Set Analog DAN on different CPU that ADC
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@@ -209,7 +209,7 @@
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Class = EPICSCAOutput
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CPUMask = @cpus_epics// change from 0x200
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StackSize = 10000000
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NumberOfBuffers = 2
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NumberOfBuffers = 50
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Signals = {
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PCF_STATE = {
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PVName = (@rfid .. "-GAF:STAT-SM")
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@@ -94,7 +94,7 @@
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// Digital Output port access.
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// EPICS PV to one uint8 variable
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+NI6528_0_WriterGAM = {
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Class = IOExt::CompactBitGAM
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Class = "IOExt::CompactBitGAM"
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InputSignals = {
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APS_HVON = {
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DataSource = DDB3
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@@ -131,7 +131,7 @@
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+FastAnalogDAN = {
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Class = "DAN::DANSource"
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NumberOfBuffers = 10000
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CPUMask = @cpus_adc
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CPUMask = @cpus_fdan
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StackSize = 10000000
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DanBufferMultiplier = 10000 //10s at 1kHz loop (1M with 1k samples)
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StoreOnTrigger = 1
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@@ -212,9 +212,9 @@
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}
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+AnalogEpicsOutput = {
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Class = "EPICSCA::EPICSCAOutput"
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CPUMask = @cpus_adc // change from 0x200
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CPUMask = @cpus_epics // change from 0x200
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StackSize = 10000000
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NumberOfBuffers = 2
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NumberOfBuffers = 50
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Signals = {
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PXI6368_Status = {
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Type = uint32
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@@ -7,7 +7,6 @@
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SleepNature = "Busy"
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SleepPercentage = 40
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ExecutionMode = "RealTimeThread"
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CPUMask = 0x200
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Signals = {
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Counter = {
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Type = uint32
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@@ -23,7 +22,6 @@
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SleepNature = "Busy"
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SleepPercentage = 40
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ExecutionMode = "RealTimeThread"
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CPUMask = 0x400
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Signals = {
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Counter = {
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Type = uint32
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@@ -42,7 +40,6 @@
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SleepNature = "Busy"
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SleepPercentage = 40
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ExecutionMode = "RealTimeThread"
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CPUMask = 0x700
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Signals = {
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Counter = {
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Type = uint32
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@@ -42,3 +42,4 @@
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#var cpus_dio: uint = 0x80
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#var cpus_dan: uint = 0x100
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#var cpus_wg: uint = 0x200
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#var cpus_fdan: uint = 0x400
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