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succbone/panel.pdf
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succbone/panel.qet
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succbone/panel.qet
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succbone/succbone-din-mount.FCStd
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succbone/succbone-din-mount.FCStd
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succbone/succbone-din-mount.stl
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succbone/succbone-din-mount.stl
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@ -4,8 +4,5 @@ go 1.22.3
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require (
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github.com/coder/websocket v1.8.12
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github.com/simonvetter/modbus v1.6.3
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k8s.io/klog v1.0.0
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)
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require github.com/goburrow/serial v0.1.0 // indirect
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|
|
|
@ -1,9 +1,5 @@
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github.com/coder/websocket v1.8.12 h1:5bUXkEPPIbewrnkU8LTCLVaxi4N4J8ahufH2vlo4NAo=
|
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github.com/coder/websocket v1.8.12/go.mod h1:LNVeNrXQZfe5qhS9ALED3uA+l5pPqvwXg3CKoDBB2gs=
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github.com/go-logr/logr v0.1.0/go.mod h1:ixOQHD9gLJUVQQ2ZOR7zLEifBX6tGkNJF4QyIY7sIas=
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github.com/goburrow/serial v0.1.0 h1:v2T1SQa/dlUqQiYIT8+Cu7YolfqAi3K96UmhwYyuSrA=
|
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github.com/goburrow/serial v0.1.0/go.mod h1:sAiqG0nRVswsm1C97xsttiYCzSLBmUZ/VSlVLZJ8haA=
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github.com/simonvetter/modbus v1.6.3 h1:kDzwVfIPczsM4Iz09il/Dij/bqlT4XiJVa0GYaOVA9w=
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github.com/simonvetter/modbus v1.6.3/go.mod h1:hh90ZaTaPLcK2REj6/fpTbiV0J6S7GWmd8q+GVRObPw=
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k8s.io/klog v1.0.0 h1:Pt+yjF5aB1xDSVbau4VsWe+dQNzA0qv1LlXdC2dF6Q8=
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k8s.io/klog v1.0.0/go.mod h1:4Bi6QPql/J/LkTDqv7R/cd3hPo4k2DG6Ptcz060Ez5I=
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|
|
|
@ -13,6 +13,7 @@ type gpio interface {
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// set returns the GPIO value. The meaning of the logic level is
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// implementation-dependent.
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set(state bool) error
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get() bool
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}
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// bbGPIO implements gpio using BeagleBone's built-in GPIO pins.
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|
@ -72,6 +73,12 @@ func (b *bbGPIO) set(state bool) error {
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return nil
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}
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func (b *bbGPIO) get() bool {
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b.mu.Lock()
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defer b.mu.Unlock()
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return b.state
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}
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// fakeGPIO implements a GPIO that logs state changes.
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type fakeGPIO struct {
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desc string
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|
@ -90,3 +97,9 @@ func (b *fakeGPIO) set(state bool) error {
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b.state = state
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return nil
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}
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func (b *fakeGPIO) get() bool {
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b.mu.Lock()
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defer b.mu.Unlock()
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return b.state
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}
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|
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@ -62,17 +62,6 @@ type apiData struct {
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// DPOn means the diffusion pump is turned on.
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DPOn bool
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}
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// Temperature state.
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Temperatures struct {
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DPBottom float32
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DPTop float32
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DPInlet float32
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SEM float32
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}
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// Humidity state.
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Humidity struct {
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SEM float32
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}
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// Pressure feedback into evacuation board.
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Feedback struct {
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// RoughReached is true when the system has reached a rough vacuum
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|
@ -126,11 +115,6 @@ func (s *webServer) apiData(skipSystem bool) *apiData {
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ad.Pirani.MbarFloat = mbar
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ad.Pumps.RPOn = state.rpOn
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ad.Pumps.DPOn = state.dpOn
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ad.Temperatures.DPBottom = state.tempDPBottom
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ad.Temperatures.DPTop = state.tempDPTop
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ad.Temperatures.DPInlet = state.tempDPInlet
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ad.Temperatures.SEM = state.tempSEM
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ad.Humidity.SEM = state.humiditySEM
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ad.Feedback.RoughReached = rough
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ad.Feedback.HighReached = high
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ad.LoopLoad = s.d.loopLoad()
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|
@ -179,80 +163,35 @@ func (s *webServer) viewStream(w http.ResponseWriter, r *http.Request) {
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}
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}
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func boolToFloat(b bool) float32 {
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if b {
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return 1.0
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} else {
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return 0.0
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}
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}
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// httpMetrics serves minimalistic Prometheus-compatible metrics.
