bugfixes; added events module, sequtils module
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13 changed files with 292 additions and 15 deletions
59
lib/pure/collections/sequtils.nim
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59
lib/pure/collections/sequtils.nim
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#
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#
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# Nimrod's Runtime Library
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# (c) Copyright 2011 Alex Mitchell
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#
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# See the file "copying.txt", included in this
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# distribution, for details about the copyright.
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#
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## :Author: Alex Mitchell
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##
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## This module implements operations for the built-in `seq`:idx: type
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## which were inspired by functional programming languages.
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proc concat*[T](seqs: openarray[seq[T]]): seq[T] =
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## Takes several sequences' items and returns them inside of one sequence.
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var L = 0
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for seqitm in items(seqs): inc(L, len(seqitm))
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newSeq(result, L)
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var i = 0
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for s in items(seqs):
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for itm in items(s):
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result[i] = itm
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inc(i)
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proc distnct*[T](seq1: seq[T]): seq[T] =
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## Removes duplicates from a sequence and returns it.
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result = @[]
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for itm in items(seq1):
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if not result.contains(itm): result.add(itm)
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proc zip*[S, T](seq1: seq[S], seq2: seq[T]): seq[tuple[a: S, b: T]] =
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## Combines two sequences. If one sequence is too short,
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## the remaining items in the longer sequence are discarded.
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var m = min(seq1.len, seq2.len)
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newSeq(result, m)
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for i in 0 .. m-1: result[i] = (seq1[i], seq2[i])
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iterator filter*[T](seq1: seq[T], pred: proc(item: T): bool): T =
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## Iterates through a sequence and yields every item that fulfills the
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## predicate.
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for i in countup(0, len(seq1) -1):
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var item = seq1[i]
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if pred(item): yield seq1[i]
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proc filter*[T](seq1: seq[T], pred: proc(item: T): bool): seq[T] =
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## Returns all items in a sequence that fulfilled the predicate.
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accumulateResult(filter(seq1, pred))
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template filterIt*(seq1, pred: expr): expr =
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## Finds a specific item in a sequence as long as the
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## predicate returns true. The predicate needs to be an expression
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## containing ``it``: ``filterIt("abcxyz", it == 'x')``.
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block:
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var result: type(seq1) = @[]
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for it in items(seq1):
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if pred: result.add(it)
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result
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83
lib/pure/events.nim
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83
lib/pure/events.nim
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@ -0,0 +1,83 @@
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#
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#
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# Nimrod's Runtime Library
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# (c) Copyright 2011 Alex Mitchell
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#
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# See the file "copying.txt", included in this
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# distribution, for details about the copyright.
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#
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## :Author: Alex Mitchell
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##
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## This module implements an event system that is not dependant on external
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## graphical toolkits. It was originally called ``NimEE`` because
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## it was inspired by Ptyhon's PyEE module.
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type
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TEventArgs* = object of TObject ## Base object for event arguments
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## that are passed to callback functions.
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TEventHandler = tuple[name: string, handlers: seq[proc(e:TEventArgs)]]
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PEventHandler* = ref TEventHandler ## An eventhandler for an event.
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type
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TEventEmitter = object {.pure, final.}
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s: seq[PEventHandler]
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PEventEmitter* = ref TEventEmitter ## An object that fires events and
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## holds event handlers for an object.
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EInvalidEvent* = object of EInvalidValue
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proc newEventHandler*(name: string): PEventHandler =
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## Initializes an EventHandler with the specified name and returns it.
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new(result)
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result.handlers = @[]
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result.name = name
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proc addHandler*(handler: PEventHandler, func: proc(e: TEventArgs)) =
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## Adds the callback to the specified event handler.
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handler.handlers.add(func)
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proc removeHandler*(handler: PEventHandler, func: proc(e: TEventArgs)) =
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## Removes the callback from the specified event handler.
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for i in countup(0, len(handler.handlers) -1):
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if func == handler.handlers[i]:
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handler.handlers.del(i)
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break
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proc clearHandlers*(handler: PEventHandler) =
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## Clears all of the callbacks from the event handler.
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setLen(handler.handlers, 0)
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proc getEventhandler(emitter: PEventEmitter, event: string): int =
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for k in 0..high(emitter.s):
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if emitter.s[k].name == event: return k
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return -1
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proc on*(emitter: PEventEmitter, event: string, func: proc(e: TEventArgs)) =
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## Assigns a event handler with the specified callback. If the event
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## doesn't exist, it will be created.
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var i = getEventHandler(emitter, event)
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if i < 0:
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var eh = newEventHandler(event)
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addHandler(eh, func)
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emitter.s.add(eh)
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else:
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addHandler(emitter.s[i], func)
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proc emit*(emitter: PEventEmitter, eventhandler: PEventHandler,
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args: TEventArgs) =
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## Fires an event handler with specified event arguments.
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for func in items(eventhandler.handlers): func(args)
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proc emit*(emitter: PEventEmitter, event: string, args: TEventArgs) =
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## Fires an event handler with specified event arguments.
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var i = getEventHandler(emitter, event)
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if i >= 0:
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emit(emitter, emitter.s[i], args)
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else:
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raise newException(EInvalidEvent, "invalid event: " & event)
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proc newEventEmitter*(): PEventEmitter =
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## Creates and returns a new EventEmitter.
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new(result)
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result.s = @[]
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@ -45,7 +45,9 @@ proc rawReadLine(f: TFile, result: var string) =
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setLen(result, 0) # reuse the buffer!
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while True:
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var c = fgetc(f)
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if c < 0'i32: raiseEIO("EOF reached")
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if c < 0'i32:
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if result.len > 0: break
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else: raiseEIO("EOF reached")
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if c == 10'i32: break # LF
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if c == 13'i32: # CR
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c = fgetc(f) # is the next char LF?
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@ -89,19 +91,21 @@ proc readFile(filename: string): string =
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raiseEIO("error while reading from file")
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else:
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raiseEIO("file too big to fit in memory")
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except EIO:
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finally:
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close(f)
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proc writeFile(filename, content: string) =
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var f = open(filename, fmWrite)
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f.write(content)
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close(f)
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try:
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f.write(content)
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finally:
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close(f)
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proc EndOfFile(f: TFile): bool =
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# do not blame me; blame the ANSI C standard this is so brain-damaged
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var c = fgetc(f)
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ungetc(c, f)
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return c == -1'i32
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return c < 0'i32
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proc writeln[Ty](f: TFile, x: Ty) =
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write(f, x)
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