src/share/vm/interpreter/abstractInterpreter.hpp

Tue, 11 May 2010 14:35:43 -0700

author
prr
date
Tue, 11 May 2010 14:35:43 -0700
changeset 1840
fb57d4cf76c2
parent 1609
ddb7834449d0
child 1861
2338d41fbd81
permissions
-rw-r--r--

6931180: Migration to recent versions of MS Platform SDK
6951582: Build problems on win64
Summary: Changes to enable building JDK7 with Microsoft Visual Studio 2010
Reviewed-by: ohair, art, ccheung, dcubed

duke@435 1 /*
never@1609 2 * Copyright 1997-2010 Sun Microsystems, Inc. All Rights Reserved.
duke@435 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@435 4 *
duke@435 5 * This code is free software; you can redistribute it and/or modify it
duke@435 6 * under the terms of the GNU General Public License version 2 only, as
duke@435 7 * published by the Free Software Foundation.
duke@435 8 *
duke@435 9 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@435 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@435 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@435 12 * version 2 for more details (a copy is included in the LICENSE file that
duke@435 13 * accompanied this code).
duke@435 14 *
duke@435 15 * You should have received a copy of the GNU General Public License version
duke@435 16 * 2 along with this work; if not, write to the Free Software Foundation,
duke@435 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@435 18 *
duke@435 19 * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
duke@435 20 * CA 95054 USA or visit www.sun.com if you need additional information or
duke@435 21 * have any questions.
duke@435 22 *
duke@435 23 */
duke@435 24
twisti@1040 25 // This file contains the platform-independent parts
duke@435 26 // of the abstract interpreter and the abstract interpreter generator.
duke@435 27
duke@435 28 // Organization of the interpreter(s). There exists two different interpreters in hotpot
duke@435 29 // an assembly language version (aka template interpreter) and a high level language version
duke@435 30 // (aka c++ interpreter). Th division of labor is as follows:
duke@435 31
duke@435 32 // Template Interpreter C++ Interpreter Functionality
duke@435 33 //
duke@435 34 // templateTable* bytecodeInterpreter* actual interpretation of bytecodes
duke@435 35 //
duke@435 36 // templateInterpreter* cppInterpreter* generation of assembly code that creates
duke@435 37 // and manages interpreter runtime frames.
duke@435 38 // Also code for populating interpreter
duke@435 39 // frames created during deoptimization.
duke@435 40 //
duke@435 41 // For both template and c++ interpreter. There are common files for aspects of the interpreter
duke@435 42 // that are generic to both interpreters. This is the layout:
duke@435 43 //
duke@435 44 // abstractInterpreter.hpp: generic description of the interpreter.
duke@435 45 // interpreter*: generic frame creation and handling.
duke@435 46 //
duke@435 47
duke@435 48 //------------------------------------------------------------------------------------------------------------------------
duke@435 49 // The C++ interface to the bytecode interpreter(s).
duke@435 50
duke@435 51 class AbstractInterpreter: AllStatic {
duke@435 52 friend class VMStructs;
duke@435 53 friend class Interpreter;
duke@435 54 friend class CppInterpreterGenerator;
duke@435 55 public:
duke@435 56 enum MethodKind {
duke@435 57 zerolocals, // method needs locals initialization
duke@435 58 zerolocals_synchronized, // method needs locals initialization & is synchronized
duke@435 59 native, // native method
duke@435 60 native_synchronized, // native method & is synchronized
duke@435 61 empty, // empty method (code: _return)
duke@435 62 accessor, // accessor method (code: _aload_0, _getfield, _(a|i)return)
duke@435 63 abstract, // abstract method (throws an AbstractMethodException)
jrose@1145 64 method_handle, // java.dyn.MethodHandles::invoke
duke@435 65 java_lang_math_sin, // implementation of java.lang.Math.sin (x)
duke@435 66 java_lang_math_cos, // implementation of java.lang.Math.cos (x)
