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buzbee31a4a6f2012-02-28 15:36:15 -08001/*
2 * Copyright (C) 2012 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
Ian Rogers57b86d42012-03-27 16:05:41 -070017#include "oat/runtime/oat_support_entrypoints.h"
18
buzbee31a4a6f2012-02-28 15:36:15 -080019namespace art {
20
21/*
22 * This source files contains "gen" codegen routines that should
23 * be applicable to most targets. Only mid-level support utilities
24 * and "op" calls may be used here.
25 */
26
buzbee31a4a6f2012-02-28 15:36:15 -080027typedef int (*NextCallInsn)(CompilationUnit*, MIR*, int, uint32_t dexIdx,
Ian Rogers2ed3b952012-03-17 11:49:39 -070028 uint32_t methodIdx, uintptr_t directCode,
Brian Carlstromf5822582012-03-19 22:34:31 -070029 uintptr_t directMethod, InvokeType type);
buzbeefc9e6fa2012-03-23 15:14:29 -070030LIR* opCondBranch(CompilationUnit* cUnit, ConditionCode cc, LIR* target);
31
buzbee31a4a6f2012-02-28 15:36:15 -080032/*
33 * If there are any ins passed in registers that have not been promoted
34 * to a callee-save register, flush them to the frame. Perform intial
35 * assignment of promoted arguments.
36 */
37void flushIns(CompilationUnit* cUnit)
38{
Bill Buzbeea114add2012-05-03 15:00:40 -070039 /*
40 * Dummy up a RegLocation for the incoming Method*
41 * It will attempt to keep rARG0 live (or copy it to home location
42 * if promoted).
43 */
44 RegLocation rlSrc = cUnit->regLocation[cUnit->methodSReg];
45 RegLocation rlMethod = cUnit->regLocation[cUnit->methodSReg];
46 rlSrc.location = kLocPhysReg;
47 rlSrc.lowReg = rARG0;
48 rlSrc.home = false;
49 oatMarkLive(cUnit, rlSrc.lowReg, rlSrc.sRegLow);
50 storeValue(cUnit, rlMethod, rlSrc);
51 // If Method* has been promoted, explicitly flush
52 if (rlMethod.location == kLocPhysReg) {
53 storeWordDisp(cUnit, rSP, 0, rARG0);
54 }
buzbee9c044ce2012-03-18 13:24:07 -070055
Bill Buzbeea114add2012-05-03 15:00:40 -070056 if (cUnit->numIns == 0)
57 return;
58 const int numArgRegs = 3;
59 static int argRegs[] = {rARG1, rARG2, rARG3};
60 int startVReg = cUnit->numDalvikRegisters - cUnit->numIns;
61 /*
62 * Copy incoming arguments to their proper home locations.
63 * NOTE: an older version of dx had an issue in which
64 * it would reuse static method argument registers.
65 * This could result in the same Dalvik virtual register
66 * being promoted to both core and fp regs. To account for this,
67 * we only copy to the corresponding promoted physical register
68 * if it matches the type of the SSA name for the incoming
69 * argument. It is also possible that long and double arguments
70 * end up half-promoted. In those cases, we must flush the promoted
71 * half to memory as well.
72 */
73 for (int i = 0; i < cUnit->numIns; i++) {
74 PromotionMap* vMap = &cUnit->promotionMap[startVReg + i];
75 if (i < numArgRegs) {
76 // If arriving in register
77 bool needFlush = true;
78 RegLocation* tLoc = &cUnit->regLocation[startVReg + i];
79 if ((vMap->coreLocation == kLocPhysReg) && !tLoc->fp) {
80 opRegCopy(cUnit, vMap->coreReg, argRegs[i]);
81 needFlush = false;
82 } else if ((vMap->fpLocation == kLocPhysReg) && tLoc->fp) {
83 opRegCopy(cUnit, vMap->fpReg, argRegs[i]);
84 needFlush = false;
85 } else {
86 needFlush = true;
87 }
buzbee86a4bce2012-03-06 18:15:00 -080088
Bill Buzbeea114add2012-05-03 15:00:40 -070089 // For wide args, force flush if only half is promoted
90 if (tLoc->wide) {
91 PromotionMap* pMap = vMap + (tLoc->highWord ? -1 : +1);
92 needFlush |= (pMap->coreLocation != vMap->coreLocation) ||
93 (pMap->fpLocation != vMap->fpLocation);
94 }
95 if (needFlush) {
96 storeBaseDisp(cUnit, rSP, oatSRegOffset(cUnit, startVReg + i),
97 argRegs[i], kWord);
98 }
99 } else {
100 // If arriving in frame & promoted
101 if (vMap->coreLocation == kLocPhysReg) {
102 loadWordDisp(cUnit, rSP, oatSRegOffset(cUnit, startVReg + i),
103 vMap->coreReg);
104 }
105 if (vMap->fpLocation == kLocPhysReg) {
106 loadWordDisp(cUnit, rSP, oatSRegOffset(cUnit, startVReg + i),
107 vMap->fpReg);
108 }
buzbee31a4a6f2012-02-28 15:36:15 -0800109 }
Bill Buzbeea114add2012-05-03 15:00:40 -0700110 }
buzbee31a4a6f2012-02-28 15:36:15 -0800111}
112
Ian Rogers3fa13792012-03-18 15:53:45 -0700113void scanMethodLiteralPool(CompilationUnit* cUnit, LIR** methodTarget, LIR** codeTarget, const DexFile* dexFile, uint32_t dexMethodIdx)
114{
Bill Buzbeea114add2012-05-03 15:00:40 -0700115 LIR* curTarget = cUnit->methodLiteralList;
116 LIR* nextTarget = curTarget != NULL ? curTarget->next : NULL;
117 while (curTarget != NULL && nextTarget != NULL) {
118 if (curTarget->operands[0] == (int)dexFile &&
119 nextTarget->operands[0] == (int)dexMethodIdx) {
120 *codeTarget = curTarget;
121 *methodTarget = nextTarget;
122 DCHECK((*codeTarget)->next == *methodTarget);
123 DCHECK_EQ((*codeTarget)->operands[0], (int)dexFile);
124 DCHECK_EQ((*methodTarget)->operands[0], (int)dexMethodIdx);
125 break;
Ian Rogers3fa13792012-03-18 15:53:45 -0700126 }
Bill Buzbeea114add2012-05-03 15:00:40 -0700127 curTarget = nextTarget->next;
128 nextTarget = curTarget != NULL ? curTarget->next : NULL;
129 }
Ian Rogers3fa13792012-03-18 15:53:45 -0700130}
131
buzbee31a4a6f2012-02-28 15:36:15 -0800132/*
Elliott Hughesbdf6c3d2012-03-20 13:43:53 -0700133 * Bit of a hack here - in the absence of a real scheduling pass,
buzbee31a4a6f2012-02-28 15:36:15 -0800134 * emit the next instruction in static & direct invoke sequences.
