psycho.c revision 1.65 1 1.65 petrov /* $NetBSD: psycho.c,v 1.65 2003/08/22 00:46:25 petrov Exp $ */
2 1.1 mrg
3 1.1 mrg /*
4 1.46 eeh * Copyright (c) 2001, 2002 Eduardo E. Horvath
5 1.3 mrg * Copyright (c) 1999, 2000 Matthew R. Green
6 1.1 mrg * All rights reserved.
7 1.1 mrg *
8 1.1 mrg * Redistribution and use in source and binary forms, with or without
9 1.1 mrg * modification, are permitted provided that the following conditions
10 1.1 mrg * are met:
11 1.1 mrg * 1. Redistributions of source code must retain the above copyright
12 1.1 mrg * notice, this list of conditions and the following disclaimer.
13 1.1 mrg * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 mrg * notice, this list of conditions and the following disclaimer in the
15 1.1 mrg * documentation and/or other materials provided with the distribution.
16 1.1 mrg * 3. The name of the author may not be used to endorse or promote products
17 1.1 mrg * derived from this software without specific prior written permission.
18 1.1 mrg *
19 1.1 mrg * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
20 1.1 mrg * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21 1.1 mrg * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22 1.1 mrg * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
23 1.1 mrg * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
24 1.1 mrg * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
25 1.1 mrg * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
26 1.1 mrg * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
27 1.1 mrg * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.1 mrg * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.1 mrg * SUCH DAMAGE.
30 1.1 mrg */
31 1.64 lukem
32 1.64 lukem #include <sys/cdefs.h>
33 1.65 petrov __KERNEL_RCSID(0, "$NetBSD: psycho.c,v 1.65 2003/08/22 00:46:25 petrov Exp $");
34 1.1 mrg
35 1.7 mrg #include "opt_ddb.h"
36 1.7 mrg
37 1.1 mrg /*
38 1.34 eeh * Support for `psycho' and `psycho+' UPA to PCI bridge and
39 1.34 eeh * UltraSPARC IIi and IIe `sabre' PCI controllers.
40 1.1 mrg */
41 1.1 mrg
42 1.1 mrg #ifdef DEBUG
43 1.7 mrg #define PDB_PROM 0x01
44 1.34 eeh #define PDB_BUSMAP 0x02
45 1.34 eeh #define PDB_INTR 0x04
46 1.3 mrg int psycho_debug = 0x0;
47 1.1 mrg #define DPRINTF(l, s) do { if (psycho_debug & l) printf s; } while (0)
48 1.1 mrg #else
49 1.1 mrg #define DPRINTF(l, s)
50 1.1 mrg #endif
51 1.1 mrg
52 1.1 mrg #include <sys/param.h>
53 1.7 mrg #include <sys/device.h>
54 1.7 mrg #include <sys/errno.h>
55 1.1 mrg #include <sys/extent.h>
56 1.7 mrg #include <sys/malloc.h>
57 1.7 mrg #include <sys/systm.h>
58 1.1 mrg #include <sys/time.h>
59 1.34 eeh #include <sys/reboot.h>
60 1.1 mrg
61 1.58 nakayama #include <uvm/uvm.h>
62 1.58 nakayama
63 1.1 mrg #define _SPARC_BUS_DMA_PRIVATE
64 1.1 mrg #include <machine/bus.h>
65 1.1 mrg #include <machine/autoconf.h>
66 1.18 eeh #include <machine/psl.h>
67 1.1 mrg
68 1.1 mrg #include <dev/pci/pcivar.h>
69 1.1 mrg #include <dev/pci/pcireg.h>
70 1.60 martin #include <dev/sysmon/sysmon_taskq.h>
71 1.1 mrg
72 1.1 mrg #include <sparc64/dev/iommureg.h>
73 1.1 mrg #include <sparc64/dev/iommuvar.h>
74 1.1 mrg #include <sparc64/dev/psychoreg.h>
75 1.1 mrg #include <sparc64/dev/psychovar.h>
76 1.7 mrg #include <sparc64/sparc64/cache.h>
77 1.1 mrg
78 1.8 mrg #include "ioconf.h"
79 1.8 mrg
80 1.1 mrg static pci_chipset_tag_t psycho_alloc_chipset __P((struct psycho_pbm *, int,
81 1.1 mrg pci_chipset_tag_t));
82 1.58 nakayama static struct extent *psycho_alloc_extent __P((struct psycho_pbm *, int, int,
83 1.58 nakayama char *));
84 1.1 mrg static void psycho_get_bus_range __P((int, int *));
85 1.1 mrg static void psycho_get_ranges __P((int, struct psycho_ranges **, int *));
86 1.34 eeh static void psycho_set_intr __P((struct psycho_softc *, int, void *,
87 1.34 eeh u_int64_t *, u_int64_t *));
88 1.34 eeh
89 1.34 eeh /* Interrupt handlers */
90 1.34 eeh static int psycho_ue __P((void *));
91 1.34 eeh static int psycho_ce __P((void *));
92 1.34 eeh static int psycho_bus_a __P((void *));
93 1.34 eeh static int psycho_bus_b __P((void *));
94 1.34 eeh static int psycho_powerfail __P((void *));
95 1.34 eeh static int psycho_wakeup __P((void *));
96 1.34 eeh
97 1.1 mrg
98 1.1 mrg /* IOMMU support */
99 1.13 eeh static void psycho_iommu_init __P((struct psycho_softc *, int));
100 1.1 mrg
101 1.7 mrg /*
102 1.61 wiz * bus space and bus DMA support for UltraSPARC `psycho'. note that most
103 1.61 wiz * of the bus DMA support is provided by the iommu dvma controller.
104 1.7 mrg */
105 1.58 nakayama static int get_childspace __P((int));
106 1.58 nakayama static struct psycho_ranges *get_psychorange __P((struct psycho_pbm *, int));
107 1.58 nakayama
108 1.44 eeh static paddr_t psycho_bus_mmap __P((bus_space_tag_t, bus_addr_t, off_t,
109 1.44 eeh int, int));
110 1.44 eeh static int _psycho_bus_map __P((bus_space_tag_t, bus_addr_t, bus_size_t, int,
111 1.44 eeh vaddr_t, bus_space_handle_t *));
112 1.57 pk static void *psycho_intr_establish __P((bus_space_tag_t, int, int,
113 1.56 pk int (*) __P((void *)), void *, void(*)__P((void))));
114 1.7 mrg
115 1.7 mrg static int psycho_dmamap_load __P((bus_dma_tag_t, bus_dmamap_t, void *,
116 1.7 mrg bus_size_t, struct proc *, int));
117 1.7 mrg static void psycho_dmamap_unload __P((bus_dma_tag_t, bus_dmamap_t));
118 1.9 eeh static int psycho_dmamap_load_raw __P((bus_dma_tag_t, bus_dmamap_t,
119 1.9 eeh bus_dma_segment_t *, int, bus_size_t, int));
120 1.7 mrg static void psycho_dmamap_sync __P((bus_dma_tag_t, bus_dmamap_t, bus_addr_t,
121 1.7 mrg bus_size_t, int));
122 1.7 mrg int psycho_dmamem_alloc __P((bus_dma_tag_t, bus_size_t, bus_size_t, bus_size_t,
123 1.7 mrg bus_dma_segment_t *, int, int *, int));
124 1.7 mrg void psycho_dmamem_free __P((bus_dma_tag_t, bus_dma_segment_t *, int));
125 1.7 mrg int psycho_dmamem_map __P((bus_dma_tag_t, bus_dma_segment_t *, int, size_t,
126 1.7 mrg caddr_t *, int));
127 1.7 mrg void psycho_dmamem_unmap __P((bus_dma_tag_t, caddr_t, size_t));
128 1.7 mrg
129 1.7 mrg /* base pci_chipset */
130 1.1 mrg extern struct sparc_pci_chipset _sparc_pci_chipset;
131 1.1 mrg
132 1.60 martin /* power button handlers */
133 1.60 martin static void psycho_register_power_button(struct psycho_softc *sc);
134 1.60 martin static void psycho_power_button_pressed(void *arg);
135 1.60 martin
136 1.1 mrg /*
137 1.1 mrg * autoconfiguration
138 1.1 mrg */
139 1.1 mrg static int psycho_match __P((struct device *, struct cfdata *, void *));
140 1.1 mrg static void psycho_attach __P((struct device *, struct device *, void *));
141 1.1 mrg static int psycho_print __P((void *aux, const char *p));
142 1.1 mrg
143 1.54 thorpej CFATTACH_DECL(psycho, sizeof(struct psycho_softc),
144 1.55 thorpej psycho_match, psycho_attach, NULL, NULL);
145 1.1 mrg
146 1.1 mrg /*
147 1.34 eeh * "sabre" is the UltraSPARC IIi onboard UPA to PCI bridge. It manages a
148 1.34 eeh * single PCI bus and does not have a streaming buffer. It often has an APB
149 1.34 eeh * (advanced PCI bridge) connected to it, which was designed specifically for
150 1.34 eeh * the IIi. The APB let's the IIi handle two independednt PCI buses, and
151 1.34 eeh * appears as two "simba"'s underneath the sabre.
152 1.34 eeh *
153 1.34 eeh * "psycho" and "psycho+" is a dual UPA to PCI bridge. It sits on the UPA bus
154 1.34 eeh * and manages two PCI buses. "psycho" has two 64-bit 33MHz buses, while
155 1.34 eeh * "psycho+" controls both a 64-bit 33Mhz and a 64-bit 66Mhz PCI bus. You
156 1.34 eeh * will usually find a "psycho+" since I don't think the original "psycho"
157 1.34 eeh * ever shipped, and if it did it would be in the U30.
158 1.34 eeh *
159 1.34 eeh * Each "psycho" PCI bus appears as a separate OFW node, but since they are
160 1.34 eeh * both part of the same IC, they only have a single register space. As such,
161 1.34 eeh * they need to be configured together, even though the autoconfiguration will
162 1.34 eeh * attach them separately.
163 1.34 eeh *
164 1.34 eeh * On UltraIIi machines, "sabre" itself usually takes pci0, with "simba" often
165 1.34 eeh * as pci1 and pci2, although they have been implemented with other PCI bus
166 1.34 eeh * numbers on some machines.
