cpu_subr.c revision 1.57 1 1.57 macallan /* $NetBSD: cpu_subr.c,v 1.57 2010/10/28 13:58:03 macallan Exp $ */
2 1.1 matt
3 1.1 matt /*-
4 1.1 matt * Copyright (c) 2001 Matt Thomas.
5 1.1 matt * Copyright (c) 2001 Tsubai Masanari.
6 1.1 matt * Copyright (c) 1998, 1999, 2001 Internet Research Institute, Inc.
7 1.1 matt * All rights reserved.
8 1.1 matt *
9 1.1 matt * Redistribution and use in source and binary forms, with or without
10 1.1 matt * modification, are permitted provided that the following conditions
11 1.1 matt * are met:
12 1.1 matt * 1. Redistributions of source code must retain the above copyright
13 1.1 matt * notice, this list of conditions and the following disclaimer.
14 1.1 matt * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 matt * notice, this list of conditions and the following disclaimer in the
16 1.1 matt * documentation and/or other materials provided with the distribution.
17 1.1 matt * 3. All advertising materials mentioning features or use of this software
18 1.1 matt * must display the following acknowledgement:
19 1.1 matt * This product includes software developed by
20 1.1 matt * Internet Research Institute, Inc.
21 1.1 matt * 4. The name of the author may not be used to endorse or promote products
22 1.1 matt * derived from this software without specific prior written permission.
23 1.1 matt *
24 1.1 matt * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
25 1.1 matt * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
26 1.1 matt * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
27 1.1 matt * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
28 1.1 matt * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
29 1.1 matt * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
30 1.1 matt * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
31 1.1 matt * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
32 1.1 matt * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
33 1.1 matt * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
34 1.1 matt */
35 1.9 lukem
36 1.9 lukem #include <sys/cdefs.h>
37 1.57 macallan __KERNEL_RCSID(0, "$NetBSD: cpu_subr.c,v 1.57 2010/10/28 13:58:03 macallan Exp $");
38 1.1 matt
39 1.1 matt #include "opt_ppcparam.h"
40 1.1 matt #include "opt_multiprocessor.h"
41 1.1 matt #include "opt_altivec.h"
42 1.1 matt #include "sysmon_envsys.h"
43 1.1 matt
44 1.1 matt #include <sys/param.h>
45 1.1 matt #include <sys/systm.h>
46 1.1 matt #include <sys/device.h>
47 1.33 garbled #include <sys/types.h>
48 1.33 garbled #include <sys/lwp.h>
49 1.12 matt #include <sys/malloc.h>
50 1.56 phx #include <sys/xcall.h>
51 1.1 matt
52 1.1 matt #include <uvm/uvm_extern.h>
53 1.1 matt
54 1.55 matt #include <powerpc/spr.h>
55 1.1 matt #include <powerpc/oea/hid.h>
56 1.1 matt #include <powerpc/oea/hid_601.h>
57 1.55 matt #include <powerpc/oea/spr.h>
58 1.42 garbled #include <powerpc/oea/cpufeat.h>
59 1.1 matt
60 1.1 matt #include <dev/sysmon/sysmonvar.h>
61 1.1 matt
62 1.7 matt static void cpu_enable_l2cr(register_t);
63 1.7 matt static void cpu_enable_l3cr(register_t);
64 1.1 matt static void cpu_config_l2cr(int);
65 1.7 matt static void cpu_config_l3cr(int);
66 1.23 briggs static void cpu_probe_speed(struct cpu_info *);
67 1.20 matt static void cpu_idlespin(void);
68 1.56 phx static void cpu_set_dfs_xcall(void *, void *);
69 1.1 matt #if NSYSMON_ENVSYS > 0
70 1.1 matt static void cpu_tau_setup(struct cpu_info *);
71 1.34 xtraeme static void cpu_tau_refresh(struct sysmon_envsys *, envsys_data_t *);
72 1.1 matt #endif
73 1.1 matt
74 1.1 matt int cpu;
75 1.1 matt int ncpus;
76 1.1 matt
77 1.7 matt struct fmttab {
78 1.7 matt register_t fmt_mask;
79 1.7 matt register_t fmt_value;
80 1.7 matt const char *fmt_string;
81 1.7 matt };
82 1.7 matt
83 1.50 macallan /*
84 1.50 macallan * This should be one per CPU but since we only support it on 750 variants it
85 1.50 macallan * doesn't realy matter since none of them supports SMP
86 1.50 macallan */
87 1.50 macallan envsys_data_t sensor;
88 1.50 macallan
89 1.7 matt static const struct fmttab cpu_7450_l2cr_formats[] = {
90 1.7 matt { L2CR_L2E, 0, " disabled" },
91 1.7 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2DO, " data-only" },
92 1.7 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2IO, " instruction-only" },
93 1.7 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2DO|L2CR_L2IO, " locked" },
94 1.7 matt { L2CR_L2E, ~0, " 256KB L2 cache" },
95 1.36 garbled { L2CR_L2PE, 0, " no parity" },
96 1.36 garbled { L2CR_L2PE, ~0, " parity enabled" },
97 1.28 garbled { 0, 0, NULL }
98 1.7 matt };
99 1.7 matt
100 1.22 matt static const struct fmttab cpu_7448_l2cr_formats[] = {
101 1.22 matt { L2CR_L2E, 0, " disabled" },
102 1.22 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2DO, " data-only" },
103 1.22 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2IO, " instruction-only" },
104 1.22 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2DO|L2CR_L2IO, " locked" },
105 1.22 matt { L2CR_L2E, ~0, " 1MB L2 cache" },
106 1.36 garbled { L2CR_L2PE, 0, " no parity" },
107 1.36 garbled { L2CR_L2PE, ~0, " parity enabled" },
108 1.28 garbled { 0, 0, NULL }
109 1.22 matt };
110 1.22 matt
111 1.11 matt static const struct fmttab cpu_7457_l2cr_formats[] = {
112 1.11 matt { L2CR_L2E, 0, " disabled" },
113 1.11 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2DO, " data-only" },
114 1.11 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2IO, " instruction-only" },
115 1.11 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2DO|L2CR_L2IO, " locked" },
116 1.11 matt { L2CR_L2E, ~0, " 512KB L2 cache" },
117 1.36 garbled { L2CR_L2PE, 0, " no parity" },
118 1.36 garbled { L2CR_L2PE, ~0, " parity enabled" },
119 1.28 garbled { 0, 0, NULL }
120 1.11 matt };
121 1.11 matt
122 1.7 matt static const struct fmttab cpu_7450_l3cr_formats[] = {
123 1.7 matt { L3CR_L3DO|L3CR_L3IO, L3CR_L3DO, " data-only" },
124 1.7 matt { L3CR_L3DO|L3CR_L3IO, L3CR_L3IO, " instruction-only" },
125 1.7 matt { L3CR_L3DO|L3CR_L3IO, L3CR_L3DO|L3CR_L3IO, " locked" },
126 1.7 matt { L3CR_L3SIZ, L3SIZ_2M, " 2MB" },
127 1.7 matt { L3CR_L3SIZ, L3SIZ_1M, " 1MB" },
128 1.7 matt { L3CR_L3PE|L3CR_L3APE, L3CR_L3PE|L3CR_L3APE, " parity" },
