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7 Commits

Author SHA1 Message Date
tiger_zhou
ff67c84f18 列车控制连接多车调整,连接状态显示调整
All checks were successful
local-test分支打包构建docker并发布运行 / Docker-Build (push) Successful in 4m7s
2024-07-19 15:24:28 +08:00
ccaf53ec67 [修改]北京12号线连锁rsd、sse、ssr编解码算法 2024-07-17 15:44:47 +08:00
tiger_zhou
2fa2e90d57 列车控制连接,重新连接调整 2024-07-15 15:00:33 +08:00
tiger_zhou
037cf2f1be 12号线列车控制基本调试 2024-07-11 14:58:34 +08:00
aa04a9fbf4 [bug]北京12号线计轴通信编解码bug 2024-07-11 09:20:51 +08:00
8a6de531c8 [修改]北京12号线计轴通信配置 2024-07-08 16:14:26 +08:00
4bdd91c18b [修改]北京12号线计轴通信crc、svc等编码及校验逻辑 2024-07-08 10:33:19 +08:00
32 changed files with 2621 additions and 2174 deletions

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@ -406,7 +406,6 @@ func controlTrain(c *gin.Context) {
// @Failure 500 {object} dto.ErrorDto
// @Router /api/v1/simulation/train/remove/all [post]
func removeAllTrain(c *gin.Context) {
rt := &dto.RemoveAllTrainRspDto{}
if err := c.ShouldBind(&rt); err != nil {
panic(sys_error.New("移除所有列车失败,请求参数异常", err))

37
config/bj_local_pxf_2.yml Normal file
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@ -0,0 +1,37 @@
# 服务配置
server:
# 服务端口
port: 9092
# 数据源
datasource:
# 数据库访问url
dsn: root:Joylink@0503@tcp(172.29.5.167:3306)/bj-rtsts?charset=utf8mb4&parseTime=true&loc=UTC
# 日志配置
logging:
# 日志级别
level: info
# 格式化
# format: json
# 日志文件路径
path: /home/joylink/logs/bjrtsts2
# 日志文件名
fileName: bjrtsts.log
# 单个日志文件大小,单位mb,超过会自动滚动
fileMaxSize: 50
# 日志文件最大备份数量
fileMaxBackups: 100
# 日志文件最大保留时间,单位 天
maxAge: 30
# 是否压缩日志
compress: false
# 控制台是否输出
stdout: false
# 消息配置
messaging:
mqtt:
address: tcp://172.29.5.168:1883
username: rtsts_service
password: joylink@0503

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@ -160,10 +160,11 @@ type VehiclePCSimConfig2 struct {
}
type VehiclePCSimConfig struct {
TrainEnds bool `json:"trainEnds" description:"列车端点A?"`
Open bool `json:"open" description:"是否开启"`
PcSimIp string `json:"pcSimIp" description:"pc仿真平台通信ip"`
PcSimPort uint32 `json:"pcSimPort" description:"pc仿真平台通信端口"`
//TrainEnds bool `json:"trainEnds" description:"列车端点A?"`
ConfigName string `json:"configName" description:"连接名称"`
Open bool `json:"open" description:"是否开启"`
PcSimIp string `json:"pcSimIp" description:"pc仿真平台通信ip"`
PcSimPort uint32 `json:"pcSimPort" description:"pc仿真平台通信端口"`
//LocalTestingPort uint32 `json:"localTestingPort" description:"本地测试端口"`
}
@ -176,20 +177,31 @@ type RsspAxleConfig struct {
// RsspNetConfig 计轴通信配置
type RsspNetConfig struct {
RemoteIp string `json:"remoteIp" description:"远端IP"`
RemotePort int `json:"remotePort" description:"远端端口"`
LocalPort int `json:"localPort" description:"本地端口"`
SourceAddr string `json:"sourceAddr" description:"源地址16进制2字节"`
TargetAddr string `json:"targetAddr" description:"目的地址16进制2字节"`
Sid1 string `json:"sid1" description:"SID_116进制4字节"`
Sid2 string `json:"sid2" description:"SID_216进制4字节"`
Sinit1 string `json:"sinit1" description:"SINIT_116进制4字节"`
Sinit2 string `json:"sinit2" description:"SINIT_216进制4字节"`
DataVer1 string `json:"dataVer1" description:"DATAVER_116进制4字节"`
DataVer2 string `json:"dataVer2" description:"DATAVER_216进制4字节"`
MaxDeviation uint32 `json:"maxDeviation" description:"可容忍的最大时序偏差"`
WaitSSRTimeout int `json:"waitSSRTimeout" description:"等待SSR回应的定时器超时值ms"`
Period int `json:"period" description:"RSD发送周期ms"`
RemoteIp string `json:"remoteIp" description:"远端IP"`
RemotePort int `json:"remotePort" description:"远端端口"`
LocalPort int `json:"localPort" description:"本地端口"`
RemoteAddr string `json:"sourceAddr" description:"联锁地址16进制2字节"`
LocalAddr string `json:"targetAddr" description:"计轴地址16进制2字节"`
RemoteSid1 string `json:"remoteSid1" description:"联锁SID_116进制4字节"`
RemoteSid2 string `json:"remoteSid2" description:"联锁SID_216进制4字节"`
LocalSid1 string `json:"localSid1" description:"计轴SID_116进制4字节"`
LocalSid2 string `json:"localSid2" description:"计轴SID_216进制4字节"`
RemoteSinit1 string `json:"remoteSinit1" description:"联锁SINIT_116进制4字节"`
RemoteSinit2 string `json:"remoteSinit2" description:"联锁SINIT_216进制4字节"`
LocalSinit1 string `json:"localSinit1" description:"计轴SINIT_116进制4字节"`
LocalSinit2 string `json:"localSinit2" description:"计轴SINIT_216进制4字节"`
RemoteDataVer1 string `json:"remoteDataVer1" description:"联锁DATAVER_116进制4字节"`
RemoteDataVer2 string `json:"remoteDataVer2" description:"联锁DATAVER_216进制4字节"`
LocalDataVer1 string `json:"localDataVer1" description:"计轴DATAVER_116进制4字节"`
LocalDataVer2 string `json:"localDataVer2" description:"计轴DATAVER_216进制4字节"`
MaxDeviation int `json:"maxDeviation" description:"可容忍的最大时序偏差"`
WaitSSRTimeout int `json:"waitSSRTimeout" description:"等待SSR回应的定时器超时值ms"`
Period int `json:"period" description:"RSD发送周期ms"`
}
///////////////////////////////////////////////////////////////////////////////////////

View File

@ -3222,6 +3222,8 @@ type Transponder struct {
FixedTelegram string `protobuf:"bytes,11,opt,name=fixedTelegram,proto3" json:"fixedTelegram,omitempty"` //应答器固定报文
FixedUserTelegram string `protobuf:"bytes,12,opt,name=fixedUserTelegram,proto3" json:"fixedUserTelegram,omitempty"` //应答器固定用户报文
OriginalCode string `protobuf:"bytes,13,opt,name=originalCode,proto3" json:"originalCode,omitempty"` //应答器原编号(厂商提供数据编号)
LeuIndex uint32 `protobuf:"varint,14,opt,name=leuIndex,proto3" json:"leuIndex,omitempty"` //LEU索引
LeuInsideIndex uint32 `protobuf:"varint,15,opt,name=leuInsideIndex,proto3" json:"leuInsideIndex,omitempty"` // LEU内部索引
}
func (x *Transponder) Reset() {
@ -3319,6 +3321,20 @@ func (x *Transponder) GetOriginalCode() string {
return ""
}
func (x *Transponder) GetLeuIndex() uint32 {
if x != nil {
return x.LeuIndex
}
return 0
}
func (x *Transponder) GetLeuInsideIndex() uint32 {
if x != nil {
return x.LeuInsideIndex
}
return 0
}
type SimpleRef struct {
state protoimpl.MessageState
sizeCache protoimpl.SizeCache
@ -6307,7 +6323,7 @@ var file_stationLayoutGraphics_proto_rawDesc = []byte{
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@ -6335,42 +6351,64 @@ var file_stationLayoutGraphics_proto_rawDesc = []byte{
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@ -6735,16 +6747,24 @@ var file_stationLayoutGraphics_proto_rawDesc = []byte{
0x52, 0x04, 0x63, 0x6f, 0x64, 0x65, 0x12, 0x12, 0x0a, 0x04, 0x66, 0x6c, 0x69, 0x70, 0x18, 0x03,
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}
var (

View File

@ -40,6 +40,7 @@ type RunConfigSelectOption struct {
}
type TrainConnTypeConfigDto struct {
TypeName string `json:"typeName" form:"typeName"` // 连接名称; //连接名称
ConnType state_proto.TrainConnState_TrainConnType `json:"connType" form:"connType"` // NONE = 0 未知连接 ;VOBC = 1; //半实物PC_SIM = 2; //PC仿真
}

View File

@ -152,6 +152,7 @@ type TrainConnThirdDto struct {
SimulationId string `json:"simulationId" form:"simulationId"`
Id string `json:"id" form:"id"` // 列车Id
ConnType state_proto.TrainConnState_TrainConnType `json:"connType" form:"connType"` //连接类型 0=未连接;1=半实物;2= 车载仿真
TypeName string `json:"typeName" form:"typeName"` //连接名称
}
// 为仿真添加测试车请求

File diff suppressed because it is too large Load Diff

View File

@ -10,6 +10,14 @@ import (
"time"
)
func lowPower(power bool) bool {
if power {
return false
} else {
return true
}
}
// 综合后备盘IBP消息服务
func NewTrainControlMs(vs *memory.VerifySimulation, mapId int32) ms_api.MsgTask {
return ms_api.NewScheduleTask(fmt.Sprintf("地图[%d]列车控制", mapId), func() error {
@ -18,12 +26,51 @@ func NewTrainControlMs(vs *memory.VerifySimulation, mapId int32) ms_api.MsgTask
trainId := fmt.Sprintf("%v", key)
ts := value.(*state_proto.TrainState)
ttcc := ts.Tcc
vobc := ts.VobcState
lights := make([]*state_proto.TrainControlState_ControlLight, 0)
for _, light := range ttcc.LightMaps {
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: light.Val})
}
tcc := &state_proto.TrainControlStateMsg{Buttons: ttcc.Buttons, DriverKey: ttcc.DriverKey, DirKey: ttcc.DirKey, PushHandler: ttcc.PushHandler, Lights: lights}
for lightKey, light := range ttcc.LightMaps {
switch lightKey {
case memory.LIGHT_JJZD:
state := lowPower(vobc.LightEmergencyBrakingStatus)
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: state})
case memory.LIGHT_QQY:
state := lowPower(vobc.LightTractionSafetyCircuit)
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: state})
case memory.LIGHT_JSSJH:
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: vobc.LightDriverActive})
case memory.LIGHT_TFZDHJ:
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: vobc.StopNotAllBrake})
case memory.LIGHT_QYYX:
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: vobc.TractionEffective})
case memory.LIGHT_ZDYX:
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: vobc.BrakeEffective})
case memory.LIGHT_TFZDSJ:
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: vobc.ParkingBrakeStatus})
case memory.LIGHT_CYZD:
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: vobc.MostUseBrake})
case memory.LIGHT_ZDGL:
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: vobc.BrakeQuarantine})
case memory.LIGHT_LSXH:
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: vobc.NoSpeedSigle})
case memory.LIGHT_ZMYX:
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: vobc.LeftDoorState})
case memory.LIGHT_YMYX:
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: vobc.RightDoorState})
case memory.LIGHT_ZFZSD:
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: vobc.TurnbackStatus})
case memory.LIGHT_BDATPKC:
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: vobc.LocalAtpControl})
default:
lights = append(lights, &state_proto.TrainControlState_ControlLight{Id: light.Id, Val: light.Val})
}
}
buttons := make([]*state_proto.TrainControlState_ControlButton, 0)
for _, button := range ttcc.Buttons {
buttons = append(buttons, button)
}
tcc := &state_proto.TrainControlStateMsg{Buttons: buttons, DriverKey: ttcc.DriverKey, DirKey: ttcc.DirKey, PushHandler: ttcc.PushHandler, Lights: lights}
err := mqtt.GetMsgClient().PubTrainControlState(vs.SimulationId, trainId, tcc)
if err != nil {
slog.Error("发送列车控制mqtt失败", err)

@ -1 +1 @@
Subproject commit 6cdf88a92d573fdb6502047d10abd1af7d0e40a2
Subproject commit 2f5d8c3cfdf06ced1a0b0a50f47f9353c441e196

View File

@ -1,7 +1,10 @@
package service
import (
"encoding/json"
"fmt"
"joylink.club/bj-rtsts-server/config"
"strings"
"time"
"joylink.club/bj-rtsts-server/db/dbquery"
@ -33,8 +36,31 @@ func ListProjectRunConfigQuery() []*dto.ProjectRunConfigDto {
return dto.ConvertToRunConfigFromSlice(records)
}
func checkRunConfig(jsonConfigStr string) *sys_error.BusinessError {
var configMap config.ThirdPartyConfig
err := json.Unmarshal([]byte(jsonConfigStr), &configMap)
if err != nil {
return sys_error.New("运行环境序列化错误", err)
}
checkSameMap := make(map[string]bool)
for _, simConfig := range configMap.PcSimConfigs {
if simConfig.ConfigName == "" || len(strings.TrimSpace(simConfig.ConfigName)) == 0 {
return sys_error.New(fmt.Sprintf("车载运行配置名称不能为空 配置ip:%v,端口%v", simConfig.PcSimIp, simConfig.PcSimPort), err)
}
if checkSameMap[simConfig.ConfigName] {
return sys_error.New(fmt.Sprintf("车载运行配置重复的名称:%v", simConfig.ConfigName), err)
}
checkSameMap[simConfig.ConfigName] = true
}
return nil
}
// 创建项目运行环境
func CreateProjectRunConfig(dd *dto.ProjectRunConfigReqDto) bool {
if checkErr := checkRunConfig(dd.ConfigContent); checkErr != nil {
panic(checkErr)
}
d := model.ProjectRunConfig{
Name: dd.Name,
Description: dd.Description,
@ -42,6 +68,7 @@ func CreateProjectRunConfig(dd *dto.ProjectRunConfigReqDto) bool {
CreateTime: time.Now(),
UpdateTime: time.Now(),
}
err := dbquery.ProjectRunConfig.Save(&d)
if err != nil {
panic(sys_error.New("保存失败,数据库错误请联系运维人员", err))
@ -75,6 +102,9 @@ func QueryRunConfig(id int32) *dto.ProjectRunConfigDto {
// 更新项目运行环境
func UpdateProjectRunConfig(id int32, dd *dto.ProjectRunConfigReqDto) bool {
if checkErr := checkRunConfig(dd.ConfigContent); checkErr != nil {
panic(checkErr)
}
findOldQuery := dbquery.ProjectRunConfig
oldD, err := findOldQuery.Where(findOldQuery.ID.Eq(id)).Debug().First()
if oldD == nil || err != nil {

View File

@ -28,8 +28,8 @@ const (
)
const (
T_POLY_1 = 0x0FC22F87 //通道1的时间戳生成多项式
T_POLY_2 = 0xC3E887E1 //通道2的时间戳生成多项式
T_POLY_1 uint32 = 0x0FC22F87 //通道1的时间戳生成多项式
T_POLY_2 uint32 = 0xC3E887E1 //通道2的时间戳生成多项式
)
const Twait_sse = 3 //默认sse等待回应的周期数

View File

@ -21,13 +21,13 @@ type RsdMsg struct {
func (r *RsdMsg) Encode() []byte {
data := r.MsgHeader.encode()
data = binary.BigEndian.AppendUint32(data, r.SeqNum)
data = binary.BigEndian.AppendUint16(data, r.UserDataLen)
data = binary.BigEndian.AppendUint32(data, r.Svc1)
data = binary.BigEndian.AppendUint32(data, r.Svc2)
data = binary.LittleEndian.AppendUint32(data, r.SeqNum)
data = binary.LittleEndian.AppendUint16(data, r.UserDataLen)
data = binary.LittleEndian.AppendUint32(data, r.Svc1)
data = binary.LittleEndian.AppendUint32(data, r.Svc2)
data = append(data, r.UserData...)
r.Tail = message.Rssp_I_Crc16(r.UserData)
data = binary.BigEndian.AppendUint16(data, r.Tail)
r.Tail = message.Rssp_I_Crc16(data)
data = binary.LittleEndian.AppendUint16(data, r.Tail)
return data
}

