blob: bb655930de5f951f2dbd24b16857d86ef377a86f [file] [log] [blame]
Po-Yu Chuang43a5f0d2009-11-11 17:27:30 +08001/*
2 * (C) Copyright 2009 Faraday Technology
3 * Po-Yu Chuang <ratbert@faraday-tech.com>
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
18 */
19
20#include <common.h>
21#include <asm/io.h>
22#include <asm/arch/ftpmu010.h>
23#include <asm/arch/fttmr010.h>
24
25static ulong timestamp;
26static ulong lastdec;
27
28static struct fttmr010 *tmr = (struct fttmr010 *)CONFIG_FTTMR010_BASE;
29static struct ftpmu010 *pmu = (struct ftpmu010 *)CONFIG_FTPMU010_BASE;
30
31#define TIMER_CLOCK 32768
32#define TIMER_LOAD_VAL 0xffffffff
33
34int timer_init(void)
35{
36 unsigned int oscc;
37 unsigned int cr;
38
39 debug("%s()\n", __func__);
40
41 /* disable timers */
42 writel(0, &tmr->cr);
43
44 /*
45 * use 32768Hz oscillator for RTC, WDT, TIMER
46 */
47
48 /* enable the 32768Hz oscillator */
49 oscc = readl(&pmu->OSCC);
50 oscc &= ~(FTPMU010_OSCC_OSCL_OFF | FTPMU010_OSCC_OSCL_TRI);
51 writel(oscc, &pmu->OSCC);
52
53 /* wait until ready */
54 while (!(readl(&pmu->OSCC) & FTPMU010_OSCC_OSCL_STABLE))
55 ;
56
57 /* select 32768Hz oscillator */
58 oscc = readl(&pmu->OSCC);
59 oscc |= FTPMU010_OSCC_OSCL_RTCLSEL;
60 writel(oscc, &pmu->OSCC);
61
62 /* setup timer */
63 writel(TIMER_LOAD_VAL, &tmr->timer3_load);
64 writel(TIMER_LOAD_VAL, &tmr->timer3_counter);
65 writel(0, &tmr->timer3_match1);
66 writel(0, &tmr->timer3_match2);
67
68 /* we don't want timer to issue interrupts */
69 writel(FTTMR010_TM3_MATCH1 |
70 FTTMR010_TM3_MATCH2 |
71 FTTMR010_TM3_OVERFLOW,
72 &tmr->interrupt_mask);
73
74 cr = readl(&tmr->cr);
75 cr |= FTTMR010_TM3_CLOCK; /* use external clock */
76 cr |= FTTMR010_TM3_ENABLE;
77 writel(cr, &tmr->cr);
78
79 /* init the timestamp and lastdec value */
80 reset_timer_masked();
81
82 return 0;
83}
84
85/*
86 * timer without interrupts
87 */
88
89/*
90 * reset time
91 */
92void reset_timer_masked(void)
93{
94 /* capure current decrementer value time */
95 lastdec = readl(&tmr->timer3_counter) / (TIMER_CLOCK / CONFIG_SYS_HZ);
96 timestamp = 0; /* start "advancing" time stamp from 0 */
97
98 debug("%s(): lastdec = %lx\n", __func__, lastdec);
99}
100
101void reset_timer(void)
102{
103 debug("%s()\n", __func__);
104 reset_timer_masked();
105}
106
107/*
108 * return timer ticks
109 */
110ulong get_timer_masked(void)
111{
112 /* current tick value */
113 ulong now = readl(&tmr->timer3_counter) / (TIMER_CLOCK / CONFIG_SYS_HZ);
114
115 debug("%s(): now = %lx, lastdec = %lx\n", __func__, now, lastdec);
116
117 if (lastdec >= now) {
118 /*
119 * normal mode (non roll)
120 * move stamp fordward with absoulte diff ticks
121 */
122 timestamp += lastdec - now;
123 } else {
124 /*
125 * we have overflow of the count down timer
126 *
127 * nts = ts + ld + (TLV - now)
128 * ts=old stamp, ld=time that passed before passing through -1
129 * (TLV-now) amount of time after passing though -1
130 * nts = new "advancing time stamp"...it could also roll and
131 * cause problems.
132 */
133 timestamp += lastdec + TIMER_LOAD_VAL - now;
134 }
135
136 lastdec = now;
137
138 debug("%s() returns %lx\n", __func__, timestamp);
139
140 return timestamp;
141}
142
143/*
144 * return difference between timer ticks and base
145 */
146ulong get_timer(ulong base)
147{
148 debug("%s(%lx)\n", __func__, base);
149 return get_timer_masked() - base;
150}
151
152void set_timer(ulong t)
153{
154 debug("%s(%lx)\n", __func__, t);
155 timestamp = t;
156}
157
158/* delay x useconds AND perserve advance timstamp value */
159void udelay(unsigned long usec)
160{
161 long tmo = usec * (TIMER_CLOCK / 1000) / 1000;
162 unsigned long now, last = readl(&tmr->timer3_counter);
163
164 debug("%s(%lu)\n", __func__, usec);
165 while (tmo > 0) {
166 now = readl(&tmr->timer3_counter);
167 if (now > last) /* count down timer overflow */
168 tmo -= TIMER_LOAD_VAL + last - now;
169 else
170 tmo -= last - now;
171 last = now;
172 }
173}
174
175/*
176 * This function is derived from PowerPC code (read timebase as long long).
177 * On ARM it just returns the timer value.
178 */
179unsigned long long get_ticks(void)
180{
181 debug("%s()\n", __func__);
182 return get_timer(0);
183}
184
185/*
186 * This function is derived from PowerPC code (timebase clock frequency).
187 * On ARM it returns the number of timer ticks per second.
188 */
189ulong get_tbclk(void)
190{
191 debug("%s()\n", __func__);
192 return CONFIG_SYS_HZ;
193}