulklen = (len - residue) / chunksize * chunksize;
513 ret = dediprog_spi_bulk_write(flash, buf + residue, chunksize, start + residue, bulklen, dedi_spi_cmd);
514 if (ret) {
Simon Glasse53cc1d2015-01-08 05:48:51 -0700515 dediprog_set_leds(LED_ERROR);
David Hendricksfe05e742015-08-15 17:29:39 -0700516 return ret;
517 }
stepan4c06de72011-01-28 09:00:15 +0000518
David Hendricksfe05e742015-08-15 17:29:39 -0700519 len -= residue + bulklen;
520 if (len) {
521 msg_pdbg("Slow write for partial block from 0x%x, length 0x%x\n",
522 start, len);
523 ret = spi_write_chunked(flash, (uint8_t *)(buf + residue + bulklen),
524 start + residue + bulklen, len, 12);
525 if (ret) {
526 dediprog_set_leds(LED_ERROR);
527 return ret;
528 }
529 }
530
531 dediprog_set_leds(LED_PASS);
532 return 0;
hailfinger556e9c32010-11-23 21:28:16 +0000533}
534
David Hendricksfe05e742015-08-15 17:29:39 -0700535//static int dediprog_spi_write_256(struct flashchip *flash, const uint8_t *buf, unsigned int start, unsigned int len)
536static int dediprog_spi_write_256(struct flashchip *flash, uint8_t *buf, unsigned int start, unsigned int len)
537{
538 return dediprog_spi_write(flash, buf, start, len, WRITE_MODE_PAGE_PGM);
539}
540
541#if 0
542static int dediprog_spi_write_aai(struct flashchip *flash, const uint8_t *buf, unsigned int start, unsigned int len)
543{
544 return dediprog_spi_write(flash, buf, start, len, WRITE_MODE_2B_AAI);
545}
546#endif
547
548//static int dediprog_spi_send_command(struct flashchip *flash,
549static int dediprog_spi_send_command(unsigned int writecnt,
550 unsigned int readcnt,
551 const unsigned char *writearr,
552 unsigned char *readarr)
hailfingerdfb32a02010-01-19 11:15:48 +0000553{
554 int ret;
555
hailfingeraf389cc2010-01-22 02:53:30 +0000556 msg_pspew("%s, writecnt=%i, readcnt=%i\n", __func__, writecnt, readcnt);
David Hendricksfe05e742015-08-15 17:29:39 -0700557 if (writecnt > UINT16_MAX) {
558 msg_perr("Invalid writecnt=%i, aborting.\n", writecnt);
559 return 1;
Simon Glass543101a2015-01-08 06:28:13 -0700560 }
David Hendricksfe05e742015-08-15 17:29:39 -0700561 if (readcnt > UINT16_MAX) {
562 msg_perr("Invalid readcnt=%i, aborting.\n", readcnt);
563 return 1;
564 }
565
David Hendricks14e82e52015-08-15 17:59:03 -0700566 /* New protocol has the read flag as value while the old protocol had it in the index field. */
567 if (is_new_prot()) {
568 ret = dediprog_write(CMD_TRANSCEIVE, readcnt ? 1 : 0, 0, writearr, writecnt);
569 } else {
570 ret = dediprog_write(CMD_TRANSCEIVE, 0, readcnt ? 1 : 0, writearr, writecnt);
571 }
hailfingerdfb32a02010-01-19 11:15:48 +0000572 if (ret != writecnt) {
hailfingeraf389cc2010-01-22 02:53:30 +0000573 msg_perr("Send SPI failed, expected %i, got %i %s!\n",
574 writecnt, ret, usb_strerror());
hailfingerdfb32a02010-01-19 11:15:48 +0000575 return 1;
576 }
David Hendricksfe05e742015-08-15 17:29:39 -0700577 if (readcnt == 0)
hailfingerdfb32a02010-01-19 11:15:48 +0000578 return 0;
David Hendricksfe05e742015-08-15 17:29:39 -0700579
David Hendricks14e82e52015-08-15 17:59:03 -0700580 ret = dediprog_read(CMD_TRANSCEIVE, 0, 0, readarr, readcnt);
