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Restructured code in new packages
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parent
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@ -4,9 +4,9 @@ import dk.camelot64.kickc.asm.AsmProgram;
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import dk.camelot64.kickc.icl.*;
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import dk.camelot64.kickc.parser.KickCLexer;
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import dk.camelot64.kickc.parser.KickCParser;
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import dk.camelot64.kickc.passes.*;
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import org.antlr.v4.runtime.*;
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import java.io.IOException;
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import java.util.ArrayList;
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import java.util.List;
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@ -1,4 +1,4 @@
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc;
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/** Parser for converting literal numbers to the corresponding Java Integer/Double */
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public class NumberParser {
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@ -1,7 +1,6 @@
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Features
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- Move the main code into a main() function, and disallow code outside functions. The main function per default has no parameters and exits with RTS.
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- Add a for loop for(init;condition;increment) {stmt} -> { init; do { stmt; increment } while (condition) }
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- Implement Register Allocation (that utilize real registers - and non-zeropage memory)
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- Add Fixed Point number types
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- Add imports
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- Add structs
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@ -13,9 +12,27 @@ Features
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- Add an export keyword ensuring that a function is generated even if it is never called. Maybe export can be handled by generating a call that can be used as stub.
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- Add inline ASM (maybe?)
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- Handle long branches
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- Allow complex array expressions in lValues eg. (SCREEN+$100)[idx]
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+ Create a proper main function for the compiler
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+ Add ++/-- incrementing/decrementing operators.
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Register Allocation
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- Matrix Phi operation (instead of separate statements)
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- Safe-Copy based SSA deconstruction
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- Optimize phi transitions by ensuring that identical phi-transitions with regards to register allocation are collected into a single transition.
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- Optimize by finding optimal sequence for multiple phi assignments in entry-segments.
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- Phi Lifting
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- Interval Analysis (variable liveness intervals)
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- PhiLifting & PhiMemCoalesce (http://compilers.cs.ucla.edu/fernando/projects/soc/reports/short_tech.pdf)
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- ComputeLoopNestDepth(b) - Assign loop nesting levels to blocks.
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- ComputeRegisterPreference(v), ComputeWeight(v)
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- CalculateClobbering(i)
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- Maybe support several fragements for the same operation with different cost and clobbering profiles.
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- Register types: A, X, Y, ZP, (memory).
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- Maybe register preference should also incorporate the types of operations that can be effectively performed with the register? (Maybe based on fragment cost?)
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- Implement a register allocation (coloring) algorithm using by liveness intervals, preferences, weights & clobbering information.
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- Optimize register allocation by combining with knowledge of ASM program cost (bytes/cycles) and different ASM fragments with different clobbering.
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Process/Code Structure Improvement
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- Make each phase return a separate object graph (allowing for keeeping the history in memory & performing rollbacks)
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- Refactor Expression Operator Implementation & Evaluation into one class per operator
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@ -31,10 +48,8 @@ Testing
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+ Test the ASM program output resulting from compiling specific KC program input.
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Optimizations
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- Optimize phi transitions by ensuring that identical phi-transitions with regards to register allocation are collected into a single transition.
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- Optimize register allocation by combining with knowledge of ASM program cost (bytes/cycles) and different ASM fragments with different clobbering.
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- Optimize by finding optimal sequence for multiple phi assignments in entry-segments.
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- Optimize by allowing resequencing of statements and phi assignemtns in a final phase. Perhaps by converting phi statements to "normal" statements and using some optimization step.
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- This phase could also help simplify LDA xx, CMP#0, BNE by expressing these in a language where CMP can be eliminated before.
