blob: e0f3dfc98e06b784132a73e1e715b69592b00adf [file] [log] [blame]
Tom Rini83d290c2018-05-06 17:58:06 -04001// SPDX-License-Identifier: GPL-2.0+
Hung-ying Tyan88364382013-05-15 18:27:28 +08002/*
3 * Chromium OS cros_ec driver
4 *
5 * Copyright (c) 2012 The Chromium OS Authors.
Hung-ying Tyan88364382013-05-15 18:27:28 +08006 */
7
8/*
Simon Glass836bb6e2014-02-27 13:26:07 -07009 * This is the interface to the Chrome OS EC. It provides keyboard functions,
10 * power control and battery management. Quite a few other functions are
11 * provided to enable the EC software to be updated, talk to the EC's I2C bus
12 * and store a small amount of data in a memory which persists while the EC
13 * is not reset.
Hung-ying Tyan88364382013-05-15 18:27:28 +080014 */
15
Simon Glassac806522018-11-06 15:21:19 -070016#define LOG_CATEGORY UCLASS_CROS_EC
17
Hung-ying Tyan88364382013-05-15 18:27:28 +080018#include <common.h>
19#include <command.h>
Simon Glass84d6cbd2014-10-13 23:42:14 -060020#include <dm.h>
Hung-ying Tyan88364382013-05-15 18:27:28 +080021#include <i2c.h>
22#include <cros_ec.h>
23#include <fdtdec.h>
24#include <malloc.h>
25#include <spi.h>
Masahiro Yamada1221ce42016-09-21 11:28:55 +090026#include <linux/errno.h>
Hung-ying Tyan88364382013-05-15 18:27:28 +080027#include <asm/io.h>
28#include <asm-generic/gpio.h>
Simon Glass84d6cbd2014-10-13 23:42:14 -060029#include <dm/device-internal.h>
Simon Glass2ec9d172017-05-18 20:09:23 -060030#include <dm/of_extra.h>
Simon Glass84d6cbd2014-10-13 23:42:14 -060031#include <dm/uclass-internal.h>
Hung-ying Tyan88364382013-05-15 18:27:28 +080032
33#ifdef DEBUG_TRACE
34#define debug_trace(fmt, b...) debug(fmt, #b)
35#else
36#define debug_trace(fmt, b...)
37#endif
38
39enum {
40 /* Timeout waiting for a flash erase command to complete */
41 CROS_EC_CMD_TIMEOUT_MS = 5000,
42 /* Timeout waiting for a synchronous hash to be recomputed */
43 CROS_EC_CMD_HASH_TIMEOUT_MS = 2000,
44};
45
Hung-ying Tyan88364382013-05-15 18:27:28 +080046void cros_ec_dump_data(const char *name, int cmd, const uint8_t *data, int len)
47{
48#ifdef DEBUG
49 int i;
50
51 printf("%s: ", name);
52 if (cmd != -1)
53 printf("cmd=%#x: ", cmd);
54 for (i = 0; i < len; i++)
55 printf("%02x ", data[i]);
56 printf("\n");
57#endif
58}
59
60/*
61 * Calculate a simple 8-bit checksum of a data block
62 *
63 * @param data Data block to checksum
64 * @param size Size of data block in bytes
65 * @return checksum value (0 to 255)
66 */
67int cros_ec_calc_checksum(const uint8_t *data, int size)
68{
69 int csum, i;
70
71 for (i = csum = 0; i < size; i++)
72 csum += data[i];
73 return csum & 0xff;
74}
75
Simon Glass2d8ede52014-02-27 13:26:09 -070076/**
77 * Create a request packet for protocol version 3.
78 *
79 * The packet is stored in the device's internal output buffer.
80 *
81 * @param dev CROS-EC device
82 * @param cmd Command to send (EC_CMD_...)
83 * @param cmd_version Version of command to send (EC_VER_...)
84 * @param dout Output data (may be NULL If dout_len=0)
85 * @param dout_len Size of output data in bytes
86 * @return packet size in bytes, or <0 if error.
87 */
Simon Glass6322a7b2018-10-01 12:22:22 -060088static int create_proto3_request(struct cros_ec_dev *cdev,
Simon Glass2d8ede52014-02-27 13:26:09 -070089 int cmd, int cmd_version,
90 const void *dout, int dout_len)
91{
Simon Glass6322a7b2018-10-01 12:22:22 -060092 struct ec_host_request *rq = (struct ec_host_request *)cdev->dout;
Simon Glass2d8ede52014-02-27 13:26:09 -070093 int out_bytes = dout_len + sizeof(*rq);
94
95 /* Fail if output size is too big */
Simon Glass6322a7b2018-10-01 12:22:22 -060096 if (out_bytes > (int)sizeof(cdev->dout)) {
Simon Glass2d8ede52014-02-27 13:26:09 -070097 debug("%s: Cannot send %d bytes\n", __func__, dout_len);
98 return -EC_RES_REQUEST_TRUNCATED;
99 }
100
101 /* Fill in request packet */
102 rq->struct_version = EC_HOST_REQUEST_VERSION;
103 rq->checksum = 0;
104 rq->command = cmd;
105 rq->command_version = cmd_version;
106 rq->reserved = 0;
107 rq->data_len = dout_len;
108
109 /* Copy data after header */
110 memcpy(rq + 1, dout, dout_len);
111
112 /* Write checksum field so the entire packet sums to 0 */
Simon Glass6322a7b2018-10-01 12:22:22 -0600113 rq->checksum = (uint8_t)(-cros_ec_calc_checksum(cdev->dout, out_bytes));
Simon Glass2d8ede52014-02-27 13:26:09 -0700114
Simon Glass6322a7b2018-10-01 12:22:22 -0600115 cros_ec_dump_data("out", cmd, cdev->dout, out_bytes);
Simon Glass2d8ede52014-02-27 13:26:09 -0700116
117 /* Return size of request packet */
118 return out_bytes;
119}
120
121/**
122 * Prepare the device to receive a protocol version 3 response.
123 *
124 * @param dev CROS-EC device
125 * @param din_len Maximum size of response in bytes
126 * @return maximum expected number of bytes in response, or <0 if error.
127 */
Simon Glass6322a7b2018-10-01 12:22:22 -0600128static int prepare_proto3_response_buffer(struct cros_ec_dev *cdev, int din_len)
Simon Glass2d8ede52014-02-27 13:26:09 -0700129{
130 int in_bytes = din_len + sizeof(struct ec_host_response);
131
132 /* Fail if input size is too big */
Simon Glass6322a7b2018-10-01 12:22:22 -0600133 if (in_bytes > (int)sizeof(cdev->din)) {
Simon Glass2d8ede52014-02-27 13:26:09 -0700134 debug("%s: Cannot receive %d bytes\n", __func__, din_len);
135 return -EC_RES_RESPONSE_TOO_BIG;
136 }
137
138 /* Return expected size of response packet */
139 return in_bytes;
140}
141
142/**
143 * Handle a protocol version 3 response packet.
