blob: aaeeff6e4e3c77394585a7f497dbb9ecf432bfdc [file] [log] [blame]
Ben Chengba4fc8b2009-06-01 13:00:29 -07001/*
2 * Copyright (C) 2008 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#ifdef WITH_JIT
17
18/*
19 * Target independent portion of Android's Jit
20 */
21
22#include "Dalvik.h"
23#include "Jit.h"
24
25
26#include "dexdump/OpCodeNames.h"
27#include <unistd.h>
28#include <pthread.h>
29#include <sys/time.h>
30#include <signal.h>
31#include "compiler/Compiler.h"
Bill Buzbee6e963e12009-06-17 16:56:19 -070032#include "compiler/CompilerUtility.h"
33#include "compiler/CompilerIR.h"
Ben Chengba4fc8b2009-06-01 13:00:29 -070034#include <errno.h>
35
Jeff Hao97319a82009-08-12 16:57:15 -070036#if defined(WITH_SELF_VERIFICATION)
37/* Allocate space for per-thread ShadowSpace data structures */
38void* dvmSelfVerificationShadowSpaceAlloc(Thread* self)
39{
40 self->shadowSpace = (ShadowSpace*) calloc(1, sizeof(ShadowSpace));
41 if (self->shadowSpace == NULL)
42 return NULL;
43
44 self->shadowSpace->registerSpaceSize = REG_SPACE;
45 self->shadowSpace->registerSpace =
46 (int*) calloc(self->shadowSpace->registerSpaceSize, sizeof(int));
47
48 return self->shadowSpace->registerSpace;
49}
50
51/* Free per-thread ShadowSpace data structures */
52void dvmSelfVerificationShadowSpaceFree(Thread* self)
53{
54 free(self->shadowSpace->registerSpace);
55 free(self->shadowSpace);
56}
57
58/*
59 * Save out PC, FP, InterpState, and registers to shadow space.
60 * Return a pointer to the shadow space for JIT to use.
61 */
62void* dvmSelfVerificationSaveState(const u2* pc, const void* fp,
Ben Chengccd6c012009-10-15 14:52:45 -070063 InterpState* interpState)
Jeff Hao97319a82009-08-12 16:57:15 -070064{
65 Thread *self = dvmThreadSelf();
66 ShadowSpace *shadowSpace = self->shadowSpace;
Jeff Hao97319a82009-08-12 16:57:15 -070067 int preBytes = interpState->method->outsSize*4 + sizeof(StackSaveArea);
68 int postBytes = interpState->method->registersSize*4;
69
70 //LOGD("### selfVerificationSaveState(%d) pc: 0x%x fp: 0x%x",
71 // self->threadId, (int)pc, (int)fp);
72
73 if (shadowSpace->selfVerificationState != kSVSIdle) {
74 LOGD("~~~ Save: INCORRECT PREVIOUS STATE(%d): %d",
75 self->threadId, shadowSpace->selfVerificationState);
76 LOGD("********** SHADOW STATE DUMP **********");
Ben Chengccd6c012009-10-15 14:52:45 -070077 LOGD("PC: 0x%x FP: 0x%x", (int)pc, (int)fp);
Jeff Hao97319a82009-08-12 16:57:15 -070078 }
79 shadowSpace->selfVerificationState = kSVSStart;
80
81 // Dynamically grow shadow register space if necessary
82 while (preBytes + postBytes > shadowSpace->registerSpaceSize) {
83 shadowSpace->registerSpaceSize *= 2;
84 free(shadowSpace->registerSpace);
85 shadowSpace->registerSpace =
86 (int*) calloc(shadowSpace->registerSpaceSize, sizeof(int));
87 }
88
89 // Remember original state
90 shadowSpace->startPC = pc;
91 shadowSpace->fp = fp;
Ben Chengccd6c012009-10-15 14:52:45 -070092 shadowSpace->glue = interpState;
93 /*
94 * Store the original method here in case the trace ends with a
95 * return/invoke, the last method.
96 */
97 shadowSpace->method = interpState->method;
Jeff Hao97319a82009-08-12 16:57:15 -070098 shadowSpace->shadowFP = shadowSpace->registerSpace +
99 shadowSpace->registerSpaceSize - postBytes/4;
100
101 // Create a copy of the InterpState
Ben Chengccd6c012009-10-15 14:52:45 -0700102 //shadowSpace->interpState = *interpState;
103 memcpy(&(shadowSpace->interpState), interpState, sizeof(InterpState));
Jeff Hao97319a82009-08-12 16:57:15 -0700104 shadowSpace->interpState.fp = shadowSpace->shadowFP;
105 shadowSpace->interpState.interpStackEnd = (u1*)shadowSpace->registerSpace;
106
107 // Create a copy of the stack
108 memcpy(((char*)shadowSpace->shadowFP)-preBytes, ((char*)fp)-preBytes,
109 preBytes+postBytes);
110
111 // Setup the shadowed heap space
112 shadowSpace->heapSpaceTail = shadowSpace->heapSpace;
113
114 // Reset trace length
115 shadowSpace->traceLength = 0;
116
117 return shadowSpace;
118}
119
120/*
121 * Save ending PC, FP and compiled code exit point to shadow space.
122 * Return a pointer to the shadow space for JIT to restore state.
