src/cpu/mips/vm/c1_Runtime1_mips.cpp

Tue, 05 Mar 2019 17:00:17 +0800

author
aoqi
date
Tue, 05 Mar 2019 17:00:17 +0800
changeset 9459
814e9e335067
parent 9251
1ccc5a3b3671
child 9645
ac996ba07f9d
permissions
-rw-r--r--

#8573 Cleanup: x86 registers in comments; comment style; deadcode
Reviewed-by: zhaixiang

aoqi@1 1 /*
aoqi@1 2 * Copyright (c) 1999, 2013, Oracle and/or its affiliates. All rights reserved.
aoqi@9459 3 * Copyright (c) 2015, 2019, Loongson Technology. All rights reserved.
aoqi@1 4 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
aoqi@1 5 *
aoqi@1 6 * This code is free software; you can redistribute it and/or modify it
aoqi@1 7 * under the terms of the GNU General Public License version 2 only, as
aoqi@1 8 * published by the Free Software Foundation.
aoqi@1 9 *
aoqi@1 10 * This code is distributed in the hope that it will be useful, but WITHOUT
aoqi@1 11 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
aoqi@1 12 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
aoqi@1 13 * version 2 for more details (a copy is included in the LICENSE file that
aoqi@1 14 * accompanied this code).
aoqi@1 15 *
aoqi@1 16 * You should have received a copy of the GNU General Public License version
aoqi@1 17 * 2 along with this work; if not, write to the Free Software Foundation,
aoqi@1 18 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
aoqi@1 19 *
aoqi@1 20 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
aoqi@1 21 * or visit www.oracle.com if you need additional information or have any
aoqi@1 22 * questions.
aoqi@1 23 *
aoqi@1 24 */
aoqi@1 25
aoqi@1 26 #include "precompiled.hpp"
aoqi@1 27 #include "asm/assembler.hpp"
aoqi@1 28 #include "c1/c1_Defs.hpp"
aoqi@1 29 #include "c1/c1_MacroAssembler.hpp"
aoqi@1 30 #include "c1/c1_Runtime1.hpp"
aoqi@1 31 #include "interpreter/interpreter.hpp"
aoqi@1 32 #include "nativeInst_mips.hpp"
aoqi@1 33 #include "oops/compiledICHolder.hpp"
aoqi@1 34 #include "oops/oop.inline.hpp"
aoqi@1 35 #include "prims/jvmtiExport.hpp"
aoqi@1 36 #include "register_mips.hpp"
aoqi@1 37 #include "runtime/sharedRuntime.hpp"
aoqi@1 38 #include "runtime/signature.hpp"
aoqi@1 39 #include "runtime/vframeArray.hpp"
aoqi@6880 40 #include "utilities/macros.hpp"
aoqi@1 41 #include "vmreg_mips.inline.hpp"
aoqi@6880 42 #if INCLUDE_ALL_GCS
aoqi@6880 43 #include "gc_implementation/g1/g1SATBCardTableModRefBS.hpp"
aoqi@6880 44 #endif
aoqi@1 45
aoqi@1 46
aoqi@1 47 // Implementation of StubAssembler
aoqi@1 48 // this method will preserve the stack space for arguments as indicated by args_size
aoqi@1 49 // for stack alignment consideration, you cannot call this with argument in stack.
aoqi@1 50 // if you need >3 arguments, you must implement this method yourself.
fujie@9153 51 int StubAssembler::call_RT(Register oop_result1, Register metadata_result, address entry, int args_size) {
aoqi@6880 52 // setup registers
aoqi@6880 53 const Register thread = TREG; // is callee-saved register (Visual C++ calling conventions)
fujie@9153 54 assert(!(oop_result1->is_valid() || metadata_result->is_valid()) || oop_result1 != metadata_result, "registers must be different");
fujie@9153 55 assert(oop_result1 != thread && metadata_result != thread, "registers must be different");
aoqi@6880 56 assert(args_size >= 0, "illegal args_size");
fujie@9153 57 bool align_stack = false;
fujie@9153 58 #ifdef _LP64
fujie@9153 59 // At a method handle call, the stack may not be properly aligned
fujie@9153 60 // when returning with an exception.
fujie@9153 61 align_stack = (stub_id() == Runtime1::handle_exception_from_callee_id);
fujie@9153 62 #endif
aoqi@1 63
aoqi@6880 64 set_num_rt_args(1 + args_size);
aoqi@1 65
aoqi@1 66
aoqi@6880 67 // push java thread (becomes first argument of C function)
aoqi@6880 68 get_thread(thread);
aoqi@6880 69 move(A0, thread);
aoqi@1 70
fujie@9153 71 if(!align_stack) {
fujie@9153 72 set_last_Java_frame(thread, NOREG, FP, NULL);
fujie@9153 73 } else {
fujie@9153 74 address the_pc = pc();
fujie@9153 75 set_last_Java_frame(thread, NOREG, FP, the_pc);
fujie@9153 76 move(AT, -(StackAlignmentInBytes));
fujie@9153 77 andr(SP, SP, AT);
fujie@9153 78 }
aoqi@1 79
aoqi@6880 80 relocate(relocInfo::internal_pc_type);
aoqi@6880 81 {
aoqi@1 82 #ifndef _LP64
aoqi@6880 83 int save_pc = (int)pc() + 12 + NativeCall::return_address_offset;
aoqi@6880 84 lui(AT, Assembler::split_high(save_pc));
aoqi@6880 85 addiu(AT, AT, Assembler::split_low(save_pc));
aoqi@1 86 #else
aoqi@6880 87 uintptr_t save_pc = (uintptr_t)pc() + NativeMovConstReg::instruction_size + 1 * BytesPerInstWord + NativeCall::return_address_offset_long;
aoqi@6880 88 li48(AT, save_pc);
aoqi@1 89 #endif
aoqi@6880 90 }
aoqi@6880 91 st_ptr(AT, thread, in_bytes(JavaThread::last_Java_pc_offset()));
aoqi@1 92
aoqi@6880 93 // do the call
aoqi@6880 94 #ifndef _LP64
aoqi@6880 95 lui(T9, Assembler::split_high((int)entry));
aoqi@6880 96 addiu(T9, T9, Assembler::split_low((int)entry));
aoqi@6880 97 #else
aoqi@6880 98 li48(T9, (intptr_t)entry);
aoqi@1 99 #endif
aoqi@6880 100 jalr(T9);
aoqi@6880 101 delayed()->nop();
fujie@9161 102
fujie@9161 103 int call_offset = offset();
aoqi@6880 104
aoqi@6880 105 // verify callee-saved register
aoqi@6880 106 #ifdef ASSERT
aoqi@6880 107 guarantee(thread != V0, "change this code");
aoqi@6880 108 push(V0);
aoqi@6880 109 {
aoqi@6880 110 Label L;
aoqi@6880 111 get_thread(V0);
aoqi@6880 112 beq(thread, V0, L);
aoqi@6880 113 delayed()->nop();
aoqi@6880 114 int3();
aoqi@9459 115 stop("StubAssembler::call_RT: TREG not callee saved?");
aoqi@6880 116 bind(L);
aoqi@6880 117 }
aoqi@6880 118 super_pop(V0);
aoqi@1 119 #endif
aoqi@6880 120 // discard thread and arguments
aoqi@9228 121 ld_ptr(SP, thread, in_bytes(JavaThread::last_Java_sp_offset()));
fujie@9171 122 reset_last_Java_frame(thread, true);
aoqi@6880 123 // check for pending exceptions
aoqi@6880 124 {
aoqi@6880 125 Label L;
aoqi@6880 126 ld_ptr(AT, thread, in_bytes(Thread::pending_exception_offset()));
aoqi@6880 127 beq(AT, R0, L);
aoqi@6880 128 delayed()->nop();
aoqi@6880 129 // exception pending => remove activation and forward to exception handler
aoqi@6880 130 // make sure that the vm_results are cleared
aoqi@6880 131 if (oop_result1->is_valid()) {
aoqi@6880 132 st_ptr(R0, thread, in_bytes(JavaThread::vm_result_offset()));
aoqi@6880 133 }
fujie@9153 134 if (metadata_result->is_valid()) {
aoqi@6880 135 st_ptr(R0, thread, in_bytes(JavaThread::vm_result_2_offset()));
aoqi@6880 136 }
aoqi@6880 137 // the leave() in x86 just pops ebp and remains the return address on the top
aoqi@6880 138 // of stack
aoqi@6880 139 // the return address will be needed by forward_exception_entry()
aoqi@6880 140 if (frame_size() == no_frame_size) {
aoqi@6880 141 addiu(SP, FP, wordSize);
aoqi@6880 142 ld_ptr(FP, SP, (-1) * wordSize);
aoqi@6880 143 jmp(StubRoutines::forward_exception_entry(), relocInfo::runtime_call_type);
aoqi@6880 144 delayed()->nop();
aoqi@6880 145 } else if (_stub_id == Runtime1::forward_exception_id) {
aoqi@6880 146 should_not_reach_here();
aoqi@6880 147 } else {
aoqi@8865 148 jmp(Runtime1::entry_for(Runtime1::forward_exception_id), relocInfo::runtime_call_type);
aoqi@6880 149 delayed()->nop();
aoqi@6880 150 }
aoqi@6880 151 bind(L);
aoqi@6880 152 }
aoqi@6880 153 // get oop results if there are any and reset the values in the thread
aoqi@6880 154 if (oop_result1->is_valid()) {
aoqi@6880 155 ld_ptr(oop_result1, thread, in_bytes(JavaThread::vm_result_offset()));
aoqi@6880 156 st_ptr(R0, thread, in_bytes(JavaThread::vm_result_offset()));
aoqi@6880 157 verify_oop(oop_result1);
aoqi@6880 158 }
fujie@9153 159 if (metadata_result->is_valid()) {
fujie@9153 160 ld_ptr(metadata_result, thread, in_bytes(JavaThread::vm_result_2_offset()));
aoqi@6880 161 st_ptr(R0, thread, in_bytes(JavaThread::vm_result_2_offset()));
fujie@9153 162 verify_oop(metadata_result);
aoqi@6880 163 }
aoqi@6880 164 return call_offset;
aoqi@1 165 }
aoqi@1 166
aoqi@1 167
fujie@9153 168 int StubAssembler::call_RT(Register oop_result1, Register metadata_result, address entry, Register arg1) {
aoqi@6880 169 if (arg1 != A1) move(A1, arg1);
fujie@9153 170 return call_RT(oop_result1, metadata_result, entry, 1);
aoqi@1 171 }
aoqi@1 172
aoqi@1 173
fujie@9153 174 int StubAssembler::call_RT(Register oop_result1, Register metadata_result, address entry, Register arg1, Register arg2) {
aoqi@6880 175 if (arg1!=A1) move(A1, arg1);
aoqi@6880 176 if (arg2!=A2) move(A2, arg2); assert(arg2 != A1, "smashed argument");
fujie@9153 177 return call_RT(oop_result1, metadata_result, entry, 2);
aoqi@1 178 }
aoqi@1 179
aoqi@1 180
fujie@9153 181 int StubAssembler::call_RT(Register oop_result1, Register metadata_result, address entry, Register arg1, Register arg2, Register arg3) {
aoqi@6880 182 if (arg1!=A1) move(A1, arg1);
aoqi@6880 183 if (arg2!=A2) move(A2, arg2); assert(arg2 != A1, "smashed argument");
aoqi@6880 184 if (arg3!=A3) move(A3, arg3); assert(arg3 != A1 && arg3 != A2, "smashed argument");
fujie@9153 185 return call_RT(oop_result1, metadata_result, entry, 3);
aoqi@1 186 }
aoqi@1 187
aoqi@1 188
aoqi@1 189 // Implementation of StubFrame
aoqi@1 190
aoqi@1 191 class StubFrame: public StackObj {
aoqi@6880 192 private:
aoqi@6880 193 StubAssembler* _sasm;
aoqi@1 194
aoqi@6880 195 public:
aoqi@6880 196 StubFrame(StubAssembler* sasm, const char* name, bool must_gc_arguments);
aoqi@6880 197 void load_argument(int offset_in_words, Register reg);
aoqi@6880 198
aoqi@6880 199 ~StubFrame();
aoqi@1 200 };
aoqi@1 201
aoqi@1 202
aoqi@1 203 #define __ _sasm->
aoqi@1 204
aoqi@1 205 StubFrame::StubFrame(StubAssembler* sasm, const char* name, bool must_gc_arguments) {
aoqi@6880 206 _sasm = sasm;
aoqi@6880 207 __ set_info(name, must_gc_arguments);
aoqi@6880 208 __ enter();
aoqi@1 209 }
aoqi@1 210
aoqi@1 211
aoqi@1 212 //FIXME, I have no idea the frame architecture of mips
aoqi@1 213 // load parameters that were stored with LIR_Assembler::store_parameter
aoqi@6880 214 // Note: offsets for store_parameter and load_argument must match
aoqi@1 215 void StubFrame::load_argument(int offset_in_words, Register reg) {
aoqi@9459 216 //fp, + 0: link
aoqi@6880 217 // + 1: return address
aoqi@6880 218 // + 2: argument with offset 0
aoqi@6880 219 // + 3: argument with offset 1
aoqi@6880 220 // + 4: ...
