bcu_vrip.c revision 1.26 1 1.26 he /* $NetBSD: bcu_vrip.c,v 1.26 2005/06/07 12:19:46 he Exp $ */
2 1.1 takemura
3 1.1 takemura /*-
4 1.7 sato * Copyright (c) 1999-2001 SATO Kazumi. All rights reserved.
5 1.16 takemura * Copyright (c) 1999, 2002 PocketBSD Project. All rights reserved.
6 1.1 takemura *
7 1.1 takemura * Redistribution and use in source and binary forms, with or without
8 1.1 takemura * modification, are permitted provided that the following conditions
9 1.1 takemura * are met:
10 1.1 takemura * 1. Redistributions of source code must retain the above copyright
11 1.1 takemura * notice, this list of conditions and the following disclaimer.
12 1.1 takemura * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 takemura * notice, this list of conditions and the following disclaimer in the
14 1.1 takemura * documentation and/or other materials provided with the distribution.
15 1.1 takemura * 3. All advertising materials mentioning features or use of this software
16 1.1 takemura * must display the following acknowledgement:
17 1.1 takemura * This product includes software developed by the PocketBSD project
18 1.1 takemura * and its contributors.
19 1.1 takemura * 4. Neither the name of the project nor the names of its contributors
20 1.1 takemura * may be used to endorse or promote products derived from this software
21 1.1 takemura * without specific prior written permission.
22 1.1 takemura *
23 1.1 takemura * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 1.1 takemura * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 1.1 takemura * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 1.1 takemura * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 1.1 takemura * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 1.1 takemura * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 1.1 takemura * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 1.1 takemura * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 1.1 takemura * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 1.1 takemura * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 1.1 takemura * SUCH DAMAGE.
34 1.1 takemura *
35 1.1 takemura */
36 1.20 lukem
37 1.20 lukem #include <sys/cdefs.h>
38 1.26 he __KERNEL_RCSID(0, "$NetBSD: bcu_vrip.c,v 1.26 2005/06/07 12:19:46 he Exp $");
39 1.1 takemura
40 1.1 takemura #include <sys/param.h>
41 1.1 takemura #include <sys/systm.h>
42 1.1 takemura #include <sys/device.h>
43 1.1 takemura #include <sys/reboot.h>
44 1.1 takemura
45 1.1 takemura #include <machine/bus.h>
46 1.15 uch #include <machine/debug.h>
47 1.16 takemura #include <machine/platid.h>
48 1.16 takemura #include <machine/platid_mask.h>
49 1.1 takemura
50 1.1 takemura #include <mips/cpuregs.h>
51 1.1 takemura
52 1.7 sato #include "opt_vr41xx.h"
53 1.1 takemura #include <hpcmips/vr/vr.h>
54 1.7 sato #include <hpcmips/vr/vrcpudef.h>
55 1.14 takemura #include <hpcmips/vr/vripif.h>
56 1.1 takemura #include <hpcmips/vr/vripvar.h>
57 1.1 takemura #include <hpcmips/vr/vripreg.h>
