pci.c revision 1.148 1 1.148 pooka /* $NetBSD: pci.c,v 1.148 2015/08/24 23:55:04 pooka Exp $ */
2 1.3 cgd
3 1.1 mycroft /*
4 1.37 cgd * Copyright (c) 1995, 1996, 1997, 1998
5 1.27 cgd * Christopher G. Demetriou. All rights reserved.
6 1.39 mycroft * Copyright (c) 1994 Charles M. Hannum. All rights reserved.
7 1.1 mycroft *
8 1.1 mycroft * Redistribution and use in source and binary forms, with or without
9 1.1 mycroft * modification, are permitted provided that the following conditions
10 1.1 mycroft * are met:
11 1.1 mycroft * 1. Redistributions of source code must retain the above copyright
12 1.1 mycroft * notice, this list of conditions and the following disclaimer.
13 1.1 mycroft * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 mycroft * notice, this list of conditions and the following disclaimer in the
15 1.1 mycroft * documentation and/or other materials provided with the distribution.
16 1.1 mycroft * 3. All advertising materials mentioning features or use of this software
17 1.1 mycroft * must display the following acknowledgement:
18 1.39 mycroft * This product includes software developed by Charles M. Hannum.
19 1.1 mycroft * 4. The name of the author may not be used to endorse or promote products
20 1.1 mycroft * derived from this software without specific prior written permission.
21 1.1 mycroft *
22 1.1 mycroft * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
23 1.1 mycroft * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
24 1.1 mycroft * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
25 1.1 mycroft * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
26 1.1 mycroft * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
27 1.1 mycroft * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28 1.1 mycroft * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29 1.1 mycroft * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30 1.1 mycroft * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
31 1.1 mycroft * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32 1.1 mycroft */
33 1.1 mycroft
34 1.1 mycroft /*
35 1.10 cgd * PCI bus autoconfiguration.
36 1.1 mycroft */
37 1.58 lukem
38 1.58 lukem #include <sys/cdefs.h>
39 1.148 pooka __KERNEL_RCSID(0, "$NetBSD: pci.c,v 1.148 2015/08/24 23:55:04 pooka Exp $");
40 1.1 mycroft
41 1.148 pooka #ifdef _KERNEL_OPT
42 1.45 cgd #include "opt_pci.h"
43 1.148 pooka #endif
44 1.45 cgd
45 1.1 mycroft #include <sys/param.h>
46 1.107 jmcneill #include <sys/malloc.h>
47 1.10 cgd #include <sys/systm.h>
48 1.1 mycroft #include <sys/device.h>
49 1.142 jmcneill #include <sys/module.h>
50 1.1 mycroft
51 1.10 cgd #include <dev/pci/pcireg.h>
52 1.7 cgd #include <dev/pci/pcivar.h>
53 1.33 cgd #include <dev/pci/pcidevs.h>
54 1.76 christos
55 1.107 jmcneill #include <net/if.h>
56 1.107 jmcneill
57 1.76 christos #include "locators.h"
58 1.10 cgd
59 1.107 jmcneill static bool pci_child_register(device_t);
60 1.107 jmcneill
61 1.45 cgd #ifdef PCI_CONFIG_DUMP
62 1.45 cgd int pci_config_dump = 1;
63 1.45 cgd #else
64 1.45 cgd int pci_config_dump = 0;
65 1.45 cgd #endif
66 1.45 cgd
67 1.91 perry int pciprint(void *, const char *);
68 1.10 cgd
69 1.86 drochner #ifdef PCI_MACHDEP_ENUMERATE_BUS
70 1.86 drochner #define pci_enumerate_bus PCI_MACHDEP_ENUMERATE_BUS
71 1.86 drochner #else
72 1.87 drochner int pci_enumerate_bus(struct pci_softc *, const int *,
73 1.136 dyoung int (*)(const struct pci_attach_args *), struct pci_attach_args *);
74 1.86 drochner #endif
75 1.86 drochner
76 1.25 cgd /*
77 1.38 thorpej * Important note about PCI-ISA bridges:
78 1.38 thorpej *
79 1.38 thorpej * Callbacks are used to configure these devices so that ISA/EISA bridges
80 1.38 thorpej * can attach their child busses after PCI configuration is done.
81 1.25 cgd *
82 1.25 cgd * This works because:
83 1.25 cgd * (1) there can be at most one ISA/EISA bridge per PCI bus, and
84 1.25 cgd * (2) any ISA/EISA bridges must be attached to primary PCI
85 1.25 cgd * busses (i.e. bus zero).
86 1.25 cgd *
87 1.25 cgd * That boils down to: there can only be one of these outstanding
88 1.25 cgd * at a time, it is cleared when configuring PCI bus 0 before any
89 1.25 cgd * subdevices have been found, and it is run after all subdevices
90 1.25 cgd * of PCI bus 0 have been found.
91 1.25 cgd *
92 1.25 cgd * This is needed because there are some (legacy) PCI devices which
93 1.25 cgd * can show up as ISA/EISA devices as well (the prime example of which
94 1.25 cgd * are VGA controllers). If you attach ISA from a PCI-ISA/EISA bridge,
95 1.25 cgd * and the bridge is seen before the video board is, the board can show
96 1.25 cgd * up as an ISA device, and that can (bogusly) complicate the PCI device's
97 1.25 cgd * attach code, or make the PCI device not be properly attached at all.
98 1.38 thorpej *
99 1.38 thorpej * We use the generic config_defer() facility to achieve this.
100 1.25 cgd */
101 1.25 cgd
102 1.116 dyoung int
103 1.114 dyoung pcirescan(device_t self, const char *ifattr, const int *locators)
104 1.93 thorpej {
105 1.114 dyoung struct pci_softc *sc = device_private(self);
106 1.93 thorpej
107 1.93 thorpej KASSERT(ifattr && !strcmp(ifattr, "pci"));
108 1.93 thorpej KASSERT(locators);
109 1.93 thorpej
110 1.114 dyoung pci_enumerate_bus(sc, locators, NULL, NULL);
111 1.128 pgoyette
112 1.114 dyoung return 0;
113 1.93 thorpej }
114 1.93 thorpej
115 1.116 dyoung int
116 1.115 cube pcimatch(device_t parent, cfdata_t cf, void *aux)
117 1.10 cgd {
118 1.10 cgd struct pcibus_attach_args *pba = aux;
119 1.10 cgd
120 1.10 cgd /* Check the locators */
121 1.89 drochner if (cf->cf_loc[PCIBUSCF_BUS] != PCIBUSCF_BUS_DEFAULT &&
122 1.89 drochner cf->cf_loc[PCIBUSCF_BUS] != pba->pba_bus)
123 1.123 cegger return 0;
124 1.10 cgd
