src/cpu/x86/vm/frame_x86.inline.hpp

Mon, 01 Feb 2010 19:29:46 +0100

author
twisti
date
Mon, 01 Feb 2010 19:29:46 +0100
changeset 1639
18a389214829
parent 1636
24128c2ffa87
child 1690
e3a4305c6bc3
permissions
-rw-r--r--

6921352: JSR 292 needs its own deopt handler
Summary: We need to introduce a new MH deopt handler so we can easily determine if the deopt happened at a MH call site or not.
Reviewed-by: never, jrose

duke@435 1 /*
twisti@1639 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
duke@435 25 // Inline functions for Intel frames:
duke@435 26
duke@435 27 // Constructors:
duke@435 28
duke@435 29 inline frame::frame() {
duke@435 30 _pc = NULL;
duke@435 31 _sp = NULL;
duke@435 32 _unextended_sp = NULL;
duke@435 33 _fp = NULL;
duke@435 34 _cb = NULL;
duke@435 35 _deopt_state = unknown;
duke@435 36 }
duke@435 37
twisti@1639 38 inline frame::frame(intptr_t* sp, intptr_t* fp, address pc) {
duke@435 39 _sp = sp;
duke@435 40 _unextended_sp = sp;
duke@435 41 _fp = fp;
duke@435 42 _pc = pc;
duke@435 43 assert(pc != NULL, "no pc?");
duke@435 44 _cb = CodeCache::find_blob(pc);
twisti@1639 45
twisti@1639 46 address original_pc = nmethod::get_deopt_original_pc(this);
twisti@1639 47 if (original_pc != NULL) {
twisti@1639 48 _pc = original_pc;
duke@435 49 _deopt_state = is_deoptimized;
duke@435 50 } else {
duke@435 51 _deopt_state = not_deoptimized;
duke@435 52 }
duke@435 53 }
duke@435 54
twisti@1639 55 inline frame::frame(intptr_t* sp, intptr_t* unextended_sp, intptr_t* fp, address pc) {
duke@435 56 _sp = sp;
duke@435 57 _unextended_sp = unextended_sp;
duke@435 58 _fp = fp;
duke@435 59 _pc = pc;
duke@435 60 assert(pc != NULL, "no pc?");
duke@435 61 _cb = CodeCache::find_blob(pc);
twisti@1639 62
twisti@1639 63 address original_pc = nmethod::get_deopt_original_pc(this);
twisti@1639 64 if (original_pc != NULL) {
twisti@1639 65 _pc = original_pc;
twisti@1639 66 assert(((nmethod*)_cb)->code_contains(_pc), "original PC must be in nmethod");
duke@435 67 _deopt_state = is_deoptimized;
duke@435 68 } else {
duke@435 69 _deopt_state = not_deoptimized;
duke@435 70 }
duke@435 71 }
duke@435 72
duke@435 73 inline frame::frame(intptr_t* sp, intptr_t* fp) {
duke@435 74 _sp = sp;
duke@435 75 _unextended_sp = sp;
duke@435 76 _fp = fp;
duke@435 77 _pc = (address)(sp[-1]);
sgoldman@542 78
sgoldman@542 79 // Here's a sticky one. This constructor can be called via AsyncGetCallTrace
sgoldman@542 80 // when last_Java_sp is non-null but the pc fetched is junk. If we are truly
sgoldman@542 81 // unlucky the junk value could be to a zombied method and we'll die on the
sgoldman@542 82 // find_blob call. This is also why we can have no asserts on the validity
sgoldman@542 83 // of the pc we find here. AsyncGetCallTrace -> pd_get_top_frame_for_signal_handler
sgoldman@542 84 // -> pd_last_frame should use a specialized version of pd_last_frame which could
sgoldman@542 85 // call a specilaized frame constructor instead of this one.
sgoldman@542 86 // Then we could use the assert below. However this assert is of somewhat dubious
sgoldman@542 87 // value.
sgoldman@542 88 // assert(_pc != NULL, "no pc?");
sgoldman@542 89
duke@435 90 _cb = CodeCache::find_blob(_pc);
duke@435 91
twisti@1639 92 address original_pc = nmethod::get_deopt_original_pc(this);
twisti@1639 93 if (original_pc != NULL) {
twisti@1639 94 _pc = original_pc;
duke@435 95 _deopt_state = is_deoptimized;
duke@435 96 } else {
duke@435 97 _deopt_state = not_deoptimized;
duke@435 98 }
duke@435 99 }
duke@435 100
duke@435 101 // Accessors
duke@435 102
duke@435 103 inline bool frame::equal(frame other) const {
duke@435 104 bool ret = sp() == other.sp()
duke@435 105 && unextended_sp() == other.unextended_sp()
duke@435 106 && fp() == other.fp()
duke@435 107 && pc() == other.pc();
duke@435 108 assert(!ret || ret && cb() == other.cb() && _deopt_state == other._deopt_state, "inconsistent construction");
duke@435 109 return ret;
duke@435 110 }
duke@435 111
duke@435 112 // Return unique id for this frame. The id must have a value where we can distinguish
