Mercurial > hg > truffle
annotate src/cpu/x86/vm/c1_Runtime1_x86.cpp @ 3474:b9f76db5ac53
Merge
author | Gilles Duboscq <gilles.duboscq@oracle.com> |
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date | Mon, 01 Aug 2011 13:56:56 +0200 |
parents | 75a99b4f1c98 |
children | 28ba2439034f |
rev | line source |
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0 | 1 /* |
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2 * Copyright (c) 1999, 2011, Oracle and/or its affiliates. All rights reserved. |
0 | 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
4 * | |
5 * This code is free software; you can redistribute it and/or modify it | |
6 * under the terms of the GNU General Public License version 2 only, as | |
7 * published by the Free Software Foundation. | |
8 * | |
9 * This code is distributed in the hope that it will be useful, but WITHOUT | |
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or | |
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License | |
12 * version 2 for more details (a copy is included in the LICENSE file that | |
13 * accompanied this code). | |
14 * | |
15 * You should have received a copy of the GNU General Public License version | |
16 * 2 along with this work; if not, write to the Free Software Foundation, | |
17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. | |
18 * | |
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19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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20 * or visit www.oracle.com if you need additional information or have any |
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21 * questions. |
0 | 22 * |
23 */ | |
24 | |
1972 | 25 #include "precompiled.hpp" |
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26 #include "asm/assembler.hpp" |
1972 | 27 #include "c1/c1_Defs.hpp" |
28 #include "c1/c1_MacroAssembler.hpp" | |
29 #include "c1/c1_Runtime1.hpp" | |
30 #include "interpreter/interpreter.hpp" | |
31 #include "nativeInst_x86.hpp" | |
32 #include "oops/compiledICHolderOop.hpp" | |
33 #include "oops/oop.inline.hpp" | |
34 #include "prims/jvmtiExport.hpp" | |
35 #include "register_x86.hpp" | |
36 #include "runtime/sharedRuntime.hpp" | |
37 #include "runtime/signature.hpp" | |
38 #include "runtime/vframeArray.hpp" | |
39 #include "vmreg_x86.inline.hpp" | |
0 | 40 |
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41 static void restore_live_registers(StubAssembler* sasm, bool restore_fpu_registers = true); |
0 | 42 |
43 // Implementation of StubAssembler | |
44 | |
45 int StubAssembler::call_RT(Register oop_result1, Register oop_result2, address entry, int args_size) { | |
46 // setup registers | |
304 | 47 const Register thread = NOT_LP64(rdi) LP64_ONLY(r15_thread); // is callee-saved register (Visual C++ calling conventions) |
0 | 48 assert(!(oop_result1->is_valid() || oop_result2->is_valid()) || oop_result1 != oop_result2, "registers must be different"); |
49 assert(oop_result1 != thread && oop_result2 != thread, "registers must be different"); | |
50 assert(args_size >= 0, "illegal args_size"); | |
51 | |
304 | 52 #ifdef _LP64 |
53 mov(c_rarg0, thread); | |
54 set_num_rt_args(0); // Nothing on stack | |
55 #else | |
0 | 56 set_num_rt_args(1 + args_size); |
57 | |
58 // push java thread (becomes first argument of C function) | |
59 get_thread(thread); | |
304 | 60 push(thread); |
61 #endif // _LP64 | |
0 | 62 |
63 set_last_Java_frame(thread, noreg, rbp, NULL); | |
304 | 64 |
0 | 65 // do the call |
66 call(RuntimeAddress(entry)); | |
67 int call_offset = offset(); | |
68 // verify callee-saved register | |
69 #ifdef ASSERT | |
70 guarantee(thread != rax, "change this code"); | |
304 | 71 push(rax); |
0 | 72 { Label L; |
73 get_thread(rax); | |
304 | 74 cmpptr(thread, rax); |
0 | 75 jcc(Assembler::equal, L); |
76 int3(); | |
77 stop("StubAssembler::call_RT: rdi not callee saved?"); | |
78 bind(L); | |
79 } | |
304 | 80 pop(rax); |
0 | 81 #endif |
82 reset_last_Java_frame(thread, true, false); | |
83 | |
84 // discard thread and arguments | |
304 | 85 NOT_LP64(addptr(rsp, num_rt_args()*BytesPerWord)); |
0 | 86 |
87 // check for pending exceptions | |
88 { Label L; | |
304 | 89 cmpptr(Address(thread, Thread::pending_exception_offset()), (int32_t)NULL_WORD); |
0 | 90 jcc(Assembler::equal, L); |
91 // exception pending => remove activation and forward to exception handler | |
304 | 92 movptr(rax, Address(thread, Thread::pending_exception_offset())); |
0 | 93 // make sure that the vm_results are cleared |
94 if (oop_result1->is_valid()) { | |
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95 movptr(Address(thread, JavaThread::vm_result_offset()), NULL_WORD); |
0 | 96 } |
97 if (oop_result2->is_valid()) { | |
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98 movptr(Address(thread, JavaThread::vm_result_2_offset()), NULL_WORD); |
0 | 99 } |
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100 // (tw) Deoptimize in case of an exception. |
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101 restore_live_registers(this, false); |
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102 movptr(Address(thread, Thread::pending_exception_offset()), NULL_WORD); |
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103 leave(); |
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104 jump(RuntimeAddress(SharedRuntime::deopt_blob()->uncommon_trap())); |
0 | 105 bind(L); |
106 } | |
107 // get oop results if there are any and reset the values in the thread | |
108 if (oop_result1->is_valid()) { | |
304 | 109 movptr(oop_result1, Address(thread, JavaThread::vm_result_offset())); |
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110 movptr(Address(thread, JavaThread::vm_result_offset()), NULL_WORD); |
0 | 111 verify_oop(oop_result1); |
112 } | |
113 if (oop_result2->is_valid()) { | |
304 | 114 movptr(oop_result2, Address(thread, JavaThread::vm_result_2_offset())); |
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115 movptr(Address(thread, JavaThread::vm_result_2_offset()), NULL_WORD); |
0 | 116 verify_oop(oop_result2); |
117 } | |
118 return call_offset; | |
119 } | |
120 | |
121 | |
122 int StubAssembler::call_RT(Register oop_result1, Register oop_result2, address entry, Register arg1) { | |
304 | 123 #ifdef _LP64 |
124 mov(c_rarg1, arg1); | |
125 #else | |
126 push(arg1); | |
127 #endif // _LP64 | |
0 | 128 return call_RT(oop_result1, oop_result2, entry, 1); |
129 } | |
130 | |
131 | |
132 int StubAssembler::call_RT(Register oop_result1, Register oop_result2, address entry, Register arg1, Register arg2) { | |
304 | 133 #ifdef _LP64 |
134 if (c_rarg1 == arg2) { | |
135 if (c_rarg2 == arg1) { | |
136 xchgq(arg1, arg2); | |
137 } else { | |
138 mov(c_rarg2, arg2); | |
139 mov(c_rarg1, arg1); | |
140 } | |
141 } else { | |
142 mov(c_rarg1, arg1); | |
143 mov(c_rarg2, arg2); | |
144 } | |
145 #else | |
146 push(arg2); | |
147 push(arg1); | |
148 #endif // _LP64 | |
0 | 149 return call_RT(oop_result1, oop_result2, entry, 2); |
150 } | |
151 | |
152 | |
153 int StubAssembler::call_RT(Register oop_result1, Register oop_result2, address entry, Register arg1, Register arg2, Register arg3) { | |
304 | 154 #ifdef _LP64 |
155 // if there is any conflict use the stack | |
156 if (arg1 == c_rarg2 || arg1 == c_rarg3 || | |
157 arg2 == c_rarg1 || arg1 == c_rarg3 || | |
158 arg3 == c_rarg1 || arg1 == c_rarg2) { | |
159 push(arg3); | |
160 push(arg2); | |
161 push(arg1); | |
162 pop(c_rarg1); | |
163 pop(c_rarg2); | |
164 pop(c_rarg3); | |
165 } else { | |
166 mov(c_rarg1, arg1); | |
167 mov(c_rarg2, arg2); | |
168 mov(c_rarg3, arg3); | |
169 } | |
170 #else | |
171 push(arg3); | |
172 push(arg2); | |
173 push(arg1); | |
174 #endif // _LP64 | |
0 | 175 return call_RT(oop_result1, oop_result2, entry, 3); |
176 } | |
177 | |
178 | |
179 // Implementation of StubFrame | |
180 | |
181 class StubFrame: public StackObj { | |
182 private: | |
183 StubAssembler* _sasm; | |
184 | |
185 public: | |
186 StubFrame(StubAssembler* sasm, const char* name, bool must_gc_arguments); | |
187 void load_argument(int offset_in_words, Register reg); | |
188 | |
189 ~StubFrame(); | |
190 }; | |
191 | |
192 | |
193 #define __ _sasm-> | |
194 | |
195 StubFrame::StubFrame(StubAssembler* sasm, const char* name, bool must_gc_arguments) { | |
196 _sasm = sasm; | |
197 __ set_info(name, must_gc_arguments); | |
198 __ enter(); | |
199 } | |
200 | |
201 // load parameters that were stored with LIR_Assembler::store_parameter | |
202 // Note: offsets for store_parameter and load_argument must match | |
203 void StubFrame::load_argument(int offset_in_words, Register reg) { | |
204 // rbp, + 0: link | |
205 // + 1: return address | |
206 // + 2: argument with offset 0 | |
207 // + 3: argument with offset 1 | |
208 // + 4: ... | |
209 | |
304 | 210 __ movptr(reg, Address(rbp, (offset_in_words + 2) * BytesPerWord)); |
0 | 211 } |
212 | |
213 | |
214 StubFrame::~StubFrame() { | |
215 __ leave(); | |
216 __ ret(0); | |
217 } | |
218 | |
219 #undef __ | |
220 | |
221 | |
222 // Implementation of Runtime1 | |
223 | |
224 #define __ sasm-> | |
225 | |
304 | 226 const int float_regs_as_doubles_size_in_slots = pd_nof_fpu_regs_frame_map * 2; |
227 const int xmm_regs_as_doubles_size_in_slots = FrameMap::nof_xmm_regs * 2; | |
0 | 228 |
229 // Stack layout for saving/restoring all the registers needed during a runtime | |
230 // call (this includes deoptimization) | |
231 // Note: note that users of this frame may well have arguments to some runtime | |
232 // while these values are on the stack. These positions neglect those arguments | |
233 // but the code in save_live_registers will take the argument count into | |
234 // account. | |
235 // | |
304 | 236 #ifdef _LP64 |
237 #define SLOT2(x) x, | |
238 #define SLOT_PER_WORD 2 | |
239 #else | |
240 #define SLOT2(x) | |
241 #define SLOT_PER_WORD 1 | |
242 #endif // _LP64 | |
243 | |
0 | 244 enum reg_save_layout { |
304 | 245 // 64bit needs to keep stack 16 byte aligned. So we add some alignment dummies to make that |
246 // happen and will assert if the stack size we create is misaligned | |
247 #ifdef _LP64 | |
248 align_dummy_0, align_dummy_1, | |
249 #endif // _LP64 | |
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250 #ifdef _WIN64 |
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251 // Windows always allocates space for it's argument registers (see |
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252 // frame::arg_reg_save_area_bytes). |
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253 arg_reg_save_1, arg_reg_save_1H, // 0, 4 |
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254 arg_reg_save_2, arg_reg_save_2H, // 8, 12 |
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255 arg_reg_save_3, arg_reg_save_3H, // 16, 20 |
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256 arg_reg_save_4, arg_reg_save_4H, // 24, 28 |
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257 #endif // _WIN64 |
304 | 258 xmm_regs_as_doubles_off, // 32 |
259 float_regs_as_doubles_off = xmm_regs_as_doubles_off + xmm_regs_as_doubles_size_in_slots, // 160 | |
260 fpu_state_off = float_regs_as_doubles_off + float_regs_as_doubles_size_in_slots, // 224 | |
261 // fpu_state_end_off is exclusive | |
262 fpu_state_end_off = fpu_state_off + (FPUStateSizeInWords / SLOT_PER_WORD), // 352 | |
263 marker = fpu_state_end_off, SLOT2(markerH) // 352, 356 | |
264 extra_space_offset, // 360 | |
265 #ifdef _LP64 | |
266 r15_off = extra_space_offset, r15H_off, // 360, 364 | |
267 r14_off, r14H_off, // 368, 372 | |
268 r13_off, r13H_off, // 376, 380 | |
269 r12_off, r12H_off, // 384, 388 | |
270 r11_off, r11H_off, // 392, 396 | |
271 r10_off, r10H_off, // 400, 404 | |
272 r9_off, r9H_off, // 408, 412 | |
273 r8_off, r8H_off, // 416, 420 | |
274 rdi_off, rdiH_off, // 424, 428 | |
275 #else | |
0 | 276 rdi_off = extra_space_offset, |
304 | 277 #endif // _LP64 |
278 rsi_off, SLOT2(rsiH_off) // 432, 436 | |
279 rbp_off, SLOT2(rbpH_off) // 440, 444 | |
280 rsp_off, SLOT2(rspH_off) // 448, 452 | |
281 rbx_off, SLOT2(rbxH_off) // 456, 460 | |
282 rdx_off, SLOT2(rdxH_off) // 464, 468 | |
283 rcx_off, SLOT2(rcxH_off) // 472, 476 | |
284 rax_off, SLOT2(raxH_off) // 480, 484 | |
285 saved_rbp_off, SLOT2(saved_rbpH_off) // 488, 492 | |
286 return_off, SLOT2(returnH_off) // 496, 500 | |
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287 reg_save_frame_size // As noted: neglects any parameters to runtime // 504 |
0 | 288 }; |
289 | |
290 | |
291 | |
292 // Save off registers which might be killed by calls into the runtime. | |
293 // Tries to smart of about FP registers. In particular we separate | |
294 // saving and describing the FPU registers for deoptimization since we | |
295 // have to save the FPU registers twice if we describe them and on P4 | |
296 // saving FPU registers which don't contain anything appears | |
297 // expensive. The deopt blob is the only thing which needs to | |
298 // describe FPU registers. In all other cases it should be sufficient | |
299 // to simply save their current value. | |
300 | |
301 static OopMap* generate_oop_map(StubAssembler* sasm, int num_rt_args, | |
302 bool save_fpu_registers = true) { | |
304 | 303 |
304 // In 64bit all the args are in regs so there are no additional stack slots | |
