xref: /freebsd/sys/dev/acpica/acpi_pcib_acpi.c (revision 5521ff5a4d1929056e7ffc982fac3341ca54df7c)
1 /*-
2  * Copyright (c) 2000 Michael Smith
3  * Copyright (c) 2000 BSDi
4  * All rights reserved.
5  *
6  * Redistribution and use in source and binary forms, with or without
7  * modification, are permitted provided that the following conditions
8  * are met:
9  * 1. Redistributions of source code must retain the above copyright
10  *    notice, this list of conditions and the following disclaimer.
11  * 2. Redistributions in binary form must reproduce the above copyright
12  *    notice, this list of conditions and the following disclaimer in the
13  *    documentation and/or other materials provided with the distribution.
14  *
15  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
16  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
17  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
18  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
21  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25  * SUCH DAMAGE.
26  *
27  *	$FreeBSD$
28  */
29 #include "opt_acpi.h"
30 #include <sys/param.h>
31 #include <sys/bus.h>
32 #include <sys/malloc.h>
33 #include <sys/kernel.h>
34 
35 #include "acpi.h"
36 
37 #include <dev/acpica/acpivar.h>
38 
39 #include <machine/pci_cfgreg.h>
40 #include <pci/pcivar.h>
41 #include "pcib_if.h"
42 
43 /*
44  * Hooks for the ACPI CA debugging infrastructure
45  */
46 #define _COMPONENT	ACPI_BUS
47 MODULE_NAME("PCI")
48 
49 struct acpi_pcib_softc {
50     device_t		ap_dev;
51     ACPI_HANDLE		ap_handle;
52 
53     int			ap_segment;	/* analagous to Alpha 'hose' */
54     int			ap_bus;		/* bios-assigned bus number */
55 
56     ACPI_BUFFER		ap_prt;		/* interrupt routing table */
57 };
58 
59 static int		acpi_pcib_probe(device_t bus);
60 static int		acpi_pcib_attach(device_t bus);
61 static int		acpi_pcib_read_ivar(device_t dev, device_t child, int which, uintptr_t *result);
62 static int		acpi_pcib_write_ivar(device_t dev, device_t child, int which, uintptr_t value);
63 static int		acpi_pcib_maxslots(device_t dev);
64 static u_int32_t	acpi_pcib_read_config(device_t dev, int bus, int slot, int func, int reg, int bytes);
65 static void		acpi_pcib_write_config(device_t dev, int bus, int slot, int func, int reg,
66 					       u_int32_t data, int bytes);
67 static int		acpi_pcib_route_interrupt(device_t pcib, device_t dev, int pin);
68 
69 static device_method_t acpi_pcib_methods[] = {
70     /* Device interface */
71     DEVMETHOD(device_probe,		acpi_pcib_probe),
72     DEVMETHOD(device_attach,		acpi_pcib_attach),
73     DEVMETHOD(device_shutdown,		bus_generic_shutdown),
74     DEVMETHOD(device_suspend,		bus_generic_suspend),
75     DEVMETHOD(device_resume,		bus_generic_resume),
76 
77     /* Bus interface */
78     DEVMETHOD(bus_print_child,		bus_generic_print_child),
79     DEVMETHOD(bus_read_ivar,		acpi_pcib_read_ivar),
80     DEVMETHOD(bus_write_ivar,		acpi_pcib_write_ivar),
81     DEVMETHOD(bus_alloc_resource,	bus_generic_alloc_resource),
82     DEVMETHOD(bus_release_resource,	bus_generic_release_resource),
83     DEVMETHOD(bus_activate_resource,	bus_generic_activate_resource),
84     DEVMETHOD(bus_deactivate_resource, 	bus_generic_deactivate_resource),
85     DEVMETHOD(bus_setup_intr,		bus_generic_setup_intr),
86     DEVMETHOD(bus_teardown_intr,	bus_generic_teardown_intr),
87 
88     /* pcib interface */
89     DEVMETHOD(pcib_maxslots,		acpi_pcib_maxslots),
90     DEVMETHOD(pcib_read_config,		acpi_pcib_read_config),
91     DEVMETHOD(pcib_write_config,	acpi_pcib_write_config),
92     DEVMETHOD(pcib_route_interrupt,	acpi_pcib_route_interrupt),
93 
94     {0, 0}
95 };
96 
97 static driver_t acpi_pcib_driver = {
