Interface VarHandler
- All Known Subinterfaces:
SimpleVarHandler<T,,JT> SubInLongHandler<ST,,SJT> SubVarHandler<ST,SJT, WT, WJT>
- All Known Implementing Classes:
AlignedMpIntHandler,DoubleVarAlloc,FloatVarAlloc,IntInIntHandler,IntInLongHandler,IntVarAlloc,LongInLongHandler,LongVarAlloc,NoHandler,ShiftedMpIntHandler
Some variables are hosted in a single JVM local of compatible type. Others, notably
multi-precision integers, are allocated among two or more JVM local integers. Each such integer
is called a "leg" of the multi-precision integer. Other literature may call these "digits" (whose
value is in [0, 0xffffffff]). Depending on the operator implementation, value may need to be
loaded with alternative types or in different forms. e.g., any float operator will need to
convert its inputs into the appropriate float type, even if the operands were allocated as an int
type. Similarly, some operators are implement their multi-precision computations by invoking
static methods whose parameters are int[], and so they will load and store the array
forms instead of accessing the legs' locals. This interface provides generators for the various
circumstances. Each subclass provides the implementations for various allocations.
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Method Summary
Modifier and TypeMethodDescription<N extends Emitter.Next>
Emitter<Emitter.Ent<N, Types.TInt>> genLoadLegToStack(Emitter<N> em, JitCodeGenerator<?> gen, JitType.MpIntJitType type, int leg, Opnd.Ext ext) Emit bytecode to load one leg of a multi-precision value from the varnode onto the JVM stack.<N extends Emitter.Next>
Emitter<Emitter.Ent<N, Types.TRef<int[]>>> genLoadToArray(Emitter<N> em, JitCodeGenerator<?> gen, JitType.MpIntJitType type, Opnd.Ext ext, Scope scope, int slack) Emit bytecode to load the varnode's value into an integer array in little-endian order, pushing its ref onto the JVM stack.<N extends Emitter.Next>
Emitter<Emitter.Ent<N, Types.TInt>> genLoadToBool(Emitter<N> em, JitCodeGenerator<?> gen) Emit bytecode to load the varnode's value, interpreted as a boolean, as an integer onto the JVM stack.<N extends Emitter.Next>
Opnd.OpndEm<JitType.MpIntJitType, N> genLoadToOpnd(Emitter<N> em, JitCodeGenerator<?> gen, JitType.MpIntJitType type, Opnd.Ext ext, Scope scope) Emit bytecode to load the varnode's value into several locals.<TT extends Types.BPrim<?>,TJT extends JitType.SimpleJitType<TT, TJT>, N extends Emitter.Next>
Emitter<Emitter.Ent<N, TT>> genLoadToStack(Emitter<N> em, JitCodeGenerator<?> gen, TJT type, Opnd.Ext ext) Emit bytecode to load the varnode's value onto the JVM stack.<N1 extends Emitter.Next,N0 extends Emitter.Ent<N1, Types.TRef<int[]>>>
Emitter<N1> genStoreFromArray(Emitter<N0> em, JitCodeGenerator<?> gen, JitType.MpIntJitType type, Opnd.Ext ext, Scope scope) Emit bytecode to store a varnode's value from an array of integer legs, in little endian order<N extends Emitter.Next>
Emitter<N> genStoreFromOpnd(Emitter<N> em, JitCodeGenerator<?> gen, Opnd<JitType.MpIntJitType> opnd, Opnd.Ext ext, Scope scope) Emit bytecode to store a varnode's value from several locals.<FT extends Types.BPrim<?>,FJT extends JitType.SimpleJitType<FT, FJT>, N1 extends Emitter.Next, N0 extends Emitter.Ent<N1, FT>>
Emitter<N1> genStoreFromStack(Emitter<N0> em, JitCodeGenerator<?> gen, FJT type, Opnd.Ext ext, Scope scope) Emit bytecode to store a value into a variable from the JVM stack.default Stringname()Get the name for this handler's local variable, named after the varnode is represents.static StringGenerate a name for the variable representing the given varnodeCreate a handler for aPcodeOp.SUBPIECEof a value.type()Get the p-code type of the local variable this handler uses.vn()Get the complete varnode accessible to this handler
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Method Details
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nameVn
Generate a name for the variable representing the given varnodeThese are for debugging purposes. When dumping generating bytecode, the declared local variables and their scopes are often also dumped. This provides a human with the local variable index for various varnodes.
