pciide.c revision 1.101 1 /* $NetBSD: pciide.c,v 1.101 2001/01/05 15:20:53 bouyer Exp $ */
2
3
4 /*
5 * Copyright (c) 1999 Manuel Bouyer.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. All advertising materials mentioning features or use of this software
16 * must display the following acknowledgement:
17 * This product includes software developed by the University of
18 * California, Berkeley and its contributors.
19 * 4. Neither the name of the University nor the names of its contributors
20 * may be used to endorse or promote products derived from this software
21 * without specific prior written permission.
22 *
23 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
24 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
25 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
26 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
27 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
28 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
29 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
30 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
31 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
32 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
33 *
34 */
35
36
37 /*
38 * Copyright (c) 1996, 1998 Christopher G. Demetriou. All rights reserved.
39 *
40 * Redistribution and use in source and binary forms, with or without
41 * modification, are permitted provided that the following conditions
42 * are met:
43 * 1. Redistributions of source code must retain the above copyright
44 * notice, this list of conditions and the following disclaimer.
45 * 2. Redistributions in binary form must reproduce the above copyright
46 * notice, this list of conditions and the following disclaimer in the
47 * documentation and/or other materials provided with the distribution.
48 * 3. All advertising materials mentioning features or use of this software
49 * must display the following acknowledgement:
50 * This product includes software developed by Christopher G. Demetriou
51 * for the NetBSD Project.
52 * 4. The name of the author may not be used to endorse or promote products
53 * derived from this software without specific prior written permission
54 *
55 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
56 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
57 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
58 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
59 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
60 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
61 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
62 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
63 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
64 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
65 */
66
67 /*
68 * PCI IDE controller driver.
69 *
70 * Author: Christopher G. Demetriou, March 2, 1998 (derived from NetBSD
71 * sys/dev/pci/ppb.c, revision 1.16).
72 *
73 * See "PCI IDE Controller Specification, Revision 1.0 3/4/94" and
74 * "Programming Interface for Bus Master IDE Controller, Revision 1.0
75 * 5/16/94" from the PCI SIG.
76 *
77 */
78
79 #ifndef WDCDEBUG
80 #define WDCDEBUG
81 #endif
82
83 #define DEBUG_DMA 0x01
84 #define DEBUG_XFERS 0x02
85 #define DEBUG_FUNCS 0x08
86 #define DEBUG_PROBE 0x10
87 #ifdef WDCDEBUG
88 int wdcdebug_pciide_mask = 0;
89 #define WDCDEBUG_PRINT(args, level) \
90 if (wdcdebug_pciide_mask & (level)) printf args
91 #else
92 #define WDCDEBUG_PRINT(args, level)
93 #endif
94 #include <sys/param.h>
95 #include <sys/systm.h>
96 #include <sys/device.h>
97 #include <sys/malloc.h>
98
99 #include <uvm/uvm_extern.h>
100
101 #include <machine/endian.h>
102
103 #include <dev/pci/pcireg.h>
104 #include <dev/pci/pcivar.h>
105 #include <dev/pci/pcidevs.h>
106 #include <dev/pci/pciidereg.h>
107 #include <dev/pci/pciidevar.h>
108 #include <dev/pci/pciide_piix_reg.h>
109 #include <dev/pci/pciide_amd_reg.h>
110 #include <dev/pci/pciide_apollo_reg.h>
111 #include <dev/pci/pciide_cmd_reg.h>
112 #include <dev/pci/pciide_cy693_reg.h>
113 #include <dev/pci/pciide_sis_reg.h>
114 #include <dev/pci/pciide_acer_reg.h>
115 #include <dev/pci/pciide_pdc202xx_reg.h>
116 #include <dev/pci/pciide_opti_reg.h>
117 #include <dev/pci/pciide_hpt_reg.h>
118 #include <dev/pci/cy82c693var.h>
119
120 #include "opt_pciide.h"
121
122 /* inlines for reading/writing 8-bit PCI registers */
123 static __inline u_int8_t pciide_pci_read __P((pci_chipset_tag_t, pcitag_t,
124 int));
125 static __inline void pciide_pci_write __P((pci_chipset_tag_t, pcitag_t,
126 int, u_int8_t));
127
128 static __inline u_int8_t
129 pciide_pci_read(pc, pa, reg)
130 pci_chipset_tag_t pc;
131 pcitag_t pa;
132 int reg;
133 {
134
135 return (pci_conf_read(pc, pa, (reg & ~0x03)) >>
136 ((reg & 0x03) * 8) & 0xff);
137 }
138
139 static __inline void
140 pciide_pci_write(pc, pa, reg, val)
141 pci_chipset_tag_t pc;
142 pcitag_t pa;
143 int reg;
144 u_int8_t val;
145 {
146 pcireg_t pcival;
147
148 pcival = pci_conf_read(pc, pa, (reg & ~0x03));
149 pcival &= ~(0xff << ((reg & 0x03) * 8));
150 pcival |= (val << ((reg & 0x03) * 8));
151 pci_conf_write(pc, pa, (reg & ~0x03), pcival);
152 }
153
154 void default_chip_map __P((struct pciide_softc*, struct pci_attach_args*));
155
156 void piix_chip_map __P((struct pciide_softc*, struct pci_attach_args*));
157 void piix_setup_channel __P((struct channel_softc*));
158 void piix3_4_setup_channel __P((struct channel_softc*));
159 static u_int32_t piix_setup_idetim_timings __P((u_int8_t, u_int8_t, u_int8_t));
160 static u_int32_t piix_setup_idetim_drvs __P((struct ata_drive_datas*));
161 static u_int32_t piix_setup_sidetim_timings __P((u_int8_t, u_int8_t, u_int8_t));
162
163 void amd756_chip_map __P((struct pciide_softc*, struct pci_attach_args*));
164 void amd756_setup_channel __P((struct channel_softc*));
165
166 void apollo_chip_map __P((struct pciide_softc*, struct pci_attach_args*));
167 void apollo_setup_channel __P((struct channel_softc*));
168
169 void cmd_chip_map __P((struct pciide_softc*, struct pci_attach_args*));
170 void cmd0643_9_chip_map __P((struct pciide_softc*, struct pci_attach_args*));
171 void cmd0643_9_setup_channel __P((struct channel_softc*));
172 void cmd_channel_map __P((struct pci_attach_args *,
173 struct pciide_softc *, int));
174 int cmd_pci_intr __P((void *));
175 void cmd646_9_irqack __P((struct channel_softc *));
176
177 void cy693_chip_map __P((struct pciide_softc*, struct pci_attach_args*));
178 void cy693_setup_channel __P((struct channel_softc*));
179
180 void sis_chip_map __P((struct pciide_softc*, struct pci_attach_args*));
181 void sis_setup_channel __P((struct channel_softc*));
182
183 void acer_chip_map __P((struct pciide_softc*, struct pci_attach_args*));
184 void acer_setup_channel __P((struct channel_softc*));
185 int acer_pci_intr __P((void *));
186
187 void pdc202xx_chip_map __P((struct pciide_softc*, struct pci_attach_args*));
188 void pdc202xx_setup_channel __P((struct channel_softc*));
189 int pdc202xx_pci_intr __P((void *));
190
191 void opti_chip_map __P((struct pciide_softc*, struct pci_attach_args*));
192 void opti_setup_channel __P((struct channel_softc*));
193
194 void hpt_chip_map __P((struct pciide_softc*, struct pci_attach_args*));
195 void hpt_setup_channel __P((struct channel_softc*));
196 int hpt_pci_intr __P((void *));
197
198 void pciide_channel_dma_setup __P((struct pciide_channel *));
199 int pciide_dma_table_setup __P((struct pciide_softc*, int, int));
200 int pciide_dma_init __P((void*, int, int, void *, size_t, int));
201 void pciide_dma_start __P((void*, int, int));
202 int pciide_dma_finish __P((void*, int, int, int));
203 void pciide_irqack __P((struct channel_softc *));
204 void pciide_print_modes __P((struct pciide_channel *));
205
206 struct pciide_product_desc {
207 u_int32_t ide_product;
208 int ide_flags;
209 const char *ide_name;
210 /* map and setup chip, probe drives */
211 void (*chip_map) __P((struct pciide_softc*, struct pci_attach_args*));
212 };
213
214 /* Flags for ide_flags */
215 #define IDE_PCI_CLASS_OVERRIDE 0x0001 /* accept even if class != pciide */
216 #define IDE_16BIT_IOSPACE 0x0002 /* I/O space BARS ignore upper word */
217
218 /* Default product description for devices not known from this controller */
219 const struct pciide_product_desc default_product_desc = {
220 0,
221 0,
222 "Generic PCI IDE controller",
223 default_chip_map,
224 };
225
226 const struct pciide_product_desc pciide_intel_products[] = {
227 { PCI_PRODUCT_INTEL_82092AA,
228 0,
229 "Intel 82092AA IDE controller",
230 default_chip_map,
231 },
232 { PCI_PRODUCT_INTEL_82371FB_IDE,
233 0,
234 "Intel 82371FB IDE controller (PIIX)",
235 piix_chip_map,
236 },
237 { PCI_PRODUCT_INTEL_82371SB_IDE,
238 0,
239 "Intel 82371SB IDE Interface (PIIX3)",
240 piix_chip_map,
241 },
242 { PCI_PRODUCT_INTEL_82371AB_IDE,
243 0,
244 "Intel 82371AB IDE controller (PIIX4)",
245 piix_chip_map,
246 },
247 { PCI_PRODUCT_INTEL_82440MX_IDE,
248 0,
249 "Intel 82440MX IDE controller",
250 piix_chip_map
251 },
252 { PCI_PRODUCT_INTEL_82801AA_IDE,
253 0,
254 "Intel 82801AA IDE Controller (ICH)",
255 piix_chip_map,
256 },
257 { PCI_PRODUCT_INTEL_82801AB_IDE,
258 0,
259 "Intel 82801AB IDE Controller (ICH0)",
260 piix_chip_map,
261 },
262 { PCI_PRODUCT_INTEL_82801BA_IDE,
263 0,
264 "Intel 82801BA IDE Controller (ICH2)",
265 piix_chip_map,
266 },
267 { 0,
268 0,
269 NULL,
270 }
271 };
272
273 const struct pciide_product_desc pciide_amd_products[] = {
274 { PCI_PRODUCT_AMD_PBC756_IDE,
275 0,
276 "Advanced Micro Devices AMD756 IDE Controller",
277 amd756_chip_map
278 },
279 { 0,
280 0,
281 NULL,
282 }
283 };
284
285 const struct pciide_product_desc pciide_cmd_products[] = {
286 { PCI_PRODUCT_CMDTECH_640,
287 0,
288 "CMD Technology PCI0640",
289 cmd_chip_map
290 },
291 { PCI_PRODUCT_CMDTECH_643,
292 0,
293 "CMD Technology PCI0643",
294 cmd0643_9_chip_map,
295 },
296 { PCI_PRODUCT_CMDTECH_646,
297 0,
298 "CMD Technology PCI0646",
299 cmd0643_9_chip_map,
300 },
301 { PCI_PRODUCT_CMDTECH_648,
302 IDE_PCI_CLASS_OVERRIDE,
303 "CMD Technology PCI0648",
304 cmd0643_9_chip_map,
305 },
306 { PCI_PRODUCT_CMDTECH_649,
307 IDE_PCI_CLASS_OVERRIDE,
308 "CMD Technology PCI0649",
309 cmd0643_9_chip_map,
310 },
311 { 0,
312 0,
313 NULL,
314 }
315 };
316
317 const struct pciide_product_desc pciide_via_products[] = {
318 { PCI_PRODUCT_VIATECH_VT82C586_IDE,
319 0,
320 "VIA Tech VT82C586 IDE Controller",
321 apollo_chip_map,
322 },
323 { PCI_PRODUCT_VIATECH_VT82C586A_IDE,
324 0,
325 "VIA Tech VT82C586A IDE Controller",
326 apollo_chip_map,
327 },
328 { 0,
329 0,
330 NULL,
331 }
332 };
333
334 const struct pciide_product_desc pciide_cypress_products[] = {
335 { PCI_PRODUCT_CONTAQ_82C693,
336 IDE_16BIT_IOSPACE,
337 "Cypress 82C693 IDE Controller",
338 cy693_chip_map,
339 },
340 { 0,
341 0,
342 NULL,
343 }
344 };
345
346 const struct pciide_product_desc pciide_sis_products[] = {
347 { PCI_PRODUCT_SIS_5597_IDE,
348 0,
349 "Silicon Integrated System 5597/5598 IDE controller",
350 sis_chip_map,
351 },
352 { 0,
353 0,
354 NULL,
355 }
356 };
357
358 const struct pciide_product_desc pciide_acer_products[] = {
359 { PCI_PRODUCT_ALI_M5229,
360 0,
361 "Acer Labs M5229 UDMA IDE Controller",
362 acer_chip_map,
363 },
364 { 0,
365 0,
366 NULL,
367 }
368 };
369
370 const struct pciide_product_desc pciide_promise_products[] = {
371 { PCI_PRODUCT_PROMISE_ULTRA33,
372 IDE_PCI_CLASS_OVERRIDE,
373 "Promise Ultra33/ATA Bus Master IDE Accelerator",
374 pdc202xx_chip_map,
375 },
376 { PCI_PRODUCT_PROMISE_ULTRA66,
377 IDE_PCI_CLASS_OVERRIDE,
378 "Promise Ultra66/ATA Bus Master IDE Accelerator",
379 pdc202xx_chip_map,
380 },
381 { PCI_PRODUCT_PROMISE_ULTRA100,
382 IDE_PCI_CLASS_OVERRIDE,
383 "Promise Ultra100/ATA Bus Master IDE Accelerator",
384 pdc202xx_chip_map,
385 },
386 { PCI_PRODUCT_PROMISE_ULTRA100X,
387 IDE_PCI_CLASS_OVERRIDE,
388 "Promise Ultra100/ATA Bus Master IDE Accelerator",
389 pdc202xx_chip_map,
390 },
391 { 0,
392 0,
393 NULL,
394 }
395 };
396
397 const struct pciide_product_desc pciide_opti_products[] = {
398 { PCI_PRODUCT_OPTI_82C621,
399 0,
400 "OPTi 82c621 PCI IDE controller",
401 opti_chip_map,
402 },
403 { PCI_PRODUCT_OPTI_82C568,
404 0,
405 "OPTi 82c568 (82c621 compatible) PCI IDE controller",
406 opti_chip_map,
407 },
408 { PCI_PRODUCT_OPTI_82D568,
409 0,
410 "OPTi 82d568 (82c621 compatible) PCI IDE controller",
411 opti_chip_map,
412 },
413 { 0,
414 0,
415 NULL,
416 }
417 };
418
419 const struct pciide_product_desc pciide_triones_products[] = {
420 { PCI_PRODUCT_TRIONES_HPT366,
421 IDE_PCI_CLASS_OVERRIDE,
422 "Triones/Highpoint HPT366/370 IDE Controller",
423 hpt_chip_map,
424 },
425 { 0,
426 0,
427 NULL,
428 }
429 };
430
431 struct pciide_vendor_desc {
432 u_int32_t ide_vendor;
433 const struct pciide_product_desc *ide_products;
434 };
435
436 const struct pciide_vendor_desc pciide_vendors[] = {
437 { PCI_VENDOR_INTEL, pciide_intel_products },
438 { PCI_VENDOR_CMDTECH, pciide_cmd_products },
439 { PCI_VENDOR_VIATECH, pciide_via_products },
440 { PCI_VENDOR_CONTAQ, pciide_cypress_products },
441 { PCI_VENDOR_SIS, pciide_sis_products },
442 { PCI_VENDOR_ALI, pciide_acer_products },
443 { PCI_VENDOR_PROMISE, pciide_promise_products },
444 { PCI_VENDOR_AMD, pciide_amd_products },
445 { PCI_VENDOR_OPTI, pciide_opti_products },
446 { PCI_VENDOR_TRIONES, pciide_triones_products },
447 { 0, NULL }
448 };
449
450 /* options passed via the 'flags' config keyword */
451 #define PCIIDE_OPTIONS_DMA 0x01
452
453 int pciide_match __P((struct device *, struct cfdata *, void *));
454 void pciide_attach __P((struct device *, struct device *, void *));
455
456 struct cfattach pciide_ca = {
457 sizeof(struct pciide_softc), pciide_match, pciide_attach
458 };
459 int pciide_chipen __P((struct pciide_softc *, struct pci_attach_args *));
460 int pciide_mapregs_compat __P(( struct pci_attach_args *,
461 struct pciide_channel *, int, bus_size_t *, bus_size_t*));
462 int pciide_mapregs_native __P((struct pci_attach_args *,
463 struct pciide_channel *, bus_size_t *, bus_size_t *,
464 int (*pci_intr) __P((void *))));
465 void pciide_mapreg_dma __P((struct pciide_softc *,
466 struct pci_attach_args *));
467 int pciide_chansetup __P((struct pciide_softc *, int, pcireg_t));
468 void pciide_mapchan __P((struct pci_attach_args *,
469 struct pciide_channel *, pcireg_t, bus_size_t *, bus_size_t *,
470 int (*pci_intr) __P((void *))));
471 int pciide_chan_candisable __P((struct pciide_channel *));
472 void pciide_map_compat_intr __P(( struct pci_attach_args *,
473 struct pciide_channel *, int, int));
474 int pciide_print __P((void *, const char *pnp));
475 int pciide_compat_intr __P((void *));
476 int pciide_pci_intr __P((void *));
477 const struct pciide_product_desc* pciide_lookup_product __P((u_int32_t));
478
479 const struct pciide_product_desc *
480 pciide_lookup_product(id)
481 u_int32_t id;
482 {
483 const struct pciide_product_desc *pp;
484 const struct pciide_vendor_desc *vp;
485
486 for (vp = pciide_vendors; vp->ide_products != NULL; vp++)
487 if (PCI_VENDOR(id) == vp->ide_vendor)
488 break;
489
490 if ((pp = vp->ide_products) == NULL)
491 return NULL;
492
493 for (; pp->ide_name != NULL; pp++)
494 if (PCI_PRODUCT(id) == pp->ide_product)
495 break;
496
497 if (pp->ide_name == NULL)
498 return NULL;
499 return pp;
500 }
501
502 int
503 pciide_match(parent, match, aux)
504 struct device *parent;
505 struct cfdata *match;
506 void *aux;
507 {
508 struct pci_attach_args *pa = aux;
509 const struct pciide_product_desc *pp;
510
511 /*
512 * Check the ID register to see that it's a PCI IDE controller.
513 * If it is, we assume that we can deal with it; it _should_
514 * work in a standardized way...
515 */
516 if (PCI_CLASS(pa->pa_class) == PCI_CLASS_MASS_STORAGE &&
517 PCI_SUBCLASS(pa->pa_class) == PCI_SUBCLASS_MASS_STORAGE_IDE) {
518 return (1);
519 }
520
521 /*
522 * Some controllers (e.g. promise Utra-33) don't claim to be PCI IDE
523 * controllers. Let see if we can deal with it anyway.
