don't require syntParent when constructing synts
implement dirt-simple stack vm / "compiler"
This commit is contained in:
parent
f65c877a91
commit
3dc0752a5d
161
scripting.py
161
scripting.py
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@ -3,6 +3,7 @@ from basetoken import *
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from tpers import *
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from util import *
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from contextlib import contextmanager
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from vm import *
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def RegStmt(clsStmt):
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SyntLine.rgclsStmt.append(clsStmt)
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@ -12,27 +13,26 @@ def RegRtype(clsRtype):
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Rtype.rgclsRtype.append(clsRtype)
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return clsRtype
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# rtype -- runtime type
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# method: RglitFromSt(st) -- parse the string and return a list of potentially matching literals
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# method: RgsyntFromSt(scope, st) -- parse the string and return a list of synts whose rtypes match this
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# method: StForSobj(sobj) -- a user-visible description of the sobj
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# method: FMember(sobj) -- returns true if sobj is a member of this type
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# method: FOverlap(rtype) -- returns true if there is some overlap between this type and rtype
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class Rtype(TPrs):
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"Runtime type"
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rgclsRtype = []
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@classmethod
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def RtypeMax(cls):
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"Return an instance of this rtype which will match anything that any instance of this rtype matches."
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return cls()
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def RglitFromSt(self, st):
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"Return literal objects that match a (partially entered) string."
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return []
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def RgsyntFromSt(self, syntBlock, st):
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"Return syntax objects whose rtypes match this that match a (partially entered) string."
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for lit in self.RglitFromSt(st):
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yield SyntLit(None, lit, self)
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yield SyntLit(lit, self)
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for synt in self.RgsyntVarRefFromSt(syntBlock, st):
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yield synt
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def RgsyntVarRefFromSt(self, syntBlock, st):
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"Return variable references that match a (partially entered) string."
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while syntBlock != None:
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if isinstance(syntBlock, SyntBlock):
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for synt in self.RgsyntFromSyntBlock(syntBlock, st):
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@ -44,13 +44,16 @@ class Rtype(TPrs):
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# yield all vars in scope
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for syntVar in syntBlock.rgsynt:
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if SyntVar.FVarOfType(syntVar, self) and syntVar.name.St().lower().startswith(st.lower()):
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yield SyntVarRef(None, syntVar)
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yield SyntVarRef(syntVar)
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def StForSobj(self, sobj):
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"Return a user-visible description of a sobj."
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return str(sobj)
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def FMember(self, sobj):
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"Returns true if sobj is a member of this type."
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return isinstance(sobj, self.pythontype)
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def FOverlap(self, rtype):
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"Returns true if there is some overlap between this type and rtype."
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return isinstance(rtype, self.__class__)
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@RegRtype
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@ -90,6 +93,13 @@ class RtypeAny(Rtype):
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class Typeable(TPrs):
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def InitTransient(self):
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self.steditTypein = Stedit()
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def PersistStedit(self):
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assert self.FPersist()
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try:
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del self.steditTypein
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except:
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pass
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self.steditTypein = Stedit()
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def GetStTypein(self):
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st = self.steditTypein.GetValue()
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return None if st == "" else st
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@ -98,19 +108,16 @@ class Typeable(TPrs):
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def HandleTypeinKey(self, key):
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return self.steditTypein.HandleKey(key)
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# synt -- a piece of syntax
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# method: Project() -- projects it
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#
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class Synt(Typeable):
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desc = None
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def InitPersistent(self, syntParent):
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self.syntParent = syntParent
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"A piece of syntax"
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def InitPersistent(self):
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self.syntParent = None
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self.rgsynt = []
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self.Populate()
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@classmethod
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def SyntDefault(cls, syntParent):
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return cls(syntParent)
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def SyntDefault(cls):
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return cls()
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@classmethod
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def RgsyntReplace(cls, syntChild, st, rtype):
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@ -131,8 +138,14 @@ class Synt(Typeable):
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return []
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def Replace(self, syntOld, syntNew):
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self.rgsynt[self.Isynt(syntOld)] = syntNew
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assert syntNew.syntParent == None
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syntNew.syntParent = self
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self.rgsynt[self.Isynt(syntOld)] = syntNew
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def Append(self, syntNew):
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assert syntNew.syntParent == None
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syntNew.syntParent = self
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self.rgsynt.append(syntNew)
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def Isynt(self, syntChild):
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if isinstance(syntChild, int):
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@ -145,14 +158,18 @@ class Synt(Typeable):
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def RtypeTopForChild(self, syntChild):
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return None
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def Eval(self, ectx):
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pass
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def Populate(self):
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"Populate rgsynt with useful default values."
