clock.c revision 1.21 1 1.21 simonb /* $NetBSD: clock.c,v 1.21 2008/01/09 06:50:36 simonb Exp $ */
2 1.1 eeh /* $OpenBSD: clock.c,v 1.3 1997/10/13 13:42:53 pefo Exp $ */
3 1.1 eeh
4 1.1 eeh /*
5 1.1 eeh * Copyright (C) 1995, 1996 Wolfgang Solfrank.
6 1.1 eeh * Copyright (C) 1995, 1996 TooLs GmbH.
7 1.1 eeh * All rights reserved.
8 1.1 eeh *
9 1.1 eeh * Redistribution and use in source and binary forms, with or without
10 1.1 eeh * modification, are permitted provided that the following conditions
11 1.1 eeh * are met:
12 1.1 eeh * 1. Redistributions of source code must retain the above copyright
13 1.1 eeh * notice, this list of conditions and the following disclaimer.
14 1.1 eeh * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 eeh * notice, this list of conditions and the following disclaimer in the
16 1.1 eeh * documentation and/or other materials provided with the distribution.
17 1.1 eeh * 3. All advertising materials mentioning features or use of this software
18 1.1 eeh * must display the following acknowledgement:
19 1.1 eeh * This product includes software developed by TooLs GmbH.
20 1.1 eeh * 4. The name of TooLs GmbH may not be used to endorse or promote products
21 1.1 eeh * derived from this software without specific prior written permission.
22 1.1 eeh *
23 1.1 eeh * THIS SOFTWARE IS PROVIDED BY TOOLS GMBH ``AS IS'' AND ANY EXPRESS OR
24 1.1 eeh * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
25 1.1 eeh * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
26 1.1 eeh * IN NO EVENT SHALL TOOLS GMBH BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
27 1.1 eeh * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
28 1.1 eeh * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
29 1.1 eeh * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
30 1.1 eeh * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
31 1.1 eeh * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
32 1.1 eeh * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
33 1.1 eeh */
34 1.9 lukem
35 1.9 lukem #include <sys/cdefs.h>
36 1.21 simonb __KERNEL_RCSID(0, "$NetBSD: clock.c,v 1.21 2008/01/09 06:50:36 simonb Exp $");
37 1.1 eeh
38 1.1 eeh #include <sys/param.h>
39 1.1 eeh #include <sys/kernel.h>
40 1.1 eeh #include <sys/systm.h>
41 1.19 joerg #include <sys/timetc.h>
42 1.16 thorpej
43 1.21 simonb #include <uvm/uvm_extern.h>
44 1.21 simonb
45 1.16 thorpej #include <prop/proplib.h>
46 1.1 eeh
47 1.8 hannken #include <machine/cpu.h>
48 1.1 eeh
49 1.1 eeh #include <powerpc/spr.h>
50 1.1 eeh
51 1.1 eeh /*
52 1.1 eeh * Initially we assume a processor with a bus frequency of 12.5 MHz.
53 1.1 eeh */
54 1.1 eeh static u_long ticks_per_sec;
55 1.1 eeh static u_long ns_per_tick;
56 1.1 eeh static long ticks_per_intr;
57 1.13 nonaka static volatile u_long lasttb, lasttb2;
58 1.1 eeh static u_long ticksmissed;
59 1.1 eeh static volatile int tickspending;
60 1.1 eeh