98     "acpi_pcib",
99     acpi_pcib_methods,
100     sizeof(struct acpi_pcib_softc),
101 };
102 
103 devclass_t acpi_pcib_devclass;
104 DRIVER_MODULE(acpi_pcib, acpi, acpi_pcib_driver, acpi_pcib_devclass, 0, 0);
105 
106 static int
107 acpi_pcib_probe(device_t dev)
108 {
109 
110     if ((acpi_get_type(dev) == ACPI_TYPE_DEVICE) &&
111 	!acpi_disabled("pci") &&
112 	acpi_MatchHid(dev, "PNP0A03")) {
113 
114 	/*
115 	 * Set device description
116 	 */
117 	device_set_desc(dev, "Host-PCI bridge");
118 	return(0);
119     }
120     return(ENXIO);
121 }
122 
123 static int
124 acpi_pcib_attach(device_t dev)
125 {
126     struct acpi_pcib_softc	*sc;
127     device_t			child;
128     ACPI_STATUS			status;
129     int				result;
130 
131     FUNCTION_TRACE(__func__);
132 
133     sc = device_get_softc(dev);
134     sc->ap_dev = dev;
135     sc->ap_handle = acpi_get_handle(dev);
136 
137     /*
138      * Don't attach if we're not really there.
139      *
140      * XXX this isn't entirely correct, since we may be a PCI bus
141      * on a hot-plug docking station, etc.
142      */
143     if (!acpi_DeviceIsPresent(dev))
144 	return_VALUE(ENXIO);
145 
146     /*
147      * Get our segment number by evaluating _SEG
148      * It's OK for this to not exist.
149      */
150     if ((status = acpi_EvaluateInteger(sc->ap_handle, "_SEG", &sc->ap_segment)) != AE_OK) {
151 	if (status != AE_NOT_FOUND) {
152 	    device_printf(dev, "could not evaluate _SEG - %s\n", acpi_strerror(status));
153 	    return_VALUE(ENXIO);
154 	}
155 	/* if it's not found, assume 0 */
156 	sc->ap_segment = 0;
157     }
158 
159     /*
160      * Get our base bus number by evaluating _BBN
161      * If this doesn't exist, we assume we're bus number 0.
162      *
163      * XXX note that it may also not exist in the case where we are
164      *     meant to use a private configuration space mechanism for this bus,
165      *     so we should dig out our resources and check to see if we have
166      *     anything like that.  How do we do this?
167      * XXX If we have the requisite information, and if we don't think the
168      *     default PCI configuration space handlers can deal with this bus,
169      *     we should attach our own handler.
170      * XXX invoke _REG on this for the PCI config space address space?
171      */
172     if ((status = acpi_EvaluateInteger(sc->ap_handle, "_BBN", &sc->ap_bus)) != AE_OK) {
173 	if (status != AE_NOT_FOUND) {
174 	    device_printf(dev, "could not evaluate _BBN - %s\n", acpi_strerror(status));
175 	    return_VALUE(ENXIO);
176 	}
177 	/* if it's not found, assume 0 */
178 	sc->ap_bus = 0;
179     }
180 
181     /*
182      * Make sure that this bus hasn't already been found.  If it has, return silently
183      * (should we complain here?).
184      */
185     if (devclass_get_device(devclass_find("pci"), sc->ap_bus) != NULL)
186 	return_VALUE(0);
187 
188     /*
189      * Get the PCI interrupt routing table.
190      */
191     if ((status = acpi_GetIntoBuffer(sc->ap_handle, AcpiGetIrqRoutingTable, &sc->ap_prt)) != AE_OK) {
192 	device_printf(dev, "could not get PCI interrupt routing table - %s\n", acpi_strerror(status));
193 	/* this is not an error, but it may reduce functionality */
194     }
195 
196     /*
197      * Attach the PCI bus proper.
198      */
199     if ((child = device_add_child(dev, "pci", sc->ap_bus)) == NULL) {
200 	device_printf(device_get_parent(dev), "couldn't attach pci bus");
201 	return_VALUE(ENXIO);
202     }
203 
204     /*
205      * Now go scan the bus.
206      *
207      * XXX It would be nice to defer this and count on the nexus getting it
208      * after the first pass, but this does not seem to be reliable.