144 *
145 * The packet must already be stored in the device's internal input buffer.
146 *
147 * @param dev CROS-EC device
148 * @param dinp Returns pointer to response data
149 * @param din_len Maximum size of response in bytes
Simon Glass8bbb38b2015-01-25 08:27:17 -0700150 * @return number of bytes of response data, or <0 if error. Note that error
151 * codes can be from errno.h or -ve EC_RES_INVALID_CHECKSUM values (and they
152 * overlap!)
Simon Glass2d8ede52014-02-27 13:26:09 -0700153 */
154static int handle_proto3_response(struct cros_ec_dev *dev,
155 uint8_t **dinp, int din_len)
156{
157 struct ec_host_response *rs = (struct ec_host_response *)dev->din;
158 int in_bytes;
159 int csum;
160
161 cros_ec_dump_data("in-header", -1, dev->din, sizeof(*rs));
162
163 /* Check input data */
164 if (rs->struct_version != EC_HOST_RESPONSE_VERSION) {
165 debug("%s: EC response version mismatch\n", __func__);
166 return -EC_RES_INVALID_RESPONSE;
167 }
168
169 if (rs->reserved) {
170 debug("%s: EC response reserved != 0\n", __func__);
171 return -EC_RES_INVALID_RESPONSE;
172 }
173
174 if (rs->data_len > din_len) {
175 debug("%s: EC returned too much data\n", __func__);
176 return -EC_RES_RESPONSE_TOO_BIG;
177 }
178
179 cros_ec_dump_data("in-data", -1, dev->din + sizeof(*rs), rs->data_len);
180
181 /* Update in_bytes to actual data size */
182 in_bytes = sizeof(*rs) + rs->data_len;
183
184 /* Verify checksum */
185 csum = cros_ec_calc_checksum(dev->din, in_bytes);
186 if (csum) {
187 debug("%s: EC response checksum invalid: 0x%02x\n", __func__,
188 csum);
189 return -EC_RES_INVALID_CHECKSUM;
190 }
191
192 /* Return error result, if any */
193 if (rs->result)
194 return -(int)rs->result;
195
196 /* If we're still here, set response data pointer and return length */
197 *dinp = (uint8_t *)(rs + 1);
198
199 return rs->data_len;
200}
201
Simon Glass6322a7b2018-10-01 12:22:22 -0600202static int send_command_proto3(struct cros_ec_dev *cdev,
Simon Glass2d8ede52014-02-27 13:26:09 -0700203 int cmd, int cmd_version,
204 const void *dout, int dout_len,
205 uint8_t **dinp, int din_len)
206{
Simon Glass84d6cbd2014-10-13 23:42:14 -0600207 struct dm_cros_ec_ops *ops;
Simon Glass2d8ede52014-02-27 13:26:09 -0700208 int out_bytes, in_bytes;
209 int rv;
210
211 /* Create request packet */
Simon Glass6322a7b2018-10-01 12:22:22 -0600212 out_bytes = create_proto3_request(cdev, cmd, cmd_version,
Simon Glass2d8ede52014-02-27 13:26:09 -0700213 dout, dout_len);
214 if (out_bytes < 0)
215 return out_bytes;
216
217 /* Prepare response buffer */
Simon Glass6322a7b2018-10-01 12:22:22 -0600218 in_bytes = prepare_proto3_response_buffer(cdev, din_len);
Simon Glass2d8ede52014-02-27 13:26:09 -0700219 if (in_bytes < 0)
220 return in_bytes;
221
Simon Glass6322a7b2018-10-01 12:22:22 -0600222 ops = dm_cros_ec_get_ops(cdev->dev);
223 rv = ops->packet ? ops->packet(cdev->dev, out_bytes, in_bytes) :
224 -ENOSYS;
Simon Glass2d8ede52014-02-27 13:26:09 -0700225 if (rv < 0)
226 return rv;
227
228 /* Process the response */
Simon Glass6322a7b2018-10-01 12:22:22 -0600229 return handle_proto3_response(cdev, dinp, din_len);
Simon Glass2d8ede52014-02-27 13:26:09 -0700230}
231
Simon Glass9fea76f2018-11-06 15:21:18 -0700232static int send_command(struct cros_ec_dev *dev, uint cmd, int cmd_version,
Hung-ying Tyan88364382013-05-15 18:27:28 +0800233 const void *dout, int dout_len,
234 uint8_t **dinp, int din_len)
235{
Simon Glass84d6cbd2014-10-13 23:42:14 -0600236 struct dm_cros_ec_ops *ops;
Simon Glass2d8ede52014-02-27 13:26:09 -0700237 int ret = -1;
238
239 /* Handle protocol version 3 support */
240 if (dev->protocol_version == 3) {
241 return send_command_proto3(dev, cmd, cmd_version,
242 dout, dout_len, dinp, din_len);
243 }
Hung-ying Tyan88364382013-05-15 18:27:28 +0800244
Simon Glass84d6cbd2014-10-13 23:42:14 -0600245 ops = dm_cros_ec_get_ops(dev->dev);
246 ret = ops->command(dev->dev, cmd, cmd_version,
247 (const uint8_t *)dout, dout_len, dinp, din_len);
Hung-ying Tyan88364382013-05-15 18:27:28 +0800248
249 return ret;
250}
251
252/**
253 * Send a command to the CROS-EC device and return the reply.
254 *
255 * The device's internal input/output buffers are used.
256 *
257 * @param dev CROS-EC device
258 * @param cmd Command to send (EC_CMD_...)
259 * @param cmd_version Version of command to send (EC_VER_...)
260 * @param dout Output data (may be NULL If dout_len=0)
261 * @param dout_len Size of output data in bytes
262 * @param dinp Response data (may be NULL If din_len=0).
