s3c2800_clk.c revision 1.14 1 1.14 bsh /* $NetBSD: s3c2800_clk.c,v 1.14 2008/07/04 11:59:45 bsh Exp $ */
2 1.1 bsh
3 1.1 bsh /*
4 1.1 bsh * Copyright (c) 2002 Fujitsu Component Limited
5 1.1 bsh * Copyright (c) 2002 Genetec Corporation
6 1.1 bsh * All rights reserved.
7 1.1 bsh *
8 1.1 bsh * Redistribution and use in source and binary forms, with or without
9 1.1 bsh * modification, are permitted provided that the following conditions
10 1.1 bsh * are met:
11 1.1 bsh * 1. Redistributions of source code must retain the above copyright
12 1.1 bsh * notice, this list of conditions and the following disclaimer.
13 1.1 bsh * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 bsh * notice, this list of conditions and the following disclaimer in the
15 1.1 bsh * documentation and/or other materials provided with the distribution.
16 1.1 bsh * 3. Neither the name of The Fujitsu Component Limited nor the name of
17 1.1 bsh * Genetec corporation may not be used to endorse or promote products
18 1.1 bsh * derived from this software without specific prior written permission.
19 1.1 bsh *
20 1.1 bsh * THIS SOFTWARE IS PROVIDED BY FUJITSU COMPONENT LIMITED AND GENETEC
21 1.1 bsh * CORPORATION ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES,
22 1.1 bsh * INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
23 1.1 bsh * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
24 1.1 bsh * DISCLAIMED. IN NO EVENT SHALL FUJITSU COMPONENT LIMITED OR GENETEC
25 1.1 bsh * CORPORATION BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
26 1.1 bsh * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
27 1.1 bsh * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
28 1.1 bsh * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
29 1.1 bsh * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
30 1.1 bsh * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
31 1.1 bsh * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.1 bsh * SUCH DAMAGE.
33 1.1 bsh */
34 1.1 bsh
35 1.1 bsh
36 1.5 lukem #include <sys/cdefs.h>
37 1.14 bsh __KERNEL_RCSID(0, "$NetBSD: s3c2800_clk.c,v 1.14 2008/07/04 11:59:45 bsh Exp $");
38 1.5 lukem
39 1.1 bsh #include <sys/param.h>
40 1.1 bsh #include <sys/systm.h>
41 1.1 bsh #include <sys/kernel.h>
42 1.12 joerg #include <sys/atomic.h>
43 1.1 bsh #include <sys/time.h>
44 1.12 joerg #include <sys/timetc.h>
45 1.1 bsh
46 1.1 bsh #include <machine/bus.h>
47 1.1 bsh #include <machine/intr.h>
48 1.1 bsh #include <arm/cpufunc.h>
49 1.1 bsh
50 1.1 bsh #include <arm/s3c2xx0/s3c2800reg.h>
51 1.1 bsh #include <arm/s3c2xx0/s3c2800var.h>
52 1.1 bsh
53 1.1 bsh
54 1.1 bsh #ifndef STATHZ
55 1.1 bsh #define STATHZ 64
56 1.1 bsh #endif
57 1.1 bsh
58 1.4 bsh #define TIMER_FREQUENCY(pclk) ((pclk)/32) /* divider=1/32 */
59 1.1 bsh
60 1.1 bsh static unsigned int timer0_reload_value;
61 1.1 bsh static unsigned int timer0_prescaler;
62 1.4 bsh static unsigned int timer0_mseccount;
63 1.4 bsh
64 1.4 bsh #define usec_to_counter(t) \
