630 lines
21 KiB
Tcl
Executable File
630 lines
21 KiB
Tcl
Executable File
# Define procs in ::scobj::xxx namespace
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# MakeSICSObj $obj SCT_<class>
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# The MakeSICSObj cmd adds a /sics/$obj node. NOTE the /sics node is not browsable.
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namespace eval ::scobj::syr {
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# Environment controllers should have at least the following nodes
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# /envcont/setpoint
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# /envcont/sensor/value
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proc debug_log {args} {
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set fd [open "../log/syr.log" a]
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puts $fd "[clock format [clock seconds] -format "%T"] $args"
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close $fd
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}
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proc getDev {tc_root} {
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set dev 0
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foreach item [split "[sct]" "/"] {
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if {[string equal -nocase -length 4 $item "Pump"]} {
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set dev [expr {int([string range $item 4 end])}]
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debug_log "Node [sct] gives $item for dev = $dev"
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}
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}
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debug_log "getDev sct=[sct] root=$tc_root dev=$dev"
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return $dev
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}
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# issue a command to read a register and expect a value response
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proc getValue {tc_root nextState cmd} {
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debug_log "getValue $cmd sct=[sct] root=$tc_root nextState=$nextState"
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set dev [getDev $tc_root]
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sct send "$dev$cmd"
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return $nextState
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}
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# issue a command with a value in the target property of the variable
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proc setValue {tc_root nextState cmd} {
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debug_log "setValue cmd=$cmd sct=[sct] $tc_root"
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set par "[sct target]"
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sct send "$cmd $par"
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debug_log "setValue $cmd $par"
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return $nextState
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}
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proc wrCld {tc_root nextState cmd} {
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debug_log "wrCld cmd=$cmd [sct target] sct=[sct] $tc_root"
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set data [string toupper [sct target]]
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if {"$data" != "INF" && "$data" != "WDR"} {
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set err_msg "Invalid Cld \"$data\" is not \"INF\" or \"WDR\""
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debug_log "error:$err_msg"
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return -code error "$err_msg"
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}
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set dev [getDev $tc_root]
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set line "${dev}CLD${data}"
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debug_log "wrCld $line"
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sct send "$line"
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return $nextState
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}
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proc wrOut {tc_root nextState cmd} {
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set line "[getDev $tc_root]OUT0[sct target]"
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debug_log "send: $line"
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sct send "$line"
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return $nextState
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}
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proc wrRat {tc_root nextState cmd} {
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set line "[getDev $tc_root]RAT[sct target]"
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debug_log "send: $line"
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sct send "$line"
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return $nextState
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}
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proc wrVol {tc_root nextState cmd} {
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set line "[getDev $tc_root]VOL[sct target]"
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debug_log "send: $line"
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sct send "$line"
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return $nextState
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}
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proc wrBuz {tc_root nextState cmd} {
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set line "[getDev $tc_root]BUZ[sct target]"
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debug_log "send: $line"
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sct send "$line"
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return $nextState
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}
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proc wrDir {tc_root nextState cmd} {
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debug_log "wrDir cmd=$cmd [sct target] sct=[sct] $tc_root"
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set data [string toupper [sct target]]
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if {"$data" != "INF" && "$data" != "WDR"} {
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set err_msg "Invalid Dir \"$data\" is not \"INF\" or \"WDR\""
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debug_log "error:$err_msg"
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return -code error "$err_msg"
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}
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set dev [getDev $tc_root]
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set line "${dev}DIR${data}"
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debug_log "wrDir $line"
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sct send "$line"
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return $nextState
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}
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proc setCmnd {tc_root nextState cmd} {
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debug_log "setCmnd cmd=$cmd [sct target] sct=[sct] $tc_root"
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set dev [SplitReply [hgetprop $tc_root device]]
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if {[string range [sct target] 0 1] == "1"} {
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set data [sct target]
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} else {
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set data "$dev[string toupper [sct target]]"
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}
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sct send "$data"
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debug_log "setCmnd $data"
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return $nextState
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}
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proc chkWrite {tc_root} {
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set data [sct result]
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debug_log "chkWrite resp=$data sct=[sct] tc_root=$tc_root"
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if {[string equal -nocase -length 7 $data "ASCERR:"]} {
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sct geterror "$data"
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} elseif {[string equal -nocase -length 1 $data "?"]} {
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sct geterror "Error NAK: $data"
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} else {