123 */
124void* dvmSelfVerificationRestoreState(const u2* pc, const void* fp,
125 SelfVerificationState exitPoint)
126{
127 Thread *self = dvmThreadSelf();
128 ShadowSpace *shadowSpace = self->shadowSpace;
129 shadowSpace->endPC = pc;
130 shadowSpace->endShadowFP = fp;
131
132 //LOGD("### selfVerificationRestoreState(%d) pc: 0x%x fp: 0x%x endPC: 0x%x",
133 // self->threadId, (int)shadowSpace->startPC, (int)shadowSpace->fp,
134 // (int)pc);
135
136 if (shadowSpace->selfVerificationState != kSVSStart) {
137 LOGD("~~~ Restore: INCORRECT PREVIOUS STATE(%d): %d",
138 self->threadId, shadowSpace->selfVerificationState);
139 LOGD("********** SHADOW STATE DUMP **********");
Ben Chengccd6c012009-10-15 14:52:45 -0700140 LOGD("Dalvik PC: 0x%x endPC: 0x%x", (int)shadowSpace->startPC,
Jeff Hao97319a82009-08-12 16:57:15 -0700141 (int)shadowSpace->endPC);
Ben Chengccd6c012009-10-15 14:52:45 -0700142 LOGD("Interp FP: 0x%x", (int)shadowSpace->fp);
143 LOGD("Shadow FP: 0x%x endFP: 0x%x", (int)shadowSpace->shadowFP,
Jeff Hao97319a82009-08-12 16:57:15 -0700144 (int)shadowSpace->endShadowFP);
145 }
146
147 // Special case when punting after a single instruction
148 if (exitPoint == kSVSPunt && pc == shadowSpace->startPC) {
149 shadowSpace->selfVerificationState = kSVSIdle;
150 } else {
151 shadowSpace->selfVerificationState = exitPoint;
152 }
153
154 return shadowSpace;
155}
156
157/* Print contents of virtual registers */
Ben Chengccd6c012009-10-15 14:52:45 -0700158static void selfVerificationPrintRegisters(int* addr, int* addrRef,
159 int numWords)
Jeff Hao97319a82009-08-12 16:57:15 -0700160{
161 int i;
162 for (i = 0; i < numWords; i++) {
Ben Chengccd6c012009-10-15 14:52:45 -0700163 LOGD("(v%d) 0x%8x%s", i, addr[i], addr[i] != addrRef[i] ? " X" : "");
Jeff Hao97319a82009-08-12 16:57:15 -0700164 }
165}
166
167/* Print values maintained in shadowSpace */
168static void selfVerificationDumpState(const u2* pc, Thread* self)
169{
170 ShadowSpace* shadowSpace = self->shadowSpace;
171 StackSaveArea* stackSave = SAVEAREA_FROM_FP(self->curFrame);
172 int frameBytes = (int) shadowSpace->registerSpace +
173 shadowSpace->registerSpaceSize*4 -
174 (int) shadowSpace->shadowFP;
175 int localRegs = 0;
176 int frameBytes2 = 0;
177 if (self->curFrame < shadowSpace->fp) {
178 localRegs = (stackSave->method->registersSize -
179 stackSave->method->insSize)*4;
180 frameBytes2 = (int) shadowSpace->fp - (int) self->curFrame - localRegs;
181 }
182 LOGD("********** SHADOW STATE DUMP **********");
Ben Chengccd6c012009-10-15 14:52:45 -0700183 LOGD("CurrentPC: 0x%x, Offset: 0x%04x", (int)pc,
Jeff Hao97319a82009-08-12 16:57:15 -0700184 (int)(pc - stackSave->method->insns));
Ben Chengccd6c012009-10-15 14:52:45 -0700185 LOGD("Class: %s", shadowSpace->method->clazz->descriptor);
186 LOGD("Method: %s", shadowSpace->method->name);
187 LOGD("Dalvik PC: 0x%x endPC: 0x%x", (int)shadowSpace->startPC,
Jeff Hao97319a82009-08-12 16:57:15 -0700188 (int)shadowSpace->endPC);
Ben Chengccd6c012009-10-15 14:52:45 -0700189 LOGD("Interp FP: 0x%x endFP: 0x%x", (int)shadowSpace->fp,
Jeff Hao97319a82009-08-12 16:57:15 -0700190 (int)self->curFrame);
Ben Chengccd6c012009-10-15 14:52:45 -0700191 LOGD("Shadow FP: 0x%x endFP: 0x%x", (int)shadowSpace->shadowFP,
Jeff Hao97319a82009-08-12 16:57:15 -0700192 (int)shadowSpace->endShadowFP);
Ben Chengccd6c012009-10-15 14:52:45 -0700193 LOGD("Frame1 Bytes: %d Frame2 Local: %d Bytes: %d", frameBytes,
Jeff Hao97319a82009-08-12 16:57:15 -0700194 localRegs, frameBytes2);
Ben Chengccd6c012009-10-15 14:52:45 -0700195 LOGD("Trace length: %d State: %d", shadowSpace->traceLength,
Jeff Hao97319a82009-08-12 16:57:15 -0700196 shadowSpace->selfVerificationState);
197}
198
199/* Print decoded instructions in the current trace */
200static void selfVerificationDumpTrace(const u2* pc, Thread* self)
201{
202 ShadowSpace* shadowSpace = self->shadowSpace;
203 StackSaveArea* stackSave = SAVEAREA_FROM_FP(self->curFrame);
Ben Chengbcdc1de2009-08-21 16:18:46 -0700204 int i, addr, offset;
205 DecodedInstruction *decInsn;
Jeff Hao97319a82009-08-12 16:57:15 -0700206
207 LOGD("********** SHADOW TRACE DUMP **********");
208 for (i = 0; i < shadowSpace->traceLength; i++) {
Ben Chengbcdc1de2009-08-21 16:18:46 -0700209 addr = shadowSpace->trace[i].addr;
210 offset = (int)((u2*)addr - stackSave->method->insns);
211 decInsn = &(shadowSpace->trace[i].decInsn);
212 /* Not properly decoding instruction, some registers may be garbage */
Ben Chengccd6c012009-10-15 14:52:45 -0700213 LOGD("0x%x: (0x%04x) %s", addr, offset, getOpcodeName(decInsn->opCode));
Jeff Hao97319a82009-08-12 16:57:15 -0700214 }
215}
216
Ben Chengbcdc1de2009-08-21 16:18:46 -0700217/* Code is forced into this spin loop when a divergence is detected */
Ben Chengccd6c012009-10-15 14:52:45 -0700218static void selfVerificationSpinLoop(ShadowSpace *shadowSpace)
Ben Chengbcdc1de2009-08-21 16:18:46 -0700219{
Ben Chengccd6c012009-10-15 14:52:45 -0700220 const u2 *startPC = shadowSpace->startPC;
221 JitTraceDescription* desc = dvmCopyTraceDescriptor(startPC);
222 if (desc) {
223 dvmCompilerWorkEnqueue(startPC, kWorkOrderTraceDebug, desc);
224 }
Ben Chengbcdc1de2009-08-21 16:18:46 -0700225 gDvmJit.selfVerificationSpin = true;
226 while(gDvmJit.selfVerificationSpin) sleep(10);
227}
228
Jeff Hao97319a82009-08-12 16:57:15 -0700229/* Manage self verification while in the debug interpreter */
230static bool selfVerificationDebugInterp(const u2* pc, Thread* self)
231{
232 ShadowSpace *shadowSpace = self->shadowSpace;
Jeff Hao97319a82009-08-12 16:57:15 -0700233 SelfVerificationState state = shadowSpace->selfVerificationState;
Ben Chengbcdc1de2009-08-21 16:18:46 -0700234
235 DecodedInstruction decInsn;
236 dexDecodeInstruction(gDvm.instrFormat, pc, &decInsn);
237
Jeff Hao97319a82009-08-12 16:57:15 -0700238 //LOGD("### DbgIntp(%d): PC: 0x%x endPC: 0x%x state: %d len: %d %s",
239 // self->threadId, (int)pc, (int)shadowSpace->endPC, state,
