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4 Commits

Author SHA1 Message Date
tiger_zhou
3bf98d1ddf Merge branch 'develop' into local-test
All checks were successful
local-test分支打包构建docker并发布运行 / Docker-Build (push) Successful in 1m52s
2024-05-09 14:36:44 +08:00
tiger_zhou
6fa4c6e6a9 列车控制调整 2024-05-09 14:36:13 +08:00
tiger_zhou
0b25327b28 列车控制,方向设置“0”问题调整 2024-05-08 14:39:23 +08:00
tiger_zhou
7ed8fcbed7 列车pc仿真调整 2024-05-08 10:00:53 +08:00
7 changed files with 283 additions and 182 deletions

View File

@ -236,7 +236,7 @@ type TrainEndsState struct {
SpeedSensorEnableB bool `protobuf:"varint,2,opt,name=speedSensorEnableB,proto3" json:"speedSensorEnableB,omitempty"` SpeedSensorEnableB bool `protobuf:"varint,2,opt,name=speedSensorEnableB,proto3" json:"speedSensorEnableB,omitempty"`
// 雷达是否有效 // 雷达是否有效
RadarEnable bool `protobuf:"varint,3,opt,name=radarEnable,proto3" json:"radarEnable,omitempty"` RadarEnable bool `protobuf:"varint,3,opt,name=radarEnable,proto3" json:"radarEnable,omitempty"`
// 雷达测速差值(米/秒 // 雷达测速差值(千米/小时
RadarCheckSpeedDiff float32 `protobuf:"fixed32,4,opt,name=radarCheckSpeedDiff,proto3" json:"radarCheckSpeedDiff,omitempty"` RadarCheckSpeedDiff float32 `protobuf:"fixed32,4,opt,name=radarCheckSpeedDiff,proto3" json:"radarCheckSpeedDiff,omitempty"`
// 雷达检测时间(秒) // 雷达检测时间(秒)
RadarCheckTime int32 `protobuf:"varint,5,opt,name=radarCheckTime,proto3" json:"radarCheckTime,omitempty"` RadarCheckTime int32 `protobuf:"varint,5,opt,name=radarCheckTime,proto3" json:"radarCheckTime,omitempty"`
@ -246,9 +246,9 @@ type TrainEndsState struct {
AccCheckSpeedDiff float32 `protobuf:"fixed32,7,opt,name=accCheckSpeedDiff,proto3" json:"accCheckSpeedDiff,omitempty"` AccCheckSpeedDiff float32 `protobuf:"fixed32,7,opt,name=accCheckSpeedDiff,proto3" json:"accCheckSpeedDiff,omitempty"`
// 加速度持续时间 // 加速度持续时间
AccCheckTime int32 `protobuf:"varint,8,opt,name=accCheckTime,proto3" json:"accCheckTime,omitempty"` AccCheckTime int32 `protobuf:"varint,8,opt,name=accCheckTime,proto3" json:"accCheckTime,omitempty"`
// 速传速度输出(米/秒 // 速传速度输出(千米/小时
AccOutSpeed int32 `protobuf:"varint,9,opt,name=accOutSpeed,proto3" json:"accOutSpeed,omitempty"` AccOutSpeed int32 `protobuf:"varint,9,opt,name=accOutSpeed,proto3" json:"accOutSpeed,omitempty"`
// 雷达速度输出(米/秒 // 雷达速度输出(千米/小时
RadarOutSpeed int32 `protobuf:"varint,10,opt,name=radarOutSpeed,proto3" json:"radarOutSpeed,omitempty"` RadarOutSpeed int32 `protobuf:"varint,10,opt,name=radarOutSpeed,proto3" json:"radarOutSpeed,omitempty"`
// 记录雷达设置检测时间的时间点,用于计算周期内的数字 // 记录雷达设置检测时间的时间点,用于计算周期内的数字
RadarCheckTimeOverAt int64 `protobuf:"varint,11,opt,name=radarCheckTimeOverAt,proto3" json:"radarCheckTimeOverAt,omitempty"` RadarCheckTimeOverAt int64 `protobuf:"varint,11,opt,name=radarCheckTimeOverAt,proto3" json:"radarCheckTimeOverAt,omitempty"`

View File

@ -587,6 +587,55 @@ func (TrainControl_TrainControlType) EnumDescriptor() ([]byte, []int) {
return file_request_proto_rawDescGZIP(), []int{14, 0} return file_request_proto_rawDescGZIP(), []int{14, 0}
} }
type TrainControl_Direction int32
const (
TrainControl_BACKWARD TrainControl_Direction = 0 //后退
TrainControl_FORWARD TrainControl_Direction = 1 //前进
TrainControl_NEUTRALWARD TrainControl_Direction = 2 //中位
)
// Enum value maps for TrainControl_Direction.
var (
TrainControl_Direction_name = map[int32]string{
0: "BACKWARD",
1: "FORWARD",
2: "NEUTRALWARD",
}
TrainControl_Direction_value = map[string]int32{
"BACKWARD": 0,
"FORWARD": 1,
"NEUTRALWARD": 2,
}
)
func (x TrainControl_Direction) Enum() *TrainControl_Direction {
p := new(TrainControl_Direction)
*p = x
return p
}
func (x TrainControl_Direction) String() string {
return protoimpl.X.EnumStringOf(x.Descriptor(), protoreflect.EnumNumber(x))
}
func (TrainControl_Direction) Descriptor() protoreflect.EnumDescriptor {
return file_request_proto_enumTypes[11].Descriptor()
}
func (TrainControl_Direction) Type() protoreflect.EnumType {
return &file_request_proto_enumTypes[11]
}
func (x TrainControl_Direction) Number() protoreflect.EnumNumber {
return protoreflect.EnumNumber(x)
}
// Deprecated: Use TrainControl_Direction.Descriptor instead.