125 1.10 cgd /* sanity */
126 1.10 cgd if (pba->pba_bus < 0 || pba->pba_bus > 255)
127 1.123 cegger return 0;
128 1.10 cgd
129 1.10 cgd /*
130 1.10 cgd * XXX check other (hardware?) indicators
131 1.10 cgd */
132 1.10 cgd
133 1.123 cegger return 1;
134 1.10 cgd }
135 1.1 mycroft
136 1.116 dyoung void
137 1.114 dyoung pciattach(device_t parent, device_t self, void *aux)
138 1.34 drochner {
139 1.34 drochner struct pcibus_attach_args *pba = aux;
140 1.114 dyoung struct pci_softc *sc = device_private(self);
141 1.43 thorpej int io_enabled, mem_enabled, mrl_enabled, mrm_enabled, mwi_enabled;
142 1.43 thorpej const char *sep = "";
143 1.96 drochner static const int wildcard[PCICF_NLOCS] = {
144 1.96 drochner PCICF_DEV_DEFAULT, PCICF_FUNCTION_DEFAULT
145 1.96 drochner };
146 1.34 drochner
147 1.115 cube sc->sc_dev = self;
148 1.115 cube
149 1.34 drochner pci_attach_hook(parent, self, pba);
150 1.78 thorpej
151 1.78 thorpej aprint_naive("\n");
152 1.78 thorpej aprint_normal("\n");
153 1.34 drochner
154 1.140 dyoung io_enabled = (pba->pba_flags & PCI_FLAGS_IO_OKAY);
155 1.140 dyoung mem_enabled = (pba->pba_flags & PCI_FLAGS_MEM_OKAY);
156 1.43 thorpej mrl_enabled = (pba->pba_flags & PCI_FLAGS_MRL_OKAY);
157 1.43 thorpej mrm_enabled = (pba->pba_flags & PCI_FLAGS_MRM_OKAY);
158 1.43 thorpej mwi_enabled = (pba->pba_flags & PCI_FLAGS_MWI_OKAY);
159 1.34 drochner
160 1.34 drochner if (io_enabled == 0 && mem_enabled == 0) {
161 1.114 dyoung aprint_error_dev(self, "no spaces enabled!\n");
162 1.107 jmcneill goto fail;
163 1.34 drochner }
164 1.34 drochner
165 1.78 thorpej #define PRINT(str) \
166 1.78 thorpej do { \
167 1.106 ad aprint_verbose("%s%s", sep, str); \
168 1.78 thorpej sep = ", "; \
169 1.78 thorpej } while (/*CONSTCOND*/0)
170 1.43 thorpej
171 1.115 cube aprint_verbose_dev(self, "");
172 1.43 thorpej
173 1.34 drochner if (io_enabled)
174 1.43 thorpej PRINT("i/o space");
175 1.43 thorpej if (mem_enabled)
176 1.43 thorpej PRINT("memory space");
177 1.106 ad aprint_verbose(" enabled");
178 1.43 thorpej
179 1.43 thorpej if (mrl_enabled || mrm_enabled || mwi_enabled) {
180 1.43 thorpej if (mrl_enabled)
181 1.43 thorpej PRINT("rd/line");
182 1.43 thorpej if (mrm_enabled)
183 1.43 thorpej PRINT("rd/mult");
184 1.43 thorpej if (mwi_enabled)
185 1.43 thorpej PRINT("wr/inv");
186 1.106 ad aprint_verbose(" ok");
187 1.34 drochner }
188 1.43 thorpej
189 1.106 ad aprint_verbose("\n");
190 1.43 thorpej
191 1.43 thorpej #undef PRINT
192 1.34 drochner
193 1.34 drochner sc->sc_iot = pba->pba_iot;
194 1.34 drochner sc->sc_memt = pba->pba_memt;
195 1.34 drochner sc->sc_dmat = pba->pba_dmat;
196 1.80 fvdl sc->sc_dmat64 = pba->pba_dmat64;
197 1.34 drochner sc->sc_pc = pba->pba_pc;
198 1.34 drochner sc->sc_bus = pba->pba_bus;
199 1.62 thorpej sc->sc_bridgetag = pba->pba_bridgetag;
200 1.34 drochner sc->sc_maxndevs = pci_bus_maxdevs(pba->pba_pc, pba->pba_bus);
201 1.34 drochner sc->sc_intrswiz = pba->pba_intrswiz;
202 1.34 drochner sc->sc_intrtag = pba->pba_intrtag;
203 1.34 drochner sc->sc_flags = pba->pba_flags;
204 1.100 jmcneill
205 1.115 cube device_pmf_driver_set_child_register(sc->sc_dev, pci_child_register);
206 1.100 jmcneill
207 1.115 cube pcirescan(sc->sc_dev, "pci", wildcard);
208 1.107 jmcneill
209 1.107 jmcneill fail:
210 1.107 jmcneill if (!pmf_device_register(self, NULL, NULL))
211 1.107 jmcneill aprint_error_dev(self, "couldn't establish power handler\n");
212 1.107 jmcneill }
213 1.107 jmcneill
214 1.116 dyoung int
215 1.114 dyoung pcidetach(device_t self, int flags)
216 1.107 jmcneill {
217 1.108 dyoung int rc;
218 1.108 dyoung
219 1.108 dyoung if ((rc = config_detach_children(self, flags)) != 0)
220 1.108 dyoung return rc;
221 1.107 jmcneill pmf_device_deregister(self);
222 1.107 jmcneill return 0;
223 1.87 drochner }
224 1.87 drochner
225 1.87 drochner int
226 1.93 thorpej pciprint(void *aux, const char *pnp)
227 1.1 mycroft {
228 1.46 augustss struct pci_attach_args *pa = aux;
229 1.10 cgd char devinfo[256];
230 1.37 cgd const struct pci_quirkdata *qd;
231 1.1 mycroft
232 1.10 cgd if (pnp) {
233 1.83 itojun pci_devinfo(pa->pa_id, pa->pa_class, 1, devinfo, sizeof(devinfo));
234 1.75 thorpej aprint_normal("%s at %s", devinfo, pnp);
235 1.10 cgd }
236 1.75 thorpej aprint_normal(" dev %d function %d", pa->pa_device, pa->pa_function);
237 1.45 cgd if (pci_config_dump) {
238 1.45 cgd printf(": ");
239 1.45 cgd pci_conf_print(pa->pa_pc, pa->pa_tag, NULL);
240 1.45 cgd if (!pnp)
241 1.83 itojun pci_devinfo(pa->pa_id, pa->pa_class, 1, devinfo, sizeof(devinfo));
242 1.45 cgd printf("%s at %s", devinfo, pnp ? pnp : "?");
243 1.45 cgd printf(" dev %d function %d (", pa->pa_device, pa->pa_function);
244 1.37 cgd #ifdef __i386__
245 1.45 cgd printf("tag %#lx, intrtag %#lx, intrswiz %#lx, intrpin %#lx",
246 1.45 cgd *(long *)&pa->pa_tag, *(long *)&pa->pa_intrtag,
247 1.45 cgd (long)pa->pa_intrswiz, (long)pa->pa_intrpin);
248 1.37 cgd #else
249 1.54 mrg printf("intrswiz %#lx, intrpin %#lx",
250 1.54 mrg (long)pa->pa_intrswiz, (long)pa->pa_intrpin);
251 1.36 cgd #endif
252 1.45 cgd printf(", i/o %s, mem %s,",
253 1.140 dyoung pa->pa_flags & PCI_FLAGS_IO_OKAY ? "on" : "off",
254 1.140 dyoung pa->pa_flags & PCI_FLAGS_MEM_OKAY ? "on" : "off");
255 1.45 cgd qd = pci_lookup_quirkdata(PCI_VENDOR(pa->pa_id),
256 1.45 cgd PCI_PRODUCT(pa->pa_id));
257 1.45 cgd if (qd == NULL) {
258 1.45 cgd printf(" no quirks");
259 1.45 cgd } else {
260 1.121 christos snprintb(devinfo, sizeof (devinfo),
261 1.82 itojun "\002\001multifn\002singlefn\003skipfunc0"
262 1.82 itojun "\004skipfunc1\005skipfunc2\006skipfunc3"
263 1.82 itojun "\007skipfunc4\010skipfunc5\011skipfunc6"
264 1.121 christos "\012skipfunc7", qd->quirks);
265 1.45 cgd printf(" quirks %s", devinfo);
266 1.45 cgd }
267 1.45 cgd printf(")");
