annotate src/share/vm/runtime/signature.hpp @ 605:98cb887364d3

6810672: Comment typos Summary: I have collected some typos I have found while looking at the code. Reviewed-by: kvn, never
author twisti
date Fri, 27 Feb 2009 13:27:09 -0800
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children 354d3184f6b2
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1 /*
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2 * Copyright 1997-2006 Sun Microsystems, Inc. All Rights Reserved.
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3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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4 *
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5 * This code is free software; you can redistribute it and/or modify it
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6 * under the terms of the GNU General Public License version 2 only, as
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7 * published by the Free Software Foundation.
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8 *
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9 * This code is distributed in the hope that it will be useful, but WITHOUT
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10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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12 * version 2 for more details (a copy is included in the LICENSE file that
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13 * accompanied this code).
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14 *
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15 * You should have received a copy of the GNU General Public License version
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16 * 2 along with this work; if not, write to the Free Software Foundation,
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17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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18 *
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19 * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
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20 * CA 95054 USA or visit www.sun.com if you need additional information or
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21 * have any questions.
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22 *
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23 */
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24
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25 // SignatureIterators iterate over a Java signature (or parts of it).
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26 // (Syntax according to: "The Java Virtual Machine Specification" by
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27 // Tim Lindholm & Frank Yellin; section 4.3 Descriptors; p. 89ff.)
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28 //
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29 // Example: Iterating over ([Lfoo;D)I using
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30 // 0123456789
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31 //
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32 // iterate_parameters() calls: do_array(2, 7); do_double();
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33 // iterate_returntype() calls: do_int();
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34 // iterate() calls: do_array(2, 7); do_double(); do_int();
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35 //
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36 // is_return_type() is: false ; false ; true
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37 //
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38 // NOTE: The new optimizer has an alternate, for-loop based signature
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39 // iterator implemented in opto/type.cpp, TypeTuple::make().
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40
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41 class SignatureIterator: public ResourceObj {
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42 protected:
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43 symbolHandle _signature; // the signature to iterate over
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44 int _index; // the current character index (only valid during iteration)
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45 int _parameter_index; // the current parameter index (0 outside iteration phase)
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46 BasicType _return_type;
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47
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48 void expect(char c);
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49 void skip_optional_size();
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50 int parse_type(); // returns the parameter size in words (0 for void)
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51 void check_signature_end();
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52
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53 public:
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54 // Definitions used in generating and iterating the
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55 // bit field form of the signature generated by the
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56 // Fingerprinter.
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57 enum {
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58 static_feature_size = 1,
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59 result_feature_size = 4,
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60 result_feature_mask = 0xF,
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61 parameter_feature_size = 4,
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62 parameter_feature_mask = 0xF,
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63
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64 bool_parm = 1,
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65 byte_parm = 2,
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66 char_parm = 3,
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67 short_parm = 4,
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68 int_parm = 5,
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69 long_parm = 6,
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70 float_parm = 7,
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71 double_parm = 8,
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72 obj_parm = 9,
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73 done_parm = 10, // marker for end of parameters
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74
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75 // max parameters is wordsize minus
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76 // The sign bit, termination field, the result and static bit fields
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77 max_size_of_parameters = (BitsPerLong-1 -
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78 result_feature_size - parameter_feature_size -
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79 static_feature_size) / parameter_feature_size
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80 };
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81
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82 // Constructors
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83 SignatureIterator(symbolOop signature);
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84 SignatureIterator(Thread *thread, symbolOop signature);
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85 SignatureIterator(symbolHandle signature);
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86
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87 // Iteration
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88 void dispatch_field(); // dispatches once for field signatures
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89 void iterate_parameters(); // iterates over parameters only
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90 void iterate_parameters( uint64_t fingerprint );
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91 void iterate_returntype(); // iterates over returntype only
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92 void iterate(); // iterates over whole signature
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93 // Returns the word index of the current parameter;
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94 int parameter_index() const { return _parameter_index; }
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95 bool is_return_type() const { return parameter_index() < 0; }
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96 BasicType get_ret_type() const { return _return_type; }
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97
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98 // Basic types
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99 virtual void do_bool () = 0;
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100 virtual void do_char () = 0;
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101 virtual void do_float () = 0;
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102 virtual void do_double() = 0;
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103 virtual void do_byte () = 0;
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104 virtual void do_short () = 0;
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105 virtual void do_int () = 0;
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106 virtual void do_long () = 0;
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107 virtual void do_void () = 0;
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108
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109 // Object types (begin indexes the first character of the entry, end indexes the first character after the entry)
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110 virtual void do_object(int begin, int end) = 0;
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111 virtual void do_array (int begin, int end) = 0;
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112 };
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113
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114
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115 // Specialized SignatureIterators: Used to compute signature specific values.