View File

@ -38,16 +38,30 @@ type serviceContext struct {
cancelFunc context.CancelFunc
ciSectionIndexConfigs []*proto.CiSectionCodePoint
sourceAddr uint16 //源地址 从配置中的16进制字符串转来的
targetAddr uint16 //目的地址 从配置中的16进制字符串转来的
sid1 uint32 //SID1 从配置中的16进制字符串转来的
sid2 uint32 //SID2 从配置中的16进制字符串转来的
msgChan <-chan []byte //消息队列
seqNum uint32 //当前的序列号
lastSeqNum uint32 //最近一次收到的序列号
lastTimeSeqParam uint32 //最近一次的有效时序参数
sseMsg *msg.SseMsg //发送出去的时序校验请求
sseWaitTimer <-chan time.Time //sse超时定时器
remoteAddr uint16 //联锁地址 从配置中的16进制字符串转来的
localAddr uint16 //计轴地址 从配置中的16进制字符串转来的
remoteSid1 uint32 //联锁SID1 从配置中的16进制字符串转来的
remoteSid2 uint32 //联锁SID2 从配置中的16进制字符串转来的
localSid1 uint32 //计轴SID1 从配置中的16进制字符串转来的
localSid2 uint32 //计轴SID2 从配置中的16进制字符串转来的
remoteSinit1 uint32 //联锁SINIT1 从配置中的16进制字符串转来的
remoteSinit2 uint32 //联锁SINIT2 从配置中的16进制字符串转来的
localSinit1 uint32 //计轴SINT1 从配置中的16进制字符串转来的
localSinit2 uint32 //计轴SINT2 从配置中的16进制字符串转来的
remoteDataVer1 uint32 //联锁DATAVER1 从配置中的16进制字符串转来的
remoteDataVer2 uint32 //联锁DATAVER2 从配置中的16进制字符串转来的
localDataVer1 uint32 //计轴DATAVER1 从配置中的16进制字符串转来的
localDataVer2 uint32 //计轴DATAVER2 从配置中的16进制字符串转来的
msgChan <-chan []byte //消息队列
seqNum uint32 //当前的序列号
lastSeqParam1 uint32 //最近一次的有效时序参数 remoteSinit1~+[remoteSid1^t1(n)]
lastSeqParam2 uint32 //最近一次的有效时序参数 remoteSinit2~+[remoteSid2^t2(n)]
lfsr1 *lfsr //用来计算时间戳的lfsr
lfsr2 *lfsr //用来计算时间戳的lfsr
sseMsg *msg.SseMsg //发送出去的时序校验请求
sseWaitTimer <-chan time.Time //sse超时定时器
precSinit1 uint32 // 用来从SSR消息的SeqInit中提取时序参数
precSinit2 uint32 // 用来从SSR消息的SeqInit中提取时序参数
}
func Start(simulation *memory.VerifySimulation) {
@ -73,40 +87,18 @@ func Start(simulation *memory.VerifySimulation) {
logger().Warn(fmt.Sprintf("集中站[%s]无区段编码数据,服务不启动", rsspConfig.StationCode))
return
}
sourceAddr, err := strconv.ParseUint(rsspConfig.NetAConfig.SourceAddr, 16, 16)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析源地址[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.SourceAddr)))
}
targetAddr, err := strconv.ParseUint(rsspConfig.NetAConfig.TargetAddr, 16, 16)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析目的地址[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.TargetAddr)))
}
sid1, err := strconv.ParseUint(rsspConfig.NetAConfig.Sid1, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析SID1[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.Sid1)))
}
sid2, err := strconv.ParseUint(rsspConfig.NetAConfig.Sid2, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析SID2[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.Sid2)))
}
//服务初始化及启动
//初始化服务上下文
serviceCtx := initServiceContext(rsspConfig, ref, simulation)
//准备启动服务
msgChan := make(chan []byte, 100)
serviceCtx := &serviceContext{
sim: simulation,
config: rsspConfig,
ciSectionIndexConfigs: ref.SectionCodePoints,
sourceAddr: uint16(sourceAddr),
targetAddr: uint16(targetAddr),
sid1: uint32(sid1),
sid2: uint32(sid2),
msgChan: msgChan,
}
serviceCtx.msgChan = msgChan
netAConfig := rsspConfig.NetAConfig
server := udp.NewServer(fmt.Sprintf(":%d", netAConfig.LocalPort), func(b []byte) {
logger().Info(fmt.Sprintf("收到数据:%x", b))
msgChan <- b
})
client := udp.NewClient(fmt.Sprintf("%s:%d", netAConfig.RemoteIp, netAConfig.RemotePort))
err = server.Listen()
err := server.Listen()
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]服务启动失败", logTag, rsspConfig.StationCode)))
} else {
@ -121,6 +113,103 @@ func Start(simulation *memory.VerifySimulation) {
contextMap[rsspConfig.StationCode] = serviceCtx
}
func initServiceContext(rsspConfig config.RsspAxleConfig, ref *proto.CentralizedStationRef, simulation *memory.VerifySimulation) *serviceContext {
sourceAddr, err := strconv.ParseUint(rsspConfig.NetAConfig.RemoteAddr, 16, 16)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析源地址[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.RemoteAddr)))
}
targetAddr, err := strconv.ParseUint(rsspConfig.NetAConfig.LocalAddr, 16, 16)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析目的地址[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.LocalAddr)))
}
remoteSid1, err := strconv.ParseUint(rsspConfig.NetAConfig.RemoteSid1, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析联锁SID1[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.RemoteSid1)))
}
remoteSid2, err := strconv.ParseUint(rsspConfig.NetAConfig.RemoteSid2, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析联锁SID2[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.RemoteSid2)))
}
localSid1, err := strconv.ParseUint(rsspConfig.NetAConfig.LocalSid1, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析计轴SID1[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.LocalSid1)))
}
localSid2, err := strconv.ParseUint(rsspConfig.NetAConfig.LocalSid2, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析计轴SID2[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.LocalSid2)))
}
remoteSinit1, err := strconv.ParseUint(rsspConfig.NetAConfig.RemoteSinit1, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析联锁SINT1[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.RemoteSinit1)))
}
remoteSinit2, err := strconv.ParseUint(rsspConfig.NetAConfig.RemoteSinit2, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析联锁SINT2[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.RemoteSinit2)))
}
localSinit1, err := strconv.ParseUint(rsspConfig.NetAConfig.LocalSinit1, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析计轴SINT1[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.LocalSinit1)))
}
localSinit2, err := strconv.ParseUint(rsspConfig.NetAConfig.LocalSinit2, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析计轴SINT2[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.LocalSinit2)))
}
remoteDataVer1, err := strconv.ParseUint(rsspConfig.NetAConfig.RemoteDataVer1, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析联锁DATAVER_1[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.RemoteDataVer1)))
}
remoteDataVer2, err := strconv.ParseUint(rsspConfig.NetAConfig.RemoteDataVer2, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析联锁DATAVER_2[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.RemoteDataVer2)))
}
localDataVer1, err := strconv.ParseUint(rsspConfig.NetAConfig.LocalDataVer1, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析计轴DATAVER_1[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.LocalDataVer1)))
}
localDataVer2, err := strconv.ParseUint(rsspConfig.NetAConfig.LocalDataVer2, 16, 32)
if err != nil {
panic(sys_error.New(fmt.Sprintf("%s集中站[%s]解析计轴DATAVER_2[%s]出错", logTag, rsspConfig.StationCode, rsspConfig.NetAConfig.LocalDataVer2)))
}
//服务初始化及启动
serviceCtx := &serviceContext{
sim: simulation,
config: rsspConfig,
ciSectionIndexConfigs: ref.SectionCodePoints,
remoteAddr: uint16(sourceAddr),
localAddr: uint16(targetAddr),
remoteSid1: uint32(remoteSid1),
remoteSid2: uint32(remoteSid2),
localSid1: uint32(localSid1),
localSid2: uint32(localSid2),
remoteSinit1: uint32(remoteSinit1),
remoteSinit2: uint32(remoteSinit2),
localSinit1: uint32(localSinit1),
localSinit2: uint32(localSinit2),
remoteDataVer1: uint32(remoteDataVer1),
remoteDataVer2: uint32(remoteDataVer2),
localDataVer1: uint32(localDataVer1),
localDataVer2: uint32(localDataVer2),
lfsr1: &lfsr{value: uint32(localSid1), poly: msg.T_POLY_1},
lfsr2: &lfsr{value: uint32(localSid2), poly: msg.T_POLY_2},
precSinit1: calculatePrecSinit(uint32(remoteSinit1), uint32(localSid1), uint32(remoteDataVer1)),
precSinit2: calculatePrecSinit(uint32(remoteSinit2), uint32(localSid2), uint32(remoteDataVer2)),
}
return serviceCtx
}
func calculatePrecSinit(remoteSinit uint32, localSid uint32, remoteDataVer uint32) uint32 {
l1 := lfsr{value: remoteSinit, poly: msg.T_POLY_1}
l1.add(localSid ^ remoteDataVer)
valueTmp := l1.value
l1.load(0).post(valueTmp)
return l1.value
}
func Stop(simulation *memory.VerifySimulation) {
mu.Lock()
defer mu.Unlock()
@ -151,15 +240,18 @@ func (s *serviceContext) runCollectTask(ctx context.Context) {
s.runCollectTask(ctx)
}
}()
for range time.Tick(time.Millisecond * time.Duration(s.config.NetAConfig.Period)) {
for range time.Tick(time.Duration(s.config.NetAConfig.Period) * time.Millisecond) {
select {
case <-ctx.Done():
return
default:
frame := s.collect()
err := s.client.Send(frame.Encode())
data := frame.Encode()
err := s.client.Send(data)
if err != nil {
logger().Error("发送状态数据失败", "error", err)
} else {
logger().Info(fmt.Sprintf("发送数据:%x", data))
}
}
}
@ -186,29 +278,34 @@ func (s *serviceContext) collect() *msg.RsdMsgBuilder {
RJT: sectionRuntime.Rjt,
})
}
userData := stateInfos.Encode()
userData := []byte{0x00} //检查字节
userData = append(userData, stateInfos.Encode()...)
//更新序列号及时间戳
s.seqNum++
s.lfsr1.add(0)
s.lfsr2.add(0)
//构建消息
builder := &msg.RsdMsgBuilder{
MsgHeader: msg.MsgHeader{
ProtocolType: msg.ProtocolType_Sync,
MessageType: msg.MessageType_A,
SourceAddr: s.sourceAddr,
TargetAddr: s.targetAddr,
MessageType: msg.MessageType_B, //从抓包数据里看到的
SourceAddr: s.localAddr,
TargetAddr: s.remoteAddr,
},
SeqNum: s.seqNum,
Svc1: s.calculateSvc1(userData, s.seqNum),
Svc2: s.calculateSvc2(userData, s.seqNum),
Svc1: s.calculateSvc1(userData),
Svc2: s.calculateSvc2(userData),
UserData: userData,
}
s.seqNum++
return builder
}
func (s *serviceContext) calculateSvc1(userData []byte, seqNum uint32) uint32 {
return 0
func (s *serviceContext) calculateSvc1(userData []byte) uint32 {
return message.Rssp_I_Crc32C1(userData) ^ s.localSid1 ^ s.lfsr1.value ^ msg.SCW_1
}
func (s *serviceContext) calculateSvc2(userData []byte, seqNum uint32) uint32 {
return 0
func (s *serviceContext) calculateSvc2(userData []byte) uint32 {
return message.Rssp_I_Crc32C2(userData) ^ s.localSid2 ^ s.lfsr2.value ^ msg.SCW_2
}
func (s *serviceContext) runHandleMsgTask(ctx context.Context) {
@ -243,7 +340,7 @@ func (s *serviceContext) runHandleMsgTask(ctx context.Context) {
}
func (s *serviceContext) handleRsdMsg(data []byte) {
if s.sseMsg == nil { //正在时序校正过程中
if s.sseMsg != nil { //正在时序校正过程中
return
}
rsdMsg := &msg.RsdMsg{}
@ -253,20 +350,18 @@ func (s *serviceContext) handleRsdMsg(data []byte) {
return
}
//校验
if !s.validateRsdMsg(rsdMsg) {
validateResult := s.validateRsdMsg(rsdMsg, data)
if validateResult == 0 {
return
}
//流程处理
seqDeviation := rsdMsg.SeqNum - s.lastSeqNum
if s.lastSeqNum == 0 {
seqDeviation = 0
} else if seqDeviation < 0 || seqDeviation > s.config.NetAConfig.MaxDeviation { //序列号减小或时序差超出容忍限度
} else if validateResult == 2 {
//开启时序校正流程
logger().Error("时序校验失败,开始时序校正")
s.startSeeProgress()
return
}
s.lastSeqNum = rsdMsg.SeqNum
//流程处理
cmdInfos := msg.CmdInfos{}
err = cmdInfos.Decode(rsdMsg.UserData)
err = cmdInfos.Decode(rsdMsg.UserData[1:]) //用户数据第一个字节是[检查字节]
if err != nil {
logger().Error("解析命令信息出错", "error", err)
return
@ -294,31 +389,39 @@ func (s *serviceContext) handleSseMsg(data []byte) {
}
//校验
if !s.validateSseMsg(sseMsg) {
logger().Error("SSE数据校验失败")
return
}
logger().Info(fmt.Sprintf("SSE数据通过校验%x", data))
//回复
s.lastSeqNum = sseMsg.SeqNum
ssrMsg := msg.SsrMsg{
MsgHeader: msg.MsgHeader{
ProtocolType: msg.ProtocolType_Sync,
MessageType: msg.MessageType_SSR,
SourceAddr: s.sourceAddr,
TargetAddr: s.targetAddr,
SourceAddr: s.localAddr,
TargetAddr: s.remoteAddr,
},
SeqNumSsr: s.seqNum,
SeqNumSse: sseMsg.SeqNum,
SeqInit1: s.calculateSeqInit1(sseMsg.SeqEnq1),
SeqInit2: s.calculateSeqInit1(sseMsg.SeqEnq1),
SeqInit2: s.calculateSeqInit2(sseMsg.SeqEnq2),
DataVer: 0x01,
}
err = s.client.Send(ssrMsg.Encode())
ssrBytes := ssrMsg.Encode()
err = s.client.Send(ssrBytes)
if err != nil {
logger().Error("发送SSR数据失败", "error", err)
} else {
logger().Info(fmt.Sprintf("发送SSR数据%x", ssrBytes))
//更新本地数据
s.lastSeqParam1 = (&lfsr{value: s.remoteSinit1, poly: msg.T_POLY_1}).add(sseMsg.SeqEnq1)
s.lastSeqParam2 = (&lfsr{value: s.remoteSinit2, poly: msg.T_POLY_2}).add(sseMsg.SeqEnq2)
}
}
func (s *serviceContext) handleSsrMsg(data []byte) {
if s.sseMsg == nil { //不在时序校正过程中
logger().Warn("不在时序校正流程中丢弃SSR数据")
return
}
ssrMsg := &msg.SsrMsg{}
@ -329,11 +432,14 @@ func (s *serviceContext) handleSsrMsg(data []byte) {
}
//校验
if !s.validateSsrMsg(ssrMsg) {
logger().Error("SSR数据校验失败")
return
}
//完成校正时序
logger().Info("SSR数据通过校验")
//完成校正时序precSinit~+t_e == Sinit_r~+(sid_r^t_r)
s.lastSeqParam1 = (&lfsr{value: s.precSinit1, poly: msg.T_POLY_1}).add(ssrMsg.SeqInit1 ^ (s.sseMsg.SeqEnq1 ^ s.localSid1))
s.lastSeqParam2 = (&lfsr{value: s.precSinit2, poly: msg.T_POLY_2}).add(ssrMsg.SeqInit2 ^ (s.sseMsg.SeqEnq2 ^ s.localSid2))
s.sseMsg = nil
s.lastSeqNum = ssrMsg.SeqNumSsr
}
// 启动SSE流程
@ -342,42 +448,52 @@ func (s *serviceContext) startSeeProgress() {
MsgHeader: msg.MsgHeader{
ProtocolType: msg.ProtocolType_Sync,
MessageType: msg.MessageType_SSE,
SourceAddr: s.sourceAddr,
TargetAddr: s.targetAddr,
SourceAddr: s.localAddr,
TargetAddr: s.remoteAddr,
},
SeqNum: s.seqNum,
SeqEnq1: s.calculateSeqEnq1(),
SeqEnq2: s.calculateSeqEnq2(),
}
err := s.client.Send(sseMsg.Encode())
sseBytes := sseMsg.Encode()
err := s.client.Send(sseBytes)
if err != nil {
logger().Error("发送SSE数据失败", "error", err)
} else {
logger().Info(fmt.Sprintf("发送SSE数据%x", sseBytes))
s.sseMsg = sseMsg
s.sseWaitTimer = time.After(time.Duration(s.config.NetAConfig.Period*msg.Twait_sse) * time.Millisecond)
}
}
func (s *serviceContext) validateRsdMsg(rsdMsg *msg.RsdMsg) bool {
sourceAddr, _ := strconv.ParseUint(s.config.NetAConfig.SourceAddr, 16, 16)
if rsdMsg.SourceAddr != uint16(sourceAddr) {
logger().Error(fmt.Sprintf("源地址[%x]不正确[%s]", rsdMsg.SourceAddr, s.config.NetAConfig.SourceAddr))
return false
// 校验RSD消息
// return 0-时序校验之外的失败 1-成功 2-时序异常
func (s *serviceContext) validateRsdMsg(rsdMsg *msg.RsdMsg, data []byte) int {
if rsdMsg.SourceAddr != s.remoteAddr {
logger().Error(fmt.Sprintf("源地址[%x]不正确[%s]", rsdMsg.SourceAddr, s.config.NetAConfig.RemoteAddr))
return 0
}
targetAddr, _ := strconv.ParseUint(s.config.NetAConfig.TargetAddr, 16, 16)
if rsdMsg.TargetAddr != uint16(targetAddr) {
logger().Error(fmt.Sprintf("目的地址[%x]不正确[%s]", rsdMsg.TargetAddr, s.config.NetAConfig.TargetAddr))
return false
if rsdMsg.TargetAddr != s.localAddr {
logger().Error(fmt.Sprintf("目的地址[%x]不正确[%s]", rsdMsg.TargetAddr, s.config.NetAConfig.LocalAddr))
return 0
}
if len(rsdMsg.UserData) != len(s.ciSectionIndexConfigs) {
logger().Error(fmt.Sprintf("用户数据长度[%d]与配置长度[%d]不符", len(rsdMsg.UserData), len(s.ciSectionIndexConfigs)))
return false
if len(rsdMsg.UserData)-1 != len(s.ciSectionIndexConfigs) { //用户数据第一个字节是[检查字节]
logger().Error(fmt.Sprintf("命令数据长度[%d]与配置长度[%d]不符", len(rsdMsg.UserData), len(s.ciSectionIndexConfigs)))
return 0
}
if message.Rssp_I_Crc16(rsdMsg.UserData) != rsdMsg.Tail {
logger().Error(fmt.Sprintf("报文验证失败"))
return false
if message.Rssp_I_Crc16(data[:len(data)-2]) != rsdMsg.Tail {
logger().Error(fmt.Sprintf("报文验证失败"))
return 0
}
return true
if !s.validateSvc1(rsdMsg.Svc1, rsdMsg.UserData) {
logger().Error(fmt.Sprintf("SVC1[%x]校验未通过", rsdMsg.Svc1))
return 2
}
if !s.validateSvc2(rsdMsg.Svc2, rsdMsg.UserData) {
logger().Error(fmt.Sprintf("SVC2[%x]校验未通过", rsdMsg.Svc2))
return 2
}
return 1
}
func (s *serviceContext) validateSseMsg(sseMsg *msg.SseMsg) bool {
@ -386,26 +502,92 @@ func (s *serviceContext) validateSseMsg(sseMsg *msg.SseMsg) bool {
func (s *serviceContext) validateSsrMsg(ssrMsg *msg.SsrMsg) bool {
if s.sseMsg.SeqNum != ssrMsg.SeqNumSse {
logger().Error(fmt.Sprintf("SSR的Ne[%d]与请求方不符[%d]", ssrMsg.SeqNumSse, s.sseMsg.SeqNum))
logger().Error(fmt.Sprintf("SSR的时序号[%d]与请求方不符[%d]", ssrMsg.SeqNumSse, s.sseMsg.SeqNum))
return false
}
return true
}
func (s *serviceContext) validateSvc1(svc uint32, userData []byte) bool {
return s.validateSvc(svc, msg.SCW_1, message.Rssp_I_Crc32C1(userData), s.remoteSid1, s.remoteSinit1, &s.lastSeqParam1, msg.T_POLY_1)
}
func (s *serviceContext) validateSvc2(svc uint32, userData []byte) bool {
return s.validateSvc(svc, msg.SCW_2, message.Rssp_I_Crc32C2(userData), s.remoteSid2, s.remoteSinit2, &s.lastSeqParam2, msg.T_POLY_2)
}
func (s *serviceContext) validateSvc(svc uint32, scw uint32, crc1 uint32, sid uint32, sinit uint32, lastSeqParam *uint32, tPoly uint32) bool {
seqParam := crc1 ^ svc ^ scw
for i := 0; i <= s.config.NetAConfig.MaxDeviation; i++ {
seqLfsr := lfsr{value: *lastSeqParam, poly: tPoly}
constLfsr := lfsr{value: sinit, poly: tPoly}
constLfsr.add(sid)
for j := 0; j < i; j++ {
seqLfsr.add(0)
constLfsr.add(0)
}
if seqLfsr.add(seqParam) == constLfsr.add(sid) {
*lastSeqParam = seqLfsr.load(sinit).add(seqParam)
return true
}
}
return false
}
func (s *serviceContext) calculateSeqEnq1() uint32 {
return 0
return s.localSid1 ^ s.lfsr1.value
}
func (s *serviceContext) calculateSeqEnq2() uint32 {
return 0
return s.localSid2 ^ s.lfsr2.value
}
func (s *serviceContext) calculateSeqInit1(seqEnq1 uint32) uint32 {
return 0
return seqEnq1 ^ s.localSid1 ^ s.localDataVer1 ^ s.lfsr1.value
}
func (s *serviceContext) calculateSeqInit2(seqEnq2 uint32) uint32 {
return 0
return seqEnq2 ^ s.localSid2 ^ s.localDataVer2 ^ s.lfsr2.value
}
type lfsr struct {
value uint32
poly uint32 //时间戳生成多项式
}
func (l *lfsr) load(value uint32) *lfsr {
l.value = value
return l
}
func (l *lfsr) add(x uint32) uint32 {
l.value = l.value ^ x
var carry bool
for i := 0; i < 32; i++ {
carry = l.value&0x80000000 != 0
l.value = l.value << 1
if carry {
l.value ^= l.poly
}
}
return l.value
}
func (l *lfsr) post(x uint32) uint32 {
var carry bool
for i := 0; i < 32; i++ {
carry = x&1 == 1
if carry {
x ^= l.poly
}
x = x >> 1
if carry {
x |= 0x80000000
}
}
l.value ^= x
return l.value
}
func logger() *slog.Logger {

View File

@ -0,0 +1,19 @@
package beijing12
import (
"fmt"
"joylink.club/bj-rtsts-server/third_party/axle_device/beijing12/msg"
"testing"
)
func Test_serviceContext_calculateSvc1(t *testing.T) {
serviceCtx := &serviceContext{
localSid1: 0x7665986c,
localSid2: 0x67da286e,
lfsr1: &lfsr{value: uint32(0x7665986c), poly: msg.T_POLY_1},
lfsr2: &lfsr{value: uint32(0x67da286e), poly: msg.T_POLY_2},
}
userData := []byte{00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00, 0x80, 0x00}
fmt.Printf("%x\n", serviceCtx.calculateSvc1(userData))
fmt.Printf("%x\n", serviceCtx.calculateSvc2(userData))
}

