blob: 14a18e59545294369b535c441e38554738fd7f90 [file] [log] [blame]
Brian Carlstrom7940e442013-07-12 13:46:57 -07001/*
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
17/* This file contains codegen for the X86 ISA */
18
19#include "codegen_x86.h"
20#include "dex/quick/mir_to_lir-inl.h"
buzbeeb5860fb2014-06-21 15:31:01 -070021#include "dex/reg_storage_eq.h"
Brian Carlstrom7940e442013-07-12 13:46:57 -070022#include "mirror/array.h"
23#include "x86_lir.h"
24
25namespace art {
26
27/*
Brian Carlstrom7940e442013-07-12 13:46:57 -070028 * Compare two 64-bit values
29 * x = y return 0
30 * x < y return -1
31 * x > y return 1
32 */
33void X86Mir2Lir::GenCmpLong(RegLocation rl_dest, RegLocation rl_src1,
Brian Carlstrom2ce745c2013-07-17 17:44:30 -070034 RegLocation rl_src2) {
Elena Sayapinadd644502014-07-01 18:39:52 +070035 if (cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -070036 rl_src1 = LoadValueWide(rl_src1, kCoreReg);
37 rl_src2 = LoadValueWide(rl_src2, kCoreReg);
38 RegLocation rl_result = EvalLoc(rl_dest, kCoreReg, true);
Chao-ying Fua0147762014-06-06 18:38:49 -070039 RegStorage temp_reg = AllocTemp();
Serguei Katkov1c557032014-06-23 13:23:38 +070040 OpRegReg(kOpCmp, rl_src1.reg, rl_src2.reg);
41 NewLIR2(kX86Set8R, rl_result.reg.GetReg(), kX86CondG); // result = (src1 > src2) ? 1 : 0
42 NewLIR2(kX86Set8R, temp_reg.GetReg(), kX86CondL); // temp = (src1 >= src2) ? 0 : 1
43 NewLIR2(kX86Sub8RR, rl_result.reg.GetReg(), temp_reg.GetReg());
44 NewLIR2(kX86Movsx8qRR, rl_result.reg.GetReg(), rl_result.reg.GetReg());
Serguei Katkov04982232014-06-20 18:17:16 +070045
Chao-ying Fua0147762014-06-06 18:38:49 -070046 StoreValue(rl_dest, rl_result);
47 FreeTemp(temp_reg);
48 return;
49 }
50
Brian Carlstrom7940e442013-07-12 13:46:57 -070051 FlushAllRegs();
52 LockCallTemps(); // Prepare for explicit register usage
buzbee091cc402014-03-31 10:14:40 -070053 RegStorage r_tmp1 = RegStorage::MakeRegPair(rs_r0, rs_r1);
54 RegStorage r_tmp2 = RegStorage::MakeRegPair(rs_r2, rs_r3);
buzbee2700f7e2014-03-07 09:46:20 -080055 LoadValueDirectWideFixed(rl_src1, r_tmp1);
56 LoadValueDirectWideFixed(rl_src2, r_tmp2);
Brian Carlstrom7940e442013-07-12 13:46:57 -070057 // Compute (r1:r0) = (r1:r0) - (r3:r2)
buzbee2700f7e2014-03-07 09:46:20 -080058 OpRegReg(kOpSub, rs_r0, rs_r2); // r0 = r0 - r2
59 OpRegReg(kOpSbc, rs_r1, rs_r3); // r1 = r1 - r3 - CF
buzbee091cc402014-03-31 10:14:40 -070060 NewLIR2(kX86Set8R, rs_r2.GetReg(), kX86CondL); // r2 = (r1:r0) < (r3:r2) ? 1 : 0
61 NewLIR2(kX86Movzx8RR, rs_r2.GetReg(), rs_r2.GetReg());
buzbee2700f7e2014-03-07 09:46:20 -080062 OpReg(kOpNeg, rs_r2); // r2 = -r2
63 OpRegReg(kOpOr, rs_r0, rs_r1); // r0 = high | low - sets ZF
buzbee091cc402014-03-31 10:14:40 -070064 NewLIR2(kX86Set8R, rs_r0.GetReg(), kX86CondNz); // r0 = (r1:r0) != (r3:r2) ? 1 : 0
Brian Carlstrom7940e442013-07-12 13:46:57 -070065 NewLIR2(kX86Movzx8RR, r0, r0);
buzbee2700f7e2014-03-07 09:46:20 -080066 OpRegReg(kOpOr, rs_r0, rs_r2); // r0 = r0 | r2
Brian Carlstrom7940e442013-07-12 13:46:57 -070067 RegLocation rl_result = LocCReturn();
68 StoreValue(rl_dest, rl_result);
69}
70
71X86ConditionCode X86ConditionEncoding(ConditionCode cond) {
72 switch (cond) {
73 case kCondEq: return kX86CondEq;
74 case kCondNe: return kX86CondNe;
75 case kCondCs: return kX86CondC;
76 case kCondCc: return kX86CondNc;
Vladimir Marko58af1f92013-12-19 13:31:15 +000077 case kCondUlt: return kX86CondC;
78 case kCondUge: return kX86CondNc;
Brian Carlstrom7940e442013-07-12 13:46:57 -070079 case kCondMi: return kX86CondS;
80 case kCondPl: return kX86CondNs;
81 case kCondVs: return kX86CondO;
82 case kCondVc: return kX86CondNo;
83 case kCondHi: return kX86CondA;
84 case kCondLs: return kX86CondBe;
85 case kCondGe: return kX86CondGe;
86 case kCondLt: return kX86CondL;
87 case kCondGt: return kX86CondG;
88 case kCondLe: return kX86CondLe;
89 case kCondAl:
90 case kCondNv: LOG(FATAL) << "Should not reach here";
91 }
92 return kX86CondO;
93}
94
buzbee2700f7e2014-03-07 09:46:20 -080095LIR* X86Mir2Lir::OpCmpBranch(ConditionCode cond, RegStorage src1, RegStorage src2, LIR* target) {
96 NewLIR2(kX86Cmp32RR, src1.GetReg(), src2.GetReg());
Brian Carlstrom7940e442013-07-12 13:46:57 -070097 X86ConditionCode cc = X86ConditionEncoding(cond);
98 LIR* branch = NewLIR2(kX86Jcc8, 0 /* lir operand for Jcc offset */ ,
99 cc);
100 branch->target = target;
101 return branch;
102}
103
buzbee2700f7e2014-03-07 09:46:20 -0800104LIR* X86Mir2Lir::OpCmpImmBranch(ConditionCode cond, RegStorage reg,
Brian Carlstrom2ce745c2013-07-17 17:44:30 -0700105 int check_value, LIR* target) {
Brian Carlstrom7940e442013-07-12 13:46:57 -0700106 if ((check_value == 0) && (cond == kCondEq || cond == kCondNe)) {
107 // TODO: when check_value == 0 and reg is rCX, use the jcxz/nz opcode
buzbee2700f7e2014-03-07 09:46:20 -0800108 NewLIR2(kX86Test32RR, reg.GetReg(), reg.GetReg());
Brian Carlstrom7940e442013-07-12 13:46:57 -0700109 } else {
buzbee2700f7e2014-03-07 09:46:20 -0800110 NewLIR2(IS_SIMM8(check_value) ? kX86Cmp32RI8 : kX86Cmp32RI, reg.GetReg(), check_value);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700111 }
112 X86ConditionCode cc = X86ConditionEncoding(cond);
113 LIR* branch = NewLIR2(kX86Jcc8, 0 /* lir operand for Jcc offset */ , cc);
114 branch->target = target;
115 return branch;
116}
117
buzbee2700f7e2014-03-07 09:46:20 -0800118LIR* X86Mir2Lir::OpRegCopyNoInsert(RegStorage r_dest, RegStorage r_src) {
119 // If src or dest is a pair, we'll be using low reg.
120 if (r_dest.IsPair()) {
121 r_dest = r_dest.GetLow();
122 }
123 if (r_src.IsPair()) {
124 r_src = r_src.GetLow();
125 }
buzbee091cc402014-03-31 10:14:40 -0700126 if (r_dest.IsFloat() || r_src.IsFloat())
Brian Carlstrom7940e442013-07-12 13:46:57 -0700127 return OpFpRegCopy(r_dest, r_src);
Chao-ying Fue0ccdc02014-06-06 17:32:37 -0700128 LIR* res = RawLIR(current_dalvik_offset_, r_dest.Is64Bit() ? kX86Mov64RR : kX86Mov32RR,
buzbee2700f7e2014-03-07 09:46:20 -0800129 r_dest.GetReg(), r_src.GetReg());
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800130 if (!(cu_->disable_opt & (1 << kSafeOptimizations)) && r_dest == r_src) {
Brian Carlstrom7940e442013-07-12 13:46:57 -0700131 res->flags.is_nop = true;
132 }
133 return res;
134}
135
buzbee7a11ab02014-04-28 20:02:38 -0700136void X86Mir2Lir::OpRegCopy(RegStorage r_dest, RegStorage r_src) {
137 if (r_dest != r_src) {
138 LIR *res = OpRegCopyNoInsert(r_dest, r_src);
139 AppendLIR(res);
140 }
Brian Carlstrom7940e442013-07-12 13:46:57 -0700141}
142
buzbee2700f7e2014-03-07 09:46:20 -0800143void X86Mir2Lir::OpRegCopyWide(RegStorage r_dest, RegStorage r_src) {
buzbee7a11ab02014-04-28 20:02:38 -0700144 if (r_dest != r_src) {
buzbee091cc402014-03-31 10:14:40 -0700145 bool dest_fp = r_dest.IsFloat();
146 bool src_fp = r_src.IsFloat();
buzbee7a11ab02014-04-28 20:02:38 -0700147 if (dest_fp) {
148 if (src_fp) {
buzbee091cc402014-03-31 10:14:40 -0700149 OpRegCopy(r_dest, r_src);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700150 } else {
buzbee7a11ab02014-04-28 20:02:38 -0700151 // TODO: Prevent this from happening in the code. The result is often
152 // unused or could have been loaded more easily from memory.
Chao-ying Fue0ccdc02014-06-06 17:32:37 -0700153 if (!r_src.IsPair()) {
154 DCHECK(!r_dest.IsPair());
155 NewLIR2(kX86MovqxrRR, r_dest.GetReg(), r_src.GetReg());
156 } else {
157 NewLIR2(kX86MovdxrRR, r_dest.GetReg(), r_src.GetLowReg());
158 RegStorage r_tmp = AllocTempDouble();
159 NewLIR2(kX86MovdxrRR, r_tmp.GetReg(), r_src.GetHighReg());
160 NewLIR2(kX86PunpckldqRR, r_dest.GetReg(), r_tmp.GetReg());
161 FreeTemp(r_tmp);
162 }
buzbee7a11ab02014-04-28 20:02:38 -0700163 }
164 } else {
165 if (src_fp) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -0700166 if (!r_dest.IsPair()) {
167 DCHECK(!r_src.IsPair());
168 NewLIR2(kX86MovqrxRR, r_dest.GetReg(), r_src.GetReg());
buzbee7a11ab02014-04-28 20:02:38 -0700169 } else {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -0700170 NewLIR2(kX86MovdrxRR, r_dest.GetLowReg(), r_src.GetReg());
171 RegStorage temp_reg = AllocTempDouble();
172 NewLIR2(kX86MovsdRR, temp_reg.GetReg(), r_src.GetReg());
173 NewLIR2(kX86PsrlqRI, temp_reg.GetReg(), 32);
174 NewLIR2(kX86MovdrxRR, r_dest.GetHighReg(), temp_reg.GetReg());
175 }
176 } else {
177 DCHECK_EQ(r_dest.IsPair(), r_src.IsPair());
178 if (!r_src.IsPair()) {
179 // Just copy the register directly.
180 OpRegCopy(r_dest, r_src);
181 } else {
182 // Handle overlap
183 if (r_src.GetHighReg() == r_dest.GetLowReg() &&
184 r_src.GetLowReg() == r_dest.GetHighReg()) {
185 // Deal with cycles.
186 RegStorage temp_reg = AllocTemp();
187 OpRegCopy(temp_reg, r_dest.GetHigh());
188 OpRegCopy(r_dest.GetHigh(), r_dest.GetLow());
189 OpRegCopy(r_dest.GetLow(), temp_reg);
190 FreeTemp(temp_reg);
191 } else if (r_src.GetHighReg() == r_dest.GetLowReg()) {
192 OpRegCopy(r_dest.GetHigh(), r_src.GetHigh());
193 OpRegCopy(r_dest.GetLow(), r_src.GetLow());
194 } else {
195 OpRegCopy(r_dest.GetLow(), r_src.GetLow());
196 OpRegCopy(r_dest.GetHigh(), r_src.GetHigh());
197 }
buzbee7a11ab02014-04-28 20:02:38 -0700198 }
Brian Carlstrom7940e442013-07-12 13:46:57 -0700199 }
200 }
201 }
202}
203
Brian Carlstrom2ce745c2013-07-17 17:44:30 -0700204void X86Mir2Lir::GenSelect(BasicBlock* bb, MIR* mir) {
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800205 RegLocation rl_result;
206 RegLocation rl_src = mir_graph_->GetSrc(mir, 0);
207 RegLocation rl_dest = mir_graph_->GetDest(mir);
buzbeea0cd2d72014-06-01 09:33:49 -0700208 // Avoid using float regs here.
209 RegisterClass src_reg_class = rl_src.ref ? kRefReg : kCoreReg;
210 RegisterClass result_reg_class = rl_dest.ref ? kRefReg : kCoreReg;
211 rl_src = LoadValue(rl_src, src_reg_class);
Vladimir Markoa1a70742014-03-03 10:28:05 +0000212 ConditionCode ccode = mir->meta.ccode;
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800213
214 // The kMirOpSelect has two variants, one for constants and one for moves.
215 const bool is_constant_case = (mir->ssa_rep->num_uses == 1);
216
217 if (is_constant_case) {
218 int true_val = mir->dalvikInsn.vB;
219 int false_val = mir->dalvikInsn.vC;
buzbeea0cd2d72014-06-01 09:33:49 -0700220 rl_result = EvalLoc(rl_dest, result_reg_class, true);
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800221
222 /*
Vladimir Markoa1a70742014-03-03 10:28:05 +0000223 * For ccode == kCondEq:
224 *
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800225 * 1) When the true case is zero and result_reg is not same as src_reg:
226 * xor result_reg, result_reg
227 * cmp $0, src_reg
228 * mov t1, $false_case
229 * cmovnz result_reg, t1
230 * 2) When the false case is zero and result_reg is not same as src_reg:
231 * xor result_reg, result_reg
232 * cmp $0, src_reg
233 * mov t1, $true_case
234 * cmovz result_reg, t1
235 * 3) All other cases (we do compare first to set eflags):
236 * cmp $0, src_reg
Vladimir Markoa1a70742014-03-03 10:28:05 +0000237 * mov result_reg, $false_case
238 * mov t1, $true_case
239 * cmovz result_reg, t1
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800240 */
buzbeea0cd2d72014-06-01 09:33:49 -0700241 // FIXME: depending on how you use registers you could get a false != mismatch when dealing
242 // with different views of the same underlying physical resource (i.e. solo32 vs. solo64).
buzbee2700f7e2014-03-07 09:46:20 -0800243 const bool result_reg_same_as_src =
244 (rl_src.location == kLocPhysReg && rl_src.reg.GetReg() == rl_result.reg.GetReg());
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800245 const bool true_zero_case = (true_val == 0 && false_val != 0 && !result_reg_same_as_src);
246 const bool false_zero_case = (false_val == 0 && true_val != 0 && !result_reg_same_as_src);
247 const bool catch_all_case = !(true_zero_case || false_zero_case);
248
249 if (true_zero_case || false_zero_case) {
buzbee2700f7e2014-03-07 09:46:20 -0800250 OpRegReg(kOpXor, rl_result.reg, rl_result.reg);
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800251 }
252
253 if (true_zero_case || false_zero_case || catch_all_case) {
buzbee2700f7e2014-03-07 09:46:20 -0800254 OpRegImm(kOpCmp, rl_src.reg, 0);
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800255 }
256
257 if (catch_all_case) {
buzbee2700f7e2014-03-07 09:46:20 -0800258 OpRegImm(kOpMov, rl_result.reg, false_val);
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800259 }
260
261 if (true_zero_case || false_zero_case || catch_all_case) {
Vladimir Markoa1a70742014-03-03 10:28:05 +0000262 ConditionCode cc = true_zero_case ? NegateComparison(ccode) : ccode;
263 int immediateForTemp = true_zero_case ? false_val : true_val;
buzbeea0cd2d72014-06-01 09:33:49 -0700264 RegStorage temp1_reg = AllocTypedTemp(false, result_reg_class);
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800265 OpRegImm(kOpMov, temp1_reg, immediateForTemp);
266
buzbee2700f7e2014-03-07 09:46:20 -0800267 OpCondRegReg(kOpCmov, cc, rl_result.reg, temp1_reg);
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800268
269 FreeTemp(temp1_reg);
270 }
271 } else {
272 RegLocation rl_true = mir_graph_->GetSrc(mir, 1);
273 RegLocation rl_false = mir_graph_->GetSrc(mir, 2);
buzbeea0cd2d72014-06-01 09:33:49 -0700274 rl_true = LoadValue(rl_true, result_reg_class);
275 rl_false = LoadValue(rl_false, result_reg_class);
276 rl_result = EvalLoc(rl_dest, result_reg_class, true);
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800277
278 /*
Vladimir Markoa1a70742014-03-03 10:28:05 +0000279 * For ccode == kCondEq:
280 *
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800281 * 1) When true case is already in place:
282 * cmp $0, src_reg
283 * cmovnz result_reg, false_reg
284 * 2) When false case is already in place:
285 * cmp $0, src_reg
286 * cmovz result_reg, true_reg
287 * 3) When neither cases are in place:
288 * cmp $0, src_reg
Vladimir Markoa1a70742014-03-03 10:28:05 +0000289 * mov result_reg, false_reg
290 * cmovz result_reg, true_reg
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800291 */
292
293 // kMirOpSelect is generated just for conditional cases when comparison is done with zero.
buzbee2700f7e2014-03-07 09:46:20 -0800294 OpRegImm(kOpCmp, rl_src.reg, 0);
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800295
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000296 if (rl_result.reg.GetReg() == rl_true.reg.GetReg()) {
buzbee2700f7e2014-03-07 09:46:20 -0800297 OpCondRegReg(kOpCmov, NegateComparison(ccode), rl_result.reg, rl_false.reg);
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000298 } else if (rl_result.reg.GetReg() == rl_false.reg.GetReg()) {
buzbee2700f7e2014-03-07 09:46:20 -0800299 OpCondRegReg(kOpCmov, ccode, rl_result.reg, rl_true.reg);
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800300 } else {
buzbee2700f7e2014-03-07 09:46:20 -0800301 OpRegCopy(rl_result.reg, rl_false.reg);
302 OpCondRegReg(kOpCmov, ccode, rl_result.reg, rl_true.reg);
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800303 }
304 }
305
306 StoreValue(rl_dest, rl_result);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700307}
308
309void X86Mir2Lir::GenFusedLongCmpBranch(BasicBlock* bb, MIR* mir) {
buzbee0d829482013-10-11 15:24:55 -0700310 LIR* taken = &block_label_list_[bb->taken];
Brian Carlstrom7940e442013-07-12 13:46:57 -0700311 RegLocation rl_src1 = mir_graph_->GetSrcWide(mir, 0);
312 RegLocation rl_src2 = mir_graph_->GetSrcWide(mir, 2);
Vladimir Markoa8946072014-01-22 10:30:44 +0000313 ConditionCode ccode = mir->meta.ccode;
Mark Mendell412d4f82013-12-18 13:32:36 -0800314
315 if (rl_src1.is_const) {
316 std::swap(rl_src1, rl_src2);
317 ccode = FlipComparisonOrder(ccode);
318 }
319 if (rl_src2.is_const) {
320 // Do special compare/branch against simple const operand
321 int64_t val = mir_graph_->ConstantValueWide(rl_src2);
322 GenFusedLongCmpImmBranch(bb, rl_src1, val, ccode);
323 return;
324 }
325
Elena Sayapinadd644502014-07-01 18:39:52 +0700326 if (cu_->target64) {
Dmitry Petrochenko3157f9a2014-06-18 19:11:41 +0700327 rl_src1 = LoadValueWide(rl_src1, kCoreReg);
328 rl_src2 = LoadValueWide(rl_src2, kCoreReg);
329
330 OpRegReg(kOpCmp, rl_src1.reg, rl_src2.reg);
331 OpCondBranch(ccode, taken);
332 return;
333 }
334
Brian Carlstrom7940e442013-07-12 13:46:57 -0700335 FlushAllRegs();
336 LockCallTemps(); // Prepare for explicit register usage
buzbee091cc402014-03-31 10:14:40 -0700337 RegStorage r_tmp1 = RegStorage::MakeRegPair(rs_r0, rs_r1);
338 RegStorage r_tmp2 = RegStorage::MakeRegPair(rs_r2, rs_r3);
buzbee2700f7e2014-03-07 09:46:20 -0800339 LoadValueDirectWideFixed(rl_src1, r_tmp1);
340 LoadValueDirectWideFixed(rl_src2, r_tmp2);
Dmitry Petrochenko3157f9a2014-06-18 19:11:41 +0700341
Brian Carlstrom7940e442013-07-12 13:46:57 -0700342 // Swap operands and condition code to prevent use of zero flag.
