3 * Texas Instruments <www.ti.com>
6 * Sysgo Real-Time Solutions, GmbH <www.elinos.com>
7 * Marius Groeger <mgroeger@sysgo.de>
10 * Sysgo Real-Time Solutions, GmbH <www.elinos.com>
11 * Alex Zuepke <azu@sysgo.de>
13 * (C) Copyright 2002-2004
14 * Gary Jennejohn, DENX Software Engineering, <gj@denx.de>
17 * Philippe Robin, ARM Ltd. <philippe.robin@arm.com>
19 * See file CREDITS for list of people who contributed to this
22 * This program is free software; you can redistribute it and/or
23 * modify it under the terms of the GNU General Public License as
24 * published by the Free Software Foundation; either version 2 of
25 * the License, or (at your option) any later version.
27 * This program is distributed in the hope that it will be useful,
28 * but WITHOUT ANY WARRANTY; without even the implied warranty of
29 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
30 * GNU General Public License for more details.
32 * You should have received a copy of the GNU General Public License
33 * along with this program; if not, write to the Free Software
34 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
39 #include <arm926ejs.h>
41 #define TIMER_LOAD_VAL 0xffffffff
43 /* macro to read the 32 bit timer */
44 #define READ_TIMER (*(volatile ulong *)(CFG_TIMERBASE+8))
46 static ulong timestamp
;
53 /* Start the decrementer ticking down from 0xffffffff */
54 *((int32_t *) (CFG_TIMERBASE
+ LOAD_TIM
)) = TIMER_LOAD_VAL
;
55 val
= MPUTIM_ST
| MPUTIM_AR
| MPUTIM_CLOCK_ENABLE
| (CFG_PVT
<< MPUTIM_PTV_BIT
);
56 *((int32_t *) (CFG_TIMERBASE
+ CNTL_TIMER
)) = val
;
58 /* init the timestamp and lastdec value */
65 * timer without interrupts
68 void reset_timer (void)
70 reset_timer_masked ();
73 ulong
get_timer (ulong base
)
75 return get_timer_masked () - base
;
78 void set_timer (ulong t
)
83 /* delay x useconds AND perserve advance timstamp value */
84 void udelay (unsigned long usec
)
88 if(usec
>= 1000){ /* if "big" number, spread normalization to seconds */
89 tmo
= usec
/ 1000; /* start to normalize for usec to ticks per sec */
90 tmo
*= CFG_HZ
; /* find number of "ticks" to wait to achieve target */
91 tmo
/= 1000; /* finish normalize. */
92 }else{ /* else small number, don't kill it prior to HZ multiply */
97 tmp
= get_timer (0); /* get current timestamp */
98 if( (tmo
+ tmp
+ 1) < tmp
) /* if setting this fordward will roll time stamp */
99 reset_timer_masked (); /* reset "advancing" timestamp to 0, set lastdec value */
101 tmo
+= tmp
; /* else, set advancing stamp wake up time */
103 while (get_timer_masked () < tmo
)/* loop till event */
107 void reset_timer_masked (void)
110 lastdec
= READ_TIMER
; /* capure current decrementer value time */
111 timestamp
= 0; /* start "advancing" time stamp from 0 */
114 ulong
get_timer_masked (void)
116 ulong now
= READ_TIMER
; /* current tick value */
118 if (lastdec
>= now
) { /* normal mode (non roll) */
120 timestamp
+= lastdec
- now
; /* move stamp fordward with absoulte diff ticks */
121 } else { /* we have overflow of the count down timer */
122 /* nts = ts + ld + (TLV - now)
123 * ts=old stamp, ld=time that passed before passing through -1
124 * (TLV-now) amount of time after passing though -1
125 * nts = new "advancing time stamp"...it could also roll and cause problems.
127 timestamp
+= lastdec
+ TIMER_LOAD_VAL
- now
;
134 /* waits specified delay value and resets timestamp */
135 void udelay_masked (unsigned long usec
)
141 if (usec
>= 1000) { /* if "big" number, spread normalization to seconds */
142 tmo
= usec
/ 1000; /* start to normalize for usec to ticks per sec */
143 tmo
*= CFG_HZ
; /* find number of "ticks" to wait to achieve target */
144 tmo
/= 1000; /* finish normalize. */
145 } else { /* else small number, don't kill it prior to HZ multiply */
150 endtime
= get_timer_masked () + tmo
;
153 ulong now
= get_timer_masked ();
154 diff
= endtime
- now
;
159 * This function is derived from PowerPC code (read timebase as long long).
160 * On ARM it just returns the timer value.
162 unsigned long long get_ticks(void)
168 * This function is derived from PowerPC code (timebase clock frequency).
169 * On ARM it returns the number of timer ticks per second.
171 ulong
get_tbclk (void)