UDP improvements for the sockets module. Renamed ftpclient.fileExists to
existsFile for consistency. Added tasyncudp test.
This commit is contained in:
parent
f686647f58
commit
e9604b4433
5 changed files with 186 additions and 26 deletions
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@ -30,6 +30,11 @@ import sockets, os
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## on with the events. The type that you set userArg to must be inheriting from
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## on with the events. The type that you set userArg to must be inheriting from
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## TObject!
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## TObject!
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##
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##
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## **Note:** If you want to provide async ability to your module please do not
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## use the ``TDelegate`` object, instead use ``PAsyncSocket``. It is possible
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## that in the future this type's fields will not be exported therefore breaking
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## your code.
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##
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## Asynchronous sockets
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## Asynchronous sockets
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## ====================
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## ====================
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##
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##
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@ -68,7 +73,8 @@ import sockets, os
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type
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type
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TDelegate* = object
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TDelegate = object
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deleVal*: PObject
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deleVal*: PObject
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handleRead*: proc (h: PObject) {.nimcall.}
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handleRead*: proc (h: PObject) {.nimcall.}
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@ -92,12 +98,10 @@ type
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socket: TSocket
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socket: TSocket
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info: TInfo
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info: TInfo
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userArg: PObject
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handleRead*: proc (s: PAsyncSocket) {.closure.}
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handleConnect*: proc (s: PAsyncSocket) {.closure.}
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handleRead*: proc (s: PAsyncSocket, arg: PObject) {.nimcall.}
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handleAccept*: proc (s: PAsyncSocket) {.closure.}
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handleConnect*: proc (s: PAsyncSocket, arg: PObject) {.nimcall.}
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handleAccept*: proc (s: PAsyncSocket, arg: PObject) {.nimcall.}
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lineBuffer: TaintedString ## Temporary storage for ``recvLine``
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lineBuffer: TaintedString ## Temporary storage for ``recvLine``
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sslNeedAccept: bool
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sslNeedAccept: bool
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@ -121,21 +125,20 @@ proc newDelegate*(): PDelegate =
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result.task = (proc (h: PObject) = nil)
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result.task = (proc (h: PObject) = nil)
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result.mode = MReadable
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result.mode = MReadable
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proc newAsyncSocket(userArg: PObject = nil): PAsyncSocket =
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proc newAsyncSocket(): PAsyncSocket =
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new(result)
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new(result)
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result.info = SockIdle
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result.info = SockIdle
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result.userArg = userArg
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result.handleRead = (proc (s: PAsyncSocket, arg: PObject) = nil)
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result.handleRead = (proc (s: PAsyncSocket) = nil)
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result.handleConnect = (proc (s: PAsyncSocket, arg: PObject) = nil)
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result.handleConnect = (proc (s: PAsyncSocket) = nil)
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result.handleAccept = (proc (s: PAsyncSocket, arg: PObject) = nil)
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result.handleAccept = (proc (s: PAsyncSocket) = nil)
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result.lineBuffer = "".TaintedString
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result.lineBuffer = "".TaintedString
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proc AsyncSocket*(domain: TDomain = AF_INET, typ: TType = SOCK_STREAM,
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proc AsyncSocket*(domain: TDomain = AF_INET, typ: TType = SOCK_STREAM,
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protocol: TProtocol = IPPROTO_TCP,
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protocol: TProtocol = IPPROTO_TCP,
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userArg: PObject = nil, buffered = true): PAsyncSocket =
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buffered = true): PAsyncSocket =
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result = newAsyncSocket(userArg)
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result = newAsyncSocket()
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result.socket = socket(domain, typ, protocol, buffered)
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result.socket = socket(domain, typ, protocol, buffered)
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result.proto = protocol
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result.proto = protocol
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if result.socket == InvalidSocket: OSError()
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if result.socket == InvalidSocket: OSError()
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@ -148,15 +151,14 @@ proc asyncSockHandleConnect(h: PObject) =
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return
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return
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PAsyncSocket(h).info = SockConnected
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PAsyncSocket(h).info = SockConnected
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PAsyncSocket(h).handleConnect(PAsyncSocket(h),
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PAsyncSocket(h).handleConnect(PAsyncSocket(h))
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PAsyncSocket(h).userArg)
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proc asyncSockHandleRead(h: PObject) =