View File

@ -93,10 +93,18 @@ func (d *dynamics) updateState(state tpapi.ThirdPartyApiServiceState) {
func (d *dynamics) State() tpapi.ThirdPartyApiServiceState {
return d.state
}
func (d *dynamics) FindAppendApiService() []tpapi.ThirdPartyApiService {
return nil
}
func (d *dynamics) Name() string {
return Name
}
func (d *dynamics) TrueService() bool {
return true
}
func (d *dynamics) ServiceDesc() string {
return Name
}
// 解码列车信息并处理
func (d *dynamics) handleDynamicsTrainInfo(b []byte) {

View File

@ -1,82 +0,0 @@
package main
import (
"fmt"
"joylink.club/bj-rtsts-server/third_party/message"
)
//func main() {
// var scw1 uint32 = 0xAE390B5A
// var t_p uint32 = 0x0FC22F87
// var sid1 uint32 = 0xa2bcfc8c
// var sinit uint32 = 0xb763ec88
//
// var svcn_1 uint32 = 0x08b12b3b
// //var svcn_1 uint32 = 0x3b2bb108
// var svcn uint32 = 0x547fd6ca
// //var svcn uint32 = 0xcad67f54
// var userData []byte = []byte{0x80, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00}
// crc1 := crc32Encode(userData)
//
// m := func(svc1 uint32) uint32 {
// return (svc1 ^ crc1) ^ scw1
// }
//
// rn_1 := m(svcn_1)
// rn := m(svcn)
// l1 := &Lfsr{
// value: sinit,
// p: t_p,
// }
// //l1.add(sid1)
// l1.add(rn_1)
// l1.add(rn)
// fmt.Printf("%x\n", l1.value)
//
// //sinit~<sid1~<sid1
// l2 := &Lfsr{
// value: sinit,
// p: t_p,
// }
// //l2.add(sid1)
// l2.add(sid1)
// l2.add(sid1)
// fmt.Printf("%x", l2.value)
//}
func main() {
var scw uint32 = 0xAE390B5A
var t_p uint32 = 0x0FC22F87
var sid uint32 = 0xa2bcfc8c
//var sinit uint32 = 0xb763ec88
lfsr := Lfsr{
value: sid,
p: t_p,
}
lfsr.add(1)
var userData []byte = []byte{0x80, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00}
crc1 := crc32Encode(userData)
svc := crc1 ^ sid ^ lfsr.value ^ scw
fmt.Printf("%x\n", svc)
}
func crc32Encode(data []byte) uint32 {
return message.Rssp_I_Crc32C1(data)
}
type Lfsr struct {
value uint32
p uint32
}
func (l *Lfsr) add(x uint32) uint32 {
l.value = l.value ^ x
for i := 0; i < 1; i++ {
l.value = l.value << 1
if l.value>>31 == 1 {
l.value ^= l.p
}
}
return l.value
}

View File

@ -66,6 +66,12 @@ type BtmDataMessageTimeAFrame struct {
IsTrainPcSim bool
}
func NewBtmDataMessageTimeAFrame2(sn byte, isTrainPcSim bool) *BtmDataMessageTimeAFrame {
return &BtmDataMessageTimeAFrame{
FId: *NewCanFrameId(CAN_ADDR_RSP_ATP, CAN_ADDR_RSP_BTM, 0x80+0x0e, sn),
IsTrainPcSim: isTrainPcSim,
}
}
func NewBtmDataMessageTimeAFrame(sn byte, isTrainPcSim bool) *BtmDataMessageTimeAFrame {
return &BtmDataMessageTimeAFrame{
FId: *NewCanFrameId(CAN_ADDR_RSP_ATP, CAN_ADDR_RSP_BTM, 0x80+0x0d, sn),
@ -276,6 +282,12 @@ type BtmDataMessageEndFrame struct {
IsTrainPcSim bool
}
func NewBtmDataMessageEndFrame2(sn byte, isTrainPcSim bool) *BtmDataMessageEndFrame {
return &BtmDataMessageEndFrame{
FId: *NewCanFrameId(CAN_ADDR_RSP_ATP, CAN_ADDR_RSP_BTM, 0xff, sn),
IsTrainPcSim: isTrainPcSim,
}
}
func NewBtmDataMessageEndFrame(sn byte, isTrainPcSim bool) *BtmDataMessageEndFrame {
return &BtmDataMessageEndFrame{
FId: *NewCanFrameId(CAN_ADDR_RSP_ATP, CAN_ADDR_RSP_BTM, 0x80+0x7f, sn),

View File

@ -2,6 +2,101 @@ package message
import "log/slog"
func CreateBtmRspFramesData2(statusRsp *BtmStatusRspFrame, msg []byte, msgPackError bool, msgTimeA uint32, msgTimeB uint32, tkTimeB uint32, isTrainPcSim bool) ([]byte, bool) {
/* if len(msg) > 104 { //数据帧最多存储13*8个字节
return nil, false
}*/
//最近一次ATP查询请求序列号
sn := statusRsp.FId.ID4
//13个BtmDataMessageFrame [0x00,0x0c]
//数据
dms := make([]*BtmDataMessageFrame, 13)
for mr := 0x00; mr <= 0x0c; mr++ {
dms[mr] = NewBtmDataMessageFrame(sn, byte(mr), isTrainPcSim)
dms[mr].Message = make([]byte, 8) //8字节数组默认值0
//
if !msgPackError {
mi := mr * 8
if mi < len(msg) { //数据帧中有<=8个字节数据
if mi+7 < len(msg) {
dms[mr].Message = msg[mi : mi+8]
} else {
for i, d := range msg[mi:] {
dms[mr].Message[i] = d
}
}
}
} else { //BTM解包发生错误则数据帧及CRC32A/B全填“0xFF”
for c := 0; c < 8; c++ {
dms[mr].Message[c] = 0xff
}
}
}
//
dtA := NewBtmDataMessageTimeAFrame(sn, isTrainPcSim)
dtA.TimeA = msgTimeA
if !msgPackError {
var crc32AData []byte
crc32AData = append(crc32AData, msg...)
crc32AData = append(crc32AData, canTimeToBytes(dtA.TimeA)...)
dtA.Crc32A = Can_Crc32(crc32AData) //CRC32A的校验范围是报文+时间戳A
} else { //BTM解包发生错误则数据帧及CRC32A/B全填“0xFF”
dtA.Crc32A = 0xff_ff_ff_ff
}
//
dtB := NewBtmDataMessageTimeBFrame(sn, isTrainPcSim)
dtB.TimeB = msgTimeB
if !msgPackError {
var crc32BData []byte
crc32BData = append(crc32BData, msg...)
crc32BData = append(crc32BData, canTimeToBytes(dtB.TimeB)...)
dtB.Crc32B = Can_Crc32(crc32BData) //CRC32B的校验范围是报文+时间戳B
} else { //BTM解包发生错误则数据帧及CRC32A/B全填“0xFF”
dtB.Crc32B = 0xff_ff_ff_ff
}
//
end := NewBtmDataMessageEndFrame(sn, isTrainPcSim)
end.TkB = tkTimeB
//
statusCf := statusRsp.Encode()
dmsCfs := make([]*CanetFrame, 0, 13)
for _, dm := range dms {
dmsCfs = append(dmsCfs, dm.Encode())
}
dtACf := dtA.Encode()
dtBCf := dtB.Encode()
//
crc32cData := make([]byte, 0, 132)
crc32cData = append(crc32cData, statusCf.CanData...)
for _, dmCf := range dmsCfs {
crc32cData = append(crc32cData, dmCf.CanData...)
}
crc32cData = append(crc32cData, dtACf.CanData...)
crc32cData = append(crc32cData, dtBCf.CanData...)
crc32cData = append(crc32cData, canTimeToBytes(end.TkB)...)
//
end.Crc32C = Can_Crc32(crc32cData)
//
endCf := end.Encode()
//
rt := make([]byte, 0, 221) //17*13
rt = append(rt, statusCf.Encode2()...)
for _, dmCf := range dmsCfs {
rt = append(rt, dmCf.Encode2()...)
}
rt = append(rt, dtACf.Encode2()...)
rt = append(rt, dtBCf.Encode2()...)
rt = append(rt, endCf.Encode2()...)
if isTrainPcSim && len(rt) != 221 {
} else if len(rt) != 221 {
slog.Warn("len(rt)!=221")
return nil, false
}
return rt, true
}
// CreateBtmRspFramesData BTM与ATP之间为双向通信ATP定时发送请求帧BTM在未接收到应答器报文时回复状态应答器帧和时间同步帧在接收到应答器报文时回复所有帧
//
// 数据帧与状态应答帧同时发送给ATP

View File

@ -4,320 +4,43 @@ import "github.com/snksoft/crc"
//rssp 协议中crc校验查表法实现
// // Crc16Table G(x)=X16+X11+X4+1计算初始值为0
// var crc16Table []uint32 = nil
// var crc32C1Table []uint32 = nil
// var crc32C2Table []uint32 = nil
const (
// SCW常量
RSSP_I_C1_SCW uint32 = 0xae390b5a
RSSP_I_C2_SCW uint32 = 0xc103589c
//时间戳生成多项式
RSSP_I_C1_TS uint32 = 0x0fc22f87
RSSP_I_C2_TS uint32 = 0xc3e887e1
)
var (
// crc16多项式为G(x)=X16+X11+X4+1
RSSP_I_CRC16 = &crc.Parameters{Width: 16, Polynomial: 0x0811, Init: 0x0, ReflectIn: true, ReflectOut: true, FinalXor: 0x0}
RSSP_I_CRC16 = crc.NewHash(&crc.Parameters{Width: 16, Polynomial: 0x0811, Init: 0x0, ReflectIn: true, ReflectOut: true, FinalXor: 0x0})
// 通道1 crc32多项式为0x100d4e63
RSSP_I_C1_CRC32 = &crc.Parameters{Width: 32, Polynomial: 0x100d4e63, Init: 0x0, ReflectIn: true, ReflectOut: true, FinalXor: 0x0}
RSSP_I_C1_CRC32 = crc.NewHash(&crc.Parameters{Width: 32, Polynomial: 0x100d4e63, Init: 0x0, ReflectIn: true, ReflectOut: true, FinalXor: 0x0})
// 通道2 crc32多项式为0x8ce56011
RSSP_I_C2_CRC32 = &crc.Parameters{Width: 32, Polynomial: 0x8ce56011, Init: 0x0, ReflectIn: true, ReflectOut: true, FinalXor: 0x0}
RSSP_I_C2_CRC32 = crc.NewHash(&crc.Parameters{Width: 32, Polynomial: 0x8ce56011, Init: 0x0, ReflectIn: true, ReflectOut: true, FinalXor: 0x0})
)
// Rssp_I_Crc16计算
func Rssp_I_Crc16(data []byte) uint16 {
return uint16(crc.CalculateCRC(RSSP_I_CRC16, data))
return uint16(RSSP_I_CRC16.CalculateCRC(data))
}
// 通道1的crc32
func Rssp_I_Crc32C1(data []byte) uint32 {
return uint32(crc.CalculateCRC(RSSP_I_C1_CRC32, data))
newData := reverseBitsInByte(data)
return uint32(RSSP_I_C1_CRC32.CalculateCRC(newData))
}
// 通道2的crc32
func Rssp_I_Crc32C2(data []byte) uint32 {
return uint32(crc.CalculateCRC(RSSP_I_C2_CRC32, data))
newData := reverseBitsInByte(data)
return uint32(RSSP_I_C2_CRC32.CalculateCRC(newData))
}
// const ( //CRC生成多项式
// RsspCrc16GX uint32 = 0b1_0000_1000_0001_0001 //生成多项式 G(X)=X16+X11+X4+1
// RsspCrc32C1 uint32 = 0x100d4e63 //安全通道1 CRC32生成多项式
// RsspCrc32C2 uint32 = 0x8ce56011 //安全通道1 CRC32生成多项式
// )
// // InitRsspCrcTable 初始化RSSP协议中需要的CRC表
// func InitRsspCrcTable() {
// if crc16Table == nil {
// crc16Table = CreateCrcTable(RsspCrc16GX, 16, false)
// }
// if crc32C1Table == nil {
// crc32C1Table = CreateCrcTable(RsspCrc32C1, 32, false)
// }
// if crc32C2Table == nil {
// crc32C2Table = CreateCrcTable(RsspCrc32C2, 32, false)
// }
// }
// func RsspCrc16(data []byte) uint16 {
// return uint16(CrcTableBased(data, 16, 0, false, false, 0, crc16Table))
// }
// func RsspC1Crc32(data []byte) uint32 {
// return CrcTableBased(data, 32, 0, false, false, 0, crc32C1Table)
// }
// func RsspC2Crc32(data []byte) uint32 {
// return CrcTableBased(data, 32, 0, false, false, 0, crc32C2Table)
// }
// // CreateCrcTable 创建CRC表支持8、16、32位
// func CreateCrcTable(polynomial uint32, width int, input_reflected bool) []uint32 {
// var table = make([]uint32, 0, 256)
// for bt := 0x00; bt <= 0xff; bt++ {
// table = append(table, lookup(uint32(bt), polynomial, width, input_reflected))
// }
// return table
// }
/////////////////////////////////////////////////////////////////////////////
// // 反转(0b00001010->0b01010000)
// func reflect(data uint32, width int) uint32 {
// var register1 uint32 = 0
// var significant_mask uint32 = 0xffffffff >> (32 - width)
// var register_msb_mask uint32 = 1 << (width - 1)
// var register_lsb_mask uint32 = 1
// for i := 0; i < width; i++ {
// need_or := (data>>i)&register_lsb_mask == register_lsb_mask
// if need_or {
// register1 |= register_msb_mask >> i
// }
// }
// return register1 & significant_mask
// }
// // 计算单个数值的crc
// func lookup(data uint32,
// polynomial uint32,
// width int,
// input_reflected bool) uint32 {
// var register1 uint32 = 0
// var significant_mask uint32 = 0xffffffff >> (32 - width)
// var register_msb_mask uint32 = 1 << (width - 1)
// var register_lsb_mask uint32 = 1
// var byte_msb_mask uint32 = 0x80
// var byte_lsb_mask uint32 = 1
// if input_reflected {
// polynomial = reflect(polynomial, width)
// }
// for i := 0; i < 1+(width/8); i++ {
// var byteData uint32 = 0
// if i < 1 {
// byteData = data
// }
// for j := 0; j < 8; j++ {
// need_xor := false
// if input_reflected {
// need_xor = (register1 & register_lsb_mask) == register_lsb_mask
// register1 >>= 1
// need_or := (byteData & byte_lsb_mask) == byte_lsb_mask
// byteData >>= 1
// if need_or {
// register1 |= register_msb_mask
// }
// } else {
// need_xor = (register1 & register_msb_mask) == register_msb_mask
// register1 <<= 1
// need_or := (byteData & byte_msb_mask) == byte_msb_mask
// byteData <<= 1
// if need_or {
// register1 |= register_lsb_mask
// }
// }
// if need_xor {
// register1 ^= polynomial
// }
// }
// }
// return register1 & significant_mask
// }
// // CrcTableBased 查表法计算字节数组的crc
// func CrcTableBased(
// data []byte,
// width int,
// initial_value uint32,
// input_reflected bool,
// result_reflected bool,
// final_xor_value uint32,
// table []uint32) uint32 {
// //
// length := len(data)
// var register1 uint32 = initial_value
// var significant_mask uint32 = 0xffffffff >> (32 - width)
// var register_lsb_mask uint32 = 0xff
// if input_reflected {
// register1 = reflect(register1, width)
// }
// for i := 0; i < length; i++ {
// var byteData = uint32(data[i])
// var shift_out uint32 = 0
// if input_reflected {
// shift_out = register1 & register_lsb_mask
// register1 = (register1 >> 8) ^ table[shift_out^byteData]
// } else {
// shift_out = (register1 >> (width - 8)) & register_lsb_mask
// register1 = (register1 << 8) ^ table[shift_out^byteData]
// }
// }
// if input_reflected != result_reflected {
// register1 = reflect(register1, width)
// }
// return (register1 ^ final_xor_value) & significant_mask
// }
// func Crc(data []byte,
// polynomial uint32,
// width int,
// initial_value uint32,
// input_reflected bool,
// result_reflected bool,
// final_xor_value uint32) uint32 {
// length := len(data)
// var register1 uint32 = initial_value
// var significant_mask uint32 = 0xffffffff >> (32 - width)
// var register_lsb_mask uint32 = 0xff
// if input_reflected {
// register1 = reflect(register1, width)
// }
// for i := 0; i < length; i++ {
// var byteData uint32 = uint32(data[i])
// var shift_out uint32 = 0
// var value uint32 = 0
// if input_reflected {
// shift_out = register1 & register_lsb_mask
// value = lookup(shift_out^byteData, polynomial, width, input_reflected)
// register1 = (register1 >> 8) ^ value
// } else {
// shift_out = (register1 >> (width - 8)) & register_lsb_mask
// value = lookup(shift_out^byteData, polynomial, width, input_reflected)
// register1 = (register1 << 8) ^ value
// }
// }
// if input_reflected != result_reflected {
// register1 = reflect(register1, width)
// }
// return (register1 ^ final_xor_value) & significant_mask
// }
//////////////////////////LFSR//////////////////////////////
// 线性反馈移位寄存器
type RsspLFSR struct {
polynomial uint32 //生成多项式
width int //寄存器宽度
register uint32 //寄存器
initValue uint32 //初始值
rightShift bool //true-右移false-左移
}
func NewRsspLFSR(polynomial uint32, width int, init_value uint32, rightShift bool) *RsspLFSR {
var wd_msb_mask uint32 = 1 << (width - 1)
var wd_mask uint32 = 0xffffffff >> (32 - width)
init_value &= wd_mask
polynomial &= wd_mask
polynomial = (polynomial >> 1) | wd_msb_mask
//
return &RsspLFSR{polynomial: polynomial, width: width, register: init_value, initValue: init_value, rightShift: rightShift}
}
func (r *RsspLFSR) move() {
r.move0(r.rightShift)
}
func (r *RsspLFSR) MoveRight() *RsspLFSR {
r.move0(true)
return r
}
func (r *RsspLFSR) MoveLeft() *RsspLFSR {
r.move0(false)
return r
}
func (r *RsspLFSR) move0(rightShift bool) {
var significant_mask uint32 = 0xffffffff >> (32 - r.width)
//
r.register &= significant_mask
cb := r.register & r.polynomial & significant_mask
out := bitXor(cb, r.width)
if rightShift {
r.register >>= 1
r.register = r.register | (out << (r.width - 1))
} else {
r.register <<= 1
r.register = r.register | out
func reverseBitsInByte(data []byte) []byte {
var result byte
newData := make([]byte, len(data))
for i, b := range data {
result = 0
for i := 0; i < 8; i++ {
result <<= 1
result |= b & 1
b >>= 1
}
newData[i] = result
}
r.register &= significant_mask
}
func (r *RsspLFSR) GetAndMove() uint32 {
rt := r.register
r.move()
return rt
}
func (r *RsspLFSR) Get() uint32 {
return r.register
}
func (r *RsspLFSR) Reset() {
r.register = r.initValue
}
// return 0 或 1
func bitXor(data uint32, width int) uint32 {
var v uint32 = 0
var lsb_mask uint32 = 1
for i := 0; i < width; i++ {
v ^= data >> i
}
return v & lsb_mask
}
// ///////////////////////////////////////////////////////
const RsspSnMax = uint32(4294967295)
type RsspSn struct {
sn uint32 //顺序序列号最大值4294967295
initValue uint32
}
func NewRsspSn(initValue uint32) *RsspSn {
return &RsspSn{sn: initValue, initValue: initValue}
}
func (s *RsspSn) GetAndAdd() uint32 {
if s.sn < RsspSnMax {
s.sn++
return s.sn
} else {
s.sn = s.initValue
return s.sn
}
}
func (s *RsspSn) Get() uint32 {
return s.sn
return newData
}