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Usages
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- Implement library for memory allocation in main memory
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@ -1,5 +1,6 @@
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package dk.camelot64.kickc.asm;
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import dk.camelot64.kickc.NumberParser;
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import dk.camelot64.kickc.asm.parser.Asm6502BaseVisitor;
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import dk.camelot64.kickc.asm.parser.Asm6502Lexer;
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import dk.camelot64.kickc.asm.parser.Asm6502Parser;
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@ -9,7 +10,6 @@ import org.antlr.v4.runtime.*;
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import java.io.IOException;
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import java.io.InputStream;
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import java.net.URL;
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import java.util.HashMap;
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import java.util.LinkedHashMap;
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import java.util.Map;
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@ -1,6 +1,6 @@
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package dk.camelot64.kickc.asm;
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import dk.camelot64.kickc.icl.NumberParser;
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import dk.camelot64.kickc.NumberParser;
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import java.util.ArrayList;
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import java.util.Arrays;
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@ -1,4 +1,7 @@
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.asm;
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import dk.camelot64.kickc.icl.PointerDereference;
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import dk.camelot64.kickc.icl.RegisterAllocation;
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/** A dereferenced ZP pointer to a byte */
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public class PointerDereferenceRegisterZpByte implements PointerDereference {
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@ -16,7 +16,13 @@ public class ConstantInteger implements Constant {
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}
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public SymbolType getType() {
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return Pass1TypeInference.inferType(this);
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SymbolType type;
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if (getNumber() < 256) {
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type = SymbolTypeBasic.BYTE;
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} else {
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type = SymbolTypeBasic.WORD;
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}
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return type;
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}
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@Override
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@ -7,7 +7,6 @@ import java.util.*;
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public class ControlFlowGraph {
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private Map<Symbol, ControlFlowBlock> blocks;
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private ControlFlowBlock firstBlock;
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private List<ControlFlowBlock> sequence;
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@ -1,5 +1,7 @@
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.NumberParser;
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import dk.camelot64.kickc.icl.*;
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import dk.camelot64.kickc.parser.KickCBaseVisitor;
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import dk.camelot64.kickc.parser.KickCParser;
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import org.antlr.v4.runtime.tree.TerminalNode;
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@ -1,4 +1,6 @@
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.icl.*;
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import java.util.LinkedHashMap;
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import java.util.Map;
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@ -1,6 +1,7 @@
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.CompileLog;
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import dk.camelot64.kickc.icl.*;
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import java.util.LinkedHashMap;
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import java.util.Map;
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@ -1,6 +1,8 @@
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.CompileLog;
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import dk.camelot64.kickc.NumberParser;
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import dk.camelot64.kickc.icl.*;
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import dk.camelot64.kickc.parser.KickCBaseVisitor;
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import dk.camelot64.kickc.parser.KickCParser;
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import org.antlr.v4.runtime.ParserRuleContext;
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@ -1,4 +1,6 @@
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.icl.*;
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import java.util.List;
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.icl.*;
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/** Pass that modifies a control flow graph to call procedures by passing return value through registers */
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public class Pass1ProcedureCallsReturnValue extends ControlFlowGraphCopyVisitor {
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.icl.*;
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import java.util.Stack;
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@ -148,11 +150,7 @@ public class Pass1TypeInference {
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type = rSymbol.getType();
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} else if (rValue instanceof ConstantInteger) {
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ConstantInteger rInt = (ConstantInteger) rValue;
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if (rInt.getNumber() < 256) {
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type = SymbolTypeBasic.BYTE;
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} else {
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type = SymbolTypeBasic.WORD;
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}
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return rInt.getType();
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} else if (rValue instanceof ConstantString) {
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type = SymbolTypeBasic.STRING;
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} else if (rValue instanceof ConstantBool) {
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.CompileLog;
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import dk.camelot64.kickc.icl.*;
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import java.util.*;
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.icl.*;
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/** Assert that all referenced blocks exist in the program */
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public class Pass2AssertBlocks extends Pass2SsaAssertion {
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.icl.*;
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import java.util.HashSet;
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.CompileLog;
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import dk.camelot64.kickc.icl.*;
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import java.util.ArrayList;
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import java.util.List;
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.CompileLog;
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import dk.camelot64.kickc.icl.*;
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import java.util.HashMap;
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import java.util.Map;
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/**
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.CompileLog;
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import dk.camelot64.kickc.icl.*;
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import java.util.HashMap;
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import java.util.LinkedHashMap;
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import java.util.Map;
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.CompileLog;
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import dk.camelot64.kickc.icl.*;
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import java.util.*;
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.CompileLog;
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import dk.camelot64.kickc.icl.*;
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import java.util.HashMap;
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import java.util.LinkedHashMap;
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import java.util.Map;
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.CompileLog;
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import dk.camelot64.kickc.icl.ControlFlowGraph;
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import dk.camelot64.kickc.icl.ControlFlowGraphBaseVisitor;
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import dk.camelot64.kickc.icl.Scope;
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import dk.camelot64.kickc.icl.StatementPhi;
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import java.util.Iterator;
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.icl.ControlFlowGraph;
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import dk.camelot64.kickc.icl.Scope;
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/** Assertion checking that a pass 2 representation of the program is consistent */
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public abstract class Pass2SsaAssertion {
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.CompileLog;
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import dk.camelot64.kickc.icl.*;
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import java.util.*;
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.icl.ControlFlowBlock;
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import dk.camelot64.kickc.icl.ControlFlowGraph;
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import dk.camelot64.kickc.icl.Scope;
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import java.util.ArrayList;
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import java.util.List;
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.asm.*;
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import dk.camelot64.kickc.icl.*;
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import java.util.*;
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.icl.*;
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/**
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* Register Allocation for variables
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.CompileLog;
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import dk.camelot64.kickc.asm.AsmLine;
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.CompileLog;
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import dk.camelot64.kickc.asm.AsmInstruction;
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package dk.camelot64.kickc.icl;
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package dk.camelot64.kickc.passes;
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import dk.camelot64.kickc.CompileLog;
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import dk.camelot64.kickc.asm.*;
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