Commit c47375f3 authored by Bill Pemberton's avatar Bill Pemberton Committed by Greg Kroah-Hartman

Staging: comedi: remove C99 comments in hwdrv_apci1500.c

Signed-off-by: default avatarBill Pemberton <wfp5p@virginia.edu>
Signed-off-by: default avatarGreg Kroah-Hartman <gregkh@suse.de>
parent 0109253d
......@@ -157,16 +157,16 @@ int i_APCI1500_ConfigDigitalInputEvent(struct comedi_device * dev,
if (data[0] == 1) {
i_MaxChannel = 8;
} // if (data[0] == 1)
} /* if (data[0] == 1) */
else {
if (data[0] == 2) {
i_MaxChannel = 6;
} // if(data[0]==2)
} /* if(data[0]==2) */
else {
printk("\nThe specified port event does not exist\n");
return -EINVAL;
} //else if(data[0]==2)
} //else if (data[0] == 1)
} /* else if(data[0]==2) */
} /* else if (data[0] == 1) */
switch (data[1]) {
case 0:
data[1] = APCI1500_AND;
......@@ -180,7 +180,7 @@ int i_APCI1500_ConfigDigitalInputEvent(struct comedi_device * dev,
default:
printk("\nThe specified interrupt logic does not exist\n");
return -EINVAL;
} //switch(data[1]);
} /* switch(data[1]); */
i_Logic = data[1];
for (i_Count = i_MaxChannel, i = 0; i_Count > 0; i_Count--, i++) {
......@@ -224,8 +224,8 @@ int i_APCI1500_ConfigDigitalInputEvent(struct comedi_device * dev,
default:
printk("\nThe option indicated in the event mask does not exist\n");
return -EINVAL;
} // switch(i_EventMask)
} //for (i_Count = i_MaxChannel; i_Count >0;i_Count --)
} /* switch(i_EventMask) */
} /* for (i_Count = i_MaxChannel; i_Count >0;i_Count --) */
if (data[0] == 1) {
/****************************/
......@@ -247,7 +247,7 @@ int i_APCI1500_ConfigDigitalInputEvent(struct comedi_device * dev,
/********************************************/
printk("\nTransition error on an OR PRIORITY logic\n");
return -EINVAL;
} // if (data[1]== APCI1500_OR_PRIORITY && i_PatternTransition != 0)
} /* if (data[1]== APCI1500_OR_PRIORITY && i_PatternTransition != 0) */
/*************************************/
/* Tests if more than one transition */
......@@ -261,7 +261,7 @@ int i_APCI1500_ConfigDigitalInputEvent(struct comedi_device * dev,
((i_PatternTransition >>
i_Count) & 0x1);
} //for (i_Count = 0; i_Count < 8; i_Count++)
} /* for (i_Count = 0; i_Count < 8; i_Count++) */
if (i_PatternTransitionCount > 1) {
/****************************************/
......@@ -269,8 +269,8 @@ int i_APCI1500_ConfigDigitalInputEvent(struct comedi_device * dev,
/****************************************/
printk("\n Transition error on an AND logic\n");
return -EINVAL;
} // if (i_PatternTransitionCount > 1)
} // if (data[1]== APCI1500_AND)
} /* if (i_PatternTransitionCount > 1) */
} /* if (data[1]== APCI1500_AND) */
/*****************************************************************/
/* Selects the APCI1500_RW_MASTER_CONFIGURATION_CONTROL register */
......@@ -359,12 +359,12 @@ int i_APCI1500_ConfigDigitalInputEvent(struct comedi_device * dev,
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} // if(data[1]==APCI1500_AND||data[1]==APCI1500_OR||data[1]==APCI1500_OR_PRIORITY)
} /* if(data[1]==APCI1500_AND||data[1]==APCI1500_OR||data[1]==APCI1500_OR_PRIORITY) */
else {
printk("\nThe choice for interrupt logic does not exist\n");
return -EINVAL;
} // else }// if(data[1]==APCI1500_AND||data[1]==APCI1500_OR||data[1]==APCI1500_OR_PRIORITY)
} // if (data[0]== 1)
} /* else }// if(data[1]==APCI1500_AND||data[1]==APCI1500_OR||data[1]==APCI1500_OR_PRIORITY) */
} /* if (data[0]== 1) */
/************************************/
/* Test if event setting for port 2 */
......@@ -487,12 +487,12 @@ int i_APCI1500_ConfigDigitalInputEvent(struct comedi_device * dev,
outb(0xF4,
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} // if (data[1] == APCI1500_OR)
} /* if (data[1] == APCI1500_OR) */
else {
printk("\nThe choice for interrupt logic does not exist\n");
return -EINVAL;
} //elseif (data[1] == APCI1500_OR)
} //if(data[0]==2)
} /* elseif (data[1] == APCI1500_OR) */
} /* if(data[0]==2) */
return insn->n;
}
......@@ -589,12 +589,12 @@ int i_APCI1500_StartStopInputEvent(struct comedi_device * dev, struct comedi_sub
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} // if(i_Event1Status==1)
} /* if(i_Event1Status==1) */
