Files
Erupe/server/channelserver/sys_channel_server.go
2023-03-06 22:23:13 +11:00

411 lines
8.9 KiB
Go

package channelserver
import (
"fmt"
"net"
"sync"
"erupe-ce/common/byteframe"
ps "erupe-ce/common/pascalstring"
"erupe-ce/config"
"erupe-ce/network/binpacket"
"erupe-ce/network/mhfpacket"
"erupe-ce/server/discordbot"
"github.com/jmoiron/sqlx"
"go.uber.org/zap"
)
// Config struct allows configuring the server.
type Config struct {
ID uint16
Logger *zap.Logger
DB *sqlx.DB
DiscordBot *discordbot.DiscordBot
ErupeConfig *config.Config
Name string
Enable bool
}
// Map key type for a user binary part.
type userBinaryPartID struct {
charID uint32
index uint8
}
// Server is a MHF channel server.
type Server struct {
sync.Mutex
Channels []*Server
ID uint16
IP string
Port uint16
logger *zap.Logger
db *sqlx.DB
erupeConfig *config.Config
acceptConns chan net.Conn
deleteConns chan net.Conn
sessions map[net.Conn]*Session
listener net.Listener // Listener that is created when Server.Start is called.
isShuttingDown bool
stagesLock sync.RWMutex
stages map[string]*Stage
// Used to map different languages
dict map[string]string
// UserBinary
userBinaryPartsLock sync.RWMutex
userBinaryParts map[userBinaryPartID][]byte
// Semaphore
semaphoreLock sync.RWMutex
semaphore map[string]*Semaphore
semaphoreIndex uint32
// Discord chat integration
discordBot *discordbot.DiscordBot
name string
raviente *Raviente
}
type Raviente struct {
sync.Mutex
register *RavienteRegister
state *RavienteState
support *RavienteSupport
}
type RavienteRegister struct {
nextTime uint32
startTime uint32
postTime uint32
killedTime uint32
ravienteType uint32
maxPlayers uint32
carveQuest uint32
register []uint32
}
type RavienteState struct {
stateData []uint32
}
type RavienteSupport struct {
supportData []uint32
}
// Set up the Raviente variables for the server
func NewRaviente() *Raviente {
ravienteRegister := &RavienteRegister{
nextTime: 0,
startTime: 0,
killedTime: 0,
postTime: 0,
ravienteType: 0,
maxPlayers: 0,
carveQuest: 0,
}
ravienteState := &RavienteState{}
ravienteSupport := &RavienteSupport{}
ravienteRegister.register = []uint32{0, 0, 0, 0, 0}
ravienteState.stateData = []uint32{0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}
ravienteSupport.supportData = []uint32{0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}
raviente := &Raviente{
register: ravienteRegister,
state: ravienteState,
support: ravienteSupport,
}
return raviente
}
func (r *Raviente) GetRaviMultiplier(s *Server) uint32 {
raviSema := getRaviSemaphore(s)
if raviSema != nil {
var minPlayers uint32
if r.register.maxPlayers > 8 {
minPlayers = 24
} else {
minPlayers = 4
}
if uint32(len(raviSema.clients)) > minPlayers {
return 1
}
return minPlayers / uint32(len(raviSema.clients))
}
return 0
}
// NewServer creates a new Server type.
func NewServer(config *Config) *Server {
s := &Server{
ID: config.ID,
logger: config.Logger,
db: config.DB,
erupeConfig: config.ErupeConfig,
acceptConns: make(chan net.Conn),
deleteConns: make(chan net.Conn),
sessions: make(map[net.Conn]*Session),
stages: make(map[string]*Stage),
userBinaryParts: make(map[userBinaryPartID][]byte),
semaphore: make(map[string]*Semaphore),
semaphoreIndex: 7,
discordBot: config.DiscordBot,
name: config.Name,
raviente: NewRaviente(),
}
// Mezeporta
s.stages["sl1Ns200p0a0u0"] = NewStage("sl1Ns200p0a0u0")
// Rasta bar stage
s.stages["sl1Ns211p0a0u0"] = NewStage("sl1Ns211p0a0u0")
// Pallone Carvan
s.stages["sl1Ns260p0a0u0"] = NewStage("sl1Ns260p0a0u0")
// Pallone Guest House 1st Floor
s.stages["sl1Ns262p0a0u0"] = NewStage("sl1Ns262p0a0u0")
// Pallone Guest House 2nd Floor
s.stages["sl1Ns263p0a0u0"] = NewStage("sl1Ns263p0a0u0")
// Diva fountain / prayer fountain.
s.stages["sl2Ns379p0a0u0"] = NewStage("sl2Ns379p0a0u0")
// MezFes
s.stages["sl1Ns462p0a0u0"] = NewStage("sl1Ns462p0a0u0")
s.dict = getLangStrings(s)
return s
}
// Start starts the server in a new goroutine.
func (s *Server) Start() error {
l, err := net.Listen("tcp", fmt.Sprintf(":%d", s.Port))
if err != nil {
return err
}
s.listener = l
go s.acceptClients()
go s.manageSessions()
// Start the discord bot for chat integration.
if s.erupeConfig.Discord.Enabled && s.discordBot != nil {
s.discordBot.Session.AddHandler(s.onDiscordMessage)
}
return nil
}
// Shutdown tries to shut down the server gracefully.
