1 | // prims.cc - Code for core of runtime environment.
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2 |
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3 | /* Copyright (C) 1998, 1999, 2000, 2001, 2002 Free Software Foundation
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4 |
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5 | This file is part of libgcj.
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6 |
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7 | This software is copyrighted work licensed under the terms of the
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8 | Libgcj License. Please consult the file "LIBGCJ_LICENSE" for
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9 | details. */
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10 |
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11 | #include <config.h>
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12 | #include <platform.h>
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13 |
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14 | #include <stdlib.h>
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15 | #include <stdarg.h>
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16 | #include <stdio.h>
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17 | #include <string.h>
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18 | #include <signal.h>
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19 |
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20 | #ifdef HAVE_UNISTD_H
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21 | #include <unistd.h>
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22 | #endif
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23 |
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24 | #include <gcj/cni.h>
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25 | #include <jvm.h>
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26 | #include <java-signal.h>
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27 | #include <java-threads.h>
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28 |
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29 | #ifdef ENABLE_JVMPI
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30 | #include <jvmpi.h>
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31 | #include <java/lang/ThreadGroup.h>
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32 | #endif
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33 |
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34 | #ifndef DISABLE_GETENV_PROPERTIES
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35 | #include <ctype.h>
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36 | #include <java-props.h>
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37 | #define PROCESS_GCJ_PROPERTIES process_gcj_properties()
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38 | #else
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39 | #define PROCESS_GCJ_PROPERTIES
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40 | #endif // DISABLE_GETENV_PROPERTIES
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41 |
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42 | #include <java/lang/Class.h>
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43 | #include <java/lang/ClassLoader.h>
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44 | #include <java/lang/Runtime.h>
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45 | #include <java/lang/String.h>
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46 | #include <java/lang/Thread.h>
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47 | #include <java/lang/ThreadGroup.h>
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48 | #include <java/lang/ArrayIndexOutOfBoundsException.h>
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49 | #include <java/lang/ArithmeticException.h>
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50 | #include <java/lang/ClassFormatError.h>
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51 | #include <java/lang/InternalError.h>
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52 | #include <java/lang/NegativeArraySizeException.h>
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53 | #include <java/lang/NullPointerException.h>
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54 | #include <java/lang/OutOfMemoryError.h>
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55 | #include <java/lang/System.h>
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56 | #include <java/lang/reflect/Modifier.h>
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57 | #include <java/io/PrintStream.h>
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58 | #include <java/lang/UnsatisfiedLinkError.h>
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59 | #include <java/lang/VirtualMachineError.h>
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60 | #include <gnu/gcj/runtime/VMClassLoader.h>
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61 | #include <gnu/gcj/runtime/FinalizerThread.h>
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62 | #include <gnu/gcj/runtime/FirstThread.h>
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63 |
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64 | #ifdef USE_LTDL
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65 | #include <ltdl.h>
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66 | #endif
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67 |
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68 | // We allocate a single OutOfMemoryError exception which we keep
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69 | // around for use if we run out of memory.
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70 | static java::lang::OutOfMemoryError *no_memory;
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71 |
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72 | // Largest representable size_t.
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73 | #define SIZE_T_MAX ((size_t) (~ (size_t) 0))
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74 |
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75 | static const char *no_properties[] = { NULL };
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76 |
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77 | // Properties set at compile time.
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78 | const char **_Jv_Compiler_Properties = no_properties;
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79 |
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80 | // The JAR file to add to the beginning of java.class.path.
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81 | const char *_Jv_Jar_Class_Path;
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82 |
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83 | #ifndef DISABLE_GETENV_PROPERTIES
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84 | // Property key/value pairs.
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85 | property_pair *_Jv_Environment_Properties;
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86 | #endif
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87 |
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88 | // The name of this executable.
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89 | static char *_Jv_execName;
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90 |
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91 | // Stash the argv pointer to benefit native libraries that need it.
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92 | const char **_Jv_argv;
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93 | int _Jv_argc;
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94 |
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95 | #ifdef ENABLE_JVMPI
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96 | // Pointer to JVMPI notification functions.
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97 | void (*_Jv_JVMPI_Notify_OBJECT_ALLOC) (JVMPI_Event *event);
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98 | void (*_Jv_JVMPI_Notify_THREAD_START) (JVMPI_Event *event);
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99 | void (*_Jv_JVMPI_Notify_THREAD_END) (JVMPI_Event *event);
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100 | #endif
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101 | |
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102 |
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103 |
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104 | extern "C" void _Jv_ThrowSignal (jthrowable) __attribute ((noreturn));
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105 |
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106 | // Just like _Jv_Throw, but fill in the stack trace first. Although
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107 | // this is declared extern in order that its name not be mangled, it
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108 | // is not intended to be used outside this file.
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109 | void
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110 | _Jv_ThrowSignal (jthrowable throwable)
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111 | {
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112 | throwable->fillInStackTrace ();
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113 | throw throwable;
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114 | }
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115 |
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116 | #ifdef HANDLE_SEGV
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117 | static java::lang::NullPointerException *nullp;
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118 |
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119 | SIGNAL_HANDLER (catch_segv)
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120 | {
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121 | MAKE_THROW_FRAME (nullp);
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122 | _Jv_ThrowSignal (nullp);
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123 | }
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124 | #endif
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125 |
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126 | static java::lang::ArithmeticException *arithexception;
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127 |
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128 | #ifdef HANDLE_FPE
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129 | SIGNAL_HANDLER (catch_fpe)
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130 | {
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131 | #ifdef HANDLE_DIVIDE_OVERFLOW
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132 | HANDLE_DIVIDE_OVERFLOW;
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133 | #else
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134 | MAKE_THROW_FRAME (arithexception);
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135 | #endif
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136 | _Jv_ThrowSignal (arithexception);
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137 | }
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138 | #endif
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139 |
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140 | |
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141 |
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142 |
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143 | jboolean
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144 | _Jv_equalUtf8Consts (Utf8Const* a, Utf8Const *b)
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145 | {
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146 | int len;
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147 | _Jv_ushort *aptr, *bptr;
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148 | if (a == b)
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149 | return true;
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150 | if (a->hash != b->hash)
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151 | return false;
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152 | len = a->length;
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153 | if (b->length != len)
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154 | return false;
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155 | aptr = (_Jv_ushort *)a->data;
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156 | bptr = (_Jv_ushort *)b->data;
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157 | len = (len + 1) >> 1;
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158 | while (--len >= 0)
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159 | if (*aptr++ != *bptr++)
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160 | return false;
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161 | return true;
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162 | }
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163 |
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164 | /* True iff A is equal to STR.