else {
printk("\nEvent 1 not initialised\n");
return -EINVAL;
} //else if(i_Event1Status==1)
} //if (data[1]==1)
} /* else if(i_Event1Status==1) */
} /* if (data[1]==1) */
if (data[1] == 2) {
if (i_Event2Status == 1) {
......@@ -640,17 +640,17 @@ int i_APCI1500_StartStopInputEvent(struct comedi_device * dev, struct comedi_sub
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
i_Event2InterruptStatus = 1;
} // if(i_Event2Status==1)
} /* if(i_Event2Status==1) */
else {
printk("\nEvent 2 not initialised\n");
return -EINVAL;
} //else if(i_Event2Status==1)
} // if(data[1]==2)
} // if (data[1] == 1 || data[0] == 2)
} /* else if(i_Event2Status==1) */
} /* if(data[1]==2) */
} /* if (data[1] == 1 || data[0] == 2) */
else {
printk("\nThe port parameter is in error\n");
return -EINVAL;
} //else if (data[1] == 1 || data[0] == 2)
} /* else if (data[1] == 1 || data[0] == 2) */
break;
......@@ -701,12 +701,12 @@ int i_APCI1500_StartStopInputEvent(struct comedi_device * dev, struct comedi_sub
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
i_Event1InterruptStatus = 0;
} // if(i_Event1Status==1)
} /* if(i_Event1Status==1) */
else {
printk("\nEvent 1 not initialised\n");
return -EINVAL;
} //else if(i_Event1Status==1)
} //if (data[1]==1)
} /* else if(i_Event1Status==1) */
} /* if (data[1]==1) */
if (data[1] == 2) {
/*****************************/
/* Test if event initialised */
......@@ -744,23 +744,23 @@ int i_APCI1500_StartStopInputEvent(struct comedi_device * dev, struct comedi_sub
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
i_Event2InterruptStatus = 0;
} // if(i_Event2Status==1)
} /* if(i_Event2Status==1) */
else {
printk("\nEvent 2 not initialised\n");
return -EINVAL;
} //else if(i_Event2Status==1)
} //if(data[1]==2)
} /* else if(i_Event2Status==1) */
} /* if(data[1]==2) */
} // if (data[1] == 1 || data[1] == 2)
} /* if (data[1] == 1 || data[1] == 2) */
else {
printk("\nThe port parameter is in error\n");
return -EINVAL;
} //else if (data[1] == 1 || data[1] == 2)
} /* else if (data[1] == 1 || data[1] == 2) */
break;
default:
printk("\nThe option of START/STOP logic does not exist\n");
return -EINVAL;
} //switch(data[0])
} /* switch(data[0]) */
return insn->n;
}
......@@ -973,11 +973,11 @@ int i_APCI1500_ReadMoreDigitalInput(struct comedi_device * dev, struct comedi_su
(unsigned int) inw(devpriv->i_IobaseAddon +
APCI1500_DIGITAL_IP);
*data = (ui_TmpValue >> ui_Channel) & 0x1;
} //if(ui_Channel >= 0 && ui_Channel <=15)
} /* if(ui_Channel >= 0 && ui_Channel <=15) */
else {
printk("\nThe channel specification are in error\n");
return -EINVAL; // "sorry channel spec wrong "
} //else if(ui_Channel >= 0 && ui_Channel <=15)
return -EINVAL; /* "sorry channel spec wrong " */
} /* else if(ui_Channel >= 0 && ui_Channel <=15) */
break;
case 1:
......@@ -1001,14 +1001,14 @@ int i_APCI1500_ReadMoreDigitalInput(struct comedi_device * dev, struct comedi_su
default:
printk("\nSpecified channel cannot be read \n");
return -EINVAL; // "sorry channel spec wrong "
return -EINVAL; /* "sorry channel spec wrong " */
break;
} //switch(ui_Channel)
} /* switch(ui_Channel) */
break;
default:
printk("\nThe specified functionality does not exist\n");
return -EINVAL;
} //switch(data[0])
} /* switch(data[0]) */
return insn->n;
}
......@@ -1073,18 +1073,18 @@ int i_APCI1500_WriteDigitalOutput(struct comedi_device * dev, struct comedi_subd
static unsigned int ui_Temp = 0;
unsigned int ui_Temp1;
unsigned int ui_NoOfChannel = CR_CHAN(insn->chanspec); // get the channel
unsigned int ui_NoOfChannel = CR_CHAN(insn->chanspec); /* get the channel */
if (!devpriv->b_OutputMemoryStatus) {
ui_Temp = 0;
} //if(!devpriv->b_OutputMemoryStatus )
} /* if(!devpriv->b_OutputMemoryStatus ) */
if (data[3] == 0) {
if (data[1] == 0) {
data[0] = (data[0] << ui_NoOfChannel) | ui_Temp;
outw(data[0],
devpriv->i_IobaseAddon + APCI1500_DIGITAL_OP);
} //if(data[1]==0)
} /* if(data[1]==0) */
else {
if (data[1] == 1) {
switch (ui_NoOfChannel) {
......@@ -1113,19 +1113,19 @@ int i_APCI1500_WriteDigitalOutput(struct comedi_device * dev, struct comedi_subd
default:
comedi_error(dev, " chan spec wrong");