524 */
525 pp = pciide_lookup_product(pa->pa_id);
526 if (pp && (pp->ide_flags & IDE_PCI_CLASS_OVERRIDE)) {
527 return (1);
528 }
529
530 return (0);
531 }
532
533 void
534 pciide_attach(parent, self, aux)
535 struct device *parent, *self;
536 void *aux;
537 {
538 struct pci_attach_args *pa = aux;
539 pci_chipset_tag_t pc = pa->pa_pc;
540 pcitag_t tag = pa->pa_tag;
541 struct pciide_softc *sc = (struct pciide_softc *)self;
542 pcireg_t csr;
543 char devinfo[256];
544 const char *displaydev;
545
546 sc->sc_pp = pciide_lookup_product(pa->pa_id);
547 if (sc->sc_pp == NULL) {
548 sc->sc_pp = &default_product_desc;
549 pci_devinfo(pa->pa_id, pa->pa_class, 0, devinfo);
550 displaydev = devinfo;
551 } else
552 displaydev = sc->sc_pp->ide_name;
553
554 printf(": %s (rev. 0x%02x)\n", displaydev, PCI_REVISION(pa->pa_class));
555
556 sc->sc_pc = pa->pa_pc;
557 sc->sc_tag = pa->pa_tag;
558 #ifdef WDCDEBUG
559 if (wdcdebug_pciide_mask & DEBUG_PROBE)
560 pci_conf_print(sc->sc_pc, sc->sc_tag, NULL);
561 #endif
562 sc->sc_pp->chip_map(sc, pa);
563
564 if (sc->sc_dma_ok) {
565 csr = pci_conf_read(pc, tag, PCI_COMMAND_STATUS_REG);
566 csr |= PCI_COMMAND_MASTER_ENABLE;
567 pci_conf_write(pc, tag, PCI_COMMAND_STATUS_REG, csr);
568 }
569 WDCDEBUG_PRINT(("pciide: command/status register=%x\n",
570 pci_conf_read(pc, tag, PCI_COMMAND_STATUS_REG)), DEBUG_PROBE);
571 }
572
573 /* tell wether the chip is enabled or not */
574 int
575 pciide_chipen(sc, pa)
576 struct pciide_softc *sc;
577 struct pci_attach_args *pa;
578 {
579 pcireg_t csr;
580 if ((pa->pa_flags & PCI_FLAGS_IO_ENABLED) == 0) {
581 csr = pci_conf_read(sc->sc_pc, sc->sc_tag,
582 PCI_COMMAND_STATUS_REG);
583 printf("%s: device disabled (at %s)\n",
584 sc->sc_wdcdev.sc_dev.dv_xname,
585 (csr & PCI_COMMAND_IO_ENABLE) == 0 ?
586 "device" : "bridge");
587 return 0;
588 }
589 return 1;
590 }
591
592 int
593 pciide_mapregs_compat(pa, cp, compatchan, cmdsizep, ctlsizep)
594 struct pci_attach_args *pa;
595 struct pciide_channel *cp;
596 int compatchan;
597 bus_size_t *cmdsizep, *ctlsizep;
598 {
599 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
600 struct channel_softc *wdc_cp = &cp->wdc_channel;
601
602 cp->compat = 1;
603 *cmdsizep = PCIIDE_COMPAT_CMD_SIZE;
604 *ctlsizep = PCIIDE_COMPAT_CTL_SIZE;
605
606 wdc_cp->cmd_iot = pa->pa_iot;
607 if (bus_space_map(wdc_cp->cmd_iot, PCIIDE_COMPAT_CMD_BASE(compatchan),
608 PCIIDE_COMPAT_CMD_SIZE, 0, &wdc_cp->cmd_ioh) != 0) {
609 printf("%s: couldn't map %s channel cmd regs\n",
610 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
611 return (0);
612 }
613
614 wdc_cp->ctl_iot = pa->pa_iot;
615 if (bus_space_map(wdc_cp->ctl_iot, PCIIDE_COMPAT_CTL_BASE(compatchan),
616 PCIIDE_COMPAT_CTL_SIZE, 0, &wdc_cp->ctl_ioh) != 0) {
617 printf("%s: couldn't map %s channel ctl regs\n",
618 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
619 bus_space_unmap(wdc_cp->cmd_iot, wdc_cp->cmd_ioh,
620 PCIIDE_COMPAT_CMD_SIZE);
621 return (0);
622 }
623
624 return (1);
625 }
626
627 int
628 pciide_mapregs_native(pa, cp, cmdsizep, ctlsizep, pci_intr)
629 struct pci_attach_args * pa;
630 struct pciide_channel *cp;
631 bus_size_t *cmdsizep, *ctlsizep;
632 int (*pci_intr) __P((void *));
633 {
634 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
635 struct channel_softc *wdc_cp = &cp->wdc_channel;
636 const char *intrstr;
637 pci_intr_handle_t intrhandle;
638
639 cp->compat = 0;
640
641 if (sc->sc_pci_ih == NULL) {
642 if (pci_intr_map(pa, &intrhandle) != 0) {
643 printf("%s: couldn't map native-PCI interrupt\n",
644 sc->sc_wdcdev.sc_dev.dv_xname);
645 return 0;
646 }
647 intrstr = pci_intr_string(pa->pa_pc, intrhandle);
648 sc->sc_pci_ih = pci_intr_establish(pa->pa_pc,
649 intrhandle, IPL_BIO, pci_intr, sc);
650 if (sc->sc_pci_ih != NULL) {
651 printf("%s: using %s for native-PCI interrupt\n",
652 sc->sc_wdcdev.sc_dev.dv_xname,
653 intrstr ? intrstr : "unknown interrupt");
654 } else {
655 printf("%s: couldn't establish native-PCI interrupt",
656 sc->sc_wdcdev.sc_dev.dv_xname);
657 if (intrstr != NULL)
658 printf(" at %s", intrstr);
659 printf("\n");
660 return 0;
661 }
662 }
663 cp->ih = sc->sc_pci_ih;
664 if (pci_mapreg_map(pa, PCIIDE_REG_CMD_BASE(wdc_cp->channel),
665 PCI_MAPREG_TYPE_IO, 0,
666 &wdc_cp->cmd_iot, &wdc_cp->cmd_ioh, NULL, cmdsizep) != 0) {
667 printf("%s: couldn't map %s channel cmd regs\n",
668 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
669 return 0;
670 }
671
672 if (pci_mapreg_map(pa, PCIIDE_REG_CTL_BASE(wdc_cp->channel),
673 PCI_MAPREG_TYPE_IO, 0,
674 &wdc_cp->ctl_iot, &wdc_cp->ctl_ioh, NULL, ctlsizep) != 0) {
675 printf("%s: couldn't map %s channel ctl regs\n",
676 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
677 bus_space_unmap(wdc_cp->cmd_iot, wdc_cp->cmd_ioh, *cmdsizep);
678 return 0;
679 }
680 return (1);
681 }
682
683 void
684 pciide_mapreg_dma(sc, pa)
685 struct pciide_softc *sc;
686 struct pci_attach_args *pa;
687 {
688 pcireg_t maptype;
689 bus_addr_t addr;
690
691 /*
692 * Map DMA registers
693 *
694 * Note that sc_dma_ok is the right variable to test to see if
695 * DMA can be done. If the interface doesn't support DMA,
696 * sc_dma_ok will never be non-zero. If the DMA regs couldn't
697 * be mapped, it'll be zero. I.e., sc_dma_ok will only be
698 * non-zero if the interface supports DMA and the registers
699 * could be mapped.
700 *
701 * XXX Note that despite the fact that the Bus Master IDE specs
702 * XXX say that "The bus master IDE function uses 16 bytes of IO
703 * XXX space," some controllers (at least the United
704 * XXX Microelectronics UM8886BF) place it in memory space.
705 */
706 maptype = pci_mapreg_type(pa->pa_pc, pa->pa_tag,
707 PCIIDE_REG_BUS_MASTER_DMA);
708
709 switch (maptype) {
710 case PCI_MAPREG_TYPE_IO:
711 sc->sc_dma_ok = (pci_mapreg_info(pa->pa_pc, pa->pa_tag,
712 PCIIDE_REG_BUS_MASTER_DMA, PCI_MAPREG_TYPE_IO,
713 &addr, NULL, NULL) == 0);
714 if (sc->sc_dma_ok == 0) {
715 printf(", but unused (couldn't query registers)");
716 break;
717 }
718 if ((sc->sc_pp->ide_flags & IDE_16BIT_IOSPACE)
719 && addr >= 0x10000) {
720 sc->sc_dma_ok = 0;
721 printf(", but unused (registers at unsafe address %#lx)", (unsigned long)addr);
722 break;
723 }
724 /* FALLTHROUGH */
725
726 case PCI_MAPREG_MEM_TYPE_32BIT:
727 sc->sc_dma_ok = (pci_mapreg_map(pa,
728 PCIIDE_REG_BUS_MASTER_DMA, maptype, 0,
729 &sc->sc_dma_iot, &sc->sc_dma_ioh, NULL, NULL) == 0);
730 sc->sc_dmat = pa->pa_dmat;
731 if (sc->sc_dma_ok == 0) {
732 printf(", but unused (couldn't map registers)");
733 } else {
734 sc->sc_wdcdev.dma_arg = sc;
735 sc->sc_wdcdev.dma_init = pciide_dma_init;
736 sc->sc_wdcdev.dma_start = pciide_dma_start;
737 sc->sc_wdcdev.dma_finish = pciide_dma_finish;
738 }
739 break;
740
741 default:
742 sc->sc_dma_ok = 0;
743 printf(", but unsupported register maptype (0x%x)", maptype);
744 }
745 }
746
747 int
748 pciide_compat_intr(arg)
749 void *arg;
750 {
751 struct pciide_channel *cp = arg;
752
753 #ifdef DIAGNOSTIC
754 /* should only be called for a compat channel */
755 if (cp->compat == 0)
756 panic("pciide compat intr called for non-compat chan %p\n", cp);
757 #endif
758 return (wdcintr(&cp->wdc_channel));
759 }
760
761 int
762 pciide_pci_intr(arg)
763 void *arg;
764 {
765 struct pciide_softc *sc = arg;
766 struct pciide_channel *cp;
767 struct channel_softc *wdc_cp;
768 int i, rv, crv;
769
770 rv = 0;
771 for (i = 0; i < sc->sc_wdcdev.nchannels; i++) {
772 cp = &sc->pciide_channels[i];
773 wdc_cp = &cp->wdc_channel;
774
775 /* If a compat channel skip. */
776 if (cp->compat)
777 continue;
778 /* if this channel not waiting for intr, skip */
779 if ((wdc_cp->ch_flags & WDCF_IRQ_WAIT) == 0)
780 continue;
781
782 crv = wdcintr(wdc_cp);
783 if (crv == 0)
784 ; /* leave rv alone */
785 else if (crv == 1)
786 rv = 1; /* claim the intr */
787 else if (rv == 0) /* crv should be -1 in this case */
788 rv = crv; /* if we've done no better, take it */
789 }
790 return (rv);
791 }
792
793 void
794 pciide_channel_dma_setup(cp)
795 struct pciide_channel *cp;
796 {
797 int drive;
798 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
799 struct ata_drive_datas *drvp;
800
801 for (drive = 0; drive < 2; drive++) {
802 drvp = &cp->wdc_channel.ch_drive[drive];
803 /* If no drive, skip */
804 if ((drvp->drive_flags & DRIVE) == 0)
805 continue;
806 /* setup DMA if needed */
807 if (((drvp->drive_flags & DRIVE_DMA) == 0 &&
808 (drvp->drive_flags & DRIVE_UDMA) == 0) ||
809 sc->sc_dma_ok == 0) {
810 drvp->drive_flags &= ~(DRIVE_DMA | DRIVE_UDMA);
811 continue;
812 }
813 if (pciide_dma_table_setup(sc, cp->wdc_channel.channel, drive)
814 != 0) {
815 /* Abort DMA setup */
816 drvp->drive_flags &= ~(DRIVE_DMA | DRIVE_UDMA);
817 continue;
818 }
819 }
820 }
821
822 int
823 pciide_dma_table_setup(sc, channel, drive)
824 struct pciide_softc *sc;
825 int channel, drive;
826 {
827 bus_dma_segment_t seg;
828 int error, rseg;
829 const bus_size_t dma_table_size =
830 sizeof(struct idedma_table) * NIDEDMA_TABLES;
831 struct pciide_dma_maps *dma_maps =
832 &sc->pciide_channels[channel].dma_maps[drive];
833
834 /* If table was already allocated, just return */
835 if (dma_maps->dma_table)
836 return 0;
837
838 /* Allocate memory for the DMA tables and map it */
839 if ((error = bus_dmamem_alloc(sc->sc_dmat, dma_table_size,
840 IDEDMA_TBL_ALIGN, IDEDMA_TBL_ALIGN, &seg, 1, &rseg,
841 BUS_DMA_NOWAIT)) != 0) {
842 printf("%s:%d: unable to allocate table DMA for "
843 "drive %d, error=%d\n", sc->sc_wdcdev.sc_dev.dv_xname,
844 channel, drive, error);
845 return error;
846 }
847 if ((error = bus_dmamem_map(sc->sc_dmat, &seg, rseg,
848 dma_table_size,
849 (caddr_t *)&dma_maps->dma_table,
850 BUS_DMA_NOWAIT|BUS_DMA_COHERENT)) != 0) {
851 printf("%s:%d: unable to map table DMA for"
852 "drive %d, error=%d\n", sc->sc_wdcdev.sc_dev.dv_xname,
853 channel, drive, error);
854 return error;
855 }
856 WDCDEBUG_PRINT(("pciide_dma_table_setup: table at %p len %lu, "
857 "phy 0x%lx\n", dma_maps->dma_table, (u_long)dma_table_size,
858 (unsigned long)seg.ds_addr), DEBUG_PROBE);
859
860 /* Create and load table DMA map for this disk */
861 if ((error = bus_dmamap_create(sc->sc_dmat, dma_table_size,
862 1, dma_table_size, IDEDMA_TBL_ALIGN, BUS_DMA_NOWAIT,
863 &dma_maps->dmamap_table)) != 0) {
864 printf("%s:%d: unable to create table DMA map for "
865 "drive %d, error=%d\n", sc->sc_wdcdev.sc_dev.dv_xname,
866 channel, drive, error);
867 return error;
868 }
869 if ((error = bus_dmamap_load(sc->sc_dmat,
870 dma_maps->dmamap_table,
871 dma_maps->dma_table,
872 dma_table_size, NULL, BUS_DMA_NOWAIT)) != 0) {
873 printf("%s:%d: unable to load table DMA map for "
874 "drive %d, error=%d\n", sc->sc_wdcdev.sc_dev.dv_xname,
875 channel, drive, error);
876 return error;
877 }
878 WDCDEBUG_PRINT(("pciide_dma_table_setup: phy addr of table 0x%lx\n",
879 (unsigned long)dma_maps->dmamap_table->dm_segs[0].ds_addr),
880 DEBUG_PROBE);
881 /* Create a xfer DMA map for this drive */
882 if ((error = bus_dmamap_create(sc->sc_dmat, IDEDMA_BYTE_COUNT_MAX,
883 NIDEDMA_TABLES, IDEDMA_BYTE_COUNT_MAX, IDEDMA_BYTE_COUNT_ALIGN,
884 BUS_DMA_NOWAIT | BUS_DMA_ALLOCNOW,
885 &dma_maps->dmamap_xfer)) != 0) {
886 printf("%s:%d: unable to create xfer DMA map for "
887 "drive %d, error=%d\n", sc->sc_wdcdev.sc_dev.dv_xname,
888 channel, drive, error);
889 return error;
890 }
891 return 0;
892 }
893
894 int
895 pciide_dma_init(v, channel, drive, databuf, datalen, flags)
896 void *v;
897 int channel, drive;
898 void *databuf;
899 size_t datalen;
900 int flags;
901 {
902 struct pciide_softc *sc = v;
903 int error, seg;
904 struct pciide_dma_maps *dma_maps =
905 &sc->pciide_channels[channel].dma_maps[drive];
906
907 error = bus_dmamap_load(sc->sc_dmat,
908 dma_maps->dmamap_xfer,
909 databuf, datalen, NULL, BUS_DMA_NOWAIT);
910 if (error) {
911 printf("%s:%d: unable to load xfer DMA map for"
912 "drive %d, error=%d\n", sc->sc_wdcdev.sc_dev.dv_xname,
913 channel, drive, error);
914 return error;
915 }
916
917 bus_dmamap_sync(sc->sc_dmat, dma_maps->dmamap_xfer, 0,
918 dma_maps->dmamap_xfer->dm_mapsize,
919 (flags & WDC_DMA_READ) ?
920 BUS_DMASYNC_PREREAD : BUS_DMASYNC_PREWRITE);
921
922 for (seg = 0; seg < dma_maps->dmamap_xfer->dm_nsegs; seg++) {
923 #ifdef DIAGNOSTIC
924 /* A segment must not cross a 64k boundary */
925 {
926 u_long phys = dma_maps->dmamap_xfer->dm_segs[seg].ds_addr;
927 u_long len = dma_maps->dmamap_xfer->dm_segs[seg].ds_len;
928 if ((phys & ~IDEDMA_BYTE_COUNT_MASK) !=
929 ((phys + len - 1) & ~IDEDMA_BYTE_COUNT_MASK)) {
930 printf("pciide_dma: segment %d physical addr 0x%lx"
931 " len 0x%lx not properly aligned\n",
932 seg, phys, len);
933 panic("pciide_dma: buf align");
934 }
935 }
936 #endif
937 dma_maps->dma_table[seg].base_addr =
938 htole32(dma_maps->dmamap_xfer->dm_segs[seg].ds_addr);
939 dma_maps->dma_table[seg].byte_count =
940 htole32(dma_maps->dmamap_xfer->dm_segs[seg].ds_len &
941 IDEDMA_BYTE_COUNT_MASK);
942 WDCDEBUG_PRINT(("\t seg %d len %d addr 0x%x\n",
943 seg, le32toh(dma_maps->dma_table[seg].byte_count),
944 le32toh(dma_maps->dma_table[seg].base_addr)), DEBUG_DMA);
945
946 }
947 dma_maps->dma_table[dma_maps->dmamap_xfer->dm_nsegs -1].byte_count |=
948 htole32(IDEDMA_BYTE_COUNT_EOT);
949
950 bus_dmamap_sync(sc->sc_dmat, dma_maps->dmamap_table, 0,
951 dma_maps->dmamap_table->dm_mapsize,
952 BUS_DMASYNC_PREWRITE);
953
954 /* Maps are ready. Start DMA function */
955 #ifdef DIAGNOSTIC
956 if (dma_maps->dmamap_table->dm_segs[0].ds_addr & ~IDEDMA_TBL_MASK) {
957 printf("pciide_dma_init: addr 0x%lx not properly aligned\n",
958 (u_long)dma_maps->dmamap_table->dm_segs[0].ds_addr);
959 panic("pciide_dma_init: table align");
960 }
961 #endif
962
963 /* Clear status bits */
964 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
965 IDEDMA_CTL + IDEDMA_SCH_OFFSET * channel,
966 bus_space_read_1(sc->sc_dma_iot, sc->sc_dma_ioh,
967 IDEDMA_CTL + IDEDMA_SCH_OFFSET * channel));
968 /* Write table addr */
969 bus_space_write_4(sc->sc_dma_iot, sc->sc_dma_ioh,
970 IDEDMA_TBL + IDEDMA_SCH_OFFSET * channel,
971 dma_maps->dmamap_table->dm_segs[0].ds_addr);
972 /* set read/write */
973 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
974 IDEDMA_CMD + IDEDMA_SCH_OFFSET * channel,
975 (flags & WDC_DMA_READ) ? IDEDMA_CMD_WRITE: 0);
976 /* remember flags */
977 dma_maps->dma_flags = flags;
978 return 0;
979 }
980
981 void
982 pciide_dma_start(v, channel, drive)
983 void *v;
984 int channel, drive;
985 {
986 struct pciide_softc *sc = v;
987
988 WDCDEBUG_PRINT(("pciide_dma_start\n"),DEBUG_XFERS);
989 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
990 IDEDMA_CMD + IDEDMA_SCH_OFFSET * channel,
991 bus_space_read_1(sc->sc_dma_iot, sc->sc_dma_ioh,
992 IDEDMA_CMD + IDEDMA_SCH_OFFSET * channel) | IDEDMA_CMD_START);
993 }
994
995 int
996 pciide_dma_finish(v, channel, drive, force)
997 void *v;
998 int channel, drive;
999 int force;
1000 {
1001 struct pciide_softc *sc = v;
1002 u_int8_t status;
1003 int error = 0;
1004 struct pciide_dma_maps *dma_maps =
1005 &sc->pciide_channels[channel].dma_maps[drive];
1006
1007 status = bus_space_read_1(sc->sc_dma_iot, sc->sc_dma_ioh,
1008 IDEDMA_CTL + IDEDMA_SCH_OFFSET * channel);
1009 WDCDEBUG_PRINT(("pciide_dma_finish: status 0x%x\n", status),
1010 DEBUG_XFERS);
1011
1012 if (force == 0 && (status & IDEDMA_CTL_INTR) == 0)
1013 return WDC_DMAST_NOIRQ;
1014
1015 /* stop DMA channel */
1016 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
1017 IDEDMA_CMD + IDEDMA_SCH_OFFSET * channel,
1018 bus_space_read_1(sc->sc_dma_iot, sc->sc_dma_ioh,
1019 IDEDMA_CMD + IDEDMA_SCH_OFFSET * channel) & ~IDEDMA_CMD_START);
1020
1021 /* Unload the map of the data buffer */
1022 bus_dmamap_sync(sc->sc_dmat, dma_maps->dmamap_xfer, 0,
1023 dma_maps->dmamap_xfer->dm_mapsize,
1024 (dma_maps->dma_flags & WDC_DMA_READ) ?
