pci_mace.c revision 1.18 1 1.18 macallan /* $NetBSD: pci_mace.c,v 1.18 2015/02/18 16:47:59 macallan Exp $ */
2 1.1 sekiya
3 1.1 sekiya /*
4 1.1 sekiya * Copyright (c) 2001,2003 Christopher Sekiya
5 1.1 sekiya * Copyright (c) 2000 Soren S. Jorvang
6 1.1 sekiya * All rights reserved.
7 1.1 sekiya *
8 1.1 sekiya * Redistribution and use in source and binary forms, with or without
9 1.1 sekiya * modification, are permitted provided that the following conditions
10 1.1 sekiya * are met:
11 1.1 sekiya * 1. Redistributions of source code must retain the above copyright
12 1.1 sekiya * notice, this list of conditions and the following disclaimer.
13 1.1 sekiya * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 sekiya * notice, this list of conditions and the following disclaimer in the
15 1.1 sekiya * documentation and/or other materials provided with the distribution.
16 1.1 sekiya * 3. All advertising materials mentioning features or use of this software
17 1.1 sekiya * must display the following acknowledgement:
18 1.1 sekiya * This product includes software developed for the
19 1.1 sekiya * NetBSD Project. See http://www.NetBSD.org/ for
20 1.1 sekiya * information about NetBSD.
21 1.1 sekiya * 4. The name of the author may not be used to endorse or promote products
22 1.1 sekiya * derived from this software without specific prior written permission.
23 1.1 sekiya *
24 1.1 sekiya * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
25 1.1 sekiya * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
26 1.1 sekiya * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
27 1.1 sekiya * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
28 1.1 sekiya * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
29 1.1 sekiya * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
30 1.1 sekiya * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
31 1.1 sekiya * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
32 1.1 sekiya * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
33 1.1 sekiya * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
34 1.1 sekiya */
35 1.1 sekiya
36 1.1 sekiya #include <sys/cdefs.h>
37 1.18 macallan __KERNEL_RCSID(0, "$NetBSD: pci_mace.c,v 1.18 2015/02/18 16:47:59 macallan Exp $");
38 1.7 tsutsui
39 1.7 tsutsui #include "opt_pci.h"
40 1.7 tsutsui #include "pci.h"
41 1.1 sekiya
42 1.1 sekiya #include <sys/param.h>
43 1.1 sekiya #include <sys/device.h>
44 1.1 sekiya #include <sys/systm.h>
45 1.1 sekiya
46 1.1 sekiya #include <machine/cpu.h>
47 1.1 sekiya #include <machine/locore.h>
48 1.1 sekiya #include <machine/autoconf.h>
49 1.1 sekiya #include <machine/vmparam.h>
50 1.13 dyoung #include <sys/bus.h>
51 1.1 sekiya #include <machine/machtype.h>
52 1.1 sekiya
53 1.7 tsutsui #include <mips/cache.h>
54 1.7 tsutsui
55 1.1 sekiya #include <dev/pci/pcivar.h>
56 1.1 sekiya #include <dev/pci/pcireg.h>
57 1.1 sekiya #include <dev/pci/pcidevs.h>
58 1.1 sekiya
59 1.7 tsutsui #include <sys/extent.h>
60 1.7 tsutsui #include <sys/malloc.h>
61 1.7 tsutsui #include <dev/pci/pciconf.h>
62 1.7 tsutsui
63 1.1 sekiya #include <sgimips/mace/macereg.h>
64 1.1 sekiya #include <sgimips/mace/macevar.h>
65 1.1 sekiya
66 1.1 sekiya #include <sgimips/mace/pcireg_mace.h>
67 1.1 sekiya
68 1.1 sekiya struct macepci_softc {
69 1.1 sekiya struct sgimips_pci_chipset sc_pc;
70 1.1 sekiya };
71 1.1 sekiya
72 1.15 chs static int macepci_match(device_t, cfdata_t, void *);
73 1.15 chs static void macepci_attach(device_t, device_t, void *);
74 1.8 rumble static int macepci_bus_maxdevs(pci_chipset_tag_t, int);
