int.c revision 1.28 1 1.28 macallan /* $NetBSD: int.c,v 1.28 2015/02/18 16:47:58 macallan Exp $ */
2 1.1 sekiya
3 1.1 sekiya /*
4 1.20 rumble * Copyright (c) 2009 Stephen M. Rumble
5 1.1 sekiya * Copyright (c) 2004 Christopher SEKIYA
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. The name of the author may not be used to endorse or promote products
17 1.1 sekiya * derived from this software without specific prior written permission.
18 1.1 sekiya *
19 1.1 sekiya * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
20 1.1 sekiya * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21 1.1 sekiya * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22 1.1 sekiya * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
23 1.1 sekiya * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
24 1.1 sekiya * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25 1.1 sekiya * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26 1.1 sekiya * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27 1.1 sekiya * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
28 1.1 sekiya * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29 1.1 sekiya */
30 1.1 sekiya
31 1.1 sekiya /*
32 1.20 rumble * INT1/INT2/INT3 interrupt controllers (IP6, IP10, IP12, IP20, IP22, IP24...)
33 1.1 sekiya */
34 1.1 sekiya
35 1.1 sekiya #include <sys/cdefs.h>
36 1.28 macallan __KERNEL_RCSID(0, "$NetBSD: int.c,v 1.28 2015/02/18 16:47:58 macallan Exp $");
37 1.1 sekiya
38 1.22 matt #define __INTR_PRIVATE
39 1.1 sekiya #include "opt_cputype.h"
40 1.1 sekiya
41 1.1 sekiya #include <sys/param.h>
42 1.1 sekiya #include <sys/proc.h>
43 1.1 sekiya #include <sys/systm.h>
44 1.14 rumble #include <sys/timetc.h>
45 1.1 sekiya #include <sys/kernel.h>
46 1.1 sekiya #include <sys/device.h>
47 1.8 sekiya #include <sys/malloc.h>
48 1.1 sekiya
49 1.1 sekiya #include <dev/ic/i8253reg.h>
50 1.1 sekiya #include <machine/sysconf.h>
51 1.1 sekiya #include <machine/machtype.h>
52 1.24 dyoung #include <sys/bus.h>
53 1.1 sekiya #include <mips/locore.h>
54 1.1 sekiya
55 1.1 sekiya #include <mips/cache.h>
56 1.1 sekiya
57 1.20 rumble #include <sgimips/dev/int1reg.h>
58 1.1 sekiya #include <sgimips/dev/int2reg.h>
59 1.3 sekiya #include <sgimips/dev/int2var.h>
60 1.1 sekiya
61 1.1 sekiya static bus_space_handle_t ioh;
62 1.1 sekiya static bus_space_tag_t iot;
63 1.1 sekiya
64 1.25 chs static int int_match(device_t, cfdata_t, void *);
65 1.25 chs static void int_attach(device_t, device_t, void *);
66 1.20 rumble static void *int1_intr_establish(int, int, int (*)(void *), void *);
67 1.20 rumble static void *int2_intr_establish(int, int, int (*)(void *), void *);
68 1.22 matt static void int1_local_intr(vaddr_t, uint32_t, uint32_t);
69 1.22 matt static void int2_local0_intr(vaddr_t, uint32_t, uint32_t);
70 1.22 matt static void int2_local1_intr(vaddr_t, uint32_t, uint32_t);
71 1.20 rumble static int int2_mappable_intr(void *);
72 1.13 rumble static void int_8254_cal(void);
73 1.14 rumble static u_int int_8254_get_timecount(struct timecounter *);
74 1.22 matt static void int_8254_intr0(vaddr_t, uint32_t, uint32_t);
75 1.22 matt static void int_8254_intr1(vaddr_t, uint32_t, uint32_t);
76 1.13 rumble
77 1.13 rumble #ifdef MIPS3
78 1.25 chs static u_long int2_cpu_freq(device_t);
79 1.20 rumble static u_long int2_cal_timer(void);
80 1.13 rumble #endif
81 1.1 sekiya
82 1.14 rumble static struct timecounter int_8254_timecounter = {
