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Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001/*
2 * Copyright 2014 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include "jit_code_cache.h"
18
19#include <sstream>
20
Andreas Gampec7d878d2018-11-19 18:42:06 +000021#include <android-base/logging.h>
22#include <android-base/unique_fd.h>
Orion Hodson1d3fd082018-09-28 09:38:35 +010023
Andreas Gampe5629d2d2017-05-15 16:28:13 -070024#include "arch/context.h"
Mathieu Chartiere401d142015-04-22 13:56:20 -070025#include "art_method-inl.h"
Andreas Gampe542451c2016-07-26 09:02:02 -070026#include "base/enums.h"
Andreas Gampef0f3c592018-06-26 13:28:00 -070027#include "base/histogram-inl.h"
Andreas Gampe170331f2017-12-07 18:41:03 -080028#include "base/logging.h" // For VLOG.
Orion Hodson563ada22018-09-04 11:28:31 +010029#include "base/membarrier.h"
Orion Hodson1d3fd082018-09-28 09:38:35 +010030#include "base/memfd.h"
David Sehr79e26072018-04-06 17:58:50 -070031#include "base/mem_map.h"
David Sehrc431b9d2018-03-02 12:01:51 -080032#include "base/quasi_atomic.h"
Calin Juravle66f55232015-12-08 15:09:10 +000033#include "base/stl_util.h"
Mathieu Chartier32ce2ad2016-03-04 14:58:03 -080034#include "base/systrace.h"
Calin Juravle31f2c152015-10-23 17:56:15 +010035#include "base/time_utils.h"
Orion Hodsonf2331362018-07-11 15:14:10 +010036#include "base/utils.h"
Mingyao Yang063fc772016-08-02 11:02:54 -070037#include "cha.h"
David Srbecky5cc349f2015-12-18 15:04:48 +000038#include "debugger_interface.h"
David Sehr9e734c72018-01-04 17:56:19 -080039#include "dex/dex_file_loader.h"
Andreas Gampef0f3c592018-06-26 13:28:00 -070040#include "dex/method_reference.h"
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +010041#include "entrypoints/runtime_asm_entrypoints.h"
42#include "gc/accounting/bitmap-inl.h"
Andreas Gampe88dbad32018-06-26 19:54:12 -070043#include "gc/allocator/dlmalloc.h"
Nicolas Geoffraycf48fa02016-07-30 22:49:11 +010044#include "gc/scoped_gc_critical_section.h"
Vladimir Markob0b68cf2017-11-14 18:11:50 +000045#include "handle.h"
Andreas Gampef0f3c592018-06-26 13:28:00 -070046#include "instrumentation.h"
Andreas Gampeb2d18fa2017-06-06 20:46:10 -070047#include "intern_table.h"
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +000048#include "jit/jit.h"
Nicolas Geoffray26705e22015-10-28 12:50:11 +000049#include "jit/profiling_info.h"
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +010050#include "linear_alloc.h"
Mathieu Chartiere5f13e52015-02-24 09:37:21 -080051#include "oat_file-inl.h"
Andreas Gampe513061a2017-06-01 09:17:34 -070052#include "oat_quick_method_header.h"
Andreas Gampe5d08fcc2017-06-05 17:56:46 -070053#include "object_callbacks.h"
David Sehr82d046e2018-04-23 08:14:19 -070054#include "profile/profile_compilation_info.h"
Mathieu Chartier0795f232016-09-27 18:43:30 -070055#include "scoped_thread_state_change-inl.h"
Andreas Gampe513061a2017-06-01 09:17:34 -070056#include "stack.h"
Vladimir Markob0b68cf2017-11-14 18:11:50 +000057#include "thread-current-inl.h"
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +010058#include "thread_list.h"
Mathieu Chartiere5f13e52015-02-24 09:37:21 -080059
Orion Hodson1d3fd082018-09-28 09:38:35 +010060using android::base::unique_fd;
61
Mathieu Chartiere5f13e52015-02-24 09:37:21 -080062namespace art {
63namespace jit {
64
Nicolas Geoffray933330a2016-03-16 14:20:06 +000065static constexpr size_t kCodeSizeLogThreshold = 50 * KB;
66static constexpr size_t kStackMapSizeLogThreshold = 50 * KB;
67
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +000068// Data cache will be half of the capacity
69// Code cache will be the other half of the capacity.
70// TODO: Make this variable?
71static constexpr size_t kCodeAndDataCapacityDivider = 2;
72
Orion Hodson1d3fd082018-09-28 09:38:35 +010073static constexpr int kProtR = PROT_READ;
74static constexpr int kProtRW = PROT_READ | PROT_WRITE;
75static constexpr int kProtRWX = PROT_READ | PROT_WRITE | PROT_EXEC;
76static constexpr int kProtRX = PROT_READ | PROT_EXEC;
77
78namespace {
79
80// Translate an address belonging to one memory map into an address in a second. This is useful
81// when there are two virtual memory ranges for the same physical memory range.
82template <typename T>
83T* TranslateAddress(T* src_ptr, const MemMap& src, const MemMap& dst) {
84 CHECK(src.HasAddress(src_ptr));
85 uint8_t* const raw_src_ptr = reinterpret_cast<uint8_t*>(src_ptr);
86 return reinterpret_cast<T*>(raw_src_ptr - src.Begin() + dst.Begin());
87}
88
89} // namespace
90
Vladimir Marko2196c652017-11-30 16:16:07 +000091class JitCodeCache::JniStubKey {
92 public:
93 explicit JniStubKey(ArtMethod* method) REQUIRES_SHARED(Locks::mutator_lock_)
94 : shorty_(method->GetShorty()),
95 is_static_(method->IsStatic()),
96 is_fast_native_(method->IsFastNative()),
97 is_critical_native_(method->IsCriticalNative()),
98 is_synchronized_(method->IsSynchronized()) {
99 DCHECK(!(is_fast_native_ && is_critical_native_));
100 }
101
102 bool operator<(const JniStubKey& rhs) const {
103 if (is_static_ != rhs.is_static_) {
104 return rhs.is_static_;
105 }
106 if (is_synchronized_ != rhs.is_synchronized_) {
107 return rhs.is_synchronized_;
108 }
109 if (is_fast_native_ != rhs.is_fast_native_) {
110 return rhs.is_fast_native_;
111 }
112 if (is_critical_native_ != rhs.is_critical_native_) {
113 return rhs.is_critical_native_;
114 }
115 return strcmp(shorty_, rhs.shorty_) < 0;
116 }
117
118 // Update the shorty to point to another method's shorty. Call this function when removing
119 // the method that references the old shorty from JniCodeData and not removing the entire
120 // JniCodeData; the old shorty may become a dangling pointer when that method is unloaded.
121 void UpdateShorty(ArtMethod* method) const REQUIRES_SHARED(Locks::mutator_lock_) {
122 const char* shorty = method->GetShorty();
123 DCHECK_STREQ(shorty_, shorty);
124 shorty_ = shorty;
125 }
126
127 private:
128 // The shorty points to a DexFile data and may need to change
129 // to point to the same shorty in a different DexFile.
130 mutable const char* shorty_;
131
132 const bool is_static_;
133 const bool is_fast_native_;
134 const bool is_critical_native_;
135 const bool is_synchronized_;
136};
137
138class JitCodeCache::JniStubData {
139 public:
140 JniStubData() : code_(nullptr), methods_() {}
141
142 void SetCode(const void* code) {
143 DCHECK(code != nullptr);
144 code_ = code;
145 }
146
147 const void* GetCode() const {
148 return code_;
149 }
150
151 bool IsCompiled() const {
152 return GetCode() != nullptr;
153 }
154
155 void AddMethod(ArtMethod* method) {
156 if (!ContainsElement(methods_, method)) {
157 methods_.push_back(method);
158 }
159 }
160
161 const std::vector<ArtMethod*>& GetMethods() const {
162 return methods_;
163 }
164
165 void RemoveMethodsIn(const LinearAlloc& alloc) {
166 auto kept_end = std::remove_if(
167 methods_.begin(),
168 methods_.end(),
169 [&alloc](ArtMethod* method) { return alloc.ContainsUnsafe(method); });
170 methods_.erase(kept_end, methods_.end());
171 }
172
173 bool RemoveMethod(ArtMethod* method) {
174 auto it = std::find(methods_.begin(), methods_.end(), method);
175 if (it != methods_.end()) {
176 methods_.erase(it);
177 return true;
178 } else {
179 return false;
180 }
181 }
182
183 void MoveObsoleteMethod(ArtMethod* old_method, ArtMethod* new_method) {
184 std::replace(methods_.begin(), methods_.end(), old_method, new_method);
185 }
186
187 private:
188 const void* code_;
189 std::vector<ArtMethod*> methods_;
190};
191
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000192bool JitCodeCache::InitializeMappings(bool rwx_memory_allowed,
193 bool is_zygote,
194 std::string* error_msg) {
Mathieu Chartier32ce2ad2016-03-04 14:58:03 -0800195 ScopedTrace trace(__PRETTY_FUNCTION__);
Nicolas Geoffraya25dce92016-01-12 16:41:10 +0000196
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000197 const size_t capacity = max_capacity_;
198 const size_t data_capacity = capacity / kCodeAndDataCapacityDivider;
199 const size_t exec_capacity = capacity - data_capacity;
Orion Hodson563ada22018-09-04 11:28:31 +0100200
Orion Hodson1d3fd082018-09-28 09:38:35 +0100201 // File descriptor enabling dual-view mapping of code section.
202 unique_fd mem_fd;
203
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000204 // Zygote shouldn't create a shared mapping for JIT, so we cannot use dual view
205 // for it.
206 if (!is_zygote) {
207 // Bionic supports memfd_create, but the call may fail on older kernels.
208 mem_fd = unique_fd(art::memfd_create("/jit-cache", /* flags= */ 0));
209 if (mem_fd.get() < 0) {
210 std::ostringstream oss;
211 oss << "Failed to initialize dual view JIT. memfd_create() error: " << strerror(errno);
212 if (!rwx_memory_allowed) {
213 // Without using RWX page permissions, the JIT can not fallback to single mapping as it
214 // requires tranitioning the code pages to RWX for updates.
215 *error_msg = oss.str();
216 return false;
217 }
218 VLOG(jit) << oss.str();
Orion Hodsonad28f5e2018-10-17 09:08:17 +0100219 }
Orion Hodson1d3fd082018-09-28 09:38:35 +0100220 }
221
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000222 if (mem_fd.get() >= 0 && ftruncate(mem_fd, capacity) != 0) {
Orion Hodson1d3fd082018-09-28 09:38:35 +0100223 std::ostringstream oss;
224 oss << "Failed to initialize memory file: " << strerror(errno);
225 *error_msg = oss.str();
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000226 return false;
Orion Hodson1d3fd082018-09-28 09:38:35 +0100227 }
228
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000229 std::string data_cache_name = is_zygote ? "zygote-data-code-cache" : "data-code-cache";
230 std::string exec_cache_name = is_zygote ? "zygote-jit-code-cache" : "jit-code-cache";
Calin Juravle016fcbe22018-05-03 19:47:35 -0700231
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800232 std::string error_str;
233 // Map name specific for android_os_Debug.cpp accounting.
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000234 // Map in low 4gb to simplify accessing root tables for x86_64.
235 // We could do PC-relative addressing to avoid this problem, but that
236 // would require reserving code and data area before submitting, which
237 // means more windows for the code memory to be RWX.
Orion Hodson1d3fd082018-09-28 09:38:35 +0100238 int base_flags;
239 MemMap data_pages;
240 if (mem_fd.get() >= 0) {
241 // Dual view of JIT code cache case. Create an initial mapping of data pages large enough
242 // for data and non-writable view of JIT code pages. We use the memory file descriptor to
243 // enable dual mapping - we'll create a second mapping using the descriptor below. The
244 // mappings will look like:
245 //
246 // VA PA
247 //
248 // +---------------+
249 // | non exec code |\
250 // +---------------+ \
251 // : :\ \
252 // +---------------+.\.+---------------+
253 // | exec code | \| code |
254 // +---------------+...+---------------+
255 // | data | | data |
256 // +---------------+...+---------------+
257 //
258 // In this configuration code updates are written to the non-executable view of the code
259 // cache, and the executable view of the code cache has fixed RX memory protections.
260 //
261 // This memory needs to be mapped shared as the code portions will have two mappings.
262 base_flags = MAP_SHARED;
263 data_pages = MemMap::MapFile(
264 data_capacity + exec_capacity,
265 kProtRW,
266 base_flags,
267 mem_fd,
Andreas Gampe98ea9d92018-10-19 14:06:15 -0700268 /* start= */ 0,
269 /* low_4gb= */ true,
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000270 data_cache_name.c_str(),
Orion Hodson1d3fd082018-09-28 09:38:35 +0100271 &error_str);
272 } else {
273 // Single view of JIT code cache case. Create an initial mapping of data pages large enough
274 // for data and JIT code pages. The mappings will look like:
275 //
276 // VA PA
277 //
278 // +---------------+...+---------------+
279 // | exec code | | code |
280 // +---------------+...+---------------+
281 // | data | | data |
282 // +---------------+...+---------------+
283 //
284 // In this configuration code updates are written to the executable view of the code cache,
285 // and the executable view of the code cache transitions RX to RWX for the update and then
286 // back to RX after the update.
287 base_flags = MAP_PRIVATE | MAP_ANON;
288 data_pages = MemMap::MapAnonymous(
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000289 data_cache_name.c_str(),
Orion Hodson1d3fd082018-09-28 09:38:35 +0100290 data_capacity + exec_capacity,
291 kProtRW,
Andreas Gampe98ea9d92018-10-19 14:06:15 -0700292 /* low_4gb= */ true,
Orion Hodson1d3fd082018-09-28 09:38:35 +0100293 &error_str);
294 }
295
296 if (!data_pages.IsValid()) {
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800297 std::ostringstream oss;
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000298 oss << "Failed to create read write cache: " << error_str << " size=" << capacity;
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800299 *error_msg = oss.str();
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000300 return false;
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800301 }
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +0100302
Orion Hodson1d3fd082018-09-28 09:38:35 +0100303 MemMap exec_pages;
304 MemMap non_exec_pages;
305 if (exec_capacity > 0) {
306 uint8_t* const divider = data_pages.Begin() + data_capacity;
307 // Set initial permission for executable view to catch any SELinux permission problems early
308 // (for processes that cannot map WX pages). Otherwise, this region does not need to be
309 // executable as there is no code in the cache yet.
310 exec_pages = data_pages.RemapAtEnd(divider,
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000311 exec_cache_name.c_str(),
Orion Hodson1d3fd082018-09-28 09:38:35 +0100312 kProtRX,
313 base_flags | MAP_FIXED,
314 mem_fd.get(),
315 (mem_fd.get() >= 0) ? data_capacity : 0,
316 &error_str);
317 if (!exec_pages.IsValid()) {
318 std::ostringstream oss;
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000319 oss << "Failed to create read execute code cache: " << error_str << " size=" << capacity;
Orion Hodson1d3fd082018-09-28 09:38:35 +0100320 *error_msg = oss.str();
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000321 return false;
Orion Hodson1d3fd082018-09-28 09:38:35 +0100322 }
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +0100323
Orion Hodson1d3fd082018-09-28 09:38:35 +0100324 if (mem_fd.get() >= 0) {
325 // For dual view, create the secondary view of code memory used for updating code. This view
326 // is never executable.
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000327 std::string name = exec_cache_name + "-rw";
Orion Hodson1d3fd082018-09-28 09:38:35 +0100328 non_exec_pages = MemMap::MapFile(exec_capacity,
329 kProtR,
330 base_flags,
331 mem_fd,
Andreas Gampe98ea9d92018-10-19 14:06:15 -0700332 /* start= */ data_capacity,
333 /* low_4GB= */ false,
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000334 name.c_str(),
Orion Hodson1d3fd082018-09-28 09:38:35 +0100335 &error_str);
336 if (!non_exec_pages.IsValid()) {
Orion Hodsonad28f5e2018-10-17 09:08:17 +0100337 static const char* kFailedNxView = "Failed to map non-executable view of JIT code cache";
338 if (rwx_memory_allowed) {
339 // Log and continue as single view JIT (requires RWX memory).
340 VLOG(jit) << kFailedNxView;
341 } else {
342 *error_msg = kFailedNxView;
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000343 return false;
Orion Hodsonad28f5e2018-10-17 09:08:17 +0100344 }
Orion Hodson1d3fd082018-09-28 09:38:35 +0100345 }
346 }
347 } else {
348 // Profiling only. No memory for code required.