61 1.19 joerg static void init_ppc4xx_tc(void);
62 1.19 joerg static u_int get_ppc4xx_timecount(struct timecounter *);
63 1.19 joerg
64 1.19 joerg static struct timecounter ppc4xx_timecounter = {
65 1.19 joerg get_ppc4xx_timecount, /* get_timecount */
66 1.19 joerg 0, /* no poll_pps */
67 1.20 joerg ~0u, /* counter_mask */
68 1.19 joerg 0, /* frequency */
69 1.19 joerg "ppc_timebase", /* name */
70 1.19 joerg 100, /* quality */
71 1.19 joerg NULL, /* tc_priv */
72 1.19 joerg NULL /* tc_next */
73 1.19 joerg };
74 1.19 joerg
75 1.1 eeh void decr_intr(struct clockframe *); /* called from trap_subr.S */
76 1.1 eeh void stat_intr(struct clockframe *); /* called from trap_subr.S */
77 1.1 eeh
78 1.1 eeh #ifdef FAST_STAT_CLOCK
79 1.15 lukem /* Stat clock runs at ~ 1.5 kHz */
80 1.1 eeh #define PERIOD_POWER 17
81 1.1 eeh #define TCR_PERIOD TCR_FP_2_17
82 1.1 eeh #else
83 1.1 eeh /* Stat clock runs at ~ 95Hz */
84 1.1 eeh #define PERIOD_POWER 21
85 1.1 eeh #define TCR_PERIOD TCR_FP_2_21
86 1.3 simonb #endif
87 1.1 eeh
88 1.1 eeh
89 1.1 eeh void
90 1.1 eeh stat_intr(struct clockframe *frame)
91 1.1 eeh {
92 1.21 simonb
93 1.1 eeh mtspr(SPR_TSR, TSR_FIS); /* Clear TSR[FIS] */
94 1.21 simonb uvmexp.intrs++;
95 1.17 freza curcpu()->ci_ev_statclock.ev_count++;
96 1.18 freza
97 1.18 freza /* Nobody can interrupt us, but see if we're allowed to run. */
98 1.18 freza if (! (curcpu()->ci_cpl & mask_statclock))
99 1.18 freza statclock(frame);
100 1.1 eeh }
101 1.1 eeh
102 1.1 eeh void
103 1.1 eeh decr_intr(struct clockframe *frame)
104 1.1 eeh {
105 1.1 eeh int pri;
106 1.12 scw long tbtick, xticks;
107 1.1 eeh int nticks;
108 1.17 freza
109 1.1 eeh /*
110 1.1 eeh * Check whether we are initialized.
111 1.1 eeh */
112 1.1 eeh if (!ticks_per_intr)
113 1.1 eeh return;
114 1.1 eeh
115 1.12 scw tbtick = mftbl();
116 1.1 eeh mtspr(SPR_TSR, TSR_PIS); /* Clear TSR[PIS] */
117 1.13 nonaka
118 1.13 nonaka xticks = tbtick - lasttb2; /* Number of TLB cycles since last exception */
119 1.1 eeh for (nticks = 0; xticks > ticks_per_intr; nticks++)
120 1.1 eeh xticks -= ticks_per_intr;
121 1.13 nonaka lasttb2 = tbtick - xticks;
122 1.1 eeh
123 1.21 simonb uvmexp.intrs++;
124 1.17 freza curcpu()->ci_ev_clock.ev_count++;
125 1.1 eeh pri = splclock();
126 1.17 freza if (pri & mask_clock) {
127 1.1 eeh tickspending += nticks;
128 1.17 freza ticksmissed += nticks;
129 1.1 eeh } else {
130 1.1 eeh nticks += tickspending;
131 1.1 eeh tickspending = 0;
132 1.1 eeh
133 1.1 eeh /*
134 1.13 nonaka * lasttb is used during microtime. Set it to the virtual
135 1.13 nonaka * start of this tick interval.
136 1.13 nonaka */
137 1.13 nonaka lasttb = lasttb2;
138 1.13 nonaka
139 1.13 nonaka /*
140 1.1 eeh * Reenable interrupts
141 1.1 eeh */
142 1.14 perry __asm volatile ("wrteei 1");
143 1.1 eeh
144 1.1 eeh /*
145 1.1 eeh * Do standard timer interrupt stuff.
146 1.1 eeh * Do softclock stuff only on the last iteration.