65 1.4 bsh ((timer0_mseccount*(t))/1000)
66 1.1 bsh
67 1.4 bsh #define counter_to_usec(c,pclk) \
68 1.4 bsh (((c)*timer0_prescaler*1000)/(TIMER_FREQUENCY(pclk)/1000))
69 1.1 bsh
70 1.12 joerg static u_int s3c2800_get_timecount(struct timecounter *);
71 1.12 joerg
72 1.12 joerg static struct timecounter s3c2800_timecounter = {
73 1.12 joerg s3c2800_get_timecount, /* get_timecount */
74 1.12 joerg 0, /* no poll_pps */
75 1.12 joerg 0xffffffff, /* counter_mask */
76 1.12 joerg 0, /* frequency */
77 1.12 joerg "s3c23800", /* name */
78 1.12 joerg 100, /* quality */
79 1.12 joerg NULL, /* prev */
80 1.12 joerg NULL, /* next */
81 1.12 joerg };
82 1.12 joerg
83 1.12 joerg static volatile uint32_t s3c2800_base;
84 1.12 joerg
85 1.12 joerg static u_int
86 1.12 joerg s3c2800_get_timecount(struct timecounter *tc)
87 1.1 bsh {
88 1.1 bsh struct s3c2800_softc *sc = (struct s3c2800_softc *) s3c2xx0_softc;
89 1.12 joerg int save, int_pend0, int_pend1, count;
90 1.1 bsh
91 1.1 bsh save = disable_interrupts(I32_bit);
92 1.1 bsh
93 1.1 bsh again:
94 1.1 bsh int_pend0 = S3C2800_INT_TIMER0 &
95 1.1 bsh bus_space_read_4(sc->sc_sx.sc_iot, sc->sc_sx.sc_intctl_ioh,
96 1.1 bsh INTCTL_SRCPND);
97 1.1 bsh count = bus_space_read_2(sc->sc_sx.sc_iot, sc->sc_tmr0_ioh,
98 1.1 bsh TIMER_TMCNT);
99 1.1 bsh
100 1.1 bsh for (;;){
101 1.1 bsh
102 1.1 bsh int_pend1 = S3C2800_INT_TIMER0 &
103 1.1 bsh bus_space_read_4(sc->sc_sx.sc_iot, sc->sc_sx.sc_intctl_ioh,
104 1.1 bsh INTCTL_SRCPND);
105 1.1 bsh if( int_pend0 == int_pend1 )
106 1.1 bsh break;
107 1.1 bsh
108 1.1 bsh /*
109 1.1 bsh * Down counter reached to zero while we were reading
110 1.1 bsh * timer values. do it again to get consistent values.
111 1.1 bsh */
112 1.1 bsh int_pend0 = int_pend1;
113 1.1 bsh count = bus_space_read_2(sc->sc_sx.sc_iot, sc->sc_tmr0_ioh,
114 1.1 bsh TIMER_TMCNT);
115 1.1 bsh }
116 1.1 bsh
117 1.1 bsh if( __predict_false(count > timer0_reload_value) ){
118 1.1 bsh /*
119 1.1 bsh * Buggy Hardware Warning --- sometimes timer counter
120 1.1 bsh * reads bogus value like 0xffff. I guess it happens when
121 1.1 bsh * the timer is reloaded.
122 1.1 bsh */
123 1.1 bsh #if 0
124 1.1 bsh printf( "Bogus value from timer counter: %d\n", count );
125 1.1 bsh #endif
126 1.1 bsh goto again;
127 1.1 bsh }
128 1.1 bsh
129 1.1 bsh restore_interrupts(save);
130 1.1 bsh
131 1.12 joerg if (int_pend1)
132 1.12 joerg count -= timer0_reload_value;
133 1.1 bsh
134 1.12 joerg return s3c2800_base - count;
135 1.1 bsh }
136 1.1 bsh
137 1.9 perry static inline int
138 1.1 bsh read_timer(struct s3c2800_softc *sc)
139 1.1 bsh {
140 1.1 bsh int count;
141 1.1 bsh
142 1.1 bsh do {
143 1.1 bsh count = bus_space_read_2(sc->sc_sx.sc_iot, sc->sc_tmr0_ioh,
144 1.1 bsh TIMER_TMCNT);
145 1.1 bsh } while ( __predict_false(count > timer0_reload_value) );
146 1.1 bsh
147 1.1 bsh return count;
148 1.1 bsh }
149 1.1 bsh
150 1.1 bsh /*
151 1.1 bsh * delay:
152 1.1 bsh *
153 1.1 bsh * Delay for at least N microseconds.
