pci_subr.c revision 1.124.2.3 1 1.124.2.3 snj /* $NetBSD: pci_subr.c,v 1.124.2.3 2016/12/09 04:56:25 snj Exp $ */
2 1.3 cgd
3 1.1 mycroft /*
4 1.22 thorpej * Copyright (c) 1997 Zubin D. Dittia. All rights reserved.
5 1.40 cgd * Copyright (c) 1995, 1996, 1998, 2000
6 1.26 cgd * Christopher G. Demetriou. All rights reserved.
7 1.30 mycroft * Copyright (c) 1994 Charles M. Hannum. All rights reserved.
8 1.1 mycroft *
9 1.1 mycroft * Redistribution and use in source and binary forms, with or without
10 1.1 mycroft * modification, are permitted provided that the following conditions
11 1.1 mycroft * are met:
12 1.1 mycroft * 1. Redistributions of source code must retain the above copyright
13 1.1 mycroft * notice, this list of conditions and the following disclaimer.
14 1.1 mycroft * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 mycroft * notice, this list of conditions and the following disclaimer in the
16 1.1 mycroft * documentation and/or other materials provided with the distribution.
17 1.1 mycroft * 3. All advertising materials mentioning features or use of this software
18 1.1 mycroft * must display the following acknowledgement:
19 1.30 mycroft * This product includes software developed by Charles M. Hannum.
20 1.1 mycroft * 4. The name of the author may not be used to endorse or promote products
21 1.1 mycroft * derived from this software without specific prior written permission.
22 1.1 mycroft *
23 1.1 mycroft * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
24 1.1 mycroft * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
25 1.1 mycroft * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
26 1.1 mycroft * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
27 1.1 mycroft * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
28 1.1 mycroft * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
29 1.1 mycroft * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
30 1.1 mycroft * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
31 1.1 mycroft * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
32 1.1 mycroft * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
33 1.1 mycroft */
34 1.1 mycroft
35 1.1 mycroft /*
36 1.10 cgd * PCI autoconfiguration support functions.
37 1.45 thorpej *
38 1.45 thorpej * Note: This file is also built into a userland library (libpci).
39 1.45 thorpej * Pay attention to this when you make modifications.
40 1.1 mycroft */
41 1.47 lukem
42 1.47 lukem #include <sys/cdefs.h>
43 1.124.2.3 snj __KERNEL_RCSID(0, "$NetBSD: pci_subr.c,v 1.124.2.3 2016/12/09 04:56:25 snj Exp $");
44 1.21 enami
45 1.45 thorpej #ifdef _KERNEL_OPT
46 1.35 cgd #include "opt_pci.h"
47 1.45 thorpej #endif
48 1.1 mycroft
49 1.1 mycroft #include <sys/param.h>
50 1.1 mycroft
51 1.45 thorpej #ifdef _KERNEL
52 1.62 simonb #include <sys/systm.h>
53 1.73 ad #include <sys/intr.h>
54 1.80 pgoyette #include <sys/module.h>
55 1.45 thorpej #else
56 1.45 thorpej #include <pci.h>
57 1.124.2.3 snj #include <stdarg.h>
58 1.72 joerg #include <stdbool.h>
59 1.46 enami #include <stdio.h>
60 1.117 msaitoh #include <string.h>
61 1.45 thorpej #endif
62 1.24 thorpej
63 1.10 cgd #include <dev/pci/pcireg.h>
64 1.45 thorpej #ifdef _KERNEL
65 1.7 cgd #include <dev/pci/pcivar.h>
66 1.10 cgd #endif
67 1.10 cgd
68 1.10 cgd /*
69 1.10 cgd * Descriptions of known PCI classes and subclasses.
70 1.10 cgd *
71 1.10 cgd * Subclasses are described in the same way as classes, but have a
72 1.10 cgd * NULL subclass pointer.
73 1.10 cgd */
74 1.10 cgd struct pci_class {
75 1.44 thorpej const char *name;
76 1.91 matt u_int val; /* as wide as pci_{,sub}class_t */
77 1.42 jdolecek const struct pci_class *subclasses;
78 1.10 cgd };
79 1.10 cgd
80 1.117 msaitoh /*
81 1.117 msaitoh * Class 0x00.
82 1.117 msaitoh * Before rev. 2.0.
83 1.117 msaitoh */
84 1.61 thorpej static const struct pci_class pci_subclass_prehistoric[] = {
85 1.65 christos { "miscellaneous", PCI_SUBCLASS_PREHISTORIC_MISC, NULL, },
86 1.65 christos { "VGA", PCI_SUBCLASS_PREHISTORIC_VGA, NULL, },
87 1.65 christos { NULL, 0, NULL, },
88 1.10 cgd };
89 1.10 cgd
90 1.117 msaitoh /*
91 1.117 msaitoh * Class 0x01.
92 1.124.2.1 martin * Mass storage controller
93 1.117 msaitoh */
94 1.117 msaitoh
95 1.117 msaitoh /* ATA programming interface */
96 1.117 msaitoh static const struct pci_class pci_interface_ata[] = {
97 1.117 msaitoh { "with single DMA", PCI_INTERFACE_ATA_SINGLEDMA, NULL, },
98 1.117 msaitoh { "with chained DMA", PCI_INTERFACE_ATA_CHAINEDDMA, NULL, },
99 1.117 msaitoh { NULL, 0, NULL, },
100 1.117 msaitoh };
101 1.117 msaitoh
102 1.117 msaitoh /* SATA programming interface */
103 1.117 msaitoh static const struct pci_class pci_interface_sata[] = {
104 1.124.2.1 martin { "vendor specific", PCI_INTERFACE_SATA_VND, NULL, },
105 1.117 msaitoh { "AHCI 1.0", PCI_INTERFACE_SATA_AHCI10, NULL, },
106 1.124.2.1 martin { "Serial Storage Bus Interface", PCI_INTERFACE_SATA_SSBI, NULL, },
107 1.124.2.1 martin { NULL, 0, NULL, },
108 1.124.2.1 martin };
109 1.124.2.1 martin
110 1.124.2.1 martin /* Flash programming interface */
111 1.124.2.1 martin static const struct pci_class pci_interface_nvm[] = {
112 1.124.2.1 martin { "vendor specific", PCI_INTERFACE_NVM_VND, NULL, },
113 1.124.2.1 martin { "NVMHCI 1.0", PCI_INTERFACE_NVM_NVMHCI10, NULL, },
114 1.117 msaitoh { NULL, 0, NULL, },
115 1.117 msaitoh };
116 1.117 msaitoh
117 1.117 msaitoh /* Subclasses */
118 1.61 thorpej static const struct pci_class pci_subclass_mass_storage[] = {
119 1.65 christos { "SCSI", PCI_SUBCLASS_MASS_STORAGE_SCSI, NULL, },
120 1.65 christos { "IDE", PCI_SUBCLASS_MASS_STORAGE_IDE, NULL, },
121 1.65 christos { "floppy", PCI_SUBCLASS_MASS_STORAGE_FLOPPY, NULL, },
122 1.65 christos { "IPI", PCI_SUBCLASS_MASS_STORAGE_IPI, NULL, },
123 1.65 christos { "RAID", PCI_SUBCLASS_MASS_STORAGE_RAID, NULL, },
124 1.117 msaitoh { "ATA", PCI_SUBCLASS_MASS_STORAGE_ATA,
125 1.117 msaitoh pci_interface_ata, },
126 1.117 msaitoh { "SATA", PCI_SUBCLASS_MASS_STORAGE_SATA,
127 1.117 msaitoh pci_interface_sata, },
128 1.65 christos { "SAS", PCI_SUBCLASS_MASS_STORAGE_SAS, NULL, },
129 1.124.2.1 martin { "Flash", PCI_SUBCLASS_MASS_STORAGE_NVM,
130 1.124.2.1 martin pci_interface_nvm, },
131 1.65 christos { "miscellaneous", PCI_SUBCLASS_MASS_STORAGE_MISC, NULL, },
132 1.65 christos { NULL, 0, NULL, },
133 1.10 cgd };
134 1.10 cgd
135 1.117 msaitoh /*
136 1.117 msaitoh * Class 0x02.
137 1.117 msaitoh * Network controller.
138 1.117 msaitoh */
139 1.61 thorpej static const struct pci_class pci_subclass_network[] = {
140 1.65 christos { "ethernet", PCI_SUBCLASS_NETWORK_ETHERNET, NULL, },
141 1.65 christos { "token ring", PCI_SUBCLASS_NETWORK_TOKENRING, NULL, },
142 1.65 christos { "FDDI", PCI_SUBCLASS_NETWORK_FDDI, NULL, },
143 1.65 christos { "ATM", PCI_SUBCLASS_NETWORK_ATM, NULL, },
144 1.65 christos { "ISDN", PCI_SUBCLASS_NETWORK_ISDN, NULL, },
145 1.65 christos { "WorldFip", PCI_SUBCLASS_NETWORK_WORLDFIP, NULL, },
146 1.65 christos { "PCMIG Multi Computing", PCI_SUBCLASS_NETWORK_PCIMGMULTICOMP, NULL, },
147 1.65 christos { "miscellaneous", PCI_SUBCLASS_NETWORK_MISC, NULL, },
148 1.65 christos { NULL, 0, NULL, },
149 1.10 cgd };
150 1.10 cgd
151 1.117 msaitoh /*
152 1.117 msaitoh * Class 0x03.
153 1.117 msaitoh * Display controller.
154 1.117 msaitoh */
155 1.117 msaitoh
156 1.117 msaitoh /* VGA programming interface */
157 1.117 msaitoh static const struct pci_class pci_interface_vga[] = {
158 1.117 msaitoh { "", PCI_INTERFACE_VGA_VGA, NULL, },
159 1.117 msaitoh { "8514-compat", PCI_INTERFACE_VGA_8514, NULL, },
160 1.117 msaitoh { NULL, 0, NULL, },
161 1.117 msaitoh };
162 1.117 msaitoh /* Subclasses */
163 1.61 thorpej static const struct pci_class pci_subclass_display[] = {
164 1.117 msaitoh { "VGA", PCI_SUBCLASS_DISPLAY_VGA, pci_interface_vga,},
165 1.65 christos { "XGA", PCI_SUBCLASS_DISPLAY_XGA, NULL, },
166 1.65 christos { "3D", PCI_SUBCLASS_DISPLAY_3D, NULL, },
167 1.65 christos { "miscellaneous", PCI_SUBCLASS_DISPLAY_MISC, NULL, },
168 1.65 christos { NULL, 0, NULL, },
169 1.10 cgd };
170 1.10 cgd
171 1.117 msaitoh /*
172 1.117 msaitoh * Class 0x04.
173 1.117 msaitoh * Multimedia device.
174 1.117 msaitoh */
175 1.61 thorpej static const struct pci_class pci_subclass_multimedia[] = {
176 1.65 christos { "video", PCI_SUBCLASS_MULTIMEDIA_VIDEO, NULL, },
177 1.65 christos { "audio", PCI_SUBCLASS_MULTIMEDIA_AUDIO, NULL, },
178 1.65 christos { "telephony", PCI_SUBCLASS_MULTIMEDIA_TELEPHONY, NULL,},
179 1.124.2.1 martin { "mixed mode", PCI_SUBCLASS_MULTIMEDIA_HDAUDIO, NULL, },
180 1.65 christos { "miscellaneous", PCI_SUBCLASS_MULTIMEDIA_MISC, NULL, },
181 1.65 christos { NULL, 0, NULL, },
182 1.10 cgd };
183 1.10 cgd
184 1.117 msaitoh /*
185 1.117 msaitoh * Class 0x05.
186 1.117 msaitoh * Memory controller.
187 1.117 msaitoh */
188 1.61 thorpej static const struct pci_class pci_subclass_memory[] = {
189 1.65 christos { "RAM", PCI_SUBCLASS_MEMORY_RAM, NULL, },
190 1.65 christos { "flash", PCI_SUBCLASS_MEMORY_FLASH, NULL, },
191 1.65 christos { "miscellaneous", PCI_SUBCLASS_MEMORY_MISC, NULL, },
192 1.65 christos { NULL, 0, NULL, },
193 1.10 cgd };
194 1.10 cgd
195 1.117 msaitoh /*
196 1.117 msaitoh * Class 0x06.
197 1.117 msaitoh * Bridge device.
198 1.117 msaitoh */
199 1.117 msaitoh
200 1.117 msaitoh /* PCI bridge programming interface */
201 1.117 msaitoh static const struct pci_class pci_interface_pcibridge[] = {
202 1.117 msaitoh { "", PCI_INTERFACE_BRIDGE_PCI_PCI, NULL, },
203 1.117 msaitoh { "subtractive decode", PCI_INTERFACE_BRIDGE_PCI_SUBDEC, NULL, },
204 1.117 msaitoh { NULL, 0, NULL, },
205 1.117 msaitoh };
206 1.117 msaitoh
207 1.124.2.1 martin /* Semi-transparent PCI-to-PCI bridge programming interface */
208 1.117 msaitoh static const struct pci_class pci_interface_stpci[] = {
209 1.117 msaitoh { "primary side facing host", PCI_INTERFACE_STPCI_PRIMARY, NULL, },
210 1.117 msaitoh { "secondary side facing host", PCI_INTERFACE_STPCI_SECONDARY, NULL, },
211 1.117 msaitoh { NULL, 0, NULL, },
212 1.117 msaitoh };
213 1.117 msaitoh
214 1.124.2.1 martin /* Advanced Switching programming interface */
215 1.124.2.1 martin static const struct pci_class pci_interface_advsw[] = {
216 1.124.2.1 martin { "custom interface", PCI_INTERFACE_ADVSW_CUSTOM, NULL, },
217 1.124.2.1 martin { "ASI-SIG", PCI_INTERFACE_ADVSW_ASISIG, NULL, },
218 1.124.2.1 martin { NULL, 0, NULL, },
219 1.124.2.1 martin };
220 1.124.2.1 martin
221 1.117 msaitoh /* Subclasses */
222 1.61 thorpej static const struct pci_class pci_subclass_bridge[] = {
223 1.65 christos { "host", PCI_SUBCLASS_BRIDGE_HOST, NULL, },
224 1.65 christos { "ISA", PCI_SUBCLASS_BRIDGE_ISA, NULL, },
225 1.65 christos { "EISA", PCI_SUBCLASS_BRIDGE_EISA, NULL, },
226 1.65 christos { "MicroChannel", PCI_SUBCLASS_BRIDGE_MC, NULL, },
227 1.117 msaitoh { "PCI", PCI_SUBCLASS_BRIDGE_PCI,
228 1.117 msaitoh pci_interface_pcibridge, },
229 1.65 christos { "PCMCIA", PCI_SUBCLASS_BRIDGE_PCMCIA, NULL, },
230 1.65 christos { "NuBus", PCI_SUBCLASS_BRIDGE_NUBUS, NULL, },
231 1.65 christos { "CardBus", PCI_SUBCLASS_BRIDGE_CARDBUS, NULL, },
232 1.65 christos { "RACEway", PCI_SUBCLASS_BRIDGE_RACEWAY, NULL, },
233 1.117 msaitoh { "Semi-transparent PCI", PCI_SUBCLASS_BRIDGE_STPCI,
234 1.117 msaitoh pci_interface_stpci, },
235 1.65 christos { "InfiniBand", PCI_SUBCLASS_BRIDGE_INFINIBAND, NULL, },
236 1.124.2.1 martin { "advanced switching", PCI_SUBCLASS_BRIDGE_ADVSW,
237 1.124.2.1 martin pci_interface_advsw, },
238 1.65 christos { "miscellaneous", PCI_SUBCLASS_BRIDGE_MISC, NULL, },
239 1.65 christos { NULL, 0, NULL, },
240 1.10 cgd };
241 1.10 cgd
242 1.117 msaitoh /*
243 1.117 msaitoh * Class 0x07.
244 1.117 msaitoh * Simple communications controller.
245 1.117 msaitoh */
246 1.117 msaitoh
247 1.117 msaitoh /* Serial controller programming interface */
248 1.117 msaitoh static const struct pci_class pci_interface_serial[] = {
249 1.124.2.1 martin { "generic XT-compat", PCI_INTERFACE_SERIAL_XT, NULL, },
250 1.117 msaitoh { "16450-compat", PCI_INTERFACE_SERIAL_16450, NULL, },
251 1.117 msaitoh { "16550-compat", PCI_INTERFACE_SERIAL_16550, NULL, },
252 1.117 msaitoh { "16650-compat", PCI_INTERFACE_SERIAL_16650, NULL, },
253 1.117 msaitoh { "16750-compat", PCI_INTERFACE_SERIAL_16750, NULL, },
254 1.117 msaitoh { "16850-compat", PCI_INTERFACE_SERIAL_16850, NULL, },
255 1.117 msaitoh { "16950-compat", PCI_INTERFACE_SERIAL_16950, NULL, },
256 1.117 msaitoh { NULL, 0, NULL, },
257 1.117 msaitoh };
258 1.117 msaitoh
259 1.117 msaitoh /* Parallel controller programming interface */
260 1.117 msaitoh static const struct pci_class pci_interface_parallel[] = {
261 1.117 msaitoh { "", PCI_INTERFACE_PARALLEL, NULL,},
262 1.117 msaitoh { "bi-directional", PCI_INTERFACE_PARALLEL_BIDIRECTIONAL, NULL,},
263 1.117 msaitoh { "ECP 1.X-compat", PCI_INTERFACE_PARALLEL_ECP1X, NULL,},
264 1.124.2.1 martin { "IEEE1284 controller", PCI_INTERFACE_PARALLEL_IEEE1284_CNTRL, NULL,},
265 1.124.2.1 martin { "IEEE1284 target", PCI_INTERFACE_PARALLEL_IEEE1284_TGT, NULL,},
266 1.117 msaitoh { NULL, 0, NULL,},
267 1.117 msaitoh };
268 1.117 msaitoh
269 1.117 msaitoh /* Modem programming interface */
270 1.117 msaitoh static const struct pci_class pci_interface_modem[] = {
271 1.117 msaitoh { "", PCI_INTERFACE_MODEM, NULL,},
272 1.117 msaitoh { "Hayes&16450-compat", PCI_INTERFACE_MODEM_HAYES16450, NULL,},
273 1.117 msaitoh { "Hayes&16550-compat", PCI_INTERFACE_MODEM_HAYES16550, NULL,},
274 1.117 msaitoh { "Hayes&16650-compat", PCI_INTERFACE_MODEM_HAYES16650, NULL,},
275 1.117 msaitoh { "Hayes&16750-compat", PCI_INTERFACE_MODEM_HAYES16750, NULL,},
276 1.117 msaitoh { NULL, 0, NULL,},
277 1.117 msaitoh };
278 1.117 msaitoh
279 1.117 msaitoh /* Subclasses */
280 1.61 thorpej static const struct pci_class pci_subclass_communications[] = {
281 1.117 msaitoh { "serial", PCI_SUBCLASS_COMMUNICATIONS_SERIAL,
282 1.117 msaitoh pci_interface_serial, },
283 1.117 msaitoh { "parallel", PCI_SUBCLASS_COMMUNICATIONS_PARALLEL,
284 1.117 msaitoh pci_interface_parallel, },
285 1.115 msaitoh { "multi-port serial", PCI_SUBCLASS_COMMUNICATIONS_MPSERIAL, NULL,},
286 1.117 msaitoh { "modem", PCI_SUBCLASS_COMMUNICATIONS_MODEM,
287 1.117 msaitoh pci_interface_modem, },
288 1.115 msaitoh { "GPIB", PCI_SUBCLASS_COMMUNICATIONS_GPIB, NULL,},
289 1.115 msaitoh { "smartcard", PCI_SUBCLASS_COMMUNICATIONS_SMARTCARD, NULL,},
290 1.115 msaitoh { "miscellaneous", PCI_SUBCLASS_COMMUNICATIONS_MISC, NULL,},
291 1.115 msaitoh { NULL, 0, NULL,},
292 1.20 cgd };
293 1.20 cgd
294 1.117 msaitoh /*
295 1.117 msaitoh * Class 0x08.
296 1.117 msaitoh * Base system peripheral.