duke@435 67 java_lang_math_tan, // implementation of java.lang.Math.tan (x)
duke@435 68 java_lang_math_abs, // implementation of java.lang.Math.abs (x)
duke@435 69 java_lang_math_sqrt, // implementation of java.lang.Math.sqrt (x)
duke@435 70 java_lang_math_log, // implementation of java.lang.Math.log (x)
duke@435 71 java_lang_math_log10, // implementation of java.lang.Math.log10 (x)
duke@435 72 number_of_method_entries,
duke@435 73 invalid = -1
duke@435 74 };
duke@435 75
duke@435 76 enum SomeConstants {
duke@435 77 number_of_result_handlers = 10 // number of result handlers for native calls
duke@435 78 };
duke@435 79
duke@435 80 protected:
duke@435 81 static StubQueue* _code; // the interpreter code (codelets)
duke@435 82
duke@435 83 static bool _notice_safepoints; // true if safepoints are activated
duke@435 84
duke@435 85 static address _native_entry_begin; // Region for native entry code
duke@435 86 static address _native_entry_end;
duke@435 87
duke@435 88 // method entry points
duke@435 89 static address _entry_table[number_of_method_entries]; // entry points for a given method
duke@435 90 static address _native_abi_to_tosca[number_of_result_handlers]; // for native method result handlers
duke@435 91 static address _slow_signature_handler; // the native method generic (slow) signature handler
duke@435 92
duke@435 93 static address _rethrow_exception_entry; // rethrows an activation in previous frame
duke@435 94
duke@435 95 friend class AbstractInterpreterGenerator;
duke@435 96 friend class InterpreterGenerator;
duke@435 97 friend class InterpreterMacroAssembler;
duke@435 98
duke@435 99 public:
duke@435 100 // Initialization/debugging
duke@435 101 static void initialize();
duke@435 102 static StubQueue* code() { return _code; }
duke@435 103
duke@435 104
duke@435 105 // Method activation
duke@435 106 static MethodKind method_kind(methodHandle m);
duke@435 107 static address entry_for_kind(MethodKind k) { assert(0 <= k && k < number_of_method_entries, "illegal kind"); return _entry_table[k]; }
duke@435 108 static address entry_for_method(methodHandle m) { return _entry_table[method_kind(m)]; }
duke@435 109
duke@435 110 static void print_method_kind(MethodKind kind) PRODUCT_RETURN;
duke@435 111
never@1609 112 static bool can_be_compiled(methodHandle m);
never@1609 113
duke@435 114 // Runtime support
duke@435 115
duke@435 116 // length = invoke bytecode length (to advance to next bytecode)
duke@435 117 static address deopt_entry (TosState state, int length) { ShouldNotReachHere(); return NULL; }
duke@435 118 static address return_entry (TosState state, int length) { ShouldNotReachHere(); return NULL; }
duke@435 119
duke@435 120 static address rethrow_exception_entry() { return _rethrow_exception_entry; }
duke@435 121
duke@435 122 // Activation size in words for a method that is just being called.
duke@435 123 // Parameters haven't been pushed so count them too.
duke@435 124 static int size_top_interpreter_activation(methodOop method);
duke@435 125
duke@435 126 // Deoptimization support
cfang@1335 127 // Compute the entry address for continuation after
cfang@1335 128 static address deopt_continue_after_entry(methodOop method,
cfang@1335 129 address bcp,
cfang@1335 130 int callee_parameters,
cfang@1335 131 bool is_top_frame);
cfang@1335 132 // Compute the entry address for reexecution
cfang@1335 133 static address deopt_reexecute_entry(methodOop method, address bcp);
cfang@1335 134 // Deoptimization should reexecute this bytecode
cfang@1335 135 static bool bytecode_should_reexecute(Bytecodes::Code code);
duke@435 136
duke@435 137 // share implementation of size_activation and layout_activation:
duke@435 138 static int size_activation(methodOop method,
duke@435 139 int temps,
duke@435 140 int popframe_args,
duke@435 141 int monitors,
duke@435 142 int callee_params,
duke@435 143 int callee_locals,
duke@435 144 bool is_top_frame);
duke@435 145
duke@435 146 static int layout_activation(methodOop method,
duke@435 147 int temps,
duke@435 148 int popframe_args,
duke@435 149 int monitors,
