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Patrick Georgiea063cb2020-05-08 19:28:13 +02001/* inteltool - dump all registers on an Intel CPU + chipset based system */
Patrick Georgi7333a112020-05-08 20:48:04 +02002/* SPDX-License-Identifier: GPL-2.0-only */
Stefan Reinauer23190272008-08-20 13:41:24 +00003
4#include <stdio.h>
5#include <stdlib.h>
Stefan Reinauera7b296d2011-11-14 12:40:34 -08006#include <inttypes.h>
Stefan Reinauer23190272008-08-20 13:41:24 +00007#include "inteltool.h"
8
Stefan Taunerdbc6fcd2013-06-20 18:05:06 +02009/* 320766 */
10static const io_register_t nehalem_dmi_registers[] = {
11 { 0x00, 4, "DMIVCH" }, // DMI Virtual Channel Capability Header
12 { 0x04, 4, "DMIVCCAP1" }, // DMI Port VC Capability Register 1
13 { 0x08, 4, "DMIVCCAP2" }, // DMI Port VC Capability Register 2
14 { 0x0C, 4, "DMIVCCTL" }, // DMI Port VC Control
15 { 0x10, 4, "DMIVC0RCAP" }, // DMI VC0 Resource Capability
16 { 0x14, 4, "DMIVC0RCTL" }, // DMI VC0 Resource Control
17/* { 0x18, 2, "RSVD" }, // Reserved */
18 { 0x1A, 2, "DMIVC0RSTS" }, // DMI VC0 Resource Status
19 { 0x1C, 4, "DMIVC1RCAP" }, // DMI VC1 Resource Capability
20 { 0x20, 4, "DMIVC1RCTL" }, // DMI VC1 Resource Control
21/* { 0x24, 2, "RSVD" }, // Reserved */
22 { 0x26, 2, "DMIVC1RSTS" }, // DMI VC1 Resource Status
23/* ... - Reserved */
24 { 0x84, 4, "DMILCAP" }, // DMI Link Capabilities
25 { 0x88, 2, "DMILCTL" }, // DMI Link Control
26 { 0x8A, 2, "DMILSTS" }, // DMI Link Status
27/* ... - Reserved */
28};
29
30/* 322812 */
31static const io_register_t westmere_dmi_registers[] = {
32 { 0x00, 4, "DMIVCECH" }, // DMI Virtual Channel Enhanced Capability
33 { 0x04, 4, "DMIPVCCAP1" }, // DMI Port VC Capability Register 1
34 { 0x08, 4, "DMIPVCCAP2" }, // DMI Port VC Capability Register 2
35 { 0x0C, 2, "DMIPVCCTL" }, // DMI Port VC Control
36/* { 0x0E, 2, "RSVD" }, // Reserved */
37 { 0x10, 4, "DMIVC0RCAP" }, // DMI VC0 Resource Capability
38 { 0x14, 4, "DMIVC0RCTL" }, // DMI VC0 Resource Control
39/* { 0x18, 2, "RSVD" }, // Reserved */
40 { 0x1A, 2, "DMIVC0RSTS" }, // DMI VC0 Resource Status
41 { 0x1C, 4, "DMIVC1RCAP" }, // DMI VC1 Resource Capability
42 { 0x20, 4, "DMIVC1RCTL1" }, // DMI VC1 Resource Control
43/* { 0x24, 2, "RSVD" }, // Reserved */
44 { 0x26, 2, "DMIC1RSTS" }, // DMI VC1 Resource Status
45/* ... - Reserved */
46 { 0x84, 4, "DMILCAP" }, // DMI Link Capabilities
47 { 0x88, 2, "DMILCTL" }, // DMI Link Control
48 { 0x8A, 2, "DMILSTS" }, // DMI Link Status
49/* ... - Reserved */
50};
51
Anton Kochkovc7fc4422012-07-21 06:36:47 +040052static const io_register_t sandybridge_dmi_registers[] = {
53 { 0x00, 4, "DMI VCECH" }, // DMI Virtual Channel Enhanced Capability
54 { 0x04, 4, "DMI PVCCAP1" }, // DMI Port VC Capability Register 1
55 { 0x08, 4, "DMI PVVAP2" }, // DMI Port VC Capability Register 2
56 { 0x0C, 2, "DMI PVCCTL" }, // DMI Port VC Control
57/* { 0x0E, 2, "RSVD" }, // Reserved */
58 { 0x10, 4, "DMI VC0RCAP" }, // DMI VC0 Resource Capability
59 { 0x14, 4, "DMI VC0RCTL" }, // DMI VC0 Resource Control
60/* { 0x18, 2, "RSVD" }, // Reserved */
61 { 0x1A, 2, "DMI VC0RSTS" }, // DMI VC0 Resource Status
62 { 0x1C, 4, "DMI VC1RCAP" }, // DMI VC1 Resource Capability
63 { 0x20, 4, "DMI VC1RCTL" }, // DMI VC1 Resource Control
64/* { 0x24, 2, "RSVD" }, // Reserved */
65 { 0x26, 2, "DMI VC1RSTS" }, // DMI VC1 Resource Status
66 { 0x28, 4, "DMI VCPRCAP" }, // DMI VCp Resource Capability
67 { 0x2C, 4, "DMI VCPRCTL" }, // DMI VCp Resource Control
68/* { 0x30, 2, "RSVD" }, // Reserved */
69 { 0x32, 2, "DMI VCPRSTS" }, // DMI VCp Resource Status
70 { 0x34, 4, "DMI VCMRCAP" }, // DMI VCm Resource Capability
71 { 0x38, 4, "DMI VCMRCTL" }, // DMI VCm Resource Control
72/* { 0x3C, 2, "RSVD" }, // Reserved */
73 { 0x3E, 2, "DMI VCMRSTS" }, // DMI VCm Resource Status
74/* { 0x40, 4, "RSVD" }, // Reserved */