297 1.117 msaitoh */
298 1.117 msaitoh
299 1.117 msaitoh /* PIC programming interface */
300 1.117 msaitoh static const struct pci_class pci_interface_pic[] = {
301 1.124.2.1 martin { "generic 8259", PCI_INTERFACE_PIC_8259, NULL, },
302 1.117 msaitoh { "ISA PIC", PCI_INTERFACE_PIC_ISA, NULL, },
303 1.117 msaitoh { "EISA PIC", PCI_INTERFACE_PIC_EISA, NULL, },
304 1.117 msaitoh { "IO APIC", PCI_INTERFACE_PIC_IOAPIC, NULL, },
305 1.117 msaitoh { "IO(x) APIC", PCI_INTERFACE_PIC_IOXAPIC, NULL, },
306 1.117 msaitoh { NULL, 0, NULL, },
307 1.117 msaitoh };
308 1.117 msaitoh
309 1.117 msaitoh /* DMA programming interface */
310 1.117 msaitoh static const struct pci_class pci_interface_dma[] = {
311 1.124.2.1 martin { "generic 8237", PCI_INTERFACE_DMA_8237, NULL, },
312 1.117 msaitoh { "ISA", PCI_INTERFACE_DMA_ISA, NULL, },
313 1.117 msaitoh { "EISA", PCI_INTERFACE_DMA_EISA, NULL, },
314 1.117 msaitoh { NULL, 0, NULL, },
315 1.117 msaitoh };
316 1.117 msaitoh
317 1.117 msaitoh /* Timer programming interface */
318 1.117 msaitoh static const struct pci_class pci_interface_tmr[] = {
319 1.124.2.1 martin { "generic 8254", PCI_INTERFACE_TIMER_8254, NULL, },
320 1.117 msaitoh { "ISA", PCI_INTERFACE_TIMER_ISA, NULL, },
321 1.117 msaitoh { "EISA", PCI_INTERFACE_TIMER_EISA, NULL, },
322 1.124.2.1 martin { "HPET", PCI_INTERFACE_TIMER_HPET, NULL, },
323 1.117 msaitoh { NULL, 0, NULL, },
324 1.117 msaitoh };
325 1.117 msaitoh
326 1.117 msaitoh /* RTC programming interface */
327 1.117 msaitoh static const struct pci_class pci_interface_rtc[] = {
328 1.117 msaitoh { "generic", PCI_INTERFACE_RTC_GENERIC, NULL, },
329 1.117 msaitoh { "ISA", PCI_INTERFACE_RTC_ISA, NULL, },
330 1.117 msaitoh { NULL, 0, NULL, },
331 1.117 msaitoh };
332 1.117 msaitoh
333 1.117 msaitoh /* Subclasses */
334 1.61 thorpej static const struct pci_class pci_subclass_system[] = {
335 1.117 msaitoh { "interrupt", PCI_SUBCLASS_SYSTEM_PIC, pci_interface_pic,},
336 1.117 msaitoh { "DMA", PCI_SUBCLASS_SYSTEM_DMA, pci_interface_dma,},
337 1.117 msaitoh { "timer", PCI_SUBCLASS_SYSTEM_TIMER, pci_interface_tmr,},
338 1.117 msaitoh { "RTC", PCI_SUBCLASS_SYSTEM_RTC, pci_interface_rtc,},
339 1.65 christos { "PCI Hot-Plug", PCI_SUBCLASS_SYSTEM_PCIHOTPLUG, NULL, },
340 1.65 christos { "SD Host Controller", PCI_SUBCLASS_SYSTEM_SDHC, NULL, },
341 1.124 msaitoh { "IOMMU", PCI_SUBCLASS_SYSTEM_IOMMU, NULL, },
342 1.124 msaitoh { "Root Complex Event Collector", PCI_SUBCLASS_SYSTEM_RCEC, NULL, },
343 1.65 christos { "miscellaneous", PCI_SUBCLASS_SYSTEM_MISC, NULL, },
344 1.65 christos { NULL, 0, NULL, },
345 1.20 cgd };
346 1.20 cgd
347 1.117 msaitoh /*
348 1.117 msaitoh * Class 0x09.
349 1.117 msaitoh * Input device.
350 1.117 msaitoh */
351 1.117 msaitoh
352 1.117 msaitoh /* Gameport programming interface */
353 1.117 msaitoh static const struct pci_class pci_interface_game[] = {
354 1.117 msaitoh { "generic", PCI_INTERFACE_GAMEPORT_GENERIC, NULL, },
355 1.117 msaitoh { "legacy", PCI_INTERFACE_GAMEPORT_LEGACY, NULL, },
356 1.117 msaitoh { NULL, 0, NULL, },
357 1.117 msaitoh };
358 1.117 msaitoh
359 1.117 msaitoh /* Subclasses */
360 1.61 thorpej static const struct pci_class pci_subclass_input[] = {
361 1.65 christos { "keyboard", PCI_SUBCLASS_INPUT_KEYBOARD, NULL, },
362 1.65 christos { "digitizer", PCI_SUBCLASS_INPUT_DIGITIZER, NULL, },
363 1.65 christos { "mouse", PCI_SUBCLASS_INPUT_MOUSE, NULL, },
364 1.65 christos { "scanner", PCI_SUBCLASS_INPUT_SCANNER, NULL, },
365 1.117 msaitoh { "game port", PCI_SUBCLASS_INPUT_GAMEPORT,
366 1.117 msaitoh pci_interface_game, },
367 1.65 christos { "miscellaneous", PCI_SUBCLASS_INPUT_MISC, NULL, },
368 1.65 christos { NULL, 0, NULL, },
369 1.20 cgd };
370 1.20 cgd
371 1.117 msaitoh /*
372 1.117 msaitoh * Class 0x0a.
373 1.117 msaitoh * Docking station.
374 1.117 msaitoh */
375 1.61 thorpej static const struct pci_class pci_subclass_dock[] = {
376 1.65 christos { "generic", PCI_SUBCLASS_DOCK_GENERIC, NULL, },
377 1.65 christos { "miscellaneous", PCI_SUBCLASS_DOCK_MISC, NULL, },
378 1.65 christos { NULL, 0, NULL, },
379 1.20 cgd };
380 1.20 cgd
381 1.117 msaitoh /*
382 1.117 msaitoh * Class 0x0b.
383 1.117 msaitoh * Processor.
384 1.117 msaitoh */
385 1.61 thorpej static const struct pci_class pci_subclass_processor[] = {
386 1.65 christos { "386", PCI_SUBCLASS_PROCESSOR_386, NULL, },
387 1.65 christos { "486", PCI_SUBCLASS_PROCESSOR_486, NULL, },
388 1.65 christos { "Pentium", PCI_SUBCLASS_PROCESSOR_PENTIUM, NULL, },
389 1.65 christos { "Alpha", PCI_SUBCLASS_PROCESSOR_ALPHA, NULL, },
390 1.65 christos { "PowerPC", PCI_SUBCLASS_PROCESSOR_POWERPC, NULL, },
391 1.65 christos { "MIPS", PCI_SUBCLASS_PROCESSOR_MIPS, NULL, },
392 1.65 christos { "Co-processor", PCI_SUBCLASS_PROCESSOR_COPROC, NULL, },
393 1.124.2.1 martin { "miscellaneous", PCI_SUBCLASS_PROCESSOR_MISC, NULL, },
394 1.65 christos { NULL, 0, NULL, },
395 1.20 cgd };
396 1.20 cgd
397 1.117 msaitoh /*
398 1.117 msaitoh * Class 0x0c.
399 1.117 msaitoh * Serial bus controller.
400 1.117 msaitoh */
401 1.117 msaitoh
402 1.117 msaitoh /* IEEE1394 programming interface */
403 1.117 msaitoh static const struct pci_class pci_interface_ieee1394[] = {
404 1.117 msaitoh { "Firewire", PCI_INTERFACE_IEEE1394_FIREWIRE, NULL,},
405 1.117 msaitoh { "OpenHCI", PCI_INTERFACE_IEEE1394_OPENHCI, NULL,},
406 1.117 msaitoh { NULL, 0, NULL,},
407 1.117 msaitoh };
408 1.117 msaitoh
409 1.117 msaitoh /* USB programming interface */
410 1.117 msaitoh static const struct pci_class pci_interface_usb[] = {
411 1.117 msaitoh { "UHCI", PCI_INTERFACE_USB_UHCI, NULL, },
412 1.117 msaitoh { "OHCI", PCI_INTERFACE_USB_OHCI, NULL, },
413 1.117 msaitoh { "EHCI", PCI_INTERFACE_USB_EHCI, NULL, },
414 1.117 msaitoh { "xHCI", PCI_INTERFACE_USB_XHCI, NULL, },
415 1.117 msaitoh { "other HC", PCI_INTERFACE_USB_OTHERHC, NULL, },
416 1.117 msaitoh { "device", PCI_INTERFACE_USB_DEVICE, NULL, },
417 1.117 msaitoh { NULL, 0, NULL, },
418 1.117 msaitoh };
419 1.117 msaitoh
420 1.117 msaitoh /* IPMI programming interface */
421 1.117 msaitoh static const struct pci_class pci_interface_ipmi[] = {
422 1.117 msaitoh { "SMIC", PCI_INTERFACE_IPMI_SMIC, NULL,},
423 1.117 msaitoh { "keyboard", PCI_INTERFACE_IPMI_KBD, NULL,},
424 1.117 msaitoh { "block transfer", PCI_INTERFACE_IPMI_BLOCKXFER, NULL,},
425 1.117 msaitoh { NULL, 0, NULL,},
426 1.117 msaitoh };
427 1.117 msaitoh
428 1.117 msaitoh /* Subclasses */
429 1.61 thorpej static const struct pci_class pci_subclass_serialbus[] = {
430 1.117 msaitoh { "IEEE1394", PCI_SUBCLASS_SERIALBUS_FIREWIRE,
431 1.117 msaitoh pci_interface_ieee1394, },
432 1.65 christos { "ACCESS.bus", PCI_SUBCLASS_SERIALBUS_ACCESS, NULL, },
433 1.65 christos { "SSA", PCI_SUBCLASS_SERIALBUS_SSA, NULL, },
434 1.117 msaitoh { "USB", PCI_SUBCLASS_SERIALBUS_USB,
435 1.117 msaitoh pci_interface_usb, },
436 1.32 cgd /* XXX Fiber Channel/_FIBRECHANNEL */
437 1.65 christos { "Fiber Channel", PCI_SUBCLASS_SERIALBUS_FIBER, NULL, },
438 1.65 christos { "SMBus", PCI_SUBCLASS_SERIALBUS_SMBUS, NULL, },
439 1.65 christos { "InfiniBand", PCI_SUBCLASS_SERIALBUS_INFINIBAND, NULL,},
440 1.117 msaitoh { "IPMI", PCI_SUBCLASS_SERIALBUS_IPMI,
441 1.117 msaitoh pci_interface_ipmi, },
442 1.65 christos { "SERCOS", PCI_SUBCLASS_SERIALBUS_SERCOS, NULL, },
443 1.65 christos { "CANbus", PCI_SUBCLASS_SERIALBUS_CANBUS, NULL, },
444 1.114 msaitoh { "miscellaneous", PCI_SUBCLASS_SERIALBUS_MISC, NULL, },
445 1.65 christos { NULL, 0, NULL, },
446 1.32 cgd };
447 1.32 cgd
448 1.117 msaitoh /*
449 1.117 msaitoh * Class 0x0d.
450 1.117 msaitoh * Wireless Controller.
451 1.117 msaitoh */
452 1.61 thorpej static const struct pci_class pci_subclass_wireless[] = {
453 1.65 christos { "IrDA", PCI_SUBCLASS_WIRELESS_IRDA, NULL, },
454 1.124.2.1 martin { "Consumer IR",/*XXX*/ PCI_SUBCLASS_WIRELESS_CONSUMERIR, NULL, },
455 1.65 christos { "RF", PCI_SUBCLASS_WIRELESS_RF, NULL, },
456 1.65 christos { "bluetooth", PCI_SUBCLASS_WIRELESS_BLUETOOTH, NULL, },
457 1.65 christos { "broadband", PCI_SUBCLASS_WIRELESS_BROADBAND, NULL, },
458 1.65 christos { "802.11a (5 GHz)", PCI_SUBCLASS_WIRELESS_802_11A, NULL, },
459 1.65 christos { "802.11b (2.4 GHz)", PCI_SUBCLASS_WIRELESS_802_11B, NULL, },
460 1.65 christos { "miscellaneous", PCI_SUBCLASS_WIRELESS_MISC, NULL, },
461 1.65 christos { NULL, 0, NULL, },
462 1.32 cgd };
463 1.32 cgd
464 1.117 msaitoh /*
465 1.117 msaitoh * Class 0x0e.
466 1.117 msaitoh * Intelligent IO controller.
467 1.117 msaitoh */
468 1.117 msaitoh
469 1.117 msaitoh /* Intelligent IO programming interface */
470 1.117 msaitoh static const struct pci_class pci_interface_i2o[] = {
471 1.117 msaitoh { "FIFO at offset 0x40", PCI_INTERFACE_I2O_FIFOAT40, NULL,},
472 1.117 msaitoh { NULL, 0, NULL,},
473 1.117 msaitoh };
474 1.117 msaitoh
475 1.117 msaitoh /* Subclasses */
476 1.61 thorpej static const struct pci_class pci_subclass_i2o[] = {
477 1.117 msaitoh { "standard", PCI_SUBCLASS_I2O_STANDARD, pci_interface_i2o,},
478 1.114 msaitoh { "miscellaneous", PCI_SUBCLASS_I2O_MISC, NULL, },
479 1.65 christos { NULL, 0, NULL, },
480 1.32 cgd };
481 1.32 cgd
482 1.117 msaitoh /*
483 1.117 msaitoh * Class 0x0f.
484 1.117 msaitoh * Satellite communication controller.
485 1.117 msaitoh */
486 1.61 thorpej static const struct pci_class pci_subclass_satcom[] = {
487 1.65 christos { "TV", PCI_SUBCLASS_SATCOM_TV, NULL, },
488 1.65 christos { "audio", PCI_SUBCLASS_SATCOM_AUDIO, NULL, },
489 1.65 christos { "voice", PCI_SUBCLASS_SATCOM_VOICE, NULL, },
490 1.65 christos { "data", PCI_SUBCLASS_SATCOM_DATA, NULL, },
491 1.114 msaitoh { "miscellaneous", PCI_SUBCLASS_SATCOM_MISC, NULL, },
492 1.65 christos { NULL, 0, NULL, },
493 1.32 cgd };
494 1.32 cgd
495 1.117 msaitoh /*
496 1.117 msaitoh * Class 0x10.
497 1.117 msaitoh * Encryption/Decryption controller.
498 1.117 msaitoh */
499 1.61 thorpej static const struct pci_class pci_subclass_crypto[] = {
500 1.65 christos { "network/computing", PCI_SUBCLASS_CRYPTO_NETCOMP, NULL, },
501 1.65 christos { "entertainment", PCI_SUBCLASS_CRYPTO_ENTERTAINMENT, NULL,},
502 1.65 christos { "miscellaneous", PCI_SUBCLASS_CRYPTO_MISC, NULL, },
503 1.65 christos { NULL, 0, NULL, },
504 1.32 cgd };
505 1.32 cgd
506 1.117 msaitoh /*
507 1.117 msaitoh * Class 0x11.
508 1.117 msaitoh * Data aquuisition and signal processing controller.
509 1.117 msaitoh */
510 1.61 thorpej static const struct pci_class pci_subclass_dasp[] = {
511 1.65 christos { "DPIO", PCI_SUBCLASS_DASP_DPIO, NULL, },
512 1.124.2.1 martin { "performance counters", PCI_SUBCLASS_DASP_TIMEFREQ, NULL, },
513 1.65 christos { "synchronization", PCI_SUBCLASS_DASP_SYNC, NULL, },
514 1.65 christos { "management", PCI_SUBCLASS_DASP_MGMT, NULL, },
515 1.65 christos { "miscellaneous", PCI_SUBCLASS_DASP_MISC, NULL, },
516 1.65 christos { NULL, 0, NULL, },
517 1.20 cgd };
518 1.20 cgd
519 1.117 msaitoh /* List of classes */
520 1.61 thorpej static const struct pci_class pci_class[] = {
521 1.10 cgd { "prehistoric", PCI_CLASS_PREHISTORIC,
522 1.10 cgd pci_subclass_prehistoric, },
523 1.10 cgd { "mass storage", PCI_CLASS_MASS_STORAGE,
524 1.10 cgd pci_subclass_mass_storage, },
525 1.10 cgd { "network", PCI_CLASS_NETWORK,
526 1.10 cgd pci_subclass_network, },
527 1.10 cgd { "display", PCI_CLASS_DISPLAY,
528 1.11 cgd pci_subclass_display, },
529 1.10 cgd { "multimedia", PCI_CLASS_MULTIMEDIA,
530 1.10 cgd pci_subclass_multimedia, },
531 1.10 cgd { "memory", PCI_CLASS_MEMORY,
532 1.10 cgd pci_subclass_memory, },
533 1.10 cgd { "bridge", PCI_CLASS_BRIDGE,
534 1.10 cgd pci_subclass_bridge, },
535 1.20 cgd { "communications", PCI_CLASS_COMMUNICATIONS,
536 1.20 cgd pci_subclass_communications, },
537 1.20 cgd { "system", PCI_CLASS_SYSTEM,
538 1.20 cgd pci_subclass_system, },
539 1.20 cgd { "input", PCI_CLASS_INPUT,
540 1.20 cgd pci_subclass_input, },
541 1.20 cgd { "dock", PCI_CLASS_DOCK,
542 1.20 cgd pci_subclass_dock, },
543 1.20 cgd { "processor", PCI_CLASS_PROCESSOR,
544 1.20 cgd pci_subclass_processor, },
545 1.20 cgd { "serial bus", PCI_CLASS_SERIALBUS,
546 1.20 cgd pci_subclass_serialbus, },
547 1.32 cgd { "wireless", PCI_CLASS_WIRELESS,
548 1.32 cgd pci_subclass_wireless, },
549 1.32 cgd { "I2O", PCI_CLASS_I2O,
550 1.32 cgd pci_subclass_i2o, },
551 1.32 cgd { "satellite comm", PCI_CLASS_SATCOM,
552 1.32 cgd pci_subclass_satcom, },
553 1.32 cgd { "crypto", PCI_CLASS_CRYPTO,
554 1.32 cgd pci_subclass_crypto, },
555 1.32 cgd { "DASP", PCI_CLASS_DASP,
556 1.32 cgd pci_subclass_dasp, },
557 1.10 cgd { "undefined", PCI_CLASS_UNDEFINED,
558 1.65 christos NULL, },
559 1.65 christos { NULL, 0,
560 1.65 christos NULL, },
561 1.10 cgd };
562 1.10 cgd
563 1.83 pgoyette void pci_load_verbose(void);
564 1.83 pgoyette
565 1.80 pgoyette #if defined(_KERNEL)
566 1.80 pgoyette /*
567 1.80 pgoyette * In kernel, these routines are provided and linked via the
568 1.80 pgoyette * pciverbose module.
569 1.80 pgoyette */
570 1.83 pgoyette const char *pci_findvendor_stub(pcireg_t);
571 1.83 pgoyette const char *pci_findproduct_stub(pcireg_t);
572 1.83 pgoyette
573 1.83 pgoyette const char *(*pci_findvendor)(pcireg_t) = pci_findvendor_stub;
574 1.83 pgoyette const char *(*pci_findproduct)(pcireg_t) = pci_findproduct_stub;
575 1.80 pgoyette const char *pci_unmatched = "";
576 1.80 pgoyette #else
577 1.10 cgd /*
578 1.80 pgoyette * For userland we just set the vectors here.
579 1.10 cgd */
580 1.81 pgoyette const char *(*pci_findvendor)(pcireg_t id_reg) = pci_findvendor_real;
581 1.81 pgoyette const char *(*pci_findproduct)(pcireg_t id_reg) = pci_findproduct_real;
582 1.80 pgoyette const char *pci_unmatched = "unmatched ";
583 1.76 matt #endif
584 1.76 matt
585 1.83 pgoyette int pciverbose_loaded = 0;
586 1.59 mycroft
587 1.80 pgoyette #if defined(_KERNEL)
588 1.80 pgoyette /*
589 1.83 pgoyette * Routine to load the pciverbose kernel module as needed
590 1.80 pgoyette */
591 1.115 msaitoh void
592 1.115 msaitoh pci_load_verbose(void)
593 1.59 mycroft {
594 1.115 msaitoh
595 1.85 pgoyette if (pciverbose_loaded == 0)
596 1.84 pgoyette module_autoload("pciverbose", MODULE_CLASS_MISC);
597 1.83 pgoyette }
598 1.80 pgoyette
599 1.115 msaitoh const char *
600 1.115 msaitoh pci_findvendor_stub(pcireg_t id_reg)
601 1.83 pgoyette {
602 1.115 msaitoh
603 1.83 pgoyette pci_load_verbose();
604 1.83 pgoyette if (pciverbose_loaded)
605 1.83 pgoyette return pci_findvendor(id_reg);
606 1.83 pgoyette else
607 1.83 pgoyette return NULL;
608 1.83 pgoyette }
609 1.83 pgoyette
610 1.115 msaitoh const char *
611 1.115 msaitoh pci_findproduct_stub(pcireg_t id_reg)
612 1.83 pgoyette {
613 1.115 msaitoh
614 1.83 pgoyette pci_load_verbose();
615 1.83 pgoyette if (pciverbose_loaded)
616 1.83 pgoyette return pci_findproduct(id_reg);
617 1.83 pgoyette else
618 1.83 pgoyette return NULL;
619 1.80 pgoyette }
620 1.29 augustss #endif
621 1.10 cgd
622 1.124.2.3 snj /*
623 1.124.2.3 snj * Append a formatted string to dest without writing more than len
624 1.124.2.3 snj * characters (including the trailing NUL character). dest and len
625 1.124.2.3 snj * are updated for use in subsequent calls to snappendf().