75 1.8 rumble static pcireg_t macepci_conf_read(pci_chipset_tag_t, pcitag_t, int);
76 1.8 rumble static void macepci_conf_write(pci_chipset_tag_t, pcitag_t, int, pcireg_t);
77 1.11 dyoung static int macepci_intr_map(const struct pci_attach_args *,
78 1.11 dyoung pci_intr_handle_t *);
79 1.8 rumble static const char *
80 1.17 christos macepci_intr_string(pci_chipset_tag_t, pci_intr_handle_t,
81 1.17 christos char *, size_t);
82 1.8 rumble static int macepci_intr(void *);
83 1.1 sekiya
84 1.15 chs CFATTACH_DECL_NEW(macepci, sizeof(struct macepci_softc),
85 1.1 sekiya macepci_match, macepci_attach, NULL, NULL);
86 1.1 sekiya
87 1.18 macallan static void pcimem_bus_mem_init(bus_space_tag_t, void *);
88 1.18 macallan static void pciio_bus_mem_init(bus_space_tag_t, void *);
89 1.18 macallan static struct mips_bus_space pcimem_mbst;
90 1.18 macallan static struct mips_bus_space pciio_mbst;
91 1.18 macallan bus_space_tag_t mace_pci_memt = NULL;
92 1.18 macallan bus_space_tag_t mace_pci_iot = NULL;
93 1.18 macallan
94 1.1 sekiya static int
95 1.15 chs macepci_match(device_t parent, cfdata_t match, void *aux)
96 1.1 sekiya {
97 1.1 sekiya
98 1.2 sekiya return (1);
99 1.1 sekiya }
100 1.1 sekiya
101 1.1 sekiya static void
102 1.15 chs macepci_attach(device_t parent, device_t self, void *aux)
103 1.1 sekiya {
104 1.15 chs struct macepci_softc *sc = device_private(self);
105 1.1 sekiya pci_chipset_tag_t pc = &sc->sc_pc;
106 1.1 sekiya struct mace_attach_args *maa = aux;
107 1.1 sekiya struct pcibus_attach_args pba;
108 1.1 sekiya u_int32_t control;
109 1.7 tsutsui int rev;
110 1.1 sekiya
111 1.1 sekiya if (bus_space_subregion(maa->maa_st, maa->maa_sh,
112 1.1 sekiya maa->maa_offset, 0, &pc->ioh) )
113 1.1 sekiya panic("macepci_attach: couldn't map");
114 1.1 sekiya
115 1.1 sekiya pc->iot = maa->maa_st;
116 1.1 sekiya
117 1.1 sekiya rev = bus_space_read_4(pc->iot, pc->ioh, MACEPCI_REVISION);
118 1.1 sekiya printf(": rev %d\n", rev);
119 1.1 sekiya
120 1.18 macallan pcimem_bus_mem_init(&pcimem_mbst, NULL);
121 1.18 macallan mace_pci_memt = &pcimem_mbst;
122 1.18 macallan pciio_bus_mem_init(&pciio_mbst, NULL);
123 1.18 macallan mace_pci_iot = &pciio_mbst;
124 1.18 macallan
125 1.8 rumble pc->pc_bus_maxdevs = macepci_bus_maxdevs;
126 1.1 sekiya pc->pc_conf_read = macepci_conf_read;
127 1.1 sekiya pc->pc_conf_write = macepci_conf_write;
128 1.8 rumble pc->pc_intr_map = macepci_intr_map;
129 1.8 rumble pc->pc_intr_string = macepci_intr_string;
130 1.4 sekiya pc->intr_establish = mace_intr_establish;
131 1.4 sekiya pc->intr_disestablish = mace_intr_disestablish;
132 1.1 sekiya
133 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh, MACE_PCI_ERROR_ADDR, 0);
134 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh, MACE_PCI_ERROR_FLAGS, 0);
135 1.1 sekiya
136 1.1 sekiya /* Turn on PCI error interrupts */
137 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh, MACE_PCI_CONTROL,
138 1.1 sekiya MACE_PCI_CONTROL_SERR_ENA |
139 1.1 sekiya MACE_PCI_CONTROL_PARITY_ERR |
140 1.1 sekiya MACE_PCI_CONTROL_PARK_LIU |
141 1.1 sekiya MACE_PCI_CONTROL_OVERRUN_INT |
142 1.1 sekiya MACE_PCI_CONTROL_PARITY_INT |
143 1.1 sekiya MACE_PCI_CONTROL_SERR_INT |
144 1.1 sekiya MACE_PCI_CONTROL_IT_INT |
145 1.1 sekiya MACE_PCI_CONTROL_RE_INT |
146 1.1 sekiya MACE_PCI_CONTROL_DPED_INT |
147 1.1 sekiya MACE_PCI_CONTROL_TAR_INT |
148 1.1 sekiya MACE_PCI_CONTROL_MAR_INT);
149 1.1 sekiya
150 1.1 sekiya /*
151 1.1 sekiya * Enable all MACE PCI interrupts. They will be masked by
152 1.1 sekiya * the CRIME code.