343 if (ccode == kCondLe || ccode == kCondGt) {
344 // Compute (r3:r2) = (r3:r2) - (r1:r0)
buzbee2700f7e2014-03-07 09:46:20 -0800345 OpRegReg(kOpSub, rs_r2, rs_r0); // r2 = r2 - r0
346 OpRegReg(kOpSbc, rs_r3, rs_r1); // r3 = r3 - r1 - CF
Brian Carlstrom7940e442013-07-12 13:46:57 -0700347 } else {
348 // Compute (r1:r0) = (r1:r0) - (r3:r2)
buzbee2700f7e2014-03-07 09:46:20 -0800349 OpRegReg(kOpSub, rs_r0, rs_r2); // r0 = r0 - r2
350 OpRegReg(kOpSbc, rs_r1, rs_r3); // r1 = r1 - r3 - CF
Brian Carlstrom7940e442013-07-12 13:46:57 -0700351 }
352 switch (ccode) {
353 case kCondEq:
354 case kCondNe:
buzbee2700f7e2014-03-07 09:46:20 -0800355 OpRegReg(kOpOr, rs_r0, rs_r1); // r0 = r0 | r1
Brian Carlstrom7940e442013-07-12 13:46:57 -0700356 break;
357 case kCondLe:
358 ccode = kCondGe;
359 break;
360 case kCondGt:
361 ccode = kCondLt;
362 break;
363 case kCondLt:
364 case kCondGe:
365 break;
366 default:
367 LOG(FATAL) << "Unexpected ccode: " << ccode;
368 }
369 OpCondBranch(ccode, taken);
370}
371
Mark Mendell412d4f82013-12-18 13:32:36 -0800372void X86Mir2Lir::GenFusedLongCmpImmBranch(BasicBlock* bb, RegLocation rl_src1,
373 int64_t val, ConditionCode ccode) {
374 int32_t val_lo = Low32Bits(val);
375 int32_t val_hi = High32Bits(val);
376 LIR* taken = &block_label_list_[bb->taken];
Mark Mendell412d4f82013-12-18 13:32:36 -0800377 rl_src1 = LoadValueWide(rl_src1, kCoreReg);
Mark Mendell752e2052014-05-01 10:19:04 -0400378 bool is_equality_test = ccode == kCondEq || ccode == kCondNe;
Dmitry Petrochenko3157f9a2014-06-18 19:11:41 +0700379
Elena Sayapinadd644502014-07-01 18:39:52 +0700380 if (cu_->target64) {
Dmitry Petrochenko3157f9a2014-06-18 19:11:41 +0700381 if (is_equality_test && val == 0) {
382 // We can simplify of comparing for ==, != to 0.
383 NewLIR2(kX86Test64RR, rl_src1.reg.GetReg(), rl_src1.reg.GetReg());
384 } else if (is_equality_test && val_hi == 0 && val_lo > 0) {
385 OpRegImm(kOpCmp, rl_src1.reg, val_lo);
386 } else {
387 RegStorage tmp = AllocTypedTempWide(false, kCoreReg);
388 LoadConstantWide(tmp, val);
389 OpRegReg(kOpCmp, rl_src1.reg, tmp);
390 FreeTemp(tmp);
391 }
392 OpCondBranch(ccode, taken);
393 return;
394 }
395
Mark Mendell752e2052014-05-01 10:19:04 -0400396 if (is_equality_test && val != 0) {
397 rl_src1 = ForceTempWide(rl_src1);
398 }
buzbee2700f7e2014-03-07 09:46:20 -0800399 RegStorage low_reg = rl_src1.reg.GetLow();
400 RegStorage high_reg = rl_src1.reg.GetHigh();
Mark Mendell412d4f82013-12-18 13:32:36 -0800401
Mark Mendell752e2052014-05-01 10:19:04 -0400402 if (is_equality_test) {
Dmitry Petrochenko3157f9a2014-06-18 19:11:41 +0700403 // We can simplify of comparing for ==, != to 0.
Mark Mendell752e2052014-05-01 10:19:04 -0400404 if (val == 0) {
405 if (IsTemp(low_reg)) {
406 OpRegReg(kOpOr, low_reg, high_reg);
407 // We have now changed it; ignore the old values.
408 Clobber(rl_src1.reg);
409 } else {
410 RegStorage t_reg = AllocTemp();
411 OpRegRegReg(kOpOr, t_reg, low_reg, high_reg);
412 FreeTemp(t_reg);
413 }
414 OpCondBranch(ccode, taken);
415 return;
416 }
417
418 // Need to compute the actual value for ==, !=.
419 OpRegImm(kOpSub, low_reg, val_lo);
420 NewLIR2(kX86Sbb32RI, high_reg.GetReg(), val_hi);
421 OpRegReg(kOpOr, high_reg, low_reg);
422 Clobber(rl_src1.reg);
423 } else if (ccode == kCondLe || ccode == kCondGt) {
424 // Swap operands and condition code to prevent use of zero flag.
425 RegStorage tmp = AllocTypedTempWide(false, kCoreReg);
426 LoadConstantWide(tmp, val);
427 OpRegReg(kOpSub, tmp.GetLow(), low_reg);
428 OpRegReg(kOpSbc, tmp.GetHigh(), high_reg);
429 ccode = (ccode == kCondLe) ? kCondGe : kCondLt;
430 FreeTemp(tmp);
431 } else {
432 // We can use a compare for the low word to set CF.
433 OpRegImm(kOpCmp, low_reg, val_lo);
434 if (IsTemp(high_reg)) {
435 NewLIR2(kX86Sbb32RI, high_reg.GetReg(), val_hi);
436 // We have now changed it; ignore the old values.
437 Clobber(rl_src1.reg);
438 } else {
439 // mov temp_reg, high_reg; sbb temp_reg, high_constant
440 RegStorage t_reg = AllocTemp();
441 OpRegCopy(t_reg, high_reg);
442 NewLIR2(kX86Sbb32RI, t_reg.GetReg(), val_hi);
443 FreeTemp(t_reg);
444 }
Mark Mendell412d4f82013-12-18 13:32:36 -0800445 }
446
Mark Mendell752e2052014-05-01 10:19:04 -0400447 OpCondBranch(ccode, taken);
Mark Mendell412d4f82013-12-18 13:32:36 -0800448}
449
Mark Mendell2bf31e62014-01-23 12:13:40 -0800450void X86Mir2Lir::CalculateMagicAndShift(int divisor, int& magic, int& shift) {
451 // It does not make sense to calculate magic and shift for zero divisor.
452 DCHECK_NE(divisor, 0);
453
454 /* According to H.S.Warren's Hacker's Delight Chapter 10 and
455 * T,Grablund, P.L.Montogomery's Division by invariant integers using multiplication.
456 * The magic number M and shift S can be calculated in the following way:
457 * Let nc be the most positive value of numerator(n) such that nc = kd - 1,
458 * where divisor(d) >=2.
459 * Let nc be the most negative value of numerator(n) such that nc = kd + 1,
460 * where divisor(d) <= -2.
461 * Thus nc can be calculated like:
462 * nc = 2^31 + 2^31 % d - 1, where d >= 2
463 * nc = -2^31 + (2^31 + 1) % d, where d >= 2.
464 *
465 * So the shift p is the smallest p satisfying
466 * 2^p > nc * (d - 2^p % d), where d >= 2
467 * 2^p > nc * (d + 2^p % d), where d <= -2.
468 *
469 * the magic number M is calcuated by
470 * M = (2^p + d - 2^p % d) / d, where d >= 2
471 * M = (2^p - d - 2^p % d) / d, where d <= -2.
472 *
473 * Notice that p is always bigger than or equal to 32, so we just return 32-p as
474 * the shift number S.
475 */
476
477 int32_t p = 31;
478 const uint32_t two31 = 0x80000000U;
479
480 // Initialize the computations.
481 uint32_t abs_d = (divisor >= 0) ? divisor : -divisor;
482 uint32_t tmp = two31 + (static_cast<uint32_t>(divisor) >> 31);
483 uint32_t abs_nc = tmp - 1 - tmp % abs_d;
484 uint32_t quotient1 = two31 / abs_nc;
485 uint32_t remainder1 = two31 % abs_nc;
486 uint32_t quotient2 = two31 / abs_d;
487 uint32_t remainder2 = two31 % abs_d;
488
489 /*
490 * To avoid handling both positive and negative divisor, Hacker's Delight
491 * introduces a method to handle these 2 cases together to avoid duplication.
492 */
493 uint32_t delta;
494 do {
495 p++;
496 quotient1 = 2 * quotient1;
497 remainder1 = 2 * remainder1;
498 if (remainder1 >= abs_nc) {
499 quotient1++;
500 remainder1 = remainder1 - abs_nc;
501 }
502 quotient2 = 2 * quotient2;
503 remainder2 = 2 * remainder2;
504 if (remainder2 >= abs_d) {
505 quotient2++;
506 remainder2 = remainder2 - abs_d;
507 }
508 delta = abs_d - remainder2;
509 } while (quotient1 < delta || (quotient1 == delta && remainder1 == 0));
510
511 magic = (divisor > 0) ? (quotient2 + 1) : (-quotient2 - 1);
512 shift = p - 32;
513}
514
buzbee2700f7e2014-03-07 09:46:20 -0800515RegLocation X86Mir2Lir::GenDivRemLit(RegLocation rl_dest, RegStorage reg_lo, int lit, bool is_div) {
Brian Carlstrom7940e442013-07-12 13:46:57 -0700516 LOG(FATAL) << "Unexpected use of GenDivRemLit for x86";
517 return rl_dest;
518}
519
Mark Mendell2bf31e62014-01-23 12:13:40 -0800520RegLocation X86Mir2Lir::GenDivRemLit(RegLocation rl_dest, RegLocation rl_src,
521 int imm, bool is_div) {
522 // Use a multiply (and fixup) to perform an int div/rem by a constant.
523
524 // We have to use fixed registers, so flush all the temps.
525 FlushAllRegs();
526 LockCallTemps(); // Prepare for explicit register usage.
527
528 // Assume that the result will be in EDX.
buzbee091cc402014-03-31 10:14:40 -0700529 RegLocation rl_result = {kLocPhysReg, 0, 0, 0, 0, 0, 0, 0, 1, rs_r2, INVALID_SREG, INVALID_SREG};
Mark Mendell2bf31e62014-01-23 12:13:40 -0800530
Alexei Zavjalov79aa4232014-02-13 13:55:50 +0700531 // handle div/rem by 1 special case.
532 if (imm == 1) {
Mark Mendell2bf31e62014-01-23 12:13:40 -0800533 if (is_div) {
Alexei Zavjalov79aa4232014-02-13 13:55:50 +0700534 // x / 1 == x.
535 StoreValue(rl_result, rl_src);
536 } else {
537 // x % 1 == 0.
buzbee2700f7e2014-03-07 09:46:20 -0800538 LoadConstantNoClobber(rs_r0, 0);
Alexei Zavjalov79aa4232014-02-13 13:55:50 +0700539 // For this case, return the result in EAX.
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000540 rl_result.reg.SetReg(r0);
Alexei Zavjalov79aa4232014-02-13 13:55:50 +0700541 }
542 } else if (imm == -1) { // handle 0x80000000 / -1 special case.
543 if (is_div) {
544 LIR *minint_branch = 0;
buzbee2700f7e2014-03-07 09:46:20 -0800545 LoadValueDirectFixed(rl_src, rs_r0);
546 OpRegImm(kOpCmp, rs_r0, 0x80000000);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800547 minint_branch = NewLIR2(kX86Jcc8, 0, kX86CondEq);
548
549 // for x != MIN_INT, x / -1 == -x.
550 NewLIR1(kX86Neg32R, r0);
551
552 LIR* branch_around = NewLIR1(kX86Jmp8, 0);
553 // The target for cmp/jmp above.
554 minint_branch->target = NewLIR0(kPseudoTargetLabel);
555 // EAX already contains the right value (0x80000000),
556 branch_around->target = NewLIR0(kPseudoTargetLabel);
557 } else {
558 // x % -1 == 0.
buzbee2700f7e2014-03-07 09:46:20 -0800559 LoadConstantNoClobber(rs_r0, 0);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800560 }
561 // For this case, return the result in EAX.
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000562 rl_result.reg.SetReg(r0);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800563 } else {
Alexei Zavjalov79aa4232014-02-13 13:55:50 +0700564 CHECK(imm <= -2 || imm >= 2);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800565 // Use H.S.Warren's Hacker's Delight Chapter 10 and
566 // T,Grablund, P.L.Montogomery's Division by invariant integers using multiplication.
567 int magic, shift;
568 CalculateMagicAndShift(imm, magic, shift);
569
570 /*
571 * For imm >= 2,
572 * int(n/imm) = floor(n/imm) = floor(M*n/2^S), while n > 0
573 * int(n/imm) = ceil(n/imm) = floor(M*n/2^S) +1, while n < 0.
574 * For imm <= -2,
575 * int(n/imm) = ceil(n/imm) = floor(M*n/2^S) +1 , while n > 0
576 * int(n/imm) = floor(n/imm) = floor(M*n/2^S), while n < 0.
577 * We implement this algorithm in the following way:
578 * 1. multiply magic number m and numerator n, get the higher 32bit result in EDX
579 * 2. if imm > 0 and magic < 0, add numerator to EDX
580 * if imm < 0 and magic > 0, sub numerator from EDX
581 * 3. if S !=0, SAR S bits for EDX
582 * 4. add 1 to EDX if EDX < 0
583 * 5. Thus, EDX is the quotient
584 */
585
586 // Numerator into EAX.
buzbee2700f7e2014-03-07 09:46:20 -0800587 RegStorage numerator_reg;
Mark Mendell2bf31e62014-01-23 12:13:40 -0800588 if (!is_div || (imm > 0 && magic < 0) || (imm < 0 && magic > 0)) {
589 // We will need the value later.
590 if (rl_src.location == kLocPhysReg) {
591 // We can use it directly.
buzbee091cc402014-03-31 10:14:40 -0700592 DCHECK(rl_src.reg.GetReg() != rs_r0.GetReg() && rl_src.reg.GetReg() != rs_r2.GetReg());
buzbee2700f7e2014-03-07 09:46:20 -0800593 numerator_reg = rl_src.reg;
Mark Mendell2bf31e62014-01-23 12:13:40 -0800594 } else {
buzbee2700f7e2014-03-07 09:46:20 -0800595 numerator_reg = rs_r1;
596 LoadValueDirectFixed(rl_src, numerator_reg);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800597 }
buzbee2700f7e2014-03-07 09:46:20 -0800598 OpRegCopy(rs_r0, numerator_reg);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800599 } else {
600 // Only need this once. Just put it into EAX.
buzbee2700f7e2014-03-07 09:46:20 -0800601 LoadValueDirectFixed(rl_src, rs_r0);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800602 }
603
604 // EDX = magic.
buzbee2700f7e2014-03-07 09:46:20 -0800605 LoadConstantNoClobber(rs_r2, magic);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800606
607 // EDX:EAX = magic & dividend.
buzbee091cc402014-03-31 10:14:40 -0700608 NewLIR1(kX86Imul32DaR, rs_r2.GetReg());
Mark Mendell2bf31e62014-01-23 12:13:40 -0800609
610 if (imm > 0 && magic < 0) {
611 // Add numerator to EDX.
buzbee2700f7e2014-03-07 09:46:20 -0800612 DCHECK(numerator_reg.Valid());
buzbee091cc402014-03-31 10:14:40 -0700613 NewLIR2(kX86Add32RR, rs_r2.GetReg(), numerator_reg.GetReg());
Mark Mendell2bf31e62014-01-23 12:13:40 -0800614 } else if (imm < 0 && magic > 0) {
buzbee2700f7e2014-03-07 09:46:20 -0800615 DCHECK(numerator_reg.Valid());
buzbee091cc402014-03-31 10:14:40 -0700616 NewLIR2(kX86Sub32RR, rs_r2.GetReg(), numerator_reg.GetReg());
Mark Mendell2bf31e62014-01-23 12:13:40 -0800617 }
618
619 // Do we need the shift?
620 if (shift != 0) {
621 // Shift EDX by 'shift' bits.
buzbee091cc402014-03-31 10:14:40 -0700622 NewLIR2(kX86Sar32RI, rs_r2.GetReg(), shift);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800623 }
624
625 // Add 1 to EDX if EDX < 0.
626
627 // Move EDX to EAX.
buzbee2700f7e2014-03-07 09:46:20 -0800628 OpRegCopy(rs_r0, rs_r2);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800629
630 // Move sign bit to bit 0, zeroing the rest.
buzbee091cc402014-03-31 10:14:40 -0700631 NewLIR2(kX86Shr32RI, rs_r2.GetReg(), 31);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800632
633 // EDX = EDX + EAX.
buzbee091cc402014-03-31 10:14:40 -0700634 NewLIR2(kX86Add32RR, rs_r2.GetReg(), rs_r0.GetReg());
Mark Mendell2bf31e62014-01-23 12:13:40 -0800635
636 // Quotient is in EDX.
637 if (!is_div) {
638 // We need to compute the remainder.
639 // Remainder is divisor - (quotient * imm).
buzbee2700f7e2014-03-07 09:46:20 -0800640 DCHECK(numerator_reg.Valid());
641 OpRegCopy(rs_r0, numerator_reg);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800642
643 // EAX = numerator * imm.
buzbee2700f7e2014-03-07 09:46:20 -0800644 OpRegRegImm(kOpMul, rs_r2, rs_r2, imm);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800645
646 // EDX -= EAX.
buzbee091cc402014-03-31 10:14:40 -0700647 NewLIR2(kX86Sub32RR, rs_r0.GetReg(), rs_r2.GetReg());
Mark Mendell2bf31e62014-01-23 12:13:40 -0800648
649 // For this case, return the result in EAX.
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000650 rl_result.reg.SetReg(r0);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800651 }
652 }
653
654 return rl_result;
655}
656
buzbee2700f7e2014-03-07 09:46:20 -0800657RegLocation X86Mir2Lir::GenDivRem(RegLocation rl_dest, RegStorage reg_lo, RegStorage reg_hi,
658 bool is_div) {
Brian Carlstrom7940e442013-07-12 13:46:57 -0700659 LOG(FATAL) << "Unexpected use of GenDivRem for x86";
660 return rl_dest;
661}
662
Mark Mendell2bf31e62014-01-23 12:13:40 -0800663RegLocation X86Mir2Lir::GenDivRem(RegLocation rl_dest, RegLocation rl_src1,
664 RegLocation rl_src2, bool is_div, bool check_zero) {
665 // We have to use fixed registers, so flush all the temps.
666 FlushAllRegs();
667 LockCallTemps(); // Prepare for explicit register usage.
668
669 // Load LHS into EAX.
buzbee2700f7e2014-03-07 09:46:20 -0800670 LoadValueDirectFixed(rl_src1, rs_r0);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800671
672 // Load RHS into EBX.
buzbee2700f7e2014-03-07 09:46:20 -0800673 LoadValueDirectFixed(rl_src2, rs_r1);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800674
675 // Copy LHS sign bit into EDX.
676 NewLIR0(kx86Cdq32Da);
677
678 if (check_zero) {
679 // Handle division by zero case.
Mingyao Yange643a172014-04-08 11:02:52 -0700680 GenDivZeroCheck(rs_r1);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800681 }
682
683 // Have to catch 0x80000000/-1 case, or we will get an exception!
buzbee2700f7e2014-03-07 09:46:20 -0800684 OpRegImm(kOpCmp, rs_r1, -1);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800685 LIR *minus_one_branch = NewLIR2(kX86Jcc8, 0, kX86CondNe);
686
687 // RHS is -1.
buzbee2700f7e2014-03-07 09:46:20 -0800688 OpRegImm(kOpCmp, rs_r0, 0x80000000);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800689 LIR * minint_branch = NewLIR2(kX86Jcc8, 0, kX86CondNe);
690
691 // In 0x80000000/-1 case.
692 if (!is_div) {
693 // For DIV, EAX is already right. For REM, we need EDX 0.
buzbee2700f7e2014-03-07 09:46:20 -0800694 LoadConstantNoClobber(rs_r2, 0);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800695 }
696 LIR* done = NewLIR1(kX86Jmp8, 0);
697
698 // Expected case.
699 minus_one_branch->target = NewLIR0(kPseudoTargetLabel);
700 minint_branch->target = minus_one_branch->target;
buzbee091cc402014-03-31 10:14:40 -0700701 NewLIR1(kX86Idivmod32DaR, rs_r1.GetReg());
Mark Mendell2bf31e62014-01-23 12:13:40 -0800702 done->target = NewLIR0(kPseudoTargetLabel);
703
704 // Result is in EAX for div and EDX for rem.
buzbee091cc402014-03-31 10:14:40 -0700705 RegLocation rl_result = {kLocPhysReg, 0, 0, 0, 0, 0, 0, 0, 1, rs_r0, INVALID_SREG, INVALID_SREG};
Mark Mendell2bf31e62014-01-23 12:13:40 -0800706 if (!is_div) {
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000707 rl_result.reg.SetReg(r2);
Mark Mendell2bf31e62014-01-23 12:13:40 -0800708 }
709 return rl_result;
710}
711
Brian Carlstrom2ce745c2013-07-17 17:44:30 -0700712bool X86Mir2Lir::GenInlinedMinMaxInt(CallInfo* info, bool is_min) {
Dmitry Petrochenko6a58cb12014-04-02 17:27:59 +0700713 DCHECK(cu_->instruction_set == kX86 || cu_->instruction_set == kX86_64);
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800714
715 // Get the two arguments to the invoke and place them in GP registers.
Brian Carlstrom7940e442013-07-12 13:46:57 -0700716 RegLocation rl_src1 = info->args[0];
717 RegLocation rl_src2 = info->args[1];
718 rl_src1 = LoadValue(rl_src1, kCoreReg);
719 rl_src2 = LoadValue(rl_src2, kCoreReg);
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800720
Brian Carlstrom7940e442013-07-12 13:46:57 -0700721 RegLocation rl_dest = InlineTarget(info);
722 RegLocation rl_result = EvalLoc(rl_dest, kCoreReg, true);
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800723
724 /*
725 * If the result register is the same as the second element, then we need to be careful.
726 * The reason is that the first copy will inadvertently clobber the second element with
727 * the first one thus yielding the wrong result. Thus we do a swap in that case.
728 */
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000729 if (rl_result.reg.GetReg() == rl_src2.reg.GetReg()) {
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800730 std::swap(rl_src1, rl_src2);
731 }
732
733 // Pick the first integer as min/max.
buzbee2700f7e2014-03-07 09:46:20 -0800734 OpRegCopy(rl_result.reg, rl_src1.reg);
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800735
736 // If the integers are both in the same register, then there is nothing else to do
737 // because they are equal and we have already moved one into the result.
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000738 if (rl_src1.reg.GetReg() != rl_src2.reg.GetReg()) {
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800739 // It is possible we didn't pick correctly so do the actual comparison now.
buzbee2700f7e2014-03-07 09:46:20 -0800740 OpRegReg(kOpCmp, rl_src1.reg, rl_src2.reg);
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800741
742 // Conditionally move the other integer into the destination register.
