xref: /freebsd/sys/dev/pci/pci_pci.c (revision 25a57bd64b024462efe7b8cbd7ad9e701fd6c4c6)
1bb0d0a8eSMike Smith /*-
2bb0d0a8eSMike Smith  * Copyright (c) 1994,1995 Stefan Esser, Wolfgang StanglMeier
3bb0d0a8eSMike Smith  * Copyright (c) 2000 Michael Smith <msmith@freebsd.org>
4bb0d0a8eSMike Smith  * Copyright (c) 2000 BSDi
5bb0d0a8eSMike Smith  * All rights reserved.
6bb0d0a8eSMike Smith  *
7bb0d0a8eSMike Smith  * Redistribution and use in source and binary forms, with or without
8bb0d0a8eSMike Smith  * modification, are permitted provided that the following conditions
9bb0d0a8eSMike Smith  * are met:
10bb0d0a8eSMike Smith  * 1. Redistributions of source code must retain the above copyright
11bb0d0a8eSMike Smith  *    notice, this list of conditions and the following disclaimer.
12bb0d0a8eSMike Smith  * 2. Redistributions in binary form must reproduce the above copyright
13bb0d0a8eSMike Smith  *    notice, this list of conditions and the following disclaimer in the
14bb0d0a8eSMike Smith  *    documentation and/or other materials provided with the distribution.
15bb0d0a8eSMike Smith  * 3. The name of the author may not be used to endorse or promote products
16bb0d0a8eSMike Smith  *    derived from this software without specific prior written permission.
17bb0d0a8eSMike Smith  *
18bb0d0a8eSMike Smith  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
19bb0d0a8eSMike Smith  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
20bb0d0a8eSMike Smith  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
21bb0d0a8eSMike Smith  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
22bb0d0a8eSMike Smith  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
23bb0d0a8eSMike Smith  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
24bb0d0a8eSMike Smith  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
25bb0d0a8eSMike Smith  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
26bb0d0a8eSMike Smith  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
27bb0d0a8eSMike Smith  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
28bb0d0a8eSMike Smith  * SUCH DAMAGE.
29bb0d0a8eSMike Smith  */
30bb0d0a8eSMike Smith 
31aad970f1SDavid E. O'Brien #include <sys/cdefs.h>
32aad970f1SDavid E. O'Brien __FBSDID("$FreeBSD$");
33aad970f1SDavid E. O'Brien 
34bb0d0a8eSMike Smith /*
35bb0d0a8eSMike Smith  * PCI:PCI bridge support.
36bb0d0a8eSMike Smith  */
37bb0d0a8eSMike Smith 
3882cb5c3bSJohn Baldwin #include "opt_pci.h"
3982cb5c3bSJohn Baldwin 
40bb0d0a8eSMike Smith #include <sys/param.h>
41bb0d0a8eSMike Smith #include <sys/bus.h>
4283c41143SJohn Baldwin #include <sys/kernel.h>
4383c41143SJohn Baldwin #include <sys/malloc.h>
4483c41143SJohn Baldwin #include <sys/module.h>
45a8b354a8SWarner Losh #include <sys/rman.h>
461c54ff33SMatthew N. Dodd #include <sys/sysctl.h>
4783c41143SJohn Baldwin #include <sys/systm.h>
4882cb5c3bSJohn Baldwin #include <sys/taskqueue.h>
49bb0d0a8eSMike Smith 
5038d8c994SWarner Losh #include <dev/pci/pcivar.h>
5138d8c994SWarner Losh #include <dev/pci/pcireg.h>
5262508c53SJohn Baldwin #include <dev/pci/pci_private.h>
5338d8c994SWarner Losh #include <dev/pci/pcib_private.h>
54bb0d0a8eSMike Smith 
55bb0d0a8eSMike Smith #include "pcib_if.h"
56bb0d0a8eSMike Smith 
57bb0d0a8eSMike Smith static int		pcib_probe(device_t dev);
58e36af292SJung-uk Kim static int		pcib_suspend(device_t dev);
59e36af292SJung-uk Kim static int		pcib_resume(device_t dev);
6062508c53SJohn Baldwin static int		pcib_power_for_sleep(device_t pcib, device_t dev,
6162508c53SJohn Baldwin 			    int *pstate);
62d7be980dSAndrew Turner static int		pcib_ari_get_id(device_t pcib, device_t dev,
63d7be980dSAndrew Turner     enum pci_id_type type, uintptr_t *id);
6455d3ea17SRyan Stone static uint32_t		pcib_read_config(device_t dev, u_int b, u_int s,
6555d3ea17SRyan Stone     u_int f, u_int reg, int width);
6655d3ea17SRyan Stone static void		pcib_write_config(device_t dev, u_int b, u_int s,
6755d3ea17SRyan Stone     u_int f, u_int reg, uint32_t val, int width);
6855d3ea17SRyan Stone static int		pcib_ari_maxslots(device_t dev);
6955d3ea17SRyan Stone static int		pcib_ari_maxfuncs(device_t dev);
7055d3ea17SRyan Stone static int		pcib_try_enable_ari(device_t pcib, device_t dev);
712397d2d8SRyan Stone static int		pcib_ari_enabled(device_t pcib);
722397d2d8SRyan Stone static void		pcib_ari_decode_rid(device_t pcib, uint16_t rid,
732397d2d8SRyan Stone 			    int *bus, int *slot, int *func);
7482cb5c3bSJohn Baldwin #ifdef PCI_HP
7582cb5c3bSJohn Baldwin static void		pcib_pcie_ab_timeout(void *arg);
7682cb5c3bSJohn Baldwin static void		pcib_pcie_cc_timeout(void *arg);
7782cb5c3bSJohn Baldwin static void		pcib_pcie_dll_timeout(void *arg);
7882cb5c3bSJohn Baldwin #endif
79bb0d0a8eSMike Smith 
80bb0d0a8eSMike Smith static device_method_t pcib_methods[] = {
81bb0d0a8eSMike Smith     /* Device interface */
82bb0d0a8eSMike Smith     DEVMETHOD(device_probe,		pcib_probe),
83bb0d0a8eSMike Smith     DEVMETHOD(device_attach,		pcib_attach),
846f33eaa5SJohn Baldwin     DEVMETHOD(device_detach,		pcib_detach),
85bb0d0a8eSMike Smith     DEVMETHOD(device_shutdown,		bus_generic_shutdown),
86e36af292SJung-uk Kim     DEVMETHOD(device_suspend,		pcib_suspend),
87e36af292SJung-uk Kim     DEVMETHOD(device_resume,		pcib_resume),
88bb0d0a8eSMike Smith 
89bb0d0a8eSMike Smith     /* Bus interface */
9082cb5c3bSJohn Baldwin     DEVMETHOD(bus_child_present,	pcib_child_present),
91bb0d0a8eSMike Smith     DEVMETHOD(bus_read_ivar,		pcib_read_ivar),
92bb0d0a8eSMike Smith     DEVMETHOD(bus_write_ivar,		pcib_write_ivar),
93bb0d0a8eSMike Smith     DEVMETHOD(bus_alloc_resource,	pcib_alloc_resource),
9483c41143SJohn Baldwin #ifdef NEW_PCIB
9583c41143SJohn Baldwin     DEVMETHOD(bus_adjust_resource,	pcib_adjust_resource),
9683c41143SJohn Baldwin     DEVMETHOD(bus_release_resource,	pcib_release_resource),
9783c41143SJohn Baldwin #else
98d2c9344fSJohn Baldwin     DEVMETHOD(bus_adjust_resource,	bus_generic_adjust_resource),
99bb0d0a8eSMike Smith     DEVMETHOD(bus_release_resource,	bus_generic_release_resource),
10083c41143SJohn Baldwin #endif
101bb0d0a8eSMike Smith     DEVMETHOD(bus_activate_resource,	bus_generic_activate_resource),
102bb0d0a8eSMike Smith     DEVMETHOD(bus_deactivate_resource,	bus_generic_deactivate_resource),
103bb0d0a8eSMike Smith     DEVMETHOD(bus_setup_intr,		bus_generic_setup_intr),
104bb0d0a8eSMike Smith     DEVMETHOD(bus_teardown_intr,	bus_generic_teardown_intr),
105bb0d0a8eSMike Smith 
106bb0d0a8eSMike Smith     /* pcib interface */
10755d3ea17SRyan Stone     DEVMETHOD(pcib_maxslots,		pcib_ari_maxslots),
10855d3ea17SRyan Stone     DEVMETHOD(pcib_maxfuncs,		pcib_ari_maxfuncs),
109bb0d0a8eSMike Smith     DEVMETHOD(pcib_read_config,		pcib_read_config),
110bb0d0a8eSMike Smith     DEVMETHOD(pcib_write_config,	pcib_write_config),
111bb0d0a8eSMike Smith     DEVMETHOD(pcib_route_interrupt,	pcib_route_interrupt),
1129bf4c9c1SJohn Baldwin     DEVMETHOD(pcib_alloc_msi,		pcib_alloc_msi),
1139bf4c9c1SJohn Baldwin     DEVMETHOD(pcib_release_msi,		pcib_release_msi),
1149bf4c9c1SJohn Baldwin     DEVMETHOD(pcib_alloc_msix,		pcib_alloc_msix),
1159bf4c9c1SJohn Baldwin     DEVMETHOD(pcib_release_msix,	pcib_release_msix),
116e706f7f0SJohn Baldwin     DEVMETHOD(pcib_map_msi,		pcib_map_msi),
11762508c53SJohn Baldwin     DEVMETHOD(pcib_power_for_sleep,	pcib_power_for_sleep),
118d7be980dSAndrew Turner     DEVMETHOD(pcib_get_id,		pcib_ari_get_id),
11955d3ea17SRyan Stone     DEVMETHOD(pcib_try_enable_ari,	pcib_try_enable_ari),
1202397d2d8SRyan Stone     DEVMETHOD(pcib_ari_enabled,		pcib_ari_enabled),
1212397d2d8SRyan Stone     DEVMETHOD(pcib_decode_rid,		pcib_ari_decode_rid),
122bb0d0a8eSMike Smith 
1234b7ec270SMarius Strobl     DEVMETHOD_END
124bb0d0a8eSMike Smith };
125bb0d0a8eSMike Smith 
12604dda605SJohn Baldwin static devclass_t pcib_devclass;
127bb0d0a8eSMike Smith 
12804dda605SJohn Baldwin DEFINE_CLASS_0(pcib, pcib_driver, pcib_methods, sizeof(struct pcib_softc));
12968e9cbd3SMarius Strobl DRIVER_MODULE(pcib, pci, pcib_driver, pcib_devclass, NULL, NULL);
130bb0d0a8eSMike Smith 
13183c41143SJohn Baldwin #ifdef NEW_PCIB
1320070c94bSJohn Baldwin SYSCTL_DECL(_hw_pci);
1330070c94bSJohn Baldwin 
1340070c94bSJohn Baldwin static int pci_clear_pcib;
1350070c94bSJohn Baldwin SYSCTL_INT(_hw_pci, OID_AUTO, clear_pcib, CTLFLAG_RDTUN, &pci_clear_pcib, 0,
1360070c94bSJohn Baldwin     "Clear firmware-assigned resources for PCI-PCI bridge I/O windows.");
13783c41143SJohn Baldwin 
13883c41143SJohn Baldwin /*
13983c41143SJohn Baldwin  * Is a resource from a child device sub-allocated from one of our
14083c41143SJohn Baldwin  * resource managers?
14183c41143SJohn Baldwin  */
14283c41143SJohn Baldwin static int
14383c41143SJohn Baldwin pcib_is_resource_managed(struct pcib_softc *sc, int type, struct resource *r)
14483c41143SJohn Baldwin {
14583c41143SJohn Baldwin 
14683c41143SJohn Baldwin 	switch (type) {
1474edef187SJohn Baldwin #ifdef PCI_RES_BUS
1484edef187SJohn Baldwin 	case PCI_RES_BUS:
1494edef187SJohn Baldwin 		return (rman_is_region_manager(r, &sc->bus.rman));
1504edef187SJohn Baldwin #endif
15183c41143SJohn Baldwin 	case SYS_RES_IOPORT:
15283c41143SJohn Baldwin 		return (rman_is_region_manager(r, &sc->io.rman));
15383c41143SJohn Baldwin 	case SYS_RES_MEMORY:
15483c41143SJohn Baldwin 		/* Prefetchable resources may live in either memory rman. */
15583c41143SJohn Baldwin 		if (rman_get_flags(r) & RF_PREFETCHABLE &&
15683c41143SJohn Baldwin 		    rman_is_region_manager(r, &sc->pmem.rman))
15783c41143SJohn Baldwin 			return (1);
15883c41143SJohn Baldwin 		return (rman_is_region_manager(r, &sc->mem.rman));
15983c41143SJohn Baldwin 	}
16083c41143SJohn Baldwin 	return (0);
16183c41143SJohn Baldwin }
16283c41143SJohn Baldwin 
16383c41143SJohn Baldwin static int
16483c41143SJohn Baldwin pcib_is_window_open(struct pcib_window *pw)
16583c41143SJohn Baldwin {
16683c41143SJohn Baldwin 
16783c41143SJohn Baldwin 	return (pw->valid && pw->base < pw->limit);
16883c41143SJohn Baldwin }
16983c41143SJohn Baldwin 
17083c41143SJohn Baldwin /*
17183c41143SJohn Baldwin  * XXX: If RF_ACTIVE did not also imply allocating a bus space tag and
17283c41143SJohn Baldwin  * handle for the resource, we could pass RF_ACTIVE up to the PCI bus
17383c41143SJohn Baldwin  * when allocating the resource windows and rely on the PCI bus driver
17483c41143SJohn Baldwin  * to do this for us.
17583c41143SJohn Baldwin  */
17683c41143SJohn Baldwin static void
17783c41143SJohn Baldwin pcib_activate_window(struct pcib_softc *sc, int type)
17883c41143SJohn Baldwin {
17983c41143SJohn Baldwin 
18083c41143SJohn Baldwin 	PCI_ENABLE_IO(device_get_parent(sc->dev), sc->dev, type);
18183c41143SJohn Baldwin }
18283c41143SJohn Baldwin 
18383c41143SJohn Baldwin static void
18483c41143SJohn Baldwin pcib_write_windows(struct pcib_softc *sc, int mask)
18583c41143SJohn Baldwin {
18683c41143SJohn Baldwin 	device_t dev;
18783c41143SJohn Baldwin 	uint32_t val;
18883c41143SJohn Baldwin 
18983c41143SJohn Baldwin 	dev = sc->dev;
19083c41143SJohn Baldwin 	if (sc->io.valid && mask & WIN_IO) {
19183c41143SJohn Baldwin 		val = pci_read_config(dev, PCIR_IOBASEL_1, 1);
19283c41143SJohn Baldwin 		if ((val & PCIM_BRIO_MASK) == PCIM_BRIO_32) {
19383c41143SJohn Baldwin 			pci_write_config(dev, PCIR_IOBASEH_1,
19483c41143SJohn Baldwin 			    sc->io.base >> 16, 2);
19583c41143SJohn Baldwin 			pci_write_config(dev, PCIR_IOLIMITH_1,
19683c41143SJohn Baldwin 			    sc->io.limit >> 16, 2);
19783c41143SJohn Baldwin 		}
19883c41143SJohn Baldwin 		pci_write_config(dev, PCIR_IOBASEL_1, sc->io.base >> 8, 1);
19983c41143SJohn Baldwin 		pci_write_config(dev, PCIR_IOLIMITL_1, sc->io.limit >> 8, 1);
20083c41143SJohn Baldwin 	}
20183c41143SJohn Baldwin 
20283c41143SJohn Baldwin 	if (mask & WIN_MEM) {
20383c41143SJohn Baldwin 		pci_write_config(dev, PCIR_MEMBASE_1, sc->mem.base >> 16, 2);
20483c41143SJohn Baldwin 		pci_write_config(dev, PCIR_MEMLIMIT_1, sc->mem.limit >> 16, 2);
20583c41143SJohn Baldwin 	}
20683c41143SJohn Baldwin 
20783c41143SJohn Baldwin 	if (sc->pmem.valid && mask & WIN_PMEM) {
20883c41143SJohn Baldwin 		val = pci_read_config(dev, PCIR_PMBASEL_1, 2);
20983c41143SJohn Baldwin 		if ((val & PCIM_BRPM_MASK) == PCIM_BRPM_64) {
21083c41143SJohn Baldwin 			pci_write_config(dev, PCIR_PMBASEH_1,
21183c41143SJohn Baldwin 			    sc->pmem.base >> 32, 4);
21283c41143SJohn Baldwin 			pci_write_config(dev, PCIR_PMLIMITH_1,
21383c41143SJohn Baldwin 			    sc->pmem.limit >> 32, 4);
21483c41143SJohn Baldwin 		}
21583c41143SJohn Baldwin 		pci_write_config(dev, PCIR_PMBASEL_1, sc->pmem.base >> 16, 2);
21683c41143SJohn Baldwin 		pci_write_config(dev, PCIR_PMLIMITL_1, sc->pmem.limit >> 16, 2);
21783c41143SJohn Baldwin 	}
21883c41143SJohn Baldwin }
21983c41143SJohn Baldwin 
220c825d4dcSJohn Baldwin /*
221c825d4dcSJohn Baldwin  * This is used to reject I/O port allocations that conflict with an
222c825d4dcSJohn Baldwin  * ISA alias range.
223c825d4dcSJohn Baldwin  */
224c825d4dcSJohn Baldwin static int
2252dd1bdf1SJustin Hibbits pcib_is_isa_range(struct pcib_softc *sc, rman_res_t start, rman_res_t end,
2262dd1bdf1SJustin Hibbits     rman_res_t count)
227c825d4dcSJohn Baldwin {
2282dd1bdf1SJustin Hibbits 	rman_res_t next_alias;
229c825d4dcSJohn Baldwin 
230c825d4dcSJohn Baldwin 	if (!(sc->bridgectl & PCIB_BCR_ISA_ENABLE))
231c825d4dcSJohn Baldwin 		return (0);
232c825d4dcSJohn Baldwin 
233c825d4dcSJohn Baldwin 	/* Only check fixed ranges for overlap. */
234c825d4dcSJohn Baldwin 	if (start + count - 1 != end)
235c825d4dcSJohn Baldwin 		return (0);
236c825d4dcSJohn Baldwin 
237c825d4dcSJohn Baldwin 	/* ISA aliases are only in the lower 64KB of I/O space. */
238c825d4dcSJohn Baldwin 	if (start >= 65536)
239c825d4dcSJohn Baldwin 		return (0);
240c825d4dcSJohn Baldwin 
241c825d4dcSJohn Baldwin 	/* Check for overlap with 0x000 - 0x0ff as a special case. */
242c825d4dcSJohn Baldwin 	if (start < 0x100)
243c825d4dcSJohn Baldwin 		goto alias;
244c825d4dcSJohn Baldwin 
245c825d4dcSJohn Baldwin 	/*
246c825d4dcSJohn Baldwin 	 * If the start address is an alias, the range is an alias.
247c825d4dcSJohn Baldwin 	 * Otherwise, compute the start of the next alias range and
248c825d4dcSJohn Baldwin 	 * check if it is before the end of the candidate range.
249c825d4dcSJohn Baldwin 	 */
250c825d4dcSJohn Baldwin 	if ((start & 0x300) != 0)
251c825d4dcSJohn Baldwin 		goto alias;
252c825d4dcSJohn Baldwin 	next_alias = (start & ~0x3fful) | 0x100;
253c825d4dcSJohn Baldwin 	if (next_alias <= end)
254c825d4dcSJohn Baldwin 		goto alias;
255c825d4dcSJohn Baldwin 	return (0);
256c825d4dcSJohn Baldwin 
257c825d4dcSJohn Baldwin alias:
258c825d4dcSJohn Baldwin 	if (bootverbose)
259c825d4dcSJohn Baldwin 		device_printf(sc->dev,
260da1b038aSJustin Hibbits 		    "I/O range %#jx-%#jx overlaps with an ISA alias\n", start,
261c825d4dcSJohn Baldwin 		    end);
262c825d4dcSJohn Baldwin 	return (1);
263c825d4dcSJohn Baldwin }
264c825d4dcSJohn Baldwin 
265c825d4dcSJohn Baldwin static void
266c825d4dcSJohn Baldwin pcib_add_window_resources(struct pcib_window *w, struct resource **res,
267c825d4dcSJohn Baldwin     int count)
268c825d4dcSJohn Baldwin {
269c825d4dcSJohn Baldwin 	struct resource **newarray;
270c825d4dcSJohn Baldwin 	int error, i;
271c825d4dcSJohn Baldwin 
272c825d4dcSJohn Baldwin 	newarray = malloc(sizeof(struct resource *) * (w->count + count),
273c825d4dcSJohn Baldwin 	    M_DEVBUF, M_WAITOK);
274c825d4dcSJohn Baldwin 	if (w->res != NULL)
275c825d4dcSJohn Baldwin 		bcopy(w->res, newarray, sizeof(struct resource *) * w->count);
276c825d4dcSJohn Baldwin 	bcopy(res, newarray + w->count, sizeof(struct resource *) * count);
277c825d4dcSJohn Baldwin 	free(w->res, M_DEVBUF);
278c825d4dcSJohn Baldwin 	w->res = newarray;
279c825d4dcSJohn Baldwin 	w->count += count;
280c825d4dcSJohn Baldwin 
281c825d4dcSJohn Baldwin 	for (i = 0; i < count; i++) {
282c825d4dcSJohn Baldwin 		error = rman_manage_region(&w->rman, rman_get_start(res[i]),
283c825d4dcSJohn Baldwin 		    rman_get_end(res[i]));
284c825d4dcSJohn Baldwin 		if (error)
285c825d4dcSJohn Baldwin 			panic("Failed to add resource to rman");
286c825d4dcSJohn Baldwin 	}
287c825d4dcSJohn Baldwin }
288c825d4dcSJohn Baldwin 
2892dd1bdf1SJustin Hibbits typedef void (nonisa_callback)(rman_res_t start, rman_res_t end, void *arg);
290c825d4dcSJohn Baldwin 
291c825d4dcSJohn Baldwin static void
2922dd1bdf1SJustin Hibbits pcib_walk_nonisa_ranges(rman_res_t start, rman_res_t end, nonisa_callback *cb,
293c825d4dcSJohn Baldwin     void *arg)
294c825d4dcSJohn Baldwin {
2952dd1bdf1SJustin Hibbits 	rman_res_t next_end;
296c825d4dcSJohn Baldwin 
297c825d4dcSJohn Baldwin 	/*
298c825d4dcSJohn Baldwin 	 * If start is within an ISA alias range, move up to the start
299c825d4dcSJohn Baldwin 	 * of the next non-alias range.  As a special case, addresses
300c825d4dcSJohn Baldwin 	 * in the range 0x000 - 0x0ff should also be skipped since
301c825d4dcSJohn Baldwin 	 * those are used for various system I/O devices in ISA
302c825d4dcSJohn Baldwin 	 * systems.