58 1.1 takemura #include <hpcmips/vr/bcureg.h>
59 1.1 takemura #include <hpcmips/vr/bcuvar.h>
60 1.1 takemura
61 1.12 uch static int vrbcu_match(struct device *, struct cfdata *, void *);
62 1.12 uch static void vrbcu_attach(struct device *, struct device *, void *);
63 1.1 takemura
64 1.12 uch static void vrbcu_write(struct vrbcu_softc *, int, unsigned short);
65 1.12 uch static unsigned short vrbcu_read(struct vrbcu_softc *, int);
66 1.2 sato
67 1.12 uch static void vrbcu_dump_regs(void);
68 1.5 sato
69 1.26 he const char *vr_cpuname=NULL;
70 1.2 sato int vr_major=-1;
71 1.2 sato int vr_minor=-1;
72 1.2 sato int vr_cpuid=-1;
73 1.1 takemura
74 1.19 thorpej CFATTACH_DECL(vrbcu, sizeof(struct vrbcu_softc),
75 1.19 thorpej vrbcu_match, vrbcu_attach, NULL, NULL);
76 1.1 takemura
77 1.3 sato struct vrbcu_softc *the_bcu_sc = NULL;
78 1.3 sato
79 1.16 takemura #ifdef SINGLE_VRIP_BASE
80 1.16 takemura #define vrbcu_addr() VRIP_BCU_ADDR
81 1.16 takemura #else
82 1.16 takemura static bus_addr_t vrbcu_addr(void);
83 1.16 takemura static bus_addr_t
84 1.16 takemura vrbcu_addr()
85 1.16 takemura {
86 1.21 he static bus_addr_t addr = 0;
87 1.16 takemura static struct platid_data addrs[] = {
88 1.16 takemura { &platid_mask_CPU_MIPS_VR_4102, (void *)VR4102_BCU_ADDR },
89 1.16 takemura { &platid_mask_CPU_MIPS_VR_4111, (void *)VR4102_BCU_ADDR },
90 1.16 takemura { &platid_mask_CPU_MIPS_VR_4121, (void *)VR4102_BCU_ADDR },
91 1.16 takemura { &platid_mask_CPU_MIPS_VR_4122, (void *)VR4122_BCU_ADDR },
92 1.16 takemura { &platid_mask_CPU_MIPS_VR_4131, (void *)VR4122_BCU_ADDR },
93 1.16 takemura { &platid_mask_CPU_MIPS_VR_4181, (void *)VR4181_BCU_ADDR },
94 1.16 takemura { NULL, NULL } /* terminator, don't delete */
95 1.16 takemura };
96 1.16 takemura struct platid_data *p;
97 1.16 takemura
98 1.21 he if (addr == 0) {
99 1.16 takemura if ((p = platid_search_data(&platid, addrs)) == NULL)
100 1.17 provos panic("%s: can't find VR BCU address", __FUNCTION__);
101 1.16 takemura addr = (bus_addr_t)p->data;
102 1.16 takemura }
103 1.16 takemura
104 1.16 takemura return (addr);
105 1.16 takemura }
106 1.16 takemura #endif /* SINGLE_VRIP_BASE */
107 1.16 takemura
108 1.3 sato static inline void
109 1.12 uch vrbcu_write(struct vrbcu_softc *sc, int port, unsigned short val)
110 1.3 sato {
111 1.12 uch
112 1.3 sato bus_space_write_2(sc->sc_iot, sc->sc_ioh, port, val);
113 1.3 sato }
114 1.3 sato
115 1.3 sato static inline unsigned short
116 1.12 uch vrbcu_read(struct vrbcu_softc *sc, int port)
117 1.3 sato {
118 1.12 uch
119 1.12 uch return (bus_space_read_2(sc->sc_iot, sc->sc_ioh, port));
120 1.3 sato }
121 1.3 sato
122 1.1 takemura static int
123 1.12 uch vrbcu_match(struct device *parent, struct cfdata *cf, void *aux)
124 1.1 takemura {
125 1.12 uch
126 1.12 uch return (2);
127 1.1 takemura }
128 1.1 takemura
129 1.1 takemura static void
130 1.12 uch vrbcu_attach(struct device *parent, struct device *self, void *aux)
131 1.1 takemura {
132 1.1 takemura struct vrip_attach_args *va = aux;