return -EINVAL; // "sorry channel spec wrong "
return -EINVAL; /* "sorry channel spec wrong " */
} //switch(ui_NoOfChannels)
} /* switch(ui_NoOfChannels) */
outw(data[0],
devpriv->i_IobaseAddon +
APCI1500_DIGITAL_OP);
} // if(data[1]==1)
} /* if(data[1]==1) */
else {
printk("\nSpecified channel not supported\n");
} //else if(data[1]==1)
} //elseif(data[1]==0)
} //if(data[3]==0)
} /* else if(data[1]==1) */
} /* elseif(data[1]==0) */
} /* if(data[3]==0) */
else {
if (data[3] == 1) {
if (data[1] == 0) {
......@@ -1140,7 +1140,7 @@ int i_APCI1500_WriteDigitalOutput(struct comedi_device * dev, struct comedi_subd
outw(data[0],
devpriv->i_IobaseAddon +
APCI1500_DIGITAL_OP);
} //if(data[1]==0)
} /* if(data[1]==0) */
else {
if (data[1] == 1) {
switch (ui_NoOfChannel) {
......@@ -1190,24 +1190,24 @@ int i_APCI1500_WriteDigitalOutput(struct comedi_device * dev, struct comedi_subd
default:
comedi_error(dev,
" chan spec wrong");
return -EINVAL; // "sorry channel spec wrong "
return -EINVAL; /* "sorry channel spec wrong " */
} //switch(ui_NoOfChannels)
} /* switch(ui_NoOfChannels) */
outw(data[0],
devpriv->i_IobaseAddon +
APCI1500_DIGITAL_OP);
} // if(data[1]==1)
} /* if(data[1]==1) */
else {
printk("\nSpecified channel not supported\n");
} //else if(data[1]==1)
} //elseif(data[1]==0)
} //if(data[3]==1);
} /* else if(data[1]==1) */
} /* elseif(data[1]==0) */
} /* if(data[3]==1); */
else {
printk("\nSpecified functionality does not exist\n");
return -EINVAL;
} //if else data[3]==1)
} //if else data[3]==0)
} /* if else data[3]==1) */
} /* if else data[3]==0) */
ui_Temp = data[0];
return (insn->n);;
}
......@@ -1268,20 +1268,20 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
devpriv->tsk_Current = current;
//Selection of the input clock
/* Selection of the input clock */
if (data[0] == 0 || data[0] == 1 || data[0] == 2) {
outw(data[0], devpriv->i_IobaseAddon + APCI1500_CLK_SELECT);
} // if(data[0]==0||data[0]==1||data[0]==2)
} /* if(data[0]==0||data[0]==1||data[0]==2) */
else {
if (data[0] != 3) {
printk("\nThe option for input clock selection does not exist\n");
return -EINVAL;
} // if(data[0]!=3)
} //elseif(data[0]==0||data[0]==1||data[0]==2)
//Select the counter/timer
} /* if(data[0]!=3) */
} /* elseif(data[0]==0||data[0]==1||data[0]==2) */
/* Select the counter/timer */
switch (data[1]) {
case COUNTER1:
//selecting counter or timer
/* selecting counter or timer */
switch (data[2]) {
case 0:
data[2] = APCI1500_COUNTER;
......@@ -1292,9 +1292,9 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
default:
printk("\nThis choice is not a timer nor a counter\n");
return -EINVAL;
} // switch(data[2])
} /* switch(data[2]) */
//Selecting single or continuous mode
/* Selecting single or continuous mode */
switch (data[4]) {
case 0:
data[4] = APCI1500_CONTINUOUS;
......@@ -1305,7 +1305,7 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
default:
printk("\nThis option for single/continuous mode does not exist\n");
return -EINVAL;
} // switch(data[4])
} /* switch(data[4]) */
i_TimerCounterMode = data[2] | data[4] | 7;
/*************************/
......@@ -1428,21 +1428,21 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
outb(0x2,
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} //if(data[7]== APCI1500_ENABLE ||data[7]== APCI1500_DISABLE)
} /* if(data[7]== APCI1500_ENABLE ||data[7]== APCI1500_DISABLE) */
else {
printk("\nError in selection of interrupt enable or disable\n");
return -EINVAL;
} //elseif(data[7]== APCI1500_ENABLE ||data[7]== APCI1500_DISABLE)
} // if ((data[3]>= 0) && (data[3] <= 65535))
} /* elseif(data[7]== APCI1500_ENABLE ||data[7]== APCI1500_DISABLE) */
} /* if ((data[3]>= 0) && (data[3] <= 65535)) */
else {
printk("\nError in selection of reload value\n");
return -EINVAL;
} //else if ((data[3]>= 0) && (data[3] <= 65535))
} /* else if ((data[3]>= 0) && (data[3] <= 65535)) */
i_TimerCounterWatchdogInterrupt = data[7];
i_TimerCounter1Init = 1;
break;
case COUNTER2: //selecting counter or timer
case COUNTER2: /* selecting counter or timer */
switch (data[2]) {
case 0:
data[2] = APCI1500_COUNTER;
......@@ -1453,9 +1453,9 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