268 1.37 cgd }
269 1.123 cegger return UNCONF;
270 1.6 mycroft }
271 1.6 mycroft
272 1.6 mycroft int
273 1.59 thorpej pci_probe_device(struct pci_softc *sc, pcitag_t tag,
274 1.136 dyoung int (*match)(const struct pci_attach_args *),
275 1.136 dyoung struct pci_attach_args *pap)
276 1.59 thorpej {
277 1.59 thorpej pci_chipset_tag_t pc = sc->sc_pc;
278 1.59 thorpej struct pci_attach_args pa;
279 1.145 matt pcireg_t id, /* csr, */ pciclass, intr, bhlcr, bar, endbar;
280 1.146 knakahar #ifdef __HAVE_PCI_MSI_MSIX
281 1.146 knakahar pcireg_t cap;
282 1.146 knakahar int off;
283 1.146 knakahar #endif
284 1.132 jmcneill int ret, pin, bus, device, function, i, width;
285 1.94 drochner int locs[PCICF_NLOCS];
286 1.59 thorpej
287 1.59 thorpej pci_decompose_tag(pc, tag, &bus, &device, &function);
288 1.59 thorpej
289 1.87 drochner /* a driver already attached? */
290 1.117 dyoung if (sc->PCI_SC_DEVICESC(device, function).c_dev != NULL && !match)
291 1.123 cegger return 0;
292 1.87 drochner
293 1.81 itojun bhlcr = pci_conf_read(pc, tag, PCI_BHLC_REG);
294 1.81 itojun if (PCI_HDRTYPE_TYPE(bhlcr) > 2)
295 1.123 cegger return 0;
296 1.81 itojun
297 1.59 thorpej id = pci_conf_read(pc, tag, PCI_ID_REG);
298 1.144 martin /* csr = pci_conf_read(pc, tag, PCI_COMMAND_STATUS_REG); */
299 1.145 matt pciclass = pci_conf_read(pc, tag, PCI_CLASS_REG);
300 1.59 thorpej
301 1.59 thorpej /* Invalid vendor ID value? */
302 1.59 thorpej if (PCI_VENDOR(id) == PCI_VENDOR_INVALID)
303 1.123 cegger return 0;
304 1.59 thorpej /* XXX Not invalid, but we've done this ~forever. */
305 1.59 thorpej if (PCI_VENDOR(id) == 0)
306 1.123 cegger return 0;
307 1.59 thorpej
308 1.132 jmcneill /* Collect memory range info */
309 1.132 jmcneill memset(sc->PCI_SC_DEVICESC(device, function).c_range, 0,
310 1.132 jmcneill sizeof(sc->PCI_SC_DEVICESC(device, function).c_range));
311 1.132 jmcneill i = 0;
312 1.135 matt switch (PCI_HDRTYPE_TYPE(bhlcr)) {
313 1.138 dyoung case PCI_HDRTYPE_PPB:
314 1.138 dyoung endbar = PCI_MAPREG_PPB_END;
315 1.138 dyoung break;
316 1.138 dyoung case PCI_HDRTYPE_PCB:
317 1.138 dyoung endbar = PCI_MAPREG_PCB_END;
318 1.138 dyoung break;
319 1.138 dyoung default:
320 1.138 dyoung endbar = PCI_MAPREG_END;
321 1.138 dyoung break;
322 1.135 matt }
323 1.135 matt for (bar = PCI_MAPREG_START; bar < endbar; bar += width) {
324 1.132 jmcneill struct pci_range *r;
325 1.134 jmcneill pcireg_t type;
326 1.132 jmcneill
327 1.132 jmcneill width = 4;
328 1.134 jmcneill if (pci_mapreg_probe(pc, tag, bar, &type) == 0)
329 1.134 jmcneill continue;
330 1.134 jmcneill
331 1.132 jmcneill if (PCI_MAPREG_TYPE(type) == PCI_MAPREG_TYPE_MEM) {
332 1.132 jmcneill if (PCI_MAPREG_MEM_TYPE(type) ==
333 1.132 jmcneill PCI_MAPREG_MEM_TYPE_64BIT)
334 1.132 jmcneill width = 8;
335 1.132 jmcneill
336 1.132 jmcneill r = &sc->PCI_SC_DEVICESC(device, function).c_range[i++];
337 1.132 jmcneill if (pci_mapreg_info(pc, tag, bar, type,
338 1.132 jmcneill &r->r_offset, &r->r_size, &r->r_flags) != 0)
339 1.132 jmcneill break;
340 1.133 macallan if ((PCI_VENDOR(id) == PCI_VENDOR_ATI) && (bar == 0x10)
341 1.137 macallan && (r->r_size == 0x1000000)) {
342 1.133 macallan struct pci_range *nr;
343 1.133 macallan /*
344 1.133 macallan * this has to be a mach64
345 1.133 macallan * split things up so each half-aperture can
346 1.133 macallan * be mapped PREFETCHABLE except the last page
347 1.133 macallan * which may contain registers
348 1.133 macallan */
349 1.133 macallan r->r_size = 0x7ff000;
350 1.133 macallan r->r_flags = BUS_SPACE_MAP_LINEAR |
351 1.133 macallan BUS_SPACE_MAP_PREFETCHABLE;
352 1.133 macallan nr = &sc->PCI_SC_DEVICESC(device,
353 1.133 macallan function).c_range[i++];
354 1.133 macallan nr->r_offset = r->r_offset + 0x800000;
355 1.133 macallan nr->r_size = 0x7ff000;
356 1.133 macallan nr->r_flags = BUS_SPACE_MAP_LINEAR |
357 1.133 macallan BUS_SPACE_MAP_PREFETCHABLE;
358 1.133 macallan }
359 1.133 macallan
360 1.132 jmcneill }
361 1.132 jmcneill }
362 1.132 jmcneill
363 1.59 thorpej pa.pa_iot = sc->sc_iot;
364 1.59 thorpej pa.pa_memt = sc->sc_memt;
365 1.59 thorpej pa.pa_dmat = sc->sc_dmat;
366 1.80 fvdl pa.pa_dmat64 = sc->sc_dmat64;
367 1.59 thorpej pa.pa_pc = pc;
368 1.63 thorpej pa.pa_bus = bus;
369 1.59 thorpej pa.pa_device = device;
370 1.59 thorpej pa.pa_function = function;
371 1.59 thorpej pa.pa_tag = tag;
372 1.59 thorpej pa.pa_id = id;
373 1.145 matt pa.pa_class = pciclass;
374 1.59 thorpej
375 1.59 thorpej /*
376 1.59 thorpej * Set up memory, I/O enable, and PCI command flags
377 1.59 thorpej * as appropriate.
378 1.59 thorpej */
379 1.59 thorpej pa.pa_flags = sc->sc_flags;
380 1.59 thorpej
381 1.59 thorpej /*
382 1.59 thorpej * If the cache line size is not configured, then
383 1.59 thorpej * clear the MRL/MRM/MWI command-ok flags.
384 1.59 thorpej */
385 1.138 dyoung if (PCI_CACHELINE(bhlcr) == 0) {
386 1.59 thorpej pa.pa_flags &= ~(PCI_FLAGS_MRL_OKAY|
387 1.59 thorpej PCI_FLAGS_MRM_OKAY|PCI_FLAGS_MWI_OKAY);
388 1.138 dyoung }
389 1.59 thorpej
390 1.64 sommerfe if (sc->sc_bridgetag == NULL) {
391 1.59 thorpej pa.pa_intrswiz = 0;
392 1.59 thorpej pa.pa_intrtag = tag;
393 1.59 thorpej } else {
394 1.59 thorpej pa.pa_intrswiz = sc->sc_intrswiz + device;
395 1.59 thorpej pa.pa_intrtag = sc->sc_intrtag;
396 1.59 thorpej }
397 1.81 itojun
398 1.81 itojun intr = pci_conf_read(pc, tag, PCI_INTERRUPT_REG);
399 1.81 itojun
400 1.59 thorpej pin = PCI_INTERRUPT_PIN(intr);
401 1.65 sommerfe pa.pa_rawintrpin = pin;
402 1.59 thorpej if (pin == PCI_INTERRUPT_PIN_NONE) {
403 1.59 thorpej /* no interrupt */
404 1.59 thorpej pa.pa_intrpin = 0;
405 1.59 thorpej } else {
406 1.59 thorpej /*
407 1.59 thorpej * swizzle it based on the number of busses we're
408 1.59 thorpej * behind and our device number.