75 { 0x44, 4, "DMI ESC" }, // DMI Element Self Description
76/* { 0x48, 8, "RSVD" }, // Reserved */
77 { 0x50, 4, "DMI LE1D" }, // DMI Link Entry 1 Description
78/* { 0x54, 4, "RSVD" }, // Reserved */
79 { 0x58, 4, "DMI LE1A" }, // DMI Link Entry 1 Address
80 { 0x5C, 4, "DMI LUE1A" }, // DMI Link Upper Entry 1 Address
81 { 0x60, 4, "DMI LE2D" }, // DMI Link Entry 2 Description
82/* { 0x64, 4, "RSVD" }, // Reserved */
83 { 0x68, 4, "DMI LE2A" }, // DMI Link Entry 2 Address
84/* { 0x6C, 4, "RSVD" }, // Reserved
85 { 0x70, 8, "RSVD" }, // Reserved
86 { 0x78, 8, "RSVD" }, // Reserved
87 { 0x80, 4, "RSVD" }, // Reserved */
88 { 0x84, 4, "LCAP" }, // Link Capabilities
89 { 0x88, 2, "LCTL" }, // Link Control
90 { 0x8A, 2, "LSTS" }, // Link Status
91/* { 0x8C, 4, "RSVD" }, // Reserved
92 { 0x90, 4, "RSVD" }, // Reserved
93 { 0x94, 4, "RSVD" }, // Reserved */
94 { 0x98, 2, "LCTL2" }, // Link Control 2
95 { 0x9A, 2, "LSTS2" }, // Link Status 2
96/* ... - Reserved */
97 { 0xBC0, 4, "AFE_BMUF0" }, // AFE BMU Configuration Function 0
98 { 0xBC4, 4, "RSVD" }, // Reserved
99 { 0xBC8, 4, "RSVD" }, // Reserved
100 { 0xBCC, 4, "AFE_BMUT0" }, // AFE BMU Configuration Test 0
101/* ... - Reserved */
102};
103
Stefan Reinauer23190272008-08-20 13:41:24 +0000104/*
Dennis Wassenbergae6685f2014-10-30 10:30:40 +0100105 * All Haswell DMI Registers per
106 *
107 * Mobile 4th Generation Intel Core TM Processor Family, Mobile Intel Pentium Processor Family,
108 * and Mobile Intel Celeron Processor Family
109 * Datasheet Volume 2
110 * 329002-002
111 */
112static const io_register_t haswell_ult_dmi_registers[] = {
Elyes HAOUAS94501502016-10-19 17:59:10 +0200113 { 0x00, 4, "DMIVCECH" }, // DMI Virtual Channel Enhanced Capability
114 { 0x04, 4, "DMIPVCCAP1" }, // DMI Port VC Capability Register 1
115 { 0x08, 4, "DMIPVCCAP2" }, // DMI Port VC Capability Register 2
116 { 0x0C, 2, "DMI PVCCTL" }, // DMI Port VC Control
117/* { 0x0E, 2, "RSVD" }, // Reserved */
118 { 0x10, 4, "DMIVC0RCAP" }, // DMI VC0 Resource Capability
119 { 0x14, 4, "DMIVC0RCTL" }, // DMI VC0 Resource Control
120/* { 0x18, 2, "RSVD" }, // Reserved */
121 { 0x1A, 2, "DMIVC0RSTS" }, // DMI VC0 Resource Status
122 { 0x1C, 4, "DMIVC1RCAP" }, // DMI VC1 Resource Capability
123 { 0x20, 4, "DMIVC1RCTL" }, // DMI VC1 Resource Control
124/* { 0x24, 2, "RSVD" }, // Reserved */
125 { 0x26, 2, "DMIVC1RSTS" }, // DMI VC1 Resource Status
126 { 0x28, 4, "DMIVCPRCAP" }, // DMI VCp Resource Capability
127 { 0x2C, 4, "DMIVCPRCTL" }, // DMI VCp Resource Control
128/* { 0x30, 2, "RSVD" }, // Reserved */
129 { 0x32, 2, "DMIVCPRSTS" }, // DMI VCp Resource Status
130 { 0x34, 4, "DMIVCMRCAP" }, // DMI VCm Resource Capability
131 { 0x38, 4, "DMIVCMRCTL" }, // DMI VCm Resource Control
132/* { 0x3C, 2, "RSVD" }, // Reserved */
133 { 0x3E, 2, "DMIVCMRSTS" }, // DMI VCm Resource Status
134 { 0x40, 4, "DMIRCLDECH" }, // DMI Root Complex Link Declaration */
135 { 0x44, 4, "DMIESD" }, // DMI Element Self Description
136/* { 0x48, 4, "RSVD" }, // Reserved */
137/* { 0x4C, 4, "RSVD" }, // Reserved */
138 { 0x50, 4, "DMILE1D" }, // DMI Link Entry 1 Description
139/* { 0x54, 4, "RSVD" }, // Reserved */
140 { 0x58, 4, "DMILE1A" }, // DMI Link Entry 1 Address
141 { 0x5C, 4, "DMILUE1A" }, // DMI Link Upper Entry 1 Address
142 { 0x60, 4, "DMILE2D" }, // DMI Link Entry 2 Description
143/* { 0x64, 4, "RSVD" }, // Reserved */
144 { 0x68, 4, "DMILE2A" }, // DMI Link Entry 2 Address
145/* { 0x6C, 4, "RSVD" }, // Reserved */
146/* { 0x70, 4, "RSVD" }, // Reserved */
147/* { 0x74, 4, "RSVD" }, // Reserved */
148/* { 0x78, 4, "RSVD" }, // Reserved */
149/* { 0x7C, 4, "RSVD" }, // Reserved */
150/* { 0x80, 4, "RSVD" }, // Reserved */
151/* { 0x84, 4, "RSVD" }, // Reserved */
152 { 0x88, 2, "LCTL" }, // Link Control
153 /* ... - Reserved */
154 { 0x1C4, 4, "DMIUESTS" }, // DMI Uncorrectable Error Status