func (TrainControl_Direction) EnumDescriptor() ([]byte, []int) {
return file_request_proto_rawDescGZIP(), []int{14, 1}
}
type Ckm_Operation int32 type Ckm_Operation int32
const ( const (
@ -617,11 +666,11 @@ func (x Ckm_Operation) String() string {
} }
func (Ckm_Operation) Descriptor() protoreflect.EnumDescriptor { func (Ckm_Operation) Descriptor() protoreflect.EnumDescriptor {
return file_request_proto_enumTypes[11].Descriptor() return file_request_proto_enumTypes[12].Descriptor()
} }
func (Ckm_Operation) Type() protoreflect.EnumType { func (Ckm_Operation) Type() protoreflect.EnumType {
return &file_request_proto_enumTypes[11] return &file_request_proto_enumTypes[12]
} }
func (x Ckm_Operation) Number() protoreflect.EnumNumber { func (x Ckm_Operation) Number() protoreflect.EnumNumber {
@ -666,11 +715,11 @@ func (x Ckm_Force) String() string {
} }
func (Ckm_Force) Descriptor() protoreflect.EnumDescriptor { func (Ckm_Force) Descriptor() protoreflect.EnumDescriptor {
return file_request_proto_enumTypes[12].Descriptor() return file_request_proto_enumTypes[13].Descriptor()
} }
func (Ckm_Force) Type() protoreflect.EnumType { func (Ckm_Force) Type() protoreflect.EnumType {
return &file_request_proto_enumTypes[12] return &file_request_proto_enumTypes[13]
} }
func (x Ckm_Force) Number() protoreflect.EnumNumber { func (x Ckm_Force) Number() protoreflect.EnumNumber {
@ -712,11 +761,11 @@ func (x Ckm_Fault) String() string {
} }
func (Ckm_Fault) Descriptor() protoreflect.EnumDescriptor { func (Ckm_Fault) Descriptor() protoreflect.EnumDescriptor {
return file_request_proto_enumTypes[13].Descriptor() return file_request_proto_enumTypes[14].Descriptor()
} }
func (Ckm_Fault) Type() protoreflect.EnumType { func (Ckm_Fault) Type() protoreflect.EnumType {
return &file_request_proto_enumTypes[13] return &file_request_proto_enumTypes[14]
} }
func (x Ckm_Fault) Number() protoreflect.EnumNumber { func (x Ckm_Fault) Number() protoreflect.EnumNumber {
@ -758,11 +807,11 @@ func (x Xcj_Operation) String() string {
} }
func (Xcj_Operation) Descriptor() protoreflect.EnumDescriptor { func (Xcj_Operation) Descriptor() protoreflect.EnumDescriptor {
return file_request_proto_enumTypes[14].Descriptor() return file_request_proto_enumTypes[15].Descriptor()
} }
func (Xcj_Operation) Type() protoreflect.EnumType { func (Xcj_Operation) Type() protoreflect.EnumType {
return &file_request_proto_enumTypes[14] return &file_request_proto_enumTypes[15]
} }
func (x Xcj_Operation) Number() protoreflect.EnumNumber { func (x Xcj_Operation) Number() protoreflect.EnumNumber {
@ -804,11 +853,11 @@ func (x Xcj_Fault) String() string {
} }
func (Xcj_Fault) Descriptor() protoreflect.EnumDescriptor { func (Xcj_Fault) Descriptor() protoreflect.EnumDescriptor {
return file_request_proto_enumTypes[15].Descriptor() return file_request_proto_enumTypes[16].Descriptor()
} }
func (Xcj_Fault) Type() protoreflect.EnumType { func (Xcj_Fault) Type() protoreflect.EnumType {
return &file_request_proto_enumTypes[15] return &file_request_proto_enumTypes[16]
} }
func (x Xcj_Fault) Number() protoreflect.EnumNumber { func (x Xcj_Fault) Number() protoreflect.EnumNumber {
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} }
var ( var (
@ -2496,7 +2548,7 @@ func file_request_proto_rawDescGZIP() []byte {
return file_request_proto_rawDescData return file_request_proto_rawDescData
} }
var file_request_proto_enumTypes = make([]protoimpl.EnumInfo, 16) var file_request_proto_enumTypes = make([]protoimpl.EnumInfo, 17)
var file_request_proto_msgTypes = make([]protoimpl.MessageInfo, 25) var file_request_proto_msgTypes = make([]protoimpl.MessageInfo, 25)
var file_request_proto_goTypes = []interface{}{ var file_request_proto_goTypes = []interface{}{
(Relay_Operation)(0), // 0: request.Relay.Operation (Relay_Operation)(0), // 0: request.Relay.Operation
@ -2510,64 +2562,65 @@ var file_request_proto_goTypes = []interface{}{
(Psd_Force)(0), // 8: request.Psd.Force (Psd_Force)(0), // 8: request.Psd.Force
(Psd_Fault)(0), // 9: request.Psd.Fault (Psd_Fault)(0), // 9: request.Psd.Fault
(TrainControl_TrainControlType)(0), // 10: request.TrainControl.TrainControlType (TrainControl_TrainControlType)(0), // 10: request.TrainControl.TrainControlType
(Ckm_Operation)(0), // 11: request.Ckm.Operation (TrainControl_Direction)(0), // 11: request.TrainControl.Direction
(Ckm_Force)(0), // 12: request.Ckm.Force (Ckm_Operation)(0), // 12: request.Ckm.Operation
(Ckm_Fault)(0), // 13: request.Ckm.Fault (Ckm_Force)(0), // 13: request.Ckm.Force
(Xcj_Operation)(0), // 14: request.Xcj.Operation (Ckm_Fault)(0), // 14: request.Ckm.Fault
