pciconf.c revision 1.50 1 1.50 jmcneill /* $NetBSD: pciconf.c,v 1.50 2020/10/20 23:03:30 jmcneill Exp $ */
2 1.1 briggs
3 1.1 briggs /*
4 1.1 briggs * Copyright 2001 Wasabi Systems, Inc.
5 1.1 briggs * All rights reserved.
6 1.1 briggs *
7 1.1 briggs * Written by Allen Briggs for Wasabi Systems, Inc.
8 1.1 briggs *
9 1.1 briggs * Redistribution and use in source and binary forms, with or without
10 1.1 briggs * modification, are permitted provided that the following conditions
11 1.1 briggs * are met:
12 1.1 briggs * 1. Redistributions of source code must retain the above copyright
13 1.1 briggs * notice, this list of conditions and the following disclaimer.
14 1.1 briggs * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 briggs * notice, this list of conditions and the following disclaimer in the
16 1.1 briggs * documentation and/or other materials provided with the distribution.
17 1.1 briggs * 3. All advertising materials mentioning features or use of this software
18 1.1 briggs * must display the following acknowledgement:
19 1.1 briggs * This product includes software developed for the NetBSD Project by
20 1.1 briggs * Wasabi Systems, Inc.
21 1.1 briggs * 4. The name of Wasabi Systems, Inc. may not be used to endorse
22 1.1 briggs * or promote products derived from this software without specific prior
23 1.1 briggs * written permission.
24 1.1 briggs *
25 1.1 briggs * THIS SOFTWARE IS PROVIDED BY WASABI SYSTEMS, INC. ``AS IS'' AND
26 1.1 briggs * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
27 1.1 briggs * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
28 1.1 briggs * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL WASABI SYSTEMS, INC
29 1.1 briggs * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
30 1.1 briggs * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
31 1.1 briggs * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
32 1.1 briggs * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
33 1.1 briggs * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
34 1.1 briggs * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
35 1.1 briggs * POSSIBILITY OF SUCH DAMAGE.
36 1.1 briggs */
37 1.1 briggs /*
38 1.1 briggs * Derived in part from code from PMON/2000 (http://pmon.groupbsd.org/).
39 1.1 briggs */
40 1.1 briggs
41 1.2 briggs /*
42 1.2 briggs * To do:
43 1.10 thorpej * - Perform all data structure allocation dynamically, don't have
44 1.10 thorpej * statically-sized arrays ("oops, you lose because you have too
45 1.10 thorpej * many slots filled!")
46 1.7 thorpej * - Do this in 2 passes, with an MD hook to control the behavior:
47 1.7 thorpej * (1) Configure the bus (possibly including expansion
48 1.7 thorpej * ROMs.
49 1.7 thorpej * (2) Another pass to disable expansion ROMs if they're
50 1.7 thorpej * mapped (since you're not supposed to leave them
51 1.7 thorpej * mapped when you're not using them).
52 1.7 thorpej * This would facilitate MD code executing the expansion ROMs
53 1.7 thorpej * if necessary (possibly with an x86 emulator) to configure
54 1.7 thorpej * devices (e.g. VGA cards).
55 1.2 briggs * - Deal with "anything can be hot-plugged" -- i.e., carry configuration
56 1.8 briggs * information around & be able to reconfigure on the fly
57 1.2 briggs * - Deal with segments (See IA64 System Abstraction Layer)
58 1.2 briggs * - Deal with subtractive bridges (& non-spec positive/subtractive decode)
59 1.2 briggs * - Deal with ISA/VGA/VGA palette snooping
60 1.2 briggs * - Deal with device capabilities on bridges
61 1.8 briggs * - Worry about changing a bridge to/from transparency
62 1.8 briggs * From thorpej (05/25/01)
63 1.8 briggs * - Try to handle devices that are already configured (perhaps using that
64 1.8 briggs * as a hint to where we put other devices)
65 1.2 briggs */
66 1.13 lukem
67 1.13 lukem #include <sys/cdefs.h>
68 1.50 jmcneill __KERNEL_RCSID(0, "$NetBSD: pciconf.c,v 1.50 2020/10/20 23:03:30 jmcneill Exp $");
69 1.2 briggs
70 1.1 briggs #include "opt_pci.h"
71 1.1 briggs
72 1.1 briggs #include <sys/param.h>
73 1.1 briggs #include <sys/queue.h>
74 1.1 briggs #include <sys/systm.h>
75 1.1 briggs #include <sys/malloc.h>
76 1.32 matt #include <sys/kmem.h>
77 1.47 thorpej #include <sys/vmem.h>
78 1.1 briggs
79 1.1 briggs #include <dev/pci/pcivar.h>
80 1.1 briggs #include <dev/pci/pciconf.h>
81 1.1 briggs #include <dev/pci/pcidevs.h>
82 1.22 briggs #include <dev/pci/pccbbreg.h>
83 1.1 briggs
84 1.48 thorpej int pci_conf_debug = 0;
85 1.1 briggs
86 1.1 briggs #if !defined(MIN)
87 1.1 briggs #define MIN(a,b) (((a)<(b))?(a):(b))
88 1.1 briggs #define MAX(a,b) (((a)>(b))?(a):(b))
89 1.1 briggs #endif
90 1.1 briggs
91 1.1 briggs /* per-bus constants. */
92 1.10 thorpej #define MAX_CONF_DEV 32 /* Arbitrary */
93 1.1 briggs #define MAX_CONF_MEM (3 * MAX_CONF_DEV) /* Avg. 3 per device -- Arb. */
94 1.8 briggs #define MAX_CONF_IO (3 * MAX_CONF_DEV) /* Avg. 1 per device -- Arb. */
95 1.1 briggs
96 1.1 briggs struct _s_pciconf_bus_t; /* Forward declaration */
97 1.1 briggs
98 1.47 thorpej struct pciconf_resource {
99 1.47 thorpej vmem_t *arena;
100 1.47 thorpej bus_addr_t min_addr;
101 1.47 thorpej bus_addr_t max_addr;
102 1.47 thorpej bus_size_t total_size;
103 1.47 thorpej };
104 1.47 thorpej
105 1.47 thorpej #define PCICONF_RESOURCE_NTYPES 3
106 1.47 thorpej CTASSERT(PCICONF_RESOURCE_IO < PCICONF_RESOURCE_NTYPES);
107 1.47 thorpej CTASSERT(PCICONF_RESOURCE_MEM < PCICONF_RESOURCE_NTYPES);
108 1.47 thorpej CTASSERT(PCICONF_RESOURCE_PREFETCHABLE_MEM < PCICONF_RESOURCE_NTYPES);
109 1.47 thorpej
110 1.47 thorpej static const char *pciconf_resource_names[] = {
111 1.47 thorpej [PCICONF_RESOURCE_IO] = "pci-io",
112 1.47 thorpej [PCICONF_RESOURCE_MEM] = "pci-mem",
113 1.47 thorpej [PCICONF_RESOURCE_PREFETCHABLE_MEM] = "pci-pmem",
114 1.47 thorpej };
115 1.47 thorpej
116 1.47 thorpej struct pciconf_resources {
117 1.47 thorpej struct pciconf_resource resources[PCICONF_RESOURCE_NTYPES];
118 1.47 thorpej };
119 1.47 thorpej
120 1.49 jmcneill struct pciconf_resource_rsvd {
121 1.49 jmcneill int type;
122 1.49 jmcneill uint64_t start;
123 1.49 jmcneill bus_size_t size;
124 1.50 jmcneill void (*callback)(void *, uint64_t);
125 1.50 jmcneill void *callback_arg;
126 1.49 jmcneill LIST_ENTRY(pciconf_resource_rsvd) next;
127 1.49 jmcneill };
128 1.49 jmcneill
129 1.49 jmcneill static LIST_HEAD(, pciconf_resource_rsvd) pciconf_resource_reservations =
130 1.49 jmcneill LIST_HEAD_INITIALIZER(pciconf_resource_reservations);
131 1.49 jmcneill
132 1.1 briggs typedef struct _s_pciconf_dev_t {
133 1.1 briggs int ipin;
134 1.1 briggs int iline;
135 1.1 briggs int min_gnt;
136 1.1 briggs int max_lat;
137 1.2 briggs int enable;
138 1.1 briggs pcitag_t tag;
139 1.1 briggs pci_chipset_tag_t pc;
140 1.1 briggs struct _s_pciconf_bus_t *ppb; /* I am really a bridge */
141 1.1 briggs } pciconf_dev_t;
142 1.1 briggs
143 1.1 briggs typedef struct _s_pciconf_win_t {
144 1.1 briggs pciconf_dev_t *dev;
145 1.1 briggs int reg; /* 0 for busses */
146 1.1 briggs int align;
147 1.1 briggs int prefetch;
148 1.39 msaitoh uint64_t size;
149 1.39 msaitoh uint64_t address;
150 1.1 briggs } pciconf_win_t;
151 1.1 briggs
152 1.1 briggs typedef struct _s_pciconf_bus_t {
153 1.1 briggs int busno;
154 1.1 briggs int next_busno;
155 1.1 briggs int last_busno;
156 1.1 briggs int max_mingnt;
157 1.1 briggs int min_maxlat;
158 1.14 thorpej int cacheline_size;
159 1.1 briggs int prefetch;
160 1.1 briggs int fast_b2b;
161 1.1 briggs int freq_66;
162 1.1 briggs int def_ltim;
163 1.1 briggs int max_ltim;
164 1.1 briggs int bandwidth_used;
165 1.1 briggs int swiz;
166 1.2 briggs int io_32bit;
167 1.2 briggs int pmem_64bit;
168 1.44 thorpej int mem_64bit;
169 1.36 matt int io_align;
170 1.36 matt int mem_align;
171 1.36 matt int pmem_align;
172 1.1 briggs
173 1.1 briggs int ndevs;
174 1.1 briggs pciconf_dev_t device[MAX_CONF_DEV];
175 1.1 briggs
176 1.1 briggs /* These should be sorted in order of decreasing size */