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165 | HASH is STR->hashCode().
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166 | */
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167 |
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168 | jboolean
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169 | _Jv_equal (Utf8Const* a, jstring str, jint hash)
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170 | {
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171 | if (a->hash != (_Jv_ushort) hash)
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172 | return false;
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173 | jint len = str->length();
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174 | jint i = 0;
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175 | jchar *sptr = _Jv_GetStringChars (str);
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176 | unsigned char* ptr = (unsigned char*) a->data;
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177 | unsigned char* limit = ptr + a->length;
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178 | for (;; i++, sptr++)
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179 | {
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180 | int ch = UTF8_GET (ptr, limit);
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181 | if (i == len)
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182 | return ch < 0;
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183 | if (ch != *sptr)
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184 | return false;
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185 | }
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186 | return true;
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187 | }
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188 |
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189 | /* Like _Jv_equal, but stop after N characters. */
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190 | jboolean
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191 | _Jv_equaln (Utf8Const *a, jstring str, jint n)
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192 | {
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193 | jint len = str->length();
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194 | jint i = 0;
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195 | jchar *sptr = _Jv_GetStringChars (str);
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196 | unsigned char* ptr = (unsigned char*) a->data;
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197 | unsigned char* limit = ptr + a->length;
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198 | for (; n-- > 0; i++, sptr++)
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199 | {
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200 | int ch = UTF8_GET (ptr, limit);
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201 | if (i == len)
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202 | return ch < 0;
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203 | if (ch != *sptr)
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204 | return false;
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205 | }
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206 | return true;
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207 | }
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208 |
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209 | /* Count the number of Unicode chars encoded in a given Ut8 string. */
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210 | int
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211 | _Jv_strLengthUtf8(char* str, int len)
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212 | {
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213 | unsigned char* ptr;
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214 | unsigned char* limit;
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215 | int str_length;
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216 |
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217 | ptr = (unsigned char*) str;
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218 | limit = ptr + len;
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219 | str_length = 0;
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220 | for (; ptr < limit; str_length++)
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221 | {
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222 | if (UTF8_GET (ptr, limit) < 0)
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223 | return (-1);
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224 | }
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225 | return (str_length);
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226 | }
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227 |
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228 | /* Calculate a hash value for a string encoded in Utf8 format.
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229 | * This returns the same hash value as specified or java.lang.String.hashCode.
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230 | */
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231 | static jint
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232 | hashUtf8String (char* str, int len)
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233 | {
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234 | unsigned char* ptr = (unsigned char*) str;
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235 | unsigned char* limit = ptr + len;
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236 | jint hash = 0;
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237 |
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238 | for (; ptr < limit;)
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239 | {
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240 | int ch = UTF8_GET (ptr, limit);
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241 | /* Updated specification from
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242 | http://www.javasoft.com/docs/books/jls/clarify.html. */
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243 | hash = (31 * hash) + ch;
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244 | }
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245 | return hash;
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246 | }
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247 |
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248 | _Jv_Utf8Const *
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249 | _Jv_makeUtf8Const (char* s, int len)
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250 | {
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251 | if (len < 0)
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252 | len = strlen (s);
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253 | Utf8Const* m = (Utf8Const*) _Jv_AllocBytes (sizeof(Utf8Const) + len + 1);
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254 | memcpy (m->data, s, len);
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255 | m->data[len] = 0;
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256 | m->length = len;
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257 | m->hash = hashUtf8String (s, len) & 0xFFFF;
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258 | return (m);
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259 | }
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260 |
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261 | _Jv_Utf8Const *
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262 | _Jv_makeUtf8Const (jstring string)
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263 | {
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264 | jint hash = string->hashCode ();
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265 | jint len = _Jv_GetStringUTFLength (string);
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266 |
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267 | Utf8Const* m = (Utf8Const*)
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268 | _Jv_AllocBytes (sizeof(Utf8Const) + len + 1);
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269 |
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270 | m->hash = hash;
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271 | m->length = len;
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272 |
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273 | _Jv_GetStringUTFRegion (string, 0, string->length (), m->data);
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274 | m->data[len] = 0;
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275 |
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276 | return m;
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277 | }
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278 |
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279 | |
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280 |
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281 |
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282 | #ifdef DEBUG
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283 | void
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284 | _Jv_Abort (const char *function, const char *file, int line,
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285 | const char *message)
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286 | #else
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287 | void
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288 | _Jv_Abort (const char *, const char *, int, const char *message)
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289 | #endif
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290 | {
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291 | #ifdef DEBUG
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292 | fprintf (stderr,
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293 | "libgcj failure: %s\n in function %s, file %s, line %d\n",
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294 | message, function, file, line);
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295 | #else
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296 | fprintf (stderr, "libgcj failure: %s\n", message);
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297 | #endif
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298 | abort ();
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299 | }
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300 |
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301 | static void
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302 | fail_on_finalization (jobject)
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303 | {
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304 | JvFail ("object was finalized");
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305 | }
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306 |
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307 | void
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308 | _Jv_GCWatch (jobject obj)
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309 | {
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310 | _Jv_RegisterFinalizer (obj, fail_on_finalization);
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311 | }
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312 |
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313 | void
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314 | _Jv_ThrowBadArrayIndex(jint bad_index)
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315 | {
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316 | throw new java::lang::ArrayIndexOutOfBoundsException
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317 | (java::lang::String::valueOf (bad_index));
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318 | }
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319 |
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320 | void
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321 | _Jv_ThrowNullPointerException ()
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322 | {
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323 | throw new java::lang::NullPointerException;
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324 | }
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325 |
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326 | // Explicitly throw a no memory exception.
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327 | // The collector calls this when it encounters an out-of-memory condition.
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328 | void _Jv_ThrowNoMemory()
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329 | {
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330 | throw no_memory;
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331 | }
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332 |
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333 | #ifdef ENABLE_JVMPI
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334 | static void
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335 | jvmpi_notify_alloc(jclass klass, jint size, jobject obj)
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336 | {
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337 | // Service JVMPI allocation request.