View File

@ -2,19 +2,31 @@ package message
import (
"fmt"
"github.com/snksoft/crc"
"testing"
)
func TestNewRsspLFSR(t *testing.T) {
lfsr := NewRsspLFSR(0x0FC22F87, 32, 0x7665986c, false)
for i := 0; i < 341; i++ {
lfsr.GetAndMove()
}
fmt.Printf("%x", lfsr.Get())
}
func TestRssp_I_Crc16(t *testing.T) {
bytes := []byte{0x01, 0x80, 0x3a, 0x30, 0x9e, 0x30, 0x24, 0x85, 00, 00, 0x23, 00, 0x3b, 0x2b, 0xb1, 0x08, 0xf8, 0xc0, 0x6c, 0x16, 0x80, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00}
crc := Rssp_I_Crc16(bytes)
fmt.Printf("crc16: %x\n", crc)
}
func BenchmarkRssp_I_Crc32C1(b *testing.B) {
var params = &crc.Parameters{
Width: 32,
Polynomial: 0x100d4e63,
ReflectIn: true,
ReflectOut: true,
Init: 0,
FinalXor: 0,
}
hash := crc.NewHash(params)
bytes := []byte{0x01, 0x80, 0x3a, 0x30, 0x9e, 0x30, 0x24, 0x85, 00, 00, 0x23, 00, 0x3b, 0x2b, 0xb1, 0x08, 0xf8, 0xc0, 0x6c, 0x16, 0x80, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00, 00}
for i := 0; i < b.N; i++ {
hash.CalculateCRC(bytes)
}
//for i := 0; i < b.N; i++ {
// crc.CalculateCRC(params, bytes)
//}
}

View File

@ -121,8 +121,6 @@ func AtpLowPowerByte(d byte) bool {
// 列车速度位置报告
type TrainSpeedPlaceReportMsg struct {
//列车id
TrainId string
PulseCount1 uint32
PulseCount2 uint32
}
@ -255,4 +253,6 @@ const (
DOOR_MODE_AM
//MM人开人关
DOOR_MODE_MM
_
NOT_BREAK
)

View File

@ -51,7 +51,15 @@ func (s *semiPhysicalTrainImpl) State() tpapi.ThirdPartyApiServiceState {
func (s *semiPhysicalTrainImpl) Name() string {
return Name
}
func (d *semiPhysicalTrainImpl) FindAppendApiService() []tpapi.ThirdPartyApiService {
return nil
}
func (d *semiPhysicalTrainImpl) TrueService() bool {
return true
}
func (d *semiPhysicalTrainImpl) ServiceDesc() string {
return Name
}
func (s *semiPhysicalTrainImpl) handleTrainControlMsg(b []byte) {
s.udpDelayRecorder.RecordInterval()
// slog.Debug(fmt.Sprintf("半实物列车控制消息近期消息间隔: %v", s.udpDelayRecorder.GetIntervals()))

View File

@ -40,24 +40,39 @@ func convertServiceName(name string) state_proto.SimulationThirdPartyApiService_
func GetRunningServiceStates() *state_proto.SimulationThirdPartyApiService {
ss := &state_proto.SimulationThirdPartyApiService{}
for _, tpas := range tpapiService {
t := convertServiceName(tpas.Name())
if t == state_proto.SimulationThirdPartyApiService_Undefined {
slog.Error("未知的第三方接口服务类型", "name", tpas.Name())
continue
}
switch tpas.State() {
case tpapi.ThirdPartyState_Normal:
ss.States = append(ss.States, &state_proto.SimulationThirdPartyApiServiceState{
Type: t,
State: state_proto.SimulationThirdPartyApiService_Normal,
})
case tpapi.ThirdPartyState_Broken:
ss.States = append(ss.States, &state_proto.SimulationThirdPartyApiServiceState{
Type: t,
State: state_proto.SimulationThirdPartyApiService_Error,
})
if tpas.TrueService() {
collectServiceState(ss, tpas)
} else {
trueServices := tpas.FindAppendApiService()
if trueServices != nil && len(trueServices) > 0 {
for _, trueService := range trueServices {
collectServiceState(ss, trueService)
}
}
}
}
return ss
}
func collectServiceState(ss *state_proto.SimulationThirdPartyApiService, service tpapi.ThirdPartyApiService) {
t := convertServiceName(service.Name())
if t == state_proto.SimulationThirdPartyApiService_Undefined {
slog.Error("未知的第三方接口服务类型", "name", service.Name())
return
}
switch service.State() {
case tpapi.ThirdPartyState_Normal:
ss.States = append(ss.States, &state_proto.SimulationThirdPartyApiServiceState{
Type: t,
ServiceName: service.ServiceDesc(),
State: state_proto.SimulationThirdPartyApiService_Normal,
})
case tpapi.ThirdPartyState_Broken:
ss.States = append(ss.States, &state_proto.SimulationThirdPartyApiServiceState{
Type: t,
ServiceName: service.ServiceDesc(),
State: state_proto.SimulationThirdPartyApiService_Error,
})
}
}

View File

@ -23,6 +23,11 @@ type ThirdPartyApiService interface {
Name() string
// 服务状态
State() ThirdPartyApiServiceState
FindAppendApiService() []ThirdPartyApiService
//是否真实服务如果为假就会调用FindAppendApiService方法
TrueService() bool
//服务描述
ServiceDesc() string
}
// func NewThirdPartyApiService() ThirdPartyApiService {

View File

@ -4,46 +4,72 @@ import (
"joylink.club/bj-rtsts-server/dto/state_proto"
"joylink.club/bj-rtsts-server/third_party/message"
"joylink.club/bj-rtsts-server/third_party/tcp"
"joylink.club/bj-rtsts-server/third_party/tpapi"
"log/slog"
)
type trainPcReciverData struct {
type TrainPcReciverData struct {
tpapi.ThirdPartyApiService
clientKey string
tcpClient *tcp.TcpClient
pcSimManage TrainPcSimManage
trainInit bool
state tpapi.ThirdPartyApiServiceState
speedPlace *message.TrainSpeedPlaceReportMsg
train *state_proto.TrainState
}
func (rd *trainPcReciverData) receiverDataHandle(n int, data []byte) {
func (rd *TrainPcReciverData) Name() string {
return Name
}
// 服务状态
func (rd *TrainPcReciverData) State() tpapi.ThirdPartyApiServiceState {
return rd.state
}
func (d *TrainPcReciverData) updateState(state tpapi.ThirdPartyApiServiceState) {
d.state = state
}
func (d *TrainPcReciverData) readError(err error) {
slog.Error("连接车载pc仿真tcp服务断开", err)
d.updateState(tpapi.ThirdPartyState_Broken)
d.tcpClient = nil
}
func (d *TrainPcReciverData) ServiceDesc() string {
return d.clientKey
}
func (rd *TrainPcReciverData) receiverDataHandle(n int, data []byte) {
receiveData := data[:n]
trainPcMsgs := message.TrainPcSimDecode(receiveData)
train := rd.train
if train == nil {
slog.Error("车载输出数字量未找到连接车载pc仿真的列车")
return
}
if !train.ConnState.Conn {
slog.Error("车载输出数字量,,列车未连接车载pc仿真")
return
}
//hexSourceData := hex.EncodeToString(receiveData)
//slog.Info(fmt.Sprintf("接受列车激活端:%v pc仿真接收数据%v", rd.clientKey, hexSourceData))
trainPcMsgs := message.TrainPcSimDecode(receiveData)
connType := state_proto.TrainConnState_PC_SIM_A
if rd.clientKey == "B" {
connType = state_proto.TrainConnState_PC_SIM_B
}
for _, baseMsg := range trainPcMsgs {
//slog.Info(fmt.Sprintf("pc仿真接收数据%v,类型:%X", hexSourceData, baseMsg.Type))
switch baseMsg.Type {
//case RECIVE_TRAIN_CREATE_REMOVE:
// pc.trainPcSimManage.TrainPcSimConnOrRemoveHandle(baseMsg.Data[0])
//case message.RECIVE_TRAIN_INTERFACE_CABINET_OUTR:
// rd.pcSimManage.TrainPcSimDigitalOutInfoHandle(connType, baseMsg.Data)
case message.RECIVE_TRAIN_INTERFACE_CABINET_OUTR:
initResult := rd.pcSimManage.TrainPcSimDigitalOutInfoHandle(train, rd.trainInit, baseMsg.Data)
rd.trainInit = initResult
case message.RECIVE_TRAIN_INTERFACE_CABINET_OUTR_BACK:
rd.pcSimManage.TrainPcSimDigitalReportHandle(connType, baseMsg.Data)
rd.pcSimManage.TrainPcSimDigitalReportHandle(train, baseMsg.Data)
case message.RECIVE_TRAIN_QUERY_STATUS:
rd.pcSimManage.TrainBtmQuery(connType, baseMsg.Data)
/*train := rd.pcSimManage.FindConnTrain(connType)
mockMsgs := rd.pcSimManage.ObtainTrainDigitalMockData(train)
for _, msg := range mockMsgs {
err := rd.tcpClient.Send(msg.Encode())
if err != nil {
slog.Error("查询btm发送模拟量失败 msg:", err.Error(), err)
}
}*/
rd.pcSimManage.TrainBtmQuery(train, baseMsg.Data)
case message.RECIVE_TRAIN_MOCK_DATA:
rd.pcSimManage.TrainPcSimMockInfo(connType, baseMsg.Data)
rd.pcSimManage.TrainPcSimMockInfo(train, baseMsg.Data)
//case RECIVE_TRAIN_DOOR_MODE:
// pc.trainPcSimManage.TrainDoorModeHandle(baseMsg.Data[0])