(Xcj_Fault)(0), // 15: request.Xcj.Fault (Xcj_Operation)(0), // 15: request.Xcj.Operation
(*Relay)(nil), // 16: request.Relay (Xcj_Fault)(0), // 16: request.Xcj.Fault
(*RelayOperationReq)(nil), // 17: request.RelayOperationReq (*Relay)(nil), // 17: request.Relay
(*Points)(nil), // 18: request.Points (*RelayOperationReq)(nil), // 18: request.RelayOperationReq
(*PointsOperationReq)(nil), // 19: request.PointsOperationReq (*Points)(nil), // 19: request.Points
(*PointsParam)(nil), // 20: request.PointsParam (*PointsOperationReq)(nil), // 20: request.PointsOperationReq
(*Signal)(nil), // 21: request.Signal (*PointsParam)(nil), // 21: request.PointsParam
(*SignalOperationReq)(nil), // 22: request.SignalOperationReq (*Signal)(nil), // 22: request.Signal
(*SignalParam)(nil), // 23: request.SignalParam (*SignalOperationReq)(nil), // 23: request.SignalOperationReq
(*Section)(nil), // 24: request.Section (*SignalParam)(nil), // 24: request.SignalParam
(*SectionOperationReq)(nil), // 25: request.SectionOperationReq (*Section)(nil), // 25: request.Section
(*SectionParam)(nil), // 26: request.SectionParam (*SectionOperationReq)(nil), // 26: request.SectionOperationReq
(*Psd)(nil), // 27: request.Psd (*SectionParam)(nil), // 27: request.SectionParam
(*PsdOperationReq)(nil), // 28: request.PsdOperationReq (*Psd)(nil), // 28: request.Psd
(*PsdParam)(nil), // 29: request.PsdParam (*PsdOperationReq)(nil), // 29: request.PsdOperationReq
(*TrainControl)(nil), // 30: request.TrainControl (*PsdParam)(nil), // 30: request.PsdParam
(*CkmOperationReq)(nil), // 31: request.CkmOperationReq (*TrainControl)(nil), // 31: request.TrainControl
(*Ckm)(nil), // 32: request.Ckm (*CkmOperationReq)(nil), // 32: request.CkmOperationReq
(*CkmParam)(nil), // 33: request.CkmParam (*Ckm)(nil), // 33: request.Ckm
(*XcjOperationReq)(nil), // 34: request.XcjOperationReq (*CkmParam)(nil), // 34: request.CkmParam
(*Xcj)(nil), // 35: request.Xcj (*XcjOperationReq)(nil), // 35: request.XcjOperationReq
(*XcjParam)(nil), // 36: request.XcjParam (*Xcj)(nil), // 36: request.Xcj
(*TrainControl_EmergentButton)(nil), // 37: request.TrainControl.EmergentButton (*XcjParam)(nil), // 37: request.XcjParam
(*TrainControl_DriverKeySwitch)(nil), // 38: request.TrainControl.DriverKeySwitch (*TrainControl_EmergentButton)(nil), // 38: request.TrainControl.EmergentButton
(*TrainControl_DirectionKeySwitch)(nil), // 39: request.TrainControl.DirectionKeySwitch (*TrainControl_DriverKeySwitch)(nil), // 39: request.TrainControl.DriverKeySwitch
(*TrainControl_PushHandler)(nil), // 40: request.TrainControl.PushHandler (*TrainControl_DirectionKeySwitch)(nil), // 40: request.TrainControl.DirectionKeySwitch
(*TrainControl_PushHandler)(nil), // 41: request.TrainControl.PushHandler
} }
var file_request_proto_depIdxs = []int32{ var file_request_proto_depIdxs = []int32{
0, // 0: request.RelayOperationReq.operation:type_name -> request.Relay.Operation 0, // 0: request.RelayOperationReq.operation:type_name -> request.Relay.Operation
1, // 1: request.PointsOperationReq.operation:type_name -> request.Points.Operation 1, // 1: request.PointsOperationReq.operation:type_name -> request.Points.Operation
20, // 2: request.PointsOperationReq.param:type_name -> request.PointsParam 21, // 2: request.PointsOperationReq.param:type_name -> request.PointsParam
2, // 3: request.PointsParam.forcePosition:type_name -> request.Points.Force 2, // 3: request.PointsParam.forcePosition:type_name -> request.Points.Force
3, // 4: request.SignalOperationReq.operation:type_name -> request.Signal.Operation 3, // 4: request.SignalOperationReq.operation:type_name -> request.Signal.Operation
23, // 5: request.SignalOperationReq.param:type_name -> request.SignalParam 24, // 5: request.SignalOperationReq.param:type_name -> request.SignalParam
5, // 6: request.SignalParam.force:type_name -> request.Signal.Force 5, // 6: request.SignalParam.force:type_name -> request.Signal.Force
4, // 7: request.SignalParam.dsList:type_name -> request.Signal.DS 4, // 7: request.SignalParam.dsList:type_name -> request.Signal.DS
6, // 8: request.SectionOperationReq.operation:type_name -> request.Section.Operation 6, // 8: request.SectionOperationReq.operation:type_name -> request.Section.Operation
26, // 9: request.SectionOperationReq.param:type_name -> request.SectionParam 27, // 9: request.SectionOperationReq.param:type_name -> request.SectionParam
7, // 10: request.PsdOperationReq.operation:type_name -> request.Psd.Operation 7, // 10: request.PsdOperationReq.operation:type_name -> request.Psd.Operation