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338 | if (__builtin_expect (_Jv_JVMPI_Notify_OBJECT_ALLOC != 0, false))
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339 | {
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340 | JVMPI_Event event;
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341 |
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342 | event.event_type = JVMPI_EVENT_OBJECT_ALLOC;
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343 | event.env_id = NULL;
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344 | event.u.obj_alloc.arena_id = 0;
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345 | event.u.obj_alloc.class_id = (jobjectID) klass;
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346 | event.u.obj_alloc.is_array = 0;
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347 | event.u.obj_alloc.size = size;
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348 | event.u.obj_alloc.obj_id = (jobjectID) obj;
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349 |
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350 | // FIXME: This doesn't look right for the Boehm GC. A GC may
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351 | // already be in progress. _Jv_DisableGC () doesn't wait for it.
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352 | // More importantly, I don't see the need for disabling GC, since we
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353 | // blatantly have a pointer to obj on our stack, ensuring that the
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354 | // object can't be collected. Even for a nonconservative collector,
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355 | // it appears to me that this must be true, since we are about to
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356 | // return obj. Isn't this whole approach way too intrusive for
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357 | // a useful profiling interface? - HB
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358 | _Jv_DisableGC ();
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359 | (*_Jv_JVMPI_Notify_OBJECT_ALLOC) (&event);
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360 | _Jv_EnableGC ();
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361 | }
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362 | }
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363 | #else /* !ENABLE_JVMPI */
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364 | # define jvmpi_notify_alloc(klass,size,obj) /* do nothing */
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365 | #endif
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366 |
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367 | // Allocate a new object of class KLASS. SIZE is the size of the object
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368 | // to allocate. You might think this is redundant, but it isn't; some
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369 | // classes, such as String, aren't of fixed size.
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370 | // First a version that assumes that we have no finalizer, and that
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371 | // the class is already initialized.
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372 | // If we know that JVMPI is disabled, this can be replaced by a direct call
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373 | // to the allocator for the appropriate GC.
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374 | jobject
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375 | _Jv_AllocObjectNoInitNoFinalizer (jclass klass, jint size)
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376 | {
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377 | jobject obj = (jobject) _Jv_AllocObj (size, klass);
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378 | jvmpi_notify_alloc (klass, size, obj);
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379 | return obj;
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380 | }
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381 |
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382 | // And now a version that initializes if necessary.
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383 | jobject
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384 | _Jv_AllocObjectNoFinalizer (jclass klass, jint size)
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385 | {
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386 | _Jv_InitClass (klass);
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387 | jobject obj = (jobject) _Jv_AllocObj (size, klass);
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388 | jvmpi_notify_alloc (klass, size, obj);
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389 | return obj;
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390 | }
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391 |
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392 | // And now the general version that registers a finalizer if necessary.
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393 | jobject
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394 | _Jv_AllocObject (jclass klass, jint size)
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395 | {
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396 | jobject obj = _Jv_AllocObjectNoFinalizer (klass, size);
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397 |
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398 | // We assume that the compiler only generates calls to this routine
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399 | // if there really is an interesting finalizer.
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400 | // Unfortunately, we still have to the dynamic test, since there may
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401 | // be cni calls to this routine.
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402 | // Nore that on IA64 get_finalizer() returns the starting address of the
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403 | // function, not a function pointer. Thus this still works.
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404 | if (klass->vtable->get_finalizer ()
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405 | != java::lang::Object::class$.vtable->get_finalizer ())
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406 | _Jv_RegisterFinalizer (obj, _Jv_FinalizeObject);
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407 | return obj;
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408 | }
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409 |
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410 | // A version of the above that assumes the object contains no pointers,
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411 | // and requires no finalization. This can't happen if we need pointers
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412 | // to locks.
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413 | #ifdef JV_HASH_SYNCHRONIZATION
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414 | jobject
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415 | _Jv_AllocPtrFreeObject (jclass klass, jint size)
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416 | {
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417 | _Jv_InitClass (klass);
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418 |
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419 | jobject obj = (jobject) _Jv_AllocPtrFreeObj (size, klass);
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420 |
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421 | #ifdef ENABLE_JVMPI
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422 | // Service JVMPI request.
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423 |
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424 | if (__builtin_expect (_Jv_JVMPI_Notify_OBJECT_ALLOC != 0, false))
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425 | {
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426 | JVMPI_Event event;
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427 |
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428 | event.event_type = JVMPI_EVENT_OBJECT_ALLOC;
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429 | event.env_id = NULL;
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430 | event.u.obj_alloc.arena_id = 0;
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431 | event.u.obj_alloc.class_id = (jobjectID) klass;
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432 | event.u.obj_alloc.is_array = 0;
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433 | event.u.obj_alloc.size = size;
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434 | event.u.obj_alloc.obj_id = (jobjectID) obj;
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435 |
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436 | _Jv_DisableGC ();
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437 | (*_Jv_JVMPI_Notify_OBJECT_ALLOC) (&event);
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438 | _Jv_EnableGC ();
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439 | }
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440 | #endif
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441 |
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442 | return obj;
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443 | }
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444 | #endif /* JV_HASH_SYNCHRONIZATION */
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445 |
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446 |
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447 | // Allocate a new array of Java objects. Each object is of type
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448 | // `elementClass'. `init' is used to initialize each slot in the
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449 | // array.
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450 | jobjectArray
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451 | _Jv_NewObjectArray (jsize count, jclass elementClass, jobject init)
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452 | {
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453 | if (__builtin_expect (count < 0, false))
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454 | throw new java::lang::NegativeArraySizeException;
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455 |
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456 | JvAssert (! elementClass->isPrimitive ());
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457 |
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458 | // Ensure that elements pointer is properly aligned.
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459 | jobjectArray obj = NULL;
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460 | size_t size = (size_t) elements (obj);
|
---|
461 | size += count * sizeof (jobject);
|
---|
462 |
|
---|
463 | // FIXME: second argument should be "current loader"
|
---|
464 | jclass klass = _Jv_GetArrayClass (elementClass, 0);
|
---|
465 |
|
---|
466 | obj = (jobjectArray) _Jv_AllocArray (size, klass);
|
---|
467 | // Cast away const.
|
---|
468 | jsize *lp = const_cast<jsize *> (&obj->length);
|
---|
469 | *lp = count;
|
---|
470 | // We know the allocator returns zeroed memory. So don't bother
|
---|
471 | // zeroing it again.
|
---|
472 | if (init)
|
---|
473 | {
|
---|
474 | jobject *ptr = elements(obj);
|
---|
475 | while (--count >= 0)
|
---|
476 | *ptr++ = init;
|
---|
477 | }
|
---|
478 | return obj;
|
---|
479 | }
|
---|
480 |
|
---|
481 | // Allocate a new array of primitives. ELTYPE is the type of the
|
---|
482 | // element, COUNT is the size of the array.