135 */
136int nextSDCallInsn(CompilationUnit* cUnit, MIR* mir,
Ian Rogers2ed3b952012-03-17 11:49:39 -0700137 int state, uint32_t dexIdx, uint32_t unused,
Brian Carlstromf5822582012-03-19 22:34:31 -0700138 uintptr_t directCode, uintptr_t directMethod,
139 InvokeType type)
buzbee31a4a6f2012-02-28 15:36:15 -0800140{
Brian Carlstromf5822582012-03-19 22:34:31 -0700141#if !defined(TARGET_ARM)
Bill Buzbeea114add2012-05-03 15:00:40 -0700142 directCode = 0;
143 directMethod = 0;
Brian Carlstromf5822582012-03-19 22:34:31 -0700144#endif
Bill Buzbeea114add2012-05-03 15:00:40 -0700145 if (directCode != 0 && directMethod != 0) {
146 switch (state) {
147 case 0: // Get the current Method* [sets rARG0]
148 if (directCode != (uintptr_t)-1) {
149 loadConstant(cUnit, rINVOKE_TGT, directCode);
150 } else {
151 LIR* dataTarget = scanLiteralPool(cUnit->codeLiteralList, dexIdx, 0);
152 if (dataTarget == NULL) {
153 dataTarget = addWordData(cUnit, &cUnit->codeLiteralList, dexIdx);
154 dataTarget->operands[1] = type;
Ian Rogers2ed3b952012-03-17 11:49:39 -0700155 }
Bill Buzbeea114add2012-05-03 15:00:40 -0700156#if defined(TARGET_ARM)
157 LIR* loadPcRel = rawLIR(cUnit, cUnit->currentDalvikOffset,
158 kThumb2LdrPcRel12, rINVOKE_TGT, 0, 0, 0, 0,
159 dataTarget);
160 oatAppendLIR(cUnit, loadPcRel);
161#else
162 UNIMPLEMENTED(FATAL) << (void*)dataTarget;
163#endif
164 }
165 if (directMethod != (uintptr_t)-1) {
166 loadConstant(cUnit, rARG0, directMethod);
167 } else {
168 LIR* dataTarget = scanLiteralPool(cUnit->methodLiteralList, dexIdx, 0);
169 if (dataTarget == NULL) {
170 dataTarget = addWordData(cUnit, &cUnit->methodLiteralList, dexIdx);
171 dataTarget->operands[1] = type;
172 }
173#if defined(TARGET_ARM)
174 LIR* loadPcRel = rawLIR(cUnit, cUnit->currentDalvikOffset,
175 kThumb2LdrPcRel12, rARG0, 0, 0, 0, 0,
176 dataTarget);
177 oatAppendLIR(cUnit, loadPcRel);
178#else
179 UNIMPLEMENTED(FATAL) << (void*)dataTarget;
180#endif
181 }
182 break;
183 default:
184 return -1;
buzbee31a4a6f2012-02-28 15:36:15 -0800185 }
Bill Buzbeea114add2012-05-03 15:00:40 -0700186 } else {
187 switch (state) {
188 case 0: // Get the current Method* [sets rARG0]
189 // TUNING: we can save a reg copy if Method* has been promoted
190 loadCurrMethodDirect(cUnit, rARG0);
191 break;
192 case 1: // Get method->dex_cache_resolved_methods_
193 loadWordDisp(cUnit, rARG0,
194 Method::DexCacheResolvedMethodsOffset().Int32Value(),
195 rARG0);
196 // Set up direct code if known.
197 if (directCode != 0) {
198 if (directCode != (uintptr_t)-1) {
199 loadConstant(cUnit, rINVOKE_TGT, directCode);
200 } else {
201 LIR* dataTarget = scanLiteralPool(cUnit->codeLiteralList, dexIdx, 0);
202 if (dataTarget == NULL) {
203 dataTarget = addWordData(cUnit, &cUnit->codeLiteralList, dexIdx);
204 dataTarget->operands[1] = type;
205 }
206#if defined(TARGET_ARM)
207 LIR* loadPcRel = rawLIR(cUnit, cUnit->currentDalvikOffset,
208 kThumb2LdrPcRel12, rINVOKE_TGT, 0, 0, 0, 0,
209 dataTarget);
210 oatAppendLIR(cUnit, loadPcRel);
211#else
212 UNIMPLEMENTED(FATAL) << (void*)dataTarget;
213#endif
214 }
215 }
216 break;
217 case 2: // Grab target method*
218 loadWordDisp(cUnit, rARG0,
219 Array::DataOffset(sizeof(Object*)).Int32Value() + dexIdx * 4,
220 rARG0);
221 break;
222#if !defined(TARGET_X86)
223 case 3: // Grab the code from the method*
224 if (directCode == 0) {
225 loadWordDisp(cUnit, rARG0, Method::GetCodeOffset().Int32Value(),
226 rINVOKE_TGT);
227 }
228 break;
229#endif
230 default:
231 return -1;
232 }
233 }
234 return state + 1;
buzbee31a4a6f2012-02-28 15:36:15 -0800235}
236
237/*
Elliott Hughesbdf6c3d2012-03-20 13:43:53 -0700238 * Bit of a hack here - in the absence of a real scheduling pass,
buzbee31a4a6f2012-02-28 15:36:15 -0800239 * emit the next instruction in a virtual invoke sequence.
240 * We can use rLR as a temp prior to target address loading
241 * Note also that we'll load the first argument ("this") into
242 * rARG1 here rather than the standard loadArgRegs.
243 */
244int nextVCallInsn(CompilationUnit* cUnit, MIR* mir,
Ian Rogers2ed3b952012-03-17 11:49:39 -0700245 int state, uint32_t dexIdx, uint32_t methodIdx,
Brian Carlstromf5822582012-03-19 22:34:31 -0700246 uintptr_t unused, uintptr_t unused2, InvokeType unused3)
buzbee31a4a6f2012-02-28 15:36:15 -0800247{
Bill Buzbeea114add2012-05-03 15:00:40 -0700248 RegLocation rlArg;
249 /*
250 * This is the fast path in which the target virtual method is
251 * fully resolved at compile time.
252 */
253 switch (state) {
254 case 0: // Get "this" [set rARG1]
255 rlArg = oatGetSrc(cUnit, mir, 0);
256 loadValueDirectFixed(cUnit, rlArg, rARG1);
257 break;
258 case 1: // Is "this" null? [use rARG1]
buzbee408ad162012-06-06 16:45:18 -0700259 genNullCheck(cUnit, oatSSASrc(mir,0), rARG1, mir->optimizationFlags);
Bill Buzbeea114add2012-05-03 15:00:40 -0700260 // get this->klass_ [use rARG1, set rINVOKE_TGT]
261 loadWordDisp(cUnit, rARG1, Object::ClassOffset().Int32Value(),
262 rINVOKE_TGT);
263 break;
264 case 2: // Get this->klass_->vtable [usr rINVOKE_TGT, set rINVOKE_TGT]
265 loadWordDisp(cUnit, rINVOKE_TGT, Class::VTableOffset().Int32Value(),
266 rINVOKE_TGT);
267 break;
268 case 3: // Get target method [use rINVOKE_TGT, set rARG0]
269 loadWordDisp(cUnit, rINVOKE_TGT, (methodIdx * 4) +
270 Array::DataOffset(sizeof(Object*)).Int32Value(), rARG0);
271 break;
Ian Rogers6cbb2bd2012-03-16 13:45:30 -0700272#if !defined(TARGET_X86)
Bill Buzbeea114add2012-05-03 15:00:40 -0700273 case 4: // Get the compiled code address [uses rARG0, sets rINVOKE_TGT]
274 loadWordDisp(cUnit, rARG0, Method::GetCodeOffset().Int32Value(),
275 rINVOKE_TGT);
276 break;
Ian Rogers6cbb2bd2012-03-16 13:45:30 -0700277#endif
Bill Buzbeea114add2012-05-03 15:00:40 -0700278 default:
279 return -1;
280 }
281 return state + 1;
buzbee31a4a6f2012-02-28 15:36:15 -0800282}
283
buzbee31a4a6f2012-02-28 15:36:15 -0800284int nextInvokeInsnSP(CompilationUnit* cUnit, MIR* mir, int trampoline,
285 int state, uint32_t dexIdx, uint32_t methodIdx)
286{
Bill Buzbeea114add2012-05-03 15:00:40 -0700287 /*
288 * This handles the case in which the base method is not fully
289 * resolved at compile time, we bail to a runtime helper.