305 LP64_ONLY(num_rt_args = 0); | |
306 LP64_ONLY(assert((reg_save_frame_size * VMRegImpl::stack_slot_size) % 16 == 0, "must be 16 byte aligned");) | |
307 int frame_size_in_slots = reg_save_frame_size + num_rt_args; // args + thread | |
308 sasm->set_frame_size(frame_size_in_slots / VMRegImpl::slots_per_word ); | |
0 | 309 |
310 // record saved value locations in an OopMap | |
311 // locations are offsets from sp after runtime call; num_rt_args is number of arguments in call, including thread | |
304 | 312 OopMap* map = new OopMap(frame_size_in_slots, 0); |
0 | 313 map->set_callee_saved(VMRegImpl::stack2reg(rax_off + num_rt_args), rax->as_VMReg()); |
314 map->set_callee_saved(VMRegImpl::stack2reg(rcx_off + num_rt_args), rcx->as_VMReg()); | |
315 map->set_callee_saved(VMRegImpl::stack2reg(rdx_off + num_rt_args), rdx->as_VMReg()); | |
316 map->set_callee_saved(VMRegImpl::stack2reg(rbx_off + num_rt_args), rbx->as_VMReg()); | |
317 map->set_callee_saved(VMRegImpl::stack2reg(rsi_off + num_rt_args), rsi->as_VMReg()); | |
318 map->set_callee_saved(VMRegImpl::stack2reg(rdi_off + num_rt_args), rdi->as_VMReg()); | |
304 | 319 #ifdef _LP64 |
320 map->set_callee_saved(VMRegImpl::stack2reg(r8_off + num_rt_args), r8->as_VMReg()); | |
321 map->set_callee_saved(VMRegImpl::stack2reg(r9_off + num_rt_args), r9->as_VMReg()); | |
322 map->set_callee_saved(VMRegImpl::stack2reg(r10_off + num_rt_args), r10->as_VMReg()); | |
323 map->set_callee_saved(VMRegImpl::stack2reg(r11_off + num_rt_args), r11->as_VMReg()); | |
324 map->set_callee_saved(VMRegImpl::stack2reg(r12_off + num_rt_args), r12->as_VMReg()); | |
325 map->set_callee_saved(VMRegImpl::stack2reg(r13_off + num_rt_args), r13->as_VMReg()); | |
326 map->set_callee_saved(VMRegImpl::stack2reg(r14_off + num_rt_args), r14->as_VMReg()); | |
327 map->set_callee_saved(VMRegImpl::stack2reg(r15_off + num_rt_args), r15->as_VMReg()); | |
328 | |
329 // This is stupid but needed. | |
330 map->set_callee_saved(VMRegImpl::stack2reg(raxH_off + num_rt_args), rax->as_VMReg()->next()); | |
331 map->set_callee_saved(VMRegImpl::stack2reg(rcxH_off + num_rt_args), rcx->as_VMReg()->next()); | |
332 map->set_callee_saved(VMRegImpl::stack2reg(rdxH_off + num_rt_args), rdx->as_VMReg()->next()); | |
333 map->set_callee_saved(VMRegImpl::stack2reg(rbxH_off + num_rt_args), rbx->as_VMReg()->next()); | |
334 map->set_callee_saved(VMRegImpl::stack2reg(rsiH_off + num_rt_args), rsi->as_VMReg()->next()); | |
335 map->set_callee_saved(VMRegImpl::stack2reg(rdiH_off + num_rt_args), rdi->as_VMReg()->next()); | |
336 | |
337 map->set_callee_saved(VMRegImpl::stack2reg(r8H_off + num_rt_args), r8->as_VMReg()->next()); | |
338 map->set_callee_saved(VMRegImpl::stack2reg(r9H_off + num_rt_args), r9->as_VMReg()->next()); | |
339 map->set_callee_saved(VMRegImpl::stack2reg(r10H_off + num_rt_args), r10->as_VMReg()->next()); | |
340 map->set_callee_saved(VMRegImpl::stack2reg(r11H_off + num_rt_args), r11->as_VMReg()->next()); | |
341 map->set_callee_saved(VMRegImpl::stack2reg(r12H_off + num_rt_args), r12->as_VMReg()->next()); | |
342 map->set_callee_saved(VMRegImpl::stack2reg(r13H_off + num_rt_args), r13->as_VMReg()->next()); | |
343 map->set_callee_saved(VMRegImpl::stack2reg(r14H_off + num_rt_args), r14->as_VMReg()->next()); | |
344 map->set_callee_saved(VMRegImpl::stack2reg(r15H_off + num_rt_args), r15->as_VMReg()->next()); | |
345 #endif // _LP64 | |
0 | 346 |
347 if (save_fpu_registers) { | |
348 if (UseSSE < 2) { | |
349 int fpu_off = float_regs_as_doubles_off; | |
350 for (int n = 0; n < FrameMap::nof_fpu_regs; n++) { | |
351 VMReg fpu_name_0 = FrameMap::fpu_regname(n); | |
352 map->set_callee_saved(VMRegImpl::stack2reg(fpu_off + num_rt_args), fpu_name_0); | |
353 // %%% This is really a waste but we'll keep things as they were for now | |
354 if (true) { | |
355 map->set_callee_saved(VMRegImpl::stack2reg(fpu_off + 1 + num_rt_args), fpu_name_0->next()); | |
356 } | |
357 fpu_off += 2; | |
358 } | |
359 assert(fpu_off == fpu_state_off, "incorrect number of fpu stack slots"); | |
360 } | |
361 | |
362 if (UseSSE >= 2) { | |
363 int xmm_off = xmm_regs_as_doubles_off; | |
364 for (int n = 0; n < FrameMap::nof_xmm_regs; n++) { | |
365 VMReg xmm_name_0 = as_XMMRegister(n)->as_VMReg(); | |
366 map->set_callee_saved(VMRegImpl::stack2reg(xmm_off + num_rt_args), xmm_name_0); | |
367 // %%% This is really a waste but we'll keep things as they were for now | |
368 if (true) { | |
369 map->set_callee_saved(VMRegImpl::stack2reg(xmm_off + 1 + num_rt_args), xmm_name_0->next()); | |
370 } | |
371 xmm_off += 2; | |
372 } | |
373 assert(xmm_off == float_regs_as_doubles_off, "incorrect number of xmm registers"); | |
374 | |
375 } else if (UseSSE == 1) { | |
376 int xmm_off = xmm_regs_as_doubles_off; | |
377 for (int n = 0; n < FrameMap::nof_xmm_regs; n++) { | |
378 VMReg xmm_name_0 = as_XMMRegister(n)->as_VMReg(); | |
379 map->set_callee_saved(VMRegImpl::stack2reg(xmm_off + num_rt_args), xmm_name_0); | |
380 xmm_off += 2; | |
381 } | |
382 assert(xmm_off == float_regs_as_doubles_off, "incorrect number of xmm registers"); | |
383 } | |
384 } | |
385 | |
386 return map; | |
387 } | |
388 | |
389 static OopMap* save_live_registers(StubAssembler* sasm, int num_rt_args, | |
390 bool save_fpu_registers = true) { | |
391 __ block_comment("save_live_registers"); | |
392 | |
304 | 393 __ pusha(); // integer registers |
0 | 394 |
395 // assert(float_regs_as_doubles_off % 2 == 0, "misaligned offset"); | |
396 // assert(xmm_regs_as_doubles_off % 2 == 0, "misaligned offset"); | |
397 | |
304 | 398 __ subptr(rsp, extra_space_offset * VMRegImpl::stack_slot_size); |
0 | 399 |
400 #ifdef ASSERT | |
304 | 401 __ movptr(Address(rsp, marker * VMRegImpl::stack_slot_size), (int32_t)0xfeedbeef); |
0 | 402 #endif |
403 | |
404 if (save_fpu_registers) { | |
405 if (UseSSE < 2) { | |
406 // save FPU stack | |
304 | 407 __ fnsave(Address(rsp, fpu_state_off * VMRegImpl::stack_slot_size)); |
0 | 408 __ fwait(); |
409 | |
410 #ifdef ASSERT | |
411 Label ok; | |
304 | 412 __ cmpw(Address(rsp, fpu_state_off * VMRegImpl::stack_slot_size), StubRoutines::fpu_cntrl_wrd_std()); |
0 | 413 __ jccb(Assembler::equal, ok); |
414 __ stop("corrupted control word detected"); | |
415 __ bind(ok); | |
416 #endif | |
417 | |
418 // Reset the control word to guard against exceptions being unmasked | |
419 // since fstp_d can cause FPU stack underflow exceptions. Write it | |
420 // into the on stack copy and then reload that to make sure that the | |
421 // current and future values are correct. | |
304 | 422 __ movw(Address(rsp, fpu_state_off * VMRegImpl::stack_slot_size), StubRoutines::fpu_cntrl_wrd_std()); |
423 __ frstor(Address(rsp, fpu_state_off * VMRegImpl::stack_slot_size)); | |
0 | 424 |
425 // Save the FPU registers in de-opt-able form | |
304 | 426 __ fstp_d(Address(rsp, float_regs_as_doubles_off * VMRegImpl::stack_slot_size + 0)); |
427 __ fstp_d(Address(rsp, float_regs_as_doubles_off * VMRegImpl::stack_slot_size + 8)); | |
428 __ fstp_d(Address(rsp, float_regs_as_doubles_off * VMRegImpl::stack_slot_size + 16)); | |
429 __ fstp_d(Address(rsp, float_regs_as_doubles_off * VMRegImpl::stack_slot_size + 24)); | |
430 __ fstp_d(Address(rsp, float_regs_as_doubles_off * VMRegImpl::stack_slot_size + 32)); | |
431 __ fstp_d(Address(rsp, float_regs_as_doubles_off * VMRegImpl::stack_slot_size + 40)); | |
432 __ fstp_d(Address(rsp, float_regs_as_doubles_off * VMRegImpl::stack_slot_size + 48)); | |
433 __ fstp_d(Address(rsp, float_regs_as_doubles_off * VMRegImpl::stack_slot_size + 56)); | |
0 | 434 } |
435 | |
436 if (UseSSE >= 2) { | |
437 // save XMM registers | |
438 // XMM registers can contain float or double values, but this is not known here, | |
439 // so always save them as doubles. | |
440 // note that float values are _not_ converted automatically, so for float values | |
441 // the second word contains only garbage data. | |
304 | 442 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 0), xmm0); |
443 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 8), xmm1); | |
444 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 16), xmm2); | |
445 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 24), xmm3); | |
446 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 32), xmm4); | |
447 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 40), xmm5); | |
448 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 48), xmm6); | |
449 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 56), xmm7); | |
450 #ifdef _LP64 | |
451 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 64), xmm8); | |
452 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 72), xmm9); | |
453 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 80), xmm10); | |
454 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 88), xmm11); | |
455 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 96), xmm12); | |
456 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 104), xmm13); | |
457 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 112), xmm14); | |
458 __ movdbl(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 120), xmm15); | |
459 #endif // _LP64 | |
0 | 460 } else if (UseSSE == 1) { |
461 // save XMM registers as float because double not supported without SSE2 | |
304 | 462 __ movflt(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 0), xmm0); |
463 __ movflt(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 8), xmm1); | |
464 __ movflt(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 16), xmm2); | |
465 __ movflt(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 24), xmm3); | |
466 __ movflt(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 32), xmm4); | |
467 __ movflt(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 40), xmm5); | |
468 __ movflt(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 48), xmm6); | |
469 __ movflt(Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 56), xmm7); | |
0 | 470 } |
471 } | |
472 | |
473 // FPU stack must be empty now | |
474 __ verify_FPU(0, "save_live_registers"); | |
475 | |
476 return generate_oop_map(sasm, num_rt_args, save_fpu_registers); | |
477 } | |
478 | |
479 | |
480 static void restore_fpu(StubAssembler* sasm, bool restore_fpu_registers = true) { | |
481 if (restore_fpu_registers) { | |
482 if (UseSSE >= 2) { | |
483 // restore XMM registers | |
304 | 484 __ movdbl(xmm0, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 0)); |
485 __ movdbl(xmm1, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 8)); | |
486 __ movdbl(xmm2, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 16)); | |
487 __ movdbl(xmm3, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 24)); | |
488 __ movdbl(xmm4, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 32)); | |
489 __ movdbl(xmm5, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 40)); | |
490 __ movdbl(xmm6, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 48)); | |
491 __ movdbl(xmm7, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 56)); | |
492 #ifdef _LP64 | |
493 __ movdbl(xmm8, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 64)); | |
494 __ movdbl(xmm9, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 72)); | |
495 __ movdbl(xmm10, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 80)); | |
496 __ movdbl(xmm11, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 88)); | |
497 __ movdbl(xmm12, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 96)); | |
498 __ movdbl(xmm13, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 104)); | |
499 __ movdbl(xmm14, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 112)); | |
500 __ movdbl(xmm15, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 120)); | |
501 #endif // _LP64 | |
0 | 502 } else if (UseSSE == 1) { |
503 // restore XMM registers | |
304 | 504 __ movflt(xmm0, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 0)); |
505 __ movflt(xmm1, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 8)); | |
506 __ movflt(xmm2, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 16)); | |
507 __ movflt(xmm3, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 24)); | |
508 __ movflt(xmm4, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 32)); | |
509 __ movflt(xmm5, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 40)); | |
510 __ movflt(xmm6, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 48)); | |
511 __ movflt(xmm7, Address(rsp, xmm_regs_as_doubles_off * VMRegImpl::stack_slot_size + 56)); | |
0 | 512 } |
513 | |
514 if (UseSSE < 2) { | |
304 | 515 __ frstor(Address(rsp, fpu_state_off * VMRegImpl::stack_slot_size)); |
0 | 516 } else { |
517 // check that FPU stack is really empty | |
518 __ verify_FPU(0, "restore_live_registers"); | |
519 } | |
520 | |
521 } else { | |
522 // check that FPU stack is really empty | |
523 __ verify_FPU(0, "restore_live_registers"); | |
524 } | |
525 | |
526 #ifdef ASSERT | |
527 { | |
528 Label ok; | |
304 | 529 __ cmpptr(Address(rsp, marker * VMRegImpl::stack_slot_size), (int32_t)0xfeedbeef); |
0 | 530 __ jcc(Assembler::equal, ok); |
531 __ stop("bad offsets in frame"); | |
532 __ bind(ok); | |
533 } | |
304 | 534 #endif // ASSERT |
0 | 535 |
304 | 536 __ addptr(rsp, extra_space_offset * VMRegImpl::stack_slot_size); |
0 | 537 } |