303c825d4dcSJohn Baldwin 	 */
304c825d4dcSJohn Baldwin 	if (start <= 65535) {
305c825d4dcSJohn Baldwin 		if (start < 0x100 || (start & 0x300) != 0) {
306c825d4dcSJohn Baldwin 			start &= ~0x3ff;
307c825d4dcSJohn Baldwin 			start += 0x400;
308c825d4dcSJohn Baldwin 		}
309c825d4dcSJohn Baldwin 	}
310c825d4dcSJohn Baldwin 
311c825d4dcSJohn Baldwin 	/* ISA aliases are only in the lower 64KB of I/O space. */
312c825d4dcSJohn Baldwin 	while (start <= MIN(end, 65535)) {
313c825d4dcSJohn Baldwin 		next_end = MIN(start | 0xff, end);
314c825d4dcSJohn Baldwin 		cb(start, next_end, arg);
315c825d4dcSJohn Baldwin 		start += 0x400;
316c825d4dcSJohn Baldwin 	}
317c825d4dcSJohn Baldwin 
318c825d4dcSJohn Baldwin 	if (start <= end)
319c825d4dcSJohn Baldwin 		cb(start, end, arg);
320c825d4dcSJohn Baldwin }
321c825d4dcSJohn Baldwin 
322c825d4dcSJohn Baldwin static void
3232dd1bdf1SJustin Hibbits count_ranges(rman_res_t start, rman_res_t end, void *arg)
324c825d4dcSJohn Baldwin {
325c825d4dcSJohn Baldwin 	int *countp;
326c825d4dcSJohn Baldwin 
327c825d4dcSJohn Baldwin 	countp = arg;
328c825d4dcSJohn Baldwin 	(*countp)++;
329c825d4dcSJohn Baldwin }
330c825d4dcSJohn Baldwin 
331c825d4dcSJohn Baldwin struct alloc_state {
332c825d4dcSJohn Baldwin 	struct resource **res;
333c825d4dcSJohn Baldwin 	struct pcib_softc *sc;
334c825d4dcSJohn Baldwin 	int count, error;
335c825d4dcSJohn Baldwin };
336c825d4dcSJohn Baldwin 
337c825d4dcSJohn Baldwin static void
3382dd1bdf1SJustin Hibbits alloc_ranges(rman_res_t start, rman_res_t end, void *arg)
339c825d4dcSJohn Baldwin {
340c825d4dcSJohn Baldwin 	struct alloc_state *as;
341c825d4dcSJohn Baldwin 	struct pcib_window *w;
342c825d4dcSJohn Baldwin 	int rid;
343c825d4dcSJohn Baldwin 
344c825d4dcSJohn Baldwin 	as = arg;
345c825d4dcSJohn Baldwin 	if (as->error != 0)
346c825d4dcSJohn Baldwin 		return;
347c825d4dcSJohn Baldwin 
348c825d4dcSJohn Baldwin 	w = &as->sc->io;
349c825d4dcSJohn Baldwin 	rid = w->reg;
350c825d4dcSJohn Baldwin 	if (bootverbose)
351c825d4dcSJohn Baldwin 		device_printf(as->sc->dev,
352da1b038aSJustin Hibbits 		    "allocating non-ISA range %#jx-%#jx\n", start, end);
353c825d4dcSJohn Baldwin 	as->res[as->count] = bus_alloc_resource(as->sc->dev, SYS_RES_IOPORT,
354c825d4dcSJohn Baldwin 	    &rid, start, end, end - start + 1, 0);
355c825d4dcSJohn Baldwin 	if (as->res[as->count] == NULL)
356c825d4dcSJohn Baldwin 		as->error = ENXIO;
357c825d4dcSJohn Baldwin 	else
358c825d4dcSJohn Baldwin 		as->count++;
359c825d4dcSJohn Baldwin }
360c825d4dcSJohn Baldwin 
361c825d4dcSJohn Baldwin static int
3622dd1bdf1SJustin Hibbits pcib_alloc_nonisa_ranges(struct pcib_softc *sc, rman_res_t start, rman_res_t end)
363c825d4dcSJohn Baldwin {
364c825d4dcSJohn Baldwin 	struct alloc_state as;
365c825d4dcSJohn Baldwin 	int i, new_count;
366c825d4dcSJohn Baldwin 
367c825d4dcSJohn Baldwin 	/* First, see how many ranges we need. */
368c825d4dcSJohn Baldwin 	new_count = 0;
369c825d4dcSJohn Baldwin 	pcib_walk_nonisa_ranges(start, end, count_ranges, &new_count);
370c825d4dcSJohn Baldwin 
371c825d4dcSJohn Baldwin 	/* Second, allocate the ranges. */
372c825d4dcSJohn Baldwin 	as.res = malloc(sizeof(struct resource *) * new_count, M_DEVBUF,
373c825d4dcSJohn Baldwin 	    M_WAITOK);
374c825d4dcSJohn Baldwin 	as.sc = sc;
375c825d4dcSJohn Baldwin 	as.count = 0;
376c825d4dcSJohn Baldwin 	as.error = 0;
377c825d4dcSJohn Baldwin 	pcib_walk_nonisa_ranges(start, end, alloc_ranges, &as);
378c825d4dcSJohn Baldwin 	if (as.error != 0) {
379c825d4dcSJohn Baldwin 		for (i = 0; i < as.count; i++)
380c825d4dcSJohn Baldwin 			bus_release_resource(sc->dev, SYS_RES_IOPORT,
381c825d4dcSJohn Baldwin 			    sc->io.reg, as.res[i]);
382c825d4dcSJohn Baldwin 		free(as.res, M_DEVBUF);
383c825d4dcSJohn Baldwin 		return (as.error);
384c825d4dcSJohn Baldwin 	}
385c825d4dcSJohn Baldwin 	KASSERT(as.count == new_count, ("%s: count mismatch", __func__));
386c825d4dcSJohn Baldwin 
387c825d4dcSJohn Baldwin 	/* Third, add the ranges to the window. */
388c825d4dcSJohn Baldwin 	pcib_add_window_resources(&sc->io, as.res, as.count);
389c825d4dcSJohn Baldwin 	free(as.res, M_DEVBUF);
390c825d4dcSJohn Baldwin 	return (0);
391c825d4dcSJohn Baldwin }
392c825d4dcSJohn Baldwin 
39383c41143SJohn Baldwin static void
39483c41143SJohn Baldwin pcib_alloc_window(struct pcib_softc *sc, struct pcib_window *w, int type,
39583c41143SJohn Baldwin     int flags, pci_addr_t max_address)
39683c41143SJohn Baldwin {
397c825d4dcSJohn Baldwin 	struct resource *res;
39883c41143SJohn Baldwin 	char buf[64];
39983c41143SJohn Baldwin 	int error, rid;
40083c41143SJohn Baldwin 
40189977ce2SJustin Hibbits 	if (max_address != (rman_res_t)max_address)
402534ccd7bSJustin Hibbits 		max_address = ~0;
40383c41143SJohn Baldwin 	w->rman.rm_start = 0;
40483c41143SJohn Baldwin 	w->rman.rm_end = max_address;
40583c41143SJohn Baldwin 	w->rman.rm_type = RMAN_ARRAY;
40683c41143SJohn Baldwin 	snprintf(buf, sizeof(buf), "%s %s window",
40783c41143SJohn Baldwin 	    device_get_nameunit(sc->dev), w->name);
40883c41143SJohn Baldwin 	w->rman.rm_descr = strdup(buf, M_DEVBUF);
40983c41143SJohn Baldwin 	error = rman_init(&w->rman);
41083c41143SJohn Baldwin 	if (error)
41183c41143SJohn Baldwin 		panic("Failed to initialize %s %s rman",
41283c41143SJohn Baldwin 		    device_get_nameunit(sc->dev), w->name);
41383c41143SJohn Baldwin 
41483c41143SJohn Baldwin 	if (!pcib_is_window_open(w))
41583c41143SJohn Baldwin 		return;
41683c41143SJohn Baldwin 
41783c41143SJohn Baldwin 	if (w->base > max_address || w->limit > max_address) {
41883c41143SJohn Baldwin 		device_printf(sc->dev,
41983c41143SJohn Baldwin 		    "initial %s window has too many bits, ignoring\n", w->name);
42083c41143SJohn Baldwin 		return;
42183c41143SJohn Baldwin 	}
422c825d4dcSJohn Baldwin 	if (type == SYS_RES_IOPORT && sc->bridgectl & PCIB_BCR_ISA_ENABLE)
423c825d4dcSJohn Baldwin 		(void)pcib_alloc_nonisa_ranges(sc, w->base, w->limit);
424c825d4dcSJohn Baldwin 	else {
42583c41143SJohn Baldwin 		rid = w->reg;
426c825d4dcSJohn Baldwin 		res = bus_alloc_resource(sc->dev, type, &rid, w->base, w->limit,
42783c41143SJohn Baldwin 		    w->limit - w->base + 1, flags);
428c825d4dcSJohn Baldwin 		if (res != NULL)
429c825d4dcSJohn Baldwin 			pcib_add_window_resources(w, &res, 1);
430c825d4dcSJohn Baldwin 	}
43183c41143SJohn Baldwin 	if (w->res == NULL) {
43283c41143SJohn Baldwin 		device_printf(sc->dev,
43383c41143SJohn Baldwin 		    "failed to allocate initial %s window: %#jx-%#jx\n",
43483c41143SJohn Baldwin 		    w->name, (uintmax_t)w->base, (uintmax_t)w->limit);
43583c41143SJohn Baldwin 		w->base = max_address;
43683c41143SJohn Baldwin 		w->limit = 0;
43783c41143SJohn Baldwin 		pcib_write_windows(sc, w->mask);
43883c41143SJohn Baldwin 		return;
43983c41143SJohn Baldwin 	}
44083c41143SJohn Baldwin 	pcib_activate_window(sc, type);
44183c41143SJohn Baldwin }
44283c41143SJohn Baldwin 
44383c41143SJohn Baldwin /*
44483c41143SJohn Baldwin  * Initialize I/O windows.
44583c41143SJohn Baldwin  */
44683c41143SJohn Baldwin static void
44783c41143SJohn Baldwin pcib_probe_windows(struct pcib_softc *sc)
44883c41143SJohn Baldwin {
44983c41143SJohn Baldwin 	pci_addr_t max;
45083c41143SJohn Baldwin 	device_t dev;
45183c41143SJohn Baldwin 	uint32_t val;
45283c41143SJohn Baldwin 
45383c41143SJohn Baldwin 	dev = sc->dev;
45483c41143SJohn Baldwin 
4550070c94bSJohn Baldwin 	if (pci_clear_pcib) {
456809923caSJustin Hibbits 		pcib_bridge_init(dev);
4570070c94bSJohn Baldwin 	}
4580070c94bSJohn Baldwin 
45983c41143SJohn Baldwin 	/* Determine if the I/O port window is implemented. */
46083c41143SJohn Baldwin 	val = pci_read_config(dev, PCIR_IOBASEL_1, 1);
46183c41143SJohn Baldwin 	if (val == 0) {
46283c41143SJohn Baldwin 		/*
46383c41143SJohn Baldwin 		 * If 'val' is zero, then only 16-bits of I/O space
46483c41143SJohn Baldwin 		 * are supported.
46583c41143SJohn Baldwin 		 */
46683c41143SJohn Baldwin 		pci_write_config(dev, PCIR_IOBASEL_1, 0xff, 1);
46783c41143SJohn Baldwin 		if (pci_read_config(dev, PCIR_IOBASEL_1, 1) != 0) {
46883c41143SJohn Baldwin 			sc->io.valid = 1;
46983c41143SJohn Baldwin 			pci_write_config(dev, PCIR_IOBASEL_1, 0, 1);
47083c41143SJohn Baldwin 		}
47183c41143SJohn Baldwin 	} else
47283c41143SJohn Baldwin 		sc->io.valid = 1;
47383c41143SJohn Baldwin 
47483c41143SJohn Baldwin 	/* Read the existing I/O port window. */
47583c41143SJohn Baldwin 	if (sc->io.valid) {
47683c41143SJohn Baldwin 		sc->io.reg = PCIR_IOBASEL_1;
47783c41143SJohn Baldwin 		sc->io.step = 12;
47883c41143SJohn Baldwin 		sc->io.mask = WIN_IO;
47983c41143SJohn Baldwin 		sc->io.name = "I/O port";
48083c41143SJohn Baldwin 		if ((val & PCIM_BRIO_MASK) == PCIM_BRIO_32) {
48183c41143SJohn Baldwin 			sc->io.base = PCI_PPBIOBASE(
48283c41143SJohn Baldwin 			    pci_read_config(dev, PCIR_IOBASEH_1, 2), val);
48383c41143SJohn Baldwin 			sc->io.limit = PCI_PPBIOLIMIT(
48483c41143SJohn Baldwin 			    pci_read_config(dev, PCIR_IOLIMITH_1, 2),
48583c41143SJohn Baldwin 			    pci_read_config(dev, PCIR_IOLIMITL_1, 1));
48683c41143SJohn Baldwin 			max = 0xffffffff;
48783c41143SJohn Baldwin 		} else {
48883c41143SJohn Baldwin 			sc->io.base = PCI_PPBIOBASE(0, val);
48983c41143SJohn Baldwin 			sc->io.limit = PCI_PPBIOLIMIT(0,
49083c41143SJohn Baldwin 			    pci_read_config(dev, PCIR_IOLIMITL_1, 1));
49183c41143SJohn Baldwin 			max = 0xffff;
49283c41143SJohn Baldwin 		}
49383c41143SJohn Baldwin 		pcib_alloc_window(sc, &sc->io, SYS_RES_IOPORT, 0, max);
49483c41143SJohn Baldwin 	}
49583c41143SJohn Baldwin 
49683c41143SJohn Baldwin 	/* Read the existing memory window. */
49783c41143SJohn Baldwin 	sc->mem.valid = 1;
49883c41143SJohn Baldwin 	sc->mem.reg = PCIR_MEMBASE_1;
49983c41143SJohn Baldwin 	sc->mem.step = 20;
50083c41143SJohn Baldwin 	sc->mem.mask = WIN_MEM;
50183c41143SJohn Baldwin 	sc->mem.name = "memory";
50283c41143SJohn Baldwin 	sc->mem.base = PCI_PPBMEMBASE(0,
50383c41143SJohn Baldwin 	    pci_read_config(dev, PCIR_MEMBASE_1, 2));
50483c41143SJohn Baldwin 	sc->mem.limit = PCI_PPBMEMLIMIT(0,
50583c41143SJohn Baldwin 	    pci_read_config(dev, PCIR_MEMLIMIT_1, 2));
50683c41143SJohn Baldwin 	pcib_alloc_window(sc, &sc->mem, SYS_RES_MEMORY, 0, 0xffffffff);
50783c41143SJohn Baldwin 
50883c41143SJohn Baldwin 	/* Determine if the prefetchable memory window is implemented. */
50983c41143SJohn Baldwin 	val = pci_read_config(dev, PCIR_PMBASEL_1, 2);
51083c41143SJohn Baldwin 	if (val == 0) {
51183c41143SJohn Baldwin 		/*
51283c41143SJohn Baldwin 		 * If 'val' is zero, then only 32-bits of memory space
51383c41143SJohn Baldwin 		 * are supported.
51483c41143SJohn Baldwin 		 */
51583c41143SJohn Baldwin 		pci_write_config(dev, PCIR_PMBASEL_1, 0xffff, 2);
51683c41143SJohn Baldwin 		if (pci_read_config(dev, PCIR_PMBASEL_1, 2) != 0) {
51783c41143SJohn Baldwin 			sc->pmem.valid = 1;
51883c41143SJohn Baldwin 			pci_write_config(dev, PCIR_PMBASEL_1, 0, 2);
51983c41143SJohn Baldwin 		}
52083c41143SJohn Baldwin 	} else
52183c41143SJohn Baldwin 		sc->pmem.valid = 1;
52283c41143SJohn Baldwin 
52383c41143SJohn Baldwin 	/* Read the existing prefetchable memory window. */
52483c41143SJohn Baldwin 	if (sc->pmem.valid) {
52583c41143SJohn Baldwin 		sc->pmem.reg = PCIR_PMBASEL_1;
52683c41143SJohn Baldwin 		sc->pmem.step = 20;
52783c41143SJohn Baldwin 		sc->pmem.mask = WIN_PMEM;
52883c41143SJohn Baldwin 		sc->pmem.name = "prefetch";
52983c41143SJohn Baldwin 		if ((val & PCIM_BRPM_MASK) == PCIM_BRPM_64) {
53083c41143SJohn Baldwin 			sc->pmem.base = PCI_PPBMEMBASE(
53183c41143SJohn Baldwin 			    pci_read_config(dev, PCIR_PMBASEH_1, 4), val);
53283c41143SJohn Baldwin 			sc->pmem.limit = PCI_PPBMEMLIMIT(
53383c41143SJohn Baldwin 			    pci_read_config(dev, PCIR_PMLIMITH_1, 4),
53483c41143SJohn Baldwin 			    pci_read_config(dev, PCIR_PMLIMITL_1, 2));
53583c41143SJohn Baldwin 			max = 0xffffffffffffffff;
53683c41143SJohn Baldwin 		} else {
53783c41143SJohn Baldwin 			sc->pmem.base = PCI_PPBMEMBASE(0, val);
53883c41143SJohn Baldwin 			sc->pmem.limit = PCI_PPBMEMLIMIT(0,
53983c41143SJohn Baldwin 			    pci_read_config(dev, PCIR_PMLIMITL_1, 2));
54083c41143SJohn Baldwin 			max = 0xffffffff;
54183c41143SJohn Baldwin 		}
54283c41143SJohn Baldwin 		pcib_alloc_window(sc, &sc->pmem, SYS_RES_MEMORY,
54383c41143SJohn Baldwin 		    RF_PREFETCHABLE, max);
54483c41143SJohn Baldwin 	}
54583c41143SJohn Baldwin }
54683c41143SJohn Baldwin 
5476f33eaa5SJohn Baldwin static void
5486f33eaa5SJohn Baldwin pcib_release_window(struct pcib_softc *sc, struct pcib_window *w, int type)
5496f33eaa5SJohn Baldwin {
5506f33eaa5SJohn Baldwin 	device_t dev;
5516f33eaa5SJohn Baldwin 	int error, i;
5526f33eaa5SJohn Baldwin 
5536f33eaa5SJohn Baldwin 	if (!w->valid)
5546f33eaa5SJohn Baldwin 		return;
5556f33eaa5SJohn Baldwin 
5566f33eaa5SJohn Baldwin 	dev = sc->dev;
5576f33eaa5SJohn Baldwin 	error = rman_fini(&w->rman);
5586f33eaa5SJohn Baldwin 	if (error) {
5596f33eaa5SJohn Baldwin 		device_printf(dev, "failed to release %s rman\n", w->name);
5606f33eaa5SJohn Baldwin 		return;
5616f33eaa5SJohn Baldwin 	}
5626f33eaa5SJohn Baldwin 	free(__DECONST(char *, w->rman.rm_descr), M_DEVBUF);
5636f33eaa5SJohn Baldwin 
5646f33eaa5SJohn Baldwin 	for (i = 0; i < w->count; i++) {
5656f33eaa5SJohn Baldwin 		error = bus_free_resource(dev, type, w->res[i]);
5666f33eaa5SJohn Baldwin 		if (error)
5676f33eaa5SJohn Baldwin 			device_printf(dev,
5686f33eaa5SJohn Baldwin 			    "failed to release %s resource: %d\n", w->name,
5696f33eaa5SJohn Baldwin 			    error);
5706f33eaa5SJohn Baldwin 	}
5716f33eaa5SJohn Baldwin 	free(w->res, M_DEVBUF);
5726f33eaa5SJohn Baldwin }
5736f33eaa5SJohn Baldwin 
5746f33eaa5SJohn Baldwin static void
5756f33eaa5SJohn Baldwin pcib_free_windows(struct pcib_softc *sc)
5766f33eaa5SJohn Baldwin {
5776f33eaa5SJohn Baldwin 
5786f33eaa5SJohn Baldwin 	pcib_release_window(sc, &sc->pmem, SYS_RES_MEMORY);
5796f33eaa5SJohn Baldwin 	pcib_release_window(sc, &sc->mem, SYS_RES_MEMORY);
5806f33eaa5SJohn Baldwin 	pcib_release_window(sc, &sc->io, SYS_RES_IOPORT);
5816f33eaa5SJohn Baldwin }
5826f33eaa5SJohn Baldwin 
5834edef187SJohn Baldwin #ifdef PCI_RES_BUS
5844edef187SJohn Baldwin /*
5854edef187SJohn Baldwin  * Allocate a suitable secondary bus for this bridge if needed and
5864edef187SJohn Baldwin  * initialize the resource manager for the secondary bus range.  Note
5874edef187SJohn Baldwin  * that the minimum count is a desired value and this may allocate a
5884edef187SJohn Baldwin  * smaller range.
5894edef187SJohn Baldwin  */
5904edef187SJohn Baldwin void
5914edef187SJohn Baldwin pcib_setup_secbus(device_t dev, struct pcib_secbus *bus, int min_count)
5924edef187SJohn Baldwin {
5934edef187SJohn Baldwin 	char buf[64];
594ad6f36f8SJohn Baldwin 	int error, rid, sec_reg;
5954edef187SJohn Baldwin 
5964edef187SJohn Baldwin 	switch (pci_read_config(dev, PCIR_HDRTYPE, 1) & PCIM_HDRTYPE) {
5974edef187SJohn Baldwin 	case PCIM_HDRTYPE_BRIDGE:
598ad6f36f8SJohn Baldwin 		sec_reg = PCIR_SECBUS_1;
5994edef187SJohn Baldwin 		bus->sub_reg = PCIR_SUBBUS_1;
6004edef187SJohn Baldwin 		break;
6014edef187SJohn Baldwin 	case PCIM_HDRTYPE_CARDBUS:
602ad6f36f8SJohn Baldwin 		sec_reg = PCIR_SECBUS_2;
6034edef187SJohn Baldwin 		bus->sub_reg = PCIR_SUBBUS_2;
6044edef187SJohn Baldwin 		break;
6054edef187SJohn Baldwin 	default:
6064edef187SJohn Baldwin 		panic("not a PCI bridge");
6074edef187SJohn Baldwin 	}
608ad6f36f8SJohn Baldwin 	bus->sec = pci_read_config(dev, sec_reg, 1);
609ad6f36f8SJohn Baldwin 	bus->sub = pci_read_config(dev, bus->sub_reg, 1);
6104edef187SJohn Baldwin 	bus->dev = dev;
6114edef187SJohn Baldwin 	bus->rman.rm_start = 0;
6124edef187SJohn Baldwin 	bus->rman.rm_end = PCI_BUSMAX;
6134edef187SJohn Baldwin 	bus->rman.rm_type = RMAN_ARRAY;
6144edef187SJohn Baldwin 	snprintf(buf, sizeof(buf), "%s bus numbers", device_get_nameunit(dev));
6154edef187SJohn Baldwin 	bus->rman.rm_descr = strdup(buf, M_DEVBUF);
6164edef187SJohn Baldwin 	error = rman_init(&bus->rman);
6174edef187SJohn Baldwin 	if (error)
6184edef187SJohn Baldwin 		panic("Failed to initialize %s bus number rman",
6194edef187SJohn Baldwin 		    device_get_nameunit(dev));
6204edef187SJohn Baldwin 
6214edef187SJohn Baldwin 	/*
6224edef187SJohn Baldwin 	 * Allocate a bus range.  This will return an existing bus range
6234edef187SJohn Baldwin 	 * if one exists, or a new bus range if one does not.
6244edef187SJohn Baldwin 	 */
6254edef187SJohn Baldwin 	rid = 0;
626c47476d7SJustin Hibbits 	bus->res = bus_alloc_resource_anywhere(dev, PCI_RES_BUS, &rid,
6274edef187SJohn Baldwin 	    min_count, 0);
6284edef187SJohn Baldwin 	if (bus->res == NULL) {
6294edef187SJohn Baldwin 		/*
6304edef187SJohn Baldwin 		 * Fall back to just allocating a range of a single bus
6314edef187SJohn Baldwin 		 * number.
6324edef187SJohn Baldwin 		 */
633c47476d7SJustin Hibbits 		bus->res = bus_alloc_resource_anywhere(dev, PCI_RES_BUS, &rid,
6344edef187SJohn Baldwin 		    1, 0);
6354edef187SJohn Baldwin 	} else if (rman_get_size(bus->res) < min_count)
6364edef187SJohn Baldwin 		/*
6374edef187SJohn Baldwin 		 * Attempt to grow the existing range to satisfy the
6384edef187SJohn Baldwin 		 * minimum desired count.
6394edef187SJohn Baldwin 		 */
6404edef187SJohn Baldwin 		(void)bus_adjust_resource(dev, PCI_RES_BUS, bus->res,
6414edef187SJohn Baldwin 		    rman_get_start(bus->res), rman_get_start(bus->res) +
6424edef187SJohn Baldwin 		    min_count - 1);
6434edef187SJohn Baldwin 
6444edef187SJohn Baldwin 	/*
6454edef187SJohn Baldwin 	 * Add the initial resource to the rman.
6464edef187SJohn Baldwin 	 */
6474edef187SJohn Baldwin 	if (bus->res != NULL) {
6484edef187SJohn Baldwin 		error = rman_manage_region(&bus->rman, rman_get_start(bus->res),
6494edef187SJohn Baldwin 		    rman_get_end(bus->res));
6504edef187SJohn Baldwin 		if (error)
6514edef187SJohn Baldwin 			panic("Failed to add resource to rman");
6524edef187SJohn Baldwin 		bus->sec = rman_get_start(bus->res);
6534edef187SJohn Baldwin 		bus->sub = rman_get_end(bus->res);
6544edef187SJohn Baldwin 	}
6554edef187SJohn Baldwin }
6564edef187SJohn Baldwin 
6576f33eaa5SJohn Baldwin void
6586f33eaa5SJohn Baldwin pcib_free_secbus(device_t dev, struct pcib_secbus *bus)
6596f33eaa5SJohn Baldwin {
6606f33eaa5SJohn Baldwin 	int error;
6616f33eaa5SJohn Baldwin 
6626f33eaa5SJohn Baldwin 	error = rman_fini(&bus->rman);
6636f33eaa5SJohn Baldwin 	if (error) {
6646f33eaa5SJohn Baldwin 		device_printf(dev, "failed to release bus number rman\n");
6656f33eaa5SJohn Baldwin 		return;
6666f33eaa5SJohn Baldwin 	}
6676f33eaa5SJohn Baldwin 	free(__DECONST(char *, bus->rman.rm_descr), M_DEVBUF);
6686f33eaa5SJohn Baldwin 
6696f33eaa5SJohn Baldwin 	error = bus_free_resource(dev, PCI_RES_BUS, bus->res);
6706f33eaa5SJohn Baldwin 	if (error)
6716f33eaa5SJohn Baldwin 		device_printf(dev,
6726f33eaa5SJohn Baldwin 		    "failed to release bus numbers resource: %d\n", error);
6736f33eaa5SJohn Baldwin }
6746f33eaa5SJohn Baldwin 
6754edef187SJohn Baldwin static struct resource *
6764edef187SJohn Baldwin pcib_suballoc_bus(struct pcib_secbus *bus, device_t child, int *rid,
6772dd1bdf1SJustin Hibbits     rman_res_t start, rman_res_t end, rman_res_t count, u_int flags)
6784edef187SJohn Baldwin {
6794edef187SJohn Baldwin 	struct resource *res;
6804edef187SJohn Baldwin 
6814edef187SJohn Baldwin 	res = rman_reserve_resource(&bus->rman, start, end, count, flags,
6824edef187SJohn Baldwin 	    child);
6834edef187SJohn Baldwin 	if (res == NULL)
6844edef187SJohn Baldwin 		return (NULL);
6854edef187SJohn Baldwin 
6864edef187SJohn Baldwin 	if (bootverbose)
6874edef187SJohn Baldwin 		device_printf(bus->dev,
688da1b038aSJustin Hibbits 		    "allocated bus range (%ju-%ju) for rid %d of %s\n",
6894edef187SJohn Baldwin 		    rman_get_start(res), rman_get_end(res), *rid,
6904edef187SJohn Baldwin 		    pcib_child_name(child));
6914edef187SJohn Baldwin 	rman_set_rid(res, *rid);
6924edef187SJohn Baldwin 	return (res);
6934edef187SJohn Baldwin }
6944edef187SJohn Baldwin 
6954edef187SJohn Baldwin /*
6964edef187SJohn Baldwin  * Attempt to grow the secondary bus range.  This is much simpler than
6974edef187SJohn Baldwin  * for I/O windows as the range can only be grown by increasing
6984edef187SJohn Baldwin  * subbus.