29, // 11: request.PsdOperationReq.param:type_name -> request.PsdParam 30, // 11: request.PsdOperationReq.param:type_name -> request.PsdParam
8, // 12: request.PsdParam.force:type_name -> request.Psd.Force 8, // 12: request.PsdParam.force:type_name -> request.Psd.Force
9, // 13: request.PsdParam.fault:type_name -> request.Psd.Fault 9, // 13: request.PsdParam.fault:type_name -> request.Psd.Fault
10, // 14: request.TrainControl.controlType:type_name -> request.TrainControl.TrainControlType 10, // 14: request.TrainControl.controlType:type_name -> request.TrainControl.TrainControlType
37, // 15: request.TrainControl.button:type_name -> request.TrainControl.EmergentButton 38, // 15: request.TrainControl.button:type_name -> request.TrainControl.EmergentButton
38, // 16: request.TrainControl.driverKey:type_name -> request.TrainControl.DriverKeySwitch 39, // 16: request.TrainControl.driverKey:type_name -> request.TrainControl.DriverKeySwitch
39, // 17: request.TrainControl.dirKey:type_name -> request.TrainControl.DirectionKeySwitch 40, // 17: request.TrainControl.dirKey:type_name -> request.TrainControl.DirectionKeySwitch
40, // 18: request.TrainControl.handler:type_name -> request.TrainControl.PushHandler 41, // 18: request.TrainControl.handler:type_name -> request.TrainControl.PushHandler
11, // 19: request.CkmOperationReq.operation:type_name -> request.Ckm.Operation 12, // 19: request.CkmOperationReq.operation:type_name -> request.Ckm.Operation
33, // 20: request.CkmOperationReq.param:type_name -> request.CkmParam 34, // 20: request.CkmOperationReq.param:type_name -> request.CkmParam
12, // 21: request.CkmParam.force:type_name -> request.Ckm.Force 13, // 21: request.CkmParam.force:type_name -> request.Ckm.Force
13, // 22: request.CkmParam.fault:type_name -> request.Ckm.Fault 14, // 22: request.CkmParam.fault:type_name -> request.Ckm.Fault
14, // 23: request.XcjOperationReq.operation:type_name -> request.Xcj.Operation 15, // 23: request.XcjOperationReq.operation:type_name -> request.Xcj.Operation
36, // 24: request.XcjOperationReq.param:type_name -> request.XcjParam 37, // 24: request.XcjOperationReq.param:type_name -> request.XcjParam
15, // 25: request.XcjParam.fault:type_name -> request.Xcj.Fault 16, // 25: request.XcjParam.fault:type_name -> request.Xcj.Fault
26, // [26:26] is the sub-list for method output_type 26, // [26:26] is the sub-list for method output_type
26, // [26:26] is the sub-list for method input_type 26, // [26:26] is the sub-list for method input_type
26, // [26:26] is the sub-list for extension type_name 26, // [26:26] is the sub-list for extension type_name
@ -2887,7 +2940,7 @@ func file_request_proto_init() {
File: protoimpl.DescBuilder{ File: protoimpl.DescBuilder{
GoPackagePath: reflect.TypeOf(x{}).PkgPath(), GoPackagePath: reflect.TypeOf(x{}).PkgPath(),
RawDescriptor: file_request_proto_rawDesc, RawDescriptor: file_request_proto_rawDesc,
NumEnums: 16, NumEnums: 17,
NumMessages: 25, NumMessages: 25,
NumExtensions: 0, NumExtensions: 0,
NumServices: 0, NumServices: 0,

View File

@ -3211,7 +3211,7 @@ type TrainEndsStateMqtt struct {
SpeedSensorEnableB bool `protobuf:"varint,2,opt,name=speedSensorEnableB,proto3" json:"speedSensorEnableB,omitempty"` SpeedSensorEnableB bool `protobuf:"varint,2,opt,name=speedSensorEnableB,proto3" json:"speedSensorEnableB,omitempty"`
// 雷达是否有效 // 雷达是否有效
RadarEnable bool `protobuf:"varint,3,opt,name=radarEnable,proto3" json:"radarEnable,omitempty"` RadarEnable bool `protobuf:"varint,3,opt,name=radarEnable,proto3" json:"radarEnable,omitempty"`
// 雷达测速差值(米/秒 原本数据float // 雷达测速差值(千米/小时 原本数据float
RadarCheckSpeedDiff string `protobuf:"bytes,4,opt,name=radarCheckSpeedDiff,proto3" json:"radarCheckSpeedDiff,omitempty"` RadarCheckSpeedDiff string `protobuf:"bytes,4,opt,name=radarCheckSpeedDiff,proto3" json:"radarCheckSpeedDiff,omitempty"`
// 雷达检测时间(秒) // 雷达检测时间(秒)
RadarCheckTime int32 `protobuf:"varint,5,opt,name=radarCheckTime,proto3" json:"radarCheckTime,omitempty"` RadarCheckTime int32 `protobuf:"varint,5,opt,name=radarCheckTime,proto3" json:"radarCheckTime,omitempty"`
@ -3220,9 +3220,9 @@ type TrainEndsStateMqtt struct {
AccCheckSpeedDiff string `protobuf:"bytes,7,opt,name=accCheckSpeedDiff,proto3" json:"accCheckSpeedDiff,omitempty"` AccCheckSpeedDiff string `protobuf:"bytes,7,opt,name=accCheckSpeedDiff,proto3" json:"accCheckSpeedDiff,omitempty"`
// 加速度持续时间 // 加速度持续时间
AccCheckTime int32 `protobuf:"varint,8,opt,name=accCheckTime,proto3" json:"accCheckTime,omitempty"` AccCheckTime int32 `protobuf:"varint,8,opt,name=accCheckTime,proto3" json:"accCheckTime,omitempty"`
// 速传速度输出(米/秒 // 速传速度输出(千米/小时