538 | |
539 | |
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540 static void restore_live_registers(StubAssembler* sasm, bool restore_fpu_registers/* = true*/) { |
0 | 541 __ block_comment("restore_live_registers"); |
542 | |
543 restore_fpu(sasm, restore_fpu_registers); | |
304 | 544 __ popa(); |
0 | 545 } |
546 | |
547 | |
548 static void restore_live_registers_except_rax(StubAssembler* sasm, bool restore_fpu_registers = true) { | |
549 __ block_comment("restore_live_registers_except_rax"); | |
550 | |
551 restore_fpu(sasm, restore_fpu_registers); | |
552 | |
304 | 553 #ifdef _LP64 |
554 __ movptr(r15, Address(rsp, 0)); | |
555 __ movptr(r14, Address(rsp, wordSize)); | |
556 __ movptr(r13, Address(rsp, 2 * wordSize)); | |
557 __ movptr(r12, Address(rsp, 3 * wordSize)); | |
558 __ movptr(r11, Address(rsp, 4 * wordSize)); | |
559 __ movptr(r10, Address(rsp, 5 * wordSize)); | |
560 __ movptr(r9, Address(rsp, 6 * wordSize)); | |
561 __ movptr(r8, Address(rsp, 7 * wordSize)); | |
562 __ movptr(rdi, Address(rsp, 8 * wordSize)); | |
563 __ movptr(rsi, Address(rsp, 9 * wordSize)); | |
564 __ movptr(rbp, Address(rsp, 10 * wordSize)); | |
565 // skip rsp | |
566 __ movptr(rbx, Address(rsp, 12 * wordSize)); | |
567 __ movptr(rdx, Address(rsp, 13 * wordSize)); | |
568 __ movptr(rcx, Address(rsp, 14 * wordSize)); | |
569 | |
570 __ addptr(rsp, 16 * wordSize); | |
571 #else | |
572 | |
573 __ pop(rdi); | |
574 __ pop(rsi); | |
575 __ pop(rbp); | |
576 __ pop(rbx); // skip this value | |
577 __ pop(rbx); | |
578 __ pop(rdx); | |
579 __ pop(rcx); | |
580 __ addptr(rsp, BytesPerWord); | |
581 #endif // _LP64 | |
0 | 582 } |
583 | |
584 | |
585 void Runtime1::initialize_pd() { | |
586 // nothing to do | |
587 } | |
588 | |
589 | |
590 // target: the entry point of the method that creates and posts the exception oop | |
591 // has_argument: true if the exception needs an argument (passed on stack because registers must be preserved) | |
592 | |
593 OopMapSet* Runtime1::generate_exception_throw(StubAssembler* sasm, address target, bool has_argument) { | |
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594 OopMapSet* oop_maps = new OopMapSet(); |
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595 if (UseGraal) { |
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596 // graal passes the argument in r10 |
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597 OopMap* oop_map = save_live_registers(sasm, 1); |
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598 |
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599 // now all registers are saved and can be used freely |
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600 // verify that no old value is used accidentally |
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601 __ invalidate_registers(true, true, true, true, true, true); |
0 | 602 |
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603 // registers used by this stub |
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604 const Register temp_reg = rbx; |
0 | 605 |
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606 // load argument for exception that is passed as an argument into the stub |
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607 if (has_argument) { |
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608 __ movptr(c_rarg1, r10); |
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609 } |
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610 int call_offset = __ call_RT(noreg, noreg, target, has_argument ? 1 : 0); |
0 | 611 |
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612 oop_maps->add_gc_map(call_offset, oop_map); |
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613 } else { |
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614 // preserve all registers |
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615 int num_rt_args = has_argument ? 2 : 1; |
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616 OopMap* oop_map = save_live_registers(sasm, num_rt_args); |
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617 |
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618 // now all registers are saved and can be used freely |
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619 // verify that no old value is used accidentally |
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620 __ invalidate_registers(true, true, true, true, true, true); |
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621 |
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622 // registers used by this stub |
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623 const Register temp_reg = rbx; |
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624 |
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625 // load argument for exception that is passed as an argument into the stub |
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626 if (has_argument) { |
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627 #ifdef _LP64 |
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628 __ movptr(c_rarg1, Address(rbp, 2*BytesPerWord)); |
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629 #else |
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630 __ movptr(temp_reg, Address(rbp, 2*BytesPerWord)); |
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631 __ push(temp_reg); |
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632 #endif // _LP64 |
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633 } |
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634 int call_offset = __ call_RT(noreg, noreg, target, num_rt_args - 1); |
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635 |
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636 oop_maps->add_gc_map(call_offset, oop_map); |
0 | 637 } |
638 | |
639 __ stop("should not reach here"); | |
640 | |
641 return oop_maps; | |
642 } | |
643 | |
644 | |
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645 OopMapSet* Runtime1::generate_handle_exception(StubID id, StubAssembler *sasm) { |
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646 __ block_comment("generate_handle_exception"); |
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647 |
0 | 648 // incoming parameters |
649 const Register exception_oop = rax; | |
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650 const Register exception_pc = rdx; |
0 | 651 // other registers used in this stub |
304 | 652 const Register thread = NOT_LP64(rdi) LP64_ONLY(r15_thread); |
0 | 653 |
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654 // Save registers, if required. |
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655 OopMapSet* oop_maps = new OopMapSet(); |
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656 OopMap* oop_map = NULL; |
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657 switch (id) { |
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658 case forward_exception_id: |
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659 // We're handling an exception in the context of a compiled frame. |
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660 // The registers have been saved in the standard places. Perform |
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661 // an exception lookup in the caller and dispatch to the handler |
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662 // if found. Otherwise unwind and dispatch to the callers |
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663 // exception handler. |
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664 oop_map = generate_oop_map(sasm, 1 /*thread*/); |
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665 |
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666 // load and clear pending exception oop into RAX |
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667 __ movptr(exception_oop, Address(thread, Thread::pending_exception_offset())); |
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668 __ movptr(Address(thread, Thread::pending_exception_offset()), NULL_WORD); |
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669 |
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670 // load issuing PC (the return address for this stub) into rdx |
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671 __ movptr(exception_pc, Address(rbp, 1*BytesPerWord)); |
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672 |
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673 // make sure that the vm_results are cleared (may be unnecessary) |
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674 __ movptr(Address(thread, JavaThread::vm_result_offset()), NULL_WORD); |
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675 __ movptr(Address(thread, JavaThread::vm_result_2_offset()), NULL_WORD); |
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676 break; |
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677 case handle_exception_nofpu_id: |
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678 case handle_exception_id: |
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679 // At this point all registers MAY be live. |
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680 oop_map = save_live_registers(sasm, 1 /*thread*/, id == handle_exception_nofpu_id); |
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681 break; |
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682 case handle_exception_from_callee_id: { |
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683 // At this point all registers except exception oop (RAX) and |
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684 // exception pc (RDX) are dead. |
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685 const int frame_size = 2 /*BP, return address*/ NOT_LP64(+ 1 /*thread*/) WIN64_ONLY(+ frame::arg_reg_save_area_bytes / BytesPerWord); |
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686 oop_map = new OopMap(frame_size * VMRegImpl::slots_per_word, 0); |
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687 sasm->set_frame_size(frame_size); |
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688 WIN64_ONLY(__ subq(rsp, frame::arg_reg_save_area_bytes)); |
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689 break; |
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690 } |
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691 default: ShouldNotReachHere(); |
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692 } |
0 | 693 |
694 #ifdef TIERED | |
695 // C2 can leave the fpu stack dirty | |
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696 if (UseSSE < 2) { |
0 | 697 __ empty_FPU_stack(); |
698 } | |
699 #endif // TIERED | |
700 | |
701 // verify that only rax, and rdx is valid at this time | |
702 __ invalidate_registers(false, true, true, false, true, true); | |
703 // verify that rax, contains a valid exception | |
704 __ verify_not_null_oop(exception_oop); | |
705 | |
706 // load address of JavaThread object for thread-local data | |
304 | 707 NOT_LP64(__ get_thread(thread);) |
0 | 708 |
709 #ifdef ASSERT | |
710 // check that fields in JavaThread for exception oop and issuing pc are | |
711 // empty before writing to them | |
712 Label oop_empty; | |
304 | 713 __ cmpptr(Address(thread, JavaThread::exception_oop_offset()), (int32_t) NULL_WORD); |
0 | 714 __ jcc(Assembler::equal, oop_empty); |
715 __ stop("exception oop already set"); | |
716 __ bind(oop_empty); | |
717 | |
718 Label pc_empty; | |
304 | 719 __ cmpptr(Address(thread, JavaThread::exception_pc_offset()), 0); |
0 | 720 __ jcc(Assembler::equal, pc_empty); |
721 __ stop("exception pc already set"); | |
722 __ bind(pc_empty); | |
723 #endif | |
724 | |
725 // save exception oop and issuing pc into JavaThread | |
726 // (exception handler will load it from here) | |
304 | 727 __ movptr(Address(thread, JavaThread::exception_oop_offset()), exception_oop); |
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728 __ movptr(Address(thread, JavaThread::exception_pc_offset()), exception_pc); |
0 | 729 |
730 // patch throwing pc into return address (has bci & oop map) | |
304 | 731 __ movptr(Address(rbp, 1*BytesPerWord), exception_pc); |
0 | 732 |
733 // compute the exception handler. | |
734 // the exception oop and the throwing pc are read from the fields in JavaThread | |
735 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, exception_handler_for_pc)); | |
736 oop_maps->add_gc_map(call_offset, oop_map); | |
737 | |
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738 // rax: handler address |
0 | 739 // will be the deopt blob if nmethod was deoptimized while we looked up |
740 // handler regardless of whether handler existed in the nmethod. | |
741 | |
742 // only rax, is valid at this time, all other registers have been destroyed by the runtime call | |
743 __ invalidate_registers(false, true, true, true, true, true); | |
744 | |
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745 // patch the return address, this stub will directly return to the exception handler |
304 | 746 __ movptr(Address(rbp, 1*BytesPerWord), rax); |
0 | 747 |
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748 switch (id) { |
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749 case forward_exception_id: |