David Sehrd1dbb742017-07-17 11:20:38 -0700349 }
Orion Hodson1d3fd082018-09-28 09:38:35 +0100350
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000351 data_pages_ = std::move(data_pages);
352 exec_pages_ = std::move(exec_pages);
353 non_exec_pages_ = std::move(non_exec_pages);
354 return true;
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800355}
356
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000357JitCodeCache* JitCodeCache::Create(bool used_only_for_profile_data,
358 bool rwx_memory_allowed,
359 bool is_zygote,
360 std::string* error_msg) {
361 // Register for membarrier expedited sync core if JIT will be generating code.
362 if (!used_only_for_profile_data) {
363 if (art::membarrier(art::MembarrierCommand::kRegisterPrivateExpeditedSyncCore) != 0) {
364 // MEMBARRIER_CMD_PRIVATE_EXPEDITED_SYNC_CORE ensures that CPU instruction pipelines are
365 // flushed and it's used when adding code to the JIT. The memory used by the new code may
366 // have just been released and, in theory, the old code could still be in a pipeline.
367 VLOG(jit) << "Kernel does not support membarrier sync-core";
368 }
369 }
370
371 // Check whether the provided max capacity in options is below 1GB.
372 size_t max_capacity = Runtime::Current()->GetJITOptions()->GetCodeCacheMaxCapacity();
373 // We need to have 32 bit offsets from method headers in code cache which point to things
374 // in the data cache. If the maps are more than 4G apart, having multiple maps wouldn't work.
375 // Ensure we're below 1 GB to be safe.
376 if (max_capacity > 1 * GB) {
377 std::ostringstream oss;
378 oss << "Maxium code cache capacity is limited to 1 GB, "
379 << PrettySize(max_capacity) << " is too big";
380 *error_msg = oss.str();
381 return nullptr;
382 }
383
384 size_t initial_capacity = Runtime::Current()->GetJITOptions()->GetCodeCacheInitialCapacity();
385
386 std::unique_ptr<JitCodeCache> jit_code_cache(new JitCodeCache());
387
388 MutexLock mu(Thread::Current(), jit_code_cache->lock_);
389 jit_code_cache->InitializeState(initial_capacity, max_capacity);
390
391 // Zygote should never collect code to share the memory with the children.
392 if (is_zygote) {
393 jit_code_cache->SetGarbageCollectCode(false);
394 }
395
396 if (!jit_code_cache->InitializeMappings(rwx_memory_allowed, is_zygote, error_msg)) {
397 return nullptr;
398 }
399
400 jit_code_cache->InitializeSpaces();
401
402 VLOG(jit) << "Created jit code cache: initial capacity="
403 << PrettySize(initial_capacity)
404 << ", maximum capacity="
405 << PrettySize(max_capacity);
406
407 return jit_code_cache.release();
408}
409
410JitCodeCache::JitCodeCache()
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +0100411 : lock_("Jit code cache", kJitCodeCacheLock),
Nicolas Geoffraye51ca8b2016-11-22 14:49:31 +0000412 lock_cond_("Jit code cache condition variable", lock_),
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +0100413 collection_in_progress_(false),
Nicolas Geoffray35122442016-03-02 12:05:30 +0000414 last_collection_increased_code_cache_(false),
Orion Hodsonad28f5e2018-10-17 09:08:17 +0100415 garbage_collect_code_(true),
Nicolas Geoffrayb0d22082016-02-24 17:18:25 +0000416 used_memory_for_data_(0),
417 used_memory_for_code_(0),
Nicolas Geoffrayfcdd7292016-02-25 13:27:47 +0000418 number_of_compilations_(0),
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +0000419 number_of_osr_compilations_(0),
Nicolas Geoffray933330a2016-03-16 14:20:06 +0000420 number_of_collections_(0),
421 histogram_stack_map_memory_use_("Memory used for stack maps", 16),
422 histogram_code_memory_use_("Memory used for compiled code", 16),
Nicolas Geoffraye51ca8b2016-11-22 14:49:31 +0000423 histogram_profiling_info_memory_use_("Memory used for profiling info", 16),
424 is_weak_access_enabled_(true),
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000425 inline_cache_cond_("Jit inline cache condition variable", lock_),
426 zygote_data_pages_(),
427 zygote_exec_pages_(),
428 zygote_data_mspace_(nullptr),
429 zygote_exec_mspace_(nullptr) {
430}
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +0100431
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000432void JitCodeCache::InitializeState(size_t initial_capacity, size_t max_capacity) {
433 CHECK_GE(max_capacity, initial_capacity);
434 CHECK(max_capacity <= 1 * GB) << "The max supported size for JIT code cache is 1GB";
435 // Align both capacities to page size, as that's the unit mspaces use.
436 initial_capacity = RoundDown(initial_capacity, 2 * kPageSize);
437 max_capacity = RoundDown(max_capacity, 2 * kPageSize);
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +0100438
Nicolas Geoffrayce9ed362018-11-29 03:19:28 +0000439 used_memory_for_data_ = 0;
440 used_memory_for_code_ = 0;
441 number_of_compilations_ = 0;
442 number_of_osr_compilations_ = 0;
443 number_of_collections_ = 0;
444
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000445 data_pages_ = MemMap();
446 exec_pages_ = MemMap();
447 non_exec_pages_ = MemMap();
448 initial_capacity_ = initial_capacity;
449 max_capacity_ = max_capacity;
450 current_capacity_ = initial_capacity,
451 data_end_ = initial_capacity / kCodeAndDataCapacityDivider;
452 exec_end_ = initial_capacity - data_end_;
453}
454
455void JitCodeCache::InitializeSpaces() {
Orion Hodson1d3fd082018-09-28 09:38:35 +0100456 // Initialize the data heap
457 data_mspace_ = create_mspace_with_base(data_pages_.Begin(), data_end_, false /*locked*/);
458 CHECK(data_mspace_ != nullptr) << "create_mspace_with_base (data) failed";
459
460 // Initialize the code heap
461 MemMap* code_heap = nullptr;
462 if (non_exec_pages_.IsValid()) {
463 code_heap = &non_exec_pages_;
464 } else if (exec_pages_.IsValid()) {
465 code_heap = &exec_pages_;
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +0100466 }
Orion Hodson1d3fd082018-09-28 09:38:35 +0100467 if (code_heap != nullptr) {
468 // Make all pages reserved for the code heap writable. The mspace allocator, that manages the
469 // heap, will take and initialize pages in create_mspace_with_base().
470 CheckedCall(mprotect, "create code heap", code_heap->Begin(), code_heap->Size(), kProtRW);
471 exec_mspace_ = create_mspace_with_base(code_heap->Begin(), exec_end_, false /*locked*/);
472 CHECK(exec_mspace_ != nullptr) << "create_mspace_with_base (exec) failed";
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000473 SetFootprintLimit(initial_capacity_);
Orion Hodson1d3fd082018-09-28 09:38:35 +0100474 // Protect pages containing heap metadata. Updates to the code heap toggle write permission to
475 // perform the update and there are no other times write access is required.
476 CheckedCall(mprotect, "protect code heap", code_heap->Begin(), code_heap->Size(), kProtR);
477 } else {
478 exec_mspace_ = nullptr;
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +0000479 SetFootprintLimit(initial_capacity_);
Orion Hodson1d3fd082018-09-28 09:38:35 +0100480 }
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800481}
482
Vladimir Markob0b68cf2017-11-14 18:11:50 +0000483JitCodeCache::~JitCodeCache() {}
484
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +0100485bool JitCodeCache::ContainsPc(const void* ptr) const {
Nicolas Geoffrayce9ed362018-11-29 03:19:28 +0000486 return exec_pages_.HasAddress(ptr) || zygote_exec_pages_.HasAddress(ptr);
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800487}
488
Alex Light2d441b12018-06-08 15:33:21 -0700489bool JitCodeCache::WillExecuteJitCode(ArtMethod* method) {
490 ScopedObjectAccess soa(art::Thread::Current());
491 ScopedAssertNoThreadSuspension sants(__FUNCTION__);
492 if (ContainsPc(method->GetEntryPointFromQuickCompiledCode())) {
493 return true;
494 } else if (method->GetEntryPointFromQuickCompiledCode() == GetQuickInstrumentationEntryPoint()) {
495 return FindCompiledCodeForInstrumentation(method) != nullptr;
496 }
497 return false;
498}
499
Nicolas Geoffraya5891e82015-11-06 14:18:27 +0000500bool JitCodeCache::ContainsMethod(ArtMethod* method) {
501 MutexLock mu(Thread::Current(), lock_);
Vladimir Marko2196c652017-11-30 16:16:07 +0000502 if (UNLIKELY(method->IsNative())) {
503 auto it = jni_stubs_map_.find(JniStubKey(method));
504 if (it != jni_stubs_map_.end() &&
505 it->second.IsCompiled() &&
506 ContainsElement(it->second.GetMethods(), method)) {
Nicolas Geoffraya5891e82015-11-06 14:18:27 +0000507 return true;
508 }
Vladimir Marko2196c652017-11-30 16:16:07 +0000509 } else {
510 for (const auto& it : method_code_map_) {
511 if (it.second == method) {
512 return true;
513 }
514 }
Nicolas Geoffraya5891e82015-11-06 14:18:27 +0000515 }
516 return false;
517}
518
Vladimir Marko2196c652017-11-30 16:16:07 +0000519const void* JitCodeCache::GetJniStubCode(ArtMethod* method) {
520 DCHECK(method->IsNative());
521 MutexLock mu(Thread::Current(), lock_);
522 auto it = jni_stubs_map_.find(JniStubKey(method));
523 if (it != jni_stubs_map_.end()) {
524 JniStubData& data = it->second;
525 if (data.IsCompiled() && ContainsElement(data.GetMethods(), method)) {
526 return data.GetCode();
527 }
528 }
529 return nullptr;
530}
531
Alex Light2d441b12018-06-08 15:33:21 -0700532const void* JitCodeCache::FindCompiledCodeForInstrumentation(ArtMethod* method) {
Alex Light839f53a2018-07-10 15:46:14 -0700533 // If jit-gc is still on we use the SavedEntryPoint field for doing that and so cannot use it to
534 // find the instrumentation entrypoint.
535 if (LIKELY(GetGarbageCollectCode())) {
Alex Light2d441b12018-06-08 15:33:21 -0700536 return nullptr;
537 }
538 ProfilingInfo* info = method->GetProfilingInfo(kRuntimePointerSize);
539 if (info == nullptr) {
540 return nullptr;
541 }
542 // When GC is disabled for trampoline tracing we will use SavedEntrypoint to hold the actual
543 // jit-compiled version of the method. If jit-gc is disabled for other reasons this will just be
544 // nullptr.
545 return info->GetSavedEntryPoint();
546}
547
Mathieu Chartier33fbf372016-03-07 13:48:08 -0800548class ScopedCodeCacheWrite : ScopedTrace {
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +0100549 public:
Calin Juravle016fcbe22018-05-03 19:47:35 -0700550 explicit ScopedCodeCacheWrite(const JitCodeCache* const code_cache)
Orion Hodsondbd05fe2017-08-10 11:41:35 +0100551 : ScopedTrace("ScopedCodeCacheWrite"),
Calin Juravle016fcbe22018-05-03 19:47:35 -0700552 code_cache_(code_cache) {
Mathieu Chartier33fbf372016-03-07 13:48:08 -0800553 ScopedTrace trace("mprotect all");
Orion Hodson1d3fd082018-09-28 09:38:35 +0100554 const MemMap* const updatable_pages = code_cache_->GetUpdatableCodeMapping();
555 if (updatable_pages != nullptr) {
556 int prot = code_cache_->HasDualCodeMapping() ? kProtRW : kProtRWX;
557 CheckedCall(mprotect, "Cache +W", updatable_pages->Begin(), updatable_pages->Size(), prot);
558 }
Mathieu Chartiere5f13e52015-02-24 09:37:21 -0800559 }
Calin Juravle016fcbe22018-05-03 19:47:35 -0700560
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +0100561 ~ScopedCodeCacheWrite() {
Mathieu Chartier33fbf372016-03-07 13:48:08 -0800562 ScopedTrace trace("mprotect code");
Orion Hodson1d3fd082018-09-28 09:38:35 +0100563 const MemMap* const updatable_pages = code_cache_->GetUpdatableCodeMapping();
564 if (updatable_pages != nullptr) {
565 int prot = code_cache_->HasDualCodeMapping() ? kProtR : kProtRX;
566 CheckedCall(mprotect, "Cache -W", updatable_pages->Begin(), updatable_pages->Size(), prot);
567 }
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +0100568 }
Mathieu Chartier8d8de0c2017-10-04 09:35:30 -0700569
David Sehrd1dbb742017-07-17 11:20:38 -0700570 private:
Calin Juravle016fcbe22018-05-03 19:47:35 -0700571 const JitCodeCache* const code_cache_;
Orion Hodsondbd05fe2017-08-10 11:41:35 +0100572
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +0100573 DISALLOW_COPY_AND_ASSIGN(ScopedCodeCacheWrite);
574};
575
576uint8_t* JitCodeCache::CommitCode(Thread* self,
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +0100577 ArtMethod* method,
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000578 uint8_t* stack_map,
579 uint8_t* roots_data,
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +0100580 const uint8_t* code,
Nicolas Geoffrayb331feb2016-02-05 16:51:53 +0000581 size_t code_size,
Orion Hodsondbd05fe2017-08-10 11:41:35 +0100582 size_t data_size,
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000583 bool osr,
Vladimir Markoac3ac682018-09-20 11:01:43 +0100584 const std::vector<Handle<mirror::Object>>& roots,
Mingyao Yang063fc772016-08-02 11:02:54 -0700585 bool has_should_deoptimize_flag,
586 const ArenaSet<ArtMethod*>& cha_single_implementation_list) {
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +0100587 uint8_t* result = CommitCodeInternal(self,
588 method,
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000589 stack_map,
590 roots_data,
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +0100591 code,
Nicolas Geoffrayb331feb2016-02-05 16:51:53 +0000592 code_size,
Orion Hodsondbd05fe2017-08-10 11:41:35 +0100593 data_size,
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000594 osr,
Mingyao Yang063fc772016-08-02 11:02:54 -0700595 roots,
596 has_should_deoptimize_flag,
597 cha_single_implementation_list);
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +0100598 if (result == nullptr) {
599 // Retry.
600 GarbageCollectCache(self);
601 result = CommitCodeInternal(self,
602 method,
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000603 stack_map,
604 roots_data,
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +0100605 code,
Nicolas Geoffrayb331feb2016-02-05 16:51:53 +0000606 code_size,
Orion Hodsondbd05fe2017-08-10 11:41:35 +0100607 data_size,
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000608 osr,
Mingyao Yang063fc772016-08-02 11:02:54 -0700609 roots,
610 has_should_deoptimize_flag,
611 cha_single_implementation_list);
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +0100612 }
613 return result;
614}
615
616bool JitCodeCache::WaitForPotentialCollectionToComplete(Thread* self) {
617 bool in_collection = false;
618 while (collection_in_progress_) {
619 in_collection = true;
620 lock_cond_.Wait(self);
621 }
622 return in_collection;
623}
624
625static uintptr_t FromCodeToAllocation(const void* code) {
626 size_t alignment = GetInstructionSetAlignment(kRuntimeISA);
627 return reinterpret_cast<uintptr_t>(code) - RoundUp(sizeof(OatQuickMethodHeader), alignment);
628}
629
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000630static uint32_t ComputeRootTableSize(uint32_t number_of_roots) {
631 return sizeof(uint32_t) + number_of_roots * sizeof(GcRoot<mirror::Object>);
632}
633
634static uint32_t GetNumberOfRoots(const uint8_t* stack_map) {
635 // The length of the table is stored just before the stack map (and therefore at the end of
636 // the table itself), in order to be able to fetch it from a `stack_map` pointer.
637 return reinterpret_cast<const uint32_t*>(stack_map)[-1];
638}
639
Mathieu Chartier7a704be2016-11-22 13:24:40 -0800640static void FillRootTableLength(uint8_t* roots_data, uint32_t length) {
641 // Store the length of the table at the end. This will allow fetching it from a `stack_map`
642 // pointer.