129 1.7 matt { L3CR_L3PE|L3CR_L3APE, L3CR_L3PE, " data-parity" },
130 1.7 matt { L3CR_L3PE|L3CR_L3APE, L3CR_L3APE, " address-parity" },
131 1.7 matt { L3CR_L3PE|L3CR_L3APE, 0, " no-parity" },
132 1.7 matt { L3CR_L3SIZ, ~0, " L3 cache" },
133 1.7 matt { L3CR_L3RT, L3RT_MSUG2_DDR, " (DDR SRAM)" },
134 1.7 matt { L3CR_L3RT, L3RT_PIPELINE_LATE, " (LW SRAM)" },
135 1.7 matt { L3CR_L3RT, L3RT_PB2_SRAM, " (PB2 SRAM)" },
136 1.7 matt { L3CR_L3CLK, ~0, " at" },
137 1.7 matt { L3CR_L3CLK, L3CLK_20, " 2:1" },
138 1.7 matt { L3CR_L3CLK, L3CLK_25, " 2.5:1" },
139 1.7 matt { L3CR_L3CLK, L3CLK_30, " 3:1" },
140 1.7 matt { L3CR_L3CLK, L3CLK_35, " 3.5:1" },
141 1.7 matt { L3CR_L3CLK, L3CLK_40, " 4:1" },
142 1.7 matt { L3CR_L3CLK, L3CLK_50, " 5:1" },
143 1.7 matt { L3CR_L3CLK, L3CLK_60, " 6:1" },
144 1.7 matt { L3CR_L3CLK, ~0, " ratio" },
145 1.28 garbled { 0, 0, NULL },
146 1.7 matt };
147 1.7 matt
148 1.7 matt static const struct fmttab cpu_ibm750_l2cr_formats[] = {
149 1.7 matt { L2CR_L2E, 0, " disabled" },
150 1.7 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2DO, " data-only" },
151 1.7 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2IO, " instruction-only" },
152 1.7 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2DO|L2CR_L2IO, " locked" },
153 1.7 matt { 0, ~0, " 512KB" },
154 1.7 matt { L2CR_L2WT, L2CR_L2WT, " WT" },
155 1.7 matt { L2CR_L2WT, 0, " WB" },
156 1.7 matt { L2CR_L2PE, L2CR_L2PE, " with ECC" },
157 1.7 matt { 0, ~0, " L2 cache" },
158 1.28 garbled { 0, 0, NULL }
159 1.7 matt };
160 1.7 matt
161 1.7 matt static const struct fmttab cpu_l2cr_formats[] = {
162 1.7 matt { L2CR_L2E, 0, " disabled" },
163 1.7 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2DO, " data-only" },
164 1.7 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2IO, " instruction-only" },
165 1.7 matt { L2CR_L2DO|L2CR_L2IO, L2CR_L2DO|L2CR_L2IO, " locked" },
166 1.7 matt { L2CR_L2PE, L2CR_L2PE, " parity" },
167 1.7 matt { L2CR_L2PE, 0, " no-parity" },
168 1.7 matt { L2CR_L2SIZ, L2SIZ_2M, " 2MB" },
169 1.7 matt { L2CR_L2SIZ, L2SIZ_1M, " 1MB" },
170 1.7 matt { L2CR_L2SIZ, L2SIZ_512K, " 512KB" },
171 1.7 matt { L2CR_L2SIZ, L2SIZ_256K, " 256KB" },
172 1.7 matt { L2CR_L2WT, L2CR_L2WT, " WT" },
173 1.7 matt { L2CR_L2WT, 0, " WB" },
174 1.7 matt { L2CR_L2E, ~0, " L2 cache" },
175 1.7 matt { L2CR_L2RAM, L2RAM_FLOWTHRU_BURST, " (FB SRAM)" },
176 1.7 matt { L2CR_L2RAM, L2RAM_PIPELINE_LATE, " (LW SRAM)" },
177 1.7 matt { L2CR_L2RAM, L2RAM_PIPELINE_BURST, " (PB SRAM)" },
178 1.7 matt { L2CR_L2CLK, ~0, " at" },
179 1.7 matt { L2CR_L2CLK, L2CLK_10, " 1:1" },
180 1.7 matt { L2CR_L2CLK, L2CLK_15, " 1.5:1" },
181 1.7 matt { L2CR_L2CLK, L2CLK_20, " 2:1" },
182 1.7 matt { L2CR_L2CLK, L2CLK_25, " 2.5:1" },
183 1.7 matt { L2CR_L2CLK, L2CLK_30, " 3:1" },
184 1.7 matt { L2CR_L2CLK, L2CLK_35, " 3.5:1" },
185 1.7 matt { L2CR_L2CLK, L2CLK_40, " 4:1" },
186 1.7 matt { L2CR_L2CLK, ~0, " ratio" },
187 1.28 garbled { 0, 0, NULL }
188 1.7 matt };
189 1.7 matt
190 1.7 matt static void cpu_fmttab_print(const struct fmttab *, register_t);
191 1.7 matt
192 1.7 matt struct cputab {
193 1.7 matt const char name[8];
194 1.7 matt uint16_t version;
195 1.7 matt uint16_t revfmt;
196 1.7 matt };
197 1.7 matt #define REVFMT_MAJMIN 1 /* %u.%u */
198 1.7 matt #define REVFMT_HEX 2 /* 0x%04x */
199 1.7 matt #define REVFMT_DEC 3 /* %u */
200 1.7 matt static const struct cputab models[] = {
201 1.7 matt { "601", MPC601, REVFMT_DEC },
202 1.7 matt { "602", MPC602, REVFMT_DEC },
203 1.7 matt { "603", MPC603, REVFMT_MAJMIN },
204 1.7 matt { "603e", MPC603e, REVFMT_MAJMIN },
205 1.7 matt { "603ev", MPC603ev, REVFMT_MAJMIN },
206 1.31 aymeric { "G2", MPCG2, REVFMT_MAJMIN },
207 1.7 matt { "604", MPC604, REVFMT_MAJMIN },
208 1.15 briggs { "604e", MPC604e, REVFMT_MAJMIN },
209 1.7 matt { "604ev", MPC604ev, REVFMT_MAJMIN },
210 1.7 matt { "620", MPC620, REVFMT_HEX },
211 1.7 matt { "750", MPC750, REVFMT_MAJMIN },
212 1.7 matt { "750FX", IBM750FX, REVFMT_MAJMIN },
213 1.7 matt { "7400", MPC7400, REVFMT_MAJMIN },
214 1.7 matt { "7410", MPC7410, REVFMT_MAJMIN },
215 1.7 matt { "7450", MPC7450, REVFMT_MAJMIN },
216 1.7 matt { "7455", MPC7455, REVFMT_MAJMIN },
217 1.11 matt { "7457", MPC7457, REVFMT_MAJMIN },
218 1.21 matt { "7447A", MPC7447A, REVFMT_MAJMIN },
219 1.22 matt { "7448", MPC7448, REVFMT_MAJMIN },
220 1.7 matt { "8240", MPC8240, REVFMT_MAJMIN },
221 1.30 nisimura { "8245", MPC8245, REVFMT_MAJMIN },
222 1.27 sanjayl { "970", IBM970, REVFMT_MAJMIN },
223 1.27 sanjayl { "970FX", IBM970FX, REVFMT_MAJMIN },
224 1.47 chs { "970MP", IBM970MP, REVFMT_MAJMIN },
225 1.41 garbled { "POWER3II", IBMPOWER3II, REVFMT_MAJMIN },
226 1.7 matt { "", 0, REVFMT_HEX }
227 1.7 matt };
228 1.7 matt
229 1.1 matt #ifdef MULTIPROCESSOR
230 1.33 garbled struct cpu_info cpu_info[CPU_MAXNUM] = { { .ci_curlwp = &lwp0, }, };
231 1.33 garbled volatile struct cpu_hatch_data *cpu_hatch_data;
232 1.33 garbled volatile int cpu_hatch_stack;
233 1.33 garbled extern int ticks_per_intr;
234 1.33 garbled #include <powerpc/oea/bat.h>
235 1.33 garbled #include <arch/powerpc/pic/picvar.h>
236 1.33 garbled #include <arch/powerpc/pic/ipivar.h>
237 1.33 garbled extern struct bat battable[];
238 1.1 matt #else
239 1.33 garbled struct cpu_info cpu_info[1] = { { .ci_curlwp = &lwp0, }, };
240 1.33 garbled #endif /*MULTIPROCESSOR*/
241 1.1 matt
242 1.1 matt int cpu_altivec;
243 1.14 kleink int cpu_psluserset, cpu_pslusermod;
244 1.1 matt char cpu_model[80];
245 1.1 matt
246 1.42 garbled /* This is to be called from locore.S, and nowhere else. */
247 1.42 garbled
248 1.42 garbled void
249 1.42 garbled cpu_model_init(void)
250 1.42 garbled {
251 1.42 garbled u_int pvr, vers;
252 1.42 garbled
253 1.42 garbled pvr = mfpvr();
254 1.42 garbled vers = pvr >> 16;
255 1.42 garbled
256 1.42 garbled oeacpufeat = 0;
257 1.42 garbled
258 1.42 garbled if ((vers >= IBMRS64II && vers <= IBM970GX) || vers == MPC620 ||
259 1.42 garbled vers == IBMCELL || vers == IBMPOWER6P5)
260 1.42 garbled oeacpufeat |= OEACPU_64 | OEACPU_64_BRIDGE | OEACPU_NOBAT;
261 1.42 garbled
262 1.45 matt else if (vers == MPC601)
263 1.42 garbled oeacpufeat |= OEACPU_601;
264 1.45 matt
265 1.45 matt else if (MPC745X_P(vers) && vers != MPC7450)
