238 lines
7.1 KiB
C
238 lines
7.1 KiB
C
/*
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* File: VibeOSKernelLinuxHRTime.c
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*
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* Description:
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* High Resolution Time helper functions for Linux.
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*
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* Portions Copyright (c) 2010-2011 Immersion Corporation. All Rights Reserved.
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*
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* This file contains Original Code and/or Modifications of Original Code
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* as defined in and that are subject to the GNU Public License v2 -
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* (the 'License'). You may not use this file except in compliance with the
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* License. You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA or contact
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* TouchSenseSales@immersion.com.
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*
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* The Original Code and all software distributed under the License are
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* distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
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* EXPRESS OR IMPLIED, AND IMMERSION HEREBY DISCLAIMS ALL SUCH WARRANTIES,
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* INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY, FITNESS
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* FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT. Please see
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* the License for the specific language governing rights and limitations
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* under the License.
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*/
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/*
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* Kernel high-resolution software timer is used as an example but another type
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* of timer (such as HW timer or standard software timer) might be used to achieve
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* the 5ms required rate.
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*/
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#ifndef CONFIG_HIGH_RES_TIMERS
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#warning "The Kernel does not have high resolution timers enabled. Either provide a non hr-timer implementation of VibeOSKernelLinuxTime.c or re-compile your kernel with CONFIG_HIGH_RES_TIMERS=y"
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#endif
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#include <linux/hrtimer.h>
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#include <linux/mutex.h>
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#define WATCHDOG_TIMEOUT 10 /* 10 timer cycles = 50ms */
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/* For compatibility with older Kernels */
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#ifndef DEFINE_SEMAPHORE
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#define DEFINE_SEMAPHORE(name) \
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struct semaphore name = __SEMAPHORE_INITIALIZER(name, 1)
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#endif
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/* Global variables */
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static bool g_bTimerStarted = false;
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static struct hrtimer g_tspTimer;
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static ktime_t g_ktFiveMs;
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static int g_nWatchdogCounter = 0;
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DEFINE_SEMAPHORE(g_hMutex);
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/* Forward declarations */
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static void VibeOSKernelLinuxStartTimer(void);
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static void VibeOSKernelLinuxStopTimer(void);
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static int VibeOSKernelProcessData(void* data);
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#define VIBEOSKERNELPROCESSDATA
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static inline int VibeSemIsLocked(struct semaphore *lock)
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{
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#if ((LINUX_VERSION_CODE & 0xFFFFFF) < KERNEL_VERSION(2,6,27))
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return atomic_read(&lock->count) != 1;
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#else
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return (lock->count) != 1;
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#endif
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}
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static enum hrtimer_restart tsp_timer_interrupt(struct hrtimer *timer)
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{
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/* Scheduling next timeout value right away */
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hrtimer_forward_now(timer, g_ktFiveMs);
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if(g_bTimerStarted) {
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if (VibeSemIsLocked(&g_hMutex))
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up(&g_hMutex);
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}
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return HRTIMER_RESTART;
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}
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static int VibeOSKernelProcessData(void* data)
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{
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int i;
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int nActuatorNotPlaying = 0;
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for (i = 0; i < NUM_ACTUATORS; i++) {
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actuator_samples_buffer *pCurrentActuatorSample = &(g_SamplesBuffer[i]);
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if (-1 == pCurrentActuatorSample->nIndexPlayingBuffer) {
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nActuatorNotPlaying++;
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if ((NUM_ACTUATORS == nActuatorNotPlaying) &&
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((++g_nWatchdogCounter) > WATCHDOG_TIMEOUT)) {
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VibeInt8 cZero[1] = {0};
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/* Nothing to play for all actuators,
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* turn off the timer when we reach
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* the watchdog tick count limit
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*/
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ImmVibeSPI_ForceOut_SetSamples(i, 8, 1, cZero);
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ImmVibeSPI_ForceOut_AmpDisable(i);
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VibeOSKernelLinuxStopTimer();
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/* Reset watchdog counter */
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g_nWatchdogCounter = 0;
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}
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}
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else {
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/* Play the current buffer */
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if (VIBE_E_FAIL == ImmVibeSPI_ForceOut_SetSamples(
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pCurrentActuatorSample-> actuatorSamples[(int)pCurrentActuatorSample->nIndexPlayingBuffer].nActuatorIndex,
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pCurrentActuatorSample->actuatorSamples[(int)pCurrentActuatorSample->nIndexPlayingBuffer].nBitDepth,
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pCurrentActuatorSample->actuatorSamples[(int)pCurrentActuatorSample->nIndexPlayingBuffer].nBufferSize,
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pCurrentActuatorSample->actuatorSamples[(int)pCurrentActuatorSample->nIndexPlayingBuffer].dataBuffer)) {
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/* VIBE_E_FAIL means NAK has been handled.