83 1.14 rumble int_8254_get_timecount, /* get_timecount */
84 1.14 rumble 0, /* no poll_pps */
85 1.14 rumble ~0u, /* counter_mask */
86 1.20 rumble 0, /* frequency; set in int_8254_cal */
87 1.14 rumble "int i8254", /* name */
88 1.14 rumble 100, /* quality */
89 1.14 rumble NULL, /* prev */
90 1.14 rumble NULL, /* next */
91 1.14 rumble };
92 1.14 rumble
93 1.14 rumble static u_long int_8254_tc_count;
94 1.14 rumble
95 1.25 chs CFATTACH_DECL_NEW(int, 0,
96 1.19 tsutsui int_match, int_attach, NULL, NULL);
97 1.1 sekiya
98 1.1 sekiya static int
99 1.25 chs int_match(device_t parent, cfdata_t match, void *aux)
100 1.1 sekiya {
101 1.6 pooka
102 1.20 rumble switch (mach_type) {
103 1.20 rumble case MACH_SGI_IP6 | MACH_SGI_IP10:
104 1.20 rumble case MACH_SGI_IP12:
105 1.20 rumble case MACH_SGI_IP20:
106 1.20 rumble case MACH_SGI_IP22:
107 1.1 sekiya return 1;
108 1.20 rumble }
109 1.1 sekiya
110 1.1 sekiya return 0;
111 1.1 sekiya }
112 1.1 sekiya
113 1.1 sekiya static void
114 1.25 chs int_attach(device_t parent, device_t self, void *aux)
115 1.1 sekiya {
116 1.19 tsutsui uint32_t address;
117 1.1 sekiya
118 1.20 rumble switch (mach_type) {
119 1.20 rumble case MACH_SGI_IP6 | MACH_SGI_IP10:
120 1.20 rumble address = INT1_IP6_IP10;
121 1.20 rumble break;
122 1.20 rumble
123 1.20 rumble case MACH_SGI_IP12:
124 1.20 rumble address = INT2_IP12;
125 1.20 rumble break;
126 1.20 rumble
127 1.20 rumble case MACH_SGI_IP20:
128 1.20 rumble address = INT2_IP20;
129 1.20 rumble break;
130 1.20 rumble
131 1.20 rumble case MACH_SGI_IP22:
132 1.1 sekiya if (mach_subtype == MACH_SGI_IP22_FULLHOUSE)
133 1.20 rumble address = INT2_IP22;
134 1.1 sekiya else
135 1.20 rumble address = INT2_IP24;
136 1.20 rumble break;
137 1.20 rumble
138 1.20 rumble default:
139 1.1 sekiya panic("\nint0: passed match, but failed attach?");
140 1.20 rumble }
141 1.1 sekiya
142 1.16 rumble printf(" addr 0x%x\n", address);
143 1.10 tsutsui
144 1.28 macallan iot = normal_memt;
145 1.28 macallan /*
146 1.28 macallan * XXX INT1 registers are spread *way* out, but for now this should
147 1.28 macallan * work
148 1.28 macallan */
149 1.28 macallan bus_space_map(iot, address, 0x100, 0, &ioh);
150 1.1 sekiya
151 1.1 sekiya switch (mach_type) {
152 1.20 rumble case MACH_SGI_IP6 | MACH_SGI_IP10:
153 1.20 rumble /* Clean out interrupt masks */
154 1.20 rumble bus_space_write_1(iot, ioh, INT1_LOCAL_MASK, 0);
155 1.20 rumble
156 1.20 rumble /* Turn off timers and clear interrupts */
157 1.20 rumble bus_space_write_1(iot, ioh, INT1_TIMER_CONTROL,
158 1.20 rumble (TIMER_SEL0 | TIMER_16BIT | TIMER_SWSTROBE));
159 1.20 rumble bus_space_write_1(iot, ioh, INT1_TIMER_CONTROL,
160 1.20 rumble (TIMER_SEL1 | TIMER_16BIT | TIMER_SWSTROBE));
161 1.20 rumble bus_space_write_1(iot, ioh, INT1_TIMER_CONTROL,
162 1.20 rumble (TIMER_SEL2 | TIMER_16BIT | TIMER_SWSTROBE));
163 1.20 rumble wbflush();
164 1.20 rumble delay(4);
165 1.20 rumble bus_space_read_1(iot, ioh, INT1_TIMER_0_ACK);
166 1.20 rumble bus_space_read_1(iot, ioh, INT1_TIMER_1_ACK);
167 1.20 rumble
168 1.20 rumble platform.intr_establish = int1_intr_establish;
169 1.20 rumble platform.intr1 = int1_local_intr;
170 1.20 rumble platform.intr2 = int_8254_intr0;
171 1.19 tsutsui platform.intr4 = int_8254_intr1;
172 1.19 tsutsui int_8254_cal();
173 1.19 tsutsui break;
174 1.20 rumble
175 1.20 rumble case MACH_SGI_IP12:
176 1.19 tsutsui case MACH_SGI_IP20:
177 1.19 tsutsui case MACH_SGI_IP22:
178 1.20 rumble /* Clean out interrupt masks */
179 1.20 rumble bus_space_write_1(iot, ioh, INT2_LOCAL0_MASK, 0);
180 1.20 rumble bus_space_write_1(iot, ioh, INT2_LOCAL1_MASK, 0);
181 1.20 rumble bus_space_write_1(iot, ioh, INT2_MAP_MASK0, 0);
182 1.20 rumble bus_space_write_1(iot, ioh, INT2_MAP_MASK1, 0);
183 1.20 rumble
184 1.20 rumble /* Reset timer interrupts */
185 1.20 rumble bus_space_write_1(iot, ioh, INT2_TIMER_CONTROL,
186 1.20 rumble (TIMER_SEL0 | TIMER_16BIT | TIMER_SWSTROBE));
187 1.20 rumble bus_space_write_1(iot, ioh, INT2_TIMER_CONTROL,
188 1.20 rumble (TIMER_SEL1 | TIMER_16BIT | TIMER_SWSTROBE));
189 1.20 rumble bus_space_write_1(iot, ioh, INT2_TIMER_CONTROL,
190 1.20 rumble (TIMER_SEL2 | TIMER_16BIT | TIMER_SWSTROBE));
191 1.20 rumble wbflush();
192 1.20 rumble delay(4);
193 1.20 rumble bus_space_write_1(iot, ioh, INT2_TIMER_CLEAR, 0x03);
194 1.20 rumble
195 1.20 rumble if (mach_type == MACH_SGI_IP12) {
196 1.20 rumble platform.intr_establish = int2_intr_establish;
197 1.20 rumble platform.intr1 = int2_local0_intr;
198 1.20 rumble platform.intr2 = int2_local1_intr;
199 1.20 rumble platform.intr3 = int_8254_intr0;
200 1.20 rumble platform.intr4 = int_8254_intr1;
201 1.20 rumble int_8254_cal();
202 1.20 rumble } else {
203 1.20 rumble platform.intr_establish = int2_intr_establish;
204 1.20 rumble platform.intr0 = int2_local0_intr;
205 1.20 rumble platform.intr1 = int2_local1_intr;
206 1.20 rumble #ifdef MIPS3
207 1.20 rumble curcpu()->ci_cpu_freq = int2_cpu_freq(self);
208 1.20 rumble #endif
209 1.19 tsutsui }
210 1.20 rumble break;
211 1.1 sekiya
212 1.19 tsutsui default:
213 1.19 tsutsui panic("int0: unsupported machine type %i\n", mach_type);
214 1.1 sekiya }
215 1.1 sekiya
216 1.1 sekiya curcpu()->ci_cycles_per_hz = curcpu()->ci_cpu_freq / (2 * hz);
217 1.1 sekiya curcpu()->ci_divisor_delay = curcpu()->ci_cpu_freq / (2 * 1000000);
218 1.1 sekiya
219 1.1 sekiya if (mach_type == MACH_SGI_IP22) {
220 1.1 sekiya /* Wire interrupts 7, 11 to mappable interrupt 0,1 handlers */
221 1.20 rumble intrtab[7].ih_fun = int2_mappable_intr;
222 1.1 sekiya intrtab[7].ih_arg = (void*) 0;
223 1.1 sekiya
224 1.20 rumble intrtab[11].ih_fun = int2_mappable_intr;
225 1.1 sekiya intrtab[11].ih_arg = (void*) 1;
226 1.1 sekiya }
227 1.1 sekiya }
228 1.1 sekiya
229 1.1 sekiya int
230 1.20 rumble int2_mappable_intr(void *arg)
231 1.1 sekiya {
232 1.1 sekiya int i;
233 1.1 sekiya int ret;
234 1.1 sekiya int intnum;
235 1.19 tsutsui uint32_t mstat;
236 1.19 tsutsui uint32_t mmask;
237 1.21 matt int which = (intptr_t)arg;
238 1.8 sekiya struct sgimips_intrhand *ih;
239 1.1 sekiya
240 1.1 sekiya ret = 0;
241 1.20 rumble mstat = bus_space_read_1(iot, ioh, INT2_MAP_STATUS);
242 1.20 rumble mmask = bus_space_read_1(iot, ioh, INT2_MAP_MASK0 + (which << 2));
243 1.1 sekiya
244 1.1 sekiya mstat &= mmask;
245 1.1 sekiya
246 1.1 sekiya for (i = 0; i < 8; i++) {
247 1.1 sekiya intnum = i + 16 + (which << 3);
248 1.1 sekiya if (mstat & (1 << i)) {
249 1.8 sekiya for (ih = &intrtab[intnum]; ih != NULL;
250 1.19 tsutsui ih = ih->ih_next) {
251 1.8 sekiya if (ih->ih_fun != NULL)
252 1.8 sekiya ret |= (ih->ih_fun)(ih->ih_arg);
253 1.8 sekiya else
254 1.8 sekiya printf("int0: unexpected mapped "
255 1.8 sekiya "interrupt %d\n", intnum);
256 1.8 sekiya }
257 1.1 sekiya }
258 1.1 sekiya }
259 1.1 sekiya
260 1.1 sekiya return ret;
261 1.1 sekiya }
262 1.1 sekiya
263 1.20 rumble static void