626 1.124.2.3 snj *
627 1.124.2.3 snj * Returns 0 on success, a negative value if vnsprintf() fails, or
628 1.124.2.3 snj * a positive value if the dest buffer would have overflowed.
629 1.124.2.3 snj */
630 1.124.2.3 snj
631 1.124.2.3 snj static int __printflike(3,4)
632 1.124.2.3 snj snappendf(char **dest, size_t *len, const char * restrict fmt, ...)
633 1.124.2.3 snj {
634 1.124.2.3 snj va_list ap;
635 1.124.2.3 snj int count;
636 1.124.2.3 snj
637 1.124.2.3 snj va_start(ap, fmt);
638 1.124.2.3 snj count = vsnprintf(*dest, *len, fmt, ap);
639 1.124.2.3 snj va_end(ap);
640 1.124.2.3 snj
641 1.124.2.3 snj /* Let vsnprintf() errors bubble up to caller */
642 1.124.2.3 snj if (count < 0 || *len == 0)
643 1.124.2.3 snj return count;
644 1.124.2.3 snj
645 1.124.2.3 snj /* Handle overflow */
646 1.124.2.3 snj if ((size_t)count >= *len) {
647 1.124.2.3 snj *dest += *len - 1;
648 1.124.2.3 snj *len = 1;
649 1.124.2.3 snj return 1;
650 1.124.2.3 snj }
651 1.124.2.3 snj
652 1.124.2.3 snj /* Update dest & len to point at trailing NUL */
653 1.124.2.3 snj *dest += count;
654 1.124.2.3 snj *len -= count;
655 1.124.2.3 snj
656 1.124.2.3 snj return 0;
657 1.124.2.3 snj }
658 1.124.2.3 snj
659 1.10 cgd void
660 1.58 itojun pci_devinfo(pcireg_t id_reg, pcireg_t class_reg, int showclass, char *cp,
661 1.58 itojun size_t l)
662 1.10 cgd {
663 1.10 cgd pci_vendor_id_t vendor;
664 1.10 cgd pci_product_id_t product;
665 1.10 cgd pci_class_t class;
666 1.10 cgd pci_subclass_t subclass;
667 1.10 cgd pci_interface_t interface;
668 1.10 cgd pci_revision_t revision;
669 1.80 pgoyette const char *unmatched = pci_unmatched;
670 1.59 mycroft const char *vendor_namep, *product_namep;
671 1.117 msaitoh const struct pci_class *classp, *subclassp, *interfacep;
672 1.10 cgd
673 1.10 cgd vendor = PCI_VENDOR(id_reg);
674 1.10 cgd product = PCI_PRODUCT(id_reg);
675 1.10 cgd
676 1.10 cgd class = PCI_CLASS(class_reg);
677 1.10 cgd subclass = PCI_SUBCLASS(class_reg);
678 1.10 cgd interface = PCI_INTERFACE(class_reg);
679 1.10 cgd revision = PCI_REVISION(class_reg);
680 1.10 cgd
681 1.81 pgoyette vendor_namep = pci_findvendor(id_reg);
682 1.81 pgoyette product_namep = pci_findproduct(id_reg);
683 1.10 cgd
684 1.10 cgd classp = pci_class;
685 1.10 cgd while (classp->name != NULL) {
686 1.10 cgd if (class == classp->val)
687 1.10 cgd break;
688 1.10 cgd classp++;
689 1.10 cgd }
690 1.10 cgd
691 1.10 cgd subclassp = (classp->name != NULL) ? classp->subclasses : NULL;
692 1.10 cgd while (subclassp && subclassp->name != NULL) {
693 1.10 cgd if (subclass == subclassp->val)
694 1.10 cgd break;
695 1.10 cgd subclassp++;
696 1.10 cgd }
697 1.10 cgd
698 1.119 njoly interfacep = (subclassp && subclassp->name != NULL) ?
699 1.119 njoly subclassp->subclasses : NULL;
700 1.117 msaitoh while (interfacep && interfacep->name != NULL) {
701 1.117 msaitoh if (interface == interfacep->val)
702 1.117 msaitoh break;
703 1.117 msaitoh interfacep++;
704 1.117 msaitoh }
705 1.117 msaitoh
706 1.10 cgd if (vendor_namep == NULL)
707 1.124.2.3 snj (void)snappendf(&cp, &l, "%svendor 0x%04x product 0x%04x",
708 1.15 cgd unmatched, vendor, product);
709 1.10 cgd else if (product_namep != NULL)
710 1.124.2.3 snj (void)snappendf(&cp, &l, "%s %s", vendor_namep, product_namep);
711 1.10 cgd else
712 1.124.2.3 snj (void)snappendf(&cp, &l, "%s product 0x%04x",
713 1.10 cgd vendor_namep, product);
714 1.13 cgd if (showclass) {
715 1.124.2.3 snj (void)snappendf(&cp, &l, " (");
716 1.13 cgd if (classp->name == NULL)
717 1.124.2.3 snj (void)snappendf(&cp, &l,
718 1.58 itojun "class 0x%02x, subclass 0x%02x", class, subclass);
719 1.13 cgd else {
720 1.13 cgd if (subclassp == NULL || subclassp->name == NULL)
721 1.124.2.3 snj (void)snappendf(&cp, &l, "%s, subclass 0x%02x",
722 1.20 cgd classp->name, subclass);
723 1.13 cgd else
724 1.124.2.3 snj (void)snappendf(&cp, &l, "%s %s",
725 1.20 cgd subclassp->name, classp->name);
726 1.13 cgd }
727 1.117 msaitoh if ((interfacep == NULL) || (interfacep->name == NULL)) {
728 1.117 msaitoh if (interface != 0)
729 1.124.2.3 snj (void)snappendf(&cp, &l, ", interface 0x%02x",
730 1.124.2.3 snj interface);
731 1.117 msaitoh } else if (strncmp(interfacep->name, "", 1) != 0)
732 1.124.2.3 snj (void)snappendf(&cp, &l, ", %s", interfacep->name);
733 1.20 cgd if (revision != 0)
734 1.124.2.3 snj (void)snappendf(&cp, &l, ", revision 0x%02x", revision);
735 1.124.2.3 snj (void)snappendf(&cp, &l, ")");
736 1.13 cgd }
737 1.22 thorpej }
738 1.22 thorpej
739 1.89 drochner #ifdef _KERNEL
740 1.89 drochner void
741 1.90 drochner pci_aprint_devinfo_fancy(const struct pci_attach_args *pa, const char *naive,
742 1.90 drochner const char *known, int addrev)
743 1.89 drochner {
744 1.89 drochner char devinfo[256];
745 1.89 drochner
746 1.90 drochner if (known) {
747 1.90 drochner aprint_normal(": %s", known);
748 1.90 drochner if (addrev)
749 1.90 drochner aprint_normal(" (rev. 0x%02x)",
750 1.90 drochner PCI_REVISION(pa->pa_class));
751 1.90 drochner aprint_normal("\n");
752 1.90 drochner } else {
753 1.90 drochner pci_devinfo(pa->pa_id, pa->pa_class, 0,
754 1.90 drochner devinfo, sizeof(devinfo));
755 1.90 drochner aprint_normal(": %s (rev. 0x%02x)\n", devinfo,
756 1.90 drochner PCI_REVISION(pa->pa_class));
757 1.90 drochner }
758 1.90 drochner if (naive)
759 1.90 drochner aprint_naive(": %s\n", naive);
760 1.90 drochner else
761 1.90 drochner aprint_naive("\n");
762 1.89 drochner }
763 1.89 drochner #endif
764 1.89 drochner
765 1.22 thorpej /*
766 1.22 thorpej * Print out most of the PCI configuration registers. Typically used
767 1.22 thorpej * in a device attach routine like this:
768 1.22 thorpej *
769 1.22 thorpej * #ifdef MYDEV_DEBUG
770 1.95 chs * printf("%s: ", device_xname(sc->sc_dev));
771 1.43 enami * pci_conf_print(pa->pa_pc, pa->pa_tag, NULL);
772 1.22 thorpej * #endif
773 1.22 thorpej */
774 1.26 cgd
775 1.26 cgd #define i2o(i) ((i) * 4)
776 1.26 cgd #define o2i(o) ((o) / 4)
777 1.112 msaitoh #define onoff2(str, rval, bit, onstr, offstr) \
778 1.112 msaitoh printf(" %s: %s\n", (str), ((rval) & (bit)) ? onstr : offstr);
779 1.112 msaitoh #define onoff(str, rval, bit) onoff2(str, rval, bit, "on", "off")
780 1.26 cgd
781 1.26 cgd static void
782 1.45 thorpej pci_conf_print_common(
783 1.45 thorpej #ifdef _KERNEL
784 1.71 christos pci_chipset_tag_t pc, pcitag_t tag,
785 1.45 thorpej #endif
786 1.45 thorpej const pcireg_t *regs)
787 1.22 thorpej {
788 1.59 mycroft const char *name;
789 1.42 jdolecek const struct pci_class *classp, *subclassp;
790 1.26 cgd pcireg_t rval;
791 1.117 msaitoh unsigned int num;
792 1.22 thorpej
793 1.26 cgd rval = regs[o2i(PCI_ID_REG)];
794 1.81 pgoyette name = pci_findvendor(rval);
795 1.59 mycroft if (name)
796 1.59 mycroft printf(" Vendor Name: %s (0x%04x)\n", name,
797 1.26 cgd PCI_VENDOR(rval));
798 1.22 thorpej else
799 1.26 cgd printf(" Vendor ID: 0x%04x\n", PCI_VENDOR(rval));
800 1.81 pgoyette name = pci_findproduct(rval);
801 1.59 mycroft if (name)
802 1.59 mycroft printf(" Device Name: %s (0x%04x)\n", name,
803 1.26 cgd PCI_PRODUCT(rval));
804 1.22 thorpej else
805 1.26 cgd printf(" Device ID: 0x%04x\n", PCI_PRODUCT(rval));
806 1.22 thorpej
807 1.26 cgd rval = regs[o2i(PCI_COMMAND_STATUS_REG)];
808 1.23 drochner
809 1.26 cgd printf(" Command register: 0x%04x\n", rval & 0xffff);
810 1.112 msaitoh onoff("I/O space accesses", rval, PCI_COMMAND_IO_ENABLE);
811 1.112 msaitoh onoff("Memory space accesses", rval, PCI_COMMAND_MEM_ENABLE);
812 1.112 msaitoh onoff("Bus mastering", rval, PCI_COMMAND_MASTER_ENABLE);
813 1.112 msaitoh onoff("Special cycles", rval, PCI_COMMAND_SPECIAL_ENABLE);
814 1.112 msaitoh onoff("MWI transactions", rval, PCI_COMMAND_INVALIDATE_ENABLE);
815 1.112 msaitoh onoff("Palette snooping", rval, PCI_COMMAND_PALETTE_ENABLE);
816 1.112 msaitoh onoff("Parity error checking", rval, PCI_COMMAND_PARITY_ENABLE);
817 1.112 msaitoh onoff("Address/data stepping", rval, PCI_COMMAND_STEPPING_ENABLE);
818 1.112 msaitoh onoff("System error (SERR)", rval, PCI_COMMAND_SERR_ENABLE);
819 1.115 msaitoh onoff("Fast back-to-back transactions", rval,
820 1.115 msaitoh PCI_COMMAND_BACKTOBACK_ENABLE);
821 1.112 msaitoh onoff("Interrupt disable", rval, PCI_COMMAND_INTERRUPT_DISABLE);
822 1.26 cgd
823 1.26 cgd printf(" Status register: 0x%04x\n", (rval >> 16) & 0xffff);
824 1.115 msaitoh onoff2("Interrupt status", rval, PCI_STATUS_INT_STATUS, "active",
825 1.115 msaitoh "inactive");
826 1.112 msaitoh onoff("Capability List support", rval, PCI_STATUS_CAPLIST_SUPPORT);
827 1.112 msaitoh onoff("66 MHz capable", rval, PCI_STATUS_66MHZ_SUPPORT);
828 1.115 msaitoh onoff("User Definable Features (UDF) support", rval,
829 1.115 msaitoh PCI_STATUS_UDF_SUPPORT);
830 1.115 msaitoh onoff("Fast back-to-back capable", rval,
831 1.115 msaitoh PCI_STATUS_BACKTOBACK_SUPPORT);
832 1.112 msaitoh onoff("Data parity error detected", rval, PCI_STATUS_PARITY_ERROR);
833 1.22 thorpej
834 1.26 cgd printf(" DEVSEL timing: ");
835 1.22 thorpej switch (rval & PCI_STATUS_DEVSEL_MASK) {
836 1.22 thorpej case PCI_STATUS_DEVSEL_FAST:
837 1.22 thorpej printf("fast");
838 1.22 thorpej break;
839 1.22 thorpej case PCI_STATUS_DEVSEL_MEDIUM:
840 1.22 thorpej printf("medium");
841 1.22 thorpej break;
842 1.22 thorpej case PCI_STATUS_DEVSEL_SLOW:
843 1.22 thorpej printf("slow");
844 1.22 thorpej break;
845 1.26 cgd default:
846 1.26 cgd printf("unknown/reserved"); /* XXX */
847 1.26 cgd break;
848 1.22 thorpej }
849 1.26 cgd printf(" (0x%x)\n", (rval & PCI_STATUS_DEVSEL_MASK) >> 25);
850 1.22 thorpej
851 1.115 msaitoh onoff("Slave signaled Target Abort", rval,
852 1.115 msaitoh PCI_STATUS_TARGET_TARGET_ABORT);
853 1.115 msaitoh onoff("Master received Target Abort", rval,
854 1.115 msaitoh PCI_STATUS_MASTER_TARGET_ABORT);
855 1.112 msaitoh onoff("Master received Master Abort", rval, PCI_STATUS_MASTER_ABORT);
856 1.112 msaitoh onoff("Asserted System Error (SERR)", rval, PCI_STATUS_SPECIAL_ERROR);
857 1.112 msaitoh onoff("Parity error detected", rval, PCI_STATUS_PARITY_DETECT);
858 1.22 thorpej
859 1.26 cgd rval = regs[o2i(PCI_CLASS_REG)];
860 1.22 thorpej for (classp = pci_class; classp->name != NULL; classp++) {
861 1.22 thorpej if (PCI_CLASS(rval) == classp->val)
862 1.22 thorpej break;
863 1.22 thorpej }
864 1.22 thorpej subclassp = (classp->name != NULL) ? classp->subclasses : NULL;
865 1.22 thorpej while (subclassp && subclassp->name != NULL) {
866 1.22 thorpej if (PCI_SUBCLASS(rval) == subclassp->val)
867 1.22 thorpej break;
868 1.22 thorpej subclassp++;
869 1.22 thorpej }
870 1.22 thorpej if (classp->name != NULL) {
871 1.26 cgd printf(" Class Name: %s (0x%02x)\n", classp->name,
872 1.26 cgd PCI_CLASS(rval));
873 1.22 thorpej if (subclassp != NULL && subclassp->name != NULL)
874 1.26 cgd printf(" Subclass Name: %s (0x%02x)\n",
875 1.26 cgd subclassp->name, PCI_SUBCLASS(rval));
876 1.22 thorpej else
877 1.115 msaitoh printf(" Subclass ID: 0x%02x\n",
878 1.115 msaitoh PCI_SUBCLASS(rval));
879 1.22 thorpej } else {
880 1.26 cgd printf(" Class ID: 0x%02x\n", PCI_CLASS(rval));
881 1.26 cgd printf(" Subclass ID: 0x%02x\n", PCI_SUBCLASS(rval));
882 1.22 thorpej }
883 1.26 cgd printf(" Interface: 0x%02x\n", PCI_INTERFACE(rval));
884 1.26 cgd printf(" Revision ID: 0x%02x\n", PCI_REVISION(rval));
885 1.22 thorpej
886 1.26 cgd rval = regs[o2i(PCI_BHLC_REG)];
887 1.26 cgd printf(" BIST: 0x%02x\n", PCI_BIST(rval));
888 1.26 cgd printf(" Header Type: 0x%02x%s (0x%02x)\n", PCI_HDRTYPE_TYPE(rval),
889 1.26 cgd PCI_HDRTYPE_MULTIFN(rval) ? "+multifunction" : "",
890 1.26 cgd PCI_HDRTYPE(rval));
891 1.26 cgd printf(" Latency Timer: 0x%02x\n", PCI_LATTIMER(rval));
892 1.117 msaitoh num = PCI_CACHELINE(rval);
893 1.117 msaitoh printf(" Cache Line Size: %ubytes (0x%02x)\n", num * 4, num);
894 1.26 cgd }
895 1.22 thorpej
896 1.37 nathanw static int
897 1.45 thorpej pci_conf_print_bar(
898 1.45 thorpej #ifdef _KERNEL
899 1.45 thorpej pci_chipset_tag_t pc, pcitag_t tag,
900 1.45 thorpej #endif
901 1.45 thorpej const pcireg_t *regs, int reg, const char *name
902 1.45 thorpej #ifdef _KERNEL
903 1.45 thorpej , int sizebar
904 1.45 thorpej #endif
905 1.45 thorpej )
906 1.26 cgd {
907 1.45 thorpej int width;
908 1.45 thorpej pcireg_t rval, rval64h;
909 1.45 thorpej #ifdef _KERNEL
910 1.45 thorpej int s;
911 1.45 thorpej pcireg_t mask, mask64h;
912 1.45 thorpej #endif
913 1.45 thorpej
914 1.37 nathanw width = 4;
915 1.22 thorpej
916 1.27 cgd /*
917 1.27 cgd * Section 6.2.5.1, `Address Maps', tells us that:
918 1.27 cgd *
919 1.27 cgd * 1) The builtin software should have already mapped the
920 1.27 cgd * device in a reasonable way.
921 1.27 cgd *
922 1.27 cgd * 2) A device which wants 2^n bytes of memory will hardwire
923 1.27 cgd * the bottom n bits of the address to 0. As recommended,
924 1.27 cgd * we write all 1s and see what we get back.
925 1.27 cgd */
926 1.45 thorpej
927 1.27 cgd rval = regs[o2i(reg)];
928 1.45 thorpej if (PCI_MAPREG_TYPE(rval) == PCI_MAPREG_TYPE_MEM &&
929 1.45 thorpej PCI_MAPREG_MEM_TYPE(rval) == PCI_MAPREG_MEM_TYPE_64BIT) {
930 1.45 thorpej rval64h = regs[o2i(reg + 4)];
931 1.45 thorpej width = 8;
932 1.45 thorpej } else
933 1.45 thorpej rval64h = 0;
934 1.45 thorpej
935 1.45 thorpej #ifdef _KERNEL
936 1.38 cgd /* XXX don't size unknown memory type? */
937 1.38 cgd if (rval != 0 && sizebar) {
938 1.24 thorpej /*
939 1.27 cgd * The following sequence seems to make some devices
940 1.27 cgd * (e.g. host bus bridges, which don't normally
941 1.27 cgd * have their space mapped) very unhappy, to
942 1.27 cgd * the point of crashing the system.
943 1.24 thorpej *
944 1.27 cgd * Therefore, if the mapping register is zero to
945 1.27 cgd * start out with, don't bother trying.