167 1.34 eeh *
168 1.34 eeh * On UltraII machines, there can be any number of "psycho+" ICs, each
169 1.34 eeh * providing two PCI buses.
170 1.34 eeh *
171 1.34 eeh *
172 1.34 eeh * XXXX The psycho/sabre node has an `interrupts' attribute. They contain
173 1.34 eeh * the values of the following interrupts in this order:
174 1.1 mrg *
175 1.34 eeh * PCI Bus Error (30)
176 1.34 eeh * DMA UE (2e)
177 1.34 eeh * DMA CE (2f)
178 1.34 eeh * Power Fail (25)
179 1.34 eeh *
180 1.34 eeh * We really should attach handlers for each.
181 1.1 mrg *
182 1.1 mrg */
183 1.35 eeh
184 1.1 mrg #define ROM_PCI_NAME "pci"
185 1.35 eeh
186 1.35 eeh struct psycho_names {
187 1.35 eeh char *p_name;
188 1.35 eeh int p_type;
189 1.35 eeh } psycho_names[] = {
190 1.35 eeh { "SUNW,psycho", PSYCHO_MODE_PSYCHO },
191 1.35 eeh { "pci108e,8000", PSYCHO_MODE_PSYCHO },
192 1.35 eeh { "SUNW,sabre", PSYCHO_MODE_SABRE },
193 1.35 eeh { "pci108e,a000", PSYCHO_MODE_SABRE },
194 1.35 eeh { "pci108e,a001", PSYCHO_MODE_SABRE },
195 1.35 eeh { NULL, 0 }
196 1.35 eeh };
197 1.1 mrg
198 1.1 mrg static int
199 1.1 mrg psycho_match(parent, match, aux)
200 1.1 mrg struct device *parent;
201 1.1 mrg struct cfdata *match;
202 1.1 mrg void *aux;
203 1.1 mrg {
204 1.1 mrg struct mainbus_attach_args *ma = aux;
205 1.38 eeh char *model = PROM_getpropstring(ma->ma_node, "model");
206 1.35 eeh int i;
207 1.1 mrg
208 1.1 mrg /* match on a name of "pci" and a sabre or a psycho */
209 1.35 eeh if (strcmp(ma->ma_name, ROM_PCI_NAME) == 0) {
210 1.35 eeh for (i=0; psycho_names[i].p_name; i++)
211 1.35 eeh if (strcmp(model, psycho_names[i].p_name) == 0)
212 1.35 eeh return (1);
213 1.35 eeh
214 1.38 eeh model = PROM_getpropstring(ma->ma_node, "compatible");
215 1.35 eeh for (i=0; psycho_names[i].p_name; i++)
216 1.35 eeh if (strcmp(model, psycho_names[i].p_name) == 0)
217 1.35 eeh return (1);
218 1.35 eeh }
219 1.1 mrg return (0);
220 1.1 mrg }
221 1.1 mrg
222 1.34 eeh /*
223 1.34 eeh * SUNW,psycho initialisation ..
224 1.34 eeh * - find the per-psycho registers
225 1.34 eeh * - figure out the IGN.
226 1.34 eeh * - find our partner psycho
227 1.34 eeh * - configure ourselves
228 1.34 eeh * - bus range, bus,
229 1.34 eeh * - get interrupt-map and interrupt-map-mask
230 1.34 eeh * - setup the chipsets.
231 1.34 eeh * - if we're the first of the pair, initialise the IOMMU, otherwise
232 1.34 eeh * just copy it's tags and addresses.
233 1.34 eeh */
234 1.1 mrg static void
235 1.1 mrg psycho_attach(parent, self, aux)
236 1.1 mrg struct device *parent, *self;
237 1.1 mrg void *aux;
238 1.1 mrg {
239 1.1 mrg struct psycho_softc *sc = (struct psycho_softc *)self;
240 1.34 eeh struct psycho_softc *osc = NULL;
241 1.34 eeh struct psycho_pbm *pp;
242 1.47 thorpej struct pcibus_attach_args pba;
243 1.1 mrg struct mainbus_attach_args *ma = aux;
244 1.34 eeh bus_space_handle_t bh;
245 1.34 eeh u_int64_t csr;
246 1.35 eeh int psycho_br[2], n, i;
247 1.45 eeh bus_space_handle_t pci_ctl;
248 1.38 eeh char *model = PROM_getpropstring(ma->ma_node, "model");
249 1.1 mrg
250 1.1 mrg printf("\n");
251 1.1 mrg
252 1.1 mrg sc->sc_node = ma->ma_node;
253 1.1 mrg sc->sc_bustag = ma->ma_bustag;
254 1.1 mrg sc->sc_dmatag = ma->ma_dmatag;
255 1.1 mrg
256 1.1 mrg /*
257 1.45 eeh * Identify the device.
258 1.1 mrg */
259 1.35 eeh for (i=0; psycho_names[i].p_name; i++)
260 1.35 eeh if (strcmp(model, psycho_names[i].p_name) == 0) {
261 1.35 eeh sc->sc_mode = psycho_names[i].p_type;
262 1.35 eeh goto found;
263 1.35 eeh }
264 1.35 eeh
265 1.38 eeh model = PROM_getpropstring(ma->ma_node, "compatible");
266 1.35 eeh for (i=0; psycho_names[i].p_name; i++)
267 1.35 eeh if (strcmp(model, psycho_names[i].p_name) == 0) {
268 1.35 eeh sc->sc_mode = psycho_names[i].p_type;
269 1.35 eeh goto found;
270 1.35 eeh }
271 1.34 eeh
272 1.35 eeh panic("unknown psycho model %s", model);
273 1.35 eeh found:
274 1.1 mrg
275 1.1 mrg /*
276 1.22 pk * The psycho gets three register banks:
277 1.22 pk * (0) per-PBM configuration and status registers
278 1.22 pk * (1) per-PBM PCI configuration space, containing only the
279 1.22 pk * PBM 256-byte PCI header
280 1.22 pk * (2) the shared psycho configuration registers (struct psychoreg)
281 1.22 pk */
282 1.34 eeh
283 1.34 eeh /* Register layouts are different. stuupid. */
284 1.34 eeh if (sc->sc_mode == PSYCHO_MODE_PSYCHO) {
285 1.34 eeh sc->sc_basepaddr = (paddr_t)ma->ma_reg[2].ur_paddr;
286 1.34 eeh
287 1.34 eeh if (ma->ma_naddress > 2) {
288 1.45 eeh sparc_promaddr_to_handle(sc->sc_bustag,
289 1.45 eeh ma->ma_address[2], &sc->sc_bh);
290 1.45 eeh sparc_promaddr_to_handle(sc->sc_bustag,
291 1.45 eeh ma->ma_address[0], &pci_ctl);
292 1.45 eeh
293 1.34 eeh sc->sc_regs = (struct psychoreg *)
294 1.45 eeh bus_space_vaddr(sc->sc_bustag, sc->sc_bh);
295 1.34 eeh } else if (ma->ma_nreg > 2) {
296 1.34 eeh
297 1.34 eeh /* We need to map this in ourselves. */
298 1.44 eeh if (bus_space_map(sc->sc_bustag,
299 1.34 eeh ma->ma_reg[2].ur_paddr,
300 1.45 eeh ma->ma_reg[2].ur_len, BUS_SPACE_MAP_LINEAR,
301 1.45 eeh &sc->sc_bh))
302 1.34 eeh panic("psycho_attach: cannot map regs");
303 1.45 eeh sc->sc_regs = (struct psychoreg *)
304 1.45 eeh bus_space_vaddr(sc->sc_bustag, sc->sc_bh);
305 1.34 eeh
306 1.44 eeh if (bus_space_map(sc->sc_bustag,
307 1.34 eeh ma->ma_reg[0].ur_paddr,
308 1.45 eeh ma->ma_reg[0].ur_len, BUS_SPACE_MAP_LINEAR,
309 1.45 eeh &pci_ctl))
310 1.34 eeh panic("psycho_attach: cannot map ctl");
311 1.34 eeh } else
312 1.34 eeh panic("psycho_attach: %d not enough registers",
313 1.34 eeh ma->ma_nreg);
314 1.34 eeh } else {
315 1.34 eeh sc->sc_basepaddr = (paddr_t)ma->ma_reg[0].ur_paddr;
316 1.34 eeh
317 1.34 eeh if (ma->ma_naddress) {
318 1.45 eeh sparc_promaddr_to_handle(sc->sc_bustag,
319 1.45 eeh ma->ma_address[0], &sc->sc_bh);
320 1.34 eeh sc->sc_regs = (struct psychoreg *)
321 1.45 eeh bus_space_vaddr(sc->sc_bustag, sc->sc_bh);
322 1.45 eeh bus_space_subregion(sc->sc_bustag, sc->sc_bh,
323 1.45 eeh offsetof(struct psychoreg, psy_pcictl),
324 1.45 eeh sizeof(struct pci_ctl), &pci_ctl);
325 1.34 eeh } else if (ma->ma_nreg) {
326 1.34 eeh
327 1.34 eeh /* We need to map this in ourselves. */
328 1.44 eeh if (bus_space_map(sc->sc_bustag,
329 1.34 eeh ma->ma_reg[0].ur_paddr,
330 1.45 eeh ma->ma_reg[0].ur_len, BUS_SPACE_MAP_LINEAR,
331 1.45 eeh &sc->sc_bh))
332 1.34 eeh panic("psycho_attach: cannot map regs");
333 1.45 eeh sc->sc_regs = (struct psychoreg *)
334 1.45 eeh bus_space_vaddr(sc->sc_bustag, sc->sc_bh);
335 1.45 eeh
336 1.45 eeh bus_space_subregion(sc->sc_bustag, sc->sc_bh,
337 1.45 eeh offsetof(struct psychoreg, psy_pcictl),
338 1.45 eeh sizeof(struct pci_ctl), &pci_ctl);
339 1.34 eeh } else
340 1.34 eeh panic("psycho_attach: %d not enough registers",
341 1.34 eeh ma->ma_nreg);
342 1.34 eeh }
343 1.23 pk
344 1.45 eeh
345 1.45 eeh csr = bus_space_read_8(sc->sc_bustag, sc->sc_bh,
346 1.45 eeh offsetof(struct psychoreg, psy_csr));
347 1.34 eeh sc->sc_ign = 0x7c0; /* APB IGN is always 0x7c */
348 1.34 eeh if (sc->sc_mode == PSYCHO_MODE_PSYCHO)
349 1.34 eeh sc->sc_ign = PSYCHO_GCSR_IGN(csr) << 6;
350 1.24 pk
351 1.34 eeh printf("%s: impl %d, version %d: ign %x ",
352 1.34 eeh model, PSYCHO_GCSR_IMPL(csr), PSYCHO_GCSR_VERS(csr),
353 1.34 eeh sc->sc_ign);
354 1.22 pk /*
355 1.24 pk * Match other psycho's that are already configured against
356 1.24 pk * the base physical address. This will be the same for a
357 1.24 pk * pair of devices that share register space.