133 1.3 sato struct vrbcu_softc *sc = (struct vrbcu_softc *)self;
134 1.1 takemura
135 1.3 sato sc->sc_iot = va->va_iot;
136 1.3 sato bus_space_map(sc->sc_iot, va->va_addr, va->va_size,
137 1.12 uch 0, /* no flags */
138 1.12 uch &sc->sc_ioh);
139 1.1 takemura
140 1.1 takemura printf("\n");
141 1.3 sato the_bcu_sc = sc;
142 1.5 sato vrbcu_dump_regs();
143 1.5 sato }
144 1.5 sato
145 1.5 sato static void
146 1.5 sato vrbcu_dump_regs()
147 1.5 sato {
148 1.5 sato struct vrbcu_softc *sc = the_bcu_sc;
149 1.7 sato int cpuclock = 0, tclock = 0, vtclock = 0, cpuid;
150 1.8 sato #if !defined(ONLY_VR4102)
151 1.23 simonb int spdreg = 0; /* XXX gcc doesn't stand a chance of tracking this! */
152 1.7 sato #endif
153 1.7 sato #ifdef VRBCUDEBUG
154 1.5 sato int reg;
155 1.7 sato #endif /* VRBCUDEBUG */
156 1.5 sato
157 1.7 sato cpuid = vrbcu_vrip_getcpuid();
158 1.8 sato #if !defined(ONLY_VR4181) && !defined(ONLY_VR4102)
159 1.7 sato if (cpuid != BCUREVID_FIXRID_4181
160 1.12 uch && cpuid <= BCUREVID_RID_4131
161 1.12 uch && cpuid >= BCUREVID_RID_4111) {
162 1.7 sato spdreg = vrbcu_read(sc, BCUCLKSPEED_REG_W);
163 1.5 sato #ifdef VRBCUDEBUG
164 1.7 sato printf("vrbcu: CLKSPEED %x: \n", spdreg);
165 1.7 sato #endif /* VRBCUDEBUG */
166 1.7 sato }
167 1.7 sato #endif
168 1.8 sato #if defined VR4181
169 1.8 sato if (cpuid == BCUREVID_FIXRID_4181){
170 1.8 sato spdreg = vrbcu_read(sc, BCU81CLKSPEED_REG_W);
171 1.8 sato #ifdef VRBCUDEBUG
172 1.8 sato printf("vrbcu: CLKSPEED %x: \n", spdreg);
173 1.8 sato #endif /* VRBCUDEBUG */
174 1.8 sato }
175 1.8 sato #endif
176 1.7 sato
177 1.5 sato cpuclock = vrbcu_vrip_getcpuclock();
178 1.5 sato
179 1.5 sato switch (cpuid) {
180 1.8 sato #if defined VR4181
181 1.7 sato case BCUREVID_FIXRID_4181:
182 1.12 uch switch ((spdreg & BCU81CLKSPEED_DIVTMASK) >>
183 1.12 uch BCU81CLKSPEED_DIVTSHFT){
184 1.8 sato case BCU81CLKSPEED_DIVT1:
185 1.8 sato vtclock = tclock = cpuclock;
186 1.8 sato break;
187 1.8 sato case BCU81CLKSPEED_DIVT2:
188 1.8 sato vtclock = tclock = cpuclock/2;
189 1.8 sato break;
190 1.8 sato case BCU81CLKSPEED_DIVT3:
191 1.8 sato vtclock = tclock = cpuclock/3;
192 1.8 sato break;
193 1.8 sato case BCU81CLKSPEED_DIVT4:
194 1.8 sato vtclock = tclock = cpuclock/4;
195 1.8 sato break;
196 1.8 sato default:
197 1.8 sato vtclock = tclock = 0;
198 1.8 sato }
199 1.8 sato break;
200 1.8 sato #endif /* VR4181 */
201 1.5 sato case BCUREVID_RID_4101:
202 1.5 sato case BCUREVID_RID_4102:
203 1.5 sato vtclock = tclock = cpuclock/2;
204 1.5 sato break;
205 1.7 sato #if defined VR4111
206 1.5 sato case BCUREVID_RID_4111:
207 1.7 sato if ((spdreg&BCUCLKSPEED_DIVT2B) == 0)
208 1.5 sato vtclock = tclock = cpuclock/2;
209 1.7 sato else if ((spdreg&BCUCLKSPEED_DIVT3B) == 0)
210 1.5 sato vtclock = tclock = cpuclock/3;
211 1.7 sato else if ((spdreg&BCUCLKSPEED_DIVT4B) == 0)
212 1.5 sato vtclock = tclock = cpuclock/4;
213 1.5 sato else
214 1.5 sato vtclock = tclock = 0; /* XXX */
215 1.5 sato break;
216 1.7 sato #endif /* VR4111 */