409 1.59 thorpej */
410 1.59 thorpej pa.pa_intrpin = /* XXX */
411 1.59 thorpej ((pin + pa.pa_intrswiz - 1) % 4) + 1;
412 1.59 thorpej }
413 1.59 thorpej pa.pa_intrline = PCI_INTERRUPT_LINE(intr);
414 1.59 thorpej
415 1.146 knakahar #ifdef __HAVE_PCI_MSI_MSIX
416 1.146 knakahar if (pci_get_ht_capability(pc, tag, PCI_HT_CAP_MSIMAP, &off, &cap)) {
417 1.146 knakahar /*
418 1.146 knakahar * XXX Should we enable MSI mapping ourselves on
419 1.146 knakahar * systems that have it disabled?
420 1.146 knakahar */
421 1.146 knakahar if (cap & PCI_HT_MSI_ENABLED) {
422 1.146 knakahar uint64_t addr;
423 1.146 knakahar if ((cap & PCI_HT_MSI_FIXED) == 0) {
424 1.146 knakahar addr = pci_conf_read(pc, tag,
425 1.146 knakahar off + PCI_HT_MSI_ADDR_LO);
426 1.146 knakahar addr |= (uint64_t)pci_conf_read(pc, tag,
427 1.146 knakahar off + PCI_HT_MSI_ADDR_HI) << 32;
428 1.146 knakahar } else
429 1.146 knakahar addr = PCI_HT_MSI_FIXED_ADDR;
430 1.146 knakahar
431 1.146 knakahar /*
432 1.146 knakahar * XXX This will fail to enable MSI on systems
433 1.146 knakahar * that don't use the canonical address.
434 1.146 knakahar */
435 1.146 knakahar if (addr == PCI_HT_MSI_FIXED_ADDR) {
436 1.146 knakahar pa.pa_flags |= PCI_FLAGS_MSI_OKAY;
437 1.146 knakahar pa.pa_flags |= PCI_FLAGS_MSIX_OKAY;
438 1.146 knakahar }
439 1.146 knakahar }
440 1.146 knakahar }
441 1.146 knakahar #endif
442 1.146 knakahar
443 1.59 thorpej if (match != NULL) {
444 1.59 thorpej ret = (*match)(&pa);
445 1.59 thorpej if (ret != 0 && pap != NULL)
446 1.59 thorpej *pap = pa;
447 1.59 thorpej } else {
448 1.117 dyoung struct pci_child *c;
449 1.94 drochner locs[PCICF_DEV] = device;
450 1.94 drochner locs[PCICF_FUNCTION] = function;
451 1.87 drochner
452 1.117 dyoung c = &sc->PCI_SC_DEVICESC(device, function);
453 1.117 dyoung pci_conf_capture(pc, tag, &c->c_conf);
454 1.117 dyoung if (pci_get_powerstate(pc, tag, &c->c_powerstate) == 0)
455 1.117 dyoung c->c_psok = true;
456 1.117 dyoung else
457 1.117 dyoung c->c_psok = false;
458 1.124 dyoung
459 1.124 dyoung c->c_dev = config_found_sm_loc(sc->sc_dev, "pci", locs, &pa,
460 1.124 dyoung pciprint, config_stdsubmatch);
461 1.124 dyoung
462 1.124 dyoung ret = (c->c_dev != NULL);
463 1.59 thorpej }
464 1.59 thorpej
465 1.123 cegger return ret;
466 1.59 thorpej }
467 1.59 thorpej
468 1.116 dyoung void
469 1.114 dyoung pcidevdetached(device_t self, device_t child)
470 1.87 drochner {
471 1.117 dyoung struct pci_softc *sc = device_private(self);
472 1.87 drochner int d, f;
473 1.117 dyoung pcitag_t tag;
474 1.117 dyoung struct pci_child *c;
475 1.87 drochner
476 1.114 dyoung d = device_locator(child, PCICF_DEV);
477 1.114 dyoung f = device_locator(child, PCICF_FUNCTION);
478 1.87 drochner
479 1.117 dyoung c = &sc->PCI_SC_DEVICESC(d, f);
480 1.117 dyoung
481 1.117 dyoung KASSERT(c->c_dev == child);
482 1.87 drochner
483 1.117 dyoung tag = pci_make_tag(sc->sc_pc, sc->sc_bus, d, f);
484 1.117 dyoung if (c->c_psok)
485 1.117 dyoung pci_set_powerstate(sc->sc_pc, tag, c->c_powerstate);
486 1.117 dyoung pci_conf_restore(sc->sc_pc, tag, &c->c_conf);
487 1.117 dyoung c->c_dev = NULL;
488 1.87 drochner }
489 1.87 drochner
490 1.122 dyoung CFATTACH_DECL3_NEW(pci, sizeof(struct pci_softc),
491 1.122 dyoung pcimatch, pciattach, pcidetach, NULL, pcirescan, pcidevdetached,
492 1.122 dyoung DVF_DETACH_SHUTDOWN);
493 1.107 jmcneill
494 1.59 thorpej int
495 1.93 thorpej pci_get_capability(pci_chipset_tag_t pc, pcitag_t tag, int capid,
496 1.93 thorpej int *offset, pcireg_t *value)
497 1.40 drochner {
498 1.40 drochner pcireg_t reg;
499 1.40 drochner unsigned int ofs;
500 1.40 drochner
501 1.40 drochner reg = pci_conf_read(pc, tag, PCI_COMMAND_STATUS_REG);
502 1.40 drochner if (!(reg & PCI_STATUS_CAPLIST_SUPPORT))
503 1.123 cegger return 0;
504 1.40 drochner
505 1.48 kleink /* Determine the Capability List Pointer register to start with. */
506 1.47 kleink reg = pci_conf_read(pc, tag, PCI_BHLC_REG);
507 1.47 kleink switch (PCI_HDRTYPE_TYPE(reg)) {
508 1.47 kleink case 0: /* standard device header */
509 1.104 joerg case 1: /* PCI-PCI bridge header */
510 1.47 kleink ofs = PCI_CAPLISTPTR_REG;
511 1.47 kleink break;
512 1.47 kleink case 2: /* PCI-CardBus Bridge header */
513 1.47 kleink ofs = PCI_CARDBUS_CAPLISTPTR_REG;
514 1.47 kleink break;
515 1.47 kleink default:
516 1.123 cegger return 0;
517 1.47 kleink }
518 1.47 kleink
519 1.47 kleink ofs = PCI_CAPLIST_PTR(pci_conf_read(pc, tag, ofs));
520 1.40 drochner while (ofs != 0) {
521 1.119 joerg if ((ofs & 3) || (ofs < 0x40)) {
522 1.119 joerg int bus, device, function;
523 1.119 joerg
524 1.119 joerg pci_decompose_tag(pc, tag, &bus, &device, &function);
525 1.119 joerg
526 1.119 joerg printf("Skipping broken PCI header on %d:%d:%d\n",
527 1.119 joerg bus, device, function);
528 1.119 joerg break;
529 1.119 joerg }
530 1.40 drochner reg = pci_conf_read(pc, tag, ofs);
531 1.40 drochner if (PCI_CAPLIST_CAP(reg) == capid) {
532 1.40 drochner if (offset)
533 1.40 drochner *offset = ofs;
534 1.40 drochner if (value)
535 1.40 drochner *value = reg;
536 1.123 cegger return 1;
537 1.40 drochner }
538 1.40 drochner ofs = PCI_CAPLIST_NEXT(reg);
539 1.40 drochner }
540 1.40 drochner
541 1.123 cegger return 0;
542 1.55 fvdl }
543 1.55 fvdl