643 reinterpret_cast<uint32_t*>(roots_data)[length] = length;
644}
645
Nicolas Geoffrayf4b94422016-12-05 00:10:09 +0000646static const uint8_t* FromStackMapToRoots(const uint8_t* stack_map_data) {
647 return stack_map_data - ComputeRootTableSize(GetNumberOfRoots(stack_map_data));
648}
649
Vladimir Markoac3ac682018-09-20 11:01:43 +0100650static void DCheckRootsAreValid(const std::vector<Handle<mirror::Object>>& roots)
Alex Light3e36a9c2018-06-19 09:45:05 -0700651 REQUIRES(!Locks::intern_table_lock_) REQUIRES_SHARED(Locks::mutator_lock_) {
652 if (!kIsDebugBuild) {
653 return;
654 }
Alex Light3e36a9c2018-06-19 09:45:05 -0700655 // Put all roots in `roots_data`.
Vladimir Markoac3ac682018-09-20 11:01:43 +0100656 for (Handle<mirror::Object> object : roots) {
Alex Light3e36a9c2018-06-19 09:45:05 -0700657 // Ensure the string is strongly interned. b/32995596
658 if (object->IsString()) {
Vladimir Markoac3ac682018-09-20 11:01:43 +0100659 ObjPtr<mirror::String> str = object->AsString();
Alex Light3e36a9c2018-06-19 09:45:05 -0700660 ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
661 CHECK(class_linker->GetInternTable()->LookupStrong(Thread::Current(), str) != nullptr);
662 }
663 }
664}
665
666void JitCodeCache::FillRootTable(uint8_t* roots_data,
Vladimir Markoac3ac682018-09-20 11:01:43 +0100667 const std::vector<Handle<mirror::Object>>& roots) {
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000668 GcRoot<mirror::Object>* gc_roots = reinterpret_cast<GcRoot<mirror::Object>*>(roots_data);
Vladimir Markoac3ac682018-09-20 11:01:43 +0100669 const uint32_t length = roots.size();
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000670 // Put all roots in `roots_data`.
671 for (uint32_t i = 0; i < length; ++i) {
Vladimir Markoac3ac682018-09-20 11:01:43 +0100672 ObjPtr<mirror::Object> object = roots[i].Get();
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000673 gc_roots[i] = GcRoot<mirror::Object>(object);
674 }
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000675}
676
Orion Hodsondbd05fe2017-08-10 11:41:35 +0100677static uint8_t* GetRootTable(const void* code_ptr, uint32_t* number_of_roots = nullptr) {
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000678 OatQuickMethodHeader* method_header = OatQuickMethodHeader::FromCodePointer(code_ptr);
679 uint8_t* data = method_header->GetOptimizedCodeInfoPtr();
680 uint32_t roots = GetNumberOfRoots(data);
681 if (number_of_roots != nullptr) {
682 *number_of_roots = roots;
683 }
684 return data - ComputeRootTableSize(roots);
685}
686
Nicolas Geoffray6ca115b2017-05-10 15:09:35 +0100687// Use a sentinel for marking entries in the JIT table that have been cleared.
688// This helps diagnosing in case the compiled code tries to wrongly access such
689// entries.
Andreas Gampe5629d2d2017-05-15 16:28:13 -0700690static mirror::Class* const weak_sentinel =
691 reinterpret_cast<mirror::Class*>(Context::kBadGprBase + 0xff);
Nicolas Geoffray6ca115b2017-05-10 15:09:35 +0100692
Nicolas Geoffray22384ae2016-12-12 22:33:36 +0000693// Helper for the GC to process a weak class in a JIT root table.
Nicolas Geoffray6ca115b2017-05-10 15:09:35 +0100694static inline void ProcessWeakClass(GcRoot<mirror::Class>* root_ptr,
695 IsMarkedVisitor* visitor,
696 mirror::Class* update)
Nicolas Geoffray22384ae2016-12-12 22:33:36 +0000697 REQUIRES_SHARED(Locks::mutator_lock_) {
698 // This does not need a read barrier because this is called by GC.
699 mirror::Class* cls = root_ptr->Read<kWithoutReadBarrier>();
Nicolas Geoffray6ca115b2017-05-10 15:09:35 +0100700 if (cls != nullptr && cls != weak_sentinel) {
Mathieu Chartierd7a7f2f2018-09-07 11:57:18 -0700701 DCHECK((cls->IsClass<kDefaultVerifyFlags>()));
Nicolas Geoffray22384ae2016-12-12 22:33:36 +0000702 // Look at the classloader of the class to know if it has been unloaded.
703 // This does not need a read barrier because this is called by GC.
704 mirror::Object* class_loader =
705 cls->GetClassLoader<kDefaultVerifyFlags, kWithoutReadBarrier>();
706 if (class_loader == nullptr || visitor->IsMarked(class_loader) != nullptr) {
707 // The class loader is live, update the entry if the class has moved.
708 mirror::Class* new_cls = down_cast<mirror::Class*>(visitor->IsMarked(cls));
709 // Note that new_object can be null for CMS and newly allocated objects.
710 if (new_cls != nullptr && new_cls != cls) {
711 *root_ptr = GcRoot<mirror::Class>(new_cls);
712 }
713 } else {
714 // The class loader is not live, clear the entry.
Nicolas Geoffray6ca115b2017-05-10 15:09:35 +0100715 *root_ptr = GcRoot<mirror::Class>(update);
Nicolas Geoffray22384ae2016-12-12 22:33:36 +0000716 }
717 }
718}
719
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000720void JitCodeCache::SweepRootTables(IsMarkedVisitor* visitor) {
721 MutexLock mu(Thread::Current(), lock_);
722 for (const auto& entry : method_code_map_) {
723 uint32_t number_of_roots = 0;
724 uint8_t* roots_data = GetRootTable(entry.first, &number_of_roots);
725 GcRoot<mirror::Object>* roots = reinterpret_cast<GcRoot<mirror::Object>*>(roots_data);
726 for (uint32_t i = 0; i < number_of_roots; ++i) {
727 // This does not need a read barrier because this is called by GC.
728 mirror::Object* object = roots[i].Read<kWithoutReadBarrier>();
Nicolas Geoffray6ca115b2017-05-10 15:09:35 +0100729 if (object == nullptr || object == weak_sentinel) {
Nicolas Geoffray22384ae2016-12-12 22:33:36 +0000730 // entry got deleted in a previous sweep.
731 } else if (object->IsString<kDefaultVerifyFlags, kWithoutReadBarrier>()) {
732 mirror::Object* new_object = visitor->IsMarked(object);
733 // We know the string is marked because it's a strongly-interned string that
734 // is always alive. The IsMarked implementation of the CMS collector returns
735 // null for newly allocated objects, but we know those haven't moved. Therefore,
736 // only update the entry if we get a different non-null string.
737 // TODO: Do not use IsMarked for j.l.Class, and adjust once we move this method
738 // out of the weak access/creation pause. b/32167580
739 if (new_object != nullptr && new_object != object) {
740 DCHECK(new_object->IsString());
741 roots[i] = GcRoot<mirror::Object>(new_object);
742 }
743 } else {
Nicolas Geoffray6ca115b2017-05-10 15:09:35 +0100744 ProcessWeakClass(
745 reinterpret_cast<GcRoot<mirror::Class>*>(&roots[i]), visitor, weak_sentinel);
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000746 }
747 }
748 }
Nicolas Geoffraye51ca8b2016-11-22 14:49:31 +0000749 // Walk over inline caches to clear entries containing unloaded classes.
750 for (ProfilingInfo* info : profiling_infos_) {
751 for (size_t i = 0; i < info->number_of_inline_caches_; ++i) {
752 InlineCache* cache = &info->cache_[i];
753 for (size_t j = 0; j < InlineCache::kIndividualCacheSize; ++j) {
Nicolas Geoffray6ca115b2017-05-10 15:09:35 +0100754 ProcessWeakClass(&cache->classes_[j], visitor, nullptr);
Nicolas Geoffraye51ca8b2016-11-22 14:49:31 +0000755 }
756 }
757 }
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000758}
759
Orion Hodson607624f2018-05-11 10:10:46 +0100760void JitCodeCache::FreeCodeAndData(const void* code_ptr) {
Nicolas Geoffrayae982f92018-12-08 12:31:10 +0000761 if (IsInZygoteExecSpace(code_ptr)) {
762 // No need to free, this is shared memory.
763 return;
764 }
Orion Hodsondbd05fe2017-08-10 11:41:35 +0100765 uintptr_t allocation = FromCodeToAllocation(code_ptr);
David Srbecky5cc349f2015-12-18 15:04:48 +0000766 // Notify native debugger that we are about to remove the code.
767 // It does nothing if we are not using native debugger.
David Srbeckyafc60cd2018-12-05 11:59:31 +0000768 RemoveNativeDebugInfoForJit(Thread::Current(), code_ptr);
Vladimir Marko2196c652017-11-30 16:16:07 +0000769 if (OatQuickMethodHeader::FromCodePointer(code_ptr)->IsOptimized()) {
770 FreeData(GetRootTable(code_ptr));
771 } // else this is a JNI stub without any data.
Orion Hodson1d3fd082018-09-28 09:38:35 +0100772
773 uint8_t* code_allocation = reinterpret_cast<uint8_t*>(allocation);
774 if (HasDualCodeMapping()) {
775 code_allocation = TranslateAddress(code_allocation, exec_pages_, non_exec_pages_);
776 }
777
778 FreeCode(code_allocation);
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +0100779}
780
Mingyao Yang063fc772016-08-02 11:02:54 -0700781void JitCodeCache::FreeAllMethodHeaders(
782 const std::unordered_set<OatQuickMethodHeader*>& method_headers) {
Mingyao Yang063fc772016-08-02 11:02:54 -0700783 // We need to remove entries in method_headers from CHA dependencies
784 // first since once we do FreeCode() below, the memory can be reused
785 // so it's possible for the same method_header to start representing
786 // different compile code.
787 MutexLock mu(Thread::Current(), lock_);
Alex Light33b7b5d2018-08-07 19:13:51 +0000788 {
789 MutexLock mu2(Thread::Current(), *Locks::cha_lock_);
790 Runtime::Current()->GetClassLinker()->GetClassHierarchyAnalysis()
791 ->RemoveDependentsWithMethodHeaders(method_headers);
792 }
793
Calin Juravle016fcbe22018-05-03 19:47:35 -0700794 ScopedCodeCacheWrite scc(this);
Mingyao Yang063fc772016-08-02 11:02:54 -0700795 for (const OatQuickMethodHeader* method_header : method_headers) {
Orion Hodson607624f2018-05-11 10:10:46 +0100796 FreeCodeAndData(method_header->GetCode());
Mingyao Yang063fc772016-08-02 11:02:54 -0700797 }
798}
799
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +0100800void JitCodeCache::RemoveMethodsIn(Thread* self, const LinearAlloc& alloc) {
Mathieu Chartier32ce2ad2016-03-04 14:58:03 -0800801 ScopedTrace trace(__PRETTY_FUNCTION__);
Mingyao Yang063fc772016-08-02 11:02:54 -0700802 // We use a set to first collect all method_headers whose code need to be
803 // removed. We need to free the underlying code after we remove CHA dependencies
804 // for entries in this set. And it's more efficient to iterate through
805 // the CHA dependency map just once with an unordered_set.
806 std::unordered_set<OatQuickMethodHeader*> method_headers;
Nicolas Geoffray26705e22015-10-28 12:50:11 +0000807 {
Mingyao Yang063fc772016-08-02 11:02:54 -0700808 MutexLock mu(self, lock_);
809 // We do not check if a code cache GC is in progress, as this method comes
810 // with the classlinker_classes_lock_ held, and suspending ourselves could
811 // lead to a deadlock.
812 {
Calin Juravle016fcbe22018-05-03 19:47:35 -0700813 ScopedCodeCacheWrite scc(this);
Vladimir Marko2196c652017-11-30 16:16:07 +0000814 for (auto it = jni_stubs_map_.begin(); it != jni_stubs_map_.end();) {
815 it->second.RemoveMethodsIn(alloc);
816 if (it->second.GetMethods().empty()) {
817 method_headers.insert(OatQuickMethodHeader::FromCodePointer(it->second.GetCode()));
818 it = jni_stubs_map_.erase(it);
819 } else {
820 it->first.UpdateShorty(it->second.GetMethods().front());
821 ++it;
822 }
823 }
Mingyao Yang063fc772016-08-02 11:02:54 -0700824 for (auto it = method_code_map_.begin(); it != method_code_map_.end();) {
825 if (alloc.ContainsUnsafe(it->second)) {
826 method_headers.insert(OatQuickMethodHeader::FromCodePointer(it->first));
827 it = method_code_map_.erase(it);
828 } else {
829 ++it;
830 }
831 }
832 }
833 for (auto it = osr_code_map_.begin(); it != osr_code_map_.end();) {
834 if (alloc.ContainsUnsafe(it->first)) {
835 // Note that the code has already been pushed to method_headers in the loop
836 // above and is going to be removed in FreeCode() below.
837 it = osr_code_map_.erase(it);
838 } else {
839 ++it;
840 }
841 }
842 for (auto it = profiling_infos_.begin(); it != profiling_infos_.end();) {
843 ProfilingInfo* info = *it;
844 if (alloc.ContainsUnsafe(info->GetMethod())) {
845 info->GetMethod()->SetProfilingInfo(nullptr);
846 FreeData(reinterpret_cast<uint8_t*>(info));
847 it = profiling_infos_.erase(it);
Nicolas Geoffray26705e22015-10-28 12:50:11 +0000848 } else {
849 ++it;
850 }
851 }
852 }
Mingyao Yang063fc772016-08-02 11:02:54 -0700853 FreeAllMethodHeaders(method_headers);
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +0100854}
855
Nicolas Geoffraye51ca8b2016-11-22 14:49:31 +0000856bool JitCodeCache::IsWeakAccessEnabled(Thread* self) const {
857 return kUseReadBarrier
858 ? self->GetWeakRefAccessEnabled()
Orion Hodson88591fe2018-03-06 13:35:43 +0000859 : is_weak_access_enabled_.load(std::memory_order_seq_cst);
Nicolas Geoffraye51ca8b2016-11-22 14:49:31 +0000860}
861
862void JitCodeCache::WaitUntilInlineCacheAccessible(Thread* self) {
863 if (IsWeakAccessEnabled(self)) {
864 return;
865 }
866 ScopedThreadSuspension sts(self, kWaitingWeakGcRootRead);
Nicolas Geoffrayb6e20ae2016-03-07 14:29:04 +0000867 MutexLock mu(self, lock_);
Nicolas Geoffraye51ca8b2016-11-22 14:49:31 +0000868 while (!IsWeakAccessEnabled(self)) {
869 inline_cache_cond_.Wait(self);
870 }
871}
872
873void JitCodeCache::BroadcastForInlineCacheAccess() {
874 Thread* self = Thread::Current();
875 MutexLock mu(self, lock_);
876 inline_cache_cond_.Broadcast(self);
877}
878
879void JitCodeCache::AllowInlineCacheAccess() {
880 DCHECK(!kUseReadBarrier);
Orion Hodson88591fe2018-03-06 13:35:43 +0000881 is_weak_access_enabled_.store(true, std::memory_order_seq_cst);
Nicolas Geoffraye51ca8b2016-11-22 14:49:31 +0000882 BroadcastForInlineCacheAccess();
883}
884
885void JitCodeCache::DisallowInlineCacheAccess() {
886 DCHECK(!kUseReadBarrier);
Orion Hodson88591fe2018-03-06 13:35:43 +0000887 is_weak_access_enabled_.store(false, std::memory_order_seq_cst);
Nicolas Geoffraye51ca8b2016-11-22 14:49:31 +0000888}
889
890void JitCodeCache::CopyInlineCacheInto(const InlineCache& ic,
891 Handle<mirror::ObjectArray<mirror::Class>> array) {
892 WaitUntilInlineCacheAccessible(Thread::Current());
893 // Note that we don't need to lock `lock_` here, the compiler calling
894 // this method has already ensured the inline cache will not be deleted.
