jmide.c revision 1.20 1 1.20 msaitoh /* $NetBSD: jmide.c,v 1.20 2016/07/14 04:19:27 msaitoh Exp $ */
2 1.1 bouyer
3 1.1 bouyer /*
4 1.1 bouyer * Copyright (c) 2007 Manuel Bouyer.
5 1.1 bouyer *
6 1.1 bouyer * Redistribution and use in source and binary forms, with or without
7 1.1 bouyer * modification, are permitted provided that the following conditions
8 1.1 bouyer * are met:
9 1.1 bouyer * 1. Redistributions of source code must retain the above copyright
10 1.1 bouyer * notice, this list of conditions and the following disclaimer.
11 1.1 bouyer * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 bouyer * notice, this list of conditions and the following disclaimer in the
13 1.1 bouyer * documentation and/or other materials provided with the distribution.
14 1.1 bouyer *
15 1.1 bouyer * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16 1.1 bouyer * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17 1.1 bouyer * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18 1.1 bouyer * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
19 1.1 bouyer * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
20 1.1 bouyer * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
21 1.1 bouyer * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
22 1.1 bouyer * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
23 1.1 bouyer * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
24 1.1 bouyer * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
25 1.1 bouyer */
26 1.1 bouyer
27 1.1 bouyer #include <sys/cdefs.h>
28 1.20 msaitoh __KERNEL_RCSID(0, "$NetBSD: jmide.c,v 1.20 2016/07/14 04:19:27 msaitoh Exp $");
29 1.1 bouyer
30 1.1 bouyer #include <sys/param.h>
31 1.1 bouyer #include <sys/systm.h>
32 1.1 bouyer #include <sys/malloc.h>
33 1.1 bouyer
34 1.1 bouyer #include <dev/pci/pcivar.h>
35 1.1 bouyer #include <dev/pci/pcidevs.h>
36 1.1 bouyer #include <dev/pci/pciidereg.h>
37 1.1 bouyer #include <dev/pci/pciidevar.h>
38 1.1 bouyer
39 1.1 bouyer #include <dev/pci/jmide_reg.h>
40 1.1 bouyer
41 1.1 bouyer #include <dev/ic/ahcisatavar.h>
42 1.1 bouyer
43 1.1 bouyer #include "jmide.h"
44 1.1 bouyer
45 1.1 bouyer static const struct jmide_product *jmide_lookup(pcireg_t);
46 1.1 bouyer
47 1.4 cube static int jmide_match(device_t, cfdata_t, void *);
48 1.4 cube static void jmide_attach(device_t, device_t, void *);
49 1.1 bouyer static int jmide_intr(void *);
50 1.1 bouyer
51 1.20 msaitoh static void jmpata_chip_map(struct pciide_softc*,
52 1.20 msaitoh const struct pci_attach_args*);
53 1.1 bouyer static void jmpata_setup_channel(struct ata_channel*);