default:
printk("\nThis choice is not a timer nor a counter\n");
return -EINVAL;
} // switch(data[2])
} /* switch(data[2]) */
//Selecting single or continuous mode
/* Selecting single or continuous mode */
switch (data[4]) {
case 0:
data[4] = APCI1500_CONTINUOUS;
......@@ -1466,9 +1466,9 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
default:
printk("\nThis option for single/continuous mode does not exist\n");
return -EINVAL;
} // switch(data[4])
} /* switch(data[4]) */
//Selecting software or hardware trigger
/* Selecting software or hardware trigger */
switch (data[5]) {
case 0:
data[5] = APCI1500_SOFTWARE_TRIGGER;
......@@ -1479,9 +1479,9 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
default:
printk("\nThis choice for software or hardware trigger does not exist\n");
return -EINVAL;
} // switch(data[5])
} /* switch(data[5]) */
//Selecting software or hardware gate
/* Selecting software or hardware gate */
switch (data[6]) {
case 0:
data[6] = APCI1500_SOFTWARE_GATE;
......@@ -1492,7 +1492,7 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
default:
printk("\nThis choice for software or hardware gate does not exist\n");
return -EINVAL;
} // switch(data[6])
} /* switch(data[6]) */
i_TimerCounterMode = data[2] | data[4] | data[5] | data[6] | 7;
......@@ -1616,21 +1616,21 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
outb(0x2,
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} //if(data[7]== APCI1500_ENABLE ||data[7]== APCI1500_DISABLE)
} /* if(data[7]== APCI1500_ENABLE ||data[7]== APCI1500_DISABLE) */
else {
printk("\nError in selection of interrupt enable or disable\n");
return -EINVAL;
} //elseif(data[7]== APCI1500_ENABLE ||data[7]== APCI1500_DISABLE)
} // if ((data[3]>= 0) && (data[3] <= 65535))
} /* elseif(data[7]== APCI1500_ENABLE ||data[7]== APCI1500_DISABLE) */
} /* if ((data[3]>= 0) && (data[3] <= 65535)) */
else {
printk("\nError in selection of reload value\n");
return -EINVAL;
} //else if ((data[3]>= 0) && (data[3] <= 65535))
} /* else if ((data[3]>= 0) && (data[3] <= 65535)) */
i_TimerCounterWatchdogInterrupt = data[7];
i_TimerCounter2Init = 1;
break;
case COUNTER3: //selecting counter or watchdog
case COUNTER3: /* selecting counter or watchdog */
switch (data[2]) {
case 0:
data[2] = APCI1500_COUNTER;
......@@ -1641,9 +1641,9 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
default:
printk("\nThis choice is not a watchdog nor a counter\n");
return -EINVAL;
} // switch(data[2])
} /* switch(data[2]) */
//Selecting single or continuous mode
/* Selecting single or continuous mode */
switch (data[4]) {
case 0:
data[4] = APCI1500_CONTINUOUS;
......@@ -1654,9 +1654,9 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
default:
printk("\nThis option for single/continuous mode does not exist\n");
return -EINVAL;
} // switch(data[4])
} /* switch(data[4]) */
//Selecting software or hardware gate
/* Selecting software or hardware gate */
switch (data[6]) {
case 0:
data[6] = APCI1500_SOFTWARE_GATE;
......@@ -1667,7 +1667,7 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
default:
printk("\nThis choice for software or hardware gate does not exist\n");
return -EINVAL;
} // switch(data[6])
} /* switch(data[6]) */
/*****************************/
/* Test if used for watchdog */
......@@ -1680,10 +1680,10 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
/* - Pulses output */
/*****************************/
i_TimerCounterMode = data[2] | data[4] | 0x54;
} //if (data[2] == APCI1500_WATCHDOG)
} /* if (data[2] == APCI1500_WATCHDOG) */
else {
i_TimerCounterMode = data[2] | data[4] | data[6] | 7;
} //elseif (data[2] == APCI1500_WATCHDOG)
} /* elseif (data[2] == APCI1500_WATCHDOG) */
/*************************/
/* Test the reload value */
/*************************/
......@@ -1809,25 +1809,25 @@ int i_APCI1500_ConfigCounterTimerWatchdog(struct comedi_device * dev,
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} //elseif(data[2]==APCI1500_COUNTER)
} /* elseif(data[2]==APCI1500_COUNTER) */
} //if(data[7]== APCI1500_ENABLE ||data[7]== APCI1500_DISABLE)
} /* if(data[7]== APCI1500_ENABLE ||data[7]== APCI1500_DISABLE) */