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if {[string equal -nocase -length 1 $data "\002"]} {
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set data [string range $data 1 end]
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}
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set cmnd [string toupper [sct target]]
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debug_log "Command: \"$cmnd\" Response: \"$data\""
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set data "$cmnd -> $data"
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if {$data != [sct oldval]} {
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sct oldval $data
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sct update $data
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sct utime readtime
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debug_log "chkWrite new data for $tc_root [sct] result=\"$data\""
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}
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}
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return idle
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}
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proc wrRun {tc_root nextState cmd} {
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set catch_status [ catch {
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debug_log "wrRun: $tc_root $nextState $cmd sct=[sct]"
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debug_log "wrRun: sct=[sct] target=[sct target] writestatus=[sct writestatus]"
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set err_msg ""
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set data [expr {[sct target]}]
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if {$data != [sct oldval]} {
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sct oldval $data
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sct update $data
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sct utime readtime
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debug_log "wrRun new data for $tc_root [sct] data=$data"
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}
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debug_log "wrRun send: *RUN"
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sct send "*RUN"
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debug_log "status: busy"
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hsetprop $tc_root/Pump0/Run driving 1
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} catch_message ]
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if {$catch_status != 0} {
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return -code error $catch_message
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}
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return $nextState
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}
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proc ValidateResponse {tc_root data} {
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debug_log "ValidateResponse tc_root=$tc_root sct=[sct] node=[lindex [split [sct] "/"] end]"
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if {[ catch {
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debug_log "ValidateResponse $tc_root [sct] result=$data"
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} catch_message ]} {
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debug_log "ValidateResponse $tc_root failure"
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}
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if {[string equal -nocase -length 7 $data "ASCERR:"]} {
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set rslt [list 0 "$data" "XX" "XX"]
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} elseif {[string equal -nocase -length 1 $data "?"]} {
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set rslt [list 0 "$data" "XX" "XX"]
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} elseif {![string equal -nocase -length 1 $data "\002"]} {
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set rslt [list 0 "$data" "XX" "XX"]
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} else {
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set data [string range $data 1 end]
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sct result $data
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set addr [string range $data 0 1]
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if {[string equal -length 1 $addr "0"]} {
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set addr [string range $addr 1 end]
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}
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set stat [string range $data 2 2]
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set data [string range $data 3 end]
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if { [hpropexists [sct] geterror] } {
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hdelprop [sct] geterror
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}
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set rslt [list 1 "$data" "$addr" "$stat"]
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}
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debug_log "ValidateResponse: $rslt"
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return $rslt
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}
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proc rdRat {tc_root} {
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set response [ValidateResponse $tc_root [sct result]]
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set stat [lindex $response 0]
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set data [lindex $response 1]
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if {!$stat} {
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sct geterror "$data"
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debug_log "rdRat error: $data"
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return -code error "$data"
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}
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# TODO - process data XX.XXMM
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if {$data != [sct oldval]} {
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debug_log "rdRat new data for $tc_root [sct] was=[sct oldval] now=$data"
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sct oldval $data
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sct update $data
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sct utime readtime
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}
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return idle
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}
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proc rdVol {tc_root} {
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set response [ValidateResponse $tc_root [sct result]]
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set stat [lindex $response 0]
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set data [lindex $response 1]
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if {!$stat} {
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sct geterror "$data"
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debug_log "rdVol error: $data"
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return -code error "$data"
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}
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# TODO - process data XX.XXMM
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if {$data != [sct oldval]} {
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debug_log "rdVol new data for $tc_root [sct] was=[sct oldval] now=$data"
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sct oldval $data
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sct update $data
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sct utime readtime
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}
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return idle
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}
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proc rdDir {tc_root} {
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set response [ValidateResponse $tc_root [sct result]]
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set stat [lindex $response 0]
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set data [lindex $response 1]
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if {!$stat} {
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sct geterror "$data"
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debug_log "rdDir error: $data"
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return -code error "$data"
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}
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if {$data != [sct oldval]} {