895 for (size_t in_cache = 0, in_array = 0;
896 in_cache < InlineCache::kIndividualCacheSize;
897 ++in_cache) {
898 mirror::Class* object = ic.classes_[in_cache].Read();
899 if (object != nullptr) {
900 array->Set(in_array++, object);
Nicolas Geoffrayb6e20ae2016-03-07 14:29:04 +0000901 }
902 }
903}
904
David Srbeckye36e7f22018-11-14 14:21:23 +0000905static void ClearMethodCounter(ArtMethod* method, bool was_warm)
906 REQUIRES_SHARED(Locks::mutator_lock_) {
Mathieu Chartierf044c222017-05-31 15:27:54 -0700907 if (was_warm) {
Vladimir Markoc945e0d2018-07-18 17:26:45 +0100908 method->SetPreviouslyWarm();
Mathieu Chartierf044c222017-05-31 15:27:54 -0700909 }
910 // We reset the counter to 1 so that the profile knows that the method was executed at least once.
911 // This is required for layout purposes.
Nicolas Geoffray88f50b12017-06-09 16:08:47 +0100912 // We also need to make sure we'll pass the warmup threshold again, so we set to 0 if
913 // the warmup threshold is 1.
914 uint16_t jit_warmup_threshold = Runtime::Current()->GetJITOptions()->GetWarmupThreshold();
915 method->SetCounter(std::min(jit_warmup_threshold - 1, 1));
Mathieu Chartierf044c222017-05-31 15:27:54 -0700916}
917
Alex Light33b7b5d2018-08-07 19:13:51 +0000918void JitCodeCache::WaitForPotentialCollectionToCompleteRunnable(Thread* self) {
919 while (collection_in_progress_) {
920 lock_.Unlock(self);
921 {
922 ScopedThreadSuspension sts(self, kSuspended);
923 MutexLock mu(self, lock_);
924 WaitForPotentialCollectionToComplete(self);
925 }
926 lock_.Lock(self);
927 }
928}
929
Orion Hodson1d3fd082018-09-28 09:38:35 +0100930const MemMap* JitCodeCache::GetUpdatableCodeMapping() const {
931 if (HasDualCodeMapping()) {
932 return &non_exec_pages_;
933 } else if (HasCodeMapping()) {
934 return &exec_pages_;
935 } else {
936 return nullptr;
937 }
938}
939
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +0100940uint8_t* JitCodeCache::CommitCodeInternal(Thread* self,
941 ArtMethod* method,
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000942 uint8_t* stack_map,
943 uint8_t* roots_data,
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +0100944 const uint8_t* code,
Nicolas Geoffrayb331feb2016-02-05 16:51:53 +0000945 size_t code_size,
Orion Hodsondbd05fe2017-08-10 11:41:35 +0100946 size_t data_size,
Nicolas Geoffray132d8362016-11-16 09:19:42 +0000947 bool osr,
Vladimir Markoac3ac682018-09-20 11:01:43 +0100948 const std::vector<Handle<mirror::Object>>& roots,
Mingyao Yang063fc772016-08-02 11:02:54 -0700949 bool has_should_deoptimize_flag,
950 const ArenaSet<ArtMethod*>&
951 cha_single_implementation_list) {
Vladimir Marko2196c652017-11-30 16:16:07 +0000952 DCHECK(!method->IsNative() || !osr);
Alex Light33b7b5d2018-08-07 19:13:51 +0000953
954 if (!method->IsNative()) {
955 // We need to do this before grabbing the lock_ because it needs to be able to see the string
956 // InternTable. Native methods do not have roots.
957 DCheckRootsAreValid(roots);
958 }
959
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +0100960 OatQuickMethodHeader* method_header = nullptr;
Nicolas Geoffray1e7de6c2015-10-21 12:07:31 +0100961 uint8_t* code_ptr = nullptr;
Orion Hodson1d3fd082018-09-28 09:38:35 +0100962
Alex Light33b7b5d2018-08-07 19:13:51 +0000963 MutexLock mu(self, lock_);
964 // We need to make sure that there will be no jit-gcs going on and wait for any ongoing one to
965 // finish.
966 WaitForPotentialCollectionToCompleteRunnable(self);
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +0100967 {
Alex Light33b7b5d2018-08-07 19:13:51 +0000968 ScopedCodeCacheWrite scc(this);
Orion Hodson1d3fd082018-09-28 09:38:35 +0100969
970 size_t alignment = GetInstructionSetAlignment(kRuntimeISA);
971 // Ensure the header ends up at expected instruction alignment.
972 size_t header_size = RoundUp(sizeof(OatQuickMethodHeader), alignment);
973 size_t total_size = header_size + code_size;
974
975 // AllocateCode allocates memory in non-executable region for alignment header and code. The
976 // header size may include alignment padding.
977 uint8_t* nox_memory = AllocateCode(total_size);
978 if (nox_memory == nullptr) {
Alex Light33b7b5d2018-08-07 19:13:51 +0000979 return nullptr;
980 }
Nicolas Geoffrayd28b9692015-11-04 14:36:55 +0000981
Orion Hodson1d3fd082018-09-28 09:38:35 +0100982 // code_ptr points to non-executable code.
983 code_ptr = nox_memory + header_size;
Alex Light33b7b5d2018-08-07 19:13:51 +0000984 std::copy(code, code + code_size, code_ptr);
985 method_header = OatQuickMethodHeader::FromCodePointer(code_ptr);
Orion Hodson1d3fd082018-09-28 09:38:35 +0100986
987 // From here code_ptr points to executable code.
988 if (HasDualCodeMapping()) {
989 code_ptr = TranslateAddress(code_ptr, non_exec_pages_, exec_pages_);
990 }
991
Alex Light33b7b5d2018-08-07 19:13:51 +0000992 new (method_header) OatQuickMethodHeader(
993 (stack_map != nullptr) ? code_ptr - stack_map : 0u,
994 code_size);
Orion Hodson1d3fd082018-09-28 09:38:35 +0100995
996 DCHECK(!Runtime::Current()->IsAotCompiler());
997 if (has_should_deoptimize_flag) {
998 method_header->SetHasShouldDeoptimizeFlag();
999 }
1000
1001 // Update method_header pointer to executable code region.
1002 if (HasDualCodeMapping()) {
1003 method_header = TranslateAddress(method_header, non_exec_pages_, exec_pages_);
1004 }
1005
1006 // Both instruction and data caches need flushing to the point of unification where both share
1007 // a common view of memory. Flushing the data cache ensures the dirty cachelines from the
1008 // newly added code are written out to the point of unification. Flushing the instruction
1009 // cache ensures the newly written code will be fetched from the point of unification before
1010 // use. Memory in the code cache is re-cycled as code is added and removed. The flushes
1011 // prevent stale code from residing in the instruction cache.
1012 //
1013 // Caches are flushed before write permission is removed because some ARMv8 Qualcomm kernels
1014 // may trigger a segfault if a page fault occurs when requesting a cache maintenance
1015 // operation. This is a kernel bug that we need to work around until affected devices
1016 // (e.g. Nexus 5X and 6P) stop being supported or their kernels are fixed.
Alex Light33b7b5d2018-08-07 19:13:51 +00001017 //
1018 // For reference, this behavior is caused by this commit:
1019 // https://android.googlesource.com/kernel/msm/+/3fbe6bc28a6b9939d0650f2f17eb5216c719950c
Orion Hodson1d3fd082018-09-28 09:38:35 +01001020 //
1021 if (HasDualCodeMapping()) {
1022 // Flush the data cache lines associated with the non-executable copy of the code just added.
1023 FlushDataCache(nox_memory, nox_memory + total_size);
1024 }
1025 // FlushInstructionCache() flushes both data and instruction caches lines. The cacheline range
1026 // flushed is for the executable mapping of the code just added.
Orion Hodson38d29fd2018-09-07 12:58:37 +01001027 FlushInstructionCache(code_ptr, code_ptr + code_size);
Orion Hodsonf2331362018-07-11 15:14:10 +01001028
1029 // Ensure CPU instruction pipelines are flushed for all cores. This is necessary for
1030 // correctness as code may still be in instruction pipelines despite the i-cache flush. It is
1031 // not safe to assume that changing permissions with mprotect (RX->RWX->RX) will cause a TLB
1032 // shootdown (incidentally invalidating the CPU pipelines by sending an IPI to all cores to
1033 // notify them of the TLB invalidation). Some architectures, notably ARM and ARM64, have
1034 // hardware support that broadcasts TLB invalidations and so their kernels have no software
Orion Hodson1d3fd082018-09-28 09:38:35 +01001035 // based TLB shootdown. The sync-core flavor of membarrier was introduced in Linux 4.16 to
1036 // address this (see mbarrier(2)). The membarrier here will fail on prior kernels and on
1037 // platforms lacking the appropriate support.
Orion Hodson563ada22018-09-04 11:28:31 +01001038 art::membarrier(art::MembarrierCommand::kPrivateExpeditedSyncCore);
Orion Hodson38d29fd2018-09-07 12:58:37 +01001039
Nicolas Geoffray0a522232016-01-19 09:34:58 +00001040 number_of_compilations_++;
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +01001041 }
Orion Hodson1d3fd082018-09-28 09:38:35 +01001042
Nicolas Geoffraya5891e82015-11-06 14:18:27 +00001043 // We need to update the entry point in the runnable state for the instrumentation.
1044 {
Alex Light33b7b5d2018-08-07 19:13:51 +00001045 // The following needs to be guarded by cha_lock_ also. Otherwise it's possible that the
1046 // compiled code is considered invalidated by some class linking, but below we still make the
1047 // compiled code valid for the method. Need cha_lock_ for checking all single-implementation
1048 // flags and register dependencies.
Mingyao Yang063fc772016-08-02 11:02:54 -07001049 MutexLock cha_mu(self, *Locks::cha_lock_);
1050 bool single_impl_still_valid = true;
1051 for (ArtMethod* single_impl : cha_single_implementation_list) {
1052 if (!single_impl->HasSingleImplementation()) {
Jeff Hao00286db2017-05-30 16:53:07 -07001053 // Simply discard the compiled code. Clear the counter so that it may be recompiled later.
1054 // Hopefully the class hierarchy will be more stable when compilation is retried.
Mingyao Yang063fc772016-08-02 11:02:54 -07001055 single_impl_still_valid = false;
Andreas Gampe98ea9d92018-10-19 14:06:15 -07001056 ClearMethodCounter(method, /*was_warm=*/ false);
Mingyao Yang063fc772016-08-02 11:02:54 -07001057 break;
1058 }
1059 }
1060
1061 // Discard the code if any single-implementation assumptions are now invalid.
1062 if (!single_impl_still_valid) {
1063 VLOG(jit) << "JIT discarded jitted code due to invalid single-implementation assumptions.";
1064 return nullptr;
1065 }
Nicolas Geoffray433b79a2017-01-30 20:54:45 +00001066 DCHECK(cha_single_implementation_list.empty() || !Runtime::Current()->IsJavaDebuggable())
Alex Lightdba61482016-12-21 08:20:29 -08001067 << "Should not be using cha on debuggable apps/runs!";
1068
Mingyao Yang063fc772016-08-02 11:02:54 -07001069 for (ArtMethod* single_impl : cha_single_implementation_list) {
Andreas Gampec1ac9ee2017-07-24 22:35:49 -07001070 Runtime::Current()->GetClassLinker()->GetClassHierarchyAnalysis()->AddDependency(
Mingyao Yang063fc772016-08-02 11:02:54 -07001071 single_impl, method, method_header);
1072 }
1073
Vladimir Marko2196c652017-11-30 16:16:07 +00001074 if (UNLIKELY(method->IsNative())) {
Vladimir Marko2196c652017-11-30 16:16:07 +00001075 auto it = jni_stubs_map_.find(JniStubKey(method));
1076 DCHECK(it != jni_stubs_map_.end())
1077 << "Entry inserted in NotifyCompilationOf() should be alive.";
1078 JniStubData* data = &it->second;
1079 DCHECK(ContainsElement(data->GetMethods(), method))
1080 << "Entry inserted in NotifyCompilationOf() should contain this method.";
1081 data->SetCode(code_ptr);
1082 instrumentation::Instrumentation* instrum = Runtime::Current()->GetInstrumentation();
1083 for (ArtMethod* m : data->GetMethods()) {
1084 instrum->UpdateMethodsCode(m, method_header->GetEntryPoint());
1085 }
Nicolas Geoffray480d5102016-04-18 12:09:30 +01001086 } else {
Vladimir Marko2196c652017-11-30 16:16:07 +00001087 // Fill the root table before updating the entry point.
1088 DCHECK_EQ(FromStackMapToRoots(stack_map), roots_data);
1089 DCHECK_LE(roots_data, stack_map);
1090 FillRootTable(roots_data, roots);
1091 {
1092 // Flush data cache, as compiled code references literals in it.
Orion Hodson38d29fd2018-09-07 12:58:37 +01001093 FlushDataCache(roots_data, roots_data + data_size);
Vladimir Marko2196c652017-11-30 16:16:07 +00001094 }
1095 method_code_map_.Put(code_ptr, method);
1096 if (osr) {
1097 number_of_osr_compilations_++;
1098 osr_code_map_.Put(method, code_ptr);
1099 } else {
1100 Runtime::Current()->GetInstrumentation()->UpdateMethodsCode(
1101 method, method_header->GetEntryPoint());
1102 }
Nicolas Geoffrayb331feb2016-02-05 16:51:53 +00001103 }
Nicolas Geoffraya5891e82015-11-06 14:18:27 +00001104 VLOG(jit)
Nicolas Geoffray71cd50f2016-04-14 15:00:33 +01001105 << "JIT added (osr=" << std::boolalpha << osr << std::noboolalpha << ") "
David Sehr709b0702016-10-13 09:12:37 -07001106 << ArtMethod::PrettyMethod(method) << "@" << method
Nicolas Geoffraya5891e82015-11-06 14:18:27 +00001107 << " ccache_size=" << PrettySize(CodeCacheSizeLocked()) << ": "
1108 << " dcache_size=" << PrettySize(DataCacheSizeLocked()) << ": "
1109 << reinterpret_cast<const void*>(method_header->GetEntryPoint()) << ","
Mingyao Yang063fc772016-08-02 11:02:54 -07001110 << reinterpret_cast<const void*>(method_header->GetEntryPoint() +
1111 method_header->GetCodeSize());
Nicolas Geoffray933330a2016-03-16 14:20:06 +00001112 histogram_code_memory_use_.AddValue(code_size);
1113 if (code_size > kCodeSizeLogThreshold) {
1114 LOG(INFO) << "JIT allocated "
1115 << PrettySize(code_size)
1116 << " for compiled code of "
David Sehr709b0702016-10-13 09:12:37 -07001117 << ArtMethod::PrettyMethod(method);
Nicolas Geoffray933330a2016-03-16 14:20:06 +00001118 }
Nicolas Geoffraya5891e82015-11-06 14:18:27 +00001119 }
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +01001120
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +01001121 return reinterpret_cast<uint8_t*>(method_header);
1122}
1123
1124size_t JitCodeCache::CodeCacheSize() {
1125 MutexLock mu(Thread::Current(), lock_);
Nicolas Geoffraya5891e82015-11-06 14:18:27 +00001126 return CodeCacheSizeLocked();
1127}
1128
Orion Hodsoneced6922017-06-01 10:54:28 +01001129bool JitCodeCache::RemoveMethod(ArtMethod* method, bool release_memory) {
Vladimir Marko2196c652017-11-30 16:16:07 +00001130 // This function is used only for testing and only with non-native methods.