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750 case handle_exception_nofpu_id: |
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751 case handle_exception_id: |
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752 // Restore the registers that were saved at the beginning. |
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753 restore_live_registers(sasm, id == handle_exception_nofpu_id); |
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754 break; |
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755 case handle_exception_from_callee_id: |
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756 // WIN64_ONLY: No need to add frame::arg_reg_save_area_bytes to SP |
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757 // since we do a leave anyway. |
0 | 758 |
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759 // Pop the return address since we are possibly changing SP (restoring from BP). |
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760 __ leave(); |
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761 __ pop(rcx); |
0 | 762 |
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763 // Restore SP from BP if the exception PC is a method handle call site. |
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764 NOT_LP64(__ get_thread(thread);) |
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765 __ cmpl(Address(thread, JavaThread::is_method_handle_return_offset()), 0); |
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766 __ cmovptr(Assembler::notEqual, rsp, rbp_mh_SP_save); |
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767 __ jmp(rcx); // jump to exception handler |
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768 break; |
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769 default: ShouldNotReachHere(); |
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770 } |
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771 |
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772 return oop_maps; |
0 | 773 } |
774 | |
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775 void Runtime1::graal_generate_handle_exception(StubAssembler *sasm, OopMapSet* oop_maps, OopMap* oop_map) { |
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776 NOT_LP64(fatal("64 bit only")); |
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777 // incoming parameters |
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778 const Register exception_oop = j_rarg0; |
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779 // other registers used in this stub |
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780 const Register exception_pc = j_rarg1; |
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781 const Register thread = r15_thread; |
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782 |
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783 __ block_comment("graal_generate_handle_exception"); |
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784 |
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785 // verify that rax, contains a valid exception |
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786 __ verify_not_null_oop(exception_oop); |
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787 |
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788 #ifdef ASSERT |
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789 // check that fields in JavaThread for exception oop and issuing pc are |
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790 // empty before writing to them |
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791 Label oop_empty; |
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792 __ cmpptr(Address(thread, JavaThread::exception_oop_offset()), (int32_t) NULL_WORD); |
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793 __ jcc(Assembler::equal, oop_empty); |
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794 __ stop("exception oop already set"); |
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795 __ bind(oop_empty); |
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796 |
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797 Label pc_empty; |
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798 __ cmpptr(Address(thread, JavaThread::exception_pc_offset()), 0); |
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799 __ jcc(Assembler::equal, pc_empty); |
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800 __ stop("exception pc already set"); |
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801 __ bind(pc_empty); |
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802 #endif |
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803 |
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804 // save exception oop and issuing pc into JavaThread |
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805 // (exception handler will load it from here) |
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806 __ movptr(Address(thread, JavaThread::exception_oop_offset()), exception_oop); |
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807 __ movptr(exception_pc, Address(rbp, 1*BytesPerWord)); |
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808 __ movptr(Address(thread, JavaThread::exception_pc_offset()), exception_pc); |
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809 |
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810 // compute the exception handler. |
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811 // the exception oop and the throwing pc are read from the fields in JavaThread |
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812 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, exception_handler_for_pc)); |
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813 oop_maps->add_gc_map(call_offset, oop_map); |
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814 |
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815 // rax,: handler address |
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816 // will be the deopt blob if nmethod was deoptimized while we looked up |
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817 // handler regardless of whether handler existed in the nmethod. |
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818 |
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819 // only rax, is valid at this time, all other registers have been destroyed by the runtime call |
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820 __ invalidate_registers(false, true, true, true, true, true); |
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821 |
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822 #ifdef ASSERT |
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823 // Do we have an exception handler in the nmethod? |
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824 Label done; |
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825 __ testptr(rax, rax); |
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826 __ jcc(Assembler::notZero, done); |
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827 __ stop("no handler found"); |
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828 __ bind(done); |
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829 #endif |
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830 |
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831 // exception handler found |
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832 // patch the return address -> the stub will directly return to the exception handler |
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833 __ movptr(Address(rbp, 1*BytesPerWord), rax); |
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834 |
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835 // restore registers |
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836 restore_live_registers(sasm, false); |
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837 |
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838 // return to exception handler |
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839 __ leave(); |
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840 __ ret(0); |
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841 } |
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0 | 843 |
844 void Runtime1::generate_unwind_exception(StubAssembler *sasm) { | |
845 // incoming parameters | |
846 const Register exception_oop = rax; | |
1295 | 847 // callee-saved copy of exception_oop during runtime call |
848 const Register exception_oop_callee_saved = NOT_LP64(rsi) LP64_ONLY(r14); | |
0 | 849 // other registers used in this stub |
850 const Register exception_pc = rdx; | |
851 const Register handler_addr = rbx; | |
304 | 852 const Register thread = NOT_LP64(rdi) LP64_ONLY(r15_thread); |
0 | 853 |
854 // verify that only rax, is valid at this time | |
855 __ invalidate_registers(false, true, true, true, true, true); | |
856 | |
857 #ifdef ASSERT | |
858 // check that fields in JavaThread for exception oop and issuing pc are empty | |
304 | 859 NOT_LP64(__ get_thread(thread);) |
0 | 860 Label oop_empty; |
304 | 861 __ cmpptr(Address(thread, JavaThread::exception_oop_offset()), 0); |
0 | 862 __ jcc(Assembler::equal, oop_empty); |
863 __ stop("exception oop must be empty"); | |
864 __ bind(oop_empty); | |
865 | |
866 Label pc_empty; | |
304 | 867 __ cmpptr(Address(thread, JavaThread::exception_pc_offset()), 0); |
0 | 868 __ jcc(Assembler::equal, pc_empty); |
869 __ stop("exception pc must be empty"); | |
870 __ bind(pc_empty); | |
871 #endif | |
872 | |
873 // clear the FPU stack in case any FPU results are left behind | |
874 __ empty_FPU_stack(); | |
875 | |
1295 | 876 // save exception_oop in callee-saved register to preserve it during runtime calls |
877 __ verify_not_null_oop(exception_oop); | |
878 __ movptr(exception_oop_callee_saved, exception_oop); | |
879 | |
880 NOT_LP64(__ get_thread(thread);) | |
881 // Get return address (is on top of stack after leave). | |
304 | 882 __ movptr(exception_pc, Address(rsp, 0)); |
0 | 883 |
1295 | 884 // search the exception handler address of the caller (using the return address) |
885 __ call_VM_leaf(CAST_FROM_FN_PTR(address, SharedRuntime::exception_handler_for_return_address), thread, exception_pc); | |
886 // rax: exception handler address of the caller | |
0 | 887 |
1295 | 888 // Only RAX and RSI are valid at this time, all other registers have been destroyed by the call. |
889 __ invalidate_registers(false, true, true, true, false, true); | |
0 | 890 |
891 // move result of call into correct register | |
304 | 892 __ movptr(handler_addr, rax); |
0 | 893 |
1295 | 894 // Restore exception oop to RAX (required convention of exception handler). |
895 __ movptr(exception_oop, exception_oop_callee_saved); | |
0 | 896 |
1295 | 897 // verify that there is really a valid exception in rax |
898 __ verify_not_null_oop(exception_oop); | |
0 | 899 |
900 // get throwing pc (= return address). | |
901 // rdx has been destroyed by the call, so it must be set again | |
902 // the pop is also necessary to simulate the effect of a ret(0) | |
304 | 903 __ pop(exception_pc); |
0 | 904 |
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905 // Restore SP from BP if the exception PC is a method handle call site. |
1295 | 906 NOT_LP64(__ get_thread(thread);) |
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907 __ cmpl(Address(thread, JavaThread::is_method_handle_return_offset()), 0); |
1564 | 908 __ cmovptr(Assembler::notEqual, rsp, rbp_mh_SP_save); |
0 | 909 |
910 // continue at exception handler (return address removed) | |
911 // note: do *not* remove arguments when unwinding the | |
912 // activation since the caller assumes having | |
913 // all arguments on the stack when entering the | |
914 // runtime to determine the exception handler | |
915 // (GC happens at call site with arguments!) | |
1295 | 916 // rax: exception oop |
0 | 917 // rdx: throwing pc |
1295 | 918 // rbx: exception handler |
0 | 919 __ jmp(handler_addr); |
920 } | |
921 | |
922 | |
923 OopMapSet* Runtime1::generate_patching(StubAssembler* sasm, address target) { | |
924 // use the maximum number of runtime-arguments here because it is difficult to | |
925 // distinguish each RT-Call. | |
926 // Note: This number affects also the RT-Call in generate_handle_exception because | |
927 // the oop-map is shared for all calls. | |
928 const int num_rt_args = 2; // thread + dummy | |
929 | |
930 DeoptimizationBlob* deopt_blob = SharedRuntime::deopt_blob(); | |
931 assert(deopt_blob != NULL, "deoptimization blob must have been created"); | |
932 | |
933 OopMap* oop_map = save_live_registers(sasm, num_rt_args); | |
934 | |
304 | 935 #ifdef _LP64 |
936 const Register thread = r15_thread; | |
937 // No need to worry about dummy | |
938 __ mov(c_rarg0, thread); | |
939 #else | |
940 __ push(rax); // push dummy | |
0 | 941 |
942 const Register thread = rdi; // is callee-saved register (Visual C++ calling conventions) | |
943 // push java thread (becomes first argument of C function) | |
944 __ get_thread(thread); | |
304 | 945 __ push(thread); |
946 #endif // _LP64 | |
0 | 947 __ set_last_Java_frame(thread, noreg, rbp, NULL); |
948 // do the call | |