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func (s *webServer) viewMetrics(w http.ResponseWriter, r *http.Request) {
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// TODO(q3k): also serve Go stuff using the actual Prometheus metrics client
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// library.
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// TODO(q3k): serve the rest of the data model
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state := s.d.snapshot()
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mbar := state.piraniMbar100.mbar
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rpOn := state.rpOn
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dpOn := state.dpOn
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pumpDownStatus := s.d.gpioPumpDownStatus()
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ventStatus := s.d.gpioVentStatus()
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belowRoughStatus := s.d.gpioBelowRoughStatus()
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belowHighStatus := s.d.gpioBelowHighStatus()
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// sem_pressure_mbar is meant to represent the fused pressure value
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// from all data sources once we have more vacuum sensors in the
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// system. sem_pirani_mbar is just the reading from the pirani gauge.
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fmt.Fprintf(w, "# HELP sem_pressure_mbar Pressure in the SEM chamber, in millibar\n")
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fmt.Fprintf(w, "# TYPE sem_pressure_mbar gauge\n")
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fmt.Fprintf(w, "sem_pressure_mbar %f\n", state.piraniMbar100.mbar)
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fmt.Fprintf(w, "# HELP sem_pirani_mbar Pressure reading by the Pirani gauge, in millibar\n")
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fmt.Fprintf(w, "# TYPE sem_pirani_mbar gauge\n")
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fmt.Fprintf(w, "sem_pirani_mbar %f\n", state.piraniMbar100.mbar)
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fmt.Fprintf(w, "# HELP sem_pirani_volts Voltage output from the Pirani gauge, in volts\n")
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fmt.Fprintf(w, "# TYPE sem_pirani_volts gauge\n")
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fmt.Fprintf(w, "sem_pirani_volts %f\n", state.piraniVolts100.avg)
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fmt.Fprintf(w, "# HELP sem_pirani_failsafe_active Whether pirani gauge failsafe mode is active (boolean)\n")
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fmt.Fprintf(w, "# TYPE sem_pirani_failsafe_active gauge\n")
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fmt.Fprintf(w, "sem_pirani_failsafe_active %f\n", boolToFloat(state.safety.failsafe))
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fmt.Fprintf(w, "# HELP sem_dp_lockout_active Whether diffusion pump lockout is active (boolean)\n")
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fmt.Fprintf(w, "# TYPE sem_dp_lockout_active gauge\n")
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fmt.Fprintf(w, "sem_dp_lockout_active %f\n", boolToFloat(state.safety.highPressure))
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fmt.Fprintf(w, "# HELP sem_pump_diffusion_running Whether the diffusion pump is running (boolean)\n")
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fmt.Fprintf(w, "# TYPE sem_pump_diffusion_running gauge\n")
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fmt.Fprintf(w, "sem_pump_diffusion_running %f\n", boolToFloat(state.dpOn))
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fmt.Fprintf(w, "# HELP sem_pump_roughing_running Whether the roughing pump is running (boolean)\n")
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fmt.Fprintf(w, "# TYPE sem_pump_roughing_running gauge\n")
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fmt.Fprintf(w, "sem_pump_roughing_running %f\n", boolToFloat(state.rpOn))
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rough, high := state.vacuumStatus()
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fmt.Fprintf(w, "# HELP sem_vacuum_rough_reached Whether a rough vacuum has been reached (boolean)\n")
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fmt.Fprintf(w, "# TYPE sem_vacuum_rough_reached gauge\n")
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fmt.Fprintf(w, "sem_vacuum_rough_reached %f\n", boolToFloat(rough))
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fmt.Fprintf(w, "# HELP sem_vacuum_high_reached Whether a high vacuum has been reached (boolean)\n")
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fmt.Fprintf(w, "# TYPE sem_vacuum_high_reached gauge\n")
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fmt.Fprintf(w, "sem_vacuum_high_reached %f\n", boolToFloat(high))