1131 CHECK(!method->IsNative());
1132
Orion Hodsoneced6922017-06-01 10:54:28 +01001133 MutexLock mu(Thread::Current(), lock_);
Orion Hodsoneced6922017-06-01 10:54:28 +01001134
Vladimir Marko2196c652017-11-30 16:16:07 +00001135 bool osr = osr_code_map_.find(method) != osr_code_map_.end();
1136 bool in_cache = RemoveMethodLocked(method, release_memory);
Orion Hodsoneced6922017-06-01 10:54:28 +01001137
1138 if (!in_cache) {
1139 return false;
1140 }
1141
David Srbeckye36e7f22018-11-14 14:21:23 +00001142 method->SetCounter(0);
Orion Hodsoneced6922017-06-01 10:54:28 +01001143 Runtime::Current()->GetInstrumentation()->UpdateMethodsCode(
1144 method, GetQuickToInterpreterBridge());
1145 VLOG(jit)
1146 << "JIT removed (osr=" << std::boolalpha << osr << std::noboolalpha << ") "
1147 << ArtMethod::PrettyMethod(method) << "@" << method
1148 << " ccache_size=" << PrettySize(CodeCacheSizeLocked()) << ": "
1149 << " dcache_size=" << PrettySize(DataCacheSizeLocked());
1150 return true;
1151}
1152
Vladimir Marko2196c652017-11-30 16:16:07 +00001153bool JitCodeCache::RemoveMethodLocked(ArtMethod* method, bool release_memory) {
1154 if (LIKELY(!method->IsNative())) {
1155 ProfilingInfo* info = method->GetProfilingInfo(kRuntimePointerSize);
1156 if (info != nullptr) {
1157 RemoveElement(profiling_infos_, info);
1158 }
1159 method->SetProfilingInfo(nullptr);
1160 }
1161
1162 bool in_cache = false;
Calin Juravle016fcbe22018-05-03 19:47:35 -07001163 ScopedCodeCacheWrite ccw(this);
Vladimir Marko2196c652017-11-30 16:16:07 +00001164 if (UNLIKELY(method->IsNative())) {
1165 auto it = jni_stubs_map_.find(JniStubKey(method));
1166 if (it != jni_stubs_map_.end() && it->second.RemoveMethod(method)) {
1167 in_cache = true;
1168 if (it->second.GetMethods().empty()) {
1169 if (release_memory) {
Orion Hodson607624f2018-05-11 10:10:46 +01001170 FreeCodeAndData(it->second.GetCode());
Vladimir Marko2196c652017-11-30 16:16:07 +00001171 }
1172 jni_stubs_map_.erase(it);
1173 } else {
1174 it->first.UpdateShorty(it->second.GetMethods().front());
1175 }
1176 }
1177 } else {
1178 for (auto it = method_code_map_.begin(); it != method_code_map_.end();) {
1179 if (it->second == method) {
1180 in_cache = true;
1181 if (release_memory) {
Orion Hodson607624f2018-05-11 10:10:46 +01001182 FreeCodeAndData(it->first);
Vladimir Marko2196c652017-11-30 16:16:07 +00001183 }
1184 it = method_code_map_.erase(it);
1185 } else {
1186 ++it;
1187 }
1188 }
1189
1190 auto osr_it = osr_code_map_.find(method);
1191 if (osr_it != osr_code_map_.end()) {
1192 osr_code_map_.erase(osr_it);
1193 }
1194 }
1195
1196 return in_cache;
1197}
1198
Alex Lightdba61482016-12-21 08:20:29 -08001199// This notifies the code cache that the given method has been redefined and that it should remove
1200// any cached information it has on the method. All threads must be suspended before calling this
1201// method. The compiled code for the method (if there is any) must not be in any threads call stack.
1202void JitCodeCache::NotifyMethodRedefined(ArtMethod* method) {
1203 MutexLock mu(Thread::Current(), lock_);
Andreas Gampe98ea9d92018-10-19 14:06:15 -07001204 RemoveMethodLocked(method, /* release_memory= */ true);
Alex Lightdba61482016-12-21 08:20:29 -08001205}
1206
1207// This invalidates old_method. Once this function returns one can no longer use old_method to
1208// execute code unless it is fixed up. This fixup will happen later in the process of installing a
1209// class redefinition.
1210// TODO We should add some info to ArtMethod to note that 'old_method' has been invalidated and
1211// shouldn't be used since it is no longer logically in the jit code cache.
1212// TODO We should add DCHECKS that validate that the JIT is paused when this method is entered.
1213void JitCodeCache::MoveObsoleteMethod(ArtMethod* old_method, ArtMethod* new_method) {
Vladimir Marko2196c652017-11-30 16:16:07 +00001214 MutexLock mu(Thread::Current(), lock_);
Alex Lighteee0bd42017-02-14 15:31:45 +00001215 if (old_method->IsNative()) {
Vladimir Marko2196c652017-11-30 16:16:07 +00001216 // Update methods in jni_stubs_map_.
1217 for (auto& entry : jni_stubs_map_) {
1218 JniStubData& data = entry.second;
1219 data.MoveObsoleteMethod(old_method, new_method);
1220 }
Alex Lighteee0bd42017-02-14 15:31:45 +00001221 return;
1222 }
Alex Lightdba61482016-12-21 08:20:29 -08001223 // Update ProfilingInfo to the new one and remove it from the old_method.
1224 if (old_method->GetProfilingInfo(kRuntimePointerSize) != nullptr) {
1225 DCHECK_EQ(old_method->GetProfilingInfo(kRuntimePointerSize)->GetMethod(), old_method);
1226 ProfilingInfo* info = old_method->GetProfilingInfo(kRuntimePointerSize);
1227 old_method->SetProfilingInfo(nullptr);
1228 // Since the JIT should be paused and all threads suspended by the time this is called these
1229 // checks should always pass.
1230 DCHECK(!info->IsInUseByCompiler());
1231 new_method->SetProfilingInfo(info);
Alex Light2d441b12018-06-08 15:33:21 -07001232 // Get rid of the old saved entrypoint if it is there.
1233 info->SetSavedEntryPoint(nullptr);
Alex Lightdba61482016-12-21 08:20:29 -08001234 info->method_ = new_method;
1235 }
1236 // Update method_code_map_ to point to the new method.
1237 for (auto& it : method_code_map_) {
1238 if (it.second == old_method) {
1239 it.second = new_method;
1240 }
1241 }
1242 // Update osr_code_map_ to point to the new method.
1243 auto code_map = osr_code_map_.find(old_method);
1244 if (code_map != osr_code_map_.end()) {
1245 osr_code_map_.Put(new_method, code_map->second);
1246 osr_code_map_.erase(old_method);
1247 }
1248}
1249
Nicolas Geoffraya5891e82015-11-06 14:18:27 +00001250size_t JitCodeCache::CodeCacheSizeLocked() {
Nicolas Geoffray38ea9bd2016-02-19 16:25:57 +00001251 return used_memory_for_code_;
Nicolas Geoffray0c3c2662015-10-15 13:53:04 +01001252}
1253
1254size_t JitCodeCache::DataCacheSize() {
1255 MutexLock mu(Thread::Current(), lock_);
Nicolas Geoffraya5891e82015-11-06 14:18:27 +00001256 return DataCacheSizeLocked();
1257}
1258
1259size_t JitCodeCache::DataCacheSizeLocked() {
Nicolas Geoffray38ea9bd2016-02-19 16:25:57 +00001260 return used_memory_for_data_;
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001261}
1262
Nicolas Geoffrayf46501c2016-11-22 13:45:36 +00001263void JitCodeCache::ClearData(Thread* self,
1264 uint8_t* stack_map_data,
1265 uint8_t* roots_data) {
1266 DCHECK_EQ(FromStackMapToRoots(stack_map_data), roots_data);
Nicolas Geoffrayd28b9692015-11-04 14:36:55 +00001267 MutexLock mu(self, lock_);
Nicolas Geoffrayf46501c2016-11-22 13:45:36 +00001268 FreeData(reinterpret_cast<uint8_t*>(roots_data));
Nicolas Geoffrayd28b9692015-11-04 14:36:55 +00001269}
1270
Nicolas Geoffrayed015ac2016-12-15 17:58:48 +00001271size_t JitCodeCache::ReserveData(Thread* self,
1272 size_t stack_map_size,
1273 size_t number_of_roots,
1274 ArtMethod* method,
1275 uint8_t** stack_map_data,
1276 uint8_t** roots_data) {
Nicolas Geoffray132d8362016-11-16 09:19:42 +00001277 size_t table_size = ComputeRootTableSize(number_of_roots);
David Srbecky8cd54542018-07-15 23:58:44 +01001278 size_t size = RoundUp(stack_map_size + table_size, sizeof(void*));
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001279 uint8_t* result = nullptr;
1280
1281 {
1282 ScopedThreadSuspension sts(self, kSuspended);
1283 MutexLock mu(self, lock_);
1284 WaitForPotentialCollectionToComplete(self);
Nicolas Geoffray38ea9bd2016-02-19 16:25:57 +00001285 result = AllocateData(size);
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001286 }
1287
1288 if (result == nullptr) {
1289 // Retry.
1290 GarbageCollectCache(self);
1291 ScopedThreadSuspension sts(self, kSuspended);
1292 MutexLock mu(self, lock_);
1293 WaitForPotentialCollectionToComplete(self);
Nicolas Geoffray38ea9bd2016-02-19 16:25:57 +00001294 result = AllocateData(size);
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001295 }
1296
Nicolas Geoffray933330a2016-03-16 14:20:06 +00001297 MutexLock mu(self, lock_);
1298 histogram_stack_map_memory_use_.AddValue(size);
1299 if (size > kStackMapSizeLogThreshold) {
1300 LOG(INFO) << "JIT allocated "
1301 << PrettySize(size)
1302 << " for stack maps of "
David Sehr709b0702016-10-13 09:12:37 -07001303 << ArtMethod::PrettyMethod(method);
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001304 }
Nicolas Geoffrayf4b94422016-12-05 00:10:09 +00001305 if (result != nullptr) {
1306 *roots_data = result;
1307 *stack_map_data = result + table_size;
1308 FillRootTableLength(*roots_data, number_of_roots);
Nicolas Geoffrayed015ac2016-12-15 17:58:48 +00001309 return size;
Nicolas Geoffrayf4b94422016-12-05 00:10:09 +00001310 } else {
1311 *roots_data = nullptr;
1312 *stack_map_data = nullptr;
Nicolas Geoffrayed015ac2016-12-15 17:58:48 +00001313 return 0;
Nicolas Geoffrayf4b94422016-12-05 00:10:09 +00001314 }
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001315}
1316
Roland Levillainbbc6e7e2018-08-24 16:58:47 +01001317class MarkCodeClosure final : public Closure {
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001318 public:
Nicolas Geoffrayb9f1af52018-11-16 10:30:29 +00001319 MarkCodeClosure(JitCodeCache* code_cache, CodeCacheBitmap* bitmap, Barrier* barrier)
1320 : code_cache_(code_cache), bitmap_(bitmap), barrier_(barrier) {}
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001321
Roland Levillainbbc6e7e2018-08-24 16:58:47 +01001322 void Run(Thread* thread) override REQUIRES_SHARED(Locks::mutator_lock_) {
Mathieu Chartier32ce2ad2016-03-04 14:58:03 -08001323 ScopedTrace trace(__PRETTY_FUNCTION__);
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001324 DCHECK(thread == Thread::Current() || thread->IsSuspended());
Andreas Gampec7d878d2018-11-19 18:42:06 +00001325 StackVisitor::WalkStack(
1326 [&](const art::StackVisitor* stack_visitor) {
1327 const OatQuickMethodHeader* method_header =
1328 stack_visitor->GetCurrentOatQuickMethodHeader();
1329 if (method_header == nullptr) {
1330 return true;
1331 }
1332 const void* code = method_header->GetCode();
Nicolas Geoffrayce9ed362018-11-29 03:19:28 +00001333 if (code_cache_->ContainsPc(code) && !code_cache_->IsInZygoteExecSpace(code)) {
Andreas Gampec7d878d2018-11-19 18:42:06 +00001334 // Use the atomic set version, as multiple threads are executing this code.
1335 bitmap_->AtomicTestAndSet(FromCodeToAllocation(code));
1336 }
1337 return true;
1338 },
1339 thread,
1340 /* context= */ nullptr,
1341 art::StackVisitor::StackWalkKind::kSkipInlinedFrames);
1342
Nicolas Geoffray5a23d2e2015-11-03 18:58:57 +00001343 if (kIsDebugBuild) {
1344 // The stack walking code queries the side instrumentation stack if it
1345 // sees an instrumentation exit pc, so the JIT code of methods in that stack
1346 // must have been seen. We sanity check this below.
1347 for (const instrumentation::InstrumentationStackFrame& frame
1348 : *thread->GetInstrumentationStack()) {
1349 // The 'method_' in InstrumentationStackFrame is the one that has return_pc_ in
1350 // its stack frame, it is not the method owning return_pc_. We just pass null to
1351 // LookupMethodHeader: the method is only checked against in debug builds.
1352 OatQuickMethodHeader* method_header =
Andreas Gampe98ea9d92018-10-19 14:06:15 -07001353 code_cache_->LookupMethodHeader(frame.return_pc_, /* method= */ nullptr);
Nicolas Geoffray5a23d2e2015-11-03 18:58:57 +00001354 if (method_header != nullptr) {
1355 const void* code = method_header->GetCode();
Nicolas Geoffrayb9f1af52018-11-16 10:30:29 +00001356 CHECK(bitmap_->Test(FromCodeToAllocation(code)));
Nicolas Geoffray5a23d2e2015-11-03 18:58:57 +00001357 }
1358 }
1359 }
Mathieu Chartier10d25082015-10-28 18:36:09 -07001360 barrier_->Pass(Thread::Current());
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001361 }
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001362
1363 private:
1364 JitCodeCache* const code_cache_;
Nicolas Geoffrayb9f1af52018-11-16 10:30:29 +00001365 CodeCacheBitmap* const bitmap_;
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001366 Barrier* const barrier_;
1367};
1368
Nicolas Geoffray0a3be162015-11-18 11:15:22 +00001369void JitCodeCache::NotifyCollectionDone(Thread* self) {
1370 collection_in_progress_ = false;
1371 lock_cond_.Broadcast(self);
1372}
1373
1374void JitCodeCache::SetFootprintLimit(size_t new_footprint) {
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +00001375 size_t data_space_footprint = new_footprint / kCodeAndDataCapacityDivider;
1376 DCHECK(IsAlignedParam(data_space_footprint, kPageSize));
1377 DCHECK_EQ(data_space_footprint * kCodeAndDataCapacityDivider, new_footprint);
1378 mspace_set_footprint_limit(data_mspace_, data_space_footprint);
Orion Hodson1d3fd082018-09-28 09:38:35 +01001379 if (HasCodeMapping()) {
Calin Juravle016fcbe22018-05-03 19:47:35 -07001380 ScopedCodeCacheWrite scc(this);
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +00001381 mspace_set_footprint_limit(exec_mspace_, new_footprint - data_space_footprint);
Nicolas Geoffray0a3be162015-11-18 11:15:22 +00001382 }
1383}
1384
1385bool JitCodeCache::IncreaseCodeCacheCapacity() {
1386 if (current_capacity_ == max_capacity_) {
1387 return false;
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001388 }
1389
Nicolas Geoffray0a3be162015-11-18 11:15:22 +00001390 // Double the capacity if we're below 1MB, or increase it by 1MB if
1391 // we're above.
1392 if (current_capacity_ < 1 * MB) {
1393 current_capacity_ *= 2;
1394 } else {
1395 current_capacity_ += 1 * MB;
1396 }
1397 if (current_capacity_ > max_capacity_) {
1398 current_capacity_ = max_capacity_;
1399 }
1400
Nicolas Geoffray646d6382017-08-09 10:50:00 +01001401 VLOG(jit) << "Increasing code cache capacity to " << PrettySize(current_capacity_);
Nicolas Geoffray0a3be162015-11-18 11:15:22 +00001402
1403 SetFootprintLimit(current_capacity_);
1404
1405 return true;
1406}
1407
Nicolas Geoffray8d372502016-02-23 13:56:43 +00001408void JitCodeCache::MarkCompiledCodeOnThreadStacks(Thread* self) {
1409 Barrier barrier(0);
1410 size_t threads_running_checkpoint = 0;
Nicolas Geoffrayb9f1af52018-11-16 10:30:29 +00001411 MarkCodeClosure closure(this, GetLiveBitmap(), &barrier);
Nicolas Geoffray8d372502016-02-23 13:56:43 +00001412 threads_running_checkpoint = Runtime::Current()->GetThreadList()->RunCheckpoint(&closure);
1413 // Now that we have run our checkpoint, move to a suspended state and wait
1414 // for other threads to run the checkpoint.
1415 ScopedThreadSuspension sts(self, kSuspended);
1416 if (threads_running_checkpoint != 0) {
1417 barrier.Increment(self, threads_running_checkpoint);
1418 }
1419}
1420
Nicolas Geoffray35122442016-03-02 12:05:30 +00001421bool JitCodeCache::ShouldDoFullCollection() {
1422 if (current_capacity_ == max_capacity_) {
1423 // Always do a full collection when the code cache is full.
1424 return true;
1425 } else if (current_capacity_ < kReservedCapacity) {
1426 // Always do partial collection when the code cache size is below the reserved
1427 // capacity.
1428 return false;
1429 } else if (last_collection_increased_code_cache_) {
1430 // This time do a full collection.
1431 return true;
1432 } else {
1433 // This time do a partial collection.