153 1.1 sekiya */
154 1.1 sekiya control = bus_space_read_4(pc->iot, pc->ioh, MACEPCI_CONTROL);
155 1.1 sekiya control |= CONTROL_INT_MASK;
156 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh, MACEPCI_CONTROL, control);
157 1.1 sekiya
158 1.1 sekiya #if NPCI > 0
159 1.7 tsutsui pc->pc_ioext = extent_create("macepciio", 0x00001000, 0x01ffffff,
160 1.14 para NULL, 0, EX_NOWAIT);
161 1.7 tsutsui pc->pc_memext = extent_create("macepcimem", 0x80100000, 0x81ffffff,
162 1.14 para NULL, 0, EX_NOWAIT);
163 1.7 tsutsui pci_configure_bus(pc, pc->pc_ioext, pc->pc_memext, NULL, 0,
164 1.10 matt mips_cache_info.mci_dcache_align);
165 1.1 sekiya memset(&pba, 0, sizeof pba);
166 1.18 macallan /*XXX*/ pba.pba_iot = mace_pci_iot;
167 1.18 macallan /*XXX*/ pba.pba_memt = mace_pci_memt;
168 1.1 sekiya pba.pba_dmat = &pci_bus_dma_tag;
169 1.1 sekiya pba.pba_dmat64 = NULL;
170 1.1 sekiya pba.pba_bus = 0;
171 1.1 sekiya pba.pba_bridgetag = NULL;
172 1.12 dyoung pba.pba_flags = PCI_FLAGS_IO_OKAY | PCI_FLAGS_MEM_OKAY |
173 1.1 sekiya PCI_FLAGS_MRL_OKAY | PCI_FLAGS_MRM_OKAY | PCI_FLAGS_MWI_OKAY;
174 1.1 sekiya pba.pba_pc = pc;
175 1.1 sekiya
176 1.1 sekiya #ifdef MACEPCI_IO_WAS_BUGGY
177 1.1 sekiya if (rev == 0)
178 1.12 dyoung pba.pba_flags &= ~PCI_FLAGS_IO_OKAY; /* Buggy? */
179 1.1 sekiya #endif
180 1.1 sekiya
181 1.1 sekiya cpu_intr_establish(maa->maa_intr, IPL_NONE, macepci_intr, sc);
182 1.1 sekiya
183 1.3 drochner config_found_ia(self, "pcibus", &pba, pcibusprint);
184 1.1 sekiya #endif
185 1.1 sekiya }
186 1.1 sekiya
187 1.8 rumble int
188 1.8 rumble macepci_bus_maxdevs(pci_chipset_tag_t pc, int busno)
189 1.8 rumble {
190 1.8 rumble
191 1.8 rumble if (busno == 0)
192 1.8 rumble return 5; /* 2 on-board SCSI chips, slots 0, 1 and 2 */
193 1.8 rumble else
194 1.8 rumble return 0; /* XXX */
195 1.8 rumble }
196 1.8 rumble
197 1.1 sekiya pcireg_t
198 1.5 sekiya macepci_conf_read(pci_chipset_tag_t pc, pcitag_t tag, int reg)
199 1.1 sekiya {
200 1.1 sekiya pcireg_t data;
201 1.1 sekiya
202 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh, MACE_PCI_CONFIG_ADDR, (tag | reg));
203 1.1 sekiya data = bus_space_read_4(pc->iot, pc->ioh, MACE_PCI_CONFIG_DATA);
204 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh, MACE_PCI_CONFIG_ADDR, 0);
205 1.1 sekiya
206 1.1 sekiya return data;
207 1.1 sekiya }
208 1.1 sekiya