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proc asyncSockHandleRead(h: PObject) =
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when defined(ssl):
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when defined(ssl):
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if PAsyncSocket(h).socket.isSSL and not
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if PAsyncSocket(h).socket.isSSL and not
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PAsyncSocket(h).socket.gotHandshake:
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PAsyncSocket(h).socket.gotHandshake:
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return
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return
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PAsyncSocket(h).handleRead(PAsyncSocket(h), PAsyncSocket(h).userArg)
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PAsyncSocket(h).handleRead(PAsyncSocket(h))
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when defined(ssl):
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when defined(ssl):
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proc asyncSockDoHandshake(h: PObject) =
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proc asyncSockDoHandshake(h: PObject) =
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@ -183,8 +185,7 @@ proc toDelegate(sock: PAsyncSocket): PDelegate =
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result.handleRead = asyncSockHandleRead
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result.handleRead = asyncSockHandleRead
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result.handleAccept = (proc (h: PObject) =
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result.handleAccept = (proc (h: PObject) =
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PAsyncSocket(h).handleAccept(PAsyncSocket(h),
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PAsyncSocket(h).handleAccept(PAsyncSocket(h)))
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PAsyncSocket(h).userArg))
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when defined(ssl):
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when defined(ssl):
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result.task = asyncSockDoHandshake
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result.task = asyncSockDoHandshake
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@ -337,7 +338,6 @@ proc recvLine*(s: PAsyncSocket, line: var TaintedString): bool =
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of RecvFail:
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of RecvFail:
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result = false
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result = false
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proc poll*(d: PDispatcher, timeout: int = 500): bool =
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proc poll*(d: PDispatcher, timeout: int = 500): bool =
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## This function checks for events on all the sockets in the `PDispatcher`.
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## This function checks for events on all the sockets in the `PDispatcher`.
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## It then proceeds to call the correct event handler.
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## It then proceeds to call the correct event handler.
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@ -227,7 +227,18 @@ proc listDirs*(ftp: var TFTPClient, dir: string = "",
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ftp.deleteJob()
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ftp.deleteJob()
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else: return @[]
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else: return @[]
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proc fileExists*(ftp: var TFTPClient, file: string): bool =
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proc fileExists*(ftp: var TFTPClient, file: string): bool {.deprecated.} =
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## **Deprecated:** Please use ``existsFile``.
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##
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## Determines whether ``file`` exists.
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##
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## Warning: This function may block. Especially on directories with many
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## files, because a full list of file names must be retrieved.
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var files = ftp.listDirs()
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for f in items(files):
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if f.normalizePathSep == file.normalizePathSep: return true
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proc existsFile*(ftp: var TFTPClient, file: string): bool =
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## Determines whether ``file`` exists.
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## Determines whether ``file`` exists.
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##
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##
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## Warning: This function may block. Especially on directories with many
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## Warning: This function may block. Especially on directories with many
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@ -74,7 +74,7 @@ type
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SOCK_STREAM = 1, ## reliable stream-oriented service or Stream Sockets
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SOCK_STREAM = 1, ## reliable stream-oriented service or Stream Sockets
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SOCK_DGRAM = 2, ## datagram service or Datagram Sockets
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SOCK_DGRAM = 2, ## datagram service or Datagram Sockets
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SOCK_RAW = 3, ## raw protocols atop the network layer.
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SOCK_RAW = 3, ## raw protocols atop the network layer.
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SOCK_SEQPACKET = 5 ## reliable sequenced packet service, or
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SOCK_SEQPACKET = 5 ## reliable sequenced packet service
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TProtocol* = enum ## third argument to `socket` proc
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TProtocol* = enum ## third argument to `socket` proc
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IPPROTO_TCP = 6, ## Transmission control protocol.
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IPPROTO_TCP = 6, ## Transmission control protocol.
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@ -1204,6 +1204,44 @@ proc recvAsync*(socket: TSocket, s: var TaintedString): bool =
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inc(pos, bytesRead)
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inc(pos, bytesRead)
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result = True
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result = True
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proc recvFrom*(socket: TSocket, data: var string, length: int,
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address: var string, flags = 0'i32): int =
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## Receives data from ``socket``. This function should normally be used with
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## connection-less sockets (UDP sockets).