358 1.1 mrg */
359 1.3 mrg for (n = 0; n < psycho_cd.cd_ndevs; n++) {
360 1.8 mrg
361 1.24 pk struct psycho_softc *asc =
362 1.24 pk (struct psycho_softc *)psycho_cd.cd_devs[n];
363 1.3 mrg
364 1.24 pk if (asc == NULL || asc == sc)
365 1.24 pk /* This entry is not there or it is me */
366 1.24 pk continue;
367 1.23 pk
368 1.24 pk if (asc->sc_basepaddr != sc->sc_basepaddr)
369 1.24 pk /* This is an unrelated psycho */
370 1.3 mrg continue;
371 1.3 mrg
372 1.24 pk /* Found partner */
373 1.24 pk osc = asc;
374 1.8 mrg break;
375 1.8 mrg }
376 1.8 mrg
377 1.3 mrg
378 1.3 mrg /* Oh, dear. OK, lets get started */
379 1.3 mrg
380 1.24 pk /*
381 1.24 pk * Setup the PCI control register
382 1.24 pk */
383 1.45 eeh csr = bus_space_read_8(sc->sc_bustag, pci_ctl,
384 1.45 eeh offsetof(struct pci_ctl, pci_csr));
385 1.8 mrg csr |= PCICTL_MRLM |
386 1.8 mrg PCICTL_ARB_PARK |
387 1.8 mrg PCICTL_ERRINTEN |
388 1.8 mrg PCICTL_4ENABLE;
389 1.8 mrg csr &= ~(PCICTL_SERR |
390 1.8 mrg PCICTL_CPU_PRIO |
391 1.8 mrg PCICTL_ARB_PRIO |
392 1.8 mrg PCICTL_RTRYWAIT);
393 1.45 eeh bus_space_write_8(sc->sc_bustag, pci_ctl,
394 1.45 eeh offsetof(struct pci_ctl, pci_csr), csr);
395 1.8 mrg
396 1.24 pk
397 1.24 pk /*
398 1.24 pk * Allocate our psycho_pbm
399 1.24 pk */
400 1.58 nakayama pp = sc->sc_psycho_this = malloc(sizeof *pp, M_DEVBUF,
401 1.58 nakayama M_NOWAIT | M_ZERO);
402 1.22 pk if (pp == NULL)
403 1.8 mrg panic("could not allocate psycho pbm");
404 1.8 mrg
405 1.22 pk pp->pp_sc = sc;
406 1.8 mrg
407 1.8 mrg /* grab the psycho ranges */
408 1.22 pk psycho_get_ranges(sc->sc_node, &pp->pp_range, &pp->pp_nrange);
409 1.8 mrg
410 1.8 mrg /* get the bus-range for the psycho */
411 1.8 mrg psycho_get_bus_range(sc->sc_node, psycho_br);
412 1.8 mrg
413 1.47 thorpej pba.pba_bus = psycho_br[0];
414 1.48 eeh pba.pba_bridgetag = NULL;
415 1.58 nakayama pp->pp_busmax = psycho_br[1];
416 1.8 mrg
417 1.8 mrg printf("bus range %u to %u", psycho_br[0], psycho_br[1]);
418 1.23 pk printf("; PCI bus %d", psycho_br[0]);
419 1.8 mrg
420 1.45 eeh pp->pp_pcictl = pci_ctl;
421 1.8 mrg
422 1.8 mrg /* allocate our tags */
423 1.8 mrg pp->pp_memt = psycho_alloc_mem_tag(pp);
424 1.8 mrg pp->pp_iot = psycho_alloc_io_tag(pp);
425 1.8 mrg pp->pp_dmat = psycho_alloc_dma_tag(pp);
426 1.8 mrg pp->pp_flags = (pp->pp_memt ? PCI_FLAGS_MEM_ENABLED : 0) |
427 1.8 mrg (pp->pp_iot ? PCI_FLAGS_IO_ENABLED : 0);
428 1.8 mrg
429 1.8 mrg /* allocate a chipset for this */
430 1.8 mrg pp->pp_pc = psycho_alloc_chipset(pp, sc->sc_node, &_sparc_pci_chipset);
431 1.8 mrg
432 1.8 mrg /* setup the rest of the psycho pbm */
433 1.47 thorpej pba.pba_pc = psycho_alloc_chipset(pp, sc->sc_node, pp->pp_pc);
434 1.8 mrg
435 1.8 mrg printf("\n");
436 1.8 mrg
437 1.58 nakayama /* allocate extents for free bus space */
438 1.58 nakayama pp->pp_exmem = psycho_alloc_extent(pp, sc->sc_node, 0x02, "psycho mem");
439 1.58 nakayama pp->pp_exio = psycho_alloc_extent(pp, sc->sc_node, 0x01, "psycho io");
440 1.58 nakayama
441 1.8 mrg /*
442 1.34 eeh * And finally, if we're a sabre or the first of a pair of psycho's to
443 1.24 pk * arrive here, start up the IOMMU and get a config space tag.
444 1.8 mrg */
445 1.24 pk if (osc == NULL) {
446 1.40 eeh uint64_t timeo;
447 1.34 eeh
448 1.34 eeh /*
449 1.34 eeh * Establish handlers for interesting interrupts....
450 1.34 eeh *
451 1.34 eeh * XXX We need to remember these and remove this to support
452 1.34 eeh * hotplug on the UPA/FHC bus.
453 1.34 eeh *
454 1.34 eeh * XXX Not all controllers have these, but installing them
455 1.34 eeh * is better than trying to sort through this mess.
456 1.34 eeh */
457 1.34 eeh psycho_set_intr(sc, 15, psycho_ue,
458 1.34 eeh &sc->sc_regs->ue_int_map,
459 1.34 eeh &sc->sc_regs->ue_clr_int);
460 1.34 eeh psycho_set_intr(sc, 1, psycho_ce,
461 1.34 eeh &sc->sc_regs->ce_int_map,
462 1.34 eeh &sc->sc_regs->ce_clr_int);
463 1.34 eeh psycho_set_intr(sc, 15, psycho_bus_a,
464 1.34 eeh &sc->sc_regs->pciaerr_int_map,
465 1.34 eeh &sc->sc_regs->pciaerr_clr_int);
466 1.34 eeh psycho_set_intr(sc, 15, psycho_powerfail,
467 1.34 eeh &sc->sc_regs->power_int_map,
468 1.34 eeh &sc->sc_regs->power_clr_int);
469 1.65 petrov if (sc->sc_mode != PSYCHO_MODE_SABRE) {
470 1.65 petrov /* sabre doesn't have these interrups */
471 1.65 petrov psycho_set_intr(sc, 15, psycho_bus_b,
472 1.65 petrov &sc->sc_regs->pciberr_int_map,
473 1.65 petrov &sc->sc_regs->pciberr_clr_int);
474 1.65 petrov psycho_register_power_button(sc);
475 1.65 petrov psycho_set_intr(sc, 1, psycho_wakeup,
476 1.65 petrov &sc->sc_regs->pwrmgt_int_map,
477 1.65 petrov &sc->sc_regs->pwrmgt_clr_int);
478 1.65 petrov }
479 1.40 eeh
480 1.40 eeh /*
481 1.40 eeh * Apparently a number of machines with psycho and psycho+
482 1.40 eeh * controllers have interrupt latency issues. We'll try
483 1.40 eeh * setting the interrupt retry timeout to 0xff which gives us
484 1.40 eeh * a retry of 3-6 usec (which is what sysio is set to) for the
485 1.40 eeh * moment, which seems to help alleviate this problem.
486 1.40 eeh */
487 1.45 eeh timeo = sc->sc_regs->intr_retry_timer;
488 1.40 eeh if (timeo > 0xfff) {
489 1.40 eeh #ifdef DEBUG
490 1.40 eeh printf("decreasing interrupt retry timeout "
491 1.40 eeh "from %lx to 0xff\n", (long)timeo);
492 1.40 eeh #endif
493 1.45 eeh sc->sc_regs->intr_retry_timer = 0xff;
494 1.40 eeh }
495 1.34 eeh
496 1.13 eeh /*
497 1.58 nakayama * Allocate bus node, this contains a prom node per bus.
498 1.58 nakayama */
499 1.58 nakayama pp->pp_busnode = malloc(sizeof(*pp->pp_busnode), M_DEVBUF,
500 1.58 nakayama M_NOWAIT | M_ZERO);
501 1.58 nakayama if (pp->pp_busnode == NULL)
502 1.58 nakayama panic("psycho_attach: malloc pp->pp_busnode");
503 1.58 nakayama
504 1.58 nakayama /*
505 1.24 pk * Setup IOMMU and PCI configuration if we're the first
506 1.24 pk * of a pair of psycho's to arrive here.
507 1.24 pk *
508 1.13 eeh * We should calculate a TSB size based on amount of RAM
509 1.34 eeh * and number of bus controllers and number an type of
510 1.34 eeh * child devices.
511 1.13 eeh *
512 1.13 eeh * For the moment, 32KB should be more than enough.