1434 return false;
Nicolas Geoffray8d372502016-02-23 13:56:43 +00001435 }
1436}
1437
Nicolas Geoffray0a3be162015-11-18 11:15:22 +00001438void JitCodeCache::GarbageCollectCache(Thread* self) {
Mathieu Chartier32ce2ad2016-03-04 14:58:03 -08001439 ScopedTrace trace(__FUNCTION__);
Nicolas Geoffray8d372502016-02-23 13:56:43 +00001440 if (!garbage_collect_code_) {
1441 MutexLock mu(self, lock_);
1442 IncreaseCodeCacheCapacity();
1443 return;
1444 }
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001445
Nicolas Geoffraya5891e82015-11-06 14:18:27 +00001446 // Wait for an existing collection, or let everyone know we are starting one.
1447 {
1448 ScopedThreadSuspension sts(self, kSuspended);
1449 MutexLock mu(self, lock_);
1450 if (WaitForPotentialCollectionToComplete(self)) {
1451 return;
1452 } else {
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00001453 number_of_collections_++;
Nicolas Geoffray0a3be162015-11-18 11:15:22 +00001454 live_bitmap_.reset(CodeCacheBitmap::Create(
1455 "code-cache-bitmap",
Orion Hodson1d3fd082018-09-28 09:38:35 +01001456 reinterpret_cast<uintptr_t>(exec_pages_.Begin()),
1457 reinterpret_cast<uintptr_t>(exec_pages_.Begin() + current_capacity_ / 2)));
Nicolas Geoffray8d372502016-02-23 13:56:43 +00001458 collection_in_progress_ = true;
1459 }
1460 }
1461
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00001462 TimingLogger logger("JIT code cache timing logger", true, VLOG_IS_ON(jit));
Nicolas Geoffray8d372502016-02-23 13:56:43 +00001463 {
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00001464 TimingLogger::ScopedTiming st("Code cache collection", &logger);
Nicolas Geoffray0a3be162015-11-18 11:15:22 +00001465
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00001466 bool do_full_collection = false;
1467 {
1468 MutexLock mu(self, lock_);
1469 do_full_collection = ShouldDoFullCollection();
Nicolas Geoffraya96917a2016-03-01 22:18:02 +00001470 }
1471
Nicolas Geoffray646d6382017-08-09 10:50:00 +01001472 VLOG(jit) << "Do "
1473 << (do_full_collection ? "full" : "partial")
1474 << " code cache collection, code="
1475 << PrettySize(CodeCacheSize())
1476 << ", data=" << PrettySize(DataCacheSize());
Nicolas Geoffray35122442016-03-02 12:05:30 +00001477
Andreas Gampe98ea9d92018-10-19 14:06:15 -07001478 DoCollection(self, /* collect_profiling_info= */ do_full_collection);
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00001479
Nicolas Geoffray646d6382017-08-09 10:50:00 +01001480 VLOG(jit) << "After code cache collection, code="
1481 << PrettySize(CodeCacheSize())
1482 << ", data=" << PrettySize(DataCacheSize());
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00001483
1484 {
1485 MutexLock mu(self, lock_);
1486
1487 // Increase the code cache only when we do partial collections.
1488 // TODO: base this strategy on how full the code cache is?
1489 if (do_full_collection) {
1490 last_collection_increased_code_cache_ = false;
1491 } else {
1492 last_collection_increased_code_cache_ = true;
1493 IncreaseCodeCacheCapacity();
Nicolas Geoffray35122442016-03-02 12:05:30 +00001494 }
1495
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00001496 bool next_collection_will_be_full = ShouldDoFullCollection();
1497
1498 // Start polling the liveness of compiled code to prepare for the next full collection.
Nicolas Geoffray480d5102016-04-18 12:09:30 +01001499 if (next_collection_will_be_full) {
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00001500 // Save the entry point of methods we have compiled, and update the entry
1501 // point of those methods to the interpreter. If the method is invoked, the
1502 // interpreter will update its entry point to the compiled code and call it.
1503 for (ProfilingInfo* info : profiling_infos_) {
1504 const void* entry_point = info->GetMethod()->GetEntryPointFromQuickCompiledCode();
Nicolas Geoffrayce9ed362018-11-29 03:19:28 +00001505 if (!IsInZygoteDataSpace(info) && ContainsPc(entry_point)) {
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00001506 info->SetSavedEntryPoint(entry_point);
Vladimir Marko2196c652017-11-30 16:16:07 +00001507 // Don't call Instrumentation::UpdateMethodsCode(), as it can check the declaring
Nicolas Geoffray3b1a7f42017-02-22 10:21:00 +00001508 // class of the method. We may be concurrently running a GC which makes accessing
1509 // the class unsafe. We know it is OK to bypass the instrumentation as we've just
1510 // checked that the current entry point is JIT compiled code.
1511 info->GetMethod()->SetEntryPointFromQuickCompiledCode(GetQuickToInterpreterBridge());
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00001512 }
1513 }
1514
1515 DCHECK(CheckLiveCompiledCodeHasProfilingInfo());
Vladimir Marko2196c652017-11-30 16:16:07 +00001516
1517 // Change entry points of native methods back to the GenericJNI entrypoint.
1518 for (const auto& entry : jni_stubs_map_) {
1519 const JniStubData& data = entry.second;
Nicolas Geoffrayce9ed362018-11-29 03:19:28 +00001520 if (!data.IsCompiled() || IsInZygoteExecSpace(data.GetCode())) {
Vladimir Marko2196c652017-11-30 16:16:07 +00001521 continue;
1522 }
1523 // Make sure a single invocation of the GenericJNI trampoline tries to recompile.
1524 uint16_t new_counter = Runtime::Current()->GetJit()->HotMethodThreshold() - 1u;
1525 const OatQuickMethodHeader* method_header =
1526 OatQuickMethodHeader::FromCodePointer(data.GetCode());
1527 for (ArtMethod* method : data.GetMethods()) {
1528 if (method->GetEntryPointFromQuickCompiledCode() == method_header->GetEntryPoint()) {
1529 // Don't call Instrumentation::UpdateMethodsCode(), same as for normal methods above.
1530 method->SetCounter(new_counter);
1531 method->SetEntryPointFromQuickCompiledCode(GetQuickGenericJniStub());
1532 }
1533 }
1534 }
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00001535 }
1536 live_bitmap_.reset(nullptr);
1537 NotifyCollectionDone(self);
Nicolas Geoffray35122442016-03-02 12:05:30 +00001538 }
Nicolas Geoffray35122442016-03-02 12:05:30 +00001539 }
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00001540 Runtime::Current()->GetJit()->AddTimingLogger(logger);
Nicolas Geoffray35122442016-03-02 12:05:30 +00001541}
1542
Nicolas Geoffray9abb2972016-03-04 14:32:59 +00001543void JitCodeCache::RemoveUnmarkedCode(Thread* self) {
Mathieu Chartier32ce2ad2016-03-04 14:58:03 -08001544 ScopedTrace trace(__FUNCTION__);
Mingyao Yang063fc772016-08-02 11:02:54 -07001545 std::unordered_set<OatQuickMethodHeader*> method_headers;
1546 {
1547 MutexLock mu(self, lock_);
Calin Juravle016fcbe22018-05-03 19:47:35 -07001548 ScopedCodeCacheWrite scc(this);
Mingyao Yang063fc772016-08-02 11:02:54 -07001549 // Iterate over all compiled code and remove entries that are not marked.
Vladimir Marko2196c652017-11-30 16:16:07 +00001550 for (auto it = jni_stubs_map_.begin(); it != jni_stubs_map_.end();) {
1551 JniStubData* data = &it->second;
Nicolas Geoffrayce9ed362018-11-29 03:19:28 +00001552 if (IsInZygoteExecSpace(data->GetCode()) ||
1553 !data->IsCompiled() ||
1554 GetLiveBitmap()->Test(FromCodeToAllocation(data->GetCode()))) {
Vladimir Marko2196c652017-11-30 16:16:07 +00001555 ++it;
1556 } else {
1557 method_headers.insert(OatQuickMethodHeader::FromCodePointer(data->GetCode()));
1558 it = jni_stubs_map_.erase(it);
1559 }
1560 }
Mingyao Yang063fc772016-08-02 11:02:54 -07001561 for (auto it = method_code_map_.begin(); it != method_code_map_.end();) {
1562 const void* code_ptr = it->first;
1563 uintptr_t allocation = FromCodeToAllocation(code_ptr);
Nicolas Geoffrayce9ed362018-11-29 03:19:28 +00001564 if (IsInZygoteExecSpace(code_ptr) || GetLiveBitmap()->Test(allocation)) {
Mingyao Yang063fc772016-08-02 11:02:54 -07001565 ++it;
1566 } else {
Alex Light2d441b12018-06-08 15:33:21 -07001567 OatQuickMethodHeader* header = OatQuickMethodHeader::FromCodePointer(code_ptr);
1568 method_headers.insert(header);
Mingyao Yang063fc772016-08-02 11:02:54 -07001569 it = method_code_map_.erase(it);
1570 }
Nicolas Geoffray35122442016-03-02 12:05:30 +00001571 }
1572 }
Mingyao Yang063fc772016-08-02 11:02:54 -07001573 FreeAllMethodHeaders(method_headers);
Nicolas Geoffray35122442016-03-02 12:05:30 +00001574}
1575
1576void JitCodeCache::DoCollection(Thread* self, bool collect_profiling_info) {
Mathieu Chartier32ce2ad2016-03-04 14:58:03 -08001577 ScopedTrace trace(__FUNCTION__);
Nicolas Geoffray35122442016-03-02 12:05:30 +00001578 {
1579 MutexLock mu(self, lock_);
1580 if (collect_profiling_info) {
1581 // Clear the profiling info of methods that do not have compiled code as entrypoint.
1582 // Also remove the saved entry point from the ProfilingInfo objects.
1583 for (ProfilingInfo* info : profiling_infos_) {
1584 const void* ptr = info->GetMethod()->GetEntryPointFromQuickCompiledCode();
Nicolas Geoffrayce9ed362018-11-29 03:19:28 +00001585 if (!ContainsPc(ptr) && !info->IsInUseByCompiler() && !IsInZygoteDataSpace(info)) {
Nicolas Geoffray35122442016-03-02 12:05:30 +00001586 info->GetMethod()->SetProfilingInfo(nullptr);
1587 }
Nicolas Geoffrayb9a639d2016-03-22 11:25:20 +00001588
1589 if (info->GetSavedEntryPoint() != nullptr) {
1590 info->SetSavedEntryPoint(nullptr);
1591 // We are going to move this method back to interpreter. Clear the counter now to
Mathieu Chartierf044c222017-05-31 15:27:54 -07001592 // give it a chance to be hot again.
Andreas Gampe98ea9d92018-10-19 14:06:15 -07001593 ClearMethodCounter(info->GetMethod(), /*was_warm=*/ true);
Nicolas Geoffrayb9a639d2016-03-22 11:25:20 +00001594 }
Nicolas Geoffray35122442016-03-02 12:05:30 +00001595 }
1596 } else if (kIsDebugBuild) {
1597 // Sanity check that the profiling infos do not have a dangling entry point.
1598 for (ProfilingInfo* info : profiling_infos_) {
1599 DCHECK(info->GetSavedEntryPoint() == nullptr);
Nicolas Geoffray73be1e82015-09-17 15:22:56 +01001600 }
Nicolas Geoffray26705e22015-10-28 12:50:11 +00001601 }
Nicolas Geoffrayb331feb2016-02-05 16:51:53 +00001602
Nicolas Geoffray9abb2972016-03-04 14:32:59 +00001603 // Mark compiled code that are entrypoints of ArtMethods. Compiled code that is not
1604 // an entry point is either:
1605 // - an osr compiled code, that will be removed if not in a thread call stack.
1606 // - discarded compiled code, that will be removed if not in a thread call stack.
Vladimir Marko2196c652017-11-30 16:16:07 +00001607 for (const auto& entry : jni_stubs_map_) {
1608 const JniStubData& data = entry.second;
1609 const void* code_ptr = data.GetCode();
Nicolas Geoffrayce9ed362018-11-29 03:19:28 +00001610 if (IsInZygoteExecSpace(code_ptr)) {
1611 continue;
1612 }
Vladimir Marko2196c652017-11-30 16:16:07 +00001613 const OatQuickMethodHeader* method_header = OatQuickMethodHeader::FromCodePointer(code_ptr);
1614 for (ArtMethod* method : data.GetMethods()) {
1615 if (method_header->GetEntryPoint() == method->GetEntryPointFromQuickCompiledCode()) {
1616 GetLiveBitmap()->AtomicTestAndSet(FromCodeToAllocation(code_ptr));
1617 break;
1618 }
1619 }
1620 }
Nicolas Geoffray9abb2972016-03-04 14:32:59 +00001621 for (const auto& it : method_code_map_) {
1622 ArtMethod* method = it.second;
1623 const void* code_ptr = it.first;
Nicolas Geoffrayce9ed362018-11-29 03:19:28 +00001624 if (IsInZygoteExecSpace(code_ptr)) {
1625 continue;
1626 }
Nicolas Geoffray9abb2972016-03-04 14:32:59 +00001627 const OatQuickMethodHeader* method_header = OatQuickMethodHeader::FromCodePointer(code_ptr);
1628 if (method_header->GetEntryPoint() == method->GetEntryPointFromQuickCompiledCode()) {
1629 GetLiveBitmap()->AtomicTestAndSet(FromCodeToAllocation(code_ptr));
1630 }
1631 }
1632
Nicolas Geoffrayd9994f02016-02-11 17:35:55 +00001633 // Empty osr method map, as osr compiled code will be deleted (except the ones
Nicolas Geoffrayb331feb2016-02-05 16:51:53 +00001634 // on thread stacks).
1635 osr_code_map_.clear();
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001636 }
1637
1638 // Run a checkpoint on all threads to mark the JIT compiled code they are running.
Nicolas Geoffray8d372502016-02-23 13:56:43 +00001639 MarkCompiledCodeOnThreadStacks(self);
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001640
Nicolas Geoffray9abb2972016-03-04 14:32:59 +00001641 // At this point, mutator threads are still running, and entrypoints of methods can
1642 // change. We do know they cannot change to a code cache entry that is not marked,
1643 // therefore we can safely remove those entries.
1644 RemoveUnmarkedCode(self);
Nicolas Geoffraya96917a2016-03-01 22:18:02 +00001645
Nicolas Geoffray35122442016-03-02 12:05:30 +00001646 if (collect_profiling_info) {
1647 MutexLock mu(self, lock_);
1648 // Free all profiling infos of methods not compiled nor being compiled.
Nicolas Geoffray73be1e82015-09-17 15:22:56 +01001649 auto profiling_kept_end = std::remove_if(profiling_infos_.begin(), profiling_infos_.end(),
Nicolas Geoffray38ea9bd2016-02-19 16:25:57 +00001650 [this] (ProfilingInfo* info) NO_THREAD_SAFETY_ANALYSIS {
Nicolas Geoffray35122442016-03-02 12:05:30 +00001651 const void* ptr = info->GetMethod()->GetEntryPointFromQuickCompiledCode();
Nicolas Geoffray511e41b2016-03-02 17:09:35 +00001652 // We have previously cleared the ProfilingInfo pointer in the ArtMethod in the hope
1653 // that the compiled code would not get revived. As mutator threads run concurrently,
1654 // they may have revived the compiled code, and now we are in the situation where
1655 // a method has compiled code but no ProfilingInfo.
1656 // We make sure compiled methods have a ProfilingInfo object. It is needed for
1657 // code cache collection.
Andreas Gampe542451c2016-07-26 09:02:02 -07001658 if (ContainsPc(ptr) &&
1659 info->GetMethod()->GetProfilingInfo(kRuntimePointerSize) == nullptr) {
Nicolas Geoffray35122442016-03-02 12:05:30 +00001660 info->GetMethod()->SetProfilingInfo(info);
Andreas Gampe542451c2016-07-26 09:02:02 -07001661 } else if (info->GetMethod()->GetProfilingInfo(kRuntimePointerSize) != info) {
Nicolas Geoffray35122442016-03-02 12:05:30 +00001662 // No need for this ProfilingInfo object anymore.