264 1.22 matt int1_local_intr(vaddr_t pc, uint32_t status, uint32_t ipend)
265 1.20 rumble {
266 1.20 rumble int i;
267 1.20 rumble uint16_t stat;
268 1.20 rumble uint8_t mask;
269 1.20 rumble struct sgimips_intrhand *ih;
270 1.20 rumble
271 1.20 rumble stat = bus_space_read_2(iot, ioh, INT1_LOCAL_STATUS);
272 1.20 rumble mask = bus_space_read_1(iot, ioh, INT1_LOCAL_MASK);
273 1.20 rumble
274 1.20 rumble /* for STATUS, a 0 bit means interrupt is pending */
275 1.20 rumble stat = ~stat & mask;
276 1.20 rumble
277 1.22 matt for (i = 0; stat != 0; i++, stat >>= 1) {
278 1.22 matt if (stat & 1) {
279 1.20 rumble for (ih = &intrtab[i]; ih != NULL; ih = ih->ih_next) {
280 1.20 rumble if (ih->ih_fun != NULL)
281 1.20 rumble (ih->ih_fun)(ih->ih_arg);
282 1.20 rumble else
283 1.20 rumble printf("int0: unexpected local "
284 1.20 rumble "interrupt %d\n", i);
285 1.20 rumble }
286 1.20 rumble }
287 1.20 rumble }
288 1.20 rumble }
289 1.20 rumble
290 1.1 sekiya void
291 1.22 matt int2_local0_intr(vaddr_t pc, uint32_t status, uint32_t ipending)
292 1.1 sekiya {
293 1.1 sekiya int i;
294 1.19 tsutsui uint32_t l0stat;
295 1.19 tsutsui uint32_t l0mask;
296 1.8 sekiya struct sgimips_intrhand *ih;
297 1.1 sekiya
298 1.20 rumble l0stat = bus_space_read_1(iot, ioh, INT2_LOCAL0_STATUS);
299 1.20 rumble l0mask = bus_space_read_1(iot, ioh, INT2_LOCAL0_MASK);
300 1.1 sekiya
301 1.12 rumble l0stat &= l0mask;
302 1.1 sekiya
303 1.1 sekiya for (i = 0; i < 8; i++) {
304 1.12 rumble if (l0stat & (1 << i)) {
305 1.8 sekiya for (ih = &intrtab[i]; ih != NULL; ih = ih->ih_next) {
306 1.8 sekiya if (ih->ih_fun != NULL)
307 1.8 sekiya (ih->ih_fun)(ih->ih_arg);
308 1.8 sekiya else
309 1.8 sekiya printf("int0: unexpected local0 "
310 1.8 sekiya "interrupt %d\n", i);
311 1.8 sekiya }
312 1.1 sekiya }
313 1.1 sekiya }
314 1.1 sekiya }
315 1.1 sekiya
316 1.1 sekiya void
317 1.22 matt int2_local1_intr(vaddr_t pc, uint32_t status, uint32_t ipending)
318 1.1 sekiya {
319 1.1 sekiya int i;
320 1.19 tsutsui uint32_t l1stat;
321 1.19 tsutsui uint32_t l1mask;
322 1.8 sekiya struct sgimips_intrhand *ih;
323 1.1 sekiya
324 1.20 rumble l1stat = bus_space_read_1(iot, ioh, INT2_LOCAL1_STATUS);
325 1.20 rumble l1mask = bus_space_read_1(iot, ioh, INT2_LOCAL1_MASK);
326 1.1 sekiya
327 1.1 sekiya l1stat &= l1mask;
328 1.1 sekiya
329 1.1 sekiya for (i = 0; i < 8; i++) {
330 1.1 sekiya if (l1stat & (1 << i)) {
331 1.8 sekiya for (ih = &intrtab[8+i]; ih != NULL; ih = ih->ih_next) {
332 1.8 sekiya if (ih->ih_fun != NULL)
333 1.8 sekiya (ih->ih_fun)(ih->ih_arg);
334 1.8 sekiya else
335 1.8 sekiya printf("int0: unexpected local1 "
336 1.8 sekiya " interrupt %x\n", 8 + i);
337 1.8 sekiya }
338 1.1 sekiya }
339 1.1 sekiya }
340 1.1 sekiya }
341 1.1 sekiya
342 1.1 sekiya void *
343 1.20 rumble int1_intr_establish(int level, int ipl, int (*handler) (void *), void *arg)
344 1.20 rumble {
345 1.20 rumble uint8_t mask;
346 1.20 rumble
347 1.20 rumble if (level < 0 || level >= NINTR)
348 1.20 rumble panic("invalid interrupt level");
349 1.20 rumble
350 1.20 rumble if (intrtab[level].ih_fun == NULL) {
351 1.20 rumble intrtab[level].ih_fun = handler;
352 1.20 rumble intrtab[level].ih_arg = arg;
353 1.20 rumble intrtab[level].ih_next = NULL;
354 1.20 rumble } else {
355 1.20 rumble struct sgimips_intrhand *n, *ih;
356 1.20 rumble
357 1.20 rumble ih = malloc(sizeof *ih, M_DEVBUF, M_NOWAIT);
358 1.20 rumble if (ih == NULL) {
359 1.20 rumble printf("int0: can't allocate handler\n");