209 1.1 sekiya void
210 1.5 sekiya macepci_conf_write(pci_chipset_tag_t pc, pcitag_t tag, int reg, pcireg_t data)
211 1.1 sekiya {
212 1.1 sekiya /* XXX O2 soren */
213 1.1 sekiya if (tag == 0)
214 1.1 sekiya return;
215 1.1 sekiya
216 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh, MACE_PCI_CONFIG_ADDR, (tag | reg));
217 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh, MACE_PCI_CONFIG_DATA, data);
218 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh, MACE_PCI_CONFIG_ADDR, 0);
219 1.1 sekiya }
220 1.1 sekiya
221 1.8 rumble int
222 1.11 dyoung macepci_intr_map(const struct pci_attach_args *pa, pci_intr_handle_t *ihp)
223 1.8 rumble {
224 1.8 rumble pci_chipset_tag_t pc = pa->pa_pc;
225 1.8 rumble pcitag_t intrtag = pa->pa_intrtag;
226 1.8 rumble int pin = pa->pa_intrpin;
227 1.8 rumble int bus, dev, func, start;
228 1.8 rumble
229 1.8 rumble pci_decompose_tag(pc, intrtag, &bus, &dev, &func);
230 1.8 rumble
231 1.8 rumble if (dev < 3 && pin != PCI_INTERRUPT_PIN_A)
232 1.8 rumble panic("SCSI0 and SCSI1 must be hardwired!");
233 1.8 rumble
234 1.8 rumble switch (pin) {
235 1.8 rumble default:
236 1.8 rumble case PCI_INTERRUPT_PIN_NONE:
237 1.8 rumble return -1;
238 1.8 rumble
239 1.8 rumble case PCI_INTERRUPT_PIN_A:
240 1.8 rumble /*
241 1.8 rumble * Each of SCSI{0,1}, & slots 0 - 2 has dedicated interrupt
242 1.8 rumble * for pin A?
243 1.8 rumble */
244 1.8 rumble *ihp = dev + 7;
245 1.8 rumble return 0;
246 1.8 rumble
247 1.8 rumble case PCI_INTERRUPT_PIN_B:
248 1.8 rumble start = 0;
249 1.8 rumble break;
250 1.8 rumble case PCI_INTERRUPT_PIN_C:
251 1.8 rumble start = 1;
252 1.8 rumble break;
253 1.8 rumble case PCI_INTERRUPT_PIN_D:
254 1.8 rumble start = 2;
255 1.8 rumble break;
256 1.8 rumble }
257 1.8 rumble
258 1.8 rumble /* Pins B,C,D are mapped to PCI_SHARED0 - PCI_SHARED2 interrupts */
259 1.8 rumble *ihp = 13 /* PCI_SHARED0 */ + (start + dev - 3) % 3;
260 1.8 rumble return 0;
261 1.8 rumble }
262 1.8 rumble
263 1.8 rumble const char *
264 1.17 christos macepci_intr_string(pci_chipset_tag_t pc, pci_intr_handle_t ih, char *buf,
265 1.17 christos size_t len)
266 1.8 rumble {
267 1.17 christos snprintf(buf, len, "crime interrupt %d", ih);
268 1.17 christos return buf;
269 1.8 rumble }
270 1.8 rumble
271 1.1 sekiya
272 1.1 sekiya /*
273 1.1 sekiya * Handle PCI error interrupts.