hailfingerdfb32a02010-01-19 11:15:48 +0000581 if (ret != readcnt) {
hailfingeraf389cc2010-01-22 02:53:30 +0000582 msg_perr("Receive SPI failed, expected %i, got %i %s!\n",
583 readcnt, ret, usb_strerror());
hailfingerdfb32a02010-01-19 11:15:48 +0000584 return 1;
585 }
586 return 0;
587}
588
hailfinger1ff33dc2010-07-03 11:02:10 +0000589static int dediprog_check_devicestring(void)
hailfingerdfb32a02010-01-19 11:15:48 +0000590{
591 int ret;
hailfinger7a009082010-11-09 23:30:43 +0000592 int fw[3];
David Hendricks6702e072015-08-15 18:09:04 -0700593 int sfnum;
hailfingerdfb32a02010-01-19 11:15:48 +0000594 char buf[0x11];
595
David Hendricksfe05e742015-08-15 17:29:39 -0700596#if 0
597 /* Command Prepare Receive Device String. */
598 ret = usb_control_msg(dediprog_handle, REQTYPE_OTHER_IN, 0x7, 0x0, 0xef03,
599 buf, 0x1, DEFAULT_TIMEOUT);
600 /* The char casting is needed to stop gcc complaining about an always true comparison. */
601 if ((ret != 0x1) || (buf[0] != (char)0xff)) {
602 msg_perr("Unexpected response to Command Prepare Receive Device"
603 " String!\n");
604 return 1;
605 }
606#endif
hailfingerdfb32a02010-01-19 11:15:48 +0000607 /* Command Receive Device String. */
David Hendricks14e82e52015-08-15 17:59:03 -0700608 ret = dediprog_read(CMD_READ_PROG_INFO, 0, 0, (uint8_t *)buf, 0x10);
hailfingerdfb32a02010-01-19 11:15:48 +0000609 if (ret != 0x10) {
610 msg_perr("Incomplete/failed Command Receive Device String!\n");
611 return 1;
612 }
613 buf[0x10] = '\0';
614 msg_pdbg("Found a %s\n", buf);
David Hendricks6702e072015-08-15 18:09:04 -0700615 if (memcmp(buf, "SF100", 0x5) == 0)
616 dediprog_devicetype = DEV_SF100;
617 else if (memcmp(buf, "SF600", 0x5) == 0)
618 dediprog_devicetype = DEV_SF600;
619 else {
hailfingerdfb32a02010-01-19 11:15:48 +0000620 msg_perr("Device not a SF100!\n");
621 return 1;
622 }
David Hendricks6702e072015-08-15 18:09:04 -0700623 if (sscanf(buf, "SF%d V:%d.%d.%d ", &sfnum, &fw[0], &fw[1], &fw[2])
624 != 4 || sfnum != dediprog_devicetype) {
David Hendricks14e82e52015-08-15 17:59:03 -0700625 msg_perr("Unexpected firmware version string '%s'\n", buf);
hailfinger7a009082010-11-09 23:30:43 +0000626 return 1;
627 }
David Hendricks14e82e52015-08-15 17:59:03 -0700628 /* Only these major versions were tested. */
David Hendricks6702e072015-08-15 18:09:04 -0700629 if (fw[0] < 2 || fw[0] > 7) {
David Hendricks14e82e52015-08-15 17:59:03 -0700630 msg_perr("Unexpected firmware version %d.%d.%d!\n", fw[0], fw[1], fw[2]);
hailfingerdfb32a02010-01-19 11:15:48 +0000631 return 1;
632 }
stepan4c06de72011-01-28 09:00:15 +0000633 dediprog_firmwareversion = FIRMWARE_VERSION(fw[0], fw[1], fw[2]);
David Hendricks14e82e52015-08-15 17:59:03 -0700634
hailfingerdfb32a02010-01-19 11:15:48 +0000635 return 0;
636}
637
David Hendricks28fbdfb2015-08-15 18:04:37 -0700638/*
639 * This command presumably sets the voltage for the SF100 itself (not the
640 * SPI flash). Only use this command with firmware older than V6.0.0. Newer
641 * (including all SF600s) do not support it.