aoqi@6880 221 __ ld_ptr(reg, Address(FP, (offset_in_words + 2) * BytesPerWord));
aoqi@1 222 }
aoqi@6880 223
aoqi@6880 224
aoqi@1 225 StubFrame::~StubFrame() {
aoqi@6880 226 __ leave();
aoqi@6880 227 __ jr(RA);
aoqi@6880 228 __ delayed()->nop();
aoqi@1 229 }
aoqi@1 230
aoqi@1 231 #undef __
aoqi@1 232
aoqi@1 233
aoqi@1 234 // Implementation of Runtime1
aoqi@1 235
aoqi@1 236 #define __ sasm->
aoqi@1 237
aoqi@1 238 const int float_regs_as_doubles_size_in_words = 16;
aoqi@1 239
aoqi@6880 240 //FIXME,
aoqi@1 241 // Stack layout for saving/restoring all the registers needed during a runtime
aoqi@1 242 // call (this includes deoptimization)
aoqi@1 243 // Note: note that users of this frame may well have arguments to some runtime
aoqi@1 244 // while these values are on the stack. These positions neglect those arguments
aoqi@1 245 // but the code in save_live_registers will take the argument count into
aoqi@1 246 // account.
aoqi@1 247 //
aoqi@1 248 #ifdef _LP64
aoqi@1 249 #define SLOT2(x) x,
aoqi@1 250 #define SLOT_PER_WORD 2
aoqi@1 251 #else
aoqi@1 252 #define SLOT2(x)
aoqi@1 253 #define SLOT_PER_WORD 1
aoqi@1 254 #endif // _LP64
aoqi@1 255
aoqi@1 256 enum reg_save_layout {
aoqi@1 257 #ifndef _LP64
aoqi@1 258 T0_off = 0,
aoqi@1 259 S0_off = T0_off + SLOT_PER_WORD * 8,
aoqi@1 260 #else
aoqi@1 261 A4_off = 0,
aoqi@1 262 S0_off = A4_off + SLOT_PER_WORD * 8,
aoqi@1 263 #endif
aoqi@1 264 FP_off = S0_off + SLOT_PER_WORD * 8, SLOT2(FPH_off)
aoqi@1 265 T8_off, SLOT2(T8H_off)
aoqi@1 266 T9_off, SLOT2(T9H_off)
aoqi@1 267 SP_off, SLOT2(SPH_off)
aoqi@1 268 V0_off, SLOT2(V0H_off)
aoqi@1 269 V1_off, SLOT2(V1H_off)
aoqi@1 270 A0_off, SLOT2(A0H_off)
aoqi@1 271 A1_off, SLOT2(A1H_off)
aoqi@1 272 A2_off, SLOT2(A2H_off)
aoqi@1 273 A3_off, SLOT2(A3H_off)
aoqi@1 274
aoqi@1 275 // Float registers
aoqi@9459 276 // FIXME: Jin: In MIPS64, F0~23 are all caller-saved registers
aoqi@1 277 F0_off, SLOT2( F0H_off)
aoqi@1 278 F1_off, SLOT2( F1H_off)
aoqi@1 279 F2_off, SLOT2( F2H_off)
aoqi@1 280 F3_off, SLOT2( F3H_off)
aoqi@1 281 F4_off, SLOT2( F4H_off)
aoqi@1 282 F5_off, SLOT2( F5H_off)
aoqi@1 283 F6_off, SLOT2( F6H_off)
aoqi@1 284 F7_off, SLOT2( F7H_off)
aoqi@1 285 F8_off, SLOT2( F8H_off)
aoqi@1 286 F9_off, SLOT2( F9H_off)
aoqi@1 287 F10_off, SLOT2( F10H_off)
aoqi@1 288 F11_off, SLOT2( F11H_off)
aoqi@1 289 F12_off, SLOT2( F12H_off)
aoqi@1 290 F13_off, SLOT2( F13H_off)
aoqi@1 291 F14_off, SLOT2( F14H_off)
aoqi@1 292 F15_off, SLOT2( F15H_off)
aoqi@1 293 F16_off, SLOT2( F16H_off)
aoqi@1 294 F17_off, SLOT2( F17H_off)
aoqi@1 295 F18_off, SLOT2( F18H_off)
aoqi@1 296 F19_off, SLOT2( F19H_off)
aoqi@1 297
aoqi@1 298 GP_off, SLOT2( GPH_off)
aoqi@1 299 //temp_2_off,
aoqi@1 300 temp_1_off, SLOT2(temp_1H_off)
aoqi@1 301 saved_fp_off, SLOT2(saved_fpH_off)
aoqi@1 302 return_off, SLOT2(returnH_off)
aoqi@1 303
aoqi@1 304 reg_save_frame_size,
aoqi@1 305
aoqi@1 306 // illegal instruction handler
aoqi@1 307 continue_dest_off = temp_1_off,
aoqi@1 308
aoqi@1 309 // deoptimization equates
aoqi@1 310 //deopt_type = temp_2_off, // slot for type of deopt in progress
aoqi@1 311 ret_type = temp_1_off // slot for return type
aoqi@1 312 };
aoqi@1 313
aoqi@6880 314
aoqi@6880 315
aoqi@1 316 // Save off registers which might be killed by calls into the runtime.
aoqi@1 317 // Tries to smart of about FP registers. In particular we separate
aoqi@1 318 // saving and describing the FPU registers for deoptimization since we
aoqi@1 319 // have to save the FPU registers twice if we describe them and on P4
aoqi@1 320 // saving FPU registers which don't contain anything appears
aoqi@1 321 // expensive. The deopt blob is the only thing which needs to
aoqi@1 322 // describe FPU registers. In all other cases it should be sufficient
aoqi@1 323 // to simply save their current value.
aoqi@1 324 static OopMap* generate_oop_map(StubAssembler* sasm, int num_rt_args,
aoqi@6880 325 bool save_fpu_registers = true, bool describe_fpu_registers = false) {
aoqi@1 326
aoqi@8865 327 LP64_ONLY(num_rt_args = 0);
aoqi@8865 328 LP64_ONLY(assert((reg_save_frame_size * VMRegImpl::stack_slot_size) % 16 == 0, "must be 16 byte aligned");)
aoqi@8865 329 int frame_size_in_slots = reg_save_frame_size + num_rt_args * wordSize / VMRegImpl::slots_per_word; // args + thread
aoqi@8865 330 sasm->set_frame_size(frame_size_in_slots / VMRegImpl::slots_per_word);
aoqi@1 331
aoqi@1 332 // record saved value locations in an OopMap
aoqi@6880 333 // locations are offsets from sp after runtime call; num_rt_args is number of arguments
aoqi@1 334 // in call, including thread
aoqi@1 335 OopMap* map = new OopMap(reg_save_frame_size, 0);
aoqi@6880 336
aoqi@1 337 map->set_callee_saved(VMRegImpl::stack2reg(V0_off + num_rt_args), V0->as_VMReg());
aoqi@1 338 map->set_callee_saved(VMRegImpl::stack2reg(V1_off + num_rt_args), V1->as_VMReg());
aoqi@1 339 #ifdef _LP64
aoqi@1 340 map->set_callee_saved(VMRegImpl::stack2reg(V0H_off + num_rt_args), V0->as_VMReg()->next());
aoqi@1 341 map->set_callee_saved(VMRegImpl::stack2reg(V1H_off + num_rt_args), V1->as_VMReg()->next());
aoqi@1 342 #endif
aoqi@1 343
aoqi@1 344 int i = 0;
aoqi@1 345 #ifndef _LP64
aoqi@1 346 for (Register r = T0; r != T7->successor(); r = r->successor() ) {
aoqi@1 347 map->set_callee_saved(VMRegImpl::stack2reg(T0_off + num_rt_args + i++), r->as_VMReg());
aoqi@1 348 }
aoqi@1 349 #else
aoqi@1 350 for (Register r = A4; r != T3->successor(); r = r->successor() ) {
aoqi@1 351 map->set_callee_saved(VMRegImpl::stack2reg(A4_off + num_rt_args + i++), r->as_VMReg());
aoqi@1 352 map->set_callee_saved(VMRegImpl::stack2reg(A4_off + num_rt_args + i++), r->as_VMReg()->next());
aoqi@1 353 }
aoqi@1 354 #endif
aoqi@1 355
aoqi@1 356 i = 0;
aoqi@1 357 for (Register r = S0; r != S7->successor(); r = r->successor() ) {
aoqi@1 358 map->set_callee_saved(VMRegImpl::stack2reg(S0_off + num_rt_args + i++), r->as_VMReg());
aoqi@1 359 #ifdef _LP64
aoqi@1 360 map->set_callee_saved(VMRegImpl::stack2reg(S0_off + num_rt_args + i++), r->as_VMReg()->next());
aoqi@1 361 #endif
aoqi@1 362 }
aoqi@1 363
aoqi@1 364 map->set_callee_saved(VMRegImpl::stack2reg(FP_off + num_rt_args), FP->as_VMReg());
aoqi@1 365 map->set_callee_saved(VMRegImpl::stack2reg(GP_off + num_rt_args), GP->as_VMReg());
aoqi@1 366 map->set_callee_saved(VMRegImpl::stack2reg(T8_off + num_rt_args), T8->as_VMReg());
aoqi@1 367 map->set_callee_saved(VMRegImpl::stack2reg(T9_off + num_rt_args), T9->as_VMReg());
aoqi@1 368 map->set_callee_saved(VMRegImpl::stack2reg(A0_off + num_rt_args), A0->as_VMReg());
aoqi@1 369 map->set_callee_saved(VMRegImpl::stack2reg(A1_off + num_rt_args), A1->as_VMReg());
aoqi@1 370 map->set_callee_saved(VMRegImpl::stack2reg(A2_off + num_rt_args), A2->as_VMReg());
aoqi@1 371 map->set_callee_saved(VMRegImpl::stack2reg(A3_off + num_rt_args), A3->as_VMReg());
aoqi@1 372
aoqi@1 373 map->set_callee_saved(VMRegImpl::stack2reg(F0_off + num_rt_args), F0->as_VMReg());
aoqi@1 374 map->set_callee_saved(VMRegImpl::stack2reg(F1_off + num_rt_args), F1->as_VMReg());
aoqi@1 375 map->set_callee_saved(VMRegImpl::stack2reg(F2_off + num_rt_args), F2->as_VMReg());
aoqi@1 376 map->set_callee_saved(VMRegImpl::stack2reg(F3_off + num_rt_args), F1->as_VMReg());
aoqi@1 377 map->set_callee_saved(VMRegImpl::stack2reg(F4_off + num_rt_args), F4->as_VMReg());
aoqi@1 378 map->set_callee_saved(VMRegImpl::stack2reg(F5_off + num_rt_args), F4->as_VMReg());
aoqi@1 379 map->set_callee_saved(VMRegImpl::stack2reg(F6_off + num_rt_args), F4->as_VMReg());
aoqi@1 380 map->set_callee_saved(VMRegImpl::stack2reg(F7_off + num_rt_args), F4->as_VMReg());
aoqi@1 381 map->set_callee_saved(VMRegImpl::stack2reg(F8_off + num_rt_args), F4->as_VMReg());
aoqi@1 382 map->set_callee_saved(VMRegImpl::stack2reg(F9_off + num_rt_args), F4->as_VMReg());
aoqi@1 383 map->set_callee_saved(VMRegImpl::stack2reg(F10_off + num_rt_args), F4->as_VMReg());
aoqi@1 384 map->set_callee_saved(VMRegImpl::stack2reg(F11_off + num_rt_args), F4->as_VMReg());
aoqi@1 385 map->set_callee_saved(VMRegImpl::stack2reg(F12_off + num_rt_args), F12->as_VMReg());
aoqi@1 386 map->set_callee_saved(VMRegImpl::stack2reg(F13_off + num_rt_args), F13->as_VMReg());
aoqi@1 387 map->set_callee_saved(VMRegImpl::stack2reg(F14_off + num_rt_args), F14->as_VMReg());
aoqi@1 388 map->set_callee_saved(VMRegImpl::stack2reg(F15_off + num_rt_args), F15->as_VMReg());
aoqi@1 389 map->set_callee_saved(VMRegImpl::stack2reg(F16_off + num_rt_args), F16->as_VMReg());
aoqi@1 390 map->set_callee_saved(VMRegImpl::stack2reg(F17_off + num_rt_args), F17->as_VMReg());