177 1.1 briggs int nmemwin;
178 1.1 briggs pciconf_win_t pcimemwin[MAX_CONF_MEM];
179 1.1 briggs int niowin;
180 1.1 briggs pciconf_win_t pciiowin[MAX_CONF_IO];
181 1.1 briggs
182 1.1 briggs bus_size_t io_total;
183 1.1 briggs bus_size_t mem_total;
184 1.1 briggs bus_size_t pmem_total;
185 1.1 briggs
186 1.47 thorpej struct pciconf_resource io_res;
187 1.47 thorpej struct pciconf_resource mem_res;
188 1.47 thorpej struct pciconf_resource pmem_res;
189 1.1 briggs
190 1.1 briggs pci_chipset_tag_t pc;
191 1.1 briggs struct _s_pciconf_bus_t *parent_bus;
192 1.1 briggs } pciconf_bus_t;
193 1.1 briggs
194 1.1 briggs static int probe_bus(pciconf_bus_t *);
195 1.1 briggs static void alloc_busno(pciconf_bus_t *, pciconf_bus_t *);
196 1.18 simonb static void set_busreg(pci_chipset_tag_t, pcitag_t, int, int, int);
197 1.4 simonb static int pci_do_device_query(pciconf_bus_t *, pcitag_t, int, int, int);
198 1.1 briggs static int setup_iowins(pciconf_bus_t *);
199 1.1 briggs static int setup_memwins(pciconf_bus_t *);
200 1.1 briggs static int configure_bridge(pciconf_dev_t *);
201 1.1 briggs static int configure_bus(pciconf_bus_t *);
202 1.47 thorpej static uint64_t pci_allocate_range(struct pciconf_resource *, uint64_t, int,
203 1.47 thorpej bool);
204 1.1 briggs static pciconf_win_t *get_io_desc(pciconf_bus_t *, bus_size_t);
205 1.1 briggs static pciconf_win_t *get_mem_desc(pciconf_bus_t *, bus_size_t);
206 1.1 briggs static pciconf_bus_t *query_bus(pciconf_bus_t *, pciconf_dev_t *, int);
207 1.1 briggs
208 1.1 briggs static void print_tag(pci_chipset_tag_t, pcitag_t);
209 1.1 briggs
210 1.47 thorpej static vmem_t *
211 1.47 thorpej create_vmem_arena(const char *name, bus_addr_t start, bus_size_t size,
212 1.47 thorpej int flags)
213 1.47 thorpej {
214 1.47 thorpej KASSERT(start < VMEM_ADDR_MAX);
215 1.47 thorpej KASSERT(size == 0 ||
216 1.47 thorpej (VMEM_ADDR_MAX - start) >= (size - 1));
217 1.47 thorpej
218 1.47 thorpej return vmem_create(name, start, size,
219 1.47 thorpej 1, /*quantum*/
220 1.47 thorpej NULL, /*importfn*/
221 1.47 thorpej NULL, /*releasefn*/
222 1.47 thorpej NULL, /*source*/
223 1.47 thorpej 0, /*qcache_max*/
224 1.47 thorpej flags,
225 1.47 thorpej IPL_NONE);
226 1.47 thorpej }
227 1.47 thorpej
228 1.47 thorpej static int
229 1.47 thorpej init_range_resource(struct pciconf_resource *r, const char *name,
230 1.47 thorpej bus_addr_t start, bus_addr_t size)
231 1.47 thorpej {
232 1.47 thorpej r->arena = create_vmem_arena(name, start, size, VM_NOSLEEP);
233 1.47 thorpej if (r->arena == NULL)
234 1.47 thorpej return ENOMEM;
235 1.47 thorpej
236 1.47 thorpej r->min_addr = start;
237 1.47 thorpej r->max_addr = start + (size - 1);
238 1.47 thorpej r->total_size = size;
239 1.47 thorpej
240 1.47 thorpej return 0;
241 1.47 thorpej }
242 1.47 thorpej
243 1.47 thorpej static void
244 1.47 thorpej fini_range_resource(struct pciconf_resource *r)
245 1.47 thorpej {
246 1.47 thorpej if (r->arena) {
247 1.47 thorpej vmem_xfreeall(r->arena);
248 1.47 thorpej vmem_destroy(r->arena);
249 1.47 thorpej }
250 1.47 thorpej memset(r, 0, sizeof(*r));
251 1.47 thorpej }
252 1.47 thorpej
253 1.1 briggs static void
254 1.1 briggs print_tag(pci_chipset_tag_t pc, pcitag_t tag)
255 1.1 briggs {
256 1.1 briggs int bus, dev, func;
257 1.1 briggs
258 1.1 briggs pci_decompose_tag(pc, tag, &bus, &dev, &func);
259 1.1 briggs printf("PCI: bus %d, device %d, function %d: ", bus, dev, func);
260 1.1 briggs }
261 1.1 briggs
262 1.44 thorpej #ifdef _LP64
263 1.44 thorpej #define __used_only_lp64 __unused
264 1.44 thorpej #else
265 1.44 thorpej #define __used_only_lp64 /* nothing */
266 1.44 thorpej #endif /* _LP64 */
267 1.44 thorpej
268 1.1 briggs /************************************************************************/
269 1.1 briggs /************************************************************************/
270 1.1 briggs /*********************** Bus probing routines ***********************/
271 1.1 briggs /************************************************************************/
272 1.1 briggs /************************************************************************/
273 1.1 briggs static pciconf_win_t *
274 1.1 briggs get_io_desc(pciconf_bus_t *pb, bus_size_t size)
275 1.1 briggs {
276 1.1 briggs int i, n;
277 1.1 briggs
278 1.1 briggs n = pb->niowin;
279 1.40 msaitoh for (i = n; i > 0 && size > pb->pciiowin[i-1].size; i--)
280 1.1 briggs pb->pciiowin[i] = pb->pciiowin[i-1]; /* struct copy */
281 1.1 briggs return &pb->pciiowin[i];
282 1.1 briggs }
283 1.1 briggs
284 1.1 briggs static pciconf_win_t *
285 1.1 briggs get_mem_desc(pciconf_bus_t *pb, bus_size_t size)
286 1.1 briggs {
287 1.1 briggs int i, n;
288 1.1 briggs
289 1.1 briggs n = pb->nmemwin;
290 1.40 msaitoh for (i = n; i > 0 && size > pb->pcimemwin[i-1].size; i--)
291 1.1 briggs pb->pcimemwin[i] = pb->pcimemwin[i-1]; /* struct copy */
292 1.1 briggs return &pb->pcimemwin[i];
293 1.1 briggs }
294 1.1 briggs
295 1.1 briggs /*
296 1.1 briggs * Set up bus common stuff, then loop over devices & functions.
297 1.1 briggs * If we find something, call pci_do_device_query()).
298 1.1 briggs */
299 1.1 briggs static int
300 1.1 briggs probe_bus(pciconf_bus_t *pb)
301 1.1 briggs {
302 1.33 dyoung int device;
303 1.33 dyoung uint8_t devs[32];
304 1.33 dyoung int i, n;
305 1.1 briggs
306 1.1 briggs pb->ndevs = 0;
307 1.1 briggs pb->niowin = 0;
308 1.1 briggs pb->nmemwin = 0;
309 1.1 briggs pb->freq_66 = 1;
310 1.21 augustss #ifdef PCICONF_NO_FAST_B2B
311 1.21 augustss pb->fast_b2b = 0;
312 1.21 augustss #else
313 1.1 briggs pb->fast_b2b = 1;
314 1.21 augustss #endif
315 1.1 briggs pb->prefetch = 1;
316 1.1 briggs pb->max_mingnt = 0; /* we are looking for the maximum */
317 1.1 briggs pb->min_maxlat = 0x100; /* we are looking for the minimum */
318 1.1 briggs pb->bandwidth_used = 0;
319 1.4 simonb
320 1.33 dyoung n = pci_bus_devorder(pb->pc, pb->busno, devs, __arraycount(devs));
321 1.33 dyoung for (i = 0; i < n; i++) {
322 1.1 briggs pcitag_t tag;
323 1.1 briggs pcireg_t id, bhlcr;
324 1.1 briggs int function, nfunction;
325 1.4 simonb int confmode;
326 1.1 briggs
327 1.33 dyoung device = devs[i];
328 1.33 dyoung
329 1.1 briggs tag = pci_make_tag(pb->pc, pb->busno, device, 0);
330 1.1 briggs if (pci_conf_debug) {
331 1.1 briggs print_tag(pb->pc, tag);
332 1.1 briggs }
333 1.1 briggs id = pci_conf_read(pb->pc, tag, PCI_ID_REG);
334 1.1 briggs
335 1.4 simonb if (pci_conf_debug) {
336 1.4 simonb printf("id=%x: Vendor=%x, Product=%x\n",
337 1.40 msaitoh id, PCI_VENDOR(id), PCI_PRODUCT(id));
338 1.4 simonb }
339 1.1 briggs /* Invalid vendor ID value? */
340 1.1 briggs if (PCI_VENDOR(id) == PCI_VENDOR_INVALID)
341 1.1 briggs continue;
342 1.1 briggs
343 1.1 briggs bhlcr = pci_conf_read(pb->pc, tag, PCI_BHLC_REG);
344 1.1 briggs nfunction = PCI_HDRTYPE_MULTIFN(bhlcr) ? 8 : 1;
345 1.40 msaitoh for (function = 0; function < nfunction; function++) {
346 1.1 briggs tag = pci_make_tag(pb->pc, pb->busno, device, function);
347 1.1 briggs id = pci_conf_read(pb->pc, tag, PCI_ID_REG);
348 1.1 briggs if (PCI_VENDOR(id) == PCI_VENDOR_INVALID)
349 1.1 briggs continue;
350 1.40 msaitoh if (pb->ndevs + 1 < MAX_CONF_DEV) {
351 1.1 briggs if (pci_conf_debug) {
352 1.1 briggs print_tag(pb->pc, tag);
353 1.3 thorpej printf("Found dev 0x%04x 0x%04x -- "
354 1.3 thorpej "really probing.\n",
355 1.3 thorpej PCI_VENDOR(id), PCI_PRODUCT(id));
356 1.1 briggs }
357 1.4 simonb #ifdef __HAVE_PCI_CONF_HOOK
358 1.4 simonb confmode = pci_conf_hook(pb->pc, pb->busno,
359 1.4 simonb device, function, id);
360 1.4 simonb if (confmode == 0)
361 1.4 simonb continue;
362 1.4 simonb #else
363 1.6 thorpej /*
364 1.6 thorpej * Don't enable expansion ROMS -- some cards
365 1.6 thorpej * share address decoders between the EXPROM
366 1.6 thorpej * and PCI memory space, and enabling the ROM
367 1.6 thorpej * when not needed will cause all sorts of
368 1.6 thorpej * lossage.