Ben Chengbcdc1de2009-08-21 16:18:46 -0700240 // shadowSpace->traceLength, getOpcodeName(decInsn.opCode));
Jeff Hao97319a82009-08-12 16:57:15 -0700241
242 if (state == kSVSIdle || state == kSVSStart) {
243 LOGD("~~~ DbgIntrp: INCORRECT PREVIOUS STATE(%d): %d",
244 self->threadId, state);
245 selfVerificationDumpState(pc, self);
246 selfVerificationDumpTrace(pc, self);
247 }
248
249 /* Skip endPC once when trace has a backward branch */
250 if ((state == kSVSBackwardBranch && pc == shadowSpace->endPC) ||
251 state != kSVSBackwardBranch) {
252 shadowSpace->selfVerificationState = kSVSDebugInterp;
253 }
254
255 /* Check that the current pc is the end of the trace */
256 if ((state == kSVSSingleStep || state == kSVSDebugInterp) &&
257 pc == shadowSpace->endPC) {
258
259 shadowSpace->selfVerificationState = kSVSIdle;
260
261 /* Check register space */
262 int frameBytes = (int) shadowSpace->registerSpace +
263 shadowSpace->registerSpaceSize*4 -
264 (int) shadowSpace->shadowFP;
265 if (memcmp(shadowSpace->fp, shadowSpace->shadowFP, frameBytes)) {
Ben Chengccd6c012009-10-15 14:52:45 -0700266 LOGD("~~~ DbgIntp(%d): REGISTERS DIVERGENCE!", self->threadId);
Jeff Hao97319a82009-08-12 16:57:15 -0700267 selfVerificationDumpState(pc, self);
268 selfVerificationDumpTrace(pc, self);
269 LOGD("*** Interp Registers: addr: 0x%x bytes: %d",
270 (int)shadowSpace->fp, frameBytes);
Ben Chengccd6c012009-10-15 14:52:45 -0700271 selfVerificationPrintRegisters((int*)shadowSpace->fp,
272 (int*)shadowSpace->shadowFP,
273 frameBytes/4);
Jeff Hao97319a82009-08-12 16:57:15 -0700274 LOGD("*** Shadow Registers: addr: 0x%x bytes: %d",
275 (int)shadowSpace->shadowFP, frameBytes);
276 selfVerificationPrintRegisters((int*)shadowSpace->shadowFP,
Ben Chengccd6c012009-10-15 14:52:45 -0700277 (int*)shadowSpace->fp,
278 frameBytes/4);
279 selfVerificationSpinLoop(shadowSpace);
Jeff Hao97319a82009-08-12 16:57:15 -0700280 }
281 /* Check new frame if it exists (invokes only) */
282 if (self->curFrame < shadowSpace->fp) {
283 StackSaveArea* stackSave = SAVEAREA_FROM_FP(self->curFrame);
284 int localRegs = (stackSave->method->registersSize -
285 stackSave->method->insSize)*4;
286 int frameBytes2 = (int) shadowSpace->fp -
287 (int) self->curFrame - localRegs;
288 if (memcmp(((char*)self->curFrame)+localRegs,
289 ((char*)shadowSpace->endShadowFP)+localRegs, frameBytes2)) {
Ben Chengccd6c012009-10-15 14:52:45 -0700290 LOGD("~~~ DbgIntp(%d): REGISTERS (FRAME2) DIVERGENCE!",
Jeff Hao97319a82009-08-12 16:57:15 -0700291 self->threadId);
292 selfVerificationDumpState(pc, self);
293 selfVerificationDumpTrace(pc, self);
294 LOGD("*** Interp Registers: addr: 0x%x l: %d bytes: %d",
295 (int)self->curFrame, localRegs, frameBytes2);
296 selfVerificationPrintRegisters((int*)self->curFrame,
Ben Chengccd6c012009-10-15 14:52:45 -0700297 (int*)shadowSpace->endShadowFP,
298 (frameBytes2+localRegs)/4);
Jeff Hao97319a82009-08-12 16:57:15 -0700299 LOGD("*** Shadow Registers: addr: 0x%x l: %d bytes: %d",
300 (int)shadowSpace->endShadowFP, localRegs, frameBytes2);
301 selfVerificationPrintRegisters((int*)shadowSpace->endShadowFP,
Ben Chengccd6c012009-10-15 14:52:45 -0700302 (int*)self->curFrame,
303 (frameBytes2+localRegs)/4);
304 selfVerificationSpinLoop(shadowSpace);
Jeff Hao97319a82009-08-12 16:57:15 -0700305 }
306 }
307
308 /* Check memory space */
Ben Chengbcdc1de2009-08-21 16:18:46 -0700309 bool memDiff = false;
Jeff Hao97319a82009-08-12 16:57:15 -0700310 ShadowHeap* heapSpacePtr;
311 for (heapSpacePtr = shadowSpace->heapSpace;
312 heapSpacePtr != shadowSpace->heapSpaceTail; heapSpacePtr++) {
Ben Chengbcdc1de2009-08-21 16:18:46 -0700313 int memData = *((unsigned int*) heapSpacePtr->addr);
314 if (heapSpacePtr->data != memData) {
Ben Chengccd6c012009-10-15 14:52:45 -0700315 LOGD("~~~ DbgIntp(%d): MEMORY DIVERGENCE!", self->threadId);
316 LOGD("Addr: 0x%x Intrp Data: 0x%x Jit Data: 0x%x",
Ben Chengbcdc1de2009-08-21 16:18:46 -0700317 heapSpacePtr->addr, memData, heapSpacePtr->data);
Jeff Hao97319a82009-08-12 16:57:15 -0700318 selfVerificationDumpState(pc, self);
319 selfVerificationDumpTrace(pc, self);
Ben Chengbcdc1de2009-08-21 16:18:46 -0700320 memDiff = true;
Jeff Hao97319a82009-08-12 16:57:15 -0700321 }
322 }
Ben Chengccd6c012009-10-15 14:52:45 -0700323 if (memDiff) selfVerificationSpinLoop(shadowSpace);
Jeff Hao97319a82009-08-12 16:57:15 -0700324 return true;
325
326 /* If end not been reached, make sure max length not exceeded */
327 } else if (shadowSpace->traceLength >= JIT_MAX_TRACE_LEN) {
328 LOGD("~~~ DbgIntp(%d): CONTROL DIVERGENCE!", self->threadId);
Ben Chengccd6c012009-10-15 14:52:45 -0700329 LOGD("startPC: 0x%x endPC: 0x%x currPC: 0x%x",
Jeff Hao97319a82009-08-12 16:57:15 -0700330 (int)shadowSpace->startPC, (int)shadowSpace->endPC, (int)pc);
331 selfVerificationDumpState(pc, self);
332 selfVerificationDumpTrace(pc, self);
Ben Chengccd6c012009-10-15 14:52:45 -0700333 selfVerificationSpinLoop(shadowSpace);
Jeff Hao97319a82009-08-12 16:57:15 -0700334
335 return true;
336 }
Ben Chengbcdc1de2009-08-21 16:18:46 -0700337 /* Log the instruction address and decoded instruction for debug */
Jeff Hao97319a82009-08-12 16:57:15 -0700338 shadowSpace->trace[shadowSpace->traceLength].addr = (int)pc;
Ben Chengbcdc1de2009-08-21 16:18:46 -0700339 shadowSpace->trace[shadowSpace->traceLength].decInsn = decInsn;
Jeff Hao97319a82009-08-12 16:57:15 -0700340 shadowSpace->traceLength++;
341
342 return false;
343}
344#endif
345
Ben Chengba4fc8b2009-06-01 13:00:29 -0700346int dvmJitStartup(void)
347{
348 unsigned int i;
349 bool res = true; /* Assume success */
350
351 // Create the compiler thread and setup miscellaneous chores */
352 res &= dvmCompilerStartup();
353
354 dvmInitMutex(&gDvmJit.tableLock);
355 if (res && gDvm.executionMode == kExecutionModeJit) {
Bill Buzbee716f1202009-07-23 13:22:09 -0700356 JitEntry *pJitTable = NULL;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700357 unsigned char *pJitProfTable = NULL;
Ben Cheng3f02aa42009-08-14 13:52:09 -0700358 // Power of 2?