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pass
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def Project(self, pcur):
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"Project the current synt into its corresponding pws."
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pass
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def Compile(self):
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"Return a list of {synt|callable}s to be interpreted."
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if hasattr(self, "Eval"):
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return [self.Eval]
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return []
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# desc - list of desces
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# desce:
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@ -172,6 +189,7 @@ class SyntDesc(Synt):
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@staticmethod
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def DefProp(isynt):
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"Create an alias for rgsynt[isynt]."
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def getI(self):
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return self.rgsynt[isynt]
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def setI(self, syntNew):
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@ -184,8 +202,8 @@ class SyntDesc(Synt):
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def Populate(self):
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for desce in self.Desc():
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if isinstance(desce, tuple):
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synt = desce[0].SyntDefault(self)
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self.rgsynt.append(synt)
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synt = desce[0].SyntDefault()
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self.Append(synt)
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# for synt in self.rgsynt:
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# synt.Populate()
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@ -229,6 +247,9 @@ class SyntDesc(Synt):
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isynt += 1
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class SyntName(Synt):
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def InitPersistent(self):
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Synt.InitPersistent(self)
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self.PersistStedit()
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def Project(self, pcur):
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PwTypein(pcur.PwHoriz(self), self.St(), self)
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def St(self):
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@ -242,7 +263,7 @@ class SyntExpr(Synt):
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yield synt
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for clsSyntOp in cls.rgclsSyntOp:
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if clsSyntOp.StForTypein().lower().startswith(st.lower()):
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yield clsSyntOp.SyntDefault(None)
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yield clsSyntOp.SyntDefault()
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def Project(self, pcur):
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self.syntParent.ProjectTypeinForChild(pcur.PwHoriz(self), self, " ")
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@ -254,7 +275,7 @@ class SyntLine(SyntDesc):
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def RgsyntReplace(cls, syntChild, st, rtype):
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for clsStmt in cls.rgclsStmt:
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if clsStmt.StForTypein().lower().startswith(st.lower()):
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yield clsStmt(None)
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yield clsStmt()
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class SyntBlock(Synt):
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def Project(self, pcur):
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@ -276,7 +297,7 @@ class SyntBlock(Synt):
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def InsertLineAfter(self, syntAfter, syntStmt):
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if syntStmt == None:
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syntStmt = SyntLine(self)
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syntStmt = SyntLine()
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if syntAfter == None:
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self.rgsynt.insert(0, syntStmt)
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else:
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@ -290,9 +311,12 @@ class SyntBlock(Synt):
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psel.Inc(pwKey.PwParent())
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return True
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return False
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def Compile(self):
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return self.rgsynt
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class SyntLit(Synt):
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def InitPersistent(self, syntParent, value, rtype):
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Synt.InitPersistent(self, syntParent)
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def InitPersistent(self, value, rtype):
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Synt.InitPersistent(self)
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self.value = value
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self.rtype = rtype
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def StForTypein(self):
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@ -301,8 +325,8 @@ class SyntLit(Synt):
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return self.rtype
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def Project(self, pcur):
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self.syntParent.ProjectTypeinForChild(pcur.PwHoriz(self), self, self.StForTypein())
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def Exec(self, ectx):
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return self.value
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def Eval(self, vm):
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vm.Push(self.value)
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@RegStmt
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class SyntVar(SyntDesc):
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@ -312,21 +336,29 @@ class SyntVar(SyntDesc):
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@classmethod
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def FVarOfType(cls, synt, rtype):