154 1.1 bsh */
155 1.1 bsh void
156 1.1 bsh delay(u_int n)
157 1.1 bsh {
158 1.1 bsh struct s3c2800_softc *sc = (struct s3c2800_softc *) s3c2xx0_softc;
159 1.1 bsh int v0, v1, delta;
160 1.4 bsh u_int ucnt;
161 1.1 bsh
162 1.1 bsh if ( timer0_reload_value == 0 ){
163 1.1 bsh /* not initialized yet */
164 1.1 bsh while ( n-- > 0 ){
165 1.1 bsh int m;
166 1.1 bsh
167 1.1 bsh for (m=0; m<100; ++m )
168 1.1 bsh ;
169 1.1 bsh }
170 1.1 bsh return;
171 1.1 bsh }
172 1.1 bsh
173 1.1 bsh /* read down counter */
174 1.1 bsh v0 = read_timer(sc);
175 1.1 bsh
176 1.4 bsh ucnt = usec_to_counter(n);
177 1.4 bsh
178 1.4 bsh while( ucnt > 0 ) {
179 1.1 bsh v1 = read_timer(sc);
180 1.1 bsh delta = v0 - v1;
181 1.4 bsh if ( delta < 0 )
182 1.1 bsh delta += timer0_reload_value;
183 1.1 bsh #ifdef DEBUG
184 1.1 bsh if (delta < 0 || delta > timer0_reload_value)
185 1.1 bsh panic("wrong value from timer counter");
186 1.1 bsh #endif
187 1.1 bsh
188 1.4 bsh if((u_int)delta < ucnt){
189 1.4 bsh ucnt -= (u_int)delta;
190 1.4 bsh v0 = v1;
191 1.4 bsh }
192 1.4 bsh else {
193 1.4 bsh ucnt = 0;
194 1.4 bsh }
195 1.1 bsh }
196 1.1 bsh /*NOTREACHED*/
197 1.1 bsh }
198 1.4 bsh
199 1.1 bsh void
200 1.7 he setstatclockrate(int newhz)
201 1.1 bsh {
202 1.1 bsh }
203 1.1 bsh
204 1.12 joerg static int
205 1.12 joerg hardintr(void *arg)
206 1.12 joerg {
207 1.13 joerg atomic_add_32(&s3c2800_base, timer0_reload_value);
208 1.1 bsh
209 1.12 joerg hardclock((struct clockframe *)arg);
210 1.12 joerg
211 1.12 joerg return 1;
212 1.12 joerg }
213 1.1 bsh
214 1.13 joerg static int
215 1.13 joerg statintr(void *arg)
216 1.13 joerg {
217 1.13 joerg statclock((struct clockframe *)arg);
218 1.13 joerg
219 1.13 joerg return 1;
220 1.13 joerg }
221 1.13 joerg
222 1.1 bsh void
223 1.1 bsh cpu_initclocks()
224 1.1 bsh {
225 1.4 bsh struct s3c2800_softc *sc = (struct s3c2800_softc *)s3c2xx0_softc;
226 1.1 bsh long tc;
227 1.1 bsh int prescaler;
228 1.4 bsh int pclk = s3c2xx0_softc->sc_pclk;
229 1.1 bsh
230 1.1 bsh stathz = STATHZ;
231 1.1 bsh profhz = stathz;
232 1.1 bsh
233 1.1 bsh #define calc_time_constant(hz) \
234 1.1 bsh do { \
235 1.1 bsh prescaler = 1; \
236 1.1 bsh do { \
237 1.1 bsh ++prescaler; \