155 { 0x1C8, 4, "DMIUEMSK" }, // DMI Uncorrectable Error Mask
156 { 0x1D0, 4, "DMICESTS" }, // DMI Correctable Error Status
157 { 0x1D4, 4, "DMICEMSK" }, // DMI Correctable Error Mask
Dennis Wassenbergae6685f2014-10-30 10:30:40 +0100158/* ... - Reserved */
159};
160
161/*
Maximilian Schander98c11dd2017-11-05 05:52:13 +0100162 * All Skylake-S/H DMI Registers per
163 *
164 * 6th Generation Intel Processor Families for S-Platform Volume 2 of 2
165 * Page 117
166 * 332688-003E
167 *
168 * 6th Generation Intel Processor Families for H-Platform Volume 2 of 2
169 * Page 117
170 * 332987-002EN
171 */
172static const io_register_t skylake_dmi_registers[] = {
173 { 0x00, 4, "DMIVCECH" }, // DMI Virtual Channel Enhanced Capability
174 { 0x04, 4, "DMIPVCCAP1" }, // DMI Port VC Capability Register 1
175 { 0x08, 4, "DMIPVCCAP2" }, // DMI Port VC Capability Register 2
176 { 0x0C, 2, "DMIPVCCTL" }, // DMI Port VC Control
177 { 0x10, 4, "DMIVC0RCAP" }, // DMI VC0 Resource Capability
178 { 0x14, 4, "DMIVC0RCTL" }, // DMI VC0 Resource Control
179 { 0x1A, 2, "DMIVC0RSTS" }, // DMI VC0 Resource Status
180 { 0x1C, 4, "DMIVC1RCAP" }, // DMI VC1 Resource Capability
181 { 0x20, 4, "DMIVC1RCTL" }, // DMI VC1 Resource Control
182 { 0x26, 2, "DMIVC1RSTS" }, // DMI VC1 Resource Status
183 { 0x34, 4, "DMIVCMRCAP" }, // DMI VCm Resource Capability
184 { 0x38, 4, "DMIVCMRCTL" }, // DMI VCm Resource Control
185 { 0x3E, 2, "DMIVCMRSTS" }, // DMI VCm Resource Status
186 { 0x40, 4, "DMIRCLDECH" }, // DMI Root Complex Link Declaration */
187 { 0x44, 4, "DMIESD" }, // DMI Element Self Description
188 { 0x50, 4, "DMILE1D" }, // DMI Link Entry 1 Description
189 { 0x58, 4, "DMILE1A" }, // DMI Link Entry 1 Address
190 { 0x5C, 4, "DMILUE1A" }, // DMI Link Upper Entry 1 Address
191 { 0x60, 4, "DMILE2D" }, // DMI Link Entry 2 Description
192 { 0x68, 4, "DMILE2A" }, // DMI Link Entry 2 Address
193 { 0x84, 4, "LCAP" }, // Link Capabilities
194 { 0x88, 2, "LCTL" }, // Link Control
195 { 0x8A, 2, "LSTS" }, // DMI Link Status
196 { 0x98, 2, "LCTL2" }, // Link Control 2
197 { 0x9A, 2, "LSTS2" }, // DMI Link Status 2
198 { 0x1C4, 4, "DMIUESTS" }, // DMI Uncorrectable Error Status
199 { 0x1C8, 4, "DMIUEMSK" }, // DMI Uncorrectable Error Mask
200 { 0x1CC, 4, "DMIUESEV" }, // DMI Uncorrectable Error Mask
201 { 0x1D0, 4, "DMICESTS" }, // DMI Correctable Error Status
202 { 0x1D4, 4, "DMICEMSK" }, // DMI Correctable Error Mask
203};
204
205
206/*
Stefan Reinauer23190272008-08-20 13:41:24 +0000207 * Egress Port Root Complex MMIO configuration space
208 */
209int print_epbar(struct pci_dev *nb)
210{
211 int i, size = (4 * 1024);
212 volatile uint8_t *epbar;
Stefan Reinauer1162f252008-12-04 15:18:20 +0000213 uint64_t epbar_phys;
Stefan Reinauer23190272008-08-20 13:41:24 +0000214
215 printf("\n============= EPBAR =============\n\n");
216
217 switch (nb->device_id) {
Pat Erleyca3548e2010-04-21 06:23:19 +0000218 case PCI_DEVICE_ID_INTEL_82915:
Stefan Reinauer23190272008-08-20 13:41:24 +0000219 case PCI_DEVICE_ID_INTEL_82945GM:
Björn Busse2d33dc42010-08-01 15:33:30 +0000220 case PCI_DEVICE_ID_INTEL_82945GSE:
Stefan Reinauer3d9a12f2008-11-02 11:11:40 +0000221 case PCI_DEVICE_ID_INTEL_82945P:
Stefan Tauner1a00cf02012-10-13 06:23:52 +0200222 case PCI_DEVICE_ID_INTEL_82946:
Stefan Reinauer1162f252008-12-04 15:18:20 +0000223 case PCI_DEVICE_ID_INTEL_82975X:
Stefan Reinauer23190272008-08-20 13:41:24 +0000224 epbar_phys = pci_read_long(nb, 0x40) & 0xfffffffe;
225 break;
Stefan Tauner04c06002012-10-13 02:19:30 +0200226 case PCI_DEVICE_ID_INTEL_82965PM:
227 case PCI_DEVICE_ID_INTEL_82Q965:
228 case PCI_DEVICE_ID_INTEL_82Q35:
229 case PCI_DEVICE_ID_INTEL_82G33:
230 case PCI_DEVICE_ID_INTEL_82Q33:
231 case PCI_DEVICE_ID_INTEL_82X38:
Ruud Schrampbb41f502011-04-04 07:53:19 +0200232 case PCI_DEVICE_ID_INTEL_32X0:
Damien Zammit9c986642015-08-17 21:04:41 +1000233 case PCI_DEVICE_ID_INTEL_82XX4X:
234 case PCI_DEVICE_ID_INTEL_82Q45:
235 case PCI_DEVICE_ID_INTEL_82G45:
236 case PCI_DEVICE_ID_INTEL_82G41:
237 case PCI_DEVICE_ID_INTEL_82B43:
238 case PCI_DEVICE_ID_INTEL_82B43_2:
Corey Osgood23d98c72010-07-29 19:25:31 +0000239 case PCI_DEVICE_ID_INTEL_ATOM_DXXX:
240 case PCI_DEVICE_ID_INTEL_ATOM_NXXX:
Felix Heldfac95e32014-11-09 00:11:28 +0100241 case PCI_DEVICE_ID_INTEL_CORE_2ND_GEN_D:
242 case PCI_DEVICE_ID_INTEL_CORE_2ND_GEN_M:
243 case PCI_DEVICE_ID_INTEL_CORE_2ND_GEN_E3:
244 case PCI_DEVICE_ID_INTEL_CORE_3RD_GEN_D:
245 case PCI_DEVICE_ID_INTEL_CORE_3RD_GEN_M:
246 case PCI_DEVICE_ID_INTEL_CORE_3RD_GEN_E3:
247 case PCI_DEVICE_ID_INTEL_CORE_3RD_GEN_015c:
248 case PCI_DEVICE_ID_INTEL_CORE_4TH_GEN_D:
249 case PCI_DEVICE_ID_INTEL_CORE_4TH_GEN_M:
250 case PCI_DEVICE_ID_INTEL_CORE_4TH_GEN_E3:
Dennis Wassenbergae6685f2014-10-30 10:30:40 +0100251 case PCI_DEVICE_ID_INTEL_CORE_4TH_GEN_U:
Matt DeVillier5b667df2015-05-14 21:58:33 -0500252 case PCI_DEVICE_ID_INTEL_CORE_5TH_GEN_U:
Nico Huber54fe32f2017-10-03 16:03:07 +0200253 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_D2:
Benjamin Doronc01fa5a2020-07-01 19:20:40 +0000254 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_U:
255 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_Y:
Maximilian Schander79856432017-11-05 06:14:55 +0100256 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_M:
257 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_WST:
Christoph Pomaska48ac29e2018-01-01 01:48:21 +0100258 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_D:
Maxim Polyakov13176892019-08-27 18:20:08 +0300259 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_E:
Matthew Garrett2bf28e52018-07-23 21:09:47 -0700260 case PCI_DEVICE_ID_INTEL_CORE_7TH_GEN_U:
261 case PCI_DEVICE_ID_INTEL_CORE_7TH_GEN_Y:
262 case PCI_DEVICE_ID_INTEL_CORE_7TH_GEN_U_Q:
Christian Walter9a8c5e72019-05-06 17:50:57 +0200263 case PCI_DEVICE_ID_INTEL_CORE_7TH_GEN_E3:
Matt DeVillier3c784452019-06-11 23:23:46 -0500264 case PCI_DEVICE_ID_INTEL_CORE_8TH_GEN_U_1:
265 case PCI_DEVICE_ID_INTEL_CORE_8TH_GEN_U_2:
Stefan Tauner04c06002012-10-13 02:19:30 +0200266 epbar_phys = pci_read_long(nb, 0x40) & 0xfffffffe;
267 epbar_phys |= ((uint64_t)pci_read_long(nb, 0x44)) << 32;
268 break;
Stefan Reinauerb2aedb12009-08-29 15:45:43 +0000269 case PCI_DEVICE_ID_INTEL_82810:
Stefan Tauner04c06002012-10-13 02:19:30 +0200270 case PCI_DEVICE_ID_INTEL_82810_DC:
271 case PCI_DEVICE_ID_INTEL_82810E_DC:
Stefan Reinauer04844812010-02-22 11:26:06 +0000272 case PCI_DEVICE_ID_INTEL_82830M:
Idwer Vollering312fc962010-12-17 22:34:58 +0000273 case PCI_DEVICE_ID_INTEL_82865:
274 printf("This northbridge does not have EPBAR.\n");
Stefan Reinauer23190272008-08-20 13:41:24 +0000275 return 1;
276 default:
277 printf("Error: Dumping EPBAR on this northbridge is not (yet) supported.\n");
278 return 1;
279 }
280
Stefan Reinauer1162f252008-12-04 15:18:20 +0000281 epbar = map_physical(epbar_phys, size);
Stefan Reinauer14e22772010-04-27 06:56:47 +0000282
Stefan Reinauer1162f252008-12-04 15:18:20 +0000283 if (epbar == NULL) {
Stefan Reinauer23190272008-08-20 13:41:24 +0000284 perror("Error mapping EPBAR");
285 exit(1);
286 }
287
Stefan Reinauera7b296d2011-11-14 12:40:34 -0800288 printf("EPBAR = 0x%08" PRIx64 " (MEM)\n\n", epbar_phys);
Stefan Reinauer23190272008-08-20 13:41:24 +0000289 for (i = 0; i < size; i += 4) {
Michael Niewöhner10d52212020-03-13 19:08:21 +0100290 if (read32(epbar + i))
291 printf("0x%04x: 0x%08x\n", i, read32(epbar+i));
Stefan Reinauer23190272008-08-20 13:41:24 +0000292 }
293
Stefan Reinauer1162f252008-12-04 15:18:20 +0000294 unmap_physical((void *)epbar, size);
Stefan Reinauer23190272008-08-20 13:41:24 +0000295 return 0;
296}
297
298/*
299 * MCH-ICH Serial Interconnect Ingress Root Complex MMIO configuration space