513 1.13 eeh */
514 1.39 eeh sc->sc_is = malloc(sizeof(struct iommu_state),
515 1.39 eeh M_DEVBUF, M_NOWAIT);
516 1.39 eeh if (sc->sc_is == NULL)
517 1.39 eeh panic("psycho_attach: malloc iommu_state");
518 1.39 eeh
519 1.50 eeh /* Point the strbuf_ctl at the iommu_state */
520 1.50 eeh pp->pp_sb.sb_is = sc->sc_is;
521 1.39 eeh
522 1.51 eeh sc->sc_is->is_sb[0] = sc->sc_is->is_sb[1] = NULL;
523 1.45 eeh if (PROM_getproplen(sc->sc_node, "no-streaming-cache") < 0) {
524 1.50 eeh struct strbuf_ctl *sb = &pp->pp_sb;
525 1.50 eeh vaddr_t va = (vaddr_t)&pp->pp_flush[0x40];
526 1.50 eeh
527 1.50 eeh /*
528 1.50 eeh * Initialize the strbuf_ctl.
529 1.50 eeh *
530 1.50 eeh * The flush sync buffer must be 64-byte aligned.
531 1.50 eeh */
532 1.50 eeh sb->sb_flush = (void *)(va & ~0x3f);
533 1.50 eeh
534 1.49 eeh bus_space_subregion(sc->sc_bustag, pci_ctl,
535 1.45 eeh offsetof(struct pci_ctl, pci_strbuf),
536 1.50 eeh sizeof (struct iommu_strbuf), &sb->sb_sb);
537 1.50 eeh
538 1.50 eeh /* Point our iommu at the strbuf_ctl */
539 1.50 eeh sc->sc_is->is_sb[0] = sb;
540 1.45 eeh }
541 1.39 eeh
542 1.13 eeh psycho_iommu_init(sc, 2);
543 1.8 mrg
544 1.8 mrg sc->sc_configtag = psycho_alloc_config_tag(sc->sc_psycho_this);
545 1.44 eeh
546 1.44 eeh /*
547 1.44 eeh * XXX This is a really ugly hack because PCI config space
548 1.44 eeh * is explicitly handled with unmapped accesses.
549 1.44 eeh */
550 1.44 eeh i = sc->sc_bustag->type;
551 1.44 eeh sc->sc_bustag->type = PCI_CONFIG_BUS_SPACE;
552 1.44 eeh if (bus_space_map(sc->sc_bustag, sc->sc_basepaddr + 0x01000000,
553 1.58 nakayama 0x01000000, 0, &bh))
554 1.23 pk panic("could not map psycho PCI configuration space");
555 1.44 eeh sc->sc_bustag->type = i;
556 1.45 eeh sc->sc_configaddr = bh;
557 1.8 mrg } else {
558 1.58 nakayama /* Share bus numbers with the pair of mine */
559 1.58 nakayama pp->pp_busnode = osc->sc_psycho_this->pp_busnode;
560 1.58 nakayama
561 1.24 pk /* Just copy IOMMU state, config tag and address */
562 1.24 pk sc->sc_is = osc->sc_is;
563 1.8 mrg sc->sc_configtag = osc->sc_configtag;
564 1.8 mrg sc->sc_configaddr = osc->sc_configaddr;
565 1.39 eeh
566 1.50 eeh /* Point the strbuf_ctl at the iommu_state */
567 1.50 eeh pp->pp_sb.sb_is = sc->sc_is;
568 1.50 eeh
569 1.45 eeh if (PROM_getproplen(sc->sc_node, "no-streaming-cache") < 0) {
570 1.50 eeh struct strbuf_ctl *sb = &pp->pp_sb;
571 1.50 eeh vaddr_t va = (vaddr_t)&pp->pp_flush[0x40];
572 1.50 eeh
573 1.50 eeh /*
574 1.50 eeh * Initialize the strbuf_ctl.
575 1.50 eeh *
576 1.50 eeh * The flush sync buffer must be 64-byte aligned.
577 1.50 eeh */
578 1.50 eeh sb->sb_flush = (void *)(va & ~0x3f);
579 1.50 eeh
580 1.49 eeh bus_space_subregion(sc->sc_bustag, pci_ctl,
581 1.45 eeh offsetof(struct pci_ctl, pci_strbuf),
582 1.50 eeh sizeof (struct iommu_strbuf), &sb->sb_sb);
583 1.50 eeh
584 1.50 eeh /* Point our iommu at the strbuf_ctl */
585 1.50 eeh sc->sc_is->is_sb[1] = sb;
586 1.45 eeh }
587 1.39 eeh iommu_reset(sc->sc_is);
588 1.8 mrg }
589 1.34 eeh
590 1.34 eeh /*
591 1.34 eeh * attach the pci.. note we pass PCI A tags, etc., for the sabre here.
592 1.34 eeh */
593 1.47 thorpej pba.pba_busname = "pci";
594 1.47 thorpej pba.pba_flags = sc->sc_psycho_this->pp_flags;
595 1.47 thorpej pba.pba_dmat = sc->sc_psycho_this->pp_dmat;
596 1.63 fvdl pba.pba_dmat64 = NULL;
597 1.47 thorpej pba.pba_iot = sc->sc_psycho_this->pp_iot;
598 1.47 thorpej pba.pba_memt = sc->sc_psycho_this->pp_memt;
599 1.34 eeh
600 1.34 eeh config_found(self, &pba, psycho_print);
601 1.34 eeh }
602 1.34 eeh
603 1.34 eeh static int
604 1.34 eeh psycho_print(aux, p)
605 1.34 eeh void *aux;
606 1.34 eeh const char *p;
607 1.34 eeh {
608 1.34 eeh
609 1.34 eeh if (p == NULL)
610 1.34 eeh return (UNCONF);
611 1.34 eeh return (QUIET);
612 1.34 eeh }
613 1.34 eeh
614 1.34 eeh static void
615 1.34 eeh psycho_set_intr(sc, ipl, handler, mapper, clearer)
616 1.34 eeh struct psycho_softc *sc;
617 1.34 eeh int ipl;
618 1.34 eeh void *handler;
619 1.34 eeh u_int64_t *mapper;
620 1.34 eeh u_int64_t *clearer;
621 1.34 eeh {
622 1.34 eeh struct intrhand *ih;
623 1.34 eeh
624 1.34 eeh ih = (struct intrhand *)malloc(sizeof(struct intrhand),
625 1.34 eeh M_DEVBUF, M_NOWAIT);
626 1.34 eeh ih->ih_arg = sc;
627 1.34 eeh ih->ih_map = mapper;
628 1.34 eeh ih->ih_clr = clearer;
629 1.34 eeh ih->ih_fun = handler;
630 1.34 eeh ih->ih_pil = (1<<ipl);
631 1.34 eeh ih->ih_number = INTVEC(*(ih->ih_map));
632 1.34 eeh intr_establish(ipl, ih);
633 1.34 eeh *(ih->ih_map) |= INTMAP_V;
634 1.1 mrg }
635 1.1 mrg
636 1.1 mrg /*
637 1.60 martin * power button handlers
638 1.60 martin */
639 1.60 martin static void
640 1.60 martin psycho_register_power_button(struct psycho_softc *sc)
641 1.60 martin {
642 1.60 martin sysmon_task_queue_init();
643 1.60 martin
644 1.60 martin sc->sc_powerpressed = 0;
645 1.60 martin sc->sc_smcontext = malloc(sizeof(struct sysmon_pswitch), M_DEVBUF, 0);
646 1.60 martin if (!sc->sc_smcontext) {
647 1.60 martin printf("%s: could not allocate power button context\n",
648 1.60 martin sc->sc_dev.dv_xname);
649 1.60 martin return;
650 1.60 martin }
651 1.60 martin memset(sc->sc_smcontext, 0, sizeof(struct sysmon_pswitch));
652 1.60 martin sc->sc_smcontext->smpsw_name = sc->sc_dev.dv_xname;
653 1.60 martin sc->sc_smcontext->smpsw_type = PSWITCH_TYPE_POWER;
654 1.60 martin if (sysmon_pswitch_register(sc->sc_smcontext) != 0)
655 1.60 martin printf("%s: unable to register power button with sysmon\n",
656 1.60 martin sc->sc_dev.dv_xname);
657 1.60 martin }
658 1.60 martin
659 1.60 martin static void
660 1.60 martin psycho_power_button_pressed(void *arg)
661 1.60 martin {
662 1.60 martin struct psycho_softc *sc = arg;
663 1.60 martin
664 1.60 martin sysmon_pswitch_event(sc->sc_smcontext, PSWITCH_EVENT_PRESSED);
665 1.60 martin sc->sc_powerpressed = 0;
666 1.60 martin }
667 1.60 martin
668 1.60 martin /*
669 1.1 mrg * PCI bus support
670 1.1 mrg */
671 1.1 mrg
672 1.1 mrg /*
673 1.1 mrg * allocate a PCI chipset tag and set it's cookie.
674 1.1 mrg */
675 1.1 mrg static pci_chipset_tag_t
676 1.1 mrg psycho_alloc_chipset(pp, node, pc)
677 1.1 mrg struct psycho_pbm *pp;
678 1.1 mrg int node;
679 1.1 mrg pci_chipset_tag_t pc;
680 1.1 mrg {
681 1.1 mrg pci_chipset_tag_t npc;
682 1.1 mrg
683 1.1 mrg npc = malloc(sizeof *npc, M_DEVBUF, M_NOWAIT);
684 1.1 mrg if (npc == NULL)
685 1.1 mrg panic("could not allocate pci_chipset_tag_t");
686 1.1 mrg memcpy(npc, pc, sizeof *pc);
687 1.1 mrg npc->cookie = pp;
688 1.34 eeh npc->rootnode = node;
689 1.1 mrg
690 1.1 mrg return (npc);
691 1.1 mrg }
692 1.1 mrg
693 1.1 mrg /*
694 1.58 nakayama * create extent for free bus space, then allocate assigned regions.