266 1.45 matt oeacpufeat |= OEACPU_XBSEN | OEACPU_HIGHBAT | OEACPU_HIGHSPRG;
267 1.42 garbled }
268 1.42 garbled
269 1.1 matt void
270 1.7 matt cpu_fmttab_print(const struct fmttab *fmt, register_t data)
271 1.7 matt {
272 1.7 matt for (; fmt->fmt_mask != 0 || fmt->fmt_value != 0; fmt++) {
273 1.7 matt if ((~fmt->fmt_mask & fmt->fmt_value) != 0 ||
274 1.7 matt (data & fmt->fmt_mask) == fmt->fmt_value)
275 1.7 matt aprint_normal("%s", fmt->fmt_string);
276 1.7 matt }
277 1.7 matt }
278 1.7 matt
279 1.7 matt void
280 1.20 matt cpu_idlespin(void)
281 1.20 matt {
282 1.20 matt register_t msr;
283 1.20 matt
284 1.20 matt if (powersave <= 0)
285 1.20 matt return;
286 1.20 matt
287 1.26 perry __asm volatile(
288 1.20 matt "sync;"
289 1.20 matt "mfmsr %0;"
290 1.20 matt "oris %0,%0,%1@h;" /* enter power saving mode */
291 1.20 matt "mtmsr %0;"
292 1.20 matt "isync;"
293 1.20 matt : "=r"(msr)
294 1.20 matt : "J"(PSL_POW));
295 1.20 matt }
296 1.20 matt
297 1.20 matt void
298 1.1 matt cpu_probe_cache(void)
299 1.1 matt {
300 1.1 matt u_int assoc, pvr, vers;
301 1.1 matt
302 1.1 matt pvr = mfpvr();
303 1.1 matt vers = pvr >> 16;
304 1.1 matt
305 1.27 sanjayl
306 1.27 sanjayl /* Presently common across almost all implementations. */
307 1.43 garbled curcpu()->ci_ci.dcache_line_size = 32;
308 1.43 garbled curcpu()->ci_ci.icache_line_size = 32;
309 1.27 sanjayl
310 1.27 sanjayl
311 1.1 matt switch (vers) {
312 1.1 matt #define K *1024
313 1.1 matt case IBM750FX:
314 1.1 matt case MPC601:
315 1.1 matt case MPC750:
316 1.48 macallan case MPC7400:
317 1.22 matt case MPC7447A:
318 1.22 matt case MPC7448:
319 1.1 matt case MPC7450:
320 1.1 matt case MPC7455:
321 1.11 matt case MPC7457:
322 1.1 matt curcpu()->ci_ci.dcache_size = 32 K;
323 1.1 matt curcpu()->ci_ci.icache_size = 32 K;
324 1.1 matt assoc = 8;
325 1.1 matt break;
326 1.1 matt case MPC603:
327 1.1 matt curcpu()->ci_ci.dcache_size = 8 K;
328 1.1 matt curcpu()->ci_ci.icache_size = 8 K;
329 1.1 matt assoc = 2;
330 1.1 matt break;
331 1.1 matt case MPC603e:
332 1.1 matt case MPC603ev:
333 1.1 matt case MPC604:
334 1.1 matt case MPC8240:
335 1.1 matt case MPC8245:
336 1.31 aymeric case MPCG2:
337 1.1 matt curcpu()->ci_ci.dcache_size = 16 K;
338 1.1 matt curcpu()->ci_ci.icache_size = 16 K;
339 1.1 matt assoc = 4;
340 1.1 matt break;
341 1.15 briggs case MPC604e:
342 1.1 matt case MPC604ev:
343 1.1 matt curcpu()->ci_ci.dcache_size = 32 K;
344 1.1 matt curcpu()->ci_ci.icache_size = 32 K;
345 1.1 matt assoc = 4;
346 1.1 matt break;
347 1.41 garbled case IBMPOWER3II:
348 1.41 garbled curcpu()->ci_ci.dcache_size = 64 K;
349 1.41 garbled curcpu()->ci_ci.icache_size = 32 K;
350 1.41 garbled curcpu()->ci_ci.dcache_line_size = 128;
351 1.41 garbled curcpu()->ci_ci.icache_line_size = 128;
352 1.41 garbled assoc = 128; /* not a typo */
353 1.41 garbled break;
354 1.27 sanjayl case IBM970:
355 1.27 sanjayl case IBM970FX:
356 1.47 chs case IBM970MP:
357 1.27 sanjayl curcpu()->ci_ci.dcache_size = 32 K;
358 1.27 sanjayl curcpu()->ci_ci.icache_size = 64 K;
359 1.27 sanjayl curcpu()->ci_ci.dcache_line_size = 128;
360 1.27 sanjayl curcpu()->ci_ci.icache_line_size = 128;
361 1.27 sanjayl assoc = 2;
362 1.27 sanjayl break;
363 1.27 sanjayl
364 1.1 matt default:
365 1.6 thorpej curcpu()->ci_ci.dcache_size = PAGE_SIZE;
366 1.6 thorpej curcpu()->ci_ci.icache_size = PAGE_SIZE;
367 1.1 matt assoc = 1;
368 1.1 matt #undef K
369 1.1 matt }
370 1.1 matt
371 1.1 matt /*
372 1.1 matt * Possibly recolor.
373 1.1 matt */
374 1.1 matt uvm_page_recolor(atop(curcpu()->ci_ci.dcache_size / assoc));
375 1.1 matt }
376 1.1 matt
377 1.1 matt struct cpu_info *
378 1.1 matt cpu_attach_common(struct device *self, int id)
379 1.1 matt {
380 1.1 matt struct cpu_info *ci;
381 1.1 matt u_int pvr, vers;
382 1.1 matt
383 1.1 matt ci = &cpu_info[id];
384 1.1 matt #ifndef MULTIPROCESSOR
385 1.1 matt /*
386 1.1 matt * If this isn't the primary CPU, print an error message
387 1.1 matt * and just bail out.
388 1.1 matt */
389 1.1 matt if (id != 0) {
390 1.3 matt aprint_normal(": ID %d\n", id);
391 1.3 matt aprint_normal("%s: processor off-line; multiprocessor support "
392 1.1 matt "not present in kernel\n", self->dv_xname);
393 1.1 matt return (NULL);
394 1.1 matt }
395 1.1 matt #endif
396 1.1 matt
397 1.1 matt ci->ci_cpuid = id;
398 1.1 matt ci->ci_intrdepth = -1;
399 1.1 matt ci->ci_dev = self;
400 1.20 matt ci->ci_idlespin = cpu_idlespin;
401 1.1 matt
402 1.1 matt pvr = mfpvr();
403 1.1 matt vers = (pvr >> 16) & 0xffff;
404 1.1 matt
405 1.1 matt switch (id) {
406 1.1 matt case 0:
407 1.1 matt /* load my cpu_number to PIR */
408 1.1 matt switch (vers) {
409 1.1 matt case MPC601:
410 1.1 matt case MPC604:
411 1.15 briggs case MPC604e:
412 1.1 matt case MPC604ev:
413 1.1 matt case MPC7400:
414 1.1 matt case MPC7410:
415 1.22 matt case MPC7447A:
416 1.22 matt case MPC7448:
417 1.1 matt case MPC7450:
418 1.1 matt case MPC7455:
419 1.11 matt case MPC7457:
420 1.1 matt mtspr(SPR_PIR, id);
421 1.1 matt }
422 1.1 matt cpu_setup(self, ci);
423 1.1 matt break;
424 1.1 matt default:
425 1.1 matt if (id >= CPU_MAXNUM) {
426 1.3 matt aprint_normal(": more than %d cpus?\n", CPU_MAXNUM);
427 1.1 matt panic("cpuattach");
428 1.1 matt }
429 1.1 matt #ifndef MULTIPROCESSOR
430 1.3 matt aprint_normal(" not configured\n");
431 1.1 matt return NULL;
432 1.29 yamt #else
433 1.29 yamt mi_cpu_attach(ci);
434 1.29 yamt break;
435 1.1 matt #endif
436 1.1 matt }
437 1.1 matt return (ci);
438 1.1 matt }
439 1.1 matt
440 1.1 matt void
441 1.52 dsl cpu_setup(struct device *self, struct cpu_info *ci)
442 1.1 matt {
443 1.41 garbled u_int hid0, hid0_save, pvr, vers;
444 1.24 he const char *bitmask;
445 1.24 he char hidbuf[128];
446 1.1 matt char model[80];
447 1.1 matt
448 1.1 matt pvr = mfpvr();
449 1.1 matt vers = (pvr >> 16) & 0xffff;
450 1.1 matt
451 1.1 matt cpu_identify(model, sizeof(model));
452 1.3 matt aprint_normal(": %s, ID %d%s\n", model, cpu_number(),
453 1.1 matt cpu_number() == 0 ? " (primary)" : "");
454 1.1 matt
455 1.46 garbled /* set the cpu number */
456 1.46 garbled ci->ci_cpuid = cpu_number();
457 1.41 garbled hid0_save = hid0 = mfspr(SPR_HID0);
458 1.27 sanjayl
459 1.1 matt cpu_probe_cache();
460 1.1 matt
461 1.1 matt /*
462 1.1 matt * Configure power-saving mode.