1025 BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
1026 bus_dmamap_unload(sc->sc_dmat, dma_maps->dmamap_xfer);
1027
1028 if ((status & IDEDMA_CTL_ERR) != 0) {
1029 printf("%s:%d:%d: bus-master DMA error: status=0x%x\n",
1030 sc->sc_wdcdev.sc_dev.dv_xname, channel, drive, status);
1031 error |= WDC_DMAST_ERR;
1032 }
1033
1034 if ((status & IDEDMA_CTL_INTR) == 0) {
1035 printf("%s:%d:%d: bus-master DMA error: missing interrupt, "
1036 "status=0x%x\n", sc->sc_wdcdev.sc_dev.dv_xname, channel,
1037 drive, status);
1038 error |= WDC_DMAST_NOIRQ;
1039 }
1040
1041 if ((status & IDEDMA_CTL_ACT) != 0) {
1042 /* data underrun, may be a valid condition for ATAPI */
1043 error |= WDC_DMAST_UNDER;
1044 }
1045 return error;
1046 }
1047
1048 void
1049 pciide_irqack(chp)
1050 struct channel_softc *chp;
1051 {
1052 struct pciide_channel *cp = (struct pciide_channel*)chp;
1053 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
1054
1055 /* clear status bits in IDE DMA registers */
1056 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
1057 IDEDMA_CTL + IDEDMA_SCH_OFFSET * chp->channel,
1058 bus_space_read_1(sc->sc_dma_iot, sc->sc_dma_ioh,
1059 IDEDMA_CTL + IDEDMA_SCH_OFFSET * chp->channel));
1060 }
1061
1062 /* some common code used by several chip_map */
1063 int
1064 pciide_chansetup(sc, channel, interface)
1065 struct pciide_softc *sc;
1066 int channel;
1067 pcireg_t interface;
1068 {
1069 struct pciide_channel *cp = &sc->pciide_channels[channel];
1070 sc->wdc_chanarray[channel] = &cp->wdc_channel;
1071 cp->name = PCIIDE_CHANNEL_NAME(channel);
1072 cp->wdc_channel.channel = channel;
1073 cp->wdc_channel.wdc = &sc->sc_wdcdev;
1074 cp->wdc_channel.ch_queue =
1075 malloc(sizeof(struct channel_queue), M_DEVBUF, M_NOWAIT);
1076 if (cp->wdc_channel.ch_queue == NULL) {
1077 printf("%s %s channel: "
1078 "can't allocate memory for command queue",
1079 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
1080 return 0;
1081 }
1082 printf("%s: %s channel %s to %s mode\n",
1083 sc->sc_wdcdev.sc_dev.dv_xname, cp->name,
1084 (interface & PCIIDE_INTERFACE_SETTABLE(channel)) ?
1085 "configured" : "wired",
1086 (interface & PCIIDE_INTERFACE_PCI(channel)) ?
1087 "native-PCI" : "compatibility");
1088 return 1;
1089 }
1090
1091 /* some common code used by several chip channel_map */
1092 void
1093 pciide_mapchan(pa, cp, interface, cmdsizep, ctlsizep, pci_intr)
1094 struct pci_attach_args *pa;
1095 struct pciide_channel *cp;
1096 pcireg_t interface;
1097 bus_size_t *cmdsizep, *ctlsizep;
1098 int (*pci_intr) __P((void *));
1099 {
1100 struct channel_softc *wdc_cp = &cp->wdc_channel;
1101
1102 if (interface & PCIIDE_INTERFACE_PCI(wdc_cp->channel))
1103 cp->hw_ok = pciide_mapregs_native(pa, cp, cmdsizep, ctlsizep,
1104 pci_intr);
1105 else
1106 cp->hw_ok = pciide_mapregs_compat(pa, cp,
1107 wdc_cp->channel, cmdsizep, ctlsizep);
1108
1109 if (cp->hw_ok == 0)
1110 return;
1111 wdc_cp->data32iot = wdc_cp->cmd_iot;
1112 wdc_cp->data32ioh = wdc_cp->cmd_ioh;
1113 wdcattach(wdc_cp);
1114 }
1115
1116 /*
1117 * Generic code to call to know if a channel can be disabled. Return 1
1118 * if channel can be disabled, 0 if not
1119 */
1120 int
1121 pciide_chan_candisable(cp)
1122 struct pciide_channel *cp;
1123 {
1124 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
1125 struct channel_softc *wdc_cp = &cp->wdc_channel;
1126
1127 if ((wdc_cp->ch_drive[0].drive_flags & DRIVE) == 0 &&
1128 (wdc_cp->ch_drive[1].drive_flags & DRIVE) == 0) {
1129 printf("%s: disabling %s channel (no drives)\n",
1130 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
1131 cp->hw_ok = 0;
1132 return 1;
1133 }
1134 return 0;
1135 }
1136
1137 /*
1138 * generic code to map the compat intr if hw_ok=1 and it is a compat channel.
1139 * Set hw_ok=0 on failure
1140 */
1141 void
1142 pciide_map_compat_intr(pa, cp, compatchan, interface)
1143 struct pci_attach_args *pa;
1144 struct pciide_channel *cp;
1145 int compatchan, interface;
1146 {
1147 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
1148 struct channel_softc *wdc_cp = &cp->wdc_channel;
1149
1150 if (cp->hw_ok == 0)
1151 return;
1152 if ((interface & PCIIDE_INTERFACE_PCI(wdc_cp->channel)) != 0)
1153 return;
1154
1155 cp->ih = pciide_machdep_compat_intr_establish(&sc->sc_wdcdev.sc_dev,
1156 pa, compatchan, pciide_compat_intr, cp);
1157 if (cp->ih == NULL) {
1158 printf("%s: no compatibility interrupt for use by %s "
1159 "channel\n", sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
1160 cp->hw_ok = 0;
1161 }
1162 }
1163
1164 void
1165 pciide_print_modes(cp)
1166 struct pciide_channel *cp;
1167 {
1168 wdc_print_modes(&cp->wdc_channel);
1169 }
1170
1171 void
1172 default_chip_map(sc, pa)
1173 struct pciide_softc *sc;
1174 struct pci_attach_args *pa;
1175 {
1176 struct pciide_channel *cp;
1177 pcireg_t interface = PCI_INTERFACE(pa->pa_class);
1178 pcireg_t csr;
1179 int channel, drive;
1180 struct ata_drive_datas *drvp;
1181 u_int8_t idedma_ctl;
1182 bus_size_t cmdsize, ctlsize;
1183 char *failreason;
1184
1185 if (pciide_chipen(sc, pa) == 0)
1186 return;
1187
1188 if (interface & PCIIDE_INTERFACE_BUS_MASTER_DMA) {
1189 printf("%s: bus-master DMA support present",
1190 sc->sc_wdcdev.sc_dev.dv_xname);
1191 if (sc->sc_pp == &default_product_desc &&
1192 (sc->sc_wdcdev.sc_dev.dv_cfdata->cf_flags &
1193 PCIIDE_OPTIONS_DMA) == 0) {
1194 printf(", but unused (no driver support)");
1195 sc->sc_dma_ok = 0;
1196 } else {
1197 pciide_mapreg_dma(sc, pa);
1198 if (sc->sc_dma_ok != 0)
1199 printf(", used without full driver "
1200 "support");
1201 }
1202 } else {
1203 printf("%s: hardware does not support DMA",
1204 sc->sc_wdcdev.sc_dev.dv_xname);
1205 sc->sc_dma_ok = 0;
1206 }
1207 printf("\n");
1208 if (sc->sc_dma_ok) {
1209 sc->sc_wdcdev.cap |= WDC_CAPABILITY_DMA | WDC_CAPABILITY_IRQACK;
1210 sc->sc_wdcdev.irqack = pciide_irqack;
1211 }
1212 sc->sc_wdcdev.PIO_cap = 0;
1213 sc->sc_wdcdev.DMA_cap = 0;
1214
1215 sc->sc_wdcdev.channels = sc->wdc_chanarray;
1216 sc->sc_wdcdev.nchannels = PCIIDE_NUM_CHANNELS;
1217 sc->sc_wdcdev.cap |= WDC_CAPABILITY_DATA16;
1218
1219 for (channel = 0; channel < sc->sc_wdcdev.nchannels; channel++) {
1220 cp = &sc->pciide_channels[channel];
1221 if (pciide_chansetup(sc, channel, interface) == 0)
1222 continue;
1223 if (interface & PCIIDE_INTERFACE_PCI(channel)) {
1224 cp->hw_ok = pciide_mapregs_native(pa, cp, &cmdsize,
1225 &ctlsize, pciide_pci_intr);
1226 } else {
1227 cp->hw_ok = pciide_mapregs_compat(pa, cp,
1228 channel, &cmdsize, &ctlsize);
1229 }
1230 if (cp->hw_ok == 0)
1231 continue;
1232 /*
1233 * Check to see if something appears to be there.
1234 */
1235 failreason = NULL;
1236 if (!wdcprobe(&cp->wdc_channel)) {
1237 failreason = "not responding; disabled or no drives?";
1238 goto next;
1239 }
1240 /*
1241 * Now, make sure it's actually attributable to this PCI IDE
1242 * channel by trying to access the channel again while the
1243 * PCI IDE controller's I/O space is disabled. (If the
1244 * channel no longer appears to be there, it belongs to
1245 * this controller.) YUCK!
1246 */
1247 csr = pci_conf_read(sc->sc_pc, sc->sc_tag,
1248 PCI_COMMAND_STATUS_REG);
1249 pci_conf_write(sc->sc_pc, sc->sc_tag, PCI_COMMAND_STATUS_REG,
1250 csr & ~PCI_COMMAND_IO_ENABLE);
1251 if (wdcprobe(&cp->wdc_channel))
1252 failreason = "other hardware responding at addresses";
1253 pci_conf_write(sc->sc_pc, sc->sc_tag,
1254 PCI_COMMAND_STATUS_REG, csr);
1255 next:
1256 if (failreason) {
1257 printf("%s: %s channel ignored (%s)\n",
1258 sc->sc_wdcdev.sc_dev.dv_xname, cp->name,
1259 failreason);
1260 cp->hw_ok = 0;
1261 bus_space_unmap(cp->wdc_channel.cmd_iot,
1262 cp->wdc_channel.cmd_ioh, cmdsize);
1263 bus_space_unmap(cp->wdc_channel.ctl_iot,
1264 cp->wdc_channel.ctl_ioh, ctlsize);
1265 } else {
1266 pciide_map_compat_intr(pa, cp, channel, interface);
1267 }
1268 if (cp->hw_ok) {
1269 cp->wdc_channel.data32iot = cp->wdc_channel.cmd_iot;
1270 cp->wdc_channel.data32ioh = cp->wdc_channel.cmd_ioh;
1271 wdcattach(&cp->wdc_channel);
1272 }
1273 }
1274
1275 if (sc->sc_dma_ok == 0)
1276 return;
1277
1278 /* Allocate DMA maps */
1279 for (channel = 0; channel < sc->sc_wdcdev.nchannels; channel++) {
1280 idedma_ctl = 0;
1281 cp = &sc->pciide_channels[channel];
1282 for (drive = 0; drive < 2; drive++) {
1283 drvp = &cp->wdc_channel.ch_drive[drive];
1284 /* If no drive, skip */
1285 if ((drvp->drive_flags & DRIVE) == 0)
1286 continue;
1287 if ((drvp->drive_flags & DRIVE_DMA) == 0)
1288 continue;
1289 if (pciide_dma_table_setup(sc, channel, drive) != 0) {
1290 /* Abort DMA setup */
1291 printf("%s:%d:%d: can't allocate DMA maps, "
1292 "using PIO transfers\n",
1293 sc->sc_wdcdev.sc_dev.dv_xname,
1294 channel, drive);
1295 drvp->drive_flags &= ~DRIVE_DMA;
1296 }
1297 printf("%s:%d:%d: using DMA data transfers\n",
1298 sc->sc_wdcdev.sc_dev.dv_xname,
1299 channel, drive);
1300 idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
1301 }
1302 if (idedma_ctl != 0) {
1303 /* Add software bits in status register */
1304 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
1305 IDEDMA_CTL + (IDEDMA_SCH_OFFSET * channel),
1306 idedma_ctl);
1307 }
1308 }
1309 }
1310
1311 void
1312 piix_chip_map(sc, pa)
1313 struct pciide_softc *sc;
1314 struct pci_attach_args *pa;
1315 {
1316 struct pciide_channel *cp;
1317 int channel;
1318 u_int32_t idetim;
1319 bus_size_t cmdsize, ctlsize;
1320
1321 if (pciide_chipen(sc, pa) == 0)
1322 return;
1323
1324 printf("%s: bus-master DMA support present",
1325 sc->sc_wdcdev.sc_dev.dv_xname);
1326 pciide_mapreg_dma(sc, pa);
1327 printf("\n");
1328 sc->sc_wdcdev.cap |= WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32 |
1329 WDC_CAPABILITY_MODE;
1330 if (sc->sc_dma_ok) {
1331 sc->sc_wdcdev.cap |= WDC_CAPABILITY_DMA | WDC_CAPABILITY_IRQACK;
1332 sc->sc_wdcdev.irqack = pciide_irqack;
1333 switch(sc->sc_pp->ide_product) {
1334 case PCI_PRODUCT_INTEL_82371AB_IDE:
1335 case PCI_PRODUCT_INTEL_82440MX_IDE:
1336 case PCI_PRODUCT_INTEL_82801AA_IDE:
1337 case PCI_PRODUCT_INTEL_82801AB_IDE:
1338 case PCI_PRODUCT_INTEL_82801BA_IDE:
1339 sc->sc_wdcdev.cap |= WDC_CAPABILITY_UDMA;
1340 }
1341 }
1342 sc->sc_wdcdev.PIO_cap = 4;
1343 sc->sc_wdcdev.DMA_cap = 2;
1344 switch(sc->sc_pp->ide_product) {
1345 case PCI_PRODUCT_INTEL_82801AA_IDE:
1346 case PCI_PRODUCT_INTEL_82801BA_IDE:
1347 sc->sc_wdcdev.UDMA_cap = 4;
1348 break;
1349 default:
1350 sc->sc_wdcdev.UDMA_cap = 2;
1351 }
1352 if (sc->sc_pp->ide_product == PCI_PRODUCT_INTEL_82371FB_IDE)
1353 sc->sc_wdcdev.set_modes = piix_setup_channel;
1354 else
1355 sc->sc_wdcdev.set_modes = piix3_4_setup_channel;
1356 sc->sc_wdcdev.channels = sc->wdc_chanarray;
1357 sc->sc_wdcdev.nchannels = PCIIDE_NUM_CHANNELS;
1358
1359 WDCDEBUG_PRINT(("piix_setup_chip: old idetim=0x%x",
1360 pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_IDETIM)),
1361 DEBUG_PROBE);
1362 if (sc->sc_pp->ide_product != PCI_PRODUCT_INTEL_82371FB_IDE) {
1363 WDCDEBUG_PRINT((", sidetim=0x%x",
1364 pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_SIDETIM)),
1365 DEBUG_PROBE);
1366 if (sc->sc_wdcdev.cap & WDC_CAPABILITY_UDMA) {
1367 WDCDEBUG_PRINT((", udamreg 0x%x",
1368 pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_UDMAREG)),
1369 DEBUG_PROBE);
1370 }
1371 if (sc->sc_pp->ide_product == PCI_PRODUCT_INTEL_82801AA_IDE ||
1372 sc->sc_pp->ide_product == PCI_PRODUCT_INTEL_82801AB_IDE) {
1373 WDCDEBUG_PRINT((", IDE_CONTROL 0x%x",
1374 pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_CONFIG)),
1375 DEBUG_PROBE);
1376 }
1377
1378 }
1379 WDCDEBUG_PRINT(("\n"), DEBUG_PROBE);
1380
1381 for (channel = 0; channel < sc->sc_wdcdev.nchannels; channel++) {
1382 cp = &sc->pciide_channels[channel];
1383 /* PIIX is compat-only */
1384 if (pciide_chansetup(sc, channel, 0) == 0)
1385 continue;
1386 idetim = pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_IDETIM);
1387 if ((PIIX_IDETIM_READ(idetim, channel) &
1388 PIIX_IDETIM_IDE) == 0) {
1389 printf("%s: %s channel ignored (disabled)\n",
1390 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
1391 continue;
1392 }
1393 /* PIIX are compat-only pciide devices */
1394 pciide_mapchan(pa, cp, 0, &cmdsize, &ctlsize, pciide_pci_intr);
1395 if (cp->hw_ok == 0)
1396 continue;
1397 if (pciide_chan_candisable(cp)) {
1398 idetim = PIIX_IDETIM_CLEAR(idetim, PIIX_IDETIM_IDE,
1399 channel);
1400 pci_conf_write(sc->sc_pc, sc->sc_tag, PIIX_IDETIM,
1401 idetim);
1402 }
1403 pciide_map_compat_intr(pa, cp, channel, 0);
1404 if (cp->hw_ok == 0)
1405 continue;
1406 sc->sc_wdcdev.set_modes(&cp->wdc_channel);
1407 }
1408
1409 WDCDEBUG_PRINT(("piix_setup_chip: idetim=0x%x",
1410 pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_IDETIM)),
1411 DEBUG_PROBE);
1412 if (sc->sc_pp->ide_product != PCI_PRODUCT_INTEL_82371FB_IDE) {
1413 WDCDEBUG_PRINT((", sidetim=0x%x",
1414 pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_SIDETIM)),
1415 DEBUG_PROBE);
1416 if (sc->sc_wdcdev.cap & WDC_CAPABILITY_UDMA) {
1417 WDCDEBUG_PRINT((", udamreg 0x%x",
1418 pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_UDMAREG)),
1419 DEBUG_PROBE);
1420 }
1421 if (sc->sc_pp->ide_product == PCI_PRODUCT_INTEL_82801AA_IDE ||
1422 sc->sc_pp->ide_product == PCI_PRODUCT_INTEL_82801AB_IDE) {
1423 WDCDEBUG_PRINT((", IDE_CONTROL 0x%x",
1424 pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_CONFIG)),
1425 DEBUG_PROBE);
1426 }
1427 }
1428 WDCDEBUG_PRINT(("\n"), DEBUG_PROBE);
1429 }
1430
1431 void
1432 piix_setup_channel(chp)
1433 struct channel_softc *chp;
1434 {
1435 u_int8_t mode[2], drive;
1436 u_int32_t oidetim, idetim, idedma_ctl;
1437 struct pciide_channel *cp = (struct pciide_channel*)chp;
1438 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
1439 struct ata_drive_datas *drvp = cp->wdc_channel.ch_drive;
1440
1441 oidetim = pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_IDETIM);
1442 idetim = PIIX_IDETIM_CLEAR(oidetim, 0xffff, chp->channel);
1443 idedma_ctl = 0;
1444
1445 /* set up new idetim: Enable IDE registers decode */
1446 idetim = PIIX_IDETIM_SET(idetim, PIIX_IDETIM_IDE,
1447 chp->channel);
1448
1449 /* setup DMA */
1450 pciide_channel_dma_setup(cp);
1451
1452 /*
1453 * Here we have to mess up with drives mode: PIIX can't have
1454 * different timings for master and slave drives.