695 1.58 nakayama */
696 1.58 nakayama static struct extent *
697 1.58 nakayama psycho_alloc_extent(pp, node, ss, name)
698 1.58 nakayama struct psycho_pbm *pp;
699 1.58 nakayama int node;
700 1.58 nakayama int ss;
701 1.58 nakayama char *name;
702 1.58 nakayama {
703 1.58 nakayama struct psycho_registers *pa = NULL;
704 1.58 nakayama struct psycho_ranges *pr;
705 1.58 nakayama struct extent *ex;
706 1.58 nakayama bus_addr_t baddr, addr;
707 1.58 nakayama bus_size_t bsize, size;
708 1.58 nakayama int i, num;
709 1.58 nakayama
710 1.58 nakayama /* get bus space size */
711 1.58 nakayama pr = get_psychorange(pp, ss);
712 1.58 nakayama if (pr == NULL) {
713 1.58 nakayama printf("psycho_alloc_extent: get_psychorange failed\n");
714 1.58 nakayama return NULL;
715 1.58 nakayama }
716 1.58 nakayama baddr = 0x00000000;
717 1.58 nakayama bsize = BUS_ADDR(pr->size_hi, pr->size_lo);
718 1.58 nakayama
719 1.58 nakayama /* get available lists */
720 1.62 nakayama if (PROM_getprop(node, "available", sizeof(*pa), &num, (void *)&pa)) {
721 1.58 nakayama printf("psycho_alloc_extent: PROM_getprop failed\n");
722 1.58 nakayama return NULL;
723 1.58 nakayama }
724 1.58 nakayama
725 1.58 nakayama /* create extent */
726 1.58 nakayama ex = extent_create(name, baddr, bsize - baddr - 1, M_DEVBUF, 0, 0,
727 1.58 nakayama EX_NOWAIT);
728 1.58 nakayama if (ex == NULL) {
729 1.58 nakayama printf("psycho_alloc_extent: extent_create failed\n");
730 1.58 nakayama goto ret;
731 1.58 nakayama }
732 1.58 nakayama
733 1.58 nakayama /* allocate assigned regions */
734 1.58 nakayama for (i = 0; i < num; i++)
735 1.58 nakayama if (((pa[i].phys_hi >> 24) & 0x03) == ss) {
736 1.58 nakayama /* allocate bus space */
737 1.58 nakayama addr = BUS_ADDR(pa[i].phys_mid, pa[i].phys_lo);
738 1.58 nakayama size = BUS_ADDR(pa[i].size_hi, pa[i].size_lo);
739 1.58 nakayama if (extent_alloc_region(ex, baddr, addr - baddr,
740 1.58 nakayama EX_NOWAIT)) {
741 1.58 nakayama printf("psycho_alloc_extent: "
742 1.58 nakayama "extent_alloc_region %" PRIx64 "-%"
743 1.58 nakayama PRIx64 " failed\n", baddr, addr);
744 1.58 nakayama extent_destroy(ex);
745 1.58 nakayama ex = NULL;
746 1.58 nakayama goto ret;
747 1.58 nakayama }
748 1.58 nakayama baddr = addr + size;
749 1.58 nakayama }
750 1.58 nakayama /* allocate left region if available */
751 1.58 nakayama if (baddr < bsize)
752 1.58 nakayama if (extent_alloc_region(ex, baddr, bsize - baddr, EX_NOWAIT)) {
753 1.58 nakayama printf("psycho_alloc_extent: extent_alloc_region %"
754 1.58 nakayama PRIx64 "-%" PRIx64 " failed\n", baddr, bsize);
755 1.58 nakayama extent_destroy(ex);
756 1.58 nakayama ex = NULL;
757 1.58 nakayama goto ret;
758 1.58 nakayama }
759 1.58 nakayama
760 1.58 nakayama #ifdef DEBUG
761 1.58 nakayama /* print extent */
762 1.58 nakayama extent_print(ex);
763 1.58 nakayama #endif
764 1.58 nakayama
765 1.58 nakayama ret:
766 1.58 nakayama /* return extent */
767 1.58 nakayama free(pa, M_DEVBUF);
768 1.58 nakayama return ex;
769 1.58 nakayama }
770 1.58 nakayama
771 1.58 nakayama /*
772 1.1 mrg * grovel the OBP for various psycho properties
773 1.1 mrg */
774 1.1 mrg static void
775 1.1 mrg psycho_get_bus_range(node, brp)
776 1.1 mrg int node;
777 1.1 mrg int *brp;
778 1.1 mrg {
779 1.1 mrg int n;
780 1.1 mrg
781 1.62 nakayama if (PROM_getprop(node, "bus-range", sizeof(*brp), &n, (void *)&brp))
782 1.1 mrg panic("could not get psycho bus-range");
783 1.1 mrg if (n != 2)
784 1.1 mrg panic("broken psycho bus-range");
785 1.1 mrg DPRINTF(PDB_PROM, ("psycho debug: got `bus-range' for node %08x: %u - %u\n", node, brp[0], brp[1]));
786 1.1 mrg }
787 1.1 mrg
788 1.1 mrg static void
789 1.1 mrg psycho_get_ranges(node, rp, np)
790 1.1 mrg int node;
791 1.1 mrg struct psycho_ranges **rp;
792 1.1 mrg int *np;
793 1.1 mrg {
794 1.1 mrg
795 1.38 eeh if (PROM_getprop(node, "ranges", sizeof(**rp), np, (void **)rp))
796 1.1 mrg panic("could not get psycho ranges");
797 1.1 mrg DPRINTF(PDB_PROM, ("psycho debug: got `ranges' for node %08x: %d entries\n", node, *np));
798 1.1 mrg }
799 1.1 mrg
800 1.34 eeh /*
801 1.34 eeh * Interrupt handlers.
802 1.34 eeh */
803 1.34 eeh
804 1.34 eeh static int
805 1.34 eeh psycho_ue(arg)
806 1.34 eeh void *arg;
807 1.34 eeh {
808 1.34 eeh struct psycho_softc *sc = (struct psycho_softc *)arg;
809 1.34 eeh struct psychoreg *regs = sc->sc_regs;
810 1.36 eeh long long afsr = regs->psy_ue_afsr;
811 1.36 eeh long long afar = regs->psy_ue_afar;
812 1.59 thorpej long size = PAGE_SIZE<<(sc->sc_is->is_tsbsize);
813 1.41 eeh struct iommu_state *is = sc->sc_is;
814 1.36 eeh char bits[128];
815 1.34 eeh
816 1.34 eeh /*
817 1.34 eeh * It's uncorrectable. Dump the regs and panic.
818 1.34 eeh */
819 1.46 eeh printf("%s: uncorrectable DMA error AFAR %llx pa %llx AFSR %llx:\n%s\n",
820 1.36 eeh sc->sc_dev.dv_xname, afar,
821 1.41 eeh (long long)iommu_extract(is, (vaddr_t)afar), afsr,
822 1.36 eeh bitmask_snprintf(afsr, PSYCHO_UE_AFSR_BITS,
823 1.36 eeh bits, sizeof(bits)));
824 1.41 eeh
825 1.41 eeh /* Sometimes the AFAR points to an IOTSB entry */
826 1.41 eeh if (afar >= is->is_ptsb && afar < is->is_ptsb + size) {
827 1.42 martin printf("IOVA %llx IOTTE %llx\n",
828 1.59 thorpej (long long)((afar - is->is_ptsb) * PAGE_SIZE + is->is_dvmabase),
829 1.41 eeh (long long)ldxa(afar, ASI_PHYS_CACHED));
830 1.41 eeh }
831 1.43 chs #ifdef DDB
832 1.41 eeh Debugger();
833 1.43 chs #endif
834 1.41 eeh regs->psy_ue_afar = 0;
835 1.41 eeh regs->psy_ue_afsr = 0;
836 1.34 eeh return (1);
837 1.34 eeh }
838 1.34 eeh static int
839 1.34 eeh psycho_ce(arg)
840 1.34 eeh void *arg;
841 1.1 mrg {
842 1.34 eeh struct psycho_softc *sc = (struct psycho_softc *)arg;
843 1.34 eeh struct psychoreg *regs = sc->sc_regs;
844 1.34 eeh
845 1.34 eeh /*
846 1.34 eeh * It's correctable. Dump the regs and continue.
847 1.34 eeh */
848 1.1 mrg
849 1.34 eeh printf("%s: correctable DMA error AFAR %llx AFSR %llx\n",
850 1.34 eeh sc->sc_dev.dv_xname,
851 1.34 eeh (long long)regs->psy_ce_afar, (long long)regs->psy_ce_afsr);
852 1.34 eeh return (1);
853 1.1 mrg }
854 1.34 eeh static int
855 1.34 eeh psycho_bus_a(arg)
856 1.34 eeh void *arg;
857 1.34 eeh {
858 1.34 eeh struct psycho_softc *sc = (struct psycho_softc *)arg;
859 1.34 eeh struct psychoreg *regs = sc->sc_regs;
860 1.34 eeh
861 1.34 eeh /*
862 1.34 eeh * It's uncorrectable. Dump the regs and panic.
863 1.34 eeh */
864 1.1 mrg
865 1.52 provos panic("%s: PCI bus A error AFAR %llx AFSR %llx",
866 1.34 eeh sc->sc_dev.dv_xname,
867 1.35 eeh (long long)regs->psy_pcictl[0].pci_afar,
868 1.35 eeh (long long)regs->psy_pcictl[0].pci_afsr);
869 1.34 eeh return (1);
870 1.34 eeh }
871 1.34 eeh static int
872 1.34 eeh psycho_bus_b(arg)
873 1.34 eeh void *arg;
874 1.1 mrg {
875 1.34 eeh struct psycho_softc *sc = (struct psycho_softc *)arg;
876 1.34 eeh struct psychoreg *regs = sc->sc_regs;
877 1.34 eeh
878 1.34 eeh /*
879 1.34 eeh * It's uncorrectable. Dump the regs and panic.