274 1.1 sekiya */
275 1.1 sekiya int
276 1.5 sekiya macepci_intr(void *arg)
277 1.1 sekiya {
278 1.1 sekiya struct macepci_softc *sc = (struct macepci_softc *)arg;
279 1.1 sekiya pci_chipset_tag_t pc = &sc->sc_pc;
280 1.1 sekiya u_int32_t error, address;
281 1.1 sekiya
282 1.1 sekiya error = bus_space_read_4(pc->iot, pc->ioh, MACE_PCI_ERROR_FLAGS);
283 1.1 sekiya address = bus_space_read_4(pc->iot, pc->ioh, MACE_PCI_ERROR_ADDR);
284 1.1 sekiya while (error & 0xffc00000) {
285 1.1 sekiya if (error & MACE_PERR_MASTER_ABORT) {
286 1.1 sekiya /*
287 1.1 sekiya * this seems to be a more-or-less normal error
288 1.1 sekiya * condition (e.g., "pcictl pci0 list" generates
289 1.1 sekiya * a _lot_ of these errors, so no message for now
290 1.1 sekiya * while I figure out if I missed a trick somewhere.
291 1.1 sekiya */
292 1.1 sekiya error &= ~MACE_PERR_MASTER_ABORT;
293 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh,
294 1.1 sekiya MACE_PCI_ERROR_FLAGS, error);
295 1.1 sekiya }
296 1.1 sekiya
297 1.1 sekiya if (error & MACE_PERR_TARGET_ABORT) {
298 1.1 sekiya printf("mace: target abort at %x\n", address);
299 1.1 sekiya error &= ~MACE_PERR_TARGET_ABORT;
300 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh,
301 1.1 sekiya MACE_PCI_ERROR_FLAGS, error);
302 1.1 sekiya }
303 1.1 sekiya
304 1.1 sekiya if (error & MACE_PERR_DATA_PARITY_ERR) {
305 1.1 sekiya printf("mace: parity error at %x\n", address);
306 1.1 sekiya error &= ~MACE_PERR_DATA_PARITY_ERR;
307 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh,
308 1.1 sekiya MACE_PCI_ERROR_FLAGS, error);
309 1.1 sekiya }
310 1.1 sekiya
311 1.1 sekiya if (error & MACE_PERR_RETRY_ERR) {
312 1.1 sekiya printf("mace: retry error at %x\n", address);
313 1.1 sekiya error &= ~MACE_PERR_RETRY_ERR;
314 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh,
315 1.1 sekiya MACE_PCI_ERROR_FLAGS, error);
316 1.1 sekiya }
317 1.1 sekiya
318 1.1 sekiya if (error & MACE_PERR_ILLEGAL_CMD) {
319 1.1 sekiya printf("mace: illegal command at %x\n", address);
320 1.1 sekiya error &= ~MACE_PERR_ILLEGAL_CMD;
321 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh,
322 1.1 sekiya MACE_PCI_ERROR_FLAGS, error);
323 1.1 sekiya }
324 1.1 sekiya
325 1.1 sekiya if (error & MACE_PERR_SYSTEM_ERR) {
326 1.1 sekiya printf("mace: system error at %x\n", address);
327 1.1 sekiya error &= ~MACE_PERR_SYSTEM_ERR;
328 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh,
329 1.1 sekiya MACE_PCI_ERROR_FLAGS, error);
330 1.1 sekiya }
331 1.1 sekiya
332 1.1 sekiya if (error & MACE_PERR_INTERRUPT_TEST) {
333 1.1 sekiya printf("mace: interrupt test at %x\n", address);
334 1.1 sekiya error &= ~MACE_PERR_INTERRUPT_TEST;
335 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh,
336 1.1 sekiya MACE_PCI_ERROR_FLAGS, error);
337 1.1 sekiya }
338 1.1 sekiya
339 1.1 sekiya if (error & MACE_PERR_PARITY_ERR) {
340 1.1 sekiya printf("mace: parity error at %x\n", address);
341 1.1 sekiya error &= ~MACE_PERR_PARITY_ERR;
342 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh,
343 1.1 sekiya MACE_PCI_ERROR_FLAGS, error);
344 1.1 sekiya }
345 1.1 sekiya
346 1.1 sekiya if (error & MACE_PERR_RSVD) {
