blob: f5a39ecfa6f5193bde934f08eb8b259067e539f9 [file] [log] [blame]
Angel Pons182dbde2020-04-02 23:49:05 +02001/* SPDX-License-Identifier: GPL-2.0-only */
Stefan Reinauer8e073822012-04-04 00:07:22 +02002
3/*
4 * This is a ramstage driver for the Intel Management Engine found in the
5 * 6-series chipset. It handles the required boot-time messages over the
6 * MMIO-based Management Engine Interface to tell the ME that the BIOS is
7 * finished with POST. Additional messages are defined for debug but are
8 * not used unless the console loglevel is high enough.
9 */
10
Furquan Shaikh76cedd22020-05-02 10:24:23 -070011#include <acpi/acpi.h>
Kyösti Mälkki13f66502019-03-03 08:01:05 +020012#include <device/mmio.h>
Kyösti Mälkki21d6a272019-11-05 18:50:38 +020013#include <device/device.h>
14#include <device/pci.h>
Kyösti Mälkkif1b58b72019-03-01 13:43:02 +020015#include <device/pci_ops.h>
Stefan Reinauer8e073822012-04-04 00:07:22 +020016#include <console/console.h>
17#include <device/pci_ids.h>
18#include <device/pci_def.h>
19#include <string.h>
20#include <delay.h>
Duncan Lauriec1c94352012-07-13 10:11:54 -070021#include <elog.h>
Stefan Reinauer8e073822012-04-04 00:07:22 +020022
Stefan Reinauer8e073822012-04-04 00:07:22 +020023#include "me.h"
24#include "pch.h"
25
Angel Pons053fe8a2020-08-10 15:32:57 +020026/* Send END OF POST message to the ME */
27static int __unused mkhi_end_of_post(void)
28{
29 struct mkhi_header mkhi = {
30 .group_id = MKHI_GROUP_ID_GEN,
31 .command = MKHI_END_OF_POST,
32 };
33 struct mei_header mei = {
34 .is_complete = 1,
35 .host_address = MEI_HOST_ADDRESS,
36 .client_address = MEI_ADDRESS_MKHI,
37 .length = sizeof(mkhi),
38 };
39
40 u32 eop_ack;
41
42 /* Send request and wait for response */
43 printk(BIOS_NOTICE, "ME: %s\n", __func__);
44 if (mei_sendrecv(&mei, &mkhi, NULL, &eop_ack, sizeof(eop_ack)) < 0) {
45 printk(BIOS_ERR, "ME: END OF POST message failed\n");
46 return -1;
47 }
48
49 printk(BIOS_INFO, "ME: END OF POST message successful (%d)\n", eop_ack);
50 return 0;
51}
52
Stefan Reinauer8e073822012-04-04 00:07:22 +020053static inline void print_cap(const char *name, int state)
54{
55 printk(BIOS_DEBUG, "ME Capability: %-41s : %sabled\n",
56 name, state ? " en" : "dis");
57}
58
Kyösti Mälkkic86fc8e2019-11-06 06:32:27 +020059static void __unused me_print_fw_version(mbp_fw_version_name *vers_name)
Stefan Reinauer8e073822012-04-04 00:07:22 +020060{
61 if (!vers_name->major_version) {
62 printk(BIOS_ERR, "ME: mbp missing version report\n");
63 return;
64 }
65
66 printk(BIOS_DEBUG, "ME: found version %d.%d.%d.%d\n",
67 vers_name->major_version, vers_name->minor_version,
68 vers_name->hotfix_version, vers_name->build_version);
69}
70
71/* Get ME Firmware Capabilities */
72static int mkhi_get_fwcaps(mefwcaps_sku *cap)
73{
74 u32 rule_id = 0;
75 struct me_fwcaps cap_msg;
76 struct mkhi_header mkhi = {
77 .group_id = MKHI_GROUP_ID_FWCAPS,
78 .command = MKHI_FWCAPS_GET_RULE,
79 };
80 struct mei_header mei = {
81 .is_complete = 1,
82 .host_address = MEI_HOST_ADDRESS,
83 .client_address = MEI_ADDRESS_MKHI,
84 .length = sizeof(mkhi) + sizeof(rule_id),
85 };
86
87 /* Send request and wait for response */