263 * If not NULL, it will be updated to point to the data
264 * and will always be double word aligned (64-bits)
265 * @param din_len Maximum size of response in bytes
Simon Glass8bbb38b2015-01-25 08:27:17 -0700266 * @return number of bytes in response, or -ve on error
Hung-ying Tyan88364382013-05-15 18:27:28 +0800267 */
Simon Glass6322a7b2018-10-01 12:22:22 -0600268static int ec_command_inptr(struct udevice *dev, uint8_t cmd,
Simon Glasse6c5c942018-10-01 12:22:08 -0600269 int cmd_version, const void *dout, int dout_len,
270 uint8_t **dinp, int din_len)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800271{
Simon Glass6322a7b2018-10-01 12:22:22 -0600272 struct cros_ec_dev *cdev = dev_get_uclass_priv(dev);
Simon Glass2ab83f02014-02-27 13:26:11 -0700273 uint8_t *din = NULL;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800274 int len;
275
Simon Glass6322a7b2018-10-01 12:22:22 -0600276 len = send_command(cdev, cmd, cmd_version, dout, dout_len, &din,
277 din_len);
Hung-ying Tyan88364382013-05-15 18:27:28 +0800278
279 /* If the command doesn't complete, wait a while */
280 if (len == -EC_RES_IN_PROGRESS) {
Simon Glass2ab83f02014-02-27 13:26:11 -0700281 struct ec_response_get_comms_status *resp = NULL;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800282 ulong start;
283
284 /* Wait for command to complete */
285 start = get_timer(0);
286 do {
287 int ret;
288
289 mdelay(50); /* Insert some reasonable delay */
Simon Glass6322a7b2018-10-01 12:22:22 -0600290 ret = send_command(cdev, EC_CMD_GET_COMMS_STATUS, 0,
291 NULL, 0,
292 (uint8_t **)&resp, sizeof(*resp));
Hung-ying Tyan88364382013-05-15 18:27:28 +0800293 if (ret < 0)
294 return ret;
295
296 if (get_timer(start) > CROS_EC_CMD_TIMEOUT_MS) {
297 debug("%s: Command %#02x timeout\n",
298 __func__, cmd);
299 return -EC_RES_TIMEOUT;
300 }
301 } while (resp->flags & EC_COMMS_STATUS_PROCESSING);
302
303 /* OK it completed, so read the status response */
304 /* not sure why it was 0 for the last argument */
Simon Glass6322a7b2018-10-01 12:22:22 -0600305 len = send_command(cdev, EC_CMD_RESEND_RESPONSE, 0, NULL, 0,
306 &din, din_len);
Hung-ying Tyan88364382013-05-15 18:27:28 +0800307 }
308
Simon Glasse907bf22017-05-18 20:09:22 -0600309 debug("%s: len=%d, din=%p\n", __func__, len, din);
Hung-ying Tyan88364382013-05-15 18:27:28 +0800310 if (dinp) {
311 /* If we have any data to return, it must be 64bit-aligned */
312 assert(len <= 0 || !((uintptr_t)din & 7));
313 *dinp = din;
314 }
315
316 return len;
317}
318
319/**
320 * Send a command to the CROS-EC device and return the reply.
321 *
322 * The device's internal input/output buffers are used.
323 *
324 * @param dev CROS-EC device
325 * @param cmd Command to send (EC_CMD_...)
326 * @param cmd_version Version of command to send (EC_VER_...)
327 * @param dout Output data (may be NULL If dout_len=0)
328 * @param dout_len Size of output data in bytes
329 * @param din Response data (may be NULL If din_len=0).
330 * It not NULL, it is a place for ec_command() to copy the
331 * data to.
332 * @param din_len Maximum size of response in bytes
Simon Glass8bbb38b2015-01-25 08:27:17 -0700333 * @return number of bytes in response, or -ve on error
Hung-ying Tyan88364382013-05-15 18:27:28 +0800334 */
Simon Glass9fea76f2018-11-06 15:21:18 -0700335static int ec_command(struct udevice *dev, uint cmd, int cmd_version,
Hung-ying Tyan88364382013-05-15 18:27:28 +0800336 const void *dout, int dout_len,
337 void *din, int din_len)
338{
339 uint8_t *in_buffer;
340 int len;
341
342 assert((din_len == 0) || din);
343 len = ec_command_inptr(dev, cmd, cmd_version, dout, dout_len,
Simon Glass6322a7b2018-10-01 12:22:22 -0600344 &in_buffer, din_len);
Hung-ying Tyan88364382013-05-15 18:27:28 +0800345 if (len > 0) {
346 /*
347 * If we were asked to put it somewhere, do so, otherwise just
348 * disregard the result.
349 */
350 if (din && in_buffer) {
351 assert(len <= din_len);
352 memmove(din, in_buffer, len);
353 }
354 }
355 return len;
356}
357
Simon Glass745009c2015-10-18 21:17:14 -0600358int cros_ec_scan_keyboard(struct udevice *dev, struct mbkp_keyscan *scan)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800359{
Simon Glass6322a7b2018-10-01 12:22:22 -0600360 if (ec_command(dev, EC_CMD_MKBP_STATE, 0, NULL, 0, scan,
Simon Glass2ab83f02014-02-27 13:26:11 -0700361 sizeof(scan->data)) != sizeof(scan->data))
Hung-ying Tyan88364382013-05-15 18:27:28 +0800362 return -1;
363
364 return 0;
365}
366
Simon Glass6322a7b2018-10-01 12:22:22 -0600367int cros_ec_read_id(struct udevice *dev, char *id, int maxlen)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800368{
369 struct ec_response_get_version *r;
Simon Glassac806522018-11-06 15:21:19 -0700370 int ret;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800371
Simon Glassac806522018-11-06 15:21:19 -0700372 ret = ec_command_inptr(dev, EC_CMD_GET_VERSION, 0, NULL, 0,
373 (uint8_t **)&r, sizeof(*r));
374 if (ret != sizeof(*r)) {
375 log_err("Got rc %d, expected %d\n", ret, sizeof(*r));
Hung-ying Tyan88364382013-05-15 18:27:28 +0800376 return -1;
Simon Glassac806522018-11-06 15:21:19 -0700377 }
Hung-ying Tyan88364382013-05-15 18:27:28 +0800378
Simon Glass2ab83f02014-02-27 13:26:11 -0700379 if (maxlen > (int)sizeof(r->version_string_ro))
Hung-ying Tyan88364382013-05-15 18:27:28 +0800380 maxlen = sizeof(r->version_string_ro);
381
382 switch (r->current_image) {
383 case EC_IMAGE_RO:
384 memcpy(id, r->version_string_ro, maxlen);
385 break;
386 case EC_IMAGE_RW:
387 memcpy(id, r->version_string_rw, maxlen);
388 break;
389 default:
Simon Glassac806522018-11-06 15:21:19 -0700390 log_err("Invalid EC image %d\n", r->current_image);
Hung-ying Tyan88364382013-05-15 18:27:28 +0800391 return -1;
392 }
393
394 id[maxlen - 1] = '\0';
395 return 0;
396}
397
Simon Glass6322a7b2018-10-01 12:22:22 -0600398int cros_ec_read_version(struct udevice *dev,
399 struct ec_response_get_version **versionp)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800400{
401 if (ec_command_inptr(dev, EC_CMD_GET_VERSION, 0, NULL, 0,
402 (uint8_t **)versionp, sizeof(**versionp))
Simon Glass2ab83f02014-02-27 13:26:11 -0700403 != sizeof(**versionp))
Hung-ying Tyan88364382013-05-15 18:27:28 +0800404 return -1;
405
406 return 0;
407}
408
Simon Glass6322a7b2018-10-01 12:22:22 -0600409int cros_ec_read_build_info(struct udevice *dev, char **strp)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800410{
411 if (ec_command_inptr(dev, EC_CMD_GET_BUILD_INFO, 0, NULL, 0,