369 1.6 thorpej */
370 1.28 gdamore confmode = PCI_CONF_DEFAULT;
371 1.4 simonb #endif
372 1.1 briggs if (pci_do_device_query(pb, tag, device,
373 1.4 simonb function, confmode))
374 1.1 briggs return -1;
375 1.1 briggs pb->ndevs++;
376 1.1 briggs }
377 1.1 briggs }
378 1.1 briggs }
379 1.1 briggs return 0;
380 1.1 briggs }
381 1.1 briggs
382 1.1 briggs static void
383 1.1 briggs alloc_busno(pciconf_bus_t *parent, pciconf_bus_t *pb)
384 1.1 briggs {
385 1.1 briggs pb->busno = parent->next_busno;
386 1.17 augustss pb->next_busno = pb->busno + 1;
387 1.17 augustss }
388 1.17 augustss
389 1.17 augustss static void
390 1.17 augustss set_busreg(pci_chipset_tag_t pc, pcitag_t tag, int prim, int sec, int sub)
391 1.17 augustss {
392 1.17 augustss pcireg_t busreg;
393 1.17 augustss
394 1.41 msaitoh busreg = __SHIFTIN(prim, PCI_BRIDGE_BUS_PRIMARY);
395 1.41 msaitoh busreg |= __SHIFTIN(sec, PCI_BRIDGE_BUS_SECONDARY);
396 1.41 msaitoh busreg |= __SHIFTIN(sub, PCI_BRIDGE_BUS_SUBORDINATE);
397 1.17 augustss pci_conf_write(pc, tag, PCI_BRIDGE_BUS_REG, busreg);
398 1.1 briggs }
399 1.1 briggs
400 1.1 briggs static pciconf_bus_t *
401 1.1 briggs query_bus(pciconf_bus_t *parent, pciconf_dev_t *pd, int dev)
402 1.1 briggs {
403 1.1 briggs pciconf_bus_t *pb;
404 1.17 augustss pcireg_t io, pmem;
405 1.1 briggs pciconf_win_t *pi, *pm;
406 1.1 briggs
407 1.42 chs pb = kmem_zalloc(sizeof (pciconf_bus_t), KM_SLEEP);
408 1.14 thorpej pb->cacheline_size = parent->cacheline_size;
409 1.1 briggs pb->parent_bus = parent;
410 1.1 briggs alloc_busno(parent, pb);
411 1.1 briggs
412 1.36 matt pb->mem_align = 0x100000; /* 1M alignment */
413 1.36 matt pb->pmem_align = 0x100000; /* 1M alignment */
414 1.36 matt pb->io_align = 0x1000; /* 4K alignment */
415 1.36 matt
416 1.17 augustss set_busreg(parent->pc, pd->tag, parent->busno, pb->busno, 0xff);
417 1.1 briggs
418 1.1 briggs pb->swiz = parent->swiz + dev;
419 1.1 briggs
420 1.47 thorpej memset(&pb->io_res, 0, sizeof(pb->io_res));
421 1.47 thorpej memset(&pb->mem_res, 0, sizeof(pb->mem_res));
422 1.47 thorpej memset(&pb->pmem_res, 0, sizeof(pb->pmem_res));
423 1.47 thorpej
424 1.1 briggs pb->pc = parent->pc;
425 1.1 briggs pb->io_total = pb->mem_total = pb->pmem_total = 0;
426 1.1 briggs
427 1.2 briggs pb->io_32bit = 0;
428 1.2 briggs if (parent->io_32bit) {
429 1.11 thorpej io = pci_conf_read(parent->pc, pd->tag, PCI_BRIDGE_STATIO_REG);
430 1.40 msaitoh if (PCI_BRIDGE_IO_32BITS(io))
431 1.2 briggs pb->io_32bit = 1;
432 1.2 briggs }
433 1.2 briggs
434 1.2 briggs pb->pmem_64bit = 0;
435 1.2 briggs if (parent->pmem_64bit) {
436 1.11 thorpej pmem = pci_conf_read(parent->pc, pd->tag,
437 1.2 briggs PCI_BRIDGE_PREFETCHMEM_REG);
438 1.40 msaitoh if (PCI_BRIDGE_PREFETCHMEM_64BITS(pmem))
439 1.2 briggs pb->pmem_64bit = 1;
440 1.2 briggs }
441 1.2 briggs
442 1.44 thorpej /* Bridges only forward a 32-bit range of non-prefetcable memory. */
443 1.44 thorpej pb->mem_64bit = 0;
444 1.44 thorpej
445 1.1 briggs if (probe_bus(pb)) {
446 1.1 briggs printf("Failed to probe bus %d\n", pb->busno);
447 1.1 briggs goto err;
448 1.1 briggs }
449 1.1 briggs
450 1.17 augustss /* We have found all subordinate busses now, reprogram busreg. */
451 1.40 msaitoh pb->last_busno = pb->next_busno - 1;
452 1.17 augustss parent->next_busno = pb->next_busno;
453 1.17 augustss set_busreg(parent->pc, pd->tag, parent->busno, pb->busno,
454 1.17 augustss pb->last_busno);
455 1.17 augustss if (pci_conf_debug)
456 1.17 augustss printf("PCI bus bridge (parent %d) covers busses %d-%d\n",
457 1.17 augustss parent->busno, pb->busno, pb->last_busno);
458 1.17 augustss
459 1.1 briggs if (pb->io_total > 0) {
460 1.1 briggs if (parent->niowin >= MAX_CONF_IO) {
461 1.35 matt printf("pciconf: too many (%d) I/O windows\n",
462 1.35 matt parent->niowin);
463 1.1 briggs goto err;
464 1.1 briggs }
465 1.36 matt pb->io_total |= pb->io_align - 1; /* Round up */
466 1.1 briggs pi = get_io_desc(parent, pb->io_total);
467 1.1 briggs pi->dev = pd;
468 1.1 briggs pi->reg = 0;
469 1.1 briggs pi->size = pb->io_total;
470 1.36 matt pi->align = pb->io_align; /* 4K min alignment */
471 1.36 matt if (parent->io_align < pb->io_align)
472 1.36 matt parent->io_align = pb->io_align;
473 1.1 briggs pi->prefetch = 0;
474 1.1 briggs parent->niowin++;
475 1.1 briggs parent->io_total += pb->io_total;
476 1.1 briggs }
477 1.1 briggs
478 1.1 briggs if (pb->mem_total > 0) {
479 1.1 briggs if (parent->nmemwin >= MAX_CONF_MEM) {
480 1.35 matt printf("pciconf: too many (%d) MEM windows\n",
481 1.35 matt parent->nmemwin);
482 1.1 briggs goto err;
483 1.1 briggs }
484 1.40 msaitoh pb->mem_total |= pb->mem_align - 1; /* Round up */
485 1.1 briggs pm = get_mem_desc(parent, pb->mem_total);
486 1.1 briggs pm->dev = pd;
487 1.1 briggs pm->reg = 0;
488 1.1 briggs pm->size = pb->mem_total;
489 1.36 matt pm->align = pb->mem_align; /* 1M min alignment */
490 1.36 matt if (parent->mem_align < pb->mem_align)
491 1.36 matt parent->mem_align = pb->mem_align;
492 1.1 briggs pm->prefetch = 0;
493 1.1 briggs parent->nmemwin++;
494 1.1 briggs parent->mem_total += pb->mem_total;
495 1.1 briggs }
496 1.1 briggs
497 1.1 briggs if (pb->pmem_total > 0) {
498 1.1 briggs if (parent->nmemwin >= MAX_CONF_MEM) {
499 1.10 thorpej printf("pciconf: too many MEM windows\n");
500 1.1 briggs goto err;
501 1.1 briggs }
502 1.40 msaitoh pb->pmem_total |= pb->pmem_align - 1; /* Round up */
503 1.1 briggs pm = get_mem_desc(parent, pb->pmem_total);
504 1.1 briggs pm->dev = pd;
505 1.1 briggs pm->reg = 0;
506 1.1 briggs pm->size = pb->pmem_total;
507 1.36 matt pm->align = pb->pmem_align; /* 1M alignment */
508 1.36 matt if (parent->pmem_align < pb->pmem_align)
509 1.36 matt parent->pmem_align = pb->pmem_align;
510 1.1 briggs pm->prefetch = 1;
511 1.1 briggs parent->nmemwin++;
512 1.1 briggs parent->pmem_total += pb->pmem_total;
513 1.1 briggs }
514 1.1 briggs
515 1.1 briggs return pb;
516 1.1 briggs err:
517 1.32 matt kmem_free(pb, sizeof(*pb));
518 1.1 briggs return NULL;
519 1.1 briggs }
520 1.1 briggs
521 1.50 jmcneill static struct pciconf_resource_rsvd *
522 1.49 jmcneill pci_resource_is_reserved(int type, uint64_t addr, uint64_t size)
523 1.49 jmcneill {
524 1.49 jmcneill struct pciconf_resource_rsvd *rsvd;
525 1.49 jmcneill
526 1.49 jmcneill LIST_FOREACH(rsvd, &pciconf_resource_reservations, next) {
527 1.49 jmcneill if (rsvd->type != type)
528 1.49 jmcneill continue;
529 1.49 jmcneill if (rsvd->start <= addr + size && rsvd->start + rsvd->size >= addr)
530 1.50 jmcneill return rsvd;
531 1.49 jmcneill }
532 1.49 jmcneill
533 1.50 jmcneill return NULL;
534 1.49 jmcneill }
535 1.49 jmcneill
536 1.50 jmcneill static struct pciconf_resource_rsvd *
537 1.50 jmcneill pci_bar_is_reserved(pciconf_bus_t *pb, pciconf_dev_t *pd, int br)
538 1.49 jmcneill {
539 1.49 jmcneill pcireg_t base, base64, mask, mask64;
540 1.50 jmcneill pcitag_t tag;
541 1.49 jmcneill uint64_t addr, size;
542 1.49 jmcneill
543 1.49 jmcneill /*
544 1.50 jmcneill * Resource reservation does not apply to bridges
545 1.49 jmcneill */
546 1.50 jmcneill if (pd->ppb)
547 1.50 jmcneill return NULL;
548 1.49 jmcneill
549 1.50 jmcneill tag = pd->tag;
550 1.49 jmcneill
551 1.50 jmcneill /*
552 1.50 jmcneill * Look to see if this device is enabled and one of the resources
553 1.50 jmcneill * is already in use (eg. firmware configured console device).
554 1.50 jmcneill */
555 1.50 jmcneill base = pci_conf_read(pb->pc, tag, br);
556 1.50 jmcneill pci_conf_write(pb->pc, tag, br, 0xffffffff);
557 1.50 jmcneill mask = pci_conf_read(pb->pc, tag, br);
558 1.50 jmcneill pci_conf_write(pb->pc, tag, br, base);
559 1.50 jmcneill
560 1.50 jmcneill switch (PCI_MAPREG_TYPE(base)) {
561 1.50 jmcneill case PCI_MAPREG_TYPE_IO:
562 1.50 jmcneill addr = PCI_MAPREG_IO_ADDR(base);
563 1.50 jmcneill size = PCI_MAPREG_IO_SIZE(mask);
564 1.50 jmcneill return pci_resource_is_reserved(PCI_CONF_MAP_IO, addr, size);
565 1.50 jmcneill
566 1.50 jmcneill case PCI_MAPREG_TYPE_MEM:
567 1.50 jmcneill if (PCI_MAPREG_MEM_TYPE(base) == PCI_MAPREG_MEM_TYPE_64BIT) {
568 1.50 jmcneill base64 = pci_conf_read(pb->pc, tag, br + 4);
