xref: /netbsd-src/sys/dev/pci/satalink.c (revision daf6c4152fcddc27c445489775ed1f66ab4ea9a9)
1 /*	$NetBSD: satalink.c,v 1.42 2010/11/05 18:07:24 jakllsch Exp $	*/
2 
3 /*-
4  * Copyright (c) 2003 The NetBSD Foundation, Inc.
5  * All rights reserved.
6  *
7  * This code is derived from software contributed to The NetBSD Foundation
8  * by Jason R. Thorpe of Wasabi Systems, Inc.
9  *
10  * Redistribution and use in source and binary forms, with or without
11  * modification, are permitted provided that the following conditions
12  * are met:
13  * 1. Redistributions of source code must retain the above copyright
14  *    notice, this list of conditions and the following disclaimer.
15  * 2. Redistributions in binary form must reproduce the above copyright
16  *    notice, this list of conditions and the following disclaimer in the
17  *    documentation and/or other materials provided with the distribution.
18  *
19  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29  * POSSIBILITY OF SUCH DAMAGE.
30  */
31 
32 #include <sys/cdefs.h>
33 __KERNEL_RCSID(0, "$NetBSD: satalink.c,v 1.42 2010/11/05 18:07:24 jakllsch Exp $");
34 
35 #include <sys/param.h>
36 #include <sys/systm.h>
37 #include <sys/malloc.h>
38 
39 #include <dev/pci/pcivar.h>
40 #include <dev/pci/pcidevs.h>
41 #include <dev/pci/pciidereg.h>
42 #include <dev/pci/pciidevar.h>
43 #include <dev/pci/pciide_sii3112_reg.h>
44 
45 #include <dev/ata/satareg.h>
46 #include <dev/ata/satavar.h>
47 #include <dev/ata/atareg.h>
48 
49 /*
50  * Register map for BA5 register space, indexed by channel.
51  */
52 static const struct {
53 	bus_addr_t	ba5_IDEDMA_CMD;
54 	bus_addr_t	ba5_IDEDMA_CTL;
55 	bus_addr_t	ba5_IDEDMA_TBL;
56 	bus_addr_t	ba5_IDEDMA_CMD2;
57 	bus_addr_t	ba5_IDEDMA_CTL2;
58 	bus_addr_t	ba5_IDE_TF0;
59 	bus_addr_t	ba5_IDE_TF1;
60 	bus_addr_t	ba5_IDE_TF2;
61 	bus_addr_t	ba5_IDE_TF3;
62 	bus_addr_t	ba5_IDE_TF4;
63 	bus_addr_t	ba5_IDE_TF5;
64 	bus_addr_t	ba5_IDE_TF6;
65 	bus_addr_t	ba5_IDE_TF7;
66 	bus_addr_t	ba5_IDE_TF8;
67 	bus_addr_t	ba5_IDE_RAD;
68 	bus_addr_t	ba5_IDE_TF9;
69 	bus_addr_t	ba5_IDE_TF10;
70 	bus_addr_t	ba5_IDE_TF11;
71 	bus_addr_t	ba5_IDE_TF12;
72 	bus_addr_t	ba5_IDE_TF13;
73 	bus_addr_t	ba5_IDE_TF14;
74 	bus_addr_t	ba5_IDE_TF15;
75 	bus_addr_t	ba5_IDE_TF16;
76 	bus_addr_t	ba5_IDE_TF17;
77 	bus_addr_t	ba5_IDE_TF18;
78 	bus_addr_t	ba5_IDE_TF19;
79 	bus_addr_t	ba5_IDE_RABC;
80 	bus_addr_t	ba5_IDE_CMD_STS;
81 	bus_addr_t	ba5_IDE_CFG_STS;
82 	bus_addr_t	ba5_IDE_DTM;
83 	bus_addr_t	ba5_SControl;
84 	bus_addr_t	ba5_SStatus;
85 	bus_addr_t	ba5_SError;
86 	bus_addr_t	ba5_SActive;		/* 3114 */
87 	bus_addr_t	ba5_SMisc;
88 	bus_addr_t	ba5_PHY_CONFIG;
89 	bus_addr_t	ba5_SIEN;
90 	bus_addr_t	ba5_SFISCfg;
91 } satalink_ba5_regmap[] = {
92 	{	/* Channel 0 */
93 		.ba5_IDEDMA_CMD		=	0x000,
94 		.ba5_IDEDMA_CTL		=	0x002,
95 		.ba5_IDEDMA_TBL		=	0x004,
96 		.ba5_IDEDMA_CMD2	=	0x010,
97 		.ba5_IDEDMA_CTL2	=	0x012,
98 		.ba5_IDE_TF0		=	0x080,	/* wd_data */
99 		.ba5_IDE_TF1		=	0x081,	/* wd_error */
100 		.ba5_IDE_TF2		=	0x082,	/* wd_seccnt */
101 		.ba5_IDE_TF3		=	0x083,	/* wd_sector */
102 		.ba5_IDE_TF4		=	0x084,	/* wd_cyl_lo */
103 		.ba5_IDE_TF5		=	0x085,	/* wd_cyl_hi */
104 		.ba5_IDE_TF6		=	0x086,	/* wd_sdh */
105 		.ba5_IDE_TF7		=	0x087,	/* wd_command */
106 		.ba5_IDE_TF8		=	0x08a,	/* wd_altsts */
107 		.ba5_IDE_RAD		=	0x08c,
108 		.ba5_IDE_TF9		=	0x091,	/* Features 2 */
109 		.ba5_IDE_TF10		=	0x092,	/* Sector Count 2 */
110 		.ba5_IDE_TF11		=	0x093,	/* Start Sector 2 */
111 		.ba5_IDE_TF12		=	0x094,	/* Cylinder Low 2 */
112 		.ba5_IDE_TF13		=	0x095,	/* Cylinder High 2 */