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fmt.Fprintf(w, "# HELP sem_environment_temperature_celsius Environmental temperature of the SEM, in degrees celsius\n")
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fmt.Fprintf(w, "# TYPE sem_environment_temperature_celsius gauge\n")
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fmt.Fprintf(w, "sem_environment_temperature_celsius %f\n", state.tempSEM)
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fmt.Fprintf(w, "# HELP sem_environment_humidity_percent Environmental relative humidity of the SEM, in percent\n")
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fmt.Fprintf(w, "# TYPE sem_environment_humidity_percent gauge\n")
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fmt.Fprintf(w, "sem_environment_humidity_percent %f\n", state.humiditySEM)
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fmt.Fprintf(w, "# HELP sem_dp_bottom_temperature_celsius Temperature of the DP bottom, in degrees celsius\n")
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fmt.Fprintf(w, "# TYPE sem_dp_bottom_temperature_celsius gauge\n")
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fmt.Fprintf(w, "sem_dp_bottom_temperature_celsius %f\n", state.tempDPBottom)
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fmt.Fprintf(w, "# HELP sem_dp_top_temperature_celsius Temperature of the DP top, in degrees celsius\n")
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fmt.Fprintf(w, "# TYPE sem_dp_top_temperature_celsius gauge\n")
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fmt.Fprintf(w, "sem_dp_top_temperature_celsius %f\n", state.tempDPTop)
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fmt.Fprintf(w, "# HELP sem_dp_inlet_temperature_celsius Temperature of the DP inlet flange, in degrees celsius\n")
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fmt.Fprintf(w, "# TYPE sem_dp_inlet_temperature_celsius gauge\n")
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fmt.Fprintf(w, "sem_dp_inlet_temperature_celsius %f\n", state.tempDPInlet)
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fmt.Fprintf(w, "sem_pressure_mbar %f\n", mbar)
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fmt.Fprintf(w, "# TYPE sem_rp_on gauge\n")
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fmt.Fprintf(w, "sem_rp_on %t\n", rpOn)
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fmt.Fprintf(w, "# TYPE sem_dp_on gauge\n")
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fmt.Fprintf(w, "sem_dp_on %t\n", dpOn)
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fmt.Fprintf(w, "# TYPE sem_gpio_pump_down_status gauge\n")
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fmt.Fprintf(w, "sem_gpio_pump_down_status %t\n", pumpDownStatus)
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fmt.Fprintf(w, "# TYPE sem_gpio_vent_status gauge\n")
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fmt.Fprintf(w, "sem_gpio_vent_status %t\n", ventStatus)
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fmt.Fprintf(w, "# TYPE sem_gpio_below_rough_status gauge\n")
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fmt.Fprintf(w, "sem_gpio_below_rough_status %t\n", belowRoughStatus)
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fmt.Fprintf(w, "# TYPE sem_gpio_below_high_status gauge\n")
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fmt.Fprintf(w, "sem_gpio_below_high_status %t\n", belowHighStatus)
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}
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func (s *webServer) viewRoughingPumpEnable(w http.ResponseWriter, r *http.Request) {
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@ -9,19 +9,19 @@ body {
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padding: 2em;
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}
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table {
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font-size: 30px;
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font-size: 40px;
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}
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table.status td {
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width: 2em;
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}
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th, td {
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background-color: #e8e8e8;
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padding: 0.3em;
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padding: 0.4em;
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}
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th {
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font-weight: 100;
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text-align: right;
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font-size: 25px;