360 1.20 rumble return (void *)NULL;
361 1.20 rumble }
362 1.20 rumble
363 1.20 rumble ih->ih_fun = handler;
364 1.20 rumble ih->ih_arg = arg;
365 1.20 rumble ih->ih_next = NULL;
366 1.20 rumble
367 1.20 rumble for (n = &intrtab[level]; n->ih_next != NULL; n = n->ih_next)
368 1.20 rumble ;
369 1.20 rumble
370 1.20 rumble n->ih_next = ih;
371 1.20 rumble
372 1.20 rumble return NULL; /* vector already set */
373 1.20 rumble }
374 1.20 rumble
375 1.20 rumble if (level < 8) {
376 1.20 rumble mask = bus_space_read_1(iot, ioh, INT1_LOCAL_MASK);
377 1.20 rumble mask |= (1 << level);
378 1.20 rumble bus_space_write_1(iot, ioh, INT1_LOCAL_MASK, mask);
379 1.20 rumble } else {
380 1.20 rumble printf("int0: level >= 16 (%d)\n", level);
381 1.20 rumble }
382 1.20 rumble
383 1.20 rumble return NULL;
384 1.20 rumble }
385 1.20 rumble
386 1.20 rumble void *
387 1.20 rumble int2_intr_establish(int level, int ipl, int (*handler) (void *), void *arg)
388 1.1 sekiya {
389 1.19 tsutsui uint32_t mask;
390 1.1 sekiya
391 1.1 sekiya if (level < 0 || level >= NINTR)
392 1.1 sekiya panic("invalid interrupt level");
393 1.1 sekiya
394 1.8 sekiya if (intrtab[level].ih_fun == NULL) {
395 1.8 sekiya intrtab[level].ih_fun = handler;
396 1.8 sekiya intrtab[level].ih_arg = arg;
397 1.8 sekiya intrtab[level].ih_next = NULL;
398 1.8 sekiya } else {
399 1.19 tsutsui struct sgimips_intrhand *n, *ih;
400 1.8 sekiya
401 1.19 tsutsui ih = malloc(sizeof *ih, M_DEVBUF, M_NOWAIT);
402 1.8 sekiya if (ih == NULL) {
403 1.20 rumble printf("int0: can't allocate handler\n");
404 1.19 tsutsui return NULL;
405 1.8 sekiya }
406 1.8 sekiya
407 1.8 sekiya ih->ih_fun = handler;
408 1.8 sekiya ih->ih_arg = arg;
409 1.8 sekiya ih->ih_next = NULL;
410 1.8 sekiya
411 1.8 sekiya for (n = &intrtab[level]; n->ih_next != NULL; n = n->ih_next)
412 1.10 tsutsui ;
413 1.10 tsutsui
414 1.8 sekiya n->ih_next = ih;
415 1.8 sekiya
416 1.19 tsutsui return NULL; /* vector already set */
417 1.1 sekiya }
418 1.1 sekiya
419 1.1 sekiya if (level < 8) {
420 1.20 rumble mask = bus_space_read_1(iot, ioh, INT2_LOCAL0_MASK);
421 1.1 sekiya mask |= (1 << level);
422 1.20 rumble bus_space_write_1(iot, ioh, INT2_LOCAL0_MASK, mask);
423 1.1 sekiya } else if (level < 16) {
424 1.20 rumble mask = bus_space_read_1(iot, ioh, INT2_LOCAL1_MASK);
425 1.1 sekiya mask |= (1 << (level - 8));
426 1.20 rumble bus_space_write_1(iot, ioh, INT2_LOCAL1_MASK, mask);
427 1.1 sekiya } else if (level < 24) {
428 1.1 sekiya /* Map0 interrupt maps to l0 bit 7, so turn that on too */
429 1.20 rumble mask = bus_space_read_1(iot, ioh, INT2_LOCAL0_MASK);
430 1.1 sekiya mask |= (1 << 7);
431 1.20 rumble bus_space_write_1(iot, ioh, INT2_LOCAL0_MASK, mask);
432 1.1 sekiya
433 1.20 rumble mask = bus_space_read_1(iot, ioh, INT2_MAP_MASK0);
434 1.1 sekiya mask |= (1 << (level - 16));
435 1.20 rumble bus_space_write_1(iot, ioh, INT2_MAP_MASK0, mask);
436 1.1 sekiya } else {
437 1.1 sekiya /* Map1 interrupt maps to l1 bit 3, so turn that on too */
438 1.20 rumble mask = bus_space_read_1(iot, ioh, INT2_LOCAL1_MASK);
439 1.1 sekiya mask |= (1 << 3);
440 1.20 rumble bus_space_write_1(iot, ioh, INT2_LOCAL1_MASK, mask);
441 1.1 sekiya
442 1.20 rumble mask = bus_space_read_1(iot, ioh, INT2_MAP_MASK1);
443 1.1 sekiya mask |= (1 << (level - 24));
444 1.20 rumble bus_space_write_1(iot, ioh, INT2_MAP_MASK1, mask);
445 1.1 sekiya }
446 1.1 sekiya
447 1.19 tsutsui return NULL;
448 1.1 sekiya }
449 1.1 sekiya