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116
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117 class SignatureTypeNames : public SignatureIterator {
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118 protected:
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119 virtual void type_name(const char* name) = 0;
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120
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121 void do_bool() { type_name("jboolean"); }
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122 void do_char() { type_name("jchar" ); }
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123 void do_float() { type_name("jfloat" ); }
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124 void do_double() { type_name("jdouble" ); }
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125 void do_byte() { type_name("jbyte" ); }
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126 void do_short() { type_name("jshort" ); }
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127 void do_int() { type_name("jint" ); }
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128 void do_long() { type_name("jlong" ); }
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129 void do_void() { type_name("void" ); }
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130 void do_object(int begin, int end) { type_name("jobject" ); }
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131 void do_array (int begin, int end) { type_name("jobject" ); }
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132
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133 public:
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134 SignatureTypeNames(symbolHandle signature) : SignatureIterator(signature) {}
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135 };
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136
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137
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138 class SignatureInfo: public SignatureIterator {
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139 protected:
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140 bool _has_iterated; // need this because iterate cannot be called in constructor (set is virtual!)
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141 bool _has_iterated_return;
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142 int _size;
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143
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144 void lazy_iterate_parameters() { if (!_has_iterated) { iterate_parameters(); _has_iterated = true; } }
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145 void lazy_iterate_return() { if (!_has_iterated_return) { iterate_returntype(); _has_iterated_return = true; } }
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146
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147 virtual void set(int size, BasicType type) = 0;
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148
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149 void do_bool () { set(T_BOOLEAN_size, T_BOOLEAN); }
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150 void do_char () { set(T_CHAR_size , T_CHAR ); }
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151 void do_float () { set(T_FLOAT_size , T_FLOAT ); }
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152 void do_double() { set(T_DOUBLE_size , T_DOUBLE ); }
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153 void do_byte () { set(T_BYTE_size , T_BYTE ); }
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154 void do_short () { set(T_SHORT_size , T_SHORT ); }
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155 void do_int () { set(T_INT_size , T_INT ); }
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156 void do_long () { set(T_LONG_size , T_LONG ); }
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157 void do_void () { set(T_VOID_size , T_VOID ); }
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158 void do_object(int begin, int end) { set(T_OBJECT_size , T_OBJECT ); }
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159 void do_array (int begin, int end) { set(T_ARRAY_size , T_ARRAY ); }
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160
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161 public:
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162 SignatureInfo(symbolHandle signature) : SignatureIterator(signature) {
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163 _has_iterated = _has_iterated_return = false;
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164 _size = 0;
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165 _return_type = T_ILLEGAL;
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166 }
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167
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168 };
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169
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170
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171 // Specialized SignatureIterator: Used to compute the argument size.
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172
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173 class ArgumentSizeComputer: public SignatureInfo {
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174 private:
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175 void set(int size, BasicType type) { _size += size; }
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176 public:
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177 ArgumentSizeComputer(symbolHandle signature) : SignatureInfo(signature) {}
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178
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179 int size() { lazy_iterate_parameters(); return _size; }
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180 };
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181
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182
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183 class ArgumentCount: public SignatureInfo {
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184 private:
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185 void set(int size, BasicType type) { _size ++; }
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186 public:
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187 ArgumentCount(symbolHandle signature) : SignatureInfo(signature) {}
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188
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189 int size() { lazy_iterate_parameters(); return _size; }
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190 };
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191
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192
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193 // Specialized SignatureIterator: Used to compute the result type.
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194
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195 class ResultTypeFinder: public SignatureInfo {
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196 private:
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197 void set(int size, BasicType type) { _return_type = type; }
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198 public:
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199 BasicType type() { lazy_iterate_return(); return _return_type; }
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200
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201 ResultTypeFinder(symbolHandle signature) : SignatureInfo(signature) {}
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202 };
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203
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204
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205 // Fingerprinter computes a unique ID for a given method. The ID
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206 // is a bitvector characterizing the methods signature (incl. the receiver).