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font-size: 30px;
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}
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td {
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text-align: left;
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@ -34,7 +34,7 @@ h2 {
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font-weight: 100;
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}
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button {
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height: 3.3em;
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height: 4.5em;
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padding-left: 1.5em;
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padding-right: 1.5em;
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}
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|
@ -76,7 +76,6 @@ td > span {
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.has-hidden:hover .hidden-text {
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display: block;
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}
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@media only screen and (max-width: 700px) {
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body {
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|
@ -121,6 +120,19 @@ td > span {
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</tr>
|
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</table>
|
||||
|
||||
<table>
|
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<tr>
|
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<th>Pirani Pressure</th>
|
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<td class="has-hidden">
|
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<div id="mbar">{{ .Pirani.Mbar }}</div>
|
||||
<div class="hidden-text" style="color: #606060;">
|
||||
<span>Voltage: </span><span id="volts">{{ .Pirani.Volts }}</span>
|
||||
</div>
|
||||
</td>
|
||||
</tr>
|
||||
</table>
|
||||
|
||||
|
||||
<table>
|
||||
<tr>
|
||||
<th rowspan="3">Control</th>
|
||||
|
@ -151,41 +163,6 @@ td > span {
|
|||
</tr>
|
||||
</table>
|
||||
|
||||
<table>
|
||||
<tr>
|
||||
<th>Pirani Pressure</th>
|
||||
<td colspan="2" class="has-hidden">
|
||||
<div id="mbar">{{ .Pirani.Mbar }}</div>
|
||||
<div class="hidden-text" style="color: #606060;">
|
||||
<span>Voltage: </span><span id="volts">{{ .Pirani.Volts }}</span>
|
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</div>
|
||||
</td>
|
||||
</tr>
|
||||
<tr>
|
||||
<th rowspan="4">Temperatures</th>
|
||||
<th>DP Bottom</th>
|
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<td id="temp-dp-bottom">{{ .Temperatures.DPBottom }} °C</td>
|
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</tr>
|
||||
<tr>
|
||||
<th>DP Top</th>
|
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<td id="temp-dp-top">{{ .Temperatures.DPTop }} °C</td>
|
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</tr>
|
||||
<tr>
|
||||
<th>DP Inlet</th>
|
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<td id="temp-dp-inlet">{{ .Temperatures.DPInlet }} °C</td>
|
||||
</tr>
|
||||
<tr>
|
||||
<th>SEM Environment</th>
|
||||
<td id="temp-sem">{{ .Temperatures.SEM }} °C</td>
|
||||
</tr>
|
||||
<tr>
|
||||
<th>Humidity</th>
|
||||
<th>SEM Environment</th>
|
||||
<td id="humidity-sem">{{ .Humidity.SEM }}%</td>
|
||||
</tr>
|
||||
</table>
|
||||
|
||||
|
||||
<div class="graph-container">
|
||||
<canvas id="graph" width="1024" height="512" style="max-width: 100%;"></canvas>
|
||||
</div>
|
||||
|
@ -339,11 +316,6 @@ window.addEventListener("load", (_) => {
|
|||
let trough = document.querySelector("#trough");
|
||||
let thigh = document.querySelector("#thigh");
|
||||
let load = document.querySelector("#load");
|
||||
let tempSEM = document.querySelector("#temp-sem");
|
||||
let tempDPBottom = document.querySelector("#temp-dp-bottom");
|
||||
let tempDPTop = document.querySelector("#temp-dp-top");
|
||||
let tempDPInlet = document.querySelector("#temp-dp-inlet");
|
||||
let humiditySEM = document.querySelector('#humidity-sem');
|
||||
|
||||
// Buttons
|
||||
let pd = document.querySelector("#pd");
|
||||
|
@ -416,30 +388,6 @@ window.addEventListener("load", (_) => {
|
|||
dp.style = colors.default;
|
||||
}
|
||||
|
||||
tempSEM.innerHTML = data.Temperatures.SEM + " °C";
|
||||
tempSEM.style = (data.Temperatures.SEM > 30) ?
|
||||
colors.highlightCaution : colors.default;
|
||||
humiditySEM.innerHTML = data.Humidity.SEM + "%";
|
||||
humiditySEM.style = (data.Humidity.SEM > 59) ?
|
||||
colors.highlightCaution : colors.default;
|
||||
|
||||
tempDPTop.innerHTML = data.Temperatures.DPTop + " °C";
|
||||
tempDPTop.style = (data.Temperatures.DPTop > 30) ?
|
||||
colors.highlightCaution : colors.default;
|
||||
|
||||
tempDPInlet.innerHTML = data.Temperatures.DPInlet + " °C";
|
||||
tempDPInlet.style = (data.Temperatures.DPInlet > 30) ?