642 */
643static int dediprog_set_voltage(void)
hailfingerdfb32a02010-01-19 11:15:48 +0000644{
645 int ret;
646 char buf[0x1];
647
648 memset(buf, 0, sizeof(buf));
David Hendricks28fbdfb2015-08-15 18:04:37 -0700649 ret = usb_control_msg(dediprog_handle, REQTYPE_OTHER_IN, CMD_SET_VOLTAGE, 0x0, 0x0,
David Hendricksfe05e742015-08-15 17:29:39 -0700650 buf, 0x1, DEFAULT_TIMEOUT);
hailfinger7a009082010-11-09 23:30:43 +0000651 if (ret < 0) {
652 msg_perr("Command A failed (%s)!\n", usb_strerror());
653 return 1;
654 }
hailfingerdfb32a02010-01-19 11:15:48 +0000655 if ((ret != 0x1) || (buf[0] != 0x6f)) {
Simon Glassa1f80682015-01-08 05:55:29 -0700656 msg_perr("Unexpected response to init!\n");
hailfingerdfb32a02010-01-19 11:15:48 +0000657 return 1;
658 }
David Hendricks28fbdfb2015-08-15 18:04:37 -0700659
hailfingerdfb32a02010-01-19 11:15:48 +0000660 return 0;
661}
662
David Hendricksfe05e742015-08-15 17:29:39 -0700663#if 0
664/* Something.
665 * Present in eng_detect_blink.log with firmware 3.1.8
666 * Always preceded by Command Receive Device String
667 */
668static int dediprog_command_b(void)
hailfingerdfb32a02010-01-19 11:15:48 +0000669{
670 int ret;
David Hendricksfe05e742015-08-15 17:29:39 -0700671 char buf[0x3];
hailfingerdfb32a02010-01-19 11:15:48 +0000672
David Hendricksfe05e742015-08-15 17:29:39 -0700673 ret = usb_control_msg(dediprog_handle, REQTYPE_OTHER_IN, 0x7, 0x0, 0xef00,
674 buf, 0x3, DEFAULT_TIMEOUT);
675 if (ret < 0) {
676 msg_perr("Command B failed (%s)!\n", usb_strerror());
677 return 1;
678 }
679 if ((ret != 0x3) || (buf[0] != 0xff) || (buf[1] != 0xff) ||
680 (buf[2] != 0xff)) {
681 msg_perr("Unexpected response to Command B!\n");
682 return 1;
683 }
684
685 return 0;
686}
687#endif
688
689static int set_target_flash(enum dediprog_target target)
690{
691 int ret = usb_control_msg(dediprog_handle, REQTYPE_EP_OUT, CMD_SET_TARGET, target, 0,
692 NULL, 0, DEFAULT_TIMEOUT);
693 if (ret != 0) {
Simon Glassa1f80682015-01-08 05:55:29 -0700694 msg_perr("set_target_flash failed (%s)!\n", usb_strerror());
hailfingerdfb32a02010-01-19 11:15:48 +0000695 return 1;
696 }
697 return 0;
698}
699
David Hendricksfe05e742015-08-15 17:29:39 -0700700#if 0
701/* Returns true if the button is currently pressed. */
702static bool dediprog_get_button(void)
Simon Glassd01002b2015-01-08 05:44:16 -0700703{
David Hendricksfe05e742015-08-15 17:29:39 -0700704 char buf[1];
705 int ret = usb_control_msg(dediprog_handle, REQTYPE_EP_IN, CMD_GET_BUTTON, 0, 0,
706 buf, 0x1, DEFAULT_TIMEOUT);
707 if (ret != 0) {
708 msg_perr("Could not get button state (%s)!\n", usb_strerror());
709 return 1;
Simon Glassd01002b2015-01-08 05:44:16 -0700710 }
David Hendricksfe05e742015-08-15 17:29:39 -0700711 return buf[0] != 1;
Simon Glassd01002b2015-01-08 05:44:16 -0700712}
David Hendricksfe05e742015-08-15 17:29:39 -0700713#endif
Simon Glassd01002b2015-01-08 05:44:16 -0700714
hailfingerf76cc322010-11-09 22:00:31 +0000715static int parse_voltage(char *voltage)
716{
717 char *tmp = NULL;
hailfingerb91c08c2011-08-15 19:54:20 +0000718 int i;
719 int millivolt = 0, fraction = 0;
hailfingerf76cc322010-11-09 22:00:31 +0000720
721 if (!voltage || !strlen(voltage)) {
722 msg_perr("Empty voltage= specified.\n");
723 return -1;
724 }
725 millivolt = (int)strtol(voltage, &tmp, 0);
726 voltage = tmp;
727 /* Handle "," and "." as decimal point. Everything after it is assumed
728 * to be in decimal notation.