54 1.1 bouyer
55 1.1 bouyer static int jmahci_print(void *, const char *);
56 1.1 bouyer
57 1.1 bouyer struct jmide_product {
58 1.1 bouyer u_int32_t jm_product;
59 1.1 bouyer int jm_npata;
60 1.1 bouyer int jm_nsata;
61 1.1 bouyer };
62 1.1 bouyer
63 1.1 bouyer static const struct jmide_product jm_products[] = {
64 1.1 bouyer { PCI_PRODUCT_JMICRON_JMB360,
65 1.1 bouyer 0,
66 1.1 bouyer 1
67 1.1 bouyer },
68 1.1 bouyer { PCI_PRODUCT_JMICRON_JMB361,
69 1.1 bouyer 1,
70 1.1 bouyer 1
71 1.1 bouyer },
72 1.13 pgoyette { PCI_PRODUCT_JMICRON_JMB362,
73 1.13 pgoyette 0,
74 1.13 pgoyette 2
75 1.13 pgoyette },
76 1.1 bouyer { PCI_PRODUCT_JMICRON_JMB363,
77 1.1 bouyer 1,
78 1.1 bouyer 2
79 1.1 bouyer },
80 1.1 bouyer { PCI_PRODUCT_JMICRON_JMB365,
81 1.1 bouyer 2,
82 1.1 bouyer 1
83 1.1 bouyer },
84 1.1 bouyer { PCI_PRODUCT_JMICRON_JMB366,
85 1.1 bouyer 2,
86 1.1 bouyer 2
87 1.1 bouyer },
88 1.1 bouyer { PCI_PRODUCT_JMICRON_JMB368,
89 1.1 bouyer 1,
90 1.1 bouyer 0
91 1.1 bouyer },
92 1.1 bouyer { 0,
93 1.1 bouyer 0,
94 1.1 bouyer 0
95 1.1 bouyer }
96 1.1 bouyer };
97 1.1 bouyer
98 1.1 bouyer typedef enum {
99 1.1 bouyer TYPE_INVALID = 0,
100 1.1 bouyer TYPE_PATA,
101 1.1 bouyer TYPE_SATA,
102 1.1 bouyer TYPE_NONE
103 1.1 bouyer } jmchan_t;
104 1.1 bouyer
105 1.1 bouyer struct jmide_softc {
106 1.1 bouyer struct pciide_softc sc_pciide;
107 1.6 bouyer device_t sc_ahci;
108 1.1 bouyer int sc_npata;
109 1.1 bouyer int sc_nsata;
110 1.1 bouyer jmchan_t sc_chan_type[PCIIDE_NUM_CHANNELS];
111 1.1 bouyer int sc_chan_swap;
112 1.1 bouyer };
113 1.1 bouyer
114 1.2 bouyer struct jmahci_attach_args {
115 1.10 dyoung const struct pci_attach_args *jma_pa;
116 1.2 bouyer bus_space_tag_t jma_ahcit;
117 1.2 bouyer bus_space_handle_t jma_ahcih;
118 1.2 bouyer };
119 1.2 bouyer
120 1.4 cube #define JM_NAME(sc) (device_xname(sc->sc_pciide.sc_wdcdev.sc_atac.atac_dev))
121 1.1 bouyer
122 1.4 cube CFATTACH_DECL_NEW(jmide, sizeof(struct jmide_softc),
123 1.1 bouyer jmide_match, jmide_attach, NULL, NULL);
124 1.1 bouyer
125 1.1 bouyer static const struct jmide_product *
126 1.1 bouyer jmide_lookup(pcireg_t id) {
127 1.1 bouyer const struct jmide_product *jp;
128 1.1 bouyer
129 1.1 bouyer for (jp = jm_products; jp->jm_product != 0; jp++) {
130 1.1 bouyer if (jp->jm_product == PCI_PRODUCT(id))
131 1.1 bouyer return jp;
132 1.1 bouyer }
133 1.1 bouyer return NULL;
134 1.1 bouyer }
135 1.1 bouyer
136 1.1 bouyer static int
137 1.4 cube jmide_match(device_t parent, cfdata_t match, void *aux)
138 1.1 bouyer {