|
||||
colors.highlightCaution : colors.default;
|
||||
|
||||
tempDPBottom.innerHTML = data.Temperatures.DPBottom + " °C";
|
||||
if (data.Temperatures.DPBottom > 200) {
|
||||
tempDPBottom.style = colors.highlightFault;
|
||||
} else if (data.Temperatures.DPBottom > 50) {
|
||||
tempDPBottom.style = colors.highlightNeutral;
|
||||
} else {
|
||||
tempDPBottom.style = colors.default;
|
||||
}
|
||||
|
||||
let t = [];
|
||||
if (data.Feedback.RoughReached) {
|
||||
trough.innerHTML = "OK";
|
||||
|
@ -465,7 +413,7 @@ window.addEventListener("load", (_) => {
|
|||
|
||||
// Indicate all process values as unknown
|
||||
|
||||
[failsafe, highpressure, rp, dp, trough, thigh, volts, mbar, tempDPBottom, tempDPTop, tempDPInlet].forEach((el) => {
|
||||
[failsafe, highpressure, rp, dp, trough, thigh, volts, mbar].forEach((el) => {
|
||||
if (!el.innerHTML.includes("??")) {
|
||||
el.innerHTML += "??";
|
||||
}
|
||||
|
|
|
@ -35,12 +35,6 @@ func main() {
|
|||
d.daemonState.piraniVolts3.limit = 3
|
||||
d.daemonState.piraniVolts100.limit = 100
|
||||
|
||||
d.tempDPBottom = 420.6
|
||||
d.tempDPTop = 69.0
|
||||
d.tempDPInlet = 42.0
|
||||
d.tempSEM = 42.5
|
||||
d.humiditySEM = 66.6
|
||||
|
||||
d.aboveRough.threshold = float64(flagPressureThresholdRough)
|
||||
d.aboveRough.hysteresis = float64(flagPressureThresholdRoughHysteresis)
|
||||
d.aboveHigh.threshold = float64(flagPressureThresholdHigh)
|
||||
|
@ -48,6 +42,12 @@ func main() {
|
|||
if flagFake {
|
||||
klog.Infof("Starting with fake peripherals")
|
||||
d.adcPirani = &fakeADC{}
|
||||
d.gpioRoughingPump = &fakeGPIO{desc: "rp"}
|
||||
d.gpioDiffusionPump = &fakeGPIO{desc: "~dp"}
|
||||
d.gpioBtnPumpDown = &fakeGPIO{desc: "~pd"}
|
||||
d.gpioBtnVent = &fakeGPIO{desc: "~vent"}
|
||||
d.gpioBelowRough = &fakeGPIO{desc: "~rough"}
|
||||
d.gpioBelowHigh = &fakeGPIO{desc: "~high"}
|
||||
} else {
|
||||
adc, err := newBBADC(0)
|
||||
if err != nil {
|
||||
|
@ -55,9 +55,21 @@ func main() {
|
|||
}
|
||||
d.adcPirani = adc
|
||||
|
||||
err = d.modbusConnect()
|
||||
for _, c := range []struct {
|
||||
out *gpio
|
||||
num int
|
||||
}{
|
||||
{&d.gpioRoughingPump, 115},
|
||||
{&d.gpioDiffusionPump, 49},
|
||||
{&d.gpioBtnPumpDown, 48},
|
||||
{&d.gpioBtnVent, 60},
|
||||
{&d.gpioBelowRough, 30},
|
||||
{&d.gpioBelowHigh, 7},
|
||||
} {
|
||||
*c.out, err = newBBGPIO(c.num, true)
|
||||
if err != nil {
|
||||
klog.Exitf("Failed to connect to modbus %v", err)
|
||||
klog.Exitf("Failed to setup GPIO: %v", err)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -74,9 +86,5 @@ func main() {
|
|||
}()
|
||||
|
||||
go d.process(ctx)
|
||||
if !flagFake {
|
||||
go d.modbusProcess(ctx)
|
||||
}
|
||||
|
||||
<-ctx.Done()
|
||||
}
|
||||
|
|
|
@ -1,186 +0,0 @@
|
|||
package main
|
||||
|
||||
import (
|
||||
"context"
|
||||
"time"
|
||||
|
||||
"github.com/simonvetter/modbus"
|
||||
"k8s.io/klog"
|
||||
)
|
||||
|
||||
func modbusValuesToFloat(v uint16) float32 {
|
||||
return float32(v) / 10.0
|
||||
}
|
||||
|
||||
func (d *daemon) modbusConnect() error {
|
||||
var err error
|
||||
|
||||
d.mu.Lock()
|
||||
defer d.mu.Unlock()
|
||||
|
||||
// Setup modbus client
|
||||
d.modbusClient, err = modbus.NewClient(&modbus.ClientConfiguration{
|
||||
URL: "tcp://10.250.241.20:8887",
|
||||
Timeout: 1 * time.Second,
|
||||
})
|
||||
if err != nil {
|
||||
return err
|
||||
}
|
||||
// Connect to modbus client
|
||||
err = d.modbusClient.Open()
|
||||
if err != nil {
|
||||
return err
|
||||
}
|
||||
|
||||
return nil
|
||||
}
|
||||
|
||||
func (d *daemon) modbusRestart() error {
|
||||
d.modbusClient.Close()
|
||||
return d.modbusClient.Open()
|
||||
}
|
||||
|
||||
// There are currently two devices connected to the modbus.