729 */
730 if ((*voltage == '.') || (*voltage == ',')) {
731 voltage++;
732 for (i = 0; i < 3; i++) {
733 fraction *= 10;
734 /* Don't advance if the current character is invalid,
735 * but continue multiplying.
736 */
737 if ((*voltage < '0') || (*voltage > '9'))
738 continue;
739 fraction += *voltage - '0';
740 voltage++;
741 }
742 /* Throw away remaining digits. */
743 voltage += strspn(voltage, "0123456789");
744 }
745 /* The remaining string must be empty or "mV" or "V". */
746 tolower_string(voltage);
747
748 /* No unit or "V". */
749 if ((*voltage == '\0') || !strncmp(voltage, "v", 1)) {
750 millivolt *= 1000;
751 millivolt += fraction;
752 } else if (!strncmp(voltage, "mv", 2) ||
753 !strncmp(voltage, "milliv", 6)) {
754 /* No adjustment. fraction is discarded. */
755 } else {
756 /* Garbage at the end of the string. */
757 msg_perr("Garbage voltage= specified.\n");
758 return -1;
759 }
760 return millivolt;
761}
762
David Hendricksfe05e742015-08-15 17:29:39 -0700763#if 0
764static const struct spi_master spi_master_dediprog = {
765 .type = SPI_CONTROLLER_DEDIPROG,
766 .max_data_read = MAX_DATA_UNSPECIFIED,
767 .max_data_write = MAX_DATA_UNSPECIFIED,
768 .command = dediprog_spi_send_command,
769 .multicommand = default_spi_send_multicommand,
770 .read = dediprog_spi_read,
771 .write_256 = dediprog_spi_write_256,
772 .write_aai = dediprog_spi_write_aai,
773};
774#endif
mkarcherd264e9e2011-05-11 17:07:07 +0000775static const struct spi_programmer spi_programmer_dediprog = {
uwe8d342eb2011-07-28 08:13:25 +0000776 .type = SPI_CONTROLLER_DEDIPROG,
777 .max_data_read = MAX_DATA_UNSPECIFIED,
778 .max_data_write = MAX_DATA_UNSPECIFIED,
779 .command = dediprog_spi_send_command,
780 .multicommand = default_spi_send_multicommand,
781 .read = dediprog_spi_read,
782 .write_256 = dediprog_spi_write_256,
mkarcherd264e9e2011-05-11 17:07:07 +0000783};
784
dhendrix0ffc2eb2011-06-14 01:35:36 +0000785static int dediprog_shutdown(void *data)
786{
787 msg_pspew("%s\n", __func__);
788
David Hendricksfe05e742015-08-15 17:29:39 -0700789 dediprog_firmwareversion = FIRMWARE_VERSION(0, 0, 0);
David Hendricks6702e072015-08-15 18:09:04 -0700790 dediprog_devicetype = DEV_UNKNOWN;
David Hendricksfe05e742015-08-15 17:29:39 -0700791
dhendrix0ffc2eb2011-06-14 01:35:36 +0000792 /* URB 28. Command Set SPI Voltage to 0. */
793 if (dediprog_set_spi_voltage(0x0))
794 return 1;
795
796 if (usb_release_interface(dediprog_handle, 0)) {
797 msg_perr("Could not release USB interface!\n");
798 return 1;
799 }
800 if (usb_close(dediprog_handle)) {
801 msg_perr("Could not close USB device!\n");
802 return 1;
803 }
804 return 0;
805}
806
hailfingerdfb32a02010-01-19 11:15:48 +0000807/* URB numbers refer to the first log ever captured. */
808int dediprog_init(void)
809{
810 struct usb_device *dev;
David Hendricksfe05e742015-08-15 17:29:39 -0700811 char *voltage, *device, *spispeed, *target_str;
812 int spispeed_idx = 1;
hailfingerb91c08c2011-08-15 19:54:20 +0000813 int millivolt = 3500;
David Hendricksfe05e742015-08-15 17:29:39 -0700814 long usedevice = 0;
