562 lines
21 KiB
Java
Raw Normal View History

/*
* Copyright 2018 - 2019 Volker Berlin (i-net software)
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package de.inetsoftware.jwebassembly.module;
import java.io.IOException;
import java.util.ArrayList;
import java.util.List;
import java.util.function.Function;
import javax.annotation.Nonnegative;
import javax.annotation.Nonnull;
import javax.annotation.Nullable;
import de.inetsoftware.classparser.ClassFile;
import de.inetsoftware.classparser.LocalVariableTable;
import de.inetsoftware.classparser.Member;
import de.inetsoftware.classparser.MethodInfo;
import de.inetsoftware.jwebassembly.WasmException;
import de.inetsoftware.jwebassembly.javascript.NonGC;
import de.inetsoftware.jwebassembly.module.WasmInstruction.Type;
import de.inetsoftware.jwebassembly.wasm.AnyType;
2018-12-03 21:09:22 +01:00
import de.inetsoftware.jwebassembly.wasm.ArrayOperator;
import de.inetsoftware.jwebassembly.wasm.NamedStorageType;
2018-12-03 21:09:22 +01:00
import de.inetsoftware.jwebassembly.wasm.NumericOperator;
2018-12-05 22:14:26 +01:00
import de.inetsoftware.jwebassembly.wasm.StructOperator;
2018-12-03 21:09:22 +01:00
import de.inetsoftware.jwebassembly.wasm.ValueType;
2019-04-27 21:14:55 +02:00
import de.inetsoftware.jwebassembly.wasm.ValueTypeParser;
import de.inetsoftware.jwebassembly.wasm.VariableOperator;
2018-12-03 21:09:22 +01:00
import de.inetsoftware.jwebassembly.wasm.WasmBlockOperator;
import de.inetsoftware.jwebassembly.wasm.WasmOptions;
/**
* Base class for Code Building.
*
* @author Volker Berlin
*/
public abstract class WasmCodeBuilder {
private final LocaleVariableManager localVariables = new LocaleVariableManager();
private final List<WasmInstruction> instructions = new ArrayList<>();
private TypeManager types;
private FunctionManager functions;
private WasmOptions options;
private StringManager strings;
/**
* Initialize the code builder;
*
* @param types
* the type manager
* @param functions
* the function manager
* @param strings
* the string manager
* @param options
* compiler properties
*/
void init( TypeManager types, FunctionManager functions, StringManager strings, WasmOptions options ) {
this.localVariables.init( types );
this.types = types;
this.functions = functions;
this.strings = strings;
this.options = options;
}
/**
* Get the list of instructions
*
* @return the list
*/
List<WasmInstruction> getInstructions() {
return instructions;
}
/**
* Check if the last instruction is a return instruction
*
* @return true, if a return
*/
boolean isEndsWithReturn() {
WasmInstruction instr = instructions.get( instructions.size() - 1 );
if( instr.getType() == Type.Block ) {
return ((WasmBlockInstruction)instr).getOperation() == WasmBlockOperator.RETURN;
}
return false;
}
/**
* We need one value from the stack inside of a block. We need to find the WasmInstruction on which the block can
* start. If this a function call or numeric expression this can be complex to find the right point.
*
* @param count
* the count of values on the stack back. 1 means the last value. 2 means the penultimate value.
* @return the code position that push the last instruction
*/
int findPushInstructionCodePosition( int count ) {
return findPushInstruction( count, true );
}
/**
* We need one value from the stack inside of a block. We need to find the WasmInstruction on which the block can
* start. If this a function call or numeric expression this can be complex to find the right point.
*
* @param count
* the count of values on the stack back. 1 means the last value. 2 means the penultimate value.
* @param codePosition
* true, get the code position; false, get the index in the instructions
* @return the code position that push the last instruction
*/
private int findPushInstruction( int count, boolean codePosition ) {
int valueCount = 0;
List<WasmInstruction> instructions = this.instructions;
for( int i = instructions.size() - 1; i >= 0; i-- ) {
WasmInstruction instr = instructions.get( i );
AnyType valueType = instr.getPushValueType();
if( valueType != null ) {
valueCount++;
}
valueCount -= instr.getPopCount();
if( valueCount == count ) {
return codePosition ? instr.getCodePosition() : i;
}
}
throw new WasmException( "Start position not found", -1 ); // should never occur
}
/**
* We need the value type from the stack.