290 */
291 if (state == 0) {
Ian Rogers7caad772012-03-30 01:07:54 -0700292#if !defined(TARGET_X86)
Bill Buzbeea114add2012-05-03 15:00:40 -0700293 // Load trampoline target
294 loadWordDisp(cUnit, rSELF, trampoline, rINVOKE_TGT);
Ian Rogers7caad772012-03-30 01:07:54 -0700295#endif
Bill Buzbeea114add2012-05-03 15:00:40 -0700296 // Load rARG0 with method index
297 loadConstant(cUnit, rARG0, dexIdx);
298 return 1;
299 }
300 return -1;
buzbee31a4a6f2012-02-28 15:36:15 -0800301}
302
303int nextStaticCallInsnSP(CompilationUnit* cUnit, MIR* mir,
Ian Rogers2ed3b952012-03-17 11:49:39 -0700304 int state, uint32_t dexIdx, uint32_t methodIdx,
Brian Carlstromf5822582012-03-19 22:34:31 -0700305 uintptr_t unused, uintptr_t unused2,
306 InvokeType unused3)
buzbee31a4a6f2012-02-28 15:36:15 -0800307{
Ian Rogers57b86d42012-03-27 16:05:41 -0700308 int trampoline = ENTRYPOINT_OFFSET(pInvokeStaticTrampolineWithAccessCheck);
buzbee31a4a6f2012-02-28 15:36:15 -0800309 return nextInvokeInsnSP(cUnit, mir, trampoline, state, dexIdx, 0);
310}
311
312int nextDirectCallInsnSP(CompilationUnit* cUnit, MIR* mir, int state,
Ian Rogers2ed3b952012-03-17 11:49:39 -0700313 uint32_t dexIdx, uint32_t methodIdx, uintptr_t unused,
Brian Carlstromf5822582012-03-19 22:34:31 -0700314 uintptr_t unused2, InvokeType unused3)
buzbee31a4a6f2012-02-28 15:36:15 -0800315{
Ian Rogers57b86d42012-03-27 16:05:41 -0700316 int trampoline = ENTRYPOINT_OFFSET(pInvokeDirectTrampolineWithAccessCheck);
buzbee31a4a6f2012-02-28 15:36:15 -0800317 return nextInvokeInsnSP(cUnit, mir, trampoline, state, dexIdx, 0);
318}
319
320int nextSuperCallInsnSP(CompilationUnit* cUnit, MIR* mir, int state,
Ian Rogers2ed3b952012-03-17 11:49:39 -0700321 uint32_t dexIdx, uint32_t methodIdx, uintptr_t unused,
Brian Carlstromf5822582012-03-19 22:34:31 -0700322 uintptr_t unused2, InvokeType unused3)
buzbee31a4a6f2012-02-28 15:36:15 -0800323{
Ian Rogers57b86d42012-03-27 16:05:41 -0700324 int trampoline = ENTRYPOINT_OFFSET(pInvokeSuperTrampolineWithAccessCheck);
buzbee31a4a6f2012-02-28 15:36:15 -0800325 return nextInvokeInsnSP(cUnit, mir, trampoline, state, dexIdx, 0);
326}
327
328int nextVCallInsnSP(CompilationUnit* cUnit, MIR* mir, int state,
Ian Rogers2ed3b952012-03-17 11:49:39 -0700329 uint32_t dexIdx, uint32_t methodIdx, uintptr_t unused,
Brian Carlstromf5822582012-03-19 22:34:31 -0700330 uintptr_t unused2, InvokeType unused3)
buzbee31a4a6f2012-02-28 15:36:15 -0800331{
Ian Rogers57b86d42012-03-27 16:05:41 -0700332 int trampoline = ENTRYPOINT_OFFSET(pInvokeVirtualTrampolineWithAccessCheck);
buzbee31a4a6f2012-02-28 15:36:15 -0800333 return nextInvokeInsnSP(cUnit, mir, trampoline, state, dexIdx, 0);
334}
335
336/*
337 * All invoke-interface calls bounce off of art_invoke_interface_trampoline,
338 * which will locate the target and continue on via a tail call.
339 */
340int nextInterfaceCallInsn(CompilationUnit* cUnit, MIR* mir, int state,
Ian Rogers2ed3b952012-03-17 11:49:39 -0700341 uint32_t dexIdx, uint32_t unused, uintptr_t unused2,
Brian Carlstromf5822582012-03-19 22:34:31 -0700342 uintptr_t unused3, InvokeType unused4)
buzbee31a4a6f2012-02-28 15:36:15 -0800343{
Ian Rogers57b86d42012-03-27 16:05:41 -0700344 int trampoline = ENTRYPOINT_OFFSET(pInvokeInterfaceTrampoline);
buzbee31a4a6f2012-02-28 15:36:15 -0800345 return nextInvokeInsnSP(cUnit, mir, trampoline, state, dexIdx, 0);
346}
347
348int nextInterfaceCallInsnWithAccessCheck(CompilationUnit* cUnit, MIR* mir,
349 int state, uint32_t dexIdx,
Ian Rogers2ed3b952012-03-17 11:49:39 -0700350 uint32_t unused, uintptr_t unused2,
Brian Carlstromf5822582012-03-19 22:34:31 -0700351 uintptr_t unused3, InvokeType unused4)
buzbee31a4a6f2012-02-28 15:36:15 -0800352{
Ian Rogers57b86d42012-03-27 16:05:41 -0700353 int trampoline = ENTRYPOINT_OFFSET(pInvokeInterfaceTrampolineWithAccessCheck);
buzbee31a4a6f2012-02-28 15:36:15 -0800354 return nextInvokeInsnSP(cUnit, mir, trampoline, state, dexIdx, 0);
355}
356
357int loadArgRegs(CompilationUnit* cUnit, MIR* mir, DecodedInstruction* dInsn,
358 int callState, NextCallInsn nextCallInsn, uint32_t dexIdx,
Ian Rogers2ed3b952012-03-17 11:49:39 -0700359 uint32_t methodIdx, uintptr_t directCode,
Brian Carlstromf5822582012-03-19 22:34:31 -0700360 uintptr_t directMethod, InvokeType type, bool skipThis)
buzbee31a4a6f2012-02-28 15:36:15 -0800361{
Bill Buzbeea114add2012-05-03 15:00:40 -0700362 int lastArgReg = rARG3;
363 int nextReg = rARG1;
364 int nextArg = 0;
365 if (skipThis) {
366 nextReg++;
367 nextArg++;
368 }
369 for (; (nextReg <= lastArgReg) && (nextArg < mir->ssaRep->numUses); nextReg++) {
370 RegLocation rlArg = oatGetRawSrc(cUnit, mir, nextArg++);
371 rlArg = oatUpdateRawLoc(cUnit, rlArg);
372 if (rlArg.wide && (nextReg <= rARG2)) {
373 loadValueDirectWideFixed(cUnit, rlArg, nextReg, nextReg + 1);
374 nextReg++;
375 nextArg++;
376 } else {
377 rlArg.wide = false;
378 loadValueDirectFixed(cUnit, rlArg, nextReg);
buzbee31a4a6f2012-02-28 15:36:15 -0800379 }
Bill Buzbeea114add2012-05-03 15:00:40 -0700380 callState = nextCallInsn(cUnit, mir, callState, dexIdx, methodIdx,
381 directCode, directMethod, type);
382 }
383 return callState;
buzbee31a4a6f2012-02-28 15:36:15 -0800384}
385
386/*
387 * Load up to 5 arguments, the first three of which will be in
388 * rARG1 .. rARG3. On entry rARG0 contains the current method pointer,
389 * and as part of the load sequence, it must be replaced with
390 * the target method pointer. Note, this may also be called
391 * for "range" variants if the number of arguments is 5 or fewer.