Nicolas Geoffray38ea9bd2016-02-19 16:25:57 +00001663 FreeData(reinterpret_cast<uint8_t*>(info));
Nicolas Geoffray73be1e82015-09-17 15:22:56 +01001664 return true;
1665 }
1666 return false;
1667 });
1668 profiling_infos_.erase(profiling_kept_end, profiling_infos_.end());
Nicolas Geoffray35122442016-03-02 12:05:30 +00001669 DCHECK(CheckLiveCompiledCodeHasProfilingInfo());
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001670 }
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001671}
1672
Nicolas Geoffray35122442016-03-02 12:05:30 +00001673bool JitCodeCache::CheckLiveCompiledCodeHasProfilingInfo() {
Mathieu Chartier32ce2ad2016-03-04 14:58:03 -08001674 ScopedTrace trace(__FUNCTION__);
Nicolas Geoffray35122442016-03-02 12:05:30 +00001675 // Check that methods we have compiled do have a ProfilingInfo object. We would
1676 // have memory leaks of compiled code otherwise.
1677 for (const auto& it : method_code_map_) {
1678 ArtMethod* method = it.second;
Andreas Gampe542451c2016-07-26 09:02:02 -07001679 if (method->GetProfilingInfo(kRuntimePointerSize) == nullptr) {
Nicolas Geoffray35122442016-03-02 12:05:30 +00001680 const void* code_ptr = it.first;
1681 const OatQuickMethodHeader* method_header = OatQuickMethodHeader::FromCodePointer(code_ptr);
1682 if (method_header->GetEntryPoint() == method->GetEntryPointFromQuickCompiledCode()) {
1683 // If the code is not dead, then we have a problem. Note that this can even
1684 // happen just after a collection, as mutator threads are running in parallel
1685 // and could deoptimize an existing compiled code.
1686 return false;
1687 }
1688 }
1689 }
1690 return true;
1691}
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001692
1693OatQuickMethodHeader* JitCodeCache::LookupMethodHeader(uintptr_t pc, ArtMethod* method) {
Vladimir Marko33bff252017-11-01 14:35:42 +00001694 static_assert(kRuntimeISA != InstructionSet::kThumb2, "kThumb2 cannot be a runtime ISA");
1695 if (kRuntimeISA == InstructionSet::kArm) {
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001696 // On Thumb-2, the pc is offset by one.
1697 --pc;
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001698 }
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001699 if (!ContainsPc(reinterpret_cast<const void*>(pc))) {
1700 return nullptr;
1701 }
1702
Vladimir Marko2196c652017-11-30 16:16:07 +00001703 if (!kIsDebugBuild) {
1704 // Called with null `method` only from MarkCodeClosure::Run() in debug build.
1705 CHECK(method != nullptr);
Vladimir Marko47d31852017-11-28 18:36:12 +00001706 }
Vladimir Markoe7441632017-11-29 13:00:56 +00001707
Vladimir Marko2196c652017-11-30 16:16:07 +00001708 MutexLock mu(Thread::Current(), lock_);
1709 OatQuickMethodHeader* method_header = nullptr;
1710 ArtMethod* found_method = nullptr; // Only for DCHECK(), not for JNI stubs.
1711 if (method != nullptr && UNLIKELY(method->IsNative())) {
1712 auto it = jni_stubs_map_.find(JniStubKey(method));
1713 if (it == jni_stubs_map_.end() || !ContainsElement(it->second.GetMethods(), method)) {
1714 return nullptr;
1715 }
1716 const void* code_ptr = it->second.GetCode();
1717 method_header = OatQuickMethodHeader::FromCodePointer(code_ptr);
1718 if (!method_header->Contains(pc)) {
1719 return nullptr;
1720 }
1721 } else {
1722 auto it = method_code_map_.lower_bound(reinterpret_cast<const void*>(pc));
1723 if (it != method_code_map_.begin()) {
1724 --it;
1725 const void* code_ptr = it->first;
1726 if (OatQuickMethodHeader::FromCodePointer(code_ptr)->Contains(pc)) {
1727 method_header = OatQuickMethodHeader::FromCodePointer(code_ptr);
1728 found_method = it->second;
1729 }
1730 }
1731 if (method_header == nullptr && method == nullptr) {
1732 // Scan all compiled JNI stubs as well. This slow search is used only
1733 // for checks in debug build, for release builds the `method` is not null.
1734 for (auto&& entry : jni_stubs_map_) {
1735 const JniStubData& data = entry.second;
1736 if (data.IsCompiled() &&
1737 OatQuickMethodHeader::FromCodePointer(data.GetCode())->Contains(pc)) {
1738 method_header = OatQuickMethodHeader::FromCodePointer(data.GetCode());
1739 }
1740 }
1741 }
1742 if (method_header == nullptr) {
1743 return nullptr;
1744 }
Nicolas Geoffray056d7752017-11-30 09:12:13 +00001745 }
Vladimir Marko2196c652017-11-30 16:16:07 +00001746
1747 if (kIsDebugBuild && method != nullptr && !method->IsNative()) {
Alex Light1ebe4fe2017-01-30 14:57:11 -08001748 // When we are walking the stack to redefine classes and creating obsolete methods it is
1749 // possible that we might have updated the method_code_map by making this method obsolete in a
1750 // previous frame. Therefore we should just check that the non-obsolete version of this method
1751 // is the one we expect. We change to the non-obsolete versions in the error message since the
1752 // obsolete version of the method might not be fully initialized yet. This situation can only
1753 // occur when we are in the process of allocating and setting up obsolete methods. Otherwise
Andreas Gampe06c42a52017-07-26 14:17:14 -07001754 // method and it->second should be identical. (See openjdkjvmti/ti_redefine.cc for more
Alex Light1ebe4fe2017-01-30 14:57:11 -08001755 // information.)
Vladimir Marko2196c652017-11-30 16:16:07 +00001756 DCHECK_EQ(found_method->GetNonObsoleteMethod(), method->GetNonObsoleteMethod())
Alex Light1ebe4fe2017-01-30 14:57:11 -08001757 << ArtMethod::PrettyMethod(method->GetNonObsoleteMethod()) << " "
Vladimir Marko2196c652017-11-30 16:16:07 +00001758 << ArtMethod::PrettyMethod(found_method->GetNonObsoleteMethod()) << " "
David Sehr709b0702016-10-13 09:12:37 -07001759 << std::hex << pc;
Nicolas Geoffray5a23d2e2015-11-03 18:58:57 +00001760 }
Nicolas Geoffray1dad3f62015-10-23 14:59:54 +01001761 return method_header;
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001762}
1763
Nicolas Geoffrayb331feb2016-02-05 16:51:53 +00001764OatQuickMethodHeader* JitCodeCache::LookupOsrMethodHeader(ArtMethod* method) {
1765 MutexLock mu(Thread::Current(), lock_);
1766 auto it = osr_code_map_.find(method);
1767 if (it == osr_code_map_.end()) {
1768 return nullptr;
1769 }
1770 return OatQuickMethodHeader::FromCodePointer(it->second);
1771}
1772
Nicolas Geoffray26705e22015-10-28 12:50:11 +00001773ProfilingInfo* JitCodeCache::AddProfilingInfo(Thread* self,
1774 ArtMethod* method,
1775 const std::vector<uint32_t>& entries,
Nicolas Geoffray1e7da9b2016-03-01 14:11:40 +00001776 bool retry_allocation)
1777 // No thread safety analysis as we are using TryLock/Unlock explicitly.
1778 NO_THREAD_SAFETY_ANALYSIS {
1779 ProfilingInfo* info = nullptr;
1780 if (!retry_allocation) {
1781 // If we are allocating for the interpreter, just try to lock, to avoid
1782 // lock contention with the JIT.
1783 if (lock_.ExclusiveTryLock(self)) {
1784 info = AddProfilingInfoInternal(self, method, entries);
1785 lock_.ExclusiveUnlock(self);
1786 }
1787 } else {
1788 {
1789 MutexLock mu(self, lock_);
1790 info = AddProfilingInfoInternal(self, method, entries);
1791 }
Nicolas Geoffray26705e22015-10-28 12:50:11 +00001792
Nicolas Geoffray1e7da9b2016-03-01 14:11:40 +00001793 if (info == nullptr) {
1794 GarbageCollectCache(self);
1795 MutexLock mu(self, lock_);
1796 info = AddProfilingInfoInternal(self, method, entries);
1797 }
Nicolas Geoffray26705e22015-10-28 12:50:11 +00001798 }
1799 return info;
1800}
1801
Nicolas Geoffray1e7da9b2016-03-01 14:11:40 +00001802ProfilingInfo* JitCodeCache::AddProfilingInfoInternal(Thread* self ATTRIBUTE_UNUSED,
Nicolas Geoffray26705e22015-10-28 12:50:11 +00001803 ArtMethod* method,
1804 const std::vector<uint32_t>& entries) {
1805 size_t profile_info_size = RoundUp(
Nicolas Geoffray73be1e82015-09-17 15:22:56 +01001806 sizeof(ProfilingInfo) + sizeof(InlineCache) * entries.size(),
Nicolas Geoffray26705e22015-10-28 12:50:11 +00001807 sizeof(void*));
Nicolas Geoffray26705e22015-10-28 12:50:11 +00001808
1809 // Check whether some other thread has concurrently created it.
Andreas Gampe542451c2016-07-26 09:02:02 -07001810 ProfilingInfo* info = method->GetProfilingInfo(kRuntimePointerSize);
Nicolas Geoffray26705e22015-10-28 12:50:11 +00001811 if (info != nullptr) {
1812 return info;
1813 }
1814
Nicolas Geoffray38ea9bd2016-02-19 16:25:57 +00001815 uint8_t* data = AllocateData(profile_info_size);
Nicolas Geoffray26705e22015-10-28 12:50:11 +00001816 if (data == nullptr) {
1817 return nullptr;
1818 }
1819 info = new (data) ProfilingInfo(method, entries);
Nicolas Geoffray07f35642016-01-04 16:06:51 +00001820
1821 // Make sure other threads see the data in the profiling info object before the
1822 // store in the ArtMethod's ProfilingInfo pointer.
Orion Hodson27b96762018-03-13 16:06:57 +00001823 std::atomic_thread_fence(std::memory_order_release);
Nicolas Geoffray07f35642016-01-04 16:06:51 +00001824
Nicolas Geoffray26705e22015-10-28 12:50:11 +00001825 method->SetProfilingInfo(info);
1826 profiling_infos_.push_back(info);
Nicolas Geoffray933330a2016-03-16 14:20:06 +00001827 histogram_profiling_info_memory_use_.AddValue(profile_info_size);
Nicolas Geoffray26705e22015-10-28 12:50:11 +00001828 return info;
1829}
1830
Nicolas Geoffray0a3be162015-11-18 11:15:22 +00001831// NO_THREAD_SAFETY_ANALYSIS as this is called from mspace code, at which point the lock
1832// is already held.
1833void* JitCodeCache::MoreCore(const void* mspace, intptr_t increment) NO_THREAD_SAFETY_ANALYSIS {
Orion Hodson1d3fd082018-09-28 09:38:35 +01001834 if (mspace == exec_mspace_) {
1835 DCHECK(exec_mspace_ != nullptr);
1836 const MemMap* const code_pages = GetUpdatableCodeMapping();
1837 void* result = code_pages->Begin() + exec_end_;
1838 exec_end_ += increment;
1839 return result;
Nicolas Geoffray0a3be162015-11-18 11:15:22 +00001840 } else {
1841 DCHECK_EQ(data_mspace_, mspace);
Orion Hodson1d3fd082018-09-28 09:38:35 +01001842 void* result = data_pages_.Begin() + data_end_;
Nicolas Geoffray0a3be162015-11-18 11:15:22 +00001843 data_end_ += increment;
Orion Hodson1d3fd082018-09-28 09:38:35 +01001844 return result;
Nicolas Geoffray0a3be162015-11-18 11:15:22 +00001845 }
1846}
1847
Calin Juravle99629622016-04-19 16:33:46 +01001848void JitCodeCache::GetProfiledMethods(const std::set<std::string>& dex_base_locations,
Calin Juravle940eb0c2017-01-30 19:30:44 -08001849 std::vector<ProfileMethodInfo>& methods) {
Nicolas Geoffray1afdfe62018-11-21 09:38:10 +00001850 Thread* self = Thread::Current();
1851 WaitUntilInlineCacheAccessible(self);
1852 MutexLock mu(self, lock_);
Mathieu Chartier32ce2ad2016-03-04 14:58:03 -08001853 ScopedTrace trace(__FUNCTION__);
Calin Juravlea39fd982017-05-18 10:15:52 -07001854 uint16_t jit_compile_threshold = Runtime::Current()->GetJITOptions()->GetCompileThreshold();
Calin Juravle99629622016-04-19 16:33:46 +01001855 for (const ProfilingInfo* info : profiling_infos_) {
1856 ArtMethod* method = info->GetMethod();
1857 const DexFile* dex_file = method->GetDexFile();
Mathieu Chartier79c87da2017-10-10 11:54:29 -07001858 const std::string base_location = DexFileLoader::GetBaseLocation(dex_file->GetLocation());
1859 if (!ContainsElement(dex_base_locations, base_location)) {
Calin Juravle940eb0c2017-01-30 19:30:44 -08001860 // Skip dex files which are not profiled.
1861 continue;
Calin Juravle31f2c152015-10-23 17:56:15 +01001862 }
Calin Juravle940eb0c2017-01-30 19:30:44 -08001863 std::vector<ProfileMethodInfo::ProfileInlineCache> inline_caches;
Calin Juravlea39fd982017-05-18 10:15:52 -07001864
1865 // If the method didn't reach the compilation threshold don't save the inline caches.
1866 // They might be incomplete and cause unnecessary deoptimizations.
1867 // If the inline cache is empty the compiler will generate a regular invoke virtual/interface.
1868 if (method->GetCounter() < jit_compile_threshold) {
1869 methods.emplace_back(/*ProfileMethodInfo*/
Mathieu Chartierbbe3a5e2017-06-13 16:36:17 -07001870 MethodReference(dex_file, method->GetDexMethodIndex()), inline_caches);
Calin Juravlea39fd982017-05-18 10:15:52 -07001871 continue;
1872 }
1873
Calin Juravle940eb0c2017-01-30 19:30:44 -08001874 for (size_t i = 0; i < info->number_of_inline_caches_; ++i) {
Mathieu Chartierdbddc222017-05-24 12:04:13 -07001875 std::vector<TypeReference> profile_classes;
Calin Juravle940eb0c2017-01-30 19:30:44 -08001876 const InlineCache& cache = info->cache_[i];
Calin Juravle13439f02017-02-21 01:17:21 -08001877 ArtMethod* caller = info->GetMethod();
Calin Juravle589e71e2017-03-03 16:05:05 -08001878 bool is_missing_types = false;
Calin Juravle940eb0c2017-01-30 19:30:44 -08001879 for (size_t k = 0; k < InlineCache::kIndividualCacheSize; k++) {
1880 mirror::Class* cls = cache.classes_[k].Read();
1881 if (cls == nullptr) {
1882 break;
1883 }
Calin Juravle4ca70a32017-02-21 16:22:24 -08001884
Calin Juravle13439f02017-02-21 01:17:21 -08001885 // Check if the receiver is in the boot class path or if it's in the
1886 // same class loader as the caller. If not, skip it, as there is not
1887 // much we can do during AOT.
1888 if (!cls->IsBootStrapClassLoaded() &&
1889 caller->GetClassLoader() != cls->GetClassLoader()) {
1890 is_missing_types = true;
1891 continue;
1892 }
1893
Calin Juravle4ca70a32017-02-21 16:22:24 -08001894 const DexFile* class_dex_file = nullptr;
1895 dex::TypeIndex type_index;
1896
1897 if (cls->GetDexCache() == nullptr) {
1898 DCHECK(cls->IsArrayClass()) << cls->PrettyClass();
Calin Juravlee21806f2017-02-22 11:49:43 -08001899 // Make a best effort to find the type index in the method's dex file.
1900 // We could search all open dex files but that might turn expensive
1901 // and probably not worth it.
Calin Juravle4ca70a32017-02-21 16:22:24 -08001902 class_dex_file = dex_file;
1903 type_index = cls->FindTypeIndexInOtherDexFile(*dex_file);
1904 } else {
1905 class_dex_file = &(cls->GetDexFile());
1906 type_index = cls->GetDexTypeIndex();
1907 }
1908 if (!type_index.IsValid()) {
1909 // Could be a proxy class or an array for which we couldn't find the type index.