743 ConditionCode condition_code = is_min ? kCondGt : kCondLt;
buzbee2700f7e2014-03-07 09:46:20 -0800744 OpCondRegReg(kOpCmov, condition_code, rl_result.reg, rl_src2.reg);
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800745 }
746
Brian Carlstrom7940e442013-07-12 13:46:57 -0700747 StoreValue(rl_dest, rl_result);
748 return true;
749}
750
Vladimir Markoe508a202013-11-04 15:24:22 +0000751bool X86Mir2Lir::GenInlinedPeek(CallInfo* info, OpSize size) {
752 RegLocation rl_src_address = info->args[0]; // long address
buzbee2700f7e2014-03-07 09:46:20 -0800753 rl_src_address = NarrowRegLoc(rl_src_address); // ignore high half in info->args[1]
buzbee695d13a2014-04-19 13:32:20 -0700754 RegLocation rl_dest = size == k64 ? InlineTargetWide(info) : InlineTarget(info);
Vladimir Markoe508a202013-11-04 15:24:22 +0000755 RegLocation rl_address = LoadValue(rl_src_address, kCoreReg);
756 RegLocation rl_result = EvalLoc(rl_dest, kCoreReg, true);
Vladimir Marko455759b2014-05-06 20:49:36 +0100757 // Unaligned access is allowed on x86.
Andreas Gampe3c12c512014-06-24 18:46:29 +0000758 LoadBaseDisp(rl_address.reg, 0, rl_result.reg, size, kNotVolatile);
buzbee695d13a2014-04-19 13:32:20 -0700759 if (size == k64) {
Vladimir Markoe508a202013-11-04 15:24:22 +0000760 StoreValueWide(rl_dest, rl_result);
761 } else {
buzbee695d13a2014-04-19 13:32:20 -0700762 DCHECK(size == kSignedByte || size == kSignedHalf || size == k32);
Vladimir Markoe508a202013-11-04 15:24:22 +0000763 StoreValue(rl_dest, rl_result);
764 }
765 return true;
766}
767
768bool X86Mir2Lir::GenInlinedPoke(CallInfo* info, OpSize size) {
769 RegLocation rl_src_address = info->args[0]; // long address
buzbee2700f7e2014-03-07 09:46:20 -0800770 rl_src_address = NarrowRegLoc(rl_src_address); // ignore high half in info->args[1]
Vladimir Markoe508a202013-11-04 15:24:22 +0000771 RegLocation rl_src_value = info->args[2]; // [size] value
772 RegLocation rl_address = LoadValue(rl_src_address, kCoreReg);
buzbee695d13a2014-04-19 13:32:20 -0700773 if (size == k64) {
Vladimir Markoe508a202013-11-04 15:24:22 +0000774 // Unaligned access is allowed on x86.
775 RegLocation rl_value = LoadValueWide(rl_src_value, kCoreReg);
Andreas Gampe3c12c512014-06-24 18:46:29 +0000776 StoreBaseDisp(rl_address.reg, 0, rl_value.reg, size, kNotVolatile);
Vladimir Markoe508a202013-11-04 15:24:22 +0000777 } else {
buzbee695d13a2014-04-19 13:32:20 -0700778 DCHECK(size == kSignedByte || size == kSignedHalf || size == k32);
Vladimir Markoe508a202013-11-04 15:24:22 +0000779 // Unaligned access is allowed on x86.
780 RegLocation rl_value = LoadValue(rl_src_value, kCoreReg);
Andreas Gampe3c12c512014-06-24 18:46:29 +0000781 StoreBaseDisp(rl_address.reg, 0, rl_value.reg, size, kNotVolatile);
Vladimir Markoe508a202013-11-04 15:24:22 +0000782 }
783 return true;
784}
785
buzbee2700f7e2014-03-07 09:46:20 -0800786void X86Mir2Lir::OpLea(RegStorage r_base, RegStorage reg1, RegStorage reg2, int scale, int offset) {
787 NewLIR5(kX86Lea32RA, r_base.GetReg(), reg1.GetReg(), reg2.GetReg(), scale, offset);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700788}
789
Ian Rogersdd7624d2014-03-14 17:43:00 -0700790void X86Mir2Lir::OpTlsCmp(ThreadOffset<4> offset, int val) {
Andreas Gampe2f244e92014-05-08 03:35:25 -0700791 DCHECK_EQ(kX86, cu_->instruction_set);
792 NewLIR2(kX86Cmp16TI8, offset.Int32Value(), val);
793}
794
795void X86Mir2Lir::OpTlsCmp(ThreadOffset<8> offset, int val) {
796 DCHECK_EQ(kX86_64, cu_->instruction_set);
Ian Rogers468532e2013-08-05 10:56:33 -0700797 NewLIR2(kX86Cmp16TI8, offset.Int32Value(), val);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700798}
799
buzbee2700f7e2014-03-07 09:46:20 -0800800static bool IsInReg(X86Mir2Lir *pMir2Lir, const RegLocation &rl, RegStorage reg) {
801 return rl.reg.Valid() && rl.reg.GetReg() == reg.GetReg() && (pMir2Lir->IsLive(reg) || rl.home);
Yevgeny Rouband3a2dfa2014-03-18 15:55:16 +0700802}
803
Vladimir Marko1c282e22013-11-21 14:49:47 +0000804bool X86Mir2Lir::GenInlinedCas(CallInfo* info, bool is_long, bool is_object) {
Dmitry Petrochenko6a58cb12014-04-02 17:27:59 +0700805 DCHECK(cu_->instruction_set == kX86 || cu_->instruction_set == kX86_64);
Vladimir Markoc29bb612013-11-27 16:47:25 +0000806 // Unused - RegLocation rl_src_unsafe = info->args[0];
807 RegLocation rl_src_obj = info->args[1]; // Object - known non-null
808 RegLocation rl_src_offset = info->args[2]; // long low
buzbee2700f7e2014-03-07 09:46:20 -0800809 rl_src_offset = NarrowRegLoc(rl_src_offset); // ignore high half in info->args[3]
Vladimir Markoc29bb612013-11-27 16:47:25 +0000810 RegLocation rl_src_expected = info->args[4]; // int, long or Object
811 // If is_long, high half is in info->args[5]
812 RegLocation rl_src_new_value = info->args[is_long ? 6 : 5]; // int, long or Object
813 // If is_long, high half is in info->args[7]
814
815 if (is_long) {
Yevgeny Rouband3a2dfa2014-03-18 15:55:16 +0700816 // TODO: avoid unnecessary loads of SI and DI when the values are in registers.
817 // TODO: CFI support.
Vladimir Marko70b797d2013-12-03 15:25:24 +0000818 FlushAllRegs();
819 LockCallTemps();
buzbee091cc402014-03-31 10:14:40 -0700820 RegStorage r_tmp1 = RegStorage::MakeRegPair(rs_rAX, rs_rDX);
821 RegStorage r_tmp2 = RegStorage::MakeRegPair(rs_rBX, rs_rCX);
buzbee2700f7e2014-03-07 09:46:20 -0800822 LoadValueDirectWideFixed(rl_src_expected, r_tmp1);
823 LoadValueDirectWideFixed(rl_src_new_value, r_tmp2);
buzbee695d13a2014-04-19 13:32:20 -0700824 // FIXME: needs 64-bit update.
Vladimir Marko8dea81c2014-06-06 14:50:36 +0100825 const bool obj_in_di = IsInReg(this, rl_src_obj, rs_rDI);
826 const bool obj_in_si = IsInReg(this, rl_src_obj, rs_rSI);
827 DCHECK(!obj_in_si || !obj_in_di);
828 const bool off_in_di = IsInReg(this, rl_src_offset, rs_rDI);
829 const bool off_in_si = IsInReg(this, rl_src_offset, rs_rSI);
830 DCHECK(!off_in_si || !off_in_di);
831 // If obj/offset is in a reg, use that reg. Otherwise, use the empty reg.
832 RegStorage rs_obj = obj_in_di ? rs_rDI : obj_in_si ? rs_rSI : !off_in_di ? rs_rDI : rs_rSI;
833 RegStorage rs_off = off_in_si ? rs_rSI : off_in_di ? rs_rDI : !obj_in_si ? rs_rSI : rs_rDI;
834 bool push_di = (!obj_in_di && !off_in_di) && (rs_obj == rs_rDI || rs_off == rs_rDI);
835 bool push_si = (!obj_in_si && !off_in_si) && (rs_obj == rs_rSI || rs_off == rs_rSI);
836 if (push_di) {
837 NewLIR1(kX86Push32R, rs_rDI.GetReg());
838 MarkTemp(rs_rDI);
839 LockTemp(rs_rDI);
840 }
841 if (push_si) {
842 NewLIR1(kX86Push32R, rs_rSI.GetReg());
843 MarkTemp(rs_rSI);
844 LockTemp(rs_rSI);
845 }
846 ScopedMemRefType mem_ref_type(this, ResourceMask::kDalvikReg);
847 const size_t push_offset = (push_si ? 4u : 0u) + (push_di ? 4u : 0u);
848 if (!obj_in_si && !obj_in_di) {
849 LoadWordDisp(TargetReg(kSp), SRegOffset(rl_src_obj.s_reg_low) + push_offset, rs_obj);
850 // Dalvik register annotation in LoadBaseIndexedDisp() used wrong offset. Fix it.
851 DCHECK(!DECODE_ALIAS_INFO_WIDE(last_lir_insn_->flags.alias_info));
852 int reg_id = DECODE_ALIAS_INFO_REG(last_lir_insn_->flags.alias_info) - push_offset / 4u;
853 AnnotateDalvikRegAccess(last_lir_insn_, reg_id, true, false);
854 }
855 if (!off_in_si && !off_in_di) {
856 LoadWordDisp(TargetReg(kSp), SRegOffset(rl_src_offset.s_reg_low) + push_offset, rs_off);
857 // Dalvik register annotation in LoadBaseIndexedDisp() used wrong offset. Fix it.
858 DCHECK(!DECODE_ALIAS_INFO_WIDE(last_lir_insn_->flags.alias_info));
859 int reg_id = DECODE_ALIAS_INFO_REG(last_lir_insn_->flags.alias_info) - push_offset / 4u;
860 AnnotateDalvikRegAccess(last_lir_insn_, reg_id, true, false);
861 }
862 NewLIR4(kX86LockCmpxchg64A, rs_obj.GetReg(), rs_off.GetReg(), 0, 0);
Razvan A Lupusoru99ad7232014-02-25 17:41:08 -0800863
864 // After a store we need to insert barrier in case of potential load. Since the
865 // locked cmpxchg has full barrier semantics, only a scheduling barrier will be generated.
866 GenMemBarrier(kStoreLoad);
867
Vladimir Marko8dea81c2014-06-06 14:50:36 +0100868
869 if (push_si) {
870 FreeTemp(rs_rSI);
871 UnmarkTemp(rs_rSI);
872 NewLIR1(kX86Pop32R, rs_rSI.GetReg());
873 }
874 if (push_di) {
875 FreeTemp(rs_rDI);
876 UnmarkTemp(rs_rDI);
877 NewLIR1(kX86Pop32R, rs_rDI.GetReg());
878 }
Vladimir Marko70b797d2013-12-03 15:25:24 +0000879 FreeCallTemps();
Vladimir Markoc29bb612013-11-27 16:47:25 +0000880 } else {
881 // EAX must hold expected for CMPXCHG. Neither rl_new_value, nor r_ptr may be in EAX.
buzbee2700f7e2014-03-07 09:46:20 -0800882 FlushReg(rs_r0);
buzbee091cc402014-03-31 10:14:40 -0700883 Clobber(rs_r0);
buzbee2700f7e2014-03-07 09:46:20 -0800884 LockTemp(rs_r0);
Vladimir Markoc29bb612013-11-27 16:47:25 +0000885
buzbeea0cd2d72014-06-01 09:33:49 -0700886 RegLocation rl_object = LoadValue(rl_src_obj, kRefReg);
887 RegLocation rl_new_value = LoadValue(rl_src_new_value);
Vladimir Markoc29bb612013-11-27 16:47:25 +0000888
889 if (is_object && !mir_graph_->IsConstantNullRef(rl_new_value)) {
890 // Mark card for object assuming new value is stored.
buzbee091cc402014-03-31 10:14:40 -0700891 FreeTemp(rs_r0); // Temporarily release EAX for MarkGCCard().
buzbee2700f7e2014-03-07 09:46:20 -0800892 MarkGCCard(rl_new_value.reg, rl_object.reg);
buzbee091cc402014-03-31 10:14:40 -0700893 LockTemp(rs_r0);
Vladimir Markoc29bb612013-11-27 16:47:25 +0000894 }
895
896 RegLocation rl_offset = LoadValue(rl_src_offset, kCoreReg);
buzbee2700f7e2014-03-07 09:46:20 -0800897 LoadValueDirect(rl_src_expected, rs_r0);
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000898 NewLIR5(kX86LockCmpxchgAR, rl_object.reg.GetReg(), rl_offset.reg.GetReg(), 0, 0, rl_new_value.reg.GetReg());
Vladimir Markoc29bb612013-11-27 16:47:25 +0000899
Razvan A Lupusoru99ad7232014-02-25 17:41:08 -0800900 // After a store we need to insert barrier in case of potential load. Since the
901 // locked cmpxchg has full barrier semantics, only a scheduling barrier will be generated.
902 GenMemBarrier(kStoreLoad);
903
buzbee091cc402014-03-31 10:14:40 -0700904 FreeTemp(rs_r0);
Vladimir Markoc29bb612013-11-27 16:47:25 +0000905 }
906
907 // Convert ZF to boolean
908 RegLocation rl_dest = InlineTarget(info); // boolean place for result
909 RegLocation rl_result = EvalLoc(rl_dest, kCoreReg, true);
Ian Rogers0f9b9c52014-06-09 01:32:12 -0700910 RegStorage result_reg = rl_result.reg;
911
Chao-ying Fu7e399fd2014-06-10 18:11:11 -0700912 // For 32-bit, SETcc only works with EAX..EDX.
913 if (!IsByteRegister(result_reg)) {
Ian Rogers0f9b9c52014-06-09 01:32:12 -0700914 result_reg = AllocateByteRegister();
Ian Rogers0f9b9c52014-06-09 01:32:12 -0700915 }
916 NewLIR2(kX86Set8R, result_reg.GetReg(), kX86CondZ);
917 NewLIR2(kX86Movzx8RR, rl_result.reg.GetReg(), result_reg.GetReg());
918 if (IsTemp(result_reg)) {
919 FreeTemp(result_reg);
920 }
Vladimir Markoc29bb612013-11-27 16:47:25 +0000921 StoreValue(rl_dest, rl_result);
922 return true;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700923}
924
buzbee2700f7e2014-03-07 09:46:20 -0800925LIR* X86Mir2Lir::OpPcRelLoad(RegStorage reg, LIR* target) {
Mark Mendell55d0eac2014-02-06 11:02:52 -0800926 CHECK(base_of_code_ != nullptr);
927
928 // Address the start of the method
929 RegLocation rl_method = mir_graph_->GetRegLocation(base_of_code_->s_reg_low);
Chao-ying Fue0ccdc02014-06-06 17:32:37 -0700930 if (rl_method.wide) {
931 LoadValueDirectWideFixed(rl_method, reg);
932 } else {
933 LoadValueDirectFixed(rl_method, reg);
934 }
Mark Mendell55d0eac2014-02-06 11:02:52 -0800935 store_method_addr_used_ = true;
936
937 // Load the proper value from the literal area.
938 // We don't know the proper offset for the value, so pick one that will force
939 // 4 byte offset. We will fix this up in the assembler later to have the right
940 // value.
Vladimir Marko8dea81c2014-06-06 14:50:36 +0100941 ScopedMemRefType mem_ref_type(this, ResourceMask::kLiteral);
buzbee2700f7e2014-03-07 09:46:20 -0800942 LIR *res = RawLIR(current_dalvik_offset_, kX86Mov32RM, reg.GetReg(), reg.GetReg(), 256,
943 0, 0, target);
Mark Mendell55d0eac2014-02-06 11:02:52 -0800944 res->target = target;
945 res->flags.fixup = kFixupLoad;
Mark Mendell55d0eac2014-02-06 11:02:52 -0800946 store_method_addr_used_ = true;
947 return res;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700948}
949
buzbee2700f7e2014-03-07 09:46:20 -0800950LIR* X86Mir2Lir::OpVldm(RegStorage r_base, int count) {
Brian Carlstrom7940e442013-07-12 13:46:57 -0700951 LOG(FATAL) << "Unexpected use of OpVldm for x86";
952 return NULL;
953}
954
buzbee2700f7e2014-03-07 09:46:20 -0800955LIR* X86Mir2Lir::OpVstm(RegStorage r_base, int count) {
Brian Carlstrom7940e442013-07-12 13:46:57 -0700956 LOG(FATAL) << "Unexpected use of OpVstm for x86";
957 return NULL;
958}
959
960void X86Mir2Lir::GenMultiplyByTwoBitMultiplier(RegLocation rl_src,
961 RegLocation rl_result, int lit,
Brian Carlstrom2ce745c2013-07-17 17:44:30 -0700962 int first_bit, int second_bit) {
buzbee2700f7e2014-03-07 09:46:20 -0800963 RegStorage t_reg = AllocTemp();
964 OpRegRegImm(kOpLsl, t_reg, rl_src.reg, second_bit - first_bit);
965 OpRegRegReg(kOpAdd, rl_result.reg, rl_src.reg, t_reg);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700966 FreeTemp(t_reg);
967 if (first_bit != 0) {
buzbee2700f7e2014-03-07 09:46:20 -0800968 OpRegRegImm(kOpLsl, rl_result.reg, rl_result.reg, first_bit);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700969 }
970}
971
Mingyao Yange643a172014-04-08 11:02:52 -0700972void X86Mir2Lir::GenDivZeroCheckWide(RegStorage reg) {
Elena Sayapinadd644502014-07-01 18:39:52 +0700973 if (cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -0700974 DCHECK(reg.Is64Bit());
Razvan A Lupusoru090dd442013-12-20 14:35:03 -0800975
Chao-ying Fua0147762014-06-06 18:38:49 -0700976 NewLIR2(kX86Cmp64RI8, reg.GetReg(), 0);
977 } else {
978 DCHECK(reg.IsPair());
979
980 // We are not supposed to clobber the incoming storage, so allocate a temporary.
981 RegStorage t_reg = AllocTemp();
982 // Doing an OR is a quick way to check if both registers are zero. This will set the flags.
983 OpRegRegReg(kOpOr, t_reg, reg.GetLow(), reg.GetHigh());
984 // The temp is no longer needed so free it at this time.
985 FreeTemp(t_reg);
986 }
Razvan A Lupusoru090dd442013-12-20 14:35:03 -0800987
988 // In case of zero, throw ArithmeticException.
Mingyao Yange643a172014-04-08 11:02:52 -0700989 GenDivZeroCheck(kCondEq);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700990}
991
Mingyao Yang80365d92014-04-18 12:10:58 -0700992void X86Mir2Lir::GenArrayBoundsCheck(RegStorage index,
993 RegStorage array_base,
994 int len_offset) {
995 class ArrayBoundsCheckSlowPath : public Mir2Lir::LIRSlowPath {
996 public:
997 ArrayBoundsCheckSlowPath(Mir2Lir* m2l, LIR* branch,
998 RegStorage index, RegStorage array_base, int32_t len_offset)
999 : LIRSlowPath(m2l, m2l->GetCurrentDexPc(), branch),
1000 index_(index), array_base_(array_base), len_offset_(len_offset) {
1001 }
1002
1003 void Compile() OVERRIDE {
1004 m2l_->ResetRegPool();
1005 m2l_->ResetDefTracking();
Mingyao Yang6ffcfa02014-04-25 11:06:00 -07001006 GenerateTargetLabel(kPseudoThrowTarget);
Mingyao Yang80365d92014-04-18 12:10:58 -07001007
1008 RegStorage new_index = index_;
1009 // Move index out of kArg1, either directly to kArg0, or to kArg2.
Serguei Katkov4c7cc152014-06-24 00:50:02 +07001010 // TODO: clean-up to check not a number but with type
1011 if (index_.GetRegNum() == m2l_->TargetReg(kArg1).GetRegNum()) {
1012 if (array_base_.GetRegNum() == m2l_->TargetReg(kArg0).GetRegNum()) {
Mingyao Yang80365d92014-04-18 12:10:58 -07001013 m2l_->OpRegCopy(m2l_->TargetReg(kArg2), index_);
1014 new_index = m2l_->TargetReg(kArg2);
1015 } else {
1016 m2l_->OpRegCopy(m2l_->TargetReg(kArg0), index_);
1017 new_index = m2l_->TargetReg(kArg0);
1018 }
1019 }
1020 // Load array length to kArg1.
1021 m2l_->OpRegMem(kOpMov, m2l_->TargetReg(kArg1), array_base_, len_offset_);
buzbee33ae5582014-06-12 14:56:32 -07001022 if (cu_->target64) {
Dmitry Petrochenko9ee801f2014-05-12 11:31:37 +07001023 m2l_->CallRuntimeHelperRegReg(QUICK_ENTRYPOINT_OFFSET(8, pThrowArrayBounds),
1024 new_index, m2l_->TargetReg(kArg1), true);
1025 } else {
1026 m2l_->CallRuntimeHelperRegReg(QUICK_ENTRYPOINT_OFFSET(4, pThrowArrayBounds),
1027 new_index, m2l_->TargetReg(kArg1), true);
1028 }
Mingyao Yang80365d92014-04-18 12:10:58 -07001029 }
1030
1031 private:
1032 const RegStorage index_;
1033 const RegStorage array_base_;
1034 const int32_t len_offset_;
1035 };
1036
1037 OpRegMem(kOpCmp, index, array_base, len_offset);
1038 LIR* branch = OpCondBranch(kCondUge, nullptr);
1039 AddSlowPath(new (arena_) ArrayBoundsCheckSlowPath(this, branch,
1040 index, array_base, len_offset));
1041}
1042
1043void X86Mir2Lir::GenArrayBoundsCheck(int32_t index,
1044 RegStorage array_base,
1045 int32_t len_offset) {
1046 class ArrayBoundsCheckSlowPath : public Mir2Lir::LIRSlowPath {
1047 public:
1048 ArrayBoundsCheckSlowPath(Mir2Lir* m2l, LIR* branch,
1049 int32_t index, RegStorage array_base, int32_t len_offset)
1050 : LIRSlowPath(m2l, m2l->GetCurrentDexPc(), branch),
1051 index_(index), array_base_(array_base), len_offset_(len_offset) {
1052 }
1053
1054 void Compile() OVERRIDE {
1055 m2l_->ResetRegPool();
1056 m2l_->ResetDefTracking();
Mingyao Yang6ffcfa02014-04-25 11:06:00 -07001057 GenerateTargetLabel(kPseudoThrowTarget);
Mingyao Yang80365d92014-04-18 12:10:58 -07001058
1059 // Load array length to kArg1.