392 */
393int genDalvikArgsNoRange(CompilationUnit* cUnit, MIR* mir,
394 DecodedInstruction* dInsn, int callState,
395 LIR** pcrLabel, NextCallInsn nextCallInsn,
Ian Rogers2ed3b952012-03-17 11:49:39 -0700396 uint32_t dexIdx, uint32_t methodIdx,
397 uintptr_t directCode, uintptr_t directMethod,
Brian Carlstromf5822582012-03-19 22:34:31 -0700398 InvokeType type, bool skipThis)
buzbee31a4a6f2012-02-28 15:36:15 -0800399{
Bill Buzbeea114add2012-05-03 15:00:40 -0700400 RegLocation rlArg;
buzbee31a4a6f2012-02-28 15:36:15 -0800401
Bill Buzbeea114add2012-05-03 15:00:40 -0700402 /* If no arguments, just return */
403 if (dInsn->vA == 0)
buzbee31a4a6f2012-02-28 15:36:15 -0800404 return callState;
Bill Buzbeea114add2012-05-03 15:00:40 -0700405
406 callState = nextCallInsn(cUnit, mir, callState, dexIdx, methodIdx,
407 directCode, directMethod, type);
408
409 DCHECK_LE(dInsn->vA, 5U);
410 if (dInsn->vA > 3) {
411 uint32_t nextUse = 3;
412 //Detect special case of wide arg spanning arg3/arg4
413 RegLocation rlUse0 = oatGetRawSrc(cUnit, mir, 0);
414 RegLocation rlUse1 = oatGetRawSrc(cUnit, mir, 1);
415 RegLocation rlUse2 = oatGetRawSrc(cUnit, mir, 2);
416 if (((!rlUse0.wide && !rlUse1.wide) || rlUse0.wide) &&
417 rlUse2.wide) {
418 int reg = -1;
419 // Wide spans, we need the 2nd half of uses[2].
420 rlArg = oatUpdateLocWide(cUnit, rlUse2);
421 if (rlArg.location == kLocPhysReg) {
422 reg = rlArg.highReg;
423 } else {
424 // rARG2 & rARG3 can safely be used here
425 reg = rARG3;
426 loadWordDisp(cUnit, rSP, oatSRegOffset(cUnit, rlArg.sRegLow) + 4, reg);
427 callState = nextCallInsn(cUnit, mir, callState, dexIdx,
428 methodIdx, directCode, directMethod, type);
429 }
430 storeBaseDisp(cUnit, rSP, (nextUse + 1) * 4, reg, kWord);
431 storeBaseDisp(cUnit, rSP, 16 /* (3+1)*4 */, reg, kWord);
432 callState = nextCallInsn(cUnit, mir, callState, dexIdx, methodIdx,
433 directCode, directMethod, type);
434 nextUse++;
435 }
436 // Loop through the rest
437 while (nextUse < dInsn->vA) {
438 int lowReg;
439 int highReg = -1;
440 rlArg = oatGetRawSrc(cUnit, mir, nextUse);
441 rlArg = oatUpdateRawLoc(cUnit, rlArg);
442 if (rlArg.location == kLocPhysReg) {
443 lowReg = rlArg.lowReg;
444 highReg = rlArg.highReg;
445 } else {
446 lowReg = rARG2;
447 if (rlArg.wide) {
448 highReg = rARG3;
449 loadValueDirectWideFixed(cUnit, rlArg, lowReg, highReg);
450 } else {
451 loadValueDirectFixed(cUnit, rlArg, lowReg);
452 }
453 callState = nextCallInsn(cUnit, mir, callState, dexIdx,
454 methodIdx, directCode, directMethod, type);
455 }
456 int outsOffset = (nextUse + 1) * 4;
457 if (rlArg.wide) {
458 storeBaseDispWide(cUnit, rSP, outsOffset, lowReg, highReg);
459 nextUse += 2;
460 } else {
461 storeWordDisp(cUnit, rSP, outsOffset, lowReg);
462 nextUse++;
463 }
464 callState = nextCallInsn(cUnit, mir, callState, dexIdx, methodIdx,
465 directCode, directMethod, type);
466 }
467 }
468
469 callState = loadArgRegs(cUnit, mir, dInsn, callState, nextCallInsn,
470 dexIdx, methodIdx, directCode, directMethod,
471 type, skipThis);
472
473 if (pcrLabel) {
buzbee408ad162012-06-06 16:45:18 -0700474 *pcrLabel = genNullCheck(cUnit, oatSSASrc(mir,0), rARG1,
475 mir->optimizationFlags);
Bill Buzbeea114add2012-05-03 15:00:40 -0700476 }
477 return callState;
buzbee31a4a6f2012-02-28 15:36:15 -0800478}
479
480/*
481 * May have 0+ arguments (also used for jumbo). Note that
482 * source virtual registers may be in physical registers, so may
483 * need to be flushed to home location before copying. This
484 * applies to arg3 and above (see below).
