blob: 21ccbe6f7162c13e7013fd951d4d20e156e4142e [file] [log] [blame]
Oren Weil3ce72722011-05-15 13:43:43 +03001/*
2 *
3 * Intel Management Engine Interface (Intel MEI) Linux driver
Tomas Winkler733ba912012-02-09 19:25:53 +02004 * Copyright (c) 2003-2012, Intel Corporation.
Oren Weil3ce72722011-05-15 13:43:43 +03005 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms and conditions of the GNU General Public License,
8 * version 2, as published by the Free Software Foundation.
9 *
10 * This program is distributed in the hope it will be useful, but WITHOUT
11 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
12 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
13 * more details.
14 *
15 */
16
17#include <linux/pci.h>
18#include "mei_dev.h"
Tomas Winkler4f3afe12012-05-09 16:38:59 +030019#include <linux/mei.h>
Oren Weil3ce72722011-05-15 13:43:43 +030020#include "interface.h"
21
22
23
24/**
25 * mei_set_csr_register - writes H_CSR register to the mei device,
26 * and ignores the H_IS bit for it is write-one-to-zero.
27 *
28 * @dev: the device structure
29 */
30void mei_hcsr_set(struct mei_device *dev)
31{
32 if ((dev->host_hw_state & H_IS) == H_IS)
33 dev->host_hw_state &= ~H_IS;
34 mei_reg_write(dev, H_CSR, dev->host_hw_state);
35 dev->host_hw_state = mei_hcsr_read(dev);
36}
37
38/**
39 * mei_csr_enable_interrupts - enables mei device interrupts
40 *
41 * @dev: the device structure
42 */
43void mei_enable_interrupts(struct mei_device *dev)
44{
45 dev->host_hw_state |= H_IE;
46 mei_hcsr_set(dev);
47}
48
49/**
50 * mei_csr_disable_interrupts - disables mei device interrupts
51 *
52 * @dev: the device structure
53 */
54void mei_disable_interrupts(struct mei_device *dev)
55{
56 dev->host_hw_state &= ~H_IE;
57 mei_hcsr_set(dev);
58}
59
60/**
Tomas Winkler726917f2012-06-25 23:46:28 +030061 * mei_hbuf_filled_slots - gets number of device filled buffer slots
Oren Weil3ce72722011-05-15 13:43:43 +030062 *
63 * @device: the device structure
64 *
65 * returns number of filled slots
66 */
Tomas Winkler726917f2012-06-25 23:46:28 +030067static unsigned char mei_hbuf_filled_slots(struct mei_device *dev)
Oren Weil3ce72722011-05-15 13:43:43 +030068{
69 char read_ptr, write_ptr;
70
Tomas Winkler726917f2012-06-25 23:46:28 +030071 dev->host_hw_state = mei_hcsr_read(dev);
72
Oren Weil3ce72722011-05-15 13:43:43 +030073 read_ptr = (char) ((dev->host_hw_state & H_CBRP) >> 8);
74 write_ptr = (char) ((dev->host_hw_state & H_CBWP) >> 16);
75
76 return (unsigned char) (write_ptr - read_ptr);
77}
78
79/**
Tomas Winkler726917f2012-06-25 23:46:28 +030080 * mei_hbuf_is_empty - checks if host buffer is empty.
Oren Weil3ce72722011-05-15 13:43:43 +030081 *
82 * @dev: the device structure
83 *
Tomas Winkler726917f2012-06-25 23:46:28 +030084 * returns true if empty, false - otherwise.
Oren Weil3ce72722011-05-15 13:43:43 +030085 */
Tomas Winkler726917f2012-06-25 23:46:28 +030086bool mei_hbuf_is_empty(struct mei_device *dev)
Oren Weil3ce72722011-05-15 13:43:43 +030087{
Tomas Winkler726917f2012-06-25 23:46:28 +030088 return mei_hbuf_filled_slots(dev) == 0;
Oren Weil3ce72722011-05-15 13:43:43 +030089}
90
91/**
Tomas Winkler726917f2012-06-25 23:46:28 +030092 * mei_hbuf_empty_slots - counts write empty slots.