463 1.1 matt */
464 1.1 matt switch (vers) {
465 1.18 briggs case MPC604:
466 1.18 briggs case MPC604e:
467 1.18 briggs case MPC604ev:
468 1.18 briggs /*
469 1.18 briggs * Do not have HID0 support settings, but can support
470 1.18 briggs * MSR[POW] off
471 1.18 briggs */
472 1.18 briggs powersave = 1;
473 1.18 briggs break;
474 1.18 briggs
475 1.1 matt case MPC603:
476 1.1 matt case MPC603e:
477 1.1 matt case MPC603ev:
478 1.1 matt case MPC7400:
479 1.1 matt case MPC7410:
480 1.1 matt case MPC8240:
481 1.1 matt case MPC8245:
482 1.31 aymeric case MPCG2:
483 1.1 matt /* Select DOZE mode. */
484 1.1 matt hid0 &= ~(HID0_DOZE | HID0_NAP | HID0_SLEEP);
485 1.1 matt hid0 |= HID0_DOZE | HID0_DPM;
486 1.1 matt powersave = 1;
487 1.1 matt break;
488 1.1 matt
489 1.57 macallan case MPC750:
490 1.57 macallan case IBM750FX:
491 1.57 macallan /* Select NAP mode. */
492 1.57 macallan hid0 &= ~(HID0_DOZE | HID0_NAP | HID0_SLEEP);
493 1.57 macallan hid0 |= HID0_NAP | HID0_DPM;
494 1.57 macallan powersave = 1;
495 1.57 macallan break;
496 1.57 macallan
497 1.22 matt case MPC7447A:
498 1.22 matt case MPC7448:
499 1.11 matt case MPC7457:
500 1.1 matt case MPC7455:
501 1.1 matt case MPC7450:
502 1.5 matt /* Enable the 7450 branch caches */
503 1.5 matt hid0 |= HID0_SGE | HID0_BTIC;
504 1.5 matt hid0 |= HID0_LRSTK | HID0_FOLD | HID0_BHT;
505 1.45 matt /* Enable more and larger BAT registers */
506 1.45 matt if (oeacpufeat & OEACPU_XBSEN)
507 1.45 matt hid0 |= HID0_XBSEN;
508 1.45 matt if (oeacpufeat & OEACPU_HIGHBAT)
509 1.45 matt hid0 |= HID0_HIGH_BAT_EN;
510 1.1 matt /* Disable BTIC on 7450 Rev 2.0 or earlier */
511 1.5 matt if (vers == MPC7450 && (pvr & 0xFFFF) <= 0x0200)
512 1.1 matt hid0 &= ~HID0_BTIC;
513 1.1 matt /* Select NAP mode. */
514 1.45 matt hid0 &= ~HID0_SLEEP;
515 1.45 matt hid0 |= HID0_NAP | HID0_DPM;
516 1.19 chs powersave = 1;
517 1.1 matt break;
518 1.1 matt
519 1.27 sanjayl case IBM970:
520 1.27 sanjayl case IBM970FX:
521 1.47 chs case IBM970MP:
522 1.41 garbled case IBMPOWER3II:
523 1.1 matt default:
524 1.1 matt /* No power-saving mode is available. */ ;
525 1.1 matt }
526 1.1 matt
527 1.1 matt #ifdef NAPMODE
528 1.1 matt switch (vers) {
529 1.1 matt case IBM750FX:
530 1.1 matt case MPC750:
531 1.1 matt case MPC7400:
532 1.1 matt /* Select NAP mode. */
533 1.1 matt hid0 &= ~(HID0_DOZE | HID0_NAP | HID0_SLEEP);
534 1.1 matt hid0 |= HID0_NAP;
535 1.1 matt break;
536 1.1 matt }
537 1.1 matt #endif
538 1.1 matt
539 1.1 matt switch (vers) {
540 1.1 matt case IBM750FX:
541 1.1 matt case MPC750:
542 1.1 matt hid0 &= ~HID0_DBP; /* XXX correct? */
543 1.1 matt hid0 |= HID0_EMCP | HID0_BTIC | HID0_SGE | HID0_BHT;
544 1.1 matt break;
545 1.1 matt
546 1.1 matt case MPC7400:
547 1.1 matt case MPC7410:
548 1.1 matt hid0 &= ~HID0_SPD;
549 1.1 matt hid0 |= HID0_EMCP | HID0_BTIC | HID0_SGE | HID0_BHT;
550 1.1 matt hid0 |= HID0_EIEC;
551 1.1 matt break;
552 1.1 matt }
553 1.1 matt
554 1.41 garbled if (hid0 != hid0_save) {
555 1.41 garbled mtspr(SPR_HID0, hid0);
556 1.41 garbled __asm volatile("sync;isync");
557 1.41 garbled }
558 1.41 garbled
559 1.1 matt
560 1.1 matt switch (vers) {
561 1.1 matt case MPC601:
562 1.1 matt bitmask = HID0_601_BITMASK;
563 1.1 matt break;
564 1.1 matt case MPC7450:
565 1.1 matt case MPC7455:
566 1.11 matt case MPC7457:
567 1.1 matt bitmask = HID0_7450_BITMASK;
568 1.1 matt break;
569 1.27 sanjayl case IBM970:
570 1.27 sanjayl case IBM970FX:
571 1.47 chs case IBM970MP:
572 1.27 sanjayl bitmask = 0;
573 1.27 sanjayl break;
574 1.1 matt default:
575 1.1 matt bitmask = HID0_BITMASK;
576 1.1 matt break;
577 1.1 matt }
578 1.51 christos snprintb(hidbuf, sizeof hidbuf, bitmask, hid0);
579 1.41 garbled aprint_normal("%s: HID0 %s, powersave: %d\n", self->dv_xname, hidbuf,
580 1.41 garbled powersave);
581 1.1 matt
582 1.23 briggs ci->ci_khz = 0;
583 1.23 briggs
584 1.1 matt /*
585 1.1 matt * Display speed and cache configuration.
586 1.1 matt */
587 1.15 briggs switch (vers) {
588 1.15 briggs case MPC604:
589 1.15 briggs case MPC604e:
590 1.15 briggs case MPC604ev:
591 1.15 briggs case MPC750:
592 1.15 briggs case IBM750FX:
593 1.16 briggs case MPC7400:
594 1.15 briggs case MPC7410:
595 1.22 matt case MPC7447A:
596 1.22 matt case MPC7448:
597 1.16 briggs case MPC7450:
598 1.16 briggs case MPC7455:
599 1.16 briggs case MPC7457:
600 1.7 matt aprint_normal("%s: ", self->dv_xname);
601 1.23 briggs cpu_probe_speed(ci);
602 1.23 briggs aprint_normal("%u.%02u MHz",
603 1.23 briggs ci->ci_khz / 1000, (ci->ci_khz / 10) % 100);
604 1.36 garbled switch (vers) {
605 1.37 macallan case MPC7450: /* 7441 does not have L3! */
606 1.37 macallan case MPC7455: /* 7445 does not have L3! */
607 1.37 macallan case MPC7457: /* 7447 does not have L3! */
608 1.37 macallan cpu_config_l3cr(vers);
609 1.38 macallan break;
610 1.36 garbled case IBM750FX:
611 1.36 garbled case MPC750:
612 1.36 garbled case MPC7400:
613 1.36 garbled case MPC7410:
614 1.36 garbled case MPC7447A:
615 1.36 garbled case MPC7448:
616 1.36 garbled cpu_config_l2cr(pvr);
617 1.36 garbled break;
618 1.36 garbled default:
619 1.36 garbled break;
620 1.7 matt }
621 1.7 matt aprint_normal("\n");
622 1.15 briggs break;
623 1.1 matt }
624 1.1 matt
625 1.1 matt #if NSYSMON_ENVSYS > 0
626 1.1 matt /*
627 1.1 matt * Attach MPC750 temperature sensor to the envsys subsystem.
628 1.1 matt * XXX the 74xx series also has this sensor, but it is not
629 1.1 matt * XXX supported by Motorola and may return values that are off by
630 1.1 matt * XXX 35-55 degrees C.
631 1.1 matt */
632 1.1 matt if (vers == MPC750 || vers == IBM750FX)
633 1.1 matt cpu_tau_setup(ci);
634 1.1 matt #endif
635 1.1 matt
636 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_clock, EVCNT_TYPE_INTR,
637 1.1 matt NULL, self->dv_xname, "clock");
638 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_softclock, EVCNT_TYPE_INTR,
639 1.1 matt NULL, self->dv_xname, "soft clock");
640 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_softnet, EVCNT_TYPE_INTR,
641 1.1 matt NULL, self->dv_xname, "soft net");
642 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_softserial, EVCNT_TYPE_INTR,
643 1.1 matt NULL, self->dv_xname, "soft serial");
644 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_traps, EVCNT_TYPE_TRAP,
645 1.1 matt NULL, self->dv_xname, "traps");
646 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_kdsi, EVCNT_TYPE_TRAP,
647 1.1 matt &ci->ci_ev_traps, self->dv_xname, "kernel DSI traps");
648 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_udsi, EVCNT_TYPE_TRAP,
649 1.1 matt &ci->ci_ev_traps, self->dv_xname, "user DSI traps");
650 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_udsi_fatal, EVCNT_TYPE_TRAP,
651 1.1 matt &ci->ci_ev_udsi, self->dv_xname, "user DSI failures");
652 1.10 matt evcnt_attach_dynamic(&ci->ci_ev_kisi, EVCNT_TYPE_TRAP,
653 1.10 matt &ci->ci_ev_traps, self->dv_xname, "kernel ISI traps");
654 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_isi, EVCNT_TYPE_TRAP,
655 1.1 matt &ci->ci_ev_traps, self->dv_xname, "user ISI traps");
656 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_isi_fatal, EVCNT_TYPE_TRAP,
657 1.1 matt &ci->ci_ev_isi, self->dv_xname, "user ISI failures");
658 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_scalls, EVCNT_TYPE_TRAP,
659 1.1 matt &ci->ci_ev_traps, self->dv_xname, "system call traps");
660 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_pgm, EVCNT_TYPE_TRAP,
661 1.1 matt &ci->ci_ev_traps, self->dv_xname, "PGM traps");
662 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_fpu, EVCNT_TYPE_TRAP,
663 1.1 matt &ci->ci_ev_traps, self->dv_xname, "FPU unavailable traps");
664 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_fpusw, EVCNT_TYPE_TRAP,
665 1.1 matt &ci->ci_ev_fpu, self->dv_xname, "FPU context switches");
666 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_ali, EVCNT_TYPE_TRAP,
667 1.1 matt &ci->ci_ev_traps, self->dv_xname, "user alignment traps");
668 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_ali_fatal, EVCNT_TYPE_TRAP,
669 1.1 matt &ci->ci_ev_ali, self->dv_xname, "user alignment traps");
670 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_umchk, EVCNT_TYPE_TRAP,
671 1.1 matt &ci->ci_ev_umchk, self->dv_xname, "user MCHK failures");
672 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_vec, EVCNT_TYPE_TRAP,
673 1.1 matt &ci->ci_ev_traps, self->dv_xname, "AltiVec unavailable");
674 1.1 matt #ifdef ALTIVEC
675 1.1 matt if (cpu_altivec) {
676 1.1 matt evcnt_attach_dynamic(&ci->ci_ev_vecsw, EVCNT_TYPE_TRAP,
677 1.1 matt &ci->ci_ev_vec, self->dv_xname, "AltiVec context switches");
678 1.1 matt }
679 1.1 matt #endif
680 1.33 garbled evcnt_attach_dynamic(&ci->ci_ev_ipi, EVCNT_TYPE_INTR,
681 1.33 garbled NULL, self->dv_xname, "IPIs");
682 1.1 matt }
683 1.1 matt
684 1.36 garbled /*
685 1.36 garbled * According to a document labeled "PVR Register Settings":
686 1.36 garbled ** For integrated microprocessors the PVR register inside the device
687 1.36 garbled ** will identify the version of the microprocessor core. You must also
688 1.36 garbled ** read the Device ID, PCI register 02, to identify the part and the
689 1.36 garbled ** Revision ID, PCI register 08, to identify the revision of the
690 1.36 garbled ** integrated microprocessor.