6994edef187SJohn Baldwin  */
7004edef187SJohn Baldwin static int
7012dd1bdf1SJustin Hibbits pcib_grow_subbus(struct pcib_secbus *bus, rman_res_t new_end)
7024edef187SJohn Baldwin {
7032dd1bdf1SJustin Hibbits 	rman_res_t old_end;
7044edef187SJohn Baldwin 	int error;
7054edef187SJohn Baldwin 
7064edef187SJohn Baldwin 	old_end = rman_get_end(bus->res);
7074edef187SJohn Baldwin 	KASSERT(new_end > old_end, ("attempt to shrink subbus"));
7084edef187SJohn Baldwin 	error = bus_adjust_resource(bus->dev, PCI_RES_BUS, bus->res,
7094edef187SJohn Baldwin 	    rman_get_start(bus->res), new_end);
7104edef187SJohn Baldwin 	if (error)
7114edef187SJohn Baldwin 		return (error);
7124edef187SJohn Baldwin 	if (bootverbose)
713da1b038aSJustin Hibbits 		device_printf(bus->dev, "grew bus range to %ju-%ju\n",
7144edef187SJohn Baldwin 		    rman_get_start(bus->res), rman_get_end(bus->res));
7154edef187SJohn Baldwin 	error = rman_manage_region(&bus->rman, old_end + 1,
7164edef187SJohn Baldwin 	    rman_get_end(bus->res));
7174edef187SJohn Baldwin 	if (error)
7184edef187SJohn Baldwin 		panic("Failed to add resource to rman");
7194edef187SJohn Baldwin 	bus->sub = rman_get_end(bus->res);
7204edef187SJohn Baldwin 	pci_write_config(bus->dev, bus->sub_reg, bus->sub, 1);
7214edef187SJohn Baldwin 	return (0);
7224edef187SJohn Baldwin }
7234edef187SJohn Baldwin 
7244edef187SJohn Baldwin struct resource *
7254edef187SJohn Baldwin pcib_alloc_subbus(struct pcib_secbus *bus, device_t child, int *rid,
7262dd1bdf1SJustin Hibbits     rman_res_t start, rman_res_t end, rman_res_t count, u_int flags)
7274edef187SJohn Baldwin {
7284edef187SJohn Baldwin 	struct resource *res;
7292dd1bdf1SJustin Hibbits 	rman_res_t start_free, end_free, new_end;
7304edef187SJohn Baldwin 
7314edef187SJohn Baldwin 	/*
7324edef187SJohn Baldwin 	 * First, see if the request can be satisified by the existing
7334edef187SJohn Baldwin 	 * bus range.
7344edef187SJohn Baldwin 	 */
7354edef187SJohn Baldwin 	res = pcib_suballoc_bus(bus, child, rid, start, end, count, flags);
7364edef187SJohn Baldwin 	if (res != NULL)
7374edef187SJohn Baldwin 		return (res);
7384edef187SJohn Baldwin 
7394edef187SJohn Baldwin 	/*
7404edef187SJohn Baldwin 	 * Figure out a range to grow the bus range.  First, find the
7414edef187SJohn Baldwin 	 * first bus number after the last allocated bus in the rman and
7424edef187SJohn Baldwin 	 * enforce that as a minimum starting point for the range.
7434edef187SJohn Baldwin 	 */
7444edef187SJohn Baldwin 	if (rman_last_free_region(&bus->rman, &start_free, &end_free) != 0 ||
7454edef187SJohn Baldwin 	    end_free != bus->sub)
7464edef187SJohn Baldwin 		start_free = bus->sub + 1;
7474edef187SJohn Baldwin 	if (start_free < start)
7484edef187SJohn Baldwin 		start_free = start;
7494edef187SJohn Baldwin 	new_end = start_free + count - 1;
7504edef187SJohn Baldwin 
7514edef187SJohn Baldwin 	/*
7524edef187SJohn Baldwin 	 * See if this new range would satisfy the request if it
7534edef187SJohn Baldwin 	 * succeeds.
7544edef187SJohn Baldwin 	 */
7554edef187SJohn Baldwin 	if (new_end > end)
7564edef187SJohn Baldwin 		return (NULL);
7574edef187SJohn Baldwin 
7584edef187SJohn Baldwin 	/* Finally, attempt to grow the existing resource. */
7594edef187SJohn Baldwin 	if (bootverbose) {
7604edef187SJohn Baldwin 		device_printf(bus->dev,
761da1b038aSJustin Hibbits 		    "attempting to grow bus range for %ju buses\n", count);
762da1b038aSJustin Hibbits 		printf("\tback candidate range: %ju-%ju\n", start_free,
7634edef187SJohn Baldwin 		    new_end);
7644edef187SJohn Baldwin 	}
7654edef187SJohn Baldwin 	if (pcib_grow_subbus(bus, new_end) == 0)
7664edef187SJohn Baldwin 		return (pcib_suballoc_bus(bus, child, rid, start, end, count,
7674edef187SJohn Baldwin 		    flags));
7684edef187SJohn Baldwin 	return (NULL);
7694edef187SJohn Baldwin }
7704edef187SJohn Baldwin #endif
7714edef187SJohn Baldwin 
77283c41143SJohn Baldwin #else
77383c41143SJohn Baldwin 
774bb0d0a8eSMike Smith /*
775b0a2d4b8SWarner Losh  * Is the prefetch window open (eg, can we allocate memory in it?)
776b0a2d4b8SWarner Losh  */
777b0a2d4b8SWarner Losh static int
778b0a2d4b8SWarner Losh pcib_is_prefetch_open(struct pcib_softc *sc)
779b0a2d4b8SWarner Losh {
780b0a2d4b8SWarner Losh 	return (sc->pmembase > 0 && sc->pmembase < sc->pmemlimit);
781b0a2d4b8SWarner Losh }
782b0a2d4b8SWarner Losh 
783b0a2d4b8SWarner Losh /*
784b0a2d4b8SWarner Losh  * Is the nonprefetch window open (eg, can we allocate memory in it?)
785b0a2d4b8SWarner Losh  */
786b0a2d4b8SWarner Losh static int
787b0a2d4b8SWarner Losh pcib_is_nonprefetch_open(struct pcib_softc *sc)
788b0a2d4b8SWarner Losh {
789b0a2d4b8SWarner Losh 	return (sc->membase > 0 && sc->membase < sc->memlimit);
790b0a2d4b8SWarner Losh }
791b0a2d4b8SWarner Losh 
792b0a2d4b8SWarner Losh /*
793b0a2d4b8SWarner Losh  * Is the io window open (eg, can we allocate ports in it?)
794b0a2d4b8SWarner Losh  */
795b0a2d4b8SWarner Losh static int
796b0a2d4b8SWarner Losh pcib_is_io_open(struct pcib_softc *sc)
797b0a2d4b8SWarner Losh {
798b0a2d4b8SWarner Losh 	return (sc->iobase > 0 && sc->iobase < sc->iolimit);
799b0a2d4b8SWarner Losh }
800b0a2d4b8SWarner Losh 
801b0a2d4b8SWarner Losh /*
802e36af292SJung-uk Kim  * Get current I/O decode.
803e36af292SJung-uk Kim  */
804e36af292SJung-uk Kim static void
805e36af292SJung-uk Kim pcib_get_io_decode(struct pcib_softc *sc)
806e36af292SJung-uk Kim {
807e36af292SJung-uk Kim 	device_t	dev;
808e36af292SJung-uk Kim 	uint32_t	iolow;
809e36af292SJung-uk Kim 
810e36af292SJung-uk Kim 	dev = sc->dev;
811e36af292SJung-uk Kim 
812e36af292SJung-uk Kim 	iolow = pci_read_config(dev, PCIR_IOBASEL_1, 1);
813e36af292SJung-uk Kim 	if ((iolow & PCIM_BRIO_MASK) == PCIM_BRIO_32)
814e36af292SJung-uk Kim 		sc->iobase = PCI_PPBIOBASE(
815e36af292SJung-uk Kim 		    pci_read_config(dev, PCIR_IOBASEH_1, 2), iolow);
816e36af292SJung-uk Kim 	else
817e36af292SJung-uk Kim 		sc->iobase = PCI_PPBIOBASE(0, iolow);
818e36af292SJung-uk Kim 
819e36af292SJung-uk Kim 	iolow = pci_read_config(dev, PCIR_IOLIMITL_1, 1);
820e36af292SJung-uk Kim 	if ((iolow & PCIM_BRIO_MASK) == PCIM_BRIO_32)
821e36af292SJung-uk Kim 		sc->iolimit = PCI_PPBIOLIMIT(
822e36af292SJung-uk Kim 		    pci_read_config(dev, PCIR_IOLIMITH_1, 2), iolow);
823e36af292SJung-uk Kim 	else
824e36af292SJung-uk Kim 		sc->iolimit = PCI_PPBIOLIMIT(0, iolow);
825e36af292SJung-uk Kim }
826e36af292SJung-uk Kim 
827e36af292SJung-uk Kim /*
828e36af292SJung-uk Kim  * Get current memory decode.
829e36af292SJung-uk Kim  */
830e36af292SJung-uk Kim static void
831e36af292SJung-uk Kim pcib_get_mem_decode(struct pcib_softc *sc)
832e36af292SJung-uk Kim {
833e36af292SJung-uk Kim 	device_t	dev;
834e36af292SJung-uk Kim 	pci_addr_t	pmemlow;
835e36af292SJung-uk Kim 
836e36af292SJung-uk Kim 	dev = sc->dev;
837e36af292SJung-uk Kim 
838e36af292SJung-uk Kim 	sc->membase = PCI_PPBMEMBASE(0,
839e36af292SJung-uk Kim 	    pci_read_config(dev, PCIR_MEMBASE_1, 2));
840e36af292SJung-uk Kim 	sc->memlimit = PCI_PPBMEMLIMIT(0,
841e36af292SJung-uk Kim 	    pci_read_config(dev, PCIR_MEMLIMIT_1, 2));
842e36af292SJung-uk Kim 
843e36af292SJung-uk Kim 	pmemlow = pci_read_config(dev, PCIR_PMBASEL_1, 2);
844e36af292SJung-uk Kim 	if ((pmemlow & PCIM_BRPM_MASK) == PCIM_BRPM_64)
845e36af292SJung-uk Kim 		sc->pmembase = PCI_PPBMEMBASE(
846e36af292SJung-uk Kim 		    pci_read_config(dev, PCIR_PMBASEH_1, 4), pmemlow);
847e36af292SJung-uk Kim 	else
848e36af292SJung-uk Kim 		sc->pmembase = PCI_PPBMEMBASE(0, pmemlow);
849e36af292SJung-uk Kim 
850e36af292SJung-uk Kim 	pmemlow = pci_read_config(dev, PCIR_PMLIMITL_1, 2);
851e36af292SJung-uk Kim 	if ((pmemlow & PCIM_BRPM_MASK) == PCIM_BRPM_64)
852e36af292SJung-uk Kim 		sc->pmemlimit = PCI_PPBMEMLIMIT(
853e36af292SJung-uk Kim 		    pci_read_config(dev, PCIR_PMLIMITH_1, 4), pmemlow);
854e36af292SJung-uk Kim 	else
855e36af292SJung-uk Kim 		sc->pmemlimit = PCI_PPBMEMLIMIT(0, pmemlow);
856e36af292SJung-uk Kim }
857e36af292SJung-uk Kim 
858e36af292SJung-uk Kim /*
859e36af292SJung-uk Kim  * Restore previous I/O decode.
860e36af292SJung-uk Kim  */
861e36af292SJung-uk Kim static void
862e36af292SJung-uk Kim pcib_set_io_decode(struct pcib_softc *sc)
863e36af292SJung-uk Kim {
864e36af292SJung-uk Kim 	device_t	dev;
865e36af292SJung-uk Kim 	uint32_t	iohi;
866e36af292SJung-uk Kim 
867e36af292SJung-uk Kim 	dev = sc->dev;
868e36af292SJung-uk Kim 
869e36af292SJung-uk Kim 	iohi = sc->iobase >> 16;
870e36af292SJung-uk Kim 	if (iohi > 0)
871e36af292SJung-uk Kim 		pci_write_config(dev, PCIR_IOBASEH_1, iohi, 2);
872e36af292SJung-uk Kim 	pci_write_config(dev, PCIR_IOBASEL_1, sc->iobase >> 8, 1);
873e36af292SJung-uk Kim 
874e36af292SJung-uk Kim 	iohi = sc->iolimit >> 16;
875e36af292SJung-uk Kim 	if (iohi > 0)
876e36af292SJung-uk Kim 		pci_write_config(dev, PCIR_IOLIMITH_1, iohi, 2);
877e36af292SJung-uk Kim 	pci_write_config(dev, PCIR_IOLIMITL_1, sc->iolimit >> 8, 1);
878e36af292SJung-uk Kim }
879e36af292SJung-uk Kim 
880e36af292SJung-uk Kim /*
881e36af292SJung-uk Kim  * Restore previous memory decode.
882e36af292SJung-uk Kim  */
883e36af292SJung-uk Kim static void
884e36af292SJung-uk Kim pcib_set_mem_decode(struct pcib_softc *sc)
885e36af292SJung-uk Kim {
886e36af292SJung-uk Kim 	device_t	dev;
887e36af292SJung-uk Kim 	pci_addr_t	pmemhi;
888e36af292SJung-uk Kim 
889e36af292SJung-uk Kim 	dev = sc->dev;
890e36af292SJung-uk Kim 
891e36af292SJung-uk Kim 	pci_write_config(dev, PCIR_MEMBASE_1, sc->membase >> 16, 2);
892e36af292SJung-uk Kim 	pci_write_config(dev, PCIR_MEMLIMIT_1, sc->memlimit >> 16, 2);
893e36af292SJung-uk Kim 
894e36af292SJung-uk Kim 	pmemhi = sc->pmembase >> 32;
895e36af292SJung-uk Kim 	if (pmemhi > 0)
896e36af292SJung-uk Kim 		pci_write_config(dev, PCIR_PMBASEH_1, pmemhi, 4);
897e36af292SJung-uk Kim 	pci_write_config(dev, PCIR_PMBASEL_1, sc->pmembase >> 16, 2);
898e36af292SJung-uk Kim 
899e36af292SJung-uk Kim 	pmemhi = sc->pmemlimit >> 32;
900e36af292SJung-uk Kim 	if (pmemhi > 0)
901e36af292SJung-uk Kim 		pci_write_config(dev, PCIR_PMLIMITH_1, pmemhi, 4);
902e36af292SJung-uk Kim 	pci_write_config(dev, PCIR_PMLIMITL_1, sc->pmemlimit >> 16, 2);
903e36af292SJung-uk Kim }
90483c41143SJohn Baldwin #endif
905e36af292SJung-uk Kim 
90682cb5c3bSJohn Baldwin #ifdef PCI_HP
90782cb5c3bSJohn Baldwin /*
90882cb5c3bSJohn Baldwin  * PCI-express HotPlug support.
90982cb5c3bSJohn Baldwin  */
910*25a57bd6SJohn Baldwin static int pci_enable_pcie_hp = 1;
911*25a57bd6SJohn Baldwin SYSCTL_INT(_hw_pci, OID_AUTO, enable_pcie_hp, CTLFLAG_RDTUN,
912*25a57bd6SJohn Baldwin     &pci_enable_pcie_hp, 0,
913*25a57bd6SJohn Baldwin     "Enable support for native PCI-express HotPlug.");
914*25a57bd6SJohn Baldwin 
91582cb5c3bSJohn Baldwin static void
91682cb5c3bSJohn Baldwin pcib_probe_hotplug(struct pcib_softc *sc)
91782cb5c3bSJohn Baldwin {
91882cb5c3bSJohn Baldwin 	device_t dev;
91982cb5c3bSJohn Baldwin 
920*25a57bd6SJohn Baldwin 	if (!pci_enable_pcie_hp)
921*25a57bd6SJohn Baldwin 		return;
922*25a57bd6SJohn Baldwin 
92382cb5c3bSJohn Baldwin 	dev = sc->dev;
92482cb5c3bSJohn Baldwin 	if (pci_find_cap(dev, PCIY_EXPRESS, NULL) != 0)
92582cb5c3bSJohn Baldwin 		return;
92682cb5c3bSJohn Baldwin 
92782cb5c3bSJohn Baldwin 	if (!(pcie_read_config(dev, PCIER_FLAGS, 2) & PCIEM_FLAGS_SLOT))
92882cb5c3bSJohn Baldwin 		return;
92982cb5c3bSJohn Baldwin 
93082cb5c3bSJohn Baldwin 	sc->pcie_link_cap = pcie_read_config(dev, PCIER_LINK_CAP, 4);
93182cb5c3bSJohn Baldwin 	sc->pcie_slot_cap = pcie_read_config(dev, PCIER_SLOT_CAP, 4);
93282cb5c3bSJohn Baldwin 
93382cb5c3bSJohn Baldwin 	if (sc->pcie_slot_cap & PCIEM_SLOT_CAP_HPC)
93482cb5c3bSJohn Baldwin 		sc->flags |= PCIB_HOTPLUG;
93582cb5c3bSJohn Baldwin }
93682cb5c3bSJohn Baldwin 
93782cb5c3bSJohn Baldwin /*
93882cb5c3bSJohn Baldwin  * Send a HotPlug command to the slot control register.  If this slot
93907454911SJohn Baldwin  * uses command completion interrupts and a previous command is still
94007454911SJohn Baldwin  * in progress, then the command is dropped.  Once the previous
94107454911SJohn Baldwin  * command completes or times out, pcib_pcie_hotplug_update() will be
94207454911SJohn Baldwin  * invoked to post a new command based on the slot's state at that
94307454911SJohn Baldwin  * time.
94482cb5c3bSJohn Baldwin  */
94582cb5c3bSJohn Baldwin static void
94682cb5c3bSJohn Baldwin pcib_pcie_hotplug_command(struct pcib_softc *sc, uint16_t val, uint16_t mask)
94782cb5c3bSJohn Baldwin {
94882cb5c3bSJohn Baldwin 	device_t dev;
94982cb5c3bSJohn Baldwin 	uint16_t ctl, new;
95082cb5c3bSJohn Baldwin 
95182cb5c3bSJohn Baldwin 	dev = sc->dev;
95282cb5c3bSJohn Baldwin 
95307454911SJohn Baldwin 	if (sc->flags & PCIB_HOTPLUG_CMD_PENDING)
95407454911SJohn Baldwin 		return;
95507454911SJohn Baldwin 
95682cb5c3bSJohn Baldwin 	ctl = pcie_read_config(dev, PCIER_SLOT_CTL, 2);
95782cb5c3bSJohn Baldwin 	new = (ctl & ~mask) | val;
95807454911SJohn Baldwin 	if (new == ctl)
95907454911SJohn Baldwin 		return;
96007454911SJohn Baldwin 	pcie_write_config(dev, PCIER_SLOT_CTL, new, 2);
9616f33eaa5SJohn Baldwin 	if (!(sc->pcie_slot_cap & PCIEM_SLOT_CAP_NCCS) &&
9626f33eaa5SJohn Baldwin 	    (ctl & new) & PCIEM_SLOT_CTL_CCIE) {
96382cb5c3bSJohn Baldwin 		sc->flags |= PCIB_HOTPLUG_CMD_PENDING;
96482cb5c3bSJohn Baldwin 		if (!cold)
96582cb5c3bSJohn Baldwin 			callout_reset(&sc->pcie_cc_timer, hz,
96682cb5c3bSJohn Baldwin 			    pcib_pcie_cc_timeout, sc);
96782cb5c3bSJohn Baldwin 	}
96882cb5c3bSJohn Baldwin }
96982cb5c3bSJohn Baldwin 
97082cb5c3bSJohn Baldwin static void
97182cb5c3bSJohn Baldwin pcib_pcie_hotplug_command_completed(struct pcib_softc *sc)
97282cb5c3bSJohn Baldwin {
97382cb5c3bSJohn Baldwin 	device_t dev;
97482cb5c3bSJohn Baldwin 
97582cb5c3bSJohn Baldwin 	dev = sc->dev;
97682cb5c3bSJohn Baldwin 
97782cb5c3bSJohn Baldwin 	if (bootverbose)
97882cb5c3bSJohn Baldwin 		device_printf(dev, "Command Completed\n");
97982cb5c3bSJohn Baldwin 	if (!(sc->flags & PCIB_HOTPLUG_CMD_PENDING))
98082cb5c3bSJohn Baldwin 		return;
98182cb5c3bSJohn Baldwin 	callout_stop(&sc->pcie_cc_timer);
98282cb5c3bSJohn Baldwin 	sc->flags &= ~PCIB_HOTPLUG_CMD_PENDING;
9836f33eaa5SJohn Baldwin 	wakeup(sc);
98482cb5c3bSJohn Baldwin }
98582cb5c3bSJohn Baldwin 
98682cb5c3bSJohn Baldwin /*
98782cb5c3bSJohn Baldwin  * Returns true if a card is fully inserted from the user's
98882cb5c3bSJohn Baldwin  * perspective.  It may not yet be ready for access, but the driver
98982cb5c3bSJohn Baldwin  * can now start enabling access if necessary.
99082cb5c3bSJohn Baldwin  */
99182cb5c3bSJohn Baldwin static bool
99282cb5c3bSJohn Baldwin pcib_hotplug_inserted(struct pcib_softc *sc)
99382cb5c3bSJohn Baldwin {
99482cb5c3bSJohn Baldwin 
99582cb5c3bSJohn Baldwin 	/* Pretend the card isn't present if a detach is forced. */
99682cb5c3bSJohn Baldwin 	if (sc->flags & PCIB_DETACHING)
99782cb5c3bSJohn Baldwin 		return (false);
99882cb5c3bSJohn Baldwin 
99982cb5c3bSJohn Baldwin 	/* Card must be present in the slot. */
100082cb5c3bSJohn Baldwin 	if ((sc->pcie_slot_sta & PCIEM_SLOT_STA_PDS) == 0)
100182cb5c3bSJohn Baldwin 		return (false);
100282cb5c3bSJohn Baldwin 
100382cb5c3bSJohn Baldwin 	/* A power fault implicitly turns off power to the slot. */
100482cb5c3bSJohn Baldwin 	if (sc->pcie_slot_sta & PCIEM_SLOT_STA_PFD)
100582cb5c3bSJohn Baldwin 		return (false);
100682cb5c3bSJohn Baldwin 
100782cb5c3bSJohn Baldwin 	/* If the MRL is disengaged, the slot is powered off. */
100882cb5c3bSJohn Baldwin 	if (sc->pcie_slot_cap & PCIEM_SLOT_CAP_MRLSP &&
100982cb5c3bSJohn Baldwin 	    (sc->pcie_slot_sta & PCIEM_SLOT_STA_MRLSS) != 0)
101082cb5c3bSJohn Baldwin 		return (false);
101182cb5c3bSJohn Baldwin 
101282cb5c3bSJohn Baldwin 	return (true);
101382cb5c3bSJohn Baldwin }
101482cb5c3bSJohn Baldwin 
101582cb5c3bSJohn Baldwin /*
101682cb5c3bSJohn Baldwin  * Returns -1 if the card is fully inserted, powered, and ready for
101782cb5c3bSJohn Baldwin  * access.  Otherwise, returns 0.
101882cb5c3bSJohn Baldwin  */
101982cb5c3bSJohn Baldwin static int
102082cb5c3bSJohn Baldwin pcib_hotplug_present(struct pcib_softc *sc)
102182cb5c3bSJohn Baldwin {
102282cb5c3bSJohn Baldwin 	device_t dev;
102382cb5c3bSJohn Baldwin 
102482cb5c3bSJohn Baldwin 	dev = sc->dev;
102582cb5c3bSJohn Baldwin 
102682cb5c3bSJohn Baldwin 	/* Card must be inserted. */
102782cb5c3bSJohn Baldwin 	if (!pcib_hotplug_inserted(sc))
102882cb5c3bSJohn Baldwin 		return (0);
102982cb5c3bSJohn Baldwin 
103082cb5c3bSJohn Baldwin 	/*
103182cb5c3bSJohn Baldwin 	 * Require the Electromechanical Interlock to be engaged if
103282cb5c3bSJohn Baldwin 	 * present.