949 __ call(RuntimeAddress(target)); | |
950 OopMapSet* oop_maps = new OopMapSet(); | |
951 oop_maps->add_gc_map(__ offset(), oop_map); | |
952 // verify callee-saved register | |
953 #ifdef ASSERT | |
954 guarantee(thread != rax, "change this code"); | |
304 | 955 __ push(rax); |
0 | 956 { Label L; |
957 __ get_thread(rax); | |
304 | 958 __ cmpptr(thread, rax); |
0 | 959 __ jcc(Assembler::equal, L); |
304 | 960 __ stop("StubAssembler::call_RT: rdi/r15 not callee saved?"); |
0 | 961 __ bind(L); |
962 } | |
304 | 963 __ pop(rax); |
0 | 964 #endif |
965 __ reset_last_Java_frame(thread, true, false); | |
304 | 966 #ifndef _LP64 |
967 __ pop(rcx); // discard thread arg | |
968 __ pop(rcx); // discard dummy | |
969 #endif // _LP64 | |
0 | 970 |
971 // check for pending exceptions | |
972 { Label L; | |
304 | 973 __ cmpptr(Address(thread, Thread::pending_exception_offset()), (int32_t)NULL_WORD); |
0 | 974 __ jcc(Assembler::equal, L); |
975 // exception pending => remove activation and forward to exception handler | |
976 | |
304 | 977 __ testptr(rax, rax); // have we deoptimized? |
0 | 978 __ jump_cc(Assembler::equal, |
979 RuntimeAddress(Runtime1::entry_for(Runtime1::forward_exception_id))); | |
980 | |
981 // the deopt blob expects exceptions in the special fields of | |
982 // JavaThread, so copy and clear pending exception. | |
983 | |
984 // load and clear pending exception | |
304 | 985 __ movptr(rax, Address(thread, Thread::pending_exception_offset())); |
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986 __ movptr(Address(thread, Thread::pending_exception_offset()), NULL_WORD); |
0 | 987 |
988 // check that there is really a valid exception | |
989 __ verify_not_null_oop(rax); | |
990 | |
991 // load throwing pc: this is the return address of the stub | |
304 | 992 __ movptr(rdx, Address(rsp, return_off * VMRegImpl::stack_slot_size)); |
0 | 993 |
994 #ifdef ASSERT | |
995 // check that fields in JavaThread for exception oop and issuing pc are empty | |
996 Label oop_empty; | |
304 | 997 __ cmpptr(Address(thread, JavaThread::exception_oop_offset()), (int32_t)NULL_WORD); |
0 | 998 __ jcc(Assembler::equal, oop_empty); |
999 __ stop("exception oop must be empty"); | |
1000 __ bind(oop_empty); | |
1001 | |
1002 Label pc_empty; | |
304 | 1003 __ cmpptr(Address(thread, JavaThread::exception_pc_offset()), (int32_t)NULL_WORD); |
0 | 1004 __ jcc(Assembler::equal, pc_empty); |
1005 __ stop("exception pc must be empty"); | |
1006 __ bind(pc_empty); | |
1007 #endif | |
1008 | |
1009 // store exception oop and throwing pc to JavaThread | |
304 | 1010 __ movptr(Address(thread, JavaThread::exception_oop_offset()), rax); |
1011 __ movptr(Address(thread, JavaThread::exception_pc_offset()), rdx); | |
0 | 1012 |
1013 restore_live_registers(sasm); | |
1014 | |
1015 __ leave(); | |
304 | 1016 __ addptr(rsp, BytesPerWord); // remove return address from stack |
0 | 1017 |
1018 // Forward the exception directly to deopt blob. We can blow no | |
1019 // registers and must leave throwing pc on the stack. A patch may | |
1020 // have values live in registers so the entry point with the | |
1021 // exception in tls. | |
1022 __ jump(RuntimeAddress(deopt_blob->unpack_with_exception_in_tls())); | |
1023 | |
1024 __ bind(L); | |
1025 } | |
1026 | |
1027 | |
1028 // Runtime will return true if the nmethod has been deoptimized during | |
1029 // the patching process. In that case we must do a deopt reexecute instead. | |
1030 | |
1031 Label reexecuteEntry, cont; | |
1032 | |
304 | 1033 __ testptr(rax, rax); // have we deoptimized? |
0 | 1034 __ jcc(Assembler::equal, cont); // no |
1035 | |
1036 // Will reexecute. Proper return address is already on the stack we just restore | |
1037 // registers, pop all of our frame but the return address and jump to the deopt blob | |
1038 restore_live_registers(sasm); | |
1039 __ leave(); | |
1040 __ jump(RuntimeAddress(deopt_blob->unpack_with_reexecution())); | |
1041 | |
1042 __ bind(cont); | |
1043 restore_live_registers(sasm); | |
1044 __ leave(); | |
1045 __ ret(0); | |
1046 | |
1047 return oop_maps; | |
1048 } | |
1049 | |
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1050 JRT_ENTRY(void, graal_create_null_exception(JavaThread* thread)) |
1429
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1051 thread->set_vm_result(Exceptions::new_exception(thread, vmSymbols::java_lang_NullPointerException(), NULL)()); |
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1052 JRT_END |
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1053 |
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1055 |
0 | 1056 |
1057 OopMapSet* Runtime1::generate_code_for(StubID id, StubAssembler* sasm) { | |
1058 | |
1059 // for better readability | |
1060 const bool must_gc_arguments = true; | |
1061 const bool dont_gc_arguments = false; | |
1062 | |
1063 // default value; overwritten for some optimized stubs that are called from methods that do not use the fpu | |
1064 bool save_fpu_registers = true; | |
1065 | |
1066 // stub code & info for the different stubs | |
1067 OopMapSet* oop_maps = NULL; | |
1068 switch (id) { | |
1069 case forward_exception_id: | |
1070 { | |
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1071 oop_maps = generate_handle_exception(id, sasm); |
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1072 __ leave(); |
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1073 __ ret(0); |
0 | 1074 } |
1075 break; | |
1076 | |
1077 case new_instance_id: | |
1078 case fast_new_instance_id: | |
1079 case fast_new_instance_init_check_id: | |
1080 { | |
1081 Register klass = rdx; // Incoming | |
1082 Register obj = rax; // Result | |
1083 | |
1084 if (id == new_instance_id) { | |
1085 __ set_info("new_instance", dont_gc_arguments); | |
1086 } else if (id == fast_new_instance_id) { | |
1087 __ set_info("fast new_instance", dont_gc_arguments); | |
1088 } else { | |
1089 assert(id == fast_new_instance_init_check_id, "bad StubID"); | |
1090 __ set_info("fast new_instance init check", dont_gc_arguments); | |
1091 } | |
1092 | |
1093 if ((id == fast_new_instance_id || id == fast_new_instance_init_check_id) && | |
1094 UseTLAB && FastTLABRefill) { | |
1095 Label slow_path; | |
1096 Register obj_size = rcx; | |
1097 Register t1 = rbx; | |
1098 Register t2 = rsi; | |
1099 assert_different_registers(klass, obj, obj_size, t1, t2); | |
1100 | |
304 | 1101 __ push(rdi); |
1102 __ push(rbx); | |
0 | 1103 |
1104 if (id == fast_new_instance_init_check_id) { | |
1105 // make sure the klass is initialized | |
1106 __ cmpl(Address(klass, instanceKlass::init_state_offset_in_bytes() + sizeof(oopDesc)), instanceKlass::fully_initialized); | |
1107 __ jcc(Assembler::notEqual, slow_path); | |
1108 } | |
1109 | |
1110 #ifdef ASSERT | |
1111 // assert object can be fast path allocated | |
1112 { | |
1113 Label ok, not_ok; | |
1114 __ movl(obj_size, Address(klass, Klass::layout_helper_offset_in_bytes() + sizeof(oopDesc))); | |
1115 __ cmpl(obj_size, 0); // make sure it's an instance (LH > 0) | |
1116 __ jcc(Assembler::lessEqual, not_ok); | |
1117 __ testl(obj_size, Klass::_lh_instance_slow_path_bit); | |
1118 __ jcc(Assembler::zero, ok); | |
1119 __ bind(not_ok); | |
1120 __ stop("assert(can be fast path allocated)"); | |
1121 __ should_not_reach_here(); | |
1122 __ bind(ok); | |
1123 } | |
1124 #endif // ASSERT | |
1125 | |
1126 // if we got here then the TLAB allocation failed, so try | |
1127 // refilling the TLAB or allocating directly from eden. | |
1128 Label retry_tlab, try_eden; | |
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1129 const Register thread = |
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1130 __ tlab_refill(retry_tlab, try_eden, slow_path); // does not destroy rdx (klass), returns rdi |
0 | 1131 |
1132 __ bind(retry_tlab); | |
1133 | |
304 | 1134 // get the instance size (size is postive so movl is fine for 64bit) |
0 | 1135 __ movl(obj_size, Address(klass, klassOopDesc::header_size() * HeapWordSize + Klass::layout_helper_offset_in_bytes())); |
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1136 |
0 | 1137 __ tlab_allocate(obj, obj_size, 0, t1, t2, slow_path); |
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1138 |
0 | 1139 __ initialize_object(obj, klass, obj_size, 0, t1, t2); |
1140 __ verify_oop(obj); | |
304 | 1141 __ pop(rbx); |
1142 __ pop(rdi); | |
0 | 1143 __ ret(0); |
1144 | |
1145 __ bind(try_eden); | |
304 | 1146 // get the instance size (size is postive so movl is fine for 64bit) |
0 | 1147 __ movl(obj_size, Address(klass, klassOopDesc::header_size() * HeapWordSize + Klass::layout_helper_offset_in_bytes())); |
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1148 |
0 | 1149 __ eden_allocate(obj, obj_size, 0, t1, slow_path); |
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1150 __ incr_allocated_bytes(thread, obj_size, 0); |
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1151 |
0 | 1152 __ initialize_object(obj, klass, obj_size, 0, t1, t2); |
1153 __ verify_oop(obj); | |
304 | 1154 __ pop(rbx); |
1155 __ pop(rdi); | |
0 | 1156 __ ret(0); |
1157 | |
1158 __ bind(slow_path); | |
304 | 1159 __ pop(rbx); |
1160 __ pop(rdi); | |
0 | 1161 } |
1162 | |
1163 __ enter(); | |
1164 OopMap* map = save_live_registers(sasm, 2); | |
1165 int call_offset = __ call_RT(obj, noreg, CAST_FROM_FN_PTR(address, new_instance), klass); | |
1166 oop_maps = new OopMapSet(); | |
1167 oop_maps->add_gc_map(call_offset, map); | |
1168 restore_live_registers_except_rax(sasm); | |
1169 __ verify_oop(obj); | |
1170 __ leave(); | |
1171 __ ret(0); | |
1172 | |
1173 // rax,: new instance | |
1174 } | |
1175 | |
1176 break; | |
1177 | |
1178 case counter_overflow_id: | |
1179 { | |
1783 | 1180 Register bci = rax, method = rbx; |
0 | 1181 __ enter(); |
1783 | 1182 OopMap* map = save_live_registers(sasm, 3); |
0 | 1183 // Retrieve bci |
1184 __ movl(bci, Address(rbp, 2*BytesPerWord)); | |
1783 | 1185 // And a pointer to the methodOop |
1186 __ movptr(method, Address(rbp, 3*BytesPerWord)); | |
1187 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, counter_overflow), bci, method); | |
0 | 1188 oop_maps = new OopMapSet(); |
1189 oop_maps->add_gc_map(call_offset, map); | |
1190 restore_live_registers(sasm); | |
1191 __ leave(); | |
1192 __ ret(0); | |
1193 } | |
1194 break; | |
1195 | |
1196 case new_type_array_id: | |
1197 case new_object_array_id: | |
1198 { | |
1199 Register length = rbx; // Incoming | |
1200 Register klass = rdx; // Incoming | |
1201 Register obj = rax; // Result | |
1202 | |
1203 if (id == new_type_array_id) { | |
1204 __ set_info("new_type_array", dont_gc_arguments); | |
1205 } else { | |
1206 __ set_info("new_object_array", dont_gc_arguments); | |
1207 } | |
1208 | |
1209 #ifdef ASSERT | |
1210 // assert object type is really an array of the proper kind | |
1211 { | |
1212 Label ok; | |
1213 Register t0 = obj; | |
1214 __ movl(t0, Address(klass, Klass::layout_helper_offset_in_bytes() + sizeof(oopDesc))); | |
1215 __ sarl(t0, Klass::_lh_array_tag_shift); | |
1216 int tag = ((id == new_type_array_id) | |
1217 ? Klass::_lh_array_tag_type_value | |
1218 : Klass::_lh_array_tag_obj_value); | |
1219 __ cmpl(t0, tag); | |
1220 __ jcc(Assembler::equal, ok); | |
1221 __ stop("assert(is an array klass)"); | |
1222 __ should_not_reach_here(); | |
1223 __ bind(ok); | |
1224 } | |
1225 #endif // ASSERT | |
1226 | |
1227 if (UseTLAB && FastTLABRefill) { | |
1228 Register arr_size = rsi; | |
1229 Register t1 = rcx; // must be rcx for use as shift count | |
1230 Register t2 = rdi; | |
1231 Label slow_path; | |
1232 assert_different_registers(length, klass, obj, arr_size, t1, t2); | |
1233 | |
1234 // check that array length is small enough for fast path. | |
1235 __ cmpl(length, C1_MacroAssembler::max_array_allocation_length); | |
1236 __ jcc(Assembler::above, slow_path); | |
1237 | |
1238 // if we got here then the TLAB allocation failed, so try | |
1239 // refilling the TLAB or allocating directly from eden. | |
1240 Label retry_tlab, try_eden; | |
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1241 const Register thread = |
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1242 __ tlab_refill(retry_tlab, try_eden, slow_path); // preserves rbx & rdx, returns rdi |
0 | 1243 |
1244 __ bind(retry_tlab); | |
1245 | |
1246 // get the allocation size: round_up(hdr + length << (layout_helper & 0x1F)) | |
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1247 // since size is positive movl does right thing on 64bit |
0 | 1248 __ movl(t1, Address(klass, klassOopDesc::header_size() * HeapWordSize + Klass::layout_helper_offset_in_bytes())); |
304 | 1249 // since size is postive movl does right thing on 64bit |
0 | 1250 __ movl(arr_size, length); |
1251 assert(t1 == rcx, "fixed register usage"); | |
304 | 1252 __ shlptr(arr_size /* by t1=rcx, mod 32 */); |
1253 __ shrptr(t1, Klass::_lh_header_size_shift); | |
1254 __ andptr(t1, Klass::_lh_header_size_mask); | |
1255 __ addptr(arr_size, t1); | |
1256 __ addptr(arr_size, MinObjAlignmentInBytesMask); // align up | |
1257 __ andptr(arr_size, ~MinObjAlignmentInBytesMask); | |
0 | 1258 |
1259 __ tlab_allocate(obj, arr_size, 0, t1, t2, slow_path); // preserves arr_size | |
1260 | |
1261 __ initialize_header(obj, klass, length, t1, t2); | |
