001/* 002 * Copyright (c) 2012, Oracle and/or its affiliates. All rights reserved. 003 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. 004 * 005 * This code is free software; you can redistribute it and/or modify it 006 * under the terms of the GNU General Public License version 2 only, as 007 * published by the Free Software Foundation. 008 * 009 * This code is distributed in the hope that it will be useful, but WITHOUT 010 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or 011 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License 012 * version 2 for more details (a copy is included in the LICENSE file that 013 * accompanied this code). 014 * 015 * You should have received a copy of the GNU General Public License version 016 * 2 along with this work; if not, write to the Free Software Foundation, 017 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. 018 * 019 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA 020 * or visit www.oracle.com if you need additional information or have any 021 * questions. 022 */ 023package com.oracle.graal.replacements; 024 025import java.io.*; 026 027import jdk.internal.jvmci.meta.*; 028 029import com.oracle.graal.graph.Node.ConstantNodeParameter; 030import com.oracle.graal.graph.Node.NodeIntrinsic; 031import com.oracle.graal.nodes.extended.*; 032import com.oracle.graal.compiler.common.spi.*; 033 034//JaCoCo Exclude 035 036/** 037 * Provides {@link PrintStream}-like logging facility. 038 */ 039public final class Log { 040 041 public static final ForeignCallDescriptor LOG_PRIMITIVE = new ForeignCallDescriptor("logPrimitive", void.class, int.class, long.class, boolean.class); 042 public static final ForeignCallDescriptor LOG_OBJECT = new ForeignCallDescriptor("logObject", void.class, Object.class, int.class); 043 public static final ForeignCallDescriptor LOG_PRINTF = new ForeignCallDescriptor("logPrintf", void.class, Object.class, long.class, long.class, long.class); 044 045 // Note: Must be kept in sync with constants in jvmciRuntime.hpp 046 private static final int LOG_OBJECT_NEWLINE = 0x01; 047 private static final int LOG_OBJECT_STRING = 0x02; 048 private static final int LOG_OBJECT_ADDRESS = 0x04; 049 050 @NodeIntrinsic(ForeignCallNode.class) 051 private static native void log(@ConstantNodeParameter ForeignCallDescriptor logObject, Object object, int flags); 052 053 @NodeIntrinsic(ForeignCallNode.class) 054 private static native void log(@ConstantNodeParameter ForeignCallDescriptor logPrimitive, int typeChar, long value, boolean newline); 055 056 @NodeIntrinsic(ForeignCallNode.class) 057 private static native void printf(@ConstantNodeParameter ForeignCallDescriptor logPrintf, String format, long v1, long v2, long v3); 058 059 public static void print(boolean value) { 060 log(LOG_PRIMITIVE, Kind.Boolean.getTypeChar(), value ? 1L : 0L, false); 061 } 062 063 public static void print(byte value) { 064 log(LOG_PRIMITIVE, Kind.Byte.getTypeChar(), value, false); 065 } 066 067 public static void print(char value) { 068 log(LOG_PRIMITIVE, Kind.Char.getTypeChar(), value, false); 069 } 070 071 public static void print(short value) { 072 log(LOG_PRIMITIVE, Kind.Short.getTypeChar(), value, false); 073 } 074 075 public static void print(int value) { 076 log(LOG_PRIMITIVE, Kind.Int.getTypeChar(), value, false); 077 } 078 079 public static void print(long value) { 080 log(LOG_PRIMITIVE, Kind.Long.getTypeChar(), value, false); 081 } 082 083 /** 084 * Prints a formatted string to the log stream. 