duke@435 150 int callee_params,
duke@435 151 int callee_locals,
duke@435 152 frame* caller,
duke@435 153 frame* interpreter_frame,
duke@435 154 bool is_top_frame);
duke@435 155
duke@435 156 // Runtime support
duke@435 157 static bool is_not_reached( methodHandle method, int bci);
duke@435 158 // Safepoint support
duke@435 159 static void notice_safepoints() { ShouldNotReachHere(); } // stops the thread when reaching a safepoint
duke@435 160 static void ignore_safepoints() { ShouldNotReachHere(); } // ignores safepoints
duke@435 161
duke@435 162 // Support for native calls
duke@435 163 static address slow_signature_handler() { return _slow_signature_handler; }
duke@435 164 static address result_handler(BasicType type) { return _native_abi_to_tosca[BasicType_as_index(type)]; }
duke@435 165 static int BasicType_as_index(BasicType type); // computes index into result_handler_by_index table
duke@435 166 static bool in_native_entry(address pc) { return _native_entry_begin <= pc && pc < _native_entry_end; }
duke@435 167 // Debugging/printing
duke@435 168 static void print(); // prints the interpreter code
duke@435 169
duke@435 170 // Support for Tagged Stacks
duke@435 171 //
duke@435 172 // Tags are stored on the Java Expression stack above the value:
duke@435 173 //
duke@435 174 // tag
duke@435 175 // value
duke@435 176 //
duke@435 177 // For double values:
duke@435 178 //
duke@435 179 // tag2
duke@435 180 // high word
duke@435 181 // tag1
duke@435 182 // low word
duke@435 183
duke@435 184 public:
duke@435 185 static int stackElementWords() { return TaggedStackInterpreter ? 2 : 1; }
duke@435 186 static int stackElementSize() { return stackElementWords()*wordSize; }
duke@435 187 static int logStackElementSize() { return
duke@435 188 TaggedStackInterpreter? LogBytesPerWord+1 : LogBytesPerWord; }
duke@435 189
duke@435 190 // Tag is at pointer, value is one below for a stack growing down
duke@435 191 // (or above for stack growing up)
duke@435 192 static int value_offset_in_bytes() {
duke@435 193 return TaggedStackInterpreter ?
duke@435 194 frame::interpreter_frame_expression_stack_direction() * wordSize : 0;
duke@435 195 }
duke@435 196 static int tag_offset_in_bytes() {
duke@435 197 assert(TaggedStackInterpreter, "should not call this");
duke@435 198 return 0;
duke@435 199 }
duke@435 200
duke@435 201 // Tagged Locals
duke@435 202 // Locals are stored relative to Llocals:
duke@435 203 //
duke@435 204 // tag <- Llocals[n]
duke@435 205 // value
duke@435 206 //
duke@435 207 // Category 2 types are indexed as:
duke@435 208 //
duke@435 209 // tag <- Llocals[-n]
duke@435 210 // high word
duke@435 211 // tag <- Llocals[-n+1]
duke@435 212 // low word
duke@435 213 //
duke@435 214
duke@435 215 // Local values relative to locals[n]
duke@435 216 static int local_offset_in_bytes(int n) {
duke@435 217 return ((frame::interpreter_frame_expression_stack_direction() * n) *
duke@435 218 stackElementSize()) + value_offset_in_bytes();
duke@435 219 }
duke@435 220 static int local_tag_offset_in_bytes(int n) {
duke@435 221 assert(TaggedStackInterpreter, "should not call this");
duke@435 222 return ((frame::interpreter_frame_expression_stack_direction() * n) *
duke@435 223 stackElementSize()) + tag_offset_in_bytes();
duke@435 224 }
duke@435 225
jrose@1161 226 // access to stacked values according to type:
jrose@1161 227 static oop* oop_addr_in_slot(intptr_t* slot_addr) {
jrose@1161 228 return (oop*) slot_addr;
jrose@1161 229 }
jrose@1161 230 static jint* int_addr_in_slot(intptr_t* slot_addr) {
jrose@1161 231 if ((int) sizeof(jint) < wordSize && !Bytes::is_Java_byte_ordering_different())
jrose@1161 232 // big-endian LP64
jrose@1161 233 return (jint*)(slot_addr + 1) - 1;
jrose@1161 234 else
jrose@1161 235 return (jint*) slot_addr;
jrose@1161 236 }
jrose@1161 237 static jlong long_in_slot(intptr_t* slot_addr) {
jrose@1161 238 if (sizeof(intptr_t) >= sizeof(jlong)) {
jrose@1161 239 return *(jlong*) slot_addr;
jrose@1161 240 } else if (!TaggedStackInterpreter) {
jrose@1161 241 return Bytes::get_native_u8((address)slot_addr);