113 		.ba5_IDE_TF14		=	0x096,	/* Device/Head 2 */
114 		.ba5_IDE_TF15		=	0x097,	/* Cmd Sts 2 */
115 		.ba5_IDE_TF16		=	0x098,	/* Sector Count 2 ext */
116 		.ba5_IDE_TF17		=	0x099,	/* Start Sector 2 ext */
117 		.ba5_IDE_TF18		=	0x09a,	/* Cyl Low 2 ext */
118 		.ba5_IDE_TF19		=	0x09b,	/* Cyl High 2 ext */
119 		.ba5_IDE_RABC		=	0x09c,
120 		.ba5_IDE_CMD_STS	=	0x0a0,
121 		.ba5_IDE_CFG_STS	=	0x0a1,
122 		.ba5_IDE_DTM		=	0x0b4,
123 		.ba5_SControl		=	0x100,
124 		.ba5_SStatus		=	0x104,
125 		.ba5_SError		=	0x108,
126 		.ba5_SActive		=	0x10c,
127 		.ba5_SMisc		=	0x140,
128 		.ba5_PHY_CONFIG		=	0x144,
129 		.ba5_SIEN		=	0x148,
130 		.ba5_SFISCfg		=	0x14c,
131 	},
132 	{	/* Channel 1 */
133 		.ba5_IDEDMA_CMD		=	0x008,
134 		.ba5_IDEDMA_CTL		=	0x00a,
135 		.ba5_IDEDMA_TBL		=	0x00c,
136 		.ba5_IDEDMA_CMD2	=	0x018,
137 		.ba5_IDEDMA_CTL2	=	0x01a,
138 		.ba5_IDE_TF0		=	0x0c0,	/* wd_data */
139 		.ba5_IDE_TF1		=	0x0c1,	/* wd_error */
140 		.ba5_IDE_TF2		=	0x0c2,	/* wd_seccnt */
141 		.ba5_IDE_TF3		=	0x0c3,	/* wd_sector */
142 		.ba5_IDE_TF4		=	0x0c4,	/* wd_cyl_lo */
143 		.ba5_IDE_TF5		=	0x0c5,	/* wd_cyl_hi */
144 		.ba5_IDE_TF6		=	0x0c6,	/* wd_sdh */
145 		.ba5_IDE_TF7		=	0x0c7,	/* wd_command */
146 		.ba5_IDE_TF8		=	0x0ca,	/* wd_altsts */
147 		.ba5_IDE_RAD		=	0x0cc,
148 		.ba5_IDE_TF9		=	0x0d1,	/* Features 2 */
149 		.ba5_IDE_TF10		=	0x0d2,	/* Sector Count 2 */
150 		.ba5_IDE_TF11		=	0x0d3,	/* Start Sector 2 */
151 		.ba5_IDE_TF12		=	0x0d4,	/* Cylinder Low 2 */
152 		.ba5_IDE_TF13		=	0x0d5,	/* Cylinder High 2 */
153 		.ba5_IDE_TF14		=	0x0d6,	/* Device/Head 2 */
154 		.ba5_IDE_TF15		=	0x0d7,	/* Cmd Sts 2 */
155 		.ba5_IDE_TF16		=	0x0d8,	/* Sector Count 2 ext */
156 		.ba5_IDE_TF17		=	0x0d9,	/* Start Sector 2 ext */
157 		.ba5_IDE_TF18		=	0x0da,	/* Cyl Low 2 ext */
158 		.ba5_IDE_TF19		=	0x0db,	/* Cyl High 2 ext */
159 		.ba5_IDE_RABC		=	0x0dc,
160 		.ba5_IDE_CMD_STS	=	0x0e0,
161 		.ba5_IDE_CFG_STS	=	0x0e1,
162 		.ba5_IDE_DTM		=	0x0f4,
163 		.ba5_SControl		=	0x180,
164 		.ba5_SStatus		=	0x184,
165 		.ba5_SError		=	0x188,
166 		.ba5_SActive		=	0x18c,
167 		.ba5_SMisc		=	0x1c0,
168 		.ba5_PHY_CONFIG		=	0x1c4,
169 		.ba5_SIEN		=	0x1c8,
170 		.ba5_SFISCfg		=	0x1cc,
171 	},
172 	{	/* Channel 2 (3114) */
173 		.ba5_IDEDMA_CMD		=	0x200,
174 		.ba5_IDEDMA_CTL		=	0x202,
175 		.ba5_IDEDMA_TBL		=	0x204,
176 		.ba5_IDEDMA_CMD2	=	0x210,
177 		.ba5_IDEDMA_CTL2	=	0x212,
178 		.ba5_IDE_TF0		=	0x280,	/* wd_data */
179 		.ba5_IDE_TF1		=	0x281,	/* wd_error */
180 		.ba5_IDE_TF2		=	0x282,	/* wd_seccnt */
181 		.ba5_IDE_TF3		=	0x283,	/* wd_sector */
182 		.ba5_IDE_TF4		=	0x284,	/* wd_cyl_lo */
183 		.ba5_IDE_TF5		=	0x285,	/* wd_cyl_hi */
184 		.ba5_IDE_TF6		=	0x286,	/* wd_sdh */
185 		.ba5_IDE_TF7		=	0x287,	/* wd_command */
186 		.ba5_IDE_TF8		=	0x28a,	/* wd_altsts */
187 		.ba5_IDE_RAD		=	0x28c,
188 		.ba5_IDE_TF9		=	0x291,	/* Features 2 */
189 		.ba5_IDE_TF10		=	0x292,	/* Sector Count 2 */
190 		.ba5_IDE_TF11		=	0x293,	/* Start Sector 2 */
191 		.ba5_IDE_TF12		=	0x294,	/* Cylinder Low 2 */
192 		.ba5_IDE_TF13		=	0x295,	/* Cylinder High 2 */
193 		.ba5_IDE_TF14		=	0x296,	/* Device/Head 2 */
194 		.ba5_IDE_TF15		=	0x297,	/* Cmd Sts 2 */
195 		.ba5_IDE_TF16		=	0x298,	/* Sector Count 2 ext */
196 		.ba5_IDE_TF17		=	0x299,	/* Start Sector 2 ext */
197 		.ba5_IDE_TF18		=	0x29a,	/* Cyl Low 2 ext */
198 		.ba5_IDE_TF19		=	0x29b,	/* Cyl High 2 ext */
199 		.ba5_IDE_RABC		=	0x29c,
200 		.ba5_IDE_CMD_STS	=	0x2a0,
201 		.ba5_IDE_CFG_STS	=	0x2a1,
202 		.ba5_IDE_DTM		=	0x2b4,
203 		.ba5_SControl		=	0x300,
204 		.ba5_SStatus		=	0x304,
205 		.ba5_SError		=	0x308,
206 		.ba5_SActive		=	0x30c,