103382cb5c3bSJohn Baldwin 	 */
103482cb5c3bSJohn Baldwin 	if (sc->pcie_slot_cap & PCIEM_SLOT_CAP_EIP &&
103582cb5c3bSJohn Baldwin 	    (sc->pcie_slot_sta & PCIEM_SLOT_STA_EIS) == 0)
103682cb5c3bSJohn Baldwin 		return (0);
103782cb5c3bSJohn Baldwin 
103882cb5c3bSJohn Baldwin 	/* Require the Data Link Layer to be active. */
103982cb5c3bSJohn Baldwin 	if (sc->pcie_link_cap & PCIEM_LINK_CAP_DL_ACTIVE) {
104082cb5c3bSJohn Baldwin 		if (!(sc->pcie_link_sta & PCIEM_LINK_STA_DL_ACTIVE))
104182cb5c3bSJohn Baldwin 			return (0);
104282cb5c3bSJohn Baldwin 	}
104382cb5c3bSJohn Baldwin 
104482cb5c3bSJohn Baldwin 	return (-1);
104582cb5c3bSJohn Baldwin }
104682cb5c3bSJohn Baldwin 
104782cb5c3bSJohn Baldwin static void
104882cb5c3bSJohn Baldwin pcib_pcie_hotplug_update(struct pcib_softc *sc, uint16_t val, uint16_t mask,
104982cb5c3bSJohn Baldwin     bool schedule_task)
105082cb5c3bSJohn Baldwin {
105182cb5c3bSJohn Baldwin 	bool card_inserted;
105282cb5c3bSJohn Baldwin 
105382cb5c3bSJohn Baldwin 	/* Clear DETACHING if Present Detect has cleared. */
105482cb5c3bSJohn Baldwin 	if ((sc->pcie_slot_sta & (PCIEM_SLOT_STA_PDC | PCIEM_SLOT_STA_PDS)) ==
105582cb5c3bSJohn Baldwin 	    PCIEM_SLOT_STA_PDC)
105682cb5c3bSJohn Baldwin 		sc->flags &= ~PCIB_DETACHING;
105782cb5c3bSJohn Baldwin 
105882cb5c3bSJohn Baldwin 	card_inserted = pcib_hotplug_inserted(sc);
105982cb5c3bSJohn Baldwin 
106082cb5c3bSJohn Baldwin 	/* Turn the power indicator on if a card is inserted. */
106182cb5c3bSJohn Baldwin 	if (sc->pcie_slot_cap & PCIEM_SLOT_CAP_PIP) {
106282cb5c3bSJohn Baldwin 		mask |= PCIEM_SLOT_CTL_PIC;
106382cb5c3bSJohn Baldwin 		if (card_inserted)
106482cb5c3bSJohn Baldwin 			val |= PCIEM_SLOT_CTL_PI_ON;
106582cb5c3bSJohn Baldwin 		else if (sc->flags & PCIB_DETACH_PENDING)
106682cb5c3bSJohn Baldwin 			val |= PCIEM_SLOT_CTL_PI_BLINK;
106782cb5c3bSJohn Baldwin 		else
106882cb5c3bSJohn Baldwin 			val |= PCIEM_SLOT_CTL_PI_OFF;
106982cb5c3bSJohn Baldwin 	}
107082cb5c3bSJohn Baldwin 
107182cb5c3bSJohn Baldwin 	/* Turn the power on via the Power Controller if a card is inserted. */
107282cb5c3bSJohn Baldwin 	if (sc->pcie_slot_cap & PCIEM_SLOT_CAP_PCP) {
107382cb5c3bSJohn Baldwin 		mask |= PCIEM_SLOT_CTL_PCC;
107482cb5c3bSJohn Baldwin 		if (card_inserted)
107582cb5c3bSJohn Baldwin 			val |= PCIEM_SLOT_CTL_PC_ON;
107682cb5c3bSJohn Baldwin 		else
107782cb5c3bSJohn Baldwin 			val |= PCIEM_SLOT_CTL_PC_OFF;
107882cb5c3bSJohn Baldwin 	}
107982cb5c3bSJohn Baldwin 
108082cb5c3bSJohn Baldwin 	/*
108182cb5c3bSJohn Baldwin 	 * If a card is inserted, enable the Electromechanical
108282cb5c3bSJohn Baldwin 	 * Interlock.  If a card is not inserted (or we are in the
108382cb5c3bSJohn Baldwin 	 * process of detaching), disable the Electromechanical
108482cb5c3bSJohn Baldwin 	 * Interlock.
108582cb5c3bSJohn Baldwin 	 */
108682cb5c3bSJohn Baldwin 	if (sc->pcie_slot_cap & PCIEM_SLOT_CAP_EIP) {
108782cb5c3bSJohn Baldwin 		mask |= PCIEM_SLOT_CTL_EIC;
108807454911SJohn Baldwin 		if (card_inserted !=
108907454911SJohn Baldwin 		    !(sc->pcie_slot_sta & PCIEM_SLOT_STA_EIS))
109082cb5c3bSJohn Baldwin 			val |= PCIEM_SLOT_CTL_EIC;
109182cb5c3bSJohn Baldwin 	}
109282cb5c3bSJohn Baldwin 
109382cb5c3bSJohn Baldwin 	/*
109482cb5c3bSJohn Baldwin 	 * Start a timer to see if the Data Link Layer times out.
109582cb5c3bSJohn Baldwin 	 * Note that we only start the timer if Presence Detect
109682cb5c3bSJohn Baldwin 	 * changed on this interrupt.  Stop any scheduled timer if
109782cb5c3bSJohn Baldwin 	 * the Data Link Layer is active.
109882cb5c3bSJohn Baldwin 	 */
109982cb5c3bSJohn Baldwin 	if (sc->pcie_link_cap & PCIEM_LINK_CAP_DL_ACTIVE) {
110082cb5c3bSJohn Baldwin 		if (card_inserted &&
110182cb5c3bSJohn Baldwin 		    !(sc->pcie_link_sta & PCIEM_LINK_STA_DL_ACTIVE) &&
110282cb5c3bSJohn Baldwin 		    sc->pcie_slot_sta & PCIEM_SLOT_STA_PDC) {
110382cb5c3bSJohn Baldwin 			if (cold)
110482cb5c3bSJohn Baldwin 				device_printf(sc->dev,
110582cb5c3bSJohn Baldwin 				    "Data Link Layer inactive\n");
110682cb5c3bSJohn Baldwin 			else
110782cb5c3bSJohn Baldwin 				callout_reset(&sc->pcie_dll_timer, hz,
110882cb5c3bSJohn Baldwin 				    pcib_pcie_dll_timeout, sc);
110982cb5c3bSJohn Baldwin 		} else if (sc->pcie_link_sta & PCIEM_LINK_STA_DL_ACTIVE)
111082cb5c3bSJohn Baldwin 			callout_stop(&sc->pcie_dll_timer);
111182cb5c3bSJohn Baldwin 	}
111282cb5c3bSJohn Baldwin 
111382cb5c3bSJohn Baldwin 	pcib_pcie_hotplug_command(sc, val, mask);
111482cb5c3bSJohn Baldwin 
111582cb5c3bSJohn Baldwin 	/*
111682cb5c3bSJohn Baldwin 	 * During attach the child "pci" device is added sychronously;
111782cb5c3bSJohn Baldwin 	 * otherwise, the task is scheduled to manage the child
111882cb5c3bSJohn Baldwin 	 * device.
111982cb5c3bSJohn Baldwin 	 */
112082cb5c3bSJohn Baldwin 	if (schedule_task &&
112182cb5c3bSJohn Baldwin 	    (pcib_hotplug_present(sc) != 0) != (sc->child != NULL))
112282cb5c3bSJohn Baldwin 		taskqueue_enqueue(taskqueue_thread, &sc->pcie_hp_task);
112382cb5c3bSJohn Baldwin }
112482cb5c3bSJohn Baldwin 
112582cb5c3bSJohn Baldwin static void
112682cb5c3bSJohn Baldwin pcib_pcie_intr(void *arg)
112782cb5c3bSJohn Baldwin {
112882cb5c3bSJohn Baldwin 	struct pcib_softc *sc;
112982cb5c3bSJohn Baldwin 	device_t dev;
113082cb5c3bSJohn Baldwin 
113182cb5c3bSJohn Baldwin 	sc = arg;
113282cb5c3bSJohn Baldwin 	dev = sc->dev;
113382cb5c3bSJohn Baldwin 	sc->pcie_slot_sta = pcie_read_config(dev, PCIER_SLOT_STA, 2);
113482cb5c3bSJohn Baldwin 
113582cb5c3bSJohn Baldwin 	/* Clear the events just reported. */
113682cb5c3bSJohn Baldwin 	pcie_write_config(dev, PCIER_SLOT_STA, sc->pcie_slot_sta, 2);
113782cb5c3bSJohn Baldwin 
113882cb5c3bSJohn Baldwin 	if (sc->pcie_slot_sta & PCIEM_SLOT_STA_ABP) {
113982cb5c3bSJohn Baldwin 		if (sc->flags & PCIB_DETACH_PENDING) {
114082cb5c3bSJohn Baldwin 			device_printf(dev,
114182cb5c3bSJohn Baldwin 			    "Attention Button Pressed: Detach Cancelled\n");
114282cb5c3bSJohn Baldwin 			sc->flags &= ~PCIB_DETACH_PENDING;
114382cb5c3bSJohn Baldwin 			callout_stop(&sc->pcie_ab_timer);
114482cb5c3bSJohn Baldwin 		} else {
114582cb5c3bSJohn Baldwin 			device_printf(dev,
114682cb5c3bSJohn Baldwin 		    "Attention Button Pressed: Detaching in 5 seconds\n");
114782cb5c3bSJohn Baldwin 			sc->flags |= PCIB_DETACH_PENDING;
114882cb5c3bSJohn Baldwin 			callout_reset(&sc->pcie_ab_timer, 5 * hz,
114982cb5c3bSJohn Baldwin 			    pcib_pcie_ab_timeout, sc);
115082cb5c3bSJohn Baldwin 		}
115182cb5c3bSJohn Baldwin 	}
115282cb5c3bSJohn Baldwin 	if (sc->pcie_slot_sta & PCIEM_SLOT_STA_PFD)
115382cb5c3bSJohn Baldwin 		device_printf(dev, "Power Fault Detected\n");
115482cb5c3bSJohn Baldwin 	if (sc->pcie_slot_sta & PCIEM_SLOT_STA_MRLSC)
115582cb5c3bSJohn Baldwin 		device_printf(dev, "MRL Sensor Changed to %s\n",
115682cb5c3bSJohn Baldwin 		    sc->pcie_slot_sta & PCIEM_SLOT_STA_MRLSS ? "open" :
115782cb5c3bSJohn Baldwin 		    "closed");
115882cb5c3bSJohn Baldwin 	if (bootverbose && sc->pcie_slot_sta & PCIEM_SLOT_STA_PDC)
115982cb5c3bSJohn Baldwin 		device_printf(dev, "Present Detect Changed to %s\n",
116082cb5c3bSJohn Baldwin 		    sc->pcie_slot_sta & PCIEM_SLOT_STA_PDS ? "card present" :
116182cb5c3bSJohn Baldwin 		    "empty");
116282cb5c3bSJohn Baldwin 	if (sc->pcie_slot_sta & PCIEM_SLOT_STA_CC)
116382cb5c3bSJohn Baldwin 		pcib_pcie_hotplug_command_completed(sc);
116482cb5c3bSJohn Baldwin 	if (sc->pcie_slot_sta & PCIEM_SLOT_STA_DLLSC) {
116582cb5c3bSJohn Baldwin 		sc->pcie_link_sta = pcie_read_config(dev, PCIER_LINK_STA, 2);
116682cb5c3bSJohn Baldwin 		if (bootverbose)
116782cb5c3bSJohn Baldwin 			device_printf(dev,
116882cb5c3bSJohn Baldwin 			    "Data Link Layer State Changed to %s\n",
116982cb5c3bSJohn Baldwin 			    sc->pcie_link_sta & PCIEM_LINK_STA_DL_ACTIVE ?
117082cb5c3bSJohn Baldwin 			    "active" : "inactive");
117182cb5c3bSJohn Baldwin 	}
117282cb5c3bSJohn Baldwin 
117382cb5c3bSJohn Baldwin 	pcib_pcie_hotplug_update(sc, 0, 0, true);
117482cb5c3bSJohn Baldwin }
117582cb5c3bSJohn Baldwin 
117682cb5c3bSJohn Baldwin static void
117782cb5c3bSJohn Baldwin pcib_pcie_hotplug_task(void *context, int pending)
117882cb5c3bSJohn Baldwin {
117982cb5c3bSJohn Baldwin 	struct pcib_softc *sc;
118082cb5c3bSJohn Baldwin 	device_t dev;
118182cb5c3bSJohn Baldwin 
118282cb5c3bSJohn Baldwin 	sc = context;
118382cb5c3bSJohn Baldwin 	mtx_lock(&Giant);
118482cb5c3bSJohn Baldwin 	dev = sc->dev;
118582cb5c3bSJohn Baldwin 	if (pcib_hotplug_present(sc) != 0) {
118682cb5c3bSJohn Baldwin 		if (sc->child == NULL) {
118782cb5c3bSJohn Baldwin 			sc->child = device_add_child(dev, "pci", -1);
118882cb5c3bSJohn Baldwin 			bus_generic_attach(dev);
118982cb5c3bSJohn Baldwin 		}
119082cb5c3bSJohn Baldwin 	} else {
119182cb5c3bSJohn Baldwin 		if (sc->child != NULL) {
119282cb5c3bSJohn Baldwin 			if (device_delete_child(dev, sc->child) == 0)
119382cb5c3bSJohn Baldwin 				sc->child = NULL;
119482cb5c3bSJohn Baldwin 		}
119582cb5c3bSJohn Baldwin 	}
119682cb5c3bSJohn Baldwin 	mtx_unlock(&Giant);
119782cb5c3bSJohn Baldwin }
119882cb5c3bSJohn Baldwin 
119982cb5c3bSJohn Baldwin static void
120082cb5c3bSJohn Baldwin pcib_pcie_ab_timeout(void *arg)
120182cb5c3bSJohn Baldwin {
120282cb5c3bSJohn Baldwin 	struct pcib_softc *sc;
120382cb5c3bSJohn Baldwin 	device_t dev;
120482cb5c3bSJohn Baldwin 
120582cb5c3bSJohn Baldwin 	sc = arg;
120682cb5c3bSJohn Baldwin 	dev = sc->dev;
120782cb5c3bSJohn Baldwin 	mtx_assert(&Giant, MA_OWNED);
120882cb5c3bSJohn Baldwin 	if (sc->flags & PCIB_DETACH_PENDING) {
120982cb5c3bSJohn Baldwin 		sc->flags |= PCIB_DETACHING;
121082cb5c3bSJohn Baldwin 		sc->flags &= ~PCIB_DETACH_PENDING;
121182cb5c3bSJohn Baldwin 		pcib_pcie_hotplug_update(sc, 0, 0, true);
121282cb5c3bSJohn Baldwin 	}
121382cb5c3bSJohn Baldwin }
121482cb5c3bSJohn Baldwin 
121582cb5c3bSJohn Baldwin static void
121682cb5c3bSJohn Baldwin pcib_pcie_cc_timeout(void *arg)
121782cb5c3bSJohn Baldwin {
121882cb5c3bSJohn Baldwin 	struct pcib_softc *sc;
121982cb5c3bSJohn Baldwin 	device_t dev;
12206f33eaa5SJohn Baldwin 	uint16_t sta;
122182cb5c3bSJohn Baldwin 
122282cb5c3bSJohn Baldwin 	sc = arg;
122382cb5c3bSJohn Baldwin 	dev = sc->dev;
122482cb5c3bSJohn Baldwin 	mtx_assert(&Giant, MA_OWNED);
12256f33eaa5SJohn Baldwin 	sta = pcie_read_config(dev, PCIER_SLOT_STA, 2);
12266f33eaa5SJohn Baldwin 	if (!(sta & PCIEM_SLOT_STA_CC)) {
122782cb5c3bSJohn Baldwin 		device_printf(dev,
122882cb5c3bSJohn Baldwin 		    "Hotplug Command Timed Out - forcing detach\n");
122982cb5c3bSJohn Baldwin 		sc->flags &= ~(PCIB_HOTPLUG_CMD_PENDING | PCIB_DETACH_PENDING);
123082cb5c3bSJohn Baldwin 		sc->flags |= PCIB_DETACHING;
123182cb5c3bSJohn Baldwin 		pcib_pcie_hotplug_update(sc, 0, 0, true);
12326f33eaa5SJohn Baldwin 	} else {
12336f33eaa5SJohn Baldwin 		device_printf(dev,
12346f33eaa5SJohn Baldwin 	    "Missed HotPlug interrupt waiting for Command Completion\n");
12356f33eaa5SJohn Baldwin 		pcib_pcie_intr(sc);
123682cb5c3bSJohn Baldwin 	}
123782cb5c3bSJohn Baldwin }
123882cb5c3bSJohn Baldwin 
123982cb5c3bSJohn Baldwin static void
124082cb5c3bSJohn Baldwin pcib_pcie_dll_timeout(void *arg)
124182cb5c3bSJohn Baldwin {
124282cb5c3bSJohn Baldwin 	struct pcib_softc *sc;
124382cb5c3bSJohn Baldwin 	device_t dev;
124482cb5c3bSJohn Baldwin 	uint16_t sta;
124582cb5c3bSJohn Baldwin 
124682cb5c3bSJohn Baldwin 	sc = arg;
124782cb5c3bSJohn Baldwin 	dev = sc->dev;
124882cb5c3bSJohn Baldwin 	mtx_assert(&Giant, MA_OWNED);
124982cb5c3bSJohn Baldwin 	sta = pcie_read_config(dev, PCIER_LINK_STA, 2);
125082cb5c3bSJohn Baldwin 	if (!(sta & PCIEM_LINK_STA_DL_ACTIVE)) {
125182cb5c3bSJohn Baldwin 		device_printf(dev,
125282cb5c3bSJohn Baldwin 		    "Timed out waiting for Data Link Layer Active\n");
125382cb5c3bSJohn Baldwin 		sc->flags |= PCIB_DETACHING;
125482cb5c3bSJohn Baldwin 		pcib_pcie_hotplug_update(sc, 0, 0, true);
125582cb5c3bSJohn Baldwin 	} else if (sta != sc->pcie_link_sta) {
125682cb5c3bSJohn Baldwin 		device_printf(dev,
125782cb5c3bSJohn Baldwin 		    "Missed HotPlug interrupt waiting for DLL Active\n");
125882cb5c3bSJohn Baldwin 		pcib_pcie_intr(sc);
125982cb5c3bSJohn Baldwin 	}
126082cb5c3bSJohn Baldwin }
126182cb5c3bSJohn Baldwin 
126282cb5c3bSJohn Baldwin static int
126382cb5c3bSJohn Baldwin pcib_alloc_pcie_irq(struct pcib_softc *sc)
126482cb5c3bSJohn Baldwin {
126582cb5c3bSJohn Baldwin 	device_t dev;
126682cb5c3bSJohn Baldwin 	int count, error, rid;
126782cb5c3bSJohn Baldwin 
126882cb5c3bSJohn Baldwin 	rid = -1;
126982cb5c3bSJohn Baldwin 	dev = sc->dev;
127082cb5c3bSJohn Baldwin 
127182cb5c3bSJohn Baldwin 	/*
127282cb5c3bSJohn Baldwin 	 * For simplicity, only use MSI-X if there is a single message.
127382cb5c3bSJohn Baldwin 	 * To support a device with multiple messages we would have to
127482cb5c3bSJohn Baldwin 	 * use remap intr if the MSI number is not 0.
127582cb5c3bSJohn Baldwin 	 */
127682cb5c3bSJohn Baldwin 	count = pci_msix_count(dev);
127782cb5c3bSJohn Baldwin 	if (count == 1) {
127882cb5c3bSJohn Baldwin 		error = pci_alloc_msix(dev, &count);
127982cb5c3bSJohn Baldwin 		if (error == 0)
128082cb5c3bSJohn Baldwin 			rid = 1;
128182cb5c3bSJohn Baldwin 	}
128282cb5c3bSJohn Baldwin 
128382cb5c3bSJohn Baldwin 	if (rid < 0 && pci_msi_count(dev) > 0) {
128482cb5c3bSJohn Baldwin 		count = 1;
128582cb5c3bSJohn Baldwin 		error = pci_alloc_msi(dev, &count);
128682cb5c3bSJohn Baldwin 		if (error == 0)
128782cb5c3bSJohn Baldwin 			rid = 1;
128882cb5c3bSJohn Baldwin 	}
128982cb5c3bSJohn Baldwin 
129082cb5c3bSJohn Baldwin 	if (rid < 0)
129182cb5c3bSJohn Baldwin 		rid = 0;
129282cb5c3bSJohn Baldwin 
129382cb5c3bSJohn Baldwin 	sc->pcie_irq = bus_alloc_resource_any(dev, SYS_RES_IRQ, &rid,
129482cb5c3bSJohn Baldwin 	    RF_ACTIVE);
129582cb5c3bSJohn Baldwin 	if (sc->pcie_irq == NULL) {
129682cb5c3bSJohn Baldwin 		device_printf(dev,
129782cb5c3bSJohn Baldwin 		    "Failed to allocate interrupt for PCI-e events\n");
129882cb5c3bSJohn Baldwin 		if (rid > 0)
129982cb5c3bSJohn Baldwin 			pci_release_msi(dev);
130082cb5c3bSJohn Baldwin 		return (ENXIO);
130182cb5c3bSJohn Baldwin 	}
130282cb5c3bSJohn Baldwin 
130382cb5c3bSJohn Baldwin 	error = bus_setup_intr(dev, sc->pcie_irq, INTR_TYPE_MISC,
130482cb5c3bSJohn Baldwin 	    NULL, pcib_pcie_intr, sc, &sc->pcie_ihand);
130582cb5c3bSJohn Baldwin 	if (error) {
130682cb5c3bSJohn Baldwin 		device_printf(dev, "Failed to setup PCI-e interrupt handler\n");
130782cb5c3bSJohn Baldwin 		bus_release_resource(dev, SYS_RES_IRQ, rid, sc->pcie_irq);
130882cb5c3bSJohn Baldwin 		if (rid > 0)
130982cb5c3bSJohn Baldwin 			pci_release_msi(dev);
131082cb5c3bSJohn Baldwin 		return (error);
131182cb5c3bSJohn Baldwin 	}
131282cb5c3bSJohn Baldwin 	return (0);
131382cb5c3bSJohn Baldwin }
131482cb5c3bSJohn Baldwin 
13156f33eaa5SJohn Baldwin static int
13166f33eaa5SJohn Baldwin pcib_release_pcie_irq(struct pcib_softc *sc)
13176f33eaa5SJohn Baldwin {
13186f33eaa5SJohn Baldwin 	device_t dev;
13196f33eaa5SJohn Baldwin 	int error;
13206f33eaa5SJohn Baldwin 
13216f33eaa5SJohn Baldwin 	dev = sc->dev;
13226f33eaa5SJohn Baldwin 	error = bus_teardown_intr(dev, sc->pcie_irq, sc->pcie_ihand);
13236f33eaa5SJohn Baldwin 	if (error)
13246f33eaa5SJohn Baldwin 		return (error);
13256f33eaa5SJohn Baldwin 	error = bus_free_resource(dev, SYS_RES_IRQ, sc->pcie_irq);
13266f33eaa5SJohn Baldwin 	if (error)
13276f33eaa5SJohn Baldwin 		return (error);
13286f33eaa5SJohn Baldwin 	return (pci_release_msi(dev));
13296f33eaa5SJohn Baldwin }
13306f33eaa5SJohn Baldwin 
133182cb5c3bSJohn Baldwin static void
133282cb5c3bSJohn Baldwin pcib_setup_hotplug(struct pcib_softc *sc)
133382cb5c3bSJohn Baldwin {
133482cb5c3bSJohn Baldwin 	device_t dev;
133582cb5c3bSJohn Baldwin 	uint16_t mask, val;
133682cb5c3bSJohn Baldwin 
133782cb5c3bSJohn Baldwin 	dev = sc->dev;
133882cb5c3bSJohn Baldwin 	callout_init(&sc->pcie_ab_timer, 0);
133982cb5c3bSJohn Baldwin 	callout_init(&sc->pcie_cc_timer, 0);
134082cb5c3bSJohn Baldwin 	callout_init(&sc->pcie_dll_timer, 0);
134182cb5c3bSJohn Baldwin 	TASK_INIT(&sc->pcie_hp_task, 0, pcib_pcie_hotplug_task, sc);
134282cb5c3bSJohn Baldwin 
134382cb5c3bSJohn Baldwin 	/* Allocate IRQ. */
134482cb5c3bSJohn Baldwin 	if (pcib_alloc_pcie_irq(sc) != 0)
134582cb5c3bSJohn Baldwin 		return;
134682cb5c3bSJohn Baldwin 
134782cb5c3bSJohn Baldwin 	sc->pcie_link_sta = pcie_read_config(dev, PCIER_LINK_STA, 2);
134882cb5c3bSJohn Baldwin 	sc->pcie_slot_sta = pcie_read_config(dev, PCIER_SLOT_STA, 2);
134982cb5c3bSJohn Baldwin 
13506f33eaa5SJohn Baldwin 	/* Clear any events previously pending. */
13516f33eaa5SJohn Baldwin 	pcie_write_config(dev, PCIER_SLOT_STA, sc->pcie_slot_sta, 2);
13526f33eaa5SJohn Baldwin 
135382cb5c3bSJohn Baldwin 	/* Enable HotPlug events. */
135482cb5c3bSJohn Baldwin 	mask = PCIEM_SLOT_CTL_DLLSCE | PCIEM_SLOT_CTL_HPIE |
135582cb5c3bSJohn Baldwin 	    PCIEM_SLOT_CTL_CCIE | PCIEM_SLOT_CTL_PDCE | PCIEM_SLOT_CTL_MRLSCE |
135682cb5c3bSJohn Baldwin 	    PCIEM_SLOT_CTL_PFDE | PCIEM_SLOT_CTL_ABPE;
135782cb5c3bSJohn Baldwin 	val = PCIEM_SLOT_CTL_PDCE | PCIEM_SLOT_CTL_HPIE;
135882cb5c3bSJohn Baldwin 	if (sc->pcie_slot_cap & PCIEM_SLOT_CAP_APB)
135982cb5c3bSJohn Baldwin 		val |= PCIEM_SLOT_CTL_ABPE;
136082cb5c3bSJohn Baldwin 	if (sc->pcie_slot_cap & PCIEM_SLOT_CAP_PCP)
136182cb5c3bSJohn Baldwin 		val |= PCIEM_SLOT_CTL_PFDE;
136282cb5c3bSJohn Baldwin 	if (sc->pcie_slot_cap & PCIEM_SLOT_CAP_MRLSP)
136382cb5c3bSJohn Baldwin 		val |= PCIEM_SLOT_CTL_MRLSCE;
136482cb5c3bSJohn Baldwin 	if (!(sc->pcie_slot_cap & PCIEM_SLOT_CAP_NCCS))
136582cb5c3bSJohn Baldwin 		val |= PCIEM_SLOT_CTL_CCIE;
136682cb5c3bSJohn Baldwin 	if (sc->pcie_link_cap & PCIEM_LINK_CAP_DL_ACTIVE)
136782cb5c3bSJohn Baldwin 		val |= PCIEM_SLOT_CTL_DLLSCE;
136882cb5c3bSJohn Baldwin 
136982cb5c3bSJohn Baldwin 	/* Turn the attention indicator off. */
137082cb5c3bSJohn Baldwin 	if (sc->pcie_slot_cap & PCIEM_SLOT_CAP_AIP) {
137182cb5c3bSJohn Baldwin 		mask |= PCIEM_SLOT_CTL_AIC;
137282cb5c3bSJohn Baldwin 		val |= PCIEM_SLOT_CTL_AI_OFF;
137382cb5c3bSJohn Baldwin 	}
137482cb5c3bSJohn Baldwin 
137582cb5c3bSJohn Baldwin 	pcib_pcie_hotplug_update(sc, val, mask, false);
137682cb5c3bSJohn Baldwin }
13776f33eaa5SJohn Baldwin 
13786f33eaa5SJohn Baldwin static int
13796f33eaa5SJohn Baldwin pcib_detach_hotplug(struct pcib_softc *sc)
13806f33eaa5SJohn Baldwin {
13816f33eaa5SJohn Baldwin 	uint16_t mask, val;
13826f33eaa5SJohn Baldwin 	int error;
13836f33eaa5SJohn Baldwin 
13846f33eaa5SJohn Baldwin 	/* Disable the card in the slot and force it to detach. */
13856f33eaa5SJohn Baldwin 	if (sc->flags & PCIB_DETACH_PENDING) {
13866f33eaa5SJohn Baldwin 		sc->flags &= ~PCIB_DETACH_PENDING;
13876f33eaa5SJohn Baldwin 		callout_stop(&sc->pcie_ab_timer);
13886f33eaa5SJohn Baldwin 	}
13896f33eaa5SJohn Baldwin 	sc->flags |= PCIB_DETACHING;
13906f33eaa5SJohn Baldwin 
13916f33eaa5SJohn Baldwin 	if (sc->flags & PCIB_HOTPLUG_CMD_PENDING) {
13926f33eaa5SJohn Baldwin 		callout_stop(&sc->pcie_cc_timer);
13936f33eaa5SJohn Baldwin 		tsleep(sc, 0, "hpcmd", hz);
13946f33eaa5SJohn Baldwin 		sc->flags &= ~PCIB_HOTPLUG_CMD_PENDING;
13956f33eaa5SJohn Baldwin 	}
13966f33eaa5SJohn Baldwin 
13976f33eaa5SJohn Baldwin 	/* Disable HotPlug events. */
13986f33eaa5SJohn Baldwin 	mask = PCIEM_SLOT_CTL_DLLSCE | PCIEM_SLOT_CTL_HPIE |
13996f33eaa5SJohn Baldwin 	    PCIEM_SLOT_CTL_CCIE | PCIEM_SLOT_CTL_PDCE | PCIEM_SLOT_CTL_MRLSCE |
14006f33eaa5SJohn Baldwin 	    PCIEM_SLOT_CTL_PFDE | PCIEM_SLOT_CTL_ABPE;
14016f33eaa5SJohn Baldwin 	val = 0;
14026f33eaa5SJohn Baldwin 
14036f33eaa5SJohn Baldwin 	/* Turn the attention indicator off. */
14046f33eaa5SJohn Baldwin 	if (sc->pcie_slot_cap & PCIEM_SLOT_CAP_AIP) {
14056f33eaa5SJohn Baldwin 		mask |= PCIEM_SLOT_CTL_AIC;
14066f33eaa5SJohn Baldwin 		val |= PCIEM_SLOT_CTL_AI_OFF;
14076f33eaa5SJohn Baldwin 	}
14086f33eaa5SJohn Baldwin 
14096f33eaa5SJohn Baldwin 	pcib_pcie_hotplug_update(sc, val, mask, false);
14106f33eaa5SJohn Baldwin 
14116f33eaa5SJohn Baldwin 	error = pcib_release_pcie_irq(sc);
14126f33eaa5SJohn Baldwin 	if (error)
14136f33eaa5SJohn Baldwin 		return (error);
14146f33eaa5SJohn Baldwin 	taskqueue_drain(taskqueue_thread, &sc->pcie_hp_task);
14156f33eaa5SJohn Baldwin 	callout_drain(&sc->pcie_ab_timer);
14166f33eaa5SJohn Baldwin 	callout_drain(&sc->pcie_cc_timer);
14176f33eaa5SJohn Baldwin 	callout_drain(&sc->pcie_dll_timer);
14186f33eaa5SJohn Baldwin 	return (0);
14196f33eaa5SJohn Baldwin }
142082cb5c3bSJohn Baldwin #endif
142182cb5c3bSJohn Baldwin 
1422e36af292SJung-uk Kim /*
1423e36af292SJung-uk Kim  * Get current bridge configuration.