|
---|
483 | jobject
|
---|
484 | _Jv_NewPrimArray (jclass eltype, jint count)
|
---|
485 | {
|
---|
486 | int elsize = eltype->size();
|
---|
487 | if (__builtin_expect (count < 0, false))
|
---|
488 | throw new java::lang::NegativeArraySizeException;
|
---|
489 |
|
---|
490 | JvAssert (eltype->isPrimitive ());
|
---|
491 | jobject dummy = NULL;
|
---|
492 | size_t size = (size_t) _Jv_GetArrayElementFromElementType (dummy, eltype);
|
---|
493 |
|
---|
494 | // Check for overflow.
|
---|
495 | if (__builtin_expect ((size_t) count >
|
---|
496 | (SIZE_T_MAX - size) / elsize, false))
|
---|
497 | throw no_memory;
|
---|
498 |
|
---|
499 | jclass klass = _Jv_GetArrayClass (eltype, 0);
|
---|
500 |
|
---|
501 | # ifdef JV_HASH_SYNCHRONIZATION
|
---|
502 | // Since the vtable is always statically allocated,
|
---|
503 | // these are completely pointerfree! Make sure the GC doesn't touch them.
|
---|
504 | __JArray *arr =
|
---|
505 | (__JArray*) _Jv_AllocPtrFreeObj (size + elsize * count, klass);
|
---|
506 | memset((char *)arr + size, 0, elsize * count);
|
---|
507 | # else
|
---|
508 | __JArray *arr = (__JArray*) _Jv_AllocObj (size + elsize * count, klass);
|
---|
509 | // Note that we assume we are given zeroed memory by the allocator.
|
---|
510 | # endif
|
---|
511 | // Cast away const.
|
---|
512 | jsize *lp = const_cast<jsize *> (&arr->length);
|
---|
513 | *lp = count;
|
---|
514 |
|
---|
515 | return arr;
|
---|
516 | }
|
---|
517 |
|
---|
518 | jobject
|
---|
519 | _Jv_NewArray (jint type, jint size)
|
---|
520 | {
|
---|
521 | switch (type)
|
---|
522 | {
|
---|
523 | case 4: return JvNewBooleanArray (size);
|
---|
524 | case 5: return JvNewCharArray (size);
|
---|
525 | case 6: return JvNewFloatArray (size);
|
---|
526 | case 7: return JvNewDoubleArray (size);
|
---|
527 | case 8: return JvNewByteArray (size);
|
---|
528 | case 9: return JvNewShortArray (size);
|
---|
529 | case 10: return JvNewIntArray (size);
|
---|
530 | case 11: return JvNewLongArray (size);
|
---|
531 | }
|
---|
532 | throw new java::lang::InternalError
|
---|
533 | (JvNewStringLatin1 ("invalid type code in _Jv_NewArray"));
|
---|
534 | }
|
---|
535 |
|
---|
536 | // Allocate a possibly multi-dimensional array but don't check that
|
---|
537 | // any array length is <0.
|
---|
538 | static jobject
|
---|
539 | _Jv_NewMultiArrayUnchecked (jclass type, jint dimensions, jint *sizes)
|
---|
540 | {
|
---|
541 | JvAssert (type->isArray());
|
---|
542 | jclass element_type = type->getComponentType();
|
---|
543 | jobject result;
|
---|
544 | if (element_type->isPrimitive())
|
---|
545 | result = _Jv_NewPrimArray (element_type, sizes[0]);
|
---|
546 | else
|
---|
547 | result = _Jv_NewObjectArray (sizes[0], element_type, NULL);
|
---|
548 |
|
---|
549 | if (dimensions > 1)
|
---|
550 | {
|
---|
551 | JvAssert (! element_type->isPrimitive());
|
---|
552 | JvAssert (element_type->isArray());
|
---|
553 | jobject *contents = elements ((jobjectArray) result);
|
---|
554 | for (int i = 0; i < sizes[0]; ++i)
|
---|
555 | contents[i] = _Jv_NewMultiArrayUnchecked (element_type, dimensions - 1,
|
---|
556 | sizes + 1);
|
---|
557 | }
|
---|
558 |
|
---|
559 | return result;
|
---|
560 | }
|
---|
561 |
|
---|
562 | jobject
|
---|
563 | _Jv_NewMultiArray (jclass type, jint dimensions, jint *sizes)
|
---|
564 | {
|
---|
565 | for (int i = 0; i < dimensions; ++i)
|
---|
566 | if (sizes[i] < 0)
|
---|
567 | throw new java::lang::NegativeArraySizeException;
|
---|
568 |
|
---|
569 | return _Jv_NewMultiArrayUnchecked (type, dimensions, sizes);
|
---|
570 | }
|
---|
571 |
|
---|
572 | jobject
|
---|
573 | _Jv_NewMultiArray (jclass array_type, jint dimensions, ...)
|
---|
574 | {
|
---|
575 | va_list args;
|
---|
576 | jint sizes[dimensions];
|
---|
577 | va_start (args, dimensions);
|
---|
578 | for (int i = 0; i < dimensions; ++i)
|
---|
579 | {
|
---|
580 | jint size = va_arg (args, jint);
|
---|
581 | if (size < 0)
|
---|
582 | throw new java::lang::NegativeArraySizeException;
|
---|
583 | sizes[i] = size;
|
---|
584 | }
|
---|
585 | va_end (args);
|
---|
586 |
|
---|
587 | return _Jv_NewMultiArrayUnchecked (array_type, dimensions, sizes);
|
---|
588 | }
|
---|
589 |
|
---|
590 | |
---|
591 |
|
---|
592 |
|
---|
593 | // Ensure 8-byte alignment, for hash synchronization.
|
---|
594 | #define DECLARE_PRIM_TYPE(NAME) \
|
---|
595 | _Jv_ArrayVTable _Jv_##NAME##VTable; \
|
---|
596 | java::lang::Class _Jv_##NAME##Class __attribute__ ((aligned (8)));
|
---|
597 |
|
---|
598 | DECLARE_PRIM_TYPE(byte);
|
---|
599 | DECLARE_PRIM_TYPE(short);
|
---|
600 | DECLARE_PRIM_TYPE(int);
|
---|
601 | DECLARE_PRIM_TYPE(long);
|
---|
602 | DECLARE_PRIM_TYPE(boolean);
|
---|
603 | DECLARE_PRIM_TYPE(char);
|
---|
604 | DECLARE_PRIM_TYPE(float);
|
---|
605 | DECLARE_PRIM_TYPE(double);
|
---|
606 | DECLARE_PRIM_TYPE(void);
|
---|
607 |
|
---|
608 | void
|
---|
609 | _Jv_InitPrimClass (jclass cl, char *cname, char sig, int len,
|
---|
610 | _Jv_ArrayVTable *array_vtable)
|
---|
611 | {
|
---|
612 | using namespace java::lang::reflect;
|
---|
613 |
|
---|
614 | _Jv_InitNewClassFields (cl);
|
---|
615 |
|
---|
616 | // We must set the vtable for the class; the Java constructor
|
---|
617 | // doesn't do this.