207 		.ba5_SMisc		=	0x340,
208 		.ba5_PHY_CONFIG		=	0x344,
209 		.ba5_SIEN		=	0x348,
210 		.ba5_SFISCfg		=	0x34c,
211 	},
212 	{	/* Channel 3 (3114) */
213 		.ba5_IDEDMA_CMD		=	0x208,
214 		.ba5_IDEDMA_CTL		=	0x20a,
215 		.ba5_IDEDMA_TBL		=	0x20c,
216 		.ba5_IDEDMA_CMD2	=	0x218,
217 		.ba5_IDEDMA_CTL2	=	0x21a,
218 		.ba5_IDE_TF0		=	0x2c0,	/* wd_data */
219 		.ba5_IDE_TF1		=	0x2c1,	/* wd_error */
220 		.ba5_IDE_TF2		=	0x2c2,	/* wd_seccnt */
221 		.ba5_IDE_TF3		=	0x2c3,	/* wd_sector */
222 		.ba5_IDE_TF4		=	0x2c4,	/* wd_cyl_lo */
223 		.ba5_IDE_TF5		=	0x2c5,	/* wd_cyl_hi */
224 		.ba5_IDE_TF6		=	0x2c6,	/* wd_sdh */
225 		.ba5_IDE_TF7		=	0x2c7,	/* wd_command */
226 		.ba5_IDE_TF8		=	0x2ca,	/* wd_altsts */
227 		.ba5_IDE_RAD		=	0x2cc,
228 		.ba5_IDE_TF9		=	0x2d1,	/* Features 2 */
229 		.ba5_IDE_TF10		=	0x2d2,	/* Sector Count 2 */
230 		.ba5_IDE_TF11		=	0x2d3,	/* Start Sector 2 */
231 		.ba5_IDE_TF12		=	0x2d4,	/* Cylinder Low 2 */
232 		.ba5_IDE_TF13		=	0x2d5,	/* Cylinder High 2 */
233 		.ba5_IDE_TF14		=	0x2d6,	/* Device/Head 2 */
234 		.ba5_IDE_TF15		=	0x2d7,	/* Cmd Sts 2 */
235 		.ba5_IDE_TF16		=	0x2d8,	/* Sector Count 2 ext */
236 		.ba5_IDE_TF17		=	0x2d9,	/* Start Sector 2 ext */
237 		.ba5_IDE_TF18		=	0x2da,	/* Cyl Low 2 ext */
238 		.ba5_IDE_TF19		=	0x2db,	/* Cyl High 2 ext */
239 		.ba5_IDE_RABC		=	0x2dc,
240 		.ba5_IDE_CMD_STS	=	0x2e0,
241 		.ba5_IDE_CFG_STS	=	0x2e1,
242 		.ba5_IDE_DTM		=	0x2f4,
243 		.ba5_SControl		=	0x380,
244 		.ba5_SStatus		=	0x384,
245 		.ba5_SError		=	0x388,
246 		.ba5_SActive		=	0x38c,
247 		.ba5_SMisc		=	0x3c0,
248 		.ba5_PHY_CONFIG		=	0x3c4,
249 		.ba5_SIEN		=	0x3c8,
250 		.ba5_SFISCfg		=	0x3cc,
251 	},
252 };
253 
254 #define	ba5_SIS		0x214		/* summary interrupt status */
255 
256 /* Interrupt steering bit in BA5[0x200]. */
257 #define	IDEDMA_CMD_INT_STEER	(1U << 1)
258 
259 static int  satalink_match(device_t, cfdata_t, void *);
260 static void satalink_attach(device_t, device_t, void *);
261 
262 CFATTACH_DECL_NEW(satalink, sizeof(struct pciide_softc),
263     satalink_match, satalink_attach, NULL, NULL);
264 
265 static void sii3112_chip_map(struct pciide_softc*, struct pci_attach_args*);
266 static void sii3114_chip_map(struct pciide_softc*, struct pci_attach_args*);
267 static void sii3112_drv_probe(struct ata_channel*);
268 static void sii3112_setup_channel(struct ata_channel*);
269 
270 static const struct pciide_product_desc pciide_satalink_products[] =  {
271 	{ PCI_PRODUCT_CMDTECH_3112,
272 	  0,
273 	  "Silicon Image SATALink 3112",
274 	  sii3112_chip_map,
275 	},
276 	{ PCI_PRODUCT_CMDTECH_240,
277 	  0,
278 	  "Silicon Image SATALink Sil240",
279 	  sii3112_chip_map,
280 	},
281 	{ PCI_PRODUCT_CMDTECH_3512,
282 	  0,
283 	  "Silicon Image SATALink 3512",
284 	  sii3112_chip_map,
285 	},
286 	{ PCI_PRODUCT_CMDTECH_AAR_1210SA,
287 	  0,
288 	  "Adaptec AAR-1210SA serial ATA RAID controller",
289 	  sii3112_chip_map,
290 	},
291 	{ PCI_PRODUCT_CMDTECH_3114,
292 	  0,
293 	  "Silicon Image SATALink 3114",
294 	  sii3114_chip_map,
295 	},
296 	{ PCI_PRODUCT_ATI_IXP_SATA_300,
297 	  0,
298 	  "ATI IXP 300 SATA",
299 	  sii3112_chip_map,
300 	},
301 	{ 0,
302 	  0,
303 	  NULL,
304 	  NULL
305 	}
306 };
307 
308 static int
309 satalink_match(device_t parent, cfdata_t match, void *aux)
310 {
311 	struct pci_attach_args *pa = aux;
312 
313 	if (PCI_VENDOR(pa->pa_id) == PCI_VENDOR_CMDTECH) {
314 		if (pciide_lookup_product(pa->pa_id, pciide_satalink_products))
315 			return (2);
316 	}
317 	return (0);
318 }
319 
320 static void
321 satalink_attach(device_t parent, device_t self, void *aux)
322 {