else {
printk("\nError in selection of interrupt enable or disable\n");
return -EINVAL;
} //elseif(data[7]== APCI1500_ENABLE ||data[7]== APCI1500_DISABLE)
} // if ((data[3]>= 0) && (data[3] <= 65535))
} /* elseif(data[7]== APCI1500_ENABLE ||data[7]== APCI1500_DISABLE) */
} /* if ((data[3]>= 0) && (data[3] <= 65535)) */
else {
printk("\nError in selection of reload value\n");
return -EINVAL;
} //else if ((data[3]>= 0) && (data[3] <= 65535))
} /* else if ((data[3]>= 0) && (data[3] <= 65535)) */
i_TimerCounterWatchdogInterrupt = data[7];
i_WatchdogCounter3Init = 1;
break;
default:
printk("\nThe specified counter\timer option does not exist\n");
} //switch(data[1])
} /* switch(data[1]) */
i_CounterLogic = data[2];
return insn->n;
}
......@@ -1871,11 +1871,11 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
case START:
if (i_TimerCounter1Init == 1) {
if (i_TimerCounterWatchdogInterrupt == 1) {
i_CommandAndStatusValue = 0xC4; //Enable the interrupt
} // if(i_TimerCounterWatchdogInterrupt==1)
i_CommandAndStatusValue = 0xC4; /* Enable the interrupt */
} /* if(i_TimerCounterWatchdogInterrupt==1) */
else {
i_CommandAndStatusValue = 0xE4; //disable the interrupt
} //elseif(i_TimerCounterWatchdogInterrupt==1)
i_CommandAndStatusValue = 0xE4; /* disable the interrupt */
} /* elseif(i_TimerCounterWatchdogInterrupt==1) */
/**************************/
/* Starts timer/counter 1 */
/**************************/
......@@ -1889,7 +1889,7 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
outb(i_CommandAndStatusValue,
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} //if( i_TimerCounter1Init==1)
} /* if( i_TimerCounter1Init==1) */
else {
printk("\nCounter/Timer1 not configured\n");
return -EINVAL;
......@@ -1922,14 +1922,14 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
/************************/
i_CommandAndStatusValue = 0x6;
} //if( i_TimerCounter1Enabled==1)
} /* if( i_TimerCounter1Enabled==1) */
else {
/***************/
/* Set Trigger */
/***************/
i_CommandAndStatusValue = 0x2;
} //elseif(i_TimerCounter1Enabled==1)
} /* elseif(i_TimerCounter1Enabled==1) */
/********************************************/
/* Selects the commands and status register */
......@@ -1940,7 +1940,7 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
outb(i_CommandAndStatusValue,
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} //if( i_TimerCounter1Init==1)
} /* if( i_TimerCounter1Init==1) */
else {
printk("\nCounter/Timer1 not configured\n");
return -EINVAL;
......@@ -1950,7 +1950,7 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
default:
printk("\nThe specified option for start/stop/trigger does not exist\n");
return -EINVAL;
} //switch(data[1])
} /* switch(data[1]) */
break;
case COUNTER2:
......@@ -1958,11 +1958,11 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
case START:
if (i_TimerCounter2Init == 1) {
if (i_TimerCounterWatchdogInterrupt == 1) {
i_CommandAndStatusValue = 0xC4; //Enable the interrupt
} // if(i_TimerCounterWatchdogInterrupt==1)
i_CommandAndStatusValue = 0xC4; /* Enable the interrupt */
} /* if(i_TimerCounterWatchdogInterrupt==1) */
else {
i_CommandAndStatusValue = 0xE4; //disable the interrupt
} //elseif(i_TimerCounterWatchdogInterrupt==1)
i_CommandAndStatusValue = 0xE4; /* disable the interrupt */
} /* elseif(i_TimerCounterWatchdogInterrupt==1) */
/**************************/
/* Starts timer/counter 2 */
/**************************/
......@@ -1976,7 +1976,7 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
outb(i_CommandAndStatusValue,
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} //if( i_TimerCounter2Init==1)
} /* if( i_TimerCounter2Init==1) */
else {
printk("\nCounter/Timer2 not configured\n");
return -EINVAL;
......@@ -2008,14 +2008,14 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
/************************/
i_CommandAndStatusValue = 0x6;
} //if( i_TimerCounter2Enabled==1)
} /* if( i_TimerCounter2Enabled==1) */
else {
/***************/
/* Set Trigger */
/***************/
i_CommandAndStatusValue = 0x2;
} //elseif(i_TimerCounter2Enabled==1)
} /* elseif(i_TimerCounter2Enabled==1) */
/********************************************/