aoqi@1 391 map->set_callee_saved(VMRegImpl::stack2reg(F18_off + num_rt_args), F18->as_VMReg());
aoqi@1 392 map->set_callee_saved(VMRegImpl::stack2reg(F19_off + num_rt_args), F19->as_VMReg());
aoqi@1 393
aoqi@1 394 #ifdef _LP64
aoqi@1 395 map->set_callee_saved(VMRegImpl::stack2reg(FPH_off + num_rt_args), FP->as_VMReg()->next());
aoqi@1 396 map->set_callee_saved(VMRegImpl::stack2reg(GPH_off + num_rt_args), GP->as_VMReg()->next());
aoqi@1 397 map->set_callee_saved(VMRegImpl::stack2reg(T8H_off + num_rt_args), T8->as_VMReg()->next());
aoqi@1 398 map->set_callee_saved(VMRegImpl::stack2reg(T9H_off + num_rt_args), T9->as_VMReg()->next());
aoqi@1 399 map->set_callee_saved(VMRegImpl::stack2reg(A0H_off + num_rt_args), A0->as_VMReg()->next());
aoqi@1 400 map->set_callee_saved(VMRegImpl::stack2reg(A1H_off + num_rt_args), A1->as_VMReg()->next());
aoqi@1 401 map->set_callee_saved(VMRegImpl::stack2reg(A2H_off + num_rt_args), A2->as_VMReg()->next());
aoqi@1 402 map->set_callee_saved(VMRegImpl::stack2reg(A3H_off + num_rt_args), A3->as_VMReg()->next());
aoqi@1 403 #endif
aoqi@1 404 return map;
aoqi@1 405 }
aoqi@1 406
aoqi@8865 407 static OopMap* save_live_registers(StubAssembler* sasm, int num_rt_args,
aoqi@8865 408 bool save_fpu_registers = true,
aoqi@1 409 bool describe_fpu_registers = false) {
aoqi@1 410 //const int reg_save_frame_size = return_off + 1 + num_rt_args;
aoqi@1 411 __ block_comment("save_live_registers");
aoqi@1 412
aoqi@6880 413 // save all register state - int, fpu
aoqi@1 414 __ addi(SP, SP, -(reg_save_frame_size / SLOT_PER_WORD - 2)* wordSize);
aoqi@6880 415
aoqi@1 416 #ifndef _LP64
aoqi@1 417 for (Register r = T0; r != T7->successor(); r = r->successor() ) {
aoqi@1 418 __ sw(r, SP, (r->encoding() - T0->encoding() + T0_off / SLOT_PER_WORD) * wordSize);
aoqi@1 419 #else
aoqi@1 420 for (Register r = A4; r != T3->successor(); r = r->successor() ) {
aoqi@1 421 __ sd(r, SP, (r->encoding() - A4->encoding() + A4_off / SLOT_PER_WORD) * wordSize);
aoqi@1 422 #endif
aoqi@1 423 }
aoqi@1 424 for (Register r = S0; r != S7->successor(); r = r->successor() ) {
aoqi@1 425 __ st_ptr(r, SP, (r->encoding() - S0->encoding() + S0_off / SLOT_PER_WORD) * wordSize);
aoqi@1 426 }
aoqi@1 427 __ st_ptr(FP, SP, FP_off * wordSize / SLOT_PER_WORD);
aoqi@1 428 __ st_ptr(GP, SP, GP_off * wordSize / SLOT_PER_WORD);
aoqi@1 429 __ st_ptr(T8, SP, T8_off * wordSize / SLOT_PER_WORD);
aoqi@1 430 __ st_ptr(T9, SP, T9_off * wordSize / SLOT_PER_WORD);
aoqi@1 431 __ st_ptr(A0, SP, A0_off * wordSize / SLOT_PER_WORD);
aoqi@1 432 __ st_ptr(A1, SP, A1_off * wordSize / SLOT_PER_WORD);
aoqi@1 433 __ st_ptr(A2, SP, A2_off * wordSize / SLOT_PER_WORD);
aoqi@1 434 __ st_ptr(A3, SP, A3_off * wordSize / SLOT_PER_WORD);
aoqi@1 435 __ st_ptr(V0, SP, V0_off * wordSize / SLOT_PER_WORD);
aoqi@6880 436 __ st_ptr(V1, SP, V1_off * wordSize / SLOT_PER_WORD);
aoqi@1 437
aoqi@6880 438 __ sdc1(F0, SP, F0_off * wordSize / SLOT_PER_WORD);
aoqi@6880 439 __ sdc1(F1, SP, F1_off * wordSize / SLOT_PER_WORD);
aoqi@6880 440 __ sdc1(F2, SP, F2_off * wordSize / SLOT_PER_WORD);
aoqi@6880 441 __ sdc1(F3, SP, F3_off * wordSize / SLOT_PER_WORD);
aoqi@6880 442 __ sdc1(F4, SP, F4_off * wordSize / SLOT_PER_WORD);
aoqi@6880 443 __ sdc1(F5, SP, F5_off * wordSize / SLOT_PER_WORD);
aoqi@6880 444 __ sdc1(F6, SP, F6_off * wordSize / SLOT_PER_WORD);
aoqi@6880 445 __ sdc1(F7, SP, F7_off * wordSize / SLOT_PER_WORD);
aoqi@6880 446 __ sdc1(F8, SP, F8_off * wordSize / SLOT_PER_WORD);
aoqi@6880 447 __ sdc1(F9, SP, F9_off * wordSize / SLOT_PER_WORD);
aoqi@6880 448 __ sdc1(F10, SP, F10_off * wordSize / SLOT_PER_WORD);
aoqi@6880 449 __ sdc1(F11, SP, F11_off * wordSize / SLOT_PER_WORD);
aoqi@6880 450 __ sdc1(F12, SP, F12_off * wordSize / SLOT_PER_WORD);
aoqi@6880 451 __ sdc1(F13, SP, F13_off * wordSize / SLOT_PER_WORD);
aoqi@6880 452 __ sdc1(F14, SP, F14_off * wordSize / SLOT_PER_WORD);
aoqi@6880 453 __ sdc1(F15, SP, F15_off * wordSize / SLOT_PER_WORD);
aoqi@6880 454 __ sdc1(F16, SP, F16_off * wordSize / SLOT_PER_WORD);
aoqi@6880 455 __ sdc1(F17, SP, F17_off * wordSize / SLOT_PER_WORD);
aoqi@6880 456 __ sdc1(F18, SP, F18_off * wordSize / SLOT_PER_WORD);
aoqi@6880 457 __ sdc1(F19, SP, F19_off * wordSize / SLOT_PER_WORD);
aoqi@1 458
aoqi@1 459 return generate_oop_map(sasm, num_rt_args, save_fpu_registers, describe_fpu_registers);
aoqi@1 460 }
aoqi@1 461
aoqi@1 462 static void restore_fpu(StubAssembler* sasm, bool restore_fpu_registers = true) {
aoqi@1 463 //static void restore_live_registers(MacroAssembler* sasm) {
aoqi@1 464 #ifndef _LP64
aoqi@1 465 for (Register r = T0; r != T7->successor(); r = r->successor() ) {
aoqi@1 466 __ lw(r, SP, (r->encoding() - T0->encoding() + T0_off / SLOT_PER_WORD) * wordSize);
aoqi@1 467 #else
aoqi@1 468 for (Register r = A4; r != T3->successor(); r = r->successor() ) {
aoqi@1 469 __ ld(r, SP, (r->encoding() - A4->encoding() + A4_off / SLOT_PER_WORD) * wordSize);
aoqi@1 470 #endif
aoqi@1 471 }
aoqi@1 472 for (Register r = S0; r != S7->successor(); r = r->successor() ) {
aoqi@1 473 __ ld_ptr(r, SP, (r->encoding() - S0->encoding() + S0_off / SLOT_PER_WORD) * wordSize);
aoqi@1 474 }
aoqi@1 475 __ ld_ptr(FP, SP, FP_off * wordSize / SLOT_PER_WORD);
aoqi@1 476 __ ld_ptr(GP, SP, GP_off * wordSize / SLOT_PER_WORD);
aoqi@1 477
aoqi@1 478 __ ld_ptr(T8, SP, T8_off * wordSize / SLOT_PER_WORD);
aoqi@1 479 __ ld_ptr(T9, SP, T9_off * wordSize / SLOT_PER_WORD);
aoqi@1 480 __ ld_ptr(A0, SP, A0_off * wordSize / SLOT_PER_WORD);
aoqi@1 481 __ ld_ptr(A1, SP, A1_off * wordSize / SLOT_PER_WORD);
aoqi@1 482 __ ld_ptr(A2, SP, A2_off * wordSize / SLOT_PER_WORD);
aoqi@1 483 __ ld_ptr(A3, SP, A3_off * wordSize / SLOT_PER_WORD);
aoqi@1 484
aoqi@1 485 __ ld_ptr(V0, SP, V0_off * wordSize / SLOT_PER_WORD);
aoqi@6880 486 __ ld_ptr(V1, SP, V1_off * wordSize / SLOT_PER_WORD);
aoqi@1 487
aoqi@1 488 __ ldc1(F0, SP, F0_off * wordSize / SLOT_PER_WORD);
aoqi@1 489 __ ldc1(F1, SP, F1_off * wordSize / SLOT_PER_WORD);
aoqi@1 490 __ ldc1(F2, SP, F2_off * wordSize / SLOT_PER_WORD);
aoqi@1 491 __ ldc1(F3, SP, F3_off * wordSize / SLOT_PER_WORD);
aoqi@1 492 __ ldc1(F4, SP, F4_off * wordSize / SLOT_PER_WORD);
aoqi@1 493 __ ldc1(F5, SP, F5_off * wordSize / SLOT_PER_WORD);
aoqi@1 494 __ ldc1(F6, SP, F6_off * wordSize / SLOT_PER_WORD);
aoqi@1 495 __ ldc1(F7, SP, F7_off * wordSize / SLOT_PER_WORD);
aoqi@1 496 __ ldc1(F8, SP, F8_off * wordSize / SLOT_PER_WORD);
aoqi@1 497 __ ldc1(F9, SP, F9_off * wordSize / SLOT_PER_WORD);
aoqi@1 498 __ ldc1(F10, SP, F10_off * wordSize / SLOT_PER_WORD);
aoqi@1 499 __ ldc1(F11, SP, F11_off * wordSize / SLOT_PER_WORD);
aoqi@1 500 __ ldc1(F12, SP, F12_off * wordSize / SLOT_PER_WORD);
aoqi@1 501 __ ldc1(F13, SP, F13_off * wordSize / SLOT_PER_WORD);
aoqi@1 502 __ ldc1(F14, SP, F14_off * wordSize / SLOT_PER_WORD);
aoqi@1 503 __ ldc1(F15, SP, F15_off * wordSize / SLOT_PER_WORD);
aoqi@1 504 __ ldc1(F16, SP, F16_off * wordSize / SLOT_PER_WORD);
aoqi@1 505 __ ldc1(F17, SP, F17_off * wordSize / SLOT_PER_WORD);
aoqi@1 506 __ ldc1(F18, SP, F18_off * wordSize / SLOT_PER_WORD);
aoqi@1 507 __ ldc1(F19, SP, F19_off * wordSize / SLOT_PER_WORD);
aoqi@1 508
aoqi@1 509 __ addiu(SP, SP, (reg_save_frame_size / SLOT_PER_WORD - 2) * wordSize);
aoqi@1 510 }
aoqi@1 511
aoqi@1 512 static void restore_live_registers(StubAssembler* sasm, bool restore_fpu_registers = true) {
aoqi@1 513 __ block_comment("restore_live_registers");
aoqi@1 514 restore_fpu(sasm, restore_fpu_registers);
aoqi@1 515 }
aoqi@1 516
aoqi@6880 517 static void restore_live_registers_except_V0(StubAssembler* sasm, bool restore_fpu_registers = true) {
aoqi@1 518 //static void restore_live_registers(MacroAssembler* sasm) {
aoqi@1 519 //FIXME , maybe V1 need to be saved too
aoqi@1 520 __ block_comment("restore_live_registers except V0");
aoqi@1 521 #ifndef _LP64
aoqi@1 522 for (Register r = T0; r != T7->successor(); r = r->successor() ) {
aoqi@6880 523 __ lw(r, SP, (r->encoding() - T0->encoding() + T0_off / SLOT_PER_WORD) * wordSize);
aoqi@1 524 #else
aoqi@1 525 for (Register r = A4; r != T3->successor(); r = r->successor() ) {
aoqi@6880 526 __ ld(r, SP, (r->encoding() - A4->encoding() + A4_off / SLOT_PER_WORD) * wordSize);
aoqi@1 527 #endif
aoqi@1 528 }
aoqi@1 529 for (Register r = S0; r != S7->successor(); r = r->successor() ) {
aoqi@6880 530 __ ld_ptr(r, SP, (r->encoding() - S0->encoding() + S0_off / SLOT_PER_WORD) * wordSize);
aoqi@1 531 }
aoqi@1 532 __ ld_ptr(FP, SP, FP_off * wordSize / SLOT_PER_WORD);