359 assert(gDvmJit.jitTableSize &&
360 !(gDvmJit.jitTableSize & (gDvmJit.jitTableSize - 1)));
Ben Chengba4fc8b2009-06-01 13:00:29 -0700361 dvmLockMutex(&gDvmJit.tableLock);
Bill Buzbee716f1202009-07-23 13:22:09 -0700362 pJitTable = (JitEntry*)
Bill Buzbee27176222009-06-09 09:20:16 -0700363 calloc(gDvmJit.jitTableSize, sizeof(*pJitTable));
Ben Chengba4fc8b2009-06-01 13:00:29 -0700364 if (!pJitTable) {
365 LOGE("jit table allocation failed\n");
366 res = false;
367 goto done;
368 }
Ben Chengba4fc8b2009-06-01 13:00:29 -0700369 /*
370 * NOTE: the profile table must only be allocated once, globally.
371 * Profiling is turned on and off by nulling out gDvm.pJitProfTable
372 * and then restoring its original value. However, this action
373 * is not syncronized for speed so threads may continue to hold
374 * and update the profile table after profiling has been turned
375 * off by null'ng the global pointer. Be aware.
376 */
377 pJitProfTable = (unsigned char *)malloc(JIT_PROF_SIZE);
378 if (!pJitProfTable) {
379 LOGE("jit prof table allocation failed\n");
380 res = false;
381 goto done;
382 }
383 memset(pJitProfTable,0,JIT_PROF_SIZE);
Bill Buzbee27176222009-06-09 09:20:16 -0700384 for (i=0; i < gDvmJit.jitTableSize; i++) {
Bill Buzbee716f1202009-07-23 13:22:09 -0700385 pJitTable[i].u.info.chain = gDvmJit.jitTableSize;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700386 }
387 /* Is chain field wide enough for termination pattern? */
Ben Cheng3f02aa42009-08-14 13:52:09 -0700388 assert(pJitTable[0].u.info.chain == gDvmJit.jitTableSize);
Ben Chengba4fc8b2009-06-01 13:00:29 -0700389
390done:
391 gDvmJit.pJitEntryTable = pJitTable;
Bill Buzbee27176222009-06-09 09:20:16 -0700392 gDvmJit.jitTableMask = gDvmJit.jitTableSize - 1;
393 gDvmJit.jitTableEntriesUsed = 0;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700394 gDvmJit.pProfTableCopy = gDvmJit.pProfTable = pJitProfTable;
395 dvmUnlockMutex(&gDvmJit.tableLock);
396 }
397 return res;
398}
399
400/*
401 * If one of our fixed tables or the translation buffer fills up,
402 * call this routine to avoid wasting cycles on future translation requests.
403 */
404void dvmJitStopTranslationRequests()
405{
406 /*
407 * Note 1: This won't necessarily stop all translation requests, and
408 * operates on a delayed mechanism. Running threads look to the copy
409 * of this value in their private InterpState structures and won't see
410 * this change until it is refreshed (which happens on interpreter
411 * entry).
412 * Note 2: This is a one-shot memory leak on this table. Because this is a
413 * permanent off switch for Jit profiling, it is a one-time leak of 1K
414 * bytes, and no further attempt will be made to re-allocate it. Can't
415 * free it because some thread may be holding a reference.
416 */
417 gDvmJit.pProfTable = gDvmJit.pProfTableCopy = NULL;
418}
419
420#if defined(EXIT_STATS)
421/* Convenience function to increment counter from assembly code */
Ben Cheng6c10a972009-10-29 14:39:18 -0700422void dvmBumpNoChain(int from)
Ben Chengba4fc8b2009-06-01 13:00:29 -0700423{
Ben Cheng6c10a972009-10-29 14:39:18 -0700424 gDvmJit.noChainExit[from]++;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700425}
426
427/* Convenience function to increment counter from assembly code */
428void dvmBumpNormal()
429{
Ben Cheng6c10a972009-10-29 14:39:18 -0700430 gDvmJit.normalExit++;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700431}
432
433/* Convenience function to increment counter from assembly code */
434void dvmBumpPunt(int from)
435{
Ben Cheng6c10a972009-10-29 14:39:18 -0700436 gDvmJit.puntExit++;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700437}
438#endif
439
440/* Dumps debugging & tuning stats to the log */
441void dvmJitStats()
442{
443 int i;
444 int hit;
445 int not_hit;
446 int chains;
447 if (gDvmJit.pJitEntryTable) {
448 for (i=0, chains=hit=not_hit=0;
Bill Buzbee27176222009-06-09 09:20:16 -0700449 i < (int) gDvmJit.jitTableSize;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700450 i++) {
451 if (gDvmJit.pJitEntryTable[i].dPC != 0)
452 hit++;
453 else
454 not_hit++;
Bill Buzbee716f1202009-07-23 13:22:09 -0700455 if (gDvmJit.pJitEntryTable[i].u.info.chain != gDvmJit.jitTableSize)
Ben Chengba4fc8b2009-06-01 13:00:29 -0700456 chains++;
457 }
458 LOGD(
459 "JIT: %d traces, %d slots, %d chains, %d maxQ, %d thresh, %s",
460 hit, not_hit + hit, chains, gDvmJit.compilerMaxQueued,
461 gDvmJit.threshold, gDvmJit.blockingMode ? "Blocking" : "Non-blocking");
462#if defined(EXIT_STATS)
463 LOGD(
Ben Cheng6c10a972009-10-29 14:39:18 -0700464 "JIT: Lookups: %d hits, %d misses; %d normal, %d punt",
Ben Chengba4fc8b2009-06-01 13:00:29 -0700465 gDvmJit.addrLookupsFound, gDvmJit.addrLookupsNotFound,
Ben Cheng6c10a972009-10-29 14:39:18 -0700466 gDvmJit.normalExit, gDvmJit.puntExit);
467 LOGD(
468 "JIT: noChainExit: %d IC miss, %d interp callsite, %d switch overflow",
469 gDvmJit.noChainExit[kInlineCacheMiss],
470 gDvmJit.noChainExit[kCallsiteInterpreted],
471 gDvmJit.noChainExit[kSwitchOverflow]);
Ben Chengba4fc8b2009-06-01 13:00:29 -0700472#endif
473 LOGD("JIT: %d Translation chains", gDvmJit.translationChains);
474#if defined(INVOKE_STATS)
Ben Cheng38329f52009-07-07 14:19:20 -0700475 LOGD("JIT: Invoke: %d chainable, %d pred. chain, %d native, "
476 "%d return",
477 gDvmJit.invokeChain, gDvmJit.invokePredictedChain,
478 gDvmJit.invokeNative, gDvmJit.returnOp);
Ben Chengba4fc8b2009-06-01 13:00:29 -0700479#endif
Ben Chenge80cd942009-07-17 15:54:23 -0700480 if (gDvmJit.profile) {
Bill Buzbee716f1202009-07-23 13:22:09 -0700481 dvmCompilerSortAndPrintTraceProfiles();
Bill Buzbee6e963e12009-06-17 16:56:19 -0700482 }
Ben Chengba4fc8b2009-06-01 13:00:29 -0700483 }
484}
485
Bill Buzbee716f1202009-07-23 13:22:09 -0700486
Ben Chengba4fc8b2009-06-01 13:00:29 -0700487/*
488 * Final JIT shutdown. Only do this once, and do not attempt to restart
489 * the JIT later.