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##
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## **Warning:** This function does not yet have a buffered implementation,
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## so when ``socket`` is buffered the non-buffered implementation will be
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## used. Therefore if ``socket`` contains something in its buffer this
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## function will make no effort to return it.
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# TODO: Buffered sockets
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data = newString(length)
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var sockAddress: Tsockaddr_in
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var addrLen = sizeof(sockAddress).TSockLen
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result = recvFrom(socket.fd, cstring(data), length, flags,
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cast[ptr TSockAddr](addr(sockAddress)), addr(addrLen))
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if result != -1:
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address = $inet_ntoa(sockAddress.sin_addr)
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proc recvFromAsync*(socket: TSocket, data: var String, length: int,
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address: var string, flags = 0'i32): bool =
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## Similar to ``recvFrom`` but raises an EOS error when an error occurs.
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## Returns False if no messages could be received from ``socket``.
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result = true
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var callRes = recvFrom(socket, data, length, address)
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if callRes < 0:
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when defined(windows):
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# TODO: Test on Windows
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var err = WSAGetLastError()
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if err == WSAEWOULDBLOCK:
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return False
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else: OSError()
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else:
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if errno == EAGAIN or errno == EWOULDBLOCK:
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return False
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else: OSError()
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proc skip*(socket: TSocket) =
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proc skip*(socket: TSocket) =
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## skips all the data that is pending for the socket
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## skips all the data that is pending for the socket
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const bufSize = 1000
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const bufSize = 1000
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@ -1270,6 +1308,37 @@ proc trySend*(socket: TSocket, data: string): bool =
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## and instead returns ``false`` on failure.
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## and instead returns ``false`` on failure.
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result = send(socket, cstring(data), data.len) == data.len
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result = send(socket, cstring(data), data.len) == data.len
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proc sendTo*(socket: TSocket, address: string, port: TPort, data: pointer,
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size: int, af: TDomain = AF_INET, flags = 0'i32): int =
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## low-level sendTo proc. This proc sends ``data`` to the specified ``address``,
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## which may be an IP address or a hostname, if a hostname is specified
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## this function will try each IP of that hostname.
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##
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## **Note:** This proc is not available for SSL sockets.
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var hints: TAddrInfo
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var aiList: ptr TAddrInfo = nil
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hints.ai_family = toInt(af)
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hints.ai_socktype = toInt(SOCK_STREAM)
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hints.ai_protocol = toInt(IPPROTO_TCP)
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gaiNim(address, port, hints, aiList)
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# try all possibilities:
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var success = false
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var it = aiList
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while it != nil:
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result = sendTo(socket.fd, data, size.cint, flags, it.ai_addr,
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it.ai_addrlen.TSockLen)
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if result != -1'i32:
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success = true
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break
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it = it.ai_next
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freeaddrinfo(aiList)
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proc sendTo*(socket: TSocket, address: string, port: TPort, data: string): int =
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## Friendlier version of the low-level ``sendTo``.
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result = socket.sendTo(address, port, cstring(data), data.len)
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when defined(Windows):
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when defined(Windows):
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const
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const
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SOCKET_ERROR = -1
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SOCKET_ERROR = -1
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@ -1303,8 +1372,8 @@ proc connect*(socket: TSocket, timeout: int, name: string, port = TPort(0),
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## specifies the time in miliseconds of how long to wait for a connection
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## specifies the time in miliseconds of how long to wait for a connection
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## to be made.
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## to be made.
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##
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##
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## **Warning:** If ``socket`` is non-blocking and timeout is not ``-1`` then
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## **Warning:** If ``socket`` is non-blocking then
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## this function may set blocking mode on ``socket`` to true.
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## this function will set blocking mode on ``socket`` to true.
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socket.setBlocking(true)
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socket.setBlocking(true)
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socket.connectAsync(name, port, af)
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socket.connectAsync(name, port, af)
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@ -1313,6 +1382,7 @@ proc connect*(socket: TSocket, timeout: int, name: string, port = TPort(0),
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raise newException(ETimeout, "Call to connect() timed out.")
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raise newException(ETimeout, "Call to connect() timed out.")
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proc isSSL*(socket: TSocket): bool = return socket.isSSL
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proc isSSL*(socket: TSocket): bool = return socket.isSSL
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## Determines whether ``socket`` is a SSL socket.