Simon Glass836bb6e2014-02-27 13:26:07 -0700412 (uint8_t **)strp, EC_PROTO2_MAX_PARAM_SIZE) < 0)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800413 return -1;
414
415 return 0;
416}
417
Simon Glass6322a7b2018-10-01 12:22:22 -0600418int cros_ec_read_current_image(struct udevice *dev,
Simon Glasse6c5c942018-10-01 12:22:08 -0600419 enum ec_current_image *image)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800420{
421 struct ec_response_get_version *r;
422
423 if (ec_command_inptr(dev, EC_CMD_GET_VERSION, 0, NULL, 0,
Simon Glass2ab83f02014-02-27 13:26:11 -0700424 (uint8_t **)&r, sizeof(*r)) != sizeof(*r))
Hung-ying Tyan88364382013-05-15 18:27:28 +0800425 return -1;
426
427 *image = r->current_image;
428 return 0;
429}
430
Simon Glass6322a7b2018-10-01 12:22:22 -0600431static int cros_ec_wait_on_hash_done(struct udevice *dev,
Simon Glasse6c5c942018-10-01 12:22:08 -0600432 struct ec_response_vboot_hash *hash)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800433{
434 struct ec_params_vboot_hash p;
435 ulong start;
436
437 start = get_timer(0);
438 while (hash->status == EC_VBOOT_HASH_STATUS_BUSY) {
439 mdelay(50); /* Insert some reasonable delay */
440
441 p.cmd = EC_VBOOT_HASH_GET;
442 if (ec_command(dev, EC_CMD_VBOOT_HASH, 0, &p, sizeof(p),
443 hash, sizeof(*hash)) < 0)
444 return -1;
445
446 if (get_timer(start) > CROS_EC_CMD_HASH_TIMEOUT_MS) {
447 debug("%s: EC_VBOOT_HASH_GET timeout\n", __func__);
448 return -EC_RES_TIMEOUT;
449 }
450 }
451 return 0;
452}
453
Simon Glassa12ef7e2018-10-01 12:22:38 -0600454int cros_ec_read_hash(struct udevice *dev, uint hash_offset,
455 struct ec_response_vboot_hash *hash)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800456{
457 struct ec_params_vboot_hash p;
458 int rv;
459
460 p.cmd = EC_VBOOT_HASH_GET;
Simon Glassa12ef7e2018-10-01 12:22:38 -0600461 p.offset = hash_offset;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800462 if (ec_command(dev, EC_CMD_VBOOT_HASH, 0, &p, sizeof(p),
463 hash, sizeof(*hash)) < 0)
464 return -1;
465
466 /* If the EC is busy calculating the hash, fidget until it's done. */
467 rv = cros_ec_wait_on_hash_done(dev, hash);
468 if (rv)
469 return rv;
470
471 /* If the hash is valid, we're done. Otherwise, we have to kick it off
472 * again and wait for it to complete. Note that we explicitly assume
473 * that hashing zero bytes is always wrong, even though that would
474 * produce a valid hash value. */
475 if (hash->status == EC_VBOOT_HASH_STATUS_DONE && hash->size)
476 return 0;
477
478 debug("%s: No valid hash (status=%d size=%d). Compute one...\n",
479 __func__, hash->status, hash->size);
480
Simon Glass836bb6e2014-02-27 13:26:07 -0700481 p.cmd = EC_VBOOT_HASH_START;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800482 p.hash_type = EC_VBOOT_HASH_TYPE_SHA256;
483 p.nonce_size = 0;
Simon Glassa12ef7e2018-10-01 12:22:38 -0600484 p.offset = hash_offset;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800485
486 if (ec_command(dev, EC_CMD_VBOOT_HASH, 0, &p, sizeof(p),
487 hash, sizeof(*hash)) < 0)
488 return -1;
489
490 rv = cros_ec_wait_on_hash_done(dev, hash);
491 if (rv)
492 return rv;
493
494 debug("%s: hash done\n", __func__);
495
496 return 0;
497}
498
Simon Glass6322a7b2018-10-01 12:22:22 -0600499static int cros_ec_invalidate_hash(struct udevice *dev)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800500{
501 struct ec_params_vboot_hash p;
502 struct ec_response_vboot_hash *hash;
503
504 /* We don't have an explict command for the EC to discard its current
505 * hash value, so we'll just tell it to calculate one that we know is
506 * wrong (we claim that hashing zero bytes is always invalid).
507 */
508 p.cmd = EC_VBOOT_HASH_RECALC;
509 p.hash_type = EC_VBOOT_HASH_TYPE_SHA256;
510 p.nonce_size = 0;
511 p.offset = 0;
512 p.size = 0;
513
514 debug("%s:\n", __func__);
515
516 if (ec_command_inptr(dev, EC_CMD_VBOOT_HASH, 0, &p, sizeof(p),
517 (uint8_t **)&hash, sizeof(*hash)) < 0)
518 return -1;
519
520 /* No need to wait for it to finish */
521 return 0;
522}
523
Simon Glass6322a7b2018-10-01 12:22:22 -0600524int cros_ec_reboot(struct udevice *dev, enum ec_reboot_cmd cmd, uint8_t flags)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800525{
526 struct ec_params_reboot_ec p;
527
528 p.cmd = cmd;
529 p.flags = flags;
530
531 if (ec_command_inptr(dev, EC_CMD_REBOOT_EC, 0, &p, sizeof(p), NULL, 0)
532 < 0)
533 return -1;
534
535 if (!(flags & EC_REBOOT_FLAG_ON_AP_SHUTDOWN)) {
536 /*
537 * EC reboot will take place immediately so delay to allow it
538 * to complete. Note that some reboot types (EC_REBOOT_COLD)
539 * will reboot the AP as well, in which case we won't actually
540 * get to this point.
541 */
542 /*
543 * TODO(rspangler@chromium.org): Would be nice if we had a
544 * better way to determine when the reboot is complete. Could
545 * we poll a memory-mapped LPC value?
546 */
547 udelay(50000);
548 }
549
550 return 0;
551}
552
Simon Glass745009c2015-10-18 21:17:14 -0600553int cros_ec_interrupt_pending(struct udevice *dev)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800554{
Simon Glass745009c2015-10-18 21:17:14 -0600555 struct cros_ec_dev *cdev = dev_get_uclass_priv(dev);
556
Hung-ying Tyan88364382013-05-15 18:27:28 +0800557 /* no interrupt support : always poll */
Simon Glass745009c2015-10-18 21:17:14 -0600558 if (!dm_gpio_is_valid(&cdev->ec_int))
Simon Glass2ab83f02014-02-27 13:26:11 -0700559 return -ENOENT;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800560
Simon Glass745009c2015-10-18 21:17:14 -0600561 return dm_gpio_get_value(&cdev->ec_int);
Hung-ying Tyan88364382013-05-15 18:27:28 +0800562}
563
Simon Glass6322a7b2018-10-01 12:22:22 -0600564int cros_ec_info(struct udevice *dev, struct ec_response_mkbp_info *info)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800565{
Simon Glass836bb6e2014-02-27 13:26:07 -0700566 if (ec_command(dev, EC_CMD_MKBP_INFO, 0, NULL, 0, info,
Simon Glass2ab83f02014-02-27 13:26:11 -0700567 sizeof(*info)) != sizeof(*info))
Hung-ying Tyan88364382013-05-15 18:27:28 +0800568 return -1;
569
570 return 0;
571}
572
Simon Glass6322a7b2018-10-01 12:22:22 -0600573int cros_ec_get_host_events(struct udevice *dev, uint32_t *events_ptr)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800574{
575 struct ec_response_host_event_mask *resp;
576
577 /*
578 * Use the B copy of the event flags, because the main copy is already
579 * used by ACPI/SMI.