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debug_log "rdDir new data for $tc_root [sct] was=[sct oldval] now=$data"
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sct oldval $data
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sct update $data
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sct utime readtime
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}
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return idle
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}
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proc rdBuz {tc_root} {
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set response [ValidateResponse $tc_root [sct result]]
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set stat [lindex $response 0]
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set data [lindex $response 1]
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if {!$stat} {
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sct geterror "$data"
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debug_log "rdBuz error: $data"
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return -code error "$data"
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}
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if {$data != [sct oldval]} {
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debug_log "rdBuz new data for $tc_root [sct] was=[sct oldval] now=$data"
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sct oldval $data
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sct update $data
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sct utime readtime
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}
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return idle
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}
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proc rdDis {tc_root} {
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set response [ValidateResponse $tc_root [sct result]]
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set stat [lindex $response 0]
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set data [lindex $response 1]
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if {!$stat} {
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sct geterror "$data"
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debug_log "rdDis error: $data"
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return -code error "$data"
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}
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# TODO - process data XX.XXMM
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if {$data != [sct oldval]} {
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debug_log "rdDis new data for $tc_root [sct] was=[sct oldval] now=$data"
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sct oldval $data
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sct update $data
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sct utime readtime
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}
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return idle
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}
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proc rdInp {tc_root} {
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set response [ValidateResponse $tc_root [sct result]]
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set stat [lindex $response 0]
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set data [lindex $response 1]
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if {!$stat} {
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sct geterror "$data"
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debug_log "rdInp error: $data"
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return -code error "$data"
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}
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if {$data != [sct oldval]} {
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debug_log "rdInp new data for $tc_root [sct] was=[sct oldval] now=$data"
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sct oldval $data
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sct update $data
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sct utime readtime
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}
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return idle
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}
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proc rdVer {tc_root} {
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set response [ValidateResponse $tc_root [sct result]]
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set stat [lindex $response 0]
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set data [lindex $response 1]
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if {!$stat} {
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sct geterror "$data"
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debug_log "rdVer error: $data"
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return -code error "$data"
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}
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if {$data != [sct oldval]} {
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debug_log "rdVer new data for $tc_root [sct] was=[sct oldval] now=$data"
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sct oldval $data
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sct update $data
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sct utime readtime
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}
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return idle
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}
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# This is the command phase of the state machine that drives the controller.
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# For each state, it sends the appropriate command to get values from, or set
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# values in the controller in a sequence intended to transition the controller
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# between states.
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proc getState {tc_root nextState} {
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debug_log "getState $tc_root $nextState sct=[sct]"
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if {[ catch {
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if { [hpropexists [sct] geterror] } {
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hdelprop [sct] geterror
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}
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set my_state [sct my_state]
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set my_substate [sct my_substate]
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if {$my_state == "STATE_INIT"} {
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if {$my_substate == 0} {
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set my_cmd "VER"
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}
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} elseif {$my_state == "STATE_IDLE"} {
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set my_cmd "VER"
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} elseif {$my_state == "STATE_BUSY"} {
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set my_cmd "VER"
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} elseif {$my_state == "STATE_ERROR"} {
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set my_cmd "VER"
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}
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debug_log "getState sends: \"$my_cmd\""
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sct send "$my_cmd"
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} catch_message ]} {
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debug_log "getState error: $catch_message"
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}
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debug_log "getState returns: $nextState"
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return $nextState
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}
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# This is the response phase of the state machine that drives the controller.
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# For each state, it reads the appropriate command response from the controller
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# and, based on the response and internal variables performs a sequence
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# intended to transition the controller between states.
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##
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# @brief Reads the current SYR state and error messages.