|
---|
618 | (*(_Jv_VTable **) cl) = java::lang::Class::class$.vtable;
|
---|
619 |
|
---|
620 | // Initialize the fields we care about. We do this in the same
|
---|
621 | // order they are declared in Class.h.
|
---|
622 | cl->name = _Jv_makeUtf8Const ((char *) cname, -1);
|
---|
623 | cl->accflags = Modifier::PUBLIC | Modifier::FINAL | Modifier::ABSTRACT;
|
---|
624 | cl->method_count = sig;
|
---|
625 | cl->size_in_bytes = len;
|
---|
626 | cl->vtable = JV_PRIMITIVE_VTABLE;
|
---|
627 | cl->state = JV_STATE_DONE;
|
---|
628 | cl->depth = -1;
|
---|
629 | if (sig != 'V')
|
---|
630 | _Jv_NewArrayClass (cl, NULL, (_Jv_VTable *) array_vtable);
|
---|
631 | }
|
---|
632 |
|
---|
633 | jclass
|
---|
634 | _Jv_FindClassFromSignature (char *sig, java::lang::ClassLoader *loader)
|
---|
635 | {
|
---|
636 | switch (*sig)
|
---|
637 | {
|
---|
638 | case 'B':
|
---|
639 | return JvPrimClass (byte);
|
---|
640 | case 'S':
|
---|
641 | return JvPrimClass (short);
|
---|
642 | case 'I':
|
---|
643 | return JvPrimClass (int);
|
---|
644 | case 'J':
|
---|
645 | return JvPrimClass (long);
|
---|
646 | case 'Z':
|
---|
647 | return JvPrimClass (boolean);
|
---|
648 | case 'C':
|
---|
649 | return JvPrimClass (char);
|
---|
650 | case 'F':
|
---|
651 | return JvPrimClass (float);
|
---|
652 | case 'D':
|
---|
653 | return JvPrimClass (double);
|
---|
654 | case 'V':
|
---|
655 | return JvPrimClass (void);
|
---|
656 | case 'L':
|
---|
657 | {
|
---|
658 | int i;
|
---|
659 | for (i = 1; sig[i] && sig[i] != ';'; ++i)
|
---|
660 | ;
|
---|
661 | _Jv_Utf8Const *name = _Jv_makeUtf8Const (&sig[1], i - 1);
|
---|
662 | return _Jv_FindClass (name, loader);
|
---|
663 |
|
---|
664 | }
|
---|
665 | case '[':
|
---|
666 | {
|
---|
667 | jclass klass = _Jv_FindClassFromSignature (&sig[1], loader);
|
---|
668 | if (! klass)
|
---|
669 | return NULL;
|
---|
670 | return _Jv_GetArrayClass (klass, loader);
|
---|
671 | }
|
---|
672 | }
|
---|
673 |
|
---|
674 | return NULL; // Placate compiler.
|
---|
675 | }
|
---|
676 |
|
---|
677 | |
---|
678 |
|
---|
679 |
|
---|
680 | JArray<jstring> *
|
---|
681 | JvConvertArgv (int argc, const char **argv)
|
---|
682 | {
|
---|
683 | if (argc < 0)
|
---|
684 | argc = 0;
|
---|
685 | jobjectArray ar = JvNewObjectArray(argc, &StringClass, NULL);
|
---|
686 | jobject *ptr = elements(ar);
|
---|
687 | jbyteArray bytes = NULL;
|
---|
688 | for (int i = 0; i < argc; i++)
|
---|
689 | {
|
---|
690 | const char *arg = argv[i];
|
---|
691 | int len = strlen (arg);
|
---|
692 | if (bytes == NULL || bytes->length < len)
|
---|
693 | bytes = JvNewByteArray (len);
|
---|
694 | jbyte *bytePtr = elements (bytes);
|
---|
695 | // We assume jbyte == char.
|
---|
696 | memcpy (bytePtr, arg, len);
|
---|
697 |
|
---|
698 | // Now convert using the default encoding.
|
---|
699 | *ptr++ = new java::lang::String (bytes, 0, len);
|
---|
700 | }
|
---|
701 | return (JArray<jstring>*) ar;
|
---|
702 | }
|
---|
703 |
|
---|
704 | // FIXME: These variables are static so that they will be
|
---|
705 | // automatically scanned by the Boehm collector. This is needed
|
---|
706 | // because with qthreads the collector won't scan the initial stack --
|
---|
707 | // it will only scan the qthreads stacks.
|
---|
708 |
|
---|
709 | // Command line arguments.
|
---|
710 | static JArray<jstring> *arg_vec;
|
---|
711 |
|
---|
712 | // The primary thread.
|
---|
713 | static java::lang::Thread *main_thread;
|
---|
714 |
|
---|
715 | char *
|
---|
716 | _Jv_ThisExecutable (void)
|
---|
717 | {
|
---|
718 | return _Jv_execName;
|
---|
719 | }
|
---|
720 |
|
---|
721 | void
|
---|
722 | _Jv_ThisExecutable (const char *name)
|
---|
723 | {
|
---|
724 | if (name)
|
---|
725 | {
|
---|
726 | _Jv_execName = (char *) _Jv_Malloc (strlen (name) + 1);
|
---|
727 | strcpy (_Jv_execName, name);
|
---|
728 | }
|
---|
729 | }
|
---|
730 |
|
---|
731 | #ifndef DISABLE_GETENV_PROPERTIES
|
---|
732 |
|
---|
733 | static char *
|
---|
734 | next_property_key (char *s, size_t *length)
|
---|
735 | {
|
---|
736 | size_t l = 0;
|
---|
737 |
|
---|
738 | JvAssert (s);
|
---|
739 |
|
---|
740 | // Skip over whitespace
|
---|
741 | while (isspace (*s))
|
---|
742 | s++;
|
---|
743 |
|
---|
744 | // If we've reached the end, return NULL. Also return NULL if for
|
---|
745 | // some reason we've come across a malformed property string.