1424e36af292SJung-uk Kim  */
1425e36af292SJung-uk Kim static void
1426e36af292SJung-uk Kim pcib_cfg_save(struct pcib_softc *sc)
1427e36af292SJung-uk Kim {
1428ad6f36f8SJohn Baldwin #ifndef NEW_PCIB
1429e36af292SJung-uk Kim 	device_t	dev;
1430ad6f36f8SJohn Baldwin 	uint16_t command;
1431e36af292SJung-uk Kim 
1432e36af292SJung-uk Kim 	dev = sc->dev;
1433e36af292SJung-uk Kim 
1434ad6f36f8SJohn Baldwin 	command = pci_read_config(dev, PCIR_COMMAND, 2);
1435ad6f36f8SJohn Baldwin 	if (command & PCIM_CMD_PORTEN)
1436e36af292SJung-uk Kim 		pcib_get_io_decode(sc);
1437ad6f36f8SJohn Baldwin 	if (command & PCIM_CMD_MEMEN)
1438e36af292SJung-uk Kim 		pcib_get_mem_decode(sc);
143983c41143SJohn Baldwin #endif
1440e36af292SJung-uk Kim }
1441e36af292SJung-uk Kim 
1442e36af292SJung-uk Kim /*
1443e36af292SJung-uk Kim  * Restore previous bridge configuration.
1444e36af292SJung-uk Kim  */
1445e36af292SJung-uk Kim static void
1446e36af292SJung-uk Kim pcib_cfg_restore(struct pcib_softc *sc)
1447e36af292SJung-uk Kim {
1448e36af292SJung-uk Kim 	device_t	dev;
1449ad6f36f8SJohn Baldwin #ifndef NEW_PCIB
1450ad6f36f8SJohn Baldwin 	uint16_t command;
1451ad6f36f8SJohn Baldwin #endif
1452e36af292SJung-uk Kim 	dev = sc->dev;
1453e36af292SJung-uk Kim 
145483c41143SJohn Baldwin #ifdef NEW_PCIB
145583c41143SJohn Baldwin 	pcib_write_windows(sc, WIN_IO | WIN_MEM | WIN_PMEM);
145683c41143SJohn Baldwin #else
1457ad6f36f8SJohn Baldwin 	command = pci_read_config(dev, PCIR_COMMAND, 2);
1458ad6f36f8SJohn Baldwin 	if (command & PCIM_CMD_PORTEN)
1459e36af292SJung-uk Kim 		pcib_set_io_decode(sc);
1460ad6f36f8SJohn Baldwin 	if (command & PCIM_CMD_MEMEN)
1461e36af292SJung-uk Kim 		pcib_set_mem_decode(sc);
146283c41143SJohn Baldwin #endif
1463e36af292SJung-uk Kim }
1464e36af292SJung-uk Kim 
1465e36af292SJung-uk Kim /*
1466bb0d0a8eSMike Smith  * Generic device interface
1467bb0d0a8eSMike Smith  */
1468bb0d0a8eSMike Smith static int
1469bb0d0a8eSMike Smith pcib_probe(device_t dev)
1470bb0d0a8eSMike Smith {
1471bb0d0a8eSMike Smith     if ((pci_get_class(dev) == PCIC_BRIDGE) &&
1472bb0d0a8eSMike Smith 	(pci_get_subclass(dev) == PCIS_BRIDGE_PCI)) {
1473bb0d0a8eSMike Smith 	device_set_desc(dev, "PCI-PCI bridge");
1474b7cbd25bSMarcel Moolenaar 	return(-10000);
1475bb0d0a8eSMike Smith     }
1476bb0d0a8eSMike Smith     return(ENXIO);
1477bb0d0a8eSMike Smith }
1478bb0d0a8eSMike Smith 
14796f0d5884SJohn Baldwin void
14806f0d5884SJohn Baldwin pcib_attach_common(device_t dev)
1481bb0d0a8eSMike Smith {
1482bb0d0a8eSMike Smith     struct pcib_softc	*sc;
1483abf07f13SWarner Losh     struct sysctl_ctx_list *sctx;
1484abf07f13SWarner Losh     struct sysctl_oid	*soid;
1485c825d4dcSJohn Baldwin     int comma;
1486bb0d0a8eSMike Smith 
1487bb0d0a8eSMike Smith     sc = device_get_softc(dev);
1488bb0d0a8eSMike Smith     sc->dev = dev;
1489bb0d0a8eSMike Smith 
14904fa59183SMike Smith     /*
14914fa59183SMike Smith      * Get current bridge configuration.
14924fa59183SMike Smith      */
149355aaf894SMarius Strobl     sc->domain = pci_get_domain(dev);
1494ad6f36f8SJohn Baldwin #if !(defined(NEW_PCIB) && defined(PCI_RES_BUS))
1495ad6f36f8SJohn Baldwin     sc->bus.sec = pci_read_config(dev, PCIR_SECBUS_1, 1);
1496ad6f36f8SJohn Baldwin     sc->bus.sub = pci_read_config(dev, PCIR_SUBBUS_1, 1);
1497ad6f36f8SJohn Baldwin #endif
1498ad6f36f8SJohn Baldwin     sc->bridgectl = pci_read_config(dev, PCIR_BRIDGECTL_1, 2);
1499e36af292SJung-uk Kim     pcib_cfg_save(sc);
15004fa59183SMike Smith 
15014fa59183SMike Smith     /*
15024edef187SJohn Baldwin      * The primary bus register should always be the bus of the
15034edef187SJohn Baldwin      * parent.
15044edef187SJohn Baldwin      */
15054edef187SJohn Baldwin     sc->pribus = pci_get_bus(dev);
15064edef187SJohn Baldwin     pci_write_config(dev, PCIR_PRIBUS_1, sc->pribus, 1);
15074edef187SJohn Baldwin 
15084edef187SJohn Baldwin     /*
1509abf07f13SWarner Losh      * Setup sysctl reporting nodes
1510abf07f13SWarner Losh      */
1511abf07f13SWarner Losh     sctx = device_get_sysctl_ctx(dev);
1512abf07f13SWarner Losh     soid = device_get_sysctl_tree(dev);
1513abf07f13SWarner Losh     SYSCTL_ADD_UINT(sctx, SYSCTL_CHILDREN(soid), OID_AUTO, "domain",
1514abf07f13SWarner Losh       CTLFLAG_RD, &sc->domain, 0, "Domain number");
1515abf07f13SWarner Losh     SYSCTL_ADD_UINT(sctx, SYSCTL_CHILDREN(soid), OID_AUTO, "pribus",
1516abf07f13SWarner Losh       CTLFLAG_RD, &sc->pribus, 0, "Primary bus number");
1517abf07f13SWarner Losh     SYSCTL_ADD_UINT(sctx, SYSCTL_CHILDREN(soid), OID_AUTO, "secbus",
15184edef187SJohn Baldwin       CTLFLAG_RD, &sc->bus.sec, 0, "Secondary bus number");
1519abf07f13SWarner Losh     SYSCTL_ADD_UINT(sctx, SYSCTL_CHILDREN(soid), OID_AUTO, "subbus",
15204edef187SJohn Baldwin       CTLFLAG_RD, &sc->bus.sub, 0, "Subordinate bus number");
1521abf07f13SWarner Losh 
1522abf07f13SWarner Losh     /*
15234fa59183SMike Smith      * Quirk handling.
15244fa59183SMike Smith      */
15254fa59183SMike Smith     switch (pci_get_devid(dev)) {
15262ae5fd15SJohn Baldwin #if !(defined(NEW_PCIB) && defined(PCI_RES_BUS))
15274fa59183SMike Smith     case 0x12258086:		/* Intel 82454KX/GX (Orion) */
15284fa59183SMike Smith 	{
1529b0cb115fSWarner Losh 	    uint8_t	supbus;
15304fa59183SMike Smith 
15314fa59183SMike Smith 	    supbus = pci_read_config(dev, 0x41, 1);
15324fa59183SMike Smith 	    if (supbus != 0xff) {
15334edef187SJohn Baldwin 		sc->bus.sec = supbus + 1;
15344edef187SJohn Baldwin 		sc->bus.sub = supbus + 1;
15354fa59183SMike Smith 	    }
15364fa59183SMike Smith 	    break;
15374fa59183SMike Smith 	}
15384edef187SJohn Baldwin #endif
15394fa59183SMike Smith 
1540e4b59fc5SWarner Losh     /*
1541e4b59fc5SWarner Losh      * The i82380FB mobile docking controller is a PCI-PCI bridge,
1542e4b59fc5SWarner Losh      * and it is a subtractive bridge.  However, the ProgIf is wrong
1543e4b59fc5SWarner Losh      * so the normal setting of PCIB_SUBTRACTIVE bit doesn't
15444718610dSZbigniew Bodek      * happen.  There are also Toshiba and Cavium ThunderX bridges
15454718610dSZbigniew Bodek      * that behave this way.
1546e4b59fc5SWarner Losh      */
15474718610dSZbigniew Bodek     case 0xa002177d:		/* Cavium ThunderX */
1548e4b59fc5SWarner Losh     case 0x124b8086:		/* Intel 82380FB Mobile */
1549e4b59fc5SWarner Losh     case 0x060513d7:		/* Toshiba ???? */
1550e4b59fc5SWarner Losh 	sc->flags |= PCIB_SUBTRACTIVE;
1551e4b59fc5SWarner Losh 	break;
1552c94d6dbeSJung-uk Kim 
15532ae5fd15SJohn Baldwin #if !(defined(NEW_PCIB) && defined(PCI_RES_BUS))
1554c94d6dbeSJung-uk Kim     /* Compaq R3000 BIOS sets wrong subordinate bus number. */
1555c94d6dbeSJung-uk Kim     case 0x00dd10de:
1556c94d6dbeSJung-uk Kim 	{
1557c94d6dbeSJung-uk Kim 	    char *cp;
1558c94d6dbeSJung-uk Kim 
15592be111bfSDavide Italiano 	    if ((cp = kern_getenv("smbios.planar.maker")) == NULL)
1560c94d6dbeSJung-uk Kim 		break;
15611def0ca6SJung-uk Kim 	    if (strncmp(cp, "Compal", 6) != 0) {
15621def0ca6SJung-uk Kim 		freeenv(cp);
1563c94d6dbeSJung-uk Kim 		break;
15641def0ca6SJung-uk Kim 	    }
15651def0ca6SJung-uk Kim 	    freeenv(cp);
15662be111bfSDavide Italiano 	    if ((cp = kern_getenv("smbios.planar.product")) == NULL)
15671def0ca6SJung-uk Kim 		break;
15681def0ca6SJung-uk Kim 	    if (strncmp(cp, "08A0", 4) != 0) {
15691def0ca6SJung-uk Kim 		freeenv(cp);
15701def0ca6SJung-uk Kim 		break;
15711def0ca6SJung-uk Kim 	    }
15721def0ca6SJung-uk Kim 	    freeenv(cp);
15734edef187SJohn Baldwin 	    if (sc->bus.sub < 0xa) {
1574c94d6dbeSJung-uk Kim 		pci_write_config(dev, PCIR_SUBBUS_1, 0xa, 1);
15754edef187SJohn Baldwin 		sc->bus.sub = pci_read_config(dev, PCIR_SUBBUS_1, 1);
1576c94d6dbeSJung-uk Kim 	    }
1577c94d6dbeSJung-uk Kim 	    break;
1578c94d6dbeSJung-uk Kim 	}
15794edef187SJohn Baldwin #endif
1580e4b59fc5SWarner Losh     }
1581e4b59fc5SWarner Losh 
158222bf1c7fSJohn Baldwin     if (pci_msi_device_blacklisted(dev))
158322bf1c7fSJohn Baldwin 	sc->flags |= PCIB_DISABLE_MSI;
158422bf1c7fSJohn Baldwin 
158568e9cbd3SMarius Strobl     if (pci_msix_device_blacklisted(dev))
158668e9cbd3SMarius Strobl 	sc->flags |= PCIB_DISABLE_MSIX;
158768e9cbd3SMarius Strobl 
1588e4b59fc5SWarner Losh     /*
1589e4b59fc5SWarner Losh      * Intel 815, 845 and other chipsets say they are PCI-PCI bridges,
1590e4b59fc5SWarner Losh      * but have a ProgIF of 0x80.  The 82801 family (AA, AB, BAM/CAM,
1591e4b59fc5SWarner Losh      * BA/CA/DB and E) PCI bridges are HUB-PCI bridges, in Intelese.
1592e4b59fc5SWarner Losh      * This means they act as if they were subtractively decoding
1593e4b59fc5SWarner Losh      * bridges and pass all transactions.  Mark them and real ProgIf 1
1594e4b59fc5SWarner Losh      * parts as subtractive.
1595e4b59fc5SWarner Losh      */
1596e4b59fc5SWarner Losh     if ((pci_get_devid(dev) & 0xff00ffff) == 0x24008086 ||
1597657d9f9fSJohn Baldwin       pci_read_config(dev, PCIR_PROGIF, 1) == PCIP_BRIDGE_PCI_SUBTRACTIVE)
1598e4b59fc5SWarner Losh 	sc->flags |= PCIB_SUBTRACTIVE;
1599e4b59fc5SWarner Losh 
160082cb5c3bSJohn Baldwin #ifdef PCI_HP
160182cb5c3bSJohn Baldwin     pcib_probe_hotplug(sc);
160282cb5c3bSJohn Baldwin #endif
160383c41143SJohn Baldwin #ifdef NEW_PCIB
16044edef187SJohn Baldwin #ifdef PCI_RES_BUS
16054edef187SJohn Baldwin     pcib_setup_secbus(dev, &sc->bus, 1);
16064edef187SJohn Baldwin #endif
160783c41143SJohn Baldwin     pcib_probe_windows(sc);
160883c41143SJohn Baldwin #endif
160982cb5c3bSJohn Baldwin #ifdef PCI_HP
161082cb5c3bSJohn Baldwin     if (sc->flags & PCIB_HOTPLUG)
161182cb5c3bSJohn Baldwin 	    pcib_setup_hotplug(sc);
161282cb5c3bSJohn Baldwin #endif
1613bb0d0a8eSMike Smith     if (bootverbose) {
161455aaf894SMarius Strobl 	device_printf(dev, "  domain            %d\n", sc->domain);
16154edef187SJohn Baldwin 	device_printf(dev, "  secondary bus     %d\n", sc->bus.sec);
16164edef187SJohn Baldwin 	device_printf(dev, "  subordinate bus   %d\n", sc->bus.sub);
161783c41143SJohn Baldwin #ifdef NEW_PCIB
161883c41143SJohn Baldwin 	if (pcib_is_window_open(&sc->io))
161983c41143SJohn Baldwin 	    device_printf(dev, "  I/O decode        0x%jx-0x%jx\n",
162083c41143SJohn Baldwin 	      (uintmax_t)sc->io.base, (uintmax_t)sc->io.limit);
162183c41143SJohn Baldwin 	if (pcib_is_window_open(&sc->mem))
162283c41143SJohn Baldwin 	    device_printf(dev, "  memory decode     0x%jx-0x%jx\n",
162383c41143SJohn Baldwin 	      (uintmax_t)sc->mem.base, (uintmax_t)sc->mem.limit);
162483c41143SJohn Baldwin 	if (pcib_is_window_open(&sc->pmem))
162583c41143SJohn Baldwin 	    device_printf(dev, "  prefetched decode 0x%jx-0x%jx\n",
162683c41143SJohn Baldwin 	      (uintmax_t)sc->pmem.base, (uintmax_t)sc->pmem.limit);
162783c41143SJohn Baldwin #else
162883c41143SJohn Baldwin 	if (pcib_is_io_open(sc))
162983c41143SJohn Baldwin 	    device_printf(dev, "  I/O decode        0x%x-0x%x\n",
163083c41143SJohn Baldwin 	      sc->iobase, sc->iolimit);
1631b0a2d4b8SWarner Losh 	if (pcib_is_nonprefetch_open(sc))
1632b0a2d4b8SWarner Losh 	    device_printf(dev, "  memory decode     0x%jx-0x%jx\n",
1633b0a2d4b8SWarner Losh 	      (uintmax_t)sc->membase, (uintmax_t)sc->memlimit);
1634b0a2d4b8SWarner Losh 	if (pcib_is_prefetch_open(sc))
1635b0a2d4b8SWarner Losh 	    device_printf(dev, "  prefetched decode 0x%jx-0x%jx\n",
1636b0a2d4b8SWarner Losh 	      (uintmax_t)sc->pmembase, (uintmax_t)sc->pmemlimit);
163783c41143SJohn Baldwin #endif
1638c825d4dcSJohn Baldwin 	if (sc->bridgectl & (PCIB_BCR_ISA_ENABLE | PCIB_BCR_VGA_ENABLE) ||
1639c825d4dcSJohn Baldwin 	    sc->flags & PCIB_SUBTRACTIVE) {
1640c825d4dcSJohn Baldwin 		device_printf(dev, "  special decode    ");
1641c825d4dcSJohn Baldwin 		comma = 0;
1642c825d4dcSJohn Baldwin 		if (sc->bridgectl & PCIB_BCR_ISA_ENABLE) {
1643c825d4dcSJohn Baldwin 			printf("ISA");
1644c825d4dcSJohn Baldwin 			comma = 1;
1645c825d4dcSJohn Baldwin 		}
1646c825d4dcSJohn Baldwin 		if (sc->bridgectl & PCIB_BCR_VGA_ENABLE) {
1647c825d4dcSJohn Baldwin 			printf("%sVGA", comma ? ", " : "");
1648c825d4dcSJohn Baldwin 			comma = 1;
1649c825d4dcSJohn Baldwin 		}
1650e4b59fc5SWarner Losh 		if (sc->flags & PCIB_SUBTRACTIVE)
1651c825d4dcSJohn Baldwin 			printf("%ssubtractive", comma ? ", " : "");
1652c825d4dcSJohn Baldwin 		printf("\n");
1653c825d4dcSJohn Baldwin 	}
1654bb0d0a8eSMike Smith     }
1655bb0d0a8eSMike Smith 
1656bb0d0a8eSMike Smith     /*
1657ef888152SJohn Baldwin      * Always enable busmastering on bridges so that transactions
1658ef888152SJohn Baldwin      * initiated on the secondary bus are passed through to the
1659ef888152SJohn Baldwin      * primary bus.