|
||||
// The first one (slave 1) is a temperature/humidity sensor.
|
||||
// The second one (slave 2) is a PTA8D08 transmitter
|
||||
//
|
||||
// Returns whether modbus should restart (only in case of an underlying network error)
|
||||
func (d *daemon) modbusUpdate() bool {
|
||||
var err error
|
||||
var numDevicesNotResponding int
|
||||
|
||||
// Switch to slave 1 (BTA1)
|
||||
d.modbusClient.SetUnitId(1)
|
||||
|
||||
// Read temperature and humidity
|
||||
var registersBTA1 []uint16 // temperature, humidity
|
||||
registersBTA1, err = d.modbusClient.ReadRegisters(1, 2, modbus.INPUT_REGISTER)
|
||||
if err != nil {
|
||||
numDevicesNotResponding += 1
|
||||
klog.Warningf("error while reading registers from BTA1 %v", err)
|
||||
} else if len(registersBTA1) != 2 {
|
||||
klog.Warningf("expected two registers from modbus slave 1, but got %d", len(registersBTA1))
|
||||
} else {
|
||||
d.mu.Lock()
|
||||
d.daemonState.tempSEM = modbusValuesToFloat(registersBTA1[0])
|
||||
d.daemonState.humiditySEM = modbusValuesToFloat(registersBTA1[1])
|
||||
d.mu.Unlock()
|
||||
}
|
||||
|
||||
// Switch to slave 2 (KEC2)
|
||||
d.modbusClient.SetUnitId(2)
|
||||
|
||||
// PT100 mapping
|
||||
// Channel 0: Cable -WGA6, Sensor "dp bottom"
|
||||
// Channel 1: Cable -WGA8, Sensor "dp inlet"
|
||||
// Channel 2: Cable WGA7, Sensor "dp top"
|
||||
var registersKEC2 []uint16 // temperatures dp
|
||||
registersKEC2, err = d.modbusClient.ReadRegisters(0, 3, modbus.HOLDING_REGISTER)
|
||||
if err != nil {
|
||||
numDevicesNotResponding += 1
|
||||
klog.Warningf("error while reading registers from KEC2 %v", err)
|
||||
} else if len(registersKEC2) != 3 {
|
||||
klog.Warningf("expected three registers from modbus slave 2, but got %d", len(registersKEC2))
|
||||
} else {
|
||||
d.mu.Lock()
|
||||
d.daemonState.tempDPBottom = modbusValuesToFloat(registersKEC2[0])
|
||||
d.daemonState.tempDPInlet = modbusValuesToFloat(registersKEC2[1])
|
||||
d.daemonState.tempDPTop = modbusValuesToFloat(registersKEC2[2])
|
||||
d.mu.Unlock()
|
||||
}
|
||||
|
||||
// Switch to slave 3 (KEC1)
|
||||
d.modbusClient.SetUnitId(3)
|
||||
|
||||
// Do a read first to avoid side-effects from the subsequent write to the relay states
|
||||
var digitalInputs [8]bool
|
||||
var digitalInputRegisters []uint16
|
||||
|
||||
digitalInputRegisters, err = d.modbusClient.ReadRegisters(0x81, 8, modbus.HOLDING_REGISTER)
|
||||
if err != nil {
|
||||
numDevicesNotResponding += 1
|
||||
klog.Warningf("error while reading digital inputs from KEC1 %v", err)
|
||||
} else {
|
||||
// Convert MODBUS words into bools
|
||||
for idx, value := range digitalInputRegisters {
|
||||
if value != 0 {
|
||||
digitalInputs[idx] = true
|
||||
} else {
|
||||
digitalInputs[idx] = false
|
||||
}
|
||||
}
|
||||
// TODO: Input mapping goes here
|
||||
}
|
||||
|
||||
// We must wait between reading and writing to the -KEC1 relay board
|
||||
// because otherwise it chokes and times out the write registers
|
||||
// command.