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proc rdState {tc_root} {
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debug_log "rdState $tc_root sct=[sct] response=\"[sct result]\""
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set response [ValidateResponse $tc_root [sct result]]
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set succ [lindex $response 0]
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set data [lindex $response 1]
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set addr [lindex $response 2]
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set stat [lindex $response 3]
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if {!$succ} {
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sct geterror "$data"
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debug_log "rdState error: $data"
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return -code error "$data"
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}
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set nextState {}
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if {[ catch {
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set my_state [sct my_state]
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set my_substate [sct my_substate]
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if { $my_state == "STATE_INIT" } {
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if { $my_substate == 0 } {
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sct my_state "STATE_IDLE"
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sct my_substate 0
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}
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} elseif { $my_state == "STATE_IDLE" } {
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if { "[SplitReply [hgetprop $tc_root/Pump0/Run driving]]" } {
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sct my_state "STATE_BUSY"
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sct my_substate 0
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}
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} elseif { $my_state == "STATE_BUSY" } {
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if {[string equal -nocase -length 1 $stat "S"]} {
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hsetprop $tc_root/Pump0/Run driving 0
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sct my_state "STATE_IDLE"
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sct my_substate 0
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}
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} elseif { $my_state == "STATE_ERROR" } {
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sct my_state "STATE_IDLE"
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sct my_substate 0
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}
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} catch_message ]} {
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debug_log "rdState error: $catch_message"
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}
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if { "$nextState" == "" } {
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set nextState "idle"
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}
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if {![string equal [sct oldval] [sct my_state]]} {
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sct oldval [sct my_state]
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sct update [sct my_state]
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sct utime readtime
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}
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debug_log "rdState returns: $nextState"
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return $nextState
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}
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proc noResponse {} {
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return idle
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}
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proc wrtValue {wcmd args} {
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}
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# check that a target is within allowable limits
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proc check {tc_root} {
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# set setpoint [sct target]
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# set lolimit 1
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# set hilimit 6
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# if {$setpoint < $lolimit || $setpoint > $hilimit} {
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# error "setpoint violates limits"
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# }
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return OK
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}
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##
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# @brief Implement the checkstatus command for the drivable interface
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#
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# NOTE: The drive adapter initially sets the writestatus to "start" and will
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# only call this when writestatus!="start"
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proc drivestatus {tc_root} {
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if {[sct driving]} {
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return busy
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} else {
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return idle
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}
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}
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proc halt {tc_root} {
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debug_log "halt $tc_root"
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sct print "halt $tc_root"
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return idle
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}
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##
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# @brief createNode() creates a node for the given nodename with the properties and virtual
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# function names provided
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# @param scobj_hpath string variable holding the path to the object's base node in sics (/sample/tc1)
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# @param sct_controller name of the scriptcontext object (typically sct_xxx_yyy)
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# @param cmdGroup subdirectory (below /sample/tc*/) in which the node is to be created
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# @param varName name of the actual node typically representing one device command
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# @param readable set to 1 if the node represents a query command, 0 if it is not
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# @param writable set to 1 if the node represents a request for a change in settings sent to the device
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# @param drivable if set to 1 it prepares the node to provide a drivable interface
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# @param dataType data type of the node, must be one of none, int, float, text
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# @param permission defines what user group may read/write to this node (is one of spy, user, manager)
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# @param rdCmd actual device query command to be sent to the device
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# @param rdFunc nextState Function to be called after the getValue function, typically rdValue()
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# @param wrCmd actual device write command to be sent to the device
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# @param wrFunc Function to be called to send the wrCmd to the device, typically setValue()
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# @param allowedValues allowed values for the node data - does not permit other
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# @param klass Nexus class name (?)