View File

@ -6,17 +6,19 @@ import (
"fmt"
"joylink.club/bj-rtsts-server/config"
"joylink.club/bj-rtsts-server/dto/state_proto"
"joylink.club/bj-rtsts-server/sys_error"
"joylink.club/bj-rtsts-server/third_party/message"
"joylink.club/bj-rtsts-server/third_party/tcp"
"joylink.club/bj-rtsts-server/third_party/tpapi"
"log/slog"
"math"
"sync"
"time"
)
type TrainControlEvent struct {
Command byte
Status byte
Type byte
Data []byte
}
//var FireTrainControlEventType = ecs.NewEventType[TrainControlEvent]()
@ -37,11 +39,17 @@ type TrainPcSim interface {
SendBaliseData(train *state_proto.TrainState, msgType byte, data []byte)
SendBaliseData2(train *state_proto.TrainState, msgType byte, data []string)
//发布列车控制的相关事件
PublishTrainControlEvent(train *state_proto.TrainState, events []TrainControlEvent)
//PublishTrainControlEvent(train *state_proto.TrainState, events []TrainControlEvent)
SendTrainControlMsg(train *state_proto.TrainState, baseMessage []message.TrainPcSimBaseMessage)
// CreateOrRemoveSpeedPLace 创建或删除速度位置信息
CreateOrRemoveSpeedPLace(train *state_proto.TrainState)
//CreateOrRemoveSpeedPLace(train *state_proto.TrainState)
// CreateOrRemoveTrain 创建或删除列车
CreateOrRemoveTrain(train *state_proto.TrainState, isCreate bool) error
// TrainPluseCount 计算列车脉冲
TrainPluseCount(sta *state_proto.TrainState, h1, h2, t1, t2 float32)
ResetPluseCount(sta *state_proto.TrainState)
//FindAllThirdPartState() []tpapi.ThirdPartyApiService
}
type TrainPcSimManage interface {
@ -51,36 +59,25 @@ type TrainPcSimManage interface {
//获取列车模拟量数据
ObtainTrainDigitalMockData(train *state_proto.TrainState) []message.TrainPcSimBaseMessage
// TrainPcSimDigitalOutInfoHandle 4.4.1. 车载输出数字量信息报文内容
TrainPcSimDigitalOutInfoHandle(connType state_proto.TrainConnState_TrainConnType, data []byte)
TrainPcSimDigitalOutInfoHandle(train *state_proto.TrainState, trainInit bool, data []byte) bool
// TrainPcSimDigitalReportHandle 4.4.2. 车载输出数字反馈量信息报文内容
TrainPcSimDigitalReportHandle(connType state_proto.TrainConnState_TrainConnType, data []byte)
TrainPcSimDigitalReportHandle(train *state_proto.TrainState, data []byte)
FindConnTrain(ct state_proto.TrainConnState_TrainConnType) *state_proto.TrainState
// TrainPcSimMockInfo 门模式
//TrainDoorModeHandle(state byte)
//处理列车pc仿真模拟量数据
TrainPcSimMockInfo(connType state_proto.TrainConnState_TrainConnType, data []byte)
TrainPcSimMockInfo(train *state_proto.TrainState, data []byte)
// TrainBtmQuery 处理列车btm查询
TrainBtmQuery(connType state_proto.TrainConnState_TrainConnType, data []byte)
TrainBtmQuery(train *state_proto.TrainState, data []byte)
}
const Name = "车载pc仿真"
func FindTrainPcSimClientKey(t *state_proto.TrainState) string {
if t.ConnState.ConnType == state_proto.TrainConnState_PC_SIM_A {
return "A"
} else if t.ConnState.ConnType == state_proto.TrainConnState_PC_SIM_B {
return "B"
}
return ""
}
func (d *trainPcSimService) Name() string {
return Name
}
func (d *trainPcSimService) State() tpapi.ThirdPartyApiServiceState {
return d.state
}
func (d *trainPcSimService) updateState(state tpapi.ThirdPartyApiServiceState) {
d.state = state
type trainPcSimService struct {
state tpapi.ThirdPartyApiServiceState
newPcSimclientMap map[string]*TrainPcReciverData
cancleContext context.CancelFunc
trainPcSimManage TrainPcSimManage
//speedPlace *message.TrainSpeedPlaceReportMsg
//trainSpeedPlace map[string]*message.TrainSpeedPlaceReportMsg
configs []config.VehiclePCSimConfig
}
var (
@ -97,26 +94,85 @@ func Default() TrainPcSim {
return singleObj
}
type trainPcSimService struct {
state tpapi.ThirdPartyApiServiceState
newPcSimclientMap map[string]*trainPcReciverData
cancleContext context.CancelFunc
trainPcSimManage TrainPcSimManage
speedPlace *message.TrainSpeedPlaceReportMsg
configs []config.VehiclePCSimConfig
const Name = "车载pc仿真"
func (d *trainPcSimService) Name() string {
return ""
}
func (d *trainPcSimService) State() tpapi.ThirdPartyApiServiceState {
return tpapi.ThirdPartyState_Closed
}
func (d *trainPcSimService) FindAppendApiService() []tpapi.ThirdPartyApiService {
return d.findAllThirdPartState()
}
func (d *trainPcSimService) TrueService() bool {
return false
}
func (d *trainPcSimService) ServiceDesc() string {
return Name
}
func FindTrainPcSimClientKey2(t *state_proto.TrainState) string {
return t.ConnState.TypeName
}
func (d *trainPcSimService) findTrainConn(sta *state_proto.TrainState) (*TrainPcReciverData, error) {
trainPcReciver := d.newPcSimclientMap[sta.ConnState.TypeName]
if trainPcReciver == nil {
return nil, fmt.Errorf("")
}
return trainPcReciver, nil
}
func (d *trainPcSimService) findAllThirdPartState() []tpapi.ThirdPartyApiService {
services := make([]tpapi.ThirdPartyApiService, 0)
for _, data := range d.newPcSimclientMap {
services = append(services, data)
}
return services
}
// 接受来自pc仿真的消息
func (d *trainPcSimService) readError(err error) {
slog.Error("连接车载pc仿真tcp服务断开", err)
d.updateState(tpapi.ThirdPartyState_Broken)
func pluseCountSpeed(wheelDiameter int32, speedMeter float32) uint32 {
s1 := speedMeter * 1000
pluseCountData := s1 * 200 / math.Pi / float32(wheelDiameter)
return uint32(pluseCountData)
}
func (d *trainPcSimService) newCloseAllConn() {
for _, rd := range d.newPcSimclientMap {
if rd != nil {
rd.tcpClient.Close()
rd.tcpClient = nil
func (d *trainPcSimService) ResetPluseCount(sta *state_proto.TrainState) {
if sd, err := d.findTrainConn(sta); err == nil {
sd.speedPlace.PulseCount1 = 0
sd.speedPlace.PulseCount2 = 0
}
}
func (d *trainPcSimService) TrainPluseCount(sta *state_proto.TrainState, h1, h2, t1, t2 float32) {
defer initLock.Unlock()
initLock.Lock()
if sta.TrainRunUp {
if sta.TrainEndsA.SpeedSensorEnableA {
sta.PluseCount.PulseCount1 = pluseCountSpeed(sta.WheelDiameter, h1)
}
if sta.TrainEndsA.SpeedSensorEnableB {
sta.PluseCount.PulseCount2 = pluseCountSpeed(sta.WheelDiameter, h2)
}
} else {
if sta.TrainEndsB.SpeedSensorEnableA {
sta.PluseCount.PulseCount1 = pluseCountSpeed(sta.WheelDiameter, t1)
}
if sta.TrainEndsB.SpeedSensorEnableB {
sta.PluseCount.PulseCount2 = pluseCountSpeed(sta.WheelDiameter, t2)
}
}
}
func (d *trainPcSimService) TrainPluseCountReset(sta *state_proto.TrainState) {
defer initLock.Unlock()
initLock.Lock()
sta.PluseCount.PulseCount1 = 0
sta.PluseCount.PulseCount2 = 0
}
func (d *trainPcSimService) newCloseAllConn() {
trains := d.trainPcSimManage.GetConnTrain2()
for _, train := range trains {
d.CreateOrRemoveTrain(train, false)
}
}
@ -125,27 +181,22 @@ func (d *trainPcSimService) newCloseConn(clientKey string) {
if rd != nil {
rd.tcpClient.Close()
rd.tcpClient = nil
rd.train = nil
rd.speedPlace = nil
}
}
func (d *trainPcSimService) findConfig(tcChar string) (*config.VehiclePCSimConfig, error) {
configFlag := false
if tcChar == "A" {
configFlag = true
} else if tcChar == "B" {
configFlag = false
} else {
return nil, fmt.Errorf(fmt.Sprintf("未知车载pc连接标识:%v", tcChar))
}
func (d *trainPcSimService) findConfig(configName string) (*config.VehiclePCSimConfig, error) {
for _, cfg := range d.configs {
if cfg.Open && cfg.TrainEnds == configFlag {
if cfg.Open && cfg.ConfigName == configName {
return &cfg, nil
}
}
return nil, fmt.Errorf("未找到对应的车载pc连接配置")
}
func (d *trainPcSimService) connTrainPcSim(ctx context.Context) {
/*func (d *trainPcSimService) connTrainPcSim(ctx context.Context) {
go func() {
for {
@ -164,10 +215,9 @@ func (d *trainPcSimService) connTrainPcSim(ctx context.Context) {
d.newCloseConn(clientKey)
continue
}
rd := d.newPcSimclientMap[clientKey]
if rd == nil {
d.newPcSimclientMap[clientKey] = &trainPcReciverData{pcSimManage: d.trainPcSimManage, clientKey: clientKey, tcpClient: &tcp.TcpClient{}}
d.newPcSimclientMap[clientKey] = &TrainPcReciverData{pcSimManage: d.trainPcSimManage, clientKey: clientKey, tcpClient: &tcp.TcpClient{}}
}
if !rd.tcpClient.IsConning() {
d.newCloseConn(clientKey)
@ -178,123 +228,149 @@ func (d *trainPcSimService) connTrainPcSim(ctx context.Context) {
time.Sleep(time.Second)
}
}()
}
}*/
func (d *trainPcSimService) initConn(clientKey string) {
func (d *trainPcSimService) initConn(clientKey string) error {
rd := d.newPcSimclientMap[clientKey]
if rd != nil && rd.tcpClient != nil && rd.tcpClient.IsConning() {
return
return nil
} else {
rd.trainInit = false
rd.tcpClient = nil
}
rd = &trainPcReciverData{pcSimManage: d.trainPcSimManage, clientKey: clientKey, tcpClient: &tcp.TcpClient{}}
d.newPcSimclientMap[clientKey] = rd
cfg, _ := d.findConfig(clientKey)
addr := fmt.Sprintf("%v:%v", cfg.PcSimIp, cfg.PcSimPort)
client2, err := tcp.StartTcpClient(addr, rd.receiverDataHandle, d.readError)
cfg, cfgErr := d.findConfig(clientKey)
if cfgErr != nil {
errMsg := fmt.Sprintf("没找到对应的配置信息 key:%v", clientKey)
slog.Error(errMsg, cfgErr.Error())
rd.updateState(tpapi.ThirdPartyState_Broken)
return sys_error.New(errMsg, cfgErr)
}
addr := fmt.Sprintf("%v:%v", cfg.PcSimIp, cfg.PcSimPort)
client2, err := tcp.StartTcpClient(addr, rd.receiverDataHandle, rd.readError)
if err != nil {
slog.Error(fmt.Sprintf("车载pc连接失败 clientKey:%v,error:%v", clientKey, err.Error()))
d.updateState(tpapi.ThirdPartyState_Broken)
connErrMsg := fmt.Sprintf("车载pc连接失败 clientKey:%v", clientKey)
slog.Error(connErrMsg, err.Error())
rd.updateState(tpapi.ThirdPartyState_Broken)
return sys_error.New(connErrMsg, err)
} else {
rd.tcpClient = client2
}
return nil
}
func (d *trainPcSimService) Start(pcSimManage TrainPcSimManage) {
configs := pcSimManage.GetTrainPcSimConfig()
d.newPcSimclientMap = make(map[string]*trainPcReciverData)
func (d *trainPcSimService) Start(pcSimManage TrainPcSimManage) {
configs := pcSimManage.GetTrainPcSimConfig()
d.newPcSimclientMap = make(map[string]*TrainPcReciverData)
if len(configs) <= 0 {
slog.Info("车载pc仿真配置未开启")
return
}
closedCount := 0
for _, c := range configs {
if !c.Open {
closedCount++
} else {
ck := c.ConfigName
pcReciver := &TrainPcReciverData{clientKey: ck, pcSimManage: pcSimManage}
pcReciver.updateState(tpapi.ThirdPartyState_Closed)
d.newPcSimclientMap[ck] = pcReciver
}
}
if closedCount == len(configs) {
slog.Error("车载pc仿真配置未开启")
return
}
//third_party.AppendService(d.findAllThirdPartState())
d.configs = configs
ctx, ctxFun := context.WithCancel(context.Background())
d.cancleContext = ctxFun
d.trainPcSimManage = pcSimManage
d.connTrainPcSim(ctx)
d.updateState(tpapi.ThirdPartyState_Normal)
//d.connTrainPcSim(ctx)
go d.sendTrainLocationAndSpeedTask(ctx)
}
func (d *trainPcSimService) Stop() {
d.updateState(tpapi.ThirdPartyState_Closed)
for _, data := range d.newPcSimclientMap {
data.updateState(tpapi.ThirdPartyState_Closed)
}
if d.cancleContext != nil {
d.cancleContext()
d.cancleContext = nil
}
//d.closeAllConn()
d.newCloseAllConn()
}
func (d *trainPcSimService) CreateOrRemoveSpeedPLace(train *state_proto.TrainState) {
if train.ConnState.Conn && (train.ConnState.ConnType == state_proto.TrainConnState_PC_SIM_A || train.ConnState.ConnType == state_proto.TrainConnState_PC_SIM_B) {
train.PluseCount = &state_proto.SensorSpeedPulseCount{}
d.speedPlace = &message.TrainSpeedPlaceReportMsg{TrainId: train.Id}
} else {
train.PluseCount = nil
d.speedPlace = nil
/*
func (d *trainPcSimService) CreateOrRemoveSpeedPLace(train *state_proto.TrainState) {
if train.ConnState.Conn && (train.ConnState.ConnType == state_proto.TrainConnState_PC_SIM_A || train.ConnState.ConnType == state_proto.TrainConnState_PC_SIM_B) {
train.PluseCount = &state_proto.SensorSpeedPulseCount{}
d.speedPlace = &message.TrainSpeedPlaceReportMsg{TrainId: train.Id}
} else {
train.PluseCount = nil
d.speedPlace = nil
}
}
}
*/
func (d *trainPcSimService) CreateOrRemoveTrain(train *state_proto.TrainState, isCreate bool) error {
clientKey := FindTrainPcSimClientKey(train)
d.initConn(clientKey)
log := "删除列车"
clientKey := FindTrainPcSimClientKey2(train)
err := d.initConn(clientKey)
if err != nil {
d.newCloseConn(clientKey)
return err
}
data := []byte{message.FLAG_CAMMAND_REMOVE_TRAIN}
if isCreate {
log = "创建列车"
data[0] = message.FLAG_CAMMAND_CREATE_TRAIN
}
msg := &message.TrainPcSimBaseMessage{Data: data, Type: message.RECIVE_TRAIN_CREATE_REMOVE}
rd := d.newPcSimclientMap[clientKey]
if rd != nil {
sd := msg.Encode()
slog.Info(fmt.Sprintf("%v-列车号:%v,发送数据:%v", log, train.Id, hex.EncodeToString(sd)))
err := rd.tcpClient.Send(sd)
if err != nil {
return err
}
initTrainErr := d.initTrain(rd, train, isCreate)
initTrainErr := d.initTrain(rd, train, isCreate, msg)
if !isCreate {
d.newCloseConn(clientKey)
}
if initTrainErr != nil {
return initTrainErr
}
}
return nil
}
func (d *trainPcSimService) initTrain(rd *trainPcReciverData, train *state_proto.TrainState, isCreate bool) error {
func (d *trainPcSimService) initTrain(rd *TrainPcReciverData, train *state_proto.TrainState, isCreate bool, trains *message.TrainPcSimBaseMessage) error {
msgs := make([]message.TrainPcSimBaseMessage, 0)
sendMsg := make([]byte, 0)
if isCreate {
rd.speedPlace = &message.TrainSpeedPlaceReportMsg{}
train.PluseCount = &state_proto.SensorSpeedPulseCount{}
rd.train = train
tcc := train.Tcc
tcc.LineInitTimeStamp12 = 0
tcc.Line12ConnErr = false
tmpMsgs := d.trainPcSimManage.ObtainTrainDigitalMockData(train)
msgs = append(msgs, tmpMsgs...)
msgs = append(msgs, message.TrainPcSimBaseMessage{Data: []byte{}, Type: message.SENDER_TRAIN_TC_ACTIVE}) //驾驶室激活
msgs = append(msgs, message.TrainPcSimBaseMessage{Data: []byte{message.DRIVER_ACTIVE_REPORT, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //驾驶室激活反馈按钮
msgs = append(msgs, message.TrainPcSimBaseMessage{Data: []byte{0x00}, Type: message.RECIVE_TRAIN_DOOR_MODE}) //门模式
msgs = append(msgs, message.TrainPcSimBaseMessage{Data: []byte{}, Type: message.RECIVE_TRAIN_BTN_CLEAR_ALL_PRE_DATA}) //清空应答器
} else {
msgs = append(msgs, message.TrainPcSimBaseMessage{Data: []byte{}, Type: message.SENDER_TRAIN_TC_NOT_ACTIVE}) //驾驶室激活
train.VobcState.Tc1Active = false
train.VobcState.Tc2Active = false
tcc := train.Tcc
for _, key := range tcc.DriverKey {
key.Val = false
}
msgs = append(msgs, message.TrainPcSimBaseMessage{Data: []byte{message.TRAIN_BRAKE_STATE, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //驾驶室激活
msgs = append(msgs, message.TrainPcSimBaseMessage{Data: []byte{message.KEY_STATE, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //驾驶室激活
msgs = append(msgs, message.TrainPcSimBaseMessage{Data: []byte{}, Type: message.SENDER_TRAIN_TC_NOT_ACTIVE}) //驾驶室激活
}
for _, msg := range msgs {
data := msg.Encode()
hexData := hex.EncodeToString(data)
err := rd.tcpClient.Send(data)
if err != nil {
slog.Error(fmt.Sprintf("列车设置激活%v 失败:%v", isCreate, hexData))
return fmt.Errorf(fmt.Sprintf("列车设置激活%v 失败:%v", isCreate, hex.EncodeToString(data)), err)
}
sendMsg = append(sendMsg, data...)
}
sendMsg = append(sendMsg, trains.Encode()...)
hexData := hex.EncodeToString(sendMsg)
slog.Info(fmt.Sprintf("发送列车初始化消息:%v", hexData))
rd.tcpClient.Send(sendMsg)
return nil
}
@ -309,18 +385,25 @@ func (d *trainPcSimService) sendTrainLocationAndSpeedTask(ctx context.Context) {
trains := d.trainPcSimManage.GetConnTrain2()
for _, train := range trains {
if train.ConnState.Conn && train.PluseCount != nil {
clientKey := FindTrainPcSimClientKey(train)
rd := d.newPcSimclientMap[clientKey]
trainClient, trainDataErr := d.findTrainConn(train)
if trainDataErr != nil {
slog.Error(fmt.Sprintf("pc仿真速度位置未找到对应的列车 id:%v", train.Id))
continue
}
connState := tpapi.ThirdPartyState_Normal
if train.Tcc.Line12ConnErr {
connState = tpapi.ThirdPartyState_Broken
}
trainClient.updateState(connState)
s1, s2 := train.PluseCount.PulseCount1, train.PluseCount.PulseCount2
d.speedPlace.ParsePulseCount1(s1, s2)
data := d.speedPlace.Encode(train.TrainRunUp, s1, s2)
trainClient.speedPlace.ParsePulseCount1(s1, s2)
data := trainClient.speedPlace.Encode(train.TrainRunUp, s1, s2)
bm := &message.TrainPcSimBaseMessage{Type: message.SENDER_TRAIN_LOCATION_INFO, Data: data}
train.PluseCount.PulseCount1 = 0
train.PluseCount.PulseCount2 = 0
d.TrainPluseCountReset(train)
dataCode := bm.Encode()
slog.Info(fmt.Sprintf("发送列车速度位置,列车:%v,s1: %v,s2: %v,c2: %v,c2: %v,发送数据:%v", train.Id, s1, s2, d.speedPlace.PulseCount1, d.speedPlace.PulseCount2, hex.EncodeToString(dataCode)))
err := rd.tcpClient.Send(dataCode)
slog.Info(fmt.Sprintf("发送列车速度位置,列车:%v,s1: %v,s2: %v,c2: %v,c2: %v,发送数据:%v", train.Id, s1, s2, trainClient.speedPlace.PulseCount1, trainClient.speedPlace.PulseCount2, hex.EncodeToString(dataCode)))
err := trainClient.tcpClient.Send(dataCode)
if err != nil {
slog.Error(fmt.Sprintf("发送列车速度位置失败,列车:%v,发送数据:%v", train.Id, hex.EncodeToString(dataCode)))
}
@ -334,11 +417,14 @@ func (d *trainPcSimService) sendTrainLocationAndSpeedTask(ctx context.Context) {
// SendDriverActive Deprecated 发送驾驶激活
func (d *trainPcSimService) SendDriverActive(train *state_proto.TrainState) {
trainClient, trainDataErr := d.findTrainConn(train)
if trainDataErr != nil {
slog.Error(fmt.Sprintf("发送驾驶激活未找到对应的列车连接列车id%v", train.Id))
return
}
vobc := train.VobcState
clientKey := FindTrainPcSimClientKey(train)
//client := d.pcSimClientMap[clientKey]
rd := d.newPcSimclientMap[clientKey]
defulatBuf := make([]byte, 0)
msg := &message.TrainPcSimBaseMessage{Data: defulatBuf}
if train.TrainRunUp {
@ -354,36 +440,40 @@ func (d *trainPcSimService) SendDriverActive(train *state_proto.TrainState) {
msg.Type = message.SENDER_TRAIN_TC_NOT_ACTIVE
}
}
//:"创建列车-列车号:1,发送数据:eb0050010156e4"}
//{,"msg":"发送驾驶激活列车","1":"数据","!BADKEY":"eb0004002437"}
msgs := make([]byte, 0)
if msg.Type == message.SENDER_TRAIN_TC_ACTIVE {
dd3 := message.TrainPcSimBaseMessage{Data: []byte{message.KEY_STATE, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}
msgs = append(msgs, dd3.Encode()...)
} else {
dd3 := message.TrainPcSimBaseMessage{Data: []byte{message.KEY_STATE, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}
msgs = append(msgs, dd3.Encode()...)
}
msgs = append(msgs, msg.Encode()...)
hexData := hex.EncodeToString(msgs)
slog.Info(fmt.Sprintf("发送驾驶激活列车id:%v,数据:%v", train.Id, hexData))
err := trainClient.tcpClient.Send(msgs)
da := msg.Encode()
slog.Info(fmt.Sprintf("发送驾驶激活列车id:%v,数据:%v", train.Id, hex.EncodeToString(da)))
err := rd.tcpClient.Send(da)
//err := client.Send(da)
if err != nil {
slog.Error(fmt.Sprintf("发送驾驶激活失败列车id:%v,数据:%v,err:%v", train.Id, hex.EncodeToString(da), err.Error()))
slog.Error(fmt.Sprintf("发送驾驶激活失败列车id:%v,数据:%v,err:%v", train.Id, hexData, err.Error()))
}
}
func (d *trainPcSimService) SendHandleSwitch(oldTraction, oldBrakeForce int64, tractionState bool, train *state_proto.TrainState) {
trainClient, trainDataErr := d.findTrainConn(train)
if trainDataErr != nil {
slog.Error(fmt.Sprintf("发送列车牵引知道失败未找到对应的列车id:%v", train.Id))
return
}
tc := train.ConnState
if tc.Conn {
vobc := train.VobcState
clientKey := FindTrainPcSimClientKey(train)
rd := d.newPcSimclientMap[clientKey]
//client := d.pcSimClientMap[clientKey]
vobc := train.VobcState
msg := &message.TrainPcSimBaseMessage{}
newTraction := vobc.TractionForce
//newBrake := -vobc.BrakeForce
//newOldBrakeForce := -oldBrakeForce
if tractionState {
if newTraction <= oldTraction && newTraction == 0 {
if newTraction <= oldTraction && newTraction <= 0 {
//手柄取消前进
msg.Type = message.RECIVE_TRAIN_HAND_KEY_CANCLE_FORWARD
} else if newTraction > oldTraction {
//手柄前进
msg.Type = message.SENDER_TRAIN_HAND_KEY_FORWARD
} else {
//手柄前进
msg.Type = message.SENDER_TRAIN_HAND_KEY_FORWARD
@ -393,8 +483,7 @@ func (d *trainPcSimService) SendHandleSwitch(oldTraction, oldBrakeForce int64, t
/*if newBrake >= newOldBrakeForce && newBrake == 0 {
//手柄取消后退
msg.Type = message.RECIVE_TRAIN_HAND_KEY_CACLE_BACKWARD
} else
if newBrake < newOldBrakeForce {
} else if newBrake < newOldBrakeForce {
//手柄后退
msg.Type = message.RECIVE_TRAIN_HAND_KEY_BACKWARD
} else {
@ -404,16 +493,20 @@ func (d *trainPcSimService) SendHandleSwitch(oldTraction, oldBrakeForce int64, t
msg.Type = message.RECIVE_TRAIN_HAND_KEY_BACKWARD
}
da := msg.Encode()
slog.Info("发送列车手柄消息", "clientKey", clientKey, "msg", hex.EncodeToString(da))
err := rd.tcpClient.Send(da)
slog.Info("发送列车手柄消息", "msg", hex.EncodeToString(da))
err := trainClient.tcpClient.Send(da)
//err := client.Send(da)
if err != nil {
slog.Error("发送列车手柄消息失败", "clientKey", clientKey, "msg", hex.EncodeToString(da))
slog.Error("发送列车手柄消息失败", "msg", hex.EncodeToString(da))
}
}
}
func (d *trainPcSimService) SendTrainDirection(train *state_proto.TrainState, trainForward, trainBackward bool) {
trainClient, trainDataErr := d.findTrainConn(train)
if trainDataErr != nil {
slog.Error(fmt.Sprintf("发送列车方向失败未找到列车连接trainId%s", train.Id))
return
}
baseMsgs := make([]*message.TrainPcSimBaseMessage, 0)
if !trainForward && !trainBackward {
baseMsgs = append(baseMsgs, &message.TrainPcSimBaseMessage{Type: message.RECIVE_TRAIN_HAND_KEY_CANCLE_FORWARD})
@ -423,29 +516,31 @@ func (d *trainPcSimService) SendTrainDirection(train *state_proto.TrainState, tr
} else if trainBackward {
baseMsgs = append(baseMsgs, &message.TrainPcSimBaseMessage{Type: message.RECIVE_TRAIN_HAND_KEY_BACKWARD})
}
clientKey := FindTrainPcSimClientKey(train)
rd := d.newPcSimclientMap[clientKey]
//client := d.pcSimClientMap[clientKey]
for _, msg := range baseMsgs {
da := msg.Encode()
slog.Info(fmt.Sprintf("发送列车方向列车:%v ,数据:%v", train.Id, hex.EncodeToString(da)))
err := rd.tcpClient.Send(da)
//err := client.Send(da)
err := trainClient.tcpClient.Send(da)
if err != nil {
slog.Error(fmt.Sprintf("发送列车方向失败列车:%v ,数据:%v,err:%v", train.Id, hex.EncodeToString(da), err.Error()))
}
}
}
func (d *trainPcSimService) SendBaliseData2(train *state_proto.TrainState, msgType byte, data []string) {
trainClient, trainDataErr := d.findTrainConn(train)
if trainDataErr != nil {
slog.Error(fmt.Sprintf("发送列车PC仿真应答器信息失败2未找到列车连接trainId%v", train.Id))
return
}
for _, hexData := range data {
dd, _ := hex.DecodeString(hexData)
msg := &message.TrainPcSimBaseMessage{Type: msgType, Data: dd}
clientKey := FindTrainPcSimClientKey(train)
rd := d.newPcSimclientMap[clientKey]
da := msg.Encode()
slog.Info(fmt.Sprintf("发送列车PC仿真应答器信息,数据类型:0x%X,数据:%v", msgType, hex.EncodeToString(da)))
err := rd.tcpClient.Send(da)
da := msg.Encode()
//slog.Info(fmt.Sprintf("发送列车PC仿真应答器信息,数据类型:0x%X,数据:%v", msgType, hex.EncodeToString(da)))
err := trainClient.tcpClient.Send(da)
if err != nil {
slog.Info(fmt.Sprintf("发送列车PC仿真应答器信息失败,数据:%v", hex.EncodeToString(da)))
}
@ -453,44 +548,65 @@ func (d *trainPcSimService) SendBaliseData2(train *state_proto.TrainState, msgTy
}
func (d *trainPcSimService) SendBaliseData(train *state_proto.TrainState, msgType byte, data []byte) {
trainClient, trainDataErr := d.findTrainConn(train)
if trainDataErr != nil {
slog.Error(fmt.Sprintf("发送列车PC仿真应答器信息失败未找到列车连接trainId%v", train.Id))
return
}
msg := &message.TrainPcSimBaseMessage{}
msg.Type = msgType
msg.Data = data
clientKey := FindTrainPcSimClientKey(train)
rd := d.newPcSimclientMap[clientKey]
da := msg.Encode()
slog.Info(fmt.Sprintf("发送列车PC仿真应答器信息,无应答器:%v,数据:%v", msgType == message.RECIVE_TRAIN_BTM_NOT_DATA, hex.EncodeToString(da)))
err := rd.tcpClient.Send(da)
//slog.Info(fmt.Sprintf("发送列车PC仿真应答器信息,无应答器:%v,数据:%v", msgType == message.RECIVE_TRAIN_BTM_NOT_DATA, hex.EncodeToString(da)))
err := trainClient.tcpClient.Send(da)
if err != nil {
slog.Info(fmt.Sprintf("发送列车PC仿真应答器信息失败,数据:%v", hex.EncodeToString(da)))
}
}
func (d *trainPcSimService) PublishTrainControlEvent(train *state_proto.TrainState, events []TrainControlEvent) {
/*func (d *trainPcSimService) PublishTrainControlEvent(train *state_proto.TrainState, events []TrainControlEvent) {
if len(events) <= 0 {
slog.Warn("发布事件数量为空")
return
}
clientKey := FindTrainPcSimClientKey(train)
rd := d.newPcSimclientMap[clientKey]
trainClient, trainDataErr := d.findTrainConn(train)
if trainDataErr != nil {
slog.Error("")
return
}
//client := d.pcSimClientMap[clientKey]
msgs := make([]byte, 0)
for _, event := range events {
msg := &message.TrainPcSimBaseMessage{}
msg.Type = message.SENDER_TRAIN_OUTR_INFO
data := []byte{event.Command, event.Status}
msg.Data = data
msg := &message.TrainPcSimBaseMessage{Type: event.Type, Data: event.Data}
code := msg.Encode()
hexCode := hex.EncodeToString(code)
slog.Info(fmt.Sprintf("输出列车控制输出量,命令码位:%v 对应状态:%v,发送数据:%v", event.Command, event.Status, hexCode))
err := rd.tcpClient.Send(code)
if err != nil {
slog.Error(fmt.Sprintf("输出列车控制输出量发送失败,命令码位:%v 对应状态:%v,发送数据:%v", event.Command, event.Status, hexCode))
}
//client.Send(msg.Encode())
//FireTrainControlEventType.Publish(world, &event)
msgs = append(msgs, code...)
}
hexCode := hex.EncodeToString(msgs)
slog.Info(fmt.Sprintf("列车数字量信息发送数据:%v", hexCode))
err := trainClient.tcpClient.Send(msgs)
if err != nil {
slog.Error(fmt.Sprintf("列车数字量信息发送失败,数据:%v", hexCode))
}
}*/
func (d *trainPcSimService) SendTrainControlMsg(train *state_proto.TrainState, baseMessage []message.TrainPcSimBaseMessage) {
if len(baseMessage) <= 0 {
return
}
trainClient, trainDataErr := d.findTrainConn(train)
if trainDataErr != nil {
slog.Error(fmt.Sprintf("发送列车控制信息失败,无连接,列车Id:%v", train.Id))
return
}
for _, msg := range baseMessage {
d.sendData(trainClient.tcpClient, msg.Encode())
}
}
func (d *trainPcSimService) sendData(client *tcp.TcpClient, data []byte) {
err := client.Send(data)
if err != nil {
slog.Error(fmt.Sprintf("列车数字量信息发送失败,数据:%v", err.Error()))
}
}