AccOutSpeed int32 `protobuf:"varint,9,opt,name=accOutSpeed,proto3" json:"accOutSpeed,omitempty"` AccOutSpeed int32 `protobuf:"varint,9,opt,name=accOutSpeed,proto3" json:"accOutSpeed,omitempty"`
// 雷达速度输出(米/秒 // 雷达速度输出(千米/小时
RadarOutSpeed int32 `protobuf:"varint,10,opt,name=radarOutSpeed,proto3" json:"radarOutSpeed,omitempty"` RadarOutSpeed int32 `protobuf:"varint,10,opt,name=radarOutSpeed,proto3" json:"radarOutSpeed,omitempty"`
} }

View File

@ -29,6 +29,7 @@ func (r *TrainControlMsg) Encode() []byte {
if !r.FromVobc { if !r.FromVobc {
ls := r.ControlInfo.LifeSignal ls := r.ControlInfo.LifeSignal
r.ControlInfo.LifeSignal = ls + 1 r.ControlInfo.LifeSignal = ls + 1
r.ControlInfo.UpdateTime = time.Now().UnixMilli()
} }
//data := make([]byte, 0) //data := make([]byte, 0)
//data = binary.BigEndian.AppendUint16(data, uint16(r.ControlInfo.LifeSignal)) //data = binary.BigEndian.AppendUint16(data, uint16(r.ControlInfo.LifeSignal))

View File

@ -6,6 +6,14 @@ import (
"joylink.club/bj-rtsts-server/third_party/message" "joylink.club/bj-rtsts-server/third_party/message"
) )
const (
SKQYS1 = "SKQYS1" //驾驶端1
SKQYS2 = "SKQYS2" //驾驶端2
JJZD = "JJZD" //紧急停车
QHFXKZ = "QHFXKZ" //驾驶方向
QYSB = "QYSB" //牵引制动手柄
)
// 获取列车控制图形数据 // 获取列车控制图形数据
func findTrainTccGraphicData(vs *VerifySimulation) *data_proto.TccGraphicStorage { func findTrainTccGraphicData(vs *VerifySimulation) *data_proto.TccGraphicStorage {
var tccGI *data_proto.TccGraphicStorage var tccGI *data_proto.TccGraphicStorage
@ -52,7 +60,7 @@ func findTrainTccGraphicDataHandler(tccG *data_proto.TccGraphicStorage, id uint3
} }
// 初始化列车控制数据 // 初始化列车控制数据
func initTrainTcc(vs *VerifySimulation) *state_proto.TrainControlState { func initTrainTcc(vs *VerifySimulation, runDir bool) *state_proto.TrainControlState {
var tccGI *data_proto.TccGraphicStorage var tccGI *data_proto.TccGraphicStorage
for _, id := range vs.MapIds { for _, id := range vs.MapIds {
if QueryGiType(id) == data_proto.PictureType_TrainControlCab { if QueryGiType(id) == data_proto.PictureType_TrainControlCab {
@ -64,12 +72,12 @@ func initTrainTcc(vs *VerifySimulation) *state_proto.TrainControlState {
tcc := &state_proto.TrainControlState{} tcc := &state_proto.TrainControlState{}
if tccGI != nil { if tccGI != nil {
for _, b := range tccGI.TccButtons { for _, b := range tccGI.TccButtons {
if b.Code == "JJZD" { if b.Code == JJZD {
tcc.Ebutton = &state_proto.TrainControlState_EmergentButton{Id: b.Common.Id, Passed: false} tcc.Ebutton = &state_proto.TrainControlState_EmergentButton{Id: b.Common.Id, Passed: false}
} }
} }
for _, b := range tccGI.TccHandles { for _, b := range tccGI.TccHandles {
if b.Code == "QYSB" { if b.Code == QYSB {
tcc.PushHandler = &state_proto.TrainControlState_PushHandler{Id: b.Common.Id, Val: 0} tcc.PushHandler = &state_proto.TrainControlState_PushHandler{Id: b.Common.Id, Val: 0}
} }
} }
@ -77,7 +85,9 @@ func initTrainTcc(vs *VerifySimulation) *state_proto.TrainControlState {
for _, b := range tccGI.TccKeys { for _, b := range tccGI.TccKeys {
if b.GetType() == data_proto.TccKey_driverControllerActivationClint { if b.GetType() == data_proto.TccKey_driverControllerActivationClint {
val := false val := false
if b.Code == "SKQYS1" { if b.Code == SKQYS1 && runDir {
val = true
} else if b.Code == SKQYS2 && !runDir {
val = true val = true
} }
ds = append(ds, &state_proto.TrainControlState_DriverKeySwitch{Id: b.Common.Id, Val: val}) ds = append(ds, &state_proto.TrainControlState_DriverKeySwitch{Id: b.Common.Id, Val: val})

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@ -98,9 +98,15 @@ func AddTrainStateNew(vs *VerifySimulation, status *state_proto.TrainState, conf
if tl <= 0 { if tl <= 0 {
tl = DEFULAT_TRAIN_LOAD tl = DEFULAT_TRAIN_LOAD
} }
status.VobcState = &state_proto.TrainVobcState{Tc1Active: true, TrainLoad: int64(tl), BrakingStatus: true, BrakeForce: DEFAULT_BRAKE_FORCE, DirectionForward: true} status.VobcState = &state_proto.TrainVobcState{TrainLoad: int64(tl), BrakingStatus: true, BrakeForce: DEFAULT_BRAKE_FORCE, DirectionForward: true}
//status.VobcState.HistoryDir = request_proto.TrainControl_FORWARD
status.Tcc = initTrainTcc(vs) if status.RunDirection {
status.VobcState.Tc1Active = true
} else {
status.VobcState.Tc2Active = true
}
status.Tcc = initTrainTcc(vs, status.RunDirection)
slog.Debug("列车初始化", "trainIndex", trainIndex, "linkId", linkId, "loffset", loffset) slog.Debug("列车初始化", "trainIndex", trainIndex, "linkId", linkId, "loffset", loffset)
linkIdInt, _ := strconv.Atoi(linkId) linkIdInt, _ := strconv.Atoi(linkId)
@ -295,7 +301,7 @@ func UpdateTrainStateByDynamics(vs *VerifySimulation, trainId string, info *mess