323 	struct pci_attach_args *pa = aux;
324 	struct pciide_softc *sc = device_private(self);
325 
326 	sc->sc_wdcdev.sc_atac.atac_dev = self;
327 
328 	pciide_common_attach(sc, pa,
329 	    pciide_lookup_product(pa->pa_id, pciide_satalink_products));
330 
331 }
332 
333 static inline uint32_t
334 ba5_read_4_ind(struct pciide_softc *sc, bus_addr_t reg)
335 {
336 	uint32_t rv;
337 	int s;
338 
339 	s = splbio();
340 	pci_conf_write(sc->sc_pc, sc->sc_tag, SII3112_BA5_IND_ADDR, reg);
341 	rv = pci_conf_read(sc->sc_pc, sc->sc_tag, SII3112_BA5_IND_DATA);
342 	splx(s);
343 
344 	return (rv);
345 }
346 
347 static inline uint32_t
348 ba5_read_4(struct pciide_softc *sc, bus_addr_t reg)
349 {
350 
351 	if (__predict_true(sc->sc_ba5_en != 0))
352 		return (bus_space_read_4(sc->sc_ba5_st, sc->sc_ba5_sh, reg));
353 
354 	return (ba5_read_4_ind(sc, reg));
355 }
356 
357 #define	BA5_READ_4(sc, chan, reg)					\
358 	ba5_read_4((sc), satalink_ba5_regmap[(chan)].reg)
359 
360 static inline void
361 ba5_write_4_ind(struct pciide_softc *sc, bus_addr_t reg, uint32_t val)
362 {
363 	int s;
364 
365 	s = splbio();
366 	pci_conf_write(sc->sc_pc, sc->sc_tag, SII3112_BA5_IND_ADDR, reg);
367 	pci_conf_write(sc->sc_pc, sc->sc_tag, SII3112_BA5_IND_DATA, val);
368 	splx(s);
369 }
370 
371 static inline void
372 ba5_write_4(struct pciide_softc *sc, bus_addr_t reg, uint32_t val)
373 {
374 
375 	if (__predict_true(sc->sc_ba5_en != 0))
376 		bus_space_write_4(sc->sc_ba5_st, sc->sc_ba5_sh, reg, val);
377 	else
378 		ba5_write_4_ind(sc, reg, val);
379 }
380 
381 #define	BA5_WRITE_4(sc, chan, reg, val)					\
382 	ba5_write_4((sc), satalink_ba5_regmap[(chan)].reg, (val))
383 
384 /*
385  * When the Silicon Image 3112 retries a PCI memory read command,
386  * it may retry it as a memory read multiple command under some
387  * circumstances.  This can totally confuse some PCI controllers,
388  * so ensure that it will never do this by making sure that the
389  * Read Threshold (FIFO Read Request Control) field of the FIFO
390  * Valid Byte Count and Control registers for both channels (BA5
391  * offset 0x40 and 0x44) are set to be at least as large as the
392  * cacheline size register.
393  * This may also happen on the 3114 (ragge 050527)
394  */
395 static void
396 sii_fixup_cacheline(struct pciide_softc *sc, struct pci_attach_args *pa, int n)
397 {
398 	pcireg_t cls, reg;
399 	int i;
400 	static bus_addr_t addr[] = { 0x40, 0x44, 0x240, 0x244 };
401 
402 	cls = pci_conf_read(pa->pa_pc, pa->pa_tag, PCI_BHLC_REG);
403 	cls = (cls >> PCI_CACHELINE_SHIFT) & PCI_CACHELINE_MASK;
404 	cls *= 4;
405 	if (cls > 224) {
406 		cls = pci_conf_read(pa->pa_pc, pa->pa_tag, PCI_BHLC_REG);
407 		cls &= ~(PCI_CACHELINE_MASK << PCI_CACHELINE_SHIFT);
408 		cls |= ((224/4) << PCI_CACHELINE_SHIFT);
409 		pci_conf_write(pa->pa_pc, pa->pa_tag, PCI_BHLC_REG, cls);
410 		cls = 224;
411 	}
412 	if (cls < 32)
413 		cls = 32;
414 	cls = (cls + 31) / 32;
415 	for (i = 0; i < n; i++) {
416 		reg = ba5_read_4(sc, addr[i]);
417 		if ((reg & 0x7) < cls)
418 			ba5_write_4(sc, addr[i], (reg & 0x07) | cls);
419 	}
420 }
421 
422 static void
423 sii3112_chip_map(struct pciide_softc *sc, struct pci_attach_args *pa)
424 {
425 	struct pciide_channel *cp;
426 	pcireg_t interface, scs_cmd, cfgctl;
427 	int channel;
428 
429 	if (pciide_chipen(sc, pa) == 0)
430 		return;
431 
432 #define	SII3112_RESET_BITS						\
433 	(SCS_CMD_PBM_RESET | SCS_CMD_ARB_RESET |			\
434 	 SCS_CMD_FF1_RESET | SCS_CMD_FF0_RESET |			\
435 	 SCS_CMD_IDE1_RESET | SCS_CMD_IDE0_RESET)
436 
437 	/*
438 	 * Reset everything and then unblock all of the interrupts.