490 */
491void dvmJitShutdown(void)
492{
493 /* Shutdown the compiler thread */
Bill Buzbee1465db52009-09-23 17:17:35 -0700494
Ben Chengba4fc8b2009-06-01 13:00:29 -0700495 dvmCompilerShutdown();
496
497 dvmCompilerDumpStats();
498
499 dvmDestroyMutex(&gDvmJit.tableLock);
500
501 if (gDvmJit.pJitEntryTable) {
502 free(gDvmJit.pJitEntryTable);
503 gDvmJit.pJitEntryTable = NULL;
504 }
505
506 if (gDvmJit.pProfTable) {
507 free(gDvmJit.pProfTable);
508 gDvmJit.pProfTable = NULL;
509 }
510}
511
Ben Chengba4fc8b2009-06-01 13:00:29 -0700512/*
513 * Adds to the current trace request one instruction at a time, just
514 * before that instruction is interpreted. This is the primary trace
515 * selection function. NOTE: return instruction are handled a little
516 * differently. In general, instructions are "proposed" to be added
517 * to the current trace prior to interpretation. If the interpreter
518 * then successfully completes the instruction, is will be considered
519 * part of the request. This allows us to examine machine state prior
520 * to interpretation, and also abort the trace request if the instruction
521 * throws or does something unexpected. However, return instructions
522 * will cause an immediate end to the translation request - which will
523 * be passed to the compiler before the return completes. This is done
524 * in response to special handling of returns by the interpreter (and
525 * because returns cannot throw in a way that causes problems for the
526 * translated code.
527 */
Ben Chengba4fc8b2009-06-01 13:00:29 -0700528int dvmCheckJit(const u2* pc, Thread* self, InterpState* interpState)
529{
530 int flags,i,len;
531 int switchInterp = false;
532 int debugOrProfile = (gDvm.debuggerActive || self->suspendCount
533#if defined(WITH_PROFILER)
534 || gDvm.activeProfilers
535#endif
536 );
Ben Cheng79d173c2009-09-29 16:12:51 -0700537 /* Prepare to handle last PC and stage the current PC */
538 const u2 *lastPC = interpState->lastPC;
539 interpState->lastPC = pc;
540
Ben Chengba4fc8b2009-06-01 13:00:29 -0700541 switch (interpState->jitState) {
542 char* nopStr;
543 int target;
544 int offset;
545 DecodedInstruction decInsn;
546 case kJitTSelect:
Ben Chengdc84bb22009-10-02 12:58:52 -0700547 /* First instruction - just remember the PC and exit */
548 if (lastPC == NULL) break;
Ben Cheng79d173c2009-09-29 16:12:51 -0700549 /* Grow the trace around the last PC if jitState is kJitTSelect */
550 dexDecodeInstruction(gDvm.instrFormat, lastPC, &decInsn);
Ben Cheng6c10a972009-10-29 14:39:18 -0700551
552 /*
553 * Treat {PACKED,SPARSE}_SWITCH as trace-ending instructions due
554 * to the amount of space it takes to generate the chaining
555 * cells.
556 */
557 if (interpState->totalTraceLen != 0 &&
558 (decInsn.opCode == OP_PACKED_SWITCH ||
559 decInsn.opCode == OP_SPARSE_SWITCH)) {
560 interpState->jitState = kJitTSelectEnd;
561 break;
562 }
563
Ben Chengba4fc8b2009-06-01 13:00:29 -0700564#if defined(SHOW_TRACE)
565 LOGD("TraceGen: adding %s",getOpcodeName(decInsn.opCode));
566#endif
567 flags = dexGetInstrFlags(gDvm.instrFlags, decInsn.opCode);
Ben Cheng79d173c2009-09-29 16:12:51 -0700568 len = dexGetInstrOrTableWidthAbs(gDvm.instrWidth, lastPC);
569 offset = lastPC - interpState->method->insns;
570 assert((unsigned) offset <
571 dvmGetMethodInsnsSize(interpState->method));
572 if (lastPC != interpState->currRunHead + interpState->currRunLen) {
Bill Buzbee50a6bf22009-07-08 13:08:04 -0700573 int currTraceRun;
574 /* We need to start a new trace run */
575 currTraceRun = ++interpState->currTraceRun;
576 interpState->currRunLen = 0;
Ben Cheng79d173c2009-09-29 16:12:51 -0700577 interpState->currRunHead = (u2*)lastPC;
Bill Buzbee50a6bf22009-07-08 13:08:04 -0700578 interpState->trace[currTraceRun].frag.startOffset = offset;
579 interpState->trace[currTraceRun].frag.numInsts = 0;
580 interpState->trace[currTraceRun].frag.runEnd = false;
581 interpState->trace[currTraceRun].frag.hint = kJitHintNone;
582 }
583 interpState->trace[interpState->currTraceRun].frag.numInsts++;
584 interpState->totalTraceLen++;
585 interpState->currRunLen += len;
Ben Cheng79d173c2009-09-29 16:12:51 -0700586
587 /* Will probably never hit this with the current trace buildier */
588 if (interpState->currTraceRun == (MAX_JIT_RUN_LEN - 1)) {
589 interpState->jitState = kJitTSelectEnd;
590 }
591
Bill Buzbee50a6bf22009-07-08 13:08:04 -0700592 if ( ((flags & kInstrUnconditional) == 0) &&
Bill Buzbeef4ce16f2009-07-28 13:28:25 -0700593 /* don't end trace on INVOKE_DIRECT_EMPTY */
594 (decInsn.opCode != OP_INVOKE_DIRECT_EMPTY) &&
Bill Buzbee50a6bf22009-07-08 13:08:04 -0700595 ((flags & (kInstrCanBranch |
596 kInstrCanSwitch |
597 kInstrCanReturn |
598 kInstrInvoke)) != 0)) {
599 interpState->jitState = kJitTSelectEnd;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700600#if defined(SHOW_TRACE)
Bill Buzbee50a6bf22009-07-08 13:08:04 -0700601 LOGD("TraceGen: ending on %s, basic block end",
602 getOpcodeName(decInsn.opCode));
Ben Chengba4fc8b2009-06-01 13:00:29 -0700603#endif
Bill Buzbee50a6bf22009-07-08 13:08:04 -0700604 }
605 if (decInsn.opCode == OP_THROW) {
606 interpState->jitState = kJitTSelectEnd;
607 }
608 if (interpState->totalTraceLen >= JIT_MAX_TRACE_LEN) {
609 interpState->jitState = kJitTSelectEnd;
610 }
611 if (debugOrProfile) {
612 interpState->jitState = kJitTSelectAbort;
613 switchInterp = !debugOrProfile;
614 break;
615 }
616 if ((flags & kInstrCanReturn) != kInstrCanReturn) {
617 break;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700618 }
619 /* NOTE: intentional fallthrough for returns */
620 case kJitTSelectEnd:
621 {
622 if (interpState->totalTraceLen == 0) {
623 switchInterp = !debugOrProfile;
624 break;
625 }
626 JitTraceDescription* desc =
627 (JitTraceDescription*)malloc(sizeof(JitTraceDescription) +
628 sizeof(JitTraceRun) * (interpState->currTraceRun+1));
629 if (desc == NULL) {
630 LOGE("Out of memory in trace selection");
631 dvmJitStopTranslationRequests();
632 interpState->jitState = kJitTSelectAbort;
633 switchInterp = !debugOrProfile;
634 break;
635 }
636 interpState->trace[interpState->currTraceRun].frag.runEnd =
637 true;