946 1.24 thorpej */
947 1.27 cgd s = splhigh();
948 1.27 cgd pci_conf_write(pc, tag, reg, 0xffffffff);
949 1.27 cgd mask = pci_conf_read(pc, tag, reg);
950 1.27 cgd pci_conf_write(pc, tag, reg, rval);
951 1.37 nathanw if (PCI_MAPREG_TYPE(rval) == PCI_MAPREG_TYPE_MEM &&
952 1.37 nathanw PCI_MAPREG_MEM_TYPE(rval) == PCI_MAPREG_MEM_TYPE_64BIT) {
953 1.37 nathanw pci_conf_write(pc, tag, reg + 4, 0xffffffff);
954 1.37 nathanw mask64h = pci_conf_read(pc, tag, reg + 4);
955 1.37 nathanw pci_conf_write(pc, tag, reg + 4, rval64h);
956 1.54 scw } else
957 1.54 scw mask64h = 0;
958 1.27 cgd splx(s);
959 1.27 cgd } else
960 1.54 scw mask = mask64h = 0;
961 1.45 thorpej #endif /* _KERNEL */
962 1.27 cgd
963 1.28 cgd printf(" Base address register at 0x%02x", reg);
964 1.28 cgd if (name)
965 1.28 cgd printf(" (%s)", name);
966 1.28 cgd printf("\n ");
967 1.27 cgd if (rval == 0) {
968 1.27 cgd printf("not implemented(?)\n");
969 1.37 nathanw return width;
970 1.60 perry }
971 1.28 cgd printf("type: ");
972 1.28 cgd if (PCI_MAPREG_TYPE(rval) == PCI_MAPREG_TYPE_MEM) {
973 1.34 drochner const char *type, *prefetch;
974 1.27 cgd
975 1.27 cgd switch (PCI_MAPREG_MEM_TYPE(rval)) {
976 1.27 cgd case PCI_MAPREG_MEM_TYPE_32BIT:
977 1.27 cgd type = "32-bit";
978 1.27 cgd break;
979 1.27 cgd case PCI_MAPREG_MEM_TYPE_32BIT_1M:
980 1.27 cgd type = "32-bit-1M";
981 1.27 cgd break;
982 1.27 cgd case PCI_MAPREG_MEM_TYPE_64BIT:
983 1.27 cgd type = "64-bit";
984 1.27 cgd break;
985 1.27 cgd default:
986 1.27 cgd type = "unknown (XXX)";
987 1.27 cgd break;
988 1.22 thorpej }
989 1.34 drochner if (PCI_MAPREG_MEM_PREFETCHABLE(rval))
990 1.34 drochner prefetch = "";
991 1.27 cgd else
992 1.34 drochner prefetch = "non";
993 1.34 drochner printf("%s %sprefetchable memory\n", type, prefetch);
994 1.37 nathanw switch (PCI_MAPREG_MEM_TYPE(rval)) {
995 1.37 nathanw case PCI_MAPREG_MEM_TYPE_64BIT:
996 1.38 cgd printf(" base: 0x%016llx, ",
997 1.37 nathanw PCI_MAPREG_MEM64_ADDR(
998 1.38 cgd ((((long long) rval64h) << 32) | rval)));
999 1.45 thorpej #ifdef _KERNEL
1000 1.38 cgd if (sizebar)
1001 1.38 cgd printf("size: 0x%016llx",
1002 1.38 cgd PCI_MAPREG_MEM64_SIZE(
1003 1.38 cgd ((((long long) mask64h) << 32) | mask)));
1004 1.38 cgd else
1005 1.45 thorpej #endif /* _KERNEL */
1006 1.38 cgd printf("not sized");
1007 1.38 cgd printf("\n");
1008 1.37 nathanw break;
1009 1.37 nathanw case PCI_MAPREG_MEM_TYPE_32BIT:
1010 1.37 nathanw case PCI_MAPREG_MEM_TYPE_32BIT_1M:
1011 1.37 nathanw default:
1012 1.38 cgd printf(" base: 0x%08x, ",
1013 1.38 cgd PCI_MAPREG_MEM_ADDR(rval));
1014 1.45 thorpej #ifdef _KERNEL
1015 1.38 cgd if (sizebar)
1016 1.38 cgd printf("size: 0x%08x",
1017 1.38 cgd PCI_MAPREG_MEM_SIZE(mask));
1018 1.38 cgd else
1019 1.45 thorpej #endif /* _KERNEL */
1020 1.38 cgd printf("not sized");
1021 1.38 cgd printf("\n");
1022 1.37 nathanw break;
1023 1.37 nathanw }
1024 1.27 cgd } else {
1025 1.45 thorpej #ifdef _KERNEL
1026 1.38 cgd if (sizebar)
1027 1.38 cgd printf("%d-bit ", mask & ~0x0000ffff ? 32 : 16);
1028 1.45 thorpej #endif /* _KERNEL */
1029 1.27 cgd printf("i/o\n");
1030 1.38 cgd printf(" base: 0x%08x, ", PCI_MAPREG_IO_ADDR(rval));
1031 1.45 thorpej #ifdef _KERNEL
1032 1.38 cgd if (sizebar)
1033 1.38 cgd printf("size: 0x%08x", PCI_MAPREG_IO_SIZE(mask));
1034 1.38 cgd else
1035 1.45 thorpej #endif /* _KERNEL */
1036 1.38 cgd printf("not sized");
1037 1.38 cgd printf("\n");
1038 1.22 thorpej }
1039 1.37 nathanw
1040 1.37 nathanw return width;
1041 1.27 cgd }
1042 1.28 cgd
1043 1.28 cgd static void
1044 1.44 thorpej pci_conf_print_regs(const pcireg_t *regs, int first, int pastlast)
1045 1.28 cgd {
1046 1.28 cgd int off, needaddr, neednl;
1047 1.28 cgd
1048 1.28 cgd needaddr = 1;
1049 1.28 cgd neednl = 0;
1050 1.28 cgd for (off = first; off < pastlast; off += 4) {
1051 1.28 cgd if ((off % 16) == 0 || needaddr) {
1052 1.28 cgd printf(" 0x%02x:", off);
1053 1.28 cgd needaddr = 0;
1054 1.28 cgd }
1055 1.28 cgd printf(" 0x%08x", regs[o2i(off)]);
1056 1.28 cgd neednl = 1;
1057 1.28 cgd if ((off % 16) == 12) {
1058 1.28 cgd printf("\n");
1059 1.28 cgd neednl = 0;
1060 1.28 cgd }
1061 1.28 cgd }
1062 1.28 cgd if (neednl)
1063 1.28 cgd printf("\n");
1064 1.28 cgd }
1065 1.28 cgd
1066 1.124.2.1 martin static void
1067 1.124.2.1 martin pci_conf_print_agp_cap(const pcireg_t *regs, int capoff)
1068 1.124.2.1 martin {
1069 1.124.2.1 martin pcireg_t rval;
1070 1.124.2.1 martin
1071 1.124.2.1 martin printf("\n AGP Capabilities Register\n");
1072 1.124.2.1 martin
1073 1.124.2.1 martin rval = regs[o2i(capoff)];
1074 1.124.2.1 martin printf(" Revision: %d.%d\n",
1075 1.124.2.1 martin PCI_CAP_AGP_MAJOR(rval), PCI_CAP_AGP_MINOR(rval));
1076 1.124.2.1 martin
1077 1.124.2.1 martin /* XXX need more */
1078 1.124.2.1 martin }
1079 1.124.2.1 martin
1080 1.115 msaitoh static const char *
1081 1.115 msaitoh pci_conf_print_pcipm_cap_aux(uint16_t caps)
1082 1.115 msaitoh {
1083 1.115 msaitoh
1084 1.115 msaitoh switch ((caps >> 6) & 7) {
1085 1.115 msaitoh case 0: return "self-powered";
1086 1.115 msaitoh case 1: return "55 mA";
1087 1.115 msaitoh case 2: return "100 mA";
1088 1.115 msaitoh case 3: return "160 mA";
1089 1.115 msaitoh case 4: return "220 mA";
1090 1.115 msaitoh case 5: return "270 mA";
1091 1.115 msaitoh case 6: return "320 mA";
1092 1.115 msaitoh case 7:
1093 1.115 msaitoh default: return "375 mA";
1094 1.115 msaitoh }
1095 1.115 msaitoh }
1096 1.115 msaitoh
1097 1.115 msaitoh static const char *
1098 1.115 msaitoh pci_conf_print_pcipm_cap_pmrev(uint8_t val)
1099 1.115 msaitoh {
1100 1.115 msaitoh static const char unk[] = "unknown";
1101 1.115 msaitoh static const char *pmrev[8] = {
1102 1.115 msaitoh unk, "1.0", "1.1", "1.2", unk, unk, unk, unk
1103 1.115 msaitoh };
1104 1.115 msaitoh if (val > 7)
1105 1.115 msaitoh return unk;
1106 1.115 msaitoh return pmrev[val];
1107 1.115 msaitoh }
1108 1.115 msaitoh
1109 1.27 cgd static void
1110 1.115 msaitoh pci_conf_print_pcipm_cap(const pcireg_t *regs, int capoff)
1111 1.27 cgd {
1112 1.115 msaitoh uint16_t caps, pmcsr;
1113 1.115 msaitoh pcireg_t reg;
1114 1.115 msaitoh
1115 1.115 msaitoh caps = regs[o2i(capoff)] >> PCI_PMCR_SHIFT;
1116 1.115 msaitoh reg = regs[o2i(capoff + PCI_PMCSR)];
1117 1.115 msaitoh pmcsr = reg & 0xffff;
1118 1.115 msaitoh
1119 1.115 msaitoh printf("\n PCI Power Management Capabilities Register\n");
1120 1.27 cgd
1121 1.115 msaitoh printf(" Capabilities register: 0x%04x\n", caps);
1122 1.115 msaitoh printf(" Version: %s\n",
1123 1.115 msaitoh pci_conf_print_pcipm_cap_pmrev(caps & PCI_PMCR_VERSION_MASK));
1124 1.115 msaitoh onoff("PME# clock", caps, PCI_PMCR_PME_CLOCK);
1125 1.115 msaitoh onoff("Device specific initialization", caps, PCI_PMCR_DSI);
1126 1.115 msaitoh printf(" 3.3V auxiliary current: %s\n",
1127 1.115 msaitoh pci_conf_print_pcipm_cap_aux(caps));
1128 1.115 msaitoh onoff("D1 power management state support", caps, PCI_PMCR_D1SUPP);
1129 1.115 msaitoh onoff("D2 power management state support", caps, PCI_PMCR_D2SUPP);
1130 1.117 msaitoh onoff("PME# support D0", caps, PCI_PMCR_PME_D0);
1131 1.117 msaitoh onoff("PME# support D1", caps, PCI_PMCR_PME_D1);
1132 1.117 msaitoh onoff("PME# support D2", caps, PCI_PMCR_PME_D2);
1133 1.117 msaitoh onoff("PME# support D3 hot", caps, PCI_PMCR_PME_D3HOT);
1134 1.117 msaitoh onoff("PME# support D3 cold", caps, PCI_PMCR_PME_D3COLD);
1135 1.22 thorpej
1136 1.115 msaitoh printf(" Control/status register: 0x%04x\n", pmcsr);
1137 1.115 msaitoh printf(" Power state: D%d\n", pmcsr & PCI_PMCSR_STATE_MASK);
1138 1.115 msaitoh onoff("PCI Express reserved", (pmcsr >> 2), 1);
1139 1.117 msaitoh onoff("No soft reset", pmcsr, PCI_PMCSR_NO_SOFTRST);
1140 1.115 msaitoh printf(" PME# assertion: %sabled\n",
1141 1.115 msaitoh (pmcsr & PCI_PMCSR_PME_EN) ? "en" : "dis");
1142 1.115 msaitoh onoff("PME# status", pmcsr, PCI_PMCSR_PME_STS);
1143 1.115 msaitoh printf(" Bridge Support Extensions register: 0x%02x\n",
1144 1.115 msaitoh (reg >> 16) & 0xff);
1145 1.115 msaitoh onoff("B2/B3 support", reg, PCI_PMCSR_B2B3_SUPPORT);
1146 1.115 msaitoh onoff("Bus Power/Clock Control Enable", reg, PCI_PMCSR_BPCC_EN);
1147 1.115 msaitoh printf(" Data register: 0x%02x\n", (reg >> 24) & 0xff);
1148 1.115 msaitoh
1149 1.115 msaitoh }
1150 1.22 thorpej
1151 1.115 msaitoh /* XXX pci_conf_print_vpd_cap */
1152 1.115 msaitoh /* XXX pci_conf_print_slotid_cap */
1153 1.26 cgd
1154 1.115 msaitoh static void
1155 1.115 msaitoh pci_conf_print_msi_cap(const pcireg_t *regs, int capoff)
1156 1.115 msaitoh {
1157 1.115 msaitoh uint32_t ctl, mmc, mme;
1158 1.33 kleink
1159 1.115 msaitoh regs += o2i(capoff);
1160 1.115 msaitoh ctl = *regs++;
1161 1.115 msaitoh mmc = __SHIFTOUT(ctl, PCI_MSI_CTL_MMC_MASK);
1162 1.115 msaitoh mme = __SHIFTOUT(ctl, PCI_MSI_CTL_MME_MASK);
1163 1.33 kleink
1164 1.115 msaitoh printf("\n PCI Message Signaled Interrupt\n");
1165 1.26 cgd
1166 1.115 msaitoh printf(" Message Control register: 0x%04x\n", ctl >> 16);
1167 1.115 msaitoh onoff("MSI Enabled", ctl, PCI_MSI_CTL_MSI_ENABLE);
1168 1.115 msaitoh printf(" Multiple Message Capable: %s (%d vector%s)\n",
1169 1.115 msaitoh mmc > 0 ? "yes" : "no", 1 << mmc, mmc > 0 ? "s" : "");
1170 1.115 msaitoh printf(" Multiple Message Enabled: %s (%d vector%s)\n",
1171 1.115 msaitoh mme > 0 ? "on" : "off", 1 << mme, mme > 0 ? "s" : "");
1172 1.115 msaitoh onoff("64 Bit Address Capable", ctl, PCI_MSI_CTL_64BIT_ADDR);
1173 1.115 msaitoh onoff("Per-Vector Masking Capable", ctl, PCI_MSI_CTL_PERVEC_MASK);
1174 1.115 msaitoh printf(" Message Address %sregister: 0x%08x\n",
1175 1.115 msaitoh ctl & PCI_MSI_CTL_64BIT_ADDR ? "(lower) " : "", *regs++);
1176 1.115 msaitoh if (ctl & PCI_MSI_CTL_64BIT_ADDR) {
1177 1.115 msaitoh printf(" Message Address %sregister: 0x%08x\n",
1178 1.115 msaitoh "(upper) ", *regs++);
1179 1.115 msaitoh }
1180 1.115 msaitoh printf(" Message Data register: 0x%08x\n", *regs++);
1181 1.115 msaitoh if (ctl & PCI_MSI_CTL_PERVEC_MASK) {
1182 1.115 msaitoh printf(" Vector Mask register: 0x%08x\n", *regs++);
1183 1.115 msaitoh printf(" Vector Pending register: 0x%08x\n", *regs++);
1184 1.22 thorpej }
1185 1.51 drochner }
1186 1.51 drochner
1187 1.115 msaitoh /* XXX pci_conf_print_cpci_hostwap_cap */
1188 1.122 msaitoh
1189 1.122 msaitoh /*
1190 1.122 msaitoh * For both command register and status register.
1191 1.122 msaitoh * The argument "idx" is index number (0 to 7).
1192 1.122 msaitoh */
1193 1.122 msaitoh static int
1194 1.122 msaitoh pcix_split_trans(unsigned int idx)
1195 1.122 msaitoh {
1196 1.122 msaitoh static int table[8] = {
1197 1.122 msaitoh 1, 2, 3, 4, 8, 12, 16, 32
1198 1.122 msaitoh };
1199 1.122 msaitoh
1200 1.122 msaitoh if (idx >= __arraycount(table))
1201 1.122 msaitoh return -1;
1202 1.122 msaitoh return table[idx];
1203 1.122 msaitoh }
1204 1.122 msaitoh
1205 1.122 msaitoh static void
1206 1.122 msaitoh pci_conf_print_pcix_cap(const pcireg_t *regs, int capoff)
1207 1.122 msaitoh {
1208 1.122 msaitoh pcireg_t reg;
1209 1.122 msaitoh int isbridge;
1210 1.122 msaitoh int i;
1211 1.122 msaitoh
1212 1.122 msaitoh isbridge = (PCI_HDRTYPE_TYPE(regs[o2i(PCI_BHLC_REG)])
1213 1.122 msaitoh & PCI_HDRTYPE_PPB) != 0 ? 1 : 0;
1214 1.122 msaitoh printf("\n PCI-X %s Capabilities Register\n",
1215 1.122 msaitoh isbridge ? "Bridge" : "Non-bridge");
1216 1.122 msaitoh
1217 1.122 msaitoh reg = regs[o2i(capoff)];
1218 1.122 msaitoh if (isbridge != 0) {
1219 1.122 msaitoh printf(" Secondary status register: 0x%04x\n",
1220 1.122 msaitoh (reg & 0xffff0000) >> 16);
1221 1.122 msaitoh onoff("64bit device", reg, PCIX_STATUS_64BIT);
1222 1.122 msaitoh onoff("133MHz capable", reg, PCIX_STATUS_133);
1223 1.122 msaitoh onoff("Split completion discarded", reg, PCIX_STATUS_SPLDISC);
1224 1.122 msaitoh onoff("Unexpected split completion", reg, PCIX_STATUS_SPLUNEX);
1225 1.122 msaitoh onoff("Split completion overrun", reg, PCIX_BRIDGE_ST_SPLOVRN);
1226 1.122 msaitoh onoff("Split request delayed", reg, PCIX_BRIDGE_ST_SPLRQDL);
1227 1.122 msaitoh printf(" Secondary clock frequency: 0x%x\n",
1228 1.122 msaitoh (reg & PCIX_BRIDGE_2NDST_CLKF)
1229 1.122 msaitoh >> PCIX_BRIDGE_2NDST_CLKF_SHIFT);
1230 1.122 msaitoh printf(" Version: 0x%x\n",
1231 1.122 msaitoh (reg & PCIX_BRIDGE_2NDST_VER_MASK)
1232 1.122 msaitoh >> PCIX_BRIDGE_2NDST_VER_SHIFT);
1233 1.122 msaitoh onoff("266MHz capable", reg, PCIX_BRIDGE_ST_266);
1234 1.122 msaitoh onoff("533MHz capable", reg, PCIX_BRIDGE_ST_533);
1235 1.122 msaitoh } else {
1236 1.122 msaitoh printf(" Command register: 0x%04x\n",
1237 1.122 msaitoh (reg & 0xffff0000) >> 16);
1238 1.122 msaitoh onoff("Data Parity Error Recovery", reg,
1239 1.122 msaitoh PCIX_CMD_PERR_RECOVER);
1240 1.122 msaitoh onoff("Enable Relaxed Ordering", reg, PCIX_CMD_RELAXED_ORDER);
1241 1.122 msaitoh printf(" Maximum Burst Read Count: %u\n",
1242 1.122 msaitoh PCIX_CMD_BYTECNT(reg));
1243 1.122 msaitoh printf(" Maximum Split Transactions: %d\n",
1244 1.122 msaitoh pcix_split_trans((reg & PCIX_CMD_SPLTRANS_MASK)
1245 1.122 msaitoh >> PCIX_CMD_SPLTRANS_SHIFT));
1246 1.122 msaitoh }
1247 1.122 msaitoh reg = regs[o2i(capoff+PCIX_STATUS)]; /* Or PCIX_BRIDGE_PRI_STATUS */
1248 1.122 msaitoh printf(" %sStatus register: 0x%08x\n",
1249 1.122 msaitoh isbridge ? "Bridge " : "", reg);
1250 1.122 msaitoh printf(" Function: %d\n", PCIX_STATUS_FN(reg));
1251 1.122 msaitoh printf(" Device: %d\n", PCIX_STATUS_DEV(reg));
1252 1.122 msaitoh printf(" Bus: %d\n", PCIX_STATUS_BUS(reg));
1253 1.122 msaitoh onoff("64bit device", reg, PCIX_STATUS_64BIT);
1254 1.122 msaitoh onoff("133MHz capable", reg, PCIX_STATUS_133);
1255 1.122 msaitoh onoff("Split completion discarded", reg, PCIX_STATUS_SPLDISC);
1256 1.122 msaitoh onoff("Unexpected split completion", reg, PCIX_STATUS_SPLUNEX);
1257 1.122 msaitoh if (isbridge != 0) {
1258 1.122 msaitoh onoff("Split completion overrun", reg, PCIX_BRIDGE_ST_SPLOVRN);
1259 1.122 msaitoh onoff("Split request delayed", reg, PCIX_BRIDGE_ST_SPLRQDL);
1260 1.122 msaitoh } else {
1261 1.122 msaitoh onoff2("Device Complexity", reg, PCIX_STATUS_DEVCPLX,
1262 1.122 msaitoh "bridge device", "simple device");
1263 1.122 msaitoh printf(" Designed max memory read byte count: %d\n",
1264 1.122 msaitoh 512 << ((reg & PCIX_STATUS_MAXB_MASK)
1265 1.122 msaitoh >> PCIX_STATUS_MAXB_SHIFT));
1266 1.122 msaitoh printf(" Designed max outstanding split transaction: %d\n",
1267 1.122 msaitoh pcix_split_trans((reg & PCIX_STATUS_MAXST_MASK)
