Mercurial > hg > graal-compiler
annotate src/share/vm/runtime/sharedRuntime.cpp @ 4673:8021e46f4a99
another fix for resolving the issue with biased monitor and deoptimization
author | Christian Haeubl <christian.haeubl@oracle.com> |
---|---|
date | Wed, 22 Feb 2012 16:53:23 -0800 |
parents | f9811bcf3402 |
children | 6336b144e391 |
rev | line source |
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0 | 1 /* |
2142 | 2 * Copyright (c) 1997, 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 * | |
1552
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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" |
26 #include "classfile/systemDictionary.hpp" | |
27 #include "classfile/vmSymbols.hpp" | |
28 #include "code/compiledIC.hpp" | |
29 #include "code/scopeDesc.hpp" | |
30 #include "code/vtableStubs.hpp" | |
31 #include "compiler/abstractCompiler.hpp" | |
32 #include "compiler/compileBroker.hpp" | |
33 #include "compiler/compilerOracle.hpp" | |
34 #include "interpreter/interpreter.hpp" | |
35 #include "interpreter/interpreterRuntime.hpp" | |
36 #include "memory/gcLocker.inline.hpp" | |
37 #include "memory/universe.inline.hpp" | |
38 #include "oops/oop.inline.hpp" | |
39 #include "prims/forte.hpp" | |
40 #include "prims/jvmtiExport.hpp" | |
41 #include "prims/jvmtiRedefineClassesTrace.hpp" | |
42 #include "prims/methodHandles.hpp" | |
43 #include "prims/nativeLookup.hpp" | |
44 #include "runtime/arguments.hpp" | |
45 #include "runtime/biasedLocking.hpp" | |
46 #include "runtime/handles.inline.hpp" | |
47 #include "runtime/init.hpp" | |
48 #include "runtime/interfaceSupport.hpp" | |
49 #include "runtime/javaCalls.hpp" | |
50 #include "runtime/sharedRuntime.hpp" | |
51 #include "runtime/stubRoutines.hpp" | |
52 #include "runtime/vframe.hpp" | |
53 #include "runtime/vframeArray.hpp" | |
54 #include "utilities/copy.hpp" | |
55 #include "utilities/dtrace.hpp" | |
56 #include "utilities/events.hpp" | |
57 #include "utilities/hashtable.inline.hpp" | |
58 #include "utilities/xmlstream.hpp" | |
59 #ifdef TARGET_ARCH_x86 | |
60 # include "nativeInst_x86.hpp" | |
61 # include "vmreg_x86.inline.hpp" | |
62 #endif | |
63 #ifdef TARGET_ARCH_sparc | |
64 # include "nativeInst_sparc.hpp" | |
65 # include "vmreg_sparc.inline.hpp" | |
66 #endif | |
67 #ifdef TARGET_ARCH_zero | |
68 # include "nativeInst_zero.hpp" | |
69 # include "vmreg_zero.inline.hpp" | |
70 #endif | |
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71 #ifdef TARGET_ARCH_arm |
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72 # include "nativeInst_arm.hpp" |
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73 # include "vmreg_arm.inline.hpp" |
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74 #endif |
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75 #ifdef TARGET_ARCH_ppc |
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76 # include "nativeInst_ppc.hpp" |
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77 # include "vmreg_ppc.inline.hpp" |
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78 #endif |
1972 | 79 #ifdef COMPILER1 |
80 #include "c1/c1_Runtime1.hpp" | |
81 #endif | |
82 | |
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83 // Shared stub locations |
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84 RuntimeStub* SharedRuntime::_wrong_method_blob; |
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85 RuntimeStub* SharedRuntime::_ic_miss_blob; |
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86 RuntimeStub* SharedRuntime::_resolve_opt_virtual_call_blob; |
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87 RuntimeStub* SharedRuntime::_resolve_virtual_call_blob; |
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88 RuntimeStub* SharedRuntime::_resolve_static_call_blob; |
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89 |
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90 DeoptimizationBlob* SharedRuntime::_deopt_blob; |
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91 RicochetBlob* SharedRuntime::_ricochet_blob; |
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92 |
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93 SafepointBlob* SharedRuntime::_polling_page_safepoint_handler_blob; |
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94 SafepointBlob* SharedRuntime::_polling_page_return_handler_blob; |
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95 |
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96 #ifdef COMPILER2 |
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97 UncommonTrapBlob* SharedRuntime::_uncommon_trap_blob; |
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98 #endif // COMPILER2 |
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99 |
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100 |
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101 //----------------------------generate_stubs----------------------------------- |
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102 void SharedRuntime::generate_stubs() { |
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103 _wrong_method_blob = generate_resolve_blob(CAST_FROM_FN_PTR(address, SharedRuntime::handle_wrong_method), "wrong_method_stub"); |
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104 _ic_miss_blob = generate_resolve_blob(CAST_FROM_FN_PTR(address, SharedRuntime::handle_wrong_method_ic_miss), "ic_miss_stub"); |
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105 _resolve_opt_virtual_call_blob = generate_resolve_blob(CAST_FROM_FN_PTR(address, SharedRuntime::resolve_opt_virtual_call_C), "resolve_opt_virtual_call"); |
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106 _resolve_virtual_call_blob = generate_resolve_blob(CAST_FROM_FN_PTR(address, SharedRuntime::resolve_virtual_call_C), "resolve_virtual_call"); |
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107 _resolve_static_call_blob = generate_resolve_blob(CAST_FROM_FN_PTR(address, SharedRuntime::resolve_static_call_C), "resolve_static_call"); |
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108 |
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109 _polling_page_safepoint_handler_blob = generate_handler_blob(CAST_FROM_FN_PTR(address, SafepointSynchronize::handle_polling_page_exception), false); |
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110 _polling_page_return_handler_blob = generate_handler_blob(CAST_FROM_FN_PTR(address, SafepointSynchronize::handle_polling_page_exception), true); |
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111 |
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112 generate_ricochet_blob(); |
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113 generate_deopt_blob(); |
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114 |
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115 #ifdef COMPILER2 |
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116 generate_uncommon_trap_blob(); |
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117 #endif // COMPILER2 |
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118 } |
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119 |
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120 //----------------------------generate_ricochet_blob--------------------------- |
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121 void SharedRuntime::generate_ricochet_blob() { |
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122 if (!EnableInvokeDynamic) return; // leave it as a null |
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123 |
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124 #ifndef TARGET_ARCH_NYI_6939861 |
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125 // allocate space for the code |
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126 ResourceMark rm; |
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127 // setup code generation tools |
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128 CodeBuffer buffer("ricochet_blob", 256 LP64_ONLY(+ 256), 256); // XXX x86 LP64L: 512, 512 |
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129 MacroAssembler* masm = new MacroAssembler(&buffer); |
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130 |
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131 int bounce_offset = -1, exception_offset = -1, frame_size_in_words = -1; |
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132 MethodHandles::RicochetFrame::generate_ricochet_blob(masm, &bounce_offset, &exception_offset, &frame_size_in_words); |
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133 |
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134 // ------------- |
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135 // make sure all code is generated |
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136 masm->flush(); |
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137 |
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138 // failed to generate? |
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139 if (bounce_offset < 0 || exception_offset < 0 || frame_size_in_words < 0) { |
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140 assert(false, "bad ricochet blob"); |
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141 return; |
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142 } |
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143 |
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144 _ricochet_blob = RicochetBlob::create(&buffer, bounce_offset, exception_offset, frame_size_in_words); |
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145 #endif |
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146 } |
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147 |
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148 |
0 | 149 #include <math.h> |
150 | |
4006 | 151 #ifndef USDT2 |
0 | 152 HS_DTRACE_PROBE_DECL4(hotspot, object__alloc, Thread*, char*, int, size_t); |
153 HS_DTRACE_PROBE_DECL7(hotspot, method__entry, int, | |
154 char*, int, char*, int, char*, int); | |
155 HS_DTRACE_PROBE_DECL7(hotspot, method__return, int, | |
156 char*, int, char*, int, char*, int); | |
4006 | 157 #endif /* !USDT2 */ |
0 | 158 |
159 // Implementation of SharedRuntime | |
160 | |
161 #ifndef PRODUCT | |
162 // For statistics | |
163 int SharedRuntime::_ic_miss_ctr = 0; | |
164 int SharedRuntime::_wrong_method_ctr = 0; | |
165 int SharedRuntime::_resolve_static_ctr = 0; | |
166 int SharedRuntime::_resolve_virtual_ctr = 0; | |
167 int SharedRuntime::_resolve_opt_virtual_ctr = 0; | |
168 int SharedRuntime::_implicit_null_throws = 0; | |
169 int SharedRuntime::_implicit_div0_throws = 0; | |
170 int SharedRuntime::_throw_null_ctr = 0; | |
171 | |
172 int SharedRuntime::_nof_normal_calls = 0; | |
173 int SharedRuntime::_nof_optimized_calls = 0; | |
174 int SharedRuntime::_nof_inlined_calls = 0; | |
175 int SharedRuntime::_nof_megamorphic_calls = 0; | |
176 int SharedRuntime::_nof_static_calls = 0; | |
177 int SharedRuntime::_nof_inlined_static_calls = 0; | |
178 int SharedRuntime::_nof_interface_calls = 0; | |
179 int SharedRuntime::_nof_optimized_interface_calls = 0; | |
180 int SharedRuntime::_nof_inlined_interface_calls = 0; | |
181 int SharedRuntime::_nof_megamorphic_interface_calls = 0; | |
182 int SharedRuntime::_nof_removable_exceptions = 0; | |
183 | |
184 int SharedRuntime::_new_instance_ctr=0; | |
185 int SharedRuntime::_new_array_ctr=0; | |
186 int SharedRuntime::_multi1_ctr=0; | |
187 int SharedRuntime::_multi2_ctr=0; | |
188 int SharedRuntime::_multi3_ctr=0; | |
189 int SharedRuntime::_multi4_ctr=0; | |
190 int SharedRuntime::_multi5_ctr=0; | |
191 int SharedRuntime::_mon_enter_stub_ctr=0; | |
192 int SharedRuntime::_mon_exit_stub_ctr=0; | |
193 int SharedRuntime::_mon_enter_ctr=0; | |
194 int SharedRuntime::_mon_exit_ctr=0; | |
195 int SharedRuntime::_partial_subtype_ctr=0; | |
196 int SharedRuntime::_jbyte_array_copy_ctr=0; | |
197 int SharedRuntime::_jshort_array_copy_ctr=0; | |
198 int SharedRuntime::_jint_array_copy_ctr=0; | |
199 int SharedRuntime::_jlong_array_copy_ctr=0; | |
200 int SharedRuntime::_oop_array_copy_ctr=0; | |
201 int SharedRuntime::_checkcast_array_copy_ctr=0; | |
202 int SharedRuntime::_unsafe_array_copy_ctr=0; | |
203 int SharedRuntime::_generic_array_copy_ctr=0; | |
204 int SharedRuntime::_slow_array_copy_ctr=0; | |
205 int SharedRuntime::_find_handler_ctr=0; | |
206 int SharedRuntime::_rethrow_ctr=0; | |
207 | |
208 int SharedRuntime::_ICmiss_index = 0; | |
209 int SharedRuntime::_ICmiss_count[SharedRuntime::maxICmiss_count]; | |
210 address SharedRuntime::_ICmiss_at[SharedRuntime::maxICmiss_count]; | |
211 | |
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212 |
0 | 213 void SharedRuntime::trace_ic_miss(address at) { |
214 for (int i = 0; i < _ICmiss_index; i++) { | |
215 if (_ICmiss_at[i] == at) { | |
216 _ICmiss_count[i]++; | |
217 return; | |
218 } | |
219 } | |
220 int index = _ICmiss_index++; | |
221 if (_ICmiss_index >= maxICmiss_count) _ICmiss_index = maxICmiss_count - 1; | |
222 _ICmiss_at[index] = at; | |
223 _ICmiss_count[index] = 1; | |
224 } | |
225 | |
226 void SharedRuntime::print_ic_miss_histogram() { | |
227 if (ICMissHistogram) { | |
228 tty->print_cr ("IC Miss Histogram:"); | |
229 int tot_misses = 0; | |
230 for (int i = 0; i < _ICmiss_index; i++) { | |
231 tty->print_cr(" at: " INTPTR_FORMAT " nof: %d", _ICmiss_at[i], _ICmiss_count[i]); | |
232 tot_misses += _ICmiss_count[i]; | |
233 } | |
234 tty->print_cr ("Total IC misses: %7d", tot_misses); | |
235 } | |
236 } | |
237 #endif // PRODUCT | |
238 | |
342
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239 #ifndef SERIALGC |
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240 |
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241 // G1 write-barrier pre: executed before a pointer store. |
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242 JRT_LEAF(void, SharedRuntime::g1_wb_pre(oopDesc* orig, JavaThread *thread)) |
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243 if (orig == NULL) { |
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244 assert(false, "should be optimized out"); |
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245 return; |
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246 } |
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247 assert(orig->is_oop(true /* ignore mark word */), "Error"); |
342
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248 // store the original value that was in the field reference |
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249 thread->satb_mark_queue().enqueue(orig); |
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250 JRT_END |
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251 |
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252 // G1 write-barrier post: executed after a pointer store. |
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253 JRT_LEAF(void, SharedRuntime::g1_wb_post(void* card_addr, JavaThread* thread)) |
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254 thread->dirty_card_queue().enqueue(card_addr); |
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255 JRT_END |
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256 |
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257 #endif // !SERIALGC |
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258 |
0 | 259 |
260 JRT_LEAF(jlong, SharedRuntime::lmul(jlong y, jlong x)) | |
261 return x * y; | |
262 JRT_END | |
263 | |
264 | |
265 JRT_LEAF(jlong, SharedRuntime::ldiv(jlong y, jlong x)) | |
266 if (x == min_jlong && y == CONST64(-1)) { | |
267 return x; | |
268 } else { | |
269 return x / y; | |
270 } | |
271 JRT_END | |
272 | |
273 | |
274 JRT_LEAF(jlong, SharedRuntime::lrem(jlong y, jlong x)) | |
275 if (x == min_jlong && y == CONST64(-1)) { | |
276 return 0; | |
277 } else { | |
278 return x % y; | |
279 } | |
280 JRT_END | |
281 | |
282 | |
283 const juint float_sign_mask = 0x7FFFFFFF; | |
284 const juint float_infinity = 0x7F800000; | |
285 const julong double_sign_mask = CONST64(0x7FFFFFFFFFFFFFFF); | |
286 const julong double_infinity = CONST64(0x7FF0000000000000); | |
287 | |
288 JRT_LEAF(jfloat, SharedRuntime::frem(jfloat x, jfloat y)) | |
289 #ifdef _WIN64 | |
290 // 64-bit Windows on amd64 returns the wrong values for | |
291 // infinity operands. | |
292 union { jfloat f; juint i; } xbits, ybits; | |
293 xbits.f = x; | |
294 ybits.f = y; | |
295 // x Mod Infinity == x unless x is infinity | |
296 if ( ((xbits.i & float_sign_mask) != float_infinity) && | |
297 ((ybits.i & float_sign_mask) == float_infinity) ) { | |
298 return x; | |
299 } | |
300 #endif | |
301 return ((jfloat)fmod((double)x,(double)y)); | |
302 JRT_END | |
303 | |
304 | |
305 JRT_LEAF(jdouble, SharedRuntime::drem(jdouble x, jdouble y)) | |
306 #ifdef _WIN64 | |
307 union { jdouble d; julong l; } xbits, ybits; | |
308 xbits.d = x; | |
309 ybits.d = y; | |
310 // x Mod Infinity == x unless x is infinity | |
311 if ( ((xbits.l & double_sign_mask) != double_infinity) && | |
312 ((ybits.l & double_sign_mask) == double_infinity) ) { | |
313 return x; | |
314 } | |
315 #endif | |
316 return ((jdouble)fmod((double)x,(double)y)); | |
317 JRT_END | |
318 | |
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319 #ifdef __SOFTFP__ |
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320 JRT_LEAF(jfloat, SharedRuntime::fadd(jfloat x, jfloat y)) |
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321 return x + y; |
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322 JRT_END |
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323 |
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324 JRT_LEAF(jfloat, SharedRuntime::fsub(jfloat x, jfloat y)) |
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325 return x - y; |
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326 JRT_END |
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327 |
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328 JRT_LEAF(jfloat, SharedRuntime::fmul(jfloat x, jfloat y)) |
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329 return x * y; |
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330 JRT_END |
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331 |
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332 JRT_LEAF(jfloat, SharedRuntime::fdiv(jfloat x, jfloat y)) |
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333 return x / y; |
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334 JRT_END |
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335 |
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336 JRT_LEAF(jdouble, SharedRuntime::dadd(jdouble x, jdouble y)) |
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337 return x + y; |
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338 JRT_END |
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339 |
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340 JRT_LEAF(jdouble, SharedRuntime::dsub(jdouble x, jdouble y)) |
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341 return x - y; |
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342 JRT_END |
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343 |
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344 JRT_LEAF(jdouble, SharedRuntime::dmul(jdouble x, jdouble y)) |
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345 return x * y; |
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346 JRT_END |
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347 |
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348 JRT_LEAF(jdouble, SharedRuntime::ddiv(jdouble x, jdouble y)) |
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349 return x / y; |
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350 JRT_END |
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351 |
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352 JRT_LEAF(jfloat, SharedRuntime::i2f(jint x)) |
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353 return (jfloat)x; |
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354 JRT_END |
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355 |
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356 JRT_LEAF(jdouble, SharedRuntime::i2d(jint x)) |
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357 return (jdouble)x; |
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358 JRT_END |
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359 |
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360 JRT_LEAF(jdouble, SharedRuntime::f2d(jfloat x)) |
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361 return (jdouble)x; |
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362 JRT_END |
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363 |
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364 JRT_LEAF(int, SharedRuntime::fcmpl(float x, float y)) |
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365 return x>y ? 1 : (x==y ? 0 : -1); /* x<y or is_nan*/ |
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366 JRT_END |
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367 |
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368 JRT_LEAF(int, SharedRuntime::fcmpg(float x, float y)) |
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369 return x<y ? -1 : (x==y ? 0 : 1); /* x>y or is_nan */ |
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370 JRT_END |
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371 |
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372 JRT_LEAF(int, SharedRuntime::dcmpl(double x, double y)) |
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373 return x>y ? 1 : (x==y ? 0 : -1); /* x<y or is_nan */ |
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374 JRT_END |
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375 |
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376 JRT_LEAF(int, SharedRuntime::dcmpg(double x, double y)) |
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377 return x<y ? -1 : (x==y ? 0 : 1); /* x>y or is_nan */ |
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378 JRT_END |
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379 |
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380 // Functions to return the opposite of the aeabi functions for nan. |
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381 JRT_LEAF(int, SharedRuntime::unordered_fcmplt(float x, float y)) |
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382 return (x < y) ? 1 : ((g_isnan(x) || g_isnan(y)) ? 1 : 0); |
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383 JRT_END |
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384 |
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385 JRT_LEAF(int, SharedRuntime::unordered_dcmplt(double x, double y)) |
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386 return (x < y) ? 1 : ((g_isnan(x) || g_isnan(y)) ? 1 : 0); |
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387 JRT_END |
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388 |
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389 JRT_LEAF(int, SharedRuntime::unordered_fcmple(float x, float y)) |
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390 return (x <= y) ? 1 : ((g_isnan(x) || g_isnan(y)) ? 1 : 0); |
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391 JRT_END |
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392 |
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393 JRT_LEAF(int, SharedRuntime::unordered_dcmple(double x, double y)) |