580 */
581 if (ec_command_inptr(dev, EC_CMD_HOST_EVENT_GET_B, 0, NULL, 0,
Simon Glass2ab83f02014-02-27 13:26:11 -0700582 (uint8_t **)&resp, sizeof(*resp)) < (int)sizeof(*resp))
Hung-ying Tyan88364382013-05-15 18:27:28 +0800583 return -1;
584
585 if (resp->mask & EC_HOST_EVENT_MASK(EC_HOST_EVENT_INVALID))
586 return -1;
587
588 *events_ptr = resp->mask;
589 return 0;
590}
591
Simon Glass6322a7b2018-10-01 12:22:22 -0600592int cros_ec_clear_host_events(struct udevice *dev, uint32_t events)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800593{
594 struct ec_params_host_event_mask params;
595
596 params.mask = events;
597
598 /*
599 * Use the B copy of the event flags, so it affects the data returned
600 * by cros_ec_get_host_events().
601 */
602 if (ec_command_inptr(dev, EC_CMD_HOST_EVENT_CLEAR_B, 0,
603 &params, sizeof(params), NULL, 0) < 0)
604 return -1;
605
606 return 0;
607}
608
Simon Glass6322a7b2018-10-01 12:22:22 -0600609int cros_ec_flash_protect(struct udevice *dev, uint32_t set_mask,
610 uint32_t set_flags,
Simon Glasse6c5c942018-10-01 12:22:08 -0600611 struct ec_response_flash_protect *resp)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800612{
613 struct ec_params_flash_protect params;
614
615 params.mask = set_mask;
616 params.flags = set_flags;
617
618 if (ec_command(dev, EC_CMD_FLASH_PROTECT, EC_VER_FLASH_PROTECT,
619 &params, sizeof(params),
Simon Glass2ab83f02014-02-27 13:26:11 -0700620 resp, sizeof(*resp)) != sizeof(*resp))
Hung-ying Tyan88364382013-05-15 18:27:28 +0800621 return -1;
622
623 return 0;
624}
625
Simon Glass6322a7b2018-10-01 12:22:22 -0600626static int cros_ec_check_version(struct udevice *dev)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800627{
Simon Glass6322a7b2018-10-01 12:22:22 -0600628 struct cros_ec_dev *cdev = dev_get_uclass_priv(dev);
Hung-ying Tyan88364382013-05-15 18:27:28 +0800629 struct ec_params_hello req;
630 struct ec_response_hello *resp;
631
Simon Glass72a38e02015-03-26 09:29:30 -0600632 struct dm_cros_ec_ops *ops;
633 int ret;
634
Simon Glass6322a7b2018-10-01 12:22:22 -0600635 ops = dm_cros_ec_get_ops(dev);
Simon Glass72a38e02015-03-26 09:29:30 -0600636 if (ops->check_version) {
Simon Glass6322a7b2018-10-01 12:22:22 -0600637 ret = ops->check_version(dev);
Simon Glass72a38e02015-03-26 09:29:30 -0600638 if (ret)
639 return ret;
640 }
Hung-ying Tyan88364382013-05-15 18:27:28 +0800641
642 /*
643 * TODO(sjg@chromium.org).
644 * There is a strange oddity here with the EC. We could just ignore
645 * the response, i.e. pass the last two parameters as NULL and 0.
646 * In this case we won't read back very many bytes from the EC.
647 * On the I2C bus the EC gets upset about this and will try to send
648 * the bytes anyway. This means that we will have to wait for that
649 * to complete before continuing with a new EC command.
650 *
651 * This problem is probably unique to the I2C bus.
652 *
653 * So for now, just read all the data anyway.
654 */
Randall Spanglere8c12662014-02-27 13:26:08 -0700655
Randall Spanglera6070282014-02-27 13:26:10 -0700656 /* Try sending a version 3 packet */
Simon Glass6322a7b2018-10-01 12:22:22 -0600657 cdev->protocol_version = 3;
Simon Glassd11e8fd2014-11-11 18:06:30 -0700658 req.in_data = 0;
Randall Spanglera6070282014-02-27 13:26:10 -0700659 if (ec_command_inptr(dev, EC_CMD_HELLO, 0, &req, sizeof(req),
Simon Glass9fea76f2018-11-06 15:21:18 -0700660 (uint8_t **)&resp, sizeof(*resp)) > 0)
Randall Spanglera6070282014-02-27 13:26:10 -0700661 return 0;
Randall Spanglera6070282014-02-27 13:26:10 -0700662
Randall Spanglere8c12662014-02-27 13:26:08 -0700663 /* Try sending a version 2 packet */
Simon Glass6322a7b2018-10-01 12:22:22 -0600664 cdev->protocol_version = 2;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800665 if (ec_command_inptr(dev, EC_CMD_HELLO, 0, &req, sizeof(req),
Simon Glass9fea76f2018-11-06 15:21:18 -0700666 (uint8_t **)&resp, sizeof(*resp)) > 0)
Randall Spanglere8c12662014-02-27 13:26:08 -0700667 return 0;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800668
Randall Spanglere8c12662014-02-27 13:26:08 -0700669 /*
670 * Fail if we're still here, since the EC doesn't understand any
671 * protcol version we speak. Version 1 interface without command
672 * version is no longer supported, and we don't know about any new
673 * protocol versions.
674 */
Simon Glass6322a7b2018-10-01 12:22:22 -0600675 cdev->protocol_version = 0;
Randall Spanglere8c12662014-02-27 13:26:08 -0700676 printf("%s: ERROR: old EC interface not supported\n", __func__);
677 return -1;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800678}
679
Simon Glass6322a7b2018-10-01 12:22:22 -0600680int cros_ec_test(struct udevice *dev)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800681{
682 struct ec_params_hello req;
683 struct ec_response_hello *resp;
684
685 req.in_data = 0x12345678;
686 if (ec_command_inptr(dev, EC_CMD_HELLO, 0, &req, sizeof(req),
687 (uint8_t **)&resp, sizeof(*resp)) < sizeof(*resp)) {
688 printf("ec_command_inptr() returned error\n");
689 return -1;
690 }
691 if (resp->out_data != req.in_data + 0x01020304) {
692 printf("Received invalid handshake %x\n", resp->out_data);
693 return -1;
694 }
695
696 return 0;
697}
698
Simon Glass6322a7b2018-10-01 12:22:22 -0600699int cros_ec_flash_offset(struct udevice *dev, enum ec_flash_region region,
Hung-ying Tyan88364382013-05-15 18:27:28 +0800700 uint32_t *offset, uint32_t *size)
701{
702 struct ec_params_flash_region_info p;
703 struct ec_response_flash_region_info *r;
704 int ret;
705
706 p.region = region;
707 ret = ec_command_inptr(dev, EC_CMD_FLASH_REGION_INFO,
708 EC_VER_FLASH_REGION_INFO,
709 &p, sizeof(p), (uint8_t **)&r, sizeof(*r));
710 if (ret != sizeof(*r))
711 return -1;
712
713 if (offset)
714 *offset = r->offset;
715 if (size)
716 *size = r->size;
717
718 return 0;
719}
720
Simon Glass6322a7b2018-10-01 12:22:22 -0600721int cros_ec_flash_erase(struct udevice *dev, uint32_t offset, uint32_t size)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800722{
723 struct ec_params_flash_erase p;
724
725 p.offset = offset;
726 p.size = size;
727 return ec_command_inptr(dev, EC_CMD_FLASH_ERASE, 0, &p, sizeof(p),
728 NULL, 0);
729}
730
731/**
732 * Write a single block to the flash
733 *
734 * Write a block of data to the EC flash. The size must not exceed the flash
735 * write block size which you can obtain from cros_ec_flash_write_burst_size().