439 	 */
440 	scs_cmd = pci_conf_read(pa->pa_pc, pa->pa_tag, SII3112_SCS_CMD);
441 	pci_conf_write(pa->pa_pc, pa->pa_tag, SII3112_SCS_CMD,
442 		       scs_cmd | SII3112_RESET_BITS);
443 	delay(50 * 1000);
444 	pci_conf_write(pa->pa_pc, pa->pa_tag, SII3112_SCS_CMD,
445 		       scs_cmd & SCS_CMD_BA5_EN);
446 	delay(50 * 1000);
447 
448 	if (scs_cmd & SCS_CMD_BA5_EN) {
449 		aprint_verbose_dev(sc->sc_wdcdev.sc_atac.atac_dev,
450 		    "SATALink BA5 register space enabled\n");
451 		if (pci_mapreg_map(pa, PCI_MAPREG_START + 0x14,
452 				   PCI_MAPREG_TYPE_MEM|
453 				   PCI_MAPREG_MEM_TYPE_32BIT, 0,
454 				   &sc->sc_ba5_st, &sc->sc_ba5_sh,
455 				   NULL, &sc->sc_ba5_ss) != 0)
456 			aprint_error_dev(sc->sc_wdcdev.sc_atac.atac_dev,
457 			    "unable to map SATALink BA5 register space\n");
458 		else
459 			sc->sc_ba5_en = 1;
460 	} else {
461 		aprint_verbose_dev(sc->sc_wdcdev.sc_atac.atac_dev,
462 		    "SATALink BA5 register space disabled\n");
463 
464 		cfgctl = pci_conf_read(pa->pa_pc, pa->pa_tag,
465 				       SII3112_PCI_CFGCTL);
466 		pci_conf_write(pa->pa_pc, pa->pa_tag, SII3112_PCI_CFGCTL,
467 			       cfgctl | CFGCTL_BA5INDEN);
468 	}
469 
470 	aprint_verbose_dev(sc->sc_wdcdev.sc_atac.atac_dev,
471 	    "bus-master DMA support present");
472 	pciide_mapreg_dma(sc, pa);
473 	aprint_verbose("\n");
474 
475 	/*
476 	 * Rev. <= 0x01 of the 3112 have a bug that can cause data
477 	 * corruption if DMA transfers cross an 8K boundary.  This is
478 	 * apparently hard to tickle, but we'll go ahead and play it
479 	 * safe.
480 	 */
481 	if ((PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_CMDTECH_3112 ||
482 	     PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_CMDTECH_AAR_1210SA) &&
483 	    PCI_REVISION(pa->pa_class) <= 0x01) {
484 		sc->sc_dma_maxsegsz = 8192;
485 		sc->sc_dma_boundary = 8192;
486 	}
487 
488 	sii_fixup_cacheline(sc, pa, 2);
489 
490 	sc->sc_wdcdev.sc_atac.atac_cap |= ATAC_CAP_DATA16 | ATAC_CAP_DATA32;
491 	sc->sc_wdcdev.sc_atac.atac_pio_cap = 4;
492 	if (sc->sc_dma_ok) {
493 		sc->sc_wdcdev.sc_atac.atac_cap |= ATAC_CAP_DMA | ATAC_CAP_UDMA;
494 		sc->sc_wdcdev.irqack = pciide_irqack;
495 		sc->sc_wdcdev.sc_atac.atac_dma_cap = 2;
496 		sc->sc_wdcdev.sc_atac.atac_udma_cap = 6;
497 	}
498 	sc->sc_wdcdev.sc_atac.atac_set_modes = sii3112_setup_channel;
499 
500 	/* We can use SControl and SStatus to probe for drives. */
501 	sc->sc_wdcdev.sc_atac.atac_probe = sii3112_drv_probe;
502 
503 	sc->sc_wdcdev.sc_atac.atac_channels = sc->wdc_chanarray;
504 	sc->sc_wdcdev.sc_atac.atac_nchannels = PCIIDE_NUM_CHANNELS;
505 
506 	wdc_allocate_regs(&sc->sc_wdcdev);
507 
508 	/*
509 	 * The 3112 either identifies itself as a RAID storage device
510 	 * or a Misc storage device.  Fake up the interface bits for
511 	 * what our driver expects.
512 	 */
513 	if (PCI_SUBCLASS(pa->pa_class) == PCI_SUBCLASS_MASS_STORAGE_IDE) {
514 		interface = PCI_INTERFACE(pa->pa_class);
515 	} else {
516 		interface = PCIIDE_INTERFACE_BUS_MASTER_DMA |
517 		    PCIIDE_INTERFACE_PCI(0) | PCIIDE_INTERFACE_PCI(1);
518 	}
519 
520 	for (channel = 0; channel < sc->sc_wdcdev.sc_atac.atac_nchannels;
521 	     channel++) {
522 		cp = &sc->pciide_channels[channel];
523 		if (pciide_chansetup(sc, channel, interface) == 0)
524 			continue;
525 		pciide_mapchan(pa, cp, interface, pciide_pci_intr);
526 	}
527 }
528 
529 static void
530 sii3114_mapreg_dma(struct pciide_softc *sc, struct pci_attach_args *pa)
531 {
532 	struct pciide_channel *pc;
533 	int chan, reg;
534 	bus_size_t size;
535 
536 	sc->sc_wdcdev.dma_arg = sc;
537 	sc->sc_wdcdev.dma_init = pciide_dma_init;
538 	sc->sc_wdcdev.dma_start = pciide_dma_start;
539 	sc->sc_wdcdev.dma_finish = pciide_dma_finish;
540 
541 	if (device_cfdata(sc->sc_wdcdev.sc_atac.atac_dev)->cf_flags &
542 	    PCIIDE_OPTIONS_NODMA) {
543 		aprint_verbose(
544 		    ", but unused (forced off by config file)");
545 		sc->sc_dma_ok = 0;
546 		return;
547 	}
548 
549 	/*
550 	 * Slice off a subregion of BA5 for each of the channel's DMA
551 	 * registers.