Calin Juravle589e71e2017-03-03 16:05:05 -08001910 is_missing_types = true;
Calin Juravle4ca70a32017-02-21 16:22:24 -08001911 continue;
1912 }
Mathieu Chartier79c87da2017-10-10 11:54:29 -07001913 if (ContainsElement(dex_base_locations,
1914 DexFileLoader::GetBaseLocation(class_dex_file->GetLocation()))) {
Calin Juravle940eb0c2017-01-30 19:30:44 -08001915 // Only consider classes from the same apk (including multidex).
1916 profile_classes.emplace_back(/*ProfileMethodInfo::ProfileClassReference*/
Calin Juravle4ca70a32017-02-21 16:22:24 -08001917 class_dex_file, type_index);
Calin Juravle589e71e2017-03-03 16:05:05 -08001918 } else {
1919 is_missing_types = true;
Calin Juravle940eb0c2017-01-30 19:30:44 -08001920 }
1921 }
1922 if (!profile_classes.empty()) {
1923 inline_caches.emplace_back(/*ProfileMethodInfo::ProfileInlineCache*/
Calin Juravle589e71e2017-03-03 16:05:05 -08001924 cache.dex_pc_, is_missing_types, profile_classes);
Calin Juravle940eb0c2017-01-30 19:30:44 -08001925 }
1926 }
1927 methods.emplace_back(/*ProfileMethodInfo*/
Mathieu Chartierbbe3a5e2017-06-13 16:36:17 -07001928 MethodReference(dex_file, method->GetDexMethodIndex()), inline_caches);
Calin Juravle31f2c152015-10-23 17:56:15 +01001929 }
1930}
1931
Nicolas Geoffray71cd50f2016-04-14 15:00:33 +01001932bool JitCodeCache::IsOsrCompiled(ArtMethod* method) {
1933 MutexLock mu(Thread::Current(), lock_);
1934 return osr_code_map_.find(method) != osr_code_map_.end();
1935}
1936
Nicolas Geoffrayb331feb2016-02-05 16:51:53 +00001937bool JitCodeCache::NotifyCompilationOf(ArtMethod* method, Thread* self, bool osr) {
1938 if (!osr && ContainsPc(method->GetEntryPointFromQuickCompiledCode())) {
Nicolas Geoffray73be1e82015-09-17 15:22:56 +01001939 return false;
1940 }
Nicolas Geoffraya42363f2015-12-17 14:57:09 +00001941
Nicolas Geoffraya42363f2015-12-17 14:57:09 +00001942 MutexLock mu(self, lock_);
Nicolas Geoffrayb331feb2016-02-05 16:51:53 +00001943 if (osr && (osr_code_map_.find(method) != osr_code_map_.end())) {
1944 return false;
1945 }
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00001946
Vladimir Marko2196c652017-11-30 16:16:07 +00001947 if (UNLIKELY(method->IsNative())) {
1948 JniStubKey key(method);
1949 auto it = jni_stubs_map_.find(key);
1950 bool new_compilation = false;
1951 if (it == jni_stubs_map_.end()) {
1952 // Create a new entry to mark the stub as being compiled.
1953 it = jni_stubs_map_.Put(key, JniStubData{});
1954 new_compilation = true;
1955 }
1956 JniStubData* data = &it->second;
1957 data->AddMethod(method);
1958 if (data->IsCompiled()) {
1959 OatQuickMethodHeader* method_header = OatQuickMethodHeader::FromCodePointer(data->GetCode());
1960 const void* entrypoint = method_header->GetEntryPoint();
1961 // Update also entrypoints of other methods held by the JniStubData.
1962 // We could simply update the entrypoint of `method` but if the last JIT GC has
1963 // changed these entrypoints to GenericJNI in preparation for a full GC, we may
1964 // as well change them back as this stub shall not be collected anyway and this
1965 // can avoid a few expensive GenericJNI calls.
1966 instrumentation::Instrumentation* instrumentation = Runtime::Current()->GetInstrumentation();
1967 for (ArtMethod* m : data->GetMethods()) {
Nicolas Geoffraya6e0e7d2018-01-26 13:16:50 +00001968 // Call the dedicated method instead of the more generic UpdateMethodsCode, because
1969 // `m` might be in the process of being deleted.
1970 instrumentation->UpdateNativeMethodsCodeToJitCode(m, entrypoint);
Vladimir Marko2196c652017-11-30 16:16:07 +00001971 }
1972 if (collection_in_progress_) {
Nicolas Geoffrayce9ed362018-11-29 03:19:28 +00001973 CHECK(!IsInZygoteExecSpace(data->GetCode()));
Vladimir Marko2196c652017-11-30 16:16:07 +00001974 GetLiveBitmap()->AtomicTestAndSet(FromCodeToAllocation(data->GetCode()));
1975 }
1976 }
1977 return new_compilation;
1978 } else {
1979 ProfilingInfo* info = method->GetProfilingInfo(kRuntimePointerSize);
1980 if (info == nullptr) {
1981 VLOG(jit) << method->PrettyMethod() << " needs a ProfilingInfo to be compiled";
1982 // Because the counter is not atomic, there are some rare cases where we may not hit the
1983 // threshold for creating the ProfilingInfo. Reset the counter now to "correct" this.
Andreas Gampe98ea9d92018-10-19 14:06:15 -07001984 ClearMethodCounter(method, /*was_warm=*/ false);
Vladimir Marko2196c652017-11-30 16:16:07 +00001985 return false;
1986 }
Nicolas Geoffray056d7752017-11-30 09:12:13 +00001987
Vladimir Marko2196c652017-11-30 16:16:07 +00001988 if (info->IsMethodBeingCompiled(osr)) {
1989 return false;
1990 }
Nicolas Geoffray056d7752017-11-30 09:12:13 +00001991
Vladimir Marko2196c652017-11-30 16:16:07 +00001992 info->SetIsMethodBeingCompiled(true, osr);
1993 return true;
1994 }
Nicolas Geoffray73be1e82015-09-17 15:22:56 +01001995}
1996
Nicolas Geoffray07e3ca92016-03-11 09:57:57 +00001997ProfilingInfo* JitCodeCache::NotifyCompilerUse(ArtMethod* method, Thread* self) {
Nicolas Geoffrayb6e20ae2016-03-07 14:29:04 +00001998 MutexLock mu(self, lock_);
Andreas Gampe542451c2016-07-26 09:02:02 -07001999 ProfilingInfo* info = method->GetProfilingInfo(kRuntimePointerSize);
Nicolas Geoffrayb6e20ae2016-03-07 14:29:04 +00002000 if (info != nullptr) {
Nicolas Geoffrayf6d46682017-02-28 17:41:45 +00002001 if (!info->IncrementInlineUse()) {
2002 // Overflow of inlining uses, just bail.
2003 return nullptr;
2004 }
Nicolas Geoffrayb6e20ae2016-03-07 14:29:04 +00002005 }
Nicolas Geoffray07e3ca92016-03-11 09:57:57 +00002006 return info;
Nicolas Geoffrayb6e20ae2016-03-07 14:29:04 +00002007}
2008
Nicolas Geoffray07e3ca92016-03-11 09:57:57 +00002009void JitCodeCache::DoneCompilerUse(ArtMethod* method, Thread* self) {
Nicolas Geoffrayb6e20ae2016-03-07 14:29:04 +00002010 MutexLock mu(self, lock_);
Andreas Gampe542451c2016-07-26 09:02:02 -07002011 ProfilingInfo* info = method->GetProfilingInfo(kRuntimePointerSize);
Nicolas Geoffray07e3ca92016-03-11 09:57:57 +00002012 DCHECK(info != nullptr);
2013 info->DecrementInlineUse();
Nicolas Geoffrayb6e20ae2016-03-07 14:29:04 +00002014}
2015
Vladimir Marko2196c652017-11-30 16:16:07 +00002016void JitCodeCache::DoneCompiling(ArtMethod* method, Thread* self, bool osr) {
2017 DCHECK_EQ(Thread::Current(), self);
2018 MutexLock mu(self, lock_);
2019 if (UNLIKELY(method->IsNative())) {
2020 auto it = jni_stubs_map_.find(JniStubKey(method));
2021 DCHECK(it != jni_stubs_map_.end());
2022 JniStubData* data = &it->second;
2023 DCHECK(ContainsElement(data->GetMethods(), method));
2024 if (UNLIKELY(!data->IsCompiled())) {
2025 // Failed to compile; the JNI compiler never fails, but the cache may be full.
2026 jni_stubs_map_.erase(it); // Remove the entry added in NotifyCompilationOf().
2027 } // else CommitCodeInternal() updated entrypoints of all methods in the JniStubData.
2028 } else {
2029 ProfilingInfo* info = method->GetProfilingInfo(kRuntimePointerSize);
2030 DCHECK(info->IsMethodBeingCompiled(osr));
2031 info->SetIsMethodBeingCompiled(false, osr);
2032 }
Nicolas Geoffray73be1e82015-09-17 15:22:56 +01002033}
2034
Nicolas Geoffrayb88d59e2016-02-17 11:31:49 +00002035void JitCodeCache::InvalidateCompiledCodeFor(ArtMethod* method,
2036 const OatQuickMethodHeader* header) {
Vladimir Marko2196c652017-11-30 16:16:07 +00002037 DCHECK(!method->IsNative());
Andreas Gampe542451c2016-07-26 09:02:02 -07002038 ProfilingInfo* profiling_info = method->GetProfilingInfo(kRuntimePointerSize);
Alex Light2d441b12018-06-08 15:33:21 -07002039 const void* method_entrypoint = method->GetEntryPointFromQuickCompiledCode();
Nicolas Geoffray35122442016-03-02 12:05:30 +00002040 if ((profiling_info != nullptr) &&
2041 (profiling_info->GetSavedEntryPoint() == header->GetEntryPoint())) {
Alex Light2d441b12018-06-08 15:33:21 -07002042 // When instrumentation is set, the actual entrypoint is the one in the profiling info.
2043 method_entrypoint = profiling_info->GetSavedEntryPoint();
Nicolas Geoffray35122442016-03-02 12:05:30 +00002044 // Prevent future uses of the compiled code.
2045 profiling_info->SetSavedEntryPoint(nullptr);
2046 }
2047
Alex Light2d441b12018-06-08 15:33:21 -07002048 // Clear the method counter if we are running jitted code since we might want to jit this again in
2049 // the future.
2050 if (method_entrypoint == header->GetEntryPoint()) {
Jeff Hao00286db2017-05-30 16:53:07 -07002051 // The entrypoint is the one to invalidate, so we just update it to the interpreter entry point
Mathieu Chartierf044c222017-05-31 15:27:54 -07002052 // and clear the counter to get the method Jitted again.
Nicolas Geoffrayb88d59e2016-02-17 11:31:49 +00002053 Runtime::Current()->GetInstrumentation()->UpdateMethodsCode(
2054 method, GetQuickToInterpreterBridge());
Andreas Gampe98ea9d92018-10-19 14:06:15 -07002055 ClearMethodCounter(method, /*was_warm=*/ profiling_info != nullptr);
Nicolas Geoffrayb88d59e2016-02-17 11:31:49 +00002056 } else {
2057 MutexLock mu(Thread::Current(), lock_);
2058 auto it = osr_code_map_.find(method);
2059 if (it != osr_code_map_.end() && OatQuickMethodHeader::FromCodePointer(it->second) == header) {
2060 // Remove the OSR method, to avoid using it again.
2061 osr_code_map_.erase(it);
2062 }
2063 }
2064}
2065
Nicolas Geoffray38ea9bd2016-02-19 16:25:57 +00002066uint8_t* JitCodeCache::AllocateCode(size_t code_size) {
2067 size_t alignment = GetInstructionSetAlignment(kRuntimeISA);
2068 uint8_t* result = reinterpret_cast<uint8_t*>(
Orion Hodson1d3fd082018-09-28 09:38:35 +01002069 mspace_memalign(exec_mspace_, alignment, code_size));
Nicolas Geoffray38ea9bd2016-02-19 16:25:57 +00002070 size_t header_size = RoundUp(sizeof(OatQuickMethodHeader), alignment);
2071 // Ensure the header ends up at expected instruction alignment.
2072 DCHECK_ALIGNED_PARAM(reinterpret_cast<uintptr_t>(result + header_size), alignment);
2073 used_memory_for_code_ += mspace_usable_size(result);
2074 return result;
2075}
2076
Orion Hodsondbd05fe2017-08-10 11:41:35 +01002077void JitCodeCache::FreeCode(uint8_t* code) {
Nicolas Geoffray1c1c6e62018-12-07 14:46:50 +00002078 if (IsInZygoteExecSpace(code)) {
2079 // No need to free, this is shared memory.
2080 return;
2081 }
Orion Hodsondbd05fe2017-08-10 11:41:35 +01002082 used_memory_for_code_ -= mspace_usable_size(code);
Orion Hodson1d3fd082018-09-28 09:38:35 +01002083 mspace_free(exec_mspace_, code);
Nicolas Geoffray38ea9bd2016-02-19 16:25:57 +00002084}
2085
2086uint8_t* JitCodeCache::AllocateData(size_t data_size) {
2087 void* result = mspace_malloc(data_mspace_, data_size);
2088 used_memory_for_data_ += mspace_usable_size(result);
2089 return reinterpret_cast<uint8_t*>(result);
2090}
2091
2092void JitCodeCache::FreeData(uint8_t* data) {
Nicolas Geoffray1c1c6e62018-12-07 14:46:50 +00002093 if (IsInZygoteDataSpace(data)) {
2094 // No need to free, this is shared memory.
2095 return;
2096 }
Nicolas Geoffray38ea9bd2016-02-19 16:25:57 +00002097 used_memory_for_data_ -= mspace_usable_size(data);
2098 mspace_free(data_mspace_, data);
2099}
2100
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00002101void JitCodeCache::Dump(std::ostream& os) {
2102 MutexLock mu(Thread::Current(), lock_);
2103 os << "Current JIT code cache size: " << PrettySize(used_memory_for_code_) << "\n"
2104 << "Current JIT data cache size: " << PrettySize(used_memory_for_data_) << "\n"
David Srbeckyafc60cd2018-12-05 11:59:31 +00002105 << "Current JIT mini-debug-info size: " << PrettySize(GetJitMiniDebugInfoMemUsage()) << "\n"
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00002106 << "Current JIT capacity: " << PrettySize(current_capacity_) << "\n"
Vladimir Marko2196c652017-11-30 16:16:07 +00002107 << "Current number of JIT JNI stub entries: " << jni_stubs_map_.size() << "\n"
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00002108 << "Current number of JIT code cache entries: " << method_code_map_.size() << "\n"
2109 << "Total number of JIT compilations: " << number_of_compilations_ << "\n"
2110 << "Total number of JIT compilations for on stack replacement: "
2111 << number_of_osr_compilations_ << "\n"
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00002112 << "Total number of JIT code cache collections: " << number_of_collections_ << std::endl;
Nicolas Geoffray933330a2016-03-16 14:20:06 +00002113 histogram_stack_map_memory_use_.PrintMemoryUse(os);
2114 histogram_code_memory_use_.PrintMemoryUse(os);
2115 histogram_profiling_info_memory_use_.PrintMemoryUse(os);
Nicolas Geoffraybcd94c82016-03-03 13:23:33 +00002116}
2117
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +00002118void JitCodeCache::PostForkChildAction(bool is_system_server, bool is_zygote) {
Nicolas Geoffrayce9ed362018-11-29 03:19:28 +00002119 if (is_zygote) {
2120 // Don't transition if this is for a child zygote.
2121 return;
2122 }
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +00002123 MutexLock mu(Thread::Current(), lock_);
Nicolas Geoffray7a2c7c22018-11-20 10:03:13 +00002124
2125 zygote_data_pages_ = std::move(data_pages_);
2126 zygote_exec_pages_ = std::move(exec_pages_);
2127 zygote_data_mspace_ = data_mspace_;
2128 zygote_exec_mspace_ = exec_mspace_;
2129
2130 size_t initial_capacity = Runtime::Current()->GetJITOptions()->GetCodeCacheInitialCapacity();
2131 size_t max_capacity = Runtime::Current()->GetJITOptions()->GetCodeCacheMaxCapacity();
2132
2133 InitializeState(initial_capacity, max_capacity);
2134
2135 std::string error_msg;
2136 if (!InitializeMappings(/* rwx_memory_allowed= */ !is_system_server, is_zygote, &error_msg)) {
2137 LOG(WARNING) << "Could not reset JIT state after zygote fork: " << error_msg;
2138 return;
2139 }
2140
2141 InitializeSpaces();
2142}
2143
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08002144} // namespace jit
2145} // namespace art