Oren Weil3ce72722011-05-15 13:43:43 +030093 *
94 * @dev: the device structure
95 *
96 * returns -1(ESLOTS_OVERFLOW) if overflow, otherwise empty slots count
97 */
Tomas Winkler726917f2012-06-25 23:46:28 +030098int mei_hbuf_empty_slots(struct mei_device *dev)
Oren Weil3ce72722011-05-15 13:43:43 +030099{
Tomas Winkler24aadc82012-06-25 23:46:27 +0300100 unsigned char filled_slots, empty_slots;
Oren Weil3ce72722011-05-15 13:43:43 +0300101
Tomas Winkler726917f2012-06-25 23:46:28 +0300102 filled_slots = mei_hbuf_filled_slots(dev);
Tomas Winkler24aadc82012-06-25 23:46:27 +0300103 empty_slots = dev->hbuf_depth - filled_slots;
Oren Weil3ce72722011-05-15 13:43:43 +0300104
105 /* check for overflow */
Tomas Winkler24aadc82012-06-25 23:46:27 +0300106 if (filled_slots > dev->hbuf_depth)
Oren Weil3ce72722011-05-15 13:43:43 +0300107 return -EOVERFLOW;
108
109 return empty_slots;
110}
111
112/**
113 * mei_write_message - writes a message to mei device.
114 *
115 * @dev: the device structure
Tomas Winkler438763f2012-12-25 19:05:59 +0200116 * @hader: mei HECI header of message
117 * @buf: message payload will be written
Oren Weil3ce72722011-05-15 13:43:43 +0300118 *
Tomas Winkler1ccb7b62012-03-14 14:39:42 +0200119 * This function returns -EIO if write has failed
Oren Weil3ce72722011-05-15 13:43:43 +0300120 */
Tomas Winkler169d1332012-06-19 09:13:35 +0300121int mei_write_message(struct mei_device *dev, struct mei_msg_hdr *header,
Tomas Winkler438763f2012-12-25 19:05:59 +0200122 unsigned char *buf)
Oren Weil3ce72722011-05-15 13:43:43 +0300123{
Tomas Winkler169d1332012-06-19 09:13:35 +0300124 unsigned long rem, dw_cnt;
Tomas Winkler438763f2012-12-25 19:05:59 +0200125 unsigned long length = header->length;
Tomas Winkler169d1332012-06-19 09:13:35 +0300126 u32 *reg_buf = (u32 *)buf;
127 int i;
128 int empty_slots;
Oren Weil3ce72722011-05-15 13:43:43 +0300129
Oren Weil3ce72722011-05-15 13:43:43 +0300130 dev_dbg(&dev->pdev->dev,
131 "mei_write_message header=%08x.\n",
132 *((u32 *) header));
133
Tomas Winkler726917f2012-06-25 23:46:28 +0300134 empty_slots = mei_hbuf_empty_slots(dev);
Tomas Winkler169d1332012-06-19 09:13:35 +0300135 dev_dbg(&dev->pdev->dev, "empty slots = %hu.\n", empty_slots);
Oren Weil3ce72722011-05-15 13:43:43 +0300136
Tomas Winkler7bdf72d2012-07-04 19:24:52 +0300137 dw_cnt = mei_data2slots(length);
Tomas Winkler169d1332012-06-19 09:13:35 +0300138 if (empty_slots < 0 || dw_cnt > empty_slots)
Tomas Winkler1ccb7b62012-03-14 14:39:42 +0200139 return -EIO;
Oren Weil3ce72722011-05-15 13:43:43 +0300140
141 mei_reg_write(dev, H_CB_WW, *((u32 *) header));
142
Tomas Winkler169d1332012-06-19 09:13:35 +0300143 for (i = 0; i < length / 4; i++)
144 mei_reg_write(dev, H_CB_WW, reg_buf[i]);
145
146 rem = length & 0x3;
147 if (rem > 0) {
148 u32 reg = 0;
149 memcpy(&reg, &buf[length - rem], rem);
150 mei_reg_write(dev, H_CB_WW, reg);
Oren Weil3ce72722011-05-15 13:43:43 +0300151 }
152
Tomas Winkler169d1332012-06-19 09:13:35 +0300153 dev->host_hw_state = mei_hcsr_read(dev);
Oren Weil3ce72722011-05-15 13:43:43 +0300154 dev->host_hw_state |= H_IG;
155 mei_hcsr_set(dev);
156 dev->me_hw_state = mei_mecsr_read(dev);
157 if ((dev->me_hw_state & ME_RDY_HRA) != ME_RDY_HRA)
Tomas Winkler1ccb7b62012-03-14 14:39:42 +0200158 return -EIO;
Oren Weil3ce72722011-05-15 13:43:43 +0300159
Tomas Winkler1ccb7b62012-03-14 14:39:42 +0200160 return 0;
Oren Weil3ce72722011-05-15 13:43:43 +0300161}
162
163/**
164 * mei_count_full_read_slots - counts read full slots.