217 1.7 sato #if defined VR4121
218 1.5 sato case BCUREVID_RID_4121:
219 1.12 uch {
220 1.12 uch int vt;
221 1.12 uch tclock = cpuclock / ((spdreg & BCUCLKSPEED_DIVTMASK) >>
222 1.12 uch BCUCLKSPEED_DIVTSHFT);
223 1.12 uch vt = ((spdreg & BCUCLKSPEED_DIVVTMASK) >>
224 1.12 uch BCUCLKSPEED_DIVVTSHFT);
225 1.12 uch if (vt == 0)
226 1.12 uch vtclock = 0; /* XXX */
227 1.12 uch else if (vt < 0x9)
228 1.12 uch vtclock = cpuclock / vt;
229 1.12 uch else
230 1.12 uch vtclock = cpuclock / ((vt - 8)*2+1) * 2;
231 1.12 uch }
232 1.12 uch break;
233 1.7 sato #endif /* VR4121 */
234 1.11 sato #if defined VR4122 || defined VR4131
235 1.9 enami case BCUREVID_RID_4122:
236 1.11 sato case BCUREVID_RID_4131:
237 1.12 uch {
238 1.12 uch int vtdiv;
239 1.9 enami
240 1.12 uch vtdiv = ((spdreg & BCUCLKSPEED_VTDIVMODE) >>
241 1.12 uch BCUCLKSPEED_VTDIVSHFT);
242 1.12 uch if (vtdiv == 0 || vtdiv > BCUCLKSPEED_VTDIV6)
243 1.12 uch vtclock = 0; /* XXX */
244 1.12 uch else
245 1.12 uch vtclock = cpuclock / vtdiv;
246 1.12 uch tclock = vtclock /
247 1.12 uch (((spdreg & BCUCLKSPEED_TDIVMODE) >>
248 1.12 uch BCUCLKSPEED_TDIVSHFT) ? 4 : 2);
249 1.12 uch }
250 1.12 uch break;
251 1.11 sato #endif /* VR4122 || VR4131 */
252 1.5 sato default:
253 1.5 sato break;
254 1.5 sato }
255 1.7 sato if (tclock)
256 1.25 wiz printf("%s: CPU %d.%03dMHz, bus %d.%03dMHz, ram %d.%03dMHz\n",
257 1.12 uch sc->sc_dev.dv_xname,
258 1.12 uch cpuclock/1000000, (cpuclock%1000000)/1000,
259 1.12 uch tclock/1000000, (tclock%1000000)/1000,
260 1.12 uch vtclock/1000000, (vtclock%1000000)/1000);
261 1.7 sato else {
262 1.25 wiz printf("%s: CPU %d.%03dMHz\n",
263 1.12 uch sc->sc_dev.dv_xname,
264 1.12 uch cpuclock/1000000, (cpuclock%1000000)/1000);
265 1.12 uch printf("%s: UNKNOWN BUS CLOCK SPEED:"
266 1.12 uch " CPU is UNKNOWN or NOT CONFIGURED\n",
267 1.12 uch sc->sc_dev.dv_xname);
268 1.7 sato }
269 1.5 sato #ifdef VRBCUDEBUG
270 1.7 sato reg = vrbcu_read(sc, BCUCNT1_REG_W);
271 1.7 sato printf("vrbcu: CNT1 %x: ", reg);
272 1.15 uch dbg_bit_print(reg);
273 1.7 sato #if !defined(ONLY_VR4181)
274 1.7 sato if (cpuid != BCUREVID_FIXRID_4181
275 1.12 uch && cpuid <= BCUREVID_RID_4121
276 1.12 uch && cpuid >= BCUREVID_RID_4102) {
277 1.7 sato reg = vrbcu_read(sc, BCUCNT2_REG_W);
278 1.7 sato printf("vrbcu: CNT2 %x: ", reg);
279 1.15 uch dbg_bit_print(reg);
280 1.7 sato }
281 1.7 sato #endif /* !defined ONLY_VR4181 */
282 1.11 sato #if !defined(ONLY_VR4181) || !defined(ONLY_VR4122_4131)
283 1.7 sato if (cpuid != BCUREVID_FIXRID_4181
284 1.12 uch && cpuid <= BCUREVID_RID_4121
285 1.12 uch && cpuid >= BCUREVID_RID_4102) {
286 1.7 sato reg = vrbcu_read(sc, BCUSPEED_REG_W);
287 1.7 sato printf("vrbcu: SPEED %x: ", reg);
288 1.15 uch dbg_bit_print(reg);
289 1.7 sato reg = vrbcu_read(sc, BCUERRST_REG_W);
290 1.7 sato printf("vrbcu: ERRST %x: ", reg);
291 1.15 uch dbg_bit_print(reg);
292 1.7 sato reg = vrbcu_read(sc, BCURFCNT_REG_W);
293 1.7 sato printf("vrbcu: RFCNT %x\n", reg);
294 1.7 sato reg = vrbcu_read(sc, BCUREFCOUNT_REG_W);