1455 * We need to find the best combination.
1456 */
1457
1458 /* If both drives supports DMA, take the lower mode */
1459 if ((drvp[0].drive_flags & DRIVE_DMA) &&
1460 (drvp[1].drive_flags & DRIVE_DMA)) {
1461 mode[0] = mode[1] =
1462 min(drvp[0].DMA_mode, drvp[1].DMA_mode);
1463 drvp[0].DMA_mode = mode[0];
1464 drvp[1].DMA_mode = mode[1];
1465 goto ok;
1466 }
1467 /*
1468 * If only one drive supports DMA, use its mode, and
1469 * put the other one in PIO mode 0 if mode not compatible
1470 */
1471 if (drvp[0].drive_flags & DRIVE_DMA) {
1472 mode[0] = drvp[0].DMA_mode;
1473 mode[1] = drvp[1].PIO_mode;
1474 if (piix_isp_pio[mode[1]] != piix_isp_dma[mode[0]] ||
1475 piix_rtc_pio[mode[1]] != piix_rtc_dma[mode[0]])
1476 mode[1] = drvp[1].PIO_mode = 0;
1477 goto ok;
1478 }
1479 if (drvp[1].drive_flags & DRIVE_DMA) {
1480 mode[1] = drvp[1].DMA_mode;
1481 mode[0] = drvp[0].PIO_mode;
1482 if (piix_isp_pio[mode[0]] != piix_isp_dma[mode[1]] ||
1483 piix_rtc_pio[mode[0]] != piix_rtc_dma[mode[1]])
1484 mode[0] = drvp[0].PIO_mode = 0;
1485 goto ok;
1486 }
1487 /*
1488 * If both drives are not DMA, takes the lower mode, unless
1489 * one of them is PIO mode < 2
1490 */
1491 if (drvp[0].PIO_mode < 2) {
1492 mode[0] = drvp[0].PIO_mode = 0;
1493 mode[1] = drvp[1].PIO_mode;
1494 } else if (drvp[1].PIO_mode < 2) {
1495 mode[1] = drvp[1].PIO_mode = 0;
1496 mode[0] = drvp[0].PIO_mode;
1497 } else {
1498 mode[0] = mode[1] =
1499 min(drvp[1].PIO_mode, drvp[0].PIO_mode);
1500 drvp[0].PIO_mode = mode[0];
1501 drvp[1].PIO_mode = mode[1];
1502 }
1503 ok: /* The modes are setup */
1504 for (drive = 0; drive < 2; drive++) {
1505 if (drvp[drive].drive_flags & DRIVE_DMA) {
1506 idetim |= piix_setup_idetim_timings(
1507 mode[drive], 1, chp->channel);
1508 goto end;
1509 }
1510 }
1511 /* If we are there, none of the drives are DMA */
1512 if (mode[0] >= 2)
1513 idetim |= piix_setup_idetim_timings(
1514 mode[0], 0, chp->channel);
1515 else
1516 idetim |= piix_setup_idetim_timings(
1517 mode[1], 0, chp->channel);
1518 end: /*
1519 * timing mode is now set up in the controller. Enable
1520 * it per-drive
1521 */
1522 for (drive = 0; drive < 2; drive++) {
1523 /* If no drive, skip */
1524 if ((drvp[drive].drive_flags & DRIVE) == 0)
1525 continue;
1526 idetim |= piix_setup_idetim_drvs(&drvp[drive]);
1527 if (drvp[drive].drive_flags & DRIVE_DMA)
1528 idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
1529 }
1530 if (idedma_ctl != 0) {
1531 /* Add software bits in status register */
1532 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
1533 IDEDMA_CTL + (IDEDMA_SCH_OFFSET * chp->channel),
1534 idedma_ctl);
1535 }
1536 pci_conf_write(sc->sc_pc, sc->sc_tag, PIIX_IDETIM, idetim);
1537 pciide_print_modes(cp);
1538 }
1539
1540 void
1541 piix3_4_setup_channel(chp)
1542 struct channel_softc *chp;
1543 {
1544 struct ata_drive_datas *drvp;
1545 u_int32_t oidetim, idetim, sidetim, udmareg, ideconf, idedma_ctl;
1546 struct pciide_channel *cp = (struct pciide_channel*)chp;
1547 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
1548 int drive;
1549 int channel = chp->channel;
1550
1551 oidetim = pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_IDETIM);
1552 sidetim = pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_SIDETIM);
1553 udmareg = pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_UDMAREG);
1554 ideconf = pci_conf_read(sc->sc_pc, sc->sc_tag, PIIX_CONFIG);
1555 idetim = PIIX_IDETIM_CLEAR(oidetim, 0xffff, channel);
1556 sidetim &= ~(PIIX_SIDETIM_ISP_MASK(channel) |
1557 PIIX_SIDETIM_RTC_MASK(channel));
1558
1559 idedma_ctl = 0;
1560 /* If channel disabled, no need to go further */
1561 if ((PIIX_IDETIM_READ(oidetim, channel) & PIIX_IDETIM_IDE) == 0)
1562 return;
1563 /* set up new idetim: Enable IDE registers decode */
1564 idetim = PIIX_IDETIM_SET(idetim, PIIX_IDETIM_IDE, channel);
1565
1566 /* setup DMA if needed */
1567 pciide_channel_dma_setup(cp);
1568
1569 for (drive = 0; drive < 2; drive++) {
1570 udmareg &= ~(PIIX_UDMACTL_DRV_EN(channel, drive) |
1571 PIIX_UDMATIM_SET(0x3, channel, drive));
1572 drvp = &chp->ch_drive[drive];
1573 /* If no drive, skip */
1574 if ((drvp->drive_flags & DRIVE) == 0)
1575 continue;
1576 if (((drvp->drive_flags & DRIVE_DMA) == 0 &&
1577 (drvp->drive_flags & DRIVE_UDMA) == 0))
1578 goto pio;
1579
1580 if (sc->sc_pp->ide_product == PCI_PRODUCT_INTEL_82801AA_IDE ||
1581 sc->sc_pp->ide_product == PCI_PRODUCT_INTEL_82801AB_IDE) {
1582 ideconf |= PIIX_CONFIG_PINGPONG;
1583 }
1584 if (sc->sc_pp->ide_product == PCI_PRODUCT_INTEL_82801AA_IDE) {
1585 /* setup Ultra/66 */
1586 if (drvp->UDMA_mode > 2 &&
1587 (ideconf & PIIX_CONFIG_CR(channel, drive)) == 0)
1588 drvp->UDMA_mode = 2;
1589 if (drvp->UDMA_mode > 2)
1590 ideconf |= PIIX_CONFIG_UDMA66(channel, drive);
1591 else
1592 ideconf &= ~PIIX_CONFIG_UDMA66(channel, drive);
1593 }
1594 if ((chp->wdc->cap & WDC_CAPABILITY_UDMA) &&
1595 (drvp->drive_flags & DRIVE_UDMA)) {
1596 /* use Ultra/DMA */
1597 drvp->drive_flags &= ~DRIVE_DMA;
1598 udmareg |= PIIX_UDMACTL_DRV_EN( channel, drive);
1599 udmareg |= PIIX_UDMATIM_SET(
1600 piix4_sct_udma[drvp->UDMA_mode], channel, drive);
1601 } else {
1602 /* use Multiword DMA */
1603 drvp->drive_flags &= ~DRIVE_UDMA;
1604 if (drive == 0) {
1605 idetim |= piix_setup_idetim_timings(
1606 drvp->DMA_mode, 1, channel);
1607 } else {
1608 sidetim |= piix_setup_sidetim_timings(
1609 drvp->DMA_mode, 1, channel);
1610 idetim =PIIX_IDETIM_SET(idetim,
1611 PIIX_IDETIM_SITRE, channel);
1612 }
1613 }
1614 idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
1615
1616 pio: /* use PIO mode */
1617 idetim |= piix_setup_idetim_drvs(drvp);
1618 if (drive == 0) {
1619 idetim |= piix_setup_idetim_timings(
1620 drvp->PIO_mode, 0, channel);
1621 } else {
1622 sidetim |= piix_setup_sidetim_timings(
1623 drvp->PIO_mode, 0, channel);
1624 idetim =PIIX_IDETIM_SET(idetim,
1625 PIIX_IDETIM_SITRE, channel);
1626 }
1627 }
1628 if (idedma_ctl != 0) {
1629 /* Add software bits in status register */
1630 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
1631 IDEDMA_CTL + (IDEDMA_SCH_OFFSET * channel),
1632 idedma_ctl);
1633 }
1634 pci_conf_write(sc->sc_pc, sc->sc_tag, PIIX_IDETIM, idetim);
1635 pci_conf_write(sc->sc_pc, sc->sc_tag, PIIX_SIDETIM, sidetim);
1636 pci_conf_write(sc->sc_pc, sc->sc_tag, PIIX_UDMAREG, udmareg);
1637 pci_conf_write(sc->sc_pc, sc->sc_tag, PIIX_CONFIG, ideconf);
1638 pciide_print_modes(cp);
1639 }
1640
1641
1642 /* setup ISP and RTC fields, based on mode */
1643 static u_int32_t
1644 piix_setup_idetim_timings(mode, dma, channel)
1645 u_int8_t mode;
1646 u_int8_t dma;
1647 u_int8_t channel;
1648 {
1649
1650 if (dma)
1651 return PIIX_IDETIM_SET(0,
1652 PIIX_IDETIM_ISP_SET(piix_isp_dma[mode]) |
1653 PIIX_IDETIM_RTC_SET(piix_rtc_dma[mode]),
1654 channel);
1655 else
1656 return PIIX_IDETIM_SET(0,
1657 PIIX_IDETIM_ISP_SET(piix_isp_pio[mode]) |
1658 PIIX_IDETIM_RTC_SET(piix_rtc_pio[mode]),
1659 channel);
1660 }
1661
1662 /* setup DTE, PPE, IE and TIME field based on PIO mode */
1663 static u_int32_t
1664 piix_setup_idetim_drvs(drvp)
1665 struct ata_drive_datas *drvp;
1666 {
1667 u_int32_t ret = 0;
1668 struct channel_softc *chp = drvp->chnl_softc;
1669 u_int8_t channel = chp->channel;
1670 u_int8_t drive = drvp->drive;
1671
1672 /*
1673 * If drive is using UDMA, timings setups are independant
1674 * So just check DMA and PIO here.
1675 */
1676 if (drvp->drive_flags & DRIVE_DMA) {
1677 /* if mode = DMA mode 0, use compatible timings */
1678 if ((drvp->drive_flags & DRIVE_DMA) &&
1679 drvp->DMA_mode == 0) {
1680 drvp->PIO_mode = 0;
1681 return ret;
1682 }
1683 ret = PIIX_IDETIM_SET(ret, PIIX_IDETIM_TIME(drive), channel);
1684 /*
1685 * PIO and DMA timings are the same, use fast timings for PIO
1686 * too, else use compat timings.
1687 */
1688 if ((piix_isp_pio[drvp->PIO_mode] !=
1689 piix_isp_dma[drvp->DMA_mode]) ||
1690 (piix_rtc_pio[drvp->PIO_mode] !=
1691 piix_rtc_dma[drvp->DMA_mode]))
1692 drvp->PIO_mode = 0;
1693 /* if PIO mode <= 2, use compat timings for PIO */
1694 if (drvp->PIO_mode <= 2) {
1695 ret = PIIX_IDETIM_SET(ret, PIIX_IDETIM_DTE(drive),
1696 channel);
1697 return ret;
1698 }
1699 }
1700
1701 /*
1702 * Now setup PIO modes. If mode < 2, use compat timings.
1703 * Else enable fast timings. Enable IORDY and prefetch/post
1704 * if PIO mode >= 3.
1705 */
1706
1707 if (drvp->PIO_mode < 2)
1708 return ret;
1709
1710 ret = PIIX_IDETIM_SET(ret, PIIX_IDETIM_TIME(drive), channel);
1711 if (drvp->PIO_mode >= 3) {
1712 ret = PIIX_IDETIM_SET(ret, PIIX_IDETIM_IE(drive), channel);
1713 ret = PIIX_IDETIM_SET(ret, PIIX_IDETIM_PPE(drive), channel);
1714 }
1715 return ret;
1716 }
1717
1718 /* setup values in SIDETIM registers, based on mode */
1719 static u_int32_t
1720 piix_setup_sidetim_timings(mode, dma, channel)
1721 u_int8_t mode;
1722 u_int8_t dma;
1723 u_int8_t channel;
1724 {
1725 if (dma)
1726 return PIIX_SIDETIM_ISP_SET(piix_isp_dma[mode], channel) |
1727 PIIX_SIDETIM_RTC_SET(piix_rtc_dma[mode], channel);
1728 else
1729 return PIIX_SIDETIM_ISP_SET(piix_isp_pio[mode], channel) |
1730 PIIX_SIDETIM_RTC_SET(piix_rtc_pio[mode], channel);
1731 }
1732
1733 void
1734 amd756_chip_map(sc, pa)
1735 struct pciide_softc *sc;
1736 struct pci_attach_args *pa;
1737 {
1738 struct pciide_channel *cp;
1739 pcireg_t interface = PCI_INTERFACE(pa->pa_class);
1740 int channel;
1741 pcireg_t chanenable;
1742 bus_size_t cmdsize, ctlsize;
1743
1744 if (pciide_chipen(sc, pa) == 0)
1745 return;
1746 printf("%s: bus-master DMA support present",
1747 sc->sc_wdcdev.sc_dev.dv_xname);
1748 pciide_mapreg_dma(sc, pa);
1749 printf("\n");
1750 sc->sc_wdcdev.cap = WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32 |
1751 WDC_CAPABILITY_MODE;
1752 if (sc->sc_dma_ok) {
1753 sc->sc_wdcdev.cap |= WDC_CAPABILITY_DMA | WDC_CAPABILITY_UDMA;
1754 sc->sc_wdcdev.cap |= WDC_CAPABILITY_IRQACK;
1755 sc->sc_wdcdev.irqack = pciide_irqack;
1756 }
1757 sc->sc_wdcdev.PIO_cap = 4;
1758 sc->sc_wdcdev.DMA_cap = 2;
1759 sc->sc_wdcdev.UDMA_cap = 4;
1760 sc->sc_wdcdev.set_modes = amd756_setup_channel;
1761 sc->sc_wdcdev.channels = sc->wdc_chanarray;
1762 sc->sc_wdcdev.nchannels = PCIIDE_NUM_CHANNELS;
1763 chanenable = pci_conf_read(sc->sc_pc, sc->sc_tag, AMD756_CHANSTATUS_EN);
1764
1765 WDCDEBUG_PRINT(("amd756_chip_map: Channel enable=0x%x\n", chanenable),
1766 DEBUG_PROBE);
1767 for (channel = 0; channel < sc->sc_wdcdev.nchannels; channel++) {
1768 cp = &sc->pciide_channels[channel];
1769 if (pciide_chansetup(sc, channel, interface) == 0)
1770 continue;
1771
1772 if ((chanenable & AMD756_CHAN_EN(channel)) == 0) {
1773 printf("%s: %s channel ignored (disabled)\n",
1774 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
1775 continue;
1776 }
1777 pciide_mapchan(pa, cp, interface, &cmdsize, &ctlsize,
1778 pciide_pci_intr);
1779
1780 if (pciide_chan_candisable(cp))
1781 chanenable &= ~AMD756_CHAN_EN(channel);
1782 pciide_map_compat_intr(pa, cp, channel, interface);
1783 if (cp->hw_ok == 0)
1784 continue;
1785
1786 amd756_setup_channel(&cp->wdc_channel);
1787 }
1788 pci_conf_write(sc->sc_pc, sc->sc_tag, AMD756_CHANSTATUS_EN,
1789 chanenable);
1790 return;
1791 }
1792
1793 void
1794 amd756_setup_channel(chp)
1795 struct channel_softc *chp;
1796 {
1797 u_int32_t udmatim_reg, datatim_reg;
1798 u_int8_t idedma_ctl;
1799 int mode, drive;
1800 struct ata_drive_datas *drvp;
1801 struct pciide_channel *cp = (struct pciide_channel*)chp;
1802 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
1803 #ifndef PCIIDE_AMD756_ENABLEDMA
1804 int rev = PCI_REVISION(
1805 pci_conf_read(sc->sc_pc, sc->sc_tag, PCI_CLASS_REG));
1806 #endif
1807
1808 idedma_ctl = 0;
1809 datatim_reg = pci_conf_read(sc->sc_pc, sc->sc_tag, AMD756_DATATIM);
1810 udmatim_reg = pci_conf_read(sc->sc_pc, sc->sc_tag, AMD756_UDMA);
1811 datatim_reg &= ~AMD756_DATATIM_MASK(chp->channel);
1812 udmatim_reg &= ~AMD756_UDMA_MASK(chp->channel);
1813
1814 /* setup DMA if needed */
1815 pciide_channel_dma_setup(cp);
1816
1817 for (drive = 0; drive < 2; drive++) {
1818 drvp = &chp->ch_drive[drive];
1819 /* If no drive, skip */
1820 if ((drvp->drive_flags & DRIVE) == 0)
1821 continue;
1822 /* add timing values, setup DMA if needed */
1823 if (((drvp->drive_flags & DRIVE_DMA) == 0 &&
1824 (drvp->drive_flags & DRIVE_UDMA) == 0)) {
1825 mode = drvp->PIO_mode;
1826 goto pio;
1827 }
1828 if ((chp->wdc->cap & WDC_CAPABILITY_UDMA) &&
1829 (drvp->drive_flags & DRIVE_UDMA)) {
1830 /* use Ultra/DMA */
1831 drvp->drive_flags &= ~DRIVE_DMA;
1832 udmatim_reg |= AMD756_UDMA_EN(chp->channel, drive) |
1833 AMD756_UDMA_EN_MTH(chp->channel, drive) |
1834 AMD756_UDMA_TIME(chp->channel, drive,
1835 amd756_udma_tim[drvp->UDMA_mode]);
1836 /* can use PIO timings, MW DMA unused */
1837 mode = drvp->PIO_mode;
1838 } else {
1839 /* use Multiword DMA, but only if revision is OK */
1840 drvp->drive_flags &= ~DRIVE_UDMA;
1841 #ifndef PCIIDE_AMD756_ENABLEDMA
1842 /*
1843 * The workaround doesn't seem to be necessary
1844 * with all drives, so it can be disabled by
1845 * PCIIDE_AMD756_ENABLEDMA. It causes a hard hang if
1846 * triggered.