aoqi@1 533 __ ld_ptr(GP, SP, GP_off * wordSize / SLOT_PER_WORD);
aoqi@1 534
aoqi@1 535 __ ld_ptr(T8, SP, T8_off * wordSize / SLOT_PER_WORD);
aoqi@1 536 __ ld_ptr(T9, SP, T9_off * wordSize / SLOT_PER_WORD);
aoqi@1 537 __ ld_ptr(A0, SP, A0_off * wordSize / SLOT_PER_WORD);
aoqi@1 538 __ ld_ptr(A1, SP, A1_off * wordSize / SLOT_PER_WORD);
aoqi@1 539 __ ld_ptr(A2, SP, A2_off * wordSize / SLOT_PER_WORD);
aoqi@1 540 __ ld_ptr(A3, SP, A3_off * wordSize / SLOT_PER_WORD);
aoqi@1 541
aoqi@1 542 #if 1
aoqi@1 543 __ ldc1(F0, SP, F0_off * wordSize / SLOT_PER_WORD);
aoqi@1 544 __ ldc1(F1, SP, F1_off * wordSize / SLOT_PER_WORD);
aoqi@1 545 __ ldc1(F2, SP, F2_off * wordSize / SLOT_PER_WORD);
aoqi@1 546 __ ldc1(F3, SP, F3_off * wordSize / SLOT_PER_WORD);
aoqi@1 547 __ ldc1(F4, SP, F4_off * wordSize / SLOT_PER_WORD);
aoqi@1 548 __ ldc1(F5, SP, F5_off * wordSize / SLOT_PER_WORD);
aoqi@1 549 __ ldc1(F6, SP, F6_off * wordSize / SLOT_PER_WORD);
aoqi@1 550 __ ldc1(F7, SP, F7_off * wordSize / SLOT_PER_WORD);
aoqi@1 551 __ ldc1(F8, SP, F8_off * wordSize / SLOT_PER_WORD);
aoqi@1 552 __ ldc1(F9, SP, F9_off * wordSize / SLOT_PER_WORD);
aoqi@1 553 __ ldc1(F10, SP, F10_off * wordSize / SLOT_PER_WORD);
aoqi@1 554 __ ldc1(F11, SP, F11_off * wordSize / SLOT_PER_WORD);
aoqi@1 555 __ ldc1(F12, SP, F12_off * wordSize / SLOT_PER_WORD);
aoqi@1 556 __ ldc1(F13, SP, F13_off * wordSize / SLOT_PER_WORD);
aoqi@1 557 __ ldc1(F14, SP, F14_off * wordSize / SLOT_PER_WORD);
aoqi@1 558 __ ldc1(F15, SP, F15_off * wordSize / SLOT_PER_WORD);
aoqi@1 559 __ ldc1(F16, SP, F16_off * wordSize / SLOT_PER_WORD);
aoqi@1 560 __ ldc1(F17, SP, F17_off * wordSize / SLOT_PER_WORD);
aoqi@1 561 __ ldc1(F18, SP, F18_off * wordSize / SLOT_PER_WORD);
aoqi@1 562 __ ldc1(F19, SP, F19_off * wordSize / SLOT_PER_WORD);
aoqi@1 563 #endif
aoqi@1 564
aoqi@6880 565 __ ld_ptr(V1, SP, V1_off * wordSize / SLOT_PER_WORD);
aoqi@1 566
aoqi@1 567 __ addiu(SP, SP, (reg_save_frame_size / SLOT_PER_WORD - 2) * wordSize);
aoqi@1 568 }
aoqi@1 569
aoqi@1 570 void Runtime1::initialize_pd() {
aoqi@1 571 // nothing to do
aoqi@1 572 }
aoqi@1 573
aoqi@1 574 // target: the entry point of the method that creates and posts the exception oop
aoqi@1 575 // has_argument: true if the exception needs an argument (passed on stack because registers must be preserved)
aoqi@1 576 OopMapSet* Runtime1::generate_exception_throw(StubAssembler* sasm, address target, bool has_argument) {
aoqi@6880 577 // preserve all registers
aoqi@6880 578 OopMap* oop_map = save_live_registers(sasm, 0);
aoqi@1 579
aoqi@6880 580 // now all registers are saved and can be used freely
aoqi@6880 581 // verify that no old value is used accidentally
aoqi@6880 582 //all reigster are saved , I think mips do not need this
aoqi@1 583
aoqi@6880 584 // registers used by this stub
aoqi@6880 585 const Register temp_reg = T3;
aoqi@6880 586 // load argument for exception that is passed as an argument into the stub
aoqi@6880 587 if (has_argument) {
aoqi@6880 588 __ ld_ptr(temp_reg, Address(FP, 2*BytesPerWord));
aoqi@6880 589 }
aoqi@6880 590 int call_offset;
aoqi@6880 591 if (has_argument)
aoqi@6880 592 call_offset = __ call_RT(noreg, noreg, target, temp_reg);
aoqi@1 593 else
aoqi@6880 594 call_offset = __ call_RT(noreg, noreg, target);
aoqi@1 595
aoqi@6880 596 OopMapSet* oop_maps = new OopMapSet();
aoqi@6880 597 oop_maps->add_gc_map(call_offset, oop_map);
aoqi@1 598
aoqi@6880 599 __ stop("should not reach here");
aoqi@6880 600
aoqi@6880 601 return oop_maps;
aoqi@1 602 }
aoqi@1 603
aoqi@1 604 OopMapSet* Runtime1::generate_handle_exception(StubID id, StubAssembler *sasm) {
aoqi@8865 605 __ block_comment("generate_handle_exception");
aoqi@8865 606
aoqi@8865 607 // incoming parameters
aoqi@6880 608 const Register exception_oop = V0;
aoqi@6880 609 const Register exception_pc = V1;
aoqi@6880 610 // other registers used in this stub
aoqi@8865 611 const Register thread = TREG;
aoqi@8865 612 #ifndef OPT_THREAD
aoqi@8865 613 __ get_thread(thread);
aoqi@8865 614 #endif
aoqi@1 615 // Save registers, if required.
aoqi@8865 616 OopMapSet* oop_maps = new OopMapSet();
aoqi@8865 617 OopMap* oop_map = NULL;
aoqi@8865 618 switch (id) {
aoqi@8865 619 case forward_exception_id:
aoqi@8865 620 // We're handling an exception in the context of a compiled frame.
aoqi@8865 621 // The registers have been saved in the standard places. Perform
aoqi@8865 622 // an exception lookup in the caller and dispatch to the handler
aoqi@8865 623 // if found. Otherwise unwind and dispatch to the callers
aoqi@8865 624 // exception handler.
aoqi@8865 625 oop_map = generate_oop_map(sasm, 1 /*thread*/);
aoqi@6880 626
aoqi@9459 627 // load and clear pending exception oop into V0
aoqi@8865 628 __ ld_ptr(exception_oop, Address(thread, Thread::pending_exception_offset()));
aoqi@8865 629 __ st_ptr(R0, Address(thread, Thread::pending_exception_offset()));
aoqi@6880 630
aoqi@9459 631 // load issuing PC (the return address for this stub) into V1
aoqi@8865 632 __ ld_ptr(exception_pc, Address(FP, 1*BytesPerWord));
aoqi@6880 633
aoqi@8865 634 // make sure that the vm_results are cleared (may be unnecessary)
aoqi@8865 635 __ st_ptr(R0, Address(thread, JavaThread::vm_result_offset()));
aoqi@8865 636 __ st_ptr(R0, Address(thread, JavaThread::vm_result_2_offset()));
aoqi@8865 637 break;
aoqi@8865 638 case handle_exception_nofpu_id:
aoqi@8865 639 case handle_exception_id:
aoqi@8865 640 // At this point all registers MAY be live.
aoqi@8865 641 oop_map = save_live_registers(sasm, 1 /*thread*/, id != handle_exception_nofpu_id);
aoqi@8865 642 break;
aoqi@8865 643 case handle_exception_from_callee_id: {
aoqi@9459 644 // At this point all registers except exception oop (V0) and
aoqi@9459 645 // exception pc (V1) are dead.
aoqi@8865 646 const int frame_size = 2 /*BP, return address*/ NOT_LP64(+ 1 /*thread*/);
aoqi@8865 647 oop_map = new OopMap(frame_size * VMRegImpl::slots_per_word, 0);
aoqi@8865 648 sasm->set_frame_size(frame_size);
aoqi@8865 649 break;
aoqi@8865 650 }
aoqi@8865 651 default: ShouldNotReachHere();
aoqi@8865 652 }
aoqi@1 653
aoqi@1 654 #ifdef TIERED
aoqi@6880 655 // C2 can leave the fpu stack dirty
aoqi@6880 656 __ empty_FPU_stack();
aoqi@1 657 #endif // TIERED
aoqi@1 658
aoqi@6880 659 // verify that only V0 and V1 is valid at this time
aoqi@6880 660 // verify that V0 contains a valid exception
aoqi@6880 661 __ verify_not_null_oop(exception_oop);
aoqi@1 662
aoqi@6880 663 // load address of JavaThread object for thread-local data
aoqi@6880 664 __ get_thread(thread);
aoqi@1 665
aoqi@1 666 #ifdef ASSERT
aoqi@6880 667 // check that fields in JavaThread for exception oop and issuing pc are
aoqi@6880 668 // empty before writing to them
aoqi@6880 669 Label oop_empty;
aoqi@6880 670 __ ld_ptr(AT, Address(thread, in_bytes(JavaThread::exception_oop_offset())));
aoqi@6880 671 __ beq(AT, R0, oop_empty);
aoqi@6880 672 __ delayed()->nop();
aoqi@6880 673 __ stop("exception oop already set");
aoqi@6880 674 __ bind(oop_empty);
fujie@9207 675
aoqi@6880 676 Label pc_empty;
aoqi@6880 677 __ ld_ptr(AT, Address(thread, in_bytes(JavaThread::exception_pc_offset())));
aoqi@6880 678 __ beq(AT, R0, pc_empty);
aoqi@6880 679 __ delayed()->nop();
aoqi@6880 680 __ stop("exception pc already set");
aoqi@6880 681 __ bind(pc_empty);
aoqi@1 682 #endif
aoqi@1 683
aoqi@6880 684 // save exception oop and issuing pc into JavaThread
aoqi@6880 685 // (exception handler will load it from here)
aoqi@6880 686 __ st_ptr(exception_oop, Address(thread, in_bytes(JavaThread::exception_oop_offset())));
aoqi@6880 687 __ st_ptr(exception_pc, Address(thread, in_bytes(JavaThread::exception_pc_offset())));
aoqi@1 688
aoqi@8865 689 // patch throwing pc into return address (has bci & oop map)
aoqi@8865 690 __ st_ptr(exception_pc, Address(FP, 1*BytesPerWord));
aoqi@1 691
aoqi@6880 692 // compute the exception handler.
aoqi@6880 693 // the exception oop and the throwing pc are read from the fields in JavaThread
fujie@9161 694 __ block_comment(";; will call_RT exception_handler_for_pc");
aoqi@8865 695 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, exception_handler_for_pc));
aoqi@6880 696 oop_maps->add_gc_map(call_offset, oop_map);
fujie@9161 697 __ block_comment(";; end of call_RT exception_handler_for_pc");
fujie@9207 698
aoqi@6880 699 // V0: handler address or NULL if no handler exists
aoqi@6880 700 // will be the deopt blob if nmethod was deoptimized while we looked up
aoqi@6880 701 // handler regardless of whether handler existed in the nmethod.