691 1.36 garbled * This apparently applies to 8240/8245/8241, PVR 00810101 and 80811014
692 1.36 garbled */
693 1.36 garbled
694 1.1 matt void
695 1.1 matt cpu_identify(char *str, size_t len)
696 1.1 matt {
697 1.24 he u_int pvr, major, minor;
698 1.1 matt uint16_t vers, rev, revfmt;
699 1.1 matt const struct cputab *cp;
700 1.1 matt const char *name;
701 1.1 matt size_t n;
702 1.1 matt
703 1.1 matt pvr = mfpvr();
704 1.1 matt vers = pvr >> 16;
705 1.1 matt rev = pvr;
706 1.27 sanjayl
707 1.1 matt switch (vers) {
708 1.1 matt case MPC7410:
709 1.24 he minor = (pvr >> 0) & 0xff;
710 1.24 he major = minor <= 4 ? 1 : 2;
711 1.1 matt break;
712 1.36 garbled case MPCG2: /*XXX see note above */
713 1.36 garbled major = (pvr >> 4) & 0xf;
714 1.36 garbled minor = (pvr >> 0) & 0xf;
715 1.36 garbled break;
716 1.1 matt default:
717 1.36 garbled major = (pvr >> 8) & 0xf;
718 1.24 he minor = (pvr >> 0) & 0xf;
719 1.1 matt }
720 1.1 matt
721 1.1 matt for (cp = models; cp->name[0] != '\0'; cp++) {
722 1.1 matt if (cp->version == vers)
723 1.1 matt break;
724 1.1 matt }
725 1.1 matt
726 1.1 matt if (str == NULL) {
727 1.1 matt str = cpu_model;
728 1.1 matt len = sizeof(cpu_model);
729 1.1 matt cpu = vers;
730 1.1 matt }
731 1.1 matt
732 1.1 matt revfmt = cp->revfmt;
733 1.1 matt name = cp->name;
734 1.1 matt if (rev == MPC750 && pvr == 15) {
735 1.1 matt name = "755";
736 1.1 matt revfmt = REVFMT_HEX;
737 1.1 matt }
738 1.1 matt
739 1.1 matt if (cp->name[0] != '\0') {
740 1.1 matt n = snprintf(str, len, "%s (Revision ", cp->name);
741 1.1 matt } else {
742 1.1 matt n = snprintf(str, len, "Version %#x (Revision ", vers);
743 1.1 matt }
744 1.1 matt if (len > n) {
745 1.1 matt switch (revfmt) {
746 1.1 matt case REVFMT_MAJMIN:
747 1.24 he snprintf(str + n, len - n, "%u.%u)", major, minor);
748 1.1 matt break;
749 1.1 matt case REVFMT_HEX:
750 1.1 matt snprintf(str + n, len - n, "0x%04x)", rev);
751 1.1 matt break;
752 1.1 matt case REVFMT_DEC:
753 1.1 matt snprintf(str + n, len - n, "%u)", rev);
754 1.1 matt break;
755 1.1 matt }
756 1.1 matt }
757 1.1 matt }
758 1.1 matt
759 1.1 matt #ifdef L2CR_CONFIG
760 1.1 matt u_int l2cr_config = L2CR_CONFIG;
761 1.1 matt #else
762 1.1 matt u_int l2cr_config = 0;
763 1.1 matt #endif
764 1.1 matt
765 1.2 jklos #ifdef L3CR_CONFIG
766 1.2 jklos u_int l3cr_config = L3CR_CONFIG;
767 1.2 jklos #else
768 1.2 jklos u_int l3cr_config = 0;
769 1.2 jklos #endif
770 1.2 jklos
771 1.1 matt void
772 1.7 matt cpu_enable_l2cr(register_t l2cr)
773 1.7 matt {
774 1.7 matt register_t msr, x;
775 1.40 garbled uint16_t vers;
776 1.7 matt
777 1.40 garbled vers = mfpvr() >> 16;
778 1.40 garbled
779 1.7 matt /* Disable interrupts and set the cache config bits. */
780 1.7 matt msr = mfmsr();
781 1.7 matt mtmsr(msr & ~PSL_EE);
782 1.7 matt #ifdef ALTIVEC
783 1.7 matt if (cpu_altivec)
784 1.26 perry __asm volatile("dssall");
785 1.7 matt #endif
786 1.26 perry __asm volatile("sync");
787 1.7 matt mtspr(SPR_L2CR, l2cr & ~L2CR_L2E);
788 1.26 perry __asm volatile("sync");
789 1.7 matt
790 1.7 matt /* Wait for L2 clock to be stable (640 L2 clocks). */
791 1.7 matt delay(100);
792 1.7 matt
793 1.7 matt /* Invalidate all L2 contents. */
794 1.40 garbled if (MPC745X_P(vers)) {
795 1.40 garbled mtspr(SPR_L2CR, l2cr | L2CR_L2I);
796 1.40 garbled do {
797 1.40 garbled x = mfspr(SPR_L2CR);
798 1.40 garbled } while (x & L2CR_L2I);
799 1.40 garbled } else {
800 1.40 garbled mtspr(SPR_L2CR, l2cr | L2CR_L2I);
801 1.40 garbled do {
802 1.40 garbled x = mfspr(SPR_L2CR);
803 1.40 garbled } while (x & L2CR_L2IP);
804 1.40 garbled }
805 1.7 matt /* Enable L2 cache. */
806 1.7 matt l2cr |= L2CR_L2E;
807 1.7 matt mtspr(SPR_L2CR, l2cr);
808 1.7 matt mtmsr(msr);
809 1.7 matt }
810 1.7 matt
811 1.7 matt void
812 1.7 matt cpu_enable_l3cr(register_t l3cr)
813 1.1 matt {
814 1.7 matt register_t x;
815 1.7 matt
816 1.7 matt /* By The Book (numbered steps from section 3.7.1.3 of MPC7450UM) */
817 1.7 matt
818 1.7 matt /*
819 1.7 matt * 1: Set all L3CR bits for final config except L3E, L3I, L3PE, and
820 1.7 matt * L3CLKEN. (also mask off reserved bits in case they were included
821 1.7 matt * in L3CR_CONFIG)
822 1.7 matt */
823 1.7 matt l3cr &= ~(L3CR_L3E|L3CR_L3I|L3CR_L3PE|L3CR_L3CLKEN|L3CR_RESERVED);
824 1.7 matt mtspr(SPR_L3CR, l3cr);
825 1.7 matt
826 1.7 matt /* 2: Set L3CR[5] (otherwise reserved bit) to 1 */
827 1.7 matt l3cr |= 0x04000000;
828 1.7 matt mtspr(SPR_L3CR, l3cr);
829 1.7 matt
830 1.7 matt /* 3: Set L3CLKEN to 1*/
831 1.7 matt l3cr |= L3CR_L3CLKEN;
832 1.7 matt mtspr(SPR_L3CR, l3cr);
833 1.7 matt
834 1.7 matt /* 4/5: Perform a global cache invalidate (ref section 3.7.3.6) */
835 1.26 perry __asm volatile("dssall;sync");
836 1.7 matt /* L3 cache is already disabled, no need to clear L3E */
837 1.7 matt mtspr(SPR_L3CR, l3cr|L3CR_L3I);
838 1.7 matt do {
839 1.7 matt x = mfspr(SPR_L3CR);
840 1.7 matt } while (x & L3CR_L3I);
841 1.7 matt
842 1.7 matt /* 6: Clear L3CLKEN to 0 */
843 1.7 matt l3cr &= ~L3CR_L3CLKEN;
844 1.7 matt mtspr(SPR_L3CR, l3cr);
845 1.7 matt
846 1.7 matt /* 7: Perform a 'sync' and wait at least 100 CPU cycles */
847 1.26 perry __asm volatile("sync");
848 1.7 matt delay(100);
849 1.7 matt
850 1.7 matt /* 8: Set L3E and L3CLKEN */
851 1.7 matt l3cr |= (L3CR_L3E|L3CR_L3CLKEN);
852 1.7 matt mtspr(SPR_L3CR, l3cr);
853 1.7 matt
854 1.7 matt /* 9: Perform a 'sync' and wait at least 100 CPU cycles */
855 1.26 perry __asm volatile("sync");
856 1.7 matt delay(100);
857 1.7 matt }
858 1.7 matt
859 1.7 matt void
860 1.7 matt cpu_config_l2cr(int pvr)
861 1.7 matt {
862 1.7 matt register_t l2cr;
863 1.36 garbled u_int vers = (pvr >> 16) & 0xffff;
864 1.1 matt
865 1.1 matt l2cr = mfspr(SPR_L2CR);
866 1.1 matt
867 1.1 matt /*
868 1.1 matt * For MP systems, the firmware may only configure the L2 cache
869 1.1 matt * on the first CPU. In this case, assume that the other CPUs
870 1.1 matt * should use the same value for L2CR.