139 1.1 bouyer struct pci_attach_args *pa = aux;
140 1.1 bouyer
141 1.1 bouyer if (PCI_VENDOR(pa->pa_id) == PCI_VENDOR_JMICRON) {
142 1.1 bouyer if (jmide_lookup(pa->pa_id))
143 1.11 jakllsch return (4); /* higher than ahcisata */
144 1.1 bouyer }
145 1.1 bouyer return (0);
146 1.1 bouyer }
147 1.1 bouyer
148 1.1 bouyer static void
149 1.4 cube jmide_attach(device_t parent, device_t self, void *aux)
150 1.1 bouyer {
151 1.1 bouyer struct pci_attach_args *pa = aux;
152 1.4 cube struct jmide_softc *sc = device_private(self);
153 1.1 bouyer const struct jmide_product *jp;
154 1.1 bouyer const char *intrstr;
155 1.1 bouyer pci_intr_handle_t intrhandle;
156 1.1 bouyer u_int32_t pcictrl0 = pci_conf_read(pa->pa_pc, pa->pa_tag,
157 1.1 bouyer PCI_JM_CONTROL0);
158 1.1 bouyer u_int32_t pcictrl1 = pci_conf_read(pa->pa_pc, pa->pa_tag,
159 1.1 bouyer PCI_JM_CONTROL1);
160 1.1 bouyer struct pciide_product_desc *pp;
161 1.2 bouyer int ahci_used = 0;
162 1.19 christos char intrbuf[PCI_INTRSTR_LEN];
163 1.1 bouyer
164 1.4 cube sc->sc_pciide.sc_wdcdev.sc_atac.atac_dev = self;
165 1.4 cube
166 1.1 bouyer jp = jmide_lookup(pa->pa_id);
167 1.1 bouyer if (jp == NULL) {
168 1.1 bouyer printf("jmide_attach: WTF?\n");
169 1.1 bouyer return;
170 1.1 bouyer }
171 1.1 bouyer sc->sc_npata = jp->jm_npata;
172 1.1 bouyer sc->sc_nsata = jp->jm_nsata;
173 1.1 bouyer
174 1.12 drochner pci_aprint_devinfo(pa, "JMICRON PATA/SATA disk controller");
175 1.1 bouyer
176 1.1 bouyer aprint_normal("%s: ", JM_NAME(sc));
177 1.1 bouyer if (sc->sc_npata)
178 1.1 bouyer aprint_normal("%d PATA port%s", sc->sc_npata,
179 1.1 bouyer (sc->sc_npata > 1) ? "s" : "");
180 1.1 bouyer if (sc->sc_nsata)
181 1.1 bouyer aprint_normal("%s%d SATA port%s", sc->sc_npata ? ", " : "",
182 1.1 bouyer sc->sc_nsata, (sc->sc_nsata > 1) ? "s" : "");
183 1.1 bouyer aprint_normal("\n");
184 1.1 bouyer
185 1.1 bouyer if (pci_intr_map(pa, &intrhandle) != 0) {
186 1.1 bouyer aprint_error("%s: couldn't map interrupt\n", JM_NAME(sc));
187 1.1 bouyer return;
188 1.1 bouyer }
189 1.20 msaitoh intrstr = pci_intr_string(pa->pa_pc, intrhandle, intrbuf,
190 1.20 msaitoh sizeof(intrbuf));
191 1.1 bouyer sc->sc_pciide.sc_pci_ih = pci_intr_establish(pa->pa_pc, intrhandle,
192 1.1 bouyer IPL_BIO, jmide_intr, sc);
193 1.1 bouyer if (sc->sc_pciide.sc_pci_ih == NULL) {
194 1.1 bouyer aprint_error("%s: couldn't establish interrupt", JM_NAME(sc));
195 1.1 bouyer return;
196 1.1 bouyer }
197 1.1 bouyer aprint_normal("%s: interrupting at %s\n", JM_NAME(sc),
198 1.1 bouyer intrstr ? intrstr : "unknown interrupt");
199 1.1 bouyer