Edward O'Callaghan152e5172014-07-13 00:28:05 +100088 if (mei_sendrecv(&mei, &mkhi, &rule_id, &cap_msg, sizeof(cap_msg)) < 0) {
Stefan Reinauer8e073822012-04-04 00:07:22 +020089 printk(BIOS_ERR, "ME: GET FWCAPS message failed\n");
90 return -1;
Edward O'Callaghan152e5172014-07-13 00:28:05 +100091 }
Stefan Reinauer8e073822012-04-04 00:07:22 +020092 *cap = cap_msg.caps_sku;
93 return 0;
94}
95
96/* Get ME Firmware Capabilities */
Kyösti Mälkkic86fc8e2019-11-06 06:32:27 +020097static void __unused me_print_fwcaps(mbp_fw_caps *caps_section)
Stefan Reinauer8e073822012-04-04 00:07:22 +020098{
99 mefwcaps_sku *cap = &caps_section->fw_capabilities;
100 if (!caps_section->available) {
101 printk(BIOS_ERR, "ME: mbp missing fwcaps report\n");
102 if (mkhi_get_fwcaps(cap))
103 return;
104 }
105
106 print_cap("Full Network manageability", cap->full_net);
107 print_cap("Regular Network manageability", cap->std_net);
108 print_cap("Manageability", cap->manageability);
109 print_cap("Small business technology", cap->small_business);
110 print_cap("Level III manageability", cap->l3manageability);
111 print_cap("IntelR Anti-Theft (AT)", cap->intel_at);
112 print_cap("IntelR Capability Licensing Service (CLS)", cap->intel_cls);
113 print_cap("IntelR Power Sharing Technology (MPC)", cap->intel_mpc);
114 print_cap("ICC Over Clocking", cap->icc_over_clocking);
Edward O'Callaghan152e5172014-07-13 00:28:05 +1000115 print_cap("Protected Audio Video Path (PAVP)", cap->pavp);
Stefan Reinauer8e073822012-04-04 00:07:22 +0200116 print_cap("IPV6", cap->ipv6);
117 print_cap("KVM Remote Control (KVM)", cap->kvm);
118 print_cap("Outbreak Containment Heuristic (OCH)", cap->och);
119 print_cap("Virtual LAN (VLAN)", cap->vlan);
120 print_cap("TLS", cap->tls);
121 print_cap("Wireless LAN (WLAN)", cap->wlan);
122}
Stefan Reinauer8e073822012-04-04 00:07:22 +0200123
Kyösti Mälkki21d6a272019-11-05 18:50:38 +0200124#ifdef __SIMPLE_DEVICE__
125
Stefan Reinauer998f3a22012-06-11 15:15:46 -0700126void intel_me8_finalize_smm(void)
Stefan Reinauer8e073822012-04-04 00:07:22 +0200127{
128 struct me_hfs hfs;
129 u32 reg32;
130
Angel Pons2e29c3b2020-08-10 15:47:28 +0200131 update_mei_base_address();
Stefan Reinauer8e073822012-04-04 00:07:22 +0200132
133 /* S3 path will have hidden this device already */
Angel Pons2e29c3b2020-08-10 15:47:28 +0200134 if (!is_mei_base_address_valid())
Stefan Reinauer8e073822012-04-04 00:07:22 +0200135 return;
136
137 /* Make sure ME is in a mode that expects EOP */
Kyösti Mälkkifd98c652013-07-26 08:50:53 +0300138 reg32 = pci_read_config32(PCH_ME_DEV, PCI_ME_HFS);
Stefan Reinauer8e073822012-04-04 00:07:22 +0200139 memcpy(&hfs, &reg32, sizeof(u32));
140
141 /* Abort and leave device alone if not normal mode */
142 if (hfs.fpt_bad ||
143 hfs.working_state != ME_HFS_CWS_NORMAL ||
144 hfs.operation_mode != ME_HFS_MODE_NORMAL)
145 return;
146
147 /* Try to send EOP command so ME stops accepting other commands */
148 mkhi_end_of_post();
149
150 /* Make sure IO is disabled */
Angel Ponsc803f652020-06-07 22:09:01 +0200151 pci_and_config16(PCH_ME_DEV, PCI_COMMAND,
152 ~(PCI_COMMAND_MASTER | PCI_COMMAND_MEMORY | PCI_COMMAND_IO));