aoqi@1 702
aoqi@6880 703 // only V0 is valid at this time, all other registers have been destroyed by the
aoqi@6880 704 // runtime call
aoqi@1 705
aoqi@6880 706 // patch the return address -> the stub will directly return to the exception handler
aoqi@8865 707 __ st_ptr(V0, Address(FP, 1 * BytesPerWord));
aoqi@1 708
aoqi@8865 709 switch (id) {
aoqi@8865 710 case forward_exception_id:
aoqi@8865 711 case handle_exception_nofpu_id:
aoqi@8865 712 case handle_exception_id:
aoqi@8865 713 // Restore the registers that were saved at the beginning.
aoqi@8865 714 restore_live_registers(sasm, id != handle_exception_nofpu_id);
aoqi@8865 715 break;
aoqi@8865 716 case handle_exception_from_callee_id:
aoqi@8865 717 // WIN64_ONLY: No need to add frame::arg_reg_save_area_bytes to SP
aoqi@8865 718 // since we do a leave anyway.
aoqi@1 719
aoqi@8865 720 // Pop the return address since we are possibly changing SP (restoring from BP).
fujie@9207 721 __ move(SP, FP);
fujie@9207 722 __ pop(FP);
fujie@9207 723 __ pop(RA);
aoqi@8865 724 __ jr(RA); // jump to exception handler
aoqi@8865 725 __ delayed()->nop();
aoqi@8865 726 break;
aoqi@8865 727 default: ShouldNotReachHere();
aoqi@8865 728 }
aoqi@1 729
aoqi@8865 730 return oop_maps;
aoqi@8865 731 }
aoqi@1 732
aoqi@1 733
aoqi@1 734
aoqi@1 735
aoqi@1 736
aoqi@1 737 void Runtime1::generate_unwind_exception(StubAssembler *sasm) {
aoqi@6880 738 // incoming parameters
aoqi@6880 739 const Register exception_oop = V0;
aoqi@8865 740 // callee-saved copy of exception_oop during runtime call
aoqi@8865 741 const Register exception_oop_callee_saved = S0;
aoqi@6880 742 // other registers used in this stub
aoqi@6880 743 const Register exception_pc = V1;
aoqi@6880 744 const Register handler_addr = T3;
aoqi@8865 745 const Register thread = TREG;
aoqi@1 746
aoqi@1 747 #ifdef ASSERT
aoqi@6880 748 // check that fields in JavaThread for exception oop and issuing pc are empty
aoqi@6880 749 __ get_thread(thread);
aoqi@6880 750 Label oop_empty;
aoqi@6880 751 __ ld_ptr(AT, thread, in_bytes(JavaThread::exception_oop_offset()));
aoqi@6880 752 __ beq(AT, R0, oop_empty);
aoqi@6880 753 __ delayed()->nop();
aoqi@6880 754 __ stop("exception oop must be empty");
aoqi@6880 755 __ bind(oop_empty);
aoqi@1 756
aoqi@6880 757 Label pc_empty;
aoqi@6880 758 __ ld_ptr(AT, thread, in_bytes(JavaThread::exception_pc_offset()));
aoqi@8865 759 __ beq(AT, R0, pc_empty);
aoqi@6880 760 __ delayed()->nop();
aoqi@6880 761 __ stop("exception pc must be empty");
aoqi@6880 762 __ bind(pc_empty);
aoqi@1 763 #endif
aoqi@6880 764 // clear the FPU stack in case any FPU results are left behind
aoqi@6880 765 __ empty_FPU_stack();
aoqi@1 766
aoqi@8865 767 // save exception_oop in callee-saved register to preserve it during runtime calls
aoqi@8865 768 __ verify_not_null_oop(exception_oop);
aoqi@8865 769 __ move(exception_oop_callee_saved, exception_oop);
aoqi@8865 770
aoqi@8865 771 #ifndef OPT_THREAD
aoqi@8865 772 __ get_thread(thread);
aoqi@8865 773 #endif
fujie@9207 774 // Get return address (is in RA after leave).
aoqi@8865 775
fujie@9207 776 __ move(exception_pc, RA);
fujie@9207 777 __ push(RA);
aoqi@1 778
aoqi@6880 779 // search the exception handler address of the caller (using the return address)
aoqi@8865 780 __ call_VM_leaf(CAST_FROM_FN_PTR(address, SharedRuntime::exception_handler_for_return_address), thread, exception_pc);
aoqi@8865 781 // V0: exception handler address of the caller
aoqi@1 782
aoqi@6880 783 // move result of call into correct register
aoqi@6880 784 __ move(handler_addr, V0);
aoqi@1 785
aoqi@8865 786 // Restore exception oop to V0 (required convention of exception handler).
aoqi@8865 787 __ move(exception_oop, exception_oop_callee_saved);
aoqi@8865 788
aoqi@8865 789 // verify that there is really a valid exception in V0
aoqi@6880 790 __ verify_oop(exception_oop);
aoqi@1 791
aoqi@6880 792 // get throwing pc (= return address).
aoqi@8865 793 // V1 has been destroyed by the call, so it must be set again
aoqi@6880 794 // the pop is also necessary to simulate the effect of a ret(0)
aoqi@6880 795 __ super_pop(exception_pc);
aoqi@1 796
aoqi@6880 797 // continue at exception handler (return address removed)
aoqi@6880 798 // note: do *not* remove arguments when unwinding the
aoqi@6880 799 // activation since the caller assumes having
aoqi@6880 800 // all arguments on the stack when entering the
aoqi@6880 801 // runtime to determine the exception handler
aoqi@6880 802 // (GC happens at call site with arguments!)
aoqi@8865 803 // V0: exception oop
aoqi@8865 804 // V1: throwing pc
aoqi@8865 805 // T3: exception handler
aoqi@6880 806 __ jr(handler_addr);
aoqi@6880 807 __ delayed()->nop();
aoqi@1 808 }
aoqi@1 809
aoqi@1 810 OopMapSet* Runtime1::generate_patching(StubAssembler* sasm, address target) {
aoqi@1 811
aoqi@6880 812 // use the maximum number of runtime-arguments here because it is difficult to
aoqi@6880 813 // distinguish each RT-Call.
aoqi@6880 814 // Note: This number affects also the RT-Call in generate_handle_exception because
aoqi@6880 815 // the oop-map is shared for all calls.
aoqi@1 816
aoqi@6880 817 DeoptimizationBlob* deopt_blob = SharedRuntime::deopt_blob();
aoqi@6880 818 assert(deopt_blob != NULL, "deoptimization blob must have been created");
aoqi@6880 819 // assert(deopt_with_exception_entry_for_patch != NULL,
aoqi@6880 820 // "deoptimization blob must have been created");
aoqi@6880 821
aoqi@6880 822 //OopMap* oop_map = save_live_registers(sasm, num_rt_args);
aoqi@6880 823 OopMap* oop_map = save_live_registers(sasm, 0);
aoqi@6880 824 const Register thread = T8;
aoqi@6880 825 // push java thread (becomes first argument of C function)
aoqi@6880 826 __ get_thread(thread);
aoqi@6880 827 __ move(A0, thread);
aoqi@1 828
aoqi@1 829
aoqi@9459 830
aoqi@9459 831 // NOTE: this frame should be compiled frame, but at this point, the pc in frame-anchor
aoqi@9459 832 // is contained in interpreter. It should be wrong, and should be cleared but is not.
aoqi@9459 833 // even if we cleared the wrong pc in anchor, the default way to get caller pc in class frame
aoqi@9459 834 // is not right. It depends on that the caller pc is stored in *(sp - 1) but it's not the case
aoqi@9459 835
aoqi@6880 836 __ set_last_Java_frame(thread, NOREG, FP, NULL);
aoqi@6880 837 NOT_LP64(__ addiu(SP, SP, (-1) * wordSize));
aoqi@6880 838 __ move(AT, -(StackAlignmentInBytes));
aoqi@6880 839 __ andr(SP, SP, AT);
aoqi@6880 840 __ relocate(relocInfo::internal_pc_type);
aoqi@6880 841 {
aoqi@1 842 #ifndef _LP64
aoqi@6880 843 int save_pc = (int)__ pc() + 12 + NativeCall::return_address_offset;
aoqi@6880 844 __ lui(AT, Assembler::split_high(save_pc));
aoqi@6880 845 __ addiu(AT, AT, Assembler::split_low(save_pc));
aoqi@1 846 #else
aoqi@6880 847 uintptr_t save_pc = (uintptr_t)__ pc() + NativeMovConstReg::instruction_size + 1 * BytesPerInstWord + NativeCall::return_address_offset_long;
aoqi@6880 848 __ li48(AT, save_pc);
aoqi@1 849 #endif
aoqi@6880 850 }
aoqi@6880 851 __ st_ptr(AT, thread, in_bytes(JavaThread::last_Java_pc_offset()));
aoqi@1 852
aoqi@6880 853 // do the call
aoqi@1 854 #ifndef _LP64
aoqi@6880 855 __ lui(T9, Assembler::split_high((int)target));
aoqi@6880 856 __ addiu(T9, T9, Assembler::split_low((int)target));
aoqi@1 857 #else
aoqi@6880 858 __ li48(T9, (intptr_t)target);
aoqi@1 859 #endif
aoqi@6880 860 __ jalr(T9);
aoqi@6880 861 __ delayed()->nop();
aoqi@6880 862 OopMapSet* oop_maps = new OopMapSet();
aoqi@6880 863 oop_maps->add_gc_map(__ offset(), oop_map);
aoqi@1 864
aoqi@6880 865 __ get_thread(thread);
aoqi@1 866
aoqi@6880 867 __ ld_ptr (SP, thread, in_bytes(JavaThread::last_Java_sp_offset()));
fujie@9171 868 __ reset_last_Java_frame(thread, true);
aoqi@6880 869 // discard thread arg
aoqi@6880 870 // check for pending exceptions
aoqi@6880 871 {
aoqi@6880 872 Label L, skip;
aoqi@6880 873 //Label no_deopt;
aoqi@6880 874 __ ld_ptr(AT, thread, in_bytes(Thread::pending_exception_offset()));
aoqi@6880 875 __ beq(AT, R0, L);
aoqi@6880 876 __ delayed()->nop();
aoqi@6880 877 // exception pending => remove activation and forward to exception handler
aoqi@1 878
aoqi@8865 879 __ bne(V0, R0, skip);
aoqi@6880 880 __ delayed()->nop();
aoqi@6880 881 __ jmp(Runtime1::entry_for(Runtime1::forward_exception_id),
aoqi@6880 882 relocInfo::runtime_call_type);
aoqi@6880 883 __ delayed()->nop();
aoqi@6880 884 __ bind(skip);
aoqi@1 885
aoqi@6880 886 // the deopt blob expects exceptions in the special fields of
aoqi@6880 887 // JavaThread, so copy and clear pending exception.
aoqi@1 888
aoqi@6880 889 // load and clear pending exception
aoqi@6880 890 __ ld_ptr(V0, Address(thread,in_bytes(Thread::pending_exception_offset())));
aoqi@6880 891 __ st_ptr(R0, Address(thread, in_bytes(Thread::pending_exception_offset())));
aoqi@1 892
aoqi@6880 893 // check that there is really a valid exception
aoqi@6880 894 __ verify_not_null_oop(V0);
aoqi@6880 895
aoqi@6880 896 // load throwing pc: this is the return address of the stub
aoqi@6880 897 __ ld_ptr(V1, Address(SP, return_off * BytesPerWord));
aoqi@1 898
aoqi@1 899
aoqi@1 900 #ifdef ASSERT
aoqi@6880 901 // check that fields in JavaThread for exception oop and issuing pc are empty
aoqi@6880 902 Label oop_empty;
aoqi@6880 903 __ ld_ptr(AT, Address(thread, in_bytes(JavaThread::exception_oop_offset())));
aoqi@6880 904 __ beq(AT,R0,oop_empty);
aoqi@6880 905 __ delayed()->nop();
aoqi@6880 906 __ stop("exception oop must be empty");
aoqi@6880 907 __ bind(oop_empty);
aoqi@1 908
aoqi@6880 909 Label pc_empty;
aoqi@6880 910 __ ld_ptr(AT, Address(thread, in_bytes(JavaThread::exception_pc_offset())));
aoqi@6880 911 __ beq(AT,R0,pc_empty);
aoqi@6880 912 __ delayed()->nop();
aoqi@6880 913 __ stop("exception pc must be empty");
aoqi@6880 914 __ bind(pc_empty);
aoqi@1 915 #endif
aoqi@1 916
aoqi@6880 917 // store exception oop and throwing pc to JavaThread
aoqi@6880 918 __ st_ptr(V0,Address(thread, in_bytes(JavaThread::exception_oop_offset())));
aoqi@6880 919 __ st_ptr(V1,Address(thread, in_bytes(JavaThread::exception_pc_offset())));
aoqi@1 920
aoqi@6880 921 restore_live_registers(sasm);
aoqi@1 922
aoqi@6880 923 __ leave();
aoqi@1 924
aoqi@6880 925 // Forward the exception directly to deopt blob. We can blow no
aoqi@6880 926 // registers and must leave throwing pc on the stack. A patch may
aoqi@6880 927 // have values live in registers so the entry point with the
aoqi@6880 928 // exception in tls.