200 1.1 bouyer if (pcictrl0 & JM_CONTROL0_AHCI_EN) {
201 1.2 bouyer bus_size_t size;
202 1.2 bouyer struct jmahci_attach_args jma;
203 1.2 bouyer u_int32_t saved_pcictrl0;
204 1.1 bouyer /*
205 1.1 bouyer * ahci controller enabled; disable sata on pciide and
206 1.1 bouyer * enable on ahci
207 1.1 bouyer */
208 1.2 bouyer saved_pcictrl0 = pcictrl0;
209 1.1 bouyer pcictrl0 |= JM_CONTROL0_SATA0_AHCI | JM_CONTROL0_SATA1_AHCI;
210 1.1 bouyer pcictrl0 &= ~(JM_CONTROL0_SATA0_IDE | JM_CONTROL0_SATA1_IDE);
211 1.1 bouyer pci_conf_write(pa->pa_pc, pa->pa_tag,
212 1.1 bouyer PCI_JM_CONTROL0, pcictrl0);
213 1.1 bouyer /* attach ahci controller if on the right function */
214 1.1 bouyer if ((pa->pa_function == 0 &&
215 1.1 bouyer (pcictrl0 & JM_CONTROL0_AHCI_F1) == 0) ||
216 1.1 bouyer (pa->pa_function == 1 &&
217 1.1 bouyer (pcictrl0 & JM_CONTROL0_AHCI_F1) != 0)) {
218 1.2 bouyer jma.jma_pa = pa;
219 1.2 bouyer /* map registers */
220 1.2 bouyer if (pci_mapreg_map(pa, AHCI_PCI_ABAR,
221 1.2 bouyer PCI_MAPREG_TYPE_MEM | PCI_MAPREG_MEM_TYPE_32BIT, 0,
222 1.2 bouyer &jma.jma_ahcit, &jma.jma_ahcih, NULL, &size) != 0) {
223 1.2 bouyer aprint_error("%s: can't map ahci registers\n",
224 1.2 bouyer JM_NAME(sc));
225 1.2 bouyer } else {
226 1.2 bouyer sc->sc_ahci = config_found_ia(
227 1.4 cube sc->sc_pciide.sc_wdcdev.sc_atac.atac_dev,
228 1.2 bouyer "jmide_hl", &jma, jmahci_print);
229 1.2 bouyer }
230 1.2 bouyer /*
231 1.2 bouyer * if we couldn't attach an ahci, try to fall back
232 1.2 bouyer * to pciide. Note that this will not work if IDE
233 1.2 bouyer * is on function 0 and AHCI on function 1.
234 1.2 bouyer */
235 1.2 bouyer if (sc->sc_ahci == NULL) {
236 1.2 bouyer pcictrl0 = saved_pcictrl0 &
237 1.2 bouyer ~(JM_CONTROL0_SATA0_AHCI |
238 1.2 bouyer JM_CONTROL0_SATA1_AHCI |
239 1.2 bouyer JM_CONTROL0_AHCI_EN);
240 1.2 bouyer pcictrl0 |= JM_CONTROL0_SATA1_IDE |
241 1.2 bouyer JM_CONTROL0_SATA0_IDE;
242 1.2 bouyer pci_conf_write(pa->pa_pc, pa->pa_tag,
243 1.2 bouyer PCI_JM_CONTROL0, pcictrl0);
244 1.2 bouyer } else
245 1.2 bouyer ahci_used = 1;
246 1.1 bouyer }
247 1.1 bouyer }
248 1.1 bouyer sc->sc_chan_swap = ((pcictrl0 & JM_CONTROL0_PCIIDE_CS) != 0);
249 1.1 bouyer /* compute the type of internal primary channel */
250 1.2 bouyer if (pcictrl1 & JM_CONTROL1_PATA1_PRI) {
251 1.2 bouyer if (sc->sc_npata > 1)
252 1.1 bouyer sc->sc_chan_type[sc->sc_chan_swap ? 1 : 0] = TYPE_PATA;
253 1.1 bouyer else
254 1.1 bouyer sc->sc_chan_type[sc->sc_chan_swap ? 1 : 0] = TYPE_NONE;
255 1.2 bouyer } else if (ahci_used == 0 && sc->sc_nsata > 0)