duke@435 113 // identity and younger/older relationship. NULL represents an invalid (incomparable)
duke@435 114 // frame.
duke@435 115 inline intptr_t* frame::id(void) const { return unextended_sp(); }
duke@435 116
duke@435 117 // Relationals on frames based
duke@435 118 // Return true if the frame is younger (more recent activation) than the frame represented by id
duke@435 119 inline bool frame::is_younger(intptr_t* id) const { assert(this->id() != NULL && id != NULL, "NULL frame id");
duke@435 120 return this->id() < id ; }
duke@435 121
duke@435 122 // Return true if the frame is older (less recent activation) than the frame represented by id
duke@435 123 inline bool frame::is_older(intptr_t* id) const { assert(this->id() != NULL && id != NULL, "NULL frame id");
duke@435 124 return this->id() > id ; }
duke@435 125
duke@435 126
duke@435 127
duke@435 128 inline intptr_t* frame::link() const { return (intptr_t*) *(intptr_t **)addr_at(link_offset); }
duke@435 129 inline void frame::set_link(intptr_t* addr) { *(intptr_t **)addr_at(link_offset) = addr; }
duke@435 130
duke@435 131
duke@435 132 inline intptr_t* frame::unextended_sp() const { return _unextended_sp; }
duke@435 133
duke@435 134 // Return address:
duke@435 135
duke@435 136 inline address* frame::sender_pc_addr() const { return (address*) addr_at( return_addr_offset); }
duke@435 137 inline address frame::sender_pc() const { return *sender_pc_addr(); }
duke@435 138
duke@435 139 // return address of param, zero origin index.
duke@435 140 inline address* frame::native_param_addr(int idx) const { return (address*) addr_at( native_frame_initial_param_offset+idx); }
duke@435 141
duke@435 142 #ifdef CC_INTERP
duke@435 143
duke@435 144 inline interpreterState frame::get_interpreterState() const {
coleenp@955 145 return ((interpreterState)addr_at( -((int)sizeof(BytecodeInterpreter))/wordSize ));
duke@435 146 }
duke@435 147
duke@435 148 inline intptr_t* frame::sender_sp() const {
duke@435 149 // Hmm this seems awfully expensive QQQ, is this really called with interpreted frames?
duke@435 150 if (is_interpreted_frame()) {
duke@435 151 assert(false, "should never happen");
duke@435 152 return get_interpreterState()->sender_sp();
duke@435 153 } else {
duke@435 154 return addr_at(sender_sp_offset);
duke@435 155 }
duke@435 156 }
duke@435 157
duke@435 158 inline intptr_t** frame::interpreter_frame_locals_addr() const {
duke@435 159 assert(is_interpreted_frame(), "must be interpreted");
duke@435 160 return &(get_interpreterState()->_locals);
duke@435 161 }
duke@435 162
duke@435 163 inline intptr_t* frame::interpreter_frame_bcx_addr() const {
duke@435 164 assert(is_interpreted_frame(), "must be interpreted");
never@739 165 return (intptr_t*) &(get_interpreterState()->_bcp);
duke@435 166 }
duke@435 167
duke@435 168
duke@435 169 // Constant pool cache
duke@435 170
duke@435 171 inline constantPoolCacheOop* frame::interpreter_frame_cache_addr() const {
duke@435 172 assert(is_interpreted_frame(), "must be interpreted");
duke@435 173 return &(get_interpreterState()->_constants);
duke@435 174 }
duke@435 175
duke@435 176 // Method
duke@435 177
duke@435 178 inline methodOop* frame::interpreter_frame_method_addr() const {
duke@435 179 assert(is_interpreted_frame(), "must be interpreted");
duke@435 180 return &(get_interpreterState()->_method);
duke@435 181 }
duke@435 182
duke@435 183 inline intptr_t* frame::interpreter_frame_mdx_addr() const {
duke@435 184 assert(is_interpreted_frame(), "must be interpreted");
never@739 185 return (intptr_t*) &(get_interpreterState()->_mdx);
duke@435 186 }
duke@435 187
duke@435 188 // top of expression stack
duke@435 189 inline intptr_t* frame::interpreter_frame_tos_address() const {
duke@435 190 assert(is_interpreted_frame(), "wrong frame type");
duke@435 191 return get_interpreterState()->_stack + 1;
duke@435 192 }
duke@435 193
duke@435 194 #else /* asm interpreter */
duke@435 195 inline intptr_t* frame::sender_sp() const { return addr_at( sender_sp_offset); }
duke@435 196
duke@435 197 inline intptr_t** frame::interpreter_frame_locals_addr() const {