1060 m2l_->OpRegMem(kOpMov, m2l_->TargetReg(kArg1), array_base_, len_offset_);
1061 m2l_->LoadConstant(m2l_->TargetReg(kArg0), index_);
buzbee33ae5582014-06-12 14:56:32 -07001062 if (cu_->target64) {
Dmitry Petrochenko9ee801f2014-05-12 11:31:37 +07001063 m2l_->CallRuntimeHelperRegReg(QUICK_ENTRYPOINT_OFFSET(8, pThrowArrayBounds),
1064 m2l_->TargetReg(kArg0), m2l_->TargetReg(kArg1), true);
1065 } else {
1066 m2l_->CallRuntimeHelperRegReg(QUICK_ENTRYPOINT_OFFSET(4, pThrowArrayBounds),
1067 m2l_->TargetReg(kArg0), m2l_->TargetReg(kArg1), true);
1068 }
Mingyao Yang80365d92014-04-18 12:10:58 -07001069 }
1070
1071 private:
1072 const int32_t index_;
1073 const RegStorage array_base_;
1074 const int32_t len_offset_;
1075 };
1076
1077 NewLIR3(IS_SIMM8(index) ? kX86Cmp32MI8 : kX86Cmp32MI, array_base.GetReg(), len_offset, index);
1078 LIR* branch = OpCondBranch(kCondLs, nullptr);
1079 AddSlowPath(new (arena_) ArrayBoundsCheckSlowPath(this, branch,
1080 index, array_base, len_offset));
1081}
1082
Brian Carlstrom7940e442013-07-12 13:46:57 -07001083// Test suspend flag, return target of taken suspend branch
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001084LIR* X86Mir2Lir::OpTestSuspend(LIR* target) {
buzbee33ae5582014-06-12 14:56:32 -07001085 if (cu_->target64) {
Andreas Gampe2f244e92014-05-08 03:35:25 -07001086 OpTlsCmp(Thread::ThreadFlagsOffset<8>(), 0);
1087 } else {
1088 OpTlsCmp(Thread::ThreadFlagsOffset<4>(), 0);
1089 }
Brian Carlstrom7940e442013-07-12 13:46:57 -07001090 return OpCondBranch((target == NULL) ? kCondNe : kCondEq, target);
1091}
1092
1093// Decrement register and branch on condition
buzbee2700f7e2014-03-07 09:46:20 -08001094LIR* X86Mir2Lir::OpDecAndBranch(ConditionCode c_code, RegStorage reg, LIR* target) {
Brian Carlstrom7940e442013-07-12 13:46:57 -07001095 OpRegImm(kOpSub, reg, 1);
Yixin Shoua0dac3e2014-01-23 05:01:22 -08001096 return OpCondBranch(c_code, target);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001097}
1098
buzbee11b63d12013-08-27 07:34:17 -07001099bool X86Mir2Lir::SmallLiteralDivRem(Instruction::Code dalvik_opcode, bool is_div,
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001100 RegLocation rl_src, RegLocation rl_dest, int lit) {
Brian Carlstrom7940e442013-07-12 13:46:57 -07001101 LOG(FATAL) << "Unexpected use of smallLiteralDive in x86";
1102 return false;
1103}
1104
Ian Rogerse2143c02014-03-28 08:47:16 -07001105bool X86Mir2Lir::EasyMultiply(RegLocation rl_src, RegLocation rl_dest, int lit) {
1106 LOG(FATAL) << "Unexpected use of easyMultiply in x86";
1107 return false;
1108}
1109
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001110LIR* X86Mir2Lir::OpIT(ConditionCode cond, const char* guide) {
Brian Carlstrom7940e442013-07-12 13:46:57 -07001111 LOG(FATAL) << "Unexpected use of OpIT in x86";
1112 return NULL;
1113}
1114
Dave Allison3da67a52014-04-02 17:03:45 -07001115void X86Mir2Lir::OpEndIT(LIR* it) {
1116 LOG(FATAL) << "Unexpected use of OpEndIT in x86";
1117}
1118
buzbee2700f7e2014-03-07 09:46:20 -08001119void X86Mir2Lir::GenImulRegImm(RegStorage dest, RegStorage src, int val) {
Mark Mendell4708dcd2014-01-22 09:05:18 -08001120 switch (val) {
1121 case 0:
buzbee2700f7e2014-03-07 09:46:20 -08001122 NewLIR2(kX86Xor32RR, dest.GetReg(), dest.GetReg());
Mark Mendell4708dcd2014-01-22 09:05:18 -08001123 break;
1124 case 1:
1125 OpRegCopy(dest, src);
1126 break;
1127 default:
1128 OpRegRegImm(kOpMul, dest, src, val);
1129 break;
1130 }
1131}
1132
buzbee2700f7e2014-03-07 09:46:20 -08001133void X86Mir2Lir::GenImulMemImm(RegStorage dest, int sreg, int displacement, int val) {
Vladimir Marko8dea81c2014-06-06 14:50:36 +01001134 // All memory accesses below reference dalvik regs.
1135 ScopedMemRefType mem_ref_type(this, ResourceMask::kDalvikReg);
1136
Mark Mendell4708dcd2014-01-22 09:05:18 -08001137 LIR *m;
1138 switch (val) {
1139 case 0:
buzbee2700f7e2014-03-07 09:46:20 -08001140 NewLIR2(kX86Xor32RR, dest.GetReg(), dest.GetReg());
Mark Mendell4708dcd2014-01-22 09:05:18 -08001141 break;
1142 case 1:
Andreas Gampe3c12c512014-06-24 18:46:29 +00001143 LoadBaseDisp(rs_rX86_SP, displacement, dest, k32, kNotVolatile);
Mark Mendell4708dcd2014-01-22 09:05:18 -08001144 break;
1145 default:
buzbee091cc402014-03-31 10:14:40 -07001146 m = NewLIR4(IS_SIMM8(val) ? kX86Imul32RMI8 : kX86Imul32RMI, dest.GetReg(),
1147 rs_rX86_SP.GetReg(), displacement, val);
Mark Mendell4708dcd2014-01-22 09:05:18 -08001148 AnnotateDalvikRegAccess(m, displacement >> 2, true /* is_load */, true /* is_64bit */);
1149 break;
1150 }
1151}
1152
Mark Mendelle02d48f2014-01-15 11:19:23 -08001153void X86Mir2Lir::GenMulLong(Instruction::Code, RegLocation rl_dest, RegLocation rl_src1,
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001154 RegLocation rl_src2) {
Vladimir Marko8dea81c2014-06-06 14:50:36 +01001155 // All memory accesses below reference dalvik regs.
1156 ScopedMemRefType mem_ref_type(this, ResourceMask::kDalvikReg);
1157
Elena Sayapinadd644502014-07-01 18:39:52 +07001158 if (cu_->target64) {
Alexei Zavjalovd8191d02014-06-11 18:26:40 +07001159 if (rl_src1.is_const) {
1160 std::swap(rl_src1, rl_src2);
1161 }
1162 // Are we multiplying by a constant?
1163 if (rl_src2.is_const) {
1164 int64_t val = mir_graph_->ConstantValueWide(rl_src2);
1165 if (val == 0) {
1166 RegLocation rl_result = EvalLocWide(rl_dest, kCoreReg, true);
1167 OpRegReg(kOpXor, rl_result.reg, rl_result.reg);
1168 StoreValueWide(rl_dest, rl_result);
1169 return;
1170 } else if (val == 1) {
1171 StoreValueWide(rl_dest, rl_src1);
1172 return;
1173 } else if (val == 2) {
1174 GenAddLong(Instruction::ADD_LONG, rl_dest, rl_src1, rl_src1);
1175 return;
1176 } else if (IsPowerOfTwo(val)) {
1177 int shift_amount = LowestSetBit(val);
1178 if (!BadOverlap(rl_src1, rl_dest)) {
1179 rl_src1 = LoadValueWide(rl_src1, kCoreReg);
1180 RegLocation rl_result = GenShiftImmOpLong(Instruction::SHL_LONG, rl_dest,
1181 rl_src1, shift_amount);
1182 StoreValueWide(rl_dest, rl_result);
1183 return;
1184 }
1185 }
Alexei Zavjalovd8191d02014-06-11 18:26:40 +07001186 }
1187 rl_src1 = LoadValueWide(rl_src1, kCoreReg);
1188 rl_src2 = LoadValueWide(rl_src2, kCoreReg);
1189 RegLocation rl_result = EvalLocWide(rl_dest, kCoreReg, true);
1190 if (rl_result.reg.GetReg() == rl_src1.reg.GetReg() &&
1191 rl_result.reg.GetReg() == rl_src2.reg.GetReg()) {
1192 NewLIR2(kX86Imul64RR, rl_result.reg.GetReg(), rl_result.reg.GetReg());
1193 } else if (rl_result.reg.GetReg() != rl_src1.reg.GetReg() &&
1194 rl_result.reg.GetReg() == rl_src2.reg.GetReg()) {
1195 NewLIR2(kX86Imul64RR, rl_result.reg.GetReg(), rl_src1.reg.GetReg());
1196 } else if (rl_result.reg.GetReg() == rl_src1.reg.GetReg() &&
1197 rl_result.reg.GetReg() != rl_src2.reg.GetReg()) {
1198 NewLIR2(kX86Imul64RR, rl_result.reg.GetReg(), rl_src2.reg.GetReg());
1199 } else {
1200 OpRegCopy(rl_result.reg, rl_src1.reg);
1201 NewLIR2(kX86Imul64RR, rl_result.reg.GetReg(), rl_src2.reg.GetReg());
1202 }
1203 StoreValueWide(rl_dest, rl_result);
1204 return;
1205 }
1206
Mark Mendell4708dcd2014-01-22 09:05:18 -08001207 if (rl_src1.is_const) {
1208 std::swap(rl_src1, rl_src2);
1209 }
1210 // Are we multiplying by a constant?
1211 if (rl_src2.is_const) {
1212 // Do special compare/branch against simple const operand
1213 int64_t val = mir_graph_->ConstantValueWide(rl_src2);
1214 if (val == 0) {
1215 RegLocation rl_result = EvalLocWide(rl_dest, kCoreReg, true);
buzbee2700f7e2014-03-07 09:46:20 -08001216 OpRegReg(kOpXor, rl_result.reg.GetLow(), rl_result.reg.GetLow());
1217 OpRegReg(kOpXor, rl_result.reg.GetHigh(), rl_result.reg.GetHigh());
Mark Mendell4708dcd2014-01-22 09:05:18 -08001218 StoreValueWide(rl_dest, rl_result);
1219 return;
1220 } else if (val == 1) {
Mark Mendell4708dcd2014-01-22 09:05:18 -08001221 StoreValueWide(rl_dest, rl_src1);
1222 return;
1223 } else if (val == 2) {
1224 GenAddLong(Instruction::ADD_LONG, rl_dest, rl_src1, rl_src1);
1225 return;
1226 } else if (IsPowerOfTwo(val)) {
1227 int shift_amount = LowestSetBit(val);
1228 if (!BadOverlap(rl_src1, rl_dest)) {
1229 rl_src1 = LoadValueWide(rl_src1, kCoreReg);
1230 RegLocation rl_result = GenShiftImmOpLong(Instruction::SHL_LONG, rl_dest,
1231 rl_src1, shift_amount);
1232 StoreValueWide(rl_dest, rl_result);
1233 return;
1234 }
1235 }
1236
1237 // Okay, just bite the bullet and do it.
1238 int32_t val_lo = Low32Bits(val);
1239 int32_t val_hi = High32Bits(val);
1240 FlushAllRegs();
1241 LockCallTemps(); // Prepare for explicit register usage.
buzbee30adc732014-05-09 15:10:18 -07001242 rl_src1 = UpdateLocWideTyped(rl_src1, kCoreReg);
Mark Mendell4708dcd2014-01-22 09:05:18 -08001243 bool src1_in_reg = rl_src1.location == kLocPhysReg;
1244 int displacement = SRegOffset(rl_src1.s_reg_low);
1245
1246 // ECX <- 1H * 2L
1247 // EAX <- 1L * 2H
1248 if (src1_in_reg) {
buzbee2700f7e2014-03-07 09:46:20 -08001249 GenImulRegImm(rs_r1, rl_src1.reg.GetHigh(), val_lo);
1250 GenImulRegImm(rs_r0, rl_src1.reg.GetLow(), val_hi);
Mark Mendell4708dcd2014-01-22 09:05:18 -08001251 } else {
buzbee2700f7e2014-03-07 09:46:20 -08001252 GenImulMemImm(rs_r1, GetSRegHi(rl_src1.s_reg_low), displacement + HIWORD_OFFSET, val_lo);
1253 GenImulMemImm(rs_r0, rl_src1.s_reg_low, displacement + LOWORD_OFFSET, val_hi);
Mark Mendell4708dcd2014-01-22 09:05:18 -08001254 }
1255
1256 // ECX <- ECX + EAX (2H * 1L) + (1H * 2L)
buzbee091cc402014-03-31 10:14:40 -07001257 NewLIR2(kX86Add32RR, rs_r1.GetReg(), rs_r0.GetReg());
Mark Mendell4708dcd2014-01-22 09:05:18 -08001258
1259 // EAX <- 2L
buzbee2700f7e2014-03-07 09:46:20 -08001260 LoadConstantNoClobber(rs_r0, val_lo);
Mark Mendell4708dcd2014-01-22 09:05:18 -08001261
1262 // EDX:EAX <- 2L * 1L (double precision)
1263 if (src1_in_reg) {
buzbee2700f7e2014-03-07 09:46:20 -08001264 NewLIR1(kX86Mul32DaR, rl_src1.reg.GetLowReg());
Mark Mendell4708dcd2014-01-22 09:05:18 -08001265 } else {
buzbee091cc402014-03-31 10:14:40 -07001266 LIR *m = NewLIR2(kX86Mul32DaM, rs_rX86_SP.GetReg(), displacement + LOWORD_OFFSET);
Mark Mendell4708dcd2014-01-22 09:05:18 -08001267 AnnotateDalvikRegAccess(m, (displacement + LOWORD_OFFSET) >> 2,
1268 true /* is_load */, true /* is_64bit */);
1269 }
1270
1271 // EDX <- EDX + ECX (add high words)
buzbee091cc402014-03-31 10:14:40 -07001272 NewLIR2(kX86Add32RR, rs_r2.GetReg(), rs_r1.GetReg());
Mark Mendell4708dcd2014-01-22 09:05:18 -08001273
1274 // Result is EDX:EAX
buzbee091cc402014-03-31 10:14:40 -07001275 RegLocation rl_result = {kLocPhysReg, 1, 0, 0, 0, 0, 0, 0, 1,
1276 RegStorage::MakeRegPair(rs_r0, rs_r2), INVALID_SREG, INVALID_SREG};
Mark Mendell4708dcd2014-01-22 09:05:18 -08001277 StoreValueWide(rl_dest, rl_result);
1278 return;
1279 }
1280
1281 // Nope. Do it the hard way
Mark Mendellde99bba2014-02-14 12:15:02 -08001282 // Check for V*V. We can eliminate a multiply in that case, as 2L*1H == 2H*1L.
1283 bool is_square = mir_graph_->SRegToVReg(rl_src1.s_reg_low) ==
1284 mir_graph_->SRegToVReg(rl_src2.s_reg_low);
1285
Mark Mendell4708dcd2014-01-22 09:05:18 -08001286 FlushAllRegs();
1287 LockCallTemps(); // Prepare for explicit register usage.
buzbee30adc732014-05-09 15:10:18 -07001288 rl_src1 = UpdateLocWideTyped(rl_src1, kCoreReg);
1289 rl_src2 = UpdateLocWideTyped(rl_src2, kCoreReg);
Mark Mendell4708dcd2014-01-22 09:05:18 -08001290
1291 // At this point, the VRs are in their home locations.
1292 bool src1_in_reg = rl_src1.location == kLocPhysReg;
1293 bool src2_in_reg = rl_src2.location == kLocPhysReg;
1294
1295 // ECX <- 1H
1296 if (src1_in_reg) {
buzbee091cc402014-03-31 10:14:40 -07001297 NewLIR2(kX86Mov32RR, rs_r1.GetReg(), rl_src1.reg.GetHighReg());
Mark Mendell4708dcd2014-01-22 09:05:18 -08001298 } else {
Andreas Gampe3c12c512014-06-24 18:46:29 +00001299 LoadBaseDisp(rs_rX86_SP, SRegOffset(rl_src1.s_reg_low) + HIWORD_OFFSET, rs_r1, k32,
1300 kNotVolatile);
Mark Mendell4708dcd2014-01-22 09:05:18 -08001301 }
1302
Mark Mendellde99bba2014-02-14 12:15:02 -08001303 if (is_square) {
1304 // Take advantage of the fact that the values are the same.
1305 // ECX <- ECX * 2L (1H * 2L)
1306 if (src2_in_reg) {
buzbee091cc402014-03-31 10:14:40 -07001307 NewLIR2(kX86Imul32RR, rs_r1.GetReg(), rl_src2.reg.GetLowReg());
Mark Mendellde99bba2014-02-14 12:15:02 -08001308 } else {
1309 int displacement = SRegOffset(rl_src2.s_reg_low);
buzbee091cc402014-03-31 10:14:40 -07001310 LIR *m = NewLIR3(kX86Imul32RM, rs_r1.GetReg(), rs_rX86_SP.GetReg(),
1311 displacement + LOWORD_OFFSET);
Mark Mendellde99bba2014-02-14 12:15:02 -08001312 AnnotateDalvikRegAccess(m, (displacement + LOWORD_OFFSET) >> 2,
1313 true /* is_load */, true /* is_64bit */);
1314 }
Mark Mendell4708dcd2014-01-22 09:05:18 -08001315
Mark Mendellde99bba2014-02-14 12:15:02 -08001316 // ECX <- 2*ECX (2H * 1L) + (1H * 2L)
buzbee091cc402014-03-31 10:14:40 -07001317 NewLIR2(kX86Add32RR, rs_r1.GetReg(), rs_r1.GetReg());
Mark Mendell4708dcd2014-01-22 09:05:18 -08001318 } else {
Mark Mendellde99bba2014-02-14 12:15:02 -08001319 // EAX <- 2H
1320 if (src2_in_reg) {
buzbee091cc402014-03-31 10:14:40 -07001321 NewLIR2(kX86Mov32RR, rs_r0.GetReg(), rl_src2.reg.GetHighReg());
Mark Mendellde99bba2014-02-14 12:15:02 -08001322 } else {
Andreas Gampe3c12c512014-06-24 18:46:29 +00001323 LoadBaseDisp(rs_rX86_SP, SRegOffset(rl_src2.s_reg_low) + HIWORD_OFFSET, rs_r0, k32,
1324 kNotVolatile);
Mark Mendellde99bba2014-02-14 12:15:02 -08001325 }
Mark Mendell4708dcd2014-01-22 09:05:18 -08001326
Mark Mendellde99bba2014-02-14 12:15:02 -08001327 // EAX <- EAX * 1L (2H * 1L)
1328 if (src1_in_reg) {
buzbee091cc402014-03-31 10:14:40 -07001329 NewLIR2(kX86Imul32RR, rs_r0.GetReg(), rl_src1.reg.GetLowReg());
Mark Mendellde99bba2014-02-14 12:15:02 -08001330 } else {
1331 int displacement = SRegOffset(rl_src1.s_reg_low);
buzbee091cc402014-03-31 10:14:40 -07001332 LIR *m = NewLIR3(kX86Imul32RM, rs_r0.GetReg(), rs_rX86_SP.GetReg(),
1333 displacement + LOWORD_OFFSET);
Mark Mendellde99bba2014-02-14 12:15:02 -08001334 AnnotateDalvikRegAccess(m, (displacement + LOWORD_OFFSET) >> 2,
1335 true /* is_load */, true /* is_64bit */);
1336 }
Mark Mendell4708dcd2014-01-22 09:05:18 -08001337
Mark Mendellde99bba2014-02-14 12:15:02 -08001338 // ECX <- ECX * 2L (1H * 2L)
1339 if (src2_in_reg) {
buzbee091cc402014-03-31 10:14:40 -07001340 NewLIR2(kX86Imul32RR, rs_r1.GetReg(), rl_src2.reg.GetLowReg());
Mark Mendellde99bba2014-02-14 12:15:02 -08001341 } else {
1342 int displacement = SRegOffset(rl_src2.s_reg_low);
buzbee091cc402014-03-31 10:14:40 -07001343 LIR *m = NewLIR3(kX86Imul32RM, rs_r1.GetReg(), rs_rX86_SP.GetReg(),
1344 displacement + LOWORD_OFFSET);
Mark Mendellde99bba2014-02-14 12:15:02 -08001345 AnnotateDalvikRegAccess(m, (displacement + LOWORD_OFFSET) >> 2,
1346 true /* is_load */, true /* is_64bit */);
1347 }
1348
1349 // ECX <- ECX + EAX (2H * 1L) + (1H * 2L)
buzbee091cc402014-03-31 10:14:40 -07001350 NewLIR2(kX86Add32RR, rs_r1.GetReg(), rs_r0.GetReg());
Mark Mendellde99bba2014-02-14 12:15:02 -08001351 }
Mark Mendell4708dcd2014-01-22 09:05:18 -08001352
1353 // EAX <- 2L
1354 if (src2_in_reg) {
buzbee091cc402014-03-31 10:14:40 -07001355 NewLIR2(kX86Mov32RR, rs_r0.GetReg(), rl_src2.reg.GetLowReg());
Mark Mendell4708dcd2014-01-22 09:05:18 -08001356 } else {
Andreas Gampe3c12c512014-06-24 18:46:29 +00001357 LoadBaseDisp(rs_rX86_SP, SRegOffset(rl_src2.s_reg_low) + LOWORD_OFFSET, rs_r0, k32,
1358 kNotVolatile);
Mark Mendell4708dcd2014-01-22 09:05:18 -08001359 }
1360
1361 // EDX:EAX <- 2L * 1L (double precision)
1362 if (src1_in_reg) {
buzbee2700f7e2014-03-07 09:46:20 -08001363 NewLIR1(kX86Mul32DaR, rl_src1.reg.GetLowReg());
Mark Mendell4708dcd2014-01-22 09:05:18 -08001364 } else {
1365 int displacement = SRegOffset(rl_src1.s_reg_low);
buzbee091cc402014-03-31 10:14:40 -07001366 LIR *m = NewLIR2(kX86Mul32DaM, rs_rX86_SP.GetReg(), displacement + LOWORD_OFFSET);
Mark Mendell4708dcd2014-01-22 09:05:18 -08001367 AnnotateDalvikRegAccess(m, (displacement + LOWORD_OFFSET) >> 2,
1368 true /* is_load */, true /* is_64bit */);
1369 }
1370
1371 // EDX <- EDX + ECX (add high words)
buzbee091cc402014-03-31 10:14:40 -07001372 NewLIR2(kX86Add32RR, rs_r2.GetReg(), rs_r1.GetReg());
Mark Mendell4708dcd2014-01-22 09:05:18 -08001373
1374 // Result is EDX:EAX
buzbee091cc402014-03-31 10:14:40 -07001375 RegLocation rl_result = {kLocPhysReg, 1, 0, 0, 0, 0, 0, 0, 1,
buzbee2700f7e2014-03-07 09:46:20 -08001376 RegStorage::MakeRegPair(rs_r0, rs_r2), INVALID_SREG, INVALID_SREG};
Mark Mendell4708dcd2014-01-22 09:05:18 -08001377 StoreValueWide(rl_dest, rl_result);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001378}
Mark Mendelle02d48f2014-01-15 11:19:23 -08001379
1380void X86Mir2Lir::GenLongRegOrMemOp(RegLocation rl_dest, RegLocation rl_src,
1381 Instruction::Code op) {
1382 DCHECK_EQ(rl_dest.location, kLocPhysReg);
1383 X86OpCode x86op = GetOpcode(op, rl_dest, rl_src, false);
1384 if (rl_src.location == kLocPhysReg) {
1385 // Both operands are in registers.
