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author | Andrew Ruder <andrew.ruder@elecsyscorp.com> | 2014-08-12 09:26:01 -0500 |
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committer | Stefano Babic <sbabic@denx.de> | 2014-09-16 12:53:09 +0200 |
commit | 816264fc6672dbb7c7b22ad9e67b8d0056873394 (patch) | |
tree | 7b34c0a35ea48fd8cef36d34c0e38215a22ff91b /arch/arm/cpu | |
parent | 93a0ea501e1eca1ae5d7d2624906b656c765e5e8 (diff) | |
download | u-boot-imx-816264fc6672dbb7c7b22ad9e67b8d0056873394.zip u-boot-imx-816264fc6672dbb7c7b22ad9e67b8d0056873394.tar.gz u-boot-imx-816264fc6672dbb7c7b22ad9e67b8d0056873394.tar.bz2 |
arm: mx35: use common timer functions
This patch moves mx35 to the common timer functions added in commit
8dfafdd - Introduce common timer functions <Rob Herring>
The (removed) mx35 timer code (specifically __udelay()) could deadlock at
the 32-bit boundary of get_ticks(). get_ticks() returned a 32-bit value
cast up to a 64-bit value. If get_ticks() + tmo in __udelay() crossed
the 32-bit boundary, the while condition became unconditionally true and
locks the processor. Rather than patch the specific mx35 issues, simply
move everything over to the common code.
Signed-off-by: Andrew Ruder <andrew.ruder@elecsyscorp.com>
Cc: Marek Vasut <marex@denx.de>
Cc: Stefano Babic <sbabic@denx.de>
Diffstat (limited to 'arch/arm/cpu')
-rw-r--r-- | arch/arm/cpu/arm1136/mx35/timer.c | 83 |
1 files changed, 0 insertions, 83 deletions
diff --git a/arch/arm/cpu/arm1136/mx35/timer.c b/arch/arm/cpu/arm1136/mx35/timer.c index cc6166f..4edf533 100644 --- a/arch/arm/cpu/arm1136/mx35/timer.c +++ b/arch/arm/cpu/arm1136/mx35/timer.c @@ -9,16 +9,11 @@ #include <common.h> #include <asm/io.h> -#include <div64.h> #include <asm/arch/imx-regs.h> #include <asm/arch/crm_regs.h> -#include <asm/arch/clock.h> DECLARE_GLOBAL_DATA_PTR; -#define timestamp (gd->arch.tbl) -#define lastinc (gd->arch.lastinc) - /* General purpose timers bitfields */ #define GPTCR_SWR (1<<15) /* Software reset */ #define GPTCR_FRR (1<<9) /* Freerun / restart */ @@ -26,27 +21,6 @@ DECLARE_GLOBAL_DATA_PTR; #define GPTCR_TEN (1) /* Timer enable */ /* - * "time" is measured in 1 / CONFIG_SYS_HZ seconds, - * "tick" is internal timer period - */ -/* ~0.4% error - measured with stop-watch on 100s boot-delay */ -static inline unsigned long long tick_to_time(unsigned long long tick) -{ - tick *= CONFIG_SYS_HZ; - do_div(tick, MXC_CLK32); - - return tick; -} - -static inline unsigned long long us_to_tick(unsigned long long us) -{ - us = us * MXC_CLK32 + 999999; - do_div(us, 1000000); - - return us; -} - -/* * nothing really to do with interrupts, just starts up a counter. * The 32KHz 32-bit timer overruns in 134217 seconds */ @@ -71,60 +45,3 @@ int timer_init(void) return 0; } - -unsigned long long get_ticks(void) -{ - struct gpt_regs *gpt = (struct gpt_regs *)GPT1_BASE_ADDR; - ulong now = readl(&gpt->counter); /* current tick value */ - - if (now >= lastinc) { - /* - * normal mode (non roll) - * move stamp forward with absolut diff ticks - */ - timestamp += (now - lastinc); - } else { - /* we have rollover of incrementer */ - timestamp += (0xFFFFFFFF - lastinc) + now; - } - lastinc = now; - return timestamp; -} - -ulong get_timer_masked(void) -{ - /* - * get_ticks() returns a long long (64 bit), it wraps in - * 2^64 / MXC_CLK32 = 2^64 / 2^15 = 2^49 ~ 5 * 10^14 (s) ~ - * 5 * 10^9 days... and get_ticks() * CONFIG_SYS_HZ wraps in - * 5 * 10^6 days - long enough. - */ - return tick_to_time(get_ticks()); -} - -ulong get_timer(ulong base) -{ - return get_timer_masked() - base; -} - -/* delay x useconds AND preserve advance timstamp value */ -void __udelay(unsigned long usec) -{ - unsigned long long tmp; - ulong tmo; - - tmo = us_to_tick(usec); - tmp = get_ticks() + tmo; /* get current timestamp */ - - while (get_ticks() < tmp) /* loop till event */ - /*NOP*/; -} - -/* - * This function is derived from PowerPC code (timebase clock frequency). - * On ARM it returns the number of timer ticks per second. - */ -ulong get_tbclk(void) -{ - return MXC_CLK32; -} |