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207 class Fingerprinter: public SignatureIterator {
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208 private:
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209 uint64_t _fingerprint;
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210 int _shift_count;
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211 methodHandle mh;
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212
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213 public:
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214
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215 void do_bool() { _fingerprint |= (((uint64_t)bool_parm) << _shift_count); _shift_count += parameter_feature_size; }
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216 void do_char() { _fingerprint |= (((uint64_t)char_parm) << _shift_count); _shift_count += parameter_feature_size; }
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217 void do_byte() { _fingerprint |= (((uint64_t)byte_parm) << _shift_count); _shift_count += parameter_feature_size; }
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218 void do_short() { _fingerprint |= (((uint64_t)short_parm) << _shift_count); _shift_count += parameter_feature_size; }
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219 void do_int() { _fingerprint |= (((uint64_t)int_parm) << _shift_count); _shift_count += parameter_feature_size; }
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220 void do_long() { _fingerprint |= (((uint64_t)long_parm) << _shift_count); _shift_count += parameter_feature_size; }
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221 void do_float() { _fingerprint |= (((uint64_t)float_parm) << _shift_count); _shift_count += parameter_feature_size; }
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222 void do_double() { _fingerprint |= (((uint64_t)double_parm) << _shift_count); _shift_count += parameter_feature_size; }
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223
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224 void do_object(int begin, int end) { _fingerprint |= (((uint64_t)obj_parm) << _shift_count); _shift_count += parameter_feature_size; }
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225 void do_array (int begin, int end) { _fingerprint |= (((uint64_t)obj_parm) << _shift_count); _shift_count += parameter_feature_size; }
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226
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227 void do_void() { ShouldNotReachHere(); }
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228
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229 Fingerprinter(methodHandle method) : SignatureIterator(method->signature()) {
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230 mh = method;
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231 _fingerprint = 0;
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232 }
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233
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234 Fingerprinter(Thread *thread, methodHandle method) : SignatureIterator(thread, method->signature()) {
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235 mh = method;
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236 _fingerprint = 0;
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237 }
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238
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239 uint64_t fingerprint() {
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240 // See if we fingerprinted this method already
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241 if (mh->constMethod()->fingerprint() != CONST64(0)) {
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242 return mh->constMethod()->fingerprint();
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243 }
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244
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245 if (mh->size_of_parameters() > max_size_of_parameters ) {
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246 _fingerprint = UCONST64(-1);
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247 mh->constMethod()->set_fingerprint(_fingerprint);
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248 return _fingerprint;
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249 }
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250
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251 assert( (int)mh->result_type() <= (int)result_feature_mask, "bad result type");
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252 _fingerprint = mh->result_type();
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253 _fingerprint <<= static_feature_size;
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254 if (mh->is_static()) _fingerprint |= 1;
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255 _shift_count = result_feature_size + static_feature_size;
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256 iterate_parameters();
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257 _fingerprint |= ((uint64_t)done_parm) << _shift_count;// mark end of sig
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258 mh->constMethod()->set_fingerprint(_fingerprint);
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259 return _fingerprint;
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260 }
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261 };
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262
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263
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264 // Specialized SignatureIterator: Used for native call purposes
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265
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266 class NativeSignatureIterator: public SignatureIterator {
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267 private:
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268 methodHandle _method;
605
98cb887364d3 6810672: Comment typos
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269 // We need separate JNI and Java offset values because in 64 bit mode,
0
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270 // the argument offsets are not in sync with the Java stack.
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271 // For example a long takes up 1 "C" stack entry but 2 Java stack entries.