347 1.1 sekiya printf("mace: reserved condition at %x\n", address);
348 1.1 sekiya error &= ~MACE_PERR_RSVD;
349 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh,
350 1.1 sekiya MACE_PCI_ERROR_FLAGS, error);
351 1.1 sekiya }
352 1.1 sekiya
353 1.1 sekiya if (error & MACE_PERR_OVERRUN) {
354 1.1 sekiya printf("mace: overrun at %x\n", address);
355 1.1 sekiya error &= ~MACE_PERR_OVERRUN;
356 1.1 sekiya bus_space_write_4(pc->iot, pc->ioh,
357 1.1 sekiya MACE_PCI_ERROR_FLAGS, error);
358 1.1 sekiya }
359 1.1 sekiya }
360 1.1 sekiya return 0;
361 1.1 sekiya }
362 1.18 macallan
363 1.18 macallan /*
364 1.18 macallan * use the 32MB windows to access PCI space when running a 32bit kernel,
365 1.18 macallan * use full views at >4GB in LP64
366 1.18 macallan * XXX access to PCI space is endian-twiddled which can't be turned off so we
367 1.18 macallan * need to instruct bus_space to un-twiddle them for us so 8bit and 16bit
368 1.18 macallan * accesses look little-endian
369 1.18 macallan */
370 1.18 macallan #define CHIP pcimem
371 1.18 macallan #define CHIP_MEM /* defined */
372 1.18 macallan #define CHIP_WRONG_ENDIAN
373 1.18 macallan
374 1.18 macallan /*
375 1.18 macallan * the lower 2GB of PCI space are two views of system memory, with and without
376 1.18 macallan * endianness twiddling
377 1.18 macallan */
378 1.18 macallan #define CHIP_W1_BUS_START(v) 0x80000000UL
379 1.18 macallan #define CHIP_W1_BUS_END(v) 0xffffffffUL
380 1.18 macallan #ifdef _LP64
381 1.18 macallan #define CHIP_W1_SYS_START(v) MACE_PCI_HI_MEMORY
382 1.18 macallan #define CHIP_W1_SYS_END(v) MACE_PCI_HI_MEMORY + 0x7fffffffUL
383 1.18 macallan #else
384 1.18 macallan #define CHIP_W1_SYS_START(v) MACE_PCI_LOW_MEMORY
385 1.18 macallan #define CHIP_W1_SYS_END(v) MACE_PCI_LOW_MEMORY + 0x01ffffffUL
386 1.18 macallan #endif
387 1.18 macallan
388 1.18 macallan #include <mips/mips/bus_space_alignstride_chipdep.c>
389 1.18 macallan
390 1.18 macallan #undef CHIP
391 1.18 macallan #undef CHIP_W1_BUS_START
392 1.18 macallan #undef CHIP_W1_BUS_END
393 1.18 macallan #undef CHIP_W1_SYS_START
394 1.18 macallan #undef CHIP_W1_SYS_END
395 1.18 macallan
396 1.18 macallan #define CHIP pciio
397 1.18 macallan /*
398 1.18 macallan * Even though it's PCI IO space, it's memory mapped so there is no reason not
399 1.18 macallan * to allow linear mappings or mmapings into userland. In fact we may need to
400 1.18 macallan * do just that in order to use things like PCI graphics cards in X.
401 1.18 macallan */
402 1.18 macallan #define CHIP_MEM /* defined */
403 1.18 macallan #define CHIP_W1_BUS_START(v) 0x00000000UL
404 1.18 macallan #define CHIP_W1_BUS_END(v) 0xffffffffUL
405 1.18 macallan #ifdef _LP64
406 1.18 macallan #define CHIP_W1_SYS_START(v) MACE_PCI_HI_IO
407 1.18 macallan #define CHIP_W1_SYS_END(v) MACE_PCI_HI_IO + 0xffffffffUL
408 1.18 macallan #else
409 1.18 macallan #define CHIP_W1_SYS_START(v) MACE_PCI_LOW_IO
410 1.18 macallan #define CHIP_W1_SYS_END(v) MACE_PCI_LOW_IO + 0x01ffffffUL
411 1.18 macallan #endif
412 1.18 macallan
413 1.18 macallan #include <mips/mips/bus_space_alignstride_chipdep.c>
414