aoqi@6880 929 __ jmp(deopt_blob->unpack_with_exception_in_tls(), relocInfo::runtime_call_type);
aoqi@6880 930 __ delayed()->nop();
aoqi@1 931
aoqi@6880 932 __ bind(L);
aoqi@6880 933 }
aoqi@1 934
aoqi@6880 935 // Runtime will return true if the nmethod has been deoptimized during
aoqi@6880 936 // the patching process. In that case we must do a deopt reexecute instead.
aoqi@1 937
aoqi@6880 938 Label reexecuteEntry, cont;
aoqi@1 939
aoqi@6880 940 __ beq(V0, R0, cont); // have we deoptimized?
aoqi@6880 941 __ delayed()->nop();
aoqi@1 942
aoqi@6880 943 // Will reexecute. Proper return address is already on the stack we just restore
aoqi@6880 944 // registers, pop all of our frame but the return address and jump to the deopt blob
aoqi@6880 945 restore_live_registers(sasm);
aoqi@1 946
aoqi@6880 947 __ leave();
aoqi@6880 948 __ jmp(deopt_blob->unpack_with_reexecution(), relocInfo::runtime_call_type);
aoqi@6880 949 __ delayed()->nop();
aoqi@1 950
aoqi@6880 951 __ bind(cont);
aoqi@6880 952 restore_live_registers(sasm);
aoqi@1 953
aoqi@6880 954 __ leave();
aoqi@6880 955 __ jr(RA);
aoqi@6880 956 __ delayed()->nop();
aoqi@6880 957
aoqi@6880 958 return oop_maps;
aoqi@1 959 }
aoqi@1 960
aoqi@1 961
aoqi@1 962 OopMapSet* Runtime1::generate_code_for(StubID id, StubAssembler* sasm) {
aoqi@6880 963 // for better readability
aoqi@6880 964 const bool must_gc_arguments = true;
aoqi@6880 965 const bool dont_gc_arguments = false;
aoqi@1 966
aoqi@1 967
aoqi@6880 968 // default value; overwritten for some optimized stubs that are called
aoqi@6880 969 // from methods that do not use the fpu
aoqi@6880 970 bool save_fpu_registers = true;
aoqi@1 971
aoqi@1 972
aoqi@6880 973 // stub code & info for the different stubs
aoqi@6880 974 OopMapSet* oop_maps = NULL;
aoqi@1 975
aoqi@1 976 switch (id) {
aoqi@1 977 case forward_exception_id:
aoqi@1 978 {
aoqi@8865 979 oop_maps = generate_handle_exception(id, sasm);
aoqi@8865 980 __ leave();
aoqi@8865 981 __ jr(RA);
aoqi@8865 982 __ delayed()->nop();
aoqi@1 983 }
aoqi@1 984 break;
aoqi@1 985
aoqi@1 986 case new_instance_id:
aoqi@1 987 case fast_new_instance_id:
aoqi@1 988 case fast_new_instance_init_check_id:
aoqi@1 989 {
aoqi@1 990 Register klass = A4; // Incoming
aoqi@1 991 Register obj = V0; // Result
aoqi@1 992
aoqi@1 993 if (id == new_instance_id) {
aoqi@1 994 __ set_info("new_instance", dont_gc_arguments);
aoqi@1 995 } else if (id == fast_new_instance_id) {
aoqi@1 996 __ set_info("fast new_instance", dont_gc_arguments);
aoqi@1 997 } else {
aoqi@1 998 assert(id == fast_new_instance_init_check_id, "bad StubID");
aoqi@1 999 __ set_info("fast new_instance init check", dont_gc_arguments);
aoqi@1 1000 }
aoqi@1 1001
aoqi@6880 1002 if ((id == fast_new_instance_id || id == fast_new_instance_init_check_id)
aoqi@1 1003 && UseTLAB && FastTLABRefill) {
aoqi@1 1004 Label slow_path;
aoqi@1 1005 Register obj_size = T0;
aoqi@1 1006 Register t1 = T2;
aoqi@1 1007 Register t2 = T3;
aoqi@1 1008 assert_different_registers(klass, obj, obj_size, t1, t2);
aoqi@1 1009 if (id == fast_new_instance_init_check_id) {
aoqi@1 1010 // make sure the klass is initialized
aoqi@8865 1011 __ ld_ptr(AT, Address(klass, in_bytes(InstanceKlass::init_state_offset())));
aoqi@1 1012 __ move(t1, InstanceKlass::fully_initialized);
aoqi@1 1013 __ bne(AT, t1, slow_path);
aoqi@1 1014 __ delayed()->nop();
aoqi@1 1015 }
aoqi@1 1016 #ifdef ASSERT
aoqi@1 1017 // assert object can be fast path allocated
aoqi@1 1018 {
aoqi@1 1019 Label ok, not_ok;
aoqi@1 1020 __ lw(obj_size, klass, in_bytes(Klass::layout_helper_offset()));
aoqi@1 1021 __ blez(obj_size, not_ok);
aoqi@1 1022 __ delayed()->nop();
aoqi@1 1023 __ andi(t1 , obj_size, Klass::_lh_instance_slow_path_bit);
aoqi@1 1024 __ beq(t1, R0, ok);
aoqi@1 1025 __ delayed()->nop();
aoqi@1 1026 __ bind(not_ok);
aoqi@1 1027 __ stop("assert(can be fast path allocated)");
aoqi@1 1028 __ should_not_reach_here();
aoqi@1 1029 __ bind(ok);
aoqi@1 1030 }
aoqi@1 1031 #endif // ASSERT
aoqi@1 1032 // if we got here then the TLAB allocation failed, so try
aoqi@1 1033 // refilling the TLAB or allocating directly from eden.
aoqi@6880 1034
aoqi@1 1035 Label retry_tlab, try_eden;
aoqi@9459 1036 __ tlab_refill(retry_tlab, try_eden, slow_path); // does not destroy A4 (klass)
aoqi@6880 1037
aoqi@1 1038 __ bind(retry_tlab);
aoqi@6880 1039
aoqi@1 1040 // get the instance size
aoqi@1 1041 __ lw(obj_size, klass, in_bytes(Klass::layout_helper_offset()));
aoqi@1 1042 __ tlab_allocate(obj, obj_size, 0, t1, t2, slow_path);
aoqi@1 1043 __ initialize_object(obj, klass, obj_size, 0, t1, t2);
aoqi@1 1044 __ verify_oop(obj);
aoqi@1 1045 __ jr(RA);
aoqi@1 1046 __ delayed()->nop();
aoqi@6880 1047
wangxue@9205 1048 #ifndef OPT_THREAD
wangxue@9205 1049 const Register thread = T8;
wangxue@9205 1050 __ get_thread(thread);
wangxue@9205 1051 #else
wangxue@9205 1052 const Register thread = TREG;
wangxue@9205 1053 #endif
wangxue@9205 1054
aoqi@1 1055 __ bind(try_eden);
aoqi@1 1056
aoqi@6880 1057 // get the instance size
aoqi@1 1058 __ lw(obj_size, klass, in_bytes(Klass::layout_helper_offset()));
aoqi@1 1059 __ eden_allocate(obj, obj_size, 0, t1, t2, slow_path);
wangxue@9205 1060 __ incr_allocated_bytes(thread, obj_size, 0);
wangxue@9205 1061
aoqi@1 1062 __ initialize_object(obj, klass, obj_size, 0, t1, t2);
aoqi@1 1063 __ verify_oop(obj);
aoqi@1 1064 __ jr(RA);
aoqi@1 1065 __ delayed()->nop();
aoqi@6880 1066
aoqi@1 1067 __ bind(slow_path);
aoqi@1 1068 }
aoqi@1 1069 __ enter();
aoqi@1 1070 OopMap* map = save_live_registers(sasm, 0);
aoqi@1 1071 int call_offset = __ call_RT(obj, noreg, CAST_FROM_FN_PTR(address, new_instance), klass);
aoqi@1 1072 oop_maps = new OopMapSet();
aoqi@1 1073 oop_maps->add_gc_map(call_offset, map);
aoqi@1 1074 restore_live_registers_except_V0(sasm);
aoqi@1 1075 __ verify_oop(obj);
aoqi@1 1076 __ leave();
aoqi@1 1077 __ jr(RA);
aoqi@1 1078 __ delayed()->nop();
aoqi@6880 1079
aoqi@1 1080 // V0: new instance
aoqi@1 1081 }
aoqi@1 1082 break;
aoqi@1 1083
aoqi@1 1084
aoqi@1 1085 #ifdef TIERED
aoqi@1 1086 //FIXME, I hava no idea which register to use
aoqi@1 1087 case counter_overflow_id:
aoqi@1 1088 {
aoqi@1 1089 #ifndef _LP64
aoqi@1 1090 Register bci = T5;
aoqi@1 1091 #else
aoqi@1 1092 Register bci = A5;
aoqi@1 1093 #endif
aoqi@8865 1094 Register method = AT;
aoqi@1 1095 __ enter();
aoqi@1 1096 OopMap* map = save_live_registers(sasm, 0);
aoqi@1 1097 // Retrieve bci
aoqi@9459 1098 __ lw(bci, Address(FP, 2*BytesPerWord));
aoqi@8865 1099 __ ld(method, Address(FP, 3*BytesPerWord));
aoqi@8865 1100 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, counter_overflow), bci, method);
aoqi@1 1101 oop_maps = new OopMapSet();
aoqi@1 1102 oop_maps->add_gc_map(call_offset, map);
aoqi@1 1103 restore_live_registers(sasm);
aoqi@1 1104 __ leave();
aoqi@6880 1105 __ jr(RA);
aoqi@6880 1106 __ delayed()->nop();
aoqi@1 1107 }
aoqi@1 1108 break;
aoqi@1 1109 #endif // TIERED
aoqi@1 1110
aoqi@1 1111
aoqi@1 1112
aoqi@1 1113 case new_type_array_id:
aoqi@1 1114 case new_object_array_id:
aoqi@6880 1115 {
aoqi@6880 1116 // i use T2 as length register, T4 as klass register, V0 as result register.
aoqi@1 1117 // MUST accord with NewTypeArrayStub::emit_code, NewObjectArrayStub::emit_code
aoqi@1 1118 Register length = T2; // Incoming
aoqi@1 1119 #ifndef _LP64
aoqi@1 1120 Register klass = T4; // Incoming
aoqi@1 1121 #else
aoqi@1 1122 Register klass = A4; // Incoming
aoqi@1 1123 #endif
aoqi@1 1124 Register obj = V0; // Result
aoqi@6880 1125
aoqi@1 1126 if (id == new_type_array_id) {
aoqi@1 1127 __ set_info("new_type_array", dont_gc_arguments);
aoqi@1 1128 } else {
aoqi@1 1129 __ set_info("new_object_array", dont_gc_arguments);
aoqi@1 1130 }
aoqi@6880 1131
aoqi@1 1132 if (UseTLAB && FastTLABRefill) {
aoqi@1 1133 Register arr_size = T0;
aoqi@6880 1134 Register t1 = T1;
aoqi@1 1135 Register t2 = T3;
aoqi@1 1136 Label slow_path;
aoqi@1 1137 assert_different_registers(length, klass, obj, arr_size, t1, t2);
aoqi@6880 1138
aoqi@1 1139 // check that array length is small enough for fast path
aoqi@1 1140 __ move(AT, C1_MacroAssembler::max_array_allocation_length);
aoqi@1 1141 __ sltu(AT, AT, length);
aoqi@1 1142 __ bne(AT, R0, slow_path);
aoqi@1 1143 __ delayed()->nop();
aoqi@1 1144
aoqi@1 1145 // if we got here then the TLAB allocation failed, so try
aoqi@1 1146 // refilling the TLAB or allocating directly from eden.
aoqi@1 1147 Label retry_tlab, try_eden;
aoqi@6880 1148 //T0,T1,T5,T8 have changed!