*
* @param count
* the count of values on the stack back. 1 means the last value. 2 means the penultimate value.
* @return the type of the last push value
*/
@Nonnull
AnyType findValueTypeFromStack( int count ) {
int valueCount = 0;
List<WasmInstruction> instructions = this.instructions;
for( int i = instructions.size() - 1; i >= 0; i-- ) {
WasmInstruction instr = instructions.get( i );
AnyType valueType = instr.getPushValueType();
if( valueType != null ) {
if( ++valueCount == count ) {
return valueType;
}
}
valueCount -= instr.getPopCount();
}
throw new WasmException( "Push Value not found", -1 ); // should never occur
}
/**
* Get the data types of the local variables. The value is only valid until the next call.
*
* @param paramCount
* the count of method parameter which should be exclude
* @return the reused list with fresh values
*/
List<AnyType> getLocalTypes( int paramCount ) {
return localVariables.getLocalTypes( paramCount );
}
/**
* Get the name of the variable or null if no name available
*
* @param idx
* the wasm variable index
* @return the name
*/
String getLocalName( int idx ) {
return localVariables.getLocalName( idx );
}
/**
* Get the slot of the temporary variable.
*
* @param valueType
* the valueType for the variable
* @param startCodePosition
* the start of the Java code position
* @param endCodePosition
* the end of the Java code position
* @return the slot
*/
int getTempVariable( AnyType valueType, int startCodePosition, int endCodePosition ) {
return localVariables.getTempVariable( valueType, startCodePosition, endCodePosition );
}
/**
* Get the type manager.
*
* @return the type manager
*/
protected TypeManager getTypeManager() {
return types;
}
/**
* Reset the code builder.
*
* @param variableTable
* variable table of the Java method.
* @param method
* the method with signature as fallback for a missing variable table
*/
protected void reset( LocalVariableTable variableTable, MethodInfo method ) {
instructions.clear();
localVariables.reset( variableTable, method );
}
/**
* Calculate the index of the variables
*/
protected void calculateVariables() {
localVariables.calculate();
}
/**
* Create a WasmLoadStoreInstruction.
*
* @param valueType
* the value type
* @param load
* true: if load
* @param javaIdx
* the memory/slot index of the variable in Java byte code
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
*/
@Nonnull
protected void addLoadStoreInstruction( AnyType valueType, boolean load, @Nonnegative int javaIdx, int javaCodePos, int lineNumber ) {
localVariables.use( valueType, javaIdx, javaCodePos );
instructions.add( new WasmLoadStoreInstruction( load, javaIdx, localVariables, javaCodePos, lineNumber ) );
}
/**
2019-11-03 19:00:49 +01:00
* Create a WasmLoadStoreInstruction local.get/local.set.
*
* @param op
* the operation
* @param wasmIdx
* the index of the variable
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
*/
@Nonnull
protected void addLocalInstruction( VariableOperator op, @Nonnegative int wasmIdx, int javaCodePos, int lineNumber ) {
2019-11-12 20:47:57 +01:00
switch( op ) {
case set:
case tee:
AnyType valueType = findValueTypeFromStack( 1 );
localVariables.useIndex( valueType, wasmIdx );
}
instructions.add( new WasmLocalInstruction( op, wasmIdx, javaCodePos, lineNumber ) );
}
/**
* Add a global instruction
*
* @param load
* true: if load
* @param ref
* reference to a static field
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
*/
protected void addGlobalInstruction( boolean load, Member ref, int javaCodePos, int lineNumber ) {
2019-04-27 21:14:55 +02:00
FunctionName name = new FunctionName( ref );
AnyType type = new ValueTypeParser( ref.getType(), types ).next();
instructions.add( new WasmGlobalInstruction( load, name, type, javaCodePos, lineNumber ) );
}
2019-11-03 19:00:49 +01:00
/**
* Add a WasmTableInstruction table.get/table.set.
*
* @param load
* true: if load
* @param idx
* the index of the table
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
*/
@Nonnull
protected void addTableInstruction( boolean load, @Nonnegative int idx, int javaCodePos, int lineNumber ) {
instructions.add( new WasmTableInstruction( load, idx, javaCodePos, lineNumber ) );
}
/**
* Add a constant instruction.