256 1.2 bouyer sc->sc_chan_type[sc->sc_chan_swap ? 1 : 0] = TYPE_SATA;
257 1.2 bouyer else
258 1.2 bouyer sc->sc_chan_type[sc->sc_chan_swap ? 1 : 0] = TYPE_NONE;
259 1.2 bouyer /* compute the type of internal secondary channel */
260 1.2 bouyer if (sc->sc_nsata > 1 && ahci_used == 0 &&
261 1.2 bouyer (pcictrl0 & JM_CONTROL0_PCIIDE0_MS) == 0) {
262 1.2 bouyer sc->sc_chan_type[sc->sc_chan_swap ? 0 : 1] = TYPE_SATA;
263 1.1 bouyer } else {
264 1.1 bouyer /* only a drive if first PATA enabled */
265 1.1 bouyer if (sc->sc_npata > 0 && (pcictrl0 & JM_CONTROL0_PATA0_EN)
266 1.1 bouyer && (pcictrl0 &
267 1.1 bouyer (sc->sc_chan_swap ? JM_CONTROL0_PATA0_PRI: JM_CONTROL0_PATA0_SEC)))
268 1.1 bouyer sc->sc_chan_type[sc->sc_chan_swap ? 0 : 1] = TYPE_PATA;
269 1.1 bouyer else
270 1.1 bouyer sc->sc_chan_type[sc->sc_chan_swap ? 0 : 1] = TYPE_NONE;
271 1.1 bouyer }
272 1.2 bouyer
273 1.1 bouyer if (sc->sc_chan_type[0] == TYPE_NONE &&
274 1.1 bouyer sc->sc_chan_type[1] == TYPE_NONE)
275 1.1 bouyer return;
276 1.1 bouyer if (pa->pa_function == 0 && (pcictrl0 & JM_CONTROL0_PCIIDE_F1))
277 1.1 bouyer return;
278 1.1 bouyer if (pa->pa_function == 1 && (pcictrl0 & JM_CONTROL0_PCIIDE_F1) == 0)
279 1.1 bouyer return;
280 1.1 bouyer pp = malloc(sizeof(struct pciide_product_desc), M_DEVBUF, M_NOWAIT);
281 1.1 bouyer if (pp == NULL) {
282 1.1 bouyer aprint_error("%s: can't malloc sc_pp\n", JM_NAME(sc));
283 1.1 bouyer return;
284 1.1 bouyer }
285 1.1 bouyer aprint_normal("%s: PCI IDE interface used", JM_NAME(sc));
286 1.1 bouyer pp->ide_product = 0;
287 1.1 bouyer pp->ide_flags = 0;
288 1.1 bouyer pp->ide_name = NULL;
289 1.1 bouyer pp->chip_map = jmpata_chip_map;
290 1.1 bouyer pciide_common_attach(&sc->sc_pciide, pa, pp);
291 1.1 bouyer }
292 1.1 bouyer
293 1.1 bouyer static int
294 1.1 bouyer jmide_intr(void *arg)
295 1.1 bouyer {
296 1.1 bouyer struct jmide_softc *sc = arg;
297 1.1 bouyer int ret = 0;
298 1.1 bouyer
299 1.1 bouyer #ifdef NJMAHCI
300 1.1 bouyer if (sc->sc_ahci)
301 1.6 bouyer ret |= ahci_intr(device_private(sc->sc_ahci));
302 1.1 bouyer #endif
303 1.1 bouyer if (sc->sc_npata)
304 1.1 bouyer ret |= pciide_pci_intr(&sc->sc_pciide);
305 1.1 bouyer return ret;
306 1.1 bouyer }
307 1.1 bouyer
308 1.1 bouyer static void
309 1.10 dyoung jmpata_chip_map(struct pciide_softc *sc, const struct pci_attach_args *pa)
310 1.1 bouyer {
311 1.1 bouyer struct jmide_softc *jmidesc = (struct jmide_softc *)sc;
312 1.1 bouyer int channel;
313 1.1 bouyer pcireg_t interface;
314 1.1 bouyer struct pciide_channel *cp;
315 1.1 bouyer