1262 __ movb(t1, Address(klass, klassOopDesc::header_size() * HeapWordSize + Klass::layout_helper_offset_in_bytes() + (Klass::_lh_header_size_shift / BitsPerByte))); | |
1263 assert(Klass::_lh_header_size_shift % BitsPerByte == 0, "bytewise"); | |
1264 assert(Klass::_lh_header_size_mask <= 0xFF, "bytewise"); | |
304 | 1265 __ andptr(t1, Klass::_lh_header_size_mask); |
1266 __ subptr(arr_size, t1); // body length | |
1267 __ addptr(t1, obj); // body start | |
0 | 1268 __ initialize_body(t1, arr_size, 0, t2); |
1269 __ verify_oop(obj); | |
1270 __ ret(0); | |
1271 | |
1272 __ bind(try_eden); | |
1273 // get the allocation size: round_up(hdr + length << (layout_helper & 0x1F)) | |
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1274 // since size is positive movl does right thing on 64bit |
0 | 1275 __ movl(t1, Address(klass, klassOopDesc::header_size() * HeapWordSize + Klass::layout_helper_offset_in_bytes())); |
304 | 1276 // since size is postive movl does right thing on 64bit |
0 | 1277 __ movl(arr_size, length); |
1278 assert(t1 == rcx, "fixed register usage"); | |
304 | 1279 __ shlptr(arr_size /* by t1=rcx, mod 32 */); |
1280 __ shrptr(t1, Klass::_lh_header_size_shift); | |
1281 __ andptr(t1, Klass::_lh_header_size_mask); | |
1282 __ addptr(arr_size, t1); | |
1283 __ addptr(arr_size, MinObjAlignmentInBytesMask); // align up | |
1284 __ andptr(arr_size, ~MinObjAlignmentInBytesMask); | |
0 | 1285 |
1286 __ eden_allocate(obj, arr_size, 0, t1, slow_path); // preserves arr_size | |
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1287 __ incr_allocated_bytes(thread, arr_size, 0); |
0 | 1288 |
1289 __ initialize_header(obj, klass, length, t1, t2); | |
1290 __ movb(t1, Address(klass, klassOopDesc::header_size() * HeapWordSize + Klass::layout_helper_offset_in_bytes() + (Klass::_lh_header_size_shift / BitsPerByte))); | |
1291 assert(Klass::_lh_header_size_shift % BitsPerByte == 0, "bytewise"); | |
1292 assert(Klass::_lh_header_size_mask <= 0xFF, "bytewise"); | |
304 | 1293 __ andptr(t1, Klass::_lh_header_size_mask); |
1294 __ subptr(arr_size, t1); // body length | |
1295 __ addptr(t1, obj); // body start | |
0 | 1296 __ initialize_body(t1, arr_size, 0, t2); |
1297 __ verify_oop(obj); | |
1298 __ ret(0); | |
1299 | |
1300 __ bind(slow_path); | |
1301 } | |
1302 | |
1303 __ enter(); | |
1304 OopMap* map = save_live_registers(sasm, 3); | |
1305 int call_offset; | |
1306 if (id == new_type_array_id) { | |
1307 call_offset = __ call_RT(obj, noreg, CAST_FROM_FN_PTR(address, new_type_array), klass, length); | |
1308 } else { | |
1309 call_offset = __ call_RT(obj, noreg, CAST_FROM_FN_PTR(address, new_object_array), klass, length); | |
1310 } | |
1311 | |
1312 oop_maps = new OopMapSet(); | |
1313 oop_maps->add_gc_map(call_offset, map); | |
1314 restore_live_registers_except_rax(sasm); | |
1315 | |
1316 __ verify_oop(obj); | |
1317 __ leave(); | |
1318 __ ret(0); | |
1319 | |
1320 // rax,: new array | |
1321 } | |
1322 break; | |
1323 | |
1324 case new_multi_array_id: | |
1325 { StubFrame f(sasm, "new_multi_array", dont_gc_arguments); | |
1326 // rax,: klass | |
1327 // rbx,: rank | |
1328 // rcx: address of 1st dimension | |
1329 OopMap* map = save_live_registers(sasm, 4); | |
1330 int call_offset = __ call_RT(rax, noreg, CAST_FROM_FN_PTR(address, new_multi_array), rax, rbx, rcx); | |
1331 | |
1332 oop_maps = new OopMapSet(); | |
1333 oop_maps->add_gc_map(call_offset, map); | |
1334 restore_live_registers_except_rax(sasm); | |
1335 | |
1336 // rax,: new multi array | |
1337 __ verify_oop(rax); | |
1338 } | |
1339 break; | |
1340 | |
1341 case register_finalizer_id: | |
1342 { | |
1343 __ set_info("register_finalizer", dont_gc_arguments); | |
1344 | |
304 | 1345 // This is called via call_runtime so the arguments |
1346 // will be place in C abi locations | |
1347 | |
1348 #ifdef _LP64 | |
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1349 __ verify_oop((UseGraal) ? j_rarg0 : c_rarg0); |
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1350 __ mov(rax, (UseGraal) ? j_rarg0 : c_rarg0); |
304 | 1351 #else |
0 | 1352 // The object is passed on the stack and we haven't pushed a |
1353 // frame yet so it's one work away from top of stack. | |
304 | 1354 __ movptr(rax, Address(rsp, 1 * BytesPerWord)); |
0 | 1355 __ verify_oop(rax); |
304 | 1356 #endif // _LP64 |
0 | 1357 |
1358 // load the klass and check the has finalizer flag | |
1359 Label register_finalizer; | |
1360 Register t = rsi; | |
2002 | 1361 __ load_klass(t, rax); |
0 | 1362 __ movl(t, Address(t, Klass::access_flags_offset_in_bytes() + sizeof(oopDesc))); |
1363 __ testl(t, JVM_ACC_HAS_FINALIZER); | |
1364 __ jcc(Assembler::notZero, register_finalizer); | |
1365 __ ret(0); | |
1366 | |
1367 __ bind(register_finalizer); | |
1368 __ enter(); | |
1369 OopMap* oop_map = save_live_registers(sasm, 2 /*num_rt_args */); | |
1370 int call_offset = __ call_RT(noreg, noreg, | |
1371 CAST_FROM_FN_PTR(address, SharedRuntime::register_finalizer), rax); | |
1372 oop_maps = new OopMapSet(); | |
1373 oop_maps->add_gc_map(call_offset, oop_map); | |
1374 | |
1375 // Now restore all the live registers | |
1376 restore_live_registers(sasm); | |
1377 | |
1378 __ leave(); | |
1379 __ ret(0); | |
1380 } | |
1381 break; | |
1382 | |
1383 case throw_range_check_failed_id: | |
1384 { StubFrame f(sasm, "range_check_failed", dont_gc_arguments); | |
1385 oop_maps = generate_exception_throw(sasm, CAST_FROM_FN_PTR(address, throw_range_check_exception), true); | |
1386 } | |
1387 break; | |
1388 | |
1389 case throw_index_exception_id: | |
1390 { StubFrame f(sasm, "index_range_check_failed", dont_gc_arguments); | |
1391 oop_maps = generate_exception_throw(sasm, CAST_FROM_FN_PTR(address, throw_index_exception), true); | |
1392 } | |
1393 break; | |
1394 | |
1395 case throw_div0_exception_id: | |
1396 { StubFrame f(sasm, "throw_div0_exception", dont_gc_arguments); | |
1397 oop_maps = generate_exception_throw(sasm, CAST_FROM_FN_PTR(address, throw_div0_exception), false); | |
1398 } | |
1399 break; | |
1400 | |
1401 case throw_null_pointer_exception_id: | |
1402 { StubFrame f(sasm, "throw_null_pointer_exception", dont_gc_arguments); | |
1403 oop_maps = generate_exception_throw(sasm, CAST_FROM_FN_PTR(address, throw_null_pointer_exception), false); | |
1404 } | |
1405 break; | |
1406 | |
1407 case handle_exception_nofpu_id: | |
1408 case handle_exception_id: | |
1409 { StubFrame f(sasm, "handle_exception", dont_gc_arguments); | |
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1410 oop_maps = generate_handle_exception(id, sasm); |
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1411 } |
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1412 break; |
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1413 |
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1414 case handle_exception_from_callee_id: |
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1415 { StubFrame f(sasm, "handle_exception_from_callee", dont_gc_arguments); |
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1416 oop_maps = generate_handle_exception(id, sasm); |
0 | 1417 } |
1418 break; | |
1419 | |
1420 case unwind_exception_id: | |
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1421 { |
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1422 __ set_info("unwind_exception", dont_gc_arguments); |
0 | 1423 // note: no stubframe since we are about to leave the current |
1424 // activation and we are calling a leaf VM function only. | |
1425 generate_unwind_exception(sasm); | |
1426 } | |
1427 break; | |
1428 | |
1429 case throw_array_store_exception_id: | |
1430 { StubFrame f(sasm, "throw_array_store_exception", dont_gc_arguments); | |
1431 // tos + 0: link | |
1432 // + 1: return address | |
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1433 oop_maps = generate_exception_throw(sasm, CAST_FROM_FN_PTR(address, throw_array_store_exception), true); |
0 | 1434 } |
1435 break; | |
1436 | |
1437 case throw_class_cast_exception_id: | |
1438 { StubFrame f(sasm, "throw_class_cast_exception", dont_gc_arguments); | |
1439 oop_maps = generate_exception_throw(sasm, CAST_FROM_FN_PTR(address, throw_class_cast_exception), true); | |
1440 } | |
1441 break; | |
1442 | |
1443 case throw_incompatible_class_change_error_id: | |
1444 { StubFrame f(sasm, "throw_incompatible_class_cast_exception", dont_gc_arguments); | |
1445 oop_maps = generate_exception_throw(sasm, CAST_FROM_FN_PTR(address, throw_incompatible_class_change_error), false); | |
1446 } | |
1447 break; | |
1448 | |
1449 case slow_subtype_check_id: | |
1450 { | |
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1451 // Typical calling sequence: |
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1452 // __ push(klass_RInfo); // object klass or other subclass |
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1453 // __ push(sup_k_RInfo); // array element klass or other superclass |
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1454 // __ call(slow_subtype_check); |
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1455 // Note that the subclass is pushed first, and is therefore deepest. |
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1456 // Previous versions of this code reversed the names 'sub' and 'super'. |
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1457 // This was operationally harmless but made the code unreadable. |
0 | 1458 enum layout { |
304 | 1459 rax_off, SLOT2(raxH_off) |
1460 rcx_off, SLOT2(rcxH_off) | |
1461 rsi_off, SLOT2(rsiH_off) | |
1462 rdi_off, SLOT2(rdiH_off) | |
1463 // saved_rbp_off, SLOT2(saved_rbpH_off) | |
1464 return_off, SLOT2(returnH_off) | |
644
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1465 sup_k_off, SLOT2(sup_kH_off) |
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1466 klass_off, SLOT2(superH_off) |
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1467 framesize, |
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1468 result_off = klass_off // deepest argument is also the return value |
0 | 1469 }; |
1470 | |
1471 __ set_info("slow_subtype_check", dont_gc_arguments); | |
304 | 1472 __ push(rdi); |
1473 __ push(rsi); | |
1474 __ push(rcx); | |
1475 __ push(rax); | |
0 | 1476 |
304 | 1477 // This is called by pushing args and not with C abi |
644
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1478 __ movptr(rsi, Address(rsp, (klass_off) * VMRegImpl::stack_slot_size)); // subclass |
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1479 __ movptr(rax, Address(rsp, (sup_k_off) * VMRegImpl::stack_slot_size)); // superclass |
0 | 1480 |
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1481 Label success; |
0 | 1482 Label miss; |
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1483 if (UseGraal) { |
1423
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1484 // TODO this should really be within the XirSnippets |
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1485 __ check_klass_subtype_fast_path(rsi, rax, rcx, &success, &miss, NULL); |
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1486 }; |
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1487 |
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1488 __ check_klass_subtype_slow_path(rsi, rax, rcx, rdi, NULL, &miss); |
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1489 |
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1490 // fallthrough on success: |
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1491 __ bind(success); |
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1492 __ movptr(Address(rsp, (result_off) * VMRegImpl::stack_slot_size), 1); // result |
304 | 1493 __ pop(rax); |
1494 __ pop(rcx); | |
1495 __ pop(rsi); | |
1496 __ pop(rdi); | |
0 | 1497 __ ret(0); |
1498 | |
1499 __ bind(miss); | |
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1500 __ movptr(Address(rsp, (result_off) * VMRegImpl::stack_slot_size), NULL_WORD); // result |
304 | 1501 __ pop(rax); |
1502 __ pop(rcx); | |
1503 __ pop(rsi); | |
1504 __ pop(rdi); | |
0 | 1505 __ ret(0); |
1506 } | |
1507 break; | |
1508 | |
1509 case monitorenter_nofpu_id: | |
1510 save_fpu_registers = false; | |
1511 // fall through | |
1512 case monitorenter_id: | |
1513 { | |
1514 StubFrame f(sasm, "monitorenter", dont_gc_arguments); | |
1515 OopMap* map = save_live_registers(sasm, 3, save_fpu_registers); | |
1516 | |
304 | 1517 // Called with store_parameter and not C abi |
1518 | |
0 | 1519 f.load_argument(1, rax); // rax,: object |
1520 f.load_argument(0, rbx); // rbx,: lock address | |
1521 | |
1522 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, monitorenter), rax, rbx); | |
1523 | |
1524 oop_maps = new OopMapSet(); | |
1525 oop_maps->add_gc_map(call_offset, map); | |
1526 restore_live_registers(sasm, save_fpu_registers); | |
1527 } | |
1528 break; | |
1529 | |
1530 case monitorexit_nofpu_id: | |
1531 save_fpu_registers = false; | |
1532 // fall through | |
1533 case monitorexit_id: | |
1534 { | |
1535 StubFrame f(sasm, "monitorexit", dont_gc_arguments); | |
1536 OopMap* map = save_live_registers(sasm, 2, save_fpu_registers); | |
1537 | |
304 | 1538 // Called with store_parameter and not C abi |
1539 | |
0 | 1540 f.load_argument(0, rax); // rax,: lock address |
1541 | |
1542 // note: really a leaf routine but must setup last java sp | |