638 interpState->jitState = kJitNormal;
639 desc->method = interpState->method;
640 memcpy((char*)&(desc->trace[0]),
641 (char*)&(interpState->trace[0]),
642 sizeof(JitTraceRun) * (interpState->currTraceRun+1));
643#if defined(SHOW_TRACE)
644 LOGD("TraceGen: trace done, adding to queue");
645#endif
646 dvmCompilerWorkEnqueue(
647 interpState->currTraceHead,kWorkOrderTrace,desc);
648 if (gDvmJit.blockingMode) {
649 dvmCompilerDrainQueue();
650 }
651 switchInterp = !debugOrProfile;
652 }
653 break;
654 case kJitSingleStep:
655 interpState->jitState = kJitSingleStepEnd;
656 break;
657 case kJitSingleStepEnd:
658 interpState->entryPoint = kInterpEntryResume;
659 switchInterp = !debugOrProfile;
660 break;
661 case kJitTSelectAbort:
662#if defined(SHOW_TRACE)
663 LOGD("TraceGen: trace abort");
664#endif
665 interpState->jitState = kJitNormal;
666 switchInterp = !debugOrProfile;
667 break;
668 case kJitNormal:
Ben Cheng38329f52009-07-07 14:19:20 -0700669 switchInterp = !debugOrProfile;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700670 break;
Jeff Hao97319a82009-08-12 16:57:15 -0700671#if defined(WITH_SELF_VERIFICATION)
672 case kJitSelfVerification:
673 if (selfVerificationDebugInterp(pc, self)) {
674 interpState->jitState = kJitNormal;
675 switchInterp = !debugOrProfile;
676 }
677 break;
678#endif
Ben Chenged79ff02009-10-13 13:26:40 -0700679 /* If JIT is off stay out of interpreter selections */
680 case kJitOff:
681 break;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700682 default:
Ben Cheng9c147b82009-10-07 16:41:46 -0700683 if (!debugOrProfile) {
684 LOGE("Unexpected JIT state: %d", interpState->jitState);
685 dvmAbort();
686 }
687 break;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700688 }
689 return switchInterp;
690}
691
Ben Chengccd6c012009-10-15 14:52:45 -0700692JitEntry *dvmFindJitEntry(const u2* pc)
Ben Chengba4fc8b2009-06-01 13:00:29 -0700693{
694 int idx = dvmJitHash(pc);
695
696 /* Expect a high hit rate on 1st shot */
697 if (gDvmJit.pJitEntryTable[idx].dPC == pc)
698 return &gDvmJit.pJitEntryTable[idx];
699 else {
Bill Buzbee27176222009-06-09 09:20:16 -0700700 int chainEndMarker = gDvmJit.jitTableSize;
Bill Buzbee716f1202009-07-23 13:22:09 -0700701 while (gDvmJit.pJitEntryTable[idx].u.info.chain != chainEndMarker) {
702 idx = gDvmJit.pJitEntryTable[idx].u.info.chain;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700703 if (gDvmJit.pJitEntryTable[idx].dPC == pc)
704 return &gDvmJit.pJitEntryTable[idx];
705 }
706 }
707 return NULL;
708}
709
Bill Buzbee27176222009-06-09 09:20:16 -0700710/*
Ben Chengba4fc8b2009-06-01 13:00:29 -0700711 * If a translated code address exists for the davik byte code
712 * pointer return it. This routine needs to be fast.
713 */
714void* dvmJitGetCodeAddr(const u2* dPC)
715{
716 int idx = dvmJitHash(dPC);
717
Bill Buzbee46cd5b62009-06-05 15:36:06 -0700718 /* If anything is suspended, don't re-enter the code cache */
719 if (gDvm.sumThreadSuspendCount > 0) {
720 return NULL;
721 }
722
Ben Chengba4fc8b2009-06-01 13:00:29 -0700723 /* Expect a high hit rate on 1st shot */
724 if (gDvmJit.pJitEntryTable[idx].dPC == dPC) {
725#if defined(EXIT_STATS)
726 gDvmJit.addrLookupsFound++;
727#endif
728 return gDvmJit.pJitEntryTable[idx].codeAddress;
729 } else {
Bill Buzbee27176222009-06-09 09:20:16 -0700730 int chainEndMarker = gDvmJit.jitTableSize;
Bill Buzbee716f1202009-07-23 13:22:09 -0700731 while (gDvmJit.pJitEntryTable[idx].u.info.chain != chainEndMarker) {
732 idx = gDvmJit.pJitEntryTable[idx].u.info.chain;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700733 if (gDvmJit.pJitEntryTable[idx].dPC == dPC) {
734#if defined(EXIT_STATS)
735 gDvmJit.addrLookupsFound++;
736#endif
737 return gDvmJit.pJitEntryTable[idx].codeAddress;
738 }
739 }
740 }
741#if defined(EXIT_STATS)
742 gDvmJit.addrLookupsNotFound++;
743#endif
744 return NULL;
745}
746
747/*
Bill Buzbee716f1202009-07-23 13:22:09 -0700748 * Find an entry in the JitTable, creating if necessary.
749 * Returns null if table is full.
750 */
751JitEntry *dvmJitLookupAndAdd(const u2* dPC)
752{
753 u4 chainEndMarker = gDvmJit.jitTableSize;
754 u4 idx = dvmJitHash(dPC);
755
756 /* Walk the bucket chain to find an exact match for our PC */
757 while ((gDvmJit.pJitEntryTable[idx].u.info.chain != chainEndMarker) &&
758 (gDvmJit.pJitEntryTable[idx].dPC != dPC)) {
759 idx = gDvmJit.pJitEntryTable[idx].u.info.chain;
760 }
761
762 if (gDvmJit.pJitEntryTable[idx].dPC != dPC) {
763 /*
764 * No match. Aquire jitTableLock and find the last
765 * slot in the chain. Possibly continue the chain walk in case
766 * some other thread allocated the slot we were looking
767 * at previuosly (perhaps even the dPC we're trying to enter).
768 */
769 dvmLockMutex(&gDvmJit.tableLock);
770 /*
771 * At this point, if .dPC is NULL, then the slot we're
772 * looking at is the target slot from the primary hash
773 * (the simple, and common case). Otherwise we're going
774 * to have to find a free slot and chain it.
775 */
776 MEM_BARRIER(); /* Make sure we reload [].dPC after lock */
777 if (gDvmJit.pJitEntryTable[idx].dPC != NULL) {
778 u4 prev;
779 while (gDvmJit.pJitEntryTable[idx].u.info.chain != chainEndMarker) {
780 if (gDvmJit.pJitEntryTable[idx].dPC == dPC) {
781 /* Another thread got there first for this dPC */
782 dvmUnlockMutex(&gDvmJit.tableLock);
783 return &gDvmJit.pJitEntryTable[idx];
784 }
785 idx = gDvmJit.pJitEntryTable[idx].u.info.chain;
786 }
787 /* Here, idx should be pointing to the last cell of an
788 * active chain whose last member contains a valid dPC */
789 assert(gDvmJit.pJitEntryTable[idx].dPC != NULL);
790 /* Linear walk to find a free cell and add it to the end */
791 prev = idx;
792 while (true) {
793 idx++;
794 if (idx == chainEndMarker)
795 idx = 0; /* Wraparound */
796 if ((gDvmJit.pJitEntryTable[idx].dPC == NULL) ||
797 (idx == prev))
798 break;
799 }
800 if (idx != prev) {
801 JitEntryInfoUnion oldValue;
802 JitEntryInfoUnion newValue;
803 /*
804 * Although we hold the lock so that noone else will
805 * be trying to update a chain field, the other fields
806 * packed into the word may be in use by other threads.