295 1.7 sato printf("vrbcu: RFCOUNT %x\n", reg);
296 1.7 sato }
297 1.11 sato #endif /* !defined(ONLY_VR4181) || !defined(ONLY_VR4122_4131) */
298 1.7 sato #if !defined(ONLY_VR4181)
299 1.7 sato if (cpuid != BCUREVID_FIXRID_4181
300 1.12 uch && cpuid <= BCUREVID_RID_4131
301 1.12 uch && cpuid >= BCUREVID_RID_4111)
302 1.7 sato {
303 1.5 sato reg = vrbcu_read(sc, BCUCNT3_REG_W);
304 1.5 sato printf("vrbcu: CNT3 %x: ", reg);
305 1.15 uch dbg_bit_print(reg);
306 1.5 sato }
307 1.7 sato #endif /* !defined ONLY_VR4181 */
308 1.5 sato #endif /* VRBCUDEBUG */
309 1.5 sato
310 1.1 takemura }
311 1.1 takemura
312 1.26 he static const char *cpuname[] = {
313 1.7 sato "VR4101", /* 0 */
314 1.7 sato "VR4102", /* 1 */
315 1.7 sato "VR4111", /* 2 */
316 1.7 sato "VR4121", /* 3 */
317 1.7 sato "VR4122", /* 4 */
318 1.11 sato "VR4131", /* 5 */
319 1.7 sato "UNKNOWN",
320 1.7 sato "UNKNOWN",
321 1.1 takemura "UNKNOWN",
322 1.1 takemura "UNKNOWN",
323 1.1 takemura "UNKNOWN",
324 1.7 sato "UNKNOWN",
325 1.7 sato "UNKNOWN",
326 1.7 sato "UNKNOWN",
327 1.7 sato "UNKNOWN",
328 1.7 sato "UNKNOWN",
329 1.7 sato "VR4181", /* 0x10 + 0 */
330 1.7 sato };
331 1.1 takemura
332 1.2 sato int
333 1.2 sato vrbcu_vrip_getcpuid(void)
334 1.2 sato {
335 1.2 sato volatile u_int16_t *revreg;
336 1.2 sato
337 1.2 sato if (vr_cpuid != -1)
338 1.12 uch return (vr_cpuid);
339 1.2 sato
340 1.2 sato if (vr_cpuid == -1) {
341 1.16 takemura if (vrbcu_addr() == VR4181_BCU_ADDR)
342 1.12 uch revreg = (u_int16_t *)MIPS_PHYS_TO_KSEG1
343 1.16 takemura ((vrbcu_addr() + BCU81REVID_REG_W));
344 1.8 sato else
345 1.12 uch revreg = (u_int16_t *)MIPS_PHYS_TO_KSEG1
346 1.16 takemura ((vrbcu_addr() + BCUREVID_REG_W));
347 1.2 sato
348 1.2 sato vr_cpuid = *revreg;
349 1.2 sato vr_cpuid = (vr_cpuid&BCUREVID_RIDMASK)>>BCUREVID_RIDSHFT;
350 1.16 takemura if (vrbcu_addr() == VR4181_BCU_ADDR
351 1.8 sato && vr_cpuid == BCUREVID_RID_4181) /* conflict vr4101 */
352 1.7 sato vr_cpuid = BCUREVID_FIXRID_4181;
353 1.2 sato }
354 1.12 uch return (vr_cpuid);
355 1.2 sato }
356 1.2 sato
357 1.26 he const char *
358 1.1 takemura vrbcu_vrip_getcpuname(void)
359 1.1 takemura {
360 1.2 sato int cpuid;
361 1.1 takemura
362 1.2 sato if (vr_cpuname != NULL)
363 1.12 uch return (vr_cpuname);
364 1.1 takemura
365 1.2 sato cpuid = vrbcu_vrip_getcpuid();
366 1.2 sato vr_cpuname = cpuname[cpuid];
367 1.12 uch
368 1.12 uch return (vr_cpuname);
369 1.1 takemura }
370 1.1 takemura
371 1.2 sato
372 1.1 takemura int
373 1.1 takemura vrbcu_vrip_getcpumajor(void)
374 1.1 takemura {
375 1.1 takemura volatile u_int16_t *revreg;
376 1.2 sato
377 1.2 sato if (vr_major != -1)
378 1.12 uch return (vr_major);
379 1.1 takemura
380 1.12 uch revreg = (u_int16_t *)MIPS_PHYS_TO_KSEG1
381 1.16 takemura ((vrbcu_addr() + BCUREVID_REG_W));
382 1.1 takemura
383 1.2 sato vr_major = *revreg;
384 1.2 sato vr_major = (vr_major&BCUREVID_MJREVMASK)>>BCUREVID_MJREVSHFT;
385 1.12 uch
386 1.12 uch return (vr_major);
387 1.1 takemura }
388 1.1 takemura
389 1.1 takemura int