147 1.1 eeh */
148 1.17 freza frame->pri = pri | mask_clock;
149 1.1 eeh while (--nticks > 0)
150 1.1 eeh hardclock(frame);
151 1.1 eeh frame->pri = pri;
152 1.1 eeh hardclock(frame);
153 1.1 eeh }
154 1.1 eeh splx(pri);
155 1.1 eeh }
156 1.1 eeh
157 1.1 eeh void
158 1.1 eeh cpu_initclocks(void)
159 1.1 eeh {
160 1.17 freza /* Initialized in powerpc/ibm4xx/cpu.c */
161 1.17 freza evcnt_attach_static(&curcpu()->ci_ev_clock);
162 1.17 freza evcnt_attach_static(&curcpu()->ci_ev_statclock);
163 1.4 simonb
164 1.1 eeh ticks_per_intr = ticks_per_sec / hz;
165 1.4 simonb stathz = profhz = ticks_per_sec / (1 << PERIOD_POWER);
166 1.17 freza
167 1.17 freza printf("Setting PIT to %ld/%d = %ld\n", ticks_per_sec, hz,
168 1.17 freza ticks_per_intr);
169 1.17 freza
170 1.13 nonaka lasttb2 = lasttb = mftbl();
171 1.1 eeh mtspr(SPR_PIT, ticks_per_intr);
172 1.17 freza
173 1.1 eeh /* Enable PIT & FIT(2^17c = 0.655ms) interrupts and auto-reload */
174 1.3 simonb mtspr(SPR_TCR, TCR_PIE | TCR_ARE | TCR_FIE | TCR_PERIOD);
175 1.19 joerg
176 1.19 joerg init_ppc4xx_tc();
177 1.1 eeh }
178 1.1 eeh
179 1.1 eeh void
180 1.1 eeh calc_delayconst(void)
181 1.1 eeh {
182 1.16 thorpej prop_number_t freq;
183 1.1 eeh
184 1.16 thorpej freq = prop_dictionary_get(board_properties, "processor-frequency");
185 1.16 thorpej KASSERT(freq != NULL);
186 1.2 eeh
187 1.16 thorpej ticks_per_sec = (u_long) prop_number_integer_value(freq);
188 1.1 eeh ns_per_tick = 1000000000 / ticks_per_sec;
189 1.1 eeh }
190 1.1 eeh
191 1.19 joerg static u_int
192 1.19 joerg get_ppc4xx_timecount(struct timecounter *tc)
193 1.1 eeh {
194 1.1 eeh u_long tb;
195 1.1 eeh int msr;
196 1.1 eeh
197 1.14 perry __asm volatile ("mfmsr %0; wrteei 0" : "=r"(msr) :);
198 1.8 hannken tb = mftbl();
199 1.19 joerg __asm volatile ("mtmsr %0" :: "r"(msr));
200 1.11 simonb
201 1.19 joerg return tb;
202 1.1 eeh }
203 1.1 eeh
204 1.1 eeh /*
205 1.1 eeh * Wait for about n microseconds (at least!).
206 1.1 eeh */
207 1.1 eeh void
208 1.1 eeh delay(unsigned int n)
209 1.1 eeh {
210 1.1 eeh u_quad_t tb;
211 1.1 eeh u_long tbh, tbl, scratch;
212 1.1 eeh
213 1.1 eeh tb = mftb();
214 1.1 eeh /* use 1000ULL to force 64 bit math to avoid 32 bit overflows */
215 1.1 eeh tb += (n * 1000ULL + ns_per_tick - 1) / ns_per_tick;
216 1.1 eeh tbh = tb >> 32;
217 1.1 eeh tbl = tb;
218 1.14 perry __asm volatile (
219 1.8 hannken #ifdef PPC_IBM403
220 1.8 hannken "1: mftbhi %0 \n"
221 1.8 hannken #else
222 1.8 hannken "1: mftbu %0 \n"
223 1.8 hannken #endif
224 1.8 hannken " cmplw %0,%1 \n"
225 1.8 hannken " blt 1b \n"
226 1.8 hannken " bgt 2f \n"
227 1.8 hannken #ifdef PPC_IBM403
228 1.8 hannken " mftblo %0 \n"
229 1.8 hannken #else
230 1.8 hannken " mftb %0 \n"
231 1.8 hannken #endif
232 1.8 hannken " cmplw %0,%2 \n"
233 1.8 hannken " blt 1b \n"
234 1.8 hannken "2: \n"
235 1.10 scw : "=&r"(scratch) : "r"(tbh), "r"(tbl) : "cr0");
236 1.1 eeh }
237 1.1 eeh
238 1.1 eeh /*
239 1.1 eeh * Nothing to do.
240 1.1 eeh */
241 1.1 eeh void
242 1.1 eeh setstatclockrate(int arg)
243 1.1 eeh {
244 1.1 eeh
245 1.1 eeh /* Do nothing */
246 1.1 eeh }
247 1.19 joerg
248 1.19 joerg static void
249 1.19 joerg init_ppc4xx_tc(void)
250 1.19 joerg {
251 1.19 joerg /* from machdep initialization */
252 1.19 joerg ppc4xx_timecounter.tc_frequency = ticks_per_sec;
253 1.19 joerg tc_init(&ppc4xx_timecounter);
254 1.19 joerg }
255