569 1.50 jmcneill pci_conf_write(pb->pc, tag, br + 4, 0xffffffff);
570 1.50 jmcneill mask64 = pci_conf_read(pb->pc, tag, br + 4);
571 1.50 jmcneill pci_conf_write(pb->pc, tag, br + 4, base64);
572 1.50 jmcneill addr = (uint64_t)PCI_MAPREG_MEM64_ADDR(
573 1.50 jmcneill (((uint64_t)base64) << 32) | base);
574 1.50 jmcneill size = (uint64_t)PCI_MAPREG_MEM64_SIZE(
575 1.50 jmcneill (((uint64_t)mask64) << 32) | mask);
576 1.50 jmcneill } else {
577 1.50 jmcneill addr = PCI_MAPREG_MEM_ADDR(base);
578 1.50 jmcneill size = PCI_MAPREG_MEM_SIZE(mask);
579 1.49 jmcneill }
580 1.50 jmcneill return pci_resource_is_reserved(PCI_CONF_MAP_MEM, addr, size);
581 1.50 jmcneill
582 1.50 jmcneill default:
583 1.50 jmcneill return NULL;
584 1.49 jmcneill }
585 1.49 jmcneill }
586 1.49 jmcneill
587 1.1 briggs static int
588 1.39 msaitoh pci_do_device_query(pciconf_bus_t *pb, pcitag_t tag, int dev, int func,
589 1.39 msaitoh int mode)
590 1.1 briggs {
591 1.1 briggs pciconf_dev_t *pd;
592 1.1 briggs pciconf_win_t *pi, *pm;
593 1.39 msaitoh pcireg_t classreg, cmd, icr, bhlc, bar, mask, bar64, mask64,
594 1.39 msaitoh busreg;
595 1.39 msaitoh uint64_t size;
596 1.22 briggs int br, width, reg_start, reg_end;
597 1.1 briggs
598 1.1 briggs pd = &pb->device[pb->ndevs];
599 1.1 briggs pd->pc = pb->pc;
600 1.1 briggs pd->tag = tag;
601 1.1 briggs pd->ppb = NULL;
602 1.4 simonb pd->enable = mode;
603 1.1 briggs
604 1.37 matt classreg = pci_conf_read(pb->pc, tag, PCI_CLASS_REG);
605 1.1 briggs
606 1.1 briggs cmd = pci_conf_read(pb->pc, tag, PCI_COMMAND_STATUS_REG);
607 1.32 matt bhlc = pci_conf_read(pb->pc, tag, PCI_BHLC_REG);
608 1.1 briggs
609 1.37 matt if (PCI_CLASS(classreg) != PCI_CLASS_BRIDGE
610 1.32 matt && PCI_HDRTYPE_TYPE(bhlc) != PCI_HDRTYPE_PPB) {
611 1.1 briggs cmd &= ~(PCI_COMMAND_MASTER_ENABLE |
612 1.1 briggs PCI_COMMAND_IO_ENABLE | PCI_COMMAND_MEM_ENABLE);
613 1.1 briggs pci_conf_write(pb->pc, tag, PCI_COMMAND_STATUS_REG, cmd);
614 1.3 thorpej } else if (pci_conf_debug) {
615 1.3 thorpej print_tag(pb->pc, tag);
616 1.3 thorpej printf("device is a bridge; not clearing enables\n");
617 1.1 briggs }
618 1.1 briggs
619 1.1 briggs if ((cmd & PCI_STATUS_BACKTOBACK_SUPPORT) == 0)
620 1.1 briggs pb->fast_b2b = 0;
621 1.1 briggs
622 1.1 briggs if ((cmd & PCI_STATUS_66MHZ_SUPPORT) == 0)
623 1.1 briggs pb->freq_66 = 0;
624 1.1 briggs
625 1.22 briggs switch (PCI_HDRTYPE_TYPE(bhlc)) {
626 1.22 briggs case PCI_HDRTYPE_DEVICE:
627 1.22 briggs reg_start = PCI_MAPREG_START;
628 1.22 briggs reg_end = PCI_MAPREG_END;
629 1.22 briggs break;
630 1.22 briggs case PCI_HDRTYPE_PPB:
631 1.1 briggs pd->ppb = query_bus(pb, pd, dev);
632 1.1 briggs if (pd->ppb == NULL)
633 1.1 briggs return -1;
634 1.1 briggs return 0;
635 1.22 briggs case PCI_HDRTYPE_PCB:
636 1.22 briggs reg_start = PCI_MAPREG_START;
637 1.22 briggs reg_end = PCI_MAPREG_PCB_END;
638 1.22 briggs
639 1.22 briggs busreg = pci_conf_read(pb->pc, tag, PCI_BUSNUM);
640 1.22 briggs busreg = (busreg & 0xff000000) |
641 1.41 msaitoh __SHIFTIN(pb->busno, PCI_BRIDGE_BUS_PRIMARY) |
642 1.41 msaitoh __SHIFTIN(pb->next_busno, PCI_BRIDGE_BUS_SECONDARY) |
643 1.41 msaitoh __SHIFTIN(pb->next_busno, PCI_BRIDGE_BUS_SUBORDINATE);
644 1.22 briggs pci_conf_write(pb->pc, tag, PCI_BUSNUM, busreg);
645 1.22 briggs
646 1.24 simonb pb->next_busno++;
647 1.22 briggs break;
648 1.22 briggs default:
649 1.22 briggs return -1;
650 1.1 briggs }
651 1.1 briggs
652 1.1 briggs icr = pci_conf_read(pb->pc, tag, PCI_INTERRUPT_REG);
653 1.1 briggs pd->ipin = PCI_INTERRUPT_PIN(icr);
654 1.1 briggs pd->iline = PCI_INTERRUPT_LINE(icr);
655 1.1 briggs pd->min_gnt = PCI_MIN_GNT(icr);
656 1.1 briggs pd->max_lat = PCI_MAX_LAT(icr);
657 1.1 briggs if (pd->iline || pd->ipin) {
658 1.8 briggs pci_conf_interrupt(pb->pc, pb->busno, dev, pd->ipin, pb->swiz,
659 1.1 briggs &pd->iline);
660 1.1 briggs icr &= ~(PCI_INTERRUPT_LINE_MASK << PCI_INTERRUPT_LINE_SHIFT);
661 1.1 briggs icr |= (pd->iline << PCI_INTERRUPT_LINE_SHIFT);
662 1.1 briggs pci_conf_write(pb->pc, tag, PCI_INTERRUPT_REG, icr);
663 1.1 briggs }
664 1.1 briggs
665 1.1 briggs if (pd->min_gnt != 0 || pd->max_lat != 0) {
666 1.1 briggs if (pd->min_gnt != 0 && pd->min_gnt > pb->max_mingnt)
667 1.1 briggs pb->max_mingnt = pd->min_gnt;
668 1.1 briggs
669 1.1 briggs if (pd->max_lat != 0 && pd->max_lat < pb->min_maxlat)
670 1.1 briggs pb->min_maxlat = pd->max_lat;
671 1.1 briggs
672 1.1 briggs pb->bandwidth_used += pd->min_gnt * 4000000 /
673 1.1 briggs (pd->min_gnt + pd->max_lat);
674 1.1 briggs }
675 1.1 briggs
676 1.1 briggs width = 4;
677 1.22 briggs for (br = reg_start; br < reg_end; br += width) {
678 1.3 thorpej #if 0
679 1.8 briggs /* XXX Should only ignore if IDE not in legacy mode? */
680 1.37 matt if (PCI_CLASS(classreg) == PCI_CLASS_MASS_STORAGE &&
681 1.37 matt PCI_SUBCLASS(classreg) == PCI_SUBCLASS_MASS_STORAGE_IDE) {
682 1.1 briggs break;
683 1.1 briggs }
684 1.3 thorpej #endif
685 1.1 briggs bar = pci_conf_read(pb->pc, tag, br);
686 1.3 thorpej pci_conf_write(pb->pc, tag, br, 0xffffffff);
687 1.1 briggs mask = pci_conf_read(pb->pc, tag, br);
688 1.1 briggs pci_conf_write(pb->pc, tag, br, bar);
689 1.1 briggs width = 4;
690 1.1 briggs
691 1.8 briggs if ( (mode & PCI_CONF_MAP_IO)
692 1.8 briggs && (PCI_MAPREG_TYPE(mask) == PCI_MAPREG_TYPE_IO)) {
693 1.8 briggs /*
694 1.8 briggs * Upper 16 bits must be one. Devices may hardwire
695 1.8 briggs * them to zero, though, per PCI 2.2, 6.2.5.1, p 203.
696 1.8 briggs */
697 1.3 thorpej mask |= 0xffff0000;
698 1.3 thorpej
699 1.3 thorpej size = PCI_MAPREG_IO_SIZE(mask);
700 1.3 thorpej if (size == 0) {
701 1.3 thorpej if (pci_conf_debug) {
702 1.3 thorpej print_tag(pb->pc, tag);
703 1.3 thorpej printf("I/O BAR 0x%x is void\n", br);
704 1.3 thorpej }
705 1.3 thorpej continue;
706 1.3 thorpej }
707 1.1 briggs
708 1.1 briggs if (pb->niowin >= MAX_CONF_IO) {
709 1.10 thorpej printf("pciconf: too many I/O windows\n");
710 1.1 briggs return -1;
711 1.1 briggs }
712 1.1 briggs
713 1.1 briggs pi = get_io_desc(pb, size);
714 1.1 briggs pi->dev = pd;
715 1.1 briggs pi->reg = br;
716 1.43 msaitoh pi->size = (uint64_t)size;
717 1.1 briggs pi->align = 4;
718 1.36 matt if (pb->io_align < pi->size)
719 1.36 matt pb->io_align = pi->size;
720 1.1 briggs pi->prefetch = 0;
721 1.1 briggs if (pci_conf_debug) {
722 1.1 briggs print_tag(pb->pc, tag);
723 1.23 scw printf("Register 0x%x, I/O size %" PRIu64 "\n",
724 1.1 briggs br, pi->size);
725 1.1 briggs }
726 1.1 briggs pb->niowin++;
727 1.1 briggs pb->io_total += size;
728 1.4 simonb } else if ((mode & PCI_CONF_MAP_MEM)
729 1.4 simonb && (PCI_MAPREG_TYPE(mask) == PCI_MAPREG_TYPE_MEM)) {
730 1.1 briggs switch (PCI_MAPREG_MEM_TYPE(mask)) {
731 1.1 briggs case PCI_MAPREG_MEM_TYPE_32BIT:
732 1.1 briggs case PCI_MAPREG_MEM_TYPE_32BIT_1M:
733 1.43 msaitoh size = (uint64_t)PCI_MAPREG_MEM_SIZE(mask);
734 1.1 briggs break;
735 1.1 briggs case PCI_MAPREG_MEM_TYPE_64BIT:
736 1.1 briggs bar64 = pci_conf_read(pb->pc, tag, br + 4);
737 1.1 briggs pci_conf_write(pb->pc, tag, br + 4, 0xffffffff);
738 1.1 briggs mask64 = pci_conf_read(pb->pc, tag, br + 4);
739 1.1 briggs pci_conf_write(pb->pc, tag, br + 4, bar64);
740 1.43 msaitoh size = (uint64_t)PCI_MAPREG_MEM64_SIZE(
741 1.43 msaitoh (((uint64_t)mask64) << 32) | mask);
742 1.1 briggs width = 8;
743 1.16 briggs break;
744 1.1 briggs default:
745 1.1 briggs print_tag(pb->pc, tag);
746 1.1 briggs printf("reserved mapping type 0x%x\n",
747 1.1 briggs PCI_MAPREG_MEM_TYPE(mask));
748 1.1 briggs continue;
749 1.1 briggs }
750 1.1 briggs
751 1.3 thorpej if (size == 0) {
752 1.3 thorpej if (pci_conf_debug) {
753 1.3 thorpej print_tag(pb->pc, tag);
754 1.3 thorpej printf("MEM%d BAR 0x%x is void\n",
755 1.3 thorpej PCI_MAPREG_MEM_TYPE(mask) ==
756 1.3 thorpej PCI_MAPREG_MEM_TYPE_64BIT ?
757 1.3 thorpej 64 : 32, br);
758 1.3 thorpej }
759 1.3 thorpej continue;
760 1.16 briggs } else {
761 1.16 briggs if (pci_conf_debug) {
762 1.16 briggs print_tag(pb->pc, tag);
763 1.36 matt printf("MEM%d BAR 0x%x has size %#lx\n",
764 1.16 briggs PCI_MAPREG_MEM_TYPE(mask) ==
765 1.16 briggs PCI_MAPREG_MEM_TYPE_64BIT ?