300 */
301int print_dmibar(struct pci_dev *nb)
302{
303 int i, size = (4 * 1024);
304 volatile uint8_t *dmibar;
Stefan Reinauer1162f252008-12-04 15:18:20 +0000305 uint64_t dmibar_phys;
Anton Kochkovc7fc4422012-07-21 06:36:47 +0400306 const io_register_t *dmi_registers = NULL;
Stefan Reinauer23190272008-08-20 13:41:24 +0000307
308 printf("\n============= DMIBAR ============\n\n");
309
310 switch (nb->device_id) {
Pat Erleyca3548e2010-04-21 06:23:19 +0000311 case PCI_DEVICE_ID_INTEL_82915:
Stefan Reinauer23190272008-08-20 13:41:24 +0000312 case PCI_DEVICE_ID_INTEL_82945GM:
Björn Busse2d33dc42010-08-01 15:33:30 +0000313 case PCI_DEVICE_ID_INTEL_82945GSE:
Stefan Reinauer3d9a12f2008-11-02 11:11:40 +0000314 case PCI_DEVICE_ID_INTEL_82945P:
Stefan Reinauer1162f252008-12-04 15:18:20 +0000315 case PCI_DEVICE_ID_INTEL_82975X:
Stefan Reinauer23190272008-08-20 13:41:24 +0000316 dmibar_phys = pci_read_long(nb, 0x4c) & 0xfffffffe;
317 break;
Stefan Tauner1a00cf02012-10-13 06:23:52 +0200318 case PCI_DEVICE_ID_INTEL_82946:
Stefan Tauner04c06002012-10-13 02:19:30 +0200319 case PCI_DEVICE_ID_INTEL_82965PM:
320 case PCI_DEVICE_ID_INTEL_82Q965:
Warren Turkal53291952010-09-03 09:32:17 +0000321 case PCI_DEVICE_ID_INTEL_82Q35:
322 case PCI_DEVICE_ID_INTEL_82G33:
323 case PCI_DEVICE_ID_INTEL_82Q33:
Stefan Tauner04c06002012-10-13 02:19:30 +0200324 case PCI_DEVICE_ID_INTEL_82X38:
Ruud Schrampbb41f502011-04-04 07:53:19 +0200325 case PCI_DEVICE_ID_INTEL_32X0:
Damien Zammit9c986642015-08-17 21:04:41 +1000326 case PCI_DEVICE_ID_INTEL_82XX4X:
327 case PCI_DEVICE_ID_INTEL_82Q45:
328 case PCI_DEVICE_ID_INTEL_82G45:
329 case PCI_DEVICE_ID_INTEL_82G41:
330 case PCI_DEVICE_ID_INTEL_82B43:
331 case PCI_DEVICE_ID_INTEL_82B43_2:
Corey Osgood23d98c72010-07-29 19:25:31 +0000332 case PCI_DEVICE_ID_INTEL_ATOM_DXXX:
333 case PCI_DEVICE_ID_INTEL_ATOM_NXXX:
Warren Turkal53291952010-09-03 09:32:17 +0000334 dmibar_phys = pci_read_long(nb, 0x68) & 0xfffffffe;
335 dmibar_phys |= ((uint64_t)pci_read_long(nb, 0x6c)) << 32;
336 break;
Stefan Reinauerb2aedb12009-08-29 15:45:43 +0000337 case PCI_DEVICE_ID_INTEL_82810:
Stefan Tauner04c06002012-10-13 02:19:30 +0200338 case PCI_DEVICE_ID_INTEL_82810_DC:
339 case PCI_DEVICE_ID_INTEL_82810E_DC:
Idwer Vollering312fc962010-12-17 22:34:58 +0000340 case PCI_DEVICE_ID_INTEL_82865:
341 printf("This northbridge does not have DMIBAR.\n");
Stefan Reinauer23190272008-08-20 13:41:24 +0000342 return 1;
Stefan Tauner04c06002012-10-13 02:19:30 +0200343 case PCI_DEVICE_ID_INTEL_82X58:
Warren Turkal3235eea2010-09-03 09:31:13 +0000344 dmibar_phys = pci_read_long(nb, 0x50) & 0xfffff000;
345 break;
Stefan Taunerdbc6fcd2013-06-20 18:05:06 +0200346 case PCI_DEVICE_ID_INTEL_CORE_0TH_GEN:
347 /* DMIBAR is called DMIRCBAR in Nehalem */
348 dmibar_phys = pci_read_long(nb, 0x50) & 0xfffff000; /* 31:12 */
349 dmi_registers = nehalem_dmi_registers;
350 size = ARRAY_SIZE(nehalem_dmi_registers);
351 break;
Stefan Tauner04c06002012-10-13 02:19:30 +0200352 case PCI_DEVICE_ID_INTEL_CORE_1ST_GEN:
353 dmibar_phys = pci_read_long(nb, 0x68);
354 dmibar_phys |= ((uint64_t)pci_read_long(nb, 0x6c)) << 32;
355 dmibar_phys &= 0x0000000ffffff000UL; /* 35:12 */
Stefan Taunerdbc6fcd2013-06-20 18:05:06 +0200356 dmi_registers = westmere_dmi_registers;
357 size = ARRAY_SIZE(westmere_dmi_registers);
Stefan Tauner04c06002012-10-13 02:19:30 +0200358 break;
Felix Held0cc8f292014-11-05 03:18:44 +0100359 case PCI_DEVICE_ID_INTEL_CORE_2ND_GEN_D:
360 case PCI_DEVICE_ID_INTEL_CORE_2ND_GEN_M:
Felix Heldfac95e32014-11-09 00:11:28 +0100361 case PCI_DEVICE_ID_INTEL_CORE_2ND_GEN_E3:
Anton Kochkovc7fc4422012-07-21 06:36:47 +0400362 dmi_registers = sandybridge_dmi_registers;
363 size = ARRAY_SIZE(sandybridge_dmi_registers);
Paul Menzelceac7872017-03-19 20:12:43 +0100364 /* fall through */