544 1.55 fvdl int
545 1.146 knakahar pci_get_ht_capability(pci_chipset_tag_t pc, pcitag_t tag, int capid,
546 1.146 knakahar int *offset, pcireg_t *value)
547 1.146 knakahar {
548 1.146 knakahar pcireg_t reg;
549 1.146 knakahar unsigned int ofs;
550 1.146 knakahar
551 1.146 knakahar if (pci_get_capability(pc, tag, PCI_CAP_LDT, &ofs, NULL) == 0)
552 1.146 knakahar return 0;
553 1.146 knakahar
554 1.146 knakahar while (ofs != 0) {
555 1.146 knakahar #ifdef DIAGNOSTIC
556 1.146 knakahar if ((ofs & 3) || (ofs < 0x40))
557 1.146 knakahar panic("pci_get_ht_capability");
558 1.146 knakahar #endif
559 1.146 knakahar reg = pci_conf_read(pc, tag, ofs);
560 1.146 knakahar if (PCI_HT_CAP(reg) == capid) {
561 1.146 knakahar if (offset)
562 1.146 knakahar *offset = ofs;
563 1.146 knakahar if (value)
564 1.146 knakahar *value = reg;
565 1.146 knakahar return 1;
566 1.146 knakahar }
567 1.146 knakahar ofs = PCI_CAPLIST_NEXT(reg);
568 1.146 knakahar }
569 1.146 knakahar
570 1.146 knakahar return 0;
571 1.146 knakahar }
572 1.146 knakahar
573 1.147 msaitoh /*
574 1.147 msaitoh * return number of the devices's MSI vectors
575 1.147 msaitoh * return 0 if the device does not support MSI
576 1.147 msaitoh */
577 1.147 msaitoh int
578 1.147 msaitoh pci_msi_count(pci_chipset_tag_t pc, pcitag_t tag)
579 1.147 msaitoh {
580 1.147 msaitoh pcireg_t reg;
581 1.147 msaitoh uint32_t mmc;
582 1.147 msaitoh int count, offset;
583 1.147 msaitoh
584 1.147 msaitoh if (pci_get_capability(pc, tag, PCI_CAP_MSI, &offset, NULL) == 0)
585 1.147 msaitoh return 0;
586 1.147 msaitoh
587 1.147 msaitoh reg = pci_conf_read(pc, tag, offset + PCI_MSI_CTL);
588 1.147 msaitoh mmc = PCI_MSI_CTL_MMC(reg);
589 1.147 msaitoh count = 1 << mmc;
590 1.147 msaitoh if (count > PCI_MSI_MAX_VECTORS) {
591 1.147 msaitoh aprint_error("detect an illegal device! The device use reserved MMC values.\n");
592 1.147 msaitoh return 0;
593 1.147 msaitoh }
594 1.147 msaitoh
595 1.147 msaitoh return count;
596 1.147 msaitoh }
597 1.147 msaitoh
598 1.147 msaitoh /*
599 1.147 msaitoh * return number of the devices's MSI-X vectors
600 1.147 msaitoh * return 0 if the device does not support MSI-X
601 1.147 msaitoh */
602 1.147 msaitoh int
603 1.147 msaitoh pci_msix_count(pci_chipset_tag_t pc, pcitag_t tag)
604 1.147 msaitoh {
605 1.147 msaitoh pcireg_t reg;
606 1.147 msaitoh int offset;
607 1.147 msaitoh
608 1.147 msaitoh if (pci_get_capability(pc, tag, PCI_CAP_MSIX, &offset, NULL) == 0)
609 1.147 msaitoh return 0;
610 1.147 msaitoh
611 1.147 msaitoh reg = pci_conf_read(pc, tag, offset + PCI_MSIX_CTL);
612 1.147 msaitoh
613 1.147 msaitoh return PCI_MSIX_CTL_TBLSIZE(reg);
614 1.147 msaitoh }
615 1.147 msaitoh
616 1.146 knakahar int
617 1.55 fvdl pci_find_device(struct pci_attach_args *pa,
618 1.136 dyoung int (*match)(const struct pci_attach_args *))
619 1.55 fvdl {
620 1.59 thorpej extern struct cfdriver pci_cd;
621 1.114 dyoung device_t pcidev;
622 1.55 fvdl int i;
623 1.87 drochner static const int wildcard[2] = {
624 1.87 drochner PCICF_DEV_DEFAULT,
625 1.87 drochner PCICF_FUNCTION_DEFAULT
626 1.87 drochner };
627 1.55 fvdl
628 1.55 fvdl for (i = 0; i < pci_cd.cd_ndevs; i++) {
629 1.118 cegger pcidev = device_lookup(&pci_cd, i);
630 1.59 thorpej if (pcidev != NULL &&
631 1.115 cube pci_enumerate_bus(device_private(pcidev), wildcard,
632 1.59 thorpej match, pa) != 0)
633 1.123 cegger return 1;
634 1.59 thorpej }
635 1.123 cegger return 0;
636 1.59 thorpej }
637 1.59 thorpej
638 1.86 drochner #ifndef PCI_MACHDEP_ENUMERATE_BUS
639 1.59 thorpej /*
640 1.59 thorpej * Generic PCI bus enumeration routine. Used unless machine-dependent
641 1.59 thorpej * code needs to provide something else.
642 1.59 thorpej */
643 1.59 thorpej int
644 1.87 drochner pci_enumerate_bus(struct pci_softc *sc, const int *locators,
645 1.136 dyoung int (*match)(const struct pci_attach_args *), struct pci_attach_args *pap)
646 1.59 thorpej {
647 1.59 thorpej pci_chipset_tag_t pc = sc->sc_pc;
648 1.59 thorpej int device, function, nfunctions, ret;
649 1.59 thorpej const struct pci_quirkdata *qd;
650 1.59 thorpej pcireg_t id, bhlcr;
651 1.59 thorpej pcitag_t tag;
652 1.141 dyoung uint8_t devs[32];
653 1.141 dyoung int i, n;
654 1.141 dyoung
655 1.141 dyoung n = pci_bus_devorder(sc->sc_pc, sc->sc_bus, devs, __arraycount(devs));
656 1.141 dyoung for (i = 0; i < n; i++) {
657 1.141 dyoung device = devs[i];
658 1.59 thorpej
659 1.87 drochner if ((locators[PCICF_DEV] != PCICF_DEV_DEFAULT) &&
660 1.87 drochner (locators[PCICF_DEV] != device))
661 1.87 drochner continue;
662 1.87 drochner
663 1.59 thorpej tag = pci_make_tag(pc, sc->sc_bus, device, 0);
664 1.81 itojun
665 1.81 itojun bhlcr = pci_conf_read(pc, tag, PCI_BHLC_REG);
666 1.81 itojun if (PCI_HDRTYPE_TYPE(bhlcr) > 2)
667 1.81 itojun continue;
668 1.81 itojun
669 1.59 thorpej id = pci_conf_read(pc, tag, PCI_ID_REG);
670 1.59 thorpej
671 1.59 thorpej /* Invalid vendor ID value? */
672 1.59 thorpej if (PCI_VENDOR(id) == PCI_VENDOR_INVALID)
673 1.59 thorpej continue;
674 1.59 thorpej /* XXX Not invalid, but we've done this ~forever. */
675 1.59 thorpej if (PCI_VENDOR(id) == 0)
676 1.59 thorpej continue;
677 1.59 thorpej
678 1.59 thorpej qd = pci_lookup_quirkdata(PCI_VENDOR(id), PCI_PRODUCT(id));
679 1.59 thorpej