485 *
486 * Two general strategies:
487 * If < 20 arguments
488 * Pass args 3-18 using vldm/vstm block copy
489 * Pass arg0, arg1 & arg2 in rARG1-rARG3
490 * If 20+ arguments
491 * Pass args arg19+ using memcpy block copy
492 * Pass arg0, arg1 & arg2 in rARG1-rARG3
493 *
494 */
495int genDalvikArgsRange(CompilationUnit* cUnit, MIR* mir,
496 DecodedInstruction* dInsn, int callState,
497 LIR** pcrLabel, NextCallInsn nextCallInsn,
Ian Rogers2ed3b952012-03-17 11:49:39 -0700498 uint32_t dexIdx, uint32_t methodIdx,
499 uintptr_t directCode, uintptr_t directMethod,
Brian Carlstromf5822582012-03-19 22:34:31 -0700500 InvokeType type, bool skipThis)
buzbee31a4a6f2012-02-28 15:36:15 -0800501{
Bill Buzbeea114add2012-05-03 15:00:40 -0700502 int firstArg = dInsn->vC;
503 int numArgs = dInsn->vA;
buzbee31a4a6f2012-02-28 15:36:15 -0800504
Bill Buzbeea114add2012-05-03 15:00:40 -0700505 // If we can treat it as non-range (Jumbo ops will use range form)
506 if (numArgs <= 5)
507 return genDalvikArgsNoRange(cUnit, mir, dInsn, callState, pcrLabel,
508 nextCallInsn, dexIdx, methodIdx,
509 directCode, directMethod, type, skipThis);
510 /*
511 * Make sure range list doesn't span the break between in normal
512 * Dalvik vRegs and the ins.
513 */
514 int highestArg = oatGetSrc(cUnit, mir, numArgs-1).sRegLow;
515 int boundaryReg = cUnit->numDalvikRegisters - cUnit->numIns;
516 if ((firstArg < boundaryReg) && (highestArg >= boundaryReg)) {
517 LOG(FATAL) << "Argument list spanned locals & args";
518 }
519
520 /*
521 * First load the non-register arguments. Both forms expect all
522 * of the source arguments to be in their home frame location, so
523 * scan the sReg names and flush any that have been promoted to
524 * frame backing storage.
525 */
526 // Scan the rest of the args - if in physReg flush to memory
527 for (int nextArg = 0; nextArg < numArgs;) {
528 RegLocation loc = oatGetRawSrc(cUnit, mir, nextArg);
529 if (loc.wide) {
530 loc = oatUpdateLocWide(cUnit, loc);
531 if ((nextArg >= 2) && (loc.location == kLocPhysReg)) {
532 storeBaseDispWide(cUnit, rSP, oatSRegOffset(cUnit, loc.sRegLow),
533 loc.lowReg, loc.highReg);
534 }
535 nextArg += 2;
536 } else {
537 loc = oatUpdateLoc(cUnit, loc);
538 if ((nextArg >= 3) && (loc.location == kLocPhysReg)) {
539 storeBaseDisp(cUnit, rSP, oatSRegOffset(cUnit, loc.sRegLow),
540 loc.lowReg, kWord);
541 }
542 nextArg++;
buzbee31a4a6f2012-02-28 15:36:15 -0800543 }
Bill Buzbeea114add2012-05-03 15:00:40 -0700544 }
buzbee31a4a6f2012-02-28 15:36:15 -0800545
Bill Buzbeea114add2012-05-03 15:00:40 -0700546 int startOffset = oatSRegOffset(cUnit,
547 cUnit->regLocation[mir->ssaRep->uses[3]].sRegLow);
548 int outsOffset = 4 /* Method* */ + (3 * 4);
Ian Rogersab2b55d2012-03-18 00:06:11 -0700549#if defined(TARGET_MIPS) || defined(TARGET_X86)
Bill Buzbeea114add2012-05-03 15:00:40 -0700550 // Generate memcpy
551 opRegRegImm(cUnit, kOpAdd, rARG0, rSP, outsOffset);
552 opRegRegImm(cUnit, kOpAdd, rARG1, rSP, startOffset);
553 callRuntimeHelperRegRegImm(cUnit, ENTRYPOINT_OFFSET(pMemcpy),
554 rARG0, rARG1, (numArgs - 3) * 4);
555#else
556 if (numArgs >= 20) {
buzbee31a4a6f2012-02-28 15:36:15 -0800557 // Generate memcpy
558 opRegRegImm(cUnit, kOpAdd, rARG0, rSP, outsOffset);
559 opRegRegImm(cUnit, kOpAdd, rARG1, rSP, startOffset);
Ian Rogers57b86d42012-03-27 16:05:41 -0700560 callRuntimeHelperRegRegImm(cUnit, ENTRYPOINT_OFFSET(pMemcpy),
Ian Rogersab2b55d2012-03-18 00:06:11 -0700561 rARG0, rARG1, (numArgs - 3) * 4);
Bill Buzbeea114add2012-05-03 15:00:40 -0700562 } else {
563 // Use vldm/vstm pair using rARG3 as a temp
564 int regsLeft = std::min(numArgs - 3, 16);
Ian Rogers2ed3b952012-03-17 11:49:39 -0700565 callState = nextCallInsn(cUnit, mir, callState, dexIdx, methodIdx,
Brian Carlstromf5822582012-03-19 22:34:31 -0700566 directCode, directMethod, type);
Bill Buzbeea114add2012-05-03 15:00:40 -0700567 opRegRegImm(cUnit, kOpAdd, rARG3, rSP, startOffset);
568 LIR* ld = newLIR3(cUnit, kThumb2Vldms, rARG3, fr0, regsLeft);
569 //TUNING: loosen barrier
570 ld->defMask = ENCODE_ALL;
571 setMemRefType(ld, true /* isLoad */, kDalvikReg);
572 callState = nextCallInsn(cUnit, mir, callState, dexIdx, methodIdx,
573 directCode, directMethod, type);
574 opRegRegImm(cUnit, kOpAdd, rARG3, rSP, 4 /* Method* */ + (3 * 4));
575 callState = nextCallInsn(cUnit, mir, callState, dexIdx, methodIdx,
576 directCode, directMethod, type);
577 LIR* st = newLIR3(cUnit, kThumb2Vstms, rARG3, fr0, regsLeft);
578 setMemRefType(st, false /* isLoad */, kDalvikReg);
579 st->defMask = ENCODE_ALL;
580 callState = nextCallInsn(cUnit, mir, callState, dexIdx, methodIdx,
581 directCode, directMethod, type);
582
583 }
584#endif
585
586 callState = loadArgRegs(cUnit, mir, dInsn, callState, nextCallInsn,
587 dexIdx, methodIdx, directCode, directMethod,
588 type, skipThis);
589
590 callState = nextCallInsn(cUnit, mir, callState, dexIdx, methodIdx,
591 directCode, directMethod, type);
592 if (pcrLabel) {
buzbee408ad162012-06-06 16:45:18 -0700593 *pcrLabel = genNullCheck(cUnit, oatSSASrc(mir,0), rARG1,