807 */
808 do {
809 oldValue = gDvmJit.pJitEntryTable[prev].u;
810 newValue = oldValue;
811 newValue.info.chain = idx;
812 } while (!ATOMIC_CMP_SWAP(
813 &gDvmJit.pJitEntryTable[prev].u.infoWord,
814 oldValue.infoWord, newValue.infoWord));
815 }
816 }
817 if (gDvmJit.pJitEntryTable[idx].dPC == NULL) {
818 /* Allocate the slot */
819 gDvmJit.pJitEntryTable[idx].dPC = dPC;
820 gDvmJit.jitTableEntriesUsed++;
821 } else {
822 /* Table is full */
823 idx = chainEndMarker;
824 }
825 dvmUnlockMutex(&gDvmJit.tableLock);
826 }
827 return (idx == chainEndMarker) ? NULL : &gDvmJit.pJitEntryTable[idx];
828}
829/*
Ben Chengba4fc8b2009-06-01 13:00:29 -0700830 * Register the translated code pointer into the JitTable.
831 * NOTE: Once a codeAddress field transitions from NULL to
832 * JIT'd code, it must not be altered without first halting all
Bill Buzbee716f1202009-07-23 13:22:09 -0700833 * threads. This routine should only be called by the compiler
834 * thread.
Ben Chengba4fc8b2009-06-01 13:00:29 -0700835 */
Bill Buzbee716f1202009-07-23 13:22:09 -0700836void dvmJitSetCodeAddr(const u2* dPC, void *nPC, JitInstructionSetType set) {
837 JitEntryInfoUnion oldValue;
838 JitEntryInfoUnion newValue;
839 JitEntry *jitEntry = dvmJitLookupAndAdd(dPC);
Ben Chengba4fc8b2009-06-01 13:00:29 -0700840 assert(jitEntry);
Bill Buzbee716f1202009-07-23 13:22:09 -0700841 /* Note: order of update is important */
842 do {
843 oldValue = jitEntry->u;
844 newValue = oldValue;
845 newValue.info.instructionSet = set;
846 } while (!ATOMIC_CMP_SWAP(
847 &jitEntry->u.infoWord,
848 oldValue.infoWord, newValue.infoWord));
849 jitEntry->codeAddress = nPC;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700850}
851
852/*
853 * Determine if valid trace-bulding request is active. Return true
854 * if we need to abort and switch back to the fast interpreter, false
855 * otherwise. NOTE: may be called even when trace selection is not being
856 * requested
857 */
858
Ben Chengba4fc8b2009-06-01 13:00:29 -0700859bool dvmJitCheckTraceRequest(Thread* self, InterpState* interpState)
860{
Bill Buzbee48f18242009-06-19 16:02:27 -0700861 bool res = false; /* Assume success */
862 int i;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700863 if (gDvmJit.pJitEntryTable != NULL) {
Bill Buzbee48f18242009-06-19 16:02:27 -0700864 /* Two-level filtering scheme */
865 for (i=0; i< JIT_TRACE_THRESH_FILTER_SIZE; i++) {
866 if (interpState->pc == interpState->threshFilter[i]) {
867 break;
868 }
869 }
870 if (i == JIT_TRACE_THRESH_FILTER_SIZE) {
871 /*
872 * Use random replacement policy - otherwise we could miss a large
873 * loop that contains more traces than the size of our filter array.
874 */
875 i = rand() % JIT_TRACE_THRESH_FILTER_SIZE;
876 interpState->threshFilter[i] = interpState->pc;
877 res = true;
878 }
Ben Chengba4fc8b2009-06-01 13:00:29 -0700879 /*
880 * If the compiler is backlogged, or if a debugger or profiler is
881 * active, cancel any JIT actions
882 */
Bill Buzbee48f18242009-06-19 16:02:27 -0700883 if ( res || (gDvmJit.compilerQueueLength >= gDvmJit.compilerHighWater) ||
Ben Chengba4fc8b2009-06-01 13:00:29 -0700884 gDvm.debuggerActive || self->suspendCount
885#if defined(WITH_PROFILER)
886 || gDvm.activeProfilers
887#endif
888 ) {
889 if (interpState->jitState != kJitOff) {
890 interpState->jitState = kJitNormal;
891 }
Ben Chengba4fc8b2009-06-01 13:00:29 -0700892 } else if (interpState->jitState == kJitTSelectRequest) {
Bill Buzbee716f1202009-07-23 13:22:09 -0700893 JitEntry *slot = dvmJitLookupAndAdd(interpState->pc);
894 if (slot == NULL) {
Ben Chengba4fc8b2009-06-01 13:00:29 -0700895 /*
Bill Buzbee716f1202009-07-23 13:22:09 -0700896 * Table is full. This should have been
897 * detected by the compiler thread and the table
898 * resized before we run into it here. Assume bad things
899 * are afoot and disable profiling.
Ben Chengba4fc8b2009-06-01 13:00:29 -0700900 */
901 interpState->jitState = kJitTSelectAbort;
Bill Buzbee716f1202009-07-23 13:22:09 -0700902 LOGD("JIT: JitTable full, disabling profiling");
903 dvmJitStopTranslationRequests();
904 } else if (slot->u.info.traceRequested) {
905 /* Trace already requested - revert to interpreter */
906 interpState->jitState = kJitTSelectAbort;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700907 } else {
Bill Buzbee716f1202009-07-23 13:22:09 -0700908 /* Mark request */
909 JitEntryInfoUnion oldValue;
910 JitEntryInfoUnion newValue;
911 do {
912 oldValue = slot->u;
913 newValue = oldValue;
914 newValue.info.traceRequested = true;
915 } while (!ATOMIC_CMP_SWAP( &slot->u.infoWord,
916 oldValue.infoWord, newValue.infoWord));
Ben Chengba4fc8b2009-06-01 13:00:29 -0700917 }
918 }
919 switch (interpState->jitState) {
920 case kJitTSelectRequest:
921 interpState->jitState = kJitTSelect;
922 interpState->currTraceHead = interpState->pc;
923 interpState->currTraceRun = 0;
924 interpState->totalTraceLen = 0;
925 interpState->currRunHead = interpState->pc;
926 interpState->currRunLen = 0;
927 interpState->trace[0].frag.startOffset =
928 interpState->pc - interpState->method->insns;
929 interpState->trace[0].frag.numInsts = 0;
930 interpState->trace[0].frag.runEnd = false;
931 interpState->trace[0].frag.hint = kJitHintNone;
Ben Cheng79d173c2009-09-29 16:12:51 -0700932 interpState->lastPC = 0;
Ben Chengba4fc8b2009-06-01 13:00:29 -0700933 break;
934 case kJitTSelect:
935 case kJitTSelectAbort:
936 res = true;
937 case kJitSingleStep:
938 case kJitSingleStepEnd:
939 case kJitOff:
940 case kJitNormal:
Jeff Hao97319a82009-08-12 16:57:15 -0700941#if defined(WITH_SELF_VERIFICATION)
942 case kJitSelfVerification:
943#endif
Ben Chengba4fc8b2009-06-01 13:00:29 -0700944 break;
945 default:
Ben Cheng9c147b82009-10-07 16:41:46 -0700946 LOGE("Unexpected JIT state: %d", interpState->jitState);
Ben Chengba4fc8b2009-06-01 13:00:29 -0700947 dvmAbort();
948 }
949 }
950 return res;
951}
952
Bill Buzbee27176222009-06-09 09:20:16 -0700953/*
954 * Resizes the JitTable. Must be a power of 2, and returns true on failure.