aoqi@1 1149 __ tlab_refill(retry_tlab, try_eden, slow_path); // preserves T2 & T4
aoqi@6880 1150
aoqi@1 1151 __ bind(retry_tlab);
aoqi@6880 1152
aoqi@1 1153 // get the allocation size: (length << (layout_helper & 0x1F)) + header_size
aoqi@6880 1154 __ lw(t1, klass, in_bytes(Klass::layout_helper_offset()));
aoqi@1 1155 __ andi(AT, t1, 0x1f);
aoqi@1 1156 __ sllv(arr_size, length, AT);
aoqi@1 1157 __ srl(t1, t1, Klass::_lh_header_size_shift);
aoqi@1 1158 __ andi(t1, t1, Klass::_lh_header_size_mask);
aoqi@1 1159 __ add(arr_size, t1, arr_size);
aoqi@1 1160 __ addi(arr_size, arr_size, MinObjAlignmentInBytesMask); // align up
aoqi@1 1161 __ move(AT, ~MinObjAlignmentInBytesMask);
aoqi@1 1162 __ andr(arr_size, arr_size, AT);
aoqi@6880 1163
aoqi@6880 1164
aoqi@1 1165 __ tlab_allocate(obj, arr_size, 0, t1, t2, slow_path); // preserves arr_size
aoqi@1 1166 __ initialize_header(obj, klass, length,t1,t2);
aoqi@6880 1167 __ lbu(t1, Address(klass, in_bytes(Klass::layout_helper_offset())
aoqi@1 1168 + (Klass::_lh_header_size_shift / BitsPerByte)));
aoqi@1 1169 assert(Klass::_lh_header_size_shift % BitsPerByte == 0, "bytewise");
aoqi@1 1170 assert(Klass::_lh_header_size_mask <= 0xFF, "bytewise");
aoqi@1 1171 __ andi(t1, t1, Klass::_lh_header_size_mask);
aoqi@1 1172 __ sub(arr_size, arr_size, t1); // body length
aoqi@1 1173 __ add(t1, t1, obj); // body start
aoqi@1 1174 __ initialize_body(t1, arr_size, 0, t2);
aoqi@1 1175 __ verify_oop(obj);
aoqi@1 1176 __ jr(RA);
aoqi@1 1177 __ delayed()->nop();
aoqi@6880 1178
wangxue@9205 1179 #ifndef OPT_THREAD
wangxue@9205 1180 const Register thread = T8;
wangxue@9205 1181 __ get_thread(thread);
wangxue@9205 1182 #else
wangxue@9205 1183 const Register thread = TREG;
wangxue@9205 1184 #endif
wangxue@9205 1185
aoqi@1 1186 __ bind(try_eden);
aoqi@1 1187 // get the allocation size: (length << (layout_helper & 0x1F)) + header_size
aoqi@6880 1188 __ lw(t1, klass, in_bytes(Klass::layout_helper_offset()));
aoqi@1 1189 __ andi(AT, t1, 0x1f);
aoqi@1 1190 __ sllv(arr_size, length, AT);
aoqi@1 1191 __ srl(t1, t1, Klass::_lh_header_size_shift);
aoqi@1 1192 __ andi(t1, t1, Klass::_lh_header_size_mask);
aoqi@1 1193 __ add(arr_size, t1, arr_size);
aoqi@1 1194 __ addi(arr_size, arr_size, MinObjAlignmentInBytesMask); // align up
aoqi@1 1195 __ move(AT, ~MinObjAlignmentInBytesMask);
aoqi@1 1196 __ andr(arr_size, arr_size, AT);
aoqi@1 1197 __ eden_allocate(obj, arr_size, 0, t1, t2, slow_path); // preserves arr_size
wangxue@9205 1198 __ incr_allocated_bytes(thread, arr_size, 0);
wangxue@9205 1199
aoqi@1 1200 __ initialize_header(obj, klass, length,t1,t2);
aoqi@1 1201 __ lbu(t1, Address(klass, in_bytes(Klass::layout_helper_offset())
aoqi@1 1202 + (Klass::_lh_header_size_shift / BitsPerByte)));
aoqi@1 1203 __ andi(t1, t1, Klass::_lh_header_size_mask);
aoqi@1 1204 __ sub(arr_size, arr_size, t1); // body length
aoqi@1 1205 __ add(t1, t1, obj); // body start
aoqi@6880 1206
aoqi@1 1207 __ initialize_body(t1, arr_size, 0, t2);
aoqi@1 1208 __ verify_oop(obj);
aoqi@1 1209 __ jr(RA);
aoqi@1 1210 __ delayed()->nop();
aoqi@1 1211 __ bind(slow_path);
aoqi@1 1212 }
aoqi@6880 1213
aoqi@6880 1214
aoqi@1 1215 __ enter();
aoqi@1 1216 OopMap* map = save_live_registers(sasm, 0);
aoqi@1 1217 int call_offset;
aoqi@1 1218 if (id == new_type_array_id) {
aoqi@6880 1219 call_offset = __ call_RT(obj, noreg,
aoqi@1 1220 CAST_FROM_FN_PTR(address, new_type_array), klass, length);
aoqi@1 1221 } else {
aoqi@6880 1222 call_offset = __ call_RT(obj, noreg,
aoqi@1 1223 CAST_FROM_FN_PTR(address, new_object_array), klass, length);
aoqi@1 1224 }
aoqi@6880 1225
aoqi@1 1226 oop_maps = new OopMapSet();
aoqi@1 1227 oop_maps->add_gc_map(call_offset, map);
aoqi@1 1228 restore_live_registers_except_V0(sasm);
aoqi@1 1229 __ verify_oop(obj);
aoqi@6880 1230 __ leave();
aoqi@1 1231 __ jr(RA);
aoqi@1 1232 __ delayed()->nop();
aoqi@1 1233 }
aoqi@1 1234 break;
aoqi@1 1235
aoqi@1 1236 case new_multi_array_id:
aoqi@6880 1237 {
aoqi@6880 1238 StubFrame f(sasm, "new_multi_array", dont_gc_arguments);
aoqi@6880 1239 //refer to c1_LIRGenerate_mips.cpp:do_NewmultiArray
aoqi@6880 1240 // V0: klass
aoqi@6880 1241 // T2: rank
aoqi@6880 1242 // T0: address of 1st dimension
aoqi@6880 1243 //__ call_RT(V0, noreg, CAST_FROM_FN_PTR(address, new_multi_array), A1, A2, A3);
aoqi@6880 1244 //OopMap* map = save_live_registers(sasm, 4);
aoqi@6880 1245 OopMap* map = save_live_registers(sasm, 0);
aoqi@6880 1246 int call_offset = __ call_RT(V0, noreg, CAST_FROM_FN_PTR(address, new_multi_array),
aoqi@6880 1247 V0,T2,T0);
aoqi@6880 1248 oop_maps = new OopMapSet();
aoqi@6880 1249 oop_maps->add_gc_map(call_offset, map);
aoqi@6880 1250 //FIXME
aoqi@6880 1251 restore_live_registers_except_V0(sasm);
aoqi@6880 1252 // V0: new multi array
aoqi@6880 1253 __ verify_oop(V0);
aoqi@1 1254 }
aoqi@1 1255 break;
aoqi@1 1256
aoqi@6880 1257
aoqi@1 1258 case register_finalizer_id:
aoqi@1 1259 {
aoqi@6880 1260 __ set_info("register_finalizer", dont_gc_arguments);
aoqi@1 1261
aoqi@6880 1262 // The object is passed on the stack and we haven't pushed a
aoqi@6880 1263 // frame yet so it's one work away from top of stack.
aoqi@1 1264 //reference to LIRGenerator::do_RegisterFinalizer, call_runtime
aoqi@6880 1265 __ move(V0, A0);
aoqi@6880 1266 __ verify_oop(V0);
aoqi@6880 1267 // load the klass and check the has finalizer flag
aoqi@6880 1268 Label register_finalizer;
aoqi@1 1269 #ifndef _LP64
aoqi@6880 1270 Register t = T5;
aoqi@1 1271 #else
aoqi@6880 1272 Register t = A5;
aoqi@1 1273 #endif
aoqi@6880 1274 //__ ld_ptr(t, Address(V0, oopDesc::klass_offset_in_bytes()));
aoqi@6880 1275 __ load_klass(t, V0);
aoqi@6880 1276 __ lw(t, Address(t, Klass::access_flags_offset()));
aoqi@6880 1277 __ move(AT, JVM_ACC_HAS_FINALIZER);
aoqi@6880 1278 __ andr(AT, AT, t);
aoqi@1 1279
aoqi@6880 1280 __ bne(AT, R0, register_finalizer);
aoqi@6880 1281 __ delayed()->nop();
aoqi@6880 1282 __ jr(RA);
aoqi@6880 1283 __ delayed()->nop();
aoqi@6880 1284 __ bind(register_finalizer);
aoqi@6880 1285 __ enter();
aoqi@6880 1286 OopMap* map = save_live_registers(sasm, 0 /*num_rt_args */);
aoqi@6880 1287
aoqi@6880 1288 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address,
aoqi@6880 1289 SharedRuntime::register_finalizer), V0);
aoqi@6880 1290 oop_maps = new OopMapSet();
aoqi@1 1291 oop_maps->add_gc_map(call_offset, map);
aoqi@1 1292
aoqi@6880 1293 // Now restore all the live registers
aoqi@6880 1294 restore_live_registers(sasm);
aoqi@1 1295
aoqi@6880 1296 __ leave();
aoqi@6880 1297 __ jr(RA);
aoqi@6880 1298 __ delayed()->nop();
aoqi@1 1299 }
aoqi@1 1300 break;
aoqi@1 1301
aoqi@6880 1302 // case range_check_failed_id:
aoqi@6880 1303 case throw_range_check_failed_id:
aoqi@8865 1304 {
aoqi@8865 1305 StubFrame f(sasm, "range_check_failed", dont_gc_arguments);
aoqi@6880 1306 oop_maps = generate_exception_throw(sasm, CAST_FROM_FN_PTR(address,
aoqi@1 1307 throw_range_check_exception),true);
aoqi@1 1308 }
aoqi@1 1309 break;
aoqi@1 1310
aoqi@1 1311 case throw_index_exception_id:
aoqi@6880 1312 {
aoqi@6880 1313 // i use A1 as the index register, for this will be the first argument, see call_RT
aoqi@6880 1314 StubFrame f(sasm, "index_range_check_failed", dont_gc_arguments);
aoqi@6880 1315 oop_maps = generate_exception_throw(sasm, CAST_FROM_FN_PTR(address,
aoqi@6880 1316 throw_index_exception), true);
aoqi@1 1317 }
aoqi@1 1318 break;
aoqi@1 1319
aoqi@6880 1320 case throw_div0_exception_id:
aoqi@1 1321 { StubFrame f(sasm, "throw_div0_exception", dont_gc_arguments);
aoqi@6880 1322 oop_maps = generate_exception_throw(sasm, CAST_FROM_FN_PTR(address,
aoqi@6880 1323 throw_div0_exception), false);
aoqi@1 1324 }
aoqi@1 1325 break;
aoqi@1 1326
aoqi@6880 1327 case throw_null_pointer_exception_id:
aoqi@8865 1328 {
aoqi@8865 1329 StubFrame f(sasm, "throw_null_pointer_exception", dont_gc_arguments);
aoqi@6880 1330 oop_maps = generate_exception_throw(sasm, CAST_FROM_FN_PTR(address,
aoqi@6880 1331 throw_null_pointer_exception),false);
aoqi@1 1332 }
aoqi@1 1333 break;
aoqi@1 1334
aoqi@8865 1335 case handle_exception_nofpu_id:
aoqi@6880 1336 save_fpu_registers = false;
aoqi@6880 1337 // fall through
aoqi@6880 1338 case handle_exception_id:
aoqi@6880 1339 {
aoqi@6880 1340 StubFrame f(sasm, "handle_exception", dont_gc_arguments);
aoqi@6880 1341 //OopMap* oop_map = save_live_registers(sasm, 1, save_fpu_registers);
aoqi@6880 1342 oop_maps = generate_handle_exception(id, sasm);
aoqi@6880 1343 }
aoqi@6880 1344 break;
aoqi@8865 1345 case handle_exception_from_callee_id:
aoqi@8865 1346 {
aoqi@8865 1347 StubFrame f(sasm, "handle_exception_from_callee", dont_gc_arguments);
aoqi@8865 1348 oop_maps = generate_handle_exception(id, sasm);
aoqi@8865 1349 }
aoqi@8865 1350 break;
aoqi@6880 1351 case unwind_exception_id:
aoqi@6880 1352 {
aoqi@6880 1353 __ set_info("unwind_exception", dont_gc_arguments);
aoqi@6880 1354 generate_unwind_exception(sasm);
aoqi@6880 1355 }
aoqi@6880 1356 break;
aoqi@1 1357
aoqi@1 1358
aoqi@6880 1359 case throw_array_store_exception_id:
aoqi@8865 1360 {