766 1.43 msaitoh 64 : 32,
767 1.43 msaitoh br, (unsigned long)size);
768 1.16 briggs }
769 1.3 thorpej }
770 1.3 thorpej
771 1.1 briggs if (pb->nmemwin >= MAX_CONF_MEM) {
772 1.10 thorpej printf("pciconf: too many memory windows\n");
773 1.1 briggs return -1;
774 1.1 briggs }
775 1.1 briggs
776 1.1 briggs pm = get_mem_desc(pb, size);
777 1.1 briggs pm->dev = pd;
778 1.1 briggs pm->reg = br;
779 1.1 briggs pm->size = size;
780 1.1 briggs pm->align = 4;
781 1.1 briggs pm->prefetch = PCI_MAPREG_MEM_PREFETCHABLE(mask);
782 1.1 briggs if (pci_conf_debug) {
783 1.1 briggs print_tag(pb->pc, tag);
784 1.23 scw printf("Register 0x%x, memory size %"
785 1.23 scw PRIu64 "\n", br, pm->size);
786 1.1 briggs }
787 1.1 briggs pb->nmemwin++;
788 1.1 briggs if (pm->prefetch) {
789 1.1 briggs pb->pmem_total += size;
790 1.36 matt if (pb->pmem_align < pm->size)
791 1.36 matt pb->pmem_align = pm->size;
792 1.1 briggs } else {
793 1.1 briggs pb->mem_total += size;
794 1.36 matt if (pb->mem_align < pm->size)
795 1.36 matt pb->mem_align = pm->size;
796 1.1 briggs }
797 1.1 briggs }
798 1.1 briggs }
799 1.1 briggs
800 1.4 simonb if (mode & PCI_CONF_MAP_ROM) {
801 1.4 simonb bar = pci_conf_read(pb->pc, tag, PCI_MAPREG_ROM);
802 1.4 simonb pci_conf_write(pb->pc, tag, PCI_MAPREG_ROM, 0xfffffffe);
803 1.4 simonb mask = pci_conf_read(pb->pc, tag, PCI_MAPREG_ROM);
804 1.4 simonb pci_conf_write(pb->pc, tag, PCI_MAPREG_ROM, bar);
805 1.4 simonb
806 1.4 simonb if (mask != 0 && mask != 0xffffffff) {
807 1.4 simonb if (pb->nmemwin >= MAX_CONF_MEM) {
808 1.10 thorpej printf("pciconf: too many memory windows\n");
809 1.4 simonb return -1;
810 1.4 simonb }
811 1.43 msaitoh size = (uint64_t)PCI_MAPREG_MEM_SIZE(mask);
812 1.1 briggs
813 1.4 simonb pm = get_mem_desc(pb, size);
814 1.4 simonb pm->dev = pd;
815 1.4 simonb pm->reg = PCI_MAPREG_ROM;
816 1.4 simonb pm->size = size;
817 1.4 simonb pm->align = 4;
818 1.44 thorpej pm->prefetch = 0;
819 1.4 simonb if (pci_conf_debug) {
820 1.4 simonb print_tag(pb->pc, tag);
821 1.23 scw printf("Expansion ROM memory size %"
822 1.23 scw PRIu64 "\n", pm->size);
823 1.4 simonb }
824 1.4 simonb pb->nmemwin++;
825 1.44 thorpej if (pm->prefetch) {
826 1.44 thorpej pb->pmem_total += size;
827 1.44 thorpej if (pb->pmem_align < pm->size)
828 1.44 thorpej pb->pmem_align = pm->size;
829 1.44 thorpej } else {
830 1.44 thorpej pb->mem_total += size;
831 1.44 thorpej if (pb->mem_align < pm->size)
832 1.44 thorpej pb->mem_align = pm->size;
833 1.44 thorpej }
834 1.1 briggs }
835 1.8 briggs } else {
836 1.28 gdamore /* Don't enable ROMs if we aren't going to map them. */
837 1.28 gdamore mode &= ~PCI_CONF_ENABLE_ROM;
838 1.28 gdamore pd->enable &= ~PCI_CONF_ENABLE_ROM;
839 1.28 gdamore }
840 1.28 gdamore
841 1.28 gdamore if (!(mode & PCI_CONF_ENABLE_ROM)) {
842 1.8 briggs /* Ensure ROM is disabled */
843 1.8 briggs bar = pci_conf_read(pb->pc, tag, PCI_MAPREG_ROM);
844 1.8 briggs pci_conf_write(pb->pc, tag, PCI_MAPREG_ROM,
845 1.8 briggs bar & ~PCI_MAPREG_ROM_ENABLE);
846 1.1 briggs }
847 1.1 briggs
848 1.1 briggs return 0;
849 1.1 briggs }
850 1.1 briggs
851 1.1 briggs /************************************************************************/
852 1.1 briggs /************************************************************************/
853 1.1 briggs /******************** Bus configuration routines ********************/
854 1.1 briggs /************************************************************************/
855 1.1 briggs /************************************************************************/
856 1.39 msaitoh static uint64_t
857 1.47 thorpej pci_allocate_range(struct pciconf_resource * const r, const uint64_t amt,
858 1.44 thorpej const int align, const bool ok64 __used_only_lp64)
859 1.1 briggs {
860 1.47 thorpej vmem_size_t const size = (vmem_size_t) amt;
861 1.47 thorpej vmem_addr_t result;
862 1.47 thorpej int error;
863 1.44 thorpej
864 1.44 thorpej #ifdef _LP64
865 1.44 thorpej /*
866 1.44 thorpej * If a 64-bit range IS OK, then we prefer allocating above 4GB.
867 1.44 thorpej *
868 1.47 thorpej * XXX We guard this with _LP64 because vmem uses uintptr_t
869 1.44 thorpej * internally.
870 1.44 thorpej */
871 1.44 thorpej if (!ok64) {
872 1.47 thorpej error = vmem_xalloc(r->arena, size, align, 0, 0,
873 1.47 thorpej VMEM_ADDR_MIN, 0xffffffffUL,
874 1.47 thorpej VM_BESTFIT | VM_NOSLEEP,
875 1.47 thorpej &result);
876 1.47 thorpej } else {
877 1.47 thorpej error = vmem_xalloc(r->arena, size, align, 0, 0,
878 1.47 thorpej (1UL << 32), VMEM_ADDR_MAX,
879 1.47 thorpej VM_BESTFIT | VM_NOSLEEP,
880 1.47 thorpej &result);
881 1.47 thorpej if (error) {
882 1.47 thorpej error = vmem_xalloc(r->arena, size, align, 0, 0,
883 1.47 thorpej VMEM_ADDR_MIN, VMEM_ADDR_MAX,
884 1.47 thorpej VM_BESTFIT | VM_NOSLEEP,
885 1.47 thorpej &result);
886 1.44 thorpej }
887 1.44 thorpej }
888 1.47 thorpej #else
889 1.47 thorpej error = vmem_xalloc(r->arena, size, align, 0, 0,
890 1.47 thorpej VMEM_ADDR_MIN, 0xffffffffUL,
891 1.47 thorpej VM_BESTFIT | VM_NOSLEEP,
892 1.47 thorpej &result);
893 1.44 thorpej #endif /* _L64 */
894 1.44 thorpej
895 1.47 thorpej if (error)
896 1.36 matt return ~0ULL;
897 1.47 thorpej
898 1.47 thorpej return result;
899 1.1 briggs }
900 1.1 briggs
901 1.1 briggs static int
902 1.1 briggs setup_iowins(pciconf_bus_t *pb)
903 1.1 briggs {
904 1.1 briggs pciconf_win_t *pi;
905 1.1 briggs pciconf_dev_t *pd;
906 1.50 jmcneill struct pciconf_resource_rsvd *rsvd;
907 1.50 jmcneill int error;
908 1.1 briggs
909 1.40 msaitoh for (pi = pb->pciiowin; pi < &pb->pciiowin[pb->niowin]; pi++) {
910 1.1 briggs if (pi->size == 0)
911 1.1 briggs continue;
912 1.1 briggs
913 1.1 briggs pd = pi->dev;
914 1.50 jmcneill rsvd = pci_bar_is_reserved(pb, pd, pi->reg);
915 1.50 jmcneill
916 1.47 thorpej if (pb->io_res.arena == NULL) {
917 1.46 jmcneill /* Bus has no IO ranges, disable IO BAR */
918 1.46 jmcneill pi->address = 0;
919 1.46 jmcneill pd->enable &= ~PCI_CONF_ENABLE_IO;
920 1.46 jmcneill goto write_ioaddr;
921 1.46 jmcneill }
922 1.50 jmcneill
923 1.47 thorpej pi->address = pci_allocate_range(&pb->io_res, pi->size,
924 1.44 thorpej pi->align, false);
925 1.36 matt if (~pi->address == 0) {
926 1.1 briggs print_tag(pd->pc, pd->tag);
927 1.23 scw printf("Failed to allocate PCI I/O space (%"
928 1.23 scw PRIu64 " req)\n", pi->size);
929 1.1 briggs return -1;
930 1.1 briggs }
931 1.1 briggs if (pd->ppb && pi->reg == 0) {
932 1.47 thorpej error = init_range_resource(&pd->ppb->io_res,
933 1.47 thorpej "ppb-io", pi->address, pi->size);
934 1.47 thorpej if (error) {
935 1.1 briggs print_tag(pd->pc, pd->tag);
936 1.47 thorpej printf("Failed to alloc I/O arena for bus %d\n",
937 1.1 briggs pd->ppb->busno);
938 1.1 briggs return -1;
939 1.1 briggs }
940 1.1 briggs continue;
941 1.1 briggs }
942 1.26 tsutsui if (!pb->io_32bit && pi->address > 0xFFFF) {
943 1.26 tsutsui pi->address = 0;
944 1.26 tsutsui pd->enable &= ~PCI_CONF_ENABLE_IO;
945 1.26 tsutsui } else {
946 1.26 tsutsui pd->enable |= PCI_CONF_ENABLE_IO;
947 1.26 tsutsui }
948 1.46 jmcneill write_ioaddr:
949 1.1 briggs if (pci_conf_debug) {
950 1.1 briggs print_tag(pd->pc, pd->tag);
951 1.23 scw printf("Putting %" PRIu64 " I/O bytes @ %#" PRIx64
952 1.23 scw " (reg %x)\n", pi->size, pi->address, pi->reg);
953 1.1 briggs }
954 1.1 briggs pci_conf_write(pd->pc, pd->tag, pi->reg,
955 1.1 briggs PCI_MAPREG_IO_ADDR(pi->address) | PCI_MAPREG_TYPE_IO);
956 1.50 jmcneill
957 1.50 jmcneill if (rsvd != NULL && rsvd->start != pi->address)
958 1.50 jmcneill rsvd->callback(rsvd->callback_arg, pi->address);
959 1.1 briggs }
960 1.1 briggs return 0;
961 1.1 briggs }
962 1.1 briggs
963 1.1 briggs static int
964 1.1 briggs setup_memwins(pciconf_bus_t *pb)
965 1.1 briggs {
966 1.1 briggs pciconf_win_t *pm;
967 1.1 briggs pciconf_dev_t *pd;
968 1.1 briggs pcireg_t base;
969 1.47 thorpej struct pciconf_resource *r;
970 1.50 jmcneill struct pciconf_resource_rsvd *rsvd;
971 1.44 thorpej bool ok64;
972 1.47 thorpej int error;
973 1.1 briggs
974 1.40 msaitoh for (pm = pb->pcimemwin; pm < &pb->pcimemwin[pb->nmemwin]; pm++) {
975 1.1 briggs if (pm->size == 0)
976 1.1 briggs continue;
977 1.1 briggs
978 1.44 thorpej ok64 = false;
979 1.1 briggs pd = pm->dev;
980 1.50 jmcneill rsvd = pci_bar_is_reserved(pb, pd, pm->reg);
981 1.50 jmcneill
982 1.44 thorpej if (pm->prefetch) {
983 1.47 thorpej r = &pb->pmem_res;
984 1.44 thorpej ok64 = pb->pmem_64bit;
985 1.44 thorpej } else {
986 1.47 thorpej r = &pb->mem_res;
987 1.44 thorpej ok64 = pb->mem_64bit && pd->ppb == NULL;
988 1.44 thorpej }
989 1.44 thorpej
990 1.44 thorpej /*
991 1.44 thorpej * We need to figure out if the memory BAR is 64-bit
992 1.44 thorpej * capable or not. If it's not, then we need to constrain
993 1.44 thorpej * the address allocation.
