Now makes use of the real_time_data structure.

No longer crashes due to architectural VM restrictions (ie. the area
is kernel only but writable now - should be cloned).


git-svn-id: file:///srv/svn/repos/haiku/trunk/current@9851 a95241bf-73f2-0310-859d-f6bbb57e9c96
This commit is contained in:
Axel Dörfler
2004-11-08 11:48:04 +00:00
parent 9e78877956
commit 99bd520827
+22 -21
View File
@@ -1,20 +1,21 @@
/*
** Copyright 2004, Axel Dörfler, [email protected]. All rights reserved.
** Copyright 2003, Jeff Ward, [email protected]. All rights reserved.
** Distributed under the terms of the OpenBeOS License.
** Distributed under the terms of the Haiku License.
*/
#include <OS.h>
#include <debug.h>
#include <stdlib.h>
#include <KernelExport.h>
#include <arch/real_time_clock.h>
#include <real_time_clock.h>
#include <real_time_data.h>
#include <vm_types.h>
#define RTC_REGION_SIZE B_PAGE_SIZE
#include <stdlib.h>
static bigtime_t *sBootTime;
static region_id sRtcArea;
static struct real_time_data *sRealTimeData;
/** Write the system time to CMOS. */
@@ -24,7 +25,7 @@ rtc_system_to_hw(void)
{
uint32 seconds;
seconds = (*sBootTime + system_time()) / 1000000;
seconds = (sRealTimeData->boot_time + system_time()) / 1000000;
arch_rtc_set_hw_time(seconds);
}
@@ -44,7 +45,7 @@ rtc_hw_to_system(void)
bigtime_t
rtc_boot_time(void)
{
return *sBootTime;
return sRealTimeData->boot_time;
}
@@ -53,9 +54,9 @@ rtc_print(void)
{
uint32 currentTime;
currentTime = (*sBootTime + system_time()) / 1000000;
currentTime = (sRealTimeData->boot_time + system_time()) / 1000000;
dprintf("system_time: %Ld\n", system_time());
dprintf("boot_time: %Ld\n", *sBootTime);
dprintf("boot_time: %Ld\n", sRealTimeData->boot_time);
dprintf("current_time: %lu\n", currentTime);
}
@@ -78,18 +79,18 @@ rtc_debug(int argc, char **argv)
status_t
rtc_init(kernel_args *ka)
{
//dprintf("rtc_init: entry\n");
add_debugger_command("rtc", &rtc_debug, "Set and test the real-time clock");
sRtcArea = create_area("rtc_region", (void**)&sBootTime, B_ANY_KERNEL_ADDRESS,
RTC_REGION_SIZE, B_NO_LOCK, B_READ_AREA);
if (sRtcArea < 0) {
area_id area = create_area("real time data", (void **)&sRealTimeData, B_ANY_KERNEL_ADDRESS,
PAGE_ALIGN(sizeof(struct real_time_data)), B_FULL_LOCK,
B_KERNEL_READ_AREA | B_KERNEL_WRITE_AREA);
if (area < B_OK) {
panic("rtc_init: error creating rtc region\n");
return B_NO_MEMORY;
return area;
}
// ToDo: clone this area for userland read-only access
rtc_hw_to_system();
add_debugger_command("rtc", &rtc_debug, "Set and test the real-time clock");
return B_OK;
}
@@ -101,7 +102,7 @@ rtc_init(kernel_args *ka)
void
set_real_time_clock(uint32 currentTime)
{
*sBootTime = currentTime * 1000000LL - system_time();
sRealTimeData->boot_time = currentTime * 1000000LL - system_time();
rtc_system_to_hw();
}
@@ -110,7 +111,7 @@ uint32
real_time_clock(void)
{
// ToDo: implement me - they might be used directly from libroot/os/time.c
return (*sBootTime + system_time()) / 1000000;
return (sRealTimeData->boot_time + system_time()) / 1000000;
}
@@ -118,7 +119,7 @@ bigtime_t
real_time_clock_usecs(void)
{
// ToDo: implement me - they might be used directly from libroot/os/time.c
return *sBootTime + system_time();
return sRealTimeData->boot_time + system_time();
}