594 mir->optimizationFlags);
Bill Buzbeea114add2012-05-03 15:00:40 -0700595 }
596 return callState;
buzbee31a4a6f2012-02-28 15:36:15 -0800597}
598
buzbeefc9e6fa2012-03-23 15:14:29 -0700599RegLocation inlineTarget(CompilationUnit* cUnit, BasicBlock* bb, MIR* mir)
600{
Bill Buzbeea114add2012-05-03 15:00:40 -0700601 RegLocation res;
602 mir = oatFindMoveResult(cUnit, bb, mir, false);
603 if (mir == NULL) {
604 res = oatGetReturn(cUnit, false);
605 } else {
606 res = oatGetDest(cUnit, mir, 0);
607 mir->dalvikInsn.opcode = Instruction::NOP;
608 }
609 return res;
buzbeefc9e6fa2012-03-23 15:14:29 -0700610}
611
612RegLocation inlineTargetWide(CompilationUnit* cUnit, BasicBlock* bb, MIR* mir)
613{
Bill Buzbeea114add2012-05-03 15:00:40 -0700614 RegLocation res;
615 mir = oatFindMoveResult(cUnit, bb, mir, true);
616 if (mir == NULL) {
617 res = oatGetReturnWide(cUnit, false);
618 } else {
619 res = oatGetDestWide(cUnit, mir, 0, 1);
620 mir->dalvikInsn.opcode = Instruction::NOP;
621 }
622 return res;
buzbeefc9e6fa2012-03-23 15:14:29 -0700623}
624
625bool genInlinedCharAt(CompilationUnit* cUnit, BasicBlock* bb, MIR* mir,
Bill Buzbeea114add2012-05-03 15:00:40 -0700626 InvokeType type, bool isRange)
buzbeefc9e6fa2012-03-23 15:14:29 -0700627{
628#if defined(TARGET_ARM)
Bill Buzbeea114add2012-05-03 15:00:40 -0700629 // Location of reference to data array
630 int valueOffset = String::ValueOffset().Int32Value();
631 // Location of count
632 int countOffset = String::CountOffset().Int32Value();
633 // Starting offset within data array
634 int offsetOffset = String::OffsetOffset().Int32Value();
635 // Start of char data with array_
636 int dataOffset = Array::DataOffset(sizeof(uint16_t)).Int32Value();
buzbeefc9e6fa2012-03-23 15:14:29 -0700637
Bill Buzbeea114add2012-05-03 15:00:40 -0700638 RegLocation rlObj = oatGetSrc(cUnit, mir, 0);
639 RegLocation rlIdx = oatGetSrc(cUnit, mir, 1);
640 rlObj = loadValue(cUnit, rlObj, kCoreReg);
641 rlIdx = loadValue(cUnit, rlIdx, kCoreReg);
642 int regMax;
643 int regOff = oatAllocTemp(cUnit);
644 int regPtr = oatAllocTemp(cUnit);
buzbee408ad162012-06-06 16:45:18 -0700645 genNullCheck(cUnit, rlObj.sRegLow, rlObj.lowReg, mir->optimizationFlags);
Bill Buzbeea114add2012-05-03 15:00:40 -0700646 bool rangeCheck = (!(mir->optimizationFlags & MIR_IGNORE_RANGE_CHECK));
647 if (rangeCheck) {
648 regMax = oatAllocTemp(cUnit);
649 loadWordDisp(cUnit, rlObj.lowReg, countOffset, regMax);
650 }
651 loadWordDisp(cUnit, rlObj.lowReg, offsetOffset, regOff);
652 loadWordDisp(cUnit, rlObj.lowReg, valueOffset, regPtr);
653 LIR* launchPad = NULL;
654 if (rangeCheck) {
655 // Set up a launch pad to allow retry in case of bounds violation */
656 launchPad = rawLIR(cUnit, 0, kPseudoIntrinsicRetry, (int)mir, type);
657 oatInsertGrowableList(cUnit, &cUnit->intrinsicLaunchpads,
658 (intptr_t)launchPad);
659 opRegReg(cUnit, kOpCmp, rlIdx.lowReg, regMax);
660 oatFreeTemp(cUnit, regMax);
661 opCondBranch(cUnit, kCondCs, launchPad);
662 }
663 opRegImm(cUnit, kOpAdd, regPtr, dataOffset);
664 opRegReg(cUnit, kOpAdd, regOff, rlIdx.lowReg);
665 RegLocation rlDest = inlineTarget(cUnit, bb, mir);
666 RegLocation rlResult = oatEvalLoc(cUnit, rlDest, kCoreReg, true);
667 loadBaseIndexed(cUnit, regPtr, regOff, rlResult.lowReg, 1, kUnsignedHalf);
668 oatFreeTemp(cUnit, regOff);
669 oatFreeTemp(cUnit, regPtr);
670 storeValue(cUnit, rlDest, rlResult);
671 if (rangeCheck) {
Elliott Hughes60234562012-06-01 12:25:59 -0700672 launchPad->operands[2] = 0; // no resumption
Bill Buzbeea114add2012-05-03 15:00:40 -0700673 launchPad->operands[3] = (uintptr_t)bb;
674 }
675 // Record that we've already inlined & null checked
676 mir->optimizationFlags |= (MIR_INLINED | MIR_IGNORE_NULL_CHECK);
677 return true;
buzbeefc9e6fa2012-03-23 15:14:29 -0700678#else
Bill Buzbeea114add2012-05-03 15:00:40 -0700679 return false;
buzbeefc9e6fa2012-03-23 15:14:29 -0700680#endif
681}
682
683bool genInlinedMinMaxInt(CompilationUnit *cUnit, BasicBlock* bb, MIR *mir,
Bill Buzbeea114add2012-05-03 15:00:40 -0700684 bool isMin)
buzbeefc9e6fa2012-03-23 15:14:29 -0700685{
686#if defined(TARGET_ARM)
Bill Buzbeea114add2012-05-03 15:00:40 -0700687 RegLocation rlSrc1 = oatGetSrc(cUnit, mir, 0);
688 RegLocation rlSrc2 = oatGetSrc(cUnit, mir, 1);
689 rlSrc1 = loadValue(cUnit, rlSrc1, kCoreReg);
690 rlSrc2 = loadValue(cUnit, rlSrc2, kCoreReg);
691 RegLocation rlDest = inlineTarget(cUnit, bb, mir);
692 RegLocation rlResult = oatEvalLoc(cUnit, rlDest, kCoreReg, true);
693 opRegReg(cUnit, kOpCmp, rlSrc1.lowReg, rlSrc2.lowReg);
694 opIT(cUnit, (isMin) ? kArmCondGt : kArmCondLt, "E");
695 opRegReg(cUnit, kOpMov, rlResult.lowReg, rlSrc2.lowReg);
696 opRegReg(cUnit, kOpMov, rlResult.lowReg, rlSrc1.lowReg);
697 genBarrier(cUnit);
698 storeValue(cUnit, rlDest, rlResult);
699 return true;
buzbeefc9e6fa2012-03-23 15:14:29 -0700700#else
Bill Buzbeea114add2012-05-03 15:00:40 -0700701 return false;
buzbeefc9e6fa2012-03-23 15:14:29 -0700702#endif
703}
704
705// Generates an inlined String.isEmpty or String.length.