450 1.4 pooka #ifdef MIPS3
451 1.13 rumble static u_long
452 1.25 chs int2_cpu_freq(device_t self)
453 1.20 rumble {
454 1.20 rumble int i;
455 1.20 rumble unsigned long cps;
456 1.20 rumble unsigned long ctrdiff[3];
457 1.20 rumble
458 1.20 rumble /* calibrate timer */
459 1.20 rumble int2_cal_timer();
460 1.20 rumble
461 1.20 rumble cps = 0;
462 1.20 rumble for (i = 0;
463 1.20 rumble i < sizeof(ctrdiff) / sizeof(ctrdiff[0]); i++) {
464 1.20 rumble do {
465 1.20 rumble ctrdiff[i] = int2_cal_timer();
466 1.20 rumble } while (ctrdiff[i] == 0);
467 1.20 rumble
468 1.20 rumble cps += ctrdiff[i];
469 1.20 rumble }
470 1.20 rumble
471 1.20 rumble cps = cps / (sizeof(ctrdiff) / sizeof(ctrdiff[0]));
472 1.20 rumble
473 1.20 rumble printf("%s: bus %luMHz, CPU %luMHz\n",
474 1.25 chs device_xname(self), cps / 10000, cps / 5000);
475 1.20 rumble
476 1.20 rumble /* R4k/R4400/R4600/R5k count at half CPU frequency */
477 1.20 rumble return (2 * cps * hz);
478 1.20 rumble }
479 1.20 rumble
480 1.20 rumble static u_long
481 1.20 rumble int2_cal_timer(void)
482 1.1 sekiya {
483 1.1 sekiya int s;
484 1.1 sekiya int roundtime;
485 1.1 sekiya int sampletime;
486 1.27 macallan int msb;
487 1.1 sekiya unsigned long startctr, endctr;
488 1.1 sekiya
489 1.1 sekiya /*
490 1.1 sekiya * NOTE: HZ must be greater than 15 for this to work, as otherwise
491 1.20 rumble * we'll overflow the counter. We round the answer to nearest 1
492 1.1 sekiya * MHz of the master (2x) clock.
493 1.1 sekiya */
494 1.1 sekiya roundtime = (1000000 / hz) / 2;
495 1.1 sekiya sampletime = (1000000 / hz) + 0xff;
496 1.1 sekiya
497 1.1 sekiya s = splhigh();
498 1.1 sekiya
499 1.20 rumble bus_space_write_1(iot, ioh, INT2_TIMER_CONTROL,
500 1.19 tsutsui (TIMER_SEL2 | TIMER_16BIT | TIMER_RATEGEN));
501 1.20 rumble bus_space_write_1(iot, ioh, INT2_TIMER_2, (sampletime & 0xff));
502 1.20 rumble bus_space_write_1(iot, ioh, INT2_TIMER_2, (sampletime >> 8));
503 1.1 sekiya
504 1.1 sekiya startctr = mips3_cp0_count_read();
505 1.1 sekiya
506 1.1 sekiya /* Wait for the MSB to count down to zero */
507 1.1 sekiya do {
508 1.20 rumble bus_space_write_1(iot, ioh, INT2_TIMER_CONTROL, TIMER_SEL2);
509 1.27 macallan (void)bus_space_read_1(iot, ioh, INT2_TIMER_2);
510 1.20 rumble msb = bus_space_read_1(iot, ioh, INT2_TIMER_2) & 0xff;
511 1.1 sekiya
512 1.1 sekiya endctr = mips3_cp0_count_read();
513 1.1 sekiya } while (msb);
514 1.1 sekiya
515 1.1 sekiya /* Turn off timer */
516 1.20 rumble bus_space_write_1(iot, ioh, INT2_TIMER_CONTROL,
517 1.19 tsutsui (TIMER_SEL2 | TIMER_16BIT | TIMER_SWSTROBE));
518 1.1 sekiya
519 1.1 sekiya splx(s);
520 1.1 sekiya
521 1.1 sekiya return (endctr - startctr) / roundtime * roundtime;
522 1.1 sekiya }
523 1.4 pooka #endif /* MIPS3 */
524 1.1 sekiya
525 1.14 rumble /*
526 1.20 rumble * A master clock is wired to TIMER_2, which in turn clocks the two other
527 1.20 rumble * timers. The master frequencies are as follows:
528 1.20 rumble * IP6, IP10: 3.6864MHz
529 1.20 rumble * IP12, IP20, IP22: 1MHz
530 1.20 rumble * IP17: 10MHz
531 1.14 rumble *
532 1.20 rumble * TIMER_0 and TIMER_1 interrupts are tied to MIPS interrupts as follows:
533 1.20 rumble * IP6, IP10: TIMER_0: INT2, TIMER_1: INT4
534 1.20 rumble * IP12: TIMER_0: INT3, TIMER_1: INT4
535 1.20 rumble * IP17, IP20, IP22: TIMER_0: INT2, TIMER_1: INT3
536 1.20 rumble *
537 1.20 rumble * NB: Apparently int2 doesn't like counting down from one, but two works.