815 long target = 1;
816 int i, ret;
hailfingerdfb32a02010-01-19 11:15:48 +0000817
818 msg_pspew("%s\n", __func__);
819
David Hendricksfe05e742015-08-15 17:29:39 -0700820 spispeed = extract_programmer_param("spispeed");
821 if (spispeed) {
822 for (i = 0; spispeeds[i].name; ++i) {
823 if (!strcasecmp(spispeeds[i].name, spispeed)) {
824 spispeed_idx = i;
825 break;
826 }
827 }
828 if (!spispeeds[i].name) {
829 msg_perr("Error: Invalid spispeed value: '%s'.\n", spispeed);
830 free(spispeed);
831 return 1;
832 }
833 free(spispeed);
834 }
835
hailfingerf76cc322010-11-09 22:00:31 +0000836 voltage = extract_programmer_param("voltage");
837 if (voltage) {
838 millivolt = parse_voltage(voltage);
839 free(voltage);
uwe8d342eb2011-07-28 08:13:25 +0000840 if (millivolt < 0)
hailfingerf76cc322010-11-09 22:00:31 +0000841 return 1;
hailfingerf76cc322010-11-09 22:00:31 +0000842 msg_pinfo("Setting voltage to %i mV\n", millivolt);
843 }
David Hendricksfe05e742015-08-15 17:29:39 -0700844
845 device = extract_programmer_param("device");
846 if (device) {
847 char *dev_suffix;
848 errno = 0;
849 usedevice = strtol(device, &dev_suffix, 10);
850 if (errno != 0 || device == dev_suffix) {
851 msg_perr("Error: Could not convert 'device'.\n");
852 free(device);
Simon Glassd01002b2015-01-08 05:44:16 -0700853 return 1;
854 }
David Hendricksfe05e742015-08-15 17:29:39 -0700855 if (usedevice < 0 || usedevice > UINT_MAX) {
856 msg_perr("Error: Value for 'device' is out of range.\n");
857 free(device);
858 return 1;
859 }
860 if (strlen(dev_suffix) > 0) {
861 msg_perr("Error: Garbage following 'device' value.\n");
862 free(device);
863 return 1;
864 }
865 msg_pinfo("Using device %li.\n", usedevice);
Simon Glassd01002b2015-01-08 05:44:16 -0700866 }
David Hendricksfe05e742015-08-15 17:29:39 -0700867 free(device);
868
869 target_str = extract_programmer_param("target");
870 if (target_str) {
871 char *target_suffix;
872 errno = 0;
873 target = strtol(target_str, &target_suffix, 10);
874 if (errno != 0 || target_str == target_suffix) {
875 msg_perr("Error: Could not convert 'target'.\n");
876 free(target_str);
877 return 1;
878 }
879 if (target < 1 || target > 2) {
880 msg_perr("Error: Value for 'target' is out of range.\n");
881 free(target_str);
882 return 1;
883 }
884 if (strlen(target_suffix) > 0) {
885 msg_perr("Error: Garbage following 'target' value.\n");
886 free(target_str);
887 return 1;
888 }
889 msg_pinfo("Using target %li.\n", target);
890 }
891 free(target_str);
hailfingerf76cc322010-11-09 22:00:31 +0000892
hailfingerdfb32a02010-01-19 11:15:48 +0000893 /* Here comes the USB stuff. */
894 usb_init();
895 usb_find_busses();
896 usb_find_devices();
David Hendricksfe05e742015-08-15 17:29:39 -0700897 dev = get_device_by_vid_pid(0x0483, 0xdada, (unsigned int) usedevice);
hailfingerdfb32a02010-01-19 11:15:48 +0000898 if (!dev) {
899 msg_perr("Could not find a Dediprog SF100 on USB!\n");
900 return 1;
901 }
902 msg_pdbg("Found USB device (%04x:%04x).\n",