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# @return OK
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proc createNode {scobj_hpath sct_controller cmdGroup varName readable writable nexus gumtree\
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drivable dataType permission rdCmd rdFunc wrCmd\
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wrFunc allowedValues klass} {
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set catch_status [ catch {
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set ns "[namespace current]"
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set nodeName "$scobj_hpath/$cmdGroup/$varName"
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if {1 > [string length $cmdGroup]} {
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set nodeName "$scobj_hpath/$varName"
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}
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debug_log "Creating node $nodeName"
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hfactory $nodeName plain $permission $dataType
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if {$readable > 0} {
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hsetprop $nodeName read ${ns}::getValue $scobj_hpath $rdFunc $rdCmd
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hsetprop $nodeName $rdFunc ${ns}::$rdFunc $scobj_hpath
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set poll_period 30
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if { $readable >= 0 && $readable <= 9 } {
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set poll_period [lindex [list 0 1 2 3 4 5 10 15 20 30] $readable]
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}
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debug_log "Registering node $nodeName for poll at $poll_period seconds"
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|
$sct_controller poll $nodeName $poll_period
|
|
}
|
|
if {$writable == 1 && "$wrFunc" != ""} {
|
|
set pos [string first "." "$wrFunc"]
|
|
if { $pos > 0 } {
|
|
set parts [split "$wrFunc" "."]
|
|
if { [llength $parts] >= 2 } {
|
|
set func_name [lindex $parts 0]
|
|
set next_state [lindex $parts 1]
|
|
hsetprop $nodeName write ${ns}::$func_name $scobj_hpath $next_state $wrCmd
|
|
hsetprop $nodeName $next_state ${ns}::$next_state $scobj_hpath
|
|
}
|
|
} else {
|
|
hsetprop $nodeName write ${ns}::$wrFunc $scobj_hpath noResponse $wrCmd
|
|
hsetprop $nodeName noResponse ${ns}::noResponse
|
|
}
|
|
hsetprop $nodeName writestatus UNKNOWN
|
|
debug_log "Registering node $nodeName for write callback"
|
|
$sct_controller write $nodeName
|
|
}
|
|
switch -exact $dataType {
|
|
"none" { }
|
|
"int" { hsetprop $nodeName oldval -1 }
|
|
"float" { hsetprop $nodeName oldval -1.0 }
|
|
default { hsetprop $nodeName oldval UNKNOWN }
|
|
}
|
|
if {1 < [string length $allowedValues]} {
|
|
hsetprop $nodeName values $allowedValues
|
|
}
|
|
# Drive adapter interface
|
|
if {$drivable == 1} {
|
|
hsetprop $nodeName check ${ns}::check $scobj_hpath
|
|
hsetprop $nodeName driving 0
|
|
hsetprop $nodeName checklimits ${ns}::check $scobj_hpath
|
|
hsetprop $nodeName checkstatus ${ns}::drivestatus $scobj_hpath
|
|
hsetprop $nodeName halt ${ns}::halt $scobj_hpath
|
|
}
|
|
if {$nexus == 1} {
|
|
hsetprop $nodeName type part
|
|
hsetprop $nodeName klass $klass
|
|
hsetprop $nodeName privilege $permission
|
|
hsetprop $nodeName control true
|
|
hsetprop $nodeName data true
|
|
hsetprop $nodeName nxsave true
|
|
hsetprop $nodeName data true
|
|
}
|
|
if {$gumtree == 1} {
|
|
}
|
|