View File

@ -12,6 +12,37 @@ const (
JJZD = "JJZD" //紧急停车
QHFXKZ = "QHFXKZ" //驾驶方向
QYSB = "QYSB" //牵引制动手柄
ATPQCKG = "ATPQCKG" //ATP切除开关
KZM = "KZM" //开左门按钮
GZM = "GZM" //关左门按钮
GYM = "GYM" //关右门按钮
KYM = "KYM" //开右门
ZAWTGJC = "ZAWTGJC" //障碍物/脱轨检测
ZDZGZ = "ZDZGZ" //制动重故障
ATPSD = "ATPSD" //ATP上电按钮
MSQR = "MSQR" //模式确认
ZF = "ZF"
QZMYX = "QZMYX" //强制门允许
MSJJ = "MSJJ" //模式降级
MSSJ = "MSSJ" // 模式升级
HX = "HX" //唤醒按钮
JX = "JX" //检修按钮
XM = "XM" //休眠按钮
LIGHT_JJZD = JJZD
LIGHT_QQY = "QQY" //切牵引指示灯
LIGHT_JSSJH = "JSSJH" // 驾驶室激活
LIGHT_TFZDHJ = "TFZDHJ" //停放制动缓解
LIGHT_QYYX = "QYYX" // 牵引有效
LIGHT_ZDYX = "ZDYX" //制动有效
LIGHT_TFZDSJ = "TFZDSJ" //停放制动施加
LIGHT_CYZD = "CYZD" //常用制动
LIGHT_ZDGL = "ZDGL" //制动隔离
LIGHT_LSXH = "LSXH" //零速信号
LIGHT_ZMYX = "ZMYX" //左门允许
LIGHT_YMYX = "YMYX" //右门允许
LIGHT_ZFZSD = "ZFZSD" //折返指示灯
LIGHT_BDATPKC = "BDATPKC" //本段atp控车
)
// 获取列车控制图形数据
@ -68,14 +99,17 @@ func findTrainTccGraphicDataHandler(tccG *data_proto.TccGraphicStorage, id uint3
}
func initTrainVobc(trainLoad int64, trainIsUp bool) (*state_proto.TrainVobcState, uint32) {
vobc := &state_proto.TrainVobcState{TrainLoad: int64(trainLoad), BrakingStatus: true, BrakeForce: DEFAULT_BRAKE_FORCE, DirectionForward: true}
vobc := &state_proto.TrainVobcState{TrainLoad: int64(trainLoad), BrakingStatus: true, BrakeForce: 100, DirectionForward: true,
AllDoorClose: true, ObstacleCheckBtn: true, RightDoorCloseCommand: true, LeftDoorCloseCommand: true, BrakeHeavyFault: true, AtpCutSwitch: true,
ConfirmBtn: true, AtpPowerOnBtn: true,
}
var trainActDir uint32 = 0
if trainIsUp {
vobc.Tc1Active = true
//vobc.Tc1Active = true
trainActDir = 1
} else {
//vobc.Tc1Active = true
vobc.Tc2Active = true
//vobc.Tc2Active = true
trainActDir = 2
}
return vobc, trainActDir
@ -98,15 +132,16 @@ func initTrainTcc(vs *VerifySimulation, runDir bool, breaking int32) *state_prot
tcc.LightMaps[light.Code] = &state_proto.TrainControlState_ControlLight{Id: light.Common.Id, Val: light.InitialState}
}
btns := make([]*state_proto.TrainControlState_ControlButton, 0)
btns := make(map[string]*state_proto.TrainControlState_ControlButton, 0)
for _, b := range tccGI.TccButtons {
btn := &state_proto.TrainControlState_ControlButton{Id: b.Common.Id, Passed: false}
if b.Code == JJZD {
btn.Passed = false
switch b.Code {
case ATPQCKG, GZM, GYM, ZAWTGJC, ZDZGZ, ATPSD, MSQR:
btn.Passed = true
}
btns = append(btns, btn)
btns[b.Code] = btn
//btns = append(btns, btn)
}
tcc.Buttons = btns
for _, b := range tccGI.TccHandles {
if b.Code == QYSB {
@ -117,11 +152,11 @@ func initTrainTcc(vs *VerifySimulation, runDir bool, breaking int32) *state_prot
for _, b := range tccGI.TccKeys {
if b.GetType() == data_proto.TccKey_driverControllerActivationClint {
val := false
if b.Code == SKQYS1 && runDir {
val = true
} else if b.Code == SKQYS2 && !runDir {
val = true
}
/* if b.Code == SKQYS1 && runDir {
val = true
} else if b.Code == SKQYS2 && !runDir {
val = true
}*/
ds = append(ds, &state_proto.TrainControlState_DriverKeySwitch{Id: b.Common.Id, Val: val})
} else if b.GetType() == data_proto.TccKey_frontAndRearDirectionalControl {
tcc.DirKey = &state_proto.TrainControlState_DirectionKeySwitch{Id: b.Common.Id, Val: uint32(message.IsTrue(true))}

View File

@ -146,16 +146,16 @@ func filterOtherLineDevice(data *data_proto.RtssGraphicStorage) {
for _, d := range data.Section {
did := GetMapElementId(d.Common)
if otherDeviceIdMap[did] {
slog.Warn("区段[id:%v][code:%s]设备是其他线路设备已过滤", did, d.Code)
slog.Warn(fmt.Sprintf("区段[id:%v][code:%s]设备是其他线路设备已过滤", did, d.Code))
continue
}
if d.PaRef != nil && otherDeviceIdMap[d.PaRef.Id] {
d.PaRef = nil
slog.Warn("区段[id:%v][code:%s]设备A端是其他线路设备已置空", did, d.Code)
slog.Warn(fmt.Sprintf("区段[id:%v][code:%s]设备A端是其他线路设备已置空", did, d.Code))
}
if d.PbRef != nil && otherDeviceIdMap[d.PbRef.Id] {
d.PbRef = nil
slog.Warn("区段[id:%v][code:%s]设备B端是其他线路设备已置空", did, d.Code)
slog.Warn(fmt.Sprintf("区段[id:%v][code:%s]设备B端是其他线路设备已置空", did, d.Code))
}
var acs []uint32
for _, id := range d.AxleCountings {
@ -176,7 +176,7 @@ func filterOtherLineDevice(data *data_proto.RtssGraphicStorage) {
for _, d := range data.AxleCountings {
did := GetMapElementId(d.Common)
if otherDeviceIdMap[did] {
slog.Warn("计轴[id:%v][code:%s]设备其他线路设备已过滤", did, d.Code)
slog.Warn(fmt.Sprintf("计轴[id:%v][code:%s]设备其他线路设备已过滤", did, d.Code))
continue
}
var refs []*data_proto.RelatedRef
@ -195,20 +195,20 @@ func filterOtherLineDevice(data *data_proto.RtssGraphicStorage) {
for _, d := range data.Turnouts {
did := GetMapElementId(d.Common)
if otherDeviceIdMap[did] {
slog.Warn("道岔[id:%v][code:%s]设备其他线路设备已过滤", did, d.Code)
slog.Warn(fmt.Sprintf("道岔[id:%v][code:%s]设备其他线路设备已过滤", did, d.Code))
continue
}
if d.PaRef != nil && otherDeviceIdMap[d.PaRef.Id] {
d.PaRef = nil
slog.Warn("道岔[id:%v][code:%s]设备A端是其他线路设备已置空", did, d.Code)
slog.Warn(fmt.Sprintf("道岔[id:%v][code:%s]设备A端是其他线路设备已置空", did, d.Code))
}
if d.PbRef != nil && otherDeviceIdMap[d.PbRef.Id] {
d.PbRef = nil
slog.Warn("道岔[id:%v][code:%s]设备B端是其他线路设备已置空", did, d.Code)
slog.Warn(fmt.Sprintf("道岔[id:%v][code:%s]设备B端是其他线路设备已置空", did, d.Code))
}
if d.PcRef != nil && otherDeviceIdMap[d.PcRef.Id] {
d.PcRef = nil
slog.Warn("道岔[id:%v][code:%s]设备C端是其他线路设备已置空", did, d.Code)
slog.Warn(fmt.Sprintf("道岔[id:%v][code:%s]设备C端是其他线路设备已置空", did, d.Code))
}
if d.PaTrackSectionId != 0 && otherDeviceIdMap[d.PaTrackSectionId] {
d.PaTrackSectionId = 0
@ -227,7 +227,7 @@ func filterOtherLineDevice(data *data_proto.RtssGraphicStorage) {
for _, d := range data.Signals {
did := GetMapElementId(d.Common)
if otherDeviceIdMap[did] {
slog.Warn("信号机[id:%v][code:%s]设备其他线路设备已过滤", did, d.Code)
slog.Warn(fmt.Sprintf("信号机[id:%v][code:%s]设备其他线路设备已过滤", did, d.Code))
continue
}
signals = append(signals, d)
@ -238,7 +238,7 @@ func filterOtherLineDevice(data *data_proto.RtssGraphicStorage) {
for _, d := range data.Transponders {
did := GetMapElementId(d.Common)
if otherDeviceIdMap[did] {
slog.Warn("应答器[id:%v][code:%s]设备其他线路设备已过滤", did, d.Code)
slog.Warn(fmt.Sprintf("应答器[id:%v][code:%s]设备其他线路设备已过滤", did, d.Code))
continue
}
transponders = append(transponders, d)

View File

@ -5,8 +5,8 @@ import (
"joylink.club/bj-rtsts-server/dto/common_proto"
"joylink.club/bj-rtsts-server/service"
"joylink.club/bj-rtsts-server/third_party/can_btm"
"joylink.club/bj-rtsts-server/third_party/train_pc_sim"
"log/slog"
"math"
"reflect"
"strconv"
"time"
@ -143,17 +143,18 @@ func TrainConnTypeUpdate(vs *VerifySimulation, ct *dto.TrainConnThirdDto) {
panic(sys_error.New(fmt.Sprintf("列车【%s】不存在", ct.Id)))
}
train := data.(*state_proto.TrainState)
if train.DynamicState.Speed != 0 {
panic(sys_error.New(fmt.Sprintf("列车[%s]需要停稳才能连接半实物", train.Id)))
}
if ct.ConnType != state_proto.TrainConnState_NONE {
//列车连接 半实物或车载pc仿真
allTrainMap.Range(func(k, v any) bool {
tmpTrain := v.(*state_proto.TrainState)
if tmpTrain.ConnState.Conn {
connState := tmpTrain.ConnState
if connState.Conn {
connTypeName := "半实物"
if tmpTrain.ConnState.ConnType == state_proto.TrainConnState_PC_SIM_A {
connTypeName = "车载pc仿真-A"
} else if tmpTrain.ConnState.ConnType == state_proto.TrainConnState_PC_SIM_B {
connTypeName = "车载pc仿真-B"
if connState.ConnType == state_proto.TrainConnState_PC_SIM && connState.TypeName == ct.TypeName {
connTypeName = fmt.Sprintf("车载pc仿真-%v", ct.TypeName)
}
panic(sys_error.New(fmt.Sprintf("列车[%s]已经连接 [%v],此列车无法连接", k, connTypeName)))
return false
@ -163,7 +164,9 @@ func TrainConnTypeUpdate(vs *VerifySimulation, ct *dto.TrainConnThirdDto) {
}
train.ConnState.Conn = true
train.ConnState.ConnType = ct.ConnType
if ct.ConnType == state_proto.TrainConnState_PC_SIM_A || ct.ConnType == state_proto.TrainConnState_PC_SIM_B {
train.ConnState.TypeName = ct.TypeName
if ct.ConnType == state_proto.TrainConnState_PC_SIM {
train.Tcc.LineInitTimeStamp12 = 0
err := TrainPcSimConnOrRemoveHandle(train, true)
if err != nil {
train.ConnState.Conn = false
@ -177,6 +180,7 @@ func TrainConnTypeUpdate(vs *VerifySimulation, ct *dto.TrainConnThirdDto) {
// 列车断开三方连接
func TrainUnConn(vs *VerifySimulation, trainId string) {
allTrainMap := &vs.Memory.Status.TrainStateMap
data, ok := allTrainMap.Load(trainId)
if !ok {
@ -187,8 +191,11 @@ func TrainUnConn(vs *VerifySimulation, trainId string) {
if err != nil {
panic(sys_error.New("未连接车载PC仿真无法断开连接"))
}
train.ConnState.Conn = false
train.ConnState.ConnType = state_proto.TrainConnState_NONE
defer func() {
train.ConnState.Conn = false
train.ConnState.ConnType = state_proto.TrainConnState_NONE
train.ConnState.TypeName = ""
}()
}
func createOrUpdateStateDynamicConfig(trainState *state_proto.TrainState, configTrainData dto.ConfigTrainData, trainEndsA dto.ConfigTrainEnds,
trainEndsB dto.ConfigTrainEnds) {
@ -407,50 +414,12 @@ func handleTrainPositionFromDynamic(vs *VerifySimulation, info *message.Dynamics
})
}
// 接受动力学时间15毫米
const RECEIVE_DYNAMIC_DATA_RATE = 15
func formatSpeedTime(s int32) int32 {
//d3, _ := strconv.ParseFloat(fmt.Sprintf("%.2f", s), 64)
return int32(math.Abs(math.Round(float64(s))))
}
func formatSpeedTime2(s int32) uint32 {
return uint32(math.Abs(float64(float32(s) / 3.6 / 100 * 1000)))
}
const (
aa = 0x79
)
func pluseCount(sta *state_proto.TrainState, h1, h2, t1, t2 float32) {
if sta.PluseCount == nil {
return
}
if sta.TrainRunUp {
//p1 := formatSpeedTime2(sta.DynamicState.HeadSensorSpeed1)
//p2 := formatSpeedTime2(sta.DynamicState.HeadSensorSpeed2)
train_pc_sim.Default().TrainPluseCount(sta, h1, h2, t1, t2)
//p1 := uint32(formatSpeedTime(sta.DynamicState.HeadSensorSpeed1 * RECEIVE_DYNAMIC_DATA_RATE))
//p2 := uint32(formatSpeedTime(sta.DynamicState.HeadSensorSpeed2 * RECEIVE_DYNAMIC_DATA_RATE))
if sta.TrainEndsA.SpeedSensorEnableA {
sta.PluseCount.PulseCount1 = sta.PluseCount.PulseCount1 + uint32(h1*1000*0.08)
}
if sta.TrainEndsA.SpeedSensorEnableB {
sta.PluseCount.PulseCount2 = sta.PluseCount.PulseCount2 + uint32(h2*1000*0.08)
}
} else {
//t1 := uint32(formatSpeedTime(sta.DynamicState.TailSensorSpeed1 * RECEIVE_DYNAMIC_DATA_RATE))
//t2 := uint32(formatSpeedTime(sta.DynamicState.TailSensorSpeed2 * RECEIVE_DYNAMIC_DATA_RATE))
//t1 := formatSpeedTime2(sta.DynamicState.HeadSensorSpeed1)
//t2 := formatSpeedTime2(sta.DynamicState.HeadSensorSpeed2)
if sta.TrainEndsB.SpeedSensorEnableA {
sta.PluseCount.PulseCount1 = sta.PluseCount.PulseCount1 + uint32(t1*1000*0.08)
}
if sta.TrainEndsB.SpeedSensorEnableB {
sta.PluseCount.PulseCount2 = sta.PluseCount.PulseCount2 + uint32(t2*1000*0.08)
}
}
}
func RemoveAllTrain(vs *VerifySimulation) {
allTrainMap := &vs.Memory.Status.TrainStateMap
@ -473,12 +442,16 @@ func removeTrain(vs *VerifySimulation, trainId string, train *state_proto.TrainS
if err != nil {
return err
}
if train.ConnState.Conn {
train.ConnState.Conn = false
thirdConn := train.ConnState
if thirdConn.Conn {
thirdConn.Conn = false
err = TrainPcSimConnOrRemoveHandle(train, false)
if err != nil {
train.ConnState.Conn = true
return err
} else {
thirdConn.ConnType = state_proto.TrainConnState_NONE
thirdConn.TypeName = ""
}
}
if train.VobcState != nil {
@ -489,7 +462,7 @@ func removeTrain(vs *VerifySimulation, trainId string, train *state_proto.TrainS
vobc.BrakeForce = DEFAULT_BRAKE_FORCE
}
train.Show = false
train.ConnState.ConnType = state_proto.TrainConnState_NONE
return fi.RemoveTrainFromWorld(vs.World, trainId)
}

View File

@ -532,16 +532,12 @@ func (s *VerifySimulation) CollectInterlockRelayInfo(code string) *message.Inter
func (s *VerifySimulation) FindTrainConnTypes() []dto.TrainConnTypeConfigDto {
typeConfig := make([]dto.TrainConnTypeConfigDto, 0)
if /*s.runConfig.Vobc.Open &&*/ s.runConfig.Vobc.Ip != "" {
typeConfig = append(typeConfig, dto.TrainConnTypeConfigDto{ConnType: state_proto.TrainConnState_VOBC})
typeConfig = append(typeConfig, dto.TrainConnTypeConfigDto{TypeName: "半实物vobc", ConnType: state_proto.TrainConnState_VOBC})
}
for _, pcSim := range s.runConfig.PcSimConfigs {
dto := dto.TrainConnTypeConfigDto{ConnType: state_proto.TrainConnState_PC_SIM_A}
if !pcSim.TrainEnds {
dd := &dto
dd.ConnType = state_proto.TrainConnState_PC_SIM_B
}
typeConfig = append(typeConfig, dto)
typeConfig = append(typeConfig, dto.TrainConnTypeConfigDto{TypeName: pcSim.ConfigName, ConnType: state_proto.TrainConnState_PC_SIM})
}
/* if s.runConfig.PcSimConfig.Open {
typeConfig = append(typeConfig, dto.TrainConnTypeConfigDto{ConnType: state_proto.TrainConnState_PC_SIM})