552 	 */
553 
554 	sc->sc_dma_iot = sc->sc_ba5_st;
555 	for (chan = 0; chan < 4; chan++) {
556 		pc = &sc->pciide_channels[chan];
557 		for (reg = 0; reg < IDEDMA_NREGS; reg++) {
558 			size = 4;
559 			if (size > (IDEDMA_SCH_OFFSET - reg))
560 				size = IDEDMA_SCH_OFFSET - reg;
561 			if (bus_space_subregion(sc->sc_ba5_st,
562 			    sc->sc_ba5_sh,
563 			    satalink_ba5_regmap[chan].ba5_IDEDMA_CMD + reg,
564 			    size, &pc->dma_iohs[reg]) != 0) {
565 				sc->sc_dma_ok = 0;
566 				aprint_verbose(", but can't subregion offset "
567 				    "%lu size %lu",
568 				    (u_long) satalink_ba5_regmap[
569 						chan].ba5_IDEDMA_CMD + reg,
570 				    (u_long) size);
571 				return;
572 			}
573 		}
574 	}
575 
576 	/* DMA registers all set up! */
577 	sc->sc_dmat = pa->pa_dmat;
578 	sc->sc_dma_ok = 1;
579 }
580 
581 static int
582 sii3114_chansetup(struct pciide_softc *sc, int channel)
583 {
584 	static const char *channel_names[] = {
585 		"port 0",
586 		"port 1",
587 		"port 2",
588 		"port 3",
589 	};
590 	struct pciide_channel *cp = &sc->pciide_channels[channel];
591 
592 	sc->wdc_chanarray[channel] = &cp->ata_channel;
593 
594 	/*
595 	 * We must always keep the Interrupt Steering bit set in channel 2's
596 	 * IDEDMA_CMD register.
597 	 */
598 	if (channel == 2)
599 		cp->idedma_cmd = IDEDMA_CMD_INT_STEER;
600 
601 	cp->name = channel_names[channel];
602 	cp->ata_channel.ch_channel = channel;
603 	cp->ata_channel.ch_atac = &sc->sc_wdcdev.sc_atac;
604 	cp->ata_channel.ch_queue =
605 	    malloc(sizeof(struct ata_queue), M_DEVBUF, M_NOWAIT);
606 	cp->ata_channel.ch_ndrive = 2;
607 	if (cp->ata_channel.ch_queue == NULL) {
608 		aprint_error("%s %s channel: "
609 		    "can't allocate memory for command queue",
610 		    device_xname(sc->sc_wdcdev.sc_atac.atac_dev), cp->name);
611 		return (0);
612 	}
613 	return (1);
614 }
615 
616 static void
617 sii3114_mapchan(struct pciide_channel *cp)
618 {
619 	struct ata_channel *wdc_cp = &cp->ata_channel;
620 	struct pciide_softc *sc = CHAN_TO_PCIIDE(wdc_cp);
621 	struct wdc_regs *wdr = CHAN_TO_WDC_REGS(wdc_cp);
622 	int i;
623 
624 	cp->compat = 0;
625 	cp->ih = sc->sc_pci_ih;
626 
627 	wdr->cmd_iot = sc->sc_ba5_st;
628 	if (bus_space_subregion(sc->sc_ba5_st, sc->sc_ba5_sh,
629 			satalink_ba5_regmap[wdc_cp->ch_channel].ba5_IDE_TF0,
630 			9, &wdr->cmd_baseioh) != 0) {
631 		aprint_error_dev(sc->sc_wdcdev.sc_atac.atac_dev,
632 		    "couldn't subregion %s cmd base\n", cp->name);
633 		goto bad;
634 	}
635 
636 	wdr->ctl_iot = sc->sc_ba5_st;
637 	if (bus_space_subregion(sc->sc_ba5_st, sc->sc_ba5_sh,
638 			satalink_ba5_regmap[wdc_cp->ch_channel].ba5_IDE_TF8,
639 			1, &cp->ctl_baseioh) != 0) {
640 		aprint_error_dev(sc->sc_wdcdev.sc_atac.atac_dev,
641 		    "couldn't subregion %s ctl base\n", cp->name);
642 		goto bad;
643 	}
644 	wdr->ctl_ioh = cp->ctl_baseioh;
645 
646 	for (i = 0; i < WDC_NREG; i++) {
647 		if (bus_space_subregion(wdr->cmd_iot, wdr->cmd_baseioh,
648 					i, i == 0 ? 4 : 1,
649 					&wdr->cmd_iohs[i]) != 0) {
650 			aprint_error_dev(sc->sc_wdcdev.sc_atac.atac_dev,
651 			    "couldn't subregion %s channel cmd regs\n",
652 			    cp->name);
653 			goto bad;
654 		}
655 	}
656 	wdc_init_shadow_regs(wdc_cp);
657 	wdr->data32iot = wdr->cmd_iot;
658 	wdr->data32ioh = wdr->cmd_iohs[0];
659 	wdcattach(wdc_cp);
660 	return;
661 
662  bad:
663 	cp->ata_channel.ch_flags |= ATACH_DISABLED;
664 }
665 
666 static void
667 sii3114_chip_map(struct pciide_softc *sc, struct pci_attach_args *pa)
668 {
669 	struct pciide_channel *cp;
670 	pcireg_t scs_cmd;
671 	pci_intr_handle_t intrhandle;
672 	const char *intrstr;
673 	int channel;
674 
675 	if (pciide_chipen(sc, pa) == 0)
676 		return;
677 
678 #define	SII3114_RESET_BITS						\
679 	(SCS_CMD_PBM_RESET | SCS_CMD_ARB_RESET |			\
680 	 SCS_CMD_FF1_RESET | SCS_CMD_FF0_RESET |			\
681 	 SCS_CMD_FF3_RESET | SCS_CMD_FF2_RESET |			\
682 	 SCS_CMD_IDE1_RESET | SCS_CMD_IDE0_RESET |			\
683 	 SCS_CMD_IDE3_RESET | SCS_CMD_IDE2_RESET)
684 
685 	/*
686 	 * Reset everything and then unblock all of the interrupts.