1268 1.122 msaitoh >> PCIX_STATUS_MAXST_SHIFT));
1269 1.122 msaitoh printf(" MAX cumulative Read Size: %u\n",
1270 1.122 msaitoh 8 << ((reg & 0x1c000000) >> PCIX_STATUS_MAXRS_SHIFT));
1271 1.122 msaitoh onoff("Received split completion error", reg,
1272 1.122 msaitoh PCIX_STATUS_SCERR);
1273 1.122 msaitoh }
1274 1.122 msaitoh onoff("266MHz capable", reg, PCIX_STATUS_266);
1275 1.122 msaitoh onoff("533MHz capable", reg, PCIX_STATUS_533);
1276 1.122 msaitoh
1277 1.122 msaitoh if (isbridge == 0)
1278 1.122 msaitoh return;
1279 1.122 msaitoh
1280 1.122 msaitoh /* Only for bridge */
1281 1.122 msaitoh for (i = 0; i < 2; i++) {
1282 1.122 msaitoh reg = regs[o2i(capoff+PCIX_BRIDGE_UP_STCR + (4 * i))];
1283 1.122 msaitoh printf(" %s split transaction control register: 0x%08x\n",
1284 1.122 msaitoh (i == 0) ? "Upstream" : "Downstream", reg);
1285 1.122 msaitoh printf(" Capacity: %d\n", reg & PCIX_BRIDGE_STCAP);
1286 1.122 msaitoh printf(" Commitment Limit: %d\n",
1287 1.122 msaitoh (reg & PCIX_BRIDGE_STCLIM) >> PCIX_BRIDGE_STCLIM_SHIFT);
1288 1.122 msaitoh }
1289 1.122 msaitoh }
1290 1.122 msaitoh
1291 1.115 msaitoh /* XXX pci_conf_print_ldt_cap */
1292 1.118 msaitoh
1293 1.118 msaitoh static void
1294 1.118 msaitoh pci_conf_print_vendspec_cap(const pcireg_t *regs, int capoff)
1295 1.118 msaitoh {
1296 1.118 msaitoh uint16_t caps;
1297 1.118 msaitoh
1298 1.118 msaitoh caps = regs[o2i(capoff)] >> PCI_VENDORSPECIFIC_SHIFT;
1299 1.118 msaitoh
1300 1.118 msaitoh printf("\n PCI Vendor Specific Capabilities Register\n");
1301 1.118 msaitoh printf(" Capabilities length: 0x%02x\n", caps & 0xff);
1302 1.118 msaitoh }
1303 1.118 msaitoh
1304 1.118 msaitoh static void
1305 1.118 msaitoh pci_conf_print_debugport_cap(const pcireg_t *regs, int capoff)
1306 1.118 msaitoh {
1307 1.118 msaitoh pcireg_t val;
1308 1.118 msaitoh
1309 1.118 msaitoh val = regs[o2i(capoff + PCI_DEBUG_BASER)];
1310 1.118 msaitoh
1311 1.118 msaitoh printf("\n Debugport Capability Register\n");
1312 1.118 msaitoh printf(" Debug base Register: 0x%04x\n",
1313 1.118 msaitoh val >> PCI_DEBUG_BASER_SHIFT);
1314 1.118 msaitoh printf(" port offset: 0x%04x\n",
1315 1.118 msaitoh (val & PCI_DEBUG_PORTOFF_MASK) >> PCI_DEBUG_PORTOFF_SHIFT);
1316 1.118 msaitoh printf(" BAR number: %u\n",
1317 1.118 msaitoh (val & PCI_DEBUG_BARNUM_MASK) >> PCI_DEBUG_BARNUM_SHIFT);
1318 1.118 msaitoh }
1319 1.118 msaitoh
1320 1.115 msaitoh /* XXX pci_conf_print_cpci_rsrcctl_cap */
1321 1.115 msaitoh /* XXX pci_conf_print_hotplug_cap */
1322 1.118 msaitoh
1323 1.118 msaitoh static void
1324 1.118 msaitoh pci_conf_print_subsystem_cap(const pcireg_t *regs, int capoff)
1325 1.118 msaitoh {
1326 1.118 msaitoh pcireg_t reg;
1327 1.118 msaitoh
1328 1.118 msaitoh reg = regs[o2i(capoff + PCI_CAP_SUBSYS_ID)];
1329 1.118 msaitoh
1330 1.118 msaitoh printf("\n Subsystem ID Capability Register\n");
1331 1.118 msaitoh printf(" Subsystem ID : 0x%08x\n", reg);
1332 1.118 msaitoh }
1333 1.118 msaitoh
1334 1.115 msaitoh /* XXX pci_conf_print_agp8_cap */
1335 1.115 msaitoh /* XXX pci_conf_print_secure_cap */
1336 1.115 msaitoh
1337 1.51 drochner static void
1338 1.99 msaitoh pci_print_pcie_L0s_latency(uint32_t val)
1339 1.99 msaitoh {
1340 1.99 msaitoh
1341 1.99 msaitoh switch (val) {
1342 1.99 msaitoh case 0x0:
1343 1.99 msaitoh printf("Less than 64ns\n");
1344 1.99 msaitoh break;
1345 1.99 msaitoh case 0x1:
1346 1.99 msaitoh case 0x2:
1347 1.99 msaitoh case 0x3:
1348 1.99 msaitoh printf("%dns to less than %dns\n", 32 << val, 32 << (val + 1));
1349 1.99 msaitoh break;
1350 1.99 msaitoh case 0x4:
1351 1.99 msaitoh printf("512ns to less than 1us\n");
1352 1.99 msaitoh break;
1353 1.99 msaitoh case 0x5:
1354 1.99 msaitoh printf("1us to less than 2us\n");
1355 1.99 msaitoh break;
1356 1.99 msaitoh case 0x6:
1357 1.99 msaitoh printf("2us - 4us\n");
1358 1.99 msaitoh break;
1359 1.99 msaitoh case 0x7:
1360 1.99 msaitoh printf("More than 4us\n");
1361 1.99 msaitoh break;
1362 1.99 msaitoh }
1363 1.99 msaitoh }
1364 1.99 msaitoh
1365 1.99 msaitoh static void
1366 1.99 msaitoh pci_print_pcie_L1_latency(uint32_t val)
1367 1.99 msaitoh {
1368 1.99 msaitoh
1369 1.99 msaitoh switch (val) {
1370 1.99 msaitoh case 0x0:
1371 1.99 msaitoh printf("Less than 1us\n");
1372 1.99 msaitoh break;
1373 1.99 msaitoh case 0x6:
1374 1.99 msaitoh printf("32us - 64us\n");
1375 1.99 msaitoh break;
1376 1.99 msaitoh case 0x7:
1377 1.99 msaitoh printf("More than 64us\n");
1378 1.99 msaitoh break;
1379 1.99 msaitoh default:
1380 1.99 msaitoh printf("%dus to less than %dus\n", 1 << (val - 1), 1 << val);
1381 1.99 msaitoh break;
1382 1.99 msaitoh }
1383 1.99 msaitoh }
1384 1.99 msaitoh
1385 1.99 msaitoh static void
1386 1.105 msaitoh pci_print_pcie_compl_timeout(uint32_t val)
1387 1.105 msaitoh {
1388 1.105 msaitoh
1389 1.105 msaitoh switch (val) {
1390 1.105 msaitoh case 0x0:
1391 1.105 msaitoh printf("50us to 50ms\n");
1392 1.105 msaitoh break;
1393 1.105 msaitoh case 0x5:
1394 1.105 msaitoh printf("16ms to 55ms\n");
1395 1.105 msaitoh break;
1396 1.105 msaitoh case 0x6:
1397 1.105 msaitoh printf("65ms to 210ms\n");
1398 1.105 msaitoh break;
1399 1.105 msaitoh case 0x9:
1400 1.105 msaitoh printf("260ms to 900ms\n");
1401 1.105 msaitoh break;
1402 1.105 msaitoh case 0xa:
1403 1.105 msaitoh printf("1s to 3.5s\n");
1404 1.105 msaitoh break;
1405 1.105 msaitoh default:
1406 1.105 msaitoh printf("unknown %u value\n", val);
1407 1.105 msaitoh break;
1408 1.105 msaitoh }
1409 1.105 msaitoh }
1410 1.105 msaitoh
1411 1.105 msaitoh static void
1412 1.72 joerg pci_conf_print_pcie_cap(const pcireg_t *regs, int capoff)
1413 1.72 joerg {
1414 1.101 msaitoh pcireg_t reg; /* for each register */
1415 1.101 msaitoh pcireg_t val; /* for each bitfield */
1416 1.105 msaitoh bool check_link = false;
1417 1.72 joerg bool check_slot = false;
1418 1.101 msaitoh bool check_rootport = false;
1419 1.105 msaitoh unsigned int pciever;
1420 1.92 drochner static const char * const linkspeeds[] = {"2.5", "5.0", "8.0"};
1421 1.105 msaitoh int i;
1422 1.72 joerg
1423 1.72 joerg printf("\n PCI Express Capabilities Register\n");
1424 1.99 msaitoh /* Capability Register */
1425 1.101 msaitoh reg = regs[o2i(capoff)];
1426 1.101 msaitoh printf(" Capability register: %04x\n", reg >> 16);
1427 1.105 msaitoh pciever = (unsigned int)((reg & 0x000f0000) >> 16);
1428 1.105 msaitoh printf(" Capability version: %u\n", pciever);
1429 1.99 msaitoh printf(" Device type: ");
1430 1.101 msaitoh switch ((reg & 0x00f00000) >> 20) {
1431 1.72 joerg case 0x0:
1432 1.72 joerg printf("PCI Express Endpoint device\n");
1433 1.105 msaitoh check_link = true;
1434 1.72 joerg break;
1435 1.72 joerg case 0x1:
1436 1.75 jmcneill printf("Legacy PCI Express Endpoint device\n");
1437 1.105 msaitoh check_link = true;
1438 1.72 joerg break;
1439 1.72 joerg case 0x4:
1440 1.72 joerg printf("Root Port of PCI Express Root Complex\n");
1441 1.105 msaitoh check_link = true;
1442 1.72 joerg check_slot = true;
1443 1.105 msaitoh check_rootport = true;
1444 1.72 joerg break;
1445 1.72 joerg case 0x5:
1446 1.72 joerg printf("Upstream Port of PCI Express Switch\n");
1447 1.72 joerg break;
1448 1.72 joerg case 0x6:
1449 1.72 joerg printf("Downstream Port of PCI Express Switch\n");
1450 1.72 joerg check_slot = true;
1451 1.105 msaitoh check_rootport = true;
1452 1.72 joerg break;
1453 1.72 joerg case 0x7:
1454 1.72 joerg printf("PCI Express to PCI/PCI-X Bridge\n");
1455 1.72 joerg break;
1456 1.72 joerg case 0x8:
1457 1.72 joerg printf("PCI/PCI-X to PCI Express Bridge\n");
1458 1.72 joerg break;
1459 1.96 msaitoh case 0x9:
1460 1.96 msaitoh printf("Root Complex Integrated Endpoint\n");
1461 1.96 msaitoh break;
1462 1.96 msaitoh case 0xa:
1463 1.105 msaitoh check_rootport = true;
1464 1.96 msaitoh printf("Root Complex Event Collector\n");
1465 1.96 msaitoh break;
1466 1.72 joerg default:
1467 1.72 joerg printf("unknown\n");
1468 1.72 joerg break;
1469 1.72 joerg }
1470 1.124.2.1 martin onoff("Slot implemented", reg, PCIE_XCAP_SI);
1471 1.99 msaitoh printf(" Interrupt Message Number: %x\n",
1472 1.103 msaitoh (unsigned int)((reg & PCIE_XCAP_IRQ) >> 27));
1473 1.99 msaitoh
1474 1.99 msaitoh /* Device Capability Register */
1475 1.103 msaitoh reg = regs[o2i(capoff + PCIE_DCAP)];
1476 1.101 msaitoh printf(" Device Capabilities Register: 0x%08x\n", reg);
1477 1.99 msaitoh printf(" Max Payload Size Supported: %u bytes max\n",
1478 1.116 msaitoh 128 << (unsigned int)(reg & PCIE_DCAP_MAX_PAYLOAD));
1479 1.99 msaitoh printf(" Phantom Functions Supported: ");
1480 1.103 msaitoh switch ((reg & PCIE_DCAP_PHANTOM_FUNCS) >> 3) {
1481 1.99 msaitoh case 0x0:
1482 1.99 msaitoh printf("not available\n");
1483 1.99 msaitoh break;
1484 1.99 msaitoh case 0x1:
1485 1.99 msaitoh printf("MSB\n");
1486 1.99 msaitoh break;
1487 1.99 msaitoh case 0x2:
1488 1.99 msaitoh printf("two MSB\n");
1489 1.99 msaitoh break;
1490 1.99 msaitoh case 0x3:
1491 1.99 msaitoh printf("All three bits\n");
1492 1.99 msaitoh break;
1493 1.99 msaitoh }
1494 1.99 msaitoh printf(" Extended Tag Field Supported: %dbit\n",
1495 1.103 msaitoh (reg & PCIE_DCAP_EXT_TAG_FIELD) == 0 ? 5 : 8);
1496 1.99 msaitoh printf(" Endpoint L0 Acceptable Latency: ");
1497 1.103 msaitoh pci_print_pcie_L0s_latency((reg & PCIE_DCAP_L0S_LATENCY) >> 6);
1498 1.99 msaitoh printf(" Endpoint L1 Acceptable Latency: ");
1499 1.103 msaitoh pci_print_pcie_L1_latency((reg & PCIE_DCAP_L1_LATENCY) >> 9);
1500 1.122 msaitoh onoff("Attention Button Present", reg, PCIE_DCAP_ATTN_BUTTON);
1501 1.122 msaitoh onoff("Attention Indicator Present", reg, PCIE_DCAP_ATTN_IND);
1502 1.112 msaitoh onoff("Power Indicator Present", reg, PCIE_DCAP_PWR_IND);
1503 1.112 msaitoh onoff("Role-Based Error Report", reg, PCIE_DCAP_ROLE_ERR_RPT);
1504 1.99 msaitoh printf(" Captured Slot Power Limit Value: %d\n",
1505 1.103 msaitoh (unsigned int)(reg & PCIE_DCAP_SLOT_PWR_LIM_VAL) >> 18);
1506 1.99 msaitoh printf(" Captured Slot Power Limit Scale: %d\n",
1507 1.103 msaitoh (unsigned int)(reg & PCIE_DCAP_SLOT_PWR_LIM_SCALE) >> 26);
1508 1.112 msaitoh onoff("Function-Level Reset Capability", reg, PCIE_DCAP_FLR);
1509 1.99 msaitoh
1510 1.99 msaitoh /* Device Control Register */
1511 1.103 msaitoh reg = regs[o2i(capoff + PCIE_DCSR)];
1512 1.101 msaitoh printf(" Device Control Register: 0x%04x\n", reg & 0xffff);
1513 1.112 msaitoh onoff("Correctable Error Reporting Enable", reg,
1514 1.112 msaitoh PCIE_DCSR_ENA_COR_ERR);
1515 1.112 msaitoh onoff("Non Fatal Error Reporting Enable", reg, PCIE_DCSR_ENA_NFER);
1516 1.112 msaitoh onoff("Fatal Error Reporting Enable", reg, PCIE_DCSR_ENA_FER);
1517 1.112 msaitoh onoff("Unsupported Request Reporting Enable", reg, PCIE_DCSR_ENA_URR);
1518 1.112 msaitoh onoff("Enable Relaxed Ordering", reg, PCIE_DCSR_ENA_RELAX_ORD);
1519 1.99 msaitoh printf(" Max Payload Size: %d byte\n",
1520 1.103 msaitoh 128 << (((unsigned int)(reg & PCIE_DCSR_MAX_PAYLOAD) >> 5)));
1521 1.112 msaitoh onoff("Extended Tag Field Enable", reg, PCIE_DCSR_EXT_TAG_FIELD);
1522 1.112 msaitoh onoff("Phantom Functions Enable", reg, PCIE_DCSR_PHANTOM_FUNCS);
1523 1.112 msaitoh onoff("Aux Power PM Enable", reg, PCIE_DCSR_AUX_POWER_PM);
1524 1.112 msaitoh onoff("Enable No Snoop", reg, PCIE_DCSR_ENA_NO_SNOOP);
1525 1.99 msaitoh printf(" Max Read Request Size: %d byte\n",
1526 1.103 msaitoh 128 << ((unsigned int)(reg & PCIE_DCSR_MAX_READ_REQ) >> 12));
1527 1.99 msaitoh
1528 1.99 msaitoh /* Device Status Register */
1529 1.103 msaitoh reg = regs[o2i(capoff + PCIE_DCSR)];
1530 1.101 msaitoh printf(" Device Status Register: 0x%04x\n", reg >> 16);
1531 1.112 msaitoh onoff("Correctable Error Detected", reg, PCIE_DCSR_CED);
1532 1.112 msaitoh onoff("Non Fatal Error Detected", reg, PCIE_DCSR_NFED);
1533 1.112 msaitoh onoff("Fatal Error Detected", reg, PCIE_DCSR_FED);
1534 1.112 msaitoh onoff("Unsupported Request Detected", reg, PCIE_DCSR_URD);
1535 1.112 msaitoh onoff("Aux Power Detected", reg, PCIE_DCSR_AUX_PWR);
1536 1.112 msaitoh onoff("Transaction Pending", reg, PCIE_DCSR_TRANSACTION_PND);
1537 1.99 msaitoh
1538 1.105 msaitoh if (check_link) {
1539 1.105 msaitoh /* Link Capability Register */
1540 1.105 msaitoh reg = regs[o2i(capoff + PCIE_LCAP)];
1541 1.105 msaitoh printf(" Link Capabilities Register: 0x%08x\n", reg);
1542 1.105 msaitoh printf(" Maximum Link Speed: ");
1543 1.105 msaitoh val = reg & PCIE_LCAP_MAX_SPEED;
1544 1.105 msaitoh if (val < 1 || val > 3) {
1545 1.105 msaitoh printf("unknown %u value\n", val);
1546 1.105 msaitoh } else {
1547 1.105 msaitoh printf("%sGT/s\n", linkspeeds[val - 1]);
1548 1.105 msaitoh }
1549 1.105 msaitoh printf(" Maximum Link Width: x%u lanes\n",
1550 1.105 msaitoh (unsigned int)(reg & PCIE_LCAP_MAX_WIDTH) >> 4);
1551 1.105 msaitoh printf(" Active State PM Support: ");
1552 1.105 msaitoh val = (reg & PCIE_LCAP_ASPM) >> 10;
1553 1.105 msaitoh switch (val) {
1554 1.105 msaitoh case 0x1:
1555 1.105 msaitoh printf("L0s Entry supported\n");
1556 1.105 msaitoh break;
1557 1.105 msaitoh case 0x3:
1558 1.105 msaitoh printf("L0s and L1 supported\n");
1559 1.105 msaitoh break;
1560 1.105 msaitoh default:
1561 1.105 msaitoh printf("Reserved value\n");
1562 1.105 msaitoh break;
1563 1.105 msaitoh }
1564 1.105 msaitoh printf(" L0 Exit Latency: ");
1565 1.105 msaitoh pci_print_pcie_L0s_latency((reg & PCIE_LCAP_L0S_EXIT) >> 12);
1566 1.105 msaitoh printf(" L1 Exit Latency: ");
1567 1.105 msaitoh pci_print_pcie_L1_latency((reg & PCIE_LCAP_L1_EXIT) >> 15);
1568 1.105 msaitoh printf(" Port Number: %u\n", reg >> 24);
1569 1.117 msaitoh onoff("Clock Power Management", reg, PCIE_LCAP_CLOCK_PM);
1570 1.117 msaitoh onoff("Surprise Down Error Report", reg,
1571 1.117 msaitoh PCIE_LCAP_SURPRISE_DOWN);
1572 1.117 msaitoh onoff("Data Link Layer Link Active", reg, PCIE_LCAP_DL_ACTIVE);
1573 1.117 msaitoh onoff("Link BW Notification Capable", reg,
1574 1.117 msaitoh PCIE_LCAP_LINK_BW_NOTIFY);
1575 1.117 msaitoh onoff("ASPM Optionally Compliance", reg,
1576 1.117 msaitoh PCIE_LCAP_ASPM_COMPLIANCE);
1577 1.105 msaitoh
1578 1.105 msaitoh /* Link Control Register */
1579 1.105 msaitoh reg = regs[o2i(capoff + PCIE_LCSR)];
1580 1.105 msaitoh printf(" Link Control Register: 0x%04x\n", reg & 0xffff);
1581 1.105 msaitoh printf(" Active State PM Control: ");
1582 1.105 msaitoh val = reg & (PCIE_LCSR_ASPM_L1 | PCIE_LCSR_ASPM_L0S);
1583 1.105 msaitoh switch (val) {
1584 1.105 msaitoh case 0:
1585 1.105 msaitoh printf("disabled\n");