duke@435 198 return (intptr_t**)addr_at(interpreter_frame_locals_offset);
duke@435 199 }
duke@435 200
duke@435 201 inline intptr_t* frame::interpreter_frame_last_sp() const {
duke@435 202 return *(intptr_t**)addr_at(interpreter_frame_last_sp_offset);
duke@435 203 }
duke@435 204
duke@435 205 inline intptr_t* frame::interpreter_frame_bcx_addr() const {
duke@435 206 return (intptr_t*)addr_at(interpreter_frame_bcx_offset);
duke@435 207 }
duke@435 208
duke@435 209
duke@435 210 inline intptr_t* frame::interpreter_frame_mdx_addr() const {
duke@435 211 return (intptr_t*)addr_at(interpreter_frame_mdx_offset);
duke@435 212 }
duke@435 213
duke@435 214
duke@435 215
duke@435 216 // Constant pool cache
duke@435 217
duke@435 218 inline constantPoolCacheOop* frame::interpreter_frame_cache_addr() const {
duke@435 219 return (constantPoolCacheOop*)addr_at(interpreter_frame_cache_offset);
duke@435 220 }
duke@435 221
duke@435 222 // Method
duke@435 223
duke@435 224 inline methodOop* frame::interpreter_frame_method_addr() const {
duke@435 225 return (methodOop*)addr_at(interpreter_frame_method_offset);
duke@435 226 }
duke@435 227
duke@435 228 // top of expression stack
duke@435 229 inline intptr_t* frame::interpreter_frame_tos_address() const {
duke@435 230 intptr_t* last_sp = interpreter_frame_last_sp();
twisti@1572 231 if (last_sp == NULL) {
duke@435 232 return sp();
duke@435 233 } else {
twisti@1572 234 // sp() may have been extended or shrunk by an adapter. At least
twisti@1572 235 // check that we don't fall behind the legal region.
twisti@1572 236 assert(last_sp < (intptr_t*) interpreter_frame_monitor_begin(), "bad tos");
duke@435 237 return last_sp;
duke@435 238 }
duke@435 239 }
duke@435 240
duke@435 241 #endif /* CC_INTERP */
duke@435 242
duke@435 243 inline int frame::pd_oop_map_offset_adjustment() const {
duke@435 244 return 0;
duke@435 245 }
duke@435 246
duke@435 247 inline int frame::interpreter_frame_monitor_size() {
duke@435 248 return BasicObjectLock::size();
duke@435 249 }
duke@435 250
duke@435 251
duke@435 252 // expression stack
duke@435 253 // (the max_stack arguments are used by the GC; see class FrameClosure)
duke@435 254
duke@435 255 inline intptr_t* frame::interpreter_frame_expression_stack() const {
duke@435 256 intptr_t* monitor_end = (intptr_t*) interpreter_frame_monitor_end();
duke@435 257 return monitor_end-1;
duke@435 258 }
duke@435 259
duke@435 260
duke@435 261 inline jint frame::interpreter_frame_expression_stack_direction() { return -1; }
duke@435 262
duke@435 263
duke@435 264 // Entry frames
duke@435 265
duke@435 266 inline JavaCallWrapper* frame::entry_frame_call_wrapper() const {
duke@435 267 return (JavaCallWrapper*)at(entry_frame_call_wrapper_offset);
duke@435 268 }
duke@435 269
duke@435 270
duke@435 271 // Compiled frames
duke@435 272
duke@435 273 inline int frame::local_offset_for_compiler(int local_index, int nof_args, int max_nof_locals, int max_nof_monitors) {
duke@435 274 return (nof_args - local_index + (local_index < nof_args ? 1: -1));
duke@435 275 }
duke@435 276
duke@435 277 inline int frame::monitor_offset_for_compiler(int local_index, int nof_args, int max_nof_locals, int max_nof_monitors) {
duke@435 278 return local_offset_for_compiler(local_index, nof_args, max_nof_locals, max_nof_monitors);
duke@435 279 }
duke@435 280
duke@435 281 inline int frame::min_local_offset_for_compiler(int nof_args, int max_nof_locals, int max_nof_monitors) {
duke@435 282 return (nof_args - (max_nof_locals + max_nof_monitors*2) - 1);
duke@435 283 }
duke@435 284
duke@435 285 inline bool frame::volatile_across_calls(Register reg) {
duke@435 286 return true;
duke@435 287 }
duke@435 288
duke@435 289
duke@435 290
duke@435 291 inline oop frame::saved_oop_result(RegisterMap* map) const {
duke@435 292 return *((oop*) map->location(rax->as_VMReg()));
duke@435 293 }
duke@435 294
duke@435 295 inline void frame::set_saved_oop_result(RegisterMap* map, oop obj) {
duke@435 296 *((oop*) map->location(rax->as_VMReg())) = obj;
duke@435 297 }

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