Serguei Katkovab5545f2014-03-25 10:51:15 +07001386 // But we must ensure that rl_src is in pair
Elena Sayapinadd644502014-07-01 18:39:52 +07001387 if (cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -07001388 NewLIR2(x86op, rl_dest.reg.GetReg(), rl_src.reg.GetReg());
1389 } else {
1390 rl_src = LoadValueWide(rl_src, kCoreReg);
1391 if (rl_dest.reg.GetLowReg() == rl_src.reg.GetHighReg()) {
1392 // The registers are the same, so we would clobber it before the use.
1393 RegStorage temp_reg = AllocTemp();
1394 OpRegCopy(temp_reg, rl_dest.reg);
1395 rl_src.reg.SetHighReg(temp_reg.GetReg());
1396 }
1397 NewLIR2(x86op, rl_dest.reg.GetLowReg(), rl_src.reg.GetLowReg());
Mark Mendelle02d48f2014-01-15 11:19:23 -08001398
Chao-ying Fua0147762014-06-06 18:38:49 -07001399 x86op = GetOpcode(op, rl_dest, rl_src, true);
1400 NewLIR2(x86op, rl_dest.reg.GetHighReg(), rl_src.reg.GetHighReg());
1401 FreeTemp(rl_src.reg); // ???
1402 }
Mark Mendelle02d48f2014-01-15 11:19:23 -08001403 return;
1404 }
1405
1406 // RHS is in memory.
1407 DCHECK((rl_src.location == kLocDalvikFrame) ||
1408 (rl_src.location == kLocCompilerTemp));
buzbee2700f7e2014-03-07 09:46:20 -08001409 int r_base = TargetReg(kSp).GetReg();
Mark Mendelle02d48f2014-01-15 11:19:23 -08001410 int displacement = SRegOffset(rl_src.s_reg_low);
1411
Vladimir Marko8dea81c2014-06-06 14:50:36 +01001412 ScopedMemRefType mem_ref_type(this, ResourceMask::kDalvikReg);
Elena Sayapinadd644502014-07-01 18:39:52 +07001413 LIR *lir = NewLIR3(x86op, cu_->target64 ? rl_dest.reg.GetReg() : rl_dest.reg.GetLowReg(), r_base, displacement + LOWORD_OFFSET);
Mark Mendelle02d48f2014-01-15 11:19:23 -08001414 AnnotateDalvikRegAccess(lir, (displacement + LOWORD_OFFSET) >> 2,
1415 true /* is_load */, true /* is64bit */);
Elena Sayapinadd644502014-07-01 18:39:52 +07001416 if (!cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -07001417 x86op = GetOpcode(op, rl_dest, rl_src, true);
1418 lir = NewLIR3(x86op, rl_dest.reg.GetHighReg(), r_base, displacement + HIWORD_OFFSET);
Chao-ying Fu7e399fd2014-06-10 18:11:11 -07001419 AnnotateDalvikRegAccess(lir, (displacement + HIWORD_OFFSET) >> 2,
1420 true /* is_load */, true /* is64bit */);
Chao-ying Fua0147762014-06-06 18:38:49 -07001421 }
Brian Carlstrom7940e442013-07-12 13:46:57 -07001422}
1423
Mark Mendelle02d48f2014-01-15 11:19:23 -08001424void X86Mir2Lir::GenLongArith(RegLocation rl_dest, RegLocation rl_src, Instruction::Code op) {
buzbee30adc732014-05-09 15:10:18 -07001425 rl_dest = UpdateLocWideTyped(rl_dest, kCoreReg);
Mark Mendelle02d48f2014-01-15 11:19:23 -08001426 if (rl_dest.location == kLocPhysReg) {
1427 // Ensure we are in a register pair
1428 RegLocation rl_result = EvalLocWide(rl_dest, kCoreReg, true);
1429
buzbee30adc732014-05-09 15:10:18 -07001430 rl_src = UpdateLocWideTyped(rl_src, kCoreReg);
Mark Mendelle02d48f2014-01-15 11:19:23 -08001431 GenLongRegOrMemOp(rl_result, rl_src, op);
1432 StoreFinalValueWide(rl_dest, rl_result);
1433 return;
1434 }
1435
1436 // It wasn't in registers, so it better be in memory.
1437 DCHECK((rl_dest.location == kLocDalvikFrame) ||
1438 (rl_dest.location == kLocCompilerTemp));
1439 rl_src = LoadValueWide(rl_src, kCoreReg);
1440
1441 // Operate directly into memory.
1442 X86OpCode x86op = GetOpcode(op, rl_dest, rl_src, false);
buzbee2700f7e2014-03-07 09:46:20 -08001443 int r_base = TargetReg(kSp).GetReg();
Mark Mendelle02d48f2014-01-15 11:19:23 -08001444 int displacement = SRegOffset(rl_dest.s_reg_low);
1445
Vladimir Marko8dea81c2014-06-06 14:50:36 +01001446 ScopedMemRefType mem_ref_type(this, ResourceMask::kDalvikReg);
Chao-ying Fua0147762014-06-06 18:38:49 -07001447 LIR *lir = NewLIR3(x86op, r_base, displacement + LOWORD_OFFSET,
Elena Sayapinadd644502014-07-01 18:39:52 +07001448 cu_->target64 ? rl_src.reg.GetReg() : rl_src.reg.GetLowReg());
Mark Mendelle02d48f2014-01-15 11:19:23 -08001449 AnnotateDalvikRegAccess(lir, (displacement + LOWORD_OFFSET) >> 2,
Serguei Katkov217fe732014-03-27 14:41:56 +07001450 true /* is_load */, true /* is64bit */);
1451 AnnotateDalvikRegAccess(lir, (displacement + LOWORD_OFFSET) >> 2,
Mark Mendelle02d48f2014-01-15 11:19:23 -08001452 false /* is_load */, true /* is64bit */);
Elena Sayapinadd644502014-07-01 18:39:52 +07001453 if (!cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -07001454 x86op = GetOpcode(op, rl_dest, rl_src, true);
1455 lir = NewLIR3(x86op, r_base, displacement + HIWORD_OFFSET, rl_src.reg.GetHighReg());
Chao-ying Fu7e399fd2014-06-10 18:11:11 -07001456 AnnotateDalvikRegAccess(lir, (displacement + HIWORD_OFFSET) >> 2,
1457 true /* is_load */, true /* is64bit */);
1458 AnnotateDalvikRegAccess(lir, (displacement + HIWORD_OFFSET) >> 2,
1459 false /* is_load */, true /* is64bit */);
Chao-ying Fua0147762014-06-06 18:38:49 -07001460 }
buzbee2700f7e2014-03-07 09:46:20 -08001461 FreeTemp(rl_src.reg);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001462}
1463
Mark Mendelle02d48f2014-01-15 11:19:23 -08001464void X86Mir2Lir::GenLongArith(RegLocation rl_dest, RegLocation rl_src1,
1465 RegLocation rl_src2, Instruction::Code op,
1466 bool is_commutative) {
1467 // Is this really a 2 operand operation?
1468 switch (op) {
1469 case Instruction::ADD_LONG_2ADDR:
1470 case Instruction::SUB_LONG_2ADDR:
1471 case Instruction::AND_LONG_2ADDR:
1472 case Instruction::OR_LONG_2ADDR:
1473 case Instruction::XOR_LONG_2ADDR:
Mark Mendelle87f9b52014-04-30 14:13:18 -04001474 if (GenerateTwoOperandInstructions()) {
1475 GenLongArith(rl_dest, rl_src2, op);
1476 return;
1477 }
1478 break;
1479
Mark Mendelle02d48f2014-01-15 11:19:23 -08001480 default:
1481 break;
1482 }
1483
1484 if (rl_dest.location == kLocPhysReg) {
1485 RegLocation rl_result = LoadValueWide(rl_src1, kCoreReg);
1486
1487 // We are about to clobber the LHS, so it needs to be a temp.
1488 rl_result = ForceTempWide(rl_result);
1489
1490 // Perform the operation using the RHS.
buzbee30adc732014-05-09 15:10:18 -07001491 rl_src2 = UpdateLocWideTyped(rl_src2, kCoreReg);
Mark Mendelle02d48f2014-01-15 11:19:23 -08001492 GenLongRegOrMemOp(rl_result, rl_src2, op);
1493
1494 // And now record that the result is in the temp.
1495 StoreFinalValueWide(rl_dest, rl_result);
1496 return;
1497 }
1498
1499 // It wasn't in registers, so it better be in memory.
1500 DCHECK((rl_dest.location == kLocDalvikFrame) ||
1501 (rl_dest.location == kLocCompilerTemp));
buzbee30adc732014-05-09 15:10:18 -07001502 rl_src1 = UpdateLocWideTyped(rl_src1, kCoreReg);
1503 rl_src2 = UpdateLocWideTyped(rl_src2, kCoreReg);
Mark Mendelle02d48f2014-01-15 11:19:23 -08001504
1505 // Get one of the source operands into temporary register.
1506 rl_src1 = LoadValueWide(rl_src1, kCoreReg);
Elena Sayapinadd644502014-07-01 18:39:52 +07001507 if (cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -07001508 if (IsTemp(rl_src1.reg)) {
1509 GenLongRegOrMemOp(rl_src1, rl_src2, op);
1510 } else if (is_commutative) {
1511 rl_src2 = LoadValueWide(rl_src2, kCoreReg);
1512 // We need at least one of them to be a temporary.
1513 if (!IsTemp(rl_src2.reg)) {
1514 rl_src1 = ForceTempWide(rl_src1);
1515 GenLongRegOrMemOp(rl_src1, rl_src2, op);
1516 } else {
1517 GenLongRegOrMemOp(rl_src2, rl_src1, op);
1518 StoreFinalValueWide(rl_dest, rl_src2);
1519 return;
1520 }
1521 } else {
1522 // Need LHS to be the temp.
Mark Mendelle02d48f2014-01-15 11:19:23 -08001523 rl_src1 = ForceTempWide(rl_src1);
Yevgeny Rouban91b6ffa2014-03-07 14:35:44 +07001524 GenLongRegOrMemOp(rl_src1, rl_src2, op);
Mark Mendelle02d48f2014-01-15 11:19:23 -08001525 }
Mark Mendelle02d48f2014-01-15 11:19:23 -08001526 } else {
Chao-ying Fua0147762014-06-06 18:38:49 -07001527 if (IsTemp(rl_src1.reg.GetLow()) && IsTemp(rl_src1.reg.GetHigh())) {
1528 GenLongRegOrMemOp(rl_src1, rl_src2, op);
1529 } else if (is_commutative) {
1530 rl_src2 = LoadValueWide(rl_src2, kCoreReg);
1531 // We need at least one of them to be a temporary.
1532 if (!(IsTemp(rl_src2.reg.GetLow()) && IsTemp(rl_src2.reg.GetHigh()))) {
1533 rl_src1 = ForceTempWide(rl_src1);
1534 GenLongRegOrMemOp(rl_src1, rl_src2, op);
1535 } else {
1536 GenLongRegOrMemOp(rl_src2, rl_src1, op);
1537 StoreFinalValueWide(rl_dest, rl_src2);
1538 return;
1539 }
1540 } else {
1541 // Need LHS to be the temp.
1542 rl_src1 = ForceTempWide(rl_src1);
1543 GenLongRegOrMemOp(rl_src1, rl_src2, op);
1544 }
Mark Mendelle02d48f2014-01-15 11:19:23 -08001545 }
1546
1547 StoreFinalValueWide(rl_dest, rl_src1);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001548}
1549
Mark Mendelle02d48f2014-01-15 11:19:23 -08001550void X86Mir2Lir::GenAddLong(Instruction::Code opcode, RegLocation rl_dest,
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001551 RegLocation rl_src1, RegLocation rl_src2) {
Mark Mendelle02d48f2014-01-15 11:19:23 -08001552 GenLongArith(rl_dest, rl_src1, rl_src2, opcode, true);
1553}
1554
1555void X86Mir2Lir::GenSubLong(Instruction::Code opcode, RegLocation rl_dest,
1556 RegLocation rl_src1, RegLocation rl_src2) {
1557 GenLongArith(rl_dest, rl_src1, rl_src2, opcode, false);
1558}
1559
1560void X86Mir2Lir::GenAndLong(Instruction::Code opcode, RegLocation rl_dest,
1561 RegLocation rl_src1, RegLocation rl_src2) {
1562 GenLongArith(rl_dest, rl_src1, rl_src2, opcode, true);
1563}
1564
1565void X86Mir2Lir::GenOrLong(Instruction::Code opcode, RegLocation rl_dest,
1566 RegLocation rl_src1, RegLocation rl_src2) {
1567 GenLongArith(rl_dest, rl_src1, rl_src2, opcode, true);
1568}
1569
1570void X86Mir2Lir::GenXorLong(Instruction::Code opcode, RegLocation rl_dest,
1571 RegLocation rl_src1, RegLocation rl_src2) {
1572 GenLongArith(rl_dest, rl_src1, rl_src2, opcode, true);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001573}
1574
Serban Constantinescued65c5e2014-05-22 15:10:18 +01001575void X86Mir2Lir::GenNotLong(RegLocation rl_dest, RegLocation rl_src) {
Elena Sayapinadd644502014-07-01 18:39:52 +07001576 if (cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -07001577 rl_src = LoadValueWide(rl_src, kCoreReg);
1578 RegLocation rl_result;
1579 rl_result = EvalLocWide(rl_dest, kCoreReg, true);
1580 OpRegCopy(rl_result.reg, rl_src.reg);
1581 OpReg(kOpNot, rl_result.reg);
1582 StoreValueWide(rl_dest, rl_result);
1583 } else {
1584 LOG(FATAL) << "Unexpected use GenNotLong()";
1585 }
Serban Constantinescued65c5e2014-05-22 15:10:18 +01001586}
1587
1588void X86Mir2Lir::GenDivRemLong(Instruction::Code, RegLocation rl_dest, RegLocation rl_src1,
1589 RegLocation rl_src2, bool is_div) {
Elena Sayapinadd644502014-07-01 18:39:52 +07001590 if (!cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -07001591 LOG(FATAL) << "Unexpected use GenDivRemLong()";
1592 return;
1593 }
1594
1595 // We have to use fixed registers, so flush all the temps.
1596 FlushAllRegs();
1597 LockCallTemps(); // Prepare for explicit register usage.
1598
1599 // Load LHS into RAX.
1600 LoadValueDirectWideFixed(rl_src1, rs_r0q);
1601
1602 // Load RHS into RCX.
1603 LoadValueDirectWideFixed(rl_src2, rs_r1q);
1604
1605 // Copy LHS sign bit into RDX.
1606 NewLIR0(kx86Cqo64Da);
1607
1608 // Handle division by zero case.
1609 GenDivZeroCheckWide(rs_r1q);
1610
1611 // Have to catch 0x8000000000000000/-1 case, or we will get an exception!
1612 NewLIR2(kX86Cmp64RI8, rs_r1q.GetReg(), -1);
1613 LIR *minus_one_branch = NewLIR2(kX86Jcc8, 0, kX86CondNe);
1614
1615 // RHS is -1.
Dmitry Petrochenko3157f9a2014-06-18 19:11:41 +07001616 LoadConstantWide(rs_r6q, 0x8000000000000000);
1617 NewLIR2(kX86Cmp64RR, rs_r0q.GetReg(), rs_r6q.GetReg());
Chao-ying Fua0147762014-06-06 18:38:49 -07001618 LIR * minint_branch = NewLIR2(kX86Jcc8, 0, kX86CondNe);
1619
1620 // In 0x8000000000000000/-1 case.
1621 if (!is_div) {
1622 // For DIV, RAX is already right. For REM, we need RDX 0.
1623 NewLIR2(kX86Xor64RR, rs_r2q.GetReg(), rs_r2q.GetReg());
1624 }
1625 LIR* done = NewLIR1(kX86Jmp8, 0);
1626
1627 // Expected case.
1628 minus_one_branch->target = NewLIR0(kPseudoTargetLabel);
1629 minint_branch->target = minus_one_branch->target;
1630 NewLIR1(kX86Idivmod64DaR, rs_r1q.GetReg());
1631 done->target = NewLIR0(kPseudoTargetLabel);
1632
1633 // Result is in RAX for div and RDX for rem.
1634 RegLocation rl_result = {kLocPhysReg, 1, 0, 0, 0, 0, 0, 0, 1, rs_r0q, INVALID_SREG, INVALID_SREG};
1635 if (!is_div) {
1636 rl_result.reg.SetReg(r2q);
1637 }
1638
1639 StoreValueWide(rl_dest, rl_result);
Serban Constantinescued65c5e2014-05-22 15:10:18 +01001640}
1641
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001642void X86Mir2Lir::GenNegLong(RegLocation rl_dest, RegLocation rl_src) {
Mark Mendelle02d48f2014-01-15 11:19:23 -08001643 rl_src = LoadValueWide(rl_src, kCoreReg);
Chao-ying Fua0147762014-06-06 18:38:49 -07001644 RegLocation rl_result;
Elena Sayapinadd644502014-07-01 18:39:52 +07001645 if (cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -07001646 rl_result = EvalLocWide(rl_dest, kCoreReg, true);
1647 OpRegReg(kOpNeg, rl_result.reg, rl_src.reg);
1648 } else {
1649 rl_result = ForceTempWide(rl_src);
1650 if (((rl_dest.location == kLocPhysReg) && (rl_src.location == kLocPhysReg)) &&
1651 ((rl_dest.reg.GetLowReg() == rl_src.reg.GetHighReg()))) {
1652 // The registers are the same, so we would clobber it before the use.