View File

@ -38,25 +38,32 @@ func ControlTrainUpdate(s *VerifySimulation, ct *request_proto.TrainControl) {
sta := data.(*state_proto.TrainState)
vobc := sta.VobcState
tcc := sta.Tcc
var tce []train_pc_sim.TrainControlEvent = nil
var baseMsg []message.TrainPcSimBaseMessage = nil
if ct.ControlType == request_proto.TrainControl_EMERGENT_BUTTON {
//tce = trainControlEB(vobc, tcc, ct.Button, ct.DeviceId, tccGraphicData)
tce = trainControlButton(vobc, tcc.Buttons, ct.DeviceId, ct.ControlButton.Active, tccGraphicData)
baseMsg = trainControlButton(vobc, tcc.Buttons, ct.DeviceId, ct.ControlButton.Active, tccGraphicData)
} else if ct.ControlType == request_proto.TrainControl_DRIVER_KEY_SWITCH {
tce = trainControlDriverKey(sta, ct.DriverKey, ct.DeviceId, tccGraphicData)
//train_pc_sim.Default().SendDriverActive(sta)
baseMsg = trainControlDriverKey(sta, ct.DriverKey, ct.DeviceId, tccGraphicData)
train_pc_sim.Default().SendDriverActive(sta)
} else if ct.ControlType == request_proto.TrainControl_DIRECTION_KEY_SWITCH {
tce = trainControlDirKey(sta.DynamicState.Speed, vobc, tcc, ct.DirKey, ct.DeviceId, tccGraphicData)
baseMsg = 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
train_pc_sim.Default().SendTrainDirection(sta, sta.VobcState.DirectionForward, sta.VobcState.DirectionBackward)
} else if ct.ControlType == request_proto.TrainControl_HANDLER {
if vobc.Tc1Active && vobc.Tc2Active {
panic(sys_error.New("TC1和TC2都未激活不能搬动牵引制动手柄 "))
}
oldTraction := sta.VobcState.TractionForce
oldBrakeForce := sta.VobcState.BrakeForce
isTraction := ct.Handler.Val > 0 //是否制动
tce = trainControlHandle(vobc, tcc, ct.Handler, ct.DeviceId, tccGraphicData)
baseMsg = trainControlHandle(vobc, tcc, ct.Handler, ct.DeviceId, tccGraphicData)
train_pc_sim.Default().SendHandleSwitch(oldTraction, oldBrakeForce, isTraction, sta)
}
if vobc.DirectionForward && vobc.TractionForce == 0 {
baseMsg = append(baseMsg, message.TrainPcSimBaseMessage{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.DIR_ZERO_FORWARD, 1}})
} else {
baseMsg = append(baseMsg, message.TrainPcSimBaseMessage{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.DIR_ZERO_FORWARD, 0}})
}
if !vobc.DirectionForward && !vobc.DirectionBackward {
vobc.TractionStatus = false
vobc.TractionForce = 0
@ -64,62 +71,56 @@ func ControlTrainUpdate(s *VerifySimulation, ct *request_proto.TrainControl) {
if vobc.EmergencyBrakingStatus {
vobc.TractionForce = 0
}
if sta.ConnState.Conn && (sta.ConnState.ConnType == state_proto.TrainConnState_PC_SIM_A || sta.ConnState.ConnType == state_proto.TrainConnState_PC_SIM_B) && tce != nil {
train_pc_sim.Default().PublishTrainControlEvent(sta, tce)
if sta.ConnState.Conn && (sta.ConnState.ConnType == state_proto.TrainConnState_PC_SIM) && baseMsg != nil {
train_pc_sim.Default().SendTrainControlMsg(sta, baseMsg)
}
}
func findBtnFromTccByDeviceId(tcc []*state_proto.TrainControlState_ControlButton, deviceId uint32) (*state_proto.TrainControlState_ControlButton, bool) {
for _, tccBtn := range tcc {
if tccBtn.Id == deviceId {
return tccBtn, true
}
}
return nil, false
}
func trainControlButton(vobc *state_proto.TrainVobcState, tcc []*state_proto.TrainControlState_ControlButton, deviceId uint32, active bool, tccGraphic *data_proto.TccGraphicStorage) []train_pc_sim.TrainControlEvent {
func trainControlButton(vobc *state_proto.TrainVobcState, buttonMap map[string]*state_proto.TrainControlState_ControlButton, deviceId uint32, active bool, tccGraphic *data_proto.TccGraphicStorage) []message.TrainPcSimBaseMessage {
if graphicBtn, ok := findTrainTccGraphicDataButton(tccGraphic, deviceId); ok {
btn, btnOk := findBtnFromTccByDeviceId(tcc, deviceId)
if btnOk == false {
btn := buttonMap[graphicBtn.Code]
if btn == nil {
slog.Error("未找到对应的车载摁钮code:", graphicBtn.Code, "设备id:", deviceId)
return nil
}
switch graphicBtn.Code {
case "JJZD": // 紧急制动
case JJZD: // 紧急制动
return controlEBBtn(vobc, active, btn)
case "ATPQCKG": //atp切除
case ATPQCKG: //atp切除
return controlAtpBtn(vobc, active, btn)
case "WBJJZDFK": //外部紧急制动反馈
return controlOutEbReportBtn(vobc, active, btn)
case "KZM": //开左门按钮
/* case "WBJJZDFK": //外部紧急制动反馈
return controlOutEbReportBtn(vobc, active, btn)*/
case KZM: //开左门按钮
return controlLeftDoorBtn(vobc, active, btn)
case "GZM": //关左门按钮
case GZM: //关左门按钮
return controlLeftDoorCloseBtn(vobc, active, btn)
case "KYM": //开右门按钮
case KYM: //开右门按钮
return controlRightDoorBtn(vobc, active, btn)
case "GYM": //关右门按钮
case GYM: //关右门按钮
return controlRightDoorCloseBtn(vobc, active, btn)
case "ZF": //折返按钮
case ZF: //折返按钮
return controlReverseBtn(vobc, active, btn)
case "QZMYX": //强制门允许
case QZMYX: //强制门允许
return controlDoorAllowBtn(vobc, active, btn)
case "MSJJ": //模式降级按钮
case MSJJ: //模式降级按钮
return controlModeDownBtn(vobc, active, btn)
case "MSSJ": //模式升级按钮
case MSSJ: //模式升级按钮
return controlModeUpBtn(vobc, active, btn)
case "MSQR": //模式确认按钮
case MSQR: //模式确认按钮
return controlModeConfirmBtn(vobc, active, btn)
case "ZAWTGJC": //障碍物/脱轨检测
case ZAWTGJC: //障碍物/脱轨检测
return controlObstacleDetectionBtn(vobc, active, btn)
case "ZDZGZ": //制动重故障
case ZDZGZ: //制动重故障
return controlBrakeHeavyBtn(vobc, active, btn)
case "ATPSD": //ATP上电按钮
case ATPSD: //ATP上电按钮
return controlAtpPowerBtn(vobc, active, btn)
case "HX": //唤醒按钮
case HX: //唤醒按钮
return controlWakeUpBtn(vobc, active, btn)
case "JX": //检修按钮
case JX: //检修按钮
return controlOverhaulBtn(vobc, active, btn)
case "XM": //休眠按钮
case XM: //休眠按钮
return controlSleepBtn(vobc, active, btn)
default:
return nil
@ -130,7 +131,7 @@ func trainControlButton(vobc *state_proto.TrainVobcState, tcc []*state_proto.Tra
}
// 应急摁钮
func controlEBBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlEBBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
if !active {
return nil
}
@ -138,198 +139,197 @@ func controlEBBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_p
vobc.EmergencyBrakingStatus = true
vobc.TractionForce = 0
vobc.BrakeForce = DEFAULT_BRAKE_FORCE
return []train_pc_sim.TrainControlEvent{{Command: message.OUTER_EMERGENCY_BRAKE, Status: 1}, {Command: message.TRAIN_BRAKE_STATE, Status: 1}} //紧急制动
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.OUTER_EMERGENCY_BRAKE, 0}}, {Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.TRAIN_BRAKE_STATE, 1}}}
}
// atp 切除
func controlAtpBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlAtpBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
vobc.AtpCutSwitch = active
tccBtn.Passed = active
return []train_pc_sim.TrainControlEvent{{Command: message.ATP_CUT, Status: status}} //紧急制动
}
// 外部紧急制动反馈
func controlOutEbReportBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
var status byte = 0
if active {
status = 1
}
vobc.OuterEmergentBrakeReport = active
tccBtn.Passed = active
return []train_pc_sim.TrainControlEvent{{Command: message.OUTER_EMERGENCY_BRAKE, Status: status}} //紧急制动
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.ATP_CUT, status}}}
}
// 开左门按钮
func controlLeftDoorBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlLeftDoorBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
vobc.LeftDoorOpenCommand = active
tccBtn.Passed = active
return []train_pc_sim.TrainControlEvent{{Command: message.LEFT_OPEN_DOOR, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.LEFT_OPEN_DOOR, status}}}
}
// 关左门按钮
func controlLeftDoorCloseBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlLeftDoorCloseBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
vobc.LeftDoorCloseCommand = active
tccBtn.Passed = active
return []train_pc_sim.TrainControlEvent{{Command: message.CLOSE_LEFT_DOOR, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.CLOSE_LEFT_DOOR, status}}}
}
// 开右门
func controlRightDoorBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlRightDoorBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
vobc.RightDoorOpenCommand = active
tccBtn.Passed = active
return []train_pc_sim.TrainControlEvent{{Command: message.OPEN_RIGHT_DOOR, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.OPEN_RIGHT_DOOR, status}}}
}
// 关右门按钮
func controlRightDoorCloseBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlRightDoorCloseBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
vobc.RightDoorCloseCommand = active
tccBtn.Passed = active
return []train_pc_sim.TrainControlEvent{{Command: message.CLOSE_RIGHT_DOOR, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.CLOSE_RIGHT_DOOR, status}}}
}
// 折返
func controlReverseBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlReverseBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
//vobc.RightDoorCloseCommand = active
vobc.TurnbackStatus = active
tccBtn.Passed = active
return []train_pc_sim.TrainControlEvent{{Command: message.TURN_BACK, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.TURN_BACK, status}}}
}
// 强制门允许
func controlDoorAllowBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlDoorAllowBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
tccBtn.Passed = active
vobc.ForceDoorAllow = active
return []train_pc_sim.TrainControlEvent{{Command: message.FORCE_DOOR_ALLOW, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.FORCE_DOOR_ALLOW, status}}}
}
// 模式降级按钮
func controlModeDownBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlModeDownBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
tccBtn.Passed = active
vobc.ModeLevelDownBtn = active
return []train_pc_sim.TrainControlEvent{{Command: message.TRAIN_MODE_DOWN, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.TRAIN_MODE_DOWN, status}}}
}
// 模式升级按钮
func controlModeUpBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlModeUpBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
tccBtn.Passed = active
vobc.ModeLevelUpBtn = active
return []train_pc_sim.TrainControlEvent{{Command: message.TRAIN_MODE_UP, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.TRAIN_MODE_UP, status}}}
}
// 模式确认按钮
func controlModeConfirmBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlModeConfirmBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
tccBtn.Passed = active
vobc.ConfirmBtn = active
return []train_pc_sim.TrainControlEvent{{Command: message.CONFIRM, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.CONFIRM, status}}}
}
// 障碍物/脱轨检测
func controlObstacleDetectionBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlObstacleDetectionBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
tccBtn.Passed = active
vobc.ObstacleCheckBtn = active
return []train_pc_sim.TrainControlEvent{{Command: message.OBSTACLE_CHECK, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.OBSTACLE_CHECK, status}}}
}
// 制动重故障
func controlBrakeHeavyBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlBrakeHeavyBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
tccBtn.Passed = active
vobc.BrakeHeavyFault = active
return []train_pc_sim.TrainControlEvent{{Command: message.BRAKE_HEAVY_FAULT, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.BRAKE_HEAVY_FAULT, status}}}
}
// ATP上电按钮
func controlAtpPowerBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlAtpPowerBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
tccBtn.Passed = active
vobc.AtpPowerOnBtn = active
return []train_pc_sim.TrainControlEvent{{Command: message.ATP_POWER_ON, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.ATP_POWER_ON, status}}}
}
// 唤醒按钮
func controlWakeUpBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlWakeUpBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
tccBtn.Passed = active
vobc.WakeUpBtn = active
return []train_pc_sim.TrainControlEvent{{Command: message.WAKE_UP, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.WAKE_UP, status}}}
}
// 检修按钮
func controlOverhaulBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlOverhaulBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
tccBtn.Passed = active
vobc.OverhaulBtn = active
return []train_pc_sim.TrainControlEvent{{Command: message.OVERHAUL, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.OVERHAUL, status}}}
}
// 休眠按钮
func controlSleepBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []train_pc_sim.TrainControlEvent {
func controlSleepBtn(vobc *state_proto.TrainVobcState, active bool, tccBtn *state_proto.TrainControlState_ControlButton) []message.TrainPcSimBaseMessage {
var status byte = 0
if active {
status = 1
}
tccBtn.Passed = active
vobc.SleepBtn = active
return []train_pc_sim.TrainControlEvent{{Command: message.SLEEP, Status: status}}
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.SLEEP, status}}}
}
// 列车方向
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 {
func trainControlDirKey(trainSpeed int32, vobc *state_proto.TrainVobcState, tcc *state_proto.TrainControlState, request *request_proto.TrainControl_DirectionKeySwitch, deviceId uint32, tccGraphic *data_proto.TccGraphicStorage) []message.TrainPcSimBaseMessage {
_, find := findTrainTccGraphicDataKey(tccGraphic, deviceId)
if !find {
slog.Error("未找到对应的列车方向键deviceId:", deviceId)
@ -338,7 +338,6 @@ func trainControlDirKey(trainSpeed int32, vobc *state_proto.TrainVobcState, tcc
if tcc.DirKey == nil {
tcc.DirKey = &state_proto.TrainControlState_DirectionKeySwitch{Id: deviceId}
}
direction := request_proto.TrainControl_Direction(request.Val)
if trainSpeed > 0 {
panic(sys_error.New("列车未停稳时,不能变更方向"))
@ -350,21 +349,13 @@ func trainControlDirKey(trainSpeed int32, vobc *state_proto.TrainVobcState, tcc
} else if direction == request_proto.TrainControl_BACKWARD {
vobc.DirectionBackward = true
}
tcc.DirKey.Val = request.Val
tce := make([]train_pc_sim.TrainControlEvent, 0)
tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.HANDLE_BACKWORD, Status: message.IsTrue(vobc.DirectionBackward)})
tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.HANDLE_FORWORD, Status: message.IsTrue(vobc.DirectionForward)})
if vobc.DirectionForward {
tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.DIR_ZERO_FORWARD, Status: 1})
} else {
tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.DIR_ZERO_FORWARD, Status: 0})
}
return tce
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.HANDLE_BACKWORD, message.IsTrue(vobc.DirectionBackward)}},
{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.HANDLE_FORWORD, message.IsTrue(vobc.DirectionForward)}}}
}
// 列车驾驶端激活
func trainControlDriverKey(train *state_proto.TrainState, request *request_proto.TrainControl_DriverKeySwitch, deviceId uint32, tccGraphic *data_proto.TccGraphicStorage) []train_pc_sim.TrainControlEvent {
func trainControlDriverKey(train *state_proto.TrainState, request *request_proto.TrainControl_DriverKeySwitch, deviceId uint32, tccGraphic *data_proto.TccGraphicStorage) []message.TrainPcSimBaseMessage {
obj, find := findTrainTccGraphicDataKey(tccGraphic, deviceId)
if !find {
slog.Error("未找到对应的驾驶端激活设备deviceId:", deviceId)
@ -400,72 +391,63 @@ func trainControlDriverKey(train *state_proto.TrainState, request *request_proto
if addNew {
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 []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.KEY_STATE, message.IsTrue(request.Val)}}}
}
// 列车牵引控制
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 {
func trainControlHandle(vobc *state_proto.TrainVobcState, tcc *state_proto.TrainControlState, request *request_proto.TrainControl_PushHandler, deviceId uint32, tccGraphic *data_proto.TccGraphicStorage) []message.TrainPcSimBaseMessage {
_, find := findTrainTccGraphicDataHandler(tccGraphic, deviceId)
if !find {
slog.Error("未找到对应的牵引制动手柄设备deviceId:", deviceId)
return nil
}
jjzdBtnGraphic, jjzdOk := findTrainTccGraphicDataButtonByCode(tccGraphic, JJZD)
if !jjzdOk {
slog.Error("未找到紧急停车摁钮 code:", JJZD)
return nil
}
jjzdBtn, finder := findBtnFromTccByDeviceId(tcc.Buttons, jjzdBtnGraphic.Common.Id)
if !finder {
slog.Error("从列车控制数据中未找到紧急停车摁钮 code:", JJZD, "deviceId:", jjzdBtn.Id)
return nil
}
jjzdBtn := tcc.Buttons[JJZD]
vobc.TractionStatus = false
vobc.TractionForce = 0
vobc.BrakingStatus = false
vobc.BrakeForce = 0
vobc.MaintainBrakeStatus = false
tce := make([]train_pc_sim.TrainControlEvent, 0)
tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.HANDLE_TO_ZERO, Status: 0})
var zeroState byte = 0
var brakeState byte = 0
if request.Val > 0 {
vobc.TractionStatus = true
vobc.TractionForce = int64(request.Val * 180)
tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.TRAIN_BRAKE_STATE, Status: 0})
} else if request.Val < 0 {
} else if request.Val < 0 {
vobc.BrakingStatus = true
vobc.BrakeForce = int64(-request.Val * 180)
vobc.EmergencyBrakingStatus = false
jjzdBtn.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.OUTER_EMERGENCY_BRAKE, Status: 0})
brakeState = 1
} else {
tce = append(tce, train_pc_sim.TrainControlEvent{Command: message.HANDLE_TO_ZERO, Status: 1})
zeroState = 1
}
if tcc.PushHandler == nil {
tcc.PushHandler = &state_proto.TrainControlState_PushHandler{Id: deviceId}
}
tcc.PushHandler.Val = request.Val
return tce
}
/*func (s *VerifySimulation) GetConnTrain() *state_proto.TrainState {
return s.findConnTrain(state_proto.TrainConnState_PC_SIM)
}*/
return []message.TrainPcSimBaseMessage{{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.HANDLE_TO_ZERO, zeroState}},
{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.TRAIN_BRAKE_STATE, brakeState}},
{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.OUTER_EMERGENCY_BRAKE, 1}}}
}
func (s *VerifySimulation) GetConnTrain2() []*state_proto.TrainState {
return s.findConnTrain2(state_proto.TrainConnState_PC_SIM_A, state_proto.TrainConnState_PC_SIM_B)
return s.findConnTrain2(state_proto.TrainConnState_PC_SIM)
}
func (s *VerifySimulation) findConnTrain2(ct1, ct2 state_proto.TrainConnState_TrainConnType) []*state_proto.TrainState {
func (s *VerifySimulation) findConnTrain2(ct1 ...state_proto.TrainConnState_TrainConnType) []*state_proto.TrainState {
var trains = make([]*state_proto.TrainState, 0)
s.Memory.Status.TrainStateMap.Range(func(k, v any) bool {
train := v.(*state_proto.TrainState)
if train.Show {
connState := train.ConnState
if connState.ConnType == ct1 || connState.ConnType == ct2 {
finded := index(ct1, connState.ConnType)
if finded >= 0 {
trains = append(trains, train)
}
}
@ -473,6 +455,16 @@ func (s *VerifySimulation) findConnTrain2(ct1, ct2 state_proto.TrainConnState_Tr
})
return trains
}
func index(arr []state_proto.TrainConnState_TrainConnType, search state_proto.TrainConnState_TrainConnType) int {
for i, v := range arr {
if v == search {
return i
}
}
return -1
}
func (s *VerifySimulation) FindConnTrain(ct state_proto.TrainConnState_TrainConnType) *state_proto.TrainState {
var findTrain *state_proto.TrainState
s.Memory.Status.TrainStateMap.Range(func(k, v any) bool {
@ -487,24 +479,63 @@ func (s *VerifySimulation) FindConnTrain(ct state_proto.TrainConnState_TrainConn
return findTrain
}
// 4.4.1. 车载输出数字量信息报文内容
func (s *VerifySimulation) TrainPcSimDigitalOutInfoHandle(connType state_proto.TrainConnState_TrainConnType, data []byte) {
slog.Info(fmt.Sprintf("处理车载输出数字量信息报文内容:%v", hex.EncodeToString(data)))
train := s.FindConnTrain(connType)
if train == nil {
slog.Error("车载输出数字量未找到连接车载pc仿真的列车")
return
}
if !train.ConnState.Conn {
slog.Error("车载输出数字量,,列车未连接车载pc仿真")
return
}
// 反馈atp输出数字量数据
func (s *VerifySimulation) reportTrainMockInitMsg(train *state_proto.TrainState, data1, data3 byte, trainInit bool) bool {