085 * 086 * @param format a C style printf format value that can contain at most one conversion specifier 087 * (i.e., a sequence of characters starting with '%'). 088 * @param value the value associated with the conversion specifier 089 */ 090 public static void printf(String format, long value) { 091 printf(LOG_PRINTF, format, value, 0L, 0L); 092 } 093 094 public static void printf(String format, long v1, long v2) { 095 printf(LOG_PRINTF, format, v1, v2, 0L); 096 } 097 098 public static void printf(String format, long v1, long v2, long v3) { 099 printf(LOG_PRINTF, format, v1, v2, v3); 100 } 101 102 public static void print(float value) { 103 if (Float.isNaN(value)) { 104 print("NaN"); 105 } else if (value == Float.POSITIVE_INFINITY) { 106 print("Infinity"); 107 } else if (value == Float.NEGATIVE_INFINITY) { 108 print("-Infinity"); 109 } else { 110 log(LOG_PRIMITIVE, Kind.Float.getTypeChar(), Float.floatToRawIntBits(value), false); 111 } 112 } 113 114 public static void print(double value) { 115 if (Double.isNaN(value)) { 116 print("NaN"); 117 } else if (value == Double.POSITIVE_INFINITY) { 118 print("Infinity"); 119 } else if (value == Double.NEGATIVE_INFINITY) { 120 print("-Infinity"); 121 } else { 122 log(LOG_PRIMITIVE, Kind.Double.getTypeChar(), Double.doubleToRawLongBits(value), false); 123 } 124 } 125 126 public static void print(String value) { 127 log(LOG_OBJECT, value, LOG_OBJECT_STRING); 128 } 129 130 public static void printAddress(Object o) { 131 log(LOG_OBJECT, o, LOG_OBJECT_ADDRESS); 132 } 133 134 public static void printObject(Object o) { 135 log(LOG_OBJECT, o, 0); 136 } 137 138 public static void println(boolean value) { 139 log(LOG_PRIMITIVE, Kind.Boolean.getTypeChar(), value ? 1L : 0L, true); 140 } 141 142 public static void println(byte value) { 143 log(LOG_PRIMITIVE, Kind.Byte.getTypeChar(), value, true); 144 } 145 146 public static void println(char value) { 147 log(LOG_PRIMITIVE, Kind.Char.getTypeChar(), value, true); 148 } 149 150 public static void println(short value) { 151 log(LOG_PRIMITIVE, Kind.Short.getTypeChar(), value, true); 152 } 153 154 public static void println(int value) { 155 log(LOG_PRIMITIVE, Kind.Int.getTypeChar(), value, true); 156 } 157 158 public static void println(long value) { 159 log(LOG_PRIMITIVE, Kind.Long.getTypeChar(), value, true); 160 } 161 162 public static void println(float value) { 163 if (Float.isNaN(value)) { 164 println("NaN"); 165 } else if (value == Float.POSITIVE_INFINITY) { 166 println("Infinity"); 167 } else if (value == Float.NEGATIVE_INFINITY) { 168 println("-Infinity"); 169 } else { 170 log(LOG_PRIMITIVE, Kind.Float.getTypeChar(), Float.floatToRawIntBits(value), true); 171 } 172 } 173 174 public static void println(double value) { 175 if (Double.isNaN(value)) { 176 println("NaN"); 177 } else if (value == Double.POSITIVE_INFINITY) { 178 println("Infinity"); 179 } else if (value == Double.NEGATIVE_INFINITY) { 180 println("-Infinity"); 181 } else { 182 log(LOG_PRIMITIVE, Kind.Double.getTypeChar(), Double.doubleToRawLongBits(value), true); 183 } 184 } 185 186 public static void println(String value) { 187 log(LOG_OBJECT, value, LOG_OBJECT_NEWLINE | LOG_OBJECT_STRING); 188 } 189 190 public static void printlnAddress(Object o) { 191 log(LOG_OBJECT, o, LOG_OBJECT_NEWLINE | LOG_OBJECT_ADDRESS); 192 } 193 194 public static void printlnObject(Object o) { 195 log(LOG_OBJECT, o, LOG_OBJECT_NEWLINE); 196 } 197 198 public static void println() { 199 println(""); 200 } 201}