*
* @param value
* the value
* @param valueType
* the value type
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
*/
protected void addConstInstruction( Number value, ValueType valueType, int javaCodePos, int lineNumber ) {
instructions.add( new WasmConstInstruction( value, valueType, javaCodePos, lineNumber ) );
}
/**
* Add a constant instruction with unknown value type.
*
* @param value
* the value
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
*/
protected void addConstInstruction( Object value, int javaCodePos, int lineNumber ) {
if( value.getClass() == String.class ) {
Integer id = strings.get( value );
if( id == null ) {
strings.put( (String)value, id = strings.size() );
}
FunctionName name = getNonGC( "stringConstant", lineNumber );
2019-11-03 19:00:49 +01:00
instructions.add( new WasmConstInstruction( id, ValueType.i32, javaCodePos, lineNumber ) );
addCallInstruction( name, javaCodePos, lineNumber );
} else {
instructions.add( new WasmConstInstruction( (Number)value, javaCodePos, lineNumber ) );
}
}
/**
* Add a numeric operation instruction
*
* @param numOp
* the operation
* @param valueType
* the value type
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
2019-09-08 21:45:28 +02:00
* @return the added instruction
*/
2019-09-08 21:45:28 +02:00
protected WasmNumericInstruction addNumericInstruction( @Nullable NumericOperator numOp, @Nullable ValueType valueType, int javaCodePos, int lineNumber ) {
WasmNumericInstruction numeric = new WasmNumericInstruction( numOp, valueType, javaCodePos, lineNumber );
instructions.add( numeric );
if( !options.useGC() && numOp == NumericOperator.ref_eq ) {
2019-09-10 21:41:50 +02:00
functions.markAsNeeded( options.ref_eq = getNonGC( "ref_eq", lineNumber ), true );
2019-09-08 21:45:28 +02:00
}
return numeric;
}
/**
* Add a value convert/cast instruction.
*
* @param conversion
* the conversion
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
*/
protected void addConvertInstruction( ValueTypeConvertion conversion, int javaCodePos, int lineNumber ) {
instructions.add( new WasmConvertInstruction( conversion, javaCodePos, lineNumber ) );
}
/**
* Add a static function call.
*
* @param name
* the function name that should be called
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
*/
protected void addCallInstruction( FunctionName name, int javaCodePos, int lineNumber ) {
WasmCallInstruction instruction = new WasmCallInstruction( name, javaCodePos, lineNumber, types );
if( "<init>".equals( name.methodName ) ) {
Function<String, Object> importAnannotation = functions.getImportAnannotation( name );
if( importAnannotation != null ) {
// if there a JavaScript replacement for a constructor we need also replace the create instance instruction
List<WasmInstruction> instructions = this.instructions;
for( int i = instructions.size() - 1; i >= 0; i-- ) {
WasmInstruction instr = instructions.get( i );
if( instr.getType() == Type.Struct ) {
WasmStructInstruction struct = (WasmStructInstruction)instr;
if( struct.getOperator() == StructOperator.NEW_DEFAULT ) {
instructions.remove( i ); // NEW_DEFAULT
instructions.remove( i ); // SET temp from a dup of the instance reference
instructions.remove( i ); // GET temp from a dup of the instance reference
instructions.remove( i ); // GET temp from a dup of the instance reference
break;
}
}
}
// The new signature need a return value. The <init> of Java has ever a void return value
String signature = name.signature;
signature = signature.substring( 0, signature.length() - 1 ) + "Ljava/lang/Object;";
FunctionName name2 = new ImportSyntheticFunctionName( "String", "init", signature, importAnannotation );
instruction = new WasmCallInstruction( name2, javaCodePos, lineNumber, types );
}
}
instructions.add( instruction );
}
2019-05-14 21:47:49 +02:00
/**
* Add a virtual/method function call.