Felix Heldfac95e32014-11-09 00:11:28 +0100365 case PCI_DEVICE_ID_INTEL_CORE_3RD_GEN_D: /* pretty printing not implemented yet */
366 case PCI_DEVICE_ID_INTEL_CORE_3RD_GEN_M:
367 case PCI_DEVICE_ID_INTEL_CORE_3RD_GEN_E3:
368 case PCI_DEVICE_ID_INTEL_CORE_3RD_GEN_015c:
369 case PCI_DEVICE_ID_INTEL_CORE_4TH_GEN_D:
370 case PCI_DEVICE_ID_INTEL_CORE_4TH_GEN_M:
371 case PCI_DEVICE_ID_INTEL_CORE_4TH_GEN_E3:
Stefan Tauner04c06002012-10-13 02:19:30 +0200372 dmibar_phys = pci_read_long(nb, 0x68);
373 dmibar_phys |= ((uint64_t)pci_read_long(nb, 0x6c)) << 32;
374 dmibar_phys &= 0x0000007ffffff000UL; /* 38:12 */
Anton Kochkovc7fc4422012-07-21 06:36:47 +0400375 break;
Dennis Wassenbergae6685f2014-10-30 10:30:40 +0100376 case PCI_DEVICE_ID_INTEL_CORE_4TH_GEN_U:
Matt DeVillier5b667df2015-05-14 21:58:33 -0500377 case PCI_DEVICE_ID_INTEL_CORE_5TH_GEN_U:
Dennis Wassenbergae6685f2014-10-30 10:30:40 +0100378 dmi_registers = haswell_ult_dmi_registers;
379 size = ARRAY_SIZE(haswell_ult_dmi_registers);
380 dmibar_phys = pci_read_long(nb, 0x68);
381 dmibar_phys |= ((uint64_t)pci_read_long(nb, 0x6c)) << 32;
382 dmibar_phys &= 0x0000007ffffff000UL; /* 38:12 */
383 break;
Nico Huber54fe32f2017-10-03 16:03:07 +0200384 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_D2:
Benjamin Doronc01fa5a2020-07-01 19:20:40 +0000385 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_U:
386 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_Y:
Maximilian Schander98c11dd2017-11-05 05:52:13 +0100387 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_M:
388 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_WST:
Christoph Pomaska48ac29e2018-01-01 01:48:21 +0100389 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_D:
Maxim Polyakov13176892019-08-27 18:20:08 +0300390 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_E:
Matthew Garrett2bf28e52018-07-23 21:09:47 -0700391 case PCI_DEVICE_ID_INTEL_CORE_7TH_GEN_U:
392 case PCI_DEVICE_ID_INTEL_CORE_7TH_GEN_Y:
393 case PCI_DEVICE_ID_INTEL_CORE_7TH_GEN_U_Q:
Christian Walter9a8c5e72019-05-06 17:50:57 +0200394 case PCI_DEVICE_ID_INTEL_CORE_7TH_GEN_E3:
Matt DeVillier3c784452019-06-11 23:23:46 -0500395 case PCI_DEVICE_ID_INTEL_CORE_8TH_GEN_U_1:
396 case PCI_DEVICE_ID_INTEL_CORE_8TH_GEN_U_2:
Maximilian Schander98c11dd2017-11-05 05:52:13 +0100397 dmi_registers = skylake_dmi_registers;
398 size = ARRAY_SIZE(skylake_dmi_registers);
399 dmibar_phys = pci_read_long(nb, 0x68);
400 dmibar_phys |= ((uint64_t)pci_read_long(nb, 0x6c)) << 32;
401 dmibar_phys &= 0x0000007ffffff000UL; /* 38:12 */
402 break;
Stefan Reinauer23190272008-08-20 13:41:24 +0000403 default:
404 printf("Error: Dumping DMIBAR on this northbridge is not (yet) supported.\n");
405 return 1;
406 }
407
Stefan Reinauer1162f252008-12-04 15:18:20 +0000408 dmibar = map_physical(dmibar_phys, size);
Stefan Reinauer14e22772010-04-27 06:56:47 +0000409
Stefan Reinauer1162f252008-12-04 15:18:20 +0000410 if (dmibar == NULL) {
Stefan Reinauer23190272008-08-20 13:41:24 +0000411 perror("Error mapping DMIBAR");
412 exit(1);
413 }
414
Stefan Reinauera7b296d2011-11-14 12:40:34 -0800415 printf("DMIBAR = 0x%08" PRIx64 " (MEM)\n\n", dmibar_phys);
Anton Kochkovc7fc4422012-07-21 06:36:47 +0400416 if (dmi_registers != NULL) {
417 for (i = 0; i < size; i++) {
418 switch (dmi_registers[i].size) {
419 case 4:
420 printf("dmibase+0x%04x: 0x%08x (%s)\n",
421 dmi_registers[i].addr,
Michael Niewöhner10d52212020-03-13 19:08:21 +0100422 read32(dmibar+dmi_registers[i].addr),
Anton Kochkovc7fc4422012-07-21 06:36:47 +0400423 dmi_registers[i].name);
424 break;
425 case 2:
426 printf("dmibase+0x%04x: 0x%04x (%s)\n",
427 dmi_registers[i].addr,
Michael Niewöhner10d52212020-03-13 19:08:21 +0100428 read16(dmibar+dmi_registers[i].addr),
Anton Kochkovc7fc4422012-07-21 06:36:47 +0400429 dmi_registers[i].name);
430 break;
431 case 1:
432 printf("dmibase+0x%04x: 0x%02x (%s)\n",
433 dmi_registers[i].addr,
Michael Niewöhner10d52212020-03-13 19:08:21 +0100434 read8(dmibar+dmi_registers[i].addr),
Anton Kochkovc7fc4422012-07-21 06:36:47 +0400435 dmi_registers[i].name);
436 break;
437 }
438 }
439 } else {
440 for (i = 0; i < size; i += 4) {
Michael Niewöhner10d52212020-03-13 19:08:21 +0100441 if (read32(dmibar + i))
442 printf("0x%04x: 0x%08x\n", i, read32(dmibar+i));
Anton Kochkovc7fc4422012-07-21 06:36:47 +0400443 }
Stefan Reinauer23190272008-08-20 13:41:24 +0000444 }
445
Stefan Reinauer1162f252008-12-04 15:18:20 +0000446 unmap_physical((void *)dmibar, size);
Stefan Reinauer23190272008-08-20 13:41:24 +0000447 return 0;
448}
449
450/*
451 * PCIe MMIO configuration space
452 */
453int print_pciexbar(struct pci_dev *nb)
454{
Stefan Reinauer1162f252008-12-04 15:18:20 +0000455 uint64_t pciexbar_reg;
456 uint64_t pciexbar_phys;
Stefan Reinauer23190272008-08-20 13:41:24 +0000457 volatile uint8_t *pciexbar;
458 int max_busses, devbase, i;
459 int bus, dev, fn;
460
461 printf("========= PCIEXBAR ========\n\n");
462
463 switch (nb->device_id) {
Pat Erleyca3548e2010-04-21 06:23:19 +0000464 case PCI_DEVICE_ID_INTEL_82915:
Stefan Reinauer23190272008-08-20 13:41:24 +0000465 case PCI_DEVICE_ID_INTEL_82945GM:
Björn Busse2d33dc42010-08-01 15:33:30 +0000466 case PCI_DEVICE_ID_INTEL_82945GSE:
Stefan Reinauer3d9a12f2008-11-02 11:11:40 +0000467 case PCI_DEVICE_ID_INTEL_82945P:
Stefan Reinauer1162f252008-12-04 15:18:20 +0000468 case PCI_DEVICE_ID_INTEL_82975X:
Stefan Reinauer23190272008-08-20 13:41:24 +0000469 pciexbar_reg = pci_read_long(nb, 0x48);
470 break;
Stefan Tauner1a00cf02012-10-13 06:23:52 +0200471 case PCI_DEVICE_ID_INTEL_82946:
Stefan Tauner04c06002012-10-13 02:19:30 +0200472 case PCI_DEVICE_ID_INTEL_82965PM:
473 case PCI_DEVICE_ID_INTEL_82Q965:
474 case PCI_DEVICE_ID_INTEL_82Q35:
475 case PCI_DEVICE_ID_INTEL_82G33:
476 case PCI_DEVICE_ID_INTEL_82Q33:
477 case PCI_DEVICE_ID_INTEL_82X38:
Ruud Schrampbb41f502011-04-04 07:53:19 +0200478 case PCI_DEVICE_ID_INTEL_32X0:
Damien Zammit9c986642015-08-17 21:04:41 +1000479 case PCI_DEVICE_ID_INTEL_82XX4X:
480 case PCI_DEVICE_ID_INTEL_82Q45:
481 case PCI_DEVICE_ID_INTEL_82G45:
482 case PCI_DEVICE_ID_INTEL_82G41:
483 case PCI_DEVICE_ID_INTEL_82B43:
484 case PCI_DEVICE_ID_INTEL_82B43_2:
Corey Osgood23d98c72010-07-29 19:25:31 +0000485 case PCI_DEVICE_ID_INTEL_ATOM_DXXX:
486 case PCI_DEVICE_ID_INTEL_ATOM_NXXX:
Felix Heldfac95e32014-11-09 00:11:28 +0100487 case PCI_DEVICE_ID_INTEL_CORE_2ND_GEN_D:
488 case PCI_DEVICE_ID_INTEL_CORE_2ND_GEN_M:
489 case PCI_DEVICE_ID_INTEL_CORE_2ND_GEN_E3:
490 case PCI_DEVICE_ID_INTEL_CORE_3RD_GEN_D:
491 case PCI_DEVICE_ID_INTEL_CORE_3RD_GEN_M:
492 case PCI_DEVICE_ID_INTEL_CORE_3RD_GEN_E3:
493 case PCI_DEVICE_ID_INTEL_CORE_3RD_GEN_015c:
494 case PCI_DEVICE_ID_INTEL_CORE_4TH_GEN_D:
495 case PCI_DEVICE_ID_INTEL_CORE_4TH_GEN_M:
496 case PCI_DEVICE_ID_INTEL_CORE_4TH_GEN_E3:
Dennis Wassenbergae6685f2014-10-30 10:30:40 +0100497 case PCI_DEVICE_ID_INTEL_CORE_4TH_GEN_U:
Matt DeVillier5b667df2015-05-14 21:58:33 -0500498 case PCI_DEVICE_ID_INTEL_CORE_5TH_GEN_U:
Nico Huber54fe32f2017-10-03 16:03:07 +0200499 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_D2:
Benjamin Doronc01fa5a2020-07-01 19:20:40 +0000500 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_U:
501 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_Y:
Maximilian Schander79856432017-11-05 06:14:55 +0100502 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_M:
503 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_WST:
Christoph Pomaska48ac29e2018-01-01 01:48:21 +0100504 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_D:
Maxim Polyakov13176892019-08-27 18:20:08 +0300505 case PCI_DEVICE_ID_INTEL_CORE_6TH_GEN_E:
Matthew Garrett2bf28e52018-07-23 21:09:47 -0700506 case PCI_DEVICE_ID_INTEL_CORE_7TH_GEN_U:
507 case PCI_DEVICE_ID_INTEL_CORE_7TH_GEN_Y:
508 case PCI_DEVICE_ID_INTEL_CORE_7TH_GEN_U_Q:
Christian Walter9a8c5e72019-05-06 17:50:57 +0200509 case PCI_DEVICE_ID_INTEL_CORE_7TH_GEN_E3:
Matt DeVillier3c784452019-06-11 23:23:46 -0500510 case PCI_DEVICE_ID_INTEL_CORE_8TH_GEN_U_1:
511 case PCI_DEVICE_ID_INTEL_CORE_8TH_GEN_U_2:
Stefan Tauner04c06002012-10-13 02:19:30 +0200512 pciexbar_reg = pci_read_long(nb, 0x60);
513 pciexbar_reg |= ((uint64_t)pci_read_long(nb, 0x64)) << 32;
514 break;
Stefan Reinauerb2aedb12009-08-29 15:45:43 +0000515 case PCI_DEVICE_ID_INTEL_82810:
Stefan Tauner04c06002012-10-13 02:19:30 +0200516 case PCI_DEVICE_ID_INTEL_82810_DC:
517 case PCI_DEVICE_ID_INTEL_82810E_DC:
Idwer Vollering312fc962010-12-17 22:34:58 +0000518 case PCI_DEVICE_ID_INTEL_82865:
519 printf("Error: This northbridge does not have PCIEXBAR.\n");
Stefan Reinauer23190272008-08-20 13:41:24 +0000520 return 1;
521 default:
522 printf("Error: Dumping PCIEXBAR on this northbridge is not (yet) supported.\n");
523 return 1;
524 }
525
526 if (!(pciexbar_reg & (1 << 0))) {
527 printf("PCIEXBAR register is disabled.\n");
528 return 0;
529 }
530
531 switch ((pciexbar_reg >> 1) & 3) {
532 case 0: // 256MB
Paul Menzel17c05f22013-04-03 10:00:33 +0200533 pciexbar_phys = pciexbar_reg & (0xffULL << 28);
Stefan Reinauer23190272008-08-20 13:41:24 +0000534 max_busses = 256;
535 break;
536 case 1: // 128M
Paul Menzel17c05f22013-04-03 10:00:33 +0200537 pciexbar_phys = pciexbar_reg & (0x1ffULL << 27);
Stefan Reinauer23190272008-08-20 13:41:24 +0000538 max_busses = 128;
539 break;
540 case 2: // 64M
Paul Menzel17c05f22013-04-03 10:00:33 +0200541 pciexbar_phys = pciexbar_reg & (0x3ffULL << 26);
Stefan Reinauer23190272008-08-20 13:41:24 +0000542 max_busses = 64;
543 break;
544 default: // RSVD
545 printf("Undefined address base. Bailing out.\n");
546 return 1;
Stefan Reinauer14e22772010-04-27 06:56:47 +0000547 }
Stefan Reinauer23190272008-08-20 13:41:24 +0000548
Stefan Reinauera7b296d2011-11-14 12:40:34 -0800549 printf("PCIEXBAR: 0x%08" PRIx64 "\n", pciexbar_phys);
Stefan Reinauer23190272008-08-20 13:41:24 +0000550
Stefan Reinauer1162f252008-12-04 15:18:20 +0000551 pciexbar = map_physical(pciexbar_phys, (max_busses * 1024 * 1024));
Stefan Reinauer14e22772010-04-27 06:56:47 +0000552
Stefan Reinauer1162f252008-12-04 15:18:20 +0000553 if (pciexbar == NULL) {
Stefan Reinauer23190272008-08-20 13:41:24 +0000554 perror("Error mapping PCIEXBAR");
555 exit(1);
556 }
Stefan Reinauer14e22772010-04-27 06:56:47 +0000557
Stefan Reinauer23190272008-08-20 13:41:24 +0000558 for (bus = 0; bus < max_busses; bus++) {
559 for (dev = 0; dev < 32; dev++) {
560 for (fn = 0; fn < 8; fn++) {
561 devbase = (bus * 1024 * 1024) + (dev * 32 * 1024) + (fn * 4 * 1024);
562
Michael Niewöhner10d52212020-03-13 19:08:21 +0100563 if (read16(pciexbar + devbase) == 0xffff)
Stefan Reinauer23190272008-08-20 13:41:24 +0000564 continue;
Stefan Reinauer14e22772010-04-27 06:56:47 +0000565
Stefan Reinauer23190272008-08-20 13:41:24 +0000566 /* This is a heuristics. Anyone got a better check? */
Michael Niewöhner10d52212020-03-13 19:08:21 +0100567 if( (read32(pciexbar + devbase + 256) == 0xffffffff) &&
568 (read32(pciexbar + devbase + 512) == 0xffffffff) ) {
Stefan Reinauer23190272008-08-20 13:41:24 +0000569#if DEBUG
570 printf("Skipped non-PCIe device %02x:%02x.%01x\n", bus, dev, fn);
571#endif
572 continue;
573 }
574
575 printf("\nPCIe %02x:%02x.%01x extended config space:", bus, dev, fn);
576 for (i = 0; i < 4096; i++) {
577 if((i % 0x10) == 0)
578 printf("\n%04x:", i);
579 printf(" %02x", *(pciexbar+devbase+i));
580 }
581 printf("\n");
582 }
583 }
584 }
585
Stefan Reinauer1162f252008-12-04 15:18:20 +0000586 unmap_physical((void *)pciexbar, (max_busses * 1024 * 1024));
Stefan Reinauer23190272008-08-20 13:41:24 +0000587
588 return 0;
589}