1586 1.105 msaitoh break;
1587 1.105 msaitoh case 1:
1588 1.105 msaitoh printf("L0s Entry Enabled\n");
1589 1.105 msaitoh break;
1590 1.105 msaitoh case 2:
1591 1.105 msaitoh printf("L1 Entry Enabled\n");
1592 1.105 msaitoh break;
1593 1.105 msaitoh case 3:
1594 1.105 msaitoh printf("L0s and L1 Entry Enabled\n");
1595 1.105 msaitoh break;
1596 1.105 msaitoh }
1597 1.112 msaitoh onoff2("Read Completion Boundary Control", reg, PCIE_LCSR_RCB,
1598 1.112 msaitoh "128bytes", "64bytes");
1599 1.112 msaitoh onoff("Link Disable", reg, PCIE_LCSR_LINK_DIS);
1600 1.112 msaitoh onoff("Retrain Link", reg, PCIE_LCSR_RETRAIN);
1601 1.112 msaitoh onoff("Common Clock Configuration", reg, PCIE_LCSR_COMCLKCFG);
1602 1.112 msaitoh onoff("Extended Synch", reg, PCIE_LCSR_EXTNDSYNC);
1603 1.112 msaitoh onoff("Enable Clock Power Management", reg, PCIE_LCSR_ENCLKPM);
1604 1.112 msaitoh onoff("Hardware Autonomous Width Disable", reg,
1605 1.112 msaitoh PCIE_LCSR_HAWD);
1606 1.112 msaitoh onoff("Link Bandwidth Management Interrupt Enable", reg,
1607 1.112 msaitoh PCIE_LCSR_LBMIE);
1608 1.112 msaitoh onoff("Link Autonomous Bandwidth Interrupt Enable", reg,
1609 1.112 msaitoh PCIE_LCSR_LABIE);
1610 1.105 msaitoh
1611 1.105 msaitoh /* Link Status Register */
1612 1.105 msaitoh reg = regs[o2i(capoff + PCIE_LCSR)];
1613 1.105 msaitoh printf(" Link Status Register: 0x%04x\n", reg >> 16);
1614 1.105 msaitoh printf(" Negotiated Link Speed: ");
1615 1.105 msaitoh if (((reg >> 16) & 0x000f) < 1 ||
1616 1.105 msaitoh ((reg >> 16) & 0x000f) > 3) {
1617 1.105 msaitoh printf("unknown %u value\n",
1618 1.105 msaitoh (unsigned int)(reg & PCIE_LCSR_LINKSPEED) >> 16);
1619 1.105 msaitoh } else {
1620 1.106 msaitoh printf("%sGT/s\n",
1621 1.123 msaitoh linkspeeds[((reg & PCIE_LCSR_LINKSPEED) >> 16)-1]);
1622 1.105 msaitoh }
1623 1.105 msaitoh printf(" Negotiated Link Width: x%u lanes\n",
1624 1.105 msaitoh (reg >> 20) & 0x003f);
1625 1.112 msaitoh onoff("Training Error", reg, PCIE_LCSR_LINKTRAIN_ERR);
1626 1.112 msaitoh onoff("Link Training", reg, PCIE_LCSR_LINKTRAIN);
1627 1.112 msaitoh onoff("Slot Clock Configuration", reg, PCIE_LCSR_SLOTCLKCFG);
1628 1.112 msaitoh onoff("Data Link Layer Link Active", reg, PCIE_LCSR_DLACTIVE);
1629 1.112 msaitoh onoff("Link Bandwidth Management Status", reg,
1630 1.112 msaitoh PCIE_LCSR_LINK_BW_MGMT);
1631 1.112 msaitoh onoff("Link Autonomous Bandwidth Status", reg,
1632 1.112 msaitoh PCIE_LCSR_LINK_AUTO_BW);
1633 1.86 matt }
1634 1.99 msaitoh
1635 1.102 msaitoh if (check_slot == true) {
1636 1.101 msaitoh /* Slot Capability Register */
1637 1.103 msaitoh reg = regs[o2i(capoff + PCIE_SLCAP)];
1638 1.101 msaitoh printf(" Slot Capability Register: %08x\n", reg);
1639 1.117 msaitoh onoff("Attention Button Present", reg, PCIE_SLCAP_ABP);
1640 1.117 msaitoh onoff("Power Controller Present", reg, PCIE_SLCAP_PCP);
1641 1.117 msaitoh onoff("MRL Sensor Present", reg, PCIE_SLCAP_MSP);
1642 1.117 msaitoh onoff("Attention Indicator Present", reg, PCIE_SLCAP_AIP);
1643 1.117 msaitoh onoff("Power Indicator Present", reg, PCIE_SLCAP_PIP);
1644 1.117 msaitoh onoff("Hot-Plug Surprise", reg, PCIE_SLCAP_HPS);
1645 1.117 msaitoh onoff("Hot-Plug Capable", reg, PCIE_SLCAP_HPC);
1646 1.101 msaitoh printf(" Slot Power Limit Value: %d\n",
1647 1.103 msaitoh (unsigned int)(reg & PCIE_SLCAP_SPLV) >> 7);
1648 1.101 msaitoh printf(" Slot Power Limit Scale: %d\n",
1649 1.103 msaitoh (unsigned int)(reg & PCIE_SLCAP_SPLS) >> 15);
1650 1.117 msaitoh onoff("Electromechanical Interlock Present", reg,
1651 1.117 msaitoh PCIE_SLCAP_EIP);
1652 1.117 msaitoh onoff("No Command Completed Support", reg, PCIE_SLCAP_NCCS);
1653 1.101 msaitoh printf(" Physical Slot Number: %d\n",
1654 1.103 msaitoh (unsigned int)(reg & PCIE_SLCAP_PSN) >> 19);
1655 1.101 msaitoh
1656 1.101 msaitoh /* Slot Control Register */
1657 1.103 msaitoh reg = regs[o2i(capoff + PCIE_SLCSR)];
1658 1.101 msaitoh printf(" Slot Control Register: %04x\n", reg & 0xffff);
1659 1.117 msaitoh onoff("Attention Button Pressed Enabled", reg, PCIE_SLCSR_ABE);
1660 1.117 msaitoh onoff("Power Fault Detected Enabled", reg, PCIE_SLCSR_PFE);
1661 1.117 msaitoh onoff("MRL Sensor Changed Enabled", reg, PCIE_SLCSR_MSE);
1662 1.117 msaitoh onoff("Presense Detect Changed Enabled", reg, PCIE_SLCSR_PDE);
1663 1.117 msaitoh onoff("Command Completed Interrupt Enabled", reg,
1664 1.117 msaitoh PCIE_SLCSR_CCE);
1665 1.117 msaitoh onoff("Hot-Plug Interrupt Enabled", reg, PCIE_SLCSR_HPE);
1666 1.78 drochner printf(" Attention Indicator Control: ");
1667 1.103 msaitoh switch ((reg & PCIE_SLCSR_AIC) >> 6) {
1668 1.72 joerg case 0x0:
1669 1.72 joerg printf("reserved\n");
1670 1.72 joerg break;
1671 1.72 joerg case 0x1:
1672 1.72 joerg printf("on\n");
1673 1.72 joerg break;
1674 1.72 joerg case 0x2:
1675 1.72 joerg printf("blink\n");
1676 1.72 joerg break;
1677 1.72 joerg case 0x3:
1678 1.72 joerg printf("off\n");
1679 1.72 joerg break;
1680 1.72 joerg }
1681 1.78 drochner printf(" Power Indicator Control: ");
1682 1.103 msaitoh switch ((reg & PCIE_SLCSR_PIC) >> 8) {
1683 1.72 joerg case 0x0:
1684 1.72 joerg printf("reserved\n");
1685 1.72 joerg break;
1686 1.72 joerg case 0x1:
1687 1.72 joerg printf("on\n");
1688 1.72 joerg break;
1689 1.72 joerg case 0x2:
1690 1.72 joerg printf("blink\n");
1691 1.72 joerg break;
1692 1.72 joerg case 0x3:
1693 1.72 joerg printf("off\n");
1694 1.72 joerg break;
1695 1.72 joerg }
1696 1.116 msaitoh onoff("Power Controller Control", reg, PCIE_SLCSR_PCC);
1697 1.117 msaitoh onoff("Electromechanical Interlock Control",
1698 1.117 msaitoh reg, PCIE_SLCSR_EIC);
1699 1.116 msaitoh onoff("Data Link Layer State Changed Enable", reg,
1700 1.116 msaitoh PCIE_SLCSR_DLLSCE);
1701 1.101 msaitoh
1702 1.101 msaitoh /* Slot Status Register */
1703 1.101 msaitoh printf(" Slot Status Register: %04x\n", reg >> 16);
1704 1.117 msaitoh onoff("Attention Button Pressed", reg, PCIE_SLCSR_ABP);
1705 1.117 msaitoh onoff("Power Fault Detected", reg, PCIE_SLCSR_PFD);
1706 1.117 msaitoh onoff("MRL Sensor Changed", reg, PCIE_SLCSR_MSC);
1707 1.117 msaitoh onoff("Presense Detect Changed", reg, PCIE_SLCSR_PDC);
1708 1.117 msaitoh onoff("Command Completed", reg, PCIE_SLCSR_CC);
1709 1.117 msaitoh onoff("MRL Open", reg, PCIE_SLCSR_MS);
1710 1.117 msaitoh onoff("Card Present in slot", reg, PCIE_SLCSR_PDS);
1711 1.117 msaitoh onoff("Electromechanical Interlock engaged", reg,
1712 1.117 msaitoh PCIE_SLCSR_EIS);
1713 1.117 msaitoh onoff("Data Link Layer State Changed", reg, PCIE_SLCSR_LACS);
1714 1.101 msaitoh }
1715 1.101 msaitoh
1716 1.101 msaitoh if (check_rootport == true) {
1717 1.101 msaitoh /* Root Control Register */
1718 1.103 msaitoh reg = regs[o2i(capoff + PCIE_RCR)];
1719 1.101 msaitoh printf(" Root Control Register: %04x\n", reg & 0xffff);
1720 1.117 msaitoh onoff("SERR on Correctable Error Enable", reg,
1721 1.117 msaitoh PCIE_RCR_SERR_CER);
1722 1.117 msaitoh onoff("SERR on Non-Fatal Error Enable", reg,
1723 1.117 msaitoh PCIE_RCR_SERR_NFER);
1724 1.117 msaitoh onoff("SERR on Fatal Error Enable", reg, PCIE_RCR_SERR_FER);
1725 1.117 msaitoh onoff("PME Interrupt Enable", reg, PCIE_RCR_PME_IE);
1726 1.117 msaitoh onoff("CRS Software Visibility Enable", reg, PCIE_RCR_CRS_SVE);
1727 1.101 msaitoh
1728 1.101 msaitoh /* Root Capability Register */
1729 1.101 msaitoh printf(" Root Capability Register: %04x\n",
1730 1.101 msaitoh reg >> 16);
1731 1.124.2.2 martin onoff("CRS Software Visibility", reg, PCIE_RCR_CRS_SV);
1732 1.101 msaitoh
1733 1.101 msaitoh /* Root Status Register */
1734 1.103 msaitoh reg = regs[o2i(capoff + PCIE_RSR)];
1735 1.101 msaitoh printf(" Root Status Register: %08x\n", reg);
1736 1.101 msaitoh printf(" PME Requester ID: %04x\n",
1737 1.104 msaitoh (unsigned int)(reg & PCIE_RSR_PME_REQESTER));
1738 1.117 msaitoh onoff("PME was asserted", reg, PCIE_RSR_PME_STAT);
1739 1.117 msaitoh onoff("another PME is pending", reg, PCIE_RSR_PME_PEND);
1740 1.72 joerg }
1741 1.105 msaitoh
1742 1.105 msaitoh /* PCIe DW9 to DW14 is for PCIe 2.0 and newer */
1743 1.105 msaitoh if (pciever < 2)
1744 1.105 msaitoh return;
1745 1.105 msaitoh
1746 1.105 msaitoh /* Device Capabilities 2 */
1747 1.105 msaitoh reg = regs[o2i(capoff + PCIE_DCAP2)];
1748 1.105 msaitoh printf(" Device Capabilities 2: 0x%08x\n", reg);
1749 1.105 msaitoh printf(" Completion Timeout Ranges Supported: %u \n",
1750 1.105 msaitoh (unsigned int)(reg & PCIE_DCAP2_COMPT_RANGE));
1751 1.112 msaitoh onoff("Completion Timeout Disable Supported", reg,
1752 1.112 msaitoh PCIE_DCAP2_COMPT_DIS);
1753 1.112 msaitoh onoff("ARI Forwarding Supported", reg, PCIE_DCAP2_ARI_FWD);
1754 1.112 msaitoh onoff("AtomicOp Routing Supported", reg, PCIE_DCAP2_ATOM_ROUT);
1755 1.112 msaitoh onoff("32bit AtomicOp Completer Supported", reg, PCIE_DCAP2_32ATOM);
1756 1.112 msaitoh onoff("64bit AtomicOp Completer Supported", reg, PCIE_DCAP2_64ATOM);
1757 1.112 msaitoh onoff("128-bit CAS Completer Supported", reg, PCIE_DCAP2_128CAS);
1758 1.112 msaitoh onoff("No RO-enabled PR-PR passing", reg, PCIE_DCAP2_NO_ROPR_PASS);
1759 1.112 msaitoh onoff("LTR Mechanism Supported", reg, PCIE_DCAP2_LTR_MEC);
1760 1.105 msaitoh printf(" TPH Completer Supported: %u\n",
1761 1.105 msaitoh (unsigned int)(reg & PCIE_DCAP2_TPH_COMP) >> 12);
1762 1.105 msaitoh printf(" OBFF Supported: ");
1763 1.105 msaitoh switch ((reg & PCIE_DCAP2_OBFF) >> 18) {
1764 1.105 msaitoh case 0x0:
1765 1.105 msaitoh printf("Not supported\n");
1766 1.105 msaitoh break;
1767 1.105 msaitoh case 0x1:
1768 1.105 msaitoh printf("Message only\n");
1769 1.105 msaitoh break;
1770 1.105 msaitoh case 0x2:
1771 1.105 msaitoh printf("WAKE# only\n");
1772 1.105 msaitoh break;
1773 1.105 msaitoh case 0x3:
1774 1.105 msaitoh printf("Both\n");
1775 1.105 msaitoh break;
1776 1.105 msaitoh }
1777 1.112 msaitoh onoff("Extended Fmt Field Supported", reg, PCIE_DCAP2_EXTFMT_FLD);
1778 1.112 msaitoh onoff("End-End TLP Prefix Supported", reg, PCIE_DCAP2_EETLP_PREF);
1779 1.105 msaitoh printf(" Max End-End TLP Prefixes: %u\n",
1780 1.105 msaitoh (unsigned int)(reg & PCIE_DCAP2_MAX_EETLP) >> 22);
1781 1.105 msaitoh
1782 1.105 msaitoh /* Device Control 2 */
1783 1.105 msaitoh reg = regs[o2i(capoff + PCIE_DCSR2)];
1784 1.105 msaitoh printf(" Device Control 2: 0x%04x\n", reg & 0xffff);
1785 1.105 msaitoh printf(" Completion Timeout Value: ");
1786 1.105 msaitoh pci_print_pcie_compl_timeout(reg & PCIE_DCSR2_COMPT_VAL);
1787 1.117 msaitoh onoff("Completion Timeout Disabled", reg, PCIE_DCSR2_COMPT_DIS);
1788 1.117 msaitoh onoff("ARI Forwarding Enabled", reg, PCIE_DCSR2_ARI_FWD);
1789 1.117 msaitoh onoff("AtomicOp Rquester Enabled", reg, PCIE_DCSR2_ATOM_REQ);
1790 1.117 msaitoh onoff("AtomicOp Egress Blocking", reg, PCIE_DCSR2_ATOM_EBLK);
1791 1.117 msaitoh onoff("IDO Request Enabled", reg, PCIE_DCSR2_IDO_REQ);
1792 1.117 msaitoh onoff("IDO Completion Enabled", reg, PCIE_DCSR2_IDO_COMP);
1793 1.117 msaitoh onoff("LTR Mechanism Enabled", reg, PCIE_DCSR2_LTR_MEC);
1794 1.105 msaitoh printf(" OBFF: ");
1795 1.105 msaitoh switch ((reg & PCIE_DCSR2_OBFF_EN) >> 13) {
1796 1.105 msaitoh case 0x0:
1797 1.105 msaitoh printf("Disabled\n");
1798 1.105 msaitoh break;
1799 1.105 msaitoh case 0x1:
1800 1.105 msaitoh printf("Enabled with Message Signaling Variation A\n");
1801 1.105 msaitoh break;
1802 1.105 msaitoh case 0x2:
1803 1.105 msaitoh printf("Enabled with Message Signaling Variation B\n");
1804 1.105 msaitoh break;
1805 1.105 msaitoh case 0x3:
1806 1.105 msaitoh printf("Enabled using WAKE# signaling\n");
1807 1.105 msaitoh break;
1808 1.105 msaitoh }
1809 1.117 msaitoh onoff("End-End TLP Prefix Blocking on", reg, PCIE_DCSR2_EETLP);
1810 1.105 msaitoh
1811 1.105 msaitoh if (check_link) {
1812 1.105 msaitoh /* Link Capability 2 */
1813 1.105 msaitoh reg = regs[o2i(capoff + PCIE_LCAP2)];
1814 1.105 msaitoh printf(" Link Capabilities 2: 0x%08x\n", reg);
1815 1.105 msaitoh val = (reg & PCIE_LCAP2_SUP_LNKSV) >> 1;
1816 1.105 msaitoh printf(" Supported Link Speed Vector:");
1817 1.105 msaitoh for (i = 0; i <= 2; i++) {
1818 1.105 msaitoh if (((val >> i) & 0x01) != 0)
1819 1.105 msaitoh printf(" %sGT/s", linkspeeds[i]);
1820 1.105 msaitoh }
1821 1.108 msaitoh printf("\n");
1822 1.112 msaitoh onoff("Crosslink Supported", reg, PCIE_LCAP2_CROSSLNK);
1823 1.105 msaitoh
1824 1.105 msaitoh /* Link Control 2 */
1825 1.105 msaitoh reg = regs[o2i(capoff + PCIE_LCSR2)];
1826 1.105 msaitoh printf(" Link Control 2: 0x%04x\n", reg & 0xffff);
1827 1.105 msaitoh printf(" Target Link Speed: ");
1828 1.105 msaitoh val = reg & PCIE_LCSR2_TGT_LSPEED;
1829 1.117 msaitoh if (val < 1 || val > 3)
1830 1.105 msaitoh printf("unknown %u value\n", val);
1831 1.117 msaitoh else
1832 1.105 msaitoh printf("%sGT/s\n", linkspeeds[val - 1]);
1833 1.117 msaitoh onoff("Enter Compliance Enabled", reg, PCIE_LCSR2_ENT_COMPL);
1834 1.117 msaitoh onoff("HW Autonomous Speed Disabled", reg,
1835 1.117 msaitoh PCIE_LCSR2_HW_AS_DIS);
1836 1.117 msaitoh onoff("Selectable De-emphasis", reg, PCIE_LCSR2_SEL_DEEMP);
1837 1.105 msaitoh printf(" Transmit Margin: %u\n",
1838 1.105 msaitoh (unsigned int)(reg & PCIE_LCSR2_TX_MARGIN) >> 7);
1839 1.117 msaitoh onoff("Enter Modified Compliance", reg, PCIE_LCSR2_EN_MCOMP);
1840 1.117 msaitoh onoff("Compliance SOS", reg, PCIE_LCSR2_COMP_SOS);
1841 1.105 msaitoh printf(" Compliance Present/De-emphasis: %u\n",
1842 1.105 msaitoh (unsigned int)(reg & PCIE_LCSR2_COMP_DEEMP) >> 12);
1843 1.105 msaitoh
1844 1.105 msaitoh /* Link Status 2 */
1845 1.117 msaitoh printf(" Link Status 2: 0x%04x\n", (reg >> 16) & 0xffff);
1846 1.117 msaitoh onoff("Current De-emphasis Level", reg, PCIE_LCSR2_DEEMP_LVL);
1847 1.117 msaitoh onoff("Equalization Complete", reg, PCIE_LCSR2_EQ_COMPL);
1848 1.117 msaitoh onoff("Equalization Phase 1 Successful", reg,
1849 1.117 msaitoh PCIE_LCSR2_EQP1_SUC);
1850 1.117 msaitoh onoff("Equalization Phase 2 Successful", reg,
1851 1.117 msaitoh PCIE_LCSR2_EQP2_SUC);
1852 1.117 msaitoh onoff("Equalization Phase 3 Successful", reg,
1853 1.117 msaitoh PCIE_LCSR2_EQP3_SUC);
1854 1.117 msaitoh onoff("Link Equalization Request", reg, PCIE_LCSR2_LNKEQ_REQ);
1855 1.105 msaitoh }
1856 1.105 msaitoh
1857 1.105 msaitoh /* Slot Capability 2 */
1858 1.105 msaitoh /* Slot Control 2 */
1859 1.105 msaitoh /* Slot Status 2 */
1860 1.72 joerg }
1861 1.72 joerg
1862 1.120 msaitoh static void
1863 1.120 msaitoh pci_conf_print_msix_cap(const pcireg_t *regs, int capoff)