1543 // => use call_RT for now (speed can be improved by | |
1544 // doing last java sp setup manually) | |
1545 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, monitorexit), rax); | |
1546 | |
1547 oop_maps = new OopMapSet(); | |
1548 oop_maps->add_gc_map(call_offset, map); | |
1549 restore_live_registers(sasm, save_fpu_registers); | |
1550 | |
1551 } | |
1552 break; | |
1553 | |
1554 case access_field_patching_id: | |
1555 { StubFrame f(sasm, "access_field_patching", dont_gc_arguments); | |
1556 // we should set up register map | |
1557 oop_maps = generate_patching(sasm, CAST_FROM_FN_PTR(address, access_field_patching)); | |
1558 } | |
1559 break; | |
1560 | |
1561 case load_klass_patching_id: | |
1562 { StubFrame f(sasm, "load_klass_patching", dont_gc_arguments); | |
1563 // we should set up register map | |
1564 oop_maps = generate_patching(sasm, CAST_FROM_FN_PTR(address, move_klass_patching)); | |
1565 } | |
1566 break; | |
1567 | |
1568 case jvmti_exception_throw_id: | |
1569 { // rax,: exception oop | |
1570 StubFrame f(sasm, "jvmti_exception_throw", dont_gc_arguments); | |
1571 // Preserve all registers across this potentially blocking call | |
1572 const int num_rt_args = 2; // thread, exception oop | |
1573 OopMap* map = save_live_registers(sasm, num_rt_args); | |
1574 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, Runtime1::post_jvmti_exception_throw), rax); | |
1575 oop_maps = new OopMapSet(); | |
1576 oop_maps->add_gc_map(call_offset, map); | |
1577 restore_live_registers(sasm); | |
1578 } | |
1579 break; | |
1580 | |
1581 case dtrace_object_alloc_id: | |
1582 { // rax,: object | |
1583 StubFrame f(sasm, "dtrace_object_alloc", dont_gc_arguments); | |
1584 // we can't gc here so skip the oopmap but make sure that all | |
1585 // the live registers get saved. | |
1586 save_live_registers(sasm, 1); | |
1587 | |
304 | 1588 __ NOT_LP64(push(rax)) LP64_ONLY(mov(c_rarg0, rax)); |
0 | 1589 __ call(RuntimeAddress(CAST_FROM_FN_PTR(address, SharedRuntime::dtrace_object_alloc))); |
304 | 1590 NOT_LP64(__ pop(rax)); |
0 | 1591 |
1592 restore_live_registers(sasm); | |
1593 } | |
1594 break; | |
1595 | |
1596 case fpu2long_stub_id: | |
1597 { | |
1598 // rax, and rdx are destroyed, but should be free since the result is returned there | |
1599 // preserve rsi,ecx | |
304 | 1600 __ push(rsi); |
1601 __ push(rcx); | |
1602 LP64_ONLY(__ push(rdx);) | |
0 | 1603 |
1604 // check for NaN | |
1605 Label return0, do_return, return_min_jlong, do_convert; | |
1606 | |
304 | 1607 Address value_high_word(rsp, wordSize + 4); |
1608 Address value_low_word(rsp, wordSize); | |
1609 Address result_high_word(rsp, 3*wordSize + 4); | |
1610 Address result_low_word(rsp, 3*wordSize); | |
0 | 1611 |
304 | 1612 __ subptr(rsp, 32); // more than enough on 32bit |
0 | 1613 __ fst_d(value_low_word); |
1614 __ movl(rax, value_high_word); | |
1615 __ andl(rax, 0x7ff00000); | |
1616 __ cmpl(rax, 0x7ff00000); | |
1617 __ jcc(Assembler::notEqual, do_convert); | |
1618 __ movl(rax, value_high_word); | |
1619 __ andl(rax, 0xfffff); | |
1620 __ orl(rax, value_low_word); | |
1621 __ jcc(Assembler::notZero, return0); | |
1622 | |
1623 __ bind(do_convert); | |
1624 __ fnstcw(Address(rsp, 0)); | |
304 | 1625 __ movzwl(rax, Address(rsp, 0)); |
0 | 1626 __ orl(rax, 0xc00); |
1627 __ movw(Address(rsp, 2), rax); | |
1628 __ fldcw(Address(rsp, 2)); | |
1629 __ fwait(); | |
1630 __ fistp_d(result_low_word); | |
1631 __ fldcw(Address(rsp, 0)); | |
1632 __ fwait(); | |
304 | 1633 // This gets the entire long in rax on 64bit |
1634 __ movptr(rax, result_low_word); | |
1635 // testing of high bits | |
0 | 1636 __ movl(rdx, result_high_word); |
304 | 1637 __ mov(rcx, rax); |
0 | 1638 // What the heck is the point of the next instruction??? |
1639 __ xorl(rcx, 0x0); | |
1640 __ movl(rsi, 0x80000000); | |
1641 __ xorl(rsi, rdx); | |
1642 __ orl(rcx, rsi); | |
1643 __ jcc(Assembler::notEqual, do_return); | |
1644 __ fldz(); | |
1645 __ fcomp_d(value_low_word); | |
1646 __ fnstsw_ax(); | |
304 | 1647 #ifdef _LP64 |
1648 __ testl(rax, 0x4100); // ZF & CF == 0 | |
1649 __ jcc(Assembler::equal, return_min_jlong); | |
1650 #else | |
0 | 1651 __ sahf(); |
1652 __ jcc(Assembler::above, return_min_jlong); | |
304 | 1653 #endif // _LP64 |
0 | 1654 // return max_jlong |
304 | 1655 #ifndef _LP64 |
0 | 1656 __ movl(rdx, 0x7fffffff); |
1657 __ movl(rax, 0xffffffff); | |
304 | 1658 #else |
1659 __ mov64(rax, CONST64(0x7fffffffffffffff)); | |
1660 #endif // _LP64 | |
0 | 1661 __ jmp(do_return); |
1662 | |
1663 __ bind(return_min_jlong); | |
304 | 1664 #ifndef _LP64 |
0 | 1665 __ movl(rdx, 0x80000000); |
1666 __ xorl(rax, rax); | |
304 | 1667 #else |
1668 __ mov64(rax, CONST64(0x8000000000000000)); | |
1669 #endif // _LP64 | |
0 | 1670 __ jmp(do_return); |
1671 | |
1672 __ bind(return0); | |
1673 __ fpop(); | |
304 | 1674 #ifndef _LP64 |
1675 __ xorptr(rdx,rdx); | |
1676 __ xorptr(rax,rax); | |
1677 #else | |
1678 __ xorptr(rax, rax); | |
1679 #endif // _LP64 | |
0 | 1680 |
1681 __ bind(do_return); | |
304 | 1682 __ addptr(rsp, 32); |
1683 LP64_ONLY(__ pop(rdx);) | |
1684 __ pop(rcx); | |
1685 __ pop(rsi); | |
0 | 1686 __ ret(0); |
1687 } | |
1688 break; | |
1689 | |
342 | 1690 #ifndef SERIALGC |
1691 case g1_pre_barrier_slow_id: | |
1692 { | |
1693 StubFrame f(sasm, "g1_pre_barrier", dont_gc_arguments); | |
1694 // arg0 : previous value of memory | |
1695 | |
1696 BarrierSet* bs = Universe::heap()->barrier_set(); | |
1697 if (bs->kind() != BarrierSet::G1SATBCTLogging) { | |
362 | 1698 __ movptr(rax, (int)id); |
342 | 1699 __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, unimplemented_entry), rax); |
1700 __ should_not_reach_here(); | |
1701 break; | |
1702 } | |
362 | 1703 __ push(rax); |
1704 __ push(rdx); | |
342 | 1705 |
1706 const Register pre_val = rax; | |
362 | 1707 const Register thread = NOT_LP64(rax) LP64_ONLY(r15_thread); |
342 | 1708 const Register tmp = rdx; |
1709 | |
362 | 1710 NOT_LP64(__ get_thread(thread);) |
342 | 1711 |
1712 Address in_progress(thread, in_bytes(JavaThread::satb_mark_queue_offset() + | |
1713 PtrQueue::byte_offset_of_active())); | |
1714 | |
1715 Address queue_index(thread, in_bytes(JavaThread::satb_mark_queue_offset() + | |
1716 PtrQueue::byte_offset_of_index())); | |
1717 Address buffer(thread, in_bytes(JavaThread::satb_mark_queue_offset() + | |
1718 PtrQueue::byte_offset_of_buf())); | |
1719 | |
1720 | |
1721 Label done; | |
1722 Label runtime; | |
1723 | |
1724 // Can we store original value in the thread's buffer? | |
1725 | |
362 | 1726 #ifdef _LP64 |
1572 | 1727 __ movslq(tmp, queue_index); |
362 | 1728 __ cmpq(tmp, 0); |
1729 #else | |
342 | 1730 __ cmpl(queue_index, 0); |
362 | 1731 #endif |
342 | 1732 __ jcc(Assembler::equal, runtime); |
362 | 1733 #ifdef _LP64 |
1734 __ subq(tmp, wordSize); | |
1735 __ movl(queue_index, tmp); | |
1736 __ addq(tmp, buffer); | |
1737 #else | |
342 | 1738 __ subl(queue_index, wordSize); |
1739 __ movl(tmp, buffer); | |
1740 __ addl(tmp, queue_index); | |
362 | 1741 #endif |
1742 | |
342 | 1743 // prev_val (rax) |
1744 f.load_argument(0, pre_val); | |
362 | 1745 __ movptr(Address(tmp, 0), pre_val); |
342 | 1746 __ jmp(done); |
1747 | |
1748 __ bind(runtime); | |
1572 | 1749 __ push(rcx); |
1750 #ifdef _LP64 | |
1751 __ push(r8); | |
1752 __ push(r9); | |
1753 __ push(r10); | |
1754 __ push(r11); | |
1755 # ifndef _WIN64 | |
1756 __ push(rdi); | |
1757 __ push(rsi); | |
1758 # endif | |
1759 #endif | |
342 | 1760 // load the pre-value |
1761 f.load_argument(0, rcx); | |
1762 __ call_VM_leaf(CAST_FROM_FN_PTR(address, SharedRuntime::g1_wb_pre), rcx, thread); | |
1572 | 1763 #ifdef _LP64 |
1764 # ifndef _WIN64 | |
1765 __ pop(rsi); | |
1766 __ pop(rdi); | |
1767 # endif | |
1768 __ pop(r11); | |
1769 __ pop(r10); | |
1770 __ pop(r9); | |
1771 __ pop(r8); | |
1772 #endif | |
362 | 1773 __ pop(rcx); |
1572 | 1774 __ bind(done); |
342 | 1775 |
362 | 1776 __ pop(rdx); |
1777 __ pop(rax); | |
342 | 1778 } |
1779 break; | |
1780 | |
1781 case g1_post_barrier_slow_id: | |
1782 { | |
1783 StubFrame f(sasm, "g1_post_barrier", dont_gc_arguments); | |
1784 | |
1785 | |
1786 // arg0: store_address | |
1787 Address store_addr(rbp, 2*BytesPerWord); | |
1788 | |
1789 BarrierSet* bs = Universe::heap()->barrier_set(); | |
1790 CardTableModRefBS* ct = (CardTableModRefBS*)bs; | |
1791 Label done; | |
1792 Label runtime; | |
1793 | |
1794 // At this point we know new_value is non-NULL and the new_value crosses regsion. | |
1795 // Must check to see if card is already dirty | |
1796 | |
362 | 1797 const Register thread = NOT_LP64(rax) LP64_ONLY(r15_thread); |
342 | 1798 |
1799 Address queue_index(thread, in_bytes(JavaThread::dirty_card_queue_offset() + | |
1800 PtrQueue::byte_offset_of_index())); | |
1801 Address buffer(thread, in_bytes(JavaThread::dirty_card_queue_offset() + | |
1802 PtrQueue::byte_offset_of_buf())); | |
1803 | |
362 | 1804 __ push(rax); |
1572 | 1805 __ push(rcx); |
342 | 1806 |
362 | 1807 NOT_LP64(__ get_thread(thread);) |
1808 ExternalAddress cardtable((address)ct->byte_map_base); | |
342 | 1809 assert(sizeof(*ct->byte_map_base) == sizeof(jbyte), "adjust this code"); |
1810 | |
1572 | 1811 const Register card_addr = rcx; |
362 | 1812 #ifdef _LP64 |
1813 const Register tmp = rscratch1; | |
1814 f.load_argument(0, card_addr); | |
1815 __ shrq(card_addr, CardTableModRefBS::card_shift); | |
1816 __ lea(tmp, cardtable); | |
1817 // get the address of the card | |
1818 __ addq(card_addr, tmp); | |
1819 #else | |
1572 | 1820 const Register card_index = rcx; |
362 | 1821 f.load_argument(0, card_index); |
1822 __ shrl(card_index, CardTableModRefBS::card_shift); | |
1823 | |
342 | 1824 Address index(noreg, card_index, Address::times_1); |
1825 __ leal(card_addr, __ as_Address(ArrayAddress(cardtable, index))); | |
362 | 1826 #endif |
1827 | |
342 | 1828 __ cmpb(Address(card_addr, 0), 0); |
1829 __ jcc(Assembler::equal, done); | |
1830 | |
1831 // storing region crossing non-NULL, card is clean. | |
1832 // dirty card and log. | |
1833 | |
1834 __ movb(Address(card_addr, 0), 0); | |
1835 | |
1836 __ cmpl(queue_index, 0); | |
1837 __ jcc(Assembler::equal, runtime); | |
1838 __ subl(queue_index, wordSize); | |
1839 | |
1840 const Register buffer_addr = rbx; | |
362 | 1841 __ push(rbx); |
1842 | |
1843 __ movptr(buffer_addr, buffer); | |
342 | 1844 |
362 | 1845 #ifdef _LP64 |
1846 __ movslq(rscratch1, queue_index); | |
1847 __ addptr(buffer_addr, rscratch1); | |
1848 #else | |
1849 __ addptr(buffer_addr, queue_index); | |
1850 #endif | |
1851 __ movptr(Address(buffer_addr, 0), card_addr); | |
1852 | |
1853 __ pop(rbx); | |
342 | 1854 __ jmp(done); |
1855 | |
1856 __ bind(runtime); | |
1572 | 1857 __ push(rdx); |
1858 #ifdef _LP64 | |
1859 __ push(r8); | |
1860 __ push(r9); | |
1861 __ push(r10); | |
1862 __ push(r11); | |
1863 # ifndef _WIN64 | |
1864 __ push(rdi); | |
1865 __ push(rsi); | |
1866 # endif | |
1867 #endif | |
342 | 1868 __ call_VM_leaf(CAST_FROM_FN_PTR(address, SharedRuntime::g1_wb_post), card_addr, thread); |
1572 | 1869 #ifdef _LP64 |
1870 # ifndef _WIN64 | |
1871 __ pop(rsi); | |
1872 __ pop(rdi); | |
1873 # endif | |
1874 __ pop(r11); | |
1875 __ pop(r10); | |
1876 __ pop(r9); | |
1877 __ pop(r8); | |
1878 #endif | |
1879 __ pop(rdx); | |
1880 __ bind(done); | |
342 | 1881 |
1572 | 1882 __ pop(rcx); |
362 | 1883 __ pop(rax); |
342 | 1884 |
1885 } | |
1886 break; | |
1887 #endif // !SERIALGC | |
1888 | |
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75a99b4f1c98
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Thomas Wuerthinger <thomas@wuerthinger.net>
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changeset
|
1889 case graal_unwind_exception_call_id: { |
1434
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1890 // remove the frame from the stack |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1891 __ movptr(rsp, rbp); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
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diff
changeset
|
1892 __ pop(rbp); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
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diff
changeset
|
1893 // exception_oop is passed using ordinary java calling conventions |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1894 __ movptr(rax, j_rarg0); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1895 |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1896 Label nonNullExceptionOop; |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1897 __ testptr(rax, rax); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1898 __ jcc(Assembler::notZero, nonNullExceptionOop); |
1429
abc670a709dc
* -XX:TraceC1X=0...5 controls the native c1x tracing
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1423
diff
changeset
|
1899 { |
1434
72cfb36c6bb2
* enabled all jtt tests
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parents:
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changeset
|
1900 __ enter(); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1901 oop_maps = new OopMapSet(); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
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|
1902 OopMap* oop_map = save_live_registers(sasm, 0); |
2891
75a99b4f1c98
Rebranded C++ part from C1X to Graal.