Stefan Reinauer8e073822012-04-04 00:07:22 +0200153
154 /* Hide the PCI device */
155 RCBA32_OR(FD2, PCH_DISABLE_MEI1);
156}
157
Kyösti Mälkki21d6a272019-11-05 18:50:38 +0200158#else /* !__SIMPLE_DEVICE__ */
Stefan Reinauer8e073822012-04-04 00:07:22 +0200159
160/* Determine the path that we should take based on ME status */
Elyes HAOUASdc035282018-09-18 13:28:49 +0200161static me_bios_path intel_me_path(struct device *dev)
Stefan Reinauer8e073822012-04-04 00:07:22 +0200162{
163 me_bios_path path = ME_DISABLE_BIOS_PATH;
164 struct me_hfs hfs;
165 struct me_gmes gmes;
166
Stefan Reinauer8e073822012-04-04 00:07:22 +0200167 /* S3 wake skips all MKHI messages */
Kyösti Mälkkic3ed8862014-06-19 19:50:51 +0300168 if (acpi_is_wakeup_s3())
Stefan Reinauer8e073822012-04-04 00:07:22 +0200169 return ME_S3WAKE_BIOS_PATH;
Stefan Reinauer8e073822012-04-04 00:07:22 +0200170
171 pci_read_dword_ptr(dev, &hfs, PCI_ME_HFS);
172 pci_read_dword_ptr(dev, &gmes, PCI_ME_GMES);
173
174 /* Check and dump status */
175 intel_me_status(&hfs, &gmes);
176
Stefan Reinauer8e073822012-04-04 00:07:22 +0200177 /* Check Current Working State */
178 switch (hfs.working_state) {
179 case ME_HFS_CWS_NORMAL:
180 path = ME_NORMAL_BIOS_PATH;
Stefan Reinauer8e073822012-04-04 00:07:22 +0200181 break;
182 case ME_HFS_CWS_REC:
183 path = ME_RECOVERY_BIOS_PATH;
184 break;
185 default:
186 path = ME_DISABLE_BIOS_PATH;
187 break;
188 }
189
190 /* Check Current Operation Mode */
191 switch (hfs.operation_mode) {
192 case ME_HFS_MODE_NORMAL:
193 break;
194 case ME_HFS_MODE_DEBUG:
195 case ME_HFS_MODE_DIS:
196 case ME_HFS_MODE_OVER_JMPR:
197 case ME_HFS_MODE_OVER_MEI:
198 default:
199 path = ME_DISABLE_BIOS_PATH;
200 break;
201 }
202
Duncan Laurie5c88c6f2012-09-01 14:00:23 -0700203 /* Check for any error code and valid firmware and MBP */
204 if (hfs.error_code || hfs.fpt_bad)
Stefan Reinauer8e073822012-04-04 00:07:22 +0200205 path = ME_ERROR_BIOS_PATH;
206
Duncan Laurie5c88c6f2012-09-01 14:00:23 -0700207 /* Check if the MBP is ready */
208 if (!gmes.mbp_rdy) {
209 printk(BIOS_CRIT, "%s: mbp is not ready!\n",
Angel Pons08e8cab2020-06-18 15:20:37 +0200210 __func__);
Duncan Laurie5c88c6f2012-09-01 14:00:23 -0700211 path = ME_ERROR_BIOS_PATH;
212 }
213
Kyösti Mälkkibe5317f2019-11-06 12:07:21 +0200214 if (CONFIG(ELOG) && path != ME_NORMAL_BIOS_PATH) {
Duncan Laurie5c88c6f2012-09-01 14:00:23 -0700215 struct elog_event_data_me_extended data = {
216 .current_working_state = hfs.working_state,
217 .operation_state = hfs.operation_state,
218 .operation_mode = hfs.operation_mode,
219 .error_code = hfs.error_code,
220 .progress_code = gmes.progress_code,
221 .current_pmevent = gmes.current_pmevent,
222 .current_state = gmes.current_state,
223 };
224 elog_add_event_byte(ELOG_TYPE_MANAGEMENT_ENGINE, path);
225 elog_add_event_raw(ELOG_TYPE_MANAGEMENT_ENGINE_EXT,
226 &data, sizeof(data));
227 }
Duncan Laurie5c88c6f2012-09-01 14:00:23 -0700228
Stefan Reinauer8e073822012-04-04 00:07:22 +0200229 return path;
230}
231
Angel Pons7f32df32020-06-02 13:36:57 +0200232static int intel_me_read_mbp(me_bios_payload *mbp_data);
233
Stefan Reinauer8e073822012-04-04 00:07:22 +0200234/* Check whether ME is present and do basic init */