1847 */
1848 if (AMD756_CHIPREV_DISABLEDMA(rev)) {
1849 printf("%s:%d:%d: multi-word DMA disabled due "
1850 "to chip revision\n",
1851 sc->sc_wdcdev.sc_dev.dv_xname,
1852 chp->channel, drive);
1853 mode = drvp->PIO_mode;
1854 drvp->drive_flags &= ~DRIVE_DMA;
1855 goto pio;
1856 }
1857 #endif
1858 /* mode = min(pio, dma+2) */
1859 if (drvp->PIO_mode <= (drvp->DMA_mode +2))
1860 mode = drvp->PIO_mode;
1861 else
1862 mode = drvp->DMA_mode + 2;
1863 }
1864 idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
1865
1866 pio: /* setup PIO mode */
1867 if (mode <= 2) {
1868 drvp->DMA_mode = 0;
1869 drvp->PIO_mode = 0;
1870 mode = 0;
1871 } else {
1872 drvp->PIO_mode = mode;
1873 drvp->DMA_mode = mode - 2;
1874 }
1875 datatim_reg |=
1876 AMD756_DATATIM_PULSE(chp->channel, drive,
1877 amd756_pio_set[mode]) |
1878 AMD756_DATATIM_RECOV(chp->channel, drive,
1879 amd756_pio_rec[mode]);
1880 }
1881 if (idedma_ctl != 0) {
1882 /* Add software bits in status register */
1883 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
1884 IDEDMA_CTL + (IDEDMA_SCH_OFFSET * chp->channel),
1885 idedma_ctl);
1886 }
1887 pciide_print_modes(cp);
1888 pci_conf_write(sc->sc_pc, sc->sc_tag, AMD756_DATATIM, datatim_reg);
1889 pci_conf_write(sc->sc_pc, sc->sc_tag, AMD756_UDMA, udmatim_reg);
1890 }
1891
1892 void
1893 apollo_chip_map(sc, pa)
1894 struct pciide_softc *sc;
1895 struct pci_attach_args *pa;
1896 {
1897 struct pciide_channel *cp;
1898 pcireg_t interface = PCI_INTERFACE(pa->pa_class);
1899 int rev = PCI_REVISION(pa->pa_class);
1900 int channel;
1901 u_int32_t ideconf;
1902 bus_size_t cmdsize, ctlsize;
1903
1904 if (pciide_chipen(sc, pa) == 0)
1905 return;
1906 printf("%s: bus-master DMA support present",
1907 sc->sc_wdcdev.sc_dev.dv_xname);
1908 pciide_mapreg_dma(sc, pa);
1909 printf("\n");
1910 sc->sc_wdcdev.cap = WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32 |
1911 WDC_CAPABILITY_MODE;
1912 if (sc->sc_dma_ok) {
1913 sc->sc_wdcdev.cap |= WDC_CAPABILITY_DMA | WDC_CAPABILITY_IRQACK;
1914 sc->sc_wdcdev.irqack = pciide_irqack;
1915 if (sc->sc_pp->ide_product == PCI_PRODUCT_VIATECH_VT82C586A_IDE
1916 && rev >= 6)
1917 sc->sc_wdcdev.cap |= WDC_CAPABILITY_UDMA;
1918 }
1919 sc->sc_wdcdev.PIO_cap = 4;
1920 sc->sc_wdcdev.DMA_cap = 2;
1921 sc->sc_wdcdev.UDMA_cap = 2;
1922 sc->sc_wdcdev.set_modes = apollo_setup_channel;
1923 sc->sc_wdcdev.channels = sc->wdc_chanarray;
1924 sc->sc_wdcdev.nchannels = PCIIDE_NUM_CHANNELS;
1925
1926 WDCDEBUG_PRINT(("apollo_chip_map: old APO_IDECONF=0x%x, "
1927 "APO_CTLMISC=0x%x, APO_DATATIM=0x%x, APO_UDMA=0x%x\n",
1928 pci_conf_read(sc->sc_pc, sc->sc_tag, APO_IDECONF),
1929 pci_conf_read(sc->sc_pc, sc->sc_tag, APO_CTLMISC),
1930 pci_conf_read(sc->sc_pc, sc->sc_tag, APO_DATATIM),
1931 pci_conf_read(sc->sc_pc, sc->sc_tag, APO_UDMA)),
1932 DEBUG_PROBE);
1933
1934 for (channel = 0; channel < sc->sc_wdcdev.nchannels; channel++) {
1935 cp = &sc->pciide_channels[channel];
1936 if (pciide_chansetup(sc, channel, interface) == 0)
1937 continue;
1938
1939 ideconf = pci_conf_read(sc->sc_pc, sc->sc_tag, APO_IDECONF);
1940 if ((ideconf & APO_IDECONF_EN(channel)) == 0) {
1941 printf("%s: %s channel ignored (disabled)\n",
1942 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
1943 continue;
1944 }
1945 pciide_mapchan(pa, cp, interface, &cmdsize, &ctlsize,
1946 pciide_pci_intr);
1947 if (cp->hw_ok == 0)
1948 continue;
1949 if (pciide_chan_candisable(cp)) {
1950 ideconf &= ~APO_IDECONF_EN(channel);
1951 pci_conf_write(sc->sc_pc, sc->sc_tag, APO_IDECONF,
1952 ideconf);
1953 }
1954 pciide_map_compat_intr(pa, cp, channel, interface);
1955
1956 if (cp->hw_ok == 0)
1957 continue;
1958 apollo_setup_channel(&sc->pciide_channels[channel].wdc_channel);
1959 }
1960 WDCDEBUG_PRINT(("apollo_chip_map: APO_DATATIM=0x%x, APO_UDMA=0x%x\n",
1961 pci_conf_read(sc->sc_pc, sc->sc_tag, APO_DATATIM),
1962 pci_conf_read(sc->sc_pc, sc->sc_tag, APO_UDMA)), DEBUG_PROBE);
1963 }
1964
1965 void
1966 apollo_setup_channel(chp)
1967 struct channel_softc *chp;
1968 {
1969 u_int32_t udmatim_reg, datatim_reg;
1970 u_int8_t idedma_ctl;
1971 int mode, drive;
1972 struct ata_drive_datas *drvp;
1973 struct pciide_channel *cp = (struct pciide_channel*)chp;
1974 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
1975
1976 idedma_ctl = 0;
1977 datatim_reg = pci_conf_read(sc->sc_pc, sc->sc_tag, APO_DATATIM);
1978 udmatim_reg = pci_conf_read(sc->sc_pc, sc->sc_tag, APO_UDMA);
1979 datatim_reg &= ~APO_DATATIM_MASK(chp->channel);
1980 udmatim_reg &= ~APO_UDMA_MASK(chp->channel);
1981
1982 /* setup DMA if needed */
1983 pciide_channel_dma_setup(cp);
1984
1985 for (drive = 0; drive < 2; drive++) {
1986 drvp = &chp->ch_drive[drive];
1987 /* If no drive, skip */
1988 if ((drvp->drive_flags & DRIVE) == 0)
1989 continue;
1990 /* add timing values, setup DMA if needed */
1991 if (((drvp->drive_flags & DRIVE_DMA) == 0 &&
1992 (drvp->drive_flags & DRIVE_UDMA) == 0)) {
1993 mode = drvp->PIO_mode;
1994 goto pio;
1995 }
1996 if ((chp->wdc->cap & WDC_CAPABILITY_UDMA) &&
1997 (drvp->drive_flags & DRIVE_UDMA)) {
1998 /* use Ultra/DMA */
1999 drvp->drive_flags &= ~DRIVE_DMA;
2000 udmatim_reg |= APO_UDMA_EN(chp->channel, drive) |
2001 APO_UDMA_EN_MTH(chp->channel, drive) |
2002 APO_UDMA_TIME(chp->channel, drive,
2003 apollo_udma_tim[drvp->UDMA_mode]);
2004 /* can use PIO timings, MW DMA unused */
2005 mode = drvp->PIO_mode;
2006 } else {
2007 /* use Multiword DMA */
2008 drvp->drive_flags &= ~DRIVE_UDMA;
2009 /* mode = min(pio, dma+2) */
2010 if (drvp->PIO_mode <= (drvp->DMA_mode +2))
2011 mode = drvp->PIO_mode;
2012 else
2013 mode = drvp->DMA_mode + 2;
2014 }
2015 idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
2016
2017 pio: /* setup PIO mode */
2018 if (mode <= 2) {
2019 drvp->DMA_mode = 0;
2020 drvp->PIO_mode = 0;
2021 mode = 0;
2022 } else {
2023 drvp->PIO_mode = mode;
2024 drvp->DMA_mode = mode - 2;
2025 }
2026 datatim_reg |=
2027 APO_DATATIM_PULSE(chp->channel, drive,
2028 apollo_pio_set[mode]) |
2029 APO_DATATIM_RECOV(chp->channel, drive,
2030 apollo_pio_rec[mode]);
2031 }
2032 if (idedma_ctl != 0) {
2033 /* Add software bits in status register */
2034 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
2035 IDEDMA_CTL + (IDEDMA_SCH_OFFSET * chp->channel),
2036 idedma_ctl);
2037 }
2038 pciide_print_modes(cp);
2039 pci_conf_write(sc->sc_pc, sc->sc_tag, APO_DATATIM, datatim_reg);
2040 pci_conf_write(sc->sc_pc, sc->sc_tag, APO_UDMA, udmatim_reg);
2041 }
2042
2043 void
2044 cmd_channel_map(pa, sc, channel)
2045 struct pci_attach_args *pa;
2046 struct pciide_softc *sc;
2047 int channel;
2048 {
2049 struct pciide_channel *cp = &sc->pciide_channels[channel];
2050 bus_size_t cmdsize, ctlsize;
2051 u_int8_t ctrl = pciide_pci_read(sc->sc_pc, sc->sc_tag, CMD_CTRL);
2052 int interface;
2053
2054 /*
2055 * The 0648/0649 can be told to identify as a RAID controller.
2056 * In this case, we have to fake interface
2057 */
2058 if (PCI_SUBCLASS(pa->pa_class) != PCI_SUBCLASS_MASS_STORAGE_IDE) {
2059 interface = PCIIDE_INTERFACE_SETTABLE(0) |
2060 PCIIDE_INTERFACE_SETTABLE(1);
2061 if (pciide_pci_read(pa->pa_pc, pa->pa_tag, CMD_CONF) &
2062 CMD_CONF_DSA1)
2063 interface |= PCIIDE_INTERFACE_PCI(0) |
2064 PCIIDE_INTERFACE_PCI(1);
2065 } else {
2066 interface = PCI_INTERFACE(pa->pa_class);
2067 }
2068
2069 sc->wdc_chanarray[channel] = &cp->wdc_channel;
2070 cp->name = PCIIDE_CHANNEL_NAME(channel);
2071 cp->wdc_channel.channel = channel;
2072 cp->wdc_channel.wdc = &sc->sc_wdcdev;
2073
2074 if (channel > 0) {
2075 cp->wdc_channel.ch_queue =
2076 sc->pciide_channels[0].wdc_channel.ch_queue;
2077 } else {
2078 cp->wdc_channel.ch_queue =
2079 malloc(sizeof(struct channel_queue), M_DEVBUF, M_NOWAIT);
2080 }
2081 if (cp->wdc_channel.ch_queue == NULL) {
2082 printf("%s %s channel: "
2083 "can't allocate memory for command queue",
2084 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
2085 return;
2086 }
2087
2088 printf("%s: %s channel %s to %s mode\n",
2089 sc->sc_wdcdev.sc_dev.dv_xname, cp->name,
2090 (interface & PCIIDE_INTERFACE_SETTABLE(channel)) ?
2091 "configured" : "wired",
2092 (interface & PCIIDE_INTERFACE_PCI(channel)) ?
2093 "native-PCI" : "compatibility");
2094
2095 /*
2096 * with a CMD PCI64x, if we get here, the first channel is enabled:
2097 * there's no way to disable the first channel without disabling
2098 * the whole device
2099 */
2100 if (channel != 0 && (ctrl & CMD_CTRL_2PORT) == 0) {
2101 printf("%s: %s channel ignored (disabled)\n",
2102 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
2103 return;
2104 }
2105
2106 pciide_mapchan(pa, cp, interface, &cmdsize, &ctlsize, cmd_pci_intr);
2107 if (cp->hw_ok == 0)
2108 return;
2109 if (channel == 1) {
2110 if (pciide_chan_candisable(cp)) {
2111 ctrl &= ~CMD_CTRL_2PORT;
2112 pciide_pci_write(pa->pa_pc, pa->pa_tag,
2113 CMD_CTRL, ctrl);
2114 }
2115 }
2116 pciide_map_compat_intr(pa, cp, channel, interface);
2117 }
2118
2119 int
2120 cmd_pci_intr(arg)
2121 void *arg;
2122 {
2123 struct pciide_softc *sc = arg;
2124 struct pciide_channel *cp;
2125 struct channel_softc *wdc_cp;
2126 int i, rv, crv;
2127 u_int32_t priirq, secirq;
2128
2129 rv = 0;
2130 priirq = pciide_pci_read(sc->sc_pc, sc->sc_tag, CMD_CONF);
2131 secirq = pciide_pci_read(sc->sc_pc, sc->sc_tag, CMD_ARTTIM23);
2132 for (i = 0; i < sc->sc_wdcdev.nchannels; i++) {
2133 cp = &sc->pciide_channels[i];
2134 wdc_cp = &cp->wdc_channel;
2135 /* If a compat channel skip. */
2136 if (cp->compat)
2137 continue;
2138 if ((i == 0 && (priirq & CMD_CONF_DRV0_INTR)) ||
2139 (i == 1 && (secirq & CMD_ARTTIM23_IRQ))) {
2140 crv = wdcintr(wdc_cp);
2141 if (crv == 0)
2142 printf("%s:%d: bogus intr\n",
2143 sc->sc_wdcdev.sc_dev.dv_xname, i);
2144 else
2145 rv = 1;
2146 }
2147 }
2148 return rv;
2149 }
2150
2151 void
2152 cmd_chip_map(sc, pa)
2153 struct pciide_softc *sc;
2154 struct pci_attach_args *pa;
2155 {
2156 int channel;
2157
2158 /*
2159 * For a CMD PCI064x, the use of PCI_COMMAND_IO_ENABLE
2160 * and base adresses registers can be disabled at
2161 * hardware level. In this case, the device is wired
2162 * in compat mode and its first channel is always enabled,
2163 * but we can't rely on PCI_COMMAND_IO_ENABLE.
2164 * In fact, it seems that the first channel of the CMD PCI0640
2165 * can't be disabled.
2166 */
2167
2168 #ifdef PCIIDE_CMD064x_DISABLE
2169 if (pciide_chipen(sc, pa) == 0)
2170 return;
2171 #endif
2172
2173 printf("%s: hardware does not support DMA\n",
2174 sc->sc_wdcdev.sc_dev.dv_xname);
2175 sc->sc_dma_ok = 0;
2176
2177 sc->sc_wdcdev.channels = sc->wdc_chanarray;
2178 sc->sc_wdcdev.nchannels = PCIIDE_NUM_CHANNELS;
2179 sc->sc_wdcdev.cap = WDC_CAPABILITY_DATA16;
2180
2181 for (channel = 0; channel < sc->sc_wdcdev.nchannels; channel++) {
2182 cmd_channel_map(pa, sc, channel);
2183 }
2184 }
2185
2186 void
2187 cmd0643_9_chip_map(sc, pa)
2188 struct pciide_softc *sc;
2189 struct pci_attach_args *pa;
2190 {
2191 struct pciide_channel *cp;
2192 int channel;
2193 int rev = PCI_REVISION(
2194 pci_conf_read(sc->sc_pc, sc->sc_tag, PCI_CLASS_REG));
2195
2196 /*
2197 * For a CMD PCI064x, the use of PCI_COMMAND_IO_ENABLE
2198 * and base adresses registers can be disabled at
2199 * hardware level. In this case, the device is wired
2200 * in compat mode and its first channel is always enabled,
2201 * but we can't rely on PCI_COMMAND_IO_ENABLE.
2202 * In fact, it seems that the first channel of the CMD PCI0640
2203 * can't be disabled.
2204 */
2205
2206 #ifdef PCIIDE_CMD064x_DISABLE
2207 if (pciide_chipen(sc, pa) == 0)
2208 return;
2209 #endif
2210 printf("%s: bus-master DMA support present",
2211 sc->sc_wdcdev.sc_dev.dv_xname);
2212 pciide_mapreg_dma(sc, pa);
2213 printf("\n");
2214 sc->sc_wdcdev.cap = WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32 |
2215 WDC_CAPABILITY_MODE;
2216 if (sc->sc_dma_ok) {
2217 sc->sc_wdcdev.cap |= WDC_CAPABILITY_DMA | WDC_CAPABILITY_IRQACK;
2218 switch (sc->sc_pp->ide_product) {
2219 case PCI_PRODUCT_CMDTECH_649:
2220 case PCI_PRODUCT_CMDTECH_648:
2221 sc->sc_wdcdev.cap |= WDC_CAPABILITY_UDMA;
2222 sc->sc_wdcdev.UDMA_cap = 4;
2223 sc->sc_wdcdev.irqack = cmd646_9_irqack;
2224 break;
2225 case PCI_PRODUCT_CMDTECH_646:
2226 if (rev >= CMD0646U2_REV) {
2227 sc->sc_wdcdev.cap |= WDC_CAPABILITY_UDMA;
2228 sc->sc_wdcdev.UDMA_cap = 2;
2229 } else if (rev >= CMD0646U_REV) {
2230 /*
2231 * Linux's driver claims that the 646U is broken
2232 * with UDMA. Only enable it if we know what we're
2233 * doing
2234 */
2235 #ifdef PCIIDE_CMD0646U_ENABLEUDMA
2236 sc->sc_wdcdev.cap |= WDC_CAPABILITY_UDMA;
2237 sc->sc_wdcdev.UDMA_cap = 2;
2238 #endif
2239 /* explicitely disable UDMA */
2240 pciide_pci_write(sc->sc_pc, sc->sc_tag,
2241 CMD_UDMATIM(0), 0);
2242 pciide_pci_write(sc->sc_pc, sc->sc_tag,
2243 CMD_UDMATIM(1), 0);
2244 }
2245 sc->sc_wdcdev.irqack = cmd646_9_irqack;
2246 break;
2247 default:
2248 sc->sc_wdcdev.irqack = pciide_irqack;
2249 }
2250 }
2251
2252 sc->sc_wdcdev.channels = sc->wdc_chanarray;
2253 sc->sc_wdcdev.nchannels = PCIIDE_NUM_CHANNELS;
2254 sc->sc_wdcdev.PIO_cap = 4;
2255 sc->sc_wdcdev.DMA_cap = 2;
2256 sc->sc_wdcdev.set_modes = cmd0643_9_setup_channel;
2257
2258 WDCDEBUG_PRINT(("cmd0643_9_chip_map: old timings reg 0x%x 0x%x\n",
2259 pci_conf_read(sc->sc_pc, sc->sc_tag, 0x54),
2260 pci_conf_read(sc->sc_pc, sc->sc_tag, 0x58)),
2261 DEBUG_PROBE);
2262
2263 for (channel = 0; channel < sc->sc_wdcdev.nchannels; channel++) {
2264 cp = &sc->pciide_channels[channel];
2265 cmd_channel_map(pa, sc, channel);
2266 if (cp->hw_ok == 0)
2267 continue;
2268 cmd0643_9_setup_channel(&cp->wdc_channel);
2269 }
2270 /*
2271 * note - this also makes sure we clear the irq disable and reset
2272 * bits
2273 */
2274 pciide_pci_write(sc->sc_pc, sc->sc_tag, CMD_DMA_MODE, CMD_DMA_MULTIPLE);
2275 WDCDEBUG_PRINT(("cmd0643_9_chip_map: timings reg now 0x%x 0x%x\n",
2276 pci_conf_read(sc->sc_pc, sc->sc_tag, 0x54),
2277 pci_conf_read(sc->sc_pc, sc->sc_tag, 0x58)),
2278 DEBUG_PROBE);
2279 }
2280
2281 void
2282 cmd0643_9_setup_channel(chp)
2283 struct channel_softc *chp;
2284 {
2285 struct ata_drive_datas *drvp;
2286 u_int8_t tim;
2287 u_int32_t idedma_ctl, udma_reg;
2288 int drive;
2289 struct pciide_channel *cp = (struct pciide_channel*)chp;
2290 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
2291
2292 idedma_ctl = 0;
2293 /* setup DMA if needed */
2294 pciide_channel_dma_setup(cp);
2295
2296 for (drive = 0; drive < 2; drive++) {
2297 drvp = &chp->ch_drive[drive];
2298 /* If no drive, skip */
2299 if ((drvp->drive_flags & DRIVE) == 0)
2300 continue;
2301 /* add timing values, setup DMA if needed */
2302 tim = cmd0643_9_data_tim_pio[drvp->PIO_mode];
2303 if (drvp->drive_flags & (DRIVE_DMA | DRIVE_UDMA)) {
2304 if (drvp->drive_flags & DRIVE_UDMA) {
2305 /* UltraDMA on a 646U2, 0648 or 0649 */
2306 drvp->drive_flags &= ~DRIVE_DMA;
2307 udma_reg = pciide_pci_read(sc->sc_pc,
2308 sc->sc_tag, CMD_UDMATIM(chp->channel));
2309 if (drvp->UDMA_mode > 2 &&
2310 (pciide_pci_read(sc->sc_pc, sc->sc_tag,
2311 CMD_BICSR) &
2312 CMD_BICSR_80(chp->channel)) == 0)
2313 drvp->UDMA_mode = 2;
2314 if (drvp->UDMA_mode > 2)
2315 udma_reg &= ~CMD_UDMATIM_UDMA33(drive);
2316 else if (sc->sc_wdcdev.UDMA_cap > 2)
2317 udma_reg |= CMD_UDMATIM_UDMA33(drive);
2318 udma_reg |= CMD_UDMATIM_UDMA(drive);
2319 udma_reg &= ~(CMD_UDMATIM_TIM_MASK <<
2320 CMD_UDMATIM_TIM_OFF(drive));
2321 udma_reg |=
2322 (cmd0646_9_tim_udma[drvp->UDMA_mode] <<
2323 CMD_UDMATIM_TIM_OFF(drive));
2324 pciide_pci_write(sc->sc_pc, sc->sc_tag,
2325 CMD_UDMATIM(chp->channel), udma_reg);
2326 } else {
2327 /*
2328 * use Multiword DMA.