Thomas Wuerthinger <thomas@wuerthinger.net>
parents:
2662
diff
changeset
|
1903 int call_offset = __ call_RT(rax, noreg, (address)graal_create_null_exception, 0); |
1434
72cfb36c6bb2
* enabled all jtt tests
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parents:
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|
1904 oop_maps->add_gc_map(call_offset, oop_map); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1905 __ leave(); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1906 } |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1907 __ bind(nonNullExceptionOop); |
1429
abc670a709dc
* -XX:TraceC1X=0...5 controls the native c1x tracing
Lukas Stadler <lukas.stadler@oracle.com>
parents:
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diff
changeset
|
1908 |
1434
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1909 __ set_info("unwind_exception", dont_gc_arguments); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1910 // note: no stubframe since we are about to leave the current |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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changeset
|
1911 // activation and we are calling a leaf VM function only. |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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|
1912 generate_unwind_exception(sasm); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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changeset
|
1913 __ should_not_reach_here(); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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|
1914 break; |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1915 } |
1429
abc670a709dc
* -XX:TraceC1X=0...5 controls the native c1x tracing
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1423
diff
changeset
|
1916 |
2891
75a99b4f1c98
Rebranded C++ part from C1X to Graal.
Thomas Wuerthinger <thomas@wuerthinger.net>
parents:
2662
diff
changeset
|
1917 case graal_handle_exception_id: { |
75a99b4f1c98
Rebranded C++ part from C1X to Graal.
Thomas Wuerthinger <thomas@wuerthinger.net>
parents:
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diff
changeset
|
1918 StubFrame f(sasm, "graal_handle_exception", dont_gc_arguments); |
1434
72cfb36c6bb2
* enabled all jtt tests
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|
1919 oop_maps = new OopMapSet(); |
72cfb36c6bb2
* enabled all jtt tests
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|
1920 OopMap* oop_map = save_live_registers(sasm, 1, false); |
2891
75a99b4f1c98
Rebranded C++ part from C1X to Graal.
Thomas Wuerthinger <thomas@wuerthinger.net>
parents:
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diff
changeset
|
1921 graal_generate_handle_exception(sasm, oop_maps, oop_map); |
1434
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1922 break; |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1923 } |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1924 |
2891
75a99b4f1c98
Rebranded C++ part from C1X to Graal.
Thomas Wuerthinger <thomas@wuerthinger.net>
parents:
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diff
changeset
|
1925 case graal_slow_subtype_check_id: { |
1434
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1926 Label success; |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1927 Label miss; |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1928 |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1929 // TODO this should really be within the XirSnippets |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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changeset
|
1930 __ check_klass_subtype_fast_path(j_rarg0, j_rarg1, j_rarg2, &success, &miss, NULL); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1931 __ check_klass_subtype_slow_path(j_rarg0, j_rarg1, j_rarg2, j_rarg3, NULL, &miss); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1932 |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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changeset
|
1933 // fallthrough on success: |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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|
1934 __ bind(success); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1935 __ movptr(rax, 1); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1936 __ ret(0); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1937 |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1938 __ bind(miss); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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changeset
|
1939 __ movptr(rax, NULL_WORD); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1940 __ ret(0); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1941 break; |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1942 } |
1429
abc670a709dc
* -XX:TraceC1X=0...5 controls the native c1x tracing
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1423
diff
changeset
|
1943 |
2891
75a99b4f1c98
Rebranded C++ part from C1X to Graal.
Thomas Wuerthinger <thomas@wuerthinger.net>
parents:
2662
diff
changeset
|
1944 case graal_verify_pointer_id: { |
75a99b4f1c98
Rebranded C++ part from C1X to Graal.
Thomas Wuerthinger <thomas@wuerthinger.net>
parents:
2662
diff
changeset
|
1945 __ verify_oop(r13, "graal verify pointer"); |
1449
8cfe3537a0d3
Pointer verification stub. Two loose oop fixes in C1X C++ part. Logging which methods have been compiled.
Thomas Wuerthinger <wuerthinger@ssw.jku.at>
parents:
1434
diff
changeset
|
1946 __ ret(0); |
8cfe3537a0d3
Pointer verification stub. Two loose oop fixes in C1X C++ part. Logging which methods have been compiled.
Thomas Wuerthinger <wuerthinger@ssw.jku.at>
parents:
1434
diff
changeset
|
1947 break; |
8cfe3537a0d3
Pointer verification stub. Two loose oop fixes in C1X C++ part. Logging which methods have been compiled.
Thomas Wuerthinger <wuerthinger@ssw.jku.at>
parents:
1434
diff
changeset
|
1948 } |
8cfe3537a0d3
Pointer verification stub. Two loose oop fixes in C1X C++ part. Logging which methods have been compiled.
Thomas Wuerthinger <wuerthinger@ssw.jku.at>
parents:
1434
diff
changeset
|
1949 |
2891
75a99b4f1c98
Rebranded C++ part from C1X to Graal.
Thomas Wuerthinger <thomas@wuerthinger.net>
parents:
2662
diff
changeset
|
1950 case graal_arithmetic_frem_id: { |
1434
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1951 __ subptr(rsp, 8); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1952 __ movflt(Address(rsp, 0), xmm1); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1953 __ fld_s(Address(rsp, 0)); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1954 __ movflt(Address(rsp, 0), xmm0); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1955 __ fld_s(Address(rsp, 0)); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1956 Label L; |
72cfb36c6bb2
* enabled all jtt tests
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parents:
1429
diff
changeset
|
1957 __ bind(L); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1958 __ fprem(); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1959 __ fwait(); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1960 __ fnstsw_ax(); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1961 __ testl(rax, 0x400); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1962 __ jcc(Assembler::notZero, L); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1963 __ fxch(1); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1964 __ fpop(); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1965 __ fstp_s(Address(rsp, 0)); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1966 __ movflt(xmm0, Address(rsp, 0)); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1967 __ addptr(rsp, 8); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
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diff
changeset
|
1968 __ ret(0); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
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diff
changeset
|
1969 break; |
72cfb36c6bb2
* enabled all jtt tests
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parents:
1429
diff
changeset
|
1970 } |
2891
75a99b4f1c98
Rebranded C++ part from C1X to Graal.
Thomas Wuerthinger <thomas@wuerthinger.net>
parents:
2662
diff
changeset
|
1971 case graal_arithmetic_drem_id: { |
1434
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1972 __ subptr(rsp, 8); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
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diff
changeset
|
1973 __ movdbl(Address(rsp, 0), xmm1); |
72cfb36c6bb2
* enabled all jtt tests
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parents:
1429
diff
changeset
|
1974 __ fld_d(Address(rsp, 0)); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1975 __ movdbl(Address(rsp, 0), xmm0); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1976 __ fld_d(Address(rsp, 0)); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1977 Label L; |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1978 __ bind(L); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1979 __ fprem(); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1980 __ fwait(); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1981 __ fnstsw_ax(); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1982 __ testl(rax, 0x400); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1983 __ jcc(Assembler::notZero, L); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1984 __ fxch(1); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1985 __ fpop(); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1986 __ fstp_d(Address(rsp, 0)); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1987 __ movdbl(xmm0, Address(rsp, 0)); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1988 __ addptr(rsp, 8); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1989 __ ret(0); |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1990 break; |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1991 } |
2891
75a99b4f1c98
Rebranded C++ part from C1X to Graal.
Thomas Wuerthinger <thomas@wuerthinger.net>
parents:
2662
diff
changeset
|
1992 case graal_monitorenter_id: { |
1434
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1993 Label slow_case; |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1994 |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1995 Register obj = j_rarg0; |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1996 Register lock = j_rarg1; |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1997 |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1998 Register scratch1 = rax; |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
1999 Register scratch2 = rbx; |
1942
00bc9eaf0e24
Support for -XX:+UseFastLocking flag. Fixed monitor enter XIR template for correct debug info at the runtime call.
Thomas Wuerthinger <wuerthinger@ssw.jku.at>
parents:
1930
diff
changeset
|
2000 assert_different_registers(obj, lock, scratch1, scratch2); |
1434
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
2001 |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
2002 // copied from LIR_Assembler::emit_lock |
72cfb36c6bb2
* enabled all jtt tests
Lukas Stadler <lukas.stadler@oracle.com>
parents:
1429
diff
changeset
|
2003 if (UseFastLocking) { |
72cfb36c6bb2
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2004 assert(BasicLock::displaced_header_offset_in_bytes() == 0, "lock_reg must point to the displaced header"); |
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2005 __ lock_object(scratch1, obj, lock, scratch2, slow_case); |
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2006 __ ret(0); |
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2007 } |
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2008 |
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2009 __ bind(slow_case); |
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2010 { |
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2011 StubFrame f(sasm, "graal_monitorenter", dont_gc_arguments); |
1434
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2012 OopMap* map = save_live_registers(sasm, 1, save_fpu_registers); |
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2013 |
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2014 // Called with store_parameter and not C abi |
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2015 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, monitorenter), obj, lock); |
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2016 |
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2017 oop_maps = new OopMapSet(); |
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2018 oop_maps->add_gc_map(call_offset, map); |
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2019 restore_live_registers(sasm, save_fpu_registers); |
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2020 } |
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2021 __ ret(0); |
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2022 break; |
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2023 } |
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2024 case graal_monitorexit_id: { |
1434
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2025 Label slow_case; |
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2026 |
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2027 Register obj = j_rarg0; |
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2028 Register lock = j_rarg1; |
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2029 |
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2030 // needed in rax later on... |
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2031 Register lock2 = rax; |
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2032 __ mov(lock2, lock); |
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2033 Register scratch1 = rbx; |
1942
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2034 assert_different_registers(obj, lock, scratch1, lock2); |
1434
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2035 |
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2036 // copied from LIR_Assembler::emit_lock |
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2037 if (UseFastLocking) { |
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2038 assert(BasicLock::displaced_header_offset_in_bytes() == 0, "lock_reg must point to the displaced header"); |
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2039 __ unlock_object(scratch1, obj, lock2, slow_case); |
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2040 __ ret(0); |
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2041 } |
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2042 |
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2043 __ bind(slow_case); |
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2044 { |
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|
2045 StubFrame f(sasm, "graal_monitorexit", dont_gc_arguments); |
1434
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2046 OopMap* map = save_live_registers(sasm, 2, save_fpu_registers); |
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2047 |
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|
2048 // note: really a leaf routine but must setup last java sp |
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2049 // => use call_RT for now (speed can be improved by |
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|
2050 // doing last java sp setup manually) |
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|
2051 int call_offset = __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, monitorexit), lock); |
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|
2052 |
1434
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|
2053 oop_maps = new OopMapSet(); |
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2054 oop_maps->add_gc_map(call_offset, map); |
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2055 restore_live_registers(sasm, save_fpu_registers); |
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|
2056 } |
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|
2057 __ ret(0); |
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2058 break; |
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2059 } |
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2060 |
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2061 |
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2062 |
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2063 |
0 | 2064 default: |
2065 { StubFrame f(sasm, "unimplemented entry", dont_gc_arguments); | |
304 | 2066 __ movptr(rax, (int)id); |
0 | 2067 __ call_RT(noreg, noreg, CAST_FROM_FN_PTR(address, unimplemented_entry), rax); |
2068 __ should_not_reach_here(); | |
2069 } | |
2070 break; | |
2071 } | |
2072 return oop_maps; | |
2073 } | |
2074 | |
2075 #undef __ | |
1681
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2076 |
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|
2077 const char *Runtime1::pd_name_for_address(address entry) { |
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2078 return "<unknown function>"; |
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|
2079 } |