871 1.1 matt */
872 1.1 matt if ((l2cr & L2CR_L2E) != 0 && l2cr_config == 0) {
873 1.1 matt l2cr_config = l2cr;
874 1.1 matt }
875 1.1 matt
876 1.1 matt /*
877 1.1 matt * Configure L2 cache if not enabled.
878 1.1 matt */
879 1.8 scw if ((l2cr & L2CR_L2E) == 0 && l2cr_config != 0) {
880 1.7 matt cpu_enable_l2cr(l2cr_config);
881 1.8 scw l2cr = mfspr(SPR_L2CR);
882 1.8 scw }
883 1.7 matt
884 1.15 briggs if ((l2cr & L2CR_L2E) == 0) {
885 1.15 briggs aprint_normal(" L2 cache present but not enabled ");
886 1.7 matt return;
887 1.15 briggs }
888 1.36 garbled aprint_normal(",");
889 1.1 matt
890 1.36 garbled switch (vers) {
891 1.36 garbled case IBM750FX:
892 1.7 matt cpu_fmttab_print(cpu_ibm750_l2cr_formats, l2cr);
893 1.36 garbled break;
894 1.36 garbled case MPC750:
895 1.36 garbled if ((pvr & 0xffffff00) == 0x00082200 /* IBM750CX */ ||
896 1.36 garbled (pvr & 0xffffef00) == 0x00082300 /* IBM750CXe */)
897 1.36 garbled cpu_fmttab_print(cpu_ibm750_l2cr_formats, l2cr);
898 1.36 garbled else
899 1.36 garbled cpu_fmttab_print(cpu_l2cr_formats, l2cr);
900 1.36 garbled break;
901 1.36 garbled case MPC7447A:
902 1.36 garbled case MPC7457:
903 1.36 garbled cpu_fmttab_print(cpu_7457_l2cr_formats, l2cr);
904 1.36 garbled return;
905 1.36 garbled case MPC7448:
906 1.36 garbled cpu_fmttab_print(cpu_7448_l2cr_formats, l2cr);
907 1.36 garbled return;
908 1.36 garbled case MPC7450:
909 1.36 garbled case MPC7455:
910 1.36 garbled cpu_fmttab_print(cpu_7450_l2cr_formats, l2cr);
911 1.36 garbled break;
912 1.36 garbled default:
913 1.7 matt cpu_fmttab_print(cpu_l2cr_formats, l2cr);
914 1.36 garbled break;
915 1.1 matt }
916 1.7 matt }
917 1.1 matt
918 1.7 matt void
919 1.7 matt cpu_config_l3cr(int vers)
920 1.7 matt {
921 1.7 matt register_t l2cr;
922 1.7 matt register_t l3cr;
923 1.7 matt
924 1.7 matt l2cr = mfspr(SPR_L2CR);
925 1.1 matt
926 1.7 matt /*
927 1.7 matt * For MP systems, the firmware may only configure the L2 cache
928 1.7 matt * on the first CPU. In this case, assume that the other CPUs
929 1.7 matt * should use the same value for L2CR.
930 1.7 matt */
931 1.7 matt if ((l2cr & L2CR_L2E) != 0 && l2cr_config == 0) {
932 1.7 matt l2cr_config = l2cr;
933 1.7 matt }
934 1.1 matt
935 1.7 matt /*
936 1.7 matt * Configure L2 cache if not enabled.
937 1.7 matt */
938 1.7 matt if ((l2cr & L2CR_L2E) == 0 && l2cr_config != 0) {
939 1.7 matt cpu_enable_l2cr(l2cr_config);
940 1.7 matt l2cr = mfspr(SPR_L2CR);
941 1.7 matt }
942 1.7 matt
943 1.7 matt aprint_normal(",");
944 1.22 matt switch (vers) {
945 1.22 matt case MPC7447A:
946 1.22 matt case MPC7457:
947 1.22 matt cpu_fmttab_print(cpu_7457_l2cr_formats, l2cr);
948 1.22 matt return;
949 1.22 matt case MPC7448:
950 1.22 matt cpu_fmttab_print(cpu_7448_l2cr_formats, l2cr);
951 1.22 matt return;
952 1.22 matt default:
953 1.22 matt cpu_fmttab_print(cpu_7450_l2cr_formats, l2cr);
954 1.22 matt break;
955 1.22 matt }
956 1.2 jklos
957 1.7 matt l3cr = mfspr(SPR_L3CR);
958 1.1 matt
959 1.7 matt /*
960 1.7 matt * For MP systems, the firmware may only configure the L3 cache
961 1.7 matt * on the first CPU. In this case, assume that the other CPUs
962 1.7 matt * should use the same value for L3CR.
963 1.7 matt */
964 1.7 matt if ((l3cr & L3CR_L3E) != 0 && l3cr_config == 0) {
965 1.7 matt l3cr_config = l3cr;
966 1.7 matt }
967 1.1 matt
968 1.7 matt /*
969 1.7 matt * Configure L3 cache if not enabled.
970 1.7 matt */
971 1.7 matt if ((l3cr & L3CR_L3E) == 0 && l3cr_config != 0) {
972 1.7 matt cpu_enable_l3cr(l3cr_config);
973 1.7 matt l3cr = mfspr(SPR_L3CR);
974 1.7 matt }
975 1.7 matt
976 1.7 matt if (l3cr & L3CR_L3E) {
977 1.7 matt aprint_normal(",");
978 1.7 matt cpu_fmttab_print(cpu_7450_l3cr_formats, l3cr);
979 1.7 matt }
980 1.1 matt }
981 1.1 matt
982 1.1 matt void
983 1.23 briggs cpu_probe_speed(struct cpu_info *ci)
984 1.1 matt {
985 1.1 matt uint64_t cps;
986 1.1 matt
987 1.7 matt mtspr(SPR_MMCR0, MMCR0_FC);
988 1.1 matt mtspr(SPR_PMC1, 0);
989 1.7 matt mtspr(SPR_MMCR0, MMCR0_PMC1SEL(PMCN_CYCLES));
990 1.1 matt delay(100000);
991 1.1 matt cps = (mfspr(SPR_PMC1) * 10) + 4999;
992 1.1 matt
993 1.15 briggs mtspr(SPR_MMCR0, MMCR0_FC);
994 1.15 briggs
995 1.56 phx ci->ci_khz = (cps * cpu_get_dfs()) / 1000;
996 1.56 phx }
997 1.56 phx
998 1.56 phx /*
999 1.56 phx * Read the Dynamic Frequency Switching state and return a divisor for
1000 1.56 phx * the maximum frequency.
1001 1.56 phx */
1002 1.56 phx int
1003 1.56 phx cpu_get_dfs(void)
1004 1.56 phx {
1005 1.56 phx u_int hid1, pvr, vers;
1006 1.56 phx
1007 1.56 phx pvr = mfpvr();
1008 1.56 phx vers = pvr >> 16;
1009 1.56 phx hid1 = mfspr(SPR_HID1);
1010 1.56 phx
1011 1.56 phx switch (vers) {
1012 1.56 phx case MPC7448:
1013 1.56 phx if (hid1 & HID1_DFS4)
1014 1.56 phx return 4;
1015 1.56 phx case MPC7447A:
1016 1.56 phx if (hid1 & HID1_DFS2)
1017 1.56 phx return 2;
1018 1.56 phx }
1019 1.56 phx return 1;
1020 1.56 phx }
1021 1.56 phx
1022 1.56 phx /*
1023 1.56 phx * Set the Dynamic Frequency Switching divisor the same for all cpus.