*
* @param name
* the function name that should be called
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
*/
protected void addCallVirtualInstruction( FunctionName name, int javaCodePos, int lineNumber ) {
WasmCallIndirectInstruction virtualCall = new WasmCallIndirectInstruction( name, javaCodePos, lineNumber, types, options );
int count = virtualCall.getPopCount();
int idx = findPushInstruction( count, false );
WasmInstruction instr = instructions.get( idx );
int varIndex = -1;
if( instr.getType() == Type.Local ) {
WasmLocalInstruction local1 = (WasmLocalInstruction)instr;
if( local1.getOperator() == VariableOperator.get ) {
varIndex = local1.getIndex();
}
}
if( varIndex < 0 ) {
varIndex = getTempVariable( virtualCall.getThisType(), instr.getCodePosition(), javaCodePos + 1 );
idx = findPushInstruction( count - 1, false );
instructions.add( idx, new DupThis( virtualCall, varIndex, javaCodePos ) );
}
virtualCall.setVariableIndexOfThis( varIndex );
instructions.add( virtualCall );
2019-05-14 21:47:49 +02:00
}
/**
* Add a block operation.
*
* @param op
* the operation
* @param data
* extra data for some operations
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
*/
protected void addBlockInstruction( WasmBlockOperator op, @Nullable Object data, int javaCodePos, int lineNumber ) {
instructions.add( new WasmBlockInstruction( op, data, javaCodePos, lineNumber ) );
}
/**
* Add a no operation to the instruction list as marker on the code position. This instruction will not be write to
* the output.
*
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
*/
protected void addNopInstruction( int javaCodePos, int lineNumber ) {
instructions.add( new WasmNopInstruction( javaCodePos, lineNumber ) );
}
2018-12-02 19:54:59 +01:00
2019-09-08 21:45:28 +02:00
/**
* Get a non GC polyfill function.
* @param name the function name
* @param lineNumber the line number for a possible error
* @return the function name
*/
private FunctionName getNonGC( String name, int lineNumber ) {
try {
ClassFile classFile = ClassFile.get( NonGC.class.getName().replace( '.', '/' ), getClass().getClassLoader() );
for( MethodInfo method : classFile.getMethods() ) {
if( name.equals( method.getName() ) ) {
return new FunctionName( method );
}
}
} catch( IOException ex ) {
throw WasmException.create( ex, lineNumber );
}
throw new WasmException( "Not implemented NonGC polyfill function: " + name, lineNumber );
}
2018-12-02 19:54:59 +01:00
/**
* Add an array operation to the instruction list as marker on the code position.
*
* @param op
* the operation
* @param type
* the array type
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
2018-12-02 19:54:59 +01:00
*/
protected void addArrayInstruction( ArrayOperator op, AnyType type, int javaCodePos, int lineNumber ) {
if( options.useGC() ) {
2019-08-27 20:41:00 +02:00
instructions.add( new WasmArrayInstruction( op, type, types, javaCodePos, lineNumber ) );
} else {
2019-09-08 21:45:28 +02:00
if( type.getCode() >= 0 ) {
type = ValueType.anyref;
}
2019-09-08 21:45:28 +02:00
String api = "array_" + op.toString().toLowerCase() + "_" + type;
FunctionName name = getNonGC( api, lineNumber );
addCallInstruction( name, javaCodePos, lineNumber );
}
2018-12-02 19:54:59 +01:00
}
2018-12-05 22:14:26 +01:00
/**
* Add an array operation to the instruction list as marker on the code position.
*
* @param op
* the operation
* @param typeName
* the type name
2019-01-13 11:36:07 +01:00
* @param fieldName
* the name of field if needed for the operation
2018-12-05 22:14:26 +01:00
* @param javaCodePos
* the code position/offset in the Java method
* @param lineNumber
* the line number in the Java source code
2018-12-05 22:14:26 +01:00
*/
2019-04-24 19:54:30 +02:00
protected void addStructInstruction( StructOperator op, @Nonnull String typeName, @Nullable NamedStorageType fieldName, int javaCodePos, int lineNumber ) {
WasmStructInstruction structInst = new WasmStructInstruction( op, typeName, fieldName, javaCodePos, lineNumber, types );
instructions.add( structInst );
if( !options.useGC() ) {
SyntheticFunctionName name = structInst.createNonGcFunction();
if( name != null ) {
functions.markAsNeeded( name, true );
functions.markAsImport( name, name.getAnnotation() );
}
}
2018-12-05 22:14:26 +01:00
}
}