1660ef888152SJohn Baldwin      */
1661ef888152SJohn Baldwin     pci_enable_busmaster(dev);
16626f0d5884SJohn Baldwin }
1663bb0d0a8eSMike Smith 
166482cb5c3bSJohn Baldwin #ifdef PCI_HP
166582cb5c3bSJohn Baldwin static int
166682cb5c3bSJohn Baldwin pcib_present(struct pcib_softc *sc)
166782cb5c3bSJohn Baldwin {
166882cb5c3bSJohn Baldwin 
166982cb5c3bSJohn Baldwin 	if (sc->flags & PCIB_HOTPLUG)
167082cb5c3bSJohn Baldwin 		return (pcib_hotplug_present(sc) != 0);
167182cb5c3bSJohn Baldwin 	return (1);
167282cb5c3bSJohn Baldwin }
167382cb5c3bSJohn Baldwin #endif
167482cb5c3bSJohn Baldwin 
167538906aedSJohn Baldwin int
167667e7d085SJohn Baldwin pcib_attach_child(device_t dev)
16776f0d5884SJohn Baldwin {
16786f0d5884SJohn Baldwin 	struct pcib_softc *sc;
16796f0d5884SJohn Baldwin 
16806f0d5884SJohn Baldwin 	sc = device_get_softc(dev);
168167e7d085SJohn Baldwin 	if (sc->bus.sec == 0) {
168267e7d085SJohn Baldwin 		/* no secondary bus; we should have fixed this */
168367e7d085SJohn Baldwin 		return(0);
168467e7d085SJohn Baldwin 	}
168567e7d085SJohn Baldwin 
168682cb5c3bSJohn Baldwin #ifdef PCI_HP
168782cb5c3bSJohn Baldwin 	if (!pcib_present(sc)) {
168882cb5c3bSJohn Baldwin 		/* An empty HotPlug slot, so don't add a PCI bus yet. */
168982cb5c3bSJohn Baldwin 		return (0);
169082cb5c3bSJohn Baldwin 	}
169182cb5c3bSJohn Baldwin #endif
169282cb5c3bSJohn Baldwin 
169367e7d085SJohn Baldwin 	sc->child = device_add_child(dev, "pci", -1);
1694bb0d0a8eSMike Smith 	return (bus_generic_attach(dev));
1695bb0d0a8eSMike Smith }
1696bb0d0a8eSMike Smith 
169767e7d085SJohn Baldwin int
169867e7d085SJohn Baldwin pcib_attach(device_t dev)
169967e7d085SJohn Baldwin {
170067e7d085SJohn Baldwin 
170167e7d085SJohn Baldwin     pcib_attach_common(dev);
170267e7d085SJohn Baldwin     return (pcib_attach_child(dev));
1703bb0d0a8eSMike Smith }
1704bb0d0a8eSMike Smith 
17056f0d5884SJohn Baldwin int
17066f33eaa5SJohn Baldwin pcib_detach(device_t dev)
17076f33eaa5SJohn Baldwin {
17086f33eaa5SJohn Baldwin #if defined(PCI_HP) || defined(NEW_PCIB)
17096f33eaa5SJohn Baldwin 	struct pcib_softc *sc;
17106f33eaa5SJohn Baldwin #endif
17116f33eaa5SJohn Baldwin 	int error;
17126f33eaa5SJohn Baldwin 
17136f33eaa5SJohn Baldwin #if defined(PCI_HP) || defined(NEW_PCIB)
17146f33eaa5SJohn Baldwin 	sc = device_get_softc(dev);
17156f33eaa5SJohn Baldwin #endif
17166f33eaa5SJohn Baldwin 	error = bus_generic_detach(dev);
17176f33eaa5SJohn Baldwin 	if (error)
17186f33eaa5SJohn Baldwin 		return (error);
17196f33eaa5SJohn Baldwin #ifdef PCI_HP
17206f33eaa5SJohn Baldwin 	if (sc->flags & PCIB_HOTPLUG) {
17216f33eaa5SJohn Baldwin 		error = pcib_detach_hotplug(sc);
17226f33eaa5SJohn Baldwin 		if (error)
17236f33eaa5SJohn Baldwin 			return (error);
17246f33eaa5SJohn Baldwin 	}
17256f33eaa5SJohn Baldwin #endif
17266f33eaa5SJohn Baldwin 	error = device_delete_children(dev);
17276f33eaa5SJohn Baldwin 	if (error)
17286f33eaa5SJohn Baldwin 		return (error);
17296f33eaa5SJohn Baldwin #ifdef NEW_PCIB
17306f33eaa5SJohn Baldwin 	pcib_free_windows(sc);
17316f33eaa5SJohn Baldwin #ifdef PCI_RES_BUS
17326f33eaa5SJohn Baldwin 	pcib_free_secbus(dev, &sc->bus);
17336f33eaa5SJohn Baldwin #endif
17346f33eaa5SJohn Baldwin #endif
17356f33eaa5SJohn Baldwin 	return (0);
17366f33eaa5SJohn Baldwin }
17376f33eaa5SJohn Baldwin 
17386f33eaa5SJohn Baldwin int
1739e36af292SJung-uk Kim pcib_suspend(device_t dev)
1740e36af292SJung-uk Kim {
1741e36af292SJung-uk Kim 
1742e36af292SJung-uk Kim 	pcib_cfg_save(device_get_softc(dev));
17437212fc6aSJohn Baldwin 	return (bus_generic_suspend(dev));
1744e36af292SJung-uk Kim }
1745e36af292SJung-uk Kim 
1746e36af292SJung-uk Kim int
1747e36af292SJung-uk Kim pcib_resume(device_t dev)
1748e36af292SJung-uk Kim {
1749e36af292SJung-uk Kim 
1750e36af292SJung-uk Kim 	pcib_cfg_restore(device_get_softc(dev));
1751e36af292SJung-uk Kim 	return (bus_generic_resume(dev));
1752e36af292SJung-uk Kim }
1753e36af292SJung-uk Kim 
1754809923caSJustin Hibbits void
1755809923caSJustin Hibbits pcib_bridge_init(device_t dev)
1756809923caSJustin Hibbits {
1757809923caSJustin Hibbits 	pci_write_config(dev, PCIR_IOBASEL_1, 0xff, 1);
1758809923caSJustin Hibbits 	pci_write_config(dev, PCIR_IOBASEH_1, 0xffff, 2);
1759809923caSJustin Hibbits 	pci_write_config(dev, PCIR_IOLIMITL_1, 0, 1);
1760809923caSJustin Hibbits 	pci_write_config(dev, PCIR_IOLIMITH_1, 0, 2);
1761809923caSJustin Hibbits 	pci_write_config(dev, PCIR_MEMBASE_1, 0xffff, 2);
1762809923caSJustin Hibbits 	pci_write_config(dev, PCIR_MEMLIMIT_1, 0, 2);
1763809923caSJustin Hibbits 	pci_write_config(dev, PCIR_PMBASEL_1, 0xffff, 2);
1764809923caSJustin Hibbits 	pci_write_config(dev, PCIR_PMBASEH_1, 0xffffffff, 4);
1765809923caSJustin Hibbits 	pci_write_config(dev, PCIR_PMLIMITL_1, 0, 2);
1766809923caSJustin Hibbits 	pci_write_config(dev, PCIR_PMLIMITH_1, 0, 4);
1767809923caSJustin Hibbits }
1768809923caSJustin Hibbits 
1769e36af292SJung-uk Kim int
177082cb5c3bSJohn Baldwin pcib_child_present(device_t dev, device_t child)
177182cb5c3bSJohn Baldwin {
177282cb5c3bSJohn Baldwin #ifdef PCI_HP
177382cb5c3bSJohn Baldwin 	struct pcib_softc *sc = device_get_softc(dev);
177482cb5c3bSJohn Baldwin 	int retval;
177582cb5c3bSJohn Baldwin 
177682cb5c3bSJohn Baldwin 	retval = bus_child_present(dev);
177782cb5c3bSJohn Baldwin 	if (retval != 0 && sc->flags & PCIB_HOTPLUG)
177882cb5c3bSJohn Baldwin 		retval = pcib_hotplug_present(sc);
177982cb5c3bSJohn Baldwin 	return (retval);
178082cb5c3bSJohn Baldwin #else
178182cb5c3bSJohn Baldwin 	return (bus_child_present(dev));
178282cb5c3bSJohn Baldwin #endif
178382cb5c3bSJohn Baldwin }
178482cb5c3bSJohn Baldwin 
178582cb5c3bSJohn Baldwin int
1786bb0d0a8eSMike Smith pcib_read_ivar(device_t dev, device_t child, int which, uintptr_t *result)
1787bb0d0a8eSMike Smith {
1788bb0d0a8eSMike Smith     struct pcib_softc	*sc = device_get_softc(dev);
1789bb0d0a8eSMike Smith 
1790bb0d0a8eSMike Smith     switch (which) {
179155aaf894SMarius Strobl     case PCIB_IVAR_DOMAIN:
179255aaf894SMarius Strobl 	*result = sc->domain;
179355aaf894SMarius Strobl 	return(0);
1794bb0d0a8eSMike Smith     case PCIB_IVAR_BUS:
17954edef187SJohn Baldwin 	*result = sc->bus.sec;
1796bb0d0a8eSMike Smith 	return(0);
1797bb0d0a8eSMike Smith     }
1798bb0d0a8eSMike Smith     return(ENOENT);
1799bb0d0a8eSMike Smith }
1800bb0d0a8eSMike Smith 
18016f0d5884SJohn Baldwin int
1802bb0d0a8eSMike Smith pcib_write_ivar(device_t dev, device_t child, int which, uintptr_t value)
1803bb0d0a8eSMike Smith {
1804bb0d0a8eSMike Smith 
1805bb0d0a8eSMike Smith     switch (which) {
180655aaf894SMarius Strobl     case PCIB_IVAR_DOMAIN:
180755aaf894SMarius Strobl 	return(EINVAL);
1808bb0d0a8eSMike Smith     case PCIB_IVAR_BUS:
18094edef187SJohn Baldwin 	return(EINVAL);
1810bb0d0a8eSMike Smith     }
1811bb0d0a8eSMike Smith     return(ENOENT);
1812bb0d0a8eSMike Smith }
1813bb0d0a8eSMike Smith 
181483c41143SJohn Baldwin #ifdef NEW_PCIB
181583c41143SJohn Baldwin /*
181683c41143SJohn Baldwin  * Attempt to allocate a resource from the existing resources assigned
181783c41143SJohn Baldwin  * to a window.
181883c41143SJohn Baldwin  */
181983c41143SJohn Baldwin static struct resource *
182083c41143SJohn Baldwin pcib_suballoc_resource(struct pcib_softc *sc, struct pcib_window *w,
18212dd1bdf1SJustin Hibbits     device_t child, int type, int *rid, rman_res_t start, rman_res_t end,
18222dd1bdf1SJustin Hibbits     rman_res_t count, u_int flags)
182383c41143SJohn Baldwin {
182483c41143SJohn Baldwin 	struct resource *res;
182583c41143SJohn Baldwin 
182683c41143SJohn Baldwin 	if (!pcib_is_window_open(w))
182783c41143SJohn Baldwin 		return (NULL);
182883c41143SJohn Baldwin 
182983c41143SJohn Baldwin 	res = rman_reserve_resource(&w->rman, start, end, count,
183083c41143SJohn Baldwin 	    flags & ~RF_ACTIVE, child);
183183c41143SJohn Baldwin 	if (res == NULL)
183283c41143SJohn Baldwin 		return (NULL);
183383c41143SJohn Baldwin 
183483c41143SJohn Baldwin 	if (bootverbose)
183583c41143SJohn Baldwin 		device_printf(sc->dev,
1836da1b038aSJustin Hibbits 		    "allocated %s range (%#jx-%#jx) for rid %x of %s\n",
183783c41143SJohn Baldwin 		    w->name, rman_get_start(res), rman_get_end(res), *rid,
183883c41143SJohn Baldwin 		    pcib_child_name(child));
183983c41143SJohn Baldwin 	rman_set_rid(res, *rid);
184083c41143SJohn Baldwin 
184183c41143SJohn Baldwin 	/*
184283c41143SJohn Baldwin 	 * If the resource should be active, pass that request up the
184383c41143SJohn Baldwin 	 * tree.  This assumes the parent drivers can handle
184483c41143SJohn Baldwin 	 * activating sub-allocated resources.
184583c41143SJohn Baldwin 	 */
184683c41143SJohn Baldwin 	if (flags & RF_ACTIVE) {
184783c41143SJohn Baldwin 		if (bus_activate_resource(child, type, *rid, res) != 0) {
184883c41143SJohn Baldwin 			rman_release_resource(res);
184983c41143SJohn Baldwin 			return (NULL);
185083c41143SJohn Baldwin 		}
185183c41143SJohn Baldwin 	}
185283c41143SJohn Baldwin 
185383c41143SJohn Baldwin 	return (res);
185483c41143SJohn Baldwin }
185583c41143SJohn Baldwin 
1856c825d4dcSJohn Baldwin /* Allocate a fresh resource range for an unconfigured window. */
1857c825d4dcSJohn Baldwin static int
1858c825d4dcSJohn Baldwin pcib_alloc_new_window(struct pcib_softc *sc, struct pcib_window *w, int type,
18592dd1bdf1SJustin Hibbits     rman_res_t start, rman_res_t end, rman_res_t count, u_int flags)
1860c825d4dcSJohn Baldwin {
1861c825d4dcSJohn Baldwin 	struct resource *res;
18622dd1bdf1SJustin Hibbits 	rman_res_t base, limit, wmask;
1863c825d4dcSJohn Baldwin 	int rid;
1864c825d4dcSJohn Baldwin 
1865c825d4dcSJohn Baldwin 	/*
1866c825d4dcSJohn Baldwin 	 * If this is an I/O window on a bridge with ISA enable set
1867c825d4dcSJohn Baldwin 	 * and the start address is below 64k, then try to allocate an
1868c825d4dcSJohn Baldwin 	 * initial window of 0x1000 bytes long starting at address
1869c825d4dcSJohn Baldwin 	 * 0xf000 and walking down.  Note that if the original request
1870c825d4dcSJohn Baldwin 	 * was larger than the non-aliased range size of 0x100 our
1871c825d4dcSJohn Baldwin 	 * caller would have raised the start address up to 64k
1872c825d4dcSJohn Baldwin 	 * already.
1873c825d4dcSJohn Baldwin 	 */
1874c825d4dcSJohn Baldwin 	if (type == SYS_RES_IOPORT && sc->bridgectl & PCIB_BCR_ISA_ENABLE &&
1875c825d4dcSJohn Baldwin 	    start < 65536) {
1876c825d4dcSJohn Baldwin 		for (base = 0xf000; (long)base >= 0; base -= 0x1000) {
1877c825d4dcSJohn Baldwin 			limit = base + 0xfff;
1878c825d4dcSJohn Baldwin 
1879c825d4dcSJohn Baldwin 			/*
1880c825d4dcSJohn Baldwin 			 * Skip ranges that wouldn't work for the
1881c825d4dcSJohn Baldwin 			 * original request.  Note that the actual
1882c825d4dcSJohn Baldwin 			 * window that overlaps are the non-alias
1883c825d4dcSJohn Baldwin 			 * ranges within [base, limit], so this isn't
1884c825d4dcSJohn Baldwin 			 * quite a simple comparison.
1885c825d4dcSJohn Baldwin 			 */
1886c825d4dcSJohn Baldwin 			if (start + count > limit - 0x400)
1887c825d4dcSJohn Baldwin 				continue;
1888c825d4dcSJohn Baldwin 			if (base == 0) {
1889c825d4dcSJohn Baldwin 				/*
1890c825d4dcSJohn Baldwin 				 * The first open region for the window at
1891c825d4dcSJohn Baldwin 				 * 0 is 0x400-0x4ff.
1892c825d4dcSJohn Baldwin 				 */
1893c825d4dcSJohn Baldwin 				if (end - count + 1 < 0x400)
1894c825d4dcSJohn Baldwin 					continue;
1895c825d4dcSJohn Baldwin 			} else {
1896c825d4dcSJohn Baldwin 				if (end - count + 1 < base)
1897c825d4dcSJohn Baldwin 					continue;
1898c825d4dcSJohn Baldwin 			}
1899c825d4dcSJohn Baldwin 
1900c825d4dcSJohn Baldwin 			if (pcib_alloc_nonisa_ranges(sc, base, limit) == 0) {
1901c825d4dcSJohn Baldwin 				w->base = base;
1902c825d4dcSJohn Baldwin 				w->limit = limit;
1903c825d4dcSJohn Baldwin 				return (0);
1904c825d4dcSJohn Baldwin 			}
1905c825d4dcSJohn Baldwin 		}
1906c825d4dcSJohn Baldwin 		return (ENOSPC);
1907c825d4dcSJohn Baldwin 	}
1908c825d4dcSJohn Baldwin 
190989977ce2SJustin Hibbits 	wmask = ((rman_res_t)1 << w->step) - 1;
1910c825d4dcSJohn Baldwin 	if (RF_ALIGNMENT(flags) < w->step) {
1911c825d4dcSJohn Baldwin 		flags &= ~RF_ALIGNMENT_MASK;
1912c825d4dcSJohn Baldwin 		flags |= RF_ALIGNMENT_LOG2(w->step);
1913c825d4dcSJohn Baldwin 	}
1914c825d4dcSJohn Baldwin 	start &= ~wmask;
1915c825d4dcSJohn Baldwin 	end |= wmask;
191689977ce2SJustin Hibbits 	count = roundup2(count, (rman_res_t)1 << w->step);
1917c825d4dcSJohn Baldwin 	rid = w->reg;
1918c825d4dcSJohn Baldwin 	res = bus_alloc_resource(sc->dev, type, &rid, start, end, count,
1919c825d4dcSJohn Baldwin 	    flags & ~RF_ACTIVE);
1920c825d4dcSJohn Baldwin 	if (res == NULL)
1921c825d4dcSJohn Baldwin 		return (ENOSPC);
1922c825d4dcSJohn Baldwin 	pcib_add_window_resources(w, &res, 1);
1923c825d4dcSJohn Baldwin 	pcib_activate_window(sc, type);
1924c825d4dcSJohn Baldwin 	w->base = rman_get_start(res);
1925c825d4dcSJohn Baldwin 	w->limit = rman_get_end(res);
1926c825d4dcSJohn Baldwin 	return (0);
1927c825d4dcSJohn Baldwin }
1928c825d4dcSJohn Baldwin 
1929c825d4dcSJohn Baldwin /* Try to expand an existing window to the requested base and limit. */
1930c825d4dcSJohn Baldwin static int
1931c825d4dcSJohn Baldwin pcib_expand_window(struct pcib_softc *sc, struct pcib_window *w, int type,
19322dd1bdf1SJustin Hibbits     rman_res_t base, rman_res_t limit)
1933c825d4dcSJohn Baldwin {
1934c825d4dcSJohn Baldwin 	struct resource *res;
1935c825d4dcSJohn Baldwin 	int error, i, force_64k_base;
1936c825d4dcSJohn Baldwin 
1937c825d4dcSJohn Baldwin 	KASSERT(base <= w->base && limit >= w->limit,
1938c825d4dcSJohn Baldwin 	    ("attempting to shrink window"));
1939c825d4dcSJohn Baldwin 
1940c825d4dcSJohn Baldwin 	/*
1941c825d4dcSJohn Baldwin 	 * XXX: pcib_grow_window() doesn't try to do this anyway and
1942c825d4dcSJohn Baldwin 	 * the error handling for all the edge cases would be tedious.
1943c825d4dcSJohn Baldwin 	 */
1944c825d4dcSJohn Baldwin 	KASSERT(limit == w->limit || base == w->base,
1945c825d4dcSJohn Baldwin 	    ("attempting to grow both ends of a window"));
1946c825d4dcSJohn Baldwin 
1947c825d4dcSJohn Baldwin 	/*
1948c825d4dcSJohn Baldwin 	 * Yet more special handling for requests to expand an I/O
1949c825d4dcSJohn Baldwin 	 * window behind an ISA-enabled bridge.  Since I/O windows
1950c825d4dcSJohn Baldwin 	 * have to grow in 0x1000 increments and the end of the 0xffff
1951c825d4dcSJohn Baldwin 	 * range is an alias, growing a window below 64k will always
1952c825d4dcSJohn Baldwin 	 * result in allocating new resources and never adjusting an
1953c825d4dcSJohn Baldwin 	 * existing resource.
1954c825d4dcSJohn Baldwin 	 */
1955c825d4dcSJohn Baldwin 	if (type == SYS_RES_IOPORT && sc->bridgectl & PCIB_BCR_ISA_ENABLE &&
1956c825d4dcSJohn Baldwin 	    (limit <= 65535 || (base <= 65535 && base != w->base))) {
1957c825d4dcSJohn Baldwin 		KASSERT(limit == w->limit || limit <= 65535,
1958c825d4dcSJohn Baldwin 		    ("attempting to grow both ends across 64k ISA alias"));
1959c825d4dcSJohn Baldwin 
1960c825d4dcSJohn Baldwin 		if (base != w->base)
1961c825d4dcSJohn Baldwin 			error = pcib_alloc_nonisa_ranges(sc, base, w->base - 1);
1962c825d4dcSJohn Baldwin 		else
1963c825d4dcSJohn Baldwin 			error = pcib_alloc_nonisa_ranges(sc, w->limit + 1,
1964c825d4dcSJohn Baldwin 			    limit);
1965c825d4dcSJohn Baldwin 		if (error == 0) {
1966c825d4dcSJohn Baldwin 			w->base = base;
1967c825d4dcSJohn Baldwin 			w->limit = limit;
1968c825d4dcSJohn Baldwin 		}
1969c825d4dcSJohn Baldwin 		return (error);
1970c825d4dcSJohn Baldwin 	}
1971c825d4dcSJohn Baldwin 
1972c825d4dcSJohn Baldwin 	/*
1973c825d4dcSJohn Baldwin 	 * Find the existing resource to adjust.  Usually there is only one,
1974c825d4dcSJohn Baldwin 	 * but for an ISA-enabled bridge we might be growing the I/O window
1975c825d4dcSJohn Baldwin 	 * above 64k and need to find the existing resource that maps all
1976c825d4dcSJohn Baldwin 	 * of the area above 64k.
1977c825d4dcSJohn Baldwin 	 */
1978c825d4dcSJohn Baldwin 	for (i = 0; i < w->count; i++) {
1979c825d4dcSJohn Baldwin 		if (rman_get_end(w->res[i]) == w->limit)
1980c825d4dcSJohn Baldwin 			break;
1981c825d4dcSJohn Baldwin 	}
1982c825d4dcSJohn Baldwin 	KASSERT(i != w->count, ("did not find existing resource"));
1983c825d4dcSJohn Baldwin 	res = w->res[i];
1984c825d4dcSJohn Baldwin 
1985c825d4dcSJohn Baldwin 	/*
1986c825d4dcSJohn Baldwin 	 * Usually the resource we found should match the window's
1987c825d4dcSJohn Baldwin 	 * existing range.  The one exception is the ISA-enabled case
1988c825d4dcSJohn Baldwin 	 * mentioned above in which case the resource should start at
1989c825d4dcSJohn Baldwin 	 * 64k.
1990c825d4dcSJohn Baldwin 	 */
1991c825d4dcSJohn Baldwin 	if (type == SYS_RES_IOPORT && sc->bridgectl & PCIB_BCR_ISA_ENABLE &&
1992c825d4dcSJohn Baldwin 	    w->base <= 65535) {
1993c825d4dcSJohn Baldwin 		KASSERT(rman_get_start(res) == 65536,
1994c825d4dcSJohn Baldwin 		    ("existing resource mismatch"));
1995c825d4dcSJohn Baldwin 		force_64k_base = 1;
1996c825d4dcSJohn Baldwin 	} else {
1997c825d4dcSJohn Baldwin 		KASSERT(w->base == rman_get_start(res),
1998c825d4dcSJohn Baldwin 		    ("existing resource mismatch"));
1999c825d4dcSJohn Baldwin 		force_64k_base = 0;
2000c825d4dcSJohn Baldwin 	}
2001c825d4dcSJohn Baldwin 
2002c825d4dcSJohn Baldwin 	error = bus_adjust_resource(sc->dev, type, res, force_64k_base ?
2003c825d4dcSJohn Baldwin 	    rman_get_start(res) : base, limit);
2004c825d4dcSJohn Baldwin 	if (error)
2005c825d4dcSJohn Baldwin 		return (error);
2006c825d4dcSJohn Baldwin 
2007c825d4dcSJohn Baldwin 	/* Add the newly allocated region to the resource manager. */
2008c825d4dcSJohn Baldwin 	if (w->base != base) {
2009c825d4dcSJohn Baldwin 		error = rman_manage_region(&w->rman, base, w->base - 1);
2010c825d4dcSJohn Baldwin 		w->base = base;
2011c825d4dcSJohn Baldwin 	} else {
2012c825d4dcSJohn Baldwin 		error = rman_manage_region(&w->rman, w->limit + 1, limit);
2013c825d4dcSJohn Baldwin 		w->limit = limit;
2014c825d4dcSJohn Baldwin 	}
2015c825d4dcSJohn Baldwin 	if (error) {
2016c825d4dcSJohn Baldwin 		if (bootverbose)
2017c825d4dcSJohn Baldwin 			device_printf(sc->dev,
2018c825d4dcSJohn Baldwin 			    "failed to expand %s resource manager\n", w->name);
2019c825d4dcSJohn Baldwin 		(void)bus_adjust_resource(sc->dev, type, res, force_64k_base ?
2020c825d4dcSJohn Baldwin 		    rman_get_start(res) : w->base, w->limit);
2021c825d4dcSJohn Baldwin 	}
2022c825d4dcSJohn Baldwin 	return (error);
2023c825d4dcSJohn Baldwin }
2024c825d4dcSJohn Baldwin 
202583c41143SJohn Baldwin /*
202683c41143SJohn Baldwin  * Attempt to grow a window to make room for a given resource request.
202783c41143SJohn Baldwin  */
202883c41143SJohn Baldwin static int
202983c41143SJohn Baldwin pcib_grow_window(struct pcib_softc *sc, struct pcib_window *w, int type,
20302dd1bdf1SJustin Hibbits     rman_res_t start, rman_res_t end, rman_res_t count, u_int flags)
203183c41143SJohn Baldwin {
20322dd1bdf1SJustin Hibbits 	rman_res_t align, start_free, end_free, front, back, wmask;
2033c825d4dcSJohn Baldwin 	int error;
203483c41143SJohn Baldwin 
203583c41143SJohn Baldwin 	/*
203683c41143SJohn Baldwin 	 * Clamp the desired resource range to the maximum address
203783c41143SJohn Baldwin 	 * this window supports.  Reject impossible requests.
2038c825d4dcSJohn Baldwin 	 *
2039c825d4dcSJohn Baldwin 	 * For I/O port requests behind a bridge with the ISA enable
2040c825d4dcSJohn Baldwin 	 * bit set, force large allocations to start above 64k.
204183c41143SJohn Baldwin 	 */
204283c41143SJohn Baldwin 	if (!w->valid)
204383c41143SJohn Baldwin 		return (EINVAL);
2044c825d4dcSJohn Baldwin 	if (sc->bridgectl & PCIB_BCR_ISA_ENABLE && count > 0x100 &&
2045c825d4dcSJohn Baldwin 	    start < 65536)
2046c825d4dcSJohn Baldwin 		start = 65536;
204783c41143SJohn Baldwin 	if (end > w->rman.rm_end)
204883c41143SJohn Baldwin 		end = w->rman.rm_end;
204983c41143SJohn Baldwin 	if (start + count - 1 > end || start + count < start)
205083c41143SJohn Baldwin 		return (EINVAL);
205189977ce2SJustin Hibbits 	wmask = ((rman_res_t)1 << w->step) - 1;
205283c41143SJohn Baldwin 
205383c41143SJohn Baldwin 	/*
205483c41143SJohn Baldwin 	 * If there is no resource at all, just try to allocate enough
205583c41143SJohn Baldwin 	 * aligned space for this resource.