2329 * Timings will be used for both PIO and DMA,
2330 * so adjust DMA mode if needed
2331 * if we have a 0646U2/8/9, turn off UDMA
2332 */
2333 if (sc->sc_wdcdev.cap & WDC_CAPABILITY_UDMA) {
2334 udma_reg = pciide_pci_read(sc->sc_pc,
2335 sc->sc_tag,
2336 CMD_UDMATIM(chp->channel));
2337 udma_reg &= ~CMD_UDMATIM_UDMA(drive);
2338 pciide_pci_write(sc->sc_pc, sc->sc_tag,
2339 CMD_UDMATIM(chp->channel),
2340 udma_reg);
2341 }
2342 if (drvp->PIO_mode >= 3 &&
2343 (drvp->DMA_mode + 2) > drvp->PIO_mode) {
2344 drvp->DMA_mode = drvp->PIO_mode - 2;
2345 }
2346 tim = cmd0643_9_data_tim_dma[drvp->DMA_mode];
2347 }
2348 idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
2349 }
2350 pciide_pci_write(sc->sc_pc, sc->sc_tag,
2351 CMD_DATA_TIM(chp->channel, drive), tim);
2352 }
2353 if (idedma_ctl != 0) {
2354 /* Add software bits in status register */
2355 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
2356 IDEDMA_CTL + (IDEDMA_SCH_OFFSET * chp->channel),
2357 idedma_ctl);
2358 }
2359 pciide_print_modes(cp);
2360 }
2361
2362 void
2363 cmd646_9_irqack(chp)
2364 struct channel_softc *chp;
2365 {
2366 u_int32_t priirq, secirq;
2367 struct pciide_channel *cp = (struct pciide_channel*)chp;
2368 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
2369
2370 if (chp->channel == 0) {
2371 priirq = pciide_pci_read(sc->sc_pc, sc->sc_tag, CMD_CONF);
2372 pciide_pci_write(sc->sc_pc, sc->sc_tag, CMD_CONF, priirq);
2373 } else {
2374 secirq = pciide_pci_read(sc->sc_pc, sc->sc_tag, CMD_ARTTIM23);
2375 pciide_pci_write(sc->sc_pc, sc->sc_tag, CMD_ARTTIM23, secirq);
2376 }
2377 pciide_irqack(chp);
2378 }
2379
2380 void
2381 cy693_chip_map(sc, pa)
2382 struct pciide_softc *sc;
2383 struct pci_attach_args *pa;
2384 {
2385 struct pciide_channel *cp;
2386 pcireg_t interface = PCI_INTERFACE(pa->pa_class);
2387 bus_size_t cmdsize, ctlsize;
2388
2389 if (pciide_chipen(sc, pa) == 0)
2390 return;
2391 /*
2392 * this chip has 2 PCI IDE functions, one for primary and one for
2393 * secondary. So we need to call pciide_mapregs_compat() with
2394 * the real channel
2395 */
2396 if (pa->pa_function == 1) {
2397 sc->sc_cy_compatchan = 0;
2398 } else if (pa->pa_function == 2) {
2399 sc->sc_cy_compatchan = 1;
2400 } else {
2401 printf("%s: unexpected PCI function %d\n",
2402 sc->sc_wdcdev.sc_dev.dv_xname, pa->pa_function);
2403 return;
2404 }
2405 if (interface & PCIIDE_INTERFACE_BUS_MASTER_DMA) {
2406 printf("%s: bus-master DMA support present",
2407 sc->sc_wdcdev.sc_dev.dv_xname);
2408 pciide_mapreg_dma(sc, pa);
2409 } else {
2410 printf("%s: hardware does not support DMA",
2411 sc->sc_wdcdev.sc_dev.dv_xname);
2412 sc->sc_dma_ok = 0;
2413 }
2414 printf("\n");
2415
2416 sc->sc_cy_handle = cy82c693_init(pa->pa_iot);
2417 if (sc->sc_cy_handle == NULL) {
2418 printf("%s: unable to map hyperCache control registers\n",
2419 sc->sc_wdcdev.sc_dev.dv_xname);
2420 sc->sc_dma_ok = 0;
2421 }
2422
2423 sc->sc_wdcdev.cap = WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32 |
2424 WDC_CAPABILITY_MODE;
2425 if (sc->sc_dma_ok) {
2426 sc->sc_wdcdev.cap |= WDC_CAPABILITY_DMA | WDC_CAPABILITY_IRQACK;
2427 sc->sc_wdcdev.irqack = pciide_irqack;
2428 }
2429 sc->sc_wdcdev.PIO_cap = 4;
2430 sc->sc_wdcdev.DMA_cap = 2;
2431 sc->sc_wdcdev.set_modes = cy693_setup_channel;
2432
2433 sc->sc_wdcdev.channels = sc->wdc_chanarray;
2434 sc->sc_wdcdev.nchannels = 1;
2435
2436 /* Only one channel for this chip; if we are here it's enabled */
2437 cp = &sc->pciide_channels[0];
2438 sc->wdc_chanarray[0] = &cp->wdc_channel;
2439 cp->name = PCIIDE_CHANNEL_NAME(0);
2440 cp->wdc_channel.channel = 0;
2441 cp->wdc_channel.wdc = &sc->sc_wdcdev;
2442 cp->wdc_channel.ch_queue =
2443 malloc(sizeof(struct channel_queue), M_DEVBUF, M_NOWAIT);
2444 if (cp->wdc_channel.ch_queue == NULL) {
2445 printf("%s primary channel: "
2446 "can't allocate memory for command queue",
2447 sc->sc_wdcdev.sc_dev.dv_xname);
2448 return;
2449 }
2450 printf("%s: primary channel %s to ",
2451 sc->sc_wdcdev.sc_dev.dv_xname,
2452 (interface & PCIIDE_INTERFACE_SETTABLE(0)) ?
2453 "configured" : "wired");
2454 if (interface & PCIIDE_INTERFACE_PCI(0)) {
2455 printf("native-PCI");
2456 cp->hw_ok = pciide_mapregs_native(pa, cp, &cmdsize, &ctlsize,
2457 pciide_pci_intr);
2458 } else {
2459 printf("compatibility");
2460 cp->hw_ok = pciide_mapregs_compat(pa, cp, sc->sc_cy_compatchan,
2461 &cmdsize, &ctlsize);
2462 }
2463 printf(" mode\n");
2464 cp->wdc_channel.data32iot = cp->wdc_channel.cmd_iot;
2465 cp->wdc_channel.data32ioh = cp->wdc_channel.cmd_ioh;
2466 wdcattach(&cp->wdc_channel);
2467 if (pciide_chan_candisable(cp)) {
2468 pci_conf_write(sc->sc_pc, sc->sc_tag,
2469 PCI_COMMAND_STATUS_REG, 0);
2470 }
2471 pciide_map_compat_intr(pa, cp, sc->sc_cy_compatchan, interface);
2472 if (cp->hw_ok == 0)
2473 return;
2474 WDCDEBUG_PRINT(("cy693_chip_map: old timings reg 0x%x\n",
2475 pci_conf_read(sc->sc_pc, sc->sc_tag, CY_CMD_CTRL)),DEBUG_PROBE);
2476 cy693_setup_channel(&cp->wdc_channel);
2477 WDCDEBUG_PRINT(("cy693_chip_map: new timings reg 0x%x\n",
2478 pci_conf_read(sc->sc_pc, sc->sc_tag, CY_CMD_CTRL)), DEBUG_PROBE);
2479 }
2480
2481 void
2482 cy693_setup_channel(chp)
2483 struct channel_softc *chp;
2484 {
2485 struct ata_drive_datas *drvp;
2486 int drive;
2487 u_int32_t cy_cmd_ctrl;
2488 u_int32_t idedma_ctl;
2489 struct pciide_channel *cp = (struct pciide_channel*)chp;
2490 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
2491 int dma_mode = -1;
2492
2493 cy_cmd_ctrl = idedma_ctl = 0;
2494
2495 /* setup DMA if needed */
2496 pciide_channel_dma_setup(cp);
2497
2498 for (drive = 0; drive < 2; drive++) {
2499 drvp = &chp->ch_drive[drive];
2500 /* If no drive, skip */
2501 if ((drvp->drive_flags & DRIVE) == 0)
2502 continue;
2503 /* add timing values, setup DMA if needed */
2504 if (drvp->drive_flags & DRIVE_DMA) {
2505 idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
2506 /* use Multiword DMA */
2507 if (dma_mode == -1 || dma_mode > drvp->DMA_mode)
2508 dma_mode = drvp->DMA_mode;
2509 }
2510 cy_cmd_ctrl |= (cy_pio_pulse[drvp->PIO_mode] <<
2511 CY_CMD_CTRL_IOW_PULSE_OFF(drive));
2512 cy_cmd_ctrl |= (cy_pio_rec[drvp->PIO_mode] <<
2513 CY_CMD_CTRL_IOW_REC_OFF(drive));
2514 cy_cmd_ctrl |= (cy_pio_pulse[drvp->PIO_mode] <<
2515 CY_CMD_CTRL_IOR_PULSE_OFF(drive));
2516 cy_cmd_ctrl |= (cy_pio_rec[drvp->PIO_mode] <<
2517 CY_CMD_CTRL_IOR_REC_OFF(drive));
2518 }
2519 pci_conf_write(sc->sc_pc, sc->sc_tag, CY_CMD_CTRL, cy_cmd_ctrl);
2520 chp->ch_drive[0].DMA_mode = dma_mode;
2521 chp->ch_drive[1].DMA_mode = dma_mode;
2522
2523 if (dma_mode == -1)
2524 dma_mode = 0;
2525
2526 if (sc->sc_cy_handle != NULL) {
2527 /* Note: `multiple' is implied. */
2528 cy82c693_write(sc->sc_cy_handle,
2529 (sc->sc_cy_compatchan == 0) ?
2530 CY_DMA_IDX_PRIMARY : CY_DMA_IDX_SECONDARY, dma_mode);
2531 }
2532
2533 pciide_print_modes(cp);
2534
2535 if (idedma_ctl != 0) {
2536 /* Add software bits in status register */
2537 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
2538 IDEDMA_CTL, idedma_ctl);
2539 }
2540 }
2541
2542 void
2543 sis_chip_map(sc, pa)
2544 struct pciide_softc *sc;
2545 struct pci_attach_args *pa;
2546 {
2547 struct pciide_channel *cp;
2548 int channel;
2549 u_int8_t sis_ctr0 = pciide_pci_read(sc->sc_pc, sc->sc_tag, SIS_CTRL0);
2550 pcireg_t interface = PCI_INTERFACE(pa->pa_class);
2551 pcireg_t rev = PCI_REVISION(pa->pa_class);
2552 bus_size_t cmdsize, ctlsize;
2553
2554 if (pciide_chipen(sc, pa) == 0)
2555 return;
2556 printf("%s: bus-master DMA support present",
2557 sc->sc_wdcdev.sc_dev.dv_xname);
2558 pciide_mapreg_dma(sc, pa);
2559 printf("\n");
2560 sc->sc_wdcdev.cap = WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32 |
2561 WDC_CAPABILITY_MODE;
2562 if (sc->sc_dma_ok) {
2563 sc->sc_wdcdev.cap |= WDC_CAPABILITY_DMA | WDC_CAPABILITY_IRQACK;
2564 sc->sc_wdcdev.irqack = pciide_irqack;
2565 if (rev > 0xd0)
2566 sc->sc_wdcdev.cap |= WDC_CAPABILITY_UDMA;
2567 }
2568
2569 sc->sc_wdcdev.PIO_cap = 4;
2570 sc->sc_wdcdev.DMA_cap = 2;
2571 if (sc->sc_wdcdev.cap & WDC_CAPABILITY_UDMA)
2572 sc->sc_wdcdev.UDMA_cap = 2;
2573 sc->sc_wdcdev.set_modes = sis_setup_channel;
2574
2575 sc->sc_wdcdev.channels = sc->wdc_chanarray;
2576 sc->sc_wdcdev.nchannels = PCIIDE_NUM_CHANNELS;
2577
2578 pciide_pci_write(sc->sc_pc, sc->sc_tag, SIS_MISC,
2579 pciide_pci_read(sc->sc_pc, sc->sc_tag, SIS_MISC) |
2580 SIS_MISC_TIM_SEL | SIS_MISC_FIFO_SIZE);
2581
2582 for (channel = 0; channel < sc->sc_wdcdev.nchannels; channel++) {
2583 cp = &sc->pciide_channels[channel];
2584 if (pciide_chansetup(sc, channel, interface) == 0)
2585 continue;
2586 if ((channel == 0 && (sis_ctr0 & SIS_CTRL0_CHAN0_EN) == 0) ||
2587 (channel == 1 && (sis_ctr0 & SIS_CTRL0_CHAN1_EN) == 0)) {
2588 printf("%s: %s channel ignored (disabled)\n",
2589 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
2590 continue;
2591 }
2592 pciide_mapchan(pa, cp, interface, &cmdsize, &ctlsize,
2593 pciide_pci_intr);
2594 if (cp->hw_ok == 0)
2595 continue;
2596 if (pciide_chan_candisable(cp)) {
2597 if (channel == 0)
2598 sis_ctr0 &= ~SIS_CTRL0_CHAN0_EN;
2599 else
2600 sis_ctr0 &= ~SIS_CTRL0_CHAN1_EN;
2601 pciide_pci_write(sc->sc_pc, sc->sc_tag, SIS_CTRL0,
2602 sis_ctr0);
2603 }
2604 pciide_map_compat_intr(pa, cp, channel, interface);
2605 if (cp->hw_ok == 0)
2606 continue;
2607 sis_setup_channel(&cp->wdc_channel);
2608 }
2609 }
2610
2611 void
2612 sis_setup_channel(chp)
2613 struct channel_softc *chp;
2614 {
2615 struct ata_drive_datas *drvp;
2616 int drive;
2617 u_int32_t sis_tim;
2618 u_int32_t idedma_ctl;
2619 struct pciide_channel *cp = (struct pciide_channel*)chp;
2620 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
2621
2622 WDCDEBUG_PRINT(("sis_setup_channel: old timings reg for "
2623 "channel %d 0x%x\n", chp->channel,
2624 pci_conf_read(sc->sc_pc, sc->sc_tag, SIS_TIM(chp->channel))),
2625 DEBUG_PROBE);
2626 sis_tim = 0;
2627 idedma_ctl = 0;
2628 /* setup DMA if needed */
2629 pciide_channel_dma_setup(cp);
2630
2631 for (drive = 0; drive < 2; drive++) {
2632 drvp = &chp->ch_drive[drive];
2633 /* If no drive, skip */
2634 if ((drvp->drive_flags & DRIVE) == 0)
2635 continue;
2636 /* add timing values, setup DMA if needed */
2637 if ((drvp->drive_flags & DRIVE_DMA) == 0 &&
2638 (drvp->drive_flags & DRIVE_UDMA) == 0)
2639 goto pio;
2640
2641 if (drvp->drive_flags & DRIVE_UDMA) {
2642 /* use Ultra/DMA */
2643 drvp->drive_flags &= ~DRIVE_DMA;
2644 sis_tim |= sis_udma_tim[drvp->UDMA_mode] <<
2645 SIS_TIM_UDMA_TIME_OFF(drive);
2646 sis_tim |= SIS_TIM_UDMA_EN(drive);
2647 } else {
2648 /*
2649 * use Multiword DMA
2650 * Timings will be used for both PIO and DMA,
2651 * so adjust DMA mode if needed
2652 */
2653 if (drvp->PIO_mode > (drvp->DMA_mode + 2))
2654 drvp->PIO_mode = drvp->DMA_mode + 2;
2655 if (drvp->DMA_mode + 2 > (drvp->PIO_mode))
2656 drvp->DMA_mode = (drvp->PIO_mode > 2) ?