panic(sys_error.New("动力学传输数据:列车车头位置计算出错", e1)) panic(sys_error.New("动力学传输数据:列车车头位置计算出错", e1))
} }
runDirection, pointTo := QueryDirectionAndABByDevice(vs.Repo, id, port, info.Up) runDirection, pointTo := QueryDirectionAndABByDevice(vs.Repo, id, port, info.Up)
//slog.Debug("处理动力学转换后的消息", "number", info.Number, "车头位置", id, "偏移", offset, "是否上行", runDirection, "是否ab", pointTo) //slog.Debug("处理动力学转换后的消息", "number", info.Number, "Link", info.Link, "车头位置", id, "偏移", offset, "是否上行", runDirection, "是否ab", pointTo)
// 车尾相对车头link的偏移量 // 车尾相对车头link的偏移量
calctailOffset := calcTrailTailOffset(outLinkOffset, int64(info.Len), info.Up) calctailOffset := calcTrailTailOffset(outLinkOffset, int64(info.Len), info.Up)
tailLinkId, tailDeviceId, tailDevicePort, tailLinkOffset, tailOffset, _, e2 := CalcInitializeLink(vs, outLinkId, calctailOffset, !info.Up) tailLinkId, tailDeviceId, tailDevicePort, tailLinkOffset, tailOffset, _, e2 := CalcInitializeLink(vs, outLinkId, calctailOffset, !info.Up)

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@ -35,34 +35,40 @@ func ControlTrainUpdate(s *VerifySimulation, ct *request_proto.TrainControl) {
panic(sys_error.New("未找到TCC图形数据")) panic(sys_error.New("未找到TCC图形数据"))
} }
sta := data.(*state_proto.TrainState) sta := data.(*state_proto.TrainState)
vobc := sta.VobcState
tcc := sta.Tcc
var tce []train_pc_sim.TrainControlEvent = nil var tce []train_pc_sim.TrainControlEvent = nil
if ct.ControlType == request_proto.TrainControl_EMERGENT_BUTTON { if ct.ControlType == request_proto.TrainControl_EMERGENT_BUTTON {
tce = trainControlEB(sta, ct.Button, ct.DeviceId, tccGraphicData) tce = trainControlEB(vobc, tcc, ct.Button, ct.DeviceId, tccGraphicData)
} else if ct.ControlType == request_proto.TrainControl_DRIVER_KEY_SWITCH { } else if ct.ControlType == request_proto.TrainControl_DRIVER_KEY_SWITCH {
tce = trainControlDriverKey(sta, ct.DriverKey, ct.DeviceId, tccGraphicData) tce = trainControlDriverKey(sta.DynamicState.Speed, vobc, tcc, ct.DriverKey, ct.DeviceId, tccGraphicData)
train_pc_sim.Default().SendDriverActive(sta.ConnState, sta.VobcState) train_pc_sim.Default().SendDriverActive(sta.ConnState, sta.VobcState)
} else if ct.ControlType == request_proto.TrainControl_DIRECTION_KEY_SWITCH { } else if ct.ControlType == request_proto.TrainControl_DIRECTION_KEY_SWITCH {
tce = trainControlDirKey(sta, ct.DirKey, ct.DeviceId, tccGraphicData) tce = trainControlDirKey(sta.DynamicState.Speed, vobc, tcc, ct.DirKey, ct.DeviceId, tccGraphicData)
//此处先注释,根据现场调试情况 2024-4-16 //此处先注释,根据现场调试情况 2024-4-16
//train_pc_sim.Default().SendTrainDirection(sta.VobcState.DirectionForward, sta.VobcState.DirectionBackward) //train_pc_sim.Default().SendTrainDirection(sta.VobcState.DirectionForward, sta.VobcState.DirectionBackward)
} else if ct.ControlType == request_proto.TrainControl_HANDLER { } else if ct.ControlType == request_proto.TrainControl_HANDLER {
oldTraction := sta.VobcState.TractionForce oldTraction := sta.VobcState.TractionForce
oldBrakeForce := sta.VobcState.BrakeForce oldBrakeForce := sta.VobcState.BrakeForce
isTraction := ct.Handler.Val > 0 //是否制动 isTraction := ct.Handler.Val > 0 //是否制动
tce = trainControlHandle(sta, ct.Handler, ct.DeviceId, tccGraphicData) tce = trainControlHandle(vobc, tcc, ct.Handler, ct.DeviceId, tccGraphicData)
train_pc_sim.Default().SendHandleSwitch(oldTraction, oldBrakeForce, isTraction, sta.ConnState, sta.VobcState) train_pc_sim.Default().SendHandleSwitch(oldTraction, oldBrakeForce, isTraction, sta.ConnState, sta.VobcState)
} }
if !vobc.DirectionForward && !vobc.DirectionBackward {
vobc.TractionStatus = false
vobc.TractionForce = 0
}
if sta.ConnState.Conn && sta.ConnState.ConnType == state_proto.TrainConnState_PC_SIM && tce != nil { if sta.ConnState.Conn && sta.ConnState.ConnType == state_proto.TrainConnState_PC_SIM && tce != nil {
train_pc_sim.Default().PublishTrainControlEvent(tce) train_pc_sim.Default().PublishTrainControlEvent(tce)
} }
} }
func trainControlEB(trainState *state_proto.TrainState, request *request_proto.TrainControl_EmergentButton, deviceId uint32, tccGraphic *data_proto.TccGraphicStorage) []train_pc_sim.TrainControlEvent { func trainControlEB(vobc *state_proto.TrainVobcState, tcc *state_proto.TrainControlState, request *request_proto.TrainControl_EmergentButton, deviceId uint32, tccGraphic *data_proto.TccGraphicStorage) []train_pc_sim.TrainControlEvent {
if !request.Active { if !request.Active {
return nil return nil
} }
if trainState.Tcc.Ebutton != nil && trainState.Tcc.Ebutton.Passed { if tcc.Ebutton != nil && tcc.Ebutton.Passed {
return nil return nil
} }
_, find := findTrainTccGraphicDataButton(tccGraphic, deviceId) _, find := findTrainTccGraphicDataButton(tccGraphic, deviceId)
