mirror of
https://github.com/nim-lang/Nim.git
synced 2025-12-30 09:54:49 +00:00
375 lines
12 KiB
Nim
375 lines
12 KiB
Nim
import os, tables, strutils, times, heapqueue, options, deques
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# TODO: This shouldn't need to be included, but should ideally be exported.
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type
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CallbackFunc = proc () {.closure, gcsafe.}
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CallbackList = object
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function: CallbackFunc
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next: ref CallbackList
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FutureBase* = ref object of RootObj ## Untyped future.
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callbacks: CallbackList
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finished: bool
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error*: ref Exception ## Stored exception
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errorStackTrace*: string
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when not defined(release):
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stackTrace: string ## For debugging purposes only.
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id: int
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fromProc: string
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Future*[T] = ref object of FutureBase ## Typed future.
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value: T ## Stored value
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FutureVar*[T] = distinct Future[T]
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FutureError* = object of Exception
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cause*: FutureBase
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{.deprecated: [PFutureBase: FutureBase, PFuture: Future].}
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when not defined(release):
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var currentID = 0
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var callSoonProc {.threadvar.}: proc (cbproc: proc ()) {.gcsafe.}
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proc getCallSoonProc*(): (proc(cbproc: proc ()) {.gcsafe.}) =
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## Get current implementation of ``callSoon``.
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return callSoonProc
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proc setCallSoonProc*(p: (proc(cbproc: proc ()) {.gcsafe.})) =
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## Change current implementation of ``callSoon``. This is normally called when dispatcher from ``asyncdispatcher`` is initialized.
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callSoonProc = p
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proc callSoon*(cbproc: proc ()) =
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## Call ``cbproc`` "soon".
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##
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## If async dispatcher is running, ``cbproc`` will be executed during next dispatcher tick.
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##
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## If async dispatcher is not running, ``cbproc`` will be executed immediately.
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if callSoonProc.isNil:
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# Loop not initialized yet. Call the function directly to allow setup code to use futures.
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cbproc()
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else:
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callSoonProc(cbproc)
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template setupFutureBase(fromProc: string) =
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new(result)
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result.finished = false
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when not defined(release):
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result.stackTrace = getStackTrace()
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result.id = currentID
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result.fromProc = fromProc
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currentID.inc()
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proc newFuture*[T](fromProc: string = "unspecified"): Future[T] =
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## Creates a new future.
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##
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## Specifying ``fromProc``, which is a string specifying the name of the proc
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## that this future belongs to, is a good habit as it helps with debugging.
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setupFutureBase(fromProc)
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proc newFutureVar*[T](fromProc = "unspecified"): FutureVar[T] =
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## Create a new ``FutureVar``. This Future type is ideally suited for
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## situations where you want to avoid unnecessary allocations of Futures.
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##
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## Specifying ``fromProc``, which is a string specifying the name of the proc
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## that this future belongs to, is a good habit as it helps with debugging.
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result = FutureVar[T](newFuture[T](fromProc))
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proc clean*[T](future: FutureVar[T]) =
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## Resets the ``finished`` status of ``future``.
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Future[T](future).finished = false
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Future[T](future).error = nil
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proc checkFinished[T](future: Future[T]) =
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## Checks whether `future` is finished. If it is then raises a
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## ``FutureError``.
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when not defined(release):
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if future.finished:
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var msg = ""
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msg.add("An attempt was made to complete a Future more than once. ")
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msg.add("Details:")
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msg.add("\n Future ID: " & $future.id)
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msg.add("\n Created in proc: " & future.fromProc)
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msg.add("\n Stack trace to moment of creation:")
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msg.add("\n" & indent(future.stackTrace.strip(), 4))
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when T is string:
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msg.add("\n Contents (string): ")
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msg.add("\n" & indent(future.value.repr, 4))
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msg.add("\n Stack trace to moment of secondary completion:")
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msg.add("\n" & indent(getStackTrace().strip(), 4))
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var err = newException(FutureError, msg)
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err.cause = future
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raise err
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proc call(callbacks: var CallbackList) =
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var current = callbacks
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while true:
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if not current.function.isNil:
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callSoon(current.function)
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if current.next.isNil:
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break
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else:
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current = current.next[]
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# callback will be called only once, let GC collect them now
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callbacks.next = nil
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callbacks.function = nil
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proc add(callbacks: var CallbackList, function: CallbackFunc) =
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if callbacks.function.isNil:
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callbacks.function = function
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assert callbacks.next == nil
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else:
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let newNext = new(ref CallbackList)
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newNext.function = callbacks.function
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newNext.next = callbacks.next
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callbacks.next = newNext
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callbacks.function = function
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proc complete*[T](future: Future[T], val: T) =
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## Completes ``future`` with value ``val``.