687 	 */
688 	scs_cmd = pci_conf_read(pa->pa_pc, pa->pa_tag, SII3112_SCS_CMD);
689 	pci_conf_write(pa->pa_pc, pa->pa_tag, SII3112_SCS_CMD,
690 		       scs_cmd | SII3114_RESET_BITS);
691 	delay(50 * 1000);
692 	pci_conf_write(pa->pa_pc, pa->pa_tag, SII3112_SCS_CMD,
693 		       scs_cmd & SCS_CMD_M66EN);
694 	delay(50 * 1000);
695 
696 	/*
697 	 * On the 3114, the BA5 register space is always enabled.  In
698 	 * order to use the 3114 in any sane way, we must use this BA5
699 	 * register space, and so we consider it an error if we cannot
700 	 * map it.
701 	 *
702 	 * As a consequence of using BA5, our register mapping is different
703 	 * from a normal PCI IDE controller's, and so we are unable to use
704 	 * most of the common PCI IDE register mapping functions.
705 	 */
706 	if (pci_mapreg_map(pa, PCI_MAPREG_START + 0x14,
707 			   PCI_MAPREG_TYPE_MEM|
708 			   PCI_MAPREG_MEM_TYPE_32BIT, 0,
709 			   &sc->sc_ba5_st, &sc->sc_ba5_sh,
710 			   NULL, &sc->sc_ba5_ss) != 0) {
711 		aprint_error_dev(sc->sc_wdcdev.sc_atac.atac_dev,
712 		    "unable to map SATALink BA5 register space\n");
713 		return;
714 	}
715 	sc->sc_ba5_en = 1;
716 
717 	aprint_verbose_dev(sc->sc_wdcdev.sc_atac.atac_dev,
718 	    "%dMHz PCI bus\n", (scs_cmd & SCS_CMD_M66EN) ? 66 : 33);
719 
720 	/*
721 	 * Set the Interrupt Steering bit in the IDEDMA_CMD register of
722 	 * channel 2.  This is required at all times for proper operation
723 	 * when using the BA5 register space (otherwise interrupts from
724 	 * all 4 channels won't work).
725 	 */
726 	BA5_WRITE_4(sc, 2, ba5_IDEDMA_CMD, IDEDMA_CMD_INT_STEER);
727 
728 	aprint_verbose_dev(sc->sc_wdcdev.sc_atac.atac_dev,
729 	    "bus-master DMA support present");
730 	sii3114_mapreg_dma(sc, pa);
731 	aprint_verbose("\n");
732 
733 	sii_fixup_cacheline(sc, pa, 4);
734 
735 	sc->sc_wdcdev.sc_atac.atac_cap |= ATAC_CAP_DATA16 | ATAC_CAP_DATA32;
736 	sc->sc_wdcdev.sc_atac.atac_pio_cap = 4;
737 	if (sc->sc_dma_ok) {
738 		sc->sc_wdcdev.sc_atac.atac_cap |= ATAC_CAP_DMA | ATAC_CAP_UDMA;
739 		sc->sc_wdcdev.irqack = pciide_irqack;
740 		sc->sc_wdcdev.sc_atac.atac_dma_cap = 2;
741 		sc->sc_wdcdev.sc_atac.atac_udma_cap = 6;
742 	}
743 	sc->sc_wdcdev.sc_atac.atac_set_modes = sii3112_setup_channel;
744 
745 	/* We can use SControl and SStatus to probe for drives. */
746 	sc->sc_wdcdev.sc_atac.atac_probe = sii3112_drv_probe;
747 
748 	sc->sc_wdcdev.sc_atac.atac_channels = sc->wdc_chanarray;
749 	sc->sc_wdcdev.sc_atac.atac_nchannels = 4;
750 
751 	wdc_allocate_regs(&sc->sc_wdcdev);
752 
753 	/* Map and establish the interrupt handler. */
754 	if (pci_intr_map(pa, &intrhandle) != 0) {
755 		aprint_error_dev(sc->sc_wdcdev.sc_atac.atac_dev,
756 		    "couldn't map native-PCI interrupt\n");
757 		return;
758 	}
759 	intrstr = pci_intr_string(pa->pa_pc, intrhandle);
760 	sc->sc_pci_ih = pci_intr_establish(pa->pa_pc, intrhandle, IPL_BIO,
761 					   /* XXX */
762 					   pciide_pci_intr, sc);
763 	if (sc->sc_pci_ih != NULL) {
764 		aprint_normal_dev(sc->sc_wdcdev.sc_atac.atac_dev,
765 		    "using %s for native-PCI interrupt\n",
766 		    intrstr ? intrstr : "unknown interrupt");
767 	} else {
768 		aprint_error_dev(sc->sc_wdcdev.sc_atac.atac_dev,
769 		    "couldn't establish native-PCI interrupt");
770 		if (intrstr != NULL)
771 			aprint_error(" at %s", intrstr);
772 		aprint_error("\n");
773 		return;
774 	}
775 
776 	for (channel = 0; channel < sc->sc_wdcdev.sc_atac.atac_nchannels;
777 	     channel++) {
778 		cp = &sc->pciide_channels[channel];
779 		if (sii3114_chansetup(sc, channel) == 0)
780 			continue;
781 		sii3114_mapchan(cp);
782 	}
783 }
784 
785 /* Probe the drives using SATA registers.
786  * Note we can't use wdc_sataprobe as we may not be able to map ba5
787  */
788 static void
789 sii3112_drv_probe(struct ata_channel *chp)
790 {
791 	struct pciide_softc *sc = CHAN_TO_PCIIDE(chp);
792 	struct wdc_regs *wdr = CHAN_TO_WDC_REGS(chp);
793 	uint32_t scontrol, sstatus;
794 	uint8_t scnt, sn, cl, ch;
795 	int i, s;
796 
797 	/* XXX This should be done by other code. */
798 	for (i = 0; i < 2; i++) {
799 		chp->ch_drive[i].chnl_softc = chp;
800 		chp->ch_drive[i].drive = i;
801 	}
802 
803 	/*
804 	 * The 3112 is a 2-port part, and only has one drive per channel
805 	 * (each port emulates a master drive).
806 	 *
807 	 * The 3114 is similar, but has 4 channels.
808 	 */
809 
810 	/*
811 	 * Request communication initialization sequence, any speed.
812 	 * Performing this is the equivalent of an ATA Reset.