390 1.1 takemura vrbcu_vrip_getcpuminor(void)
391 1.1 takemura {
392 1.1 takemura volatile u_int16_t *revreg;
393 1.2 sato
394 1.2 sato if (vr_minor != -1)
395 1.12 uch return (vr_minor);
396 1.1 takemura
397 1.12 uch revreg = (u_int16_t *)MIPS_PHYS_TO_KSEG1
398 1.16 takemura ((vrbcu_addr() + BCUREVID_REG_W));
399 1.1 takemura
400 1.2 sato vr_minor = *revreg;
401 1.2 sato vr_minor = (vr_minor&BCUREVID_MNREVMASK)>>BCUREVID_MNREVSHFT;
402 1.12 uch
403 1.12 uch return (vr_minor);
404 1.1 takemura }
405 1.4 shin
406 1.4 shin #define CLKX 18432000 /* CLKX1,CLKX2: 18.432MHz */
407 1.4 shin #define MHZ 1000000
408 1.4 shin
409 1.4 shin int
410 1.4 shin vrbcu_vrip_getcpuclock(void)
411 1.4 shin {
412 1.24 jmc u_int16_t clksp = 0;
413 1.4 shin int cpuid, cpuclock;
414 1.4 shin
415 1.4 shin cpuid = vrbcu_vrip_getcpuid();
416 1.7 sato if (cpuid != BCUREVID_FIXRID_4181 && cpuid >= BCUREVID_RID_4111) {
417 1.12 uch clksp = *(u_int16_t *)MIPS_PHYS_TO_KSEG1
418 1.16 takemura ((vrbcu_addr() + BCUCLKSPEED_REG_W)) &
419 1.12 uch BCUCLKSPEED_CLKSPMASK;
420 1.8 sato } else if (cpuid == BCUREVID_FIXRID_4181) {
421 1.12 uch clksp = *(u_int16_t *)MIPS_PHYS_TO_KSEG1
422 1.16 takemura ((vrbcu_addr() + BCU81CLKSPEED_REG_W)) &
423 1.12 uch BCUCLKSPEED_CLKSPMASK;
424 1.7 sato }
425 1.4 shin
426 1.4 shin switch (cpuid) {
427 1.7 sato case BCUREVID_FIXRID_4181:
428 1.8 sato cpuclock = CLKX / clksp * 64;
429 1.7 sato /* branch delay is 1 clock; 2 clock/loop */
430 1.7 sato cpuspeed = (cpuclock / 2 + MHZ / 2) / MHZ;
431 1.7 sato break;
432 1.4 shin case BCUREVID_RID_4101:
433 1.4 shin /* assume 33MHz */
434 1.4 shin cpuclock = 33000000;
435 1.4 shin /* branch delay is 1 clock; 2 clock/loop */
436 1.4 shin cpuspeed = (cpuclock / 2 + MHZ / 2) / MHZ;
437 1.4 shin break;
438 1.4 shin case BCUREVID_RID_4102:
439 1.4 shin cpuclock = CLKX / clksp * 32;
440 1.4 shin /* branch delay is 1 clock; 2 clock/loop */
441 1.4 shin cpuspeed = (cpuclock / 2 + MHZ / 2) / MHZ;
442 1.4 shin break;
443 1.4 shin case BCUREVID_RID_4111:
444 1.4 shin cpuclock = CLKX / clksp * 64;
445 1.4 shin /* branch delay is 1 clock; 2 clock/loop */
446 1.4 shin cpuspeed = (cpuclock / 2 + MHZ / 2) / MHZ;
447 1.4 shin break;
448 1.4 shin case BCUREVID_RID_4121:
449 1.4 shin cpuclock = CLKX / clksp * 64;
450 1.9 enami /* branch delay is 2 clock; 3 clock/loop */
451 1.9 enami cpuspeed = (cpuclock / 3 + MHZ / 2) / MHZ;
452 1.9 enami break;
453 1.9 enami case BCUREVID_RID_4122:
454 1.11 sato cpuclock = CLKX / clksp * 98;
455 1.11 sato /* branch delay is 2 clock; 3 clock/loop */
456 1.11 sato cpuspeed = (cpuclock / 3 + MHZ / 2) / MHZ;
457 1.11 sato break;
458 1.11 sato case BCUREVID_RID_4131:
459 1.9 enami cpuclock = CLKX / clksp * 98;
460 1.4 shin /* branch delay is 2 clock; 3 clock/loop */
461 1.4 shin cpuspeed = (cpuclock / 3 + MHZ / 2) / MHZ;
462 1.4 shin break;
463 1.4 shin default:
464 1.17 provos panic("unknown CPU type %d", cpuid);
465 1.4 shin break;
466 1.4 shin }
467 1.12 uch
468 1.12 uch return (cpuclock);
469 1.4 shin }
470