165 *
166 * @dev: the device structure
167 *
168 * returns -1(ESLOTS_OVERFLOW) if overflow, otherwise filled slots count
169 */
170int mei_count_full_read_slots(struct mei_device *dev)
171{
172 char read_ptr, write_ptr;
173 unsigned char buffer_depth, filled_slots;
174
175 dev->me_hw_state = mei_mecsr_read(dev);
176 buffer_depth = (unsigned char)((dev->me_hw_state & ME_CBD_HRA) >> 24);
177 read_ptr = (char) ((dev->me_hw_state & ME_CBRP_HRA) >> 8);
178 write_ptr = (char) ((dev->me_hw_state & ME_CBWP_HRA) >> 16);
179 filled_slots = (unsigned char) (write_ptr - read_ptr);
180
181 /* check for overflow */
182 if (filled_slots > buffer_depth)
183 return -EOVERFLOW;
184
185 dev_dbg(&dev->pdev->dev, "filled_slots =%08x\n", filled_slots);
186 return (int)filled_slots;
187}
188
189/**
190 * mei_read_slots - reads a message from mei device.
191 *
192 * @dev: the device structure
193 * @buffer: message buffer will be written
194 * @buffer_length: message size will be read
195 */
Tomas Winkleredf1eed2012-02-09 19:25:54 +0200196void mei_read_slots(struct mei_device *dev, unsigned char *buffer,
197 unsigned long buffer_length)
Oren Weil3ce72722011-05-15 13:43:43 +0300198{
Tomas Winkleredf1eed2012-02-09 19:25:54 +0200199 u32 *reg_buf = (u32 *)buffer;
Oren Weil3ce72722011-05-15 13:43:43 +0300200
Tomas Winkleredf1eed2012-02-09 19:25:54 +0200201 for (; buffer_length >= sizeof(u32); buffer_length -= sizeof(u32))
202 *reg_buf++ = mei_mecbrw_read(dev);
Oren Weil3ce72722011-05-15 13:43:43 +0300203
204 if (buffer_length > 0) {
Tomas Winkleredf1eed2012-02-09 19:25:54 +0200205 u32 reg = mei_mecbrw_read(dev);
206 memcpy(reg_buf, &reg, buffer_length);
Oren Weil3ce72722011-05-15 13:43:43 +0300207 }
208
209 dev->host_hw_state |= H_IG;
210 mei_hcsr_set(dev);
211}
212
213/**
214 * mei_flow_ctrl_creds - checks flow_control credentials.
215 *
216 * @dev: the device structure
217 * @cl: private data of the file object
218 *
219 * returns 1 if mei_flow_ctrl_creds >0, 0 - otherwise.
220 * -ENOENT if mei_cl is not present
221 * -EINVAL if single_recv_buf == 0
222 */
223int mei_flow_ctrl_creds(struct mei_device *dev, struct mei_cl *cl)
224{
225 int i;
226
Tomas Winklercf9673d2011-06-06 10:44:33 +0300227 if (!dev->me_clients_num)
Oren Weil3ce72722011-05-15 13:43:43 +0300228 return 0;
229
230 if (cl->mei_flow_ctrl_creds > 0)
231 return 1;
232
Tomas Winklercf9673d2011-06-06 10:44:33 +0300233 for (i = 0; i < dev->me_clients_num; i++) {
Oren Weil3ce72722011-05-15 13:43:43 +0300234 struct mei_me_client *me_cl = &dev->me_clients[i];
235 if (me_cl->client_id == cl->me_client_id) {
236 if (me_cl->mei_flow_ctrl_creds) {
237 if (WARN_ON(me_cl->props.single_recv_buf == 0))
238 return -EINVAL;
239 return 1;
240 } else {
241 return 0;
242 }
243 }
244 }
245 return -ENOENT;
246}
247
248/**
249 * mei_flow_ctrl_reduce - reduces flow_control.