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#assert(not future.finished, "Future already finished, cannot finish twice.")
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checkFinished(future)
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assert(future.error == nil)
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future.value = val
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future.finished = true
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future.callbacks.call()
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proc complete*(future: Future[void]) =
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## Completes a void ``future``.
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#assert(not future.finished, "Future already finished, cannot finish twice.")
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checkFinished(future)
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assert(future.error == nil)
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future.finished = true
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future.callbacks.call()
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proc complete*[T](future: FutureVar[T]) =
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## Completes a ``FutureVar``.
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template fut: untyped = Future[T](future)
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checkFinished(fut)
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assert(fut.error == nil)
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fut.finished = true
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fut.callbacks.call()
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proc complete*[T](future: FutureVar[T], val: T) =
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## Completes a ``FutureVar`` with value ``val``.
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##
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## Any previously stored value will be overwritten.
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template fut: untyped = Future[T](future)
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checkFinished(fut)
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assert(fut.error.isNil())
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fut.finished = true
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fut.value = val
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fut.callbacks.call()
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proc fail*[T](future: Future[T], error: ref Exception) =
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## Completes ``future`` with ``error``.
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#assert(not future.finished, "Future already finished, cannot finish twice.")
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checkFinished(future)
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future.finished = true
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future.error = error
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future.errorStackTrace =
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if getStackTrace(error) == "": getStackTrace() else: getStackTrace(error)
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future.callbacks.call()
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proc clearCallbacks(future: FutureBase) =
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future.callbacks.function = nil
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future.callbacks.next = nil
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proc addCallback*(future: FutureBase, cb: proc() {.closure,gcsafe.}) =
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## Adds the callbacks proc to be called when the future completes.
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##
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## If future has already completed then ``cb`` will be called immediately.
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assert cb != nil
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if future.finished:
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callSoon(cb)
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else:
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future.callbacks.add cb
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proc addCallback*[T](future: Future[T],
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cb: proc (future: Future[T]) {.closure,gcsafe.}) =
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## Adds the callbacks proc to be called when the future completes.
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##
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## If future has already completed then ``cb`` will be called immediately.
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future.addCallback(
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proc() =
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cb(future)
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)
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proc `callback=`*(future: FutureBase, cb: proc () {.closure,gcsafe.}) =
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## Clears the list of callbacks and sets the callback proc to be called when the future completes.
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##
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## If future has already completed then ``cb`` will be called immediately.
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##
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## It's recommended to use ``addCallback`` or ``then`` instead.
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future.clearCallbacks
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future.addCallback cb
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proc `callback=`*[T](future: Future[T],
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cb: proc (future: Future[T]) {.closure,gcsafe.}) =
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## Sets the callback proc to be called when the future completes.
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##
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## If future has already completed then ``cb`` will be called immediately.
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future.callback = proc () = cb(future)
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proc injectStacktrace[T](future: Future[T]) =
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# TODO: Come up with something better.
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when not defined(release):
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var msg = ""
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msg.add("\n " & future.fromProc & "'s lead up to read of failed Future:")
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if not future.errorStackTrace.isNil and future.errorStackTrace != "":
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msg.add("\n" & indent(future.errorStackTrace.strip(), 4))
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else:
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msg.add("\n Empty or nil stack trace.")
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future.error.msg.add(msg)
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proc read*[T](future: Future[T] | FutureVar[T]): T =
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## Retrieves the value of ``future``. Future must be finished otherwise
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## this function will fail with a ``ValueError`` exception.
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##
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## If the result of the future is an error then that error will be raised.