994 1.44 thorpej */
995 1.44 thorpej if (pm->reg == PCI_MAPREG_ROM) {
996 1.44 thorpej ok64 = false;
997 1.44 thorpej } else if (ok64) {
998 1.44 thorpej base = pci_conf_read(pd->pc, pd->tag, pm->reg);
999 1.44 thorpej ok64 = PCI_MAPREG_MEM_TYPE(base) ==
1000 1.44 thorpej PCI_MAPREG_MEM_TYPE_64BIT;
1001 1.44 thorpej }
1002 1.44 thorpej
1003 1.47 thorpej pm->address = pci_allocate_range(r, pm->size, pm->align,
1004 1.44 thorpej ok64);
1005 1.36 matt if (~pm->address == 0) {
1006 1.1 briggs print_tag(pd->pc, pd->tag);
1007 1.1 briggs printf(
1008 1.23 scw "Failed to allocate PCI memory space (%" PRIu64
1009 1.44 thorpej " req, prefetch=%d ok64=%d)\n", pm->size,
1010 1.44 thorpej pm->prefetch, (int)ok64);
1011 1.1 briggs return -1;
1012 1.1 briggs }
1013 1.1 briggs if (pd->ppb && pm->reg == 0) {
1014 1.47 thorpej const char *name = pm->prefetch ? "ppb-pmem"
1015 1.47 thorpej : "ppb-mem";
1016 1.47 thorpej r = pm->prefetch ? &pd->ppb->pmem_res
1017 1.47 thorpej : &pd->ppb->mem_res;
1018 1.47 thorpej error = init_range_resource(r, name,
1019 1.47 thorpej pm->address, pm->size);
1020 1.47 thorpej if (error) {
1021 1.1 briggs print_tag(pd->pc, pd->tag);
1022 1.47 thorpej printf("Failed to alloc MEM arena for bus %d\n",
1023 1.1 briggs pd->ppb->busno);
1024 1.1 briggs return -1;
1025 1.1 briggs }
1026 1.1 briggs continue;
1027 1.1 briggs }
1028 1.44 thorpej if (!ok64 && pm->address > 0xFFFFFFFFULL) {
1029 1.2 briggs pm->address = 0;
1030 1.26 tsutsui pd->enable &= ~PCI_CONF_ENABLE_MEM;
1031 1.39 msaitoh } else
1032 1.8 briggs pd->enable |= PCI_CONF_ENABLE_MEM;
1033 1.39 msaitoh
1034 1.1 briggs if (pm->reg != PCI_MAPREG_ROM) {
1035 1.1 briggs if (pci_conf_debug) {
1036 1.1 briggs print_tag(pd->pc, pd->tag);
1037 1.1 briggs printf(
1038 1.23 scw "Putting %" PRIu64 " MEM bytes @ %#"
1039 1.23 scw PRIx64 " (reg %x)\n", pm->size,
1040 1.23 scw pm->address, pm->reg);
1041 1.1 briggs }
1042 1.1 briggs base = pci_conf_read(pd->pc, pd->tag, pm->reg);
1043 1.1 briggs base = PCI_MAPREG_MEM_ADDR(pm->address) |
1044 1.1 briggs PCI_MAPREG_MEM_TYPE(base);
1045 1.1 briggs pci_conf_write(pd->pc, pd->tag, pm->reg, base);
1046 1.1 briggs if (PCI_MAPREG_MEM_TYPE(base) ==
1047 1.1 briggs PCI_MAPREG_MEM_TYPE_64BIT) {
1048 1.1 briggs base = (pcireg_t)
1049 1.1 briggs (PCI_MAPREG_MEM64_ADDR(pm->address) >> 32);
1050 1.1 briggs pci_conf_write(pd->pc, pd->tag, pm->reg + 4,
1051 1.1 briggs base);
1052 1.1 briggs }
1053 1.1 briggs }
1054 1.50 jmcneill
1055 1.50 jmcneill if (rsvd != NULL && rsvd->start != pm->address) {
1056 1.50 jmcneill rsvd->callback(rsvd->callback_arg, pm->address);
1057 1.50 jmcneill }
1058 1.1 briggs }
1059 1.40 msaitoh for (pm = pb->pcimemwin; pm < &pb->pcimemwin[pb->nmemwin]; pm++) {
1060 1.1 briggs if (pm->reg == PCI_MAPREG_ROM && pm->address != -1) {
1061 1.1 briggs pd = pm->dev;
1062 1.29 gdamore if (!(pd->enable & PCI_CONF_MAP_ROM))
1063 1.28 gdamore continue;
1064 1.1 briggs if (pci_conf_debug) {
1065 1.1 briggs print_tag(pd->pc, pd->tag);
1066 1.1 briggs printf(
1067 1.23 scw "Putting %" PRIu64 " ROM bytes @ %#"
1068 1.23 scw PRIx64 " (reg %x)\n", pm->size,
1069 1.23 scw pm->address, pm->reg);
1070 1.1 briggs }
1071 1.29 gdamore base = (pcireg_t) pm->address;
1072 1.29 gdamore if (pd->enable & PCI_CONF_ENABLE_ROM)
1073 1.29 gdamore base |= PCI_MAPREG_ROM_ENABLE;
1074 1.29 gdamore
1075 1.1 briggs pci_conf_write(pd->pc, pd->tag, pm->reg, base);
1076 1.1 briggs }
1077 1.1 briggs }
1078 1.1 briggs return 0;
1079 1.1 briggs }
1080 1.1 briggs
1081 1.44 thorpej static bool
1082 1.47 thorpej constrain_bridge_mem_range(struct pciconf_resource * const r,
1083 1.44 thorpej u_long * const base,
1084 1.44 thorpej u_long * const limit,
1085 1.44 thorpej const bool ok64 __used_only_lp64)
1086 1.44 thorpej {
1087 1.44 thorpej
1088 1.47 thorpej *base = r->min_addr;
1089 1.47 thorpej *limit = r->max_addr;
1090 1.44 thorpej
1091 1.44 thorpej #ifdef _LP64
1092 1.44 thorpej if (!ok64) {
1093 1.47 thorpej if (r->min_addr >= (1UL << 32)) {
1094 1.44 thorpej return true;
1095 1.44 thorpej }
1096 1.47 thorpej if (r->max_addr > 0xffffffffUL) {
1097 1.44 thorpej *limit = 0xffffffffUL;
1098 1.44 thorpej }
1099 1.44 thorpej }
1100 1.44 thorpej #endif /* _LP64 */
1101 1.44 thorpej
1102 1.44 thorpej return false;
1103 1.44 thorpej }
1104 1.44 thorpej
1105 1.1 briggs /*
1106 1.1 briggs * Configure I/O, memory, and prefetcable memory spaces, then make
1107 1.1 briggs * a call to configure_bus().
1108 1.1 briggs */
1109 1.1 briggs static int
1110 1.1 briggs configure_bridge(pciconf_dev_t *pd)
1111 1.1 briggs {
1112 1.1 briggs unsigned long io_base, io_limit, mem_base, mem_limit;
1113 1.1 briggs pciconf_bus_t *pb;
1114 1.1 briggs pcireg_t io, iohigh, mem, cmd;
1115 1.1 briggs int rv;
1116 1.38 msaitoh bool isprefetchmem64;
1117 1.44 thorpej bool bad_range;
1118 1.1 briggs
1119 1.1 briggs pb = pd->ppb;
1120 1.1 briggs /* Configure I/O base & limit*/
1121 1.47 thorpej if (pb->io_res.arena) {
1122 1.47 thorpej io_base = pb->io_res.min_addr;
1123 1.47 thorpej io_limit = pb->io_res.max_addr;
1124 1.2 briggs } else {
1125 1.2 briggs io_base = 0x1000; /* 4K */
1126 1.2 briggs io_limit = 0x0000;
1127 1.1 briggs }
1128 1.2 briggs if (pb->io_32bit) {
1129 1.41 msaitoh iohigh = __SHIFTIN(io_base >> 16, PCI_BRIDGE_IOHIGH_BASE) |
1130 1.41 msaitoh __SHIFTIN(io_limit >> 16, PCI_BRIDGE_IOHIGH_LIMIT);
1131 1.2 briggs } else {
1132 1.2 briggs if (io_limit > 0xFFFF) {
1133 1.2 briggs printf("Bus %d bridge does not support 32-bit I/O. ",
1134 1.2 briggs pb->busno);
1135 1.2 briggs printf("Disabling I/O accesses\n");
1136 1.2 briggs io_base = 0x1000; /* 4K */
1137 1.2 briggs io_limit = 0x0000;
1138 1.2 briggs }
1139 1.2 briggs iohigh = 0;
1140 1.2 briggs }
1141 1.9 briggs io = pci_conf_read(pb->pc, pd->tag, PCI_BRIDGE_STATIO_REG) &
1142 1.41 msaitoh PCI_BRIDGE_STATIO_STATUS;
1143 1.41 msaitoh io |= __SHIFTIN((io_base >> 8) & PCI_BRIDGE_STATIO_IOADDR,
1144 1.41 msaitoh PCI_BRIDGE_STATIO_IOBASE);
1145 1.41 msaitoh io |= __SHIFTIN((io_limit >> 8) & PCI_BRIDGE_STATIO_IOADDR,
1146 1.41 msaitoh PCI_BRIDGE_STATIO_IOLIMIT);
1147 1.2 briggs pci_conf_write(pb->pc, pd->tag, PCI_BRIDGE_STATIO_REG, io);
1148 1.2 briggs pci_conf_write(pb->pc, pd->tag, PCI_BRIDGE_IOHIGH_REG, iohigh);
1149 1.1 briggs
1150 1.1 briggs /* Configure mem base & limit */
1151 1.44 thorpej bad_range = false;
1152 1.47 thorpej if (pb->mem_res.arena) {
1153 1.47 thorpej bad_range = constrain_bridge_mem_range(&pb->mem_res,
1154 1.44 thorpej &mem_base,
1155 1.44 thorpej &mem_limit,
1156 1.44 thorpej false);
1157 1.2 briggs } else {
1158 1.2 briggs mem_base = 0x100000; /* 1M */
1159 1.2 briggs mem_limit = 0x000000;
1160 1.1 briggs }
1161 1.44 thorpej if (bad_range) {
1162 1.2 briggs printf("Bus %d bridge MEM range out of range. ", pb->busno);
1163 1.2 briggs printf("Disabling MEM accesses\n");
1164 1.2 briggs mem_base = 0x100000; /* 1M */
1165 1.2 briggs mem_limit = 0x000000;
1166 1.2 briggs }
1167 1.41 msaitoh mem = __SHIFTIN((mem_base >> 16) & PCI_BRIDGE_MEMORY_ADDR,
1168 1.41 msaitoh PCI_BRIDGE_MEMORY_BASE);
1169 1.41 msaitoh mem |= __SHIFTIN((mem_limit >> 16) & PCI_BRIDGE_MEMORY_ADDR,
1170 1.41 msaitoh PCI_BRIDGE_MEMORY_LIMIT);
1171 1.2 briggs pci_conf_write(pb->pc, pd->tag, PCI_BRIDGE_MEMORY_REG, mem);
1172 1.1 briggs
1173 1.1 briggs /* Configure prefetchable mem base & limit */
1174 1.44 thorpej mem = pci_conf_read(pb->pc, pd->tag, PCI_BRIDGE_PREFETCHMEM_REG);
1175 1.44 thorpej isprefetchmem64 = PCI_BRIDGE_PREFETCHMEM_64BITS(mem);
1176 1.44 thorpej bad_range = false;
1177 1.47 thorpej if (pb->pmem_res.arena) {
1178 1.47 thorpej bad_range = constrain_bridge_mem_range(&pb->pmem_res,
1179 1.44 thorpej &mem_base,
1180 1.44 thorpej &mem_limit,
1181 1.44 thorpej isprefetchmem64);
1182 1.2 briggs } else {
1183 1.2 briggs mem_base = 0x100000; /* 1M */
1184 1.2 briggs mem_limit = 0x000000;
1185 1.1 briggs }
1186 1.44 thorpej if (bad_range) {
1187 1.2 briggs printf("Bus %d bridge does not support 64-bit PMEM. ",
1188 1.2 briggs pb->busno);
1189 1.2 briggs printf("Disabling prefetchable-MEM accesses\n");
1190 1.2 briggs mem_base = 0x100000; /* 1M */
1191 1.2 briggs mem_limit = 0x000000;
1192 1.2 briggs }
1193 1.41 msaitoh mem = __SHIFTIN((mem_base >> 16) & PCI_BRIDGE_PREFETCHMEM_ADDR,
1194 1.41 msaitoh PCI_BRIDGE_PREFETCHMEM_BASE);
1195 1.41 msaitoh mem |= __SHIFTIN((mem_limit >> 16) & PCI_BRIDGE_PREFETCHMEM_ADDR,
1196 1.41 msaitoh PCI_BRIDGE_PREFETCHMEM_LIMIT);
1197 1.2 briggs pci_conf_write(pb->pc, pd->tag, PCI_BRIDGE_PREFETCHMEM_REG, mem);
1198 1.2 briggs /*
1199 1.2 briggs * XXX -- 64-bit systems need a lot more than just this...