|
||||
time.Sleep(time.Millisecond * 10)
|
||||
|
||||
// KFA1-KFA8
|
||||
var relayState [8]bool
|
||||
d.mu.Lock()
|
||||
// -KFA1 Roughing Pump (normally closed contact)
|
||||
relayState[0] = !d.daemonState.rpOn
|
||||
// -KFA2 Diffusion Pump
|
||||
relayState[1] = d.daemonState.dpOn
|
||||
// -KFA4 Button Vent
|
||||
relayState[3] = d.daemonState.vent.output
|
||||
// -KFA5 Button Pump-Down
|
||||
relayState[4] = d.daemonState.pumpdown.output
|
||||
// -KFA6 Fake-Pirani Rough (normally closed contact)
|
||||
relayState[5] = !d.aboveRough.output
|
||||
// -KFA7 Fake-Pirani High (normally closed contact)
|
||||
relayState[6] = !d.aboveHigh.output
|
||||
d.mu.Unlock()
|
||||
|
||||
// The KEC1 module uses a non-standard MODBUS interface
|
||||
// instead of coils
|
||||
// 0x0100 is the open command
|
||||
// 0x0200 is the close command
|
||||
// We write 8 words (16-bit) to address 0x01 to update the relays
|
||||
var registerValuesKEC1 [8]uint16
|
||||
// Convert the boolean values to the commands
|
||||
for idx, state := range relayState {
|
||||
if state {
|
||||
registerValuesKEC1[idx] = 0x0100
|
||||
} else {
|
||||
registerValuesKEC1[idx] = 0x0200
|
||||
}
|
||||
}
|
||||
|
||||
err = d.modbusClient.WriteRegisters(0x01, registerValuesKEC1[:])
|
||||
if err != nil {
|
||||
numDevicesNotResponding += 1
|
||||
klog.Warningf("error while updating registers %v", err)
|
||||
}
|
||||
|
||||
if numDevicesNotResponding >= 4 {
|
||||
klog.Warningf("no device did respond to our request. Probably a network timeout.")
|
||||
return true
|
||||
}
|
||||
|
||||
return false
|
||||
}
|
||||
|
||||
// Call modbusUpdate every 100 milliseconds
|
||||
func (d *daemon) modbusProcess(ctx context.Context) {
|
||||
for {
|
||||
select {
|
||||
case <-ctx.Done():
|
||||
return
|
||||
default:
|
||||
shouldRestart := d.modbusUpdate()
|
||||
// the modbus library does not reopen the tcp socket in case of
|
||||
// a connection loss.
|
||||
if shouldRestart {
|
||||
klog.Infof("restarting modbus connection...")
|
||||
err := d.modbusRestart()
|
||||
if err != nil {
|
||||
klog.Warningf("failed to restart modbus %v", err)
|
||||
}
|
||||
}
|
||||
time.Sleep(time.Millisecond * 100)
|
||||
}
|
||||
}
|
||||
}
|
|
@ -8,17 +8,22 @@ import (
|
|||
"sync/atomic"
|
||||
"time"
|
||||
|
||||
"github.com/simonvetter/modbus"
|
||||
"k8s.io/klog"
|
||||
)
|
||||
|
||||
// daemon is the main service of the succdaemon.
|
||||
type daemon struct {
|
||||
modbusClient *modbus.ModbusClient
|
||||
// adcPirani is the adc implementation returning the voltage of the Pfeiffer
|
||||
// Pirani gauge.