736 *
737 * The offset starts at 0. You can obtain the region information from
738 * cros_ec_flash_offset() to find out where to write for a particular region.
739 *
740 * Attempting to write to the region where the EC is currently running from
741 * will result in an error.
742 *
743 * @param dev CROS-EC device
744 * @param data Pointer to data buffer to write
745 * @param offset Offset within flash to write to.
746 * @param size Number of bytes to write
747 * @return 0 if ok, -1 on error
748 */
Simon Glass6322a7b2018-10-01 12:22:22 -0600749static int cros_ec_flash_write_block(struct udevice *dev, const uint8_t *data,
750 uint32_t offset, uint32_t size)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800751{
Moritz Fischerbae5b972016-09-12 12:57:52 -0700752 struct ec_params_flash_write *p;
753 int ret;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800754
Moritz Fischerbae5b972016-09-12 12:57:52 -0700755 p = malloc(sizeof(*p) + size);
756 if (!p)
757 return -ENOMEM;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800758
Moritz Fischerbae5b972016-09-12 12:57:52 -0700759 p->offset = offset;
760 p->size = size;
761 assert(data && p->size <= EC_FLASH_WRITE_VER0_SIZE);
762 memcpy(p + 1, data, p->size);
763
764 ret = ec_command_inptr(dev, EC_CMD_FLASH_WRITE, 0,
765 p, sizeof(*p) + size, NULL, 0) >= 0 ? 0 : -1;
766
767 free(p);
768
769 return ret;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800770}
771
772/**
773 * Return optimal flash write burst size
774 */
Simon Glass6322a7b2018-10-01 12:22:22 -0600775static int cros_ec_flash_write_burst_size(struct udevice *dev)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800776{
Simon Glass836bb6e2014-02-27 13:26:07 -0700777 return EC_FLASH_WRITE_VER0_SIZE;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800778}
779
780/**
781 * Check if a block of data is erased (all 0xff)
782 *
783 * This function is useful when dealing with flash, for checking whether a
784 * data block is erased and thus does not need to be programmed.
785 *
786 * @param data Pointer to data to check (must be word-aligned)
787 * @param size Number of bytes to check (must be word-aligned)
788 * @return 0 if erased, non-zero if any word is not erased
789 */
790static int cros_ec_data_is_erased(const uint32_t *data, int size)
791{
792 assert(!(size & 3));
793 size /= sizeof(uint32_t);
794 for (; size > 0; size -= 4, data++)
795 if (*data != -1U)
796 return 0;
797
798 return 1;
799}
800
Moritz Fischer281ca882016-09-13 14:44:48 -0700801/**
802 * Read back flash parameters
803 *
804 * This function reads back parameters of the flash as reported by the EC
805 *
806 * @param dev Pointer to device
807 * @param info Pointer to output flash info struct
808 */
Simon Glass6322a7b2018-10-01 12:22:22 -0600809int cros_ec_read_flashinfo(struct udevice *dev,
Simon Glasse6c5c942018-10-01 12:22:08 -0600810 struct ec_response_flash_info *info)
Moritz Fischer281ca882016-09-13 14:44:48 -0700811{
812 int ret;
813
814 ret = ec_command(dev, EC_CMD_FLASH_INFO, 0,
815 NULL, 0, info, sizeof(*info));
816 if (ret < 0)
817 return ret;
818
819 return ret < sizeof(*info) ? -1 : 0;
820}
821
Simon Glass6322a7b2018-10-01 12:22:22 -0600822int cros_ec_flash_write(struct udevice *dev, const uint8_t *data,
Simon Glasse6c5c942018-10-01 12:22:08 -0600823 uint32_t offset, uint32_t size)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800824{
Simon Glass6322a7b2018-10-01 12:22:22 -0600825 struct cros_ec_dev *cdev = dev_get_uclass_priv(dev);
Hung-ying Tyan88364382013-05-15 18:27:28 +0800826 uint32_t burst = cros_ec_flash_write_burst_size(dev);
827 uint32_t end, off;
828 int ret;
829
830 /*
831 * TODO: round up to the nearest multiple of write size. Can get away
832 * without that on link right now because its write size is 4 bytes.
833 */
834 end = offset + size;
835 for (off = offset; off < end; off += burst, data += burst) {
836 uint32_t todo;
837
838 /* If the data is empty, there is no point in programming it */
839 todo = min(end - off, burst);
Simon Glass6322a7b2018-10-01 12:22:22 -0600840 if (cdev->optimise_flash_write &&
Simon Glasse6c5c942018-10-01 12:22:08 -0600841 cros_ec_data_is_erased((uint32_t *)data, todo))
Hung-ying Tyan88364382013-05-15 18:27:28 +0800842 continue;
843
844 ret = cros_ec_flash_write_block(dev, data, off, todo);
845 if (ret)
846 return ret;
847 }
848
849 return 0;
850}
851
852/**
853 * Read a single block from the flash
854 *
855 * Read a block of data from the EC flash. The size must not exceed the flash
856 * write block size which you can obtain from cros_ec_flash_write_burst_size().
857 *
858 * The offset starts at 0. You can obtain the region information from
859 * cros_ec_flash_offset() to find out where to read for a particular region.