1200 1.2 briggs */
1201 1.38 msaitoh if (isprefetchmem64) {
1202 1.39 msaitoh mem_base = (uint64_t)mem_base >> 32;
1203 1.39 msaitoh mem_limit = (uint64_t)mem_limit >> 32;
1204 1.41 msaitoh pci_conf_write(pb->pc, pd->tag,
1205 1.41 msaitoh PCI_BRIDGE_PREFETCHBASEUP32_REG, mem_base & 0xffffffff);
1206 1.41 msaitoh pci_conf_write(pb->pc, pd->tag,
1207 1.41 msaitoh PCI_BRIDGE_PREFETCHLIMITUP32_REG, mem_limit & 0xffffffff);
1208 1.32 matt }
1209 1.1 briggs
1210 1.1 briggs rv = configure_bus(pb);
1211 1.1 briggs
1212 1.47 thorpej fini_range_resource(&pb->io_res);
1213 1.47 thorpej fini_range_resource(&pb->mem_res);
1214 1.47 thorpej fini_range_resource(&pb->pmem_res);
1215 1.47 thorpej
1216 1.1 briggs if (rv == 0) {
1217 1.1 briggs cmd = pci_conf_read(pd->pc, pd->tag, PCI_BRIDGE_CONTROL_REG);
1218 1.41 msaitoh cmd &= ~PCI_BRIDGE_CONTROL; /* Clear control bit first */
1219 1.41 msaitoh cmd |= PCI_BRIDGE_CONTROL_PERE | PCI_BRIDGE_CONTROL_SERR;
1220 1.41 msaitoh if (pb->fast_b2b)
1221 1.41 msaitoh cmd |= PCI_BRIDGE_CONTROL_SECFASTB2B;
1222 1.41 msaitoh
1223 1.1 briggs pci_conf_write(pd->pc, pd->tag, PCI_BRIDGE_CONTROL_REG, cmd);
1224 1.1 briggs cmd = pci_conf_read(pd->pc, pd->tag, PCI_COMMAND_STATUS_REG);
1225 1.1 briggs cmd |= PCI_COMMAND_IO_ENABLE | PCI_COMMAND_MEM_ENABLE;
1226 1.1 briggs pci_conf_write(pd->pc, pd->tag, PCI_COMMAND_STATUS_REG, cmd);
1227 1.1 briggs }
1228 1.1 briggs
1229 1.1 briggs return rv;
1230 1.1 briggs }
1231 1.1 briggs
1232 1.1 briggs /*
1233 1.1 briggs * Calculate latency values, allocate I/O and MEM segments, then set them
1234 1.1 briggs * up. If a PCI-PCI bridge is found, configure the bridge separately,
1235 1.1 briggs * which will cause a recursive call back here.
1236 1.1 briggs */
1237 1.1 briggs static int
1238 1.1 briggs configure_bus(pciconf_bus_t *pb)
1239 1.1 briggs {
1240 1.1 briggs pciconf_dev_t *pd;
1241 1.8 briggs int def_ltim, max_ltim, band, bus_mhz;
1242 1.1 briggs
1243 1.20 simonb if (pb->ndevs == 0) {
1244 1.20 simonb if (pci_conf_debug)
1245 1.20 simonb printf("PCI bus %d - no devices\n", pb->busno);
1246 1.39 msaitoh return 1;
1247 1.20 simonb }
1248 1.8 briggs bus_mhz = pb->freq_66 ? 66 : 33;
1249 1.8 briggs max_ltim = pb->max_mingnt * bus_mhz / 4; /* cvt to cycle count */
1250 1.30 briggs band = 4000000; /* 0.25us cycles/sec */
1251 1.1 briggs if (band < pb->bandwidth_used) {
1252 1.31 gavan printf("PCI bus %d: Warning: Total bandwidth exceeded!? (%d)\n",
1253 1.31 gavan pb->busno, pb->bandwidth_used);
1254 1.1 briggs def_ltim = -1;
1255 1.1 briggs } else {
1256 1.1 briggs def_ltim = (band - pb->bandwidth_used) / pb->ndevs;
1257 1.1 briggs if (def_ltim > pb->min_maxlat)
1258 1.1 briggs def_ltim = pb->min_maxlat;
1259 1.8 briggs def_ltim = def_ltim * bus_mhz / 4;
1260 1.1 briggs }
1261 1.1 briggs def_ltim = (def_ltim + 7) & ~7;
1262 1.1 briggs max_ltim = (max_ltim + 7) & ~7;
1263 1.1 briggs
1264 1.43 msaitoh pb->def_ltim = MIN(def_ltim, 255);
1265 1.43 msaitoh pb->max_ltim = MIN(MAX(max_ltim, def_ltim), 255);
1266 1.1 briggs
1267 1.1 briggs /*
1268 1.1 briggs * Now we have what we need to initialize the devices.
1269 1.1 briggs * It would probably be better if we could allocate all of these
1270 1.1 briggs * for all busses at once, but "not right now". First, get a list
1271 1.1 briggs * of free memory ranges from the m.d. system.
1272 1.1 briggs */
1273 1.1 briggs if (setup_iowins(pb) || setup_memwins(pb)) {
1274 1.36 matt printf("PCI bus configuration failed: "
1275 1.36 matt "unable to assign all I/O and memory ranges.\n");
1276 1.1 briggs return -1;
1277 1.1 briggs }
1278 1.1 briggs
1279 1.1 briggs /*
1280 1.1 briggs * Configure the latency for the devices, and enable them.
1281 1.1 briggs */
1282 1.40 msaitoh for (pd = pb->device; pd < &pb->device[pb->ndevs]; pd++) {
1283 1.37 matt pcireg_t cmd, classreg, misc;
1284 1.1 briggs int ltim;
1285 1.1 briggs
1286 1.1 briggs if (pci_conf_debug) {
1287 1.1 briggs print_tag(pd->pc, pd->tag);
1288 1.1 briggs printf("Configuring device.\n");
1289 1.1 briggs }
1290 1.37 matt classreg = pci_conf_read(pd->pc, pd->tag, PCI_CLASS_REG);
1291 1.1 briggs misc = pci_conf_read(pd->pc, pd->tag, PCI_BHLC_REG);
1292 1.1 briggs cmd = pci_conf_read(pd->pc, pd->tag, PCI_COMMAND_STATUS_REG);
1293 1.26 tsutsui if (pd->enable & PCI_CONF_ENABLE_PARITY)
1294 1.26 tsutsui cmd |= PCI_COMMAND_PARITY_ENABLE;
1295 1.26 tsutsui if (pd->enable & PCI_CONF_ENABLE_SERR)
1296 1.26 tsutsui cmd |= PCI_COMMAND_SERR_ENABLE;
1297 1.1 briggs if (pb->fast_b2b)
1298 1.1 briggs cmd |= PCI_COMMAND_BACKTOBACK_ENABLE;
1299 1.37 matt if (PCI_CLASS(classreg) != PCI_CLASS_BRIDGE ||
1300 1.37 matt PCI_SUBCLASS(classreg) != PCI_SUBCLASS_BRIDGE_PCI) {
1301 1.8 briggs if (pd->enable & PCI_CONF_ENABLE_IO)
1302 1.8 briggs cmd |= PCI_COMMAND_IO_ENABLE;
1303 1.8 briggs if (pd->enable & PCI_CONF_ENABLE_MEM)
1304 1.8 briggs cmd |= PCI_COMMAND_MEM_ENABLE;
1305 1.8 briggs if (pd->enable & PCI_CONF_ENABLE_BM)
1306 1.8 briggs cmd |= PCI_COMMAND_MASTER_ENABLE;
1307 1.8 briggs ltim = pd->min_gnt * bus_mhz / 4;
1308 1.1 briggs ltim = MIN (MAX (pb->def_ltim, ltim), pb->max_ltim);
1309 1.1 briggs } else {
1310 1.8 briggs cmd |= PCI_COMMAND_MASTER_ENABLE;
1311 1.1 briggs ltim = MIN (pb->def_ltim, pb->max_ltim);
1312 1.1 briggs }
1313 1.26 tsutsui if ((pd->enable &
1314 1.43 msaitoh (PCI_CONF_ENABLE_MEM | PCI_CONF_ENABLE_IO)) == 0) {
1315 1.2 briggs print_tag(pd->pc, pd->tag);
1316 1.2 briggs printf("Disabled due to lack of resources.\n");
1317 1.2 briggs cmd &= ~(PCI_COMMAND_MASTER_ENABLE |
1318 1.2 briggs PCI_COMMAND_IO_ENABLE | PCI_COMMAND_MEM_ENABLE);
1319 1.2 briggs }
1320 1.1 briggs pci_conf_write(pd->pc, pd->tag, PCI_COMMAND_STATUS_REG, cmd);
1321 1.1 briggs
1322 1.14 thorpej misc &= ~((PCI_LATTIMER_MASK << PCI_LATTIMER_SHIFT) |
1323 1.14 thorpej (PCI_CACHELINE_MASK << PCI_CACHELINE_SHIFT));
1324 1.14 thorpej misc |= (ltim & PCI_LATTIMER_MASK) << PCI_LATTIMER_SHIFT;
1325 1.15 kleink misc |= ((pb->cacheline_size >> 2) & PCI_CACHELINE_MASK) <<
1326 1.14 thorpej PCI_CACHELINE_SHIFT;
1327 1.1 briggs pci_conf_write(pd->pc, pd->tag, PCI_BHLC_REG, misc);
1328 1.1 briggs
1329 1.1 briggs if (pd->ppb) {
1330 1.1 briggs if (configure_bridge(pd) < 0)
1331 1.1 briggs return -1;
1332 1.1 briggs continue;
1333 1.1 briggs }
1334 1.1 briggs }
1335 1.1 briggs
1336 1.39 msaitoh if (pci_conf_debug)
1337 1.1 briggs printf("PCI bus %d configured\n", pb->busno);
1338 1.1 briggs
1339 1.1 briggs return 0;
1340 1.1 briggs }
1341 1.1 briggs
1342 1.44 thorpej static bool
1343 1.47 thorpej mem_region_ok64(struct pciconf_resource * const r __used_only_lp64)
1344 1.44 thorpej {
1345 1.44 thorpej bool rv = false;
1346 1.44 thorpej
1347 1.44 thorpej #ifdef _LP64
1348 1.44 thorpej /*
1349 1.47 thorpej * XXX We need to guard this with _LP64 because vmem uses
1350 1.47 thorpej * uintptr_t internally.
1351 1.44 thorpej */
1352 1.47 thorpej vmem_size_t result;
1353 1.47 thorpej if (vmem_xalloc(r->arena, 1/*size*/, 1/*align*/, 0/*phase*/,
1354 1.47 thorpej 0/*nocross*/, (1UL << 32), VMEM_ADDR_MAX,
1355 1.47 thorpej VM_INSTANTFIT | VM_NOSLEEP, &result) == 0) {
1356 1.47 thorpej vmem_free(r->arena, result, 1);
1357 1.44 thorpej rv = true;
1358 1.44 thorpej }
1359 1.44 thorpej #endif /* _LP64 */
1360 1.44 thorpej
1361 1.44 thorpej return rv;
1362 1.44 thorpej }
1363 1.44 thorpej
1364 1.1 briggs /*
1365 1.47 thorpej * pciconf_resource_init:
1366 1.47 thorpej *
1367 1.47 thorpej * Allocate and initilize a pci configuration resources container.