680 1.81 itojun if (qd != NULL &&
681 1.81 itojun (qd->quirks & PCI_QUIRK_MULTIFUNCTION) != 0)
682 1.59 thorpej nfunctions = 8;
683 1.81 itojun else if (qd != NULL &&
684 1.81 itojun (qd->quirks & PCI_QUIRK_MONOFUNCTION) != 0)
685 1.81 itojun nfunctions = 1;
686 1.59 thorpej else
687 1.81 itojun nfunctions = PCI_HDRTYPE_MULTIFN(bhlcr) ? 8 : 1;
688 1.59 thorpej
689 1.143 matt #ifdef __PCI_DEV_FUNCORDER
690 1.143 matt char funcs[8];
691 1.143 matt int j;
692 1.143 matt for (j = 0; j < nfunctions; j++) {
693 1.143 matt funcs[j] = j;
694 1.143 matt }
695 1.143 matt if (j < __arraycount(funcs))
696 1.143 matt funcs[j] = -1;
697 1.143 matt if (nfunctions > 1) {
698 1.143 matt pci_dev_funcorder(sc->sc_pc, sc->sc_bus, device,
699 1.143 matt nfunctions, funcs);
700 1.143 matt }
701 1.143 matt for (j = 0;
702 1.143 matt j < 8 && (function = funcs[j]) < 8 && function >= 0;
703 1.143 matt j++) {
704 1.143 matt #else
705 1.59 thorpej for (function = 0; function < nfunctions; function++) {
706 1.143 matt #endif
707 1.87 drochner if ((locators[PCICF_FUNCTION] != PCICF_FUNCTION_DEFAULT)
708 1.87 drochner && (locators[PCICF_FUNCTION] != function))
709 1.87 drochner continue;
710 1.87 drochner
711 1.81 itojun if (qd != NULL &&
712 1.81 itojun (qd->quirks & PCI_QUIRK_SKIP_FUNC(function)) != 0)
713 1.81 itojun continue;
714 1.59 thorpej tag = pci_make_tag(pc, sc->sc_bus, device, function);
715 1.59 thorpej ret = pci_probe_device(sc, tag, match, pap);
716 1.59 thorpej if (match != NULL && ret != 0)
717 1.123 cegger return ret;
718 1.59 thorpej }
719 1.55 fvdl }
720 1.123 cegger return 0;
721 1.66 tshiozak }
722 1.86 drochner #endif /* PCI_MACHDEP_ENUMERATE_BUS */
723 1.66 tshiozak
724 1.77 thorpej
725 1.77 thorpej /*
726 1.77 thorpej * Vital Product Data (PCI 2.2)
727 1.77 thorpej */
728 1.77 thorpej
729 1.77 thorpej int
730 1.77 thorpej pci_vpd_read(pci_chipset_tag_t pc, pcitag_t tag, int offset, int count,
731 1.77 thorpej pcireg_t *data)
732 1.77 thorpej {
733 1.77 thorpej uint32_t reg;
734 1.77 thorpej int ofs, i, j;
735 1.77 thorpej
736 1.77 thorpej KASSERT(data != NULL);
737 1.77 thorpej KASSERT((offset + count) < 0x7fff);
738 1.77 thorpej
739 1.77 thorpej if (pci_get_capability(pc, tag, PCI_CAP_VPD, &ofs, ®) == 0)
740 1.123 cegger return 1;
741 1.77 thorpej
742 1.77 thorpej for (i = 0; i < count; offset += sizeof(*data), i++) {
743 1.77 thorpej reg &= 0x0000ffff;
744 1.77 thorpej reg &= ~PCI_VPD_OPFLAG;
745 1.77 thorpej reg |= PCI_VPD_ADDRESS(offset);
746 1.77 thorpej pci_conf_write(pc, tag, ofs, reg);
747 1.77 thorpej
748 1.77 thorpej /*
749 1.77 thorpej * PCI 2.2 does not specify how long we should poll
750 1.77 thorpej * for completion nor whether the operation can fail.
751 1.77 thorpej */
752 1.77 thorpej j = 0;
753 1.77 thorpej do {
754 1.77 thorpej if (j++ == 20)
755 1.123 cegger return 1;
756 1.77 thorpej delay(4);
757 1.77 thorpej reg = pci_conf_read(pc, tag, ofs);
758 1.77 thorpej } while ((reg & PCI_VPD_OPFLAG) == 0);
759 1.77 thorpej data[i] = pci_conf_read(pc, tag, PCI_VPD_DATAREG(ofs));
760 1.77 thorpej }
761 1.77 thorpej
762 1.123 cegger return 0;
763 1.77 thorpej }
764 1.77 thorpej
765 1.77 thorpej int
766 1.77 thorpej pci_vpd_write(pci_chipset_tag_t pc, pcitag_t tag, int offset, int count,
767 1.77 thorpej pcireg_t *data)
768 1.77 thorpej {
769 1.77 thorpej pcireg_t reg;
770 1.77 thorpej int ofs, i, j;
771 1.77 thorpej
772 1.77 thorpej KASSERT(data != NULL);
773 1.77 thorpej KASSERT((offset + count) < 0x7fff);
774 1.77 thorpej
775 1.77 thorpej if (pci_get_capability(pc, tag, PCI_CAP_VPD, &ofs, ®) == 0)
776 1.123 cegger return 1;
777 1.77 thorpej
778 1.77 thorpej for (i = 0; i < count; offset += sizeof(*data), i++) {
779 1.77 thorpej pci_conf_write(pc, tag, PCI_VPD_DATAREG(ofs), data[i]);
780 1.77 thorpej
781 1.77 thorpej reg &= 0x0000ffff;
782 1.79 thorpej reg |= PCI_VPD_OPFLAG;
783 1.77 thorpej reg |= PCI_VPD_ADDRESS(offset);
784 1.77 thorpej pci_conf_write(pc, tag, ofs, reg);
785 1.77 thorpej
786 1.77 thorpej /*
787 1.77 thorpej * PCI 2.2 does not specify how long we should poll
788 1.77 thorpej * for completion nor whether the operation can fail.
789 1.77 thorpej */
790 1.77 thorpej j = 0;
791 1.77 thorpej do {
792 1.77 thorpej if (j++ == 20)
793 1.123 cegger return 1;
794 1.77 thorpej delay(1);
795 1.77 thorpej reg = pci_conf_read(pc, tag, ofs);
796 1.79 thorpej } while (reg & PCI_VPD_OPFLAG);
797 1.77 thorpej }
798 1.77 thorpej
799 1.123 cegger return 0;
800 1.80 fvdl }
801 1.80 fvdl
802 1.80 fvdl int
803 1.136 dyoung pci_dma64_available(const struct pci_attach_args *pa)
804 1.92 perry {
805 1.80 fvdl #ifdef _PCI_HAVE_DMA64
806 1.120 bouyer if (BUS_DMA_TAG_VALID(pa->pa_dmat64))
807 1.80 fvdl return 1;
808 1.80 fvdl #endif
809 1.80 fvdl return 0;
810 1.1 mycroft }
811 1.90 jmcneill
812 1.90 jmcneill void
813 1.90 jmcneill pci_conf_capture(pci_chipset_tag_t pc, pcitag_t tag,
814 1.90 jmcneill struct pci_conf_state *pcs)
815 1.90 jmcneill {
816 1.90 jmcneill int off;
817 1.90 jmcneill
818 1.90 jmcneill for (off = 0; off < 16; off++)
819 1.90 jmcneill pcs->reg[off] = pci_conf_read(pc, tag, (off * 4));
820 1.90 jmcneill
821 1.90 jmcneill return;
822 1.90 jmcneill }
823 1.90 jmcneill
824 1.90 jmcneill void
825 1.90 jmcneill pci_conf_restore(pci_chipset_tag_t pc, pcitag_t tag,