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394 return (x <= y) ? 1 : ((g_isnan(x) || g_isnan(y)) ? 1 : 0); |
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395 JRT_END |
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396 |
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397 JRT_LEAF(int, SharedRuntime::unordered_fcmpge(float x, float y)) |
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398 return (x >= y) ? 1 : ((g_isnan(x) || g_isnan(y)) ? 1 : 0); |
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399 JRT_END |
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400 |
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401 JRT_LEAF(int, SharedRuntime::unordered_dcmpge(double x, double y)) |
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402 return (x >= y) ? 1 : ((g_isnan(x) || g_isnan(y)) ? 1 : 0); |
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403 JRT_END |
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404 |
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405 JRT_LEAF(int, SharedRuntime::unordered_fcmpgt(float x, float y)) |
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406 return (x > y) ? 1 : ((g_isnan(x) || g_isnan(y)) ? 1 : 0); |
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407 JRT_END |
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408 |
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409 JRT_LEAF(int, SharedRuntime::unordered_dcmpgt(double x, double y)) |
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410 return (x > y) ? 1 : ((g_isnan(x) || g_isnan(y)) ? 1 : 0); |
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411 JRT_END |
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412 |
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413 // Intrinsics make gcc generate code for these. |
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414 float SharedRuntime::fneg(float f) { |
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415 return -f; |
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416 } |
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417 |
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418 double SharedRuntime::dneg(double f) { |
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419 return -f; |
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420 } |
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421 |
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422 #endif // __SOFTFP__ |
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423 |
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424 #if defined(__SOFTFP__) || defined(E500V2) |
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425 // Intrinsics make gcc generate code for these. |
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426 double SharedRuntime::dabs(double f) { |
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427 return (f <= (double)0.0) ? (double)0.0 - f : f; |
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428 } |
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429 |
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430 #endif |
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431 |
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432 #if defined(__SOFTFP__) || defined(PPC) |
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433 double SharedRuntime::dsqrt(double f) { |
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434 return sqrt(f); |
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435 } |
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436 #endif |
0 | 437 |
438 JRT_LEAF(jint, SharedRuntime::f2i(jfloat x)) | |
508
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439 if (g_isnan(x)) |
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440 return 0; |
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441 if (x >= (jfloat) max_jint) |
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442 return max_jint; |
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443 if (x <= (jfloat) min_jint) |
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444 return min_jint; |
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445 return (jint) x; |
0 | 446 JRT_END |
447 | |
448 | |
449 JRT_LEAF(jlong, SharedRuntime::f2l(jfloat x)) | |
508
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450 if (g_isnan(x)) |
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451 return 0; |
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452 if (x >= (jfloat) max_jlong) |
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453 return max_jlong; |
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454 if (x <= (jfloat) min_jlong) |
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455 return min_jlong; |
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456 return (jlong) x; |
0 | 457 JRT_END |
458 | |
459 | |
460 JRT_LEAF(jint, SharedRuntime::d2i(jdouble x)) | |
508
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461 if (g_isnan(x)) |
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462 return 0; |
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463 if (x >= (jdouble) max_jint) |
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464 return max_jint; |
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465 if (x <= (jdouble) min_jint) |
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466 return min_jint; |
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467 return (jint) x; |
0 | 468 JRT_END |
469 | |
470 | |
471 JRT_LEAF(jlong, SharedRuntime::d2l(jdouble x)) | |
508
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472 if (g_isnan(x)) |
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473 return 0; |
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474 if (x >= (jdouble) max_jlong) |
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475 return max_jlong; |
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476 if (x <= (jdouble) min_jlong) |
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477 return min_jlong; |
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478 return (jlong) x; |
0 | 479 JRT_END |
480 | |
481 | |
482 JRT_LEAF(jfloat, SharedRuntime::d2f(jdouble x)) | |
483 return (jfloat)x; | |
484 JRT_END | |
485 | |
486 | |
487 JRT_LEAF(jfloat, SharedRuntime::l2f(jlong x)) | |
488 return (jfloat)x; | |
489 JRT_END | |
490 | |
491 | |
492 JRT_LEAF(jdouble, SharedRuntime::l2d(jlong x)) | |
493 return (jdouble)x; | |
494 JRT_END | |
495 | |
496 // Exception handling accross interpreter/compiler boundaries | |
497 // | |
498 // exception_handler_for_return_address(...) returns the continuation address. | |
499 // The continuation address is the entry point of the exception handler of the | |
500 // previous frame depending on the return address. | |
501 | |
1295 | 502 address SharedRuntime::raw_exception_handler_for_return_address(JavaThread* thread, address return_address) { |
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503 assert(frame::verify_return_pc(return_address), err_msg("must be a return address: " INTPTR_FORMAT, return_address)); |
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504 |
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505 // Reset method handle flag. |
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506 thread->set_is_method_handle_return(false); |
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507 |
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508 // The fastest case first |
0 | 509 CodeBlob* blob = CodeCache::find_blob(return_address); |
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510 nmethod* nm = (blob != NULL) ? blob->as_nmethod_or_null() : NULL; |
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511 if (nm != NULL) { |
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512 // Set flag if return address is a method handle call site. |
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513 thread->set_is_method_handle_return(nm->is_method_handle_return(return_address)); |
0 | 514 // native nmethods don't have exception handlers |
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515 assert(!nm->is_native_method(), "no exception handler"); |
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516 assert(nm->header_begin() != nm->exception_begin(), "no exception handler"); |
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517 if (nm->is_deopt_pc(return_address)) { |
0 | 518 return SharedRuntime::deopt_blob()->unpack_with_exception(); |
519 } else { | |
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520 return nm->exception_begin(); |
0 | 521 } |
522 } | |
523 | |
524 // Entry code | |
525 if (StubRoutines::returns_to_call_stub(return_address)) { | |
526 return StubRoutines::catch_exception_entry(); | |
527 } | |
528 // Interpreted code | |
529 if (Interpreter::contains(return_address)) { | |
530 return Interpreter::rethrow_exception_entry(); | |
531 } | |
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532 // Ricochet frame unwind code |
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533 if (SharedRuntime::ricochet_blob() != NULL && SharedRuntime::ricochet_blob()->returns_to_bounce_addr(return_address)) { |
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534 return SharedRuntime::ricochet_blob()->exception_addr(); |
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535 } |
0 | 536 |
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537 guarantee(blob == NULL || !blob->is_runtime_stub(), "caller should have skipped stub"); |
0 | 538 guarantee(!VtableStubs::contains(return_address), "NULL exceptions in vtables should have been handled already!"); |
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539 |
0 | 540 #ifndef PRODUCT |
541 { ResourceMark rm; | |
542 tty->print_cr("No exception handler found for exception at " INTPTR_FORMAT " - potential problems:", return_address); | |
543 tty->print_cr("a) exception happened in (new?) code stubs/buffers that is not handled here"); | |
544 tty->print_cr("b) other problem"); | |
545 } | |
546 #endif // PRODUCT | |
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547 |
0 | 548 ShouldNotReachHere(); |
549 return NULL; | |
550 } | |
551 | |
552 | |
1295 | 553 JRT_LEAF(address, SharedRuntime::exception_handler_for_return_address(JavaThread* thread, address return_address)) |
554 return raw_exception_handler_for_return_address(thread, return_address); | |
0 | 555 JRT_END |
556 | |
1295 | 557 |
0 | 558 address SharedRuntime::get_poll_stub(address pc) { |
559 address stub; | |
560 // Look up the code blob | |
561 CodeBlob *cb = CodeCache::find_blob(pc); | |
562 | |
563 // Should be an nmethod | |
564 assert( cb && cb->is_nmethod(), "safepoint polling: pc must refer to an nmethod" ); | |
565 | |
566 // Look up the relocation information | |
567 assert( ((nmethod*)cb)->is_at_poll_or_poll_return(pc), | |
568 "safepoint polling: type must be poll" ); | |
569 | |
570 assert( ((NativeInstruction*)pc)->is_safepoint_poll(), | |
571 "Only polling locations are used for safepoint"); | |
572 | |
573 bool at_poll_return = ((nmethod*)cb)->is_at_poll_return(pc); | |
574 if (at_poll_return) { | |
575 assert(SharedRuntime::polling_page_return_handler_blob() != NULL, | |
576 "polling page return stub not created yet"); | |
1748 | 577 stub = SharedRuntime::polling_page_return_handler_blob()->entry_point(); |
0 | 578 } else { |
579 assert(SharedRuntime::polling_page_safepoint_handler_blob() != NULL, | |
580 "polling page safepoint stub not created yet"); | |
1748 | 581 stub = SharedRuntime::polling_page_safepoint_handler_blob()->entry_point(); |
0 | 582 } |
583 #ifndef PRODUCT | |
584 if( TraceSafepoint ) { | |
585 char buf[256]; | |
586 jio_snprintf(buf, sizeof(buf), | |
587 "... found polling page %s exception at pc = " | |
588 INTPTR_FORMAT ", stub =" INTPTR_FORMAT, | |
589 at_poll_return ? "return" : "loop", | |
590 (intptr_t)pc, (intptr_t)stub); | |
591 tty->print_raw_cr(buf); | |
592 } | |
593 #endif // PRODUCT | |
594 return stub; | |
595 } | |
596 | |
597 | |
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598 oop SharedRuntime::retrieve_receiver( Symbol* sig, frame caller ) { |
0 | 599 assert(caller.is_interpreted_frame(), ""); |
600 int args_size = ArgumentSizeComputer(sig).size() + 1; | |
601 assert(args_size <= caller.interpreter_frame_expression_stack_size(), "receiver must be on interpreter stack"); | |
602 oop result = (oop) *caller.interpreter_frame_tos_at(args_size - 1); | |
603 assert(Universe::heap()->is_in(result) && result->is_oop(), "receiver must be an oop"); | |
604 return result; | |
605 } | |
606 | |
607 | |
608 void SharedRuntime::throw_and_post_jvmti_exception(JavaThread *thread, Handle h_exception) { | |
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609 if (JvmtiExport::can_post_on_exceptions()) { |
0 | 610 vframeStream vfst(thread, true); |
611 methodHandle method = methodHandle(thread, vfst.method()); | |
612 address bcp = method()->bcp_from(vfst.bci()); | |
613 JvmtiExport::post_exception_throw(thread, method(), bcp, h_exception()); | |
614 } | |
615 Exceptions::_throw(thread, __FILE__, __LINE__, h_exception); | |
616 } | |
617 | |
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618 void SharedRuntime::throw_and_post_jvmti_exception(JavaThread *thread, Symbol* name, const char *message) { |
0 | 619 Handle h_exception = Exceptions::new_exception(thread, name, message); |
620 throw_and_post_jvmti_exception(thread, h_exception); | |
621 } | |
622 | |
610
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623 // The interpreter code to call this tracing function is only |
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624 // called/generated when TraceRedefineClasses has the right bits |
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625 // set. Since obsolete methods are never compiled, we don't have |
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626 // to modify the compilers to generate calls to this function. |
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627 // |
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628 JRT_LEAF(int, SharedRuntime::rc_trace_method_entry( |
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629 JavaThread* thread, methodOopDesc* method)) |
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630 assert(RC_TRACE_IN_RANGE(0x00001000, 0x00002000), "wrong call"); |
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631 |
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632 if (method->is_obsolete()) { |
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633 // We are calling an obsolete method, but this is not necessarily |
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634 // an error. Our method could have been redefined just after we |
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635 // fetched the methodOop from the constant pool. |
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636 |
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637 // RC_TRACE macro has an embedded ResourceMark |
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638 RC_TRACE_WITH_THREAD(0x00001000, thread, |
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639 ("calling obsolete method '%s'", |
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640 method->name_and_sig_as_C_string())); |
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641 if (RC_TRACE_ENABLED(0x00002000)) { |
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642 // this option is provided to debug calls to obsolete methods |
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643 guarantee(false, "faulting at call to an obsolete method."); |
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644 } |
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645 } |
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646 return 0; |
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647 JRT_END |
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648 |
0 | 649 // ret_pc points into caller; we are returning caller's exception handler |
650 // for given exception | |
651 address SharedRuntime::compute_compiled_exc_handler(nmethod* nm, address ret_pc, Handle& exception, | |
652 bool force_unwind, bool top_frame_only) { | |
653 assert(nm != NULL, "must exist"); | |
654 ResourceMark rm; | |
655 | |
656 ScopeDesc* sd = nm->scope_desc_at(ret_pc); | |
657 // determine handler bci, if any | |
658 EXCEPTION_MARK; | |
659 | |
660 int handler_bci = -1; | |
661 int scope_depth = 0; | |
662 if (!force_unwind) { | |
663 int bci = sd->bci(); | |
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664 bool recursive_exception = false; |
0 | 665 do { |
666 bool skip_scope_increment = false; | |
667 // exception handler lookup | |
668 KlassHandle ek (THREAD, exception->klass()); | |
669 handler_bci = sd->method()->fast_exception_handler_bci_for(ek, bci, THREAD); | |
670 if (HAS_PENDING_EXCEPTION) { | |
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671 recursive_exception = true; |
0 | 672 // We threw an exception while trying to find the exception handler. |
673 // Transfer the new exception to the exception handle which will | |
674 // be set into thread local storage, and do another lookup for an | |
675 // exception handler for this exception, this time starting at the | |
676 // BCI of the exception handler which caused the exception to be | |
677 // thrown (bugs 4307310 and 4546590). Set "exception" reference | |
678 // argument to ensure that the correct exception is thrown (4870175). | |
679 exception = Handle(THREAD, PENDING_EXCEPTION); | |
680 CLEAR_PENDING_EXCEPTION; | |
681 if (handler_bci >= 0) { | |
682 bci = handler_bci; | |
683 handler_bci = -1; | |
684 skip_scope_increment = true; | |
685 } | |
686 } | |
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687 else { |
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688 recursive_exception = false; |
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689 } |
0 | 690 if (!top_frame_only && handler_bci < 0 && !skip_scope_increment) { |
691 sd = sd->sender(); | |
692 if (sd != NULL) { | |
693 bci = sd->bci(); | |
694 } | |
695 ++scope_depth; | |
696 } | |
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697 } while (recursive_exception || (!top_frame_only && handler_bci < 0 && sd != NULL)); |
0 | 698 } |
699 | |
700 // found handling method => lookup exception handler | |
1748 | 701 int catch_pco = ret_pc - nm->code_begin(); |
0 | 702 |
703 ExceptionHandlerTable table(nm); | |
704 HandlerTableEntry *t = table.entry_for(catch_pco, handler_bci, scope_depth); | |
705 if (t == NULL && (nm->is_compiled_by_c1() || handler_bci != -1)) { | |
706 // Allow abbreviated catch tables. The idea is to allow a method | |
707 // to materialize its exceptions without committing to the exact | |
708 // routing of exceptions. In particular this is needed for adding | |
709 // a synthethic handler to unlock monitors when inlining | |
710 // synchonized methods since the unlock path isn't represented in | |
711 // the bytecodes. | |
712 t = table.entry_for(catch_pco, -1, 0); | |
713 } | |
714 | |
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715 #ifdef COMPILER1 |
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716 if (t == NULL && nm->is_compiled_by_c1()) { |
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717 #ifdef GRAAL |
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718 nm->make_not_entrant(); |
4673
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719 JavaThread* thread = JavaThread::current(); |
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720 // save the exception for deoptimization |
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721 thread->set_exception_pc(ret_pc); |
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722 thread->set_exception_oop(exception()); |
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723 // clear the pending exception and deoptimize the frame |
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724 thread->clear_pending_exception(); |
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725 RegisterMap reg_map(thread, false); |
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726 frame runtime_frame = thread->last_frame(); |
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727 frame caller_frame = runtime_frame.sender(®_map); |
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728 Deoptimization::deoptimize_frame(thread, caller_frame.id()); |
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729 return SharedRuntime::deopt_blob()->unpack_with_exception_in_tls(); |
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730 #else |
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731 assert(nm->unwind_handler_begin() != NULL, ""); |
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732 return nm->unwind_handler_begin(); |
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733 #endif |
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734 } |
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735 #endif |
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736 |
0 | 737 if (t == NULL) { |
738 tty->print_cr("MISSING EXCEPTION HANDLER for pc " INTPTR_FORMAT " and handler bci %d", ret_pc, handler_bci); | |
739 tty->print_cr(" Exception:"); | |
740 exception->print(); | |
741 tty->cr(); | |
742 tty->print_cr(" Compiled exception table :"); | |
743 table.print(); | |
744 nm->print_code(); | |
745 guarantee(false, "missing exception handler"); | |
746 return NULL; | |
747 } | |
748 | |
1748 | 749 return nm->code_begin() + t->pco(); |
0 | 750 } |
751 | |
752 JRT_ENTRY(void, SharedRuntime::throw_AbstractMethodError(JavaThread* thread)) | |
753 // These errors occur only at call sites | |
754 throw_and_post_jvmti_exception(thread, vmSymbols::java_lang_AbstractMethodError()); | |
755 JRT_END | |
756 | |
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757 JRT_ENTRY(void, SharedRuntime::throw_IncompatibleClassChangeError(JavaThread* thread)) |
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758 // These errors occur only at call sites |
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759 throw_and_post_jvmti_exception(thread, vmSymbols::java_lang_IncompatibleClassChangeError(), "vtable stub"); |
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760 JRT_END |
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761 |
0 | 762 JRT_ENTRY(void, SharedRuntime::throw_ArithmeticException(JavaThread* thread)) |
763 throw_and_post_jvmti_exception(thread, vmSymbols::java_lang_ArithmeticException(), "/ by zero"); | |
764 JRT_END | |
765 | |
766 JRT_ENTRY(void, SharedRuntime::throw_NullPointerException(JavaThread* thread)) | |
767 throw_and_post_jvmti_exception(thread, vmSymbols::java_lang_NullPointerException()); | |
768 JRT_END | |
769 | |
770 JRT_ENTRY(void, SharedRuntime::throw_NullPointerException_at_call(JavaThread* thread)) | |
771 // This entry point is effectively only used for NullPointerExceptions which occur at inline | |
772 // cache sites (when the callee activation is not yet set up) so we are at a call site | |
773 throw_and_post_jvmti_exception(thread, vmSymbols::java_lang_NullPointerException()); | |
774 JRT_END | |
775 | |
776 JRT_ENTRY(void, SharedRuntime::throw_StackOverflowError(JavaThread* thread)) | |
777 // We avoid using the normal exception construction in this case because | |
778 // it performs an upcall to Java, and we're already out of stack space. | |
779 klassOop k = SystemDictionary::StackOverflowError_klass(); | |