1368 1.47 thorpej */
1369 1.47 thorpej struct pciconf_resources *
1370 1.47 thorpej pciconf_resource_init(void)
1371 1.47 thorpej {
1372 1.47 thorpej struct pciconf_resources *rs;
1373 1.47 thorpej
1374 1.47 thorpej rs = kmem_zalloc(sizeof(*rs), KM_SLEEP);
1375 1.47 thorpej
1376 1.47 thorpej return (rs);
1377 1.47 thorpej }
1378 1.47 thorpej
1379 1.47 thorpej /*
1380 1.47 thorpej * pciconf_resource_fini:
1381 1.47 thorpej *
1382 1.47 thorpej * Dispose of a pci configuration resources container.
1383 1.47 thorpej */
1384 1.47 thorpej void
1385 1.47 thorpej pciconf_resource_fini(struct pciconf_resources *rs)
1386 1.47 thorpej {
1387 1.47 thorpej int i;
1388 1.47 thorpej
1389 1.47 thorpej for (i = 0; i < PCICONF_RESOURCE_NTYPES; i++) {
1390 1.47 thorpej fini_range_resource(&rs->resources[i]);
1391 1.47 thorpej }
1392 1.47 thorpej
1393 1.47 thorpej kmem_free(rs, sizeof(*rs));
1394 1.47 thorpej }
1395 1.47 thorpej
1396 1.47 thorpej /*
1397 1.47 thorpej * pciconf_resource_add:
1398 1.47 thorpej *
1399 1.47 thorpej * Add a pci configuration resource to a container.
1400 1.47 thorpej */
1401 1.47 thorpej int
1402 1.47 thorpej pciconf_resource_add(struct pciconf_resources *rs, int type,
1403 1.47 thorpej bus_addr_t start, bus_size_t size)
1404 1.47 thorpej {
1405 1.47 thorpej bus_addr_t end = start + (size - 1);
1406 1.47 thorpej struct pciconf_resource *r;
1407 1.49 jmcneill struct pciconf_resource_rsvd *rsvd;
1408 1.49 jmcneill int error, rsvd_type, align;
1409 1.49 jmcneill vmem_addr_t result;
1410 1.47 thorpej bool first;
1411 1.47 thorpej
1412 1.47 thorpej if (size == 0 || end <= start)
1413 1.47 thorpej return EINVAL;
1414 1.47 thorpej
1415 1.47 thorpej if (type < 0 || type >= PCICONF_RESOURCE_NTYPES)
1416 1.47 thorpej return EINVAL;
1417 1.47 thorpej
1418 1.47 thorpej r = &rs->resources[type];
1419 1.47 thorpej
1420 1.47 thorpej first = r->arena == NULL;
1421 1.47 thorpej if (first) {
1422 1.47 thorpej r->arena = create_vmem_arena(pciconf_resource_names[type],
1423 1.47 thorpej 0, 0, VM_SLEEP);
1424 1.47 thorpej r->min_addr = VMEM_ADDR_MAX;
1425 1.47 thorpej r->max_addr = VMEM_ADDR_MIN;
1426 1.47 thorpej }
1427 1.47 thorpej
1428 1.47 thorpej error = vmem_add(r->arena, start, size, VM_SLEEP);
1429 1.47 thorpej if (error == 0) {
1430 1.47 thorpej if (start < r->min_addr)
1431 1.47 thorpej r->min_addr = start;
1432 1.47 thorpej if (end > r->max_addr)
1433 1.47 thorpej r->max_addr = end;
1434 1.47 thorpej }
1435 1.47 thorpej
1436 1.47 thorpej r->total_size += size;
1437 1.47 thorpej
1438 1.49 jmcneill switch (type) {
1439 1.49 jmcneill case PCICONF_RESOURCE_IO:
1440 1.49 jmcneill rsvd_type = PCI_CONF_MAP_IO;
1441 1.49 jmcneill align = 0x1000;
1442 1.49 jmcneill break;
1443 1.49 jmcneill case PCICONF_RESOURCE_MEM:
1444 1.49 jmcneill case PCICONF_RESOURCE_PREFETCHABLE_MEM:
1445 1.49 jmcneill rsvd_type = PCI_CONF_MAP_MEM;
1446 1.49 jmcneill align = 0x100000;
1447 1.49 jmcneill break;
1448 1.49 jmcneill default:
1449 1.49 jmcneill rsvd_type = 0;
1450 1.49 jmcneill align = 0;
1451 1.49 jmcneill break;
1452 1.49 jmcneill }
1453 1.49 jmcneill
1454 1.49 jmcneill /*
1455 1.49 jmcneill * Exclude reserved ranges from available resources
1456 1.49 jmcneill */
1457 1.49 jmcneill LIST_FOREACH(rsvd, &pciconf_resource_reservations, next) {
1458 1.49 jmcneill if (rsvd->type != rsvd_type)
1459 1.49 jmcneill continue;
1460 1.49 jmcneill /*
1461 1.49 jmcneill * The reserved range may not be within our resource window.
1462 1.49 jmcneill * That's fine, so ignore the error.
1463 1.49 jmcneill */
1464 1.49 jmcneill (void)vmem_xalloc(r->arena, rsvd->size, align, 0, 0,
1465 1.49 jmcneill rsvd->start, rsvd->start + rsvd->size,
1466 1.49 jmcneill VM_BESTFIT | VM_NOSLEEP,
1467 1.49 jmcneill &result);
1468 1.49 jmcneill }
1469 1.49 jmcneill
1470 1.47 thorpej return 0;
1471 1.47 thorpej }
1472 1.47 thorpej
1473 1.47 thorpej /*
1474 1.49 jmcneill * pciconf_resource_reserve:
1475 1.49 jmcneill *
1476 1.49 jmcneill * Mark a pci configuration resource as in-use. Devices
1477 1.50 jmcneill * already configured to use these resources are notified
1478 1.50 jmcneill * during resource assignment if their resources are changed.
1479 1.49 jmcneill */
1480 1.49 jmcneill void
1481 1.50 jmcneill pciconf_resource_reserve(int type, bus_addr_t start, bus_size_t size,
1482 1.50 jmcneill void (*callback)(void *, uint64_t), void *callback_arg)
1483 1.49 jmcneill {
1484 1.49 jmcneill struct pciconf_resource_rsvd *rsvd;
1485 1.49 jmcneill
1486 1.49 jmcneill rsvd = kmem_zalloc(sizeof(*rsvd), KM_SLEEP);
1487 1.49 jmcneill rsvd->type = type;
1488 1.49 jmcneill rsvd->start = start;
1489 1.49 jmcneill rsvd->size = size;
1490 1.50 jmcneill rsvd->callback = callback;
1491 1.50 jmcneill rsvd->callback_arg = callback_arg;
1492 1.49 jmcneill LIST_INSERT_HEAD(&pciconf_resource_reservations, rsvd, next);
1493 1.49 jmcneill }
1494 1.49 jmcneill
1495 1.49 jmcneill /*
1496 1.1 briggs * Let's configure the PCI bus.
1497 1.1 briggs * This consists of basically scanning for all existing devices,
1498 1.1 briggs * identifying their needs, and then making another pass over them
1499 1.1 briggs * to set:
1500 1.1 briggs * 1. I/O addresses
1501 1.1 briggs * 2. Memory addresses (Prefetchable and not)
1502 1.1 briggs * 3. PCI command register
1503 1.1 briggs * 4. The latency part of the PCI BHLC (BIST (Built-In Self Test),
1504 1.1 briggs * Header type, Latency timer, Cache line size) register
1505 1.1 briggs *
1506 1.1 briggs * The command register is set to enable fast back-to-back transactions
1507 1.25 perry * if the host bridge says it can handle it. We also configure
1508 1.1 briggs * Master Enable, SERR enable, parity enable, and (if this is not a
1509 1.1 briggs * PCI-PCI bridge) the I/O and Memory spaces. Apparently some devices
1510 1.1 briggs * will not report some I/O space.
1511 1.1 briggs *
1512 1.1 briggs * The latency is computed to be a "fair share" of the bus bandwidth.
1513 1.1 briggs * The bus bandwidth variable is initialized to the number of PCI cycles
1514 1.1 briggs * in one second. The number of cycles taken for one transaction by each
1515 1.1 briggs * device (MAX_LAT + MIN_GNT) is then subtracted from the bandwidth.
1516 1.1 briggs * Care is taken to ensure that the latency timer won't be set such that
1517 1.1 briggs * it would exceed the critical time for any device.
1518 1.1 briggs *
1519 1.1 briggs * This is complicated somewhat due to the presence of bridges. PCI-PCI
1520 1.1 briggs * bridges are probed and configured recursively.
1521 1.1 briggs */
1522 1.1 briggs int
1523 1.47 thorpej pci_configure_bus(pci_chipset_tag_t pc, struct pciconf_resources *rs,
1524 1.47 thorpej int firstbus, int cacheline_size)
1525 1.1 briggs {
1526 1.1 briggs pciconf_bus_t *pb;
1527 1.1 briggs int rv;
1528 1.1 briggs
1529 1.42 chs pb = kmem_zalloc(sizeof (pciconf_bus_t), KM_SLEEP);
1530 1.12 thorpej pb->busno = firstbus;
1531 1.1 briggs pb->next_busno = pb->busno + 1;
1532 1.1 briggs pb->last_busno = 255;
1533 1.14 thorpej pb->cacheline_size = cacheline_size;
1534 1.1 briggs pb->parent_bus = NULL;
1535 1.1 briggs pb->swiz = 0;
1536 1.2 briggs pb->io_32bit = 1;
1537 1.47 thorpej pb->io_res = rs->resources[PCICONF_RESOURCE_IO];
1538 1.47 thorpej
1539 1.47 thorpej pb->mem_res = rs->resources[PCICONF_RESOURCE_MEM];
1540 1.47 thorpej if (pb->mem_res.arena == NULL)
1541 1.47 thorpej pb->mem_res = rs->resources[PCICONF_RESOURCE_PREFETCHABLE_MEM];
1542 1.47 thorpej
1543 1.47 thorpej pb->pmem_res = rs->resources[PCICONF_RESOURCE_PREFETCHABLE_MEM];
1544 1.47 thorpej if (pb->pmem_res.arena == NULL)
1545 1.47 thorpej pb->pmem_res = rs->resources[PCICONF_RESOURCE_MEM];
1546 1.39 msaitoh
1547 1.44 thorpej /*
1548 1.47 thorpej * Probe the memory region arenas to see if allocation of
1549 1.47 thorpej * 64-bit addresses is possible.
1550 1.44 thorpej */
1551 1.47 thorpej pb->mem_64bit = mem_region_ok64(&pb->mem_res);
1552 1.47 thorpej pb->pmem_64bit = mem_region_ok64(&pb->pmem_res);
1553 1.44 thorpej
1554 1.1 briggs pb->pc = pc;
1555 1.1 briggs pb->io_total = pb->mem_total = pb->pmem_total = 0;
1556 1.1 briggs
1557 1.1 briggs rv = probe_bus(pb);
1558 1.40 msaitoh pb->last_busno = pb->next_busno - 1;
1559 1.39 msaitoh if (rv == 0)
1560 1.1 briggs rv = configure_bus(pb);
1561 1.1 briggs
1562 1.1 briggs /*
1563 1.1 briggs * All done!
1564 1.1 briggs */
1565 1.32 matt kmem_free(pb, sizeof(*pb));
1566 1.1 briggs return rv;
1567 1.1 briggs }
1568