- Parameters:
vn- the varnode- Returns:
- the name
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vn
Varnode vn()Get the complete varnode accessible to this handler- Returns:
- the varnode
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name
Get the name for this handler's local variable, named after the varnode is represents.- Returns:
- the name of the local variable
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type
JitType type()Get the p-code type of the local variable this handler uses.- Returns:
- the type
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genLoadToStack
<TT extends Types.BPrim<?>,TJT extends JitType.SimpleJitType<TT, Emitter<Emitter.Ent<N,TJT>, N extends Emitter.Next> TT>> genLoadToStack(Emitter<N> em, JitCodeGenerator<?> gen, TJT type, Opnd.Ext ext) Emit bytecode to load the varnode's value onto the JVM stack.- Type Parameters:
TT- the JVM type of the value to load onto the stackTJT- the p-code type of the value to load onto the stackN- the incoming stack- Parameters:
em- the emitter typed with the incoming stackgen- the code generatortype- the p-code type of the value expected on the JVM stack by the proceeding bytecodeext- the kind of extension to apply when adjusting from JVM size to varnode size- Returns:
- the emitter typed with the resulting stack
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genLoadToOpnd
<N extends Emitter.Next> Opnd.OpndEm<JitType.MpIntJitType,N> genLoadToOpnd(Emitter<N> em, JitCodeGenerator<?> gen, JitType.MpIntJitType type, Opnd.Ext ext, Scope scope) Emit bytecode to load the varnode's value into several locals.- Type Parameters:
N- the incoming stack- Parameters:
em- the emitter typed with the incoming stackgen- the code generatortype- the p-code type of the value expected on the JVM stack by the proceeding bytecodeext- the kind of extension to applyscope- a scope for generating temporary local storage- Returns:
- the operand containing the locals, and the emitter typed with the incoming stack
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genLoadLegToStack
<N extends Emitter.Next> Emitter<Emitter.Ent<N,Types.TInt>> genLoadLegToStack(Emitter<N> em, JitCodeGenerator<?> gen, JitType.MpIntJitType type, int leg, Opnd.Ext ext) Emit bytecode to load one leg of a multi-precision value from the varnode onto the JVM stack.- Type Parameters:
N- the incoming stack- Parameters:
em- the emitter typed with the incoming stackgen- the code generatortype- the p-code type of the complete multi-precision valueleg- the index of the leg to load, 0 being least significantext- the kind of extension to apply- Returns:
- the emitter typed with the resulting stack, i.e., having the int leg pushed onto it
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genLoadToArray
<N extends Emitter.Next> Emitter<Emitter.Ent<N,Types.TRef<int[]>>> genLoadToArray(Emitter<N> em, JitCodeGenerator<?> gen, JitType.MpIntJitType type, Opnd.Ext ext, Scope scope, int slack) Emit bytecode to load the varnode's value into an integer array in little-endian order, pushing its ref onto the JVM stack.- Type Parameters:
N- the incoming stack- Parameters:
em- the emitter typed with the incoming stackgen- the code generatortype- the p-code type of the complete multi-precision valueext- the kind of extension to applyscope- a scope for generating temporary local storageslack- the number of additional, more significant, elements to allocate in the array- Returns:
- the emitter typed with the resulting stack, i.e., having the ref pushed onto it
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genLoadToBool
<N extends Emitter.Next> Emitter<Emitter.Ent<N,Types.TInt>> genLoadToBool(Emitter<N> em, JitCodeGenerator<?> gen) Emit bytecode to load the varnode's value, interpreted as a boolean, as an integer onto the JVM stack.- Type Parameters:
N- the incoming stack- Parameters:
em- the emitter typed with the incoming stackgen- the code generator- Returns:
- the emitter typed with the resulting stack, i.e., having the int boolean pushed onto it
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genStoreFromStack
<FT extends Types.BPrim<?>,FJT extends JitType.SimpleJitType<FT, Emitter<N1> genStoreFromStackFJT>, N1 extends Emitter.Next, N0 extends Emitter.Ent<N1, FT>> (Emitter<N0> em, JitCodeGenerator<?> gen, FJT type, Opnd.Ext ext, Scope scope) Emit bytecode to store a value into a variable from the JVM stack.- Type Parameters:
FT- the JVM type of the value on the stackFJT- the p-code type of the value on the stackN1- the tail of the incoming stackN0- the incoming stack having the value to store on top- Parameters:
em- the emitter typed with the incoming stackgen- the code generatortype- the p-code type of the value on the stackext- the kind of extension to applyscope- a scope for generating temporary local storage- Returns:
- the emitter typed with the resulting stack, i.e., having popped the value
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genStoreFromOpnd
<N extends Emitter.Next> Emitter<N> genStoreFromOpnd(Emitter<N> em, JitCodeGenerator<?> gen, Opnd<JitType.MpIntJitType> opnd, Opnd.Ext ext, Scope scope) Emit bytecode to store a varnode's value from several locals.- Type Parameters:
N- the incoming stack- Parameters:
em- the emitter typed with the incoming stackgen- the code generatoropnd- the operand whose locals contain the value to be storedext- the kind of extension to applyscope- a scope for generating temporary local storage- Returns:
- the emitter typed with the incoming stack
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genStoreFromArray
<N1 extends Emitter.Next,N0 extends Emitter.Ent<N1, Emitter<N1> genStoreFromArrayTypes.TRef<int[]>>> (Emitter<N0> em, JitCodeGenerator<?> gen, JitType.MpIntJitType type, Opnd.Ext ext, Scope scope) Emit bytecode to store a varnode's value from an array of integer legs, in little endian order- Type Parameters:
N1- the tail of the incoming stackN0- the incoming stack having the array ref on top- Parameters:
em- the emitter typed with the incoming stackgen- the code generatortype- the p-code type of the value on the stackext- the kind of extension to applyscope- a scope for generating temporary local storage- Returns:
- the emitter typed with the resulting stack, i.e., having popped the array
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subpiece
Create a handler for aPcodeOp.SUBPIECEof a value.To implement
subpiece, we could load the entire varnode and then extract the designated portion. Or, we could load only the designated portion, averting any code and execution cost of loading the un-designated portions. We accomplish this by re-writing the subpiece op and a load of the sub-varnode.- Parameters:
endian- the endianness of the emulation targetbyteOffset- the number of least-significant bytes to removemaxByteSize- the maximum size of the resulting variable. In general, a subpiece should never exceed the size of the parent varnode, but if it does, this will truncate that excess.- Returns:
- the resulting subpiece handler
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