316 1.1 bouyer if (pciide_chipen(sc, pa) == 0)
317 1.1 bouyer return;
318 1.1 bouyer aprint_verbose("%s: bus-master DMA support present", JM_NAME(jmidesc));
319 1.1 bouyer pciide_mapreg_dma(sc, pa);
320 1.1 bouyer aprint_verbose("\n");
321 1.1 bouyer sc->sc_wdcdev.sc_atac.atac_cap = ATAC_CAP_DATA16 | ATAC_CAP_DATA32;
322 1.1 bouyer if (sc->sc_dma_ok) {
323 1.1 bouyer sc->sc_wdcdev.sc_atac.atac_cap |= ATAC_CAP_DMA | ATAC_CAP_UDMA;
324 1.1 bouyer sc->sc_wdcdev.sc_atac.atac_udma_cap = 6;
325 1.1 bouyer }
326 1.1 bouyer sc->sc_wdcdev.sc_atac.atac_pio_cap = 4;
327 1.1 bouyer sc->sc_wdcdev.sc_atac.atac_dma_cap = 2;
328 1.1 bouyer sc->sc_wdcdev.sc_atac.atac_set_modes = jmpata_setup_channel;
329 1.1 bouyer sc->sc_wdcdev.sc_atac.atac_channels = sc->wdc_chanarray;
330 1.1 bouyer sc->sc_wdcdev.sc_atac.atac_nchannels = PCIIDE_NUM_CHANNELS;
331 1.18 bouyer sc->sc_wdcdev.wdc_maxdrives = 2;
332 1.1 bouyer wdc_allocate_regs(&sc->sc_wdcdev);
333 1.1 bouyer /*
334 1.1 bouyer * can't rely on the PCI_CLASS_REG content if the chip was in raid
335 1.1 bouyer * mode. We have to fake interface
336 1.1 bouyer */
337 1.1 bouyer interface = PCIIDE_INTERFACE_PCI(0) | PCIIDE_INTERFACE_PCI(1);
338 1.1 bouyer for (channel = 0; channel < sc->sc_wdcdev.sc_atac.atac_nchannels;
339 1.1 bouyer channel++) {
340 1.1 bouyer cp = &sc->pciide_channels[channel];
341 1.1 bouyer if (pciide_chansetup(sc, channel, interface) == 0)
342 1.1 bouyer continue;
343 1.1 bouyer aprint_normal("%s: %s channel is ", JM_NAME(jmidesc),
344 1.1 bouyer PCIIDE_CHANNEL_NAME(channel));
345 1.1 bouyer switch(jmidesc->sc_chan_type[channel]) {
346 1.1 bouyer case TYPE_PATA:
347 1.1 bouyer aprint_normal("PATA");
348 1.1 bouyer break;
349 1.1 bouyer case TYPE_SATA:
350 1.1 bouyer aprint_normal("SATA");
351 1.1 bouyer break;
352 1.1 bouyer case TYPE_NONE:
353 1.1 bouyer aprint_normal("unused");
354 1.1 bouyer break;
355 1.1 bouyer default:
356 1.1 bouyer aprint_normal("impossible");
357 1.1 bouyer panic("jmide: wrong/uninitialised channel type");
358 1.1 bouyer }
359 1.1 bouyer aprint_normal("\n");
360 1.1 bouyer if (jmidesc->sc_chan_type[channel] == TYPE_NONE) {
361 1.1 bouyer cp->ata_channel.ch_flags |= ATACH_DISABLED;
362 1.1 bouyer continue;
363 1.1 bouyer }
364 1.9 jakllsch pciide_mapchan(pa, cp, interface, pciide_pci_intr);
365 1.1 bouyer }
366 1.1 bouyer }
367 1.1 bouyer
368 1.1 bouyer static void
369 1.1 bouyer jmpata_setup_channel(struct ata_channel *chp)
370 1.1 bouyer {
371 1.1 bouyer struct ata_drive_datas *drvp;
372 1.1 bouyer int drive, s;
373 1.1 bouyer u_int32_t idedma_ctl;