538 1.14 rumble */
539 1.1 sekiya void
540 1.1 sekiya int_8254_cal(void)
541 1.1 sekiya {
542 1.20 rumble bus_size_t timer_control, timer_0, timer_1, timer_2;
543 1.1 sekiya int s;
544 1.1 sekiya
545 1.20 rumble switch (mach_type) {
546 1.20 rumble case MACH_SGI_IP6 | MACH_SGI_IP10:
547 1.20 rumble int_8254_timecounter.tc_frequency = 3686400 / 8;
548 1.20 rumble timer_control = INT1_TIMER_CONTROL;
549 1.20 rumble timer_0 = INT1_TIMER_0;
550 1.20 rumble timer_1 = INT1_TIMER_1;
551 1.20 rumble timer_2 = INT1_TIMER_2;
552 1.20 rumble break;
553 1.20 rumble
554 1.20 rumble case MACH_SGI_IP12:
555 1.20 rumble int_8254_timecounter.tc_frequency = 1000000 / 8;
556 1.20 rumble timer_control = INT2_TIMER_CONTROL;
557 1.20 rumble timer_0 = INT2_TIMER_0;
558 1.20 rumble timer_1 = INT2_TIMER_1;
559 1.20 rumble timer_2 = INT2_TIMER_2;
560 1.20 rumble break;
561 1.20 rumble
562 1.20 rumble default:
563 1.20 rumble panic("int_8254_cal");
564 1.20 rumble }
565 1.20 rumble
566 1.1 sekiya s = splhigh();
567 1.1 sekiya
568 1.20 rumble /* Timer0 is our hz. */
569 1.20 rumble bus_space_write_1(iot, ioh, timer_control,
570 1.20 rumble TIMER_SEL0 | TIMER_RATEGEN | TIMER_16BIT);
571 1.20 rumble bus_space_write_1(iot, ioh, timer_0,
572 1.20 rumble (int_8254_timecounter.tc_frequency / hz) % 256);
573 1.14 rumble wbflush();
574 1.14 rumble delay(4);
575 1.20 rumble bus_space_write_1(iot, ioh, timer_0,
576 1.20 rumble (int_8254_timecounter.tc_frequency / hz) / 256);
577 1.14 rumble
578 1.20 rumble /* Timer1 is for timecounting. */
579 1.20 rumble bus_space_write_1(iot, ioh, timer_control,
580 1.20 rumble TIMER_SEL1 | TIMER_RATEGEN | TIMER_16BIT);
581 1.20 rumble bus_space_write_1(iot, ioh, timer_1, 0xff);
582 1.1 sekiya wbflush();
583 1.1 sekiya delay(4);
584 1.20 rumble bus_space_write_1(iot, ioh, timer_1, 0xff);
585 1.1 sekiya
586 1.20 rumble /* Timer2 clocks timer0 and timer1. */
587 1.20 rumble bus_space_write_1(iot, ioh, timer_control,
588 1.20 rumble TIMER_SEL2 | TIMER_RATEGEN | TIMER_16BIT);
589 1.20 rumble bus_space_write_1(iot, ioh, timer_2, 8);
590 1.1 sekiya wbflush();
591 1.1 sekiya delay(4);
592 1.20 rumble bus_space_write_1(iot, ioh, timer_2, 0);
593 1.14 rumble
594 1.14 rumble splx(s);
595 1.20 rumble
596 1.20 rumble tc_init(&int_8254_timecounter);
597 1.14 rumble }
598 1.14 rumble
599 1.14 rumble static u_int
600 1.14 rumble int_8254_get_timecount(struct timecounter *tc)
601 1.14 rumble {
602 1.14 rumble int s;
603 1.14 rumble u_int count;
604 1.20 rumble u_char lo, hi;
605 1.14 rumble
606 1.14 rumble s = splhigh();
607 1.14 rumble
608 1.20 rumble switch (mach_type) {
609 1.20 rumble case MACH_SGI_IP6 | MACH_SGI_IP10:
610 1.20 rumble bus_space_write_1(iot, ioh, INT1_TIMER_CONTROL,
611 1.20 rumble TIMER_SEL1 | TIMER_LATCH);
612 1.20 rumble lo = bus_space_read_1(iot, ioh, INT1_TIMER_1);
613 1.20 rumble hi = bus_space_read_1(iot, ioh, INT1_TIMER_1);
614 1.20 rumble break;
615 1.20 rumble
616 1.20 rumble case MACH_SGI_IP12:
617 1.20 rumble bus_space_write_1(iot, ioh, INT2_TIMER_CONTROL,
618 1.20 rumble TIMER_SEL1 | TIMER_LATCH);
619 1.20 rumble lo = bus_space_read_1(iot, ioh, INT2_TIMER_1);
620 1.20 rumble hi = bus_space_read_1(iot, ioh, INT2_TIMER_1);
621 1.20 rumble break;
622 1.20 rumble
623 1.20 rumble default:
624 1.20 rumble panic("int_8254_get_timecount");
625 1.20 rumble }
626 1.20 rumble
627 1.14 rumble count = 0xffff - ((hi << 8) | lo);
628 1.14 rumble splx(s);
629 1.14 rumble
630 1.20 rumble return (int_8254_tc_count + count);
631 1.14 rumble }
632 1.14 rumble
633 1.14 rumble static void
634 1.22 matt int_8254_intr0(vaddr_t pc, uint32_t status, uint32_t ipending)
635 1.15 rumble {
636 1.15 rumble struct clockframe cf;
637 1.15 rumble
638 1.15 rumble cf.pc = pc;
639 1.15 rumble cf.sr = status;
640 1.23 tsutsui cf.intr = (curcpu()->ci_idepth > 1);
641 1.15 rumble
642 1.15 rumble hardclock(&cf);
643 1.15 rumble
644 1.20 rumble switch (mach_type) {
645 1.20 rumble case MACH_SGI_IP6 | MACH_SGI_IP10:
646 1.20 rumble bus_space_read_1(iot, ioh, INT1_TIMER_0_ACK);
647 1.20 rumble break;
648 1.20 rumble
649 1.20 rumble case MACH_SGI_IP12:
650 1.20 rumble bus_space_write_1(iot, ioh, INT2_TIMER_CLEAR, 0x01);
651 1.20 rumble break;
652 1.20 rumble
653 1.20 rumble default:
654 1.20 rumble panic("int_8254_intr0");
655 1.20 rumble }
656 1.15 rumble }
657 1.15 rumble
658 1.15 rumble static void
659 1.22 matt int_8254_intr1(vaddr_t pc, uint32_t status, uint32_t ipending)
660 1.14 rumble {
661 1.14 rumble int s;
662 1.14 rumble
663 1.14 rumble s = splhigh();
664 1.14 rumble
665 1.14 rumble int_8254_tc_count += 0xffff;
666 1.20 rumble switch (mach_type) {
667 1.20 rumble case MACH_SGI_IP6 | MACH_SGI_IP10:
668 1.20 rumble bus_space_read_1(iot, ioh, INT1_TIMER_1_ACK);
669 1.20 rumble break;
670 1.20 rumble
671 1.20 rumble case MACH_SGI_IP12:
672 1.20 rumble bus_space_write_1(iot, ioh, INT2_TIMER_CLEAR, 0x02);
673 1.20 rumble break;
674 1.20 rumble
675 1.20 rumble default:
676 1.20 rumble panic("int_8254_intr1");
677 1.20 rumble }
678 1.14 rumble
679 1.1 sekiya splx(s);
680 1.1 sekiya }
681 1.3 sekiya
682 1.3 sekiya void
683 1.19 tsutsui int2_wait_fifo(uint32_t flag)
684 1.3 sekiya {
685 1.19 tsutsui
686 1.8 sekiya if (ioh == 0)
687 1.8 sekiya delay(5000);
688 1.8 sekiya else
689 1.20 rumble while (bus_space_read_1(iot, ioh, INT2_LOCAL0_STATUS) & flag)
690 1.8 sekiya ;
691 1.3 sekiya }
692