780 oop exception_oop = instanceKlass::cast(k)->allocate_instance(CHECK); | |
781 Handle exception (thread, exception_oop); | |
782 if (StackTraceInThrowable) { | |
783 java_lang_Throwable::fill_in_stack_trace(exception); | |
784 } | |
785 throw_and_post_jvmti_exception(thread, exception); | |
786 JRT_END | |
787 | |
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788 address SharedRuntime::deoptimization_continuation(JavaThread* thread, address pc, nmethod* nm) |
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789 { |
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790 if (TraceSignals) { |
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791 tty->print_cr(err_msg("Deoptimizing on implicit exception at relative pc=%d in method %s", pc - nm->entry_point(), nm->method()->name()->as_C_string())); |
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792 } |
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793 thread->_ScratchA = (intptr_t)pc; |
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794 return (SharedRuntime::deopt_blob()->jmp_uncommon_trap()); |
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795 } |
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796 |
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797 JRT_ENTRY(void, SharedRuntime::throw_WrongMethodTypeException(JavaThread* thread, oopDesc* required, oopDesc* actual)) |
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798 assert(thread == JavaThread::current() && required->is_oop() && actual->is_oop(), "bad args"); |
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799 ResourceMark rm; |
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800 char* message = SharedRuntime::generate_wrong_method_type_message(thread, required, actual); |
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801 throw_and_post_jvmti_exception(thread, vmSymbols::java_lang_invoke_WrongMethodTypeException(), message); |
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802 JRT_END |
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803 |
0 | 804 address SharedRuntime::continuation_for_implicit_exception(JavaThread* thread, |
805 address pc, | |
806 SharedRuntime::ImplicitExceptionKind exception_kind) | |
807 { | |
808 address target_pc = NULL; | |
809 | |
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810 if (TraceSignals) { |
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811 tty->print_cr("Searching for continuation for implicit exception at %d!", pc); |
2494
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812 } |
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813 |
0 | 814 if (Interpreter::contains(pc)) { |
815 #ifdef CC_INTERP | |
816 // C++ interpreter doesn't throw implicit exceptions | |
817 ShouldNotReachHere(); | |
818 #else | |
819 switch (exception_kind) { | |
820 case IMPLICIT_NULL: return Interpreter::throw_NullPointerException_entry(); | |
821 case IMPLICIT_DIVIDE_BY_ZERO: return Interpreter::throw_ArithmeticException_entry(); | |
822 case STACK_OVERFLOW: return Interpreter::throw_StackOverflowError_entry(); | |
823 default: ShouldNotReachHere(); | |
824 } | |
825 #endif // !CC_INTERP | |
826 } else { | |
827 switch (exception_kind) { | |
828 case STACK_OVERFLOW: { | |
829 // Stack overflow only occurs upon frame setup; the callee is | |
830 // going to be unwound. Dispatch to a shared runtime stub | |
831 // which will cause the StackOverflowError to be fabricated | |
832 // and processed. | |
833 // For stack overflow in deoptimization blob, cleanup thread. | |
834 if (thread->deopt_mark() != NULL) { | |
835 Deoptimization::cleanup_deopt_info(thread, NULL); | |
836 } | |
837 return StubRoutines::throw_StackOverflowError_entry(); | |
838 } | |
839 | |
840 case IMPLICIT_NULL: { | |
841 if (VtableStubs::contains(pc)) { | |
842 // We haven't yet entered the callee frame. Fabricate an | |
843 // exception and begin dispatching it in the caller. Since | |
844 // the caller was at a call site, it's safe to destroy all | |
845 // caller-saved registers, as these entry points do. | |
846 VtableStub* vt_stub = VtableStubs::stub_containing(pc); | |
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847 |
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848 // If vt_stub is NULL, then return NULL to signal handler to report the SEGV error. |
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849 if (vt_stub == NULL) return NULL; |
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850 |
0 | 851 if (vt_stub->is_abstract_method_error(pc)) { |
852 assert(!vt_stub->is_vtable_stub(), "should never see AbstractMethodErrors from vtable-type VtableStubs"); | |
853 return StubRoutines::throw_AbstractMethodError_entry(); | |
854 } else { | |
855 return StubRoutines::throw_NullPointerException_at_call_entry(); | |
856 } | |
857 } else { | |
858 CodeBlob* cb = CodeCache::find_blob(pc); | |
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859 |
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860 // If code blob is NULL, then return NULL to signal handler to report the SEGV error. |
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861 if (cb == NULL) return NULL; |
0 | 862 |
863 // Exception happened in CodeCache. Must be either: | |
864 // 1. Inline-cache check in C2I handler blob, | |
865 // 2. Inline-cache check in nmethod, or | |
866 // 3. Implict null exception in nmethod | |
867 | |
868 if (!cb->is_nmethod()) { | |
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869 guarantee(cb->is_adapter_blob() || cb->is_method_handles_adapter_blob(), |
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870 "exception happened outside interpreter, nmethods and vtable stubs (1)"); |
0 | 871 // There is no handler here, so we will simply unwind. |
872 return StubRoutines::throw_NullPointerException_at_call_entry(); | |
873 } | |
874 | |
875 // Otherwise, it's an nmethod. Consult its exception handlers. | |
876 nmethod* nm = (nmethod*)cb; | |
877 if (nm->inlinecache_check_contains(pc)) { | |
878 // exception happened inside inline-cache check code | |
879 // => the nmethod is not yet active (i.e., the frame | |
880 // is not set up yet) => use return address pushed by | |
881 // caller => don't push another return address | |
882 return StubRoutines::throw_NullPointerException_at_call_entry(); | |
883 } | |
884 | |
885 #ifndef PRODUCT | |
886 _implicit_null_throws++; | |
887 #endif | |
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888 #ifdef GRAAL |
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889 target_pc = deoptimization_continuation(thread, pc, nm); |
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890 #else |
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891 target_pc = nm->continuation_for_implicit_exception(pc); |
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892 #endif |
1250 | 893 // If there's an unexpected fault, target_pc might be NULL, |
894 // in which case we want to fall through into the normal | |
895 // error handling code. | |
0 | 896 } |
897 | |
898 break; // fall through | |
899 } | |
900 | |
901 | |
902 case IMPLICIT_DIVIDE_BY_ZERO: { | |
903 nmethod* nm = CodeCache::find_nmethod(pc); | |
904 guarantee(nm != NULL, "must have containing nmethod for implicit division-by-zero exceptions"); | |
905 #ifndef PRODUCT | |
906 _implicit_div0_throws++; | |
907 #endif | |
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908 #ifdef GRAAL |
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909 if (TraceSignals) { |
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910 tty->print_cr("graal implicit div0"); |
1429
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* -XX:TraceC1X=0...5 controls the native c1x tracing
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911 } |
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912 target_pc = deoptimization_continuation(thread, pc, nm); |
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913 #else |
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914 target_pc = nm->continuation_for_implicit_exception(pc); |
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915 #endif |
1250 | 916 // If there's an unexpected fault, target_pc might be NULL, |
917 // in which case we want to fall through into the normal | |
918 // error handling code. | |
0 | 919 break; // fall through |
920 } | |
921 | |
922 default: ShouldNotReachHere(); | |
923 } | |
924 | |
925 assert(exception_kind == IMPLICIT_NULL || exception_kind == IMPLICIT_DIVIDE_BY_ZERO, "wrong implicit exception kind"); | |
926 | |
927 // for AbortVMOnException flag | |
928 NOT_PRODUCT(Exceptions::debug_check_abort("java.lang.NullPointerException")); | |
929 if (exception_kind == IMPLICIT_NULL) { | |
930 Events::log("Implicit null exception at " INTPTR_FORMAT " to " INTPTR_FORMAT, pc, target_pc); | |
931 } else { | |
932 Events::log("Implicit division by zero exception at " INTPTR_FORMAT " to " INTPTR_FORMAT, pc, target_pc); | |
933 } | |
934 return target_pc; | |
935 } | |
936 | |
937 ShouldNotReachHere(); | |
938 return NULL; | |
939 } | |
940 | |
941 | |
942 JNI_ENTRY(void, throw_unsatisfied_link_error(JNIEnv* env, ...)) | |
943 { | |
944 THROW(vmSymbols::java_lang_UnsatisfiedLinkError()); | |
945 } | |
946 JNI_END | |
947 | |
948 | |
949 address SharedRuntime::native_method_throw_unsatisfied_link_error_entry() { | |
950 return CAST_FROM_FN_PTR(address, &throw_unsatisfied_link_error); | |
951 } | |
952 | |
953 | |
954 #ifndef PRODUCT | |
955 JRT_ENTRY(intptr_t, SharedRuntime::trace_bytecode(JavaThread* thread, intptr_t preserve_this_value, intptr_t tos, intptr_t tos2)) | |
956 const frame f = thread->last_frame(); | |
957 assert(f.is_interpreted_frame(), "must be an interpreted frame"); | |
958 #ifndef PRODUCT | |
959 methodHandle mh(THREAD, f.interpreter_frame_method()); | |
960 BytecodeTracer::trace(mh, f.interpreter_frame_bcp(), tos, tos2); | |
961 #endif // !PRODUCT | |
962 return preserve_this_value; | |
963 JRT_END | |
964 #endif // !PRODUCT | |
965 | |
966 | |
967 JRT_ENTRY(void, SharedRuntime::yield_all(JavaThread* thread, int attempts)) | |
968 os::yield_all(attempts); | |
969 JRT_END | |
970 | |
971 | |
972 JRT_ENTRY_NO_ASYNC(void, SharedRuntime::register_finalizer(JavaThread* thread, oopDesc* obj)) | |
973 assert(obj->is_oop(), "must be a valid oop"); | |
974 assert(obj->klass()->klass_part()->has_finalizer(), "shouldn't be here otherwise"); | |
975 instanceKlass::register_finalizer(instanceOop(obj), CHECK); | |
976 JRT_END | |
977 | |
978 | |
979 jlong SharedRuntime::get_java_tid(Thread* thread) { | |
980 if (thread != NULL) { | |
981 if (thread->is_Java_thread()) { | |
982 oop obj = ((JavaThread*)thread)->threadObj(); | |
983 return (obj == NULL) ? 0 : java_lang_Thread::thread_id(obj); | |
984 } | |
985 } | |
986 return 0; | |
987 } | |
988 | |
989 /** | |
990 * This function ought to be a void function, but cannot be because | |
991 * it gets turned into a tail-call on sparc, which runs into dtrace bug | |
992 * 6254741. Once that is fixed we can remove the dummy return value. | |
993 */ | |
994 int SharedRuntime::dtrace_object_alloc(oopDesc* o) { | |
995 return dtrace_object_alloc_base(Thread::current(), o); | |
996 } | |
997 | |
998 int SharedRuntime::dtrace_object_alloc_base(Thread* thread, oopDesc* o) { | |
999 assert(DTraceAllocProbes, "wrong call"); | |
1000 Klass* klass = o->blueprint(); | |
1001 int size = o->size(); | |
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1002 Symbol* name = klass->name(); |
4006 | 1003 #ifndef USDT2 |
0 | 1004 HS_DTRACE_PROBE4(hotspot, object__alloc, get_java_tid(thread), |
1005 name->bytes(), name->utf8_length(), size * HeapWordSize); | |
4006 | 1006 #else /* USDT2 */ |
1007 HOTSPOT_OBJECT_ALLOC( | |
1008 get_java_tid(thread), | |
1009 (char *) name->bytes(), name->utf8_length(), size * HeapWordSize); | |
1010 #endif /* USDT2 */ | |
0 | 1011 return 0; |
1012 } | |
1013 | |
1014 JRT_LEAF(int, SharedRuntime::dtrace_method_entry( | |
1015 JavaThread* thread, methodOopDesc* method)) | |
1016 assert(DTraceMethodProbes, "wrong call"); | |
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1017 Symbol* kname = method->klass_name(); |
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1018 Symbol* name = method->name(); |
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1019 Symbol* sig = method->signature(); |
4006 | 1020 #ifndef USDT2 |
0 | 1021 HS_DTRACE_PROBE7(hotspot, method__entry, get_java_tid(thread), |
1022 kname->bytes(), kname->utf8_length(), | |
1023 name->bytes(), name->utf8_length(), | |
1024 sig->bytes(), sig->utf8_length()); | |
4006 | 1025 #else /* USDT2 */ |
1026 HOTSPOT_METHOD_ENTRY( | |
1027 get_java_tid(thread), | |
1028 (char *) kname->bytes(), kname->utf8_length(), | |
1029 (char *) name->bytes(), name->utf8_length(), | |
1030 (char *) sig->bytes(), sig->utf8_length()); | |
1031 #endif /* USDT2 */ | |
0 | 1032 return 0; |
1033 JRT_END | |
1034 | |
1035 JRT_LEAF(int, SharedRuntime::dtrace_method_exit( | |
1036 JavaThread* thread, methodOopDesc* method)) | |
1037 assert(DTraceMethodProbes, "wrong call"); | |
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1038 Symbol* kname = method->klass_name(); |
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1039 Symbol* name = method->name(); |
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1040 Symbol* sig = method->signature(); |
4006 | 1041 #ifndef USDT2 |
0 | 1042 HS_DTRACE_PROBE7(hotspot, method__return, get_java_tid(thread), |
1043 kname->bytes(), kname->utf8_length(), | |
1044 name->bytes(), name->utf8_length(), | |
1045 sig->bytes(), sig->utf8_length()); | |
4006 | 1046 #else /* USDT2 */ |
1047 HOTSPOT_METHOD_RETURN( | |
1048 get_java_tid(thread), | |
1049 (char *) kname->bytes(), kname->utf8_length(), | |
1050 (char *) name->bytes(), name->utf8_length(), | |
1051 (char *) sig->bytes(), sig->utf8_length()); | |
1052 #endif /* USDT2 */ | |
0 | 1053 return 0; |
1054 JRT_END | |
1055 | |
1056 | |
1057 // Finds receiver, CallInfo (i.e. receiver method), and calling bytecode) | |
1058 // for a call current in progress, i.e., arguments has been pushed on stack | |
1059 // put callee has not been invoked yet. Used by: resolve virtual/static, | |
1060 // vtable updates, etc. Caller frame must be compiled. | |
1061 Handle SharedRuntime::find_callee_info(JavaThread* thread, Bytecodes::Code& bc, CallInfo& callinfo, TRAPS) { | |
1062 ResourceMark rm(THREAD); | |
1063 | |
1064 // last java frame on stack (which includes native call frames) | |
1065 vframeStream vfst(thread, true); // Do not skip and javaCalls | |
1066 | |
1067 return find_callee_info_helper(thread, vfst, bc, callinfo, CHECK_(Handle())); | |
1068 } | |
1069 | |
1070 | |
1071 // Finds receiver, CallInfo (i.e. receiver method), and calling bytecode | |
1072 // for a call current in progress, i.e., arguments has been pushed on stack | |
1073 // but callee has not been invoked yet. Caller frame must be compiled. | |
1074 Handle SharedRuntime::find_callee_info_helper(JavaThread* thread, | |
1075 vframeStream& vfst, | |
1076 Bytecodes::Code& bc, | |
1077 CallInfo& callinfo, TRAPS) { | |
1078 Handle receiver; | |
1079 Handle nullHandle; //create a handy null handle for exception returns | |
1080 | |
1081 assert(!vfst.at_end(), "Java frame must exist"); | |
1082 | |
1083 // Find caller and bci from vframe | |
1084 methodHandle caller (THREAD, vfst.method()); | |
1085 int bci = vfst.bci(); | |
1086 | |
1087 // Find bytecode | |
2142 | 1088 Bytecode_invoke bytecode(caller, bci); |
1089 bc = bytecode.java_code(); | |
1090 int bytecode_index = bytecode.index(); | |
0 | 1091 |
1092 // Find receiver for non-static call | |
1093 if (bc != Bytecodes::_invokestatic) { | |
1094 // This register map must be update since we need to find the receiver for | |
1095 // compiled frames. The receiver might be in a register. | |
1096 RegisterMap reg_map2(thread); | |
1097 frame stubFrame = thread->last_frame(); | |
1098 // Caller-frame is a compiled frame | |
1099 frame callerFrame = stubFrame.sender(®_map2); | |
1100 | |
2142 | 1101 methodHandle callee = bytecode.static_target(CHECK_(nullHandle)); |
0 | 1102 if (callee.is_null()) { |
1103 THROW_(vmSymbols::java_lang_NoSuchMethodException(), nullHandle); | |
1104 } | |
1105 // Retrieve from a compiled argument list | |
1106 receiver = Handle(THREAD, callerFrame.retrieve_receiver(®_map2)); | |
1107 | |
1108 if (receiver.is_null()) { | |
1109 THROW_(vmSymbols::java_lang_NullPointerException(), nullHandle); | |
1110 } | |
1111 } | |
1112 | |
1113 // Resolve method. This is parameterized by bytecode. | |
1114 constantPoolHandle constants (THREAD, caller->constants()); | |
1115 assert (receiver.is_null() || receiver->is_oop(), "wrong receiver"); | |
1116 LinkResolver::resolve_invoke(callinfo, receiver, constants, bytecode_index, bc, CHECK_(nullHandle)); | |
1117 | |
1118 #ifdef ASSERT | |
1119 // Check that the receiver klass is of the right subtype and that it is initialized for virtual calls | |
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1120 if (bc != Bytecodes::_invokestatic && bc != Bytecodes::_invokedynamic) { |
0 | 1121 assert(receiver.not_null(), "should have thrown exception"); |
1122 KlassHandle receiver_klass (THREAD, receiver->klass()); | |
1123 klassOop rk = constants->klass_ref_at(bytecode_index, CHECK_(nullHandle)); | |
1124 // klass is already loaded | |
1125 KlassHandle static_receiver_klass (THREAD, rk); | |
1126 assert(receiver_klass->is_subtype_of(static_receiver_klass()), "actual receiver must be subclass of static receiver klass"); | |
1127 if (receiver_klass->oop_is_instance()) { | |
1128 if (instanceKlass::cast(receiver_klass())->is_not_initialized()) { | |
1129 tty->print_cr("ERROR: Klass not yet initialized!!"); | |
1130 receiver_klass.print(); | |
1131 } | |
1132 assert (!instanceKlass::cast(receiver_klass())->is_not_initialized(), "receiver_klass must be initialized"); | |
1133 } | |
1134 } | |
1135 #endif | |
1136 | |
1137 return receiver; | |
1138 } | |
1139 | |
1140 methodHandle SharedRuntime::find_callee_method(JavaThread* thread, TRAPS) { | |
1141 ResourceMark rm(THREAD); | |
1142 // We need first to check if any Java activations (compiled, interpreted) | |
1143 // exist on the stack since last JavaCall. If not, we need | |
1144 // to get the target method from the JavaCall wrapper. | |
1145 vframeStream vfst(thread, true); // Do not skip any javaCalls | |
1146 methodHandle callee_method; | |
1147 if (vfst.at_end()) { | |
1148 // No Java frames were found on stack since we did the JavaCall. | |
1149 // Hence the stack can only contain an entry_frame. We need to | |
1150 // find the target method from the stub frame. | |
1151 RegisterMap reg_map(thread, false); | |
1152 frame fr = thread->last_frame(); | |
1153 assert(fr.is_runtime_frame(), "must be a runtimeStub"); | |
1154 fr = fr.sender(®_map); | |
1155 assert(fr.is_entry_frame(), "must be"); | |
1156 // fr is now pointing to the entry frame. | |
1157 callee_method = methodHandle(THREAD, fr.entry_frame_call_wrapper()->callee_method()); | |
1158 assert(fr.entry_frame_call_wrapper()->receiver() == NULL || !callee_method->is_static(), "non-null receiver for static call??"); | |
1159 } else { | |
1160 Bytecodes::Code bc; | |
1161 CallInfo callinfo; | |
1162 find_callee_info_helper(thread, vfst, bc, callinfo, CHECK_(methodHandle())); | |
1163 callee_method = callinfo.selected_method(); | |
1164 } | |
1165 assert(callee_method()->is_method(), "must be"); | |
1166 return callee_method; | |
1167 } | |
1168 | |
1169 // Resolves a call. | |
1170 methodHandle SharedRuntime::resolve_helper(JavaThread *thread, | |
1171 bool is_virtual, | |
1172 bool is_optimized, TRAPS) { | |
1173 methodHandle callee_method; | |
1174 callee_method = resolve_sub_helper(thread, is_virtual, is_optimized, THREAD); | |
1175 if (JvmtiExport::can_hotswap_or_post_breakpoint()) { | |
1176 int retry_count = 0; | |
1177 while (!HAS_PENDING_EXCEPTION && callee_method->is_old() && | |
1142 | 1178 callee_method->method_holder() != SystemDictionary::Object_klass()) { |
0 | 1179 // If has a pending exception then there is no need to re-try to |
1180 // resolve this method. | |
1181 // If the method has been redefined, we need to try again. | |
1182 // Hack: we have no way to update the vtables of arrays, so don't | |
1183 // require that java.lang.Object has been updated. | |
1184 | |
1185 // It is very unlikely that method is redefined more than 100 times | |
1186 // in the middle of resolve. If it is looping here more than 100 times | |
1187 // means then there could be a bug here. | |
1188 guarantee((retry_count++ < 100), | |
1189 "Could not resolve to latest version of redefined method"); | |
1190 // method is redefined in the middle of resolve so re-try. | |
1191 callee_method = resolve_sub_helper(thread, is_virtual, is_optimized, THREAD); | |
1192 } | |
1193 } | |
1194 return callee_method; | |
1195 } | |
1196 | |
1197 // Resolves a call. The compilers generate code for calls that go here | |
1198 // and are patched with the real destination of the call. | |
1199 methodHandle SharedRuntime::resolve_sub_helper(JavaThread *thread, | |
1200 bool is_virtual, | |
1201 bool is_optimized, TRAPS) { | |
1202 | |
1203 ResourceMark rm(thread); | |
1204 RegisterMap cbl_map(thread, false); | |
1205 frame caller_frame = thread->last_frame().sender(&cbl_map); | |
1206 | |
1295 | 1207 CodeBlob* caller_cb = caller_frame.cb(); |
1208 guarantee(caller_cb != NULL && caller_cb->is_nmethod(), "must be called from nmethod"); | |
1209 nmethod* caller_nm = caller_cb->as_nmethod_or_null(); | |
0 | 1210 // make sure caller is not getting deoptimized |
1211 // and removed before we are done with it. | |
1212 // CLEANUP - with lazy deopt shouldn't need this lock | |
1295 | 1213 nmethodLocker caller_lock(caller_nm); |
0 | 1214 |
1215 | |
1216 // determine call info & receiver | |
1217 // note: a) receiver is NULL for static calls | |
1218 // b) an exception is thrown if receiver is NULL for non-static calls | |
1219 CallInfo call_info; | |
1220 Bytecodes::Code invoke_code = Bytecodes::_illegal; | |
1221 Handle receiver = find_callee_info(thread, invoke_code, | |
1222 call_info, CHECK_(methodHandle())); | |
1223 methodHandle callee_method = call_info.selected_method(); | |
1224 | |
1225 assert((!is_virtual && invoke_code == Bytecodes::_invokestatic) || | |
1226 ( is_virtual && invoke_code != Bytecodes::_invokestatic), "inconsistent bytecode"); | |
1227 | |
1228 #ifndef PRODUCT | |
1229 // tracing/debugging/statistics | |
1230 int *addr = (is_optimized) ? (&_resolve_opt_virtual_ctr) : | |
1231 (is_virtual) ? (&_resolve_virtual_ctr) : | |
1232 (&_resolve_static_ctr); | |
1233 Atomic::inc(addr); | |
1234 | |
1235 if (TraceCallFixup) { | |
1236 ResourceMark rm(thread); | |
1237 tty->print("resolving %s%s (%s) call to", | |
1238 (is_optimized) ? "optimized " : "", (is_virtual) ? "virtual" : "static", | |
1239 Bytecodes::name(invoke_code)); | |
1240 callee_method->print_short_name(tty); | |
1241 tty->print_cr(" code: " INTPTR_FORMAT, callee_method->code()); | |
1242 } | |
1243 #endif | |
1244 | |
1295 | 1245 // JSR 292 |
1246 // If the resolved method is a MethodHandle invoke target the call | |
1247 // site must be a MethodHandle call site. | |
1248 if (callee_method->is_method_handle_invoke()) { | |
1249 assert(caller_nm->is_method_handle_return(caller_frame.pc()), "must be MH call site"); | |
1250 } | |
1251 | |
0 | 1252 // Compute entry points. This might require generation of C2I converter |