/* Selects the commands and status register */
......@@ -2026,7 +2026,7 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
outb(i_CommandAndStatusValue,
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} //if( i_TimerCounter2Init==1)
} /* if( i_TimerCounter2Init==1) */
else {
printk("\nCounter/Timer2 not configured\n");
return -EINVAL;
......@@ -2035,7 +2035,7 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
default:
printk("\nThe specified option for start/stop/trigger does not exist\n");
return -EINVAL;
} //switch(data[1])
} /* switch(data[1]) */
break;
case COUNTER3:
switch (data[1]) {
......@@ -2043,11 +2043,11 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
if (i_WatchdogCounter3Init == 1) {
if (i_TimerCounterWatchdogInterrupt == 1) {
i_CommandAndStatusValue = 0xC4; //Enable the interrupt
} // if(i_TimerCounterWatchdogInterrupt==1)
i_CommandAndStatusValue = 0xC4; /* Enable the interrupt */
} /* if(i_TimerCounterWatchdogInterrupt==1) */
else {
i_CommandAndStatusValue = 0xE4; //disable the interrupt
} //elseif(i_TimerCounterWatchdogInterrupt==1)
i_CommandAndStatusValue = 0xE4; /* disable the interrupt */
} /* elseif(i_TimerCounterWatchdogInterrupt==1) */
/**************************/
/* Starts Watchdog/counter 3 */
/**************************/
......@@ -2062,7 +2062,7 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} // if( i_WatchdogCounter3init==1)
} /* if( i_WatchdogCounter3init==1) */
else {
printk("\nWatchdog/Counter3 not configured\n");
return -EINVAL;
......@@ -2089,7 +2089,7 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
case TRIGGER:
switch (data[2]) {
case 0: //triggering counter 3
case 0: /* triggering counter 3 */
if (i_WatchdogCounter3Init == 1) {
if (i_WatchdogCounter3Enabled == 1) {
/************************/
......@@ -2097,14 +2097,14 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
/************************/
i_CommandAndStatusValue = 0x6;
} //if( i_WatchdogCounter3Enabled==1)
} /* if( i_WatchdogCounter3Enabled==1) */
else {
/***************/
/* Set Trigger */
/***************/
i_CommandAndStatusValue = 0x2;
} //elseif(i_WatchdogCounter3Enabled==1)
} /* elseif(i_WatchdogCounter3Enabled==1) */
/********************************************/
/* Selects the commands and status register */
......@@ -2115,14 +2115,14 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
outb(i_CommandAndStatusValue,
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} //if( i_WatchdogCounter3Init==1)
} /* if( i_WatchdogCounter3Init==1) */
else {
printk("\nCounter3 not configured\n");
return -EINVAL;
}
break;
case 1:
//triggering Watchdog 3
/* triggering Watchdog 3 */
if (i_WatchdogCounter3Init == 1) {
/********************************************/
......@@ -2134,7 +2134,7 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
outb(0x6,
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} //if( i_WatchdogCounter3Init==1)
} /* if( i_WatchdogCounter3Init==1) */
else {
printk("\nWatchdog 3 not configured\n");
return -EINVAL;
......@@ -2143,17 +2143,17 @@ int i_APCI1500_StartStopTriggerTimerCounterWatchdog(struct comedi_device * dev,
default:
printk("\nWrong choice of watchdog/counter3\n");
return -EINVAL;
} //switch(data[2])
} /* switch(data[2]) */
break;
default:
printk("\nThe specified option for start/stop/trigger does not exist\n");
return -EINVAL;
} //switch(data[1])
} /* switch(data[1]) */
break;
default:
printk("\nThe specified choice for counter/watchdog/timer does not exist\n");
return -EINVAL;
} //switch(data[0])
} /* switch(data[0]) */
return insn->n;
}
......@@ -2188,7 +2188,7 @@ int i_APCI1500_ReadCounterTimerWatchdog(struct comedi_device * dev,
int i_CommandAndStatusValue;
switch (data[0]) {
case COUNTER1:
//Read counter/timer1
/* Read counter/timer1 */
if (i_TimerCounter1Init == 1) {
if (i_TimerCounter1Enabled == 1) {
/************************/
......@@ -2196,14 +2196,14 @@ int i_APCI1500_ReadCounterTimerWatchdog(struct comedi_device * dev,
/************************/
i_CommandAndStatusValue = 0xC;
} //if( i_TimerCounter1Init==1)
} /* if( i_TimerCounter1Init==1) */
else {
/***************/
/* Set RCC */