209      */
210     result = bus_generic_attach(dev);
211 
212     /*
213      * XXX cross-reference our children to attached devices on the child bus
214      *     via _ADR, so we can provide power management.
215      */
216     /* XXX implement */
217 
218     return_VALUE(result);
219 }
220 
221 /*
222  * ACPI doesn't tell us how many slots there are, so use the standard
223  * maximum.
224  */
225 static int
226 acpi_pcib_maxslots(device_t dev)
227 {
228     return(PCI_SLOTMAX);
229 }
230 
231 /*
232  * Support for standard PCI bridge ivars.
233  */
234 static int
235 acpi_pcib_read_ivar(device_t dev, device_t child, int which, uintptr_t *result)
236 {
237     struct acpi_pcib_softc	*sc = device_get_softc(dev);
238 
239     switch (which) {
240     case  PCIB_IVAR_BUS:
241 	*result = sc->ap_bus;
242 	return(0);
243     }
244     return(ENOENT);
245 }
246 
247 static int
248 acpi_pcib_write_ivar(device_t dev, device_t child, int which, uintptr_t value)
249 {
250     struct acpi_pcib_softc	*sc = device_get_softc(dev);
251 
252     switch (which) {
253     case  PCIB_IVAR_BUS:
254 	sc->ap_bus = value;
255 	return(0);
256     }
257     return(ENOENT);
258 }
259 
260 static u_int32_t
261 acpi_pcib_read_config(device_t dev, int bus, int slot, int func, int reg, int bytes)
262 {
263     return(pci_cfgregread(bus, slot, func, reg, bytes));
264 }
265 
266 static void
267 acpi_pcib_write_config(device_t dev, int bus, int slot, int func, int reg, u_int32_t data, int bytes)
268 {
269     pci_cfgregwrite(bus, slot, func, reg, data, bytes);
270 }
271 
272 /*
273  * Route an interrupt for a child of the bridge.
274  *
275  * XXX clean up error messages
276  *
277  * XXX this function is somewhat bulky
278  */
279 static int
280 acpi_pcib_route_interrupt(device_t pcib, device_t dev, int pin)
281 {
282     struct acpi_pcib_softc	*sc;
283     PCI_ROUTING_TABLE		*prt;
284     ACPI_HANDLE			lnkdev;
285     ACPI_BUFFER			crsbuf, prsbuf;
286     ACPI_RESOURCE		*crsres, *prsres;
287     ACPI_DEVICE_INFO		devinfo;
288     ACPI_OBJECT_LIST		objectlist;
289     ACPI_STATUS			status;
290     u_int8_t			*prtp;
291     device_t			*devlist;
292     int				devcount;
293     int				bus;
294     int				interrupt;
295     int				i;
296 
297     crsbuf.Pointer = NULL;
298     prsbuf.Pointer = NULL;
299     devlist = NULL;
300     interrupt = 255;
301 
302     /* ACPI numbers pins 0-3, not 1-4 like the BIOS */
303     pin--;
304 
305     /* find the bridge softc */
306     if (devclass_get_devices(acpi_pcib_devclass, &devlist, &devcount))
307 	goto out;
308     BUS_READ_IVAR(pcib, pcib, PCIB_IVAR_BUS, (uintptr_t *)&bus);
309     sc = NULL;
310     for (i = 0; i < devcount; i++) {
311 	sc = device_get_softc(*(devlist + i));
312 	if (sc->ap_bus == bus)
313 	    break;
314 	sc = NULL;
315     }
316     if (sc == NULL)			/* not one of ours */
317 	goto out;
318     prtp = sc->ap_prt.Pointer;
319     if (prtp == NULL)			/* didn't get routing table */
320 	goto out;
321 
322     /* scan the table looking for this device */
323     for (;;) {
324 	prt = (PCI_ROUTING_TABLE *)prtp;
325 
326 	if (prt->Length == 0)		/* end of table */
327 	    goto out;
328 
329 	/*
330 	 * Compare the slot number (high word of Address) and pin number
331 	 * (note that ACPI uses 0 for INTA) to check for a match.
332 	 *
333 	 * Note that the low word of the Address field (function number)
334 	 * is required by the specification to be 0xffff.  We don't risk
335 	 * checking it here.