1864 1.120 msaitoh {
1865 1.120 msaitoh pcireg_t reg;
1866 1.120 msaitoh
1867 1.120 msaitoh printf("\n MSI-X Capability Register\n");
1868 1.120 msaitoh
1869 1.120 msaitoh reg = regs[o2i(capoff + PCI_MSIX_CTL)];
1870 1.120 msaitoh printf(" Message Control register: 0x%04x\n",
1871 1.120 msaitoh (reg >> 16) & 0xff);
1872 1.120 msaitoh printf(" Table Size: %d\n",PCI_MSIX_CTL_TBLSIZE(reg));
1873 1.120 msaitoh onoff("Function Mask", reg, PCI_MSIX_CTL_FUNCMASK);
1874 1.120 msaitoh onoff("MSI-X Enable", reg, PCI_MSIX_CTL_ENABLE);
1875 1.120 msaitoh reg = regs[o2i(capoff + PCI_MSIX_TBLOFFSET)];
1876 1.120 msaitoh printf(" Table offset register: 0x%08x\n", reg);
1877 1.120 msaitoh printf(" Table offset: %08x\n", reg & PCI_MSIX_TBLOFFSET_MASK);
1878 1.120 msaitoh printf(" BIR: 0x%x\n", reg & PCI_MSIX_TBLBIR_MASK);
1879 1.120 msaitoh reg = regs[o2i(capoff + PCI_MSIX_PBAOFFSET)];
1880 1.120 msaitoh printf(" Pending bit array register: 0x%08x\n", reg);
1881 1.120 msaitoh printf(" Pending bit array offset: %08x\n",
1882 1.120 msaitoh reg & PCI_MSIX_PBAOFFSET_MASK);
1883 1.120 msaitoh printf(" BIR: 0x%x\n", reg & PCI_MSIX_PBABIR_MASK);
1884 1.120 msaitoh }
1885 1.120 msaitoh
1886 1.115 msaitoh /* XXX pci_conf_print_sata_cap */
1887 1.118 msaitoh static void
1888 1.118 msaitoh pci_conf_print_pciaf_cap(const pcireg_t *regs, int capoff)
1889 1.118 msaitoh {
1890 1.118 msaitoh pcireg_t reg;
1891 1.118 msaitoh
1892 1.118 msaitoh printf("\n Advanced Features Capability Register\n");
1893 1.118 msaitoh
1894 1.118 msaitoh reg = regs[o2i(capoff + PCI_AFCAPR)];
1895 1.118 msaitoh printf(" AF Capabilities register: 0x%02x\n", (reg >> 24) & 0xff);
1896 1.118 msaitoh onoff("Transaction Pending", reg, PCI_AF_TP_CAP);
1897 1.118 msaitoh onoff("Function Level Reset", reg, PCI_AF_FLR_CAP);
1898 1.118 msaitoh reg = regs[o2i(capoff + PCI_AFCSR)];
1899 1.118 msaitoh printf(" AF Control register: 0x%02x\n", reg & 0xff);
1900 1.118 msaitoh /*
1901 1.118 msaitoh * Only PCI_AFCR_INITIATE_FLR is a member of the AF control register
1902 1.118 msaitoh * and it's always 0 on read
1903 1.118 msaitoh */
1904 1.118 msaitoh printf(" AF Status register: 0x%02x\n", (reg >> 8) & 0xff);
1905 1.118 msaitoh onoff("Transaction Pending", reg, PCI_AFSR_TP);
1906 1.118 msaitoh }
1907 1.77 jmcneill
1908 1.124.2.1 martin static struct {
1909 1.124.2.1 martin pcireg_t cap;
1910 1.124.2.1 martin const char *name;
1911 1.124.2.1 martin void (*printfunc)(const pcireg_t *, int);
1912 1.124.2.1 martin } pci_captab[] = {
1913 1.124.2.1 martin { PCI_CAP_RESERVED0, "reserved", NULL },
1914 1.124.2.1 martin { PCI_CAP_PWRMGMT, "Power Management", pci_conf_print_pcipm_cap },
1915 1.124.2.1 martin { PCI_CAP_AGP, "AGP", pci_conf_print_agp_cap },
1916 1.124.2.1 martin { PCI_CAP_VPD, "VPD", NULL },
1917 1.124.2.1 martin { PCI_CAP_SLOTID, "SlotID", NULL },
1918 1.124.2.1 martin { PCI_CAP_MSI, "MSI", pci_conf_print_msi_cap },
1919 1.124.2.1 martin { PCI_CAP_CPCI_HOTSWAP, "CompactPCI Hot-swapping", NULL },
1920 1.124.2.1 martin { PCI_CAP_PCIX, "PCI-X", pci_conf_print_pcix_cap },
1921 1.124.2.1 martin { PCI_CAP_LDT, "HyperTransport", NULL },
1922 1.124.2.1 martin { PCI_CAP_VENDSPEC, "Vendor-specific",
1923 1.124.2.1 martin pci_conf_print_vendspec_cap },
1924 1.124.2.1 martin { PCI_CAP_DEBUGPORT, "Debug Port", pci_conf_print_debugport_cap },
1925 1.124.2.1 martin { PCI_CAP_CPCI_RSRCCTL, "CompactPCI Resource Control", NULL },
1926 1.124.2.1 martin { PCI_CAP_HOTPLUG, "Hot-Plug", NULL },
1927 1.124.2.1 martin { PCI_CAP_SUBVENDOR, "Subsystem vendor ID",
1928 1.124.2.1 martin pci_conf_print_subsystem_cap },
1929 1.124.2.1 martin { PCI_CAP_AGP8, "AGP 8x", NULL },
1930 1.124.2.1 martin { PCI_CAP_SECURE, "Secure Device", NULL },
1931 1.124.2.1 martin { PCI_CAP_PCIEXPRESS, "PCI Express", pci_conf_print_pcie_cap },
1932 1.124.2.1 martin { PCI_CAP_MSIX, "MSI-X", pci_conf_print_msix_cap },
1933 1.124.2.1 martin { PCI_CAP_SATA, "SATA", NULL },
1934 1.124.2.1 martin { PCI_CAP_PCIAF, "Advanced Features", pci_conf_print_pciaf_cap }
1935 1.124.2.1 martin };
1936 1.124.2.1 martin
1937 1.86 matt static void
1938 1.51 drochner pci_conf_print_caplist(
1939 1.51 drochner #ifdef _KERNEL
1940 1.71 christos pci_chipset_tag_t pc, pcitag_t tag,
1941 1.51 drochner #endif
1942 1.52 drochner const pcireg_t *regs, int capoff)
1943 1.51 drochner {
1944 1.51 drochner int off;
1945 1.124.2.1 martin pcireg_t foundcap;
1946 1.51 drochner pcireg_t rval;
1947 1.124.2.1 martin bool foundtable[__arraycount(pci_captab)];
1948 1.124.2.1 martin unsigned int i;
1949 1.124.2.1 martin
1950 1.124.2.1 martin /* Clear table */
1951 1.124.2.1 martin for (i = 0; i < __arraycount(pci_captab); i++)
1952 1.124.2.1 martin foundtable[i] = false;
1953 1.33 kleink
1954 1.124.2.1 martin /* Print capability register's offset and the type first */
1955 1.52 drochner for (off = PCI_CAPLIST_PTR(regs[o2i(capoff)]);
1956 1.51 drochner off != 0;
1957 1.51 drochner off = PCI_CAPLIST_NEXT(regs[o2i(off)])) {
1958 1.51 drochner rval = regs[o2i(off)];
1959 1.51 drochner printf(" Capability register at 0x%02x\n", off);
1960 1.51 drochner
1961 1.51 drochner printf(" type: 0x%02x (", PCI_CAPLIST_CAP(rval));
1962 1.124.2.1 martin foundcap = PCI_CAPLIST_CAP(rval);
1963 1.124.2.1 martin if (foundcap < __arraycount(pci_captab)) {
1964 1.124.2.1 martin printf("%s)\n", pci_captab[foundcap].name);
1965 1.124.2.1 martin /* Mark as found */
1966 1.124.2.1 martin foundtable[foundcap] = true;
1967 1.124.2.1 martin } else
1968 1.124.2.1 martin printf("unknown)\n");
1969 1.124.2.1 martin }
1970 1.124.2.1 martin
1971 1.124.2.1 martin /*
1972 1.124.2.1 martin * And then, print the detail of each capability registers
1973 1.124.2.1 martin * in capability value's order.
1974 1.124.2.1 martin */
1975 1.124.2.1 martin for (i = 0; i < __arraycount(pci_captab); i++) {
1976 1.124.2.1 martin if (foundtable[i] == false)
1977 1.124.2.1 martin continue;
1978 1.124.2.1 martin
1979 1.124.2.1 martin /*
1980 1.124.2.1 martin * The type was found. Search capability list again and
1981 1.124.2.1 martin * print all capabilities that the capabiliy type is
1982 1.124.2.1 martin * the same. This is required because some capabilities
1983 1.124.2.1 martin * appear multiple times (e.g. HyperTransport capability).
1984 1.124.2.1 martin */
1985 1.124.2.1 martin for (off = PCI_CAPLIST_PTR(regs[o2i(capoff)]);
1986 1.124.2.1 martin off != 0;
1987 1.124.2.1 martin off = PCI_CAPLIST_NEXT(regs[o2i(off)])) {
1988 1.124.2.1 martin rval = regs[o2i(off)];
1989 1.124.2.1 martin foundcap = PCI_CAPLIST_CAP(rval);
1990 1.124.2.1 martin if ((i == foundcap)
1991 1.124.2.1 martin && (pci_captab[foundcap].printfunc != NULL))
1992 1.124.2.1 martin pci_captab[foundcap].printfunc(regs, off);
1993 1.33 kleink }
1994 1.33 kleink }
1995 1.26 cgd }
1996 1.26 cgd
1997 1.79 dyoung /* Print the Secondary Status Register. */
1998 1.79 dyoung static void
1999 1.79 dyoung pci_conf_print_ssr(pcireg_t rval)
2000 1.79 dyoung {
2001 1.79 dyoung pcireg_t devsel;
2002 1.79 dyoung
2003 1.79 dyoung printf(" Secondary status register: 0x%04x\n", rval); /* XXX bits */
2004 1.112 msaitoh onoff("66 MHz capable", rval, __BIT(5));
2005 1.112 msaitoh onoff("User Definable Features (UDF) support", rval, __BIT(6));
2006 1.112 msaitoh onoff("Fast back-to-back capable", rval, __BIT(7));
2007 1.112 msaitoh onoff("Data parity error detected", rval, __BIT(8));
2008 1.79 dyoung
2009 1.79 dyoung printf(" DEVSEL timing: ");
2010 1.79 dyoung devsel = __SHIFTOUT(rval, __BITS(10, 9));
2011 1.79 dyoung switch (devsel) {
2012 1.79 dyoung case 0:
2013 1.79 dyoung printf("fast");
2014 1.79 dyoung break;
2015 1.79 dyoung case 1:
2016 1.79 dyoung printf("medium");
2017 1.79 dyoung break;
2018 1.79 dyoung case 2:
2019 1.79 dyoung printf("slow");
2020 1.79 dyoung break;
2021 1.79 dyoung default:
2022 1.79 dyoung printf("unknown/reserved"); /* XXX */
2023 1.79 dyoung break;
2024 1.79 dyoung }
2025 1.79 dyoung printf(" (0x%x)\n", devsel);
2026 1.79 dyoung
2027 1.112 msaitoh onoff("Signalled target abort", rval, __BIT(11));
2028 1.112 msaitoh onoff("Received target abort", rval, __BIT(12));
2029 1.112 msaitoh onoff("Received master abort", rval, __BIT(13));
2030 1.112 msaitoh onoff("Received system error", rval, __BIT(14));
2031 1.112 msaitoh onoff("Detected parity error", rval, __BIT(15));
2032 1.79 dyoung }
2033 1.79 dyoung
2034 1.27 cgd static void
2035 1.115 msaitoh pci_conf_print_type0(
2036 1.115 msaitoh #ifdef _KERNEL
2037 1.115 msaitoh pci_chipset_tag_t pc, pcitag_t tag,
2038 1.115 msaitoh #endif
2039 1.115 msaitoh const pcireg_t *regs
2040 1.115 msaitoh #ifdef _KERNEL
2041 1.115 msaitoh , int sizebars
2042 1.115 msaitoh #endif
2043 1.115 msaitoh )
2044 1.115 msaitoh {
2045 1.115 msaitoh int off, width;
2046 1.115 msaitoh pcireg_t rval;
2047 1.115 msaitoh
2048 1.115 msaitoh for (off = PCI_MAPREG_START; off < PCI_MAPREG_END; off += width) {
2049 1.115 msaitoh #ifdef _KERNEL
2050 1.115 msaitoh width = pci_conf_print_bar(pc, tag, regs, off, NULL, sizebars);
2051 1.115 msaitoh #else
2052 1.115 msaitoh width = pci_conf_print_bar(regs, off, NULL);
2053 1.115 msaitoh #endif
2054 1.115 msaitoh }
2055 1.115 msaitoh
2056 1.115 msaitoh printf(" Cardbus CIS Pointer: 0x%08x\n", regs[o2i(0x28)]);
2057 1.115 msaitoh
2058 1.115 msaitoh rval = regs[o2i(PCI_SUBSYS_ID_REG)];
2059 1.115 msaitoh printf(" Subsystem vendor ID: 0x%04x\n", PCI_VENDOR(rval));
2060 1.115 msaitoh printf(" Subsystem ID: 0x%04x\n", PCI_PRODUCT(rval));
2061 1.115 msaitoh
2062 1.115 msaitoh /* XXX */
2063 1.115 msaitoh printf(" Expansion ROM Base Address: 0x%08x\n", regs[o2i(0x30)]);
2064 1.115 msaitoh
2065 1.115 msaitoh if (regs[o2i(PCI_COMMAND_STATUS_REG)] & PCI_STATUS_CAPLIST_SUPPORT)
2066 1.115 msaitoh printf(" Capability list pointer: 0x%02x\n",
2067 1.115 msaitoh PCI_CAPLIST_PTR(regs[o2i(PCI_CAPLISTPTR_REG)]));
2068 1.115 msaitoh else
2069 1.115 msaitoh printf(" Reserved @ 0x34: 0x%08x\n", regs[o2i(0x34)]);
2070 1.115 msaitoh
2071 1.115 msaitoh printf(" Reserved @ 0x38: 0x%08x\n", regs[o2i(0x38)]);
2072 1.115 msaitoh
2073 1.115 msaitoh rval = regs[o2i(PCI_INTERRUPT_REG)];
2074 1.115 msaitoh printf(" Maximum Latency: 0x%02x\n", (rval >> 24) & 0xff);
2075 1.115 msaitoh printf(" Minimum Grant: 0x%02x\n", (rval >> 16) & 0xff);
2076 1.115 msaitoh printf(" Interrupt pin: 0x%02x ", PCI_INTERRUPT_PIN(rval));
2077 1.115 msaitoh switch (PCI_INTERRUPT_PIN(rval)) {
2078 1.115 msaitoh case PCI_INTERRUPT_PIN_NONE:
2079 1.115 msaitoh printf("(none)");
2080 1.115 msaitoh break;
2081 1.115 msaitoh case PCI_INTERRUPT_PIN_A:
2082 1.115 msaitoh printf("(pin A)");
2083 1.115 msaitoh break;
2084 1.115 msaitoh case PCI_INTERRUPT_PIN_B:
2085 1.115 msaitoh printf("(pin B)");
2086 1.115 msaitoh break;
2087 1.115 msaitoh case PCI_INTERRUPT_PIN_C:
2088 1.115 msaitoh printf("(pin C)");
2089 1.115 msaitoh break;
2090 1.115 msaitoh case PCI_INTERRUPT_PIN_D:
2091 1.115 msaitoh printf("(pin D)");
2092 1.115 msaitoh break;
2093 1.115 msaitoh default:
2094 1.115 msaitoh printf("(? ? ?)");
2095 1.115 msaitoh break;
2096 1.115 msaitoh }
2097 1.115 msaitoh printf("\n");
2098 1.115 msaitoh printf(" Interrupt line: 0x%02x\n", PCI_INTERRUPT_LINE(rval));
2099 1.115 msaitoh }
2100 1.115 msaitoh
2101 1.115 msaitoh static void
2102 1.45 thorpej pci_conf_print_type1(
2103 1.45 thorpej #ifdef _KERNEL
2104 1.45 thorpej pci_chipset_tag_t pc, pcitag_t tag,
2105 1.45 thorpej #endif
2106 1.45 thorpej const pcireg_t *regs
2107 1.45 thorpej #ifdef _KERNEL
2108 1.45 thorpej , int sizebars
2109 1.45 thorpej #endif
2110 1.45 thorpej )
2111 1.27 cgd {
2112 1.37 nathanw int off, width;
2113 1.27 cgd pcireg_t rval;
2114 1.110 msaitoh uint32_t base, limit;
2115 1.110 msaitoh uint32_t base_h, limit_h;
2116 1.110 msaitoh uint64_t pbase, plimit;
2117 1.110 msaitoh int use_upper;
2118 1.27 cgd
2119 1.27 cgd /*
2120 1.27 cgd * This layout was cribbed from the TI PCI2030 PCI-to-PCI
2121 1.27 cgd * Bridge chip documentation, and may not be correct with
2122 1.27 cgd * respect to various standards. (XXX)
2123 1.27 cgd */
2124 1.27 cgd
2125 1.45 thorpej for (off = 0x10; off < 0x18; off += width) {
2126 1.45 thorpej #ifdef _KERNEL
2127 1.38 cgd width = pci_conf_print_bar(pc, tag, regs, off, NULL, sizebars);
2128 1.45 thorpej #else
2129 1.45 thorpej width = pci_conf_print_bar(regs, off, NULL);
2130 1.45 thorpej #endif
2131 1.45 thorpej }
2132 1.27 cgd
2133 1.109 msaitoh rval = regs[o2i(PCI_BRIDGE_BUS_REG)];
2134 1.27 cgd printf(" Primary bus number: 0x%02x\n",
2135 1.114 msaitoh PCI_BRIDGE_BUS_PRIMARY(rval));
2136 1.27 cgd printf(" Secondary bus number: 0x%02x\n",
2137 1.114 msaitoh PCI_BRIDGE_BUS_SECONDARY(rval));
2138 1.27 cgd printf(" Subordinate bus number: 0x%02x\n",
2139 1.114 msaitoh PCI_BRIDGE_BUS_SUBORDINATE(rval));
2140 1.27 cgd printf(" Secondary bus latency timer: 0x%02x\n",
2141 1.114 msaitoh PCI_BRIDGE_BUS_SEC_LATTIMER(rval));
2142 1.27 cgd
2143 1.109 msaitoh rval = regs[o2i(PCI_BRIDGE_STATIO_REG)];
2144 1.109 msaitoh pci_conf_print_ssr(__SHIFTOUT(rval, __BITS(31, 16)));
2145 1.27 cgd
2146 1.110 msaitoh /* I/O region */
2147 1.27 cgd printf(" I/O region:\n");
2148 1.109 msaitoh printf(" base register: 0x%02x\n", (rval >> 0) & 0xff);
2149 1.109 msaitoh printf(" limit register: 0x%02x\n", (rval >> 8) & 0xff);
2150 1.110 msaitoh if (PCI_BRIDGE_IO_32BITS(rval))
2151 1.110 msaitoh use_upper = 1;
2152 1.110 msaitoh else
2153 1.110 msaitoh use_upper = 0;
2154 1.112 msaitoh onoff("32bit I/O", rval, use_upper);
2155 1.110 msaitoh base = (rval & PCI_BRIDGE_STATIO_IOBASE_MASK) << 8;
2156 1.110 msaitoh limit = ((rval >> PCI_BRIDGE_STATIO_IOLIMIT_SHIFT)
2157 1.110 msaitoh & PCI_BRIDGE_STATIO_IOLIMIT_MASK) << 8;
2158 1.110 msaitoh limit |= 0x00000fff;
2159 1.110 msaitoh
2160 1.109 msaitoh rval = regs[o2i(PCI_BRIDGE_IOHIGH_REG)];
2161 1.110 msaitoh base_h = (rval >> 0) & 0xffff;
2162 1.110 msaitoh limit_h = (rval >> 16) & 0xffff;
2163 1.110 msaitoh printf(" base upper 16 bits register: 0x%04x\n", base_h);
2164 1.110 msaitoh printf(" limit upper 16 bits register: 0x%04x\n", limit_h);
2165 1.110 msaitoh
2166 1.110 msaitoh if (use_upper == 1) {
2167 1.110 msaitoh base |= base_h << 16;
2168 1.110 msaitoh limit |= limit_h << 16;
2169 1.110 msaitoh }
2170 1.110 msaitoh if (base < limit) {
2171 1.110 msaitoh if (use_upper == 1)
2172 1.110 msaitoh printf(" range: 0x%08x-0x%08x\n", base, limit);
2173 1.110 msaitoh else
2174 1.110 msaitoh printf(" range: 0x%04x-0x%04x\n", base, limit);