2657 drvp->PIO_mode - 2 : 0;
2658 if (drvp->DMA_mode == 0)
2659 drvp->PIO_mode = 0;
2660 }
2661 idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
2662 pio: sis_tim |= sis_pio_act[drvp->PIO_mode] <<
2663 SIS_TIM_ACT_OFF(drive);
2664 sis_tim |= sis_pio_rec[drvp->PIO_mode] <<
2665 SIS_TIM_REC_OFF(drive);
2666 }
2667 WDCDEBUG_PRINT(("sis_setup_channel: new timings reg for "
2668 "channel %d 0x%x\n", chp->channel, sis_tim), DEBUG_PROBE);
2669 pci_conf_write(sc->sc_pc, sc->sc_tag, SIS_TIM(chp->channel), sis_tim);
2670 if (idedma_ctl != 0) {
2671 /* Add software bits in status register */
2672 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
2673 IDEDMA_CTL, idedma_ctl);
2674 }
2675 pciide_print_modes(cp);
2676 }
2677
2678 void
2679 acer_chip_map(sc, pa)
2680 struct pciide_softc *sc;
2681 struct pci_attach_args *pa;
2682 {
2683 struct pciide_channel *cp;
2684 int channel;
2685 pcireg_t cr, interface;
2686 bus_size_t cmdsize, ctlsize;
2687
2688 if (pciide_chipen(sc, pa) == 0)
2689 return;
2690 printf("%s: bus-master DMA support present",
2691 sc->sc_wdcdev.sc_dev.dv_xname);
2692 pciide_mapreg_dma(sc, pa);
2693 printf("\n");
2694 sc->sc_wdcdev.cap = WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32 |
2695 WDC_CAPABILITY_MODE;
2696 if (sc->sc_dma_ok) {
2697 sc->sc_wdcdev.cap |= WDC_CAPABILITY_DMA | WDC_CAPABILITY_UDMA;
2698 sc->sc_wdcdev.cap |= WDC_CAPABILITY_IRQACK;
2699 sc->sc_wdcdev.irqack = pciide_irqack;
2700 }
2701
2702 sc->sc_wdcdev.PIO_cap = 4;
2703 sc->sc_wdcdev.DMA_cap = 2;
2704 sc->sc_wdcdev.UDMA_cap = 2;
2705 sc->sc_wdcdev.set_modes = acer_setup_channel;
2706 sc->sc_wdcdev.channels = sc->wdc_chanarray;
2707 sc->sc_wdcdev.nchannels = PCIIDE_NUM_CHANNELS;
2708
2709 pciide_pci_write(sc->sc_pc, sc->sc_tag, ACER_CDRC,
2710 (pciide_pci_read(sc->sc_pc, sc->sc_tag, ACER_CDRC) |
2711 ACER_CDRC_DMA_EN) & ~ACER_CDRC_FIFO_DISABLE);
2712
2713 /* Enable "microsoft register bits" R/W. */
2714 pciide_pci_write(sc->sc_pc, sc->sc_tag, ACER_CCAR3,
2715 pciide_pci_read(sc->sc_pc, sc->sc_tag, ACER_CCAR3) | ACER_CCAR3_PI);
2716 pciide_pci_write(sc->sc_pc, sc->sc_tag, ACER_CCAR1,
2717 pciide_pci_read(sc->sc_pc, sc->sc_tag, ACER_CCAR1) &
2718 ~(ACER_CHANSTATUS_RO|PCIIDE_CHAN_RO(0)|PCIIDE_CHAN_RO(1)));
2719 pciide_pci_write(sc->sc_pc, sc->sc_tag, ACER_CCAR2,
2720 pciide_pci_read(sc->sc_pc, sc->sc_tag, ACER_CCAR2) &
2721 ~ACER_CHANSTATUSREGS_RO);
2722 cr = pci_conf_read(sc->sc_pc, sc->sc_tag, PCI_CLASS_REG);
2723 cr |= (PCIIDE_CHANSTATUS_EN << PCI_INTERFACE_SHIFT);
2724 pci_conf_write(sc->sc_pc, sc->sc_tag, PCI_CLASS_REG, cr);
2725 /* Don't use cr, re-read the real register content instead */
2726 interface = PCI_INTERFACE(pci_conf_read(sc->sc_pc, sc->sc_tag,
2727 PCI_CLASS_REG));
2728
2729 for (channel = 0; channel < sc->sc_wdcdev.nchannels; channel++) {
2730 cp = &sc->pciide_channels[channel];
2731 if (pciide_chansetup(sc, channel, interface) == 0)
2732 continue;
2733 if ((interface & PCIIDE_CHAN_EN(channel)) == 0) {
2734 printf("%s: %s channel ignored (disabled)\n",
2735 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
2736 continue;
2737 }
2738 pciide_mapchan(pa, cp, interface, &cmdsize, &ctlsize,
2739 acer_pci_intr);
2740 if (cp->hw_ok == 0)
2741 continue;
2742 if (pciide_chan_candisable(cp)) {
2743 cr &= ~(PCIIDE_CHAN_EN(channel) << PCI_INTERFACE_SHIFT);
2744 pci_conf_write(sc->sc_pc, sc->sc_tag,
2745 PCI_CLASS_REG, cr);
2746 }
2747 pciide_map_compat_intr(pa, cp, channel, interface);
2748 acer_setup_channel(&cp->wdc_channel);
2749 }
2750 }
2751
2752 void
2753 acer_setup_channel(chp)
2754 struct channel_softc *chp;
2755 {
2756 struct ata_drive_datas *drvp;
2757 int drive;
2758 u_int32_t acer_fifo_udma;
2759 u_int32_t idedma_ctl;
2760 struct pciide_channel *cp = (struct pciide_channel*)chp;
2761 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
2762
2763 idedma_ctl = 0;
2764 acer_fifo_udma = pci_conf_read(sc->sc_pc, sc->sc_tag, ACER_FTH_UDMA);
2765 WDCDEBUG_PRINT(("acer_setup_channel: old fifo/udma reg 0x%x\n",
2766 acer_fifo_udma), DEBUG_PROBE);
2767 /* setup DMA if needed */
2768 pciide_channel_dma_setup(cp);
2769
2770 for (drive = 0; drive < 2; drive++) {
2771 drvp = &chp->ch_drive[drive];
2772 /* If no drive, skip */
2773 if ((drvp->drive_flags & DRIVE) == 0)
2774 continue;
2775 WDCDEBUG_PRINT(("acer_setup_channel: old timings reg for "
2776 "channel %d drive %d 0x%x\n", chp->channel, drive,
2777 pciide_pci_read(sc->sc_pc, sc->sc_tag,
2778 ACER_IDETIM(chp->channel, drive))), DEBUG_PROBE);
2779 /* clear FIFO/DMA mode */
2780 acer_fifo_udma &= ~(ACER_FTH_OPL(chp->channel, drive, 0x3) |
2781 ACER_UDMA_EN(chp->channel, drive) |
2782 ACER_UDMA_TIM(chp->channel, drive, 0x7));
2783
2784 /* add timing values, setup DMA if needed */
2785 if ((drvp->drive_flags & DRIVE_DMA) == 0 &&
2786 (drvp->drive_flags & DRIVE_UDMA) == 0) {
2787 acer_fifo_udma |=
2788 ACER_FTH_OPL(chp->channel, drive, 0x1);
2789 goto pio;
2790 }
2791
2792 acer_fifo_udma |= ACER_FTH_OPL(chp->channel, drive, 0x2);
2793 if (drvp->drive_flags & DRIVE_UDMA) {
2794 /* use Ultra/DMA */
2795 drvp->drive_flags &= ~DRIVE_DMA;
2796 acer_fifo_udma |= ACER_UDMA_EN(chp->channel, drive);
2797 acer_fifo_udma |=
2798 ACER_UDMA_TIM(chp->channel, drive,
2799 acer_udma[drvp->UDMA_mode]);
2800 } else {
2801 /*
2802 * use Multiword DMA
2803 * Timings will be used for both PIO and DMA,
2804 * so adjust DMA mode if needed
2805 */
2806 if (drvp->PIO_mode > (drvp->DMA_mode + 2))
2807 drvp->PIO_mode = drvp->DMA_mode + 2;
2808 if (drvp->DMA_mode + 2 > (drvp->PIO_mode))
2809 drvp->DMA_mode = (drvp->PIO_mode > 2) ?
2810 drvp->PIO_mode - 2 : 0;
2811 if (drvp->DMA_mode == 0)
2812 drvp->PIO_mode = 0;
2813 }
2814 idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
2815 pio: pciide_pci_write(sc->sc_pc, sc->sc_tag,
2816 ACER_IDETIM(chp->channel, drive),
2817 acer_pio[drvp->PIO_mode]);
2818 }
2819 WDCDEBUG_PRINT(("acer_setup_channel: new fifo/udma reg 0x%x\n",
2820 acer_fifo_udma), DEBUG_PROBE);
2821 pci_conf_write(sc->sc_pc, sc->sc_tag, ACER_FTH_UDMA, acer_fifo_udma);
2822 if (idedma_ctl != 0) {
2823 /* Add software bits in status register */
2824 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
2825 IDEDMA_CTL, idedma_ctl);
2826 }
2827 pciide_print_modes(cp);
2828 }
2829
2830 int
2831 acer_pci_intr(arg)
2832 void *arg;
2833 {
2834 struct pciide_softc *sc = arg;
2835 struct pciide_channel *cp;
2836 struct channel_softc *wdc_cp;
2837 int i, rv, crv;
2838 u_int32_t chids;
2839
2840 rv = 0;
2841 chids = pciide_pci_read(sc->sc_pc, sc->sc_tag, ACER_CHIDS);
2842 for (i = 0; i < sc->sc_wdcdev.nchannels; i++) {
2843 cp = &sc->pciide_channels[i];
2844 wdc_cp = &cp->wdc_channel;
2845 /* If a compat channel skip. */
2846 if (cp->compat)
2847 continue;
2848 if (chids & ACER_CHIDS_INT(i)) {
2849 crv = wdcintr(wdc_cp);
2850 if (crv == 0)
2851 printf("%s:%d: bogus intr\n",
2852 sc->sc_wdcdev.sc_dev.dv_xname, i);
2853 else
2854 rv = 1;
2855 }
2856 }
2857 return rv;
2858 }
2859
2860 void
2861 hpt_chip_map(sc, pa)
2862 struct pciide_softc *sc;
2863 struct pci_attach_args *pa;
2864 {
2865 struct pciide_channel *cp;
2866 int i, compatchan, revision;
2867 pcireg_t interface;
2868 bus_size_t cmdsize, ctlsize;
2869
2870 if (pciide_chipen(sc, pa) == 0)
2871 return;
2872 revision = PCI_REVISION(pa->pa_class);
2873
2874 /*
2875 * when the chip is in native mode it identifies itself as a
2876 * 'misc mass storage'. Fake interface in this case.
2877 */
2878 if (PCI_SUBCLASS(pa->pa_class) == PCI_SUBCLASS_MASS_STORAGE_IDE) {
2879 interface = PCI_INTERFACE(pa->pa_class);
2880 } else {
2881 interface = PCIIDE_INTERFACE_BUS_MASTER_DMA |
2882 PCIIDE_INTERFACE_PCI(0);
2883 if (revision == HPT370_REV)
2884 interface |= PCIIDE_INTERFACE_PCI(1);
2885 }
2886
2887 printf("%s: bus-master DMA support present",
2888 sc->sc_wdcdev.sc_dev.dv_xname);
2889 pciide_mapreg_dma(sc, pa);
2890 printf("\n");
2891 sc->sc_wdcdev.cap = WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32 |
2892 WDC_CAPABILITY_MODE;
2893 if (sc->sc_dma_ok) {
2894 sc->sc_wdcdev.cap |= WDC_CAPABILITY_DMA | WDC_CAPABILITY_UDMA;
2895 sc->sc_wdcdev.cap |= WDC_CAPABILITY_IRQACK;
2896 sc->sc_wdcdev.irqack = pciide_irqack;
2897 }
2898 sc->sc_wdcdev.PIO_cap = 4;
2899 sc->sc_wdcdev.DMA_cap = 2;
2900
2901 sc->sc_wdcdev.set_modes = hpt_setup_channel;
2902 sc->sc_wdcdev.channels = sc->wdc_chanarray;
2903 if (revision == HPT366_REV) {
2904 sc->sc_wdcdev.UDMA_cap = 4;
2905 /*
2906 * The 366 has 2 PCI IDE functions, one for primary and one
2907 * for secondary. So we need to call pciide_mapregs_compat()
2908 * with the real channel
2909 */
2910 if (pa->pa_function == 0) {
2911 compatchan = 0;
2912 } else if (pa->pa_function == 1) {
2913 compatchan = 1;
2914 } else {
2915 printf("%s: unexpected PCI function %d\n",
2916 sc->sc_wdcdev.sc_dev.dv_xname, pa->pa_function);
2917 return;
2918 }
2919 sc->sc_wdcdev.nchannels = 1;
2920 } else {
2921 sc->sc_wdcdev.nchannels = 2;
2922 sc->sc_wdcdev.UDMA_cap = 5;
2923 }
2924 for (i = 0; i < sc->sc_wdcdev.nchannels; i++) {
2925 cp = &sc->pciide_channels[i];
2926 if (sc->sc_wdcdev.nchannels > 1) {
2927 compatchan = i;
2928 if((pciide_pci_read(sc->sc_pc, sc->sc_tag,
2929 HPT370_CTRL1(i)) & HPT370_CTRL1_EN) == 0) {
2930 printf("%s: %s channel ignored (disabled)\n",
2931 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
2932 continue;
2933 }
2934 }
2935 if (pciide_chansetup(sc, i, interface) == 0)
2936 continue;
2937 if (interface & PCIIDE_INTERFACE_PCI(i)) {
2938 cp->hw_ok = pciide_mapregs_native(pa, cp, &cmdsize,
2939 &ctlsize, hpt_pci_intr);
2940 } else {
2941 cp->hw_ok = pciide_mapregs_compat(pa, cp, compatchan,
2942 &cmdsize, &ctlsize);
2943 }
2944 if (cp->hw_ok == 0)
2945 return;
2946 cp->wdc_channel.data32iot = cp->wdc_channel.cmd_iot;
2947 cp->wdc_channel.data32ioh = cp->wdc_channel.cmd_ioh;
2948 wdcattach(&cp->wdc_channel);
2949 hpt_setup_channel(&cp->wdc_channel);
2950 }
2951 if (revision == HPT370_REV) {
2952 /*
2953 * HPT370_REV has a bit to disable interrupts, make sure
2954 * to clear it
2955 */
2956 pciide_pci_write(sc->sc_pc, sc->sc_tag, HPT_CSEL,
2957 pciide_pci_read(sc->sc_pc, sc->sc_tag, HPT_CSEL) &
2958 ~HPT_CSEL_IRQDIS);
2959 }
2960 return;
2961 }
2962
2963 void
2964 hpt_setup_channel(chp)
2965 struct channel_softc *chp;
2966 {
2967 struct ata_drive_datas *drvp;
2968 int drive;
2969 int cable;
2970 u_int32_t before, after;
2971 u_int32_t idedma_ctl;
2972 struct pciide_channel *cp = (struct pciide_channel*)chp;
2973 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
2974
2975 cable = pciide_pci_read(sc->sc_pc, sc->sc_tag, HPT_CSEL);
2976
2977 /* setup DMA if needed */
2978 pciide_channel_dma_setup(cp);
2979
2980 idedma_ctl = 0;
2981
2982 /* Per drive settings */
2983 for (drive = 0; drive < 2; drive++) {
2984 drvp = &chp->ch_drive[drive];
2985 /* If no drive, skip */
2986 if ((drvp->drive_flags & DRIVE) == 0)
2987 continue;
2988 before = pci_conf_read(sc->sc_pc, sc->sc_tag,
2989 HPT_IDETIM(chp->channel, drive));
2990
2991 /* add timing values, setup DMA if needed */
2992 if (drvp->drive_flags & DRIVE_UDMA) {
2993 /* use Ultra/DMA */
2994 drvp->drive_flags &= ~DRIVE_DMA;
2995 if ((cable & HPT_CSEL_CBLID(chp->channel)) != 0 &&
2996 drvp->UDMA_mode > 2)
2997 drvp->UDMA_mode = 2;
2998 after = (sc->sc_wdcdev.nchannels == 2) ?
2999 hpt370_udma[drvp->UDMA_mode] :
3000 hpt366_udma[drvp->UDMA_mode];
3001 idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
3002 } else if (drvp->drive_flags & DRIVE_DMA) {
3003 /*
3004 * use Multiword DMA.
3005 * Timings will be used for both PIO and DMA, so adjust
3006 * DMA mode if needed
3007 */
3008 if (drvp->PIO_mode >= 3 &&
3009 (drvp->DMA_mode + 2) > drvp->PIO_mode) {
3010 drvp->DMA_mode = drvp->PIO_mode - 2;
3011 }
3012 after = (sc->sc_wdcdev.nchannels == 2) ?
3013 hpt370_dma[drvp->DMA_mode] :
3014 hpt366_dma[drvp->DMA_mode];
3015 idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
3016 } else {
3017 /* PIO only */
3018 after = (sc->sc_wdcdev.nchannels == 2) ?