/***************/
i_CommandAndStatusValue = 0x8;
} //elseif(i_TimerCounter1Init==1)
} /* elseif(i_TimerCounter1Init==1) */
/********************************************/
/* Selects the commands and status register */
......@@ -2232,14 +2232,14 @@ int i_APCI1500_ReadCounterTimerWatchdog(struct comedi_device * dev,
data[0] =
data[0] | inb(devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} //if( i_TimerCounter1Init==1)
} /* if( i_TimerCounter1Init==1) */
else {
printk("\nTimer/Counter1 not configured\n");
return -EINVAL;
} //elseif( i_TimerCounter1Init==1)
} /* elseif( i_TimerCounter1Init==1) */
break;
case COUNTER2:
//Read counter/timer2
/* Read counter/timer2 */
if (i_TimerCounter2Init == 1) {
if (i_TimerCounter2Enabled == 1) {
/************************/
......@@ -2247,14 +2247,14 @@ int i_APCI1500_ReadCounterTimerWatchdog(struct comedi_device * dev,
/************************/
i_CommandAndStatusValue = 0xC;
} //if( i_TimerCounter2Init==1)
} /* if( i_TimerCounter2Init==1) */
else {
/***************/
/* Set RCC */
/***************/
i_CommandAndStatusValue = 0x8;
} //elseif(i_TimerCounter2Init==1)
} /* elseif(i_TimerCounter2Init==1) */
/********************************************/
/* Selects the commands and status register */
......@@ -2283,14 +2283,14 @@ int i_APCI1500_ReadCounterTimerWatchdog(struct comedi_device * dev,
data[0] =
data[0] | inb(devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} //if( i_TimerCounter2Init==1)
} /* if( i_TimerCounter2Init==1) */
else {
printk("\nTimer/Counter2 not configured\n");
return -EINVAL;
} //elseif( i_TimerCounter2Init==1)
} /* elseif( i_TimerCounter2Init==1) */
break;
case COUNTER3:
//Read counter/watchdog2
/* Read counter/watchdog2 */
if (i_WatchdogCounter3Init == 1) {
if (i_WatchdogCounter3Enabled == 1) {
/************************/
......@@ -2298,14 +2298,14 @@ int i_APCI1500_ReadCounterTimerWatchdog(struct comedi_device * dev,
/************************/
i_CommandAndStatusValue = 0xC;
} //if( i_TimerCounter2Init==1)
} /* if( i_TimerCounter2Init==1) */
else {
/***************/
/* Set RCC */
/***************/
i_CommandAndStatusValue = 0x8;
} //elseif(i_WatchdogCounter3Init==1)
} /* elseif(i_WatchdogCounter3Init==1) */
/********************************************/
/* Selects the commands and status register */
......@@ -2334,16 +2334,16 @@ int i_APCI1500_ReadCounterTimerWatchdog(struct comedi_device * dev,
data[0] =
data[0] | inb(devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
} //if( i_WatchdogCounter3Init==1)
} /* if( i_WatchdogCounter3Init==1) */
else {
printk("\nWatchdogCounter3 not configured\n");
return -EINVAL;
} //elseif( i_WatchdogCounter3Init==1)
} /* elseif( i_WatchdogCounter3Init==1) */
break;
default:
printk("\nThe choice of timer/counter/watchdog does not exist\n");
return -EINVAL;
} //switch(data[0])
} /* switch(data[0]) */
return insn->n;
}
......@@ -2411,16 +2411,16 @@ int i_APCI1500_ConfigureInterrupt(struct comedi_device * dev, struct comedi_subd
outl(0x0, devpriv->i_IobaseAmcc + 0x38);
if (data[0] == 1) {
i_Constant = 0xC0;
} //if(data[0]==1)
} /* if(data[0]==1) */
else {
if (data[0] == 0) {
i_Constant = 0x00;
} //if{data[0]==0)
} /* if{data[0]==0) */
else {
printk("\nThe parameter passed to driver is in error for enabling the voltage interrupt\n");
return -EINVAL;
} //else if(data[0]==0)
} //elseif(data[0]==1)
} /* else if(data[0]==0) */
} /* elseif(data[0]==1) */
/*****************************************************/
/* Selects the mode specification register of port B */
......@@ -2599,11 +2599,11 @@ static void v_APCI1500_Interrupt(int irq, void *d)
/*************************************************/
/* Selects the master interrupt control register */
/*************************************************/
//outb(APCI1500_RW_MASTER_INTERRUPT_CONTROL,devpriv->iobase+APCI1500_Z8536_CONTROL_REGISTER);
/* outb(APCI1500_RW_MASTER_INTERRUPT_CONTROL,devpriv->iobase+APCI1500_Z8536_CONTROL_REGISTER); */
/**********************************************/
/* Disables the main interrupt on the board */
/**********************************************/
//outb(0x00,devpriv->iobase+APCI1500_Z8536_CONTROL_REGISTER);