2175 1.121 msaitoh } else
2176 1.121 msaitoh printf(" range: not set\n");
2177 1.27 cgd
2178 1.110 msaitoh /* Non-prefetchable memory region */
2179 1.109 msaitoh rval = regs[o2i(PCI_BRIDGE_MEMORY_REG)];
2180 1.27 cgd printf(" Memory region:\n");
2181 1.27 cgd printf(" base register: 0x%04x\n",
2182 1.109 msaitoh (rval >> 0) & 0xffff);
2183 1.27 cgd printf(" limit register: 0x%04x\n",
2184 1.109 msaitoh (rval >> 16) & 0xffff);
2185 1.110 msaitoh base = ((rval >> PCI_BRIDGE_MEMORY_BASE_SHIFT)
2186 1.110 msaitoh & PCI_BRIDGE_MEMORY_BASE_MASK) << 20;
2187 1.110 msaitoh limit = (((rval >> PCI_BRIDGE_MEMORY_LIMIT_SHIFT)
2188 1.110 msaitoh & PCI_BRIDGE_MEMORY_LIMIT_MASK) << 20) | 0x000fffff;
2189 1.110 msaitoh if (base < limit)
2190 1.110 msaitoh printf(" range: 0x%08x-0x%08x\n", base, limit);
2191 1.121 msaitoh else
2192 1.121 msaitoh printf(" range: not set\n");
2193 1.27 cgd
2194 1.110 msaitoh /* Prefetchable memory region */
2195 1.109 msaitoh rval = regs[o2i(PCI_BRIDGE_PREFETCHMEM_REG)];
2196 1.27 cgd printf(" Prefetchable memory region:\n");
2197 1.27 cgd printf(" base register: 0x%04x\n",
2198 1.109 msaitoh (rval >> 0) & 0xffff);
2199 1.27 cgd printf(" limit register: 0x%04x\n",
2200 1.109 msaitoh (rval >> 16) & 0xffff);
2201 1.110 msaitoh base_h = regs[o2i(PCI_BRIDGE_PREFETCHBASE32_REG)];
2202 1.110 msaitoh limit_h = regs[o2i(PCI_BRIDGE_PREFETCHLIMIT32_REG)];
2203 1.109 msaitoh printf(" base upper 32 bits register: 0x%08x\n",
2204 1.110 msaitoh base_h);
2205 1.109 msaitoh printf(" limit upper 32 bits register: 0x%08x\n",
2206 1.110 msaitoh limit_h);
2207 1.110 msaitoh if (PCI_BRIDGE_PREFETCHMEM_64BITS(rval))
2208 1.110 msaitoh use_upper = 1;
2209 1.110 msaitoh else
2210 1.110 msaitoh use_upper = 0;
2211 1.112 msaitoh onoff("64bit memory address", rval, use_upper);
2212 1.110 msaitoh pbase = ((rval >> PCI_BRIDGE_PREFETCHMEM_BASE_SHIFT)
2213 1.110 msaitoh & PCI_BRIDGE_PREFETCHMEM_BASE_MASK) << 20;
2214 1.110 msaitoh plimit = (((rval >> PCI_BRIDGE_PREFETCHMEM_LIMIT_SHIFT)
2215 1.110 msaitoh & PCI_BRIDGE_PREFETCHMEM_LIMIT_MASK) << 20) | 0x000fffff;
2216 1.110 msaitoh if (use_upper == 1) {
2217 1.110 msaitoh pbase |= (uint64_t)base_h << 32;
2218 1.110 msaitoh plimit |= (uint64_t)limit_h << 32;
2219 1.110 msaitoh }
2220 1.110 msaitoh if (pbase < plimit) {
2221 1.110 msaitoh if (use_upper == 1)
2222 1.115 msaitoh printf(" range: 0x%016" PRIx64 "-0x%016" PRIx64
2223 1.115 msaitoh "\n", pbase, plimit);
2224 1.110 msaitoh else
2225 1.110 msaitoh printf(" range: 0x%08x-0x%08x\n",
2226 1.110 msaitoh (uint32_t)pbase, (uint32_t)plimit);
2227 1.121 msaitoh } else
2228 1.121 msaitoh printf(" range: not set\n");
2229 1.27 cgd
2230 1.53 drochner if (regs[o2i(PCI_COMMAND_STATUS_REG)] & PCI_STATUS_CAPLIST_SUPPORT)
2231 1.53 drochner printf(" Capability list pointer: 0x%02x\n",
2232 1.53 drochner PCI_CAPLIST_PTR(regs[o2i(PCI_CAPLISTPTR_REG)]));
2233 1.53 drochner else
2234 1.53 drochner printf(" Reserved @ 0x34: 0x%08x\n", regs[o2i(0x34)]);
2235 1.53 drochner
2236 1.27 cgd /* XXX */
2237 1.27 cgd printf(" Expansion ROM Base Address: 0x%08x\n", regs[o2i(0x38)]);
2238 1.27 cgd
2239 1.109 msaitoh rval = regs[o2i(PCI_INTERRUPT_REG)];
2240 1.27 cgd printf(" Interrupt line: 0x%02x\n",
2241 1.109 msaitoh (rval >> 0) & 0xff);
2242 1.27 cgd printf(" Interrupt pin: 0x%02x ",
2243 1.109 msaitoh (rval >> 8) & 0xff);
2244 1.109 msaitoh switch ((rval >> 8) & 0xff) {
2245 1.27 cgd case PCI_INTERRUPT_PIN_NONE:
2246 1.27 cgd printf("(none)");
2247 1.27 cgd break;
2248 1.27 cgd case PCI_INTERRUPT_PIN_A:
2249 1.27 cgd printf("(pin A)");
2250 1.27 cgd break;
2251 1.27 cgd case PCI_INTERRUPT_PIN_B:
2252 1.27 cgd printf("(pin B)");
2253 1.27 cgd break;
2254 1.27 cgd case PCI_INTERRUPT_PIN_C:
2255 1.27 cgd printf("(pin C)");
2256 1.27 cgd break;
2257 1.27 cgd case PCI_INTERRUPT_PIN_D:
2258 1.27 cgd printf("(pin D)");
2259 1.27 cgd break;
2260 1.27 cgd default:
2261 1.36 mrg printf("(? ? ?)");
2262 1.27 cgd break;
2263 1.27 cgd }
2264 1.27 cgd printf("\n");
2265 1.109 msaitoh rval = (regs[o2i(PCI_BRIDGE_CONTROL_REG)] >> PCI_BRIDGE_CONTROL_SHIFT)
2266 1.109 msaitoh & PCI_BRIDGE_CONTROL_MASK;
2267 1.27 cgd printf(" Bridge control register: 0x%04x\n", rval); /* XXX bits */
2268 1.112 msaitoh onoff("Parity error response", rval, 0x0001);
2269 1.112 msaitoh onoff("Secondary SERR forwarding", rval, 0x0002);
2270 1.112 msaitoh onoff("ISA enable", rval, 0x0004);
2271 1.112 msaitoh onoff("VGA enable", rval, 0x0008);
2272 1.112 msaitoh onoff("Master abort reporting", rval, 0x0020);
2273 1.112 msaitoh onoff("Secondary bus reset", rval, 0x0040);
2274 1.112 msaitoh onoff("Fast back-to-back capable", rval, 0x0080);
2275 1.27 cgd }
2276 1.27 cgd
2277 1.27 cgd static void
2278 1.45 thorpej pci_conf_print_type2(
2279 1.45 thorpej #ifdef _KERNEL
2280 1.45 thorpej pci_chipset_tag_t pc, pcitag_t tag,
2281 1.45 thorpej #endif
2282 1.45 thorpej const pcireg_t *regs
2283 1.45 thorpej #ifdef _KERNEL
2284 1.45 thorpej , int sizebars
2285 1.45 thorpej #endif
2286 1.45 thorpej )
2287 1.27 cgd {
2288 1.27 cgd pcireg_t rval;
2289 1.27 cgd
2290 1.27 cgd /*
2291 1.27 cgd * XXX these need to be printed in more detail, need to be
2292 1.27 cgd * XXX checked against specs/docs, etc.
2293 1.27 cgd *
2294 1.79 dyoung * This layout was cribbed from the TI PCI1420 PCI-to-CardBus
2295 1.27 cgd * controller chip documentation, and may not be correct with
2296 1.27 cgd * respect to various standards. (XXX)
2297 1.27 cgd */
2298 1.27 cgd
2299 1.45 thorpej #ifdef _KERNEL
2300 1.28 cgd pci_conf_print_bar(pc, tag, regs, 0x10,
2301 1.38 cgd "CardBus socket/ExCA registers", sizebars);
2302 1.45 thorpej #else
2303 1.45 thorpej pci_conf_print_bar(regs, 0x10, "CardBus socket/ExCA registers");
2304 1.45 thorpej #endif
2305 1.27 cgd
2306 1.109 msaitoh /* Capability list pointer and secondary status register */
2307 1.109 msaitoh rval = regs[o2i(PCI_CARDBUS_CAPLISTPTR_REG)];
2308 1.53 drochner if (regs[o2i(PCI_COMMAND_STATUS_REG)] & PCI_STATUS_CAPLIST_SUPPORT)
2309 1.53 drochner printf(" Capability list pointer: 0x%02x\n",
2310 1.109 msaitoh PCI_CAPLIST_PTR(rval));
2311 1.53 drochner else
2312 1.79 dyoung printf(" Reserved @ 0x14: 0x%04" PRIxMAX "\n",
2313 1.109 msaitoh __SHIFTOUT(rval, __BITS(15, 0)));
2314 1.109 msaitoh pci_conf_print_ssr(__SHIFTOUT(rval, __BITS(31, 16)));
2315 1.27 cgd
2316 1.109 msaitoh rval = regs[o2i(PCI_BRIDGE_BUS_REG)];
2317 1.27 cgd printf(" PCI bus number: 0x%02x\n",
2318 1.109 msaitoh (rval >> 0) & 0xff);
2319 1.27 cgd printf(" CardBus bus number: 0x%02x\n",
2320 1.109 msaitoh (rval >> 8) & 0xff);
2321 1.27 cgd printf(" Subordinate bus number: 0x%02x\n",
2322 1.109 msaitoh (rval >> 16) & 0xff);
2323 1.27 cgd printf(" CardBus latency timer: 0x%02x\n",
2324 1.109 msaitoh (rval >> 24) & 0xff);
2325 1.27 cgd
2326 1.27 cgd /* XXX Print more prettily */
2327 1.27 cgd printf(" CardBus memory region 0:\n");
2328 1.27 cgd printf(" base register: 0x%08x\n", regs[o2i(0x1c)]);
2329 1.27 cgd printf(" limit register: 0x%08x\n", regs[o2i(0x20)]);
2330 1.27 cgd printf(" CardBus memory region 1:\n");
2331 1.27 cgd printf(" base register: 0x%08x\n", regs[o2i(0x24)]);
2332 1.27 cgd printf(" limit register: 0x%08x\n", regs[o2i(0x28)]);
2333 1.27 cgd printf(" CardBus I/O region 0:\n");
2334 1.27 cgd printf(" base register: 0x%08x\n", regs[o2i(0x2c)]);
2335 1.27 cgd printf(" limit register: 0x%08x\n", regs[o2i(0x30)]);
2336 1.27 cgd printf(" CardBus I/O region 1:\n");
2337 1.27 cgd printf(" base register: 0x%08x\n", regs[o2i(0x34)]);
2338 1.27 cgd printf(" limit register: 0x%08x\n", regs[o2i(0x38)]);
2339 1.27 cgd
2340 1.109 msaitoh rval = regs[o2i(PCI_INTERRUPT_REG)];
2341 1.27 cgd printf(" Interrupt line: 0x%02x\n",
2342 1.109 msaitoh (rval >> 0) & 0xff);
2343 1.27 cgd printf(" Interrupt pin: 0x%02x ",
2344 1.109 msaitoh (rval >> 8) & 0xff);
2345 1.109 msaitoh switch ((rval >> 8) & 0xff) {
2346 1.27 cgd case PCI_INTERRUPT_PIN_NONE:
2347 1.27 cgd printf("(none)");
2348 1.27 cgd break;
2349 1.27 cgd case PCI_INTERRUPT_PIN_A:
2350 1.27 cgd printf("(pin A)");
2351 1.27 cgd break;
2352 1.27 cgd case PCI_INTERRUPT_PIN_B:
2353 1.27 cgd printf("(pin B)");
2354 1.27 cgd break;
2355 1.27 cgd case PCI_INTERRUPT_PIN_C:
2356 1.27 cgd printf("(pin C)");
2357 1.27 cgd break;
2358 1.27 cgd case PCI_INTERRUPT_PIN_D:
2359 1.27 cgd printf("(pin D)");
2360 1.27 cgd break;
2361 1.27 cgd default:
2362 1.36 mrg printf("(? ? ?)");
2363 1.27 cgd break;
2364 1.27 cgd }
2365 1.27 cgd printf("\n");
2366 1.27 cgd rval = (regs[o2i(0x3c)] >> 16) & 0xffff;
2367 1.27 cgd printf(" Bridge control register: 0x%04x\n", rval);
2368 1.112 msaitoh onoff("Parity error response", rval, __BIT(0));
2369 1.112 msaitoh onoff("SERR# enable", rval, __BIT(1));
2370 1.112 msaitoh onoff("ISA enable", rval, __BIT(2));
2371 1.112 msaitoh onoff("VGA enable", rval, __BIT(3));
2372 1.112 msaitoh onoff("Master abort mode", rval, __BIT(5));
2373 1.112 msaitoh onoff("Secondary (CardBus) bus reset", rval, __BIT(6));
2374 1.115 msaitoh onoff("Functional interrupts routed by ExCA registers", rval,
2375 1.115 msaitoh __BIT(7));
2376 1.112 msaitoh onoff("Memory window 0 prefetchable", rval, __BIT(8));
2377 1.112 msaitoh onoff("Memory window 1 prefetchable", rval, __BIT(9));
2378 1.112 msaitoh onoff("Write posting enable", rval, __BIT(10));
2379 1.28 cgd
2380 1.28 cgd rval = regs[o2i(0x40)];
2381 1.28 cgd printf(" Subsystem vendor ID: 0x%04x\n", PCI_VENDOR(rval));
2382 1.28 cgd printf(" Subsystem ID: 0x%04x\n", PCI_PRODUCT(rval));
2383 1.28 cgd
2384 1.45 thorpej #ifdef _KERNEL
2385 1.38 cgd pci_conf_print_bar(pc, tag, regs, 0x44, "legacy-mode registers",
2386 1.38 cgd sizebars);
2387 1.45 thorpej #else
2388 1.45 thorpej pci_conf_print_bar(regs, 0x44, "legacy-mode registers");
2389 1.45 thorpej #endif
2390 1.27 cgd }
2391 1.27 cgd
2392 1.26 cgd void
2393 1.45 thorpej pci_conf_print(
2394 1.45 thorpej #ifdef _KERNEL
2395 1.45 thorpej pci_chipset_tag_t pc, pcitag_t tag,
2396 1.45 thorpej void (*printfn)(pci_chipset_tag_t, pcitag_t, const pcireg_t *)
2397 1.45 thorpej #else
2398 1.45 thorpej int pcifd, u_int bus, u_int dev, u_int func
2399 1.45 thorpej #endif
2400 1.45 thorpej )
2401 1.26 cgd {
2402 1.26 cgd pcireg_t regs[o2i(256)];
2403 1.52 drochner int off, capoff, endoff, hdrtype;
2404 1.27 cgd const char *typename;
2405 1.45 thorpej #ifdef _KERNEL
2406 1.123 msaitoh void (*typeprintfn)(pci_chipset_tag_t, pcitag_t, const pcireg_t *,
2407 1.123 msaitoh int);
2408 1.38 cgd int sizebars;
2409 1.45 thorpej #else
2410 1.45 thorpej void (*typeprintfn)(const pcireg_t *);
2411 1.45 thorpej #endif
2412 1.26 cgd
2413 1.26 cgd printf("PCI configuration registers:\n");
2414 1.26 cgd
2415 1.45 thorpej for (off = 0; off < 256; off += 4) {
2416 1.45 thorpej #ifdef _KERNEL
2417 1.26 cgd regs[o2i(off)] = pci_conf_read(pc, tag, off);
2418 1.45 thorpej #else
2419 1.45 thorpej if (pcibus_conf_read(pcifd, bus, dev, func, off,
2420 1.45 thorpej ®s[o2i(off)]) == -1)
2421 1.45 thorpej regs[o2i(off)] = 0;
2422 1.45 thorpej #endif
2423 1.45 thorpej }
2424 1.26 cgd
2425 1.45 thorpej #ifdef _KERNEL
2426 1.38 cgd sizebars = 1;
2427 1.38 cgd if (PCI_CLASS(regs[o2i(PCI_CLASS_REG)]) == PCI_CLASS_BRIDGE &&
2428 1.38 cgd PCI_SUBCLASS(regs[o2i(PCI_CLASS_REG)]) == PCI_SUBCLASS_BRIDGE_HOST)
2429 1.38 cgd sizebars = 0;
2430 1.45 thorpej #endif
2431 1.38 cgd
2432 1.26 cgd /* common header */
2433 1.26 cgd printf(" Common header:\n");
2434 1.28 cgd pci_conf_print_regs(regs, 0, 16);
2435 1.28 cgd
2436 1.26 cgd printf("\n");
2437 1.45 thorpej #ifdef _KERNEL
2438 1.26 cgd pci_conf_print_common(pc, tag, regs);
2439 1.45 thorpej #else
2440 1.45 thorpej pci_conf_print_common(regs);
2441 1.45 thorpej #endif
2442 1.26 cgd printf("\n");
2443 1.26 cgd
2444 1.26 cgd /* type-dependent header */
2445 1.26 cgd hdrtype = PCI_HDRTYPE_TYPE(regs[o2i(PCI_BHLC_REG)]);
2446 1.26 cgd switch (hdrtype) { /* XXX make a table, eventually */
2447 1.26 cgd case 0:
2448 1.27 cgd /* Standard device header */
2449 1.27 cgd typename = "\"normal\" device";
2450 1.27 cgd typeprintfn = &pci_conf_print_type0;
2451 1.52 drochner capoff = PCI_CAPLISTPTR_REG;
2452 1.28 cgd endoff = 64;
2453 1.27 cgd break;
2454 1.27 cgd case 1:
2455 1.27 cgd /* PCI-PCI bridge header */
2456 1.27 cgd typename = "PCI-PCI bridge";
2457 1.26 cgd typeprintfn = &pci_conf_print_type1;
2458 1.52 drochner capoff = PCI_CAPLISTPTR_REG;
2459 1.28 cgd endoff = 64;
2460 1.26 cgd break;
2461 1.27 cgd case 2:
2462 1.27 cgd /* PCI-CardBus bridge header */
2463 1.27 cgd typename = "PCI-CardBus bridge";
2464 1.27 cgd typeprintfn = &pci_conf_print_type2;
2465 1.52 drochner capoff = PCI_CARDBUS_CAPLISTPTR_REG;
2466 1.28 cgd endoff = 72;
2467 1.27 cgd break;
2468 1.26 cgd default:
2469 1.27 cgd typename = NULL;
2470 1.26 cgd typeprintfn = 0;
2471 1.52 drochner capoff = -1;
2472 1.28 cgd endoff = 64;
2473 1.28 cgd break;
2474 1.26 cgd }
2475 1.27 cgd printf(" Type %d ", hdrtype);
2476 1.27 cgd if (typename != NULL)
2477 1.27 cgd printf("(%s) ", typename);
2478 1.27 cgd printf("header:\n");
2479 1.28 cgd pci_conf_print_regs(regs, 16, endoff);
2480 1.27 cgd printf("\n");
2481 1.45 thorpej if (typeprintfn) {
2482 1.45 thorpej #ifdef _KERNEL
2483 1.38 cgd (*typeprintfn)(pc, tag, regs, sizebars);
2484 1.45 thorpej #else
2485 1.45 thorpej (*typeprintfn)(regs);
2486 1.45 thorpej #endif
2487 1.45 thorpej } else
2488 1.26 cgd printf(" Don't know how to pretty-print type %d header.\n",
2489 1.26 cgd hdrtype);
2490 1.26 cgd printf("\n");
2491 1.51 drochner
2492 1.55 jdolecek /* capability list, if present */
2493 1.52 drochner if ((regs[o2i(PCI_COMMAND_STATUS_REG)] & PCI_STATUS_CAPLIST_SUPPORT)
2494 1.52 drochner && (capoff > 0)) {
2495 1.51 drochner #ifdef _KERNEL
2496 1.52 drochner pci_conf_print_caplist(pc, tag, regs, capoff);
2497 1.51 drochner #else
2498 1.52 drochner pci_conf_print_caplist(regs, capoff);
2499 1.51 drochner #endif
2500 1.51 drochner printf("\n");
2501 1.51 drochner }
2502 1.26 cgd
2503 1.26 cgd /* device-dependent header */
2504 1.26 cgd printf(" Device-dependent header:\n");
2505 1.28 cgd pci_conf_print_regs(regs, endoff, 256);
2506 1.26 cgd printf("\n");
2507 1.49 nathanw #ifdef _KERNEL
2508 1.26 cgd if (printfn)
2509 1.26 cgd (*printfn)(pc, tag, regs);
2510 1.26 cgd else
2511 1.26 cgd printf(" Don't know how to pretty-print device-dependent header.\n");
2512 1.26 cgd printf("\n");
2513 1.45 thorpej #endif /* _KERNEL */
2514 1.1 mycroft }
2515