@ -70,67 +76,93 @@ func trainControlEB(trainState *state_proto.TrainState, request *request_proto.T
slog.Error("未找到对应的紧急停车摁钮,deviceId:", deviceId) slog.Error("未找到对应的紧急停车摁钮,deviceId:", deviceId)
return nil return nil
} }
if trainState.Tcc.Ebutton == nil { if tcc.Ebutton == nil {
trainState.Tcc.Ebutton = &state_proto.TrainControlState_EmergentButton{Id: deviceId, Passed: request.Active} tcc.Ebutton = &state_proto.TrainControlState_EmergentButton{Id: deviceId}
} }
trainState.VobcState.EmergencyBrakingStatus = true tcc.Ebutton.Passed = request.Active
trainState.Tcc.Ebutton.Passed = request.Active vobc.EmergencyBrakingStatus = true
trainState.VobcState.TractionForce = 0 vobc.TractionForce = 0
trainState.VobcState.BrakeForce = DEFAULT_BRAKE_FORCE vobc.BrakeForce = DEFAULT_BRAKE_FORCE
return nil return nil
} }
// 列车方向 // 列车方向
func trainControlDirKey(trainState *state_proto.TrainState, request *request_proto.TrainControl_DirectionKeySwitch, deviceId uint32, tccGraphic *data_proto.TccGraphicStorage) []train_pc_sim.TrainControlEvent { func trainControlDirKey(trainSpeed int32, vobc *state_proto.TrainVobcState, tcc *state_proto.TrainControlState, request *request_proto.TrainControl_DirectionKeySwitch, deviceId uint32, tccGraphic *data_proto.TccGraphicStorage) []train_pc_sim.TrainControlEvent {
_, find := findTrainTccGraphicDataKey(tccGraphic, deviceId) _, find := findTrainTccGraphicDataKey(tccGraphic, deviceId)
if !find { if !find {
slog.Error("未找到对应的列车方向键deviceId:", deviceId) slog.Error("未找到对应的列车方向键deviceId:", deviceId)
return nil panic(sys_error.New("未找到对应的列车方向键"))
}
if tcc.DirKey == nil {
tcc.DirKey = &state_proto.TrainControlState_DirectionKeySwitch{Id: deviceId}
} }
trainState.VobcState.DirectionForward = false direction := request_proto.TrainControl_Direction(request.Val)
trainState.VobcState.DirectionBackward = false if trainSpeed > 0 {
panic(sys_error.New("列车未停稳时,不能变更方向"))
}
vobc.DirectionBackward = false
vobc.DirectionForward = false
if direction == request_proto.TrainControl_FORWARD {
vobc.DirectionForward = true
} else if direction == request_proto.TrainControl_BACKWARD {
vobc.DirectionBackward = true
}
/* if direction == request_proto.TrainControl_NEUTRALWARD {
vobc.DirectionBackward = false
vobc.DirectionForward = false
} else if trainSpeed > 0 && direction != vobc.HistoryDir {
tcc.DirKey.Val = uint32(vobc.HistoryDir.Number())
if vobc.HistoryDir == request_proto.TrainControl_FORWARD {
vobc.DirectionForward = true
} else if vobc.HistoryDir == request_proto.TrainControl_BACKWARD {
vobc.DirectionBackward = true
}
panic(sys_error.New("列车未停稳时,不能变更方向"))
}
vobc.DirectionBackward = false
vobc.DirectionForward = false
if direction == request_proto.TrainControl_FORWARD {
vobc.DirectionForward = true
vobc.HistoryDir = request_proto.TrainControl_FORWARD
} else if direction == request_proto.TrainControl_BACKWARD {
vobc.DirectionBackward = true
vobc.HistoryDir = request_proto.TrainControl_BACKWARD
}*/
if request.Val == 1 { tcc.DirKey.Val = request.Val
trainState.VobcState.DirectionForward = true
} else if request.Val == 0 {
trainState.VobcState.DirectionBackward = true
}
if trainState.Tcc.DirKey == nil {
trainState.Tcc.DirKey = &state_proto.TrainControlState_DirectionKeySwitch{Id: deviceId, Val: request.Val}
} else {
trainState.Tcc.DirKey.Val = request.Val
}
tce := make([]train_pc_sim.TrainControlEvent, 0) tce := make([]train_pc_sim.TrainControlEvent, 0)
tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.HANDLE_FORWORD, Status: message.IsTrue(trainState.VobcState.DirectionForward)}) tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.HANDLE_FORWORD, Status: message.IsTrue(vobc.DirectionForward)})
tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.HANDLE_BACKWORD, Status: message.IsTrue(trainState.VobcState.DirectionBackward)}) tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.HANDLE_BACKWORD, Status: message.IsTrue(vobc.DirectionBackward)})
return tce return tce
} }
// 列车驾驶端激活 // 列车驾驶端激活
func trainControlDriverKey(trainState *state_proto.TrainState, request *request_proto.TrainControl_DriverKeySwitch, deviceId uint32, tccGraphic *data_proto.TccGraphicStorage) []train_pc_sim.TrainControlEvent { func trainControlDriverKey(trainSpeed int32, vobc *state_proto.TrainVobcState, tcc *state_proto.TrainControlState, request *request_proto.TrainControl_DriverKeySwitch, deviceId uint32, tccGraphic *data_proto.TccGraphicStorage) []train_pc_sim.TrainControlEvent {
obj, find := findTrainTccGraphicDataKey(tccGraphic, deviceId) obj, find := findTrainTccGraphicDataKey(tccGraphic, deviceId)