|
---|
746 | if (*s == 0
|
---|
747 | || *s == ':'
|
---|
748 | || *s == '=')
|
---|
749 | return NULL;
|
---|
750 |
|
---|
751 | // Determine the length of the property key.
|
---|
752 | while (s[l] != 0
|
---|
753 | && ! isspace (s[l])
|
---|
754 | && s[l] != ':'
|
---|
755 | && s[l] != '=')
|
---|
756 | {
|
---|
757 | if (s[l] == '\\'
|
---|
758 | && s[l+1] != 0)
|
---|
759 | l++;
|
---|
760 | l++;
|
---|
761 | }
|
---|
762 |
|
---|
763 | *length = l;
|
---|
764 |
|
---|
765 | return s;
|
---|
766 | }
|
---|
767 |
|
---|
768 | static char *
|
---|
769 | next_property_value (char *s, size_t *length)
|
---|
770 | {
|
---|
771 | size_t l = 0;
|
---|
772 |
|
---|
773 | JvAssert (s);
|
---|
774 |
|
---|
775 | while (isspace (*s))
|
---|
776 | s++;
|
---|
777 |
|
---|
778 | if (*s == ':'
|
---|
779 | || *s == '=')
|
---|
780 | s++;
|
---|
781 |
|
---|
782 | while (isspace (*s))
|
---|
783 | s++;
|
---|
784 |
|
---|
785 | // If we've reached the end, return NULL.
|
---|
786 | if (*s == 0)
|
---|
787 | return NULL;
|
---|
788 |
|
---|
789 | // Determine the length of the property value.
|
---|
790 | while (s[l] != 0
|
---|
791 | && ! isspace (s[l])
|
---|
792 | && s[l] != ':'
|
---|
793 | && s[l] != '=')
|
---|
794 | {
|
---|
795 | if (s[l] == '\\'
|
---|
796 | && s[l+1] != 0)
|
---|
797 | l += 2;
|
---|
798 | else
|
---|
799 | l++;
|
---|
800 | }
|
---|
801 |
|
---|
802 | *length = l;
|
---|
803 |
|
---|
804 | return s;
|
---|
805 | }
|
---|
806 |
|
---|
807 | static void
|
---|
808 | process_gcj_properties ()
|
---|
809 | {
|
---|
810 | char *props = getenv("GCJ_PROPERTIES");
|
---|
811 | char *p = props;
|
---|
812 | size_t length;
|
---|
813 | size_t property_count = 0;
|
---|
814 |
|
---|
815 | if (NULL == props)
|
---|
816 | return;
|
---|
817 |
|
---|
818 | // Whip through props quickly in order to count the number of
|
---|
819 | // property values.
|
---|
820 | while (p && (p = next_property_key (p, &length)))
|
---|
821 | {
|
---|
822 | // Skip to the end of the key
|
---|
823 | p += length;
|
---|
824 |
|
---|
825 | p = next_property_value (p, &length);
|
---|
826 | if (p)
|
---|
827 | p += length;
|
---|
828 |
|
---|
829 | property_count++;
|
---|
830 | }
|
---|
831 |
|
---|
832 | // Allocate an array of property value/key pairs.
|
---|
833 | _Jv_Environment_Properties =
|
---|
834 | (property_pair *) malloc (sizeof(property_pair)
|
---|
835 | * (property_count + 1));
|
---|
836 |
|
---|
837 | // Go through the properties again, initializing _Jv_Properties
|
---|
838 | // along the way.
|
---|
839 | p = props;
|
---|
840 | property_count = 0;
|
---|
841 | while (p && (p = next_property_key (p, &length)))
|
---|
842 | {
|
---|
843 | _Jv_Environment_Properties[property_count].key = p;
|
---|
844 | _Jv_Environment_Properties[property_count].key_length = length;
|
---|
845 |
|
---|
846 | // Skip to the end of the key
|
---|
847 | p += length;
|
---|
848 |
|
---|
849 | p = next_property_value (p, &length);
|
---|
850 |
|
---|
851 | _Jv_Environment_Properties[property_count].value = p;
|
---|
852 | _Jv_Environment_Properties[property_count].value_length = length;
|
---|
853 |
|
---|
854 | if (p)
|
---|
855 | p += length;
|
---|
856 |
|
---|
857 | property_count++;
|
---|
858 | }
|
---|
859 | memset ((void *) &_Jv_Environment_Properties[property_count],
|
---|
860 | 0, sizeof (property_pair));
|
---|
861 | {
|
---|
862 | size_t i = 0;
|
---|
863 |
|
---|
864 | // Null terminate the strings.
|
---|
865 | while (_Jv_Environment_Properties[i].key)
|
---|
866 | {
|
---|
867 | _Jv_Environment_Properties[i].key[_Jv_Environment_Properties[i].key_length] = 0;
|
---|
868 | _Jv_Environment_Properties[i++].value[_Jv_Environment_Properties[i].value_length] = 0;
|
---|
869 | }
|
---|
870 | }
|
---|
871 | }
|
---|
872 | #endif // DISABLE_GETENV_PROPERTIES
|
---|
873 |
|
---|
874 | namespace gcj
|
---|
875 | {
|
---|
876 | _Jv_Utf8Const *void_signature;
|
---|
877 | _Jv_Utf8Const *clinit_name;
|
---|
878 | _Jv_Utf8Const *init_name;
|
---|
879 | _Jv_Utf8Const *finit_name;
|
---|
880 |
|
---|
881 | bool runtimeInitialized = false;
|
---|
882 | }
|
---|
883 |
|
---|
884 | jint
|
---|
885 | _Jv_CreateJavaVM (void* /*vm_args*/)
|
---|
886 | {
|
---|
887 | using namespace gcj;
|
---|
888 |
|
---|
889 | if (runtimeInitialized)
|
---|
890 | return -1;
|
---|
891 |
|
---|
892 | runtimeInitialized = true;
|
---|
893 |
|
---|
894 | PROCESS_GCJ_PROPERTIES;
|
---|
895 |
|
---|
896 | _Jv_InitThreads ();
|
---|
897 | _Jv_InitGC ();
|
---|
898 | _Jv_InitializeSyncMutex ();
|
---|
899 |
|
---|
900 | /* Initialize Utf8 constants declared in jvm.h. */
|
---|
901 | void_signature = _Jv_makeUtf8Const ("()V", 3);
|
---|
902 | clinit_name = _Jv_makeUtf8Const ("<clinit>", 8);
|
---|
903 | init_name = _Jv_makeUtf8Const ("<init>", 6);
|
---|
904 | finit_name = _Jv_makeUtf8Const ("finit$", 6);
|
---|
905 |
|
---|
906 | /* Initialize built-in classes to represent primitive TYPEs. */
|
---|
907 | _Jv_InitPrimClass (&_Jv_byteClass, "byte", 'B', 1, &_Jv_byteVTable);
|
---|
908 | _Jv_InitPrimClass (&_Jv_shortClass, "short", 'S', 2, &_Jv_shortVTable);
|
---|
909 | _Jv_InitPrimClass (&_Jv_intClass, "int", 'I', 4, &_Jv_intVTable);
|
---|
910 | _Jv_InitPrimClass (&_Jv_longClass, "long", 'J', 8, &_Jv_longVTable);
|
---|
911 | _Jv_InitPrimClass (&_Jv_booleanClass, "boolean", 'Z', 1, &_Jv_booleanVTable);
|
---|
912 | _Jv_InitPrimClass (&_Jv_charClass, "char", 'C', 2, &_Jv_charVTable);
|
---|
913 | _Jv_InitPrimClass (&_Jv_floatClass, "float", 'F', 4, &_Jv_floatVTable);
|
---|
914 | _Jv_InitPrimClass (&_Jv_doubleClass, "double", 'D', 8, &_Jv_doubleVTable);
|
---|
915 | _Jv_InitPrimClass (&_Jv_voidClass, "void", 'V', 0, &_Jv_voidVTable);
|
---|
916 |
|
---|
917 | // Turn stack trace generation off while creating exception objects.