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{.push hint[ConvFromXtoItselfNotNeeded]: off.}
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let fut = Future[T](future)
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{.pop.}
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if fut.finished:
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if fut.error != nil:
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injectStacktrace(fut)
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raise fut.error
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when T isnot void:
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return fut.value
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else:
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# TODO: Make a custom exception type for this?
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raise newException(ValueError, "Future still in progress.")
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proc readError*[T](future: Future[T]): ref Exception =
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## Retrieves the exception stored in ``future``.
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##
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## An ``ValueError`` exception will be thrown if no exception exists
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## in the specified Future.
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if future.error != nil: return future.error
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else:
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raise newException(ValueError, "No error in future.")
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proc mget*[T](future: FutureVar[T]): var T =
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## Returns a mutable value stored in ``future``.
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##
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## Unlike ``read``, this function will not raise an exception if the
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## Future has not been finished.
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result = Future[T](future).value
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proc finished*[T](future: Future[T] | FutureVar[T]): bool =
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## Determines whether ``future`` has completed.
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##
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## ``True`` may indicate an error or a value. Use ``failed`` to distinguish.
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when future is FutureVar[T]:
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result = (Future[T](future)).finished
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else:
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result = future.finished
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proc failed*(future: FutureBase): bool =
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## Determines whether ``future`` completed with an error.
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return future.error != nil
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proc asyncCheck*[T](future: Future[T]) =
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## Sets a callback on ``future`` which raises an exception if the future
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## finished with an error.
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##
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## This should be used instead of ``discard`` to discard void futures.
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future.callback =
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proc () =
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if future.failed:
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injectStacktrace(future)
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raise future.error
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proc `and`*[T, Y](fut1: Future[T], fut2: Future[Y]): Future[void] =
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## Returns a future which will complete once both ``fut1`` and ``fut2``
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## complete.
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var retFuture = newFuture[void]("asyncdispatch.`and`")
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fut1.callback =
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proc () =
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if not retFuture.finished:
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if fut1.failed: retFuture.fail(fut1.error)
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elif fut2.finished: retFuture.complete()
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fut2.callback =
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proc () =
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if not retFuture.finished:
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if fut2.failed: retFuture.fail(fut2.error)
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elif fut1.finished: retFuture.complete()
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return retFuture
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proc `or`*[T, Y](fut1: Future[T], fut2: Future[Y]): Future[void] =
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## Returns a future which will complete once either ``fut1`` or ``fut2``
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## complete.
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var retFuture = newFuture[void]("asyncdispatch.`or`")
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proc cb[X](fut: Future[X]) =
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if fut.failed: retFuture.fail(fut.error)
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if not retFuture.finished: retFuture.complete()
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fut1.callback = cb[T]
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fut2.callback = cb[Y]
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return retFuture
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proc all*[T](futs: varargs[Future[T]]): auto =
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## Returns a future which will complete once
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## all futures in ``futs`` complete.
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## If the argument is empty, the returned future completes immediately.
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##
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## If the awaited futures are not ``Future[void]``, the returned future
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## will hold the values of all awaited futures in a sequence.
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##
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## If the awaited futures *are* ``Future[void]``,
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## this proc returns ``Future[void]``.
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when T is void:
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var
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retFuture = newFuture[void]("asyncdispatch.all")
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completedFutures = 0
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let totalFutures = len(futs)
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for fut in futs:
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fut.callback = proc(f: Future[T]) =
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inc(completedFutures)
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if not retFuture.finished:
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if f.failed:
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retFuture.fail(f.error)
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else:
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if completedFutures == totalFutures:
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retFuture.complete()
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if totalFutures == 0:
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retFuture.complete()
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return retFuture
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else:
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var
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retFuture = newFuture[seq[T]]("asyncdispatch.all")
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retValues = newSeq[T](len(futs))
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completedFutures = 0
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for i, fut in futs:
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proc setCallback(i: int) =
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fut.callback = proc(f: Future[T]) =
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inc(completedFutures)
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if not retFuture.finished:
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if f.failed:
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retFuture.fail(f.error)
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else:
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retValues[i] = f.read()
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if completedFutures == len(retValues):
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retFuture.complete(retValues)
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setCallback(i)
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if retValues.len == 0:
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retFuture.complete(retValues)
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return retFuture
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