if !find { if !find {
slog.Error("未找到对应的驾驶端激活设备deviceId:", deviceId) slog.Error("未找到对应的驾驶端激活设备deviceId:", deviceId)
return nil return nil
} }
if trainSpeed != 0 {
if obj.Code == "SKQYS1" { panic(sys_error.New("因列车未停稳,不支持此操作"))
trainState.VobcState.Tc1Active = request.Val
} else if obj.Code == "SKQYS2" {
trainState.VobcState.Tc2Active = request.Val
} }
if trainState.VobcState.Tc1Active && trainState.VobcState.Tc2Active { if obj.Code == SKQYS1 {
if obj.Code == "SKQYS1" { vobc.Tc1Active = request.Val
trainState.VobcState.Tc1Active = false } else if obj.Code == SKQYS2 {
} else if obj.Code == "SKQYS2" { vobc.Tc2Active = request.Val
trainState.VobcState.Tc2Active = false }
if vobc.Tc1Active && vobc.Tc2Active {
if obj.Code == SKQYS1 {
vobc.Tc1Active = false
} else if obj.Code == SKQYS2 {
vobc.Tc2Active = false
} }
panic(sys_error.New("驾驶端不能同时激活")) panic(sys_error.New("驾驶端不能同时激活"))
} }
var addNew = true var addNew = true
for _, k := range trainState.Tcc.DriverKey { for _, k := range tcc.DriverKey {
if k.Id == deviceId { if k.Id == deviceId {
k.Id = deviceId k.Id = deviceId
k.Val = request.Val k.Val = request.Val
@ -139,46 +171,45 @@ func trainControlDriverKey(trainState *state_proto.TrainState, request *request_
} }
} }
if addNew { if addNew {
trainState.Tcc.DriverKey = append(trainState.Tcc.DriverKey, &state_proto.TrainControlState_DriverKeySwitch{Id: deviceId, Val: request.Val}) tcc.DriverKey = append(tcc.DriverKey, &state_proto.TrainControlState_DriverKeySwitch{Id: deviceId, Val: request.Val})
} }
return []train_pc_sim.TrainControlEvent{{Command: message.KEY_STATE, Status: message.IsTrue(request.Val)}} return []train_pc_sim.TrainControlEvent{{Command: message.KEY_STATE, Status: message.IsTrue(request.Val)}}
} }
// 列车牵引控制 // 列车牵引控制
func trainControlHandle(trainState *state_proto.TrainState, request *request_proto.TrainControl_PushHandler, deviceId uint32, tccGraphic *data_proto.TccGraphicStorage) []train_pc_sim.TrainControlEvent { func trainControlHandle(vobc *state_proto.TrainVobcState, tcc *state_proto.TrainControlState, request *request_proto.TrainControl_PushHandler, deviceId uint32, tccGraphic *data_proto.TccGraphicStorage) []train_pc_sim.TrainControlEvent {
_, find := findTrainTccGraphicDataHandler(tccGraphic, deviceId) _, find := findTrainTccGraphicDataHandler(tccGraphic, deviceId)
if !find { if !find {
slog.Error("未找到对应的牵引制动手柄设备deviceId:", deviceId) slog.Error("未找到对应的牵引制动手柄设备deviceId:", deviceId)
return nil return nil
} }
vobc.TractionStatus = false
trainState.VobcState.TractionStatus = false vobc.TractionForce = 0
trainState.VobcState.TractionForce = 0 vobc.BrakingStatus = false
trainState.VobcState.BrakingStatus = false vobc.BrakeForce = 0
trainState.VobcState.BrakeForce = 0 vobc.MaintainBrakeStatus = false
trainState.VobcState.MaintainBrakeStatus = false
tce := make([]train_pc_sim.TrainControlEvent, 0) tce := make([]train_pc_sim.TrainControlEvent, 0)
tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.HANDLE_TO_ZERO, Status: 0}) tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.HANDLE_TO_ZERO, Status: 0})
if request.Val > 0 { if request.Val > 0 {
trainState.VobcState.TractionStatus = true vobc.TractionStatus = true
trainState.VobcState.TractionForce = int64(request.Val * 180) vobc.TractionForce = int64(request.Val * 180)
tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.TRAIN_BRAKE_STATE, Status: 0}) tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.TRAIN_BRAKE_STATE, Status: 0})
} else if request.Val < 0 { } else if request.Val < 0 {
trainState.VobcState.BrakingStatus = true vobc.BrakingStatus = true
trainState.VobcState.BrakeForce = int64(-request.Val * 180) vobc.BrakeForce = int64(-request.Val * 180)
trainState.VobcState.EmergencyBrakingStatus = false vobc.EmergencyBrakingStatus = false
if trainState.Tcc.Ebutton != nil { if tcc.Ebutton != nil {
trainState.Tcc.Ebutton.Passed = false tcc.Ebutton.Passed = false
} }
tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.TRAIN_BRAKE_STATE, Status: 1}) tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.TRAIN_BRAKE_STATE, Status: 1})
} else { } else {
tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.HANDLE_TO_ZERO, Status: 1}) tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.HANDLE_TO_ZERO, Status: 1})
} }
if trainState.Tcc.PushHandler == nil { if tcc.PushHandler == nil {
trainState.Tcc.PushHandler = &state_proto.TrainControlState_PushHandler{Id: deviceId, Val: request.Val} tcc.PushHandler = &state_proto.TrainControlState_PushHandler{Id: deviceId}
} }
trainState.Tcc.PushHandler.Val = request.Val tcc.PushHandler.Val = request.Val
return tce return tce
} }