1253 // frames, so we cannot be holding any locks here. Furthermore, the | |
1254 // computation of the entry points is independent of patching the call. We | |
1255 // always return the entry-point, but we only patch the stub if the call has | |
1256 // not been deoptimized. Return values: For a virtual call this is an | |
1257 // (cached_oop, destination address) pair. For a static call/optimized | |
1258 // virtual this is just a destination address. | |
1259 | |
1260 StaticCallInfo static_call_info; | |
1261 CompiledICInfo virtual_call_info; | |
1262 | |
1263 // Make sure the callee nmethod does not get deoptimized and removed before | |
1264 // we are done patching the code. | |
1295 | 1265 nmethod* callee_nm = callee_method->code(); |
1266 nmethodLocker nl_callee(callee_nm); | |
0 | 1267 #ifdef ASSERT |
1295 | 1268 address dest_entry_point = callee_nm == NULL ? 0 : callee_nm->entry_point(); // used below |
0 | 1269 #endif |
1270 | |
1271 if (is_virtual) { | |
1272 assert(receiver.not_null(), "sanity check"); | |
1273 bool static_bound = call_info.resolved_method()->can_be_statically_bound(); | |
1274 KlassHandle h_klass(THREAD, receiver->klass()); | |
1275 CompiledIC::compute_monomorphic_entry(callee_method, h_klass, | |
1276 is_optimized, static_bound, virtual_call_info, | |
1277 CHECK_(methodHandle())); | |
1278 } else { | |
1279 // static call | |
1280 CompiledStaticCall::compute_entry(callee_method, static_call_info); | |
1281 } | |
1282 | |
1283 // grab lock, check for deoptimization and potentially patch caller | |
1284 { | |
1285 MutexLocker ml_patch(CompiledIC_lock); | |
1286 | |
1287 // Now that we are ready to patch if the methodOop was redefined then | |
1288 // don't update call site and let the caller retry. | |
1289 | |
1290 if (!callee_method->is_old()) { | |
1291 #ifdef ASSERT | |
1292 // We must not try to patch to jump to an already unloaded method. | |
1293 if (dest_entry_point != 0) { | |
1294 assert(CodeCache::find_blob(dest_entry_point) != NULL, | |
1295 "should not unload nmethod while locked"); | |
1296 } | |
1297 #endif | |
1298 if (is_virtual) { | |
1299 CompiledIC* inline_cache = CompiledIC_before(caller_frame.pc()); | |
1300 if (inline_cache->is_clean()) { | |
1301 inline_cache->set_to_monomorphic(virtual_call_info); | |
1302 } | |
1303 } else { | |
1304 CompiledStaticCall* ssc = compiledStaticCall_before(caller_frame.pc()); | |
1305 if (ssc->is_clean()) ssc->set(static_call_info); | |
1306 } | |
1307 } | |
1308 | |
1309 } // unlock CompiledIC_lock | |
1310 | |
1311 return callee_method; | |
1312 } | |
1313 | |
1314 | |
1315 // Inline caches exist only in compiled code | |
1316 JRT_BLOCK_ENTRY(address, SharedRuntime::handle_wrong_method_ic_miss(JavaThread* thread)) | |
1317 #ifdef ASSERT | |
1318 RegisterMap reg_map(thread, false); | |
1319 frame stub_frame = thread->last_frame(); | |
1320 assert(stub_frame.is_runtime_frame(), "sanity check"); | |
1321 frame caller_frame = stub_frame.sender(®_map); | |
1322 assert(!caller_frame.is_interpreted_frame() && !caller_frame.is_entry_frame(), "unexpected frame"); | |
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1323 assert(!caller_frame.is_ricochet_frame(), "unexpected frame"); |
0 | 1324 #endif /* ASSERT */ |
1325 | |
1326 methodHandle callee_method; | |
1327 JRT_BLOCK | |
1328 callee_method = SharedRuntime::handle_ic_miss_helper(thread, CHECK_NULL); | |
1329 // Return methodOop through TLS | |
1330 thread->set_vm_result(callee_method()); | |
1331 JRT_BLOCK_END | |
1332 // return compiled code entry point after potential safepoints | |
1333 assert(callee_method->verified_code_entry() != NULL, " Jump to zero!"); | |
1334 return callee_method->verified_code_entry(); | |
1335 JRT_END | |
1336 | |
1337 | |
1338 // Handle call site that has been made non-entrant | |
1339 JRT_BLOCK_ENTRY(address, SharedRuntime::handle_wrong_method(JavaThread* thread)) | |
1340 // 6243940 We might end up in here if the callee is deoptimized | |
1341 // as we race to call it. We don't want to take a safepoint if | |
1342 // the caller was interpreted because the caller frame will look | |
1343 // interpreted to the stack walkers and arguments are now | |
1344 // "compiled" so it is much better to make this transition | |
1345 // invisible to the stack walking code. The i2c path will | |
1346 // place the callee method in the callee_target. It is stashed | |
1347 // there because if we try and find the callee by normal means a | |
1348 // safepoint is possible and have trouble gc'ing the compiled args. | |
1349 RegisterMap reg_map(thread, false); | |
1350 frame stub_frame = thread->last_frame(); | |
1351 assert(stub_frame.is_runtime_frame(), "sanity check"); | |
1352 frame caller_frame = stub_frame.sender(®_map); | |
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1354 // MethodHandle invokes don't have a CompiledIC and should always |
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1355 // simply redispatch to the callee_target. |
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1356 address sender_pc = caller_frame.pc(); |
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1357 CodeBlob* sender_cb = caller_frame.cb(); |
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1358 nmethod* sender_nm = sender_cb->as_nmethod_or_null(); |
1204 | 1359 bool is_mh_invoke_via_adapter = false; // Direct c2c call or via adapter? |
1360 if (sender_nm != NULL && sender_nm->is_method_handle_return(sender_pc)) { | |
1361 // If the callee_target is set, then we have come here via an i2c | |
1362 // adapter. | |
1363 methodOop callee = thread->callee_target(); | |
1364 if (callee != NULL) { | |
1365 assert(callee->is_method(), "sanity"); | |
1366 is_mh_invoke_via_adapter = true; | |
1367 } | |
1368 } | |
1135
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1369 |
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1370 if (caller_frame.is_interpreted_frame() || |
1204 | 1371 caller_frame.is_entry_frame() || |
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1372 caller_frame.is_ricochet_frame() || |
1204 | 1373 is_mh_invoke_via_adapter) { |
0 | 1374 methodOop callee = thread->callee_target(); |
1375 guarantee(callee != NULL && callee->is_method(), "bad handshake"); | |
1376 thread->set_vm_result(callee); | |
1377 thread->set_callee_target(NULL); | |
1378 return callee->get_c2i_entry(); | |
1379 } | |
1380 | |
1381 // Must be compiled to compiled path which is safe to stackwalk | |
1382 methodHandle callee_method; | |
1383 JRT_BLOCK | |
1384 // Force resolving of caller (if we called from compiled frame) | |
1385 callee_method = SharedRuntime::reresolve_call_site(thread, CHECK_NULL); | |
1386 thread->set_vm_result(callee_method()); | |
1387 JRT_BLOCK_END | |
1388 // return compiled code entry point after potential safepoints | |
1389 assert(callee_method->verified_code_entry() != NULL, " Jump to zero!"); | |
1390 return callee_method->verified_code_entry(); | |
1391 JRT_END | |
1392 | |
1393 | |
1394 // resolve a static call and patch code | |
1395 JRT_BLOCK_ENTRY(address, SharedRuntime::resolve_static_call_C(JavaThread *thread )) | |
1396 methodHandle callee_method; | |
1397 JRT_BLOCK | |
1398 callee_method = SharedRuntime::resolve_helper(thread, false, false, CHECK_NULL); | |
1399 thread->set_vm_result(callee_method()); | |
1400 JRT_BLOCK_END | |
1401 // return compiled code entry point after potential safepoints | |
1402 assert(callee_method->verified_code_entry() != NULL, " Jump to zero!"); | |
1403 return callee_method->verified_code_entry(); | |
1404 JRT_END | |
1405 | |
1406 | |
1407 // resolve virtual call and update inline cache to monomorphic | |
1408 JRT_BLOCK_ENTRY(address, SharedRuntime::resolve_virtual_call_C(JavaThread *thread )) | |
1409 methodHandle callee_method; | |
1410 JRT_BLOCK | |
1411 callee_method = SharedRuntime::resolve_helper(thread, true, false, CHECK_NULL); | |
1412 thread->set_vm_result(callee_method()); | |
1413 JRT_BLOCK_END | |
1414 // return compiled code entry point after potential safepoints | |
1415 assert(callee_method->verified_code_entry() != NULL, " Jump to zero!"); | |
1416 return callee_method->verified_code_entry(); | |
1417 JRT_END | |
1418 | |
1419 | |
1420 // Resolve a virtual call that can be statically bound (e.g., always | |
1421 // monomorphic, so it has no inline cache). Patch code to resolved target. | |
1422 JRT_BLOCK_ENTRY(address, SharedRuntime::resolve_opt_virtual_call_C(JavaThread *thread)) | |
1423 methodHandle callee_method; | |
1424 JRT_BLOCK | |
1425 callee_method = SharedRuntime::resolve_helper(thread, true, true, CHECK_NULL); | |
1426 thread->set_vm_result(callee_method()); | |
1427 JRT_BLOCK_END | |
1428 // return compiled code entry point after potential safepoints | |
1429 assert(callee_method->verified_code_entry() != NULL, " Jump to zero!"); | |
1430 return callee_method->verified_code_entry(); | |
1431 JRT_END | |
1432 | |
1433 | |
1434 | |
1435 | |
1436 | |
1437 methodHandle SharedRuntime::handle_ic_miss_helper(JavaThread *thread, TRAPS) { | |
1438 ResourceMark rm(thread); | |
1439 CallInfo call_info; | |
1440 Bytecodes::Code bc; | |
1441 | |
1442 // receiver is NULL for static calls. An exception is thrown for NULL | |
1443 // receivers for non-static calls | |
1444 Handle receiver = find_callee_info(thread, bc, call_info, | |
1445 CHECK_(methodHandle())); | |
1446 // Compiler1 can produce virtual call sites that can actually be statically bound | |
1447 // If we fell thru to below we would think that the site was going megamorphic | |
1448 // when in fact the site can never miss. Worse because we'd think it was megamorphic | |
1449 // we'd try and do a vtable dispatch however methods that can be statically bound | |
1450 // don't have vtable entries (vtable_index < 0) and we'd blow up. So we force a | |
1451 // reresolution of the call site (as if we did a handle_wrong_method and not an | |
1452 // plain ic_miss) and the site will be converted to an optimized virtual call site | |
1453 // never to miss again. I don't believe C2 will produce code like this but if it | |
1454 // did this would still be the correct thing to do for it too, hence no ifdef. | |
1455 // | |
1456 if (call_info.resolved_method()->can_be_statically_bound()) { | |
1457 methodHandle callee_method = SharedRuntime::reresolve_call_site(thread, CHECK_(methodHandle())); | |
1458 if (TraceCallFixup) { | |
1459 RegisterMap reg_map(thread, false); | |
1460 frame caller_frame = thread->last_frame().sender(®_map); | |
1461 ResourceMark rm(thread); | |
1462 tty->print("converting IC miss to reresolve (%s) call to", Bytecodes::name(bc)); | |
1463 callee_method->print_short_name(tty); | |
1464 tty->print_cr(" from pc: " INTPTR_FORMAT, caller_frame.pc()); | |
1465 tty->print_cr(" code: " INTPTR_FORMAT, callee_method->code()); | |
1466 } | |
1467 return callee_method; | |
1468 } | |
1469 | |
1470 methodHandle callee_method = call_info.selected_method(); | |
1471 | |
1472 bool should_be_mono = false; | |
1473 | |
1474 #ifndef PRODUCT | |
1475 Atomic::inc(&_ic_miss_ctr); | |
1476 | |
1477 // Statistics & Tracing | |
1478 if (TraceCallFixup) { | |
1479 ResourceMark rm(thread); | |
1480 tty->print("IC miss (%s) call to", Bytecodes::name(bc)); | |
1481 callee_method->print_short_name(tty); | |
1482 tty->print_cr(" code: " INTPTR_FORMAT, callee_method->code()); | |
1483 } | |
1484 | |
1485 if (ICMissHistogram) { | |
1486 MutexLocker m(VMStatistic_lock); | |
1487 RegisterMap reg_map(thread, false); | |
1488 frame f = thread->last_frame().real_sender(®_map);// skip runtime stub | |
1489 // produce statistics under the lock | |
1490 trace_ic_miss(f.pc()); | |
1491 } | |
1492 #endif | |
1493 | |
1494 // install an event collector so that when a vtable stub is created the | |
1495 // profiler can be notified via a DYNAMIC_CODE_GENERATED event. The | |
1496 // event can't be posted when the stub is created as locks are held | |
1497 // - instead the event will be deferred until the event collector goes | |
1498 // out of scope. | |
1499 JvmtiDynamicCodeEventCollector event_collector; | |
1500 | |
1501 // Update inline cache to megamorphic. Skip update if caller has been | |
1502 // made non-entrant or we are called from interpreted. | |
1503 { MutexLocker ml_patch (CompiledIC_lock); | |
1504 RegisterMap reg_map(thread, false); | |
1505 frame caller_frame = thread->last_frame().sender(®_map); | |
1506 CodeBlob* cb = caller_frame.cb(); | |
1507 if (cb->is_nmethod() && ((nmethod*)cb)->is_in_use()) { | |
1508 // Not a non-entrant nmethod, so find inline_cache | |
1509 CompiledIC* inline_cache = CompiledIC_before(caller_frame.pc()); | |
1510 bool should_be_mono = false; | |
1511 if (inline_cache->is_optimized()) { | |
1512 if (TraceCallFixup) { | |
1513 ResourceMark rm(thread); | |
1514 tty->print("OPTIMIZED IC miss (%s) call to", Bytecodes::name(bc)); | |
1515 callee_method->print_short_name(tty); | |
1516 tty->print_cr(" code: " INTPTR_FORMAT, callee_method->code()); | |
1517 } | |
1518 should_be_mono = true; | |
1519 } else { | |
1520 compiledICHolderOop ic_oop = (compiledICHolderOop) inline_cache->cached_oop(); | |
1521 if ( ic_oop != NULL && ic_oop->is_compiledICHolder()) { | |
1522 | |
1523 if (receiver()->klass() == ic_oop->holder_klass()) { | |
1524 // This isn't a real miss. We must have seen that compiled code | |
1525 // is now available and we want the call site converted to a | |
1526 // monomorphic compiled call site. | |
1527 // We can't assert for callee_method->code() != NULL because it | |
1528 // could have been deoptimized in the meantime | |
1529 if (TraceCallFixup) { | |
1530 ResourceMark rm(thread); | |
1531 tty->print("FALSE IC miss (%s) converting to compiled call to", Bytecodes::name(bc)); | |
1532 callee_method->print_short_name(tty); | |
1533 tty->print_cr(" code: " INTPTR_FORMAT, callee_method->code()); | |
1534 } | |
1535 should_be_mono = true; | |
1536 } | |
1537 } | |
1538 } | |
1539 | |
1540 if (should_be_mono) { | |
1541 | |
1542 // We have a path that was monomorphic but was going interpreted | |
1543 // and now we have (or had) a compiled entry. We correct the IC | |
1544 // by using a new icBuffer. | |
1545 CompiledICInfo info; | |
1546 KlassHandle receiver_klass(THREAD, receiver()->klass()); | |
1547 inline_cache->compute_monomorphic_entry(callee_method, | |
1548 receiver_klass, | |
1549 inline_cache->is_optimized(), | |
1550 false, | |
1551 info, CHECK_(methodHandle())); | |
1552 inline_cache->set_to_monomorphic(info); | |
1553 } else if (!inline_cache->is_megamorphic() && !inline_cache->is_clean()) { | |
1554 // Change to megamorphic | |
1555 inline_cache->set_to_megamorphic(&call_info, bc, CHECK_(methodHandle())); | |
1556 } else { | |
1557 // Either clean or megamorphic | |
1558 } | |
1559 } | |
1560 } // Release CompiledIC_lock | |
1561 | |
1562 return callee_method; | |
1563 } | |
1564 | |
1565 // | |
1566 // Resets a call-site in compiled code so it will get resolved again. | |
1567 // This routines handles both virtual call sites, optimized virtual call | |
1568 // sites, and static call sites. Typically used to change a call sites | |
1569 // destination from compiled to interpreted. | |
1570 // | |
1571 methodHandle SharedRuntime::reresolve_call_site(JavaThread *thread, TRAPS) { | |
1572 ResourceMark rm(thread); | |
1573 RegisterMap reg_map(thread, false); | |
1574 frame stub_frame = thread->last_frame(); | |
1575 assert(stub_frame.is_runtime_frame(), "must be a runtimeStub"); | |
1576 frame caller = stub_frame.sender(®_map); | |
1577 | |
1578 // Do nothing if the frame isn't a live compiled frame. | |
1579 // nmethod could be deoptimized by the time we get here | |
1580 // so no update to the caller is needed. | |
1581 | |
1582 if (caller.is_compiled_frame() && !caller.is_deoptimized_frame()) { | |
1583 | |
1584 address pc = caller.pc(); | |
1585 Events::log("update call-site at pc " INTPTR_FORMAT, pc); | |
1586 | |
1587 // Default call_addr is the location of the "basic" call. | |
1588 // Determine the address of the call we a reresolving. With | |
1589 // Inline Caches we will always find a recognizable call. | |
1590 // With Inline Caches disabled we may or may not find a | |
1591 // recognizable call. We will always find a call for static | |
1592 // calls and for optimized virtual calls. For vanilla virtual | |
1593 // calls it depends on the state of the UseInlineCaches switch. | |
1594 // | |
1595 // With Inline Caches disabled we can get here for a virtual call | |
1596 // for two reasons: | |
1597 // 1 - calling an abstract method. The vtable for abstract methods | |
1598 // will run us thru handle_wrong_method and we will eventually | |
1599 // end up in the interpreter to throw the ame. | |
1600 // 2 - a racing deoptimization. We could be doing a vanilla vtable | |
1601 // call and between the time we fetch the entry address and | |
1602 // we jump to it the target gets deoptimized. Similar to 1 | |
1603 // we will wind up in the interprter (thru a c2i with c2). | |
1604 // | |
1605 address call_addr = NULL; | |
1606 { | |
1607 // Get call instruction under lock because another thread may be | |
1608 // busy patching it. | |
1609 MutexLockerEx ml_patch(Patching_lock, Mutex::_no_safepoint_check_flag); | |
1610 // Location of call instruction | |
1611 if (NativeCall::is_call_before(pc)) { | |
1612 NativeCall *ncall = nativeCall_before(pc); | |
1613 call_addr = ncall->instruction_address(); | |
1614 } | |
1615 } | |
1616 | |
1617 // Check for static or virtual call | |
1618 bool is_static_call = false; | |
1619 nmethod* caller_nm = CodeCache::find_nmethod(pc); | |
1620 // Make sure nmethod doesn't get deoptimized and removed until | |
1621 // this is done with it. | |
1622 // CLEANUP - with lazy deopt shouldn't need this lock | |
1623 nmethodLocker nmlock(caller_nm); | |
1624 | |
1625 if (call_addr != NULL) { | |
1626 RelocIterator iter(caller_nm, call_addr, call_addr+1); | |
1627 int ret = iter.next(); // Get item | |
1628 if (ret) { | |
1629 assert(iter.addr() == call_addr, "must find call"); | |
1630 if (iter.type() == relocInfo::static_call_type) { | |
1631 is_static_call = true; | |
1632 } else { | |
1633 assert(iter.type() == relocInfo::virtual_call_type || | |
1634 iter.type() == relocInfo::opt_virtual_call_type | |
1635 , "unexpected relocInfo. type"); | |
1636 } | |
1637 } else { | |
1638 assert(!UseInlineCaches, "relocation info. must exist for this address"); | |
1639 } | |
1640 | |
1641 // Cleaning the inline cache will force a new resolve. This is more robust | |
1642 // than directly setting it to the new destination, since resolving of calls | |
1643 // is always done through the same code path. (experience shows that it | |
1644 // leads to very hard to track down bugs, if an inline cache gets updated | |
1645 // to a wrong method). It should not be performance critical, since the | |
1646 // resolve is only done once. | |
1647 | |
1648 MutexLocker ml(CompiledIC_lock); | |
1649 // | |
1650 // We do not patch the call site if the nmethod has been made non-entrant | |
1651 // as it is a waste of time | |
1652 // | |
1653 if (caller_nm->is_in_use()) { | |
1654 if (is_static_call) { | |
1655 CompiledStaticCall* ssc= compiledStaticCall_at(call_addr); | |
1656 ssc->set_to_clean(); | |
1657 } else { | |
1658 // compiled, dispatched call (which used to call an interpreted method) | |
1659 CompiledIC* inline_cache = CompiledIC_at(call_addr); | |
1660 inline_cache->set_to_clean(); | |
1661 } | |
1662 } | |
1663 } | |
1664 | |
1665 } | |
1666 | |
1667 methodHandle callee_method = find_callee_method(thread, CHECK_(methodHandle())); | |
1668 | |
1669 | |
1670 #ifndef PRODUCT | |
1671 Atomic::inc(&_wrong_method_ctr); | |
1672 | |
1673 if (TraceCallFixup) { | |
1674 ResourceMark rm(thread); | |
1675 tty->print("handle_wrong_method reresolving call to"); | |
1676 callee_method->print_short_name(tty); | |
1677 tty->print_cr(" code: " INTPTR_FORMAT, callee_method->code()); | |
1678 } | |
1679 #endif | |
1680 | |
1681 return callee_method; | |
1682 } | |
1683 | |
1684 // --------------------------------------------------------------------------- | |
1685 // We are calling the interpreter via a c2i. Normally this would mean that | |
1686 // we were called by a compiled method. However we could have lost a race | |
1687 // where we went int -> i2c -> c2i and so the caller could in fact be | |
1205 | 1688 // interpreted. If the caller is compiled we attempt to patch the caller |
0 | 1689 // so he no longer calls into the interpreter. |
1690 IRT_LEAF(void, SharedRuntime::fixup_callers_callsite(methodOopDesc* method, address caller_pc)) | |
1691 methodOop moop(method); | |
1692 | |
1693 address entry_point = moop->from_compiled_entry(); | |
1694 | |
1695 // It's possible that deoptimization can occur at a call site which hasn't | |
1696 // been resolved yet, in which case this function will be called from | |
1697 // an nmethod that has been patched for deopt and we can ignore the | |
1698 // request for a fixup. | |
1699 // Also it is possible that we lost a race in that from_compiled_entry | |
1700 // is now back to the i2c in that case we don't need to patch and if | |
1701 // we did we'd leap into space because the callsite needs to use | |
1702 // "to interpreter" stub in order to load up the methodOop. Don't | |
1703 // ask me how I know this... | |
1704 | |
1705 CodeBlob* cb = CodeCache::find_blob(caller_pc); | |
1205 | 1706 if (!cb->is_nmethod() || entry_point == moop->get_c2i_entry()) { |
1707 return; | |
1708 } | |
1709 | |
1710 // The check above makes sure this is a nmethod. | |
1711 nmethod* nm = cb->as_nmethod_or_null(); | |
1712 assert(nm, "must be"); | |
1713 | |
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1714 // Get the return PC for the passed caller PC. |
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1715 address return_pc = caller_pc + frame::pc_return_offset; |
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1716 |
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1717 // Don't fixup method handle call sites as the executed method |
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1718 // handle adapters are doing the required MethodHandle chain work. |
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1719 if (nm->is_method_handle_return(return_pc)) { |
0 | 1720 return; |
1721 } | |
1722 | |
1723 // There is a benign race here. We could be attempting to patch to a compiled | |
1724 // entry point at the same time the callee is being deoptimized. If that is | |
1725 // the case then entry_point may in fact point to a c2i and we'd patch the | |
1726 // call site with the same old data. clear_code will set code() to NULL | |
1727 // at the end of it. If we happen to see that NULL then we can skip trying | |
1728 // to patch. If we hit the window where the callee has a c2i in the | |
1729 // from_compiled_entry and the NULL isn't present yet then we lose the race | |
1730 // and patch the code with the same old data. Asi es la vida. | |
1731 | |
1732 if (moop->code() == NULL) return; | |
1733 | |
1205 | 1734 if (nm->is_in_use()) { |
0 | 1735 |
1736 // Expect to find a native call there (unless it was no-inline cache vtable dispatch) | |
1737 MutexLockerEx ml_patch(Patching_lock, Mutex::_no_safepoint_check_flag); | |
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1738 if (NativeCall::is_call_before(return_pc)) { |
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1739 NativeCall *call = nativeCall_before(return_pc); |
0 | 1740 // |