336 	 */
337 	if ((((prt->Address & 0xffff0000) >> 16) == pci_get_slot(dev)) &&
338 	    (prt->Pin == pin)) {
339 	    device_printf(sc->ap_dev, "matched entry for %d.%d.INT%c (source %s)\n",
340 			  pci_get_bus(dev), pci_get_slot(dev), 'A' + pin, prt->Source);
341 	    break;
342 	}
343 
344 	/* skip to next entry */
345 	prtp += prt->Length;
346     }
347 
348     /*
349      * If source is empty/NULL, the source index is the global IRQ number.
350      */
351     if ((prt->Source == NULL) || (prt->Source[0] == '\0')) {
352 	device_printf(sc->ap_dev, "device is hardwired to IRQ %d\n", prt->SourceIndex);
353 	interrupt = prt->SourceIndex;
354 	goto out;
355     }
356 
357     /*
358      * We have to find the source device (PCI interrupt link device)
359      */
360     if (ACPI_FAILURE(AcpiGetHandle(ACPI_ROOT_OBJECT, prt->Source, &lnkdev))) {
361 	device_printf(sc->ap_dev, "couldn't find PCI interrupt link device %s\n", prt->Source);
362 	goto out;
363     }
364 
365     /*
366      * Verify that this is a PCI link device, and that it's present.
367      */
368     if (ACPI_FAILURE(AcpiGetObjectInfo(lnkdev, &devinfo))) {
369 	device_printf(sc->ap_dev, "couldn't validate PCI interrupt link device %s\n", prt->Source);
370 	goto out;
371     }
372     if (!(devinfo.Valid & ACPI_VALID_HID) || strcmp("PNP0C0F", devinfo.HardwareId)) {
373 	device_printf(sc->ap_dev, "PCI interrupt link device %s has wrong _HID (%s)\n",
374 		      prt->Source, devinfo.HardwareId);
375 	goto out;
376     }
377     /* should be 'present' and 'functioning' */
378     if ((devinfo.CurrentStatus & 0x09) != 0x09) {
379 	device_printf(sc->ap_dev, "PCI interrupt link device %s unavailable (CurrentStatus 0x%x)\n",
380 		      prt->Source, devinfo.CurrentStatus);
381 	goto out;
382     }
383 
384     /*
385      * Get the current and possible resources for the interrupt link device.
386      */
387     if (ACPI_FAILURE(status = acpi_GetIntoBuffer(lnkdev, AcpiGetCurrentResources, &crsbuf))) {
388 	device_printf(sc->ap_dev, "couldn't get PCI interrupt link device _CRS data - %s\n",
389 		      acpi_strerror(status));
390 	goto out;	/* this is fatal */
391     }
392     if ((status = acpi_GetIntoBuffer(lnkdev, AcpiGetPossibleResources, &prsbuf)) != AE_OK) {
393 	device_printf(sc->ap_dev, "couldn't get PCI interrupt link device _PRS data - %s\n",
394 		      acpi_strerror(status));
395 	/* this is not fatal, since it may be hardwired */
396     }
397     DEBUG_PRINT(TRACE_RESOURCES, ("got %d bytes for %s._CRS\n", crsbuf.Length, acpi_name(lnkdev)));
398     DEBUG_PRINT(TRACE_RESOURCES, ("got %d bytes for %s._PRS\n", prsbuf.Length, acpi_name(lnkdev)));
399 
400     /*
401      * The interrupt may already be routed, so check _CRS first.  We don't check the
402      * 'decoding' bit in the _STA result, since there's nothing in the spec that
403      * mandates it be set, however some BIOS' will set it if the decode is active.
404      *
405      * The Source Index points to the particular resource entry we're interested in.
406      */
407     if (ACPI_FAILURE(acpi_FindIndexedResource((ACPI_RESOURCE *)crsbuf.Pointer, prt->SourceIndex, &crsres))) {
408 	device_printf(sc->ap_dev, "_CRS buffer corrupt, cannot route interrupt\n");
409 	goto out;
410     }
411 
412     /* type-check the resource we've got */
413     if (crsres->Id != ACPI_RSTYPE_IRQ) {    /* XXX ACPI_RSTYPE_EXT_IRQ */
414 	device_printf(sc->ap_dev, "_CRS resource entry has unsupported type %d\n", crsres->Id);
415 	goto out;
416     }
417 
418     /* if there's more than one interrupt, we are confused */
419     if (crsres->Data.Irq.NumberOfInterrupts > 1) {
420 	device_printf(sc->ap_dev, "device has too many interrupts (%d)\n", crsres->Data.Irq.NumberOfInterrupts);
421 	goto out;
422     }
423 
424     /*
425      * If there's only one interrupt, and it's not zero, then we're already routed.