205683c41143SJohn Baldwin 	 */
205783c41143SJohn Baldwin 	if (w->res == NULL) {
2058c825d4dcSJohn Baldwin 		error = pcib_alloc_new_window(sc, w, type, start, end, count,
2059c825d4dcSJohn Baldwin 		    flags);
2060c825d4dcSJohn Baldwin 		if (error) {
206183c41143SJohn Baldwin 			if (bootverbose)
206283c41143SJohn Baldwin 				device_printf(sc->dev,
2063da1b038aSJustin Hibbits 		    "failed to allocate initial %s window (%#jx-%#jx,%#jx)\n",
206483c41143SJohn Baldwin 				    w->name, start, end, count);
206583c41143SJohn Baldwin 			return (error);
206683c41143SJohn Baldwin 		}
2067c825d4dcSJohn Baldwin 		if (bootverbose)
2068c825d4dcSJohn Baldwin 			device_printf(sc->dev,
2069c825d4dcSJohn Baldwin 			    "allocated initial %s window of %#jx-%#jx\n",
2070c825d4dcSJohn Baldwin 			    w->name, (uintmax_t)w->base, (uintmax_t)w->limit);
207183c41143SJohn Baldwin 		goto updatewin;
207283c41143SJohn Baldwin 	}
207383c41143SJohn Baldwin 
207483c41143SJohn Baldwin 	/*
207583c41143SJohn Baldwin 	 * See if growing the window would help.  Compute the minimum
207683c41143SJohn Baldwin 	 * amount of address space needed on both the front and back
207783c41143SJohn Baldwin 	 * ends of the existing window to satisfy the allocation.
207883c41143SJohn Baldwin 	 *
207983c41143SJohn Baldwin 	 * For each end, build a candidate region adjusting for the
208083c41143SJohn Baldwin 	 * required alignment, etc.  If there is a free region at the
208183c41143SJohn Baldwin 	 * edge of the window, grow from the inner edge of the free
208283c41143SJohn Baldwin 	 * region.  Otherwise grow from the window boundary.
208383c41143SJohn Baldwin 	 *
2084c825d4dcSJohn Baldwin 	 * Growing an I/O window below 64k for a bridge with the ISA
2085c825d4dcSJohn Baldwin 	 * enable bit doesn't require any special magic as the step
2086c825d4dcSJohn Baldwin 	 * size of an I/O window (1k) always includes multiple
2087c825d4dcSJohn Baldwin 	 * non-alias ranges when it is grown in either direction.
2088c825d4dcSJohn Baldwin 	 *
208983c41143SJohn Baldwin 	 * XXX: Special case: if w->res is completely empty and the
209083c41143SJohn Baldwin 	 * request size is larger than w->res, we should find the
209183c41143SJohn Baldwin 	 * optimal aligned buffer containing w->res and allocate that.
209283c41143SJohn Baldwin 	 */
209383c41143SJohn Baldwin 	if (bootverbose)
209483c41143SJohn Baldwin 		device_printf(sc->dev,
2095da1b038aSJustin Hibbits 		    "attempting to grow %s window for (%#jx-%#jx,%#jx)\n",
209683c41143SJohn Baldwin 		    w->name, start, end, count);
209789977ce2SJustin Hibbits 	align = (rman_res_t)1 << RF_ALIGNMENT(flags);
2098c825d4dcSJohn Baldwin 	if (start < w->base) {
209983c41143SJohn Baldwin 		if (rman_first_free_region(&w->rman, &start_free, &end_free) !=
2100c825d4dcSJohn Baldwin 		    0 || start_free != w->base)
2101c825d4dcSJohn Baldwin 			end_free = w->base;
210283c41143SJohn Baldwin 		if (end_free > end)
2103ddac8cc9SJohn Baldwin 			end_free = end + 1;
210483c41143SJohn Baldwin 
210583c41143SJohn Baldwin 		/* Move end_free down until it is properly aligned. */
210683c41143SJohn Baldwin 		end_free &= ~(align - 1);
2107a49dcb46SJohn Baldwin 		end_free--;
2108a49dcb46SJohn Baldwin 		front = end_free - (count - 1);
210983c41143SJohn Baldwin 
211083c41143SJohn Baldwin 		/*
211183c41143SJohn Baldwin 		 * The resource would now be allocated at (front,
211283c41143SJohn Baldwin 		 * end_free).  Ensure that fits in the (start, end)
211383c41143SJohn Baldwin 		 * bounds.  end_free is checked above.  If 'front' is
211483c41143SJohn Baldwin 		 * ok, ensure it is properly aligned for this window.
211583c41143SJohn Baldwin 		 * Also check for underflow.
211683c41143SJohn Baldwin 		 */
211783c41143SJohn Baldwin 		if (front >= start && front <= end_free) {
211883c41143SJohn Baldwin 			if (bootverbose)
2119da1b038aSJustin Hibbits 				printf("\tfront candidate range: %#jx-%#jx\n",
212083c41143SJohn Baldwin 				    front, end_free);
2121a7b5acacSJohn Baldwin 			front &= ~wmask;
2122c825d4dcSJohn Baldwin 			front = w->base - front;
212383c41143SJohn Baldwin 		} else
212483c41143SJohn Baldwin 			front = 0;
212583c41143SJohn Baldwin 	} else
212683c41143SJohn Baldwin 		front = 0;
2127c825d4dcSJohn Baldwin 	if (end > w->limit) {
212883c41143SJohn Baldwin 		if (rman_last_free_region(&w->rman, &start_free, &end_free) !=
2129c825d4dcSJohn Baldwin 		    0 || end_free != w->limit)
2130c825d4dcSJohn Baldwin 			start_free = w->limit + 1;
213183c41143SJohn Baldwin 		if (start_free < start)
213283c41143SJohn Baldwin 			start_free = start;
213383c41143SJohn Baldwin 
213483c41143SJohn Baldwin 		/* Move start_free up until it is properly aligned. */
213583c41143SJohn Baldwin 		start_free = roundup2(start_free, align);
2136a49dcb46SJohn Baldwin 		back = start_free + count - 1;
213783c41143SJohn Baldwin 
213883c41143SJohn Baldwin 		/*
213983c41143SJohn Baldwin 		 * The resource would now be allocated at (start_free,
214083c41143SJohn Baldwin 		 * back).  Ensure that fits in the (start, end)
214183c41143SJohn Baldwin 		 * bounds.  start_free is checked above.  If 'back' is
214283c41143SJohn Baldwin 		 * ok, ensure it is properly aligned for this window.
214383c41143SJohn Baldwin 		 * Also check for overflow.
214483c41143SJohn Baldwin 		 */
214583c41143SJohn Baldwin 		if (back <= end && start_free <= back) {
214683c41143SJohn Baldwin 			if (bootverbose)
2147da1b038aSJustin Hibbits 				printf("\tback candidate range: %#jx-%#jx\n",
214883c41143SJohn Baldwin 				    start_free, back);
2149a7b5acacSJohn Baldwin 			back |= wmask;
2150c825d4dcSJohn Baldwin 			back -= w->limit;
215183c41143SJohn Baldwin 		} else
215283c41143SJohn Baldwin 			back = 0;
215383c41143SJohn Baldwin 	} else
215483c41143SJohn Baldwin 		back = 0;
215583c41143SJohn Baldwin 
215683c41143SJohn Baldwin 	/*
215783c41143SJohn Baldwin 	 * Try to allocate the smallest needed region first.
215883c41143SJohn Baldwin 	 * If that fails, fall back to the other region.
215983c41143SJohn Baldwin 	 */
216083c41143SJohn Baldwin 	error = ENOSPC;
216183c41143SJohn Baldwin 	while (front != 0 || back != 0) {
216283c41143SJohn Baldwin 		if (front != 0 && (front <= back || back == 0)) {
2163c825d4dcSJohn Baldwin 			error = pcib_expand_window(sc, w, type, w->base - front,
2164c825d4dcSJohn Baldwin 			    w->limit);
216583c41143SJohn Baldwin 			if (error == 0)
216683c41143SJohn Baldwin 				break;
216783c41143SJohn Baldwin 			front = 0;
216883c41143SJohn Baldwin 		} else {
2169c825d4dcSJohn Baldwin 			error = pcib_expand_window(sc, w, type, w->base,
2170c825d4dcSJohn Baldwin 			    w->limit + back);
217183c41143SJohn Baldwin 			if (error == 0)
217283c41143SJohn Baldwin 				break;
217383c41143SJohn Baldwin 			back = 0;
217483c41143SJohn Baldwin 		}
217583c41143SJohn Baldwin 	}
217683c41143SJohn Baldwin 
217783c41143SJohn Baldwin 	if (error)
217883c41143SJohn Baldwin 		return (error);
217983c41143SJohn Baldwin 	if (bootverbose)
2180c825d4dcSJohn Baldwin 		device_printf(sc->dev, "grew %s window to %#jx-%#jx\n",
2181c825d4dcSJohn Baldwin 		    w->name, (uintmax_t)w->base, (uintmax_t)w->limit);
218283c41143SJohn Baldwin 
218383c41143SJohn Baldwin updatewin:
2184c825d4dcSJohn Baldwin 	/* Write the new window. */
2185a7b5acacSJohn Baldwin 	KASSERT((w->base & wmask) == 0, ("start address is not aligned"));
2186a7b5acacSJohn Baldwin 	KASSERT((w->limit & wmask) == wmask, ("end address is not aligned"));
218783c41143SJohn Baldwin 	pcib_write_windows(sc, w->mask);
218883c41143SJohn Baldwin 	return (0);
218983c41143SJohn Baldwin }
219083c41143SJohn Baldwin 
219183c41143SJohn Baldwin /*
219283c41143SJohn Baldwin  * We have to trap resource allocation requests and ensure that the bridge
219383c41143SJohn Baldwin  * is set up to, or capable of handling them.
219483c41143SJohn Baldwin  */
219583c41143SJohn Baldwin struct resource *
219683c41143SJohn Baldwin pcib_alloc_resource(device_t dev, device_t child, int type, int *rid,
21972dd1bdf1SJustin Hibbits     rman_res_t start, rman_res_t end, rman_res_t count, u_int flags)
219883c41143SJohn Baldwin {
219983c41143SJohn Baldwin 	struct pcib_softc *sc;
220083c41143SJohn Baldwin 	struct resource *r;
220183c41143SJohn Baldwin 
220283c41143SJohn Baldwin 	sc = device_get_softc(dev);
220383c41143SJohn Baldwin 
220483c41143SJohn Baldwin 	/*
220583c41143SJohn Baldwin 	 * VGA resources are decoded iff the VGA enable bit is set in
220683c41143SJohn Baldwin 	 * the bridge control register.  VGA resources do not fall into
220783c41143SJohn Baldwin 	 * the resource windows and are passed up to the parent.
220883c41143SJohn Baldwin 	 */
220983c41143SJohn Baldwin 	if ((type == SYS_RES_IOPORT && pci_is_vga_ioport_range(start, end)) ||
221083c41143SJohn Baldwin 	    (type == SYS_RES_MEMORY && pci_is_vga_memory_range(start, end))) {
221183c41143SJohn Baldwin 		if (sc->bridgectl & PCIB_BCR_VGA_ENABLE)
221283c41143SJohn Baldwin 			return (bus_generic_alloc_resource(dev, child, type,
221383c41143SJohn Baldwin 			    rid, start, end, count, flags));
221483c41143SJohn Baldwin 		else
221583c41143SJohn Baldwin 			return (NULL);
221683c41143SJohn Baldwin 	}
221783c41143SJohn Baldwin 
221883c41143SJohn Baldwin 	switch (type) {
22194edef187SJohn Baldwin #ifdef PCI_RES_BUS
22204edef187SJohn Baldwin 	case PCI_RES_BUS:
22214edef187SJohn Baldwin 		return (pcib_alloc_subbus(&sc->bus, child, rid, start, end,
22224edef187SJohn Baldwin 		    count, flags));
22234edef187SJohn Baldwin #endif
222483c41143SJohn Baldwin 	case SYS_RES_IOPORT:
2225c825d4dcSJohn Baldwin 		if (pcib_is_isa_range(sc, start, end, count))
2226c825d4dcSJohn Baldwin 			return (NULL);
222783c41143SJohn Baldwin 		r = pcib_suballoc_resource(sc, &sc->io, child, type, rid, start,
222883c41143SJohn Baldwin 		    end, count, flags);
2229a6c82265SMarius Strobl 		if (r != NULL || (sc->flags & PCIB_SUBTRACTIVE) != 0)
223083c41143SJohn Baldwin 			break;
223183c41143SJohn Baldwin 		if (pcib_grow_window(sc, &sc->io, type, start, end, count,
223283c41143SJohn Baldwin 		    flags) == 0)
223383c41143SJohn Baldwin 			r = pcib_suballoc_resource(sc, &sc->io, child, type,
223483c41143SJohn Baldwin 			    rid, start, end, count, flags);
223583c41143SJohn Baldwin 		break;
223683c41143SJohn Baldwin 	case SYS_RES_MEMORY:
223783c41143SJohn Baldwin 		/*
223883c41143SJohn Baldwin 		 * For prefetchable resources, prefer the prefetchable
223983c41143SJohn Baldwin 		 * memory window, but fall back to the regular memory
224083c41143SJohn Baldwin 		 * window if that fails.  Try both windows before
224183c41143SJohn Baldwin 		 * attempting to grow a window in case the firmware
224283c41143SJohn Baldwin 		 * has used a range in the regular memory window to
224383c41143SJohn Baldwin 		 * map a prefetchable BAR.
224483c41143SJohn Baldwin 		 */
224583c41143SJohn Baldwin 		if (flags & RF_PREFETCHABLE) {
224683c41143SJohn Baldwin 			r = pcib_suballoc_resource(sc, &sc->pmem, child, type,
224783c41143SJohn Baldwin 			    rid, start, end, count, flags);
224883c41143SJohn Baldwin 			if (r != NULL)
224983c41143SJohn Baldwin 				break;
225083c41143SJohn Baldwin 		}
225183c41143SJohn Baldwin 		r = pcib_suballoc_resource(sc, &sc->mem, child, type, rid,
225283c41143SJohn Baldwin 		    start, end, count, flags);
2253a6c82265SMarius Strobl 		if (r != NULL || (sc->flags & PCIB_SUBTRACTIVE) != 0)
225483c41143SJohn Baldwin 			break;
225583c41143SJohn Baldwin 		if (flags & RF_PREFETCHABLE) {
225683c41143SJohn Baldwin 			if (pcib_grow_window(sc, &sc->pmem, type, start, end,
225783c41143SJohn Baldwin 			    count, flags) == 0) {
225883c41143SJohn Baldwin 				r = pcib_suballoc_resource(sc, &sc->pmem, child,
225983c41143SJohn Baldwin 				    type, rid, start, end, count, flags);
226083c41143SJohn Baldwin 				if (r != NULL)
226183c41143SJohn Baldwin 					break;
226283c41143SJohn Baldwin 			}
226383c41143SJohn Baldwin 		}
226483c41143SJohn Baldwin 		if (pcib_grow_window(sc, &sc->mem, type, start, end, count,
226583c41143SJohn Baldwin 		    flags & ~RF_PREFETCHABLE) == 0)
226683c41143SJohn Baldwin 			r = pcib_suballoc_resource(sc, &sc->mem, child, type,
226783c41143SJohn Baldwin 			    rid, start, end, count, flags);
226883c41143SJohn Baldwin 		break;
226983c41143SJohn Baldwin 	default:
227083c41143SJohn Baldwin 		return (bus_generic_alloc_resource(dev, child, type, rid,
227183c41143SJohn Baldwin 		    start, end, count, flags));
227283c41143SJohn Baldwin 	}
227383c41143SJohn Baldwin 
227483c41143SJohn Baldwin 	/*
227583c41143SJohn Baldwin 	 * If attempts to suballocate from the window fail but this is a
227683c41143SJohn Baldwin 	 * subtractive bridge, pass the request up the tree.
227783c41143SJohn Baldwin 	 */
227883c41143SJohn Baldwin 	if (sc->flags & PCIB_SUBTRACTIVE && r == NULL)
227983c41143SJohn Baldwin 		return (bus_generic_alloc_resource(dev, child, type, rid,
228083c41143SJohn Baldwin 		    start, end, count, flags));
228183c41143SJohn Baldwin 	return (r);
228283c41143SJohn Baldwin }
228383c41143SJohn Baldwin 
228483c41143SJohn Baldwin int
228583c41143SJohn Baldwin pcib_adjust_resource(device_t bus, device_t child, int type, struct resource *r,
22862dd1bdf1SJustin Hibbits     rman_res_t start, rman_res_t end)
228783c41143SJohn Baldwin {
228883c41143SJohn Baldwin 	struct pcib_softc *sc;
228983c41143SJohn Baldwin 
229083c41143SJohn Baldwin 	sc = device_get_softc(bus);
229183c41143SJohn Baldwin 	if (pcib_is_resource_managed(sc, type, r))
229283c41143SJohn Baldwin 		return (rman_adjust_resource(r, start, end));
229383c41143SJohn Baldwin 	return (bus_generic_adjust_resource(bus, child, type, r, start, end));
229483c41143SJohn Baldwin }
229583c41143SJohn Baldwin 
229683c41143SJohn Baldwin int
229783c41143SJohn Baldwin pcib_release_resource(device_t dev, device_t child, int type, int rid,
229883c41143SJohn Baldwin     struct resource *r)
229983c41143SJohn Baldwin {
230083c41143SJohn Baldwin 	struct pcib_softc *sc;
230183c41143SJohn Baldwin 	int error;
230283c41143SJohn Baldwin 
230383c41143SJohn Baldwin 	sc = device_get_softc(dev);
230483c41143SJohn Baldwin 	if (pcib_is_resource_managed(sc, type, r)) {
230583c41143SJohn Baldwin 		if (rman_get_flags(r) & RF_ACTIVE) {
230683c41143SJohn Baldwin 			error = bus_deactivate_resource(child, type, rid, r);
230783c41143SJohn Baldwin 			if (error)
230883c41143SJohn Baldwin 				return (error);
230983c41143SJohn Baldwin 		}
231083c41143SJohn Baldwin 		return (rman_release_resource(r));
231183c41143SJohn Baldwin 	}
231283c41143SJohn Baldwin 	return (bus_generic_release_resource(dev, child, type, rid, r));
231383c41143SJohn Baldwin }
231483c41143SJohn Baldwin #else
2315bb0d0a8eSMike Smith /*
2316bb0d0a8eSMike Smith  * We have to trap resource allocation requests and ensure that the bridge
2317bb0d0a8eSMike Smith  * is set up to, or capable of handling them.
2318bb0d0a8eSMike Smith  */
23196f0d5884SJohn Baldwin struct resource *
2320bb0d0a8eSMike Smith pcib_alloc_resource(device_t dev, device_t child, int type, int *rid,
23212dd1bdf1SJustin Hibbits     rman_res_t start, rman_res_t end, rman_res_t count, u_int flags)
2322bb0d0a8eSMike Smith {
2323bb0d0a8eSMike Smith 	struct pcib_softc	*sc = device_get_softc(dev);
232426043836SJohn Baldwin 	const char *name, *suffix;
2325a8b354a8SWarner Losh 	int ok;
2326bb0d0a8eSMike Smith 
2327bb0d0a8eSMike Smith 	/*
2328bb0d0a8eSMike Smith 	 * Fail the allocation for this range if it's not supported.
2329bb0d0a8eSMike Smith 	 */
233026043836SJohn Baldwin 	name = device_get_nameunit(child);
233126043836SJohn Baldwin 	if (name == NULL) {
233226043836SJohn Baldwin 		name = "";
233326043836SJohn Baldwin 		suffix = "";
233426043836SJohn Baldwin 	} else
233526043836SJohn Baldwin 		suffix = " ";
2336bb0d0a8eSMike Smith 	switch (type) {
2337bb0d0a8eSMike Smith 	case SYS_RES_IOPORT:
2338a8b354a8SWarner Losh 		ok = 0;
2339e4b59fc5SWarner Losh 		if (!pcib_is_io_open(sc))
2340e4b59fc5SWarner Losh 			break;
2341a8b354a8SWarner Losh 		ok = (start >= sc->iobase && end <= sc->iolimit);
2342d98d9b12SMarcel Moolenaar 
2343d98d9b12SMarcel Moolenaar 		/*
2344d98d9b12SMarcel Moolenaar 		 * Make sure we allow access to VGA I/O addresses when the
2345d98d9b12SMarcel Moolenaar 		 * bridge has the "VGA Enable" bit set.
2346d98d9b12SMarcel Moolenaar 		 */
2347d98d9b12SMarcel Moolenaar 		if (!ok && pci_is_vga_ioport_range(start, end))
2348d98d9b12SMarcel Moolenaar 			ok = (sc->bridgectl & PCIB_BCR_VGA_ENABLE) ? 1 : 0;
2349d98d9b12SMarcel Moolenaar 
2350e4b59fc5SWarner Losh 		if ((sc->flags & PCIB_SUBTRACTIVE) == 0) {
2351a8b354a8SWarner Losh 			if (!ok) {
235212b8c86eSWarner Losh 				if (start < sc->iobase)
235312b8c86eSWarner Losh 					start = sc->iobase;
235412b8c86eSWarner Losh 				if (end > sc->iolimit)
235512b8c86eSWarner Losh 					end = sc->iolimit;
23562daa7a07SWarner Losh 				if (start < end)
23572daa7a07SWarner Losh 					ok = 1;
2358a8b354a8SWarner Losh 			}
23591c54ff33SMatthew N. Dodd 		} else {
2360e4b59fc5SWarner Losh 			ok = 1;
23619dffe835SWarner Losh #if 0
2362795dceffSWarner Losh 			/*
2363795dceffSWarner Losh 			 * If we overlap with the subtractive range, then
2364795dceffSWarner Losh 			 * pick the upper range to use.
2365795dceffSWarner Losh 			 */
2366795dceffSWarner Losh 			if (start < sc->iolimit && end > sc->iobase)
2367795dceffSWarner Losh 				start = sc->iolimit + 1;
23689dffe835SWarner Losh #endif
236912b8c86eSWarner Losh 		}
2370a8b354a8SWarner Losh 		if (end < start) {
2371da1b038aSJustin Hibbits 			device_printf(dev, "ioport: end (%jx) < start (%jx)\n",
23722daa7a07SWarner Losh 			    end, start);
2373a8b354a8SWarner Losh 			start = 0;
2374a8b354a8SWarner Losh 			end = 0;
2375a8b354a8SWarner Losh 			ok = 0;
2376a8b354a8SWarner Losh 		}
2377a8b354a8SWarner Losh 		if (!ok) {
237826043836SJohn Baldwin 			device_printf(dev, "%s%srequested unsupported I/O "
2379da1b038aSJustin Hibbits 			    "range 0x%jx-0x%jx (decoding 0x%x-0x%x)\n",
238026043836SJohn Baldwin 			    name, suffix, start, end, sc->iobase, sc->iolimit);
2381bb0d0a8eSMike Smith 			return (NULL);
2382bb0d0a8eSMike Smith 		}
23834fa59183SMike Smith 		if (bootverbose)
23842daa7a07SWarner Losh 			device_printf(dev,
2385da1b038aSJustin Hibbits 			    "%s%srequested I/O range 0x%jx-0x%jx: in range\n",
238626043836SJohn Baldwin 			    name, suffix, start, end);
2387bb0d0a8eSMike Smith 		break;
2388bb0d0a8eSMike Smith 
2389bb0d0a8eSMike Smith 	case SYS_RES_MEMORY:
2390a8b354a8SWarner Losh 		ok = 0;
2391a8b354a8SWarner Losh 		if (pcib_is_nonprefetch_open(sc))
2392a8b354a8SWarner Losh 			ok = ok || (start >= sc->membase && end <= sc->memlimit);
2393a8b354a8SWarner Losh 		if (pcib_is_prefetch_open(sc))
2394a8b354a8SWarner Losh 			ok = ok || (start >= sc->pmembase && end <= sc->pmemlimit);
2395d98d9b12SMarcel Moolenaar 
2396d98d9b12SMarcel Moolenaar 		/*
2397d98d9b12SMarcel Moolenaar 		 * Make sure we allow access to VGA memory addresses when the
2398d98d9b12SMarcel Moolenaar 		 * bridge has the "VGA Enable" bit set.