1024 1.56 phx */
1025 1.56 phx void
1026 1.56 phx cpu_set_dfs(int div)
1027 1.56 phx {
1028 1.56 phx uint64_t where;
1029 1.56 phx u_int dfs_mask, pvr, vers;
1030 1.56 phx
1031 1.56 phx pvr = mfpvr();
1032 1.56 phx vers = pvr >> 16;
1033 1.56 phx dfs_mask = 0;
1034 1.56 phx
1035 1.56 phx switch (vers) {
1036 1.56 phx case MPC7448:
1037 1.56 phx dfs_mask |= HID1_DFS4;
1038 1.56 phx case MPC7447A:
1039 1.56 phx dfs_mask |= HID1_DFS2;
1040 1.56 phx break;
1041 1.56 phx default:
1042 1.56 phx printf("cpu_set_dfs: DFS not supported\n");
1043 1.56 phx return;
1044 1.56 phx
1045 1.56 phx }
1046 1.56 phx
1047 1.56 phx where = xc_broadcast(0, (xcfunc_t)cpu_set_dfs_xcall, &div, &dfs_mask);
1048 1.56 phx xc_wait(where);
1049 1.56 phx }
1050 1.56 phx
1051 1.56 phx static void
1052 1.56 phx cpu_set_dfs_xcall(void *arg1, void *arg2)
1053 1.56 phx {
1054 1.56 phx u_int dfs_mask, hid1, old_hid1;
1055 1.56 phx int *divisor, s;
1056 1.56 phx
1057 1.56 phx divisor = arg1;
1058 1.56 phx dfs_mask = *(u_int *)arg2;
1059 1.56 phx
1060 1.56 phx s = splhigh();
1061 1.56 phx hid1 = old_hid1 = mfspr(SPR_HID1);
1062 1.56 phx
1063 1.56 phx switch (*divisor) {
1064 1.56 phx case 1:
1065 1.56 phx hid1 &= ~dfs_mask;
1066 1.56 phx break;
1067 1.56 phx case 2:
1068 1.56 phx hid1 &= ~(dfs_mask & HID1_DFS4);
1069 1.56 phx hid1 |= dfs_mask & HID1_DFS2;
1070 1.56 phx break;
1071 1.56 phx case 4:
1072 1.56 phx hid1 &= ~(dfs_mask & HID1_DFS2);
1073 1.56 phx hid1 |= dfs_mask & HID1_DFS4;
1074 1.56 phx break;
1075 1.56 phx }
1076 1.56 phx
1077 1.56 phx if (hid1 != old_hid1) {
1078 1.56 phx __asm volatile("sync");
1079 1.56 phx mtspr(SPR_HID1, hid1);
1080 1.56 phx __asm volatile("sync;isync");
1081 1.56 phx }
1082 1.56 phx
1083 1.56 phx splx(s);
1084 1.1 matt }
1085 1.1 matt
1086 1.1 matt #if NSYSMON_ENVSYS > 0
1087 1.1 matt void
1088 1.1 matt cpu_tau_setup(struct cpu_info *ci)
1089 1.1 matt {
1090 1.34 xtraeme struct sysmon_envsys *sme;
1091 1.50 macallan int error, therm_delay;
1092 1.50 macallan
1093 1.50 macallan mtspr(SPR_THRM1, SPR_THRM_VALID);
1094 1.50 macallan mtspr(SPR_THRM2, 0);
1095 1.50 macallan
1096 1.50 macallan /*
1097 1.50 macallan * we need to figure out how much 20+us in units of CPU clock cycles
1098 1.50 macallan * are
1099 1.50 macallan */
1100 1.50 macallan
1101 1.50 macallan therm_delay = ci->ci_khz / 40; /* 25us just to be safe */
1102 1.50 macallan
1103 1.50 macallan mtspr(SPR_THRM3, SPR_THRM_TIMER(therm_delay) | SPR_THRM_ENABLE);
1104 1.1 matt
1105 1.34 xtraeme sme = sysmon_envsys_create();
1106 1.12 matt
1107 1.34 xtraeme sensor.units = ENVSYS_STEMP;
1108 1.34 xtraeme (void)strlcpy(sensor.desc, "CPU Temp", sizeof(sensor.desc));
1109 1.34 xtraeme if (sysmon_envsys_sensor_attach(sme, &sensor)) {
1110 1.34 xtraeme sysmon_envsys_destroy(sme);
1111 1.34 xtraeme return;
1112 1.34 xtraeme }
1113 1.34 xtraeme
1114 1.34 xtraeme sme->sme_name = ci->ci_dev->dv_xname;
1115 1.34 xtraeme sme->sme_cookie = ci;
1116 1.34 xtraeme sme->sme_refresh = cpu_tau_refresh;
1117 1.1 matt
1118 1.34 xtraeme if ((error = sysmon_envsys_register(sme)) != 0) {
1119 1.3 matt aprint_error("%s: unable to register with sysmon (%d)\n",
1120 1.1 matt ci->ci_dev->dv_xname, error);
1121 1.34 xtraeme sysmon_envsys_destroy(sme);
1122 1.34 xtraeme }
1123 1.1 matt }
1124 1.1 matt
1125 1.1 matt
1126 1.1 matt /* Find the temperature of the CPU. */
1127 1.34 xtraeme void
1128 1.34 xtraeme cpu_tau_refresh(struct sysmon_envsys *sme, envsys_data_t *edata)
1129 1.1 matt {
1130 1.1 matt int i, threshold, count;
1131 1.1 matt
1132 1.1 matt threshold = 64; /* Half of the 7-bit sensor range */
1133 1.1 matt
1134 1.1 matt /* Successive-approximation code adapted from Motorola
1135 1.1 matt * application note AN1800/D, "Programming the Thermal Assist
1136 1.1 matt * Unit in the MPC750 Microprocessor".
1137 1.1 matt */
1138 1.50 macallan for (i = 5; i >= 0 ; i--) {
1139 1.1 matt mtspr(SPR_THRM1,
1140 1.1 matt SPR_THRM_THRESHOLD(threshold) | SPR_THRM_VALID);
1141 1.1 matt count = 0;
1142 1.50 macallan while ((count < 100000) &&
1143 1.1 matt ((mfspr(SPR_THRM1) & SPR_THRM_TIV) == 0)) {
1144 1.1 matt count++;
1145 1.1 matt delay(1);
1146 1.1 matt }
1147 1.1 matt if (mfspr(SPR_THRM1) & SPR_THRM_TIN) {
1148 1.1 matt /* The interrupt bit was set, meaning the
1149 1.1 matt * temperature was above the threshold
1150 1.1 matt */
1151 1.50 macallan threshold += 1 << i;
1152 1.1 matt } else {
1153 1.1 matt /* Temperature was below the threshold */
1154 1.50 macallan threshold -= 1 << i;
1155 1.1 matt }
1156 1.50 macallan
1157 1.1 matt }
1158 1.1 matt threshold += 2;
1159 1.1 matt
1160 1.1 matt /* Convert the temperature in degrees C to microkelvin */
1161 1.34 xtraeme edata->value_cur = (threshold * 1000000) + 273150000;
1162 1.50 macallan edata->state = ENVSYS_SVALID;
1163 1.1 matt }
1164 1.1 matt #endif /* NSYSMON_ENVSYS > 0 */
1165 1.33 garbled
1166 1.33 garbled #ifdef MULTIPROCESSOR
1167 1.46 garbled extern volatile u_int cpu_spinstart_ack;
1168 1.46 garbled
1169 1.33 garbled int
1170 1.33 garbled cpu_spinup(struct device *self, struct cpu_info *ci)
1171 1.33 garbled {
1172 1.33 garbled volatile struct cpu_hatch_data hatch_data, *h = &hatch_data;
1173 1.33 garbled struct pglist mlist;
1174 1.33 garbled int i, error, pvr, vers;
1175 1.46 garbled char *cp, *hp;
1176 1.33 garbled
1177 1.33 garbled pvr = mfpvr();
1178 1.33 garbled vers = pvr >> 16;
1179 1.33 garbled KASSERT(ci != curcpu());
1180 1.33 garbled
1181 1.33 garbled /*
1182 1.33 garbled * Allocate some contiguous pages for the intteup PCB and stack
1183 1.33 garbled * from the lowest 256MB (because bat0 always maps it va == pa).
1184 1.46 garbled * Must be 16 byte aligned.