374 1.1 bouyer struct pciide_channel *cp = CHAN_TO_PCHAN(chp);
375 1.1 bouyer struct pciide_softc *sc = CHAN_TO_PCIIDE(chp);
376 1.1 bouyer struct jmide_softc *jmidesc = (struct jmide_softc *)sc;
377 1.1 bouyer int ide80p;
378 1.1 bouyer
379 1.1 bouyer /* setup DMA if needed */
380 1.1 bouyer pciide_channel_dma_setup(cp);
381 1.1 bouyer
382 1.1 bouyer idedma_ctl = 0;
383 1.1 bouyer
384 1.1 bouyer /* cable type detect */
385 1.1 bouyer ide80p = 1;
386 1.1 bouyer if (chp->ch_channel == (jmidesc->sc_chan_swap ? 1 : 0)) {
387 1.1 bouyer if (jmidesc->sc_chan_type[chp->ch_channel] == TYPE_PATA &&
388 1.1 bouyer (pci_conf_read(sc->sc_pc, sc->sc_tag, PCI_JM_CONTROL1) &
389 1.1 bouyer JM_CONTROL1_PATA1_40P))
390 1.1 bouyer ide80p = 0;
391 1.1 bouyer } else {
392 1.1 bouyer if (jmidesc->sc_chan_type[chp->ch_channel] == TYPE_PATA &&
393 1.1 bouyer (pci_conf_read(sc->sc_pc, sc->sc_tag, PCI_JM_CONTROL0) &
394 1.1 bouyer JM_CONTROL0_PATA0_40P))
395 1.1 bouyer ide80p = 0;
396 1.1 bouyer }
397 1.1 bouyer
398 1.1 bouyer for (drive = 0; drive < 2; drive++) {
399 1.1 bouyer drvp = &chp->ch_drive[drive];
400 1.1 bouyer /* If no drive, skip */
401 1.18 bouyer if (drvp->drive_type == ATA_DRIVET_NONE)
402 1.1 bouyer continue;
403 1.18 bouyer if (drvp->drive_flags & ATA_DRIVE_UDMA) {
404 1.1 bouyer /* use Ultra/DMA */
405 1.1 bouyer s = splbio();
406 1.18 bouyer drvp->drive_flags &= ~ATA_DRIVE_DMA;
407 1.1 bouyer if (drvp->UDMA_mode > 2 && ide80p == 0)
408 1.1 bouyer drvp->UDMA_mode = 2;
409 1.1 bouyer splx(s);
410 1.1 bouyer idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
411 1.18 bouyer } else if (drvp->drive_flags & ATA_DRIVE_DMA) {
412 1.1 bouyer idedma_ctl |= IDEDMA_CTL_DRV_DMA(drive);
413 1.1 bouyer }
414 1.1 bouyer }
415 1.1 bouyer /* nothing to do to setup modes, the controller snoop SET_FEATURE cmd */
416 1.1 bouyer if (idedma_ctl != 0) {
417 1.1 bouyer /* Add software bits in status register */
418 1.1 bouyer bus_space_write_1(sc->sc_dma_iot, cp->dma_iohs[IDEDMA_CTL],
419 1.1 bouyer 0, idedma_ctl);
420 1.1 bouyer }
421 1.1 bouyer }
422 1.1 bouyer
423 1.1 bouyer static int
424 1.1 bouyer jmahci_print(void *aux, const char *pnp)
425 1.1 bouyer {
426 1.1 bouyer if (pnp)
427 1.1 bouyer aprint_normal("ahcisata at %s", pnp);
428 1.1 bouyer
429 1.1 bouyer return (UNCONF);
430 1.1 bouyer }
431 1.1 bouyer
432 1.1 bouyer
433 1.1 bouyer #ifdef NJMAHCI
434 1.5 xtraeme static int jmahci_match(device_t, cfdata_t, void *);
435 1.5 xtraeme static void jmahci_attach(device_t, device_t, void *);
436 1.8 jakllsch static int jmahci_detach(device_t, int);