func (s *Server) Shutdown() {
s.Lock()
s.isShuttingDown = true
s.Unlock()
s.listener.Close()
close(s.acceptConns)
}
func (s *Server) acceptClients() {
for {
conn, err := s.listener.Accept()
if err != nil {
s.Lock()
shutdown := s.isShuttingDown
s.Unlock()
if shutdown {
break
} else {
s.logger.Warn("Error accepting client", zap.Error(err))
continue
}
}
s.acceptConns <- conn
}
}
func (s *Server) manageSessions() {
for {
select {
case newConn := <-s.acceptConns:
// Gracefully handle acceptConns channel closing.
if newConn == nil {
s.Lock()
shutdown := s.isShuttingDown
s.Unlock()
if shutdown {
return
}
}
session := NewSession(s, newConn)
s.Lock()
s.sessions[newConn] = session
s.Unlock()
session.Start()
case delConn := <-s.deleteConns:
s.Lock()
delete(s.sessions, delConn)
s.Unlock()
}
}
}
func (s *Server) Stages() map[string]*Stage {
return s.stages
}
// BroadcastMHF queues a MHFPacket to be sent to all sessions.
func (s *Server) BroadcastMHF(pkt mhfpacket.MHFPacket, ignoredSession *Session) {
// Broadcast the data.
s.Lock()
defer s.Unlock()
for _, session := range s.sessions {
if session == ignoredSession {
continue
}
// Make the header
bf := byteframe.NewByteFrame()
bf.WriteUint16(uint16(pkt.Opcode()))
// Build the packet onto the byteframe.
pkt.Build(bf, session.clientContext)
// Enqueue in a non-blocking way that drops the packet if the connections send buffer channel is full.
session.QueueSendNonBlocking(bf.Data())
}
}
func (s *Server) WorldcastMHF(pkt mhfpacket.MHFPacket, ignoredSession *Session, ignoredChannel *Server) {
for _, c := range s.Channels {
if c == ignoredChannel {
continue
}
c.BroadcastMHF(pkt, ignoredSession)
}
}
// BroadcastChatMessage broadcasts a simple chat message to all the sessions.
func (s *Server) BroadcastChatMessage(message string) {
bf := byteframe.NewByteFrame()
bf.SetLE()
msgBinChat := &binpacket.MsgBinChat{
Unk0: 0,
Type: 5,
Flags: 0x80,
Message: message,
SenderName: s.name,
}
msgBinChat.Build(bf)
s.BroadcastMHF(&mhfpacket.MsgSysCastedBinary{
CharID: 0xFFFFFFFF,
MessageType: BinaryMessageTypeChat,
RawDataPayload: bf.Data(),
}, nil)
}
func (s *Server) BroadcastRaviente(ip uint32, port uint16, stage []byte, _type uint8) {
bf := byteframe.NewByteFrame()
bf.SetLE()
bf.WriteUint16(0) // Unk
bf.WriteUint16(0x43) // Data len
bf.WriteUint16(3) // Unk len
var text string
switch _type {
case 2:
text = s.dict["ravienteBerserk"]
case 3:
text = s.dict["ravienteExtreme"]
case 4:
text = s.dict["ravienteExtremeLimited"]
case 5:
text = s.dict["ravienteBerserkSmall"]
default:
s.logger.Error("Unk raviente type", zap.Uint8("_type", _type))
}
ps.Uint16(bf, text, true)
bf.WriteBytes([]byte{0x5F, 0x53, 0x00})
bf.WriteUint32(ip) // IP address
bf.WriteUint16(port) // Port
bf.WriteUint16(0) // Unk
bf.WriteBytes(stage)
s.WorldcastMHF(&mhfpacket.MsgSysCastedBinary{
CharID: 0x00000000,
BroadcastType: BroadcastTypeServer,
MessageType: BinaryMessageTypeChat,
RawDataPayload: bf.Data(),
}, nil, s)
}
func (s *Server) DiscordChannelSend(charName string, content string) {
if s.erupeConfig.Discord.Enabled && s.discordBot != nil {
message := fmt.Sprintf("**%s**: %s", charName, content)
s.discordBot.RealtimeChannelSend(message)
}
}
func (s *Server) FindSessionByCharID(charID uint32) *Session {
for _, c := range s.Channels {
for _, session := range c.sessions {
if session.charID == charID {
return session
}
}
}
return nil
}
func (s *Server) FindObjectByChar(charID uint32) *Object {
s.stagesLock.RLock()
defer s.stagesLock.RUnlock()
for _, stage := range s.stages {
stage.RLock()
for objId := range stage.objects {
obj := stage.objects[objId]
if obj.ownerCharID == charID {
stage.RUnlock()
return obj
}
}
stage.RUnlock()
}
return nil
}
func (s *Server) NextSemaphoreID() uint32 {
for {
exists := false
s.semaphoreIndex = s.semaphoreIndex + 1
if s.semaphoreIndex == 0 {
s.semaphoreIndex = 7 // Skip reserved indexes
}
for _, semaphore := range s.semaphore {
if semaphore.id == s.semaphoreIndex {
exists = true
}
}
if exists == false {
break
}
}
return s.semaphoreIndex
}