813 	 */
814 	scontrol = SControl_DET_INIT | SControl_SPD_ANY;
815 
816 	/*
817 	 * XXX We don't yet support SATA power management; disable all
818 	 * power management state transitions.
819 	 */
820 	scontrol |= SControl_IPM_NONE;
821 
822 	BA5_WRITE_4(sc, chp->ch_channel, ba5_SControl, scontrol);
823 	delay(50 * 1000);
824 	scontrol &= ~SControl_DET_INIT;
825 	BA5_WRITE_4(sc, chp->ch_channel, ba5_SControl, scontrol);
826 	delay(50 * 1000);
827 
828 	sstatus = BA5_READ_4(sc, chp->ch_channel, ba5_SStatus);
829 #if 0
830 	aprint_normal_dev(&sc->sc_wdcdev.sc_atac.atac_dev,
831 	    "port %d: SStatus=0x%08x, SControl=0x%08x\n",
832 	    chp->ch_channel, sstatus,
833 	    BA5_READ_4(sc, chp->ch_channel, ba5_SControl));
834 #endif
835 	switch (sstatus & SStatus_DET_mask) {
836 	case SStatus_DET_NODEV:
837 		/* No device; be silent. */
838 		break;
839 
840 	case SStatus_DET_DEV_NE:
841 		aprint_error_dev(sc->sc_wdcdev.sc_atac.atac_dev,
842 		    "port %d: device connected, but "
843 		    "communication not established\n", chp->ch_channel);
844 		break;
845 
846 	case SStatus_DET_OFFLINE:
847 		aprint_error_dev(sc->sc_wdcdev.sc_atac.atac_dev,
848 		    "port %d: PHY offline\n", chp->ch_channel);
849 		break;
850 
851 	case SStatus_DET_DEV:
852 		/*
853 		 * XXX ATAPI detection doesn't currently work.  Don't
854 		 * XXX know why.  But, it's not like the standard method
855 		 * XXX can detect an ATAPI device connected via a SATA/PATA
856 		 * XXX bridge, so at least this is no worse.  --thorpej
857 		 */
858 		bus_space_write_1(wdr->cmd_iot, wdr->cmd_iohs[wd_sdh], 0,
859 		    WDSD_IBM | (0 << 4));
860 		delay(10);	/* 400ns delay */
861 		/* Save register contents. */
862 		scnt = bus_space_read_1(wdr->cmd_iot,
863 				        wdr->cmd_iohs[wd_seccnt], 0);
864 		sn = bus_space_read_1(wdr->cmd_iot,
865 				      wdr->cmd_iohs[wd_sector], 0);
866 		cl = bus_space_read_1(wdr->cmd_iot,
867 				      wdr->cmd_iohs[wd_cyl_lo], 0);
868 		ch = bus_space_read_1(wdr->cmd_iot,
869 				      wdr->cmd_iohs[wd_cyl_hi], 0);
870 #if 0
871 		printf("%s: port %d: scnt=0x%x sn=0x%x cl=0x%x ch=0x%x\n",
872 		    device_xname(&sc->sc_wdcdev.sc_atac.atac_dev), chp->ch_channel,
873 		    scnt, sn, cl, ch);
874 #endif
875 		/*
876 		 * scnt and sn are supposed to be 0x1 for ATAPI, but in some
877 		 * cases we get wrong values here, so ignore it.
878 		 */
879 		s = splbio();
880 		if (cl == 0x14 && ch == 0xeb)
881 			chp->ch_drive[0].drive_flags |= DRIVE_ATAPI;
882 		else
883 			chp->ch_drive[0].drive_flags |= DRIVE_ATA;
884 		splx(s);
885 
886 		aprint_normal_dev(sc->sc_wdcdev.sc_atac.atac_dev,
887 		    "port %d: device present, speed: %s\n",
888 		    chp->ch_channel,
889 		    sata_speed(sstatus));
890 		break;
891 
892 	default:
893 		aprint_error_dev(sc->sc_wdcdev.sc_atac.atac_dev,
894 		    "port %d: unknown SStatus: 0x%08x\n",
895 		    chp->ch_channel, sstatus);
896 	}
897 }
898 
899 static void
900 sii3112_setup_channel(struct ata_channel *chp)
901 {
902 	struct ata_drive_datas *drvp;
903 	int drive, s;
904 	u_int32_t idedma_ctl, dtm;
905 	struct pciide_channel *cp = CHAN_TO_PCHAN(chp);
906 	struct pciide_softc *sc = CHAN_TO_PCIIDE(chp);
907 
908 	/* setup DMA if needed */
909 	pciide_channel_dma_setup(cp);
910 
911 	idedma_ctl = 0;
912 	dtm = 0;
913 
914 	for (drive = 0; drive < 2; drive++) {
915 		drvp = &chp->ch_drive[drive];
916 		/* If no drive, skip */
917 		if ((drvp->drive_flags & DRIVE) == 0)
918 			continue;
919 		if (drvp->drive_flags & DRIVE_UDMA) {
920 			/* use Ultra/DMA */
921 			s = splbio();
922 			drvp->drive_flags &= ~DRIVE_DMA;
923 			splx(s);
924 			idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
925 			dtm |= DTM_IDEx_DMA;
926 		} else if (drvp->drive_flags & DRIVE_DMA) {
927 			idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
928 			dtm |= DTM_IDEx_DMA;
929 		} else {
930 			dtm |= DTM_IDEx_PIO;
931 		}
932 	}
933 
934 	/*
935 	 * Nothing to do to setup modes; it is meaningless in S-ATA
936 	 * (but many S-ATA drives still want to get the SET_FEATURE
937 	 * command).
938 	 */
939 	if (idedma_ctl != 0) {
940 		/* Add software bits in status register */
941 		bus_space_write_1(sc->sc_dma_iot, cp->dma_iohs[IDEDMA_CTL], 0,
942 		    idedma_ctl);
943 	}
944 	BA5_WRITE_4(sc, chp->ch_channel, ba5_IDE_DTM, dtm);
945 }
946