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return isinstance(synt, cls) and synt.expr != None and rtype.FOverlap(synt.expr.Rtype())
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def Compile(self):
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return [self.expr, self.Eval]
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def Eval(self, vm):
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vm.vars.Define(self, vm.Pop())
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class SyntVarRef(Synt):
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def __init__(self, syntParent, syntVar = None):
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Synt.__init__(self, syntParent)
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def InitPersistent(self, syntVar = None):
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Synt.InitPersistent(self)
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self.syntVar = syntVar
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@classmethod
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def RgsyntReplace(cls, syntChild, st, rtype):
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rtype = rtype and RtypeAny()
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return rtype.RgsyntVarRefForChild(syntChild, st)
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rtype = rtype or RtypeAny()
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return rtype.RgsyntVarRefFromSt(syntChild, st)
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def Rtype(self):
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return self.syntVar.Rtype()
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def StForTypein(self):
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return self.syntVar.name.St()
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if self.syntVar:
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return self.syntVar.name.St()
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return "<var>"
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def Project(self, pcur):
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self.syntParent.ProjectTypeinForChild(pcur.PwHoriz(self), self, self.StForTypein())
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def Eval(self, vm):
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vm.Push(vm.vars.Get(self.syntVar))
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class SyntBinOp(SyntDesc):
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@classmethod
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@ -338,9 +370,16 @@ class SyntBinOp(SyntDesc):
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def Create(cls, op, rtype, dgEval = None, stNameI = None):
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def Decorate(dgEval):
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stName = stNameI or dgEval.__name__
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def Eval(self, ectx):
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return dgEval(self.left.Eval(ectx), self.right.Eval(ectx))
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clsNew = type(stName, (cls,), {"Eval": Eval, "op": op})
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def Eval(vm):
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right = vm.Pop()
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left = vm.Pop()
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try:
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vm.Push(dgEval(left, right))
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except Exception as e:
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vm.Push(Fail("Failed to " + op + ": " + e))
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def Compile(self):
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return [self.left, self.right, Eval]
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clsNew = type(stName, (cls,), {"Compile": Compile, "op": op})
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SyntExpr.rgclsSyntOp.append(clsNew)
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return clsNew
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@ -354,9 +393,14 @@ class SyntBinOp(SyntDesc):
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SyntBinOp.Create("+", RtypeNum(), lambda l,r: l + r, "SyntPlus")
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SyntBinOp.Create("-", RtypeNum(), lambda l,r: l - r, "SyntMinus")
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SyntBinOp.Create("*", RtypeNum(), lambda l,r: l * r, "SyntMult")
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SyntBinOp.Create("/", RtypeNum(), lambda l,r: l / r, "SyntDiv")
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SyntBinOp.Create("/", RtypeNum(), lambda l,r: l / r, "SyntDiv") # use ansi?
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SyntBinOp.Create("=", RtypeBool(), lambda l,r: l == r, "SyntEq")
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SyntBinOp.Create(">", RtypeBool(), lambda l,r: l > r, "SyntGt")
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SyntBinOp.Create(">=", RtypeBool(), lambda l,r: l >= r, "SyntGte") # use ansi?
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SyntBinOp.Create("<", RtypeBool(), lambda l,r: l < r, "SyntLt")
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SyntBinOp.Create("<=", RtypeBool(), lambda l,r: l <= r, "SyntLte") # use ansi?
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SyntBinOp.Create("and", RtypeBool(), lambda l,r: l and r, "SyntAnd")
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SyntBinOp.Create("or", RtypeBool(), lambda l,r: l or r, "SyntOr")
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@RegStmt
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class SyntIf(SyntDesc):
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@ -364,29 +408,30 @@ class SyntIf(SyntDesc):
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expr = SyntDesc.DefProp(0)
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blockIfTrue = SyntDesc.DefProp(1)
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blockIfFalse = SyntDesc.DefProp(2)
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def Compile(self):
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return [self.expr, self.Compare, self.PopCtx]
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def Compare(self, vm):
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val = vm.Pop()
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vm.vars.Push() # lexical scoping, bitches
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if val:
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return self.blockIfTrue
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else:
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return self.blockIfFalse
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def PopCtx(self, vm):
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vm.vars.Pop()
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# scope -- a block? a scril? (scril lets you specifically avoid vars that are defined after a certain point) + game?