uwe8d342eb2011-07-28 08:13:25 +0000903 dev->descriptor.idVendor, dev->descriptor.idProduct);
hailfingerdfb32a02010-01-19 11:15:48 +0000904 dediprog_handle = usb_open(dev);
David Hendricksfe05e742015-08-15 17:29:39 -0700905 if (!dediprog_handle) {
906 msg_perr("Could not open USB device: %s\n", usb_strerror());
907 return 1;
908 }
hailfingerfb6287d2010-11-16 21:25:29 +0000909 ret = usb_set_configuration(dediprog_handle, 1);
910 if (ret < 0) {
911 msg_perr("Could not set USB device configuration: %i %s\n",
912 ret, usb_strerror());
913 if (usb_close(dediprog_handle))
914 msg_perr("Could not close USB device!\n");
915 return 1;
916 }
917 ret = usb_claim_interface(dediprog_handle, 0);
918 if (ret < 0) {
919 msg_perr("Could not claim USB device interface %i: %i %s\n",
920 0, ret, usb_strerror());
921 if (usb_close(dediprog_handle))
922 msg_perr("Could not close USB device!\n");
923 return 1;
924 }
David Hendricksfe05e742015-08-15 17:29:39 -0700925
dhendrix0ffc2eb2011-06-14 01:35:36 +0000926 if (register_shutdown(dediprog_shutdown, NULL))
927 return 1;
928
David Hendricks28fbdfb2015-08-15 18:04:37 -0700929 /* Try reading the devicestring. If that fails and the device is old
930 * (FW < 6.0.0) then we need to try the "set voltage" command and then
931 * attempt to read the devicestring again. */
932 if (dediprog_check_devicestring()) {
933 if (dediprog_set_voltage())
934 return 1;
935 if (dediprog_check_devicestring())
936 return 1;
937 }
David Hendricksfe05e742015-08-15 17:29:39 -0700938
David Hendricksd7468582015-11-12 15:21:12 -0800939 /* SF100 firmware exposes only one endpoint for in/out, SF600 firmware
940 exposes separate endpoints for in and out. */
941 dediprog_in_endpoint = 2;
942 if (dediprog_devicetype == DEV_SF100)
943 dediprog_out_endpoint = 2;
944 else
945 dediprog_out_endpoint = 1;
946
947
David Hendricksfe05e742015-08-15 17:29:39 -0700948 /* Set all possible LEDs as soon as possible to indicate activity.
949 * Because knowing the firmware version is required to set the LEDs correctly we need to this after
950 * dediprog_setup() has queried the device and set dediprog_firmwareversion. */
951 dediprog_set_leds(LED_ALL);
952
953 /* Select target/socket, frequency and VCC. */
954 if (set_target_flash(FLASH_TYPE_APPLICATION_FLASH_1) ||
955 dediprog_set_spi_speed(spispeed_idx) ||
956 dediprog_set_spi_voltage(millivolt)) {
Simon Glasse53cc1d2015-01-08 05:48:51 -0700957 dediprog_set_leds(LED_ERROR);
hailfingerdfb32a02010-01-19 11:15:48 +0000958 return 1;
stepan4c06de72011-01-28 09:00:15 +0000959 }
hailfingerdfb32a02010-01-19 11:15:48 +0000960
David Hendricksfe05e742015-08-15 17:29:39 -0700961// register_spi_master(&spi_master_dediprog);
mkarcherd264e9e2011-05-11 17:07:07 +0000962 register_spi_programmer(&spi_programmer_dediprog);
hailfingerdfb32a02010-01-19 11:15:48 +0000963
David Hendricksfe05e742015-08-15 17:29:39 -0700964 dediprog_set_leds(LED_NONE);
stepan4c06de72011-01-28 09:00:15 +0000965
hailfingerdfb32a02010-01-19 11:15:48 +0000966 return 0;
967}
David Hendricksfe05e742015-08-15 17:29:39 -0700968