1653 RegStorage temp_reg = AllocTemp();
1654 OpRegCopy(temp_reg, rl_result.reg);
1655 rl_result.reg.SetHighReg(temp_reg.GetReg());
1656 }
1657 OpRegReg(kOpNeg, rl_result.reg.GetLow(), rl_result.reg.GetLow()); // rLow = -rLow
1658 OpRegImm(kOpAdc, rl_result.reg.GetHigh(), 0); // rHigh = rHigh + CF
1659 OpRegReg(kOpNeg, rl_result.reg.GetHigh(), rl_result.reg.GetHigh()); // rHigh = -rHigh
Mark Mendelle02d48f2014-01-15 11:19:23 -08001660 }
Brian Carlstrom7940e442013-07-12 13:46:57 -07001661 StoreValueWide(rl_dest, rl_result);
1662}
1663
buzbee091cc402014-03-31 10:14:40 -07001664void X86Mir2Lir::OpRegThreadMem(OpKind op, RegStorage r_dest, ThreadOffset<4> thread_offset) {
Andreas Gampe2f244e92014-05-08 03:35:25 -07001665 DCHECK_EQ(kX86, cu_->instruction_set);
1666 X86OpCode opcode = kX86Bkpt;
1667 switch (op) {
1668 case kOpCmp: opcode = kX86Cmp32RT; break;
1669 case kOpMov: opcode = kX86Mov32RT; break;
1670 default:
1671 LOG(FATAL) << "Bad opcode: " << op;
1672 break;
1673 }
1674 NewLIR2(opcode, r_dest.GetReg(), thread_offset.Int32Value());
1675}
1676
1677void X86Mir2Lir::OpRegThreadMem(OpKind op, RegStorage r_dest, ThreadOffset<8> thread_offset) {
1678 DCHECK_EQ(kX86_64, cu_->instruction_set);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001679 X86OpCode opcode = kX86Bkpt;
Elena Sayapinadd644502014-07-01 18:39:52 +07001680 if (cu_->target64 && r_dest.Is64BitSolo()) {
Dmitry Petrochenko9ee801f2014-05-12 11:31:37 +07001681 switch (op) {
1682 case kOpCmp: opcode = kX86Cmp64RT; break;
1683 case kOpMov: opcode = kX86Mov64RT; break;
1684 default:
1685 LOG(FATAL) << "Bad opcode(OpRegThreadMem 64): " << op;
1686 break;
1687 }
1688 } else {
1689 switch (op) {
1690 case kOpCmp: opcode = kX86Cmp32RT; break;
1691 case kOpMov: opcode = kX86Mov32RT; break;
1692 default:
1693 LOG(FATAL) << "Bad opcode: " << op;
1694 break;
1695 }
Brian Carlstrom7940e442013-07-12 13:46:57 -07001696 }
buzbee091cc402014-03-31 10:14:40 -07001697 NewLIR2(opcode, r_dest.GetReg(), thread_offset.Int32Value());
Brian Carlstrom7940e442013-07-12 13:46:57 -07001698}
1699
1700/*
1701 * Generate array load
1702 */
1703void X86Mir2Lir::GenArrayGet(int opt_flags, OpSize size, RegLocation rl_array,
Ian Rogersa9a82542013-10-04 11:17:26 -07001704 RegLocation rl_index, RegLocation rl_dest, int scale) {
buzbee091cc402014-03-31 10:14:40 -07001705 RegisterClass reg_class = RegClassBySize(size);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001706 int len_offset = mirror::Array::LengthOffset().Int32Value();
Brian Carlstrom7940e442013-07-12 13:46:57 -07001707 RegLocation rl_result;
buzbeea0cd2d72014-06-01 09:33:49 -07001708 rl_array = LoadValue(rl_array, kRefReg);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001709
Mark Mendell343adb52013-12-18 06:02:17 -08001710 int data_offset;
buzbee695d13a2014-04-19 13:32:20 -07001711 if (size == k64 || size == kDouble) {
Brian Carlstrom7940e442013-07-12 13:46:57 -07001712 data_offset = mirror::Array::DataOffset(sizeof(int64_t)).Int32Value();
1713 } else {
1714 data_offset = mirror::Array::DataOffset(sizeof(int32_t)).Int32Value();
1715 }
1716
Mark Mendell343adb52013-12-18 06:02:17 -08001717 bool constant_index = rl_index.is_const;
1718 int32_t constant_index_value = 0;
1719 if (!constant_index) {
1720 rl_index = LoadValue(rl_index, kCoreReg);
1721 } else {
1722 constant_index_value = mir_graph_->ConstantValue(rl_index);
1723 // If index is constant, just fold it into the data offset
1724 data_offset += constant_index_value << scale;
1725 // treat as non array below
buzbee2700f7e2014-03-07 09:46:20 -08001726 rl_index.reg = RegStorage::InvalidReg();
Mark Mendell343adb52013-12-18 06:02:17 -08001727 }
1728
Brian Carlstrom7940e442013-07-12 13:46:57 -07001729 /* null object? */
buzbee2700f7e2014-03-07 09:46:20 -08001730 GenNullCheck(rl_array.reg, opt_flags);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001731
1732 if (!(opt_flags & MIR_IGNORE_RANGE_CHECK)) {
Mark Mendell343adb52013-12-18 06:02:17 -08001733 if (constant_index) {
Mingyao Yang80365d92014-04-18 12:10:58 -07001734 GenArrayBoundsCheck(constant_index_value, rl_array.reg, len_offset);
Mark Mendell343adb52013-12-18 06:02:17 -08001735 } else {
Mingyao Yang80365d92014-04-18 12:10:58 -07001736 GenArrayBoundsCheck(rl_index.reg, rl_array.reg, len_offset);
Mark Mendell343adb52013-12-18 06:02:17 -08001737 }
Brian Carlstrom7940e442013-07-12 13:46:57 -07001738 }
Mark Mendell343adb52013-12-18 06:02:17 -08001739 rl_result = EvalLoc(rl_dest, reg_class, true);
Vladimir Marko3bf7c602014-05-07 14:55:43 +01001740 LoadBaseIndexedDisp(rl_array.reg, rl_index.reg, scale, data_offset, rl_result.reg, size);
buzbee695d13a2014-04-19 13:32:20 -07001741 if ((size == k64) || (size == kDouble)) {
Brian Carlstrom7940e442013-07-12 13:46:57 -07001742 StoreValueWide(rl_dest, rl_result);
1743 } else {
Brian Carlstrom7940e442013-07-12 13:46:57 -07001744 StoreValue(rl_dest, rl_result);
1745 }
1746}
1747
1748/*
1749 * Generate array store
1750 *
1751 */
1752void X86Mir2Lir::GenArrayPut(int opt_flags, OpSize size, RegLocation rl_array,
Ian Rogersa9a82542013-10-04 11:17:26 -07001753 RegLocation rl_index, RegLocation rl_src, int scale, bool card_mark) {
buzbee091cc402014-03-31 10:14:40 -07001754 RegisterClass reg_class = RegClassBySize(size);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001755 int len_offset = mirror::Array::LengthOffset().Int32Value();
1756 int data_offset;
1757
buzbee695d13a2014-04-19 13:32:20 -07001758 if (size == k64 || size == kDouble) {
Brian Carlstrom7940e442013-07-12 13:46:57 -07001759 data_offset = mirror::Array::DataOffset(sizeof(int64_t)).Int32Value();
1760 } else {
1761 data_offset = mirror::Array::DataOffset(sizeof(int32_t)).Int32Value();
1762 }
1763
buzbeea0cd2d72014-06-01 09:33:49 -07001764 rl_array = LoadValue(rl_array, kRefReg);
Mark Mendell343adb52013-12-18 06:02:17 -08001765 bool constant_index = rl_index.is_const;
1766 int32_t constant_index_value = 0;
1767 if (!constant_index) {
1768 rl_index = LoadValue(rl_index, kCoreReg);
1769 } else {
1770 // If index is constant, just fold it into the data offset
1771 constant_index_value = mir_graph_->ConstantValue(rl_index);
1772 data_offset += constant_index_value << scale;
1773 // treat as non array below
buzbee2700f7e2014-03-07 09:46:20 -08001774 rl_index.reg = RegStorage::InvalidReg();
Mark Mendell343adb52013-12-18 06:02:17 -08001775 }
Brian Carlstrom7940e442013-07-12 13:46:57 -07001776
1777 /* null object? */
buzbee2700f7e2014-03-07 09:46:20 -08001778 GenNullCheck(rl_array.reg, opt_flags);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001779
1780 if (!(opt_flags & MIR_IGNORE_RANGE_CHECK)) {
Mark Mendell343adb52013-12-18 06:02:17 -08001781 if (constant_index) {
Mingyao Yang80365d92014-04-18 12:10:58 -07001782 GenArrayBoundsCheck(constant_index_value, rl_array.reg, len_offset);
Mark Mendell343adb52013-12-18 06:02:17 -08001783 } else {
Mingyao Yang80365d92014-04-18 12:10:58 -07001784 GenArrayBoundsCheck(rl_index.reg, rl_array.reg, len_offset);
Mark Mendell343adb52013-12-18 06:02:17 -08001785 }
Brian Carlstrom7940e442013-07-12 13:46:57 -07001786 }
buzbee695d13a2014-04-19 13:32:20 -07001787 if ((size == k64) || (size == kDouble)) {
Brian Carlstrom7940e442013-07-12 13:46:57 -07001788 rl_src = LoadValueWide(rl_src, reg_class);
1789 } else {
1790 rl_src = LoadValue(rl_src, reg_class);
1791 }
1792 // If the src reg can't be byte accessed, move it to a temp first.
Chao-ying Fu7e399fd2014-06-10 18:11:11 -07001793 if ((size == kSignedByte || size == kUnsignedByte) && !IsByteRegister(rl_src.reg)) {
buzbee2700f7e2014-03-07 09:46:20 -08001794 RegStorage temp = AllocTemp();
1795 OpRegCopy(temp, rl_src.reg);
Vladimir Marko3bf7c602014-05-07 14:55:43 +01001796 StoreBaseIndexedDisp(rl_array.reg, rl_index.reg, scale, data_offset, temp, size);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001797 } else {
Vladimir Marko3bf7c602014-05-07 14:55:43 +01001798 StoreBaseIndexedDisp(rl_array.reg, rl_index.reg, scale, data_offset, rl_src.reg, size);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001799 }
Ian Rogersa9a82542013-10-04 11:17:26 -07001800 if (card_mark) {
Ian Rogers773aab12013-10-14 13:50:10 -07001801 // Free rl_index if its a temp. Ensures there are 2 free regs for card mark.
Mark Mendell343adb52013-12-18 06:02:17 -08001802 if (!constant_index) {
buzbee091cc402014-03-31 10:14:40 -07001803 FreeTemp(rl_index.reg);
Mark Mendell343adb52013-12-18 06:02:17 -08001804 }
buzbee2700f7e2014-03-07 09:46:20 -08001805 MarkGCCard(rl_src.reg, rl_array.reg);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001806 }
1807}
1808
Mark Mendell4708dcd2014-01-22 09:05:18 -08001809RegLocation X86Mir2Lir::GenShiftImmOpLong(Instruction::Code opcode, RegLocation rl_dest,
1810 RegLocation rl_src, int shift_amount) {
Mark Mendelle87f9b52014-04-30 14:13:18 -04001811 RegLocation rl_result = EvalLocWide(rl_dest, kCoreReg, true);
Elena Sayapinadd644502014-07-01 18:39:52 +07001812 if (cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -07001813 OpKind op = static_cast<OpKind>(0); /* Make gcc happy */
1814 switch (opcode) {
1815 case Instruction::SHL_LONG:
1816 case Instruction::SHL_LONG_2ADDR:
1817 op = kOpLsl;
1818 break;
1819 case Instruction::SHR_LONG:
1820 case Instruction::SHR_LONG_2ADDR:
1821 op = kOpAsr;
1822 break;
1823 case Instruction::USHR_LONG:
1824 case Instruction::USHR_LONG_2ADDR:
1825 op = kOpLsr;
1826 break;
1827 default:
1828 LOG(FATAL) << "Unexpected case";
1829 }
1830 OpRegRegImm(op, rl_result.reg, rl_src.reg, shift_amount);
1831 } else {
1832 switch (opcode) {
1833 case Instruction::SHL_LONG:
1834 case Instruction::SHL_LONG_2ADDR:
1835 DCHECK_NE(shift_amount, 1); // Prevent a double store from happening.
1836 if (shift_amount == 32) {
1837 OpRegCopy(rl_result.reg.GetHigh(), rl_src.reg.GetLow());
1838 LoadConstant(rl_result.reg.GetLow(), 0);
1839 } else if (shift_amount > 31) {
1840 OpRegCopy(rl_result.reg.GetHigh(), rl_src.reg.GetLow());
1841 NewLIR2(kX86Sal32RI, rl_result.reg.GetHighReg(), shift_amount - 32);
1842 LoadConstant(rl_result.reg.GetLow(), 0);
1843 } else {
Mark Mendellb9b9d662014-06-16 13:03:42 -04001844 OpRegCopy(rl_result.reg.GetLow(), rl_src.reg.GetLow());
Chao-ying Fua0147762014-06-06 18:38:49 -07001845 OpRegCopy(rl_result.reg.GetHigh(), rl_src.reg.GetHigh());
1846 NewLIR3(kX86Shld32RRI, rl_result.reg.GetHighReg(), rl_result.reg.GetLowReg(),
1847 shift_amount);
1848 NewLIR2(kX86Sal32RI, rl_result.reg.GetLowReg(), shift_amount);
1849 }
1850 break;
1851 case Instruction::SHR_LONG:
1852 case Instruction::SHR_LONG_2ADDR:
1853 if (shift_amount == 32) {
1854 OpRegCopy(rl_result.reg.GetLow(), rl_src.reg.GetHigh());
1855 OpRegCopy(rl_result.reg.GetHigh(), rl_src.reg.GetHigh());
1856 NewLIR2(kX86Sar32RI, rl_result.reg.GetHighReg(), 31);
1857 } else if (shift_amount > 31) {
1858 OpRegCopy(rl_result.reg.GetLow(), rl_src.reg.GetHigh());
1859 OpRegCopy(rl_result.reg.GetHigh(), rl_src.reg.GetHigh());
1860 NewLIR2(kX86Sar32RI, rl_result.reg.GetLowReg(), shift_amount - 32);
1861 NewLIR2(kX86Sar32RI, rl_result.reg.GetHighReg(), 31);
1862 } else {
Mark Mendellb9b9d662014-06-16 13:03:42 -04001863 OpRegCopy(rl_result.reg.GetLow(), rl_src.reg.GetLow());
Chao-ying Fua0147762014-06-06 18:38:49 -07001864 OpRegCopy(rl_result.reg.GetHigh(), rl_src.reg.GetHigh());
1865 NewLIR3(kX86Shrd32RRI, rl_result.reg.GetLowReg(), rl_result.reg.GetHighReg(),
1866 shift_amount);
1867 NewLIR2(kX86Sar32RI, rl_result.reg.GetHighReg(), shift_amount);
1868 }
1869 break;
1870 case Instruction::USHR_LONG:
1871 case Instruction::USHR_LONG_2ADDR:
1872 if (shift_amount == 32) {
1873 OpRegCopy(rl_result.reg.GetLow(), rl_src.reg.GetHigh());
1874 LoadConstant(rl_result.reg.GetHigh(), 0);
1875 } else if (shift_amount > 31) {
1876 OpRegCopy(rl_result.reg.GetLow(), rl_src.reg.GetHigh());
1877 NewLIR2(kX86Shr32RI, rl_result.reg.GetLowReg(), shift_amount - 32);
1878 LoadConstant(rl_result.reg.GetHigh(), 0);
1879 } else {
Mark Mendellb9b9d662014-06-16 13:03:42 -04001880 OpRegCopy(rl_result.reg.GetLow(), rl_src.reg.GetLow());
Chao-ying Fua0147762014-06-06 18:38:49 -07001881 OpRegCopy(rl_result.reg.GetHigh(), rl_src.reg.GetHigh());
1882 NewLIR3(kX86Shrd32RRI, rl_result.reg.GetLowReg(), rl_result.reg.GetHighReg(),
1883 shift_amount);
1884 NewLIR2(kX86Shr32RI, rl_result.reg.GetHighReg(), shift_amount);
1885 }
1886 break;
1887 default:
1888 LOG(FATAL) << "Unexpected case";
1889 }
Mark Mendell4708dcd2014-01-22 09:05:18 -08001890 }
1891 return rl_result;
1892}
1893
Brian Carlstrom7940e442013-07-12 13:46:57 -07001894void X86Mir2Lir::GenShiftImmOpLong(Instruction::Code opcode, RegLocation rl_dest,
Mark Mendell4708dcd2014-01-22 09:05:18 -08001895 RegLocation rl_src, RegLocation rl_shift) {
1896 // Per spec, we only care about low 6 bits of shift amount.
1897 int shift_amount = mir_graph_->ConstantValue(rl_shift) & 0x3f;
1898 if (shift_amount == 0) {
1899 rl_src = LoadValueWide(rl_src, kCoreReg);
1900 StoreValueWide(rl_dest, rl_src);
1901 return;
1902 } else if (shift_amount == 1 &&
1903 (opcode == Instruction::SHL_LONG || opcode == Instruction::SHL_LONG_2ADDR)) {
1904 // Need to handle this here to avoid calling StoreValueWide twice.
1905 GenAddLong(Instruction::ADD_LONG, rl_dest, rl_src, rl_src);
1906 return;
1907 }
1908 if (BadOverlap(rl_src, rl_dest)) {
1909 GenShiftOpLong(opcode, rl_dest, rl_src, rl_shift);
1910 return;
1911 }
1912 rl_src = LoadValueWide(rl_src, kCoreReg);
1913 RegLocation rl_result = GenShiftImmOpLong(opcode, rl_dest, rl_src, shift_amount);
1914 StoreValueWide(rl_dest, rl_result);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001915}
1916
1917void X86Mir2Lir::GenArithImmOpLong(Instruction::Code opcode,
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001918 RegLocation rl_dest, RegLocation rl_src1, RegLocation rl_src2) {
Chao-ying Fua0147762014-06-06 18:38:49 -07001919 bool isConstSuccess = false;
Mark Mendelle02d48f2014-01-15 11:19:23 -08001920 switch (opcode) {
1921 case Instruction::ADD_LONG:
1922 case Instruction::AND_LONG:
1923 case Instruction::OR_LONG:
1924 case Instruction::XOR_LONG:
1925 if (rl_src2.is_const) {
Chao-ying Fua0147762014-06-06 18:38:49 -07001926 isConstSuccess = GenLongLongImm(rl_dest, rl_src1, rl_src2, opcode);
Mark Mendelle02d48f2014-01-15 11:19:23 -08001927 } else {
1928 DCHECK(rl_src1.is_const);
Chao-ying Fua0147762014-06-06 18:38:49 -07001929 isConstSuccess = GenLongLongImm(rl_dest, rl_src2, rl_src1, opcode);
Mark Mendelle02d48f2014-01-15 11:19:23 -08001930 }
1931 break;
1932 case Instruction::SUB_LONG:
1933 case Instruction::SUB_LONG_2ADDR:
1934 if (rl_src2.is_const) {
Chao-ying Fua0147762014-06-06 18:38:49 -07001935 isConstSuccess = GenLongLongImm(rl_dest, rl_src1, rl_src2, opcode);
Mark Mendelle02d48f2014-01-15 11:19:23 -08001936 } else {
1937 GenSubLong(opcode, rl_dest, rl_src1, rl_src2);
Chao-ying Fua0147762014-06-06 18:38:49 -07001938 isConstSuccess = true;
Mark Mendelle02d48f2014-01-15 11:19:23 -08001939 }
1940 break;
1941 case Instruction::ADD_LONG_2ADDR:
1942 case Instruction::OR_LONG_2ADDR:
1943 case Instruction::XOR_LONG_2ADDR:
1944 case Instruction::AND_LONG_2ADDR:
1945 if (rl_src2.is_const) {
Mark Mendelle87f9b52014-04-30 14:13:18 -04001946 if (GenerateTwoOperandInstructions()) {
Chao-ying Fua0147762014-06-06 18:38:49 -07001947 isConstSuccess = GenLongImm(rl_dest, rl_src2, opcode);
Mark Mendelle87f9b52014-04-30 14:13:18 -04001948 } else {
Chao-ying Fua0147762014-06-06 18:38:49 -07001949 isConstSuccess = GenLongLongImm(rl_dest, rl_src1, rl_src2, opcode);
Mark Mendelle87f9b52014-04-30 14:13:18 -04001950 }
Mark Mendelle02d48f2014-01-15 11:19:23 -08001951 } else {
1952 DCHECK(rl_src1.is_const);
Chao-ying Fua0147762014-06-06 18:38:49 -07001953 isConstSuccess = GenLongLongImm(rl_dest, rl_src2, rl_src1, opcode);
Mark Mendelle02d48f2014-01-15 11:19:23 -08001954 }
1955 break;
1956 default:
Chao-ying Fua0147762014-06-06 18:38:49 -07001957 isConstSuccess = false;
Mark Mendelle02d48f2014-01-15 11:19:23 -08001958 break;
1959 }
Chao-ying Fua0147762014-06-06 18:38:49 -07001960
1961 if (!isConstSuccess) {
1962 // Default - bail to non-const handler.