aoqi@8865 1361 StubFrame f(sasm, "throw_array_store_exception", dont_gc_arguments);
aoqi@6880 1362 // tos + 0: link
aoqi@6880 1363 // + 1: return address
aoqi@6880 1364 oop_maps = generate_exception_throw(sasm, CAST_FROM_FN_PTR(address,
wangxue@9248 1365 throw_array_store_exception), true);
aoqi@6880 1366 }
aoqi@6880 1367 break;
aoqi@1 1368
aoqi@6880 1369 case throw_class_cast_exception_id:
aoqi@8865 1370 {
aoqi@8865 1371 StubFrame f(sasm, "throw_class_cast_exception", dont_gc_arguments);
aoqi@6880 1372 oop_maps = generate_exception_throw(sasm, CAST_FROM_FN_PTR(address,
aoqi@8865 1373 throw_class_cast_exception), true);
aoqi@6880 1374 }
aoqi@6880 1375 break;
aoqi@1 1376
aoqi@6880 1377 case throw_incompatible_class_change_error_id:
aoqi@6880 1378 {
aoqi@8865 1379 StubFrame f(sasm, "throw_incompatible_class_cast_exception", dont_gc_arguments);
aoqi@8865 1380 oop_maps = generate_exception_throw(sasm,
aoqi@8865 1381 CAST_FROM_FN_PTR(address, throw_incompatible_class_change_error), false);
aoqi@6880 1382 }
aoqi@6880 1383 break;
aoqi@1 1384
aoqi@6880 1385 case slow_subtype_check_id:
aoqi@6880 1386 {
aoqi@6880 1387 //actually , We do not use it
aoqi@6880 1388 // A0:klass_RInfo sub
aoqi@6880 1389 // A1:k->encoding() super
aoqi@6880 1390 __ set_info("slow_subtype_check", dont_gc_arguments);
aoqi@6880 1391 __ st_ptr(T0, SP, (-1) * wordSize);
aoqi@6880 1392 __ st_ptr(T1, SP, (-2) * wordSize);
aoqi@6880 1393 __ addiu(SP, SP, (-2) * wordSize);
aoqi@1 1394
fujie@9132 1395 Label miss;
fujie@9132 1396 __ check_klass_subtype_slow_path(A0, A1, T0, T1, NULL, &miss);
aoqi@1 1397
aoqi@6880 1398 __ addiu(V0, R0, 1);
aoqi@6880 1399 __ addiu(SP, SP, 2 * wordSize);
aoqi@6880 1400 __ ld_ptr(T0, SP, (-1) * wordSize);
aoqi@6880 1401 __ ld_ptr(T1, SP, (-2) * wordSize);
aoqi@6880 1402 __ jr(RA);
aoqi@6880 1403 __ delayed()->nop();
aoqi@1 1404
aoqi@1 1405
aoqi@6880 1406 __ bind(miss);
aoqi@6880 1407 __ move(V0, R0);
aoqi@6880 1408 __ addiu(SP, SP, 2 * wordSize);
aoqi@6880 1409 __ ld_ptr(T0, SP, (-1) * wordSize);
aoqi@6880 1410 __ ld_ptr(T1, SP, (-2) * wordSize);
aoqi@6880 1411 __ jr(RA);
aoqi@6880 1412 __ delayed()->nop();
aoqi@6880 1413 }
aoqi@6880 1414 break;
aoqi@1 1415
aoqi@1 1416 case monitorenter_nofpu_id:
aoqi@1 1417 save_fpu_registers = false;// fall through
aoqi@1 1418
aoqi@6880 1419 case monitorenter_id:
aoqi@1 1420 {
aoqi@6880 1421 StubFrame f(sasm, "monitorenter", dont_gc_arguments);
aoqi@6880 1422 OopMap* map = save_live_registers(sasm, 0, save_fpu_registers);
aoqi@1 1423
aoqi@6880 1424 f.load_argument(1, V0); // V0: object
aoqi@1 1425 #ifndef _LP64
aoqi@6880 1426 f.load_argument(0, T6); // T6: lock address
aoqi@6880 1427 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address,
aoqi@6880 1428 monitorenter), V0, T6);
aoqi@1 1429 #else
aoqi@6880 1430 f.load_argument(0, A6); // A6: lock address
aoqi@6880 1431 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address,
aoqi@6880 1432 monitorenter), V0, A6);
aoqi@1 1433 #endif
aoqi@1 1434
aoqi@6880 1435 oop_maps = new OopMapSet();
aoqi@6880 1436 oop_maps->add_gc_map(call_offset, map);
aoqi@6880 1437 restore_live_registers(sasm, save_fpu_registers);
aoqi@6880 1438 }
aoqi@6880 1439 break;
aoqi@1 1440
aoqi@6880 1441 case monitorexit_nofpu_id:
aoqi@6880 1442 save_fpu_registers = false;
aoqi@6880 1443 // fall through
aoqi@6880 1444 case monitorexit_id:
aoqi@6880 1445 {
aoqi@1 1446 StubFrame f(sasm, "monitorexit", dont_gc_arguments);
aoqi@1 1447 OopMap* map = save_live_registers(sasm, 0, save_fpu_registers);
aoqi@6880 1448
aoqi@1 1449 #ifndef _LP64
aoqi@9459 1450 f.load_argument(0, T6); // T6: lock address
aoqi@1 1451 #else
aoqi@1 1452 f.load_argument(0, A6); // A6: lock address
aoqi@1 1453 #endif
aoqi@1 1454 // note: really a leaf routine but must setup last java sp
aoqi@1 1455 // => use call_RT for now (speed can be improved by
aoqi@1 1456 // doing last java sp setup manually)
aoqi@1 1457 #ifndef _LP64
aoqi@6880 1458 int call_offset = __ call_RT(noreg, noreg,
aoqi@6880 1459 CAST_FROM_FN_PTR(address, monitorexit), T6);
aoqi@1 1460 #else
aoqi@6880 1461 int call_offset = __ call_RT(noreg, noreg,
aoqi@6880 1462 CAST_FROM_FN_PTR(address, monitorexit), A6);
aoqi@1 1463 #endif
aoqi@1 1464 oop_maps = new OopMapSet();
aoqi@1 1465 oop_maps->add_gc_map(call_offset, map);
aoqi@1 1466 restore_live_registers(sasm, save_fpu_registers);
aoqi@6880 1467
aoqi@1 1468 }
aoqi@1 1469 break;
aoqi@6880 1470 // case init_check_patching_id:
aoqi@6880 1471 case access_field_patching_id:
aoqi@6880 1472 {
aoqi@1 1473 StubFrame f(sasm, "access_field_patching", dont_gc_arguments);
aoqi@1 1474 // we should set up register map
aoqi@1 1475 oop_maps = generate_patching(sasm, CAST_FROM_FN_PTR(address, access_field_patching));
aoqi@1 1476
aoqi@1 1477 }
aoqi@1 1478 break;
aoqi@1 1479
aoqi@6880 1480 case load_klass_patching_id:
aoqi@6880 1481 {
aoqi@6880 1482 StubFrame f(sasm, "load_klass_patching", dont_gc_arguments);
aoqi@6880 1483 // we should set up register map
aoqi@6880 1484 oop_maps = generate_patching(sasm, CAST_FROM_FN_PTR(address,
aoqi@6880 1485 move_klass_patching));
aoqi@6880 1486 }
aoqi@6880 1487 break;
aoqi@8865 1488 case load_mirror_patching_id:
aoqi@8865 1489 {
aoqi@8865 1490 StubFrame f(sasm, "load_mirror_patching" , dont_gc_arguments);
aoqi@8865 1491 oop_maps = generate_patching(sasm, CAST_FROM_FN_PTR(address, move_mirror_patching));
aoqi@8865 1492 }
aoqi@6880 1493 break;
aoqi@8865 1494
aoqi@8865 1495 case load_appendix_patching_id:
aoqi@8865 1496 {
aoqi@8865 1497 StubFrame f(sasm, "load_appendix_patching", dont_gc_arguments);
aoqi@8865 1498 // we should set up register map
aoqi@8865 1499 oop_maps = generate_patching(sasm, CAST_FROM_FN_PTR(address, move_appendix_patching));
aoqi@8865 1500 }
aoqi@8865 1501 break;
aoqi@8865 1502
aoqi@6880 1503 case dtrace_object_alloc_id:
aoqi@6880 1504 {
aoqi@6880 1505 // V0:object
aoqi@6880 1506 StubFrame f(sasm, "dtrace_object_alloc", dont_gc_arguments);
aoqi@6880 1507 // we can't gc here so skip the oopmap but make sure that all
aoqi@6880 1508 // the live registers get saved.
aoqi@6880 1509 save_live_registers(sasm, 0);
aoqi@1 1510
aoqi@6880 1511 __ push_reg(V0);
aoqi@8865 1512 __ move(A0, V0);
aoqi@6880 1513 __ call(CAST_FROM_FN_PTR(address, SharedRuntime::dtrace_object_alloc),
aoqi@6880 1514 relocInfo::runtime_call_type);
fujie@9134 1515 __ delayed()->nop();
aoqi@6880 1516 __ super_pop(V0);
aoqi@1 1517
aoqi@6880 1518 restore_live_registers(sasm);
aoqi@6880 1519 }
aoqi@6880 1520 break;
aoqi@8865 1521
aoqi@6880 1522 case fpu2long_stub_id:
aoqi@6880 1523 {
aoqi@8865 1524 //FIXME, I hava no idea how to port this
aoqi@8865 1525 //tty->print_cr("fpu2long_stub_id unimplemented yet!");
aoqi@6880 1526 }
aoqi@8865 1527 break;
aoqi@8865 1528
aoqi@8865 1529 case deoptimize_id:
aoqi@8865 1530 {
aoqi@8865 1531 StubFrame f(sasm, "deoptimize", dont_gc_arguments);
aoqi@8865 1532 const int num_rt_args = 1; // thread
aoqi@8865 1533 OopMap* oop_map = save_live_registers(sasm, num_rt_args);
aoqi@8865 1534 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, deoptimize));
aoqi@8865 1535 oop_maps = new OopMapSet();
aoqi@8865 1536 oop_maps->add_gc_map(call_offset, oop_map);
aoqi@8865 1537 restore_live_registers(sasm);
aoqi@8865 1538 DeoptimizationBlob* deopt_blob = SharedRuntime::deopt_blob();
aoqi@8865 1539 assert(deopt_blob != NULL, "deoptimization blob must have been created");
aoqi@8865 1540 __ leave();
aoqi@8865 1541 __ jmp(deopt_blob->unpack_with_reexecution(), relocInfo::runtime_call_type);
zhaixiang@9135 1542 __ delayed()->nop();
aoqi@8865 1543 }
aoqi@8865 1544 break;
aoqi@8865 1545
aoqi@8865 1546 case predicate_failed_trap_id:
aoqi@8865 1547 {
aoqi@8865 1548 StubFrame f(sasm, "predicate_failed_trap", dont_gc_arguments);
aoqi@8865 1549
aoqi@8865 1550 OopMap* map = save_live_registers(sasm, 1);
aoqi@8865 1551
aoqi@8865 1552 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, predicate_failed_trap));
aoqi@8865 1553 oop_maps = new OopMapSet();
aoqi@8865 1554 oop_maps->add_gc_map(call_offset, map);
aoqi@8865 1555 restore_live_registers(sasm);
aoqi@8865 1556 __ leave();
aoqi@8865 1557 DeoptimizationBlob* deopt_blob = SharedRuntime::deopt_blob();
aoqi@8865 1558 assert(deopt_blob != NULL, "deoptimization blob must have been created");
aoqi@8865 1559
aoqi@8865 1560 __ jmp(deopt_blob->unpack_with_reexecution(), relocInfo::runtime_call_type);
zhaixiang@9135 1561 __ delayed()->nop();
aoqi@8865 1562 }
aoqi@8865 1563 break;
aoqi@8865 1564
aoqi@6880 1565 default:
aoqi@8865 1566 {
aoqi@8865 1567 StubFrame f(sasm, "unimplemented entry", dont_gc_arguments);
aoqi@6880 1568 __ move(A1, (int)id);
aoqi@6880 1569 __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, unimplemented_entry), A1);
aoqi@6880 1570 __ should_not_reach_here();
aoqi@6880 1571 }
aoqi@6880 1572 break;
aoqi@6880 1573 }
aoqi@6880 1574 return oop_maps;
aoqi@1 1575 }
aoqi@1 1576
aoqi@1 1577 #undef __
aoqi@1 1578
aoqi@1 1579 const char *Runtime1::pd_name_for_address(address entry) {
aoqi@1 1580 return "<unknown function>";
aoqi@1 1581 }

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