860 *
861 * @param dev CROS-EC device
862 * @param data Pointer to data buffer to read into
863 * @param offset Offset within flash to read from
864 * @param size Number of bytes to read
865 * @return 0 if ok, -1 on error
866 */
Simon Glass6322a7b2018-10-01 12:22:22 -0600867static int cros_ec_flash_read_block(struct udevice *dev, uint8_t *data,
Simon Glasse6c5c942018-10-01 12:22:08 -0600868 uint32_t offset, uint32_t size)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800869{
870 struct ec_params_flash_read p;
871
872 p.offset = offset;
873 p.size = size;
874
875 return ec_command(dev, EC_CMD_FLASH_READ, 0,
876 &p, sizeof(p), data, size) >= 0 ? 0 : -1;
877}
878
Simon Glass6322a7b2018-10-01 12:22:22 -0600879int cros_ec_flash_read(struct udevice *dev, uint8_t *data, uint32_t offset,
Simon Glasse6c5c942018-10-01 12:22:08 -0600880 uint32_t size)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800881{
882 uint32_t burst = cros_ec_flash_write_burst_size(dev);
883 uint32_t end, off;
884 int ret;
885
886 end = offset + size;
887 for (off = offset; off < end; off += burst, data += burst) {
888 ret = cros_ec_flash_read_block(dev, data, off,
889 min(end - off, burst));
890 if (ret)
891 return ret;
892 }
893
894 return 0;
895}
896
Simon Glass6322a7b2018-10-01 12:22:22 -0600897int cros_ec_flash_update_rw(struct udevice *dev, const uint8_t *image,
Simon Glasse6c5c942018-10-01 12:22:08 -0600898 int image_size)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800899{
900 uint32_t rw_offset, rw_size;
901 int ret;
902
Simon Glass6f1c0432018-10-01 12:22:36 -0600903 if (cros_ec_flash_offset(dev, EC_FLASH_REGION_ACTIVE, &rw_offset,
904 &rw_size))
Hung-ying Tyan88364382013-05-15 18:27:28 +0800905 return -1;
Simon Glass2ab83f02014-02-27 13:26:11 -0700906 if (image_size > (int)rw_size)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800907 return -1;
908
909 /* Invalidate the existing hash, just in case the AP reboots
910 * unexpectedly during the update. If that happened, the EC RW firmware
911 * would be invalid, but the EC would still have the original hash.
912 */
913 ret = cros_ec_invalidate_hash(dev);
914 if (ret)
915 return ret;
916
917 /*
918 * Erase the entire RW section, so that the EC doesn't see any garbage
919 * past the new image if it's smaller than the current image.
920 *
921 * TODO: could optimize this to erase just the current image, since
922 * presumably everything past that is 0xff's. But would still need to
923 * round up to the nearest multiple of erase size.
924 */
925 ret = cros_ec_flash_erase(dev, rw_offset, rw_size);
926 if (ret)
927 return ret;
928
929 /* Write the image */
930 ret = cros_ec_flash_write(dev, image, rw_offset, image_size);
931 if (ret)
932 return ret;
933
934 return 0;
935}
936
Simon Glass6322a7b2018-10-01 12:22:22 -0600937int cros_ec_read_nvdata(struct udevice *dev, uint8_t *block, int size)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800938{
939 struct ec_params_vbnvcontext p;
940 int len;
941
Simon Glass6322a7b2018-10-01 12:22:22 -0600942 if (size != EC_VBNV_BLOCK_SIZE)
943 return -EINVAL;
944
Hung-ying Tyan88364382013-05-15 18:27:28 +0800945 p.op = EC_VBNV_CONTEXT_OP_READ;
946
947 len = ec_command(dev, EC_CMD_VBNV_CONTEXT, EC_VER_VBNV_CONTEXT,
948 &p, sizeof(p), block, EC_VBNV_BLOCK_SIZE);
949 if (len < EC_VBNV_BLOCK_SIZE)
Simon Glass6322a7b2018-10-01 12:22:22 -0600950 return -EIO;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800951
952 return 0;
953}
954
Simon Glass6322a7b2018-10-01 12:22:22 -0600955int cros_ec_write_nvdata(struct udevice *dev, const uint8_t *block, int size)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800956{
957 struct ec_params_vbnvcontext p;
958 int len;
959
Simon Glass6322a7b2018-10-01 12:22:22 -0600960 if (size != EC_VBNV_BLOCK_SIZE)
961 return -EINVAL;
Hung-ying Tyan88364382013-05-15 18:27:28 +0800962 p.op = EC_VBNV_CONTEXT_OP_WRITE;
963 memcpy(p.block, block, sizeof(p.block));
964
965 len = ec_command_inptr(dev, EC_CMD_VBNV_CONTEXT, EC_VER_VBNV_CONTEXT,
966 &p, sizeof(p), NULL, 0);
967 if (len < 0)
968 return -1;
969
970 return 0;
971}
972
Simon Glassf48eaf02015-08-03 08:19:24 -0600973int cros_ec_set_ldo(struct udevice *dev, uint8_t index, uint8_t state)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800974{
975 struct ec_params_ldo_set params;
976
977 params.index = index;
978 params.state = state;
979
Simon Glass6322a7b2018-10-01 12:22:22 -0600980 if (ec_command_inptr(dev, EC_CMD_LDO_SET, 0, &params, sizeof(params),
Simon Glassf48eaf02015-08-03 08:19:24 -0600981 NULL, 0))
Hung-ying Tyan88364382013-05-15 18:27:28 +0800982 return -1;
983
984 return 0;
985}
986
Simon Glassf48eaf02015-08-03 08:19:24 -0600987int cros_ec_get_ldo(struct udevice *dev, uint8_t index, uint8_t *state)
Hung-ying Tyan88364382013-05-15 18:27:28 +0800988{
989 struct ec_params_ldo_get params;
990 struct ec_response_ldo_get *resp;
991
992 params.index = index;
993
Simon Glass6322a7b2018-10-01 12:22:22 -0600994 if (ec_command_inptr(dev, EC_CMD_LDO_GET, 0, &params, sizeof(params),
Simon Glassf48eaf02015-08-03 08:19:24 -0600995 (uint8_t **)&resp, sizeof(*resp)) !=
996 sizeof(*resp))
Hung-ying Tyan88364382013-05-15 18:27:28 +0800997 return -1;
998
999 *state = resp->state;
1000
1001 return 0;
1002}
1003
Simon Glass84d6cbd2014-10-13 23:42:14 -06001004int cros_ec_register(struct udevice *dev)
1005{
Simon Glasse564f052015-03-05 12:25:20 -07001006 struct cros_ec_dev *cdev = dev_get_uclass_priv(dev);
Simon Glass84d6cbd2014-10-13 23:42:14 -06001007 char id[MSG_BYTES];
1008
1009 cdev->dev = dev;
Simon Glass32f8a192015-01-05 20:05:32 -07001010 gpio_request_by_name(dev, "ec-interrupt", 0, &cdev->ec_int,