Elyes HAOUASdc035282018-09-18 13:28:49 +0200235static void intel_me_init(struct device *dev)
Stefan Reinauer8e073822012-04-04 00:07:22 +0200236{
237 me_bios_path path = intel_me_path(dev);
238 me_bios_payload mbp_data;
239
240 /* Do initial setup and determine the BIOS path */
Angel Pons2e29c3b2020-08-10 15:47:28 +0200241 printk(BIOS_NOTICE, "ME: BIOS path: %s\n", me_get_bios_path_string(path));
Stefan Reinauer8e073822012-04-04 00:07:22 +0200242
243 switch (path) {
244 case ME_S3WAKE_BIOS_PATH:
James Yea85d4a52020-02-22 20:30:49 +1100245 case ME_DISABLE_BIOS_PATH:
246#if CONFIG(HIDE_MEI_ON_ERROR)
247 case ME_ERROR_BIOS_PATH:
248#endif
Stefan Reinauer8e073822012-04-04 00:07:22 +0200249 intel_me_hide(dev);
250 break;
251
252 case ME_NORMAL_BIOS_PATH:
253 /* Validate the extend register */
254 if (intel_me_extend_valid(dev) < 0)
255 break; /* TODO: force recovery mode */
256
257 /* Prepare MEI MMIO interface */
258 if (intel_mei_setup(dev) < 0)
259 break;
260
Elyes HAOUASba28e8d2016-08-31 19:22:16 +0200261 if (intel_me_read_mbp(&mbp_data))
Stefan Reinauer8e073822012-04-04 00:07:22 +0200262 break;
263
Kyösti Mälkkic86fc8e2019-11-06 06:32:27 +0200264 if (CONFIG_DEFAULT_CONSOLE_LOGLEVEL >= BIOS_DEBUG) {
265 me_print_fw_version(&mbp_data.fw_version_name);
266 me_print_fwcaps(&mbp_data.fw_caps_sku);
267 }
Duncan Laurie708f7312012-07-10 15:15:41 -0700268
269 /*
270 * Leave the ME unlocked in this path.
271 * It will be locked via SMI command later.
272 */
Stefan Reinauer8e073822012-04-04 00:07:22 +0200273 break;
274
James Yea85d4a52020-02-22 20:30:49 +1100275#if !CONFIG(HIDE_MEI_ON_ERROR)
Stefan Reinauer8e073822012-04-04 00:07:22 +0200276 case ME_ERROR_BIOS_PATH:
James Yea85d4a52020-02-22 20:30:49 +1100277#endif
Stefan Reinauer8e073822012-04-04 00:07:22 +0200278 case ME_RECOVERY_BIOS_PATH:
Stefan Reinauer8e073822012-04-04 00:07:22 +0200279 case ME_FIRMWARE_UPDATE_BIOS_PATH:
Stefan Reinauer8e073822012-04-04 00:07:22 +0200280 break;
281 }
282}
283
Stefan Reinauer8e073822012-04-04 00:07:22 +0200284static struct device_operations device_ops = {
285 .read_resources = pci_dev_read_resources,
286 .set_resources = pci_dev_set_resources,
287 .enable_resources = pci_dev_enable_resources,
288 .init = intel_me_init,
Angel Pons1fc0edd2020-05-31 00:03:28 +0200289 .ops_pci = &pci_dev_ops_pci,
Stefan Reinauer8e073822012-04-04 00:07:22 +0200290};
291
292static const struct pci_driver intel_me __pci_driver = {
293 .ops = &device_ops,
294 .vendor = PCI_VENDOR_ID_INTEL,
295 .device = 0x1e3a,
296};
297
Kyösti Mälkki21d6a272019-11-05 18:50:38 +0200298#endif /* !__SIMPLE_DEVICE__ */
299
Stefan Reinauer8e073822012-04-04 00:07:22 +0200300/******************************************************************************
301 * */
302static u32 me_to_host_words_pending(void)
303{
304 struct mei_csr me;
305 read_me_csr(&me);
306 if (!me.ready)
307 return 0;
308 return (me.buffer_write_ptr - me.buffer_read_ptr) &
309 (me.buffer_depth - 1);
310}
311
Stefan Reinauer8e073822012-04-04 00:07:22 +0200312/*
313 * mbp seems to be following its own flow, let's retrieve it in a dedicated
314 * function.