jrose@1161 242 } else {
jrose@1161 243 assert(sizeof(intptr_t) * 2 == sizeof(jlong), "ILP32");
jrose@1161 244 // assemble the long in memory order (not arithmetic order)
jrose@1161 245 union { jlong j; jint i[2]; } u;
jrose@1161 246 u.i[0] = (jint) slot_addr[0*stackElementSize()];
jrose@1161 247 u.i[1] = (jint) slot_addr[1*stackElementSize()];
jrose@1161 248 return u.j;
jrose@1161 249 }
jrose@1161 250 }
jrose@1161 251 static void set_long_in_slot(intptr_t* slot_addr, jlong value) {
jrose@1161 252 if (sizeof(intptr_t) >= sizeof(jlong)) {
jrose@1161 253 *(jlong*) slot_addr = value;
jrose@1161 254 } else if (!TaggedStackInterpreter) {
jrose@1161 255 Bytes::put_native_u8((address)slot_addr, value);
jrose@1161 256 } else {
jrose@1161 257 assert(sizeof(intptr_t) * 2 == sizeof(jlong), "ILP32");
jrose@1161 258 // assemble the long in memory order (not arithmetic order)
jrose@1161 259 union { jlong j; jint i[2]; } u;
jrose@1161 260 u.j = value;
jrose@1161 261 slot_addr[0*stackElementSize()] = (intptr_t) u.i[0];
jrose@1161 262 slot_addr[1*stackElementSize()] = (intptr_t) u.i[1];
jrose@1161 263 }
jrose@1161 264 }
jrose@1161 265 static void get_jvalue_in_slot(intptr_t* slot_addr, BasicType type, jvalue* value) {
jrose@1161 266 switch (type) {
jrose@1161 267 case T_BOOLEAN: value->z = *int_addr_in_slot(slot_addr); break;
jrose@1161 268 case T_CHAR: value->c = *int_addr_in_slot(slot_addr); break;
jrose@1161 269 case T_BYTE: value->b = *int_addr_in_slot(slot_addr); break;
jrose@1161 270 case T_SHORT: value->s = *int_addr_in_slot(slot_addr); break;
jrose@1161 271 case T_INT: value->i = *int_addr_in_slot(slot_addr); break;
jrose@1161 272 case T_LONG: value->j = long_in_slot(slot_addr); break;
jrose@1161 273 case T_FLOAT: value->f = *(jfloat*)int_addr_in_slot(slot_addr); break;
jrose@1161 274 case T_DOUBLE: value->d = jdouble_cast(long_in_slot(slot_addr)); break;
jrose@1161 275 case T_OBJECT: value->l = (jobject)*oop_addr_in_slot(slot_addr); break;
jrose@1161 276 default: ShouldNotReachHere();
jrose@1161 277 }
jrose@1161 278 }
jrose@1161 279 static void set_jvalue_in_slot(intptr_t* slot_addr, BasicType type, jvalue* value) {
jrose@1161 280 switch (type) {
jrose@1161 281 case T_BOOLEAN: *int_addr_in_slot(slot_addr) = (value->z != 0); break;
jrose@1161 282 case T_CHAR: *int_addr_in_slot(slot_addr) = value->c; break;
jrose@1161 283 case T_BYTE: *int_addr_in_slot(slot_addr) = value->b; break;
jrose@1161 284 case T_SHORT: *int_addr_in_slot(slot_addr) = value->s; break;
jrose@1161 285 case T_INT: *int_addr_in_slot(slot_addr) = value->i; break;
jrose@1161 286 case T_LONG: set_long_in_slot(slot_addr, value->j); break;
jrose@1161 287 case T_FLOAT: *(jfloat*)int_addr_in_slot(slot_addr) = value->f; break;
jrose@1161 288 case T_DOUBLE: set_long_in_slot(slot_addr, jlong_cast(value->d)); break;
jrose@1161 289 case T_OBJECT: *oop_addr_in_slot(slot_addr) = (oop) value->l; break;
jrose@1161 290 default: ShouldNotReachHere();
jrose@1161 291 }
jrose@1161 292 }
duke@435 293 };
duke@435 294
duke@435 295 //------------------------------------------------------------------------------------------------------------------------
duke@435 296 // The interpreter generator.
duke@435 297
duke@435 298 class Template;
duke@435 299 class AbstractInterpreterGenerator: public StackObj {
duke@435 300 protected:
duke@435 301 InterpreterMacroAssembler* _masm;
duke@435 302
duke@435 303 // shared code sequences
duke@435 304 // Converter for native abi result to tosca result
duke@435 305 address generate_result_handler_for(BasicType type);
duke@435 306 address generate_slow_signature_handler();
duke@435 307
duke@435 308 // entry point generator
duke@435 309 address generate_method_entry(AbstractInterpreter::MethodKind kind);
duke@435 310
duke@435 311 void bang_stack_shadow_pages(bool native_call);
duke@435 312
duke@435 313 void generate_all();
duke@435 314
duke@435 315 public:
duke@435 316 AbstractInterpreterGenerator(StubQueue* _code);
duke@435 317 };

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