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* Schedule timer to restart 5 ms from now
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*/
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hrtimer_forward_now(&g_tspTimer, g_ktFiveMs);
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}
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pCurrentActuatorSample->nIndexOutputValue += pCurrentActuatorSample->actuatorSamples[(int)pCurrentActuatorSample->nIndexPlayingBuffer].nBufferSize;
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if (pCurrentActuatorSample->nIndexOutputValue >= pCurrentActuatorSample->actuatorSamples[(int)pCurrentActuatorSample->nIndexPlayingBuffer].nBufferSize) {
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/* Reach the end of the current buffer */
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pCurrentActuatorSample->actuatorSamples[(int)pCurrentActuatorSample->nIndexPlayingBuffer].nBufferSize = 0;
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/* Switch buffer */
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(pCurrentActuatorSample->nIndexPlayingBuffer) ^= 1;
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pCurrentActuatorSample->nIndexOutputValue = 0;
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/* Finished playing, disable amp for actuator (i) */
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if (g_bStopRequested) {
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pCurrentActuatorSample->nIndexPlayingBuffer = -1;
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ImmVibeSPI_ForceOut_AmpDisable(i);
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}
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}
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}
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}
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/* If finished playing, stop timer */
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if (g_bStopRequested) {
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VibeOSKernelLinuxStopTimer();
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/* Reset watchdog counter */
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g_nWatchdogCounter = 0;
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if (VibeSemIsLocked(&g_hMutex))
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up(&g_hMutex);
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return 1; /* tell the caller this is the last iteration */
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}
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return 0;
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}
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static void VibeOSKernelLinuxInitTimer(void)
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{
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/* Get a 5,000,000ns = 5ms time value */
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g_ktFiveMs = ktime_set(0, 5000000);
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hrtimer_init(&g_tspTimer, CLOCK_MONOTONIC, HRTIMER_MODE_REL);
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/* Initialize a 5ms-timer with tsp_timer_interrupt as timer callback
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(interrupt driven)*/
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g_tspTimer.function = tsp_timer_interrupt;
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}
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static void VibeOSKernelLinuxStartTimer(void)
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{
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int i;
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int res;
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/* Reset watchdog counter */
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g_nWatchdogCounter = 0;
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if (!g_bTimerStarted) {
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if (!VibeSemIsLocked(&g_hMutex))
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res = down_interruptible(&g_hMutex); /* start locked */
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g_bTimerStarted = true;
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/* Start the timer */
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hrtimer_start(&g_tspTimer, g_ktFiveMs, HRTIMER_MODE_REL);
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/* Don't block the write() function
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* after the first sample to allow the host sending
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* the next samples with no delay
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*/
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for (i = 0; i < NUM_ACTUATORS; i++) {
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if ((g_SamplesBuffer[i].actuatorSamples[0].nBufferSize) || (g_SamplesBuffer[i].actuatorSamples[1].nBufferSize)) {
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g_SamplesBuffer[i].nIndexOutputValue = 0;
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return;
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}
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}
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}
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if (0 != VibeOSKernelProcessData(NULL))
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return;
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/*
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* Use interruptible version of down to be safe
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* (try to not being stuck here
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* if the mutex is not freed for any reason)
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* wait for the mutex to be freed by the timer
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*/
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res = down_interruptible(&g_hMutex);
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if (res != 0) {
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DbgOut((KERN_INFO "VibeOSKernelLinuxStartTimer: down_interruptible interrupted by a signal.\n"));
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}
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}
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static void VibeOSKernelLinuxStopTimer(void)
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{
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int i;
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if (g_bTimerStarted) {
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g_bTimerStarted = false;
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hrtimer_cancel(&g_tspTimer);
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}
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/* Reset samples buffers */
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for (i = 0; i < NUM_ACTUATORS; i++) {
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g_SamplesBuffer[i].nIndexPlayingBuffer = -1;
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g_SamplesBuffer[i].actuatorSamples[0].nBufferSize = 0;
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g_SamplesBuffer[i].actuatorSamples[1].nBufferSize = 0;
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}
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g_bStopRequested = false;
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g_bIsPlaying = false;
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}
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static void VibeOSKernelLinuxTerminateTimer(void)
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{
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VibeOSKernelLinuxStopTimer();
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if (VibeSemIsLocked(&g_hMutex))
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up(&g_hMutex);
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}
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