426      *
427      * Note that we could also check the 'decoding' bit in _STA, but can't depend on
428      * it since it's not part of the spec.
429      *
430      * XXX check ASL examples to see if this is an acceptable set of tests
431      */
432     if ((crsres->Data.Irq.NumberOfInterrupts == 1) && (crsres->Data.Irq.Interrupts[0] != 0)) {
433 	device_printf(sc->ap_dev, "device is routed to IRQ %d\n", crsres->Data.Irq.Interrupts[0]);
434 	interrupt = crsres->Data.Irq.Interrupts[0];
435 	goto out;
436     }
437 
438     /*
439      * There isn't an interrupt, so we have to look at _PRS to get one.
440      * Get the set of allowed interrupts from the _PRS resource indexed by SourceIndex.
441      */
442     if (prsbuf.Pointer == NULL) {
443 	device_printf(sc->ap_dev, "device has no routed interrupt and no _PRS on PCI interrupt link device\n");
444 	goto out;
445     }
446     if (ACPI_FAILURE(acpi_FindIndexedResource((ACPI_RESOURCE *)prsbuf.Pointer, prt->SourceIndex, &prsres))) {
447 	device_printf(sc->ap_dev, "_PRS buffer corrupt, cannot route interrupt\n");
448 	goto out;
449     }
450 
451     /* type-check the resource we've got */
452     if (prsres->Id != ACPI_RSTYPE_IRQ) {    /* XXX ACPI_RSTYPE_EXT_IRQ */
453 	device_printf(sc->ap_dev, "_PRS resource entry has unsupported type %d\n", prsres->Id);
454 	goto out;
455     }
456 
457     /* there has to be at least one interrupt available */
458     if (prsres->Data.Irq.NumberOfInterrupts < 1) {
459 	device_printf(sc->ap_dev, "device has no interrupts\n");
460 	goto out;
461     }
462 
463     /*
464      * Pick an interrupt to use.  Note that a more scientific approach than just
465      * taking the first one available would be desirable.
466      *
467      * The PCI BIOS $PIR table offers "preferred PCI interrupts", but ACPI doesn't
468      * seem to offer a similar mechanism, so picking a "good" interrupt here is a
469      * difficult task.
470      *
471      * Populate our copy of _CRS and pass it back to _SRS to set the interrupt.
472      */
473     device_printf(sc->ap_dev, "possible interrupts:");
474     for (i = 0; i < prsres->Data.Irq.NumberOfInterrupts; i++)
475 	printf("  %d", prsres->Data.Irq.Interrupts[i]);
476     printf("\n");
477     crsres->Data.Irq.Interrupts[0] = prsres->Data.Irq.Interrupts[0];
478     crsres->Data.Irq.NumberOfInterrupts = 1;
479     objectlist.Count = 1;
480     objectlist.Pointer = (ACPI_OBJECT *)crsres;
481     if (ACPI_FAILURE(status = AcpiEvaluateObject(lnkdev, "_SRS", &objectlist, NULL))) {
482 	device_printf(sc->ap_dev, "couldn't route interrupt %d via %s - %s\n",
483 		      prsres->Data.Irq.Interrupts[0], acpi_name(lnkdev), acpi_strerror(status));
484 	goto out;
485     }
486 
487     /* successful, return the interrupt we just routed */
488     device_printf(sc->ap_dev, "routed interrupt %d via %s\n",
489 		  prsres->Data.Irq.Interrupts[0], acpi_name(lnkdev));
490     interrupt = prsres->Data.Irq.Interrupts[0];
491 
492  out:
493     if (devlist != NULL)
494 	free(devlist, M_TEMP);
495     if (crsbuf.Pointer != NULL)
496 	AcpiOsFree(crsbuf.Pointer);
497     if (prsbuf.Pointer != NULL)
498 	AcpiOsFree(prsbuf.Pointer);
499 
500     /* XXX APIC_IO interrupt mapping? */
501     return(interrupt);
502 }
503 
504