955 * Stops all threads, and thus is a heavyweight operation.
956 */
957bool dvmJitResizeJitTable( unsigned int size )
958{
Bill Buzbee716f1202009-07-23 13:22:09 -0700959 JitEntry *pNewTable;
960 JitEntry *pOldTable;
Bill Buzbee27176222009-06-09 09:20:16 -0700961 u4 newMask;
Bill Buzbee716f1202009-07-23 13:22:09 -0700962 unsigned int oldSize;
Bill Buzbee27176222009-06-09 09:20:16 -0700963 unsigned int i;
964
Ben Cheng3f02aa42009-08-14 13:52:09 -0700965 assert(gDvmJit.pJitEntryTable != NULL);
Bill Buzbee27176222009-06-09 09:20:16 -0700966 assert(size && !(size & (size - 1))); /* Is power of 2? */
967
968 LOGD("Jit: resizing JitTable from %d to %d", gDvmJit.jitTableSize, size);
969
970 newMask = size - 1;
971
972 if (size <= gDvmJit.jitTableSize) {
973 return true;
974 }
975
Bill Buzbee716f1202009-07-23 13:22:09 -0700976 pNewTable = (JitEntry*)calloc(size, sizeof(*pNewTable));
Bill Buzbee27176222009-06-09 09:20:16 -0700977 if (pNewTable == NULL) {
978 return true;
979 }
980 for (i=0; i< size; i++) {
Bill Buzbee716f1202009-07-23 13:22:09 -0700981 pNewTable[i].u.info.chain = size; /* Initialize chain termination */
Bill Buzbee27176222009-06-09 09:20:16 -0700982 }
983
984 /* Stop all other interpreting/jit'ng threads */
Ben Chenga8e64a72009-10-20 13:01:36 -0700985 dvmSuspendAllThreads(SUSPEND_FOR_TBL_RESIZE);
Bill Buzbee27176222009-06-09 09:20:16 -0700986
Bill Buzbee716f1202009-07-23 13:22:09 -0700987 pOldTable = gDvmJit.pJitEntryTable;
988 oldSize = gDvmJit.jitTableSize;
Bill Buzbee27176222009-06-09 09:20:16 -0700989
990 dvmLockMutex(&gDvmJit.tableLock);
Bill Buzbee27176222009-06-09 09:20:16 -0700991 gDvmJit.pJitEntryTable = pNewTable;
992 gDvmJit.jitTableSize = size;
993 gDvmJit.jitTableMask = size - 1;
Bill Buzbee716f1202009-07-23 13:22:09 -0700994 gDvmJit.jitTableEntriesUsed = 0;
Bill Buzbee27176222009-06-09 09:20:16 -0700995 dvmUnlockMutex(&gDvmJit.tableLock);
996
Bill Buzbee716f1202009-07-23 13:22:09 -0700997 for (i=0; i < oldSize; i++) {
998 if (pOldTable[i].dPC) {
999 JitEntry *p;
1000 u2 chain;
1001 p = dvmJitLookupAndAdd(pOldTable[i].dPC);
1002 p->dPC = pOldTable[i].dPC;
1003 /*
1004 * Compiler thread may have just updated the new entry's
1005 * code address field, so don't blindly copy null.
1006 */
1007 if (pOldTable[i].codeAddress != NULL) {
1008 p->codeAddress = pOldTable[i].codeAddress;
1009 }
1010 /* We need to preserve the new chain field, but copy the rest */
1011 dvmLockMutex(&gDvmJit.tableLock);
1012 chain = p->u.info.chain;
1013 p->u = pOldTable[i].u;
1014 p->u.info.chain = chain;
1015 dvmUnlockMutex(&gDvmJit.tableLock);
1016 }
1017 }
1018
1019 free(pOldTable);
1020
Bill Buzbee27176222009-06-09 09:20:16 -07001021 /* Restart the world */
Ben Chenga8e64a72009-10-20 13:01:36 -07001022 dvmResumeAllThreads(SUSPEND_FOR_TBL_RESIZE);
Bill Buzbee27176222009-06-09 09:20:16 -07001023
1024 return false;
1025}
1026
Bill Buzbee50a6bf22009-07-08 13:08:04 -07001027/*
1028 * Float/double conversion requires clamping to min and max of integer form. If
1029 * target doesn't support this normally, use these.
1030 */
1031s8 dvmJitd2l(double d)
1032{
Bill Buzbee9727c3d2009-08-01 11:32:36 -07001033 static const double kMaxLong = (double)(s8)0x7fffffffffffffffULL;
1034 static const double kMinLong = (double)(s8)0x8000000000000000ULL;
Bill Buzbee50a6bf22009-07-08 13:08:04 -07001035 if (d >= kMaxLong)
Bill Buzbee9727c3d2009-08-01 11:32:36 -07001036 return (s8)0x7fffffffffffffffULL;
Bill Buzbee50a6bf22009-07-08 13:08:04 -07001037 else if (d <= kMinLong)
Bill Buzbee9727c3d2009-08-01 11:32:36 -07001038 return (s8)0x8000000000000000ULL;
Bill Buzbee50a6bf22009-07-08 13:08:04 -07001039 else if (d != d) // NaN case
1040 return 0;
1041 else
1042 return (s8)d;
1043}
1044
1045s8 dvmJitf2l(float f)
1046{
Bill Buzbee9727c3d2009-08-01 11:32:36 -07001047 static const float kMaxLong = (float)(s8)0x7fffffffffffffffULL;
1048 static const float kMinLong = (float)(s8)0x8000000000000000ULL;
Bill Buzbee50a6bf22009-07-08 13:08:04 -07001049 if (f >= kMaxLong)
Bill Buzbee9727c3d2009-08-01 11:32:36 -07001050 return (s8)0x7fffffffffffffffULL;
Bill Buzbee50a6bf22009-07-08 13:08:04 -07001051 else if (f <= kMinLong)
Bill Buzbee9727c3d2009-08-01 11:32:36 -07001052 return (s8)0x8000000000000000ULL;
Bill Buzbee50a6bf22009-07-08 13:08:04 -07001053 else if (f != f) // NaN case
1054 return 0;
1055 else
1056 return (s8)f;
1057}
1058
Bill Buzbee27176222009-06-09 09:20:16 -07001059
Ben Chengba4fc8b2009-06-01 13:00:29 -07001060#endif /* WITH_JIT */