826 1.90 jmcneill struct pci_conf_state *pcs)
827 1.90 jmcneill {
828 1.90 jmcneill int off;
829 1.107 jmcneill pcireg_t val;
830 1.90 jmcneill
831 1.107 jmcneill for (off = 15; off >= 0; off--) {
832 1.107 jmcneill val = pci_conf_read(pc, tag, (off * 4));
833 1.107 jmcneill if (val != pcs->reg[off])
834 1.107 jmcneill pci_conf_write(pc, tag, (off * 4), pcs->reg[off]);
835 1.107 jmcneill }
836 1.90 jmcneill
837 1.90 jmcneill return;
838 1.90 jmcneill }
839 1.93 thorpej
840 1.99 christos /*
841 1.99 christos * Power Management Capability (Rev 2.2)
842 1.99 christos */
843 1.107 jmcneill static int
844 1.107 jmcneill pci_get_powerstate_int(pci_chipset_tag_t pc, pcitag_t tag , pcireg_t *state,
845 1.107 jmcneill int offset)
846 1.99 christos {
847 1.107 jmcneill pcireg_t value, now;
848 1.99 christos
849 1.99 christos value = pci_conf_read(pc, tag, offset + PCI_PMCSR);
850 1.99 christos now = value & PCI_PMCSR_STATE_MASK;
851 1.99 christos switch (now) {
852 1.99 christos case PCI_PMCSR_STATE_D0:
853 1.99 christos case PCI_PMCSR_STATE_D1:
854 1.99 christos case PCI_PMCSR_STATE_D2:
855 1.99 christos case PCI_PMCSR_STATE_D3:
856 1.99 christos *state = now;
857 1.99 christos return 0;
858 1.99 christos default:
859 1.99 christos return EINVAL;
860 1.99 christos }
861 1.99 christos }
862 1.99 christos
863 1.99 christos int
864 1.107 jmcneill pci_get_powerstate(pci_chipset_tag_t pc, pcitag_t tag , pcireg_t *state)
865 1.99 christos {
866 1.99 christos int offset;
867 1.107 jmcneill pcireg_t value;
868 1.99 christos
869 1.99 christos if (!pci_get_capability(pc, tag, PCI_CAP_PWRMGMT, &offset, &value))
870 1.99 christos return EOPNOTSUPP;
871 1.99 christos
872 1.107 jmcneill return pci_get_powerstate_int(pc, tag, state, offset);
873 1.107 jmcneill }
874 1.107 jmcneill
875 1.107 jmcneill static int
876 1.107 jmcneill pci_set_powerstate_int(pci_chipset_tag_t pc, pcitag_t tag, pcireg_t state,
877 1.107 jmcneill int offset, pcireg_t cap_reg)
878 1.107 jmcneill {
879 1.107 jmcneill pcireg_t value, cap, now;
880 1.107 jmcneill
881 1.107 jmcneill cap = cap_reg >> PCI_PMCR_SHIFT;
882 1.99 christos value = pci_conf_read(pc, tag, offset + PCI_PMCSR);
883 1.99 christos now = value & PCI_PMCSR_STATE_MASK;
884 1.99 christos value &= ~PCI_PMCSR_STATE_MASK;
885 1.99 christos
886 1.99 christos if (now == state)
887 1.99 christos return 0;
888 1.99 christos switch (state) {
889 1.99 christos case PCI_PMCSR_STATE_D0:
890 1.99 christos break;
891 1.99 christos case PCI_PMCSR_STATE_D1:
892 1.107 jmcneill if (now == PCI_PMCSR_STATE_D2 || now == PCI_PMCSR_STATE_D3) {
893 1.107 jmcneill printf("invalid transition from %d to D1\n", (int)now);
894 1.99 christos return EINVAL;
895 1.107 jmcneill }
896 1.107 jmcneill if (!(cap & PCI_PMCR_D1SUPP)) {
897 1.107 jmcneill printf("D1 not supported\n");
898 1.99 christos return EOPNOTSUPP;
899 1.107 jmcneill }
900 1.99 christos break;
901 1.99 christos case PCI_PMCSR_STATE_D2:
902 1.107 jmcneill if (now == PCI_PMCSR_STATE_D3) {
903 1.107 jmcneill printf("invalid transition from %d to D2\n", (int)now);
904 1.99 christos return EINVAL;
905 1.107 jmcneill }
906 1.107 jmcneill if (!(cap & PCI_PMCR_D2SUPP)) {
907 1.107 jmcneill printf("D2 not supported\n");
908 1.99 christos return EOPNOTSUPP;
909 1.107 jmcneill }
910 1.99 christos break;
911 1.99 christos case PCI_PMCSR_STATE_D3:
912 1.99 christos break;
913 1.99 christos default:
914 1.99 christos return EINVAL;
915 1.99 christos }
916 1.112 dyoung value |= state;
917 1.99 christos pci_conf_write(pc, tag, offset + PCI_PMCSR, value);
918 1.111 drochner /* delay according to pcipm1.2, ch. 5.6.1 */
919 1.112 dyoung if (state == PCI_PMCSR_STATE_D3 || now == PCI_PMCSR_STATE_D3)
920 1.110 jmcneill DELAY(10000);
921 1.112 dyoung else if (state == PCI_PMCSR_STATE_D2 || now == PCI_PMCSR_STATE_D2)
922 1.110 jmcneill DELAY(200);
923 1.110 jmcneill
924 1.99 christos return 0;
925 1.99 christos }
926 1.99 christos
927 1.99 christos int
928 1.107 jmcneill pci_set_powerstate(pci_chipset_tag_t pc, pcitag_t tag, pcireg_t state)
929 1.107 jmcneill {
930 1.107 jmcneill int offset;
931 1.107 jmcneill pcireg_t value;
932 1.107 jmcneill
933 1.107 jmcneill if (!pci_get_capability(pc, tag, PCI_CAP_PWRMGMT, &offset, &value)) {
934 1.107 jmcneill printf("pci_set_powerstate not supported\n");
935 1.107 jmcneill return EOPNOTSUPP;
936 1.107 jmcneill }
937 1.107 jmcneill
938 1.107 jmcneill return pci_set_powerstate_int(pc, tag, state, offset, value);
939 1.107 jmcneill }
940 1.107 jmcneill
941 1.107 jmcneill int
942 1.114 dyoung pci_activate(pci_chipset_tag_t pc, pcitag_t tag, device_t dev,
943 1.114 dyoung int (*wakefun)(pci_chipset_tag_t, pcitag_t, device_t, pcireg_t))
944 1.99 christos {
945 1.99 christos pcireg_t pmode;
946 1.99 christos int error;
947 1.99 christos
948 1.99 christos if ((error = pci_get_powerstate(pc, tag, &pmode)))
949 1.99 christos return error;
950 1.99 christos
951 1.99 christos switch (pmode) {
952 1.99 christos case PCI_PMCSR_STATE_D0:
953 1.99 christos break;
954 1.99 christos case PCI_PMCSR_STATE_D3:
955 1.99 christos if (wakefun == NULL) {
956 1.99 christos /*
957 1.99 christos * The card has lost all configuration data in
958 1.99 christos * this state, so punt.