250 *
251 * @dev: the device structure
252 * @cl: private data of the file object
253 * @returns
254 * 0 on success
255 * -ENOENT when me client is not found
Justin P. Mattock5f9092f32012-03-12 07:18:09 -0700256 * -EINVAL when ctrl credits are <= 0
Oren Weil3ce72722011-05-15 13:43:43 +0300257 */
258int mei_flow_ctrl_reduce(struct mei_device *dev, struct mei_cl *cl)
259{
260 int i;
261
Tomas Winklercf9673d2011-06-06 10:44:33 +0300262 if (!dev->me_clients_num)
Oren Weil3ce72722011-05-15 13:43:43 +0300263 return -ENOENT;
264
Tomas Winklercf9673d2011-06-06 10:44:33 +0300265 for (i = 0; i < dev->me_clients_num; i++) {
Oren Weil3ce72722011-05-15 13:43:43 +0300266 struct mei_me_client *me_cl = &dev->me_clients[i];
267 if (me_cl->client_id == cl->me_client_id) {
268 if (me_cl->props.single_recv_buf != 0) {
269 if (WARN_ON(me_cl->mei_flow_ctrl_creds <= 0))
270 return -EINVAL;
271 dev->me_clients[i].mei_flow_ctrl_creds--;
272 } else {
273 if (WARN_ON(cl->mei_flow_ctrl_creds <= 0))
274 return -EINVAL;
275 cl->mei_flow_ctrl_creds--;
276 }
277 return 0;
278 }
279 }
280 return -ENOENT;
281}
282
283/**
284 * mei_send_flow_control - sends flow control to fw.
285 *
286 * @dev: the device structure
287 * @cl: private data of the file object
288 *
Tomas Winkler1ccb7b62012-03-14 14:39:42 +0200289 * This function returns -EIO on write failure
Oren Weil3ce72722011-05-15 13:43:43 +0300290 */
291int mei_send_flow_control(struct mei_device *dev, struct mei_cl *cl)
292{
293 struct mei_msg_hdr *mei_hdr;
Tomas Winkler5bd64712012-11-18 15:13:14 +0200294 struct hbm_flow_control *flow_ctrl;
295 const size_t len = sizeof(struct hbm_flow_control);
Oren Weil3ce72722011-05-15 13:43:43 +0300296
Tomas Winkler5bd64712012-11-18 15:13:14 +0200297 mei_hdr = mei_hbm_hdr(&dev->wr_msg_buf[0], len);
Oren Weil3ce72722011-05-15 13:43:43 +0300298
Tomas Winkler5bd64712012-11-18 15:13:14 +0200299 flow_ctrl = (struct hbm_flow_control *)&dev->wr_msg_buf[1];
300 memset(flow_ctrl, 0, len);
301 flow_ctrl->hbm_cmd = MEI_FLOW_CONTROL_CMD;
302 flow_ctrl->host_addr = cl->host_client_id;
303 flow_ctrl->me_addr = cl->me_client_id;
304 /* FIXME: reserved !? */
305 memset(flow_ctrl->reserved, 0, sizeof(flow_ctrl->reserved));
Oren Weil3ce72722011-05-15 13:43:43 +0300306 dev_dbg(&dev->pdev->dev, "sending flow control host client = %d, ME client = %d\n",
Tomas Winkler1ccb7b62012-03-14 14:39:42 +0200307 cl->host_client_id, cl->me_client_id);
308
Tomas Winkler438763f2012-12-25 19:05:59 +0200309 return mei_write_message(dev, mei_hdr, (unsigned char *) flow_ctrl);
Oren Weil3ce72722011-05-15 13:43:43 +0300310}
311
312/**
313 * mei_other_client_is_connecting - checks if other
314 * client with the same client id is connected.
315 *
316 * @dev: the device structure
317 * @cl: private data of the file object
318 *
319 * returns 1 if other client is connected, 0 - otherwise.