880 1.34 eeh */
881 1.1 mrg
882 1.52 provos panic("%s: PCI bus B error AFAR %llx AFSR %llx",
883 1.34 eeh sc->sc_dev.dv_xname,
884 1.35 eeh (long long)regs->psy_pcictl[0].pci_afar,
885 1.35 eeh (long long)regs->psy_pcictl[0].pci_afsr);
886 1.34 eeh return (1);
887 1.1 mrg }
888 1.60 martin
889 1.34 eeh static int
890 1.34 eeh psycho_powerfail(arg)
891 1.34 eeh void *arg;
892 1.34 eeh {
893 1.60 martin struct psycho_softc *sc = (struct psycho_softc *)arg;
894 1.1 mrg
895 1.34 eeh /*
896 1.60 martin * We lost power. Queue a callback with thread context to
897 1.60 martin * handle all the real work.
898 1.34 eeh */
899 1.60 martin if (sc->sc_powerpressed == 0 && sc->sc_smcontext != NULL) {
900 1.60 martin sc->sc_powerpressed = 1;
901 1.60 martin sysmon_task_queue_sched(0, psycho_power_button_pressed, sc);
902 1.60 martin }
903 1.34 eeh return (1);
904 1.34 eeh }
905 1.60 martin
906 1.34 eeh static
907 1.34 eeh int psycho_wakeup(arg)
908 1.34 eeh void *arg;
909 1.1 mrg {
910 1.34 eeh struct psycho_softc *sc = (struct psycho_softc *)arg;
911 1.1 mrg
912 1.34 eeh /*
913 1.34 eeh * Gee, we don't really have a framework to deal with this
914 1.34 eeh * properly.
915 1.34 eeh */
916 1.34 eeh printf("%s: power management wakeup\n", sc->sc_dev.dv_xname);
917 1.34 eeh return (1);
918 1.1 mrg }
919 1.1 mrg
920 1.34 eeh
921 1.34 eeh
922 1.1 mrg /*
923 1.1 mrg * initialise the IOMMU..
924 1.1 mrg */
925 1.1 mrg void
926 1.13 eeh psycho_iommu_init(sc, tsbsize)
927 1.1 mrg struct psycho_softc *sc;
928 1.13 eeh int tsbsize;
929 1.1 mrg {
930 1.1 mrg char *name;
931 1.39 eeh struct iommu_state *is = sc->sc_is;
932 1.34 eeh u_int32_t iobase = -1;
933 1.34 eeh int *vdma = NULL;
934 1.34 eeh int nitem;
935 1.24 pk
936 1.1 mrg /* punch in our copies */
937 1.24 pk is->is_bustag = sc->sc_bustag;
938 1.45 eeh bus_space_subregion(sc->sc_bustag, sc->sc_bh,
939 1.45 eeh offsetof(struct psychoreg, psy_iommu),
940 1.45 eeh sizeof (struct iommureg),
941 1.45 eeh &is->is_iommu);
942 1.1 mrg
943 1.34 eeh /*
944 1.34 eeh * Separate the men from the boys. Get the `virtual-dma'
945 1.34 eeh * property for sabre and use that to make sure the damn
946 1.34 eeh * iommu works.
947 1.34 eeh *
948 1.34 eeh * We could query the `#virtual-dma-size-cells' and
949 1.34 eeh * `#virtual-dma-addr-cells' and DTRT, but I'm lazy.
950 1.34 eeh */
951 1.38 eeh if (!PROM_getprop(sc->sc_node, "virtual-dma", sizeof(vdma), &nitem,
952 1.62 nakayama (void *)&vdma)) {
953 1.34 eeh /* Damn. Gotta use these values. */
954 1.34 eeh iobase = vdma[0];
955 1.34 eeh #define TSBCASE(x) case 1<<((x)+23): tsbsize = (x); break
956 1.34 eeh switch (vdma[1]) {
957 1.34 eeh TSBCASE(1); TSBCASE(2); TSBCASE(3);
958 1.34 eeh TSBCASE(4); TSBCASE(5); TSBCASE(6);
959 1.34 eeh default:
960 1.34 eeh printf("bogus tsb size %x, using 7\n", vdma[1]);
961 1.34 eeh TSBCASE(7);
962 1.34 eeh }
963 1.34 eeh #undef TSBCASE
964 1.34 eeh }
965 1.34 eeh
966 1.1 mrg /* give us a nice name.. */
967 1.1 mrg name = (char *)malloc(32, M_DEVBUF, M_NOWAIT);
968 1.1 mrg if (name == 0)
969 1.1 mrg panic("couldn't malloc iommu name");
970 1.1 mrg snprintf(name, 32, "%s dvma", sc->sc_dev.dv_xname);
971 1.1 mrg
972 1.34 eeh iommu_init(name, is, tsbsize, iobase);
973 1.7 mrg }
974 1.7 mrg
975 1.7 mrg /*
976 1.61 wiz * below here is bus space and bus DMA support
977 1.7 mrg */
978 1.7 mrg bus_space_tag_t
979 1.7 mrg psycho_alloc_bus_tag(pp, type)
980 1.7 mrg struct psycho_pbm *pp;
981 1.7 mrg int type;
982 1.7 mrg {
983 1.7 mrg struct psycho_softc *sc = pp->pp_sc;
984 1.7 mrg bus_space_tag_t bt;
985 1.7 mrg
986 1.7 mrg bt = (bus_space_tag_t)
987 1.7 mrg malloc(sizeof(struct sparc_bus_space_tag), M_DEVBUF, M_NOWAIT);
988 1.7 mrg if (bt == NULL)
989 1.7 mrg panic("could not allocate psycho bus tag");
990 1.7 mrg
991 1.7 mrg bzero(bt, sizeof *bt);
992 1.7 mrg bt->cookie = pp;
993 1.7 mrg bt->parent = sc->sc_bustag;
994 1.7 mrg bt->type = type;
995 1.7 mrg bt->sparc_bus_map = _psycho_bus_map;
996 1.7 mrg bt->sparc_bus_mmap = psycho_bus_mmap;
997 1.7 mrg bt->sparc_intr_establish = psycho_intr_establish;
998 1.7 mrg return (bt);
999 1.7 mrg }
1000 1.7 mrg
1001 1.7 mrg bus_dma_tag_t
1002 1.7 mrg psycho_alloc_dma_tag(pp)
1003 1.7 mrg struct psycho_pbm *pp;
1004 1.7 mrg {
1005 1.7 mrg struct psycho_softc *sc = pp->pp_sc;
1006 1.7 mrg bus_dma_tag_t dt, pdt = sc->sc_dmatag;
1007 1.7 mrg
1008 1.7 mrg dt = (bus_dma_tag_t)
1009 1.7 mrg malloc(sizeof(struct sparc_bus_dma_tag), M_DEVBUF, M_NOWAIT);
1010 1.7 mrg if (dt == NULL)
1011 1.61 wiz panic("could not allocate psycho DMA tag");
1012 1.7 mrg
1013 1.7 mrg bzero(dt, sizeof *dt);
1014 1.7 mrg dt->_cookie = pp;
1015 1.7 mrg dt->_parent = pdt;
1016 1.7 mrg #define PCOPY(x) dt->x = pdt->x
1017 1.7 mrg PCOPY(_dmamap_create);
1018 1.7 mrg PCOPY(_dmamap_destroy);
1019 1.7 mrg dt->_dmamap_load = psycho_dmamap_load;
1020 1.7 mrg PCOPY(_dmamap_load_mbuf);
1021 1.7 mrg PCOPY(_dmamap_load_uio);
1022 1.9 eeh dt->_dmamap_load_raw = psycho_dmamap_load_raw;
1023 1.7 mrg dt->_dmamap_unload = psycho_dmamap_unload;
1024 1.7 mrg dt->_dmamap_sync = psycho_dmamap_sync;
1025 1.7 mrg dt->_dmamem_alloc = psycho_dmamem_alloc;
1026 1.7 mrg dt->_dmamem_free = psycho_dmamem_free;
1027 1.7 mrg dt->_dmamem_map = psycho_dmamem_map;
1028 1.7 mrg dt->_dmamem_unmap = psycho_dmamem_unmap;
1029 1.7 mrg PCOPY(_dmamem_mmap);
1030 1.7 mrg #undef PCOPY
1031 1.7 mrg return (dt);
1032 1.7 mrg }
1033 1.7 mrg
1034 1.7 mrg /*
1035 1.7 mrg * bus space support. <sparc64/dev/psychoreg.h> has a discussion about
1036 1.7 mrg * PCI physical addresses.