1741 // bug 6281185. We might get here after resolving a call site to a vanilla | |
1742 // virtual call. Because the resolvee uses the verified entry it may then | |
1743 // see compiled code and attempt to patch the site by calling us. This would | |
1744 // then incorrectly convert the call site to optimized and its downhill from | |
1745 // there. If you're lucky you'll get the assert in the bugid, if not you've | |
1746 // just made a call site that could be megamorphic into a monomorphic site | |
1747 // for the rest of its life! Just another racing bug in the life of | |
1748 // fixup_callers_callsite ... | |
1749 // | |
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1750 RelocIterator iter(nm, call->instruction_address(), call->next_instruction_address()); |
0 | 1751 iter.next(); |
1752 assert(iter.has_current(), "must have a reloc at java call site"); | |
1753 relocInfo::relocType typ = iter.reloc()->type(); | |
1754 if ( typ != relocInfo::static_call_type && | |
1755 typ != relocInfo::opt_virtual_call_type && | |
1756 typ != relocInfo::static_stub_type) { | |
1757 return; | |
1758 } | |
1759 address destination = call->destination(); | |
1760 if (destination != entry_point) { | |
1761 CodeBlob* callee = CodeCache::find_blob(destination); | |
1762 // callee == cb seems weird. It means calling interpreter thru stub. | |
1763 if (callee == cb || callee->is_adapter_blob()) { | |
1764 // static call or optimized virtual | |
1765 if (TraceCallFixup) { | |
1204 | 1766 tty->print("fixup callsite at " INTPTR_FORMAT " to compiled code for", caller_pc); |
0 | 1767 moop->print_short_name(tty); |
1768 tty->print_cr(" to " INTPTR_FORMAT, entry_point); | |
1769 } | |
1770 call->set_destination_mt_safe(entry_point); | |
1771 } else { | |
1772 if (TraceCallFixup) { | |
1773 tty->print("failed to fixup callsite at " INTPTR_FORMAT " to compiled code for", caller_pc); | |
1774 moop->print_short_name(tty); | |
1775 tty->print_cr(" to " INTPTR_FORMAT, entry_point); | |
1776 } | |
1777 // assert is too strong could also be resolve destinations. | |
1778 // assert(InlineCacheBuffer::contains(destination) || VtableStubs::contains(destination), "must be"); | |
1779 } | |
1780 } else { | |
1781 if (TraceCallFixup) { | |
1204 | 1782 tty->print("already patched callsite at " INTPTR_FORMAT " to compiled code for", caller_pc); |
0 | 1783 moop->print_short_name(tty); |
1784 tty->print_cr(" to " INTPTR_FORMAT, entry_point); | |
1785 } | |
1786 } | |
1787 } | |
1788 } | |
1789 IRT_END | |
1790 | |
1791 | |
1792 // same as JVM_Arraycopy, but called directly from compiled code | |
1793 JRT_ENTRY(void, SharedRuntime::slow_arraycopy_C(oopDesc* src, jint src_pos, | |
1794 oopDesc* dest, jint dest_pos, | |
1795 jint length, | |
1796 JavaThread* thread)) { | |
1797 #ifndef PRODUCT | |
1798 _slow_array_copy_ctr++; | |
1799 #endif | |
1800 // Check if we have null pointers | |
1801 if (src == NULL || dest == NULL) { | |
1802 THROW(vmSymbols::java_lang_NullPointerException()); | |
1803 } | |
1804 // Do the copy. The casts to arrayOop are necessary to the copy_array API, | |
1805 // even though the copy_array API also performs dynamic checks to ensure | |
1806 // that src and dest are truly arrays (and are conformable). | |
1807 // The copy_array mechanism is awkward and could be removed, but | |
1808 // the compilers don't call this function except as a last resort, | |
1809 // so it probably doesn't matter. | |
1810 Klass::cast(src->klass())->copy_array((arrayOopDesc*)src, src_pos, | |
1811 (arrayOopDesc*)dest, dest_pos, | |
1812 length, thread); | |
1813 } | |
1814 JRT_END | |
1815 | |
1816 char* SharedRuntime::generate_class_cast_message( | |
1817 JavaThread* thread, const char* objName) { | |
1818 | |
1819 // Get target class name from the checkcast instruction | |
1820 vframeStream vfst(thread, true); | |
1821 assert(!vfst.at_end(), "Java frame must exist"); | |
2142 | 1822 Bytecode_checkcast cc(vfst.method(), vfst.method()->bcp_from(vfst.bci())); |
0 | 1823 Klass* targetKlass = Klass::cast(vfst.method()->constants()->klass_at( |
2142 | 1824 cc.index(), thread)); |
0 | 1825 return generate_class_cast_message(objName, targetKlass->external_name()); |
1826 } | |
1827 | |
710 | 1828 char* SharedRuntime::generate_wrong_method_type_message(JavaThread* thread, |
1829 oopDesc* required, | |
1830 oopDesc* actual) { | |
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1831 if (TraceMethodHandles) { |
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1832 tty->print_cr("WrongMethodType thread="PTR_FORMAT" req="PTR_FORMAT" act="PTR_FORMAT"", |
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1833 thread, required, actual); |
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1834 } |
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1835 assert(EnableInvokeDynamic, ""); |
710 | 1836 oop singleKlass = wrong_method_type_is_for_single_argument(thread, required); |
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1837 char* message = NULL; |
710 | 1838 if (singleKlass != NULL) { |
1839 const char* objName = "argument or return value"; | |
1840 if (actual != NULL) { | |
1841 // be flexible about the junk passed in: | |
1842 klassOop ak = (actual->is_klass() | |
1843 ? (klassOop)actual | |
1844 : actual->klass()); | |
1845 objName = Klass::cast(ak)->external_name(); | |
1846 } | |
1847 Klass* targetKlass = Klass::cast(required->is_klass() | |
1848 ? (klassOop)required | |
1849 : java_lang_Class::as_klassOop(required)); | |
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1850 message = generate_class_cast_message(objName, targetKlass->external_name()); |
710 | 1851 } else { |
1852 // %%% need to get the MethodType string, without messing around too much | |
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1853 const char* desc = NULL; |
710 | 1854 // Get a signature from the invoke instruction |
1855 const char* mhName = "method handle"; | |
1856 const char* targetType = "the required signature"; | |
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1857 int targetArity = -1, mhArity = -1; |
710 | 1858 vframeStream vfst(thread, true); |
1859 if (!vfst.at_end()) { | |
2142 | 1860 Bytecode_invoke call(vfst.method(), vfst.bci()); |
710 | 1861 methodHandle target; |
1862 { | |
1863 EXCEPTION_MARK; | |
2142 | 1864 target = call.static_target(THREAD); |
710 | 1865 if (HAS_PENDING_EXCEPTION) { CLEAR_PENDING_EXCEPTION; } |
1866 } | |
1867 if (target.not_null() | |
1868 && target->is_method_handle_invoke() | |
1869 && required == target->method_handle_type()) { | |
1870 targetType = target->signature()->as_C_string(); | |
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1871 targetArity = ArgumentCount(target->signature()).size(); |
710 | 1872 } |
1873 } | |
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1874 KlassHandle kignore; int dmf_flags = 0; |
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1875 methodHandle actual_method = MethodHandles::decode_method(actual, kignore, dmf_flags); |
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1876 if ((dmf_flags & ~(MethodHandles::_dmf_has_receiver | |
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1877 MethodHandles::_dmf_does_dispatch | |
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1878 MethodHandles::_dmf_from_interface)) != 0) |
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1879 actual_method = methodHandle(); // MH does extra binds, drops, etc. |
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1880 bool has_receiver = ((dmf_flags & MethodHandles::_dmf_has_receiver) != 0); |
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1881 if (actual_method.not_null()) { |
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1882 mhName = actual_method->signature()->as_C_string(); |
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1883 mhArity = ArgumentCount(actual_method->signature()).size(); |
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1884 if (!actual_method->is_static()) mhArity += 1; |
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1885 } else if (java_lang_invoke_MethodHandle::is_instance(actual)) { |
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1886 oopDesc* mhType = java_lang_invoke_MethodHandle::type(actual); |
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1887 mhArity = java_lang_invoke_MethodType::ptype_count(mhType); |
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1888 stringStream st; |
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1889 java_lang_invoke_MethodType::print_signature(mhType, &st); |
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1890 mhName = st.as_string(); |
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1891 } |
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1892 if (targetArity != -1 && targetArity != mhArity) { |
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1893 if (has_receiver && targetArity == mhArity-1) |
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1894 desc = " cannot be called without a receiver argument as "; |
710 | 1895 else |
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1896 desc = " cannot be called with a different arity as "; |
710 | 1897 } |
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1898 message = generate_class_cast_message(mhName, targetType, |
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1899 desc != NULL ? desc : |
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1900 " cannot be called as "); |
710 | 1901 } |
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1902 if (TraceMethodHandles) { |
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1903 tty->print_cr("WrongMethodType => message=%s", message); |
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1904 } |
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1905 return message; |
710 | 1906 } |
1907 | |
1908 oop SharedRuntime::wrong_method_type_is_for_single_argument(JavaThread* thr, | |
1909 oopDesc* required) { | |
1910 if (required == NULL) return NULL; | |
1142 | 1911 if (required->klass() == SystemDictionary::Class_klass()) |
710 | 1912 return required; |
1913 if (required->is_klass()) | |
1914 return Klass::cast(klassOop(required))->java_mirror(); | |
1915 return NULL; | |
1916 } | |
1917 | |
1918 | |
0 | 1919 char* SharedRuntime::generate_class_cast_message( |
710 | 1920 const char* objName, const char* targetKlassName, const char* desc) { |
0 | 1921 size_t msglen = strlen(objName) + strlen(desc) + strlen(targetKlassName) + 1; |
1922 | |
53 | 1923 char* message = NEW_RESOURCE_ARRAY(char, msglen); |
0 | 1924 if (NULL == message) { |
53 | 1925 // Shouldn't happen, but don't cause even more problems if it does |
0 | 1926 message = const_cast<char*>(objName); |
1927 } else { | |
1928 jio_snprintf(message, msglen, "%s%s%s", objName, desc, targetKlassName); | |
1929 } | |
1930 return message; | |
1931 } | |
1932 | |
1933 JRT_LEAF(void, SharedRuntime::reguard_yellow_pages()) | |
1934 (void) JavaThread::current()->reguard_stack(); | |
1935 JRT_END | |
1936 | |
1937 | |
1938 // Handles the uncommon case in locking, i.e., contention or an inflated lock. | |
1939 #ifndef PRODUCT | |
1940 int SharedRuntime::_monitor_enter_ctr=0; | |
1941 #endif | |
1942 JRT_ENTRY_NO_ASYNC(void, SharedRuntime::complete_monitor_locking_C(oopDesc* _obj, BasicLock* lock, JavaThread* thread)) | |
1943 oop obj(_obj); | |
1944 #ifndef PRODUCT | |
1945 _monitor_enter_ctr++; // monitor enter slow | |
1946 #endif | |
1947 if (PrintBiasedLockingStatistics) { | |
1948 Atomic::inc(BiasedLocking::slow_path_entry_count_addr()); | |
1949 } | |
1950 Handle h_obj(THREAD, obj); | |
1951 if (UseBiasedLocking) { | |
1952 // Retry fast entry if bias is revoked to avoid unnecessary inflation | |
1953 ObjectSynchronizer::fast_enter(h_obj, lock, true, CHECK); | |
1954 } else { | |
1955 ObjectSynchronizer::slow_enter(h_obj, lock, CHECK); | |
1956 } | |
1957 assert(!HAS_PENDING_EXCEPTION, "Should have no exception here"); | |
1958 JRT_END | |
1959 | |
1960 #ifndef PRODUCT | |
1961 int SharedRuntime::_monitor_exit_ctr=0; | |
1962 #endif | |
1963 // Handles the uncommon cases of monitor unlocking in compiled code | |
1964 JRT_LEAF(void, SharedRuntime::complete_monitor_unlocking_C(oopDesc* _obj, BasicLock* lock)) | |
1965 oop obj(_obj); | |
1966 #ifndef PRODUCT | |
1967 _monitor_exit_ctr++; // monitor exit slow | |
1968 #endif | |
1969 Thread* THREAD = JavaThread::current(); | |
1970 // I'm not convinced we need the code contained by MIGHT_HAVE_PENDING anymore | |
1971 // testing was unable to ever fire the assert that guarded it so I have removed it. | |
1972 assert(!HAS_PENDING_EXCEPTION, "Do we need code below anymore?"); | |
1973 #undef MIGHT_HAVE_PENDING | |
1974 #ifdef MIGHT_HAVE_PENDING | |
1975 // Save and restore any pending_exception around the exception mark. | |
1976 // While the slow_exit must not throw an exception, we could come into | |
1977 // this routine with one set. | |
1978 oop pending_excep = NULL; | |
1979 const char* pending_file; | |
1980 int pending_line; | |
1981 if (HAS_PENDING_EXCEPTION) { | |
1982 pending_excep = PENDING_EXCEPTION; | |
1983 pending_file = THREAD->exception_file(); | |
1984 pending_line = THREAD->exception_line(); | |
1985 CLEAR_PENDING_EXCEPTION; | |
1986 } | |
1987 #endif /* MIGHT_HAVE_PENDING */ | |
1988 | |
1989 { | |
1990 // Exit must be non-blocking, and therefore no exceptions can be thrown. | |
1991 EXCEPTION_MARK; | |
1992 ObjectSynchronizer::slow_exit(obj, lock, THREAD); | |
1993 } | |
1994 | |
1995 #ifdef MIGHT_HAVE_PENDING | |
1996 if (pending_excep != NULL) { | |
1997 THREAD->set_pending_exception(pending_excep, pending_file, pending_line); | |
1998 } | |
1999 #endif /* MIGHT_HAVE_PENDING */ | |
2000 JRT_END | |
2001 | |
2002 #ifndef PRODUCT | |
2003 | |
2004 void SharedRuntime::print_statistics() { | |
2005 ttyLocker ttyl; | |
2006 if (xtty != NULL) xtty->head("statistics type='SharedRuntime'"); | |
2007 | |
2008 if (_monitor_enter_ctr ) tty->print_cr("%5d monitor enter slow", _monitor_enter_ctr); | |
2009 if (_monitor_exit_ctr ) tty->print_cr("%5d monitor exit slow", _monitor_exit_ctr); | |
2010 if (_throw_null_ctr) tty->print_cr("%5d implicit null throw", _throw_null_ctr); | |
2011 | |
2012 SharedRuntime::print_ic_miss_histogram(); | |
2013 | |
2014 if (CountRemovableExceptions) { | |
2015 if (_nof_removable_exceptions > 0) { | |
2016 Unimplemented(); // this counter is not yet incremented | |
2017 tty->print_cr("Removable exceptions: %d", _nof_removable_exceptions); | |
2018 } | |
2019 } | |
2020 | |
2021 // Dump the JRT_ENTRY counters | |
2022 if( _new_instance_ctr ) tty->print_cr("%5d new instance requires GC", _new_instance_ctr); | |
2023 if( _new_array_ctr ) tty->print_cr("%5d new array requires GC", _new_array_ctr); | |
2024 if( _multi1_ctr ) tty->print_cr("%5d multianewarray 1 dim", _multi1_ctr); | |
2025 if( _multi2_ctr ) tty->print_cr("%5d multianewarray 2 dim", _multi2_ctr); | |
2026 if( _multi3_ctr ) tty->print_cr("%5d multianewarray 3 dim", _multi3_ctr); | |
2027 if( _multi4_ctr ) tty->print_cr("%5d multianewarray 4 dim", _multi4_ctr); | |
2028 if( _multi5_ctr ) tty->print_cr("%5d multianewarray 5 dim", _multi5_ctr); | |
2029 | |
2030 tty->print_cr("%5d inline cache miss in compiled", _ic_miss_ctr ); | |
2031 tty->print_cr("%5d wrong method", _wrong_method_ctr ); | |
2032 tty->print_cr("%5d unresolved static call site", _resolve_static_ctr ); | |
2033 tty->print_cr("%5d unresolved virtual call site", _resolve_virtual_ctr ); | |
2034 tty->print_cr("%5d unresolved opt virtual call site", _resolve_opt_virtual_ctr ); | |
2035 | |
2036 if( _mon_enter_stub_ctr ) tty->print_cr("%5d monitor enter stub", _mon_enter_stub_ctr ); | |
2037 if( _mon_exit_stub_ctr ) tty->print_cr("%5d monitor exit stub", _mon_exit_stub_ctr ); | |
2038 if( _mon_enter_ctr ) tty->print_cr("%5d monitor enter slow", _mon_enter_ctr ); | |
2039 if( _mon_exit_ctr ) tty->print_cr("%5d monitor exit slow", _mon_exit_ctr ); | |
2040 if( _partial_subtype_ctr) tty->print_cr("%5d slow partial subtype", _partial_subtype_ctr ); | |
2041 if( _jbyte_array_copy_ctr ) tty->print_cr("%5d byte array copies", _jbyte_array_copy_ctr ); | |
2042 if( _jshort_array_copy_ctr ) tty->print_cr("%5d short array copies", _jshort_array_copy_ctr ); | |
2043 if( _jint_array_copy_ctr ) tty->print_cr("%5d int array copies", _jint_array_copy_ctr ); | |
2044 if( _jlong_array_copy_ctr ) tty->print_cr("%5d long array copies", _jlong_array_copy_ctr ); | |
2045 if( _oop_array_copy_ctr ) tty->print_cr("%5d oop array copies", _oop_array_copy_ctr ); | |
2046 if( _checkcast_array_copy_ctr ) tty->print_cr("%5d checkcast array copies", _checkcast_array_copy_ctr ); | |
2047 if( _unsafe_array_copy_ctr ) tty->print_cr("%5d unsafe array copies", _unsafe_array_copy_ctr ); | |
2048 if( _generic_array_copy_ctr ) tty->print_cr("%5d generic array copies", _generic_array_copy_ctr ); | |
2049 if( _slow_array_copy_ctr ) tty->print_cr("%5d slow array copies", _slow_array_copy_ctr ); | |
2050 if( _find_handler_ctr ) tty->print_cr("%5d find exception handler", _find_handler_ctr ); | |
2051 if( _rethrow_ctr ) tty->print_cr("%5d rethrow handler", _rethrow_ctr ); | |
2052 | |
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2053 AdapterHandlerLibrary::print_statistics(); |
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2054 |
0 | 2055 if (xtty != NULL) xtty->tail("statistics"); |
2056 } | |
2057 | |
2058 inline double percent(int x, int y) { | |
2059 return 100.0 * x / MAX2(y, 1); | |
2060 } | |
2061 | |
2062 class MethodArityHistogram { | |
2063 public: | |
2064 enum { MAX_ARITY = 256 }; | |
2065 private: | |
2066 static int _arity_histogram[MAX_ARITY]; // histogram of #args | |
2067 static int _size_histogram[MAX_ARITY]; // histogram of arg size in words | |
2068 static int _max_arity; // max. arity seen | |
2069 static int _max_size; // max. arg size seen | |
2070 | |
2071 static void add_method_to_histogram(nmethod* nm) { | |
2072 methodOop m = nm->method(); | |
2073 ArgumentCount args(m->signature()); | |
2074 int arity = args.size() + (m->is_static() ? 0 : 1); | |
2075 int argsize = m->size_of_parameters(); | |
2076 arity = MIN2(arity, MAX_ARITY-1); | |
2077 argsize = MIN2(argsize, MAX_ARITY-1); | |
2078 int count = nm->method()->compiled_invocation_count(); | |
2079 _arity_histogram[arity] += count; | |
2080 _size_histogram[argsize] += count; | |
2081 _max_arity = MAX2(_max_arity, arity); | |
2082 _max_size = MAX2(_max_size, argsize); | |
2083 } | |
2084 | |
2085 void print_histogram_helper(int n, int* histo, const char* name) { | |
2086 const int N = MIN2(5, n); | |
2087 tty->print_cr("\nHistogram of call arity (incl. rcvr, calls to compiled methods only):"); | |
2088 double sum = 0; | |
2089 double weighted_sum = 0; | |
2090 int i; | |
2091 for (i = 0; i <= n; i++) { sum += histo[i]; weighted_sum += i*histo[i]; } | |
2092 double rest = sum; | |
2093 double percent = sum / 100; | |
2094 for (i = 0; i <= N; i++) { | |
2095 rest -= histo[i]; | |
2096 tty->print_cr("%4d: %7d (%5.1f%%)", i, histo[i], histo[i] / percent); | |
2097 } | |
2098 tty->print_cr("rest: %7d (%5.1f%%))", (int)rest, rest / percent); | |
2099 tty->print_cr("(avg. %s = %3.1f, max = %d)", name, weighted_sum / sum, n); | |
2100 } | |
2101 | |
2102 void print_histogram() { | |
2103 tty->print_cr("\nHistogram of call arity (incl. rcvr, calls to compiled methods only):"); | |
2104 print_histogram_helper(_max_arity, _arity_histogram, "arity"); | |
2105 tty->print_cr("\nSame for parameter size (in words):"); | |
2106 print_histogram_helper(_max_size, _size_histogram, "size"); | |
2107 tty->cr(); | |
2108 } | |
2109 | |
2110 public: | |
2111 MethodArityHistogram() { | |
2112 MutexLockerEx mu(CodeCache_lock, Mutex::_no_safepoint_check_flag); | |
2113 _max_arity = _max_size = 0; | |
2114 for (int i = 0; i < MAX_ARITY; i++) _arity_histogram[i] = _size_histogram [i] = 0; | |
2115 CodeCache::nmethods_do(add_method_to_histogram); | |
2116 print_histogram(); | |
2117 } | |
2118 }; | |
2119 | |
2120 int MethodArityHistogram::_arity_histogram[MethodArityHistogram::MAX_ARITY]; | |
2121 int MethodArityHistogram::_size_histogram[MethodArityHistogram::MAX_ARITY]; | |
2122 int MethodArityHistogram::_max_arity; | |
2123 int MethodArityHistogram::_max_size; | |
2124 | |
2125 void SharedRuntime::print_call_statistics(int comp_total) { | |
2126 tty->print_cr("Calls from compiled code:"); | |
2127 int total = _nof_normal_calls + _nof_interface_calls + _nof_static_calls; | |
2128 int mono_c = _nof_normal_calls - _nof_optimized_calls - _nof_megamorphic_calls; | |
2129 int mono_i = _nof_interface_calls - _nof_optimized_interface_calls - _nof_megamorphic_interface_calls; | |
2130 tty->print_cr("\t%9d (%4.1f%%) total non-inlined ", total, percent(total, total)); | |
2131 tty->print_cr("\t%9d (%4.1f%%) virtual calls ", _nof_normal_calls, percent(_nof_normal_calls, total)); | |
2132 tty->print_cr("\t %9d (%3.0f%%) inlined ", _nof_inlined_calls, percent(_nof_inlined_calls, _nof_normal_calls)); | |
2133 tty->print_cr("\t %9d (%3.0f%%) optimized ", _nof_optimized_calls, percent(_nof_optimized_calls, _nof_normal_calls)); | |
2134 tty->print_cr("\t %9d (%3.0f%%) monomorphic ", mono_c, percent(mono_c, _nof_normal_calls)); | |
2135 tty->print_cr("\t %9d (%3.0f%%) megamorphic ", _nof_megamorphic_calls, percent(_nof_megamorphic_calls, _nof_normal_calls)); | |
2136 tty->print_cr("\t%9d (%4.1f%%) interface calls ", _nof_interface_calls, percent(_nof_interface_calls, total)); | |
2137 tty->print_cr("\t %9d (%3.0f%%) inlined ", _nof_inlined_interface_calls, percent(_nof_inlined_interface_calls, _nof_interface_calls)); | |
2138 tty->print_cr("\t %9d (%3.0f%%) optimized ", _nof_optimized_interface_calls, percent(_nof_optimized_interface_calls, _nof_interface_calls)); | |
2139 tty->print_cr("\t %9d (%3.0f%%) monomorphic ", mono_i, percent(mono_i, _nof_interface_calls)); | |
2140 tty->print_cr("\t %9d (%3.0f%%) megamorphic ", _nof_megamorphic_interface_calls, percent(_nof_megamorphic_interface_calls, _nof_interface_calls)); | |
2141 tty->print_cr("\t%9d (%4.1f%%) static/special calls", _nof_static_calls, percent(_nof_static_calls, total)); | |
2142 tty->print_cr("\t %9d (%3.0f%%) inlined ", _nof_inlined_static_calls, percent(_nof_inlined_static_calls, _nof_static_calls)); | |
2143 tty->cr(); | |
2144 tty->print_cr("Note 1: counter updates are not MT-safe."); | |
2145 tty->print_cr("Note 2: %% in major categories are relative to total non-inlined calls;"); | |
2146 tty->print_cr(" %% in nested categories are relative to their category"); | |
2147 tty->print_cr(" (and thus add up to more than 100%% with inlining)"); | |
2148 tty->cr(); | |
2149 | |
2150 MethodArityHistogram h; | |
2151 } | |
2152 #endif | |
2153 | |
2154 | |
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2155 // A simple wrapper class around the calling convention information |
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2156 // that allows sharing of adapters for the same calling convention. |
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2157 class AdapterFingerPrint : public CHeapObj { |
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2158 private: |
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2159 union { |
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2160 int _compact[3]; |
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2161 int* _fingerprint; |
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2162 } _value; |