706bool genInlinedStringIsEmptyOrLength(CompilationUnit* cUnit,
Bill Buzbeea114add2012-05-03 15:00:40 -0700707 BasicBlock* bb, MIR* mir, bool isEmpty)
buzbeefc9e6fa2012-03-23 15:14:29 -0700708{
709#if defined(TARGET_ARM)
Bill Buzbeea114add2012-05-03 15:00:40 -0700710 // dst = src.length();
711 RegLocation rlObj = oatGetSrc(cUnit, mir, 0);
712 rlObj = loadValue(cUnit, rlObj, kCoreReg);
713 RegLocation rlDest = inlineTarget(cUnit, bb, mir);
714 RegLocation rlResult = oatEvalLoc(cUnit, rlDest, kCoreReg, true);
buzbee408ad162012-06-06 16:45:18 -0700715 genNullCheck(cUnit, rlObj.sRegLow, rlObj.lowReg, mir->optimizationFlags);
Bill Buzbeea114add2012-05-03 15:00:40 -0700716 loadWordDisp(cUnit, rlObj.lowReg, String::CountOffset().Int32Value(),
717 rlResult.lowReg);
718 if (isEmpty) {
719 // dst = (dst == 0);
720 int tReg = oatAllocTemp(cUnit);
721 opRegReg(cUnit, kOpNeg, tReg, rlResult.lowReg);
722 opRegRegReg(cUnit, kOpAdc, rlResult.lowReg, rlResult.lowReg, tReg);
723 }
724 storeValue(cUnit, rlDest, rlResult);
725 return true;
buzbeefc9e6fa2012-03-23 15:14:29 -0700726#else
Bill Buzbeea114add2012-05-03 15:00:40 -0700727 return false;
buzbeefc9e6fa2012-03-23 15:14:29 -0700728#endif
729}
730
731bool genInlinedAbsInt(CompilationUnit *cUnit, BasicBlock* bb, MIR *mir)
732{
733#if defined(TARGET_ARM)
Bill Buzbeea114add2012-05-03 15:00:40 -0700734 RegLocation rlSrc = oatGetSrc(cUnit, mir, 0);
735 rlSrc = loadValue(cUnit, rlSrc, kCoreReg);
736 RegLocation rlDest = inlineTarget(cUnit, bb, mir);
737 RegLocation rlResult = oatEvalLoc(cUnit, rlDest, kCoreReg, true);
738 int signReg = oatAllocTemp(cUnit);
739 // abs(x) = y<=x>>31, (x+y)^y.
740 opRegRegImm(cUnit, kOpAsr, signReg, rlSrc.lowReg, 31);
741 opRegRegReg(cUnit, kOpAdd, rlResult.lowReg, rlSrc.lowReg, signReg);
742 opRegReg(cUnit, kOpXor, rlResult.lowReg, signReg);
743 storeValue(cUnit, rlDest, rlResult);
744 return true;
buzbeefc9e6fa2012-03-23 15:14:29 -0700745#else
Bill Buzbeea114add2012-05-03 15:00:40 -0700746 return false;
buzbeefc9e6fa2012-03-23 15:14:29 -0700747#endif
748}
749
750bool genInlinedAbsLong(CompilationUnit *cUnit, BasicBlock* bb, MIR *mir)
751{
752#if defined(TARGET_ARM)
Bill Buzbeea114add2012-05-03 15:00:40 -0700753 RegLocation rlSrc = oatGetSrcWide(cUnit, mir, 0, 1);
754 rlSrc = loadValueWide(cUnit, rlSrc, kCoreReg);
755 RegLocation rlDest = inlineTargetWide(cUnit, bb, mir);
756 RegLocation rlResult = oatEvalLoc(cUnit, rlDest, kCoreReg, true);
757 int signReg = oatAllocTemp(cUnit);
758 // abs(x) = y<=x>>31, (x+y)^y.
759 opRegRegImm(cUnit, kOpAsr, signReg, rlSrc.highReg, 31);
760 opRegRegReg(cUnit, kOpAdd, rlResult.lowReg, rlSrc.lowReg, signReg);
761 opRegRegReg(cUnit, kOpAdc, rlResult.highReg, rlSrc.highReg, signReg);
762 opRegReg(cUnit, kOpXor, rlResult.lowReg, signReg);
763 opRegReg(cUnit, kOpXor, rlResult.highReg, signReg);
764 storeValueWide(cUnit, rlDest, rlResult);
765 return true;
buzbeefc9e6fa2012-03-23 15:14:29 -0700766#else
Bill Buzbeea114add2012-05-03 15:00:40 -0700767 return false;
buzbeefc9e6fa2012-03-23 15:14:29 -0700768#endif
769}
770
771bool genInlinedFloatCvt(CompilationUnit *cUnit, BasicBlock* bb, MIR *mir)
772{
773#if defined(TARGET_ARM)
Bill Buzbeea114add2012-05-03 15:00:40 -0700774 RegLocation rlSrc = oatGetSrc(cUnit, mir, 0);
775 RegLocation rlDest = inlineTarget(cUnit, bb, mir);
776 storeValue(cUnit, rlDest, rlSrc);
777 return true;
buzbeefc9e6fa2012-03-23 15:14:29 -0700778#else
Bill Buzbeea114add2012-05-03 15:00:40 -0700779 return false;
buzbeefc9e6fa2012-03-23 15:14:29 -0700780#endif
781}
782
783bool genInlinedDoubleCvt(CompilationUnit *cUnit, BasicBlock* bb, MIR *mir)
784{
785#if defined(TARGET_ARM)
Bill Buzbeea114add2012-05-03 15:00:40 -0700786 RegLocation rlSrc = oatGetSrcWide(cUnit, mir, 0, 1);
787 RegLocation rlDest = inlineTargetWide(cUnit, bb, mir);
788 storeValueWide(cUnit, rlDest, rlSrc);
789 return true;
buzbeefc9e6fa2012-03-23 15:14:29 -0700790#else
Bill Buzbeea114add2012-05-03 15:00:40 -0700791 return false;
buzbeefc9e6fa2012-03-23 15:14:29 -0700792#endif
793}
794
795/*
796 * Fast string.indexOf(I) & (II). Tests for simple case of char <= 0xffff,
797 * otherwise bails to standard library code.