|
---|
918 | _Jv_InitClass (&java::lang::Throwable::class$);
|
---|
919 | java::lang::Throwable::trace_enabled = 0;
|
---|
920 |
|
---|
921 | INIT_SEGV;
|
---|
922 | #ifdef HANDLE_FPE
|
---|
923 | INIT_FPE;
|
---|
924 | #else
|
---|
925 | arithexception = new java::lang::ArithmeticException
|
---|
926 | (JvNewStringLatin1 ("/ by zero"));
|
---|
927 | #endif
|
---|
928 |
|
---|
929 | no_memory = new java::lang::OutOfMemoryError;
|
---|
930 |
|
---|
931 | java::lang::Throwable::trace_enabled = 1;
|
---|
932 |
|
---|
933 | #ifdef USE_LTDL
|
---|
934 | LTDL_SET_PRELOADED_SYMBOLS ();
|
---|
935 | #endif
|
---|
936 |
|
---|
937 | _Jv_platform_initialize ();
|
---|
938 |
|
---|
939 | _Jv_JNI_Init ();
|
---|
940 |
|
---|
941 | _Jv_GCInitializeFinalizers (&::gnu::gcj::runtime::FinalizerThread::finalizerReady);
|
---|
942 |
|
---|
943 | // Start the GC finalizer thread. A VirtualMachineError can be
|
---|
944 | // thrown by the runtime if, say, threads aren't available. In this
|
---|
945 | // case finalizers simply won't run.
|
---|
946 | try
|
---|
947 | {
|
---|
948 | using namespace gnu::gcj::runtime;
|
---|
949 | FinalizerThread *ft = new FinalizerThread ();
|
---|
950 | ft->start ();
|
---|
951 | }
|
---|
952 | catch (java::lang::VirtualMachineError *ignore)
|
---|
953 | {
|
---|
954 | }
|
---|
955 |
|
---|
956 | return 0;
|
---|
957 | }
|
---|
958 |
|
---|
959 | void
|
---|
960 | _Jv_RunMain (jclass klass, const char *name, int argc, const char **argv,
|
---|
961 | bool is_jar)
|
---|
962 | {
|
---|
963 | _Jv_argv = argv;
|
---|
964 | _Jv_argc = argc;
|
---|
965 |
|
---|
966 | java::lang::Runtime *runtime = NULL;
|
---|
967 |
|
---|
968 |
|
---|
969 | #ifdef DISABLE_MAIN_ARGS
|
---|
970 | _Jv_ThisExecutable ("[Embedded App]");
|
---|
971 | #else
|
---|
972 | #ifdef HAVE_PROC_SELF_EXE
|
---|
973 | char exec_name[20];
|
---|
974 | sprintf (exec_name, "/proc/%d/exe", getpid ());
|
---|
975 | _Jv_ThisExecutable (exec_name);
|
---|
976 | #else
|
---|
977 | _Jv_ThisExecutable (argv[0]);
|
---|
978 | #endif /* HAVE_PROC_SELF_EXE */
|
---|
979 | #endif /* DISABLE_MAIN_ARGS */
|
---|
980 |
|
---|
981 | try
|
---|
982 | {
|
---|
983 | // Set this very early so that it is seen when java.lang.System
|
---|
984 | // is initialized.
|
---|
985 | if (is_jar)
|
---|
986 | _Jv_Jar_Class_Path = strdup (name);
|
---|
987 | _Jv_CreateJavaVM (NULL);
|
---|
988 |
|
---|
989 | // Get the Runtime here. We want to initialize it before searching
|
---|
990 | // for `main'; that way it will be set up if `main' is a JNI method.
|
---|
991 | runtime = java::lang::Runtime::getRuntime ();
|
---|
992 |
|
---|
993 | #ifdef DISABLE_MAIN_ARGS
|
---|
994 | arg_vec = JvConvertArgv (0, 0);
|
---|
995 | #else
|
---|
996 | arg_vec = JvConvertArgv (argc - 1, argv + 1);
|
---|
997 | #endif
|
---|
998 |
|
---|
999 | using namespace gnu::gcj::runtime;
|
---|
1000 | if (klass)
|
---|
1001 | main_thread = new FirstThread (klass, arg_vec);
|
---|
1002 | else
|
---|
1003 | main_thread = new FirstThread (JvNewStringLatin1 (name),
|
---|
1004 | arg_vec, is_jar);
|
---|
1005 | }
|
---|
1006 | catch (java::lang::Throwable *t)
|
---|
1007 | {
|
---|
1008 | java::lang::System::err->println (JvNewStringLatin1
|
---|
1009 | ("Exception during runtime initialization"));
|
---|
1010 | t->printStackTrace();
|
---|
1011 | runtime->exit (1);
|
---|
1012 | }
|
---|
1013 |
|
---|
1014 | _Jv_AttachCurrentThread (main_thread);
|
---|
1015 | _Jv_ThreadRun (main_thread);
|
---|
1016 | _Jv_ThreadWait ();
|
---|
1017 |
|
---|
1018 | int status = (int) java::lang::ThreadGroup::had_uncaught_exception;
|
---|
1019 | runtime->exit (status);
|
---|
1020 | }
|
---|
1021 |
|
---|
1022 | void
|
---|
1023 | JvRunMain (jclass klass, int argc, const char **argv)
|
---|
1024 | {
|
---|
1025 | _Jv_RunMain (klass, NULL, argc, argv, false);
|
---|
1026 | }
|
---|
1027 |
|
---|
1028 | |
---|
1029 |
|
---|
1030 |
|
---|
1031 | // Parse a string and return a heap size.