320 */
321int mei_other_client_is_connecting(struct mei_device *dev,
322 struct mei_cl *cl)
323{
324 struct mei_cl *cl_pos = NULL;
325 struct mei_cl *cl_next = NULL;
326
327 list_for_each_entry_safe(cl_pos, cl_next, &dev->file_list, link) {
328 if ((cl_pos->state == MEI_FILE_CONNECTING) &&
329 (cl_pos != cl) &&
330 cl->me_client_id == cl_pos->me_client_id)
331 return 1;
332
333 }
334 return 0;
335}
336
337/**
338 * mei_disconnect - sends disconnect message to fw.
339 *
340 * @dev: the device structure
341 * @cl: private data of the file object
342 *
Tomas Winkler1ccb7b62012-03-14 14:39:42 +0200343 * This function returns -EIO on write failure
Oren Weil3ce72722011-05-15 13:43:43 +0300344 */
345int mei_disconnect(struct mei_device *dev, struct mei_cl *cl)
346{
Tomas Winkler438763f2012-12-25 19:05:59 +0200347 struct mei_msg_hdr *hdr;
Tomas Winkleraeba4a02012-11-11 17:38:04 +0200348 struct hbm_client_connect_request *req;
Tomas Winkler5bd64712012-11-18 15:13:14 +0200349 const size_t len = sizeof(struct hbm_client_connect_request);
Oren Weil3ce72722011-05-15 13:43:43 +0300350
Tomas Winkler438763f2012-12-25 19:05:59 +0200351 hdr = mei_hbm_hdr(&dev->wr_msg_buf[0], len);
Oren Weil3ce72722011-05-15 13:43:43 +0300352
Tomas Winkleraeba4a02012-11-11 17:38:04 +0200353 req = (struct hbm_client_connect_request *)&dev->wr_msg_buf[1];
Tomas Winkler5bd64712012-11-18 15:13:14 +0200354 memset(req, 0, len);
355 req->hbm_cmd = CLIENT_DISCONNECT_REQ_CMD;
Tomas Winkleraeba4a02012-11-11 17:38:04 +0200356 req->host_addr = cl->host_client_id;
357 req->me_addr = cl->me_client_id;
Tomas Winkleraeba4a02012-11-11 17:38:04 +0200358 req->reserved = 0;
Oren Weil3ce72722011-05-15 13:43:43 +0300359
Tomas Winkler438763f2012-12-25 19:05:59 +0200360 return mei_write_message(dev, hdr, (unsigned char *)req);
Oren Weil3ce72722011-05-15 13:43:43 +0300361}
362
363/**
364 * mei_connect - sends connect message to fw.
365 *
366 * @dev: the device structure
367 * @cl: private data of the file object
368 *
Tomas Winkler1ccb7b62012-03-14 14:39:42 +0200369 * This function returns -EIO on write failure
Oren Weil3ce72722011-05-15 13:43:43 +0300370 */
371int mei_connect(struct mei_device *dev, struct mei_cl *cl)
372{
Tomas Winkler438763f2012-12-25 19:05:59 +0200373 struct mei_msg_hdr *hdr;
Tomas Winkler5bd64712012-11-18 15:13:14 +0200374 struct hbm_client_connect_request *req;
375 const size_t len = sizeof(struct hbm_client_connect_request);
Oren Weil3ce72722011-05-15 13:43:43 +0300376
Tomas Winkler438763f2012-12-25 19:05:59 +0200377 hdr = mei_hbm_hdr(&dev->wr_msg_buf[0], len);
Oren Weil3ce72722011-05-15 13:43:43 +0300378
Tomas Winkler5bd64712012-11-18 15:13:14 +0200379 req = (struct hbm_client_connect_request *) &dev->wr_msg_buf[1];
380 req->hbm_cmd = CLIENT_CONNECT_REQ_CMD;
381 req->host_addr = cl->host_client_id;
382 req->me_addr = cl->me_client_id;
383 req->reserved = 0;
Oren Weil3ce72722011-05-15 13:43:43 +0300384
Tomas Winkler438763f2012-12-25 19:05:59 +0200385 return mei_write_message(dev, hdr, (unsigned char *) req);
Oren Weil3ce72722011-05-15 13:43:43 +0300386}