/* outb(0x00,devpriv->iobase+APCI1500_Z8536_CONTROL_REGISTER); */
/*****************************************************/
/* Selects the command and status register of port A */
......@@ -2647,11 +2647,11 @@ static void v_APCI1500_Interrupt(int irq, void *d)
i_InputChannel = 1 + (i_RegValue >> 1);
} // if(i_Logic==APCI1500_OR_PRIORITY)
} /* if(i_Logic==APCI1500_OR_PRIORITY) */
else {
i_InputChannel = 0;
} //elseif(i_Logic==APCI1500_OR_PRIORITY)
} // if ((i_RegValue & 0x60) == 0x60)
} /* elseif(i_Logic==APCI1500_OR_PRIORITY) */
} /* if ((i_RegValue & 0x60) == 0x60) */
/*****************************************************/
/* Selects the command and status register of port B */
......@@ -2688,7 +2688,7 @@ static void v_APCI1500_Interrupt(int irq, void *d)
/**************************************/
if (i_RegValue) {
//Disable the interrupt
/* Disable the interrupt */
/*****************************************************/
/* Selects the command and status register of port B */
/*****************************************************/
......@@ -2697,17 +2697,17 @@ static void v_APCI1500_Interrupt(int irq, void *d)
if (i_RegValue & 0x80) {
i_InterruptMask =
i_InterruptMask | 0x40;
} //if (i_RegValue & 0x80)
} /* if (i_RegValue & 0x80) */
if (i_RegValue & 0x40) {
i_InterruptMask =
i_InterruptMask | 0x80;
} //if (i_RegValue & 0x40)
} // if (i_RegValue)
} /* if (i_RegValue & 0x40) */
} /* if (i_RegValue) */
else {
i_InterruptMask = i_InterruptMask | 2;
} // if (i_RegValue)
} //if ((i_RegValue & 0x60) == 0x60)
} /* if (i_RegValue) */
} /* if ((i_RegValue & 0x60) == 0x60) */
/*****************************************************/
/* Selects the command and status register of timer 1 */
......@@ -2731,7 +2731,7 @@ static void v_APCI1500_Interrupt(int irq, void *d)
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
i_InterruptMask = i_InterruptMask | 4;
} // if ((i_RegValue & 0x60) == 0x60)
} /* if ((i_RegValue & 0x60) == 0x60) */
/*****************************************************/
/* Selects the command and status register of timer 2 */
/*****************************************************/
......@@ -2754,7 +2754,7 @@ static void v_APCI1500_Interrupt(int irq, void *d)
devpriv->iobase +
APCI1500_Z8536_CONTROL_REGISTER);
i_InterruptMask = i_InterruptMask | 8;
} // if ((i_RegValue & 0x60) == 0x60)
} /* if ((i_RegValue & 0x60) == 0x60) */
/*****************************************************/
/* Selects the command and status register of timer 3 */
......@@ -2779,13 +2779,13 @@ static void v_APCI1500_Interrupt(int irq, void *d)
APCI1500_Z8536_CONTROL_REGISTER);
if (i_CounterLogic == APCI1500_COUNTER) {
i_InterruptMask = i_InterruptMask | 0x10;
} //if(i_CounterLogic==APCI1500_COUNTER)
} /* if(i_CounterLogic==APCI1500_COUNTER) */
else {
i_InterruptMask = i_InterruptMask | 0x20;
}
} // if ((i_RegValue & 0x60) == 0x60)
} /* if ((i_RegValue & 0x60) == 0x60) */
send_sig(SIGIO, devpriv->tsk_Current, 0); // send signal to the sample
send_sig(SIGIO, devpriv->tsk_Current, 0); /* send signal to the sample */
/***********************/
/* Enable all Interrupts */
/***********************/
......@@ -2799,11 +2799,11 @@ static void v_APCI1500_Interrupt(int irq, void *d)
/* Authorizes the main interrupt on the board */
/**********************************************/
outb(0xD0, devpriv->iobase + APCI1500_Z8536_CONTROL_REGISTER);
} // if ((ui_InterruptStatus & 0x800000) == 0x800000)
} /* if ((ui_InterruptStatus & 0x800000) == 0x800000) */
else {
printk("\nInterrupt from unknown source\n");
} //else if ((ui_InterruptStatus & 0x800000) == 0x800000)
} /* else if ((ui_InterruptStatus & 0x800000) == 0x800000) */
return;
}
......@@ -2982,7 +2982,7 @@ int i_APCI1500_Reset(struct comedi_device * dev)
devpriv->iobase + APCI1500_Z8536_CONTROL_REGISTER);
/* Deletes all interrupts */
outb(0, devpriv->iobase + APCI1500_Z8536_CONTROL_REGISTER);
//reset all the digital outputs
/* reset all the digital outputs */
outw(0x0, devpriv->i_IobaseAddon + APCI1500_DIGITAL_OP);
/*******************************/
/* Disable the board interrupt */
......
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