vobc := train.VobcState
trainPcSimDigitalOutInfoHandleCode39_32(data[4], vobc)
trainPcSimDigitalOutInfoHandleCode31_24(connType, data[3], vobc)
tcc := train.Tcc
tce := make([]message.TrainPcSimBaseMessage, 0)
tcc.Line12ConnErr = false
initResult := trainInit
if vobc.Tc1Active || vobc.Tc2Active {
state := message.GetBit(data1, 3)
if trainInit {
if data1 == 0 {
tcc.Line12ConnErr = true
slog.Warn("接受atp模拟量数据data[4]=0模拟断开")
}
if state == 0 {
train_pc_sim.Default().ResetPluseCount(train)
jjzdBtn := tcc.Buttons[JJZD]
ebTce := controlEBBtn(vobc, true, jjzdBtn)
tce = append(tce, ebTce...)
}
} else {
initResult = true
if tcc.LineInitTimeStamp12 <= 0 {
tcc.LineInitTimeStamp12 = time.Now().Add(time.Second * 6).Unix()
}
if tcc.LineInitTimeStamp12 > time.Now().Unix() {
tce = append(tce, message.TrainPcSimBaseMessage{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.OUTER_EMERGENCY_BRAKE, state}})
initData := s.ObtainTrainDigitalMockDataForStatus(train)
tce = append(tce, initData...)
initResult = false
}
}
//驾驶室激活反馈
if message.GetBit(data3, 3) == 0 {
tce = append(tce, message.TrainPcSimBaseMessage{Type: message.SENDER_TRAIN_OUTR_INFO, Data: []byte{message.DRIVER_ACTIVE_REPORT, 1}})
}
}
train_pc_sim.Default().SendTrainControlMsg(train, tce)
return initResult
}
// 4.4.1. 车载输出数字量信息报文内容
func (s *VerifySimulation) TrainPcSimDigitalOutInfoHandle(train *state_proto.TrainState, trainInit bool, data []byte) bool {
/*for i, d := range data {
slog.Info(fmt.Sprintf("atp模拟量分析index:%v ,bin:%2b,trainInit:%v", i, d, trainInit))
}*/
initResult := s.reportTrainMockInitMsg(train, data[4], data[1], trainInit)
vobc := train.VobcState
trainPcSimDigitalOutInfoHandleCode7_0(data[4], vobc)
trainPcSimDigitalOutInfoHandleCode15_8(data[3], vobc)
trainPcSimDigitalOutInfoHandleCode23_16(data[2], vobc)
trainPcSimDigitalOutInfoHandleCode15_8(data[1], vobc)
trainPcSimDigitalOutInfoHandleCode7_0(data[0], vobc)
trainPcSimDigitalOutInfoHandleCode31_24(data[1], vobc)
trainPcSimDigitalOutInfoHandleCode39_32(data[0], vobc)
return initResult
}
func trainPcSimDigitalOutInfoHandleCode39_32(d byte, vobc *state_proto.TrainVobcState) {
vobc.MostUseBrake = message.IsTrueForByte(message.GetBit(d, 0)) //? 常用制动
@ -517,25 +548,29 @@ func trainPcSimDigitalOutInfoHandleCode39_32(d byte, vobc *state_proto.TrainVobc
vobc.StopNotAllBrake = message.IsTrueForByte(message.GetBit(d, 7)) //? 停放制动缓解
}
func trainPcSimDigitalOutInfoHandleCode31_24(connType state_proto.TrainConnState_TrainConnType, d byte, vobc *state_proto.TrainVobcState) {
func trainPcSimDigitalOutInfoHandleCode31_24(d byte, vobc *state_proto.TrainVobcState) {
vobc.AtoOpenLeftDoor = message.IsTrueForByte(message.GetBit(d, 0)) //?//ATO开左门
vobc.AtoOpenRightDoor = message.IsTrueForByte(message.GetBit(d, 1)) //?//ATO开右门
vobc.AtoCloseLeftDoor = message.IsTrueForByte(message.GetBit(d, 2)) //?//ATO关左门
if connType == state_proto.TrainConnState_PC_SIM_A {
vobc.Tc1Active = message.IsTrueForByte(message.GetBit(d, 3))
} else {
vobc.Tc2Active = message.IsTrueForByte(message.GetBit(d, 3))
}
//驾驶室激活
vobc.NoSpeedSigle = message.IsTrueForByte(message.GetBit(d, 4)) //?//零速信号
vobc.Fam = message.IsTrueForByte(message.GetBit(d, 5)) //FAM模式
vobc.Cam = message.IsTrueForByte(message.GetBit(d, 6)) //CAM模式
vobc.TrainStartedLed = message.IsTrueForByte(message.GetBit(d, 7)) //?//列车启动指示灯
/* if connType == state_proto.TrainConnState_PC_SIM_A {
vobc.Tc1Active = message.IsTrueForByte(message.GetBit(d, 3))
} else {
vobc.Tc2Active = message.IsTrueForByte(message.GetBit(d, 3))
}*/
vobc.LightDriverActive = message.IsTrueForByte(message.GetBit(d, 3)) //驾驶室激活
vobc.NoSpeedSigle = message.IsTrueForByte(message.GetBit(d, 4)) //?//零速信号
vobc.Fam = message.IsTrueForByte(message.GetBit(d, 5)) //FAM模式
vobc.Cam = message.IsTrueForByte(message.GetBit(d, 6)) //CAM模式
vobc.TrainStartedLed = message.IsTrueForByte(message.GetBit(d, 7)) //?//列车启动指示灯
}
func trainPcSimDigitalOutInfoHandleCode23_16(d byte, vobc *state_proto.TrainVobcState) {
vobc.DirectionForward = message.IsTrueForByte(message.GetBit(d, 0)) //列车方向1
vobc.DirectionBackward = message.IsTrueForByte(message.GetBit(d, 1)) //列车方向2
vobc.LightDir1 = message.IsTrueForByte(message.GetBit(d, 0)) //列车方向1
vobc.LightDir2 = message.IsTrueForByte(message.GetBit(d, 1)) //列车方向1
//vobc.DirectionForward = message.IsTrueForByte(message.GetBit(d, 0)) //列车方向1
//vobc.DirectionBackward = message.IsTrueForByte(message.GetBit(d, 1)) //列车方向2
vobc.AtoLazyCommandOut = message.IsTrueForByte(message.GetBit(d, 2)) //?ATO惰行命令输出
vobc.SleepBtn = message.IsTrueForByte(message.GetBit(d, 3)) //?休眠指令
vobc.WakeUpBtn = message.IsTrueForByte(message.GetBit(d, 4)) //?唤醒指令
@ -545,6 +580,7 @@ func trainPcSimDigitalOutInfoHandleCode23_16(d byte, vobc *state_proto.TrainVobc
}
func trainPcSimDigitalOutInfoHandleCode15_8(d byte, vobc *state_proto.TrainVobcState) {
vobc.LocalAtpControl = message.IsTrueForByte(message.GetBit(d, 0)) //?本端ATP控车
vobc.Ato = message.IsTrueForByte(message.GetBit(d, 1)) //ATO模式
vobc.AtoTractionCommandOut = message.IsTrueForByte(message.GetBit(d, 2)) //?ATO牵引命令输出
@ -560,25 +596,18 @@ func trainPcSimDigitalOutInfoHandleCode7_0(d byte, vobc *state_proto.TrainVobcSt
vobc.TrainDoorOutLed = message.IsTrueForByte(message.GetBit(d, 1)) //? 车门外指示灯
vobc.ParkingBrakeStatus = message.IsTrueForByte(message.GetBit(d, 2)) //停放制动施加
vobc.EmergencyBrakingStatus = message.AtpLowPowerByte(message.GetBit(d, 3)) //紧急制动
vobc.LeftDoorOpenCommand = message.IsTrueForByte(message.GetBit(d, 4)) //开左门允许
vobc.RightDoorOpenCommand = message.IsTrueForByte(message.GetBit(d, 5)) //开右门允许
vobc.LeftDoorState = message.IsTrueForByte(message.GetBit(d, 4)) //开左门允许
vobc.RightDoorState = message.IsTrueForByte(message.GetBit(d, 5)) //开右门允许
vobc.RightDoorCloseCommand = message.IsTrueForByte(message.GetBit(d, 6)) //关右门
vobc.AllDoorClose = message.IsTrueForByte(message.GetBit(d, 7)) //车门保持关闭
vobc.LightTractionSafetyCircuit = vobc.TractionSafetyCircuit //切牵引
vobc.LightEmergencyBrakingStatus = vobc.EmergencyBrakingStatus //紧急制动
}
// 4.4.2. 车载输出数字反馈量信息报文内容
func (s *VerifySimulation) TrainPcSimDigitalReportHandle(connType state_proto.TrainConnState_TrainConnType, data []byte) {
func (s *VerifySimulation) TrainPcSimDigitalReportHandle(train *state_proto.TrainState, data []byte) {
slog.Info(fmt.Sprintf("车载输出数字量反馈信息", hex.EncodeToString(data)))
train := s.FindConnTrain(connType)
if train == nil {
slog.Error("车载输出数字反馈量信息,未找到连接车载pc仿真的列车")
return
}
if !train.ConnState.Conn {
slog.Error("车载输出数字反馈量信息,列车未连接车载pc仿真")
return
}
vobc := train.VobcState
//buf := bytes.NewBuffer(data)
@ -597,12 +626,13 @@ func (s *VerifySimulation) TrainPcSimDigitalReportHandle(connType state_proto.Tr
// 创建/删除列车
func TrainPcSimConnOrRemoveHandle(train *state_proto.TrainState, create bool) error {
connState := train.ConnState
if connState.ConnType == state_proto.TrainConnState_PC_SIM_A || connState.ConnType == state_proto.TrainConnState_PC_SIM_B {
if connState.ConnType == state_proto.TrainConnState_PC_SIM {
crErr := train_pc_sim.Default().CreateOrRemoveTrain(train, create)
//train_pc_sim.Default().CreateOrRemoveSpeedPLace(train)
if crErr != nil {
return crErr
}
train_pc_sim.Default().CreateOrRemoveSpeedPLace(train)
} else if connState.ConnType == state_proto.TrainConnState_VOBC {
electrical_machinery.Default().ClearOrRemoveTrain(train)
}
@ -629,8 +659,8 @@ func TrainPcSimConnOrRemoveHandle(train *state_proto.TrainState, create bool) er
}*/
// 4.4.3. 车载输出模拟量信息报文内容(0x03)
func (s *VerifySimulation) TrainPcSimMockInfo(connType state_proto.TrainConnState_TrainConnType, data []byte) {
train := s.FindConnTrain(connType)
func (s *VerifySimulation) TrainPcSimMockInfo(train *state_proto.TrainState, data []byte) {
/*train := s.FindConnTrain(connType)
if train == nil {
slog.Error("车载输出模拟量,未找到连接车载pc仿真的列车")
return
@ -638,27 +668,31 @@ func (s *VerifySimulation) TrainPcSimMockInfo(connType state_proto.TrainConnStat
if !train.ConnState.Conn {
slog.Error("车载输出模拟量,列车未连接车载pc仿真")
return
}
}*/
mockData := binary.BigEndian.Uint16(data)
train.VobcState.MockInfo = uint32(mockData)
}
// 4.4.4. 车载输出BTM查询同步帧报文内容0x04
func (s *VerifySimulation) TrainBtmQuery(connType state_proto.TrainConnState_TrainConnType, data []byte) {
slog.Info(fmt.Sprintf("收到车载输出BTM查询同步帧报文内容:%v", hex.EncodeToString(data)))
func (s *VerifySimulation) TrainBtmQuery(train *state_proto.TrainState, data []byte) {
//slog.Info(fmt.Sprintf("收到车载输出BTM查询同步帧报文内容:%v", hex.EncodeToString(data)))
if len(data) < 12 {
slog.Error("列车btm查询报文长度错误:", len(data))
return
}
train := s.FindConnTrain(connType)
if train == nil {
//train := s.FindConnTrain(connType)
if train.BtmState == nil {
slog.Warn("列车暂时未获取到应答器信息")
return
}
/*if train == nil {
slog.Error("车载输出btm查询,未找到连接车载pc仿真的列车")
return
}
if !train.ConnState.Conn {
slog.Error("车载输出btm查询,列车未连接车载pc仿真")
return
}
}*/
trainAtm := message.NewCanetFrame2(data, true)
atpReq := &message.AtpRequestFrame{IsTrainPcSim: true}
@ -693,14 +727,21 @@ func (s *VerifySimulation) TrainBtmQuery(connType state_proto.TrainConnState_Tra
} else {
//有数据
aliseData, _ := hex.DecodeString(train.BtmState.Telegram)
statusDataCf, statusDataCfOk := message.CreateBtmRspFramesData(btmRepFrame, aliseData, false, cl.TkNow(), cl.TkNow(), cl.TkNow(), true)
statusDataCf, statusDataCfOk := message.CreateBtmRspFramesData2(btmRepFrame, aliseData, false, cl.TkNow(), cl.TkNow(), cl.TkNow(), true)
if statusDataCfOk {
queryData := make([]byte, 0)
queryData = append(queryData, btmRepFrame.Encode().Encode2()...)
queryData = append(queryData, timeSyncF.Encode().Encode2()...)
queryData = append(queryData, statusDataCf...) //数据帧包含结束帧
/* queryData := make([]byte, 0)
queryData = append(queryData, btmRepFrame.Encode().Encode2()...)
queryData = append(queryData, timeSyncF.Encode().Encode2()...)
queryData = append(queryData, statusDataCf...) //数据帧包含结束帧
train.BtmState.BaliseTelegramForPcSimResend = fmt.Sprintf("%X", statusDataCf)
train_pc_sim.Default().SendBaliseData(train, message.RECIVE_TRAIN_BTM_HAS_DATA, queryData)*/
queryDataStr := make([]string, 0)
queryDataStr = append(queryDataStr, hex.EncodeToString(btmRepFrame.Encode().Encode2()))
queryDataStr = append(queryDataStr, hex.EncodeToString(timeSyncF.Encode().Encode2()))
queryDataStr = append(queryDataStr, hex.EncodeToString(statusDataCf)) //数据帧包含结束帧
train.BtmState.BaliseTelegramForPcSimResend = fmt.Sprintf("%X", statusDataCf)
train_pc_sim.Default().SendBaliseData(train, message.RECIVE_TRAIN_BTM_HAS_DATA, queryData)
train_pc_sim.Default().SendBaliseData2(train, message.RECIVE_TRAIN_BTM_HAS_DATA, queryDataStr)
} else {
slog.Error("列车pc仿真 BtmCanetClient应答帧、数据帧编码失败")
}
@ -733,45 +774,85 @@ func clock(atpReq *message.AtpRequestFrame) can_btm.BtmClock {
now := time.Now()
return can_btm.BtmClock{BtmTk: atpReq.Time, SysTk: now}
}
func (s *VerifySimulation) ObtainTrainDigitalMockData(train *state_proto.TrainState) []message.TrainPcSimBaseMessage {
func (s *VerifySimulation) ObtainTrainDigitalMockDataForStatus(train *state_proto.TrainState) []message.TrainPcSimBaseMessage {
msgArr := make([]message.TrainPcSimBaseMessage, 0)
vs := train.VobcState
tcc := train.Tcc
if vs.Tc1Active || vs.Tc2Active {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.KEY_STATE, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //钥匙激活
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.KEY_STATE, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //钥匙激活
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.DRIVER_ACTIVE_REPORT, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //列车完整性
} else {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.DRIVER_ACTIVE_REPORT, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //列车完整性
}
if vs.BrakeForce == 0 {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.HANDLE_TO_ZERO, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //列车制动状态
}
if vs.BrakingStatus {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.TRAIN_BRAKE_STATE, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //列车制动状态
}
if vs.EmergencyBrakingStatus {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.OUTER_EMERGENCY_BRAKE, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //紧急制动
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.OUTER_EMERGENCY_BRAKE, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //紧急制动
}
dir := request_proto.TrainControl_Direction(tcc.DirKey.Val)
if dir == request_proto.TrainControl_FORWARD {
/*if vs.DirectionForward && vs.TractionForce == 0 {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.DIR_ZERO_FORWARD, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //手柄零位方向向前
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.HANDLE_FORWORD, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //方向手柄向前控制
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.HANDLE_BACKWORD, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //方向手柄向前控制
} else*/if dir == request_proto.TrainControl_FORWARD {
//msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.DIR_ZERO_FORWARD, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //手柄零位方向向前
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.HANDLE_FORWORD, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //方向手柄向前控制
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.HANDLE_BACKWORD, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //方向手柄向前控制
} else if dir == request_proto.TrainControl_BACKWARD {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.HANDLE_FORWORD, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //方向手柄向前控制
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.DIR_ZERO_FORWARD, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //手柄零位方向向前
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.HANDLE_BACKWORD, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //方向手柄向前控制
//msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.DIR_ZERO_FORWARD, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //手柄零位方向向前
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.HANDLE_FORWORD, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //方向手柄向前控制
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.HANDLE_BACKWORD, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //方向手柄向前控制
}
if vs.RightDoorCloseCommand {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.CLOSE_RIGHT_DOOR, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //关右门按钮
}
if vs.LeftDoorCloseCommand {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.CLOSE_LEFT_DOOR, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //关左门按钮
}
if vs.AllDoorClose {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.DOOR_LOCK_STATE, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //车门锁闭状态
}
if vs.ObstacleCheckBtn {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.OBSTACLE_CHECK, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //障碍物检测按钮
}
if vs.BrakeHeavyFault {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.BRAKE_HEAVY_FAULT, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //制动重故障
}
if vs.AtpCutSwitch {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.ATP_CUT, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //atp切除
}
if vs.AtpPowerOnBtn {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.ATP_POWER_ON, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //atp上电
}
if vs.TurnbackStatus {
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.TURN_BACK, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //atp上电
}
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.CLOSE_RIGHT_DOOR, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //关右门按钮
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.CLOSE_LEFT_DOOR, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //关左门按钮
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.TRAIN_INTEGRITY, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //列车完整性
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.DOOR_LOCK_STATE, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //车门锁闭状态
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.OBSTACLE_CHECK, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //障碍物检测按钮
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.BRAKE_HEAVY_FAULT, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //制动重故障
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.EMERGENT_HANDLE_DOWN, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //紧急手柄拉下
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.LIFE_DOOR, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //逃生门状态
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.ATP_CUT, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //atp切除
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{39, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //非制动
//msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{40, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //本端机械钩
//msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{41, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //对端机械钩
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{}, Type: message.RECIVE_TRAIN_BTN_CLEAR_ALL_PRE_DATA}) //清空应答器
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.EMERGENT_HANDLE_DOWN, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //紧急手柄拉下
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.TRAIN_TRACTION_CUTED, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //紧急手柄拉下
return msgArr
}
func (s *VerifySimulation) ObtainTrainDigitalMockData(train *state_proto.TrainState) []message.TrainPcSimBaseMessage {
msgArr := make([]message.TrainPcSimBaseMessage, 0)
stateArr := s.ObtainTrainDigitalMockDataForStatus(train)
msgArr = append(msgArr, stateArr...)
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.ATO_SEND_TRAIN, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //ATO发车按钮
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.LEFT_DOOR_STATE, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //左门状态按钮
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.RIGHT_DOOR_STATE, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //列车完整性
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.CONFIRM, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //列车完整性
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.TRAIN_INTEGRITY, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //列车完整性
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{message.NOT_BREAK, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //非制动
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{38, 0}, Type: message.SENDER_TRAIN_OUTR_INFO}) //只牵引
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{40, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //本端机械钩
msgArr = append(msgArr, message.TrainPcSimBaseMessage{Data: []byte{41, 1}, Type: message.SENDER_TRAIN_OUTR_INFO}) //对端机械钩
train.BtmState = nil
return msgArr
}

View File

@ -153,8 +153,7 @@ func runThirdParty(s *memory.VerifySimulation) error {
// 停止仿真
func stopThirdParty(s *memory.VerifySimulation) {
// 停止动力学接口功能
dynamics.Default().Stop()
// 停止半实物
semi_physical_train.Default().Stop()
// 联锁启动
@ -183,6 +182,8 @@ func stopThirdParty(s *memory.VerifySimulation) {
train_pc_sim.Default().Stop()
btm_vobc.Default().Stop()
// 停止动力学接口功能
dynamics.Default().Stop()
}
func createSimulationId(projectId int32) string {