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when defined(Windows):
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when defined(Windows):
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var wsa: TWSADATA
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var wsa: TWSADATA
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@ -18,13 +18,13 @@ const
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swarmSize = 50
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swarmSize = 50
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messagesToSend = 100
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messagesToSend = 100
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proc swarmConnect(s: PAsyncSocket, arg: PObject) {.nimcall.} =
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proc swarmConnect(s: PAsyncSocket) =
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#echo("Connected")
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#echo("Connected")
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for i in 1..messagesToSend:
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for i in 1..messagesToSend:
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s.send("Message " & $i & "\c\L")
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s.send("Message " & $i & "\c\L")
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s.close()
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s.close()
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proc serverRead(s: PAsyncSocket, arg: PObject) {.nimcall.} =
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proc serverRead(s: PAsyncSocket) =
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var line = ""
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var line = ""
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assert s.recvLine(line)
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assert s.recvLine(line)
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if line != "":
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if line != "":
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@ -36,7 +36,7 @@ proc serverRead(s: PAsyncSocket, arg: PObject) {.nimcall.} =
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else:
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else:
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s.close()
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s.close()
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proc serverAccept(s: PAsyncSocket, arg: Pobject) {.nimcall.} =
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proc serverAccept(s: PAsyncSocket) =
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var client: PAsyncSocket
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var client: PAsyncSocket
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new(client)
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new(client)
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s.accept(client)
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s.accept(client)
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@ -83,6 +83,8 @@ while true:
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break
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break
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if not disp.poll(): break
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if not disp.poll(): break
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if disp.len == serverCount:
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if disp.len == serverCount:
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# Only the servers are left in the dispatcher. All clients finished,
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# we need to therefore break.
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break
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break
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assert msgCount == (swarmSize * messagesToSend) * serverCount
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assert msgCount == (swarmSize * messagesToSend) * serverCount
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77
tests/run/tasyncudp.nim
Normal file
77
tests/run/tasyncudp.nim
Normal file
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@ -0,0 +1,77 @@
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discard """
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file: "tasyncudp.nim"
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output: "2000"
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"""
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import asyncio, sockets, strutils, times
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const
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swarmSize = 5
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messagesToSend = 200
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var
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disp = newDispatcher()
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msgCount = 0
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currentClient = 0
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proc serverRead(s: PAsyncSocket) =
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var data = ""
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var address = ""
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if s.recvFromAsync(data, 9, address):
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assert address == "127.0.0.1"
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msgCount.inc()
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discard """
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var line = ""
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assert s.recvLine(line)
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if line == "":
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assert(false)
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else:
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if line.startsWith("Message "):
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msgCount.inc()
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else:
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assert(false)
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"""
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proc swarmConnect(s: PAsyncSocket) =
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for i in 1..messagesToSend:
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s.send("Message\c\L")
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proc createClient(disp: var PDispatcher, port: TPort,
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buffered = true) =
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currentClient.inc()
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var client = AsyncSocket(typ = SOCK_DGRAM, protocol = IPPROTO_UDP,
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buffered = buffered)
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client.handleConnect = swarmConnect
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disp.register(client)
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client.connect("localhost", port)
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proc createServer(port: TPort, buffered = true) =
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var server = AsyncSocket(typ = SOCK_DGRAM, protocol = IPPROTO_UDP,
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buffered = buffered)
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server.handleRead = serverRead
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disp.register(server)
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server.bindAddr(port)
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let serverCount = 2
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createServer(TPort(10335), false)
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createServer(TPort(10336), true)
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var startTime = epochTime()
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while true:
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if epochTime() - startTime >= 300.0:
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break
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if not disp.poll():
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break
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|
|
||||||
|
if (msgCount div messagesToSend) * serverCount == currentClient:
|
||||||
|
createClient(disp, TPort(10335), false)
|
||||||
|
createClient(disp, TPort(10336), true)
|
||||||
|
|
||||||
|
if msgCount == messagesToSend * serverCount * swarmSize:
|
||||||
|
break
|
||||||
|
|
||||||
|
assert msgCount == messagesToSend * serverCount * swarmSize
|
||||||
|
echo(msgCount)
|
||||||
Loading…
Add table
Add a link
Reference in a new issue