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272 int _offset; // The java stack offset
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273 int _prepended; // number of prepended JNI parameters (1 JNIEnv, plus 1 mirror if static)
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274 int _jni_offset; // the current parameter offset, starting with 0
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275
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276 void do_bool () { pass_int(); _jni_offset++; _offset++; }
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277 void do_char () { pass_int(); _jni_offset++; _offset++; }
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278 #ifdef _LP64
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279 void do_float () { pass_float(); _jni_offset++; _offset++; }
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280 void do_double() { pass_double(); _jni_offset++; _offset += 2; }
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281 #else
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282 void do_float () { pass_int(); _jni_offset++; _offset++; }
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283 void do_double() { pass_double(); _jni_offset += 2; _offset += 2; }
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284 #endif
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285 void do_byte () { pass_int(); _jni_offset++; _offset++; }
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286 void do_short () { pass_int(); _jni_offset++; _offset++; }
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287 void do_int () { pass_int(); _jni_offset++; _offset++; }
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288 #ifdef _LP64
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289 void do_long () { pass_long(); _jni_offset++; _offset += 2; }
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290 #else
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291 void do_long () { pass_long(); _jni_offset += 2; _offset += 2; }
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292 #endif
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293 void do_void () { ShouldNotReachHere(); }
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294 void do_object(int begin, int end) { pass_object(); _jni_offset++; _offset++; }
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295 void do_array (int begin, int end) { pass_object(); _jni_offset++; _offset++; }
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296
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297 public:
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298 methodHandle method() const { return _method; }
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299 int offset() const { return _offset; }
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300 int jni_offset() const { return _jni_offset + _prepended; }
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301 // int java_offset() const { return method()->size_of_parameters() - _offset - 1; }
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302 bool is_static() const { return method()->is_static(); }
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303 virtual void pass_int() = 0;
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304 virtual void pass_long() = 0;
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305 virtual void pass_object() = 0;
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306 #ifdef _LP64
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307 virtual void pass_float() = 0;
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308 virtual void pass_double() = 0;
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309 #else
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310 virtual void pass_double() { pass_long(); } // may be same as long
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311 #endif
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312
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313 NativeSignatureIterator(methodHandle method) : SignatureIterator(method->signature()) {
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314 _method = method;
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315 _offset = 0;
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316 _jni_offset = 0;
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317
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318 const int JNIEnv_words = 1;
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319 const int mirror_words = 1;
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320 _prepended = !is_static() ? JNIEnv_words : JNIEnv_words + mirror_words;
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321 }
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322
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323 // iterate() calles the 2 virtual methods according to the following invocation syntax:
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324 //
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325 // {pass_int | pass_long | pass_object}
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326 //
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327 // Arguments are handled from left to right (receiver first, if any).
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328 // The offset() values refer to the Java stack offsets but are 0 based and increasing.
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329 // The java_offset() values count down to 0, and refer to the Java TOS.
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330 // The jni_offset() values increase from 1 or 2, and refer to C arguments.
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331
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332 void iterate() { iterate(Fingerprinter(method()).fingerprint());
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333 }
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334
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335
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336 // Optimized path if we have the bitvector form of signature
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337 void iterate( uint64_t fingerprint ) {
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338
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339 if (!is_static()) {
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340 // handle receiver (not handled by iterate because not in signature)
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341 pass_object(); _jni_offset++; _offset++;
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342 }
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343
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344 SignatureIterator::iterate_parameters( fingerprint );
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345 }
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346 };
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347
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348
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349 // Handy stream for iterating over signature
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350
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351 class SignatureStream : public StackObj {
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352 private:
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353 symbolHandle _signature;
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354 int _begin;
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355 int _end;
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356 BasicType _type;
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357 bool _at_return_type;
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358
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359 public:
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360 bool at_return_type() const { return _at_return_type; }
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361 bool is_done() const;
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362 void next_non_primitive(int t);
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363 void next() {
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364 symbolOop sig = _signature();
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365 int len = sig->utf8_length();
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366 if (_end >= len) {
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367 _end = len + 1;
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368 return;
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369 }
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370
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371 _begin = _end;
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372 int t = sig->byte_at(_begin);
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373 switch (t) {
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374 case 'B': _type = T_BYTE; break;
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375 case 'C': _type = T_CHAR; break;
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376 case 'D': _type = T_DOUBLE; break;
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377 case 'F': _type = T_FLOAT; break;
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378 case 'I': _type = T_INT; break;
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379 case 'J': _type = T_LONG; break;
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380 case 'S': _type = T_SHORT; break;
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381 case 'Z': _type = T_BOOLEAN; break;
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382 case 'V': _type = T_VOID; break;
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383 default : next_non_primitive(t);
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384 return;
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385 }
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386 _end++;
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387 }
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388
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389 SignatureStream(symbolHandle signature,
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390 bool is_method = true) :
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391 _signature(signature), _at_return_type(false) {
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392 _begin = _end = (is_method ? 1 : 0); // skip first '(' in method signatures
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393 next();
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394 }
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395
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396 bool is_object() const; // True if this argument is an object
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397 bool is_array() const; // True if this argument is an array
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398 BasicType type() const { return _type; }
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399 symbolOop as_symbol(TRAPS);
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400
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401 // return same as_symbol except allocation of new symbols is avoided.
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402 symbolOop as_symbol_or_null();
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403 };
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404
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405 class SignatureVerifier : public StackObj {
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406 public:
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407 // Returns true if the symbol is valid method or type signature
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408 static bool is_valid_signature(symbolHandle sig);
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409
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410 static bool is_valid_method_signature(symbolHandle sig);
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411 static bool is_valid_type_signature(symbolHandle sig);
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412 private:
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413
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414 static ssize_t is_valid_type(const char*, ssize_t);
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415 static bool invalid_name_char(char);
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416 };