2399d98d9b12SMarcel Moolenaar 		 */
2400d98d9b12SMarcel Moolenaar 		if (!ok && pci_is_vga_memory_range(start, end))
2401d98d9b12SMarcel Moolenaar 			ok = (sc->bridgectl & PCIB_BCR_VGA_ENABLE) ? 1 : 0;
2402d98d9b12SMarcel Moolenaar 
2403e4b59fc5SWarner Losh 		if ((sc->flags & PCIB_SUBTRACTIVE) == 0) {
2404a8b354a8SWarner Losh 			if (!ok) {
2405a8b354a8SWarner Losh 				ok = 1;
2406a8b354a8SWarner Losh 				if (flags & RF_PREFETCHABLE) {
2407a8b354a8SWarner Losh 					if (pcib_is_prefetch_open(sc)) {
2408a8b354a8SWarner Losh 						if (start < sc->pmembase)
2409a8b354a8SWarner Losh 							start = sc->pmembase;
2410a8b354a8SWarner Losh 						if (end > sc->pmemlimit)
2411a8b354a8SWarner Losh 							end = sc->pmemlimit;
2412a8b354a8SWarner Losh 					} else {
2413a8b354a8SWarner Losh 						ok = 0;
2414a8b354a8SWarner Losh 					}
2415a8b354a8SWarner Losh 				} else {	/* non-prefetchable */
2416a8b354a8SWarner Losh 					if (pcib_is_nonprefetch_open(sc)) {
2417a8b354a8SWarner Losh 						if (start < sc->membase)
241812b8c86eSWarner Losh 							start = sc->membase;
241912b8c86eSWarner Losh 						if (end > sc->memlimit)
242012b8c86eSWarner Losh 							end = sc->memlimit;
24211c54ff33SMatthew N. Dodd 					} else {
2422a8b354a8SWarner Losh 						ok = 0;
2423a8b354a8SWarner Losh 					}
2424a8b354a8SWarner Losh 				}
2425a8b354a8SWarner Losh 			}
2426a8b354a8SWarner Losh 		} else if (!ok) {
2427e4b59fc5SWarner Losh 			ok = 1;	/* subtractive bridge: always ok */
24289dffe835SWarner Losh #if 0
2429a8b354a8SWarner Losh 			if (pcib_is_nonprefetch_open(sc)) {
2430795dceffSWarner Losh 				if (start < sc->memlimit && end > sc->membase)
2431795dceffSWarner Losh 					start = sc->memlimit + 1;
2432a8b354a8SWarner Losh 			}
2433a8b354a8SWarner Losh 			if (pcib_is_prefetch_open(sc)) {
2434795dceffSWarner Losh 				if (start < sc->pmemlimit && end > sc->pmembase)
2435795dceffSWarner Losh 					start = sc->pmemlimit + 1;
24361c54ff33SMatthew N. Dodd 			}
24379dffe835SWarner Losh #endif
243812b8c86eSWarner Losh 		}
2439a8b354a8SWarner Losh 		if (end < start) {
2440da1b038aSJustin Hibbits 			device_printf(dev, "memory: end (%jx) < start (%jx)\n",
24412daa7a07SWarner Losh 			    end, start);
2442a8b354a8SWarner Losh 			start = 0;
2443a8b354a8SWarner Losh 			end = 0;
2444a8b354a8SWarner Losh 			ok = 0;
2445a8b354a8SWarner Losh 		}
2446a8b354a8SWarner Losh 		if (!ok && bootverbose)
244734428485SWarner Losh 			device_printf(dev,
2448da1b038aSJustin Hibbits 			    "%s%srequested unsupported memory range %#jx-%#jx "
2449b0a2d4b8SWarner Losh 			    "(decoding %#jx-%#jx, %#jx-%#jx)\n",
245026043836SJohn Baldwin 			    name, suffix, start, end,
2451b0a2d4b8SWarner Losh 			    (uintmax_t)sc->membase, (uintmax_t)sc->memlimit,
2452b0a2d4b8SWarner Losh 			    (uintmax_t)sc->pmembase, (uintmax_t)sc->pmemlimit);
2453a8b354a8SWarner Losh 		if (!ok)
2454bb0d0a8eSMike Smith 			return (NULL);
24554fa59183SMike Smith 		if (bootverbose)
245626043836SJohn Baldwin 			device_printf(dev,"%s%srequested memory range "
2457da1b038aSJustin Hibbits 			    "0x%jx-0x%jx: good\n",
245826043836SJohn Baldwin 			    name, suffix, start, end);
24594fa59183SMike Smith 		break;
24604fa59183SMike Smith 
2461bb0d0a8eSMike Smith 	default:
24624fa59183SMike Smith 		break;
2463bb0d0a8eSMike Smith 	}
2464bb0d0a8eSMike Smith 	/*
2465bb0d0a8eSMike Smith 	 * Bridge is OK decoding this resource, so pass it up.
2466bb0d0a8eSMike Smith 	 */
24672daa7a07SWarner Losh 	return (bus_generic_alloc_resource(dev, child, type, rid, start, end,
24682daa7a07SWarner Losh 	    count, flags));
2469bb0d0a8eSMike Smith }
247083c41143SJohn Baldwin #endif
2471bb0d0a8eSMike Smith 
2472bb0d0a8eSMike Smith /*
247355d3ea17SRyan Stone  * If ARI is enabled on this downstream port, translate the function number
247455d3ea17SRyan Stone  * to the non-ARI slot/function.  The downstream port will convert it back in
247555d3ea17SRyan Stone  * hardware.  If ARI is not enabled slot and func are not modified.
247655d3ea17SRyan Stone  */
247755d3ea17SRyan Stone static __inline void
247855d3ea17SRyan Stone pcib_xlate_ari(device_t pcib, int bus, int *slot, int *func)
247955d3ea17SRyan Stone {
248055d3ea17SRyan Stone 	struct pcib_softc *sc;
248155d3ea17SRyan Stone 	int ari_func;
248255d3ea17SRyan Stone 
248355d3ea17SRyan Stone 	sc = device_get_softc(pcib);
248455d3ea17SRyan Stone 	ari_func = *func;
248555d3ea17SRyan Stone 
248655d3ea17SRyan Stone 	if (sc->flags & PCIB_ENABLE_ARI) {
248755d3ea17SRyan Stone 		KASSERT(*slot == 0,
248855d3ea17SRyan Stone 		    ("Non-zero slot number with ARI enabled!"));
248955d3ea17SRyan Stone 		*slot = PCIE_ARI_SLOT(ari_func);
249055d3ea17SRyan Stone 		*func = PCIE_ARI_FUNC(ari_func);
249155d3ea17SRyan Stone 	}
249255d3ea17SRyan Stone }
249355d3ea17SRyan Stone 
249455d3ea17SRyan Stone 
249555d3ea17SRyan Stone static void
249655d3ea17SRyan Stone pcib_enable_ari(struct pcib_softc *sc, uint32_t pcie_pos)
249755d3ea17SRyan Stone {
249855d3ea17SRyan Stone 	uint32_t ctl2;
249955d3ea17SRyan Stone 
250055d3ea17SRyan Stone 	ctl2 = pci_read_config(sc->dev, pcie_pos + PCIER_DEVICE_CTL2, 4);
250155d3ea17SRyan Stone 	ctl2 |= PCIEM_CTL2_ARI;
250255d3ea17SRyan Stone 	pci_write_config(sc->dev, pcie_pos + PCIER_DEVICE_CTL2, ctl2, 4);
250355d3ea17SRyan Stone 
250455d3ea17SRyan Stone 	sc->flags |= PCIB_ENABLE_ARI;
250555d3ea17SRyan Stone }
250655d3ea17SRyan Stone 
250755d3ea17SRyan Stone /*
2508bb0d0a8eSMike Smith  * PCIB interface.
2509bb0d0a8eSMike Smith  */
25106f0d5884SJohn Baldwin int
2511bb0d0a8eSMike Smith pcib_maxslots(device_t dev)
2512bb0d0a8eSMike Smith {
25134fa59183SMike Smith 	return (PCI_SLOTMAX);
2514bb0d0a8eSMike Smith }
2515bb0d0a8eSMike Smith 
251655d3ea17SRyan Stone static int
251755d3ea17SRyan Stone pcib_ari_maxslots(device_t dev)
251855d3ea17SRyan Stone {
251955d3ea17SRyan Stone 	struct pcib_softc *sc;
252055d3ea17SRyan Stone 
252155d3ea17SRyan Stone 	sc = device_get_softc(dev);
252255d3ea17SRyan Stone 
252355d3ea17SRyan Stone 	if (sc->flags & PCIB_ENABLE_ARI)
252455d3ea17SRyan Stone 		return (PCIE_ARI_SLOTMAX);
252555d3ea17SRyan Stone 	else
252655d3ea17SRyan Stone 		return (PCI_SLOTMAX);
252755d3ea17SRyan Stone }
252855d3ea17SRyan Stone 
252955d3ea17SRyan Stone static int
253055d3ea17SRyan Stone pcib_ari_maxfuncs(device_t dev)
253155d3ea17SRyan Stone {
253255d3ea17SRyan Stone 	struct pcib_softc *sc;
253355d3ea17SRyan Stone 
253455d3ea17SRyan Stone 	sc = device_get_softc(dev);
253555d3ea17SRyan Stone 
253655d3ea17SRyan Stone 	if (sc->flags & PCIB_ENABLE_ARI)
253755d3ea17SRyan Stone 		return (PCIE_ARI_FUNCMAX);
253855d3ea17SRyan Stone 	else
253955d3ea17SRyan Stone 		return (PCI_FUNCMAX);
254055d3ea17SRyan Stone }
254155d3ea17SRyan Stone 
25422397d2d8SRyan Stone static void
25432397d2d8SRyan Stone pcib_ari_decode_rid(device_t pcib, uint16_t rid, int *bus, int *slot,
25442397d2d8SRyan Stone     int *func)
25452397d2d8SRyan Stone {
25462397d2d8SRyan Stone 	struct pcib_softc *sc;
25472397d2d8SRyan Stone 
25482397d2d8SRyan Stone 	sc = device_get_softc(pcib);
25492397d2d8SRyan Stone 
25502397d2d8SRyan Stone 	*bus = PCI_RID2BUS(rid);
25512397d2d8SRyan Stone 	if (sc->flags & PCIB_ENABLE_ARI) {
25522397d2d8SRyan Stone 		*slot = PCIE_ARI_RID2SLOT(rid);
25532397d2d8SRyan Stone 		*func = PCIE_ARI_RID2FUNC(rid);
25542397d2d8SRyan Stone 	} else {
25552397d2d8SRyan Stone 		*slot = PCI_RID2SLOT(rid);
25562397d2d8SRyan Stone 		*func = PCI_RID2FUNC(rid);
25572397d2d8SRyan Stone 	}
25582397d2d8SRyan Stone }
25592397d2d8SRyan Stone 
2560bb0d0a8eSMike Smith /*
2561bb0d0a8eSMike Smith  * Since we are a child of a PCI bus, its parent must support the pcib interface.
2562bb0d0a8eSMike Smith  */
256355d3ea17SRyan Stone static uint32_t
2564795dceffSWarner Losh pcib_read_config(device_t dev, u_int b, u_int s, u_int f, u_int reg, int width)
2565bb0d0a8eSMike Smith {
256682cb5c3bSJohn Baldwin #ifdef PCI_HP
256782cb5c3bSJohn Baldwin 	struct pcib_softc *sc;
256855d3ea17SRyan Stone 
256982cb5c3bSJohn Baldwin 	sc = device_get_softc(dev);
257082cb5c3bSJohn Baldwin 	if (!pcib_present(sc)) {
257182cb5c3bSJohn Baldwin 		switch (width) {
257282cb5c3bSJohn Baldwin 		case 2:
257382cb5c3bSJohn Baldwin 			return (0xffff);
257482cb5c3bSJohn Baldwin 		case 1:
257582cb5c3bSJohn Baldwin 			return (0xff);
257682cb5c3bSJohn Baldwin 		default:
257782cb5c3bSJohn Baldwin 			return (0xffffffff);
257882cb5c3bSJohn Baldwin 		}
257982cb5c3bSJohn Baldwin 	}
258082cb5c3bSJohn Baldwin #endif
258155d3ea17SRyan Stone 	pcib_xlate_ari(dev, b, &s, &f);
258255d3ea17SRyan Stone 	return(PCIB_READ_CONFIG(device_get_parent(device_get_parent(dev)), b, s,
258355d3ea17SRyan Stone 	    f, reg, width));
2584bb0d0a8eSMike Smith }
2585bb0d0a8eSMike Smith 
258655d3ea17SRyan Stone static void
2587795dceffSWarner Losh pcib_write_config(device_t dev, u_int b, u_int s, u_int f, u_int reg, uint32_t val, int width)
2588bb0d0a8eSMike Smith {
258982cb5c3bSJohn Baldwin #ifdef PCI_HP
259082cb5c3bSJohn Baldwin 	struct pcib_softc *sc;
259155d3ea17SRyan Stone 
259282cb5c3bSJohn Baldwin 	sc = device_get_softc(dev);
259382cb5c3bSJohn Baldwin 	if (!pcib_present(sc))
259482cb5c3bSJohn Baldwin 		return;
259582cb5c3bSJohn Baldwin #endif
259655d3ea17SRyan Stone 	pcib_xlate_ari(dev, b, &s, &f);
259755d3ea17SRyan Stone 	PCIB_WRITE_CONFIG(device_get_parent(device_get_parent(dev)), b, s, f,
259855d3ea17SRyan Stone 	    reg, val, width);
2599bb0d0a8eSMike Smith }
2600bb0d0a8eSMike Smith 
2601bb0d0a8eSMike Smith /*
2602bb0d0a8eSMike Smith  * Route an interrupt across a PCI bridge.
2603bb0d0a8eSMike Smith  */
26042c2d1d07SBenno Rice int
2605bb0d0a8eSMike Smith pcib_route_interrupt(device_t pcib, device_t dev, int pin)
2606bb0d0a8eSMike Smith {
2607bb0d0a8eSMike Smith     device_t	bus;
2608bb0d0a8eSMike Smith     int		parent_intpin;
2609bb0d0a8eSMike Smith     int		intnum;
2610bb0d0a8eSMike Smith 
2611bb0d0a8eSMike Smith     /*
2612bb0d0a8eSMike Smith      *
2613bb0d0a8eSMike Smith      * The PCI standard defines a swizzle of the child-side device/intpin to
2614bb0d0a8eSMike Smith      * the parent-side intpin as follows.
2615bb0d0a8eSMike Smith      *
2616bb0d0a8eSMike Smith      * device = device on child bus
2617bb0d0a8eSMike Smith      * child_intpin = intpin on child bus slot (0-3)
2618bb0d0a8eSMike Smith      * parent_intpin = intpin on parent bus slot (0-3)
2619bb0d0a8eSMike Smith      *
2620bb0d0a8eSMike Smith      * parent_intpin = (device + child_intpin) % 4
2621bb0d0a8eSMike Smith      */
2622cdc95e1bSBernd Walter     parent_intpin = (pci_get_slot(dev) + (pin - 1)) % 4;
2623bb0d0a8eSMike Smith 
2624bb0d0a8eSMike Smith     /*
2625bb0d0a8eSMike Smith      * Our parent is a PCI bus.  Its parent must export the pcib interface
2626bb0d0a8eSMike Smith      * which includes the ability to route interrupts.
2627bb0d0a8eSMike Smith      */
2628bb0d0a8eSMike Smith     bus = device_get_parent(pcib);
2629bb0d0a8eSMike Smith     intnum = PCIB_ROUTE_INTERRUPT(device_get_parent(bus), pcib, parent_intpin + 1);
263039981fedSJohn Baldwin     if (PCI_INTERRUPT_VALID(intnum) && bootverbose) {
2631c6a121abSJohn Baldwin 	device_printf(pcib, "slot %d INT%c is routed to irq %d\n",
2632c6a121abSJohn Baldwin 	    pci_get_slot(dev), 'A' + pin - 1, intnum);
26338046c4b9SMike Smith     }
2634bb0d0a8eSMike Smith     return(intnum);
2635bb0d0a8eSMike Smith }
2636b173edafSJohn Baldwin 
2637e706f7f0SJohn Baldwin /* Pass request to alloc MSI/MSI-X messages up to the parent bridge. */
26389bf4c9c1SJohn Baldwin int
26399bf4c9c1SJohn Baldwin pcib_alloc_msi(device_t pcib, device_t dev, int count, int maxcount, int *irqs)
26409bf4c9c1SJohn Baldwin {
2641bd82bbb1SAndrew Gallatin 	struct pcib_softc *sc = device_get_softc(pcib);
26429bf4c9c1SJohn Baldwin 	device_t bus;
26439bf4c9c1SJohn Baldwin 
264422bf1c7fSJohn Baldwin 	if (sc->flags & PCIB_DISABLE_MSI)
264522bf1c7fSJohn Baldwin 		return (ENXIO);
26469bf4c9c1SJohn Baldwin 	bus = device_get_parent(pcib);
26479bf4c9c1SJohn Baldwin 	return (PCIB_ALLOC_MSI(device_get_parent(bus), dev, count, maxcount,
26489bf4c9c1SJohn Baldwin 	    irqs));
26499bf4c9c1SJohn Baldwin }
26509bf4c9c1SJohn Baldwin 
2651e706f7f0SJohn Baldwin /* Pass request to release MSI/MSI-X messages up to the parent bridge. */
26529bf4c9c1SJohn Baldwin int
26539bf4c9c1SJohn Baldwin pcib_release_msi(device_t pcib, device_t dev, int count, int *irqs)
26549bf4c9c1SJohn Baldwin {
26559bf4c9c1SJohn Baldwin 	device_t bus;
26569bf4c9c1SJohn Baldwin 
26579bf4c9c1SJohn Baldwin 	bus = device_get_parent(pcib);
26589bf4c9c1SJohn Baldwin 	return (PCIB_RELEASE_MSI(device_get_parent(bus), dev, count, irqs));
26599bf4c9c1SJohn Baldwin }
26609bf4c9c1SJohn Baldwin 
26619bf4c9c1SJohn Baldwin /* Pass request to alloc an MSI-X message up to the parent bridge. */
26629bf4c9c1SJohn Baldwin int
2663e706f7f0SJohn Baldwin pcib_alloc_msix(device_t pcib, device_t dev, int *irq)
26649bf4c9c1SJohn Baldwin {
2665bd82bbb1SAndrew Gallatin 	struct pcib_softc *sc = device_get_softc(pcib);
26669bf4c9c1SJohn Baldwin 	device_t bus;
26679bf4c9c1SJohn Baldwin 
266868e9cbd3SMarius Strobl 	if (sc->flags & PCIB_DISABLE_MSIX)
266922bf1c7fSJohn Baldwin 		return (ENXIO);
26709bf4c9c1SJohn Baldwin 	bus = device_get_parent(pcib);
2671e706f7f0SJohn Baldwin 	return (PCIB_ALLOC_MSIX(device_get_parent(bus), dev, irq));
26725fe82bcaSJohn Baldwin }
26735fe82bcaSJohn Baldwin 
26749bf4c9c1SJohn Baldwin /* Pass request to release an MSI-X message up to the parent bridge. */
26759bf4c9c1SJohn Baldwin int
26769bf4c9c1SJohn Baldwin pcib_release_msix(device_t pcib, device_t dev, int irq)
26779bf4c9c1SJohn Baldwin {
26789bf4c9c1SJohn Baldwin 	device_t bus;
26799bf4c9c1SJohn Baldwin 
26809bf4c9c1SJohn Baldwin 	bus = device_get_parent(pcib);
26819bf4c9c1SJohn Baldwin 	return (PCIB_RELEASE_MSIX(device_get_parent(bus), dev, irq));
26829bf4c9c1SJohn Baldwin }
26839bf4c9c1SJohn Baldwin 
2684e706f7f0SJohn Baldwin /* Pass request to map MSI/MSI-X message up to parent bridge. */
2685e706f7f0SJohn Baldwin int
2686e706f7f0SJohn Baldwin pcib_map_msi(device_t pcib, device_t dev, int irq, uint64_t *addr,
2687e706f7f0SJohn Baldwin     uint32_t *data)
2688e706f7f0SJohn Baldwin {
2689e706f7f0SJohn Baldwin 	device_t bus;
26904522ac77SLuoqi Chen 	int error;
2691e706f7f0SJohn Baldwin 
2692e706f7f0SJohn Baldwin 	bus = device_get_parent(pcib);
26934522ac77SLuoqi Chen 	error = PCIB_MAP_MSI(device_get_parent(bus), dev, irq, addr, data);
26944522ac77SLuoqi Chen 	if (error)
26954522ac77SLuoqi Chen 		return (error);
26964522ac77SLuoqi Chen 
26974522ac77SLuoqi Chen 	pci_ht_map_msi(pcib, *addr);
26984522ac77SLuoqi Chen 	return (0);
2699e706f7f0SJohn Baldwin }
2700e706f7f0SJohn Baldwin 
270162508c53SJohn Baldwin /* Pass request for device power state up to parent bridge. */
270262508c53SJohn Baldwin int
270362508c53SJohn Baldwin pcib_power_for_sleep(device_t pcib, device_t dev, int *pstate)
270462508c53SJohn Baldwin {
270562508c53SJohn Baldwin 	device_t bus;
270662508c53SJohn Baldwin 
270762508c53SJohn Baldwin 	bus = device_get_parent(pcib);
270862508c53SJohn Baldwin 	return (PCIB_POWER_FOR_SLEEP(bus, dev, pstate));
270962508c53SJohn Baldwin }
27105605a99eSRyan Stone 
27112397d2d8SRyan Stone static int
27122397d2d8SRyan Stone pcib_ari_enabled(device_t pcib)
27132397d2d8SRyan Stone {
27142397d2d8SRyan Stone 	struct pcib_softc *sc;
27152397d2d8SRyan Stone 
27162397d2d8SRyan Stone 	sc = device_get_softc(pcib);
27172397d2d8SRyan Stone 
27182397d2d8SRyan Stone 	return ((sc->flags & PCIB_ENABLE_ARI) != 0);
27192397d2d8SRyan Stone }
27202397d2d8SRyan Stone 
2721d7be980dSAndrew Turner static int
2722d7be980dSAndrew Turner pcib_ari_get_id(device_t pcib, device_t dev, enum pci_id_type type,
2723d7be980dSAndrew Turner     uintptr_t *id)
272455d3ea17SRyan Stone {
272555d3ea17SRyan Stone 	struct pcib_softc *sc;
27261e43b18cSAndrew Turner 	device_t bus_dev;
272755d3ea17SRyan Stone 	uint8_t bus, slot, func;
272855d3ea17SRyan Stone 
27291e43b18cSAndrew Turner 	if (type != PCI_ID_RID) {
27301e43b18cSAndrew Turner 		bus_dev = device_get_parent(pcib);
27311e43b18cSAndrew Turner 		return (PCIB_GET_ID(device_get_parent(bus_dev), dev, type, id));
27321e43b18cSAndrew Turner 	}
2733d7be980dSAndrew Turner 
273455d3ea17SRyan Stone 	sc = device_get_softc(pcib);
273555d3ea17SRyan Stone 
273655d3ea17SRyan Stone 	if (sc->flags & PCIB_ENABLE_ARI) {
273755d3ea17SRyan Stone 		bus = pci_get_bus(dev);
273855d3ea17SRyan Stone 		func = pci_get_function(dev);
273955d3ea17SRyan Stone 
2740d7be980dSAndrew Turner 		*id = (PCI_ARI_RID(bus, func));
274155d3ea17SRyan Stone 	} else {
274255d3ea17SRyan Stone 		bus = pci_get_bus(dev);
274355d3ea17SRyan Stone 		slot = pci_get_slot(dev);
274455d3ea17SRyan Stone 		func = pci_get_function(dev);
274555d3ea17SRyan Stone 
2746d7be980dSAndrew Turner 		*id = (PCI_RID(bus, slot, func));
274755d3ea17SRyan Stone 	}
2748d7be980dSAndrew Turner 
2749d7be980dSAndrew Turner 	return (0);
275055d3ea17SRyan Stone }
275155d3ea17SRyan Stone 
275255d3ea17SRyan Stone /*
275355d3ea17SRyan Stone  * Check that the downstream port (pcib) and the endpoint device (dev) both
275455d3ea17SRyan Stone  * support ARI.  If so, enable it and return 0, otherwise return an error.
275555d3ea17SRyan Stone  */
275655d3ea17SRyan Stone static int
275755d3ea17SRyan Stone pcib_try_enable_ari(device_t pcib, device_t dev)
275855d3ea17SRyan Stone {
275955d3ea17SRyan Stone 	struct pcib_softc *sc;
276055d3ea17SRyan Stone 	int error;
276155d3ea17SRyan Stone 	uint32_t cap2;
276255d3ea17SRyan Stone 	int ari_cap_off;
276355d3ea17SRyan Stone 	uint32_t ari_ver;
276455d3ea17SRyan Stone 	uint32_t pcie_pos;
276555d3ea17SRyan Stone 
276655d3ea17SRyan Stone 	sc = device_get_softc(pcib);
276755d3ea17SRyan Stone 
276855d3ea17SRyan Stone 	/*
276955d3ea17SRyan Stone 	 * ARI is controlled in a register in the PCIe capability structure.
277055d3ea17SRyan Stone 	 * If the downstream port does not have the PCIe capability structure
277155d3ea17SRyan Stone 	 * then it does not support ARI.
277255d3ea17SRyan Stone 	 */
277355d3ea17SRyan Stone 	error = pci_find_cap(pcib, PCIY_EXPRESS, &pcie_pos);
277455d3ea17SRyan Stone 	if (error != 0)
277555d3ea17SRyan Stone 		return (ENODEV);
277655d3ea17SRyan Stone 
277755d3ea17SRyan Stone 	/* Check that the PCIe port advertises ARI support. */
277855d3ea17SRyan Stone 	cap2 = pci_read_config(pcib, pcie_pos + PCIER_DEVICE_CAP2, 4);
277955d3ea17SRyan Stone 	if (!(cap2 & PCIEM_CAP2_ARI))
278055d3ea17SRyan Stone 		return (ENODEV);
278155d3ea17SRyan Stone 
278255d3ea17SRyan Stone 	/*
278355d3ea17SRyan Stone 	 * Check that the endpoint device advertises ARI support via the ARI
278455d3ea17SRyan Stone 	 * extended capability structure.
278555d3ea17SRyan Stone 	 */
278655d3ea17SRyan Stone 	error = pci_find_extcap(dev, PCIZ_ARI, &ari_cap_off);
278755d3ea17SRyan Stone 	if (error != 0)
278855d3ea17SRyan Stone 		return (ENODEV);
278955d3ea17SRyan Stone 
279055d3ea17SRyan Stone 	/*
279155d3ea17SRyan Stone 	 * Finally, check that the endpoint device supports the same version
279255d3ea17SRyan Stone 	 * of ARI that we do.
279355d3ea17SRyan Stone 	 */
279455d3ea17SRyan Stone 	ari_ver = pci_read_config(dev, ari_cap_off, 4);
279555d3ea17SRyan Stone 	if (PCI_EXTCAP_VER(ari_ver) != PCIB_SUPPORTED_ARI_VER) {
279655d3ea17SRyan Stone 		if (bootverbose)
279755d3ea17SRyan Stone 			device_printf(pcib,
279855d3ea17SRyan Stone 			    "Unsupported version of ARI (%d) detected\n",
279955d3ea17SRyan Stone 			    PCI_EXTCAP_VER(ari_ver));
280055d3ea17SRyan Stone 
280155d3ea17SRyan Stone 		return (ENXIO);
280255d3ea17SRyan Stone 	}
280355d3ea17SRyan Stone 
280455d3ea17SRyan Stone 	pcib_enable_ari(sc, pcie_pos);
280555d3ea17SRyan Stone 
280655d3ea17SRyan Stone 	return (0);
280755d3ea17SRyan Stone }
2808