3019 hpt370_pio[drvp->PIO_mode] :
3020 hpt366_pio[drvp->PIO_mode];
3021 }
3022 pci_conf_write(sc->sc_pc, sc->sc_tag,
3023 HPT_IDETIM(chp->channel, drive), after);
3024 WDCDEBUG_PRINT(("%s: bus speed register set to 0x%08x "
3025 "(BIOS 0x%08x)\n", drvp->drv_softc->dv_xname,
3026 after, before), DEBUG_PROBE);
3027 }
3028 if (idedma_ctl != 0) {
3029 /* Add software bits in status register */
3030 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
3031 IDEDMA_CTL, idedma_ctl);
3032 }
3033 pciide_print_modes(cp);
3034 }
3035
3036 int
3037 hpt_pci_intr(arg)
3038 void *arg;
3039 {
3040 struct pciide_softc *sc = arg;
3041 struct pciide_channel *cp;
3042 struct channel_softc *wdc_cp;
3043 int rv = 0;
3044 int dmastat, i, crv;
3045
3046 for (i = 0; i < sc->sc_wdcdev.nchannels; i++) {
3047 dmastat = bus_space_read_1(sc->sc_dma_iot, sc->sc_dma_ioh,
3048 IDEDMA_CTL + IDEDMA_SCH_OFFSET * i);
3049 if((dmastat & IDEDMA_CTL_INTR) == 0)
3050 continue;
3051 cp = &sc->pciide_channels[i];
3052 wdc_cp = &cp->wdc_channel;
3053 crv = wdcintr(wdc_cp);
3054 if (crv == 0) {
3055 printf("%s:%d: bogus intr\n",
3056 sc->sc_wdcdev.sc_dev.dv_xname, i);
3057 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
3058 IDEDMA_CTL + IDEDMA_SCH_OFFSET * i, dmastat);
3059 } else
3060 rv = 1;
3061 }
3062 return rv;
3063 }
3064
3065
3066 /* A macro to test product */
3067 #define PDC_IS_262(sc) \
3068 ((sc)->sc_pp->ide_product == PCI_PRODUCT_PROMISE_ULTRA66 || \
3069 (sc)->sc_pp->ide_product == PCI_PRODUCT_PROMISE_ULTRA100 || \
3070 (sc)->sc_pp->ide_product == PCI_PRODUCT_PROMISE_ULTRA100X)
3071
3072 void
3073 pdc202xx_chip_map(sc, pa)
3074 struct pciide_softc *sc;
3075 struct pci_attach_args *pa;
3076 {
3077 struct pciide_channel *cp;
3078 int channel;
3079 pcireg_t interface, st, mode;
3080 bus_size_t cmdsize, ctlsize;
3081
3082 st = pci_conf_read(sc->sc_pc, sc->sc_tag, PDC2xx_STATE);
3083 WDCDEBUG_PRINT(("pdc202xx_setup_chip: controller state 0x%x\n", st),
3084 DEBUG_PROBE);
3085 if (pciide_chipen(sc, pa) == 0)
3086 return;
3087
3088 /* turn off RAID mode */
3089 st &= ~PDC2xx_STATE_IDERAID;
3090
3091 /*
3092 * can't rely on the PCI_CLASS_REG content if the chip was in raid
3093 * mode. We have to fake interface
3094 */
3095 interface = PCIIDE_INTERFACE_SETTABLE(0) | PCIIDE_INTERFACE_SETTABLE(1);
3096 if (st & PDC2xx_STATE_NATIVE)
3097 interface |= PCIIDE_INTERFACE_PCI(0) | PCIIDE_INTERFACE_PCI(1);
3098
3099 printf("%s: bus-master DMA support present",
3100 sc->sc_wdcdev.sc_dev.dv_xname);
3101 pciide_mapreg_dma(sc, pa);
3102 printf("\n");
3103 sc->sc_wdcdev.cap = WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32 |
3104 WDC_CAPABILITY_MODE;
3105 if (sc->sc_dma_ok) {
3106 sc->sc_wdcdev.cap |= WDC_CAPABILITY_DMA | WDC_CAPABILITY_UDMA;
3107 sc->sc_wdcdev.cap |= WDC_CAPABILITY_IRQACK;
3108 sc->sc_wdcdev.irqack = pciide_irqack;
3109 }
3110 sc->sc_wdcdev.PIO_cap = 4;
3111 sc->sc_wdcdev.DMA_cap = 2;
3112 if (PDC_IS_262(sc))
3113 sc->sc_wdcdev.UDMA_cap = 4;
3114 else
3115 sc->sc_wdcdev.UDMA_cap = 2;
3116 sc->sc_wdcdev.set_modes = pdc202xx_setup_channel;
3117 sc->sc_wdcdev.channels = sc->wdc_chanarray;
3118 sc->sc_wdcdev.nchannels = PCIIDE_NUM_CHANNELS;
3119
3120 /* setup failsafe defaults */
3121 mode = 0;
3122 mode = PDC2xx_TIM_SET_PA(mode, pdc2xx_pa[0]);
3123 mode = PDC2xx_TIM_SET_PB(mode, pdc2xx_pb[0]);
3124 mode = PDC2xx_TIM_SET_MB(mode, pdc2xx_dma_mb[0]);
3125 mode = PDC2xx_TIM_SET_MC(mode, pdc2xx_dma_mc[0]);
3126 for (channel = 0; channel < sc->sc_wdcdev.nchannels; channel++) {
3127 WDCDEBUG_PRINT(("pdc202xx_setup_chip: channel %d drive 0 "
3128 "initial timings 0x%x, now 0x%x\n", channel,
3129 pci_conf_read(sc->sc_pc, sc->sc_tag,
3130 PDC2xx_TIM(channel, 0)), mode | PDC2xx_TIM_IORDYp),
3131 DEBUG_PROBE);
3132 pci_conf_write(sc->sc_pc, sc->sc_tag, PDC2xx_TIM(channel, 0),
3133 mode | PDC2xx_TIM_IORDYp);
3134 WDCDEBUG_PRINT(("pdc202xx_setup_chip: channel %d drive 1 "
3135 "initial timings 0x%x, now 0x%x\n", channel,
3136 pci_conf_read(sc->sc_pc, sc->sc_tag,
3137 PDC2xx_TIM(channel, 1)), mode), DEBUG_PROBE);
3138 pci_conf_write(sc->sc_pc, sc->sc_tag, PDC2xx_TIM(channel, 1),
3139 mode);
3140 }
3141
3142 mode = PDC2xx_SCR_DMA;
3143 if (PDC_IS_262(sc)) {
3144 mode = PDC2xx_SCR_SET_GEN(mode, PDC262_SCR_GEN_LAT);
3145 } else {
3146 /* the BIOS set it up this way */
3147 mode = PDC2xx_SCR_SET_GEN(mode, 0x1);
3148 }
3149 mode = PDC2xx_SCR_SET_I2C(mode, 0x3); /* ditto */
3150 mode = PDC2xx_SCR_SET_POLL(mode, 0x1); /* ditto */
3151 WDCDEBUG_PRINT(("pdc202xx_setup_chip: initial SCR 0x%x, now 0x%x\n",
3152 bus_space_read_4(sc->sc_dma_iot, sc->sc_dma_ioh, PDC2xx_SCR), mode),
3153 DEBUG_PROBE);
3154 bus_space_write_4(sc->sc_dma_iot, sc->sc_dma_ioh, PDC2xx_SCR, mode);
3155
3156 /* controller initial state register is OK even without BIOS */
3157 /* Set DMA mode to IDE DMA compatibility */
3158 mode = bus_space_read_1(sc->sc_dma_iot, sc->sc_dma_ioh, PDC2xx_PM);
3159 WDCDEBUG_PRINT(("pdc202xx_setup_chip: primary mode 0x%x", mode ),
3160 DEBUG_PROBE);
3161 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh, PDC2xx_PM,
3162 mode | 0x1);
3163 mode = bus_space_read_1(sc->sc_dma_iot, sc->sc_dma_ioh, PDC2xx_SM);
3164 WDCDEBUG_PRINT((", secondary mode 0x%x\n", mode ), DEBUG_PROBE);
3165 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh, PDC2xx_SM,
3166 mode | 0x1);
3167
3168 for (channel = 0; channel < sc->sc_wdcdev.nchannels; channel++) {
3169 cp = &sc->pciide_channels[channel];
3170 if (pciide_chansetup(sc, channel, interface) == 0)
3171 continue;
3172 if ((st & (PDC_IS_262(sc) ?
3173 PDC262_STATE_EN(channel):PDC246_STATE_EN(channel))) == 0) {
3174 printf("%s: %s channel ignored (disabled)\n",
3175 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
3176 continue;
3177 }
3178 pciide_mapchan(pa, cp, interface, &cmdsize, &ctlsize,
3179 pdc202xx_pci_intr);
3180 if (cp->hw_ok == 0)
3181 continue;
3182 if (pciide_chan_candisable(cp))
3183 st &= ~(PDC_IS_262(sc) ?
3184 PDC262_STATE_EN(channel):PDC246_STATE_EN(channel));
3185 pciide_map_compat_intr(pa, cp, channel, interface);
3186 pdc202xx_setup_channel(&cp->wdc_channel);
3187 }
3188 WDCDEBUG_PRINT(("pdc202xx_setup_chip: new controller state 0x%x\n", st),
3189 DEBUG_PROBE);
3190 pci_conf_write(sc->sc_pc, sc->sc_tag, PDC2xx_STATE, st);
3191 return;
3192 }
3193
3194 void
3195 pdc202xx_setup_channel(chp)
3196 struct channel_softc *chp;
3197 {
3198 struct ata_drive_datas *drvp;
3199 int drive;
3200 pcireg_t mode, st;
3201 u_int32_t idedma_ctl, scr, atapi;
3202 struct pciide_channel *cp = (struct pciide_channel*)chp;
3203 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
3204 int channel = chp->channel;
3205
3206 /* setup DMA if needed */
3207 pciide_channel_dma_setup(cp);
3208
3209 idedma_ctl = 0;
3210
3211 /* Per channel settings */
3212 if (PDC_IS_262(sc)) {
3213 scr = bus_space_read_1(sc->sc_dma_iot, sc->sc_dma_ioh,
3214 PDC262_U66);
3215 st = pci_conf_read(sc->sc_pc, sc->sc_tag, PDC2xx_STATE);
3216 /* Trimm UDMA mode */
3217 if ((st & PDC262_STATE_80P(channel)) != 0 ||
3218 (chp->ch_drive[0].drive_flags & DRIVE_UDMA &&
3219 chp->ch_drive[0].UDMA_mode <= 2) ||
3220 (chp->ch_drive[1].drive_flags & DRIVE_UDMA &&
3221 chp->ch_drive[1].UDMA_mode <= 2)) {
3222 if (chp->ch_drive[0].UDMA_mode > 2)
3223 chp->ch_drive[0].UDMA_mode = 2;
3224 if (chp->ch_drive[1].UDMA_mode > 2)
3225 chp->ch_drive[1].UDMA_mode = 2;
3226 }
3227 /* Set U66 if needed */
3228 if ((chp->ch_drive[0].drive_flags & DRIVE_UDMA &&
3229 chp->ch_drive[0].UDMA_mode > 2) ||
3230 (chp->ch_drive[1].drive_flags & DRIVE_UDMA &&
3231 chp->ch_drive[1].UDMA_mode > 2))
3232 scr |= PDC262_U66_EN(channel);
3233 else
3234 scr &= ~PDC262_U66_EN(channel);
3235 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
3236 PDC262_U66, scr);
3237 if (chp->ch_drive[0].drive_flags & DRIVE_ATAPI ||
3238 chp->ch_drive[1].drive_flags & DRIVE_ATAPI) {
3239 if (((chp->ch_drive[0].drive_flags & DRIVE_UDMA) &&
3240 !(chp->ch_drive[1].drive_flags & DRIVE_UDMA) &&
3241 (chp->ch_drive[1].drive_flags & DRIVE_DMA)) ||
3242 ((chp->ch_drive[1].drive_flags & DRIVE_UDMA) &&
3243 !(chp->ch_drive[0].drive_flags & DRIVE_UDMA) &&
3244 (chp->ch_drive[0].drive_flags & DRIVE_DMA)))
3245 atapi = 0;
3246 else
3247 atapi = PDC262_ATAPI_UDMA;
3248 bus_space_write_4(sc->sc_dma_iot, sc->sc_dma_ioh,
3249 PDC262_ATAPI(channel), atapi);
3250 }
3251 }
3252 for (drive = 0; drive < 2; drive++) {
3253 drvp = &chp->ch_drive[drive];
3254 /* If no drive, skip */
3255 if ((drvp->drive_flags & DRIVE) == 0)
3256 continue;
3257 mode = 0;
3258 if (drvp->drive_flags & DRIVE_UDMA) {
3259 /* use Ultra/DMA */
3260 drvp->drive_flags &= ~DRIVE_DMA;
3261 mode = PDC2xx_TIM_SET_MB(mode,
3262 pdc2xx_udma_mb[drvp->UDMA_mode]);
3263 mode = PDC2xx_TIM_SET_MC(mode,
3264 pdc2xx_udma_mc[drvp->UDMA_mode]);
3265 drvp->drive_flags &= ~DRIVE_DMA;
3266 idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
3267 } else if (drvp->drive_flags & DRIVE_DMA) {
3268 mode = PDC2xx_TIM_SET_MB(mode,
3269 pdc2xx_dma_mb[drvp->DMA_mode]);
3270 mode = PDC2xx_TIM_SET_MC(mode,
3271 pdc2xx_dma_mc[drvp->DMA_mode]);
3272 idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
3273 } else {
3274 mode = PDC2xx_TIM_SET_MB(mode,
3275 pdc2xx_dma_mb[0]);
3276 mode = PDC2xx_TIM_SET_MC(mode,
3277 pdc2xx_dma_mc[0]);
3278 }
3279 mode = PDC2xx_TIM_SET_PA(mode, pdc2xx_pa[drvp->PIO_mode]);
3280 mode = PDC2xx_TIM_SET_PB(mode, pdc2xx_pb[drvp->PIO_mode]);
3281 if (drvp->drive_flags & DRIVE_ATA)
3282 mode |= PDC2xx_TIM_PRE;
3283 mode |= PDC2xx_TIM_SYNC | PDC2xx_TIM_ERRDY;
3284 if (drvp->PIO_mode >= 3) {
3285 mode |= PDC2xx_TIM_IORDY;
3286 if (drive == 0)
3287 mode |= PDC2xx_TIM_IORDYp;
3288 }
3289 WDCDEBUG_PRINT(("pdc202xx_setup_channel: %s:%d:%d "
3290 "timings 0x%x\n",
3291 sc->sc_wdcdev.sc_dev.dv_xname,
3292 chp->channel, drive, mode), DEBUG_PROBE);
3293 pci_conf_write(sc->sc_pc, sc->sc_tag,
3294 PDC2xx_TIM(chp->channel, drive), mode);
3295 }
3296 if (idedma_ctl != 0) {
3297 /* Add software bits in status register */
3298 bus_space_write_1(sc->sc_dma_iot, sc->sc_dma_ioh,
3299 IDEDMA_CTL, idedma_ctl);
3300 }
3301 pciide_print_modes(cp);
3302 }
3303
3304 int
3305 pdc202xx_pci_intr(arg)
3306 void *arg;
3307 {
3308 struct pciide_softc *sc = arg;
3309 struct pciide_channel *cp;
3310 struct channel_softc *wdc_cp;
3311 int i, rv, crv;
3312 u_int32_t scr;
3313
3314 rv = 0;
3315 scr = bus_space_read_4(sc->sc_dma_iot, sc->sc_dma_ioh, PDC2xx_SCR);
3316 for (i = 0; i < sc->sc_wdcdev.nchannels; i++) {
3317 cp = &sc->pciide_channels[i];
3318 wdc_cp = &cp->wdc_channel;
3319 /* If a compat channel skip. */
3320 if (cp->compat)
3321 continue;
3322 if (scr & PDC2xx_SCR_INT(i)) {
3323 crv = wdcintr(wdc_cp);
3324 if (crv == 0)
3325 printf("%s:%d: bogus intr\n",
3326 sc->sc_wdcdev.sc_dev.dv_xname, i);
3327 else
3328 rv = 1;
3329 }
3330 }
3331 return rv;
3332 }
3333
3334 void
3335 opti_chip_map(sc, pa)
3336 struct pciide_softc *sc;
3337 struct pci_attach_args *pa;
3338 {
3339 struct pciide_channel *cp;
3340 bus_size_t cmdsize, ctlsize;
3341 pcireg_t interface;
3342 u_int8_t init_ctrl;
3343 int channel;
3344
3345 if (pciide_chipen(sc, pa) == 0)
3346 return;
3347 printf("%s: bus-master DMA support present",
3348 sc->sc_wdcdev.sc_dev.dv_xname);
3349 pciide_mapreg_dma(sc, pa);
3350 printf("\n");
3351
3352 sc->sc_wdcdev.cap = WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32 |
3353 WDC_CAPABILITY_MODE;
3354 sc->sc_wdcdev.PIO_cap = 4;
3355 if (sc->sc_dma_ok) {
3356 sc->sc_wdcdev.cap |= WDC_CAPABILITY_DMA | WDC_CAPABILITY_IRQACK;
3357 sc->sc_wdcdev.irqack = pciide_irqack;
3358 sc->sc_wdcdev.DMA_cap = 2;
3359 }
3360 sc->sc_wdcdev.set_modes = opti_setup_channel;
3361
3362 sc->sc_wdcdev.channels = sc->wdc_chanarray;
3363 sc->sc_wdcdev.nchannels = PCIIDE_NUM_CHANNELS;
3364
3365 init_ctrl = pciide_pci_read(sc->sc_pc, sc->sc_tag,
3366 OPTI_REG_INIT_CONTROL);
3367
3368 interface = PCI_INTERFACE(pa->pa_class);
3369
3370 for (channel = 0; channel < sc->sc_wdcdev.nchannels; channel++) {
3371 cp = &sc->pciide_channels[channel];
3372 if (pciide_chansetup(sc, channel, interface) == 0)
3373 continue;
3374 if (channel == 1 &&
3375 (init_ctrl & OPTI_INIT_CONTROL_CH2_DISABLE) != 0) {
3376 printf("%s: %s channel ignored (disabled)\n",
3377 sc->sc_wdcdev.sc_dev.dv_xname, cp->name);
3378 continue;
3379 }
3380 pciide_mapchan(pa, cp, interface, &cmdsize, &ctlsize,
3381 pciide_pci_intr);
3382 if (cp->hw_ok == 0)
3383 continue;
3384 pciide_map_compat_intr(pa, cp, channel, interface);
3385 if (cp->hw_ok == 0)
3386 continue;
3387 opti_setup_channel(&cp->wdc_channel);
3388 }
3389 }
3390
3391 void
3392 opti_setup_channel(chp)
3393 struct channel_softc *chp;
3394 {
3395 struct ata_drive_datas *drvp;
3396 struct pciide_channel *cp = (struct pciide_channel*)chp;
3397 struct pciide_softc *sc = (struct pciide_softc *)cp->wdc_channel.wdc;
3398 int drive, spd;
3399 int mode[2];
3400 u_int8_t rv, mr;
3401
3402 /*
3403 * The `Delay' and `Address Setup Time' fields of the
3404 * Miscellaneous Register are always zero initially.
3405 */
3406 mr = opti_read_config(chp, OPTI_REG_MISC) & ~OPTI_MISC_INDEX_MASK;
3407 mr &= ~(OPTI_MISC_DELAY_MASK |
3408 OPTI_MISC_ADDR_SETUP_MASK |
3409 OPTI_MISC_INDEX_MASK);
3410
3411 /* Prime the control register before setting timing values */
3412 opti_write_config(chp, OPTI_REG_CONTROL, OPTI_CONTROL_DISABLE);
3413
3414 /* Determine the clockrate of the PCIbus the chip is attached to */
3415 spd = (int) opti_read_config(chp, OPTI_REG_STRAP);
3416 spd &= OPTI_STRAP_PCI_SPEED_MASK;
3417
3418 /* setup DMA if needed */
3419 pciide_channel_dma_setup(cp);
3420
3421 for (drive = 0; drive < 2; drive++) {
3422 drvp = &chp->ch_drive[drive];
3423 /* If no drive, skip */
3424 if ((drvp->drive_flags & DRIVE) == 0) {
3425 mode[drive] = -1;
3426 continue;
3427 }
3428
3429 if ((drvp->drive_flags & DRIVE_DMA)) {
3430 /*
3431 * Timings will be used for both PIO and DMA,
3432 * so adjust DMA mode if needed
3433 */
3434 if (drvp->PIO_mode > (drvp->DMA_mode + 2))
3435 drvp->PIO_mode = drvp->DMA_mode + 2;
3436 if (drvp->DMA_mode + 2 > (drvp->PIO_mode))
3437 drvp->DMA_mode = (drvp->PIO_mode > 2) ?
3438 drvp->PIO_mode - 2 : 0;
3439 if (drvp->DMA_mode == 0)
3440 drvp->PIO_mode = 0;
3441
3442 mode[drive] = drvp->DMA_mode + 5;
3443 } else
3444 mode[drive] = drvp->PIO_mode;
3445
3446 if (drive && mode[0] >= 0 &&
3447 (opti_tim_as[spd][mode[0]] != opti_tim_as[spd][mode[1]])) {
3448 /*
3449 * Can't have two drives using different values
3450 * for `Address Setup Time'.
3451 * Slow down the faster drive to compensate.
3452 */
3453 int d = (opti_tim_as[spd][mode[0]] >
3454 opti_tim_as[spd][mode[1]]) ? 0 : 1;
3455
3456 mode[d] = mode[1-d];
3457 chp->ch_drive[d].PIO_mode = chp->ch_drive[1-d].PIO_mode;
3458 chp->ch_drive[d].DMA_mode = 0;
3459 chp->ch_drive[d].drive_flags &= DRIVE_DMA;
3460 }
3461 }
3462
3463 for (drive = 0; drive < 2; drive++) {
3464 int m;
3465 if ((m = mode[drive]) < 0)
3466 continue;
3467
3468 /* Set the Address Setup Time and select appropriate index */
3469 rv = opti_tim_as[spd][m] << OPTI_MISC_ADDR_SETUP_SHIFT;
3470 rv |= OPTI_MISC_INDEX(drive);
3471 opti_write_config(chp, OPTI_REG_MISC, mr | rv);
3472
3473 /* Set the pulse width and recovery timing parameters */
3474 rv = opti_tim_cp[spd][m] << OPTI_PULSE_WIDTH_SHIFT;
3475 rv |= opti_tim_rt[spd][m] << OPTI_RECOVERY_TIME_SHIFT;
3476 opti_write_config(chp, OPTI_REG_READ_CYCLE_TIMING, rv);
3477 opti_write_config(chp, OPTI_REG_WRITE_CYCLE_TIMING, rv);
3478
3479 /* Set the Enhanced Mode register appropriately */
3480 rv = pciide_pci_read(sc->sc_pc, sc->sc_tag, OPTI_REG_ENH_MODE);
3481 rv &= ~OPTI_ENH_MODE_MASK(chp->channel, drive);
3482 rv |= OPTI_ENH_MODE(chp->channel, drive, opti_tim_em[m]);
3483 pciide_pci_write(sc->sc_pc, sc->sc_tag, OPTI_REG_ENH_MODE, rv);
3484 }
3485
3486 /* Finally, enable the timings */
3487 opti_write_config(chp, OPTI_REG_CONTROL, OPTI_CONTROL_ENABLE);
3488
3489 pciide_print_modes(cp);
3490 }
3491