} catch_message ]
|
|
if {$catch_status != 0} {
|
|
debug_log "error: $catch_message"
|
|
return -code error "in createNode $catch_message"
|
|
}
|
|
return OK
|
|
}
|
|
|
|
proc mk_sct_syr {sct_controller klass tempobj} {
|
|
set catch_status [ catch {
|
|
set ns "[namespace current]"
|
|
|
|
MakeSICSObj $tempobj SCT_OBJECT
|
|
sicslist setatt $tempobj klass $klass
|
|
sicslist setatt $tempobj long_name $tempobj
|
|
|
|
set scobj_hpath /sics/$tempobj
|
|
|
|
set deviceCommand {\
|
|
Pump Run 0 1 1 1 1 text user {} {} {RUN} {wrRun} {}\
|
|
Pump Cld 0 1 1 1 0 text user {} {} {CLD} {wrCld} {}\
|
|
Pump Out 0 1 1 1 0 text user {} {} {OUT} {wrOut} {}\
|
|
Pump Rat 1 1 1 1 0 text user {RAT} {rdRat} {RAT} {wrRat} {}\
|
|
Pump Vol 1 1 1 1 0 text user {VOL} {rdVol} {VOL} {wrVol} {}\
|
|
Pump Dir 1 1 1 1 0 text user {DIR} {rdDir} {DIR} {wrDir} {}\
|
|
Pump Buz 1 1 1 1 0 text user {BUZ} {rdBuz} {BUZ} {wrBuz} {}\
|
|
Pump Dis 1 0 1 1 0 text internal {DIS} {rdDis} {} {} {}\
|
|
Pump In2 1 0 1 1 0 text internal {IN2} {rdInp} {} {} {}\
|
|
Pump In3 1 0 1 1 0 text internal {IN3} {rdInp} {} {} {}\
|
|
Pump In4 1 0 1 1 0 text internal {IN4} {rdInp} {} {} {}\
|
|
Pump In6 1 0 1 1 0 text internal {IN6} {rdInp} {} {} {}\
|
|
Pump Ver 1 0 1 1 0 text internal {VER} {rdVer} {} {} {}\
|
|
}
|
|
|
|
set num_pumps 2
|
|
for {set i 0} { i < $num_pumps } { incr i } {
|
|
set cmdGroup "Pump[set i]"
|
|
hfactory $scobj_hpath/[set cmdGroup] plain spy none
|
|
foreach {cmdGroup varName readable writable nexus gumtree drivable dataType permission rdCmd rdFunc wrCmd wrFunc allowedValues} $deviceCommand {
|
|
createNode $scobj_hpath $sct_controller $cmdGroup $varName $readable $writable $nexus $gumtree $drivable $dataType $permission $rdCmd $rdFunc $wrCmd $wrFunc $allowedValues $klass
|
|
}
|
|
}
|
|
|
|
hfactory $scobj_hpath/status plain spy text
|
|
hset $scobj_hpath/status "idle"
|
|
hsetprop $scobj_hpath/status values busy,idle
|
|
|
|
hfactory $scobj_hpath/device_state plain spy text
|
|
hsetprop $scobj_hpath/device_state read ${ns}::getState $scobj_hpath rdState
|
|
hsetprop $scobj_hpath/device_state rdState ${ns}::rdState $scobj_hpath
|
|
hsetprop $scobj_hpath/device_state oldval UNKNOWN
|
|
hsetprop $scobj_hpath/device_state my_state "STATE_INIT"
|
|
hsetprop $scobj_hpath/device_state my_substate "0"
|
|
|
|
# if {[SplitReply [environment_simulation]]=="false"} {
|
|
# }
|
|
debug_log "Registering node $scobj_hpath/device_state for poll at 1 seconds"
|
|
$sct_controller poll $scobj_hpath/device_state 1 halt read
|
|
ansto_makesctdrive ${tempobj}_driveable $scobj_hpath/pump0/run $scobj_hpath/pump0/dis $sct_controller
|
|
|
|
|
|
} catch_message ]
|
|
if {$catch_status != 0} {
|
|
debug_log "error: $catch_message"
|
|
return -code error $catch_message
|
|
}
|
|
}
|
|
namespace export mk_sct_syr
|
|
}
|
|
|
|
##
|
|
# @brief Create an SYR Controller
|
|
#
|
|
# @param name, the name of the SYR
|
|
# @param IP, the IP address of the device, this can be a hostname, (eg ca1-kowari)
|
|
# @param port, the IP protocol port number of the device
|
|
proc add_syr {name IP port} {
|
|
set fd [open "../log/syr.log" a]
|
|
if {[SplitReply [environment_simulation]]=="false"} {
|
|
makesctcontroller sct_syr syringe ${IP}:$port "\r"
|
|
}
|
|
puts $fd "mk_sct_syr sct_syr environment $name"
|
|
mk_sct_syr sct_syr environment $name
|
|
close $fd
|
|
}
|
|
|
|
puts stdout "file evaluation of sct_syr.tcl"
|
|
set fd [open "../log/syr.log" w]
|
|
puts $fd "file evaluation of sct_syr.tcl"
|
|
close $fd
|
|
|
|
namespace import ::scobj::syr::*
|
|
|
|
#add_syr syr 192.168.56.101 6000
|