437 1.8 jakllsch static bool jmahci_resume(device_t, const pmf_qual_t *);
438 1.1 bouyer
439 1.5 xtraeme CFATTACH_DECL_NEW(jmahci, sizeof(struct ahci_softc),
440 1.8 jakllsch jmahci_match, jmahci_attach, jmahci_detach, NULL);
441 1.1 bouyer
442 1.1 bouyer static int
443 1.5 xtraeme jmahci_match(device_t parent, cfdata_t match, void *aux)
444 1.1 bouyer {
445 1.1 bouyer return 1;
446 1.1 bouyer }
447 1.1 bouyer
448 1.1 bouyer static void
449 1.5 xtraeme jmahci_attach(device_t parent, device_t self, void *aux)
450 1.1 bouyer {
451 1.2 bouyer struct jmahci_attach_args *jma = aux;
452 1.10 dyoung const struct pci_attach_args *pa = jma->jma_pa;
453 1.5 xtraeme struct ahci_softc *sc = device_private(self);
454 1.8 jakllsch uint32_t ahci_cap;
455 1.1 bouyer
456 1.1 bouyer aprint_naive(": AHCI disk controller\n");
457 1.1 bouyer aprint_normal("\n");
458 1.2 bouyer
459 1.5 xtraeme sc->sc_atac.atac_dev = self;
460 1.2 bouyer sc->sc_ahcit = jma->jma_ahcit;
461 1.2 bouyer sc->sc_ahcih = jma->jma_ahcih;
462 1.8 jakllsch
463 1.8 jakllsch ahci_cap = AHCI_READ(sc, AHCI_CAP);
464 1.8 jakllsch
465 1.8 jakllsch if (pci_dma64_available(jma->jma_pa) && (ahci_cap & AHCI_CAP_64BIT))
466 1.8 jakllsch sc->sc_dmat = jma->jma_pa->pa_dmat64;
467 1.8 jakllsch else
468 1.8 jakllsch sc->sc_dmat = jma->jma_pa->pa_dmat;
469 1.3 xtraeme
470 1.3 xtraeme if (PCI_SUBCLASS(pa->pa_class) == PCI_SUBCLASS_MASS_STORAGE_RAID)
471 1.3 xtraeme sc->sc_atac_capflags = ATAC_CAP_RAID;
472 1.3 xtraeme
473 1.1 bouyer ahci_attach(sc);
474 1.8 jakllsch
475 1.8 jakllsch if (!pmf_device_register(self, NULL, jmahci_resume))
476 1.8 jakllsch aprint_error_dev(self, "couldn't establish power handler\n");
477 1.8 jakllsch }
478 1.8 jakllsch
479 1.8 jakllsch static int
480 1.8 jakllsch jmahci_detach(device_t dv, int flags)
481 1.8 jakllsch {
482 1.8 jakllsch struct ahci_softc *sc;
483 1.8 jakllsch sc = device_private(dv);
484 1.8 jakllsch
485 1.8 jakllsch int rv;
486 1.8 jakllsch
487 1.8 jakllsch if ((rv = ahci_detach(sc, flags)))
488 1.8 jakllsch return rv;
489 1.8 jakllsch
490 1.8 jakllsch return 0;
491 1.8 jakllsch }
492 1.8 jakllsch
493 1.8 jakllsch static bool
494 1.8 jakllsch jmahci_resume(device_t dv, const pmf_qual_t *qual)
495 1.8 jakllsch {
496 1.8 jakllsch struct ahci_softc *sc;
497 1.8 jakllsch int s;
498 1.8 jakllsch
499 1.8 jakllsch sc = device_private(dv);
500 1.8 jakllsch
501 1.8 jakllsch s = splbio();
502 1.8 jakllsch ahci_resume(sc);
503 1.8 jakllsch splx(s);
504 1.8 jakllsch
505 1.8 jakllsch return true;
506 1.1 bouyer }
507 1.1 bouyer #endif
508