|
---|
1032 | static size_t
|
---|
1033 | parse_heap_size (const char *spec)
|
---|
1034 | {
|
---|
1035 | char *end;
|
---|
1036 | unsigned long val = strtoul (spec, &end, 10);
|
---|
1037 | if (*end == 'k' || *end == 'K')
|
---|
1038 | val *= 1024;
|
---|
1039 | else if (*end == 'm' || *end == 'M')
|
---|
1040 | val *= 1048576;
|
---|
1041 | return (size_t) val;
|
---|
1042 | }
|
---|
1043 |
|
---|
1044 | // Set the initial heap size. This might be ignored by the GC layer.
|
---|
1045 | // This must be called before _Jv_RunMain.
|
---|
1046 | void
|
---|
1047 | _Jv_SetInitialHeapSize (const char *arg)
|
---|
1048 | {
|
---|
1049 | size_t size = parse_heap_size (arg);
|
---|
1050 | _Jv_GCSetInitialHeapSize (size);
|
---|
1051 | }
|
---|
1052 |
|
---|
1053 | // Set the maximum heap size. This might be ignored by the GC layer.
|
---|
1054 | // This must be called before _Jv_RunMain.
|
---|
1055 | void
|
---|
1056 | _Jv_SetMaximumHeapSize (const char *arg)
|
---|
1057 | {
|
---|
1058 | size_t size = parse_heap_size (arg);
|
---|
1059 | _Jv_GCSetMaximumHeapSize (size);
|
---|
1060 | }
|
---|
1061 |
|
---|
1062 | |
---|
1063 |
|
---|
1064 |
|
---|
1065 | void *
|
---|
1066 | _Jv_Malloc (jsize size)
|
---|
1067 | {
|
---|
1068 | if (__builtin_expect (size == 0, false))
|
---|
1069 | size = 1;
|
---|
1070 | void *ptr = malloc ((size_t) size);
|
---|
1071 | if (__builtin_expect (ptr == NULL, false))
|
---|
1072 | throw no_memory;
|
---|
1073 | return ptr;
|
---|
1074 | }
|
---|
1075 |
|
---|
1076 | void *
|
---|
1077 | _Jv_Realloc (void *ptr, jsize size)
|
---|
1078 | {
|
---|
1079 | if (__builtin_expect (size == 0, false))
|
---|
1080 | size = 1;
|
---|
1081 | ptr = realloc (ptr, (size_t) size);
|
---|
1082 | if (__builtin_expect (ptr == NULL, false))
|
---|
1083 | throw no_memory;
|
---|
1084 | return ptr;
|
---|
1085 | }
|
---|
1086 |
|
---|
1087 | void *
|
---|
1088 | _Jv_MallocUnchecked (jsize size)
|
---|
1089 | {
|
---|
1090 | if (__builtin_expect (size == 0, false))
|
---|
1091 | size = 1;
|
---|
1092 | return malloc ((size_t) size);
|
---|
1093 | }
|
---|
1094 |
|
---|
1095 | void
|
---|
1096 | _Jv_Free (void* ptr)
|
---|
1097 | {
|
---|
1098 | return free (ptr);
|
---|
1099 | }
|
---|
1100 |
|
---|
1101 | |
---|
1102 |
|
---|
1103 |
|
---|
1104 | // In theory, these routines can be #ifdef'd away on machines which
|
---|
1105 | // support divide overflow signals. However, we never know if some
|
---|
1106 | // code might have been compiled with "-fuse-divide-subroutine", so we
|
---|
1107 | // always include them in libgcj.
|
---|
1108 |
|
---|
1109 | jint
|
---|
1110 | _Jv_divI (jint dividend, jint divisor)
|
---|
1111 | {
|
---|
1112 | if (__builtin_expect (divisor == 0, false))
|
---|
1113 | _Jv_ThrowSignal (arithexception);
|
---|
1114 |
|
---|
1115 | if (dividend == (jint) 0x80000000L && divisor == -1)
|
---|
1116 | return dividend;
|
---|
1117 |
|
---|
1118 | return dividend / divisor;
|
---|
1119 | }
|
---|
1120 |
|
---|
1121 | jint
|
---|
1122 | _Jv_remI (jint dividend, jint divisor)
|
---|
1123 | {
|
---|
1124 | if (__builtin_expect (divisor == 0, false))
|
---|
1125 | _Jv_ThrowSignal (arithexception);
|
---|
1126 |
|
---|
1127 | if (dividend == (jint) 0x80000000L && divisor == -1)
|
---|
1128 | return 0;
|
---|
1129 |
|
---|
1130 | return dividend % divisor;
|
---|
1131 | }
|
---|
1132 |
|
---|
1133 | jlong
|
---|
1134 | _Jv_divJ (jlong dividend, jlong divisor)
|
---|
1135 | {
|
---|
1136 | if (__builtin_expect (divisor == 0, false))
|
---|
1137 | _Jv_ThrowSignal (arithexception);
|
---|
1138 |
|
---|
1139 | if (dividend == (jlong) 0x8000000000000000LL && divisor == -1)
|
---|
1140 | return dividend;
|
---|
1141 |
|
---|
1142 | return dividend / divisor;
|
---|
1143 | }
|
---|
1144 |
|
---|
1145 | jlong
|
---|
1146 | _Jv_remJ (jlong dividend, jlong divisor)
|
---|
1147 | {
|
---|
1148 | if (__builtin_expect (divisor == 0, false))
|
---|
1149 | _Jv_ThrowSignal (arithexception);
|
---|
1150 |
|
---|
1151 | if (dividend == (jlong) 0x8000000000000000LL && divisor == -1)
|
---|
1152 | return 0;
|
---|
1153 |
|
---|
1154 | return dividend % divisor;
|
---|
1155 | }
|
---|