959 1.99 christos */
960 1.114 dyoung aprint_error_dev(dev,
961 1.114 dyoung "unable to wake up from power state D3\n");
962 1.99 christos return EOPNOTSUPP;
963 1.99 christos }
964 1.99 christos /*FALLTHROUGH*/
965 1.99 christos default:
966 1.99 christos if (wakefun) {
967 1.114 dyoung error = (*wakefun)(pc, tag, dev, pmode);
968 1.99 christos if (error)
969 1.99 christos return error;
970 1.99 christos }
971 1.114 dyoung aprint_normal_dev(dev, "waking up from power state D%d\n",
972 1.114 dyoung pmode);
973 1.99 christos if ((error = pci_set_powerstate(pc, tag, PCI_PMCSR_STATE_D0)))
974 1.99 christos return error;
975 1.99 christos }
976 1.99 christos return 0;
977 1.99 christos }
978 1.99 christos
979 1.99 christos int
980 1.103 christos pci_activate_null(pci_chipset_tag_t pc, pcitag_t tag,
981 1.114 dyoung device_t dev, pcireg_t state)
982 1.99 christos {
983 1.99 christos return 0;
984 1.99 christos }
985 1.99 christos
986 1.107 jmcneill struct pci_child_power {
987 1.107 jmcneill struct pci_conf_state p_pciconf;
988 1.107 jmcneill pci_chipset_tag_t p_pc;
989 1.107 jmcneill pcitag_t p_tag;
990 1.107 jmcneill bool p_has_pm;
991 1.107 jmcneill int p_pm_offset;
992 1.107 jmcneill pcireg_t p_pm_cap;
993 1.107 jmcneill pcireg_t p_class;
994 1.131 dyoung pcireg_t p_csr;
995 1.107 jmcneill };
996 1.107 jmcneill
997 1.107 jmcneill static bool
998 1.127 dyoung pci_child_suspend(device_t dv, const pmf_qual_t *qual)
999 1.107 jmcneill {
1000 1.107 jmcneill struct pci_child_power *priv = device_pmf_bus_private(dv);
1001 1.111 drochner pcireg_t ocsr, csr;
1002 1.107 jmcneill
1003 1.107 jmcneill pci_conf_capture(priv->p_pc, priv->p_tag, &priv->p_pciconf);
1004 1.107 jmcneill
1005 1.111 drochner if (!priv->p_has_pm)
1006 1.111 drochner return true; /* ??? hopefully handled by ACPI */
1007 1.111 drochner if (PCI_CLASS(priv->p_class) == PCI_CLASS_DISPLAY)
1008 1.111 drochner return true; /* XXX */
1009 1.111 drochner
1010 1.111 drochner /* disable decoding and busmastering, see pcipm1.2 ch. 8.2.1 */
1011 1.111 drochner ocsr = pci_conf_read(priv->p_pc, priv->p_tag, PCI_COMMAND_STATUS_REG);
1012 1.111 drochner csr = ocsr & ~(PCI_COMMAND_IO_ENABLE | PCI_COMMAND_MEM_ENABLE
1013 1.111 drochner | PCI_COMMAND_MASTER_ENABLE);
1014 1.111 drochner pci_conf_write(priv->p_pc, priv->p_tag, PCI_COMMAND_STATUS_REG, csr);
1015 1.111 drochner if (pci_set_powerstate_int(priv->p_pc, priv->p_tag,
1016 1.107 jmcneill PCI_PMCSR_STATE_D3, priv->p_pm_offset, priv->p_pm_cap)) {
1017 1.111 drochner pci_conf_write(priv->p_pc, priv->p_tag,
1018 1.111 drochner PCI_COMMAND_STATUS_REG, ocsr);
1019 1.107 jmcneill aprint_error_dev(dv, "unsupported state, continuing.\n");
1020 1.107 jmcneill return false;
1021 1.107 jmcneill }
1022 1.107 jmcneill return true;
1023 1.107 jmcneill }
1024 1.107 jmcneill
1025 1.107 jmcneill static bool
1026 1.127 dyoung pci_child_resume(device_t dv, const pmf_qual_t *qual)
1027 1.107 jmcneill {
1028 1.107 jmcneill struct pci_child_power *priv = device_pmf_bus_private(dv);
1029 1.107 jmcneill
1030 1.107 jmcneill if (priv->p_has_pm &&
1031 1.107 jmcneill pci_set_powerstate_int(priv->p_pc, priv->p_tag,
1032 1.107 jmcneill PCI_PMCSR_STATE_D0, priv->p_pm_offset, priv->p_pm_cap)) {
1033 1.107 jmcneill aprint_error_dev(dv, "unsupported state, continuing.\n");
1034 1.107 jmcneill return false;
1035 1.107 jmcneill }
1036 1.107 jmcneill
1037 1.107 jmcneill pci_conf_restore(priv->p_pc, priv->p_tag, &priv->p_pciconf);
1038 1.107 jmcneill
1039 1.107 jmcneill return true;
1040 1.107 jmcneill }
1041 1.107 jmcneill
1042 1.113 drochner static bool
1043 1.113 drochner pci_child_shutdown(device_t dv, int how)
1044 1.113 drochner {
1045 1.113 drochner struct pci_child_power *priv = device_pmf_bus_private(dv);
1046 1.113 drochner pcireg_t csr;
1047 1.113 drochner
1048 1.131 dyoung /* restore original bus-mastering state */
1049 1.113 drochner csr = pci_conf_read(priv->p_pc, priv->p_tag, PCI_COMMAND_STATUS_REG);
1050 1.113 drochner csr &= ~PCI_COMMAND_MASTER_ENABLE;
1051 1.131 dyoung csr |= priv->p_csr & PCI_COMMAND_MASTER_ENABLE;
1052 1.113 drochner pci_conf_write(priv->p_pc, priv->p_tag, PCI_COMMAND_STATUS_REG, csr);
1053 1.113 drochner return true;
1054 1.113 drochner }
1055 1.113 drochner
1056 1.107 jmcneill static void
1057 1.107 jmcneill pci_child_deregister(device_t dv)
1058 1.107 jmcneill {
1059 1.107 jmcneill struct pci_child_power *priv = device_pmf_bus_private(dv);
1060 1.107 jmcneill
1061 1.107 jmcneill free(priv, M_DEVBUF);
1062 1.107 jmcneill }
1063 1.107 jmcneill
1064 1.107 jmcneill static bool
1065 1.107 jmcneill pci_child_register(device_t child)
1066 1.107 jmcneill {
1067 1.107 jmcneill device_t self = device_parent(child);
1068 1.107 jmcneill struct pci_softc *sc = device_private(self);
1069 1.107 jmcneill struct pci_child_power *priv;
1070 1.107 jmcneill int device, function, off;
1071 1.107 jmcneill pcireg_t reg;
1072 1.107 jmcneill
1073 1.107 jmcneill priv = malloc(sizeof(*priv), M_DEVBUF, M_WAITOK);
1074 1.107 jmcneill
1075 1.107 jmcneill device = device_locator(child, PCICF_DEV);
1076 1.107 jmcneill function = device_locator(child, PCICF_FUNCTION);
1077 1.107 jmcneill
1078 1.107 jmcneill priv->p_pc = sc->sc_pc;
1079 1.107 jmcneill priv->p_tag = pci_make_tag(priv->p_pc, sc->sc_bus, device,
1080 1.107 jmcneill function);
1081 1.107 jmcneill priv->p_class = pci_conf_read(priv->p_pc, priv->p_tag, PCI_CLASS_REG);
1082 1.131 dyoung priv->p_csr = pci_conf_read(priv->p_pc, priv->p_tag,
1083 1.131 dyoung PCI_COMMAND_STATUS_REG);
1084 1.107 jmcneill
1085 1.107 jmcneill if (pci_get_capability(priv->p_pc, priv->p_tag,
1086 1.107 jmcneill PCI_CAP_PWRMGMT, &off, ®)) {
1087 1.107 jmcneill priv->p_has_pm = true;
1088 1.107 jmcneill priv->p_pm_offset = off;
1089 1.107 jmcneill priv->p_pm_cap = reg;
1090 1.107 jmcneill } else {
1091 1.107 jmcneill priv->p_has_pm = false;
1092 1.107 jmcneill priv->p_pm_offset = -1;
1093 1.107 jmcneill }
1094 1.107 jmcneill
1095 1.107 jmcneill device_pmf_bus_register(child, priv, pci_child_suspend,
1096 1.113 drochner pci_child_resume, pci_child_shutdown, pci_child_deregister);
1097 1.107 jmcneill
1098 1.107 jmcneill return true;
1099 1.107 jmcneill }
1100 1.142 jmcneill
1101 1.142 jmcneill MODULE(MODULE_CLASS_DRIVER, pci, NULL);
1102 1.142 jmcneill
1103 1.142 jmcneill static int
1104 1.142 jmcneill pci_modcmd(modcmd_t cmd, void *priv)
1105 1.142 jmcneill {
1106 1.142 jmcneill if (cmd == MODULE_CMD_INIT || cmd == MODULE_CMD_FINI)
1107 1.142 jmcneill return 0;
1108 1.142 jmcneill return ENOTTY;
1109 1.142 jmcneill }
1110