|
||||
adcPirani adc
|
||||
|
||||
gpioDiffusionPump gpio
|
||||
gpioRoughingPump gpio
|
||||
gpioBtnPumpDown gpio
|
||||
gpioBtnVent gpio
|
||||
gpioBelowRough gpio
|
||||
gpioBelowHigh gpio
|
||||
|
||||
load atomic.Int64
|
||||
|
||||
// mu guards the state below.
|
||||
|
@ -50,13 +55,6 @@ type daemonState struct {
|
|||
pumpdown momentaryOutput
|
||||
aboveRough thresholdOutput
|
||||
aboveHigh thresholdOutput
|
||||
|
||||
tempDPBottom float32
|
||||
tempDPTop float32
|
||||
tempDPInlet float32
|
||||
|
||||
tempSEM float32
|
||||
humiditySEM float32
|
||||
}
|
||||
|
||||
func (d *daemonState) vacuumStatus() (rough, high bool) {
|
||||
|
@ -164,5 +162,33 @@ func (d *daemon) processOnce(_ context.Context) error {
|
|||
d.dpOn = false
|
||||
}
|
||||
|
||||
// Update relay outputs.
|
||||
for _, rel := range []struct {
|
||||
name string
|
||||
gpio gpio
|
||||
// activeHigh means the relay is active high, ie. a true source will
|
||||
// mean that NO/COM get connected, and a false source means that NC/COM
|
||||
// get connected.
|
||||
activeHigh bool
|
||||
source bool
|
||||
}{
|
||||
{"rp", d.gpioRoughingPump, false, d.rpOn},
|
||||
{"dp", d.gpioDiffusionPump, true, d.dpOn},
|
||||
{"pumpdown", d.gpioBtnPumpDown, true, d.pumpdown.output},
|
||||
{"vent", d.gpioBtnVent, true, d.vent.output},
|
||||
{"rough", d.gpioBelowRough, false, d.aboveRough.output},
|
||||
{"high", d.gpioBelowHigh, false, d.aboveHigh.output},
|
||||
} {
|
||||
val := rel.source
|
||||
if rel.activeHigh {
|
||||
// Invert because the relays go through logical inversion (ie. a
|
||||
// GPIO false is a relay trigger).
|
||||
val = !val
|
||||
}
|
||||
if err := rel.gpio.set(val); err != nil {
|
||||
return fmt.Errorf("when outputting %s: %w", rel.name, err)
|
||||
}
|
||||
}
|
||||
|
||||
return nil
|
||||
}
|
||||
|
|
|
@ -18,6 +18,12 @@ type daemonController interface {
|
|||
pumpDownPress()
|
||||
// ventPRess simulates a vent button press.
|
||||
ventPress()
|
||||
// returns the current gpio state of the pump down button
|
||||
gpioPumpDownStatus() bool
|
||||
// returns the current gpio state of the vent button
|
||||
gpioVentStatus() bool
|
||||
gpioBelowRoughStatus() bool
|
||||
gpioBelowHighStatus() bool
|
||||
}
|
||||
|
||||
func (d *daemon) loopLoad() int64 {
|
||||
|
@ -62,3 +68,27 @@ func (d *daemon) ventPress() {
|
|||
defer d.mu.Unlock()
|
||||
d.vent.trigger()
|
||||
}
|
||||
|
||||
func (d *daemon) gpioPumpDownStatus() bool {
|
||||
d.mu.Lock()
|
||||
defer d.mu.Unlock()
|
||||
return d.gpioBtnPumpDown.get()
|
||||
}
|
||||
|
||||
func (d *daemon) gpioVentStatus() bool {
|
||||
d.mu.Lock()
|
||||
defer d.mu.Unlock()
|
||||
return d.gpioBtnVent.get()
|
||||
}
|
||||
|
||||
func (d *daemon) gpioBelowRoughStatus() bool {
|
||||
d.mu.Lock()
|
||||
defer d.mu.Unlock()
|
||||
return d.gpioBelowRough.get()
|
||||
}
|
||||
|
||||
func (d *daemon) gpioBelowHighStatus() bool {
|
||||
d.mu.Lock()
|
||||
defer d.mu.Unlock()
|
||||
return d.gpioBelowHigh.get()
|
||||
}
|
||||
|
|
Loading…
Reference in a new issue