238 1.4 bsh tc = TIMER_FREQUENCY(pclk) /(hz)/ prescaler; \
239 1.1 bsh } while( tc > 65536 ); \
240 1.1 bsh } while(0)
241 1.1 bsh
242 1.1 bsh
243 1.1 bsh
244 1.1 bsh /* Use the channels 0 and 1 for hardclock and statclock, respectively */
245 1.4 bsh bus_space_write_4(sc->sc_sx.sc_iot, sc->sc_tmr0_ioh, TIMER_TMCON, 0);
246 1.4 bsh bus_space_write_4(sc->sc_sx.sc_iot, sc->sc_tmr1_ioh, TIMER_TMCON, 0);
247 1.4 bsh
248 1.1 bsh calc_time_constant(hz);
249 1.1 bsh bus_space_write_4(sc->sc_sx.sc_iot, sc->sc_tmr0_ioh, TIMER_TMDAT,
250 1.1 bsh ((prescaler - 1) << 16) | (tc - 1));
251 1.1 bsh timer0_prescaler = prescaler;
252 1.1 bsh timer0_reload_value = tc;
253 1.4 bsh timer0_mseccount = TIMER_FREQUENCY(pclk)/timer0_prescaler/1000 ;
254 1.1 bsh
255 1.1 bsh printf("clock: hz=%d stathz = %d PCLK=%d prescaler=%d tc=%ld\n",
256 1.4 bsh hz, stathz, pclk, prescaler, tc);
257 1.1 bsh
258 1.1 bsh calc_time_constant(stathz);
259 1.1 bsh bus_space_write_4(sc->sc_sx.sc_iot, sc->sc_tmr1_ioh, TIMER_TMDAT,
260 1.1 bsh ((prescaler - 1) << 16) | (tc - 1));
261 1.1 bsh
262 1.1 bsh
263 1.4 bsh s3c2800_intr_establish(S3C2800_INT_TIMER0, IPL_CLOCK,
264 1.4 bsh IST_NONE, hardintr, 0);
265 1.11 matt s3c2800_intr_establish(S3C2800_INT_TIMER1, IPL_HIGH,
266 1.4 bsh IST_NONE, statintr, 0);
267 1.1 bsh
268 1.1 bsh /* start timers */
269 1.4 bsh bus_space_write_4(sc->sc_sx.sc_iot, sc->sc_tmr0_ioh, TIMER_TMCON,
270 1.4 bsh TMCON_MUX_DIV32|TMCON_INTENA|TMCON_ENABLE);
271 1.4 bsh bus_space_write_4(sc->sc_sx.sc_iot, sc->sc_tmr1_ioh, TIMER_TMCON,
272 1.4 bsh TMCON_MUX_DIV4|TMCON_INTENA|TMCON_ENABLE);
273 1.1 bsh
274 1.1 bsh /* stop timer2 */
275 1.1 bsh {
276 1.1 bsh bus_space_handle_t tmp_ioh;
277 1.1 bsh
278 1.1 bsh bus_space_map(sc->sc_sx.sc_iot, S3C2800_TIMER2_BASE,
279 1.1 bsh S3C2800_TIMER_SIZE, 0, &tmp_ioh);
280 1.1 bsh
281 1.1 bsh bus_space_write_4(sc->sc_sx.sc_iot, tmp_ioh,
282 1.1 bsh TIMER_TMCON, 0);
283 1.1 bsh
284 1.1 bsh bus_space_unmap(sc->sc_sx.sc_iot, tmp_ioh,
285 1.1 bsh S3C2800_TIMER_SIZE);
286 1.1 bsh
287 1.1 bsh }
288 1.12 joerg
289 1.14 bsh s3c2800_timecounter.tc_frequency = TIMER_FREQUENCY(pclk) / timer0_prescaler;
290 1.12 joerg tc_init(&s3c2800_timecounter);
291 1.1 bsh }
292