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# method: rgvar(stype) -- returns a list of variables in scope that match the current stype
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# var -- a variable
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# contains: stype, sargInitializer
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# a var IS A SCRIL
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# the scmd creates a new vari in the current ectx, and adds the scril to a map of things that refer to it
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# sproj -- an object that can project a sarg into an pw
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# stypes should be sprojectors and express a default projection as a class method (why?)
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# MiSarg -- an editor for sargs
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# MiSargNum, MiSargDrop
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# MiScriptLine -- projects a scriptline
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@RegStmt
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class SyntSet(SyntDesc):
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desc = [["Set"], " ", (SyntVarRef, 1), " to ", (SyntExpr, 1)]
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lvalue = SyntDesc.DefProp(0)
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expr = SyntDesc.DefProp(1)
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def Compile(self):
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return [self.expr, self.Eval]
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def Eval(self, vm):
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vm.vars.Set(self.lvalue.syntVar, vm.Pop())
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# sobj -- generic hungarian for any object that is usable in scripts
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# fail -- a FAILURE OBJECT; if it is used as a sarg when evaluating an scmd, a failure is logged and the scmd returns fail.
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# execution:
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# ectx -- execution context
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# contains: mpvar_sobj
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# block
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# iscril (selection?)
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# ectxReturn
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# methods: call(block)
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class Fail(TPrs):
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def InitPersistent(self, stFailure):
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self.stFailure == stFailure
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@ -858,7 +903,7 @@ class PselState(Token):
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class GameScriptTest(Game):
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def InitPersistent(self):
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Game.InitPersistent(self)
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self.block = SyntBlock(None)
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self.block = SyntBlock()
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def GetRgclsTokTrans(self):
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return [[PselState, self.block], [AutoJoiner, [Pov, self.block]]]
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69
vm.py
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69
vm.py
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@ -0,0 +1,69 @@
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from tpers import *
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from scripting import Fail, Synt
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class Vars(TPrs):
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def InitPersistent(self):
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self.rgmpsynt_sobj = [{}] # [0] is for globals?
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def Get(self, synt):
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for mpsynt_sobj in reversed(self.rgmpsynt_sobj):
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try:
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return mpsynt_sobj[synt]
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except:
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pass
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return Fail("Variable " + synt.name.St() + " not defined")
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def Define(self, synt, sobj):
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self.rgmpsynt_sobj[-1][synt] = sobj
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def Set(self, synt, sobj):
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for mpsynt_sobj in reversed(self.rgmpsynt_sobj):
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if synt in mpsynt_sobj:
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mpsynt_sobj[synt] = sobj
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return
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return Fail("Variable " + synt.name.St() + " not defined")
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def Push(self):
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self.rgmpsynt_sobj.append({})
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def Pop(self):
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self.rgmpsynt_sobj.pop()
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class Vm(TPrs):
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def InitPersistent(self):
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self.vstack = []
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self.rstack = []
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self.vars = Vars()
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def Push(self, sobj):
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self.vstack.append(sobj)
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def Pop(self):
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return self.vstack.pop()
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def CallI(self, synt, r, ip):
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if ip < len(r): # tail call optimization
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self.rstack.append(r, ip)
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return (synt.Compile(), 0)
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def RunSynt(self, synt):
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r = synt.Compile()
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ip = 0
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while True:
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if ip < len(r):
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instr = r[ip]
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ip += 1
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if isinstance(instr, Synt):
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(r, ip) = self.CallI(instr, r, ip)
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elif callable(instr):
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synt = instr(self)
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if synt != None:
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(r, ip) = self.CallI(instr, r, ip)
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else:
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assert False, "invalid opcode"
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else:
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if len(rstack) == 0:
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break
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(r, ip) = self.rstack.pop()
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