1963 GenArithOpLong(opcode, rl_dest, rl_src1, rl_src2);
1964 }
Mark Mendelle02d48f2014-01-15 11:19:23 -08001965}
1966
1967bool X86Mir2Lir::IsNoOp(Instruction::Code op, int32_t value) {
1968 switch (op) {
1969 case Instruction::AND_LONG_2ADDR:
1970 case Instruction::AND_LONG:
1971 return value == -1;
1972 case Instruction::OR_LONG:
1973 case Instruction::OR_LONG_2ADDR:
1974 case Instruction::XOR_LONG:
1975 case Instruction::XOR_LONG_2ADDR:
1976 return value == 0;
1977 default:
1978 return false;
1979 }
1980}
1981
1982X86OpCode X86Mir2Lir::GetOpcode(Instruction::Code op, RegLocation dest, RegLocation rhs,
1983 bool is_high_op) {
1984 bool rhs_in_mem = rhs.location != kLocPhysReg;
1985 bool dest_in_mem = dest.location != kLocPhysReg;
Elena Sayapinadd644502014-07-01 18:39:52 +07001986 bool is64Bit = cu_->target64;
Mark Mendelle02d48f2014-01-15 11:19:23 -08001987 DCHECK(!rhs_in_mem || !dest_in_mem);
1988 switch (op) {
1989 case Instruction::ADD_LONG:
1990 case Instruction::ADD_LONG_2ADDR:
1991 if (dest_in_mem) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07001992 return is64Bit ? kX86Add64MR : is_high_op ? kX86Adc32MR : kX86Add32MR;
Mark Mendelle02d48f2014-01-15 11:19:23 -08001993 } else if (rhs_in_mem) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07001994 return is64Bit ? kX86Add64RM : is_high_op ? kX86Adc32RM : kX86Add32RM;
Mark Mendelle02d48f2014-01-15 11:19:23 -08001995 }
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07001996 return is64Bit ? kX86Add64RR : is_high_op ? kX86Adc32RR : kX86Add32RR;
Mark Mendelle02d48f2014-01-15 11:19:23 -08001997 case Instruction::SUB_LONG:
1998 case Instruction::SUB_LONG_2ADDR:
1999 if (dest_in_mem) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002000 return is64Bit ? kX86Sub64MR : is_high_op ? kX86Sbb32MR : kX86Sub32MR;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002001 } else if (rhs_in_mem) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002002 return is64Bit ? kX86Sub64RM : is_high_op ? kX86Sbb32RM : kX86Sub32RM;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002003 }
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002004 return is64Bit ? kX86Sub64RR : is_high_op ? kX86Sbb32RR : kX86Sub32RR;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002005 case Instruction::AND_LONG_2ADDR:
2006 case Instruction::AND_LONG:
2007 if (dest_in_mem) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002008 return is64Bit ? kX86And64MR : kX86And32MR;
2009 }
2010 if (is64Bit) {
2011 return rhs_in_mem ? kX86And64RM : kX86And64RR;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002012 }
2013 return rhs_in_mem ? kX86And32RM : kX86And32RR;
2014 case Instruction::OR_LONG:
2015 case Instruction::OR_LONG_2ADDR:
2016 if (dest_in_mem) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002017 return is64Bit ? kX86Or64MR : kX86Or32MR;
2018 }
2019 if (is64Bit) {
2020 return rhs_in_mem ? kX86Or64RM : kX86Or64RR;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002021 }
2022 return rhs_in_mem ? kX86Or32RM : kX86Or32RR;
2023 case Instruction::XOR_LONG:
2024 case Instruction::XOR_LONG_2ADDR:
2025 if (dest_in_mem) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002026 return is64Bit ? kX86Xor64MR : kX86Xor32MR;
2027 }
2028 if (is64Bit) {
2029 return rhs_in_mem ? kX86Xor64RM : kX86Xor64RR;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002030 }
2031 return rhs_in_mem ? kX86Xor32RM : kX86Xor32RR;
2032 default:
2033 LOG(FATAL) << "Unexpected opcode: " << op;
2034 return kX86Add32RR;
2035 }
2036}
2037
2038X86OpCode X86Mir2Lir::GetOpcode(Instruction::Code op, RegLocation loc, bool is_high_op,
2039 int32_t value) {
2040 bool in_mem = loc.location != kLocPhysReg;
Elena Sayapinadd644502014-07-01 18:39:52 +07002041 bool is64Bit = cu_->target64;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002042 bool byte_imm = IS_SIMM8(value);
buzbee091cc402014-03-31 10:14:40 -07002043 DCHECK(in_mem || !loc.reg.IsFloat());
Mark Mendelle02d48f2014-01-15 11:19:23 -08002044 switch (op) {
2045 case Instruction::ADD_LONG:
2046 case Instruction::ADD_LONG_2ADDR:
2047 if (byte_imm) {
2048 if (in_mem) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002049 return is64Bit ? kX86Add64MI8 : is_high_op ? kX86Adc32MI8 : kX86Add32MI8;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002050 }
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002051 return is64Bit ? kX86Add64RI8 : is_high_op ? kX86Adc32RI8 : kX86Add32RI8;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002052 }
2053 if (in_mem) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002054 return is64Bit ? kX86Add64MI : is_high_op ? kX86Adc32MI : kX86Add32MI;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002055 }
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002056 return is64Bit ? kX86Add64RI : is_high_op ? kX86Adc32RI : kX86Add32RI;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002057 case Instruction::SUB_LONG:
2058 case Instruction::SUB_LONG_2ADDR:
2059 if (byte_imm) {
2060 if (in_mem) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002061 return is64Bit ? kX86Sub64MI8 : is_high_op ? kX86Sbb32MI8 : kX86Sub32MI8;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002062 }
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002063 return is64Bit ? kX86Sub64RI8 : is_high_op ? kX86Sbb32RI8 : kX86Sub32RI8;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002064 }
2065 if (in_mem) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002066 return is64Bit ? kX86Sub64MI : is_high_op ? kX86Sbb32MI : kX86Sub32MI;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002067 }
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002068 return is64Bit ? kX86Sub64RI : is_high_op ? kX86Sbb32RI : kX86Sub32RI;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002069 case Instruction::AND_LONG_2ADDR:
2070 case Instruction::AND_LONG:
2071 if (byte_imm) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002072 if (is64Bit) {
2073 return in_mem ? kX86And64MI8 : kX86And64RI8;
2074 }
Mark Mendelle02d48f2014-01-15 11:19:23 -08002075 return in_mem ? kX86And32MI8 : kX86And32RI8;
2076 }
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002077 if (is64Bit) {
2078 return in_mem ? kX86And64MI : kX86And64RI;
2079 }
Mark Mendelle02d48f2014-01-15 11:19:23 -08002080 return in_mem ? kX86And32MI : kX86And32RI;
2081 case Instruction::OR_LONG:
2082 case Instruction::OR_LONG_2ADDR:
2083 if (byte_imm) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002084 if (is64Bit) {
2085 return in_mem ? kX86Or64MI8 : kX86Or64RI8;
2086 }
Mark Mendelle02d48f2014-01-15 11:19:23 -08002087 return in_mem ? kX86Or32MI8 : kX86Or32RI8;
2088 }
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002089 if (is64Bit) {
2090 return in_mem ? kX86Or64MI : kX86Or64RI;
2091 }
Mark Mendelle02d48f2014-01-15 11:19:23 -08002092 return in_mem ? kX86Or32MI : kX86Or32RI;
2093 case Instruction::XOR_LONG:
2094 case Instruction::XOR_LONG_2ADDR:
2095 if (byte_imm) {
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002096 if (is64Bit) {
2097 return in_mem ? kX86Xor64MI8 : kX86Xor64RI8;
2098 }
Mark Mendelle02d48f2014-01-15 11:19:23 -08002099 return in_mem ? kX86Xor32MI8 : kX86Xor32RI8;
2100 }
Chao-ying Fue0ccdc02014-06-06 17:32:37 -07002101 if (is64Bit) {
2102 return in_mem ? kX86Xor64MI : kX86Xor64RI;
2103 }
Mark Mendelle02d48f2014-01-15 11:19:23 -08002104 return in_mem ? kX86Xor32MI : kX86Xor32RI;
2105 default:
2106 LOG(FATAL) << "Unexpected opcode: " << op;
2107 return kX86Add32MI;
2108 }
2109}
2110
Chao-ying Fua0147762014-06-06 18:38:49 -07002111bool X86Mir2Lir::GenLongImm(RegLocation rl_dest, RegLocation rl_src, Instruction::Code op) {
Mark Mendelle02d48f2014-01-15 11:19:23 -08002112 DCHECK(rl_src.is_const);
2113 int64_t val = mir_graph_->ConstantValueWide(rl_src);
Chao-ying Fua0147762014-06-06 18:38:49 -07002114
Elena Sayapinadd644502014-07-01 18:39:52 +07002115 if (cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -07002116 // We can do with imm only if it fits 32 bit
2117 if (val != (static_cast<int64_t>(static_cast<int32_t>(val)))) {
2118 return false;
2119 }
2120
2121 rl_dest = UpdateLocWideTyped(rl_dest, kCoreReg);
2122
2123 if ((rl_dest.location == kLocDalvikFrame) ||
2124 (rl_dest.location == kLocCompilerTemp)) {
2125 int r_base = TargetReg(kSp).GetReg();
2126 int displacement = SRegOffset(rl_dest.s_reg_low);
2127
Vladimir Marko8dea81c2014-06-06 14:50:36 +01002128 ScopedMemRefType mem_ref_type(this, ResourceMask::kDalvikReg);
Chao-ying Fua0147762014-06-06 18:38:49 -07002129 X86OpCode x86op = GetOpcode(op, rl_dest, false, val);
2130 LIR *lir = NewLIR3(x86op, r_base, displacement + LOWORD_OFFSET, val);
2131 AnnotateDalvikRegAccess(lir, (displacement + LOWORD_OFFSET) >> 2,
2132 true /* is_load */, true /* is64bit */);
2133 AnnotateDalvikRegAccess(lir, (displacement + LOWORD_OFFSET) >> 2,
2134 false /* is_load */, true /* is64bit */);
2135 return true;
2136 }
2137
2138 RegLocation rl_result = EvalLocWide(rl_dest, kCoreReg, true);
2139 DCHECK_EQ(rl_result.location, kLocPhysReg);
2140 DCHECK(!rl_result.reg.IsFloat());
2141
2142 X86OpCode x86op = GetOpcode(op, rl_result, false, val);
2143 NewLIR2(x86op, rl_result.reg.GetReg(), val);
2144
2145 StoreValueWide(rl_dest, rl_result);
2146 return true;
2147 }
2148
Mark Mendelle02d48f2014-01-15 11:19:23 -08002149 int32_t val_lo = Low32Bits(val);
2150 int32_t val_hi = High32Bits(val);
buzbee30adc732014-05-09 15:10:18 -07002151 rl_dest = UpdateLocWideTyped(rl_dest, kCoreReg);
Mark Mendelle02d48f2014-01-15 11:19:23 -08002152
2153 // Can we just do this into memory?
2154 if ((rl_dest.location == kLocDalvikFrame) ||
2155 (rl_dest.location == kLocCompilerTemp)) {
buzbee2700f7e2014-03-07 09:46:20 -08002156 int r_base = TargetReg(kSp).GetReg();
Mark Mendelle02d48f2014-01-15 11:19:23 -08002157 int displacement = SRegOffset(rl_dest.s_reg_low);
2158
Vladimir Marko8dea81c2014-06-06 14:50:36 +01002159 ScopedMemRefType mem_ref_type(this, ResourceMask::kDalvikReg);
Mark Mendelle02d48f2014-01-15 11:19:23 -08002160 if (!IsNoOp(op, val_lo)) {
2161 X86OpCode x86op = GetOpcode(op, rl_dest, false, val_lo);
buzbee2700f7e2014-03-07 09:46:20 -08002162 LIR *lir = NewLIR3(x86op, r_base, displacement + LOWORD_OFFSET, val_lo);
Mark Mendelle02d48f2014-01-15 11:19:23 -08002163 AnnotateDalvikRegAccess(lir, (displacement + LOWORD_OFFSET) >> 2,
Serguei Katkov217fe732014-03-27 14:41:56 +07002164 true /* is_load */, true /* is64bit */);
2165 AnnotateDalvikRegAccess(lir, (displacement + LOWORD_OFFSET) >> 2,
Mark Mendelle02d48f2014-01-15 11:19:23 -08002166 false /* is_load */, true /* is64bit */);
2167 }
2168 if (!IsNoOp(op, val_hi)) {
2169 X86OpCode x86op = GetOpcode(op, rl_dest, true, val_hi);
buzbee2700f7e2014-03-07 09:46:20 -08002170 LIR *lir = NewLIR3(x86op, r_base, displacement + HIWORD_OFFSET, val_hi);
Mark Mendelle02d48f2014-01-15 11:19:23 -08002171 AnnotateDalvikRegAccess(lir, (displacement + HIWORD_OFFSET) >> 2,
Serguei Katkov217fe732014-03-27 14:41:56 +07002172 true /* is_load */, true /* is64bit */);
2173 AnnotateDalvikRegAccess(lir, (displacement + HIWORD_OFFSET) >> 2,
Mark Mendelle02d48f2014-01-15 11:19:23 -08002174 false /* is_load */, true /* is64bit */);
2175 }
Chao-ying Fua0147762014-06-06 18:38:49 -07002176 return true;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002177 }
2178
2179 RegLocation rl_result = EvalLocWide(rl_dest, kCoreReg, true);
2180 DCHECK_EQ(rl_result.location, kLocPhysReg);
buzbee091cc402014-03-31 10:14:40 -07002181 DCHECK(!rl_result.reg.IsFloat());
Mark Mendelle02d48f2014-01-15 11:19:23 -08002182
2183 if (!IsNoOp(op, val_lo)) {
2184 X86OpCode x86op = GetOpcode(op, rl_result, false, val_lo);
buzbee2700f7e2014-03-07 09:46:20 -08002185 NewLIR2(x86op, rl_result.reg.GetLowReg(), val_lo);
Mark Mendelle02d48f2014-01-15 11:19:23 -08002186 }
2187 if (!IsNoOp(op, val_hi)) {
2188 X86OpCode x86op = GetOpcode(op, rl_result, true, val_hi);
Bill Buzbee00e1ec62014-02-27 23:44:13 +00002189 NewLIR2(x86op, rl_result.reg.GetHighReg(), val_hi);
Mark Mendelle02d48f2014-01-15 11:19:23 -08002190 }
2191 StoreValueWide(rl_dest, rl_result);
Chao-ying Fua0147762014-06-06 18:38:49 -07002192 return true;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002193}
2194
Chao-ying Fua0147762014-06-06 18:38:49 -07002195bool X86Mir2Lir::GenLongLongImm(RegLocation rl_dest, RegLocation rl_src1,
Mark Mendelle02d48f2014-01-15 11:19:23 -08002196 RegLocation rl_src2, Instruction::Code op) {
2197 DCHECK(rl_src2.is_const);
2198 int64_t val = mir_graph_->ConstantValueWide(rl_src2);
Chao-ying Fua0147762014-06-06 18:38:49 -07002199
Elena Sayapinadd644502014-07-01 18:39:52 +07002200 if (cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -07002201 // We can do with imm only if it fits 32 bit
2202 if (val != (static_cast<int64_t>(static_cast<int32_t>(val)))) {
2203 return false;
2204 }
2205 if (rl_dest.location == kLocPhysReg &&
2206 rl_src1.location == kLocPhysReg && !rl_dest.reg.IsFloat()) {
2207 X86OpCode x86op = GetOpcode(op, rl_dest, false, val);
Dmitry Petrochenko3157f9a2014-06-18 19:11:41 +07002208 OpRegCopy(rl_dest.reg, rl_src1.reg);
Chao-ying Fua0147762014-06-06 18:38:49 -07002209 NewLIR2(x86op, rl_dest.reg.GetReg(), val);
2210 StoreFinalValueWide(rl_dest, rl_dest);
2211 return true;
2212 }
2213
2214 rl_src1 = LoadValueWide(rl_src1, kCoreReg);
2215 // We need the values to be in a temporary
2216 RegLocation rl_result = ForceTempWide(rl_src1);
2217
2218 X86OpCode x86op = GetOpcode(op, rl_result, false, val);
2219 NewLIR2(x86op, rl_result.reg.GetReg(), val);
2220
2221 StoreFinalValueWide(rl_dest, rl_result);
2222 return true;
2223 }
2224
Mark Mendelle02d48f2014-01-15 11:19:23 -08002225 int32_t val_lo = Low32Bits(val);
2226 int32_t val_hi = High32Bits(val);
buzbee30adc732014-05-09 15:10:18 -07002227 rl_dest = UpdateLocWideTyped(rl_dest, kCoreReg);
2228 rl_src1 = UpdateLocWideTyped(rl_src1, kCoreReg);
Mark Mendelle02d48f2014-01-15 11:19:23 -08002229
2230 // Can we do this directly into the destination registers?
2231 if (rl_dest.location == kLocPhysReg && rl_src1.location == kLocPhysReg &&
buzbee2700f7e2014-03-07 09:46:20 -08002232 rl_dest.reg.GetLowReg() == rl_src1.reg.GetLowReg() &&
buzbee091cc402014-03-31 10:14:40 -07002233 rl_dest.reg.GetHighReg() == rl_src1.reg.GetHighReg() && !rl_dest.reg.IsFloat()) {
Mark Mendelle02d48f2014-01-15 11:19:23 -08002234 if (!IsNoOp(op, val_lo)) {
2235 X86OpCode x86op = GetOpcode(op, rl_dest, false, val_lo);
buzbee2700f7e2014-03-07 09:46:20 -08002236 NewLIR2(x86op, rl_dest.reg.GetLowReg(), val_lo);
Mark Mendelle02d48f2014-01-15 11:19:23 -08002237 }
2238 if (!IsNoOp(op, val_hi)) {
2239 X86OpCode x86op = GetOpcode(op, rl_dest, true, val_hi);
Bill Buzbee00e1ec62014-02-27 23:44:13 +00002240 NewLIR2(x86op, rl_dest.reg.GetHighReg(), val_hi);
Mark Mendelle02d48f2014-01-15 11:19:23 -08002241 }
Maxim Kazantsev653f2bf2014-02-13 15:11:17 +07002242
2243 StoreFinalValueWide(rl_dest, rl_dest);
Chao-ying Fua0147762014-06-06 18:38:49 -07002244 return true;
Mark Mendelle02d48f2014-01-15 11:19:23 -08002245 }
2246
2247 rl_src1 = LoadValueWide(rl_src1, kCoreReg);
2248 DCHECK_EQ(rl_src1.location, kLocPhysReg);
2249
2250 // We need the values to be in a temporary
2251 RegLocation rl_result = ForceTempWide(rl_src1);
2252 if (!IsNoOp(op, val_lo)) {
2253 X86OpCode x86op = GetOpcode(op, rl_result, false, val_lo);
buzbee2700f7e2014-03-07 09:46:20 -08002254 NewLIR2(x86op, rl_result.reg.GetLowReg(), val_lo);
Mark Mendelle02d48f2014-01-15 11:19:23 -08002255 }
2256 if (!IsNoOp(op, val_hi)) {
2257 X86OpCode x86op = GetOpcode(op, rl_result, true, val_hi);
Bill Buzbee00e1ec62014-02-27 23:44:13 +00002258 NewLIR2(x86op, rl_result.reg.GetHighReg(), val_hi);
Mark Mendelle02d48f2014-01-15 11:19:23 -08002259 }
2260
2261 StoreFinalValueWide(rl_dest, rl_result);
Chao-ying Fua0147762014-06-06 18:38:49 -07002262 return true;
Brian Carlstrom7940e442013-07-12 13:46:57 -07002263}
2264
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002265// For final classes there are no sub-classes to check and so we can answer the instance-of
2266// question with simple comparisons. Use compares to memory and SETEQ to optimize for x86.
2267void X86Mir2Lir::GenInstanceofFinal(bool use_declaring_class, uint32_t type_idx,
2268 RegLocation rl_dest, RegLocation rl_src) {
buzbeea0cd2d72014-06-01 09:33:49 -07002269 RegLocation object = LoadValue(rl_src, kRefReg);
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002270 RegLocation rl_result = EvalLoc(rl_dest, kCoreReg, true);
buzbee2700f7e2014-03-07 09:46:20 -08002271 RegStorage result_reg = rl_result.reg;
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002272
Chao-ying Fu7e399fd2014-06-10 18:11:11 -07002273 // For 32-bit, SETcc only works with EAX..EDX.
2274 if (result_reg == object.reg || !IsByteRegister(result_reg)) {
Mark Mendelle87f9b52014-04-30 14:13:18 -04002275 result_reg = AllocateByteRegister();
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002276 }
2277
2278 // Assume that there is no match.
2279 LoadConstant(result_reg, 0);
buzbee2700f7e2014-03-07 09:46:20 -08002280 LIR* null_branchover = OpCmpImmBranch(kCondEq, object.reg, 0, NULL);
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002281
Mark Mendellade54a22014-06-09 12:49:55 -04002282 // We will use this register to compare to memory below.
2283 // References are 32 bit in memory, and 64 bit in registers (in 64 bit mode).
2284 // For this reason, force allocation of a 32 bit register to use, so that the
2285 // compare to memory will be done using a 32 bit comparision.
2286 // The LoadRefDisp(s) below will work normally, even in 64 bit mode.
2287 RegStorage check_class = AllocTemp();
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002288
2289 // If Method* is already in a register, we can save a copy.
2290 RegLocation rl_method = mir_graph_->GetMethodLoc();
Dmitry Petrochenko9ee801f2014-05-12 11:31:37 +07002291 int32_t offset_of_type = mirror::Array::DataOffset(sizeof(mirror::HeapReference<mirror::Class*>)).Int32Value() +
2292 (sizeof(mirror::HeapReference<mirror::Class*>) * type_idx);
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002293
2294 if (rl_method.location == kLocPhysReg) {
2295 if (use_declaring_class) {
buzbee695d13a2014-04-19 13:32:20 -07002296 LoadRefDisp(rl_method.reg, mirror::ArtMethod::DeclaringClassOffset().Int32Value(),
Andreas Gampe3c12c512014-06-24 18:46:29 +00002297 check_class, kNotVolatile);
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002298 } else {
buzbee695d13a2014-04-19 13:32:20 -07002299 LoadRefDisp(rl_method.reg, mirror::ArtMethod::DexCacheResolvedTypesOffset().Int32Value(),
Andreas Gampe3c12c512014-06-24 18:46:29 +00002300 check_class, kNotVolatile);
2301 LoadRefDisp(check_class, offset_of_type, check_class, kNotVolatile);
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002302 }
2303 } else {
2304 LoadCurrMethodDirect(check_class);
2305 if (use_declaring_class) {
buzbee695d13a2014-04-19 13:32:20 -07002306 LoadRefDisp(check_class, mirror::ArtMethod::DeclaringClassOffset().Int32Value(),
Andreas Gampe3c12c512014-06-24 18:46:29 +00002307 check_class, kNotVolatile);
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002308 } else {
buzbee695d13a2014-04-19 13:32:20 -07002309 LoadRefDisp(check_class, mirror::ArtMethod::DexCacheResolvedTypesOffset().Int32Value(),
Andreas Gampe3c12c512014-06-24 18:46:29 +00002310 check_class, kNotVolatile);
2311 LoadRefDisp(check_class, offset_of_type, check_class, kNotVolatile);
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002312 }
2313 }
2314
2315 // Compare the computed class to the class in the object.
2316 DCHECK_EQ(object.location, kLocPhysReg);
buzbee2700f7e2014-03-07 09:46:20 -08002317 OpRegMem(kOpCmp, check_class, object.reg, mirror::Object::ClassOffset().Int32Value());
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002318
2319 // Set the low byte of the result to 0 or 1 from the compare condition code.
buzbee2700f7e2014-03-07 09:46:20 -08002320 NewLIR2(kX86Set8R, result_reg.GetReg(), kX86CondEq);
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002321
2322 LIR* target = NewLIR0(kPseudoTargetLabel);
2323 null_branchover->target = target;
2324 FreeTemp(check_class);
2325 if (IsTemp(result_reg)) {
buzbee2700f7e2014-03-07 09:46:20 -08002326 OpRegCopy(rl_result.reg, result_reg);
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08002327 FreeTemp(result_reg);
2328 }
2329 StoreValue(rl_dest, rl_result);
2330}
2331
Mark Mendell6607d972014-02-10 06:54:18 -08002332void X86Mir2Lir::GenInstanceofCallingHelper(bool needs_access_check, bool type_known_final,
2333 bool type_known_abstract, bool use_declaring_class,
2334 bool can_assume_type_is_in_dex_cache,
2335 uint32_t type_idx, RegLocation rl_dest,
2336 RegLocation rl_src) {
2337 FlushAllRegs();
2338 // May generate a call - use explicit registers.
2339 LockCallTemps();
2340 LoadCurrMethodDirect(TargetReg(kArg1)); // kArg1 gets current Method*.
buzbee2700f7e2014-03-07 09:46:20 -08002341 RegStorage class_reg = TargetReg(kArg2); // kArg2 will hold the Class*.