1011 GPIOD_IS_IN);
Simon Glass2ec9d172017-05-18 20:09:23 -06001012 cdev->optimise_flash_write = dev_read_bool(dev, "optimise-flash-write");
Simon Glass84d6cbd2014-10-13 23:42:14 -06001013
Simon Glass6322a7b2018-10-01 12:22:22 -06001014 if (cros_ec_check_version(dev)) {
Simon Glass84d6cbd2014-10-13 23:42:14 -06001015 debug("%s: Could not detect CROS-EC version\n", __func__);
1016 return -CROS_EC_ERR_CHECK_VERSION;
1017 }
1018
Simon Glass6322a7b2018-10-01 12:22:22 -06001019 if (cros_ec_read_id(dev, id, sizeof(id))) {
Simon Glass84d6cbd2014-10-13 23:42:14 -06001020 debug("%s: Could not read KBC ID\n", __func__);
1021 return -CROS_EC_ERR_READ_ID;
1022 }
1023
1024 /* Remember this device for use by the cros_ec command */
Simon Glassc4b206d2015-02-17 15:29:36 -07001025 debug("Google Chrome EC v%d CROS-EC driver ready, id '%s'\n",
1026 cdev->protocol_version, id);
Simon Glass84d6cbd2014-10-13 23:42:14 -06001027
1028 return 0;
1029}
Hung-ying Tyan88364382013-05-15 18:27:28 +08001030
Simon Glass2ec9d172017-05-18 20:09:23 -06001031int cros_ec_decode_ec_flash(struct udevice *dev, struct fdt_cros_ec *config)
Simon Glassd7f25f32014-02-27 13:26:03 -07001032{
Simon Glass2ec9d172017-05-18 20:09:23 -06001033 ofnode flash_node, node;
Simon Glassd7f25f32014-02-27 13:26:03 -07001034
Simon Glass2ec9d172017-05-18 20:09:23 -06001035 flash_node = dev_read_subnode(dev, "flash");
1036 if (!ofnode_valid(flash_node)) {
Simon Glassd7f25f32014-02-27 13:26:03 -07001037 debug("Failed to find flash node\n");
1038 return -1;
1039 }
1040
Simon Glass5e0a7342018-06-11 13:07:17 -06001041 if (ofnode_read_fmap_entry(flash_node, &config->flash)) {
Simon Glass2ec9d172017-05-18 20:09:23 -06001042 debug("Failed to decode flash node in chrome-ec\n");
Simon Glassd7f25f32014-02-27 13:26:03 -07001043 return -1;
1044 }
1045
Simon Glass2ec9d172017-05-18 20:09:23 -06001046 config->flash_erase_value = ofnode_read_s32_default(flash_node,
1047 "erase-value", -1);
Simon Glass3991f422017-08-05 15:45:54 -06001048 ofnode_for_each_subnode(node, flash_node) {
Simon Glass2ec9d172017-05-18 20:09:23 -06001049 const char *name = ofnode_get_name(node);
Simon Glassd7f25f32014-02-27 13:26:03 -07001050 enum ec_flash_region region;
1051
1052 if (0 == strcmp(name, "ro")) {
1053 region = EC_FLASH_REGION_RO;
1054 } else if (0 == strcmp(name, "rw")) {
Simon Glass6f1c0432018-10-01 12:22:36 -06001055 region = EC_FLASH_REGION_ACTIVE;
Simon Glassd7f25f32014-02-27 13:26:03 -07001056 } else if (0 == strcmp(name, "wp-ro")) {
1057 region = EC_FLASH_REGION_WP_RO;
1058 } else {
1059 debug("Unknown EC flash region name '%s'\n", name);
1060 return -1;
1061 }
1062
Simon Glass5e0a7342018-06-11 13:07:17 -06001063 if (ofnode_read_fmap_entry(node, &config->region[region])) {
Simon Glassd7f25f32014-02-27 13:26:03 -07001064 debug("Failed to decode flash region in chrome-ec'\n");
1065 return -1;
1066 }
1067 }
1068
1069 return 0;
1070}
1071
Moritz Fischer6d1a7182016-09-27 15:42:07 -07001072int cros_ec_i2c_tunnel(struct udevice *dev, int port, struct i2c_msg *in,
1073 int nmsgs)
Simon Glasscc456bd2015-08-03 08:19:23 -06001074{
Simon Glasscc456bd2015-08-03 08:19:23 -06001075 union {
1076 struct ec_params_i2c_passthru p;
1077 uint8_t outbuf[EC_PROTO2_MAX_PARAM_SIZE];
1078 } params;
1079 union {
1080 struct ec_response_i2c_passthru r;
1081 uint8_t inbuf[EC_PROTO2_MAX_PARAM_SIZE];
1082 } response;
1083 struct ec_params_i2c_passthru *p = &params.p;
1084 struct ec_response_i2c_passthru *r = &response.r;
1085 struct ec_params_i2c_passthru_msg *msg;
1086 uint8_t *pdata, *read_ptr = NULL;
1087 int read_len;
1088 int size;
1089 int rv;
1090 int i;
1091
Moritz Fischer6d1a7182016-09-27 15:42:07 -07001092 p->port = port;
Simon Glasscc456bd2015-08-03 08:19:23 -06001093
1094 p->num_msgs = nmsgs;
1095 size = sizeof(*p) + p->num_msgs * sizeof(*msg);
1096
1097 /* Create a message to write the register address and optional data */
1098 pdata = (uint8_t *)p + size;
1099
1100 read_len = 0;
1101 for (i = 0, msg = p->msg; i < nmsgs; i++, msg++, in++) {
1102 bool is_read = in->flags & I2C_M_RD;
1103
1104 msg->addr_flags = in->addr;
1105 msg->len = in->len;
1106 if (is_read) {
1107 msg->addr_flags |= EC_I2C_FLAG_READ;
1108 read_len += in->len;
1109 read_ptr = in->buf;
1110 if (sizeof(*r) + read_len > sizeof(response)) {
1111 puts("Read length too big for buffer\n");
1112 return -1;
1113 }
1114 } else {
1115 if (pdata - (uint8_t *)p + in->len > sizeof(params)) {
1116 puts("Params too large for buffer\n");
1117 return -1;
1118 }
1119 memcpy(pdata, in->buf, in->len);
1120 pdata += in->len;
1121 }
1122 }
1123
Simon Glass6322a7b2018-10-01 12:22:22 -06001124 rv = ec_command(dev, EC_CMD_I2C_PASSTHRU, 0, p, pdata - (uint8_t *)p,
Simon Glasscc456bd2015-08-03 08:19:23 -06001125 r, sizeof(*r) + read_len);
1126 if (rv < 0)
1127 return rv;
1128
1129 /* Parse response */
1130 if (r->i2c_status & EC_I2C_STATUS_ERROR) {
1131 printf("Transfer failed with status=0x%x\n", r->i2c_status);
1132 return -1;
1133 }
1134
1135 if (rv < sizeof(*r) + read_len) {
1136 puts("Truncated read response\n");
1137 return -1;
1138 }
1139
1140 /* We only support a single read message for each transfer */
1141 if (read_len)
1142 memcpy(read_ptr, r->data, read_len);
1143
1144 return 0;
1145}
1146
Simon Glass84d6cbd2014-10-13 23:42:14 -06001147UCLASS_DRIVER(cros_ec) = {
1148 .id = UCLASS_CROS_EC,
1149 .name = "cros_ec",
1150 .per_device_auto_alloc_size = sizeof(struct cros_ec_dev),
Simon Glass91195482016-07-05 17:10:10 -06001151 .post_bind = dm_scan_fdt_dev,
Simon Glass84d6cbd2014-10-13 23:42:14 -06001152};