798 */
799bool genInlinedIndexOf(CompilationUnit* cUnit, BasicBlock* bb, MIR* mir,
800 InvokeType type, bool zeroBased)
801{
802#if defined(TARGET_ARM)
803
Bill Buzbeea114add2012-05-03 15:00:40 -0700804 oatClobberCalleeSave(cUnit);
805 oatLockCallTemps(cUnit); // Using fixed registers
806 int regPtr = rARG0;
807 int regChar = rARG1;
808 int regStart = rARG2;
buzbeefc9e6fa2012-03-23 15:14:29 -0700809
Bill Buzbeea114add2012-05-03 15:00:40 -0700810 RegLocation rlObj = oatGetSrc(cUnit, mir, 0);
811 RegLocation rlChar = oatGetSrc(cUnit, mir, 1);
812 RegLocation rlStart = oatGetSrc(cUnit, mir, 2);
813 loadValueDirectFixed(cUnit, rlObj, regPtr);
814 loadValueDirectFixed(cUnit, rlChar, regChar);
815 if (zeroBased) {
816 loadConstant(cUnit, regStart, 0);
817 } else {
818 loadValueDirectFixed(cUnit, rlStart, regStart);
819 }
820 int rTgt = loadHelper(cUnit, ENTRYPOINT_OFFSET(pIndexOf));
buzbee408ad162012-06-06 16:45:18 -0700821 genNullCheck(cUnit, rlObj.sRegLow, regPtr, mir->optimizationFlags);
Bill Buzbeea114add2012-05-03 15:00:40 -0700822 LIR* launchPad = rawLIR(cUnit, 0, kPseudoIntrinsicRetry, (int)mir, type);
823 oatInsertGrowableList(cUnit, &cUnit->intrinsicLaunchpads,
824 (intptr_t)launchPad);
825 opCmpImmBranch(cUnit, kCondGt, regChar, 0xFFFF, launchPad);
826 opReg(cUnit, kOpBlx, rTgt);
827 LIR* resumeTgt = newLIR0(cUnit, kPseudoTargetLabel);
828 launchPad->operands[2] = (uintptr_t)resumeTgt;
829 launchPad->operands[3] = (uintptr_t)bb;
830 // Record that we've already inlined & null checked
831 mir->optimizationFlags |= (MIR_INLINED | MIR_IGNORE_NULL_CHECK);
832 return true;
buzbeefc9e6fa2012-03-23 15:14:29 -0700833#else
Bill Buzbeea114add2012-05-03 15:00:40 -0700834 return false;
buzbeefc9e6fa2012-03-23 15:14:29 -0700835#endif
836}
837
838/* Fast string.compareTo(Ljava/lang/string;)I. */
839bool genInlinedStringCompareTo(CompilationUnit* cUnit, BasicBlock* bb,
840 MIR* mir, InvokeType type)
841{
842#if defined(TARGET_ARM)
Bill Buzbeea114add2012-05-03 15:00:40 -0700843 oatClobberCalleeSave(cUnit);
844 oatLockCallTemps(cUnit); // Using fixed registers
845 int regThis = rARG0;
846 int regCmp = rARG1;
buzbeefc9e6fa2012-03-23 15:14:29 -0700847
Bill Buzbeea114add2012-05-03 15:00:40 -0700848 RegLocation rlThis = oatGetSrc(cUnit, mir, 0);
849 RegLocation rlCmp = oatGetSrc(cUnit, mir, 1);
850 loadValueDirectFixed(cUnit, rlThis, regThis);
851 loadValueDirectFixed(cUnit, rlCmp, regCmp);
852 int rTgt = loadHelper(cUnit, ENTRYPOINT_OFFSET(pStringCompareTo));
buzbee408ad162012-06-06 16:45:18 -0700853 genNullCheck(cUnit, rlThis.sRegLow, regThis, mir->optimizationFlags);
Bill Buzbeea114add2012-05-03 15:00:40 -0700854 //TUNING: check if rlCmp.sRegLow is already null checked
855 LIR* launchPad = rawLIR(cUnit, 0, kPseudoIntrinsicRetry, (int)mir, type);
856 oatInsertGrowableList(cUnit, &cUnit->intrinsicLaunchpads,
Elliott Hughes60234562012-06-01 12:25:59 -0700857 (intptr_t)launchPad);
Bill Buzbeea114add2012-05-03 15:00:40 -0700858 opCmpImmBranch(cUnit, kCondEq, regCmp, 0, launchPad);
859 opReg(cUnit, kOpBlx, rTgt);
Elliott Hughes60234562012-06-01 12:25:59 -0700860 launchPad->operands[2] = 0; // No return possible
Bill Buzbeea114add2012-05-03 15:00:40 -0700861 launchPad->operands[3] = (uintptr_t)bb;
862 // Record that we've already inlined & null checked
863 mir->optimizationFlags |= (MIR_INLINED | MIR_IGNORE_NULL_CHECK);
864 return true;
buzbeefc9e6fa2012-03-23 15:14:29 -0700865#else
Bill Buzbeea114add2012-05-03 15:00:40 -0700866 return false;
buzbeefc9e6fa2012-03-23 15:14:29 -0700867#endif
868}
869
870bool genIntrinsic(CompilationUnit* cUnit, BasicBlock* bb, MIR* mir,
871 InvokeType type, bool isRange)
872{
Bill Buzbeea114add2012-05-03 15:00:40 -0700873 if ((mir->optimizationFlags & MIR_INLINED) || isRange) {
buzbeefc9e6fa2012-03-23 15:14:29 -0700874 return false;
Bill Buzbeea114add2012-05-03 15:00:40 -0700875 }
876 /*
877 * TODO: move these to a target-specific structured constant array
878 * and use a generic match function. The list of intrinsics may be
879 * slightly different depending on target.
880 * TODO: Fold this into a matching function that runs during
881 * basic block building. This should be part of the action for
882 * small method inlining and recognition of the special object init
883 * method. By doing this during basic block construction, we can also
884 * take advantage of/generate new useful dataflow info.
885 */
886 std::string tgtMethod(PrettyMethod(mir->dalvikInsn.vB, *cUnit->dex_file));
887 if (tgtMethod.compare("char java.lang.String.charAt(int)") == 0) {
888 return genInlinedCharAt(cUnit, bb, mir, type, isRange);
889 }
890 if (tgtMethod.compare("int java.lang.Math.min(int, int)") == 0) {
891 return genInlinedMinMaxInt(cUnit, bb, mir, true /* isMin */);
892 }
893 if (tgtMethod.compare("int java.lang.Math.max(int, int)") == 0) {
894 return genInlinedMinMaxInt(cUnit, bb, mir, false /* isMin */);
895 }
896 if (tgtMethod.compare("int java.lang.String.length()") == 0) {
897 return genInlinedStringIsEmptyOrLength(cUnit, bb, mir, false /* isEmpty */);
898 }
899 if (tgtMethod.compare("boolean java.lang.String.isEmpty()") == 0) {
900 return genInlinedStringIsEmptyOrLength(cUnit, bb, mir, true /* isEmpty */);
901 }
902 if (tgtMethod.compare("int java.lang.Math.abs(int)") == 0) {
903 return genInlinedAbsInt(cUnit, bb, mir);
904 }
905 if (tgtMethod.compare("long java.lang.Math.abs(long)") == 0) {
906 return genInlinedAbsLong(cUnit, bb, mir);
907 }
908 if (tgtMethod.compare("int java.lang.Float.floatToRawIntBits(float)") == 0) {
909 return genInlinedFloatCvt(cUnit, bb, mir);
910 }
911 if (tgtMethod.compare("float java.lang.Float.intBitsToFloat(int)") == 0) {
912 return genInlinedFloatCvt(cUnit, bb, mir);
913 }
914 if (tgtMethod.compare("long java.lang.Double.doubleToRawLongBits(double)") == 0) {
915 return genInlinedDoubleCvt(cUnit, bb, mir);
916 }
917 if (tgtMethod.compare("double java.lang.Double.longBitsToDouble(long)") == 0) {
918 return genInlinedDoubleCvt(cUnit, bb, mir);
919 }
920 if (tgtMethod.compare("int java.lang.String.indexOf(int, int)") == 0) {
921 return genInlinedIndexOf(cUnit, bb, mir, type, false /* base 0 */);
922 }
923 if (tgtMethod.compare("int java.lang.String.indexOf(int)") == 0) {
924 return genInlinedIndexOf(cUnit, bb, mir, type, true /* base 0 */);
925 }
926 if (tgtMethod.compare("int java.lang.String.compareTo(java.lang.String)") == 0) {
927 return genInlinedStringCompareTo(cUnit, bb, mir, type);
928 }
929 return false;
buzbeefc9e6fa2012-03-23 15:14:29 -0700930}
931
932
buzbee31a4a6f2012-02-28 15:36:15 -0800933} // namespace art