1037 1.7 mrg */
1038 1.7 mrg
1039 1.7 mrg static int
1040 1.7 mrg get_childspace(type)
1041 1.7 mrg int type;
1042 1.7 mrg {
1043 1.7 mrg int ss;
1044 1.7 mrg
1045 1.7 mrg switch (type) {
1046 1.7 mrg case PCI_CONFIG_BUS_SPACE:
1047 1.7 mrg ss = 0x00;
1048 1.7 mrg break;
1049 1.7 mrg case PCI_IO_BUS_SPACE:
1050 1.7 mrg ss = 0x01;
1051 1.7 mrg break;
1052 1.7 mrg case PCI_MEMORY_BUS_SPACE:
1053 1.7 mrg ss = 0x02;
1054 1.7 mrg break;
1055 1.7 mrg #if 0
1056 1.7 mrg /* we don't do 64 bit memory space */
1057 1.7 mrg case PCI_MEMORY64_BUS_SPACE:
1058 1.7 mrg ss = 0x03;
1059 1.7 mrg break;
1060 1.7 mrg #endif
1061 1.7 mrg default:
1062 1.7 mrg panic("get_childspace: unknown bus type");
1063 1.7 mrg }
1064 1.7 mrg
1065 1.7 mrg return (ss);
1066 1.7 mrg }
1067 1.7 mrg
1068 1.58 nakayama static struct psycho_ranges *
1069 1.58 nakayama get_psychorange(pp, ss)
1070 1.58 nakayama struct psycho_pbm *pp;
1071 1.58 nakayama int ss;
1072 1.58 nakayama {
1073 1.58 nakayama int i;
1074 1.58 nakayama
1075 1.58 nakayama for (i = 0; i < pp->pp_nrange; i++) {
1076 1.58 nakayama if (((pp->pp_range[i].cspace >> 24) & 0x03) == ss)
1077 1.58 nakayama return (&pp->pp_range[i]);
1078 1.58 nakayama }
1079 1.58 nakayama /* not found */
1080 1.58 nakayama return (NULL);
1081 1.58 nakayama }
1082 1.58 nakayama
1083 1.7 mrg static int
1084 1.44 eeh _psycho_bus_map(t, offset, size, flags, unused, hp)
1085 1.7 mrg bus_space_tag_t t;
1086 1.7 mrg bus_addr_t offset;
1087 1.7 mrg bus_size_t size;
1088 1.7 mrg int flags;
1089 1.44 eeh vaddr_t unused;
1090 1.7 mrg bus_space_handle_t *hp;
1091 1.7 mrg {
1092 1.7 mrg struct psycho_pbm *pp = t->cookie;
1093 1.7 mrg struct psycho_softc *sc = pp->pp_sc;
1094 1.58 nakayama struct psycho_ranges *pr;
1095 1.58 nakayama bus_addr_t paddr;
1096 1.58 nakayama int ss;
1097 1.7 mrg
1098 1.44 eeh DPRINTF(PDB_BUSMAP,
1099 1.44 eeh ("_psycho_bus_map: type %d off %qx sz %qx flags %d",
1100 1.44 eeh t->type, (unsigned long long)offset,
1101 1.44 eeh (unsigned long long)size, flags));
1102 1.7 mrg
1103 1.7 mrg ss = get_childspace(t->type);
1104 1.7 mrg DPRINTF(PDB_BUSMAP, (" cspace %d", ss));
1105 1.7 mrg
1106 1.58 nakayama pr = get_psychorange(pp, ss);
1107 1.58 nakayama if (pr != NULL) {
1108 1.58 nakayama paddr = BUS_ADDR(pr->phys_hi, pr->phys_lo + offset);
1109 1.58 nakayama DPRINTF(PDB_BUSMAP, ("\n_psycho_bus_map: mapping paddr "
1110 1.58 nakayama "space %lx offset %lx paddr %qx\n",
1111 1.27 fvdl (long)ss, (long)offset,
1112 1.27 fvdl (unsigned long long)paddr));
1113 1.44 eeh return ((*sc->sc_bustag->sparc_bus_map)(t, paddr, size,
1114 1.44 eeh flags, 0, hp));
1115 1.7 mrg }
1116 1.7 mrg DPRINTF(PDB_BUSMAP, (" FAILED\n"));
1117 1.7 mrg return (EINVAL);
1118 1.7 mrg }
1119 1.7 mrg
1120 1.37 eeh static paddr_t
1121 1.37 eeh psycho_bus_mmap(t, paddr, off, prot, flags)
1122 1.7 mrg bus_space_tag_t t;
1123 1.7 mrg bus_addr_t paddr;
1124 1.37 eeh off_t off;
1125 1.37 eeh int prot;
1126 1.7 mrg int flags;
1127 1.7 mrg {
1128 1.7 mrg bus_addr_t offset = paddr;
1129 1.7 mrg struct psycho_pbm *pp = t->cookie;
1130 1.7 mrg struct psycho_softc *sc = pp->pp_sc;
1131 1.58 nakayama struct psycho_ranges *pr;
1132 1.58 nakayama int ss;
1133 1.7 mrg
1134 1.7 mrg ss = get_childspace(t->type);
1135 1.7 mrg
1136 1.37 eeh DPRINTF(PDB_BUSMAP, ("_psycho_bus_mmap: prot %x flags %d pa %qx\n",
1137 1.37 eeh prot, flags, (unsigned long long)paddr));
1138 1.7 mrg
1139 1.58 nakayama pr = get_psychorange(pp, ss);
1140 1.58 nakayama if (pr != NULL) {
1141 1.58 nakayama paddr = BUS_ADDR(pr->phys_hi, pr->phys_lo + offset);
1142 1.37 eeh DPRINTF(PDB_BUSMAP, ("\n_psycho_bus_mmap: mapping paddr "
1143 1.58 nakayama "space %lx offset %lx paddr %qx\n",
1144 1.27 fvdl (long)ss, (long)offset,
1145 1.27 fvdl (unsigned long long)paddr));
1146 1.37 eeh return (bus_space_mmap(sc->sc_bustag, paddr, off,
1147 1.37 eeh prot, flags));
1148 1.7 mrg }
1149 1.7 mrg
1150 1.58 nakayama return (-1);
1151 1.58 nakayama }
1152 1.58 nakayama
1153 1.58 nakayama /*
1154 1.58 nakayama * Get a PCI offset address from bus_space_handle_t.
1155 1.58 nakayama */
1156 1.58 nakayama bus_addr_t
1157 1.58 nakayama psycho_bus_offset(t, hp)
1158 1.58 nakayama bus_space_tag_t t;
1159 1.58 nakayama bus_space_handle_t *hp;
1160 1.58 nakayama {
1161 1.58 nakayama struct psycho_pbm *pp = t->cookie;
1162 1.58 nakayama struct psycho_ranges *pr;
1163 1.58 nakayama bus_addr_t addr, offset;
1164 1.58 nakayama vaddr_t va;
1165 1.58 nakayama int ss;
1166 1.58 nakayama
1167 1.58 nakayama addr = hp->_ptr;
1168 1.58 nakayama ss = get_childspace(t->type);
1169 1.58 nakayama DPRINTF(PDB_BUSMAP, ("psycho_bus_offset: type %d addr %" PRIx64
1170 1.58 nakayama " cspace %d", t->type, addr, ss));
1171 1.58 nakayama
1172 1.58 nakayama pr = get_psychorange(pp, ss);
1173 1.58 nakayama if (pr != NULL) {
1174 1.58 nakayama if (!PHYS_ASI(hp->_asi)) {
1175 1.58 nakayama va = trunc_page((vaddr_t)addr);
1176 1.58 nakayama if (pmap_extract(pmap_kernel(), va, &addr) == FALSE) {
1177 1.58 nakayama DPRINTF(PDB_BUSMAP,
1178 1.58 nakayama ("\n pmap_extract FAILED\n"));
1179 1.58 nakayama return (-1);
1180 1.58 nakayama }
1181 1.58 nakayama addr += hp->_ptr & PGOFSET;
1182 1.58 nakayama }
1183 1.58 nakayama offset = BUS_ADDR_PADDR(addr) - pr->phys_lo;
1184 1.58 nakayama DPRINTF(PDB_BUSMAP, ("\npsycho_bus_offset: paddr %" PRIx64
1185 1.58 nakayama " offset %" PRIx64 "\n", addr, offset));
1186 1.58 nakayama return (offset);
1187 1.58 nakayama }
1188 1.58 nakayama DPRINTF(PDB_BUSMAP, ("\n FAILED\n"));
1189 1.7 mrg return (-1);
1190 1.7 mrg }
1191 1.7 mrg
1192 1.7 mrg
1193 1.7 mrg /*
1194 1.7 mrg * install an interrupt handler for a PCI device
1195 1.7 mrg */
1196 1.7 mrg void *
1197 1.57 pk psycho_intr_establish(t, ihandle, level, handler, arg, fastvec)
1198 1.7 mrg bus_space_tag_t t;
1199 1.21 pk int ihandle;
1200 1.7 mrg int level;
1201 1.7 mrg int (*handler) __P((void *));
1202 1.7 mrg void *arg;
1203 1.56 pk void (*fastvec) __P((void)); /* ignored */
1204 1.7 mrg {
1205 1.7 mrg struct psycho_pbm *pp = t->cookie;
1206 1.7 mrg struct psycho_softc *sc = pp->pp_sc;
1207 1.7 mrg struct intrhand *ih;
1208 1.34 eeh volatile u_int64_t *intrmapptr = NULL, *intrclrptr = NULL;
1209 1.34 eeh int64_t intrmap = 0;
1210 1.7 mrg int ino;
1211 1.34 eeh long vec = INTVEC(ihandle);
1212 1.7 mrg
1213 1.7 mrg ih = (struct intrhand *)
1214 1.7 mrg malloc(sizeof(struct intrhand), M_DEVBUF, M_NOWAIT);
1215 1.7 mrg if (ih == NULL)
1216 1.7 mrg return (NULL);
1217 1.7 mrg
1218 1.34 eeh /*
1219 1.34 eeh * Hunt through all the interrupt mapping regs to look for our
1220 1.34 eeh * interrupt vector.
1221 1.34 eeh *
1222 1.34 eeh * XXX We only compare INOs rather than IGNs since the firmware may
1223 1.34 eeh * not provide the IGN and the IGN is constant for all device on that
1224 1.34 eeh * PCI controller. This could cause problems for the FFB/external
1225 1.34 eeh * interrupt which has a full vector that can be set arbitrarily.