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2163 int _length; // A negative length indicates the fingerprint is in the compact form, |
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2164 // Otherwise _value._fingerprint is the array. |
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2165 |
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2166 // Remap BasicTypes that are handled equivalently by the adapters. |
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2167 // These are correct for the current system but someday it might be |
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2168 // necessary to make this mapping platform dependent. |
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2169 static BasicType adapter_encoding(BasicType in) { |
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2170 assert((~0xf & in) == 0, "must fit in 4 bits"); |
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2171 switch(in) { |
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2172 case T_BOOLEAN: |
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2173 case T_BYTE: |
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2174 case T_SHORT: |
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2175 case T_CHAR: |
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2176 // There are all promoted to T_INT in the calling convention |
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2177 return T_INT; |
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2178 |
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2179 case T_OBJECT: |
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2180 case T_ARRAY: |
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2181 #ifdef _LP64 |
1506 | 2182 return T_LONG; |
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2183 #else |
1506 | 2184 return T_INT; |
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2185 #endif |
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2186 |
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2187 case T_INT: |
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2188 case T_LONG: |
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2189 case T_FLOAT: |
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2190 case T_DOUBLE: |
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2191 case T_VOID: |
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2192 return in; |
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|
2193 |
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2194 default: |
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2195 ShouldNotReachHere(); |
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2196 return T_CONFLICT; |
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2197 } |
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2198 } |
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2199 |
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2200 public: |
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2201 AdapterFingerPrint(int total_args_passed, BasicType* sig_bt) { |
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2202 // The fingerprint is based on the BasicType signature encoded |
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2203 // into an array of ints with eight entries per int. |
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2204 int* ptr; |
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2205 int len = (total_args_passed + 7) >> 3; |
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2206 if (len <= (int)(sizeof(_value._compact) / sizeof(int))) { |
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2207 _value._compact[0] = _value._compact[1] = _value._compact[2] = 0; |
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2208 // Storing the signature encoded as signed chars hits about 98% |
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2209 // of the time. |
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2210 _length = -len; |
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2211 ptr = _value._compact; |
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2212 } else { |
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2213 _length = len; |
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2214 _value._fingerprint = NEW_C_HEAP_ARRAY(int, _length); |
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2215 ptr = _value._fingerprint; |
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2216 } |
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2217 |
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2218 // Now pack the BasicTypes with 8 per int |
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2219 int sig_index = 0; |
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2220 for (int index = 0; index < len; index++) { |
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2221 int value = 0; |
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2222 for (int byte = 0; byte < 8; byte++) { |
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2223 if (sig_index < total_args_passed) { |
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2224 value = (value << 4) | adapter_encoding(sig_bt[sig_index++]); |
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2225 } |
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2226 } |
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2227 ptr[index] = value; |
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2228 } |
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2229 } |
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2230 |
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2231 ~AdapterFingerPrint() { |
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2232 if (_length > 0) { |
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2233 FREE_C_HEAP_ARRAY(int, _value._fingerprint); |
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2234 } |
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2235 } |
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|
2236 |
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2237 int value(int index) { |
1187
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2238 if (_length < 0) { |
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2239 return _value._compact[index]; |
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2240 } |
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2241 return _value._fingerprint[index]; |
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2242 } |
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2243 int length() { |
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2244 if (_length < 0) return -_length; |
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|
2245 return _length; |
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|
2246 } |
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2247 |
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2248 bool is_compact() { |
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2249 return _length <= 0; |
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|
2250 } |
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|
2251 |
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|
2252 unsigned int compute_hash() { |
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|
2253 int hash = 0; |
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2254 for (int i = 0; i < length(); i++) { |
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2255 int v = value(i); |
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2256 hash = (hash << 8) ^ v ^ (hash >> 5); |
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|
2257 } |
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|
2258 return (unsigned int)hash; |
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|
2259 } |
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|
2260 |
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|
2261 const char* as_string() { |
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|
2262 stringStream st; |
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|
2263 st.print("0x"); |
1187
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|
2264 for (int i = 0; i < length(); i++) { |
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|
2265 st.print("%08x", value(i)); |
1187
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|
2266 } |
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|
2267 return st.as_string(); |
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|
2268 } |
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|
2269 |
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|
2270 bool equals(AdapterFingerPrint* other) { |
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|
2271 if (other->_length != _length) { |
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|
2272 return false; |
cf0685d550f1
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1142
diff
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|
2273 } |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
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|
2274 if (_length < 0) { |
1207
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diff
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|
2275 return _value._compact[0] == other->_value._compact[0] && |
74c848d437ab
6921922: fix for 6911204 breaks tagged stack interpreter
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1205
diff
changeset
|
2276 _value._compact[1] == other->_value._compact[1] && |
74c848d437ab
6921922: fix for 6911204 breaks tagged stack interpreter
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parents:
1205
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|
2277 _value._compact[2] == other->_value._compact[2]; |
1187
cf0685d550f1
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1142
diff
changeset
|
2278 } else { |
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6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2279 for (int i = 0; i < _length; i++) { |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
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1142
diff
changeset
|
2280 if (_value._fingerprint[i] != other->_value._fingerprint[i]) { |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2281 return false; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2282 } |
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6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2283 } |
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6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2284 } |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2285 return true; |
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6911204: generated adapters with large signatures can fill up the code cache
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diff
changeset
|
2286 } |
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|
2287 }; |
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changeset
|
2288 |
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changeset
|
2289 |
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|
2290 // A hashtable mapping from AdapterFingerPrints to AdapterHandlerEntries |
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|
2291 class AdapterHandlerTable : public BasicHashtable { |
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|
2292 friend class AdapterHandlerTableIterator; |
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|
2293 |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
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diff
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|
2294 private: |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2295 |
1263
e7b1cc79bd25
6926697: "optimized" VM build failed: The type "AdapterHandlerTableIterator" is incomplete
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|
2296 #ifndef PRODUCT |
1187
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6911204: generated adapters with large signatures can fill up the code cache
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|
2297 static int _lookups; // number of calls to lookup |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
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diff
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|
2298 static int _buckets; // number of buckets checked |
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|
2299 static int _equals; // number of buckets checked with matching hash |
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|
2300 static int _hits; // number of successful lookups |
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6911204: generated adapters with large signatures can fill up the code cache
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changeset
|
2301 static int _compact; // number of equals calls with compact signature |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
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diff
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|
2302 #endif |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
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diff
changeset
|
2303 |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
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diff
changeset
|
2304 AdapterHandlerEntry* bucket(int i) { |
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changeset
|
2305 return (AdapterHandlerEntry*)BasicHashtable::bucket(i); |
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6911204: generated adapters with large signatures can fill up the code cache
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parents:
1142
diff
changeset
|
2306 } |
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6911204: generated adapters with large signatures can fill up the code cache
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parents:
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diff
changeset
|
2307 |
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6911204: generated adapters with large signatures can fill up the code cache
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diff
changeset
|
2308 public: |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
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1142
diff
changeset
|
2309 AdapterHandlerTable() |
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never
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diff
changeset
|
2310 : BasicHashtable(293, sizeof(AdapterHandlerEntry)) { } |
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6911204: generated adapters with large signatures can fill up the code cache
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|
2311 |
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diff
changeset
|
2312 // Create a new entry suitable for insertion in the table |
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|
2313 AdapterHandlerEntry* new_entry(AdapterFingerPrint* fingerprint, address i2c_entry, address c2i_entry, address c2i_unverified_entry) { |
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changeset
|
2314 AdapterHandlerEntry* entry = (AdapterHandlerEntry*)BasicHashtable::new_entry(fingerprint->compute_hash()); |
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never
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changeset
|
2315 entry->init(fingerprint, i2c_entry, c2i_entry, c2i_unverified_entry); |
cf0685d550f1
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changeset
|
2316 return entry; |
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parents:
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diff
changeset
|
2317 } |
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diff
changeset
|
2318 |
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diff
changeset
|
2319 // Insert an entry into the table |
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diff
changeset
|
2320 void add(AdapterHandlerEntry* entry) { |
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6911204: generated adapters with large signatures can fill up the code cache
never
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diff
changeset
|
2321 int index = hash_to_index(entry->hash()); |
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diff
changeset
|
2322 add_entry(index, entry); |
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parents:
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diff
changeset
|
2323 } |
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diff
changeset
|
2324 |
1207
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diff
changeset
|
2325 void free_entry(AdapterHandlerEntry* entry) { |
74c848d437ab
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parents:
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diff
changeset
|
2326 entry->deallocate(); |
74c848d437ab
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parents:
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diff
changeset
|
2327 BasicHashtable::free_entry(entry); |
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parents:
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diff
changeset
|
2328 } |
74c848d437ab
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diff
changeset
|
2329 |
1187
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changeset
|
2330 // Find a entry with the same fingerprint if it exists |
1207
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|
2331 AdapterHandlerEntry* lookup(int total_args_passed, BasicType* sig_bt) { |
1263
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6926697: "optimized" VM build failed: The type "AdapterHandlerTableIterator" is incomplete
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|
2332 NOT_PRODUCT(_lookups++); |
1207
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6921922: fix for 6911204 breaks tagged stack interpreter
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changeset
|
2333 AdapterFingerPrint fp(total_args_passed, sig_bt); |
1187
cf0685d550f1
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1142
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changeset
|
2334 unsigned int hash = fp.compute_hash(); |
cf0685d550f1
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1142
diff
changeset
|
2335 int index = hash_to_index(hash); |
cf0685d550f1
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never
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1142
diff
changeset
|
2336 for (AdapterHandlerEntry* e = bucket(index); e != NULL; e = e->next()) { |
1263
e7b1cc79bd25
6926697: "optimized" VM build failed: The type "AdapterHandlerTableIterator" is incomplete
kvn
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changeset
|
2337 NOT_PRODUCT(_buckets++); |
1187
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
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1142
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changeset
|
2338 if (e->hash() == hash) { |
1263
e7b1cc79bd25
6926697: "optimized" VM build failed: The type "AdapterHandlerTableIterator" is incomplete
kvn
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1257
diff
changeset
|
2339 NOT_PRODUCT(_equals++); |
1187
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2340 if (fp.equals(e->fingerprint())) { |
1263
e7b1cc79bd25
6926697: "optimized" VM build failed: The type "AdapterHandlerTableIterator" is incomplete
kvn
parents:
1257
diff
changeset
|
2341 #ifndef PRODUCT |
1187
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2342 if (fp.is_compact()) _compact++; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
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diff
changeset
|
2343 _hits++; |
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never
parents:
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diff
changeset
|
2344 #endif |
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6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2345 return e; |
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never
parents:
1142
diff
changeset
|
2346 } |
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never
parents:
1142
diff
changeset
|
2347 } |
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parents:
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diff
changeset
|
2348 } |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2349 return NULL; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
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1142
diff
changeset
|
2350 } |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
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diff
changeset
|
2351 |
1263
e7b1cc79bd25
6926697: "optimized" VM build failed: The type "AdapterHandlerTableIterator" is incomplete
kvn
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1257
diff
changeset
|
2352 #ifndef PRODUCT |
1187
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
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diff
changeset
|
2353 void print_statistics() { |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2354 ResourceMark rm; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2355 int longest = 0; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2356 int empty = 0; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
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1142
diff
changeset
|
2357 int total = 0; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2358 int nonempty = 0; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2359 for (int index = 0; index < table_size(); index++) { |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2360 int count = 0; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2361 for (AdapterHandlerEntry* e = bucket(index); e != NULL; e = e->next()) { |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2362 count++; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2363 } |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2364 if (count != 0) nonempty++; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2365 if (count == 0) empty++; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2366 if (count > longest) longest = count; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2367 total += count; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2368 } |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2369 tty->print_cr("AdapterHandlerTable: empty %d longest %d total %d average %f", |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2370 empty, longest, total, total / (double)nonempty); |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2371 tty->print_cr("AdapterHandlerTable: lookups %d buckets %d equals %d hits %d compact %d", |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2372 _lookups, _buckets, _equals, _hits, _compact); |
1263
e7b1cc79bd25
6926697: "optimized" VM build failed: The type "AdapterHandlerTableIterator" is incomplete
kvn
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1257
diff
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|
2373 } |
1187
cf0685d550f1
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never
parents:
1142
diff
changeset
|
2374 #endif |
cf0685d550f1
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never
parents:
1142
diff
changeset
|
2375 }; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2376 |
cf0685d550f1
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never
parents:
1142
diff
changeset
|
2377 |
1263
e7b1cc79bd25
6926697: "optimized" VM build failed: The type "AdapterHandlerTableIterator" is incomplete