1185 1.33 garbled */
1186 1.46 garbled error = uvm_pglistalloc(INTSTK, 0x10000, 0x10000000, 16, 0,
1187 1.46 garbled &mlist, 1, 1);
1188 1.33 garbled if (error) {
1189 1.33 garbled aprint_error(": unable to allocate idle stack\n");
1190 1.33 garbled return -1;
1191 1.33 garbled }
1192 1.33 garbled
1193 1.33 garbled KASSERT(ci != &cpu_info[0]);
1194 1.33 garbled
1195 1.33 garbled cp = (void *)VM_PAGE_TO_PHYS(TAILQ_FIRST(&mlist));
1196 1.33 garbled memset(cp, 0, INTSTK);
1197 1.33 garbled
1198 1.33 garbled ci->ci_intstk = cp;
1199 1.33 garbled
1200 1.46 garbled /* Now allocate a hatch stack */
1201 1.46 garbled error = uvm_pglistalloc(0x1000, 0x10000, 0x10000000, 16, 0,
1202 1.46 garbled &mlist, 1, 1);
1203 1.46 garbled if (error) {
1204 1.46 garbled aprint_error(": unable to allocate hatch stack\n");
1205 1.46 garbled return -1;
1206 1.46 garbled }
1207 1.46 garbled
1208 1.46 garbled hp = (void *)VM_PAGE_TO_PHYS(TAILQ_FIRST(&mlist));
1209 1.46 garbled memset(hp, 0, 0x1000);
1210 1.46 garbled
1211 1.33 garbled /* Initialize secondary cpu's initial lwp to its idlelwp. */
1212 1.33 garbled ci->ci_curlwp = ci->ci_data.cpu_idlelwp;
1213 1.54 rmind ci->ci_curpcb = lwp_getpcb(ci->ci_curlwp);
1214 1.33 garbled ci->ci_curpm = ci->ci_curpcb->pcb_pm;
1215 1.33 garbled
1216 1.33 garbled cpu_hatch_data = h;
1217 1.33 garbled h->running = 0;
1218 1.33 garbled h->self = self;
1219 1.33 garbled h->ci = ci;
1220 1.33 garbled h->pir = ci->ci_cpuid;
1221 1.46 garbled
1222 1.46 garbled cpu_hatch_stack = (uint32_t)hp;
1223 1.33 garbled ci->ci_lasttb = cpu_info[0].ci_lasttb;
1224 1.33 garbled
1225 1.33 garbled /* copy special registers */
1226 1.46 garbled
1227 1.33 garbled h->hid0 = mfspr(SPR_HID0);
1228 1.46 garbled
1229 1.33 garbled __asm volatile ("mfsdr1 %0" : "=r"(h->sdr1));
1230 1.46 garbled for (i = 0; i < 16; i++) {
1231 1.33 garbled __asm ("mfsrin %0,%1" : "=r"(h->sr[i]) :
1232 1.33 garbled "r"(i << ADDR_SR_SHFT));
1233 1.46 garbled }
1234 1.46 garbled if (oeacpufeat & OEACPU_64)
1235 1.46 garbled h->asr = mfspr(SPR_ASR);
1236 1.46 garbled else
1237 1.46 garbled h->asr = 0;
1238 1.46 garbled
1239 1.33 garbled /* copy the bat regs */
1240 1.33 garbled __asm volatile ("mfibatu %0,0" : "=r"(h->batu[0]));
1241 1.33 garbled __asm volatile ("mfibatl %0,0" : "=r"(h->batl[0]));
1242 1.33 garbled __asm volatile ("mfibatu %0,1" : "=r"(h->batu[1]));
1243 1.33 garbled __asm volatile ("mfibatl %0,1" : "=r"(h->batl[1]));
1244 1.33 garbled __asm volatile ("mfibatu %0,2" : "=r"(h->batu[2]));
1245 1.33 garbled __asm volatile ("mfibatl %0,2" : "=r"(h->batl[2]));
1246 1.33 garbled __asm volatile ("mfibatu %0,3" : "=r"(h->batu[3]));
1247 1.33 garbled __asm volatile ("mfibatl %0,3" : "=r"(h->batl[3]));
1248 1.33 garbled __asm volatile ("sync; isync");
1249 1.33 garbled
1250 1.33 garbled if (md_setup_trampoline(h, ci) == -1)
1251 1.33 garbled return -1;
1252 1.33 garbled md_presync_timebase(h);
1253 1.33 garbled md_start_timebase(h);
1254 1.33 garbled
1255 1.33 garbled /* wait for secondary printf */
1256 1.46 garbled
1257 1.33 garbled delay(200000);
1258 1.33 garbled
1259 1.46 garbled if (h->running < 1) {
1260 1.46 garbled aprint_error("%d:CPU %d didn't start %d\n", cpu_spinstart_ack,
1261 1.46 garbled ci->ci_cpuid, cpu_spinstart_ack);
1262 1.46 garbled Debugger();
1263 1.33 garbled return -1;
1264 1.33 garbled }
1265 1.33 garbled
1266 1.33 garbled /* Register IPI Interrupt */
1267 1.46 garbled if (ipiops.ppc_establish_ipi)
1268 1.46 garbled ipiops.ppc_establish_ipi(IST_LEVEL, IPL_HIGH, NULL);
1269 1.33 garbled
1270 1.33 garbled return 0;
1271 1.33 garbled }
1272 1.33 garbled
1273 1.33 garbled static volatile int start_secondary_cpu;
1274 1.46 garbled extern void tlbia(void);
1275 1.33 garbled
1276 1.46 garbled register_t
1277 1.46 garbled cpu_hatch(void)
1278 1.33 garbled {
1279 1.33 garbled volatile struct cpu_hatch_data *h = cpu_hatch_data;
1280 1.33 garbled struct cpu_info * const ci = h->ci;
1281 1.54 rmind struct pcb *pcb;
1282 1.33 garbled u_int msr;
1283 1.33 garbled int i;
1284 1.33 garbled
1285 1.33 garbled /* Initialize timebase. */
1286 1.33 garbled __asm ("mttbl %0; mttbu %0; mttbl %0" :: "r"(0));
1287 1.33 garbled
1288 1.46 garbled /*
1289 1.46 garbled * Set PIR (Processor Identification Register). i.e. whoami
1290 1.49 chs * Note that PIR is read-only on some CPU versions, so we write to it
1291 1.49 chs * only if it has a different value than we need.
1292 1.46 garbled */
1293 1.46 garbled
1294 1.46 garbled msr = mfspr(SPR_PIR);
1295 1.49 chs if (msr != h->pir)
1296 1.46 garbled mtspr(SPR_PIR, h->pir);
1297 1.46 garbled
1298 1.33 garbled __asm volatile ("mtsprg 0,%0" :: "r"(ci));
1299 1.46 garbled cpu_spinstart_ack = 0;
1300 1.33 garbled
1301 1.33 garbled /* Initialize MMU. */
1302 1.33 garbled __asm ("mtibatu 0,%0" :: "r"(h->batu[0]));
1303 1.33 garbled __asm ("mtibatl 0,%0" :: "r"(h->batl[0]));
1304 1.33 garbled __asm ("mtibatu 1,%0" :: "r"(h->batu[1]));
1305 1.33 garbled __asm ("mtibatl 1,%0" :: "r"(h->batl[1]));
1306 1.33 garbled __asm ("mtibatu 2,%0" :: "r"(h->batu[2]));
1307 1.33 garbled __asm ("mtibatl 2,%0" :: "r"(h->batl[2]));
1308 1.33 garbled __asm ("mtibatu 3,%0" :: "r"(h->batu[3]));
1309 1.33 garbled __asm ("mtibatl 3,%0" :: "r"(h->batl[3]));
1310 1.33 garbled
1311 1.33 garbled mtspr(SPR_HID0, h->hid0);
1312 1.33 garbled
1313 1.33 garbled __asm ("mtibatl 0,%0; mtibatu 0,%1; mtdbatl 0,%0; mtdbatu 0,%1;"
1314 1.33 garbled :: "r"(battable[0].batl), "r"(battable[0].batu));
1315 1.33 garbled
1316 1.46 garbled __asm volatile ("sync");
1317 1.33 garbled for (i = 0; i < 16; i++)
1318 1.33 garbled __asm ("mtsrin %0,%1" :: "r"(h->sr[i]), "r"(i << ADDR_SR_SHFT));
1319 1.46 garbled __asm volatile ("sync; isync");
1320 1.46 garbled
1321 1.46 garbled if (oeacpufeat & OEACPU_64)
1322 1.46 garbled mtspr(SPR_ASR, h->asr);
1323 1.33 garbled
1324 1.46 garbled cpu_spinstart_ack = 1;
1325 1.46 garbled __asm ("ptesync");
1326 1.33 garbled __asm ("mtsdr1 %0" :: "r"(h->sdr1));
1327 1.46 garbled __asm volatile ("sync; isync");
1328 1.46 garbled
1329 1.46 garbled cpu_spinstart_ack = 5;
1330 1.46 garbled for (i = 0; i < 16; i++)
1331 1.46 garbled __asm ("mfsrin %0,%1" : "=r"(h->sr[i]) :
1332 1.46 garbled "r"(i << ADDR_SR_SHFT));
1333 1.33 garbled
1334 1.33 garbled /* Enable I/D address translations. */
1335 1.46 garbled msr = mfmsr();
1336 1.33 garbled msr |= PSL_IR|PSL_DR|PSL_ME|PSL_RI;
1337 1.46 garbled mtmsr(msr);
1338 1.33 garbled __asm volatile ("sync; isync");
1339 1.46 garbled cpu_spinstart_ack = 2;
1340 1.33 garbled
1341 1.33 garbled md_sync_timebase(h);
1342 1.33 garbled
1343 1.33 garbled cpu_setup(h->self, ci);
1344 1.33 garbled
1345 1.33 garbled h->running = 1;
1346 1.33 garbled __asm volatile ("sync; isync");
1347 1.33 garbled
1348 1.33 garbled while (start_secondary_cpu == 0)
1349 1.33 garbled ;
1350 1.33 garbled
1351 1.33 garbled __asm volatile ("sync; isync");
1352 1.33 garbled
1353 1.46 garbled aprint_normal("cpu%d started\n", curcpu()->ci_index);
1354 1.33 garbled __asm volatile ("mtdec %0" :: "r"(ticks_per_intr));
1355 1.33 garbled
1356 1.33 garbled md_setup_interrupts();
1357 1.33 garbled
1358 1.33 garbled ci->ci_ipending = 0;
1359 1.33 garbled ci->ci_cpl = 0;
1360 1.33 garbled
1361 1.33 garbled mtmsr(mfmsr() | PSL_EE);
1362 1.54 rmind pcb = lwp_getpcb(ci->ci_data.cpu_idlelwp);
1363 1.54 rmind return pcb->pcb_sp;
1364 1.33 garbled }
1365 1.33 garbled
1366 1.33 garbled void
1367 1.53 cegger cpu_boot_secondary_processors(void)
1368 1.33 garbled {
1369 1.33 garbled start_secondary_cpu = 1;
1370 1.33 garbled __asm volatile ("sync");
1371 1.33 garbled }
1372 1.33 garbled
1373 1.33 garbled #endif /*MULTIPROCESSOR*/
1374