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package com.oracle.truffle.sl;

import static com.oracle.truffle.api.CompilerDirectives.shouldNotReachHere;

import com.oracle.truffle.api.CompilerDirectives.TruffleBoundary;
import com.oracle.truffle.api.exception.AbstractTruffleException;
import com.oracle.truffle.api.interop.InteropLibrary;
import com.oracle.truffle.api.interop.UnsupportedMessageException;
import com.oracle.truffle.api.nodes.Node;
import com.oracle.truffle.api.nodes.NodeInfo;
import com.oracle.truffle.api.source.SourceSection;
import com.oracle.truffle.sl.runtime.SLLanguageView;

SL does not need a sophisticated error checking and reporting mechanism, so all unexpected conditions just abort execution. This exception class is used when we abort from within the SL implementation.
/** * SL does not need a sophisticated error checking and reporting mechanism, so all unexpected * conditions just abort execution. This exception class is used when we abort from within the SL * implementation. */
public class SLException extends AbstractTruffleException { private static final long serialVersionUID = -6799734410727348507L; private static final InteropLibrary UNCACHED_LIB = InteropLibrary.getFactory().getUncached(); @TruffleBoundary public SLException(String message, Node location) { super(message, location); }
Provides a user-readable message for run-time type errors. SL is strongly typed, i.e., there are no automatic type conversions of values.
/** * Provides a user-readable message for run-time type errors. SL is strongly typed, i.e., there * are no automatic type conversions of values. */
@TruffleBoundary public static SLException typeError(Node operation, Object... values) { StringBuilder result = new StringBuilder(); result.append("Type error"); if (operation != null) { SourceSection ss = operation.getEncapsulatingSourceSection(); if (ss != null && ss.isAvailable()) { result.append(" at ").append(ss.getSource().getName()).append(" line ").append(ss.getStartLine()).append(" col ").append(ss.getStartColumn()); } } result.append(": operation"); if (operation != null) { NodeInfo nodeInfo = SLLanguage.lookupNodeInfo(operation.getClass()); if (nodeInfo != null) { result.append(" \"").append(nodeInfo.shortName()).append("\""); } } result.append(" not defined for"); String sep = " "; for (int i = 0; i < values.length; i++) { /* * For primitive or foreign values we request a language view so the values are printed * from the perspective of simple language and not another language. Since this is a * rather rarely invoked exceptional method, we can just create the language view for * primitive values and then conveniently request the meta-object and display strings. * Using the language view for core builtins like the typeOf builtin might not be a good * idea for performance reasons. */ Object value = SLLanguageView.forValue(values[i]); result.append(sep); sep = ", "; if (value == null) { result.append("ANY"); } else { InteropLibrary valueLib = InteropLibrary.getFactory().getUncached(value); if (valueLib.hasMetaObject(value) && !valueLib.isNull(value)) { String qualifiedName; try { qualifiedName = UNCACHED_LIB.asString(UNCACHED_LIB.getMetaQualifiedName(valueLib.getMetaObject(value))); } catch (UnsupportedMessageException e) { throw shouldNotReachHere(e); } result.append(qualifiedName); result.append(" "); } if (valueLib.isString(value)) { result.append("\""); } result.append(valueLib.toDisplayString(value)); if (valueLib.isString(value)) { result.append("\""); } } } return new SLException(result.toString(), operation); } }