1226 1.34 eeh */
1227 1.34 eeh
1228 1.31 mrg DPRINTF(PDB_INTR, ("\npsycho_intr_establish: ihandle %x vec %lx", ihandle, vec));
1229 1.7 mrg ino = INTINO(vec);
1230 1.7 mrg DPRINTF(PDB_INTR, (" ino %x", ino));
1231 1.34 eeh
1232 1.34 eeh /* If the device didn't ask for an IPL, use the one encoded. */
1233 1.34 eeh if (level == IPL_NONE) level = INTLEV(vec);
1234 1.34 eeh /* If it still has no level, print a warning and assign IPL 2 */
1235 1.34 eeh if (level == IPL_NONE) {
1236 1.34 eeh printf("ERROR: no IPL, setting IPL 2.\n");
1237 1.34 eeh level = 2;
1238 1.34 eeh }
1239 1.34 eeh
1240 1.56 pk DPRINTF(PDB_INTR, ("\npsycho: intr %lx: %p\nHunting for IRQ...\n",
1241 1.56 pk (long)ino, intrlev[ino]));
1242 1.7 mrg
1243 1.56 pk /* Hunt thru obio first */
1244 1.56 pk for (intrmapptr = &sc->sc_regs->scsi_int_map,
1245 1.56 pk intrclrptr = &sc->sc_regs->scsi_clr_int;
1246 1.65 petrov intrmapptr < &sc->sc_regs->ue_int_map;
1247 1.56 pk intrmapptr++, intrclrptr++) {
1248 1.56 pk if (INTINO(*intrmapptr) == ino)
1249 1.56 pk goto found;
1250 1.56 pk }
1251 1.7 mrg
1252 1.56 pk /* Now do PCI interrupts */
1253 1.56 pk for (intrmapptr = &sc->sc_regs->pcia_slot0_int,
1254 1.56 pk intrclrptr = &sc->sc_regs->pcia0_clr_int[0];
1255 1.56 pk intrmapptr <= &sc->sc_regs->pcib_slot3_int;
1256 1.56 pk intrmapptr++, intrclrptr += 4) {
1257 1.56 pk if (((*intrmapptr ^ vec) & 0x3c) == 0) {
1258 1.56 pk intrclrptr += vec & 0x3;
1259 1.56 pk goto found;
1260 1.34 eeh }
1261 1.56 pk }
1262 1.7 mrg
1263 1.56 pk /* Finally check the two FFB slots */
1264 1.56 pk intrclrptr = NULL; /* XXX? */
1265 1.56 pk for (intrmapptr = &sc->sc_regs->ffb0_int_map;
1266 1.56 pk intrmapptr <= &sc->sc_regs->ffb1_int_map;
1267 1.56 pk intrmapptr++) {
1268 1.56 pk if (INTVEC(*intrmapptr) == ino)
1269 1.56 pk goto found;
1270 1.56 pk }
1271 1.51 eeh
1272 1.56 pk printf("Cannot find interrupt vector %lx\n", vec);
1273 1.56 pk return (NULL);
1274 1.51 eeh
1275 1.56 pk found:
1276 1.56 pk /* Register the map and clear intr registers */
1277 1.56 pk ih->ih_map = intrmapptr;
1278 1.56 pk ih->ih_clr = intrclrptr;
1279 1.7 mrg
1280 1.7 mrg ih->ih_fun = handler;
1281 1.7 mrg ih->ih_arg = arg;
1282 1.34 eeh ih->ih_pil = level;
1283 1.24 pk ih->ih_number = ino | sc->sc_ign;
1284 1.19 pk
1285 1.19 pk DPRINTF(PDB_INTR, (
1286 1.19 pk "; installing handler %p arg %p with ino %u pil %u\n",
1287 1.19 pk handler, arg, (u_int)ino, (u_int)ih->ih_pil));
1288 1.19 pk
1289 1.7 mrg intr_establish(ih->ih_pil, ih);
1290 1.34 eeh
1291 1.34 eeh /*
1292 1.34 eeh * Enable the interrupt now we have the handler installed.
1293 1.34 eeh * Read the current value as we can't change it besides the
1294 1.34 eeh * valid bit so so make sure only this bit is changed.
1295 1.34 eeh *
1296 1.34 eeh * XXXX --- we really should use bus_space for this.
1297 1.34 eeh */
1298 1.34 eeh if (intrmapptr) {
1299 1.34 eeh intrmap = *intrmapptr;
1300 1.34 eeh DPRINTF(PDB_INTR, ("; read intrmap = %016qx",
1301 1.34 eeh (unsigned long long)intrmap));
1302 1.34 eeh
1303 1.34 eeh /* Enable the interrupt */
1304 1.34 eeh intrmap |= INTMAP_V;
1305 1.34 eeh DPRINTF(PDB_INTR, ("; addr of intrmapptr = %p", intrmapptr));
1306 1.34 eeh DPRINTF(PDB_INTR, ("; writing intrmap = %016qx\n",
1307 1.34 eeh (unsigned long long)intrmap));
1308 1.34 eeh *intrmapptr = intrmap;
1309 1.34 eeh DPRINTF(PDB_INTR, ("; reread intrmap = %016qx",
1310 1.34 eeh (unsigned long long)(intrmap = *intrmapptr)));
1311 1.34 eeh }
1312 1.7 mrg return (ih);
1313 1.7 mrg }
1314 1.7 mrg
1315 1.7 mrg /*
1316 1.7 mrg * hooks into the iommu dvma calls.
1317 1.7 mrg */
1318 1.7 mrg int
1319 1.7 mrg psycho_dmamap_load(t, map, buf, buflen, p, flags)
1320 1.7 mrg bus_dma_tag_t t;
1321 1.7 mrg bus_dmamap_t map;
1322 1.7 mrg void *buf;
1323 1.7 mrg bus_size_t buflen;
1324 1.7 mrg struct proc *p;
1325 1.7 mrg int flags;
1326 1.7 mrg {
1327 1.7 mrg struct psycho_pbm *pp = (struct psycho_pbm *)t->_cookie;
1328 1.7 mrg
1329 1.50 eeh return (iommu_dvmamap_load(t, &pp->pp_sb, map, buf, buflen, p, flags));
1330 1.7 mrg }
1331 1.7 mrg
1332 1.7 mrg void
1333 1.7 mrg psycho_dmamap_unload(t, map)
1334 1.7 mrg bus_dma_tag_t t;
1335 1.7 mrg bus_dmamap_t map;
1336 1.7 mrg {
1337 1.7 mrg struct psycho_pbm *pp = (struct psycho_pbm *)t->_cookie;
1338 1.7 mrg
1339 1.50 eeh iommu_dvmamap_unload(t, &pp->pp_sb, map);
1340 1.9 eeh }
1341 1.9 eeh
1342 1.9 eeh int
1343 1.10 mrg psycho_dmamap_load_raw(t, map, segs, nsegs, size, flags)
1344 1.10 mrg bus_dma_tag_t t;
1345 1.9 eeh bus_dmamap_t map;
1346 1.9 eeh bus_dma_segment_t *segs;
1347 1.9 eeh int nsegs;
1348 1.9 eeh bus_size_t size;
1349 1.9 eeh int flags;
1350 1.9 eeh {
1351 1.9 eeh struct psycho_pbm *pp = (struct psycho_pbm *)t->_cookie;
1352 1.9 eeh
1353 1.50 eeh return (iommu_dvmamap_load_raw(t, &pp->pp_sb, map, segs, nsegs, flags, size));
1354 1.7 mrg }
1355 1.7 mrg
1356 1.7 mrg void
1357 1.7 mrg psycho_dmamap_sync(t, map, offset, len, ops)
1358 1.7 mrg bus_dma_tag_t t;
1359 1.7 mrg bus_dmamap_t map;
1360 1.7 mrg bus_addr_t offset;
1361 1.7 mrg bus_size_t len;
1362 1.7 mrg int ops;
1363 1.7 mrg {
1364 1.7 mrg struct psycho_pbm *pp = (struct psycho_pbm *)t->_cookie;
1365 1.7 mrg
1366 1.13 eeh if (ops & (BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE)) {
1367 1.13 eeh /* Flush the CPU then the IOMMU */
1368 1.13 eeh bus_dmamap_sync(t->_parent, map, offset, len, ops);
1369 1.50 eeh iommu_dvmamap_sync(t, &pp->pp_sb, map, offset, len, ops);
1370 1.13 eeh }
1371 1.13 eeh if (ops & (BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE)) {
1372 1.13 eeh /* Flush the IOMMU then the CPU */
1373 1.50 eeh iommu_dvmamap_sync(t, &pp->pp_sb, map, offset, len, ops);
1374 1.13 eeh bus_dmamap_sync(t->_parent, map, offset, len, ops);
1375 1.13 eeh }
1376 1.13 eeh
1377 1.7 mrg }
1378 1.7 mrg
1379 1.7 mrg int
1380 1.7 mrg psycho_dmamem_alloc(t, size, alignment, boundary, segs, nsegs, rsegs, flags)
1381 1.7 mrg bus_dma_tag_t t;
1382 1.7 mrg bus_size_t size;
1383 1.7 mrg bus_size_t alignment;
1384 1.7 mrg bus_size_t boundary;
1385 1.7 mrg bus_dma_segment_t *segs;
1386 1.7 mrg int nsegs;
1387 1.7 mrg int *rsegs;
1388 1.7 mrg int flags;
1389 1.7 mrg {
1390 1.7 mrg struct psycho_pbm *pp = (struct psycho_pbm *)t->_cookie;
1391 1.7 mrg
1392 1.50 eeh return (iommu_dvmamem_alloc(t, &pp->pp_sb, size, alignment, boundary,
1393 1.7 mrg segs, nsegs, rsegs, flags));
1394 1.7 mrg }
1395 1.7 mrg
1396 1.7 mrg void
1397 1.7 mrg psycho_dmamem_free(t, segs, nsegs)
1398 1.7 mrg bus_dma_tag_t t;
1399 1.7 mrg bus_dma_segment_t *segs;
1400 1.7 mrg int nsegs;
1401 1.7 mrg {
1402 1.7 mrg struct psycho_pbm *pp = (struct psycho_pbm *)t->_cookie;
1403 1.7 mrg
1404 1.50 eeh iommu_dvmamem_free(t, &pp->pp_sb, segs, nsegs);
1405 1.7 mrg }
1406 1.7 mrg
1407 1.7 mrg int
1408 1.7 mrg psycho_dmamem_map(t, segs, nsegs, size, kvap, flags)
1409 1.7 mrg bus_dma_tag_t t;
1410 1.7 mrg bus_dma_segment_t *segs;
1411 1.7 mrg int nsegs;
1412 1.7 mrg size_t size;
1413 1.7 mrg caddr_t *kvap;
1414 1.7 mrg int flags;
1415 1.7 mrg {
1416 1.7 mrg struct psycho_pbm *pp = (struct psycho_pbm *)t->_cookie;
1417 1.7 mrg
1418 1.50 eeh return (iommu_dvmamem_map(t, &pp->pp_sb, segs, nsegs, size, kvap, flags));
1419 1.7 mrg }
1420 1.7 mrg
1421 1.7 mrg void
1422 1.7 mrg psycho_dmamem_unmap(t, kva, size)
1423 1.7 mrg bus_dma_tag_t t;
1424 1.7 mrg caddr_t kva;
1425 1.7 mrg size_t size;
1426 1.7 mrg {
1427 1.7 mrg struct psycho_pbm *pp = (struct psycho_pbm *)t->_cookie;
1428 1.7 mrg
1429 1.50 eeh iommu_dvmamem_unmap(t, &pp->pp_sb, kva, size);
1430 1.1 mrg }
1431