315 */
Kyösti Mälkki21d6a272019-11-05 18:50:38 +0200316static int __unused intel_me_read_mbp(me_bios_payload *mbp_data)
Stefan Reinauer8e073822012-04-04 00:07:22 +0200317{
318 mbp_header mbp_hdr;
319 mbp_item_header mbp_item_hdr;
320 u32 me2host_pending;
321 u32 mbp_item_id;
322 struct mei_csr host;
323
324 me2host_pending = me_to_host_words_pending();
325 if (!me2host_pending) {
326 printk(BIOS_ERR, "ME: no mbp data!\n");
327 return -1;
328 }
329
330 /* we know for sure that at least the header is there */
331 mei_read_dword_ptr(&mbp_hdr, MEI_ME_CB_RW);
332
333 if ((mbp_hdr.num_entries > (mbp_hdr.mbp_size / 2)) ||
334 (me2host_pending < mbp_hdr.mbp_size)) {
335 printk(BIOS_ERR, "ME: mbp of %d entries, total size %d words"
336 " buffer contains %d words\n",
337 mbp_hdr.num_entries, mbp_hdr.mbp_size,
338 me2host_pending);
339 return -1;
340 }
341
342 me2host_pending--;
343 memset(mbp_data, 0, sizeof(*mbp_data));
344
345 while (mbp_hdr.num_entries--) {
Elyes HAOUAS448d9fb2018-05-22 12:51:27 +0200346 u32 *copy_addr;
Stefan Reinauer8e073822012-04-04 00:07:22 +0200347 u32 copy_size, buffer_room;
348 void *p;
349
350 if (!me2host_pending) {
351 printk(BIOS_ERR, "ME: no mbp data %d entries to go!\n",
352 mbp_hdr.num_entries + 1);
353 return -1;
354 }
355
356 mei_read_dword_ptr(&mbp_item_hdr, MEI_ME_CB_RW);
357
358 if (mbp_item_hdr.length > me2host_pending) {
359 printk(BIOS_ERR, "ME: insufficient mbp data %d "
360 "entries to go!\n",
361 mbp_hdr.num_entries + 1);
362 return -1;
363 }
364
365 me2host_pending -= mbp_item_hdr.length;
366
367 mbp_item_id = (((u32)mbp_item_hdr.item_id) << 8) +
368 mbp_item_hdr.app_id;
369
370 copy_size = mbp_item_hdr.length - 1;
371
372#define SET_UP_COPY(field) { copy_addr = (u32 *)&mbp_data->field; \
373 buffer_room = sizeof(mbp_data->field) / sizeof(u32); \
374 break; \
375 }
376
377 p = &mbp_item_hdr;
378 printk(BIOS_INFO, "ME: MBP item header %8.8x\n", *((u32*)p));
379
Elyes HAOUASf9de5a42018-05-03 17:21:02 +0200380 switch (mbp_item_id) {
Stefan Reinauer8e073822012-04-04 00:07:22 +0200381 case 0x101:
382 SET_UP_COPY(fw_version_name);
383
384 case 0x102:
385 SET_UP_COPY(icc_profile);
386
387 case 0x103:
388 SET_UP_COPY(at_state);
389
390 case 0x201:
391 mbp_data->fw_caps_sku.available = 1;
392 SET_UP_COPY(fw_caps_sku.fw_capabilities);
393
394 case 0x301:
395 SET_UP_COPY(rom_bist_data);
396
397 case 0x401:
398 SET_UP_COPY(platform_key);
399
400 case 0x501:
401 mbp_data->fw_plat_type.available = 1;
402 SET_UP_COPY(fw_plat_type.rule_data);
403
404 case 0x601:
405 SET_UP_COPY(mfsintegrity);
406
407 default:
Vladimir Serbinenkoafc8d982014-06-11 18:52:55 +0000408 printk(BIOS_ERR, "ME: unknown mbp item id 0x%x! Skipping\n",
Stefan Reinauer8e073822012-04-04 00:07:22 +0200409 mbp_item_id);
Elyes HAOUASba28e8d2016-08-31 19:22:16 +0200410 while (copy_size--)
Vladimir Serbinenkoafc8d982014-06-11 18:52:55 +0000411 read_cb();
412 continue;
Stefan Reinauer8e073822012-04-04 00:07:22 +0200413 }
414
415 if (buffer_room != copy_size) {
416 printk(BIOS_ERR, "ME: buffer room %d != %d copy size"
417 " for item 0x%x!!!\n",
418 buffer_room, copy_size, mbp_item_id);
419 return -1;
420 }
Elyes HAOUASba28e8d2016-08-31 19:22:16 +0200421 while (copy_size--)
Stefan Reinauer8e073822012-04-04 00:07:22 +0200422 *copy_addr++ = read_cb();
423 }
424
425 read_host_csr(&host);
426 host.interrupt_generate = 1;
427 write_host_csr(&host);
428
429 {
430 int cntr = 0;
Elyes HAOUASba28e8d2016-08-31 19:22:16 +0200431 while (host.interrupt_generate) {
Stefan Reinauer8e073822012-04-04 00:07:22 +0200432 read_host_csr(&host);
433 cntr++;
434 }
435 printk(BIOS_SPEW, "ME: mbp read OK after %d cycles\n", cntr);
436 }
437
438 return 0;
439}