kvn
parents:
1257
diff
changeset
|
2378 #ifndef PRODUCT |
1187
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2379 |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
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diff
changeset
|
2380 int AdapterHandlerTable::_lookups; |
cf0685d550f1
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never
parents:
1142
diff
changeset
|
2381 int AdapterHandlerTable::_buckets; |
cf0685d550f1
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never
parents:
1142
diff
changeset
|
2382 int AdapterHandlerTable::_equals; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2383 int AdapterHandlerTable::_hits; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2384 int AdapterHandlerTable::_compact; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2385 |
1681
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
parents:
1644
diff
changeset
|
2386 #endif |
126ea7725993
6953477: Increase portability and flexibility of building Hotspot
bobv
parents:
1644
diff
changeset
|
2387 |
1187
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2388 class AdapterHandlerTableIterator : public StackObj { |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2389 private: |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2390 AdapterHandlerTable* _table; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2391 int _index; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2392 AdapterHandlerEntry* _current; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2393 |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2394 void scan() { |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2395 while (_index < _table->table_size()) { |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2396 AdapterHandlerEntry* a = _table->bucket(_index); |
1564 | 2397 _index++; |
1187
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2398 if (a != NULL) { |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2399 _current = a; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2400 return; |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2401 } |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2402 } |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2403 } |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2404 |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
1142
diff
changeset
|
2405 public: |
cf0685d550f1
6911204: generated adapters with large signatures can fill up the code cache
never
parents:
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diff
changeset
|
2406 AdapterHandlerTableIterator(AdapterHandlerTable* table): _table(table), _index(0), _current(NULL) { |
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2407 scan(); |
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2408 } |
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2409 bool has_next() { |
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2410 return _current != NULL; |
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|
2411 } |
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2412 AdapterHandlerEntry* next() { |
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2413 if (_current != NULL) { |
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2414 AdapterHandlerEntry* result = _current; |
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2415 _current = _current->next(); |
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2416 if (_current == NULL) scan(); |
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2417 return result; |
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2418 } else { |
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2419 return NULL; |
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2420 } |
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2421 } |
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2422 }; |
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2423 |
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2424 |
0 | 2425 // --------------------------------------------------------------------------- |
2426 // Implementation of AdapterHandlerLibrary | |
1187
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2427 AdapterHandlerTable* AdapterHandlerLibrary::_adapters = NULL; |
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2428 AdapterHandlerEntry* AdapterHandlerLibrary::_abstract_method_handler = NULL; |
0 | 2429 const int AdapterHandlerLibrary_size = 16*K; |
742
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2430 BufferBlob* AdapterHandlerLibrary::_buffer = NULL; |
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2431 |
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2432 BufferBlob* AdapterHandlerLibrary::buffer_blob() { |
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2433 // Should be called only when AdapterHandlerLibrary_lock is active. |
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2434 if (_buffer == NULL) // Initialize lazily |
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2435 _buffer = BufferBlob::create("adapters", AdapterHandlerLibrary_size); |
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2436 return _buffer; |
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2437 } |
0 | 2438 |
2439 void AdapterHandlerLibrary::initialize() { | |
1187
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2440 if (_adapters != NULL) return; |
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2441 _adapters = new AdapterHandlerTable(); |
0 | 2442 |
2443 // Create a special handler for abstract methods. Abstract methods | |
2444 // are never compiled so an i2c entry is somewhat meaningless, but | |
2445 // fill it in with something appropriate just in case. Pass handle | |
2446 // wrong method for the c2i transitions. | |
2447 address wrong_method = SharedRuntime::get_handle_wrong_method_stub(); | |
1187
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2448 _abstract_method_handler = AdapterHandlerLibrary::new_entry(new AdapterFingerPrint(0, NULL), |
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2449 StubRoutines::throw_AbstractMethodError_entry(), |
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2450 wrong_method, wrong_method); |
0 | 2451 } |
2452 | |
1187
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2453 AdapterHandlerEntry* AdapterHandlerLibrary::new_entry(AdapterFingerPrint* fingerprint, |
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2454 address i2c_entry, |
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2455 address c2i_entry, |
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2456 address c2i_unverified_entry) { |
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2457 return _adapters->new_entry(fingerprint, i2c_entry, c2i_entry, c2i_unverified_entry); |
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2458 } |
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2459 |
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2460 AdapterHandlerEntry* AdapterHandlerLibrary::get_adapter(methodHandle method) { |
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2461 // Use customized signature handler. Need to lock around updates to |
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2462 // the AdapterHandlerTable (it is not safe for concurrent readers |
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2463 // and a single writer: this could be fixed if it becomes a |
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2464 // problem). |
0 | 2465 |
2466 // Get the address of the ic_miss handlers before we grab the | |
2467 // AdapterHandlerLibrary_lock. This fixes bug 6236259 which | |
2468 // was caused by the initialization of the stubs happening | |
2469 // while we held the lock and then notifying jvmti while | |
2470 // holding it. This just forces the initialization to be a little | |
2471 // earlier. | |
2472 address ic_miss = SharedRuntime::get_ic_miss_stub(); | |
2473 assert(ic_miss != NULL, "must have handler"); | |
2474 | |
1187
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2475 ResourceMark rm; |
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2476 |
1748 | 2477 NOT_PRODUCT(int insts_size); |
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2478 AdapterBlob* B = NULL; |
742
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2479 AdapterHandlerEntry* entry = NULL; |
1187
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2480 AdapterFingerPrint* fingerprint = NULL; |
0 | 2481 { |
2482 MutexLocker mu(AdapterHandlerLibrary_lock); | |
2483 // make sure data structure is initialized | |
2484 initialize(); | |
2485 | |
2486 if (method->is_abstract()) { | |
1187
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2487 return _abstract_method_handler; |
0 | 2488 } |
2489 | |
1187
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2490 // Fill in the signature array, for the calling-convention call. |
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2491 int total_args_passed = method->size_of_parameters(); // All args on stack |
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2492 |
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2493 BasicType* sig_bt = NEW_RESOURCE_ARRAY(BasicType, total_args_passed); |
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2494 VMRegPair* regs = NEW_RESOURCE_ARRAY(VMRegPair, total_args_passed); |
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|
2495 int i = 0; |
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2496 if (!method->is_static()) // Pass in receiver first |
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|
2497 sig_bt[i++] = T_OBJECT; |
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|
2498 for (SignatureStream ss(method->signature()); !ss.at_return_type(); ss.next()) { |
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|
2499 sig_bt[i++] = ss.type(); // Collect remaining bits of signature |
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2500 if (ss.type() == T_LONG || ss.type() == T_DOUBLE) |
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|
2501 sig_bt[i++] = T_VOID; // Longs & doubles take 2 Java slots |
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|
2502 } |
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|
2503 assert(i == total_args_passed, ""); |
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|
2504 |
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|
2505 // Lookup method signature's fingerprint |
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|
2506 entry = _adapters->lookup(total_args_passed, sig_bt); |
1187
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|
2507 |
1207
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|
2508 #ifdef ASSERT |
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|
2509 AdapterHandlerEntry* shared_entry = NULL; |
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|
2510 if (VerifyAdapterSharing && entry != NULL) { |
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|
2511 shared_entry = entry; |
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|
2512 entry = NULL; |
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|
2513 } |
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|
2514 #endif |
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|
2515 |
1187
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|
2516 if (entry != NULL) { |
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|
2517 return entry; |
0 | 2518 } |
2519 | |
1207
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2520 // Get a description of the compiled java calling convention and the largest used (VMReg) stack slot usage |
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|
2521 int comp_args_on_stack = SharedRuntime::java_calling_convention(sig_bt, regs, total_args_passed, false); |
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|
2522 |
1187
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2523 // Make a C heap allocated version of the fingerprint to store in the adapter |
1207
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2524 fingerprint = new AdapterFingerPrint(total_args_passed, sig_bt); |
1187
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2525 |
0 | 2526 // Create I2C & C2I handlers |
2527 | |
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2528 BufferBlob* buf = buffer_blob(); // the temporary code buffer in CodeCache |
742
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2529 if (buf != NULL) { |
1748 | 2530 CodeBuffer buffer(buf); |
742
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|
2531 short buffer_locs[20]; |
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2532 buffer.insts()->initialize_shared_locs((relocInfo*)buffer_locs, |
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2533 sizeof(buffer_locs)/sizeof(relocInfo)); |
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|
2534 MacroAssembler _masm(&buffer); |
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|
2535 |
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2536 entry = SharedRuntime::generate_i2c2i_adapters(&_masm, |
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2537 total_args_passed, |
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|
2538 comp_args_on_stack, |
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2539 sig_bt, |
1187
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|
2540 regs, |
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|
2541 fingerprint); |
0 | 2542 |
1207
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|
2543 #ifdef ASSERT |
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|
2544 if (VerifyAdapterSharing) { |
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|
2545 if (shared_entry != NULL) { |
1748 | 2546 assert(shared_entry->compare_code(buf->code_begin(), buffer.insts_size(), total_args_passed, sig_bt), |
1207
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2547 "code must match"); |
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|
2548 // Release the one just created and return the original |
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|
2549 _adapters->free_entry(entry); |
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|
2550 return shared_entry; |
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|
2551 } else { |
1748 | 2552 entry->save_code(buf->code_begin(), buffer.insts_size(), total_args_passed, sig_bt); |
1207
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|
2553 } |
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|
2554 } |
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|
2555 #endif |
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|
2556 |
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2557 B = AdapterBlob::create(&buffer); |
1748 | 2558 NOT_PRODUCT(insts_size = buffer.insts_size()); |
742
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2559 } |
28 | 2560 if (B == NULL) { |
2561 // CodeCache is full, disable compilation | |
2562 // Ought to log this but compile log is only per compile thread | |
2563 // and we're some non descript Java thread. | |
1202 | 2564 MutexUnlocker mu(AdapterHandlerLibrary_lock); |
2565 CompileBroker::handle_full_code_cache(); | |
1187
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2566 return NULL; // Out of CodeCache space |
28 | 2567 } |
1748 | 2568 entry->relocate(B->content_begin()); |
0 | 2569 #ifndef PRODUCT |
2570 // debugging suppport | |
2571 if (PrintAdapterHandlers) { | |
2572 tty->cr(); | |
1187
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2573 tty->print_cr("i2c argument handler #%d for: %s %s (fingerprint = %s, %d bytes generated)", |
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2574 _adapters->number_of_entries(), (method->is_static() ? "static" : "receiver"), |
1748 | 2575 method->signature()->as_C_string(), fingerprint->as_string(), insts_size ); |
0 | 2576 tty->print_cr("c2i argument handler starts at %p",entry->get_c2i_entry()); |
1748 | 2577 Disassembler::decode(entry->get_i2c_entry(), entry->get_i2c_entry() + insts_size); |
0 | 2578 } |
2579 #endif | |
2580 | |
1187
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|
2581 _adapters->add(entry); |
0 | 2582 } |
2583 // Outside of the lock | |
2584 if (B != NULL) { | |
2585 char blob_id[256]; | |
2586 jio_snprintf(blob_id, | |
2587 sizeof(blob_id), | |
1187
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6911204: generated adapters with large signatures can fill up the code cache
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|
2588 "%s(%s)@" PTR_FORMAT, |
1299
9eba43136cb5
6934494: JSR 292 MethodHandles adapters should be generated into their own CodeBlob
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1295
diff
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|
2589 B->name(), |
1187
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6911204: generated adapters with large signatures can fill up the code cache
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diff
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|
2590 fingerprint->as_string(), |
1748 | 2591 B->content_begin()); |
2592 Forte::register_stub(blob_id, B->content_begin(), B->content_end()); | |
0 | 2593 |
2594 if (JvmtiExport::should_post_dynamic_code_generated()) { | |
1748 | 2595 JvmtiExport::post_dynamic_code_generated(blob_id, B->content_begin(), B->content_end()); |
0 | 2596 } |
2597 } | |
1187
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|
2598 return entry; |
0 | 2599 } |
2600 | |
2601 void AdapterHandlerEntry::relocate(address new_base) { | |
2602 ptrdiff_t delta = new_base - _i2c_entry; | |
2603 _i2c_entry += delta; | |
2604 _c2i_entry += delta; | |
2605 _c2i_unverified_entry += delta; | |
2606 } | |
2607 | |
1207
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|
2608 |
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|
2609 void AdapterHandlerEntry::deallocate() { |
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|
2610 delete _fingerprint; |
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|
2611 #ifdef ASSERT |
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|
2612 if (_saved_code) FREE_C_HEAP_ARRAY(unsigned char, _saved_code); |
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|
2613 if (_saved_sig) FREE_C_HEAP_ARRAY(Basictype, _saved_sig); |
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|
2614 #endif |
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diff
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|
2615 } |
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|
2616 |
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|
2617 |
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changeset
|
2618 #ifdef ASSERT |
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|
2619 // Capture the code before relocation so that it can be compared |
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diff
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|
2620 // against other versions. If the code is captured after relocation |
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|
2621 // then relative instructions won't be equivalent. |
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|
2622 void AdapterHandlerEntry::save_code(unsigned char* buffer, int length, int total_args_passed, BasicType* sig_bt) { |
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6921922: fix for 6911204 breaks tagged stack interpreter
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|
2623 _saved_code = NEW_C_HEAP_ARRAY(unsigned char, length); |
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|
2624 _code_length = length; |
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|
2625 memcpy(_saved_code, buffer, length); |
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|
2626 _total_args_passed = total_args_passed; |
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|
2627 _saved_sig = NEW_C_HEAP_ARRAY(BasicType, _total_args_passed); |
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|
2628 memcpy(_saved_sig, sig_bt, _total_args_passed * sizeof(BasicType)); |
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|
2629 } |
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|
2630 |
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|
2631 |
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|
2632 bool AdapterHandlerEntry::compare_code(unsigned char* buffer, int length, int total_args_passed, BasicType* sig_bt) { |
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|
2633 if (length != _code_length) { |
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|
2634 return false; |
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diff
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|
2635 } |
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|
2636 for (int i = 0; i < length; i++) { |
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|
2637 if (buffer[i] != _saved_code[i]) { |
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|
2638 return false; |
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diff
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|
2639 } |
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|
2640 } |
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|
2641 return true; |
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|
2642 } |
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|
2643 #endif |
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|
2644 |
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|
2645 |
0 | 2646 // Create a native wrapper for this native method. The wrapper converts the |
2647 // java compiled calling convention to the native convention, handlizes | |
2648 // arguments, and transitions to native. On return from the native we transition | |
2649 // back to java blocking if a safepoint is in progress. | |
2405
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7022998: JSR 292 recursive method handle calls inline themselves infinitely
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|
2650 nmethod *AdapterHandlerLibrary::create_native_wrapper(methodHandle method, int compile_id) { |
0 | 2651 ResourceMark rm; |
2652 nmethod* nm = NULL; | |
2653 | |
2654 assert(method->has_native_function(), "must have something valid to call!"); | |
2655 | |
2656 { | |
2657 // perform the work while holding the lock, but perform any printing outside the lock | |
2658 MutexLocker mu(AdapterHandlerLibrary_lock); | |
2659 // See if somebody beat us to it | |
2660 nm = method->code(); | |
2661 if (nm) { | |
2662 return nm; | |
2663 } | |
2664 | |
742
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6834177: Running jsynprog on Solaris Nevada can cause JVM crash
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|
2665 ResourceMark rm; |
0 | 2666 |
742
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6834177: Running jsynprog on Solaris Nevada can cause JVM crash
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diff
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|
2667 BufferBlob* buf = buffer_blob(); // the temporary code buffer in CodeCache |
45463a04ca27
6834177: Running jsynprog on Solaris Nevada can cause JVM crash
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diff
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|
2668 if (buf != NULL) { |
1748 | 2669 CodeBuffer buffer(buf); |
742
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diff
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|
2670 double locs_buf[20]; |