Mark Mendell6607d972014-02-10 06:54:18 -08002342 // Reference must end up in kArg0.
2343 if (needs_access_check) {
2344 // Check we have access to type_idx and if not throw IllegalAccessError,
2345 // Caller function returns Class* in kArg0.
buzbee33ae5582014-06-12 14:56:32 -07002346 if (cu_->target64) {
Dmitry Petrochenko9ee801f2014-05-12 11:31:37 +07002347 CallRuntimeHelperImm(QUICK_ENTRYPOINT_OFFSET(8, pInitializeTypeAndVerifyAccess),
2348 type_idx, true);
2349 } else {
2350 CallRuntimeHelperImm(QUICK_ENTRYPOINT_OFFSET(4, pInitializeTypeAndVerifyAccess),
2351 type_idx, true);
2352 }
Mark Mendell6607d972014-02-10 06:54:18 -08002353 OpRegCopy(class_reg, TargetReg(kRet0));
2354 LoadValueDirectFixed(rl_src, TargetReg(kArg0));
2355 } else if (use_declaring_class) {
2356 LoadValueDirectFixed(rl_src, TargetReg(kArg0));
buzbee695d13a2014-04-19 13:32:20 -07002357 LoadRefDisp(TargetReg(kArg1), mirror::ArtMethod::DeclaringClassOffset().Int32Value(),
Andreas Gampe3c12c512014-06-24 18:46:29 +00002358 class_reg, kNotVolatile);
Mark Mendell6607d972014-02-10 06:54:18 -08002359 } else {
2360 // Load dex cache entry into class_reg (kArg2).
2361 LoadValueDirectFixed(rl_src, TargetReg(kArg0));
buzbee695d13a2014-04-19 13:32:20 -07002362 LoadRefDisp(TargetReg(kArg1), mirror::ArtMethod::DexCacheResolvedTypesOffset().Int32Value(),
Andreas Gampe3c12c512014-06-24 18:46:29 +00002363 class_reg, kNotVolatile);
Mark Mendell6607d972014-02-10 06:54:18 -08002364 int32_t offset_of_type =
buzbeea0cd2d72014-06-01 09:33:49 -07002365 mirror::Array::DataOffset(sizeof(mirror::HeapReference<mirror::Class*>)).Int32Value() +
2366 (sizeof(mirror::HeapReference<mirror::Class*>) * type_idx);
Andreas Gampe3c12c512014-06-24 18:46:29 +00002367 LoadRefDisp(class_reg, offset_of_type, class_reg, kNotVolatile);
Mark Mendell6607d972014-02-10 06:54:18 -08002368 if (!can_assume_type_is_in_dex_cache) {
2369 // Need to test presence of type in dex cache at runtime.
2370 LIR* hop_branch = OpCmpImmBranch(kCondNe, class_reg, 0, NULL);
2371 // Type is not resolved. Call out to helper, which will return resolved type in kRet0/kArg0.
buzbee33ae5582014-06-12 14:56:32 -07002372 if (cu_->target64) {
Dmitry Petrochenko9ee801f2014-05-12 11:31:37 +07002373 CallRuntimeHelperImm(QUICK_ENTRYPOINT_OFFSET(8, pInitializeType), type_idx, true);
2374 } else {
2375 CallRuntimeHelperImm(QUICK_ENTRYPOINT_OFFSET(4, pInitializeType), type_idx, true);
2376 }
Mark Mendell6607d972014-02-10 06:54:18 -08002377 OpRegCopy(TargetReg(kArg2), TargetReg(kRet0)); // Align usage with fast path.
2378 LoadValueDirectFixed(rl_src, TargetReg(kArg0)); /* Reload Ref. */
2379 // Rejoin code paths
2380 LIR* hop_target = NewLIR0(kPseudoTargetLabel);
2381 hop_branch->target = hop_target;
2382 }
2383 }
2384 /* kArg0 is ref, kArg2 is class. If ref==null, use directly as bool result. */
buzbeea0cd2d72014-06-01 09:33:49 -07002385 RegLocation rl_result = GetReturn(kRefReg);
Mark Mendell6607d972014-02-10 06:54:18 -08002386
Alexei Zavjalov95455002014-06-09 23:27:46 +07002387 // On x86-64 kArg0 is not EAX, so we have to copy ref from kArg0 to EAX.
Elena Sayapinadd644502014-07-01 18:39:52 +07002388 if (cu_->target64) {
Alexei Zavjalov95455002014-06-09 23:27:46 +07002389 OpRegCopy(rl_result.reg, TargetReg(kArg0));
2390 }
2391
Chao-ying Fu7e399fd2014-06-10 18:11:11 -07002392 // For 32-bit, SETcc only works with EAX..EDX.
buzbee091cc402014-03-31 10:14:40 -07002393 DCHECK_LT(rl_result.reg.GetRegNum(), 4);
Mark Mendell6607d972014-02-10 06:54:18 -08002394
2395 // Is the class NULL?
2396 LIR* branch1 = OpCmpImmBranch(kCondEq, TargetReg(kArg0), 0, NULL);
2397
2398 /* Load object->klass_. */
2399 DCHECK_EQ(mirror::Object::ClassOffset().Int32Value(), 0);
Andreas Gampe3c12c512014-06-24 18:46:29 +00002400 LoadRefDisp(TargetReg(kArg0), mirror::Object::ClassOffset().Int32Value(), TargetReg(kArg1),
2401 kNotVolatile);
Mark Mendell6607d972014-02-10 06:54:18 -08002402 /* kArg0 is ref, kArg1 is ref->klass_, kArg2 is class. */
2403 LIR* branchover = nullptr;
2404 if (type_known_final) {
2405 // Ensure top 3 bytes of result are 0.
buzbee2700f7e2014-03-07 09:46:20 -08002406 LoadConstant(rl_result.reg, 0);
Mark Mendell6607d972014-02-10 06:54:18 -08002407 OpRegReg(kOpCmp, TargetReg(kArg1), TargetReg(kArg2));
2408 // Set the low byte of the result to 0 or 1 from the compare condition code.
Bill Buzbee00e1ec62014-02-27 23:44:13 +00002409 NewLIR2(kX86Set8R, rl_result.reg.GetReg(), kX86CondEq);
Mark Mendell6607d972014-02-10 06:54:18 -08002410 } else {
2411 if (!type_known_abstract) {
buzbee2700f7e2014-03-07 09:46:20 -08002412 LoadConstant(rl_result.reg, 1); // Assume result succeeds.
Mark Mendell6607d972014-02-10 06:54:18 -08002413 branchover = OpCmpBranch(kCondEq, TargetReg(kArg1), TargetReg(kArg2), NULL);
2414 }
2415 OpRegCopy(TargetReg(kArg0), TargetReg(kArg2));
buzbee33ae5582014-06-12 14:56:32 -07002416 if (cu_->target64) {
Dmitry Petrochenko9ee801f2014-05-12 11:31:37 +07002417 OpThreadMem(kOpBlx, QUICK_ENTRYPOINT_OFFSET(8, pInstanceofNonTrivial));
2418 } else {
2419 OpThreadMem(kOpBlx, QUICK_ENTRYPOINT_OFFSET(4, pInstanceofNonTrivial));
2420 }
Mark Mendell6607d972014-02-10 06:54:18 -08002421 }
2422 // TODO: only clobber when type isn't final?
2423 ClobberCallerSave();
2424 /* Branch targets here. */
2425 LIR* target = NewLIR0(kPseudoTargetLabel);
2426 StoreValue(rl_dest, rl_result);
2427 branch1->target = target;
2428 if (branchover != nullptr) {
2429 branchover->target = target;
2430 }
2431}
2432
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002433void X86Mir2Lir::GenArithOpInt(Instruction::Code opcode, RegLocation rl_dest,
2434 RegLocation rl_lhs, RegLocation rl_rhs) {
2435 OpKind op = kOpBkpt;
2436 bool is_div_rem = false;
2437 bool unary = false;
2438 bool shift_op = false;
2439 bool is_two_addr = false;
2440 RegLocation rl_result;
2441 switch (opcode) {
2442 case Instruction::NEG_INT:
2443 op = kOpNeg;
2444 unary = true;
2445 break;
2446 case Instruction::NOT_INT:
2447 op = kOpMvn;
2448 unary = true;
2449 break;
2450 case Instruction::ADD_INT_2ADDR:
2451 is_two_addr = true;
2452 // Fallthrough
2453 case Instruction::ADD_INT:
2454 op = kOpAdd;
2455 break;
2456 case Instruction::SUB_INT_2ADDR:
2457 is_two_addr = true;
2458 // Fallthrough
2459 case Instruction::SUB_INT:
2460 op = kOpSub;
2461 break;
2462 case Instruction::MUL_INT_2ADDR:
2463 is_two_addr = true;
2464 // Fallthrough
2465 case Instruction::MUL_INT:
2466 op = kOpMul;
2467 break;
2468 case Instruction::DIV_INT_2ADDR:
2469 is_two_addr = true;
2470 // Fallthrough
2471 case Instruction::DIV_INT:
2472 op = kOpDiv;
2473 is_div_rem = true;
2474 break;
2475 /* NOTE: returns in kArg1 */
2476 case Instruction::REM_INT_2ADDR:
2477 is_two_addr = true;
2478 // Fallthrough
2479 case Instruction::REM_INT:
2480 op = kOpRem;
2481 is_div_rem = true;
2482 break;
2483 case Instruction::AND_INT_2ADDR:
2484 is_two_addr = true;
2485 // Fallthrough
2486 case Instruction::AND_INT:
2487 op = kOpAnd;
2488 break;
2489 case Instruction::OR_INT_2ADDR:
2490 is_two_addr = true;
2491 // Fallthrough
2492 case Instruction::OR_INT:
2493 op = kOpOr;
2494 break;
2495 case Instruction::XOR_INT_2ADDR:
2496 is_two_addr = true;
2497 // Fallthrough
2498 case Instruction::XOR_INT:
2499 op = kOpXor;
2500 break;
2501 case Instruction::SHL_INT_2ADDR:
2502 is_two_addr = true;
2503 // Fallthrough
2504 case Instruction::SHL_INT:
2505 shift_op = true;
2506 op = kOpLsl;
2507 break;
2508 case Instruction::SHR_INT_2ADDR:
2509 is_two_addr = true;
2510 // Fallthrough
2511 case Instruction::SHR_INT:
2512 shift_op = true;
2513 op = kOpAsr;
2514 break;
2515 case Instruction::USHR_INT_2ADDR:
2516 is_two_addr = true;
2517 // Fallthrough
2518 case Instruction::USHR_INT:
2519 shift_op = true;
2520 op = kOpLsr;
2521 break;
2522 default:
2523 LOG(FATAL) << "Invalid word arith op: " << opcode;
2524 }
2525
Mark Mendelle87f9b52014-04-30 14:13:18 -04002526 // Can we convert to a two address instruction?
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002527 if (!is_two_addr &&
2528 (mir_graph_->SRegToVReg(rl_dest.s_reg_low) ==
2529 mir_graph_->SRegToVReg(rl_lhs.s_reg_low))) {
Mark Mendelle87f9b52014-04-30 14:13:18 -04002530 is_two_addr = true;
2531 }
2532
2533 if (!GenerateTwoOperandInstructions()) {
2534 is_two_addr = false;
2535 }
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002536
2537 // Get the div/rem stuff out of the way.
2538 if (is_div_rem) {
2539 rl_result = GenDivRem(rl_dest, rl_lhs, rl_rhs, op == kOpDiv, true);
2540 StoreValue(rl_dest, rl_result);
2541 return;
2542 }
2543
Vladimir Marko8dea81c2014-06-06 14:50:36 +01002544 // If we generate any memory access below, it will reference a dalvik reg.
2545 ScopedMemRefType mem_ref_type(this, ResourceMask::kDalvikReg);
2546
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002547 if (unary) {
2548 rl_lhs = LoadValue(rl_lhs, kCoreReg);
buzbee30adc732014-05-09 15:10:18 -07002549 rl_result = UpdateLocTyped(rl_dest, kCoreReg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002550 rl_result = EvalLoc(rl_dest, kCoreReg, true);
buzbee2700f7e2014-03-07 09:46:20 -08002551 OpRegReg(op, rl_result.reg, rl_lhs.reg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002552 } else {
2553 if (shift_op) {
2554 // X86 doesn't require masking and must use ECX.
buzbee2700f7e2014-03-07 09:46:20 -08002555 RegStorage t_reg = TargetReg(kCount); // rCX
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002556 LoadValueDirectFixed(rl_rhs, t_reg);
2557 if (is_two_addr) {
2558 // Can we do this directly into memory?
buzbee30adc732014-05-09 15:10:18 -07002559 rl_result = UpdateLocTyped(rl_dest, kCoreReg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002560 rl_rhs = LoadValue(rl_rhs, kCoreReg);
2561 if (rl_result.location != kLocPhysReg) {
2562 // Okay, we can do this into memory
buzbee2700f7e2014-03-07 09:46:20 -08002563 OpMemReg(op, rl_result, t_reg.GetReg());
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002564 FreeTemp(t_reg);
2565 return;
buzbee091cc402014-03-31 10:14:40 -07002566 } else if (!rl_result.reg.IsFloat()) {
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002567 // Can do this directly into the result register
buzbee2700f7e2014-03-07 09:46:20 -08002568 OpRegReg(op, rl_result.reg, t_reg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002569 FreeTemp(t_reg);
2570 StoreFinalValue(rl_dest, rl_result);
2571 return;
2572 }
2573 }
2574 // Three address form, or we can't do directly.
2575 rl_lhs = LoadValue(rl_lhs, kCoreReg);
2576 rl_result = EvalLoc(rl_dest, kCoreReg, true);
buzbee2700f7e2014-03-07 09:46:20 -08002577 OpRegRegReg(op, rl_result.reg, rl_lhs.reg, t_reg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002578 FreeTemp(t_reg);
2579 } else {
2580 // Multiply is 3 operand only (sort of).
2581 if (is_two_addr && op != kOpMul) {
2582 // Can we do this directly into memory?
buzbee30adc732014-05-09 15:10:18 -07002583 rl_result = UpdateLocTyped(rl_dest, kCoreReg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002584 if (rl_result.location == kLocPhysReg) {
Serguei Katkov366f8ae2014-04-15 16:55:26 +07002585 // Ensure res is in a core reg
2586 rl_result = EvalLoc(rl_dest, kCoreReg, true);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002587 // Can we do this from memory directly?
buzbee30adc732014-05-09 15:10:18 -07002588 rl_rhs = UpdateLocTyped(rl_rhs, kCoreReg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002589 if (rl_rhs.location != kLocPhysReg) {
buzbee2700f7e2014-03-07 09:46:20 -08002590 OpRegMem(op, rl_result.reg, rl_rhs);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002591 StoreFinalValue(rl_dest, rl_result);
2592 return;
buzbee091cc402014-03-31 10:14:40 -07002593 } else if (!rl_rhs.reg.IsFloat()) {
buzbee2700f7e2014-03-07 09:46:20 -08002594 OpRegReg(op, rl_result.reg, rl_rhs.reg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002595 StoreFinalValue(rl_dest, rl_result);
2596 return;
2597 }
2598 }
2599 rl_rhs = LoadValue(rl_rhs, kCoreReg);
Serguei Katkovd293fb42014-05-19 15:45:42 +07002600 // It might happen rl_rhs and rl_dest are the same VR
2601 // in this case rl_dest is in reg after LoadValue while
2602 // rl_result is not updated yet, so do this
2603 rl_result = UpdateLocTyped(rl_dest, kCoreReg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002604 if (rl_result.location != kLocPhysReg) {
2605 // Okay, we can do this into memory.
Bill Buzbee00e1ec62014-02-27 23:44:13 +00002606 OpMemReg(op, rl_result, rl_rhs.reg.GetReg());
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002607 return;
buzbee091cc402014-03-31 10:14:40 -07002608 } else if (!rl_result.reg.IsFloat()) {
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002609 // Can do this directly into the result register.
buzbee2700f7e2014-03-07 09:46:20 -08002610 OpRegReg(op, rl_result.reg, rl_rhs.reg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002611 StoreFinalValue(rl_dest, rl_result);
2612 return;
2613 } else {
2614 rl_lhs = LoadValue(rl_lhs, kCoreReg);
2615 rl_result = EvalLoc(rl_dest, kCoreReg, true);
buzbee2700f7e2014-03-07 09:46:20 -08002616 OpRegRegReg(op, rl_result.reg, rl_lhs.reg, rl_rhs.reg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002617 }
2618 } else {
2619 // Try to use reg/memory instructions.
buzbee30adc732014-05-09 15:10:18 -07002620 rl_lhs = UpdateLocTyped(rl_lhs, kCoreReg);
2621 rl_rhs = UpdateLocTyped(rl_rhs, kCoreReg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002622 // We can't optimize with FP registers.
2623 if (!IsOperationSafeWithoutTemps(rl_lhs, rl_rhs)) {
2624 // Something is difficult, so fall back to the standard case.
2625 rl_lhs = LoadValue(rl_lhs, kCoreReg);
2626 rl_rhs = LoadValue(rl_rhs, kCoreReg);
2627 rl_result = EvalLoc(rl_dest, kCoreReg, true);
buzbee2700f7e2014-03-07 09:46:20 -08002628 OpRegRegReg(op, rl_result.reg, rl_lhs.reg, rl_rhs.reg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002629 } else {
2630 // We can optimize by moving to result and using memory operands.
2631 if (rl_rhs.location != kLocPhysReg) {
2632 // Force LHS into result.
Serguei Katkov66da1362014-03-14 13:33:33 +07002633 // We should be careful with order here
2634 // If rl_dest and rl_lhs points to the same VR we should load first
2635 // If the are different we should find a register first for dest
Chao-ying Fua0147762014-06-06 18:38:49 -07002636 if (mir_graph_->SRegToVReg(rl_dest.s_reg_low) ==
2637 mir_graph_->SRegToVReg(rl_lhs.s_reg_low)) {
Serguei Katkov66da1362014-03-14 13:33:33 +07002638 rl_lhs = LoadValue(rl_lhs, kCoreReg);
2639 rl_result = EvalLoc(rl_dest, kCoreReg, true);
Mark Mendelle87f9b52014-04-30 14:13:18 -04002640 // No-op if these are the same.
2641 OpRegCopy(rl_result.reg, rl_lhs.reg);
Serguei Katkov66da1362014-03-14 13:33:33 +07002642 } else {
2643 rl_result = EvalLoc(rl_dest, kCoreReg, true);
buzbee2700f7e2014-03-07 09:46:20 -08002644 LoadValueDirect(rl_lhs, rl_result.reg);
Serguei Katkov66da1362014-03-14 13:33:33 +07002645 }
buzbee2700f7e2014-03-07 09:46:20 -08002646 OpRegMem(op, rl_result.reg, rl_rhs);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002647 } else if (rl_lhs.location != kLocPhysReg) {
2648 // RHS is in a register; LHS is in memory.
2649 if (op != kOpSub) {
2650 // Force RHS into result and operate on memory.
2651 rl_result = EvalLoc(rl_dest, kCoreReg, true);
buzbee2700f7e2014-03-07 09:46:20 -08002652 OpRegCopy(rl_result.reg, rl_rhs.reg);
2653 OpRegMem(op, rl_result.reg, rl_lhs);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002654 } else {
2655 // Subtraction isn't commutative.
2656 rl_lhs = LoadValue(rl_lhs, kCoreReg);
2657 rl_rhs = LoadValue(rl_rhs, kCoreReg);
2658 rl_result = EvalLoc(rl_dest, kCoreReg, true);
buzbee2700f7e2014-03-07 09:46:20 -08002659 OpRegRegReg(op, rl_result.reg, rl_lhs.reg, rl_rhs.reg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002660 }
2661 } else {
2662 // Both are in registers.
2663 rl_lhs = LoadValue(rl_lhs, kCoreReg);
2664 rl_rhs = LoadValue(rl_rhs, kCoreReg);
2665 rl_result = EvalLoc(rl_dest, kCoreReg, true);
buzbee2700f7e2014-03-07 09:46:20 -08002666 OpRegRegReg(op, rl_result.reg, rl_lhs.reg, rl_rhs.reg);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002667 }
2668 }
2669 }
2670 }
2671 }
2672 StoreValue(rl_dest, rl_result);
2673}
2674
2675bool X86Mir2Lir::IsOperationSafeWithoutTemps(RegLocation rl_lhs, RegLocation rl_rhs) {
2676 // If we have non-core registers, then we can't do good things.
buzbee091cc402014-03-31 10:14:40 -07002677 if (rl_lhs.location == kLocPhysReg && rl_lhs.reg.IsFloat()) {
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002678 return false;
2679 }
buzbee091cc402014-03-31 10:14:40 -07002680 if (rl_rhs.location == kLocPhysReg && rl_rhs.reg.IsFloat()) {
Mark Mendellfeb2b4e2014-01-28 12:59:49 -08002681 return false;
2682 }
2683
2684 // Everything will be fine :-).
2685 return true;
2686}
Chao-ying Fua0147762014-06-06 18:38:49 -07002687
2688void X86Mir2Lir::GenIntToLong(RegLocation rl_dest, RegLocation rl_src) {
Elena Sayapinadd644502014-07-01 18:39:52 +07002689 if (!cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -07002690 Mir2Lir::GenIntToLong(rl_dest, rl_src);
2691 return;
2692 }
Serguei Katkove63d9d42014-06-25 00:25:35 +07002693 rl_src = UpdateLocTyped(rl_src, kCoreReg);
Chao-ying Fua0147762014-06-06 18:38:49 -07002694 RegLocation rl_result = EvalLoc(rl_dest, kCoreReg, true);
2695 if (rl_src.location == kLocPhysReg) {
2696 NewLIR2(kX86MovsxdRR, rl_result.reg.GetReg(), rl_src.reg.GetReg());
2697 } else {
2698 int displacement = SRegOffset(rl_src.s_reg_low);
Vladimir Marko8dea81c2014-06-06 14:50:36 +01002699 ScopedMemRefType mem_ref_type(this, ResourceMask::kDalvikReg);
Chao-ying Fua0147762014-06-06 18:38:49 -07002700 LIR *m = NewLIR3(kX86MovsxdRM, rl_result.reg.GetReg(), rs_rX86_SP.GetReg(),
2