Merged Thomas' comments.
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@ -2,7 +2,7 @@
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* \file message_queue.c
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* \brief A message queue used to exchange messages between two concurrent threads.
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* \author Thomas Stegemann
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* \version $Id: message_queue.c,v 1.1 2006/09/26 18:18:27 rschaten Exp $
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* \version $Id: message_queue.c,v 1.2 2006/09/29 22:30:03 rschaten Exp $
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*
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* License: See documentation.
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*/
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@ -13,22 +13,23 @@
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/** Structure of the global data of the queue */
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typedef struct S_messageQueue_GlobalData {
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messageQueue_QueuedMessage queue[messageQueue_Size]; /**< the queue itself */
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messageQueue_QueuedMessage queue[messageQueue_Size]; /**< the data elements of the queue */
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messageQueue_SizeType begin; /**< the current start of the queue */
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messageQueue_SizeType end; /**< the current end of the queue */
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messageQueue_SizeType end; /**< the current end of the queue, behind the last element */
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} messageQueue_GlobalData;
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/** Global data of the queue */
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static volatile messageQueue_GlobalData m_data;
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/**
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* Get the next entry fron the queue.
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* \param value Number of the current entry.
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* \return 0 if the value is larger than the queue, otherwise the next entry.
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* increments an messageQueue index
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* \param value position within the messageQueue
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* \return the following position within the messageQueue
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*/
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static inline messageQueue_SizeType messageQueue_next(messageQueue_SizeType value) {
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value++;
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if(value >= messageQueue_Size) {
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/* messageQueue is used circular */
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value= 0;
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}
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return value;
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@ -57,8 +58,7 @@ Boolean messageQueue_isEmpty(void) {
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}
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/**
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* Test if the queue is full. If it is full, new entries will overwrite the
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* first entries.
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* Test if the queue is full.
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* \return True if it is full, otherwise false.
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*/
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Boolean messageQueue_isFull(void) {
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@ -2,7 +2,7 @@
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* \file pwm_channels.c
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* \brief Manages the values of the displayed channels.
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* \author Thomas Stegemann
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* \version $Id: pwm_channels.c,v 1.1 2006/09/26 18:18:27 rschaten Exp $
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* \version $Id: pwm_channels.c,v 1.2 2006/09/29 22:30:03 rschaten Exp $
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*
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* License: See documentation.
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*/
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@ -41,9 +41,10 @@ void pwm_Channels_cleanup(void) {
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* \return Current message.
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*/
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static pwm_Channels_Message pwm_Channels_Message_get(pwm_Channels_ChannelBrightness channels[CHANNELS]) {
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int j;
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pwm_Channels_StepCounter i= 0;
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int j; /* index of the current channel */
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pwm_Channels_StepCounter i= 0; /* index of the current step */
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pwm_Channels_Message message;
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/* first step: switch on all channels at cycle 0 */
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message.step[i].field = 0;
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for (j = 0; j < CHANNELS; j++) {
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message.step[i].field |= channels[j].field;
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@ -52,14 +53,22 @@ static pwm_Channels_Message pwm_Channels_Message_get(pwm_Channels_ChannelBrightn
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for (j = 0; j < CHANNELS; j++) {
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if(channels[j].cycle == message.step[i].cycle) {
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/* if cycle for this channel is reached
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switch off channel in current step */
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message.step[i].field&= ~channels[j].field;
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} else {
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/* need another step for this channel:
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set end of the current step
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use copy of current step for next step
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and switch off this channel
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*/
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message.step[i].cycle= channels[j].cycle;
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i++;
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message.step[i]= message.step[i-1];
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message.step[i].field&= ~channels[j].field;
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}
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}
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/* last step ends at pwm_Timer_Cycles_Max */
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message.step[i].cycle= pwm_Timer_Cycles_Max;
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return message;
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}
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@ -95,7 +104,7 @@ void pwm_Channels_show(pwm_Channels channels) {
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pwm_Channels_Message message;
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pwm_Channels_ChannelBrightness channel_brightness[CHANNELS];
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for (i = 0; i < CHANNELS; i++) {
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channel_brightness[i].field = 1 << i; // 1 << i equals 2^i
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channel_brightness[i].field = 1 << i; // 1 << i equals 2^i: the channel i, uses the bit i
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channel_brightness[i].cycle = pwm_Channels_BrightnessToCycles(channels.channel[i]);
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}
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@ -2,7 +2,7 @@
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* \file pwm_timer.c
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* \brief Controls the actual PWM-output.
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* \author Thomas Stegemann
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* \version $Id: pwm_timer.c,v 1.1 2006/09/26 18:18:27 rschaten Exp $
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* \version $Id: pwm_timer.c,v 1.2 2006/09/29 22:30:03 rschaten Exp $
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*
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* License: See documentation.
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*/
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@ -106,7 +106,14 @@ SIGNAL(SIG_OUTPUT_COMPARE1A) {
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sei();
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do {
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if((m_data.step == pwm_Channels_StepCounter_Max) || (m_data.currentCycle == pwm_Timer_Cycles_Max)) {
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/* end of current cycle reached*/
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if(m_data.readDone) {
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/*
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message received
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start a new cycle with the new values
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swap active message and message for reading
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message for reading is free for further messages from queue
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*/
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pwm_Channels_Message* pSwap= m_data.pActive;
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m_data.pActive= m_data.pRead;
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m_data.pRead= pSwap;
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@ -115,14 +122,14 @@ SIGNAL(SIG_OUTPUT_COMPARE1A) {
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m_data.step= 0;
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sleep= 0;
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} else {
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/* error could not read a new channels message in a whole cycle */
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/* wait a complete cycle for the next message */
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//sleep= pwm_Timer_Cycles_Max;
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/* could not read a new channels message in a whole cycle */
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/* restart the cycle with the old values */
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m_data.currentCycle= 0;
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m_data.step= 0;
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sleep= 0;
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}
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} else {
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/* process current step, go to next step */
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pwm_Timer_switchLed(m_data.pActive->step[m_data.step].field);
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sleep= m_data.pActive->step[m_data.step].cycle - m_data.currentCycle;
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m_data.currentCycle= m_data.pActive->step[m_data.step].cycle;
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@ -131,6 +138,9 @@ SIGNAL(SIG_OUTPUT_COMPARE1A) {
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} while(pwm_Timer_sleep(sleep));
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if(!m_data.readDone && (sleep > pwm_Timer_Cycles_ReadMin)) {
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/*
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free space for reading and enough time to read: try to read
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*/
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if(messageQueue_read(m_data.pRead)) {
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m_data.readDone= True;
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}
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