45463a04ca27
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|
2671 buffer.insts()->initialize_shared_locs((relocInfo*)locs_buf, sizeof(locs_buf) / sizeof(relocInfo)); |
45463a04ca27
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|
2672 MacroAssembler _masm(&buffer); |
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|
2673 |
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6834177: Running jsynprog on Solaris Nevada can cause JVM crash
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|
2674 // Fill in the signature array, for the calling-convention call. |
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|
2675 int total_args_passed = method->size_of_parameters(); |
0 | 2676 |
742
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|
2677 BasicType* sig_bt = NEW_RESOURCE_ARRAY(BasicType,total_args_passed); |
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|
2678 VMRegPair* regs = NEW_RESOURCE_ARRAY(VMRegPair,total_args_passed); |
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6834177: Running jsynprog on Solaris Nevada can cause JVM crash
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|
2679 int i=0; |
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|
2680 if( !method->is_static() ) // Pass in receiver first |
45463a04ca27
6834177: Running jsynprog on Solaris Nevada can cause JVM crash
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diff
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|
2681 sig_bt[i++] = T_OBJECT; |
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|
2682 SignatureStream ss(method->signature()); |
45463a04ca27
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|
2683 for( ; !ss.at_return_type(); ss.next()) { |
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710
diff
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|
2684 sig_bt[i++] = ss.type(); // Collect remaining bits of signature |
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diff
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|
2685 if( ss.type() == T_LONG || ss.type() == T_DOUBLE ) |
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diff
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|
2686 sig_bt[i++] = T_VOID; // Longs & doubles take 2 Java slots |
45463a04ca27
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diff
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|
2687 } |
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diff
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|
2688 assert( i==total_args_passed, "" ); |
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diff
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|
2689 BasicType ret_type = ss.type(); |
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|
2690 |
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diff
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|
2691 // Now get the compiled-Java layout as input arguments |
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diff
changeset
|
2692 int comp_args_on_stack; |
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diff
changeset
|
2693 comp_args_on_stack = SharedRuntime::java_calling_convention(sig_bt, regs, total_args_passed, false); |
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|
2694 |
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diff
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|
2695 // Generate the compiled-to-native wrapper code |
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diff
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|
2696 nm = SharedRuntime::generate_native_wrapper(&_masm, |
45463a04ca27
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diff
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|
2697 method, |
2405
3d58a4983660
7022998: JSR 292 recursive method handle calls inline themselves infinitely
twisti
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2321
diff
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|
2698 compile_id, |
742
45463a04ca27
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diff
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|
2699 total_args_passed, |
45463a04ca27
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diff
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|
2700 comp_args_on_stack, |
45463a04ca27
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diff
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|
2701 sig_bt,regs, |
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diff
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|
2702 ret_type); |
0 | 2703 } |
2704 } | |
2705 | |
2706 // Must unlock before calling set_code | |
1728
a62d332029cf
6976372: # assert(_owner == Thread::current()) failed: invariant
never
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1681
diff
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|
2707 |
0 | 2708 // Install the generated code. |
2709 if (nm != NULL) { | |
2405
3d58a4983660
7022998: JSR 292 recursive method handle calls inline themselves infinitely
twisti
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2321
diff
changeset
|
2710 if (PrintCompilation) { |
3d58a4983660
7022998: JSR 292 recursive method handle calls inline themselves infinitely
twisti
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2321
diff
changeset
|
2711 ttyLocker ttyl; |
3d58a4983660
7022998: JSR 292 recursive method handle calls inline themselves infinitely
twisti
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2321
diff
changeset
|
2712 CompileTask::print_compilation(tty, nm, method->is_static() ? "(static)" : ""); |
3d58a4983660
7022998: JSR 292 recursive method handle calls inline themselves infinitely
twisti
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2321
diff
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|
2713 } |
0 | 2714 method->set_code(method, nm); |
2715 nm->post_compiled_method_load_event(); | |
2716 } else { | |
2717 // CodeCache is full, disable compilation | |
1202 | 2718 CompileBroker::handle_full_code_cache(); |
0 | 2719 } |
2720 return nm; | |
2721 } | |
2722 | |
116
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diff
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|
2723 #ifdef HAVE_DTRACE_H |
018d5b58dd4f
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diff
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|
2724 // Create a dtrace nmethod for this method. The wrapper converts the |
018d5b58dd4f
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diff
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|
2725 // java compiled calling convention to the native convention, makes a dummy call |
018d5b58dd4f
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diff
changeset
|
2726 // (actually nops for the size of the call instruction, which become a trap if |
018d5b58dd4f
6537506: Provide a mechanism for specifying Java-level USDT-like dtrace probes
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diff
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|
2727 // probe is enabled). The returns to the caller. Since this all looks like a |
018d5b58dd4f
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diff
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|
2728 // leaf no thread transition is needed. |
018d5b58dd4f
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diff
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|
2729 |
018d5b58dd4f
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diff
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|
2730 nmethod *AdapterHandlerLibrary::create_dtrace_nmethod(methodHandle method) { |
018d5b58dd4f
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kamg
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diff
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|
2731 ResourceMark rm; |
018d5b58dd4f
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diff
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|
2732 nmethod* nm = NULL; |
018d5b58dd4f
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diff
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|
2733 |
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|
2734 if (PrintCompilation) { |
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diff
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|
2735 ttyLocker ttyl; |
018d5b58dd4f
6537506: Provide a mechanism for specifying Java-level USDT-like dtrace probes
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diff
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|
2736 tty->print("--- n%s "); |
018d5b58dd4f
6537506: Provide a mechanism for specifying Java-level USDT-like dtrace probes
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diff
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|
2737 method->print_short_name(tty); |
018d5b58dd4f
6537506: Provide a mechanism for specifying Java-level USDT-like dtrace probes
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diff
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|
2738 if (method->is_static()) { |
018d5b58dd4f
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diff
changeset
|
2739 tty->print(" (static)"); |
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diff
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|
2740 } |
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diff
changeset
|
2741 tty->cr(); |
018d5b58dd4f
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diff
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|
2742 } |
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diff
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|
2743 |
018d5b58dd4f
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diff
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|
2744 { |
018d5b58dd4f
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diff
changeset
|
2745 // perform the work while holding the lock, but perform any printing |
018d5b58dd4f
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diff
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|
2746 // outside the lock |
018d5b58dd4f
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diff
changeset
|
2747 MutexLocker mu(AdapterHandlerLibrary_lock); |
018d5b58dd4f
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diff
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|
2748 // See if somebody beat us to it |
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diff
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|
2749 nm = method->code(); |
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diff
changeset
|
2750 if (nm) { |
018d5b58dd4f
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diff
changeset
|
2751 return nm; |
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diff
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|
2752 } |
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|
2753 |
742
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|
2754 ResourceMark rm; |
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|
2755 |
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2756 BufferBlob* buf = buffer_blob(); // the temporary code buffer in CodeCache |
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2757 if (buf != NULL) { |
1748 | 2758 CodeBuffer buffer(buf); |
742
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2759 // Need a few relocation entries |
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2760 double locs_buf[20]; |
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2761 buffer.insts()->initialize_shared_locs( |
116
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2762 (relocInfo*)locs_buf, sizeof(locs_buf) / sizeof(relocInfo)); |
742
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2763 MacroAssembler _masm(&buffer); |
116
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2764 |
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2765 // Generate the compiled-to-native wrapper code |
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2766 nm = SharedRuntime::generate_dtrace_nmethod(&_masm, method); |
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2767 } |
116
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2768 } |
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2769 return nm; |
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2770 } |
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2771 |
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2772 // the dtrace method needs to convert java lang string to utf8 string. |
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2773 void SharedRuntime::get_utf(oopDesc* src, address dst) { |
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2774 typeArrayOop jlsValue = java_lang_String::value(src); |
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2775 int jlsOffset = java_lang_String::offset(src); |
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2776 int jlsLen = java_lang_String::length(src); |
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2777 jchar* jlsPos = (jlsLen == 0) ? NULL : |
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2778 jlsValue->char_at_addr(jlsOffset); |
2192
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2779 assert(typeArrayKlass::cast(jlsValue->klass())->element_type() == T_CHAR, "compressed string"); |
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2780 (void) UNICODE::as_utf8(jlsPos, jlsLen, (char *)dst, max_dtrace_string_size); |
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2781 } |
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2782 #endif // ndef HAVE_DTRACE_H |
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2783 |
0 | 2784 // ------------------------------------------------------------------------- |
2785 // Java-Java calling convention | |
2786 // (what you use when Java calls Java) | |
2787 | |
2788 //------------------------------name_for_receiver---------------------------------- | |
2789 // For a given signature, return the VMReg for parameter 0. | |
2790 VMReg SharedRuntime::name_for_receiver() { | |
2791 VMRegPair regs; | |
2792 BasicType sig_bt = T_OBJECT; | |
2793 (void) java_calling_convention(&sig_bt, ®s, 1, true); | |
2794 // Return argument 0 register. In the LP64 build pointers | |
2795 // take 2 registers, but the VM wants only the 'main' name. | |
2796 return regs.first(); | |
2797 } | |
2798 | |
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2799 VMRegPair *SharedRuntime::find_callee_arguments(Symbol* sig, bool has_receiver, int* arg_size) { |
0 | 2800 // This method is returning a data structure allocating as a |
2801 // ResourceObject, so do not put any ResourceMarks in here. | |
2802 char *s = sig->as_C_string(); | |
2803 int len = (int)strlen(s); | |
3013
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2804 s++; len--; // Skip opening paren |
0 | 2805 char *t = s+len; |
2806 while( *(--t) != ')' ) ; // Find close paren | |
2807 | |
2808 BasicType *sig_bt = NEW_RESOURCE_ARRAY( BasicType, 256 ); | |
2809 VMRegPair *regs = NEW_RESOURCE_ARRAY( VMRegPair, 256 ); | |
2810 int cnt = 0; | |
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2811 if (has_receiver) { |
0 | 2812 sig_bt[cnt++] = T_OBJECT; // Receiver is argument 0; not in signature |
2813 } | |
2814 | |
2815 while( s < t ) { | |
2816 switch( *s++ ) { // Switch on signature character | |
2817 case 'B': sig_bt[cnt++] = T_BYTE; break; | |
2818 case 'C': sig_bt[cnt++] = T_CHAR; break; | |
2819 case 'D': sig_bt[cnt++] = T_DOUBLE; sig_bt[cnt++] = T_VOID; break; | |
2820 case 'F': sig_bt[cnt++] = T_FLOAT; break; | |
2821 case 'I': sig_bt[cnt++] = T_INT; break; | |
2822 case 'J': sig_bt[cnt++] = T_LONG; sig_bt[cnt++] = T_VOID; break; | |
2823 case 'S': sig_bt[cnt++] = T_SHORT; break; | |
2824 case 'Z': sig_bt[cnt++] = T_BOOLEAN; break; | |
2825 case 'V': sig_bt[cnt++] = T_VOID; break; | |
2826 case 'L': // Oop | |
2827 while( *s++ != ';' ) ; // Skip signature | |
2828 sig_bt[cnt++] = T_OBJECT; | |
2829 break; | |
2830 case '[': { // Array | |
2831 do { // Skip optional size | |
2832 while( *s >= '0' && *s <= '9' ) s++; | |
2833 } while( *s++ == '[' ); // Nested arrays? | |
2834 // Skip element type | |
2835 if( s[-1] == 'L' ) | |
2836 while( *s++ != ';' ) ; // Skip signature | |
2837 sig_bt[cnt++] = T_ARRAY; | |
2838 break; | |
2839 } | |
2840 default : ShouldNotReachHere(); | |
2841 } | |
2842 } | |
2843 assert( cnt < 256, "grow table size" ); | |
2844 | |
2845 int comp_args_on_stack; | |
2846 comp_args_on_stack = java_calling_convention(sig_bt, regs, cnt, true); | |
2847 | |
2848 // the calling convention doesn't count out_preserve_stack_slots so | |
2849 // we must add that in to get "true" stack offsets. | |
2850 | |
2851 if (comp_args_on_stack) { | |
2852 for (int i = 0; i < cnt; i++) { | |
2853 VMReg reg1 = regs[i].first(); | |
2854 if( reg1->is_stack()) { | |
2855 // Yuck | |
2856 reg1 = reg1->bias(out_preserve_stack_slots()); | |
2857 } | |
2858 VMReg reg2 = regs[i].second(); | |
2859 if( reg2->is_stack()) { | |
2860 // Yuck | |
2861 reg2 = reg2->bias(out_preserve_stack_slots()); | |
2862 } | |
2863 regs[i].set_pair(reg2, reg1); | |
2864 } | |
2865 } | |
2866 | |
2867 // results | |
2868 *arg_size = cnt; | |
2869 return regs; | |
2870 } | |
2871 | |
2872 // OSR Migration Code | |
2873 // | |
2874 // This code is used convert interpreter frames into compiled frames. It is | |
2875 // called from very start of a compiled OSR nmethod. A temp array is | |
2876 // allocated to hold the interesting bits of the interpreter frame. All | |
2877 // active locks are inflated to allow them to move. The displaced headers and | |
2878 // active interpeter locals are copied into the temp buffer. Then we return | |
2879 // back to the compiled code. The compiled code then pops the current | |
2880 // interpreter frame off the stack and pushes a new compiled frame. Then it | |
2881 // copies the interpreter locals and displaced headers where it wants. | |
2882 // Finally it calls back to free the temp buffer. | |
2883 // | |
2884 // All of this is done NOT at any Safepoint, nor is any safepoint or GC allowed. | |
2885 | |
2886 JRT_LEAF(intptr_t*, SharedRuntime::OSR_migration_begin( JavaThread *thread) ) | |
2887 | |
2888 #ifdef IA64 | |
2889 ShouldNotReachHere(); // NYI | |
2890 #endif /* IA64 */ | |
2891 | |
2892 // | |
2893 // This code is dependent on the memory layout of the interpreter local | |
2894 // array and the monitors. On all of our platforms the layout is identical | |
2895 // so this code is shared. If some platform lays the their arrays out | |
2896 // differently then this code could move to platform specific code or | |
2897 // the code here could be modified to copy items one at a time using | |
2898 // frame accessor methods and be platform independent. | |
2899 | |
2900 frame fr = thread->last_frame(); | |
2901 assert( fr.is_interpreted_frame(), "" ); | |
2902 assert( fr.interpreter_frame_expression_stack_size()==0, "only handle empty stacks" ); | |
2903 | |
2904 // Figure out how many monitors are active. | |
2905 int active_monitor_count = 0; | |
2906 for( BasicObjectLock *kptr = fr.interpreter_frame_monitor_end(); | |
2907 kptr < fr.interpreter_frame_monitor_begin(); | |
2908 kptr = fr.next_monitor_in_interpreter_frame(kptr) ) { | |
2909 if( kptr->obj() != NULL ) active_monitor_count++; | |
2910 } | |
2911 | |
2912 // QQQ we could place number of active monitors in the array so that compiled code | |
2913 // could double check it. | |
2914 | |
2915 methodOop moop = fr.interpreter_frame_method(); | |
2916 int max_locals = moop->max_locals(); | |
2917 // Allocate temp buffer, 1 word per local & 2 per active monitor | |
2918 int buf_size_words = max_locals + active_monitor_count*2; | |
2919 intptr_t *buf = NEW_C_HEAP_ARRAY(intptr_t,buf_size_words); | |
2920 | |
2921 // Copy the locals. Order is preserved so that loading of longs works. | |
2922 // Since there's no GC I can copy the oops blindly. | |
2923 assert( sizeof(HeapWord)==sizeof(intptr_t), "fix this code"); | |
1506 | 2924 Copy::disjoint_words((HeapWord*)fr.interpreter_frame_local_at(max_locals-1), |
0 | 2925 (HeapWord*)&buf[0], |
2926 max_locals); | |
2927 | |
2928 // Inflate locks. Copy the displaced headers. Be careful, there can be holes. | |
2929 int i = max_locals; | |
2930 for( BasicObjectLock *kptr2 = fr.interpreter_frame_monitor_end(); | |
2931 kptr2 < fr.interpreter_frame_monitor_begin(); | |
2932 kptr2 = fr.next_monitor_in_interpreter_frame(kptr2) ) { | |
2933 if( kptr2->obj() != NULL) { // Avoid 'holes' in the monitor array | |
2934 BasicLock *lock = kptr2->lock(); | |
2935 // Inflate so the displaced header becomes position-independent | |
2936 if (lock->displaced_header()->is_unlocked()) | |
2937 ObjectSynchronizer::inflate_helper(kptr2->obj()); | |
2938 // Now the displaced header is free to move | |
2939 buf[i++] = (intptr_t)lock->displaced_header(); | |
2940 buf[i++] = (intptr_t)kptr2->obj(); | |
2941 } | |
2942 } | |
2943 assert( i - max_locals == active_monitor_count*2, "found the expected number of monitors" ); | |
2944 | |
2945 return buf; | |
2946 JRT_END | |
2947 | |
2948 JRT_LEAF(void, SharedRuntime::OSR_migration_end( intptr_t* buf) ) | |
2949 FREE_C_HEAP_ARRAY(intptr_t,buf); | |
2950 JRT_END | |
2951 | |
2952 bool AdapterHandlerLibrary::contains(CodeBlob* b) { | |
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2953 AdapterHandlerTableIterator iter(_adapters); |
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2954 while (iter.has_next()) { |
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|
2955 AdapterHandlerEntry* a = iter.next(); |
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|
2956 if ( b == CodeCache::find_blob(a->get_i2c_entry()) ) return true; |
0 | 2957 } |
2958 return false; | |
2959 } | |
2960 | |
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2961 void AdapterHandlerLibrary::print_handler_on(outputStream* st, CodeBlob* b) { |
1187
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|
2962 AdapterHandlerTableIterator iter(_adapters); |
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|
2963 while (iter.has_next()) { |
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|
2964 AdapterHandlerEntry* a = iter.next(); |
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2965 if ( b == CodeCache::find_blob(a->get_i2c_entry()) ) { |
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|
2966 st->print("Adapter for signature: "); |
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|
2967 st->print_cr("%s i2c: " INTPTR_FORMAT " c2i: " INTPTR_FORMAT " c2iUV: " INTPTR_FORMAT, |
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|
2968 a->fingerprint()->as_string(), |
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|
2969 a->get_i2c_entry(), a->get_c2i_entry(), a->get_c2i_unverified_entry()); |
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2970 |
0 | 2971 return; |
2972 } | |
2973 } | |
2974 assert(false, "Should have found handler"); | |
2975 } | |
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2976 |
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|
2977 #ifndef PRODUCT |
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2978 |
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2979 void AdapterHandlerLibrary::print_statistics() { |
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|
2980 _adapters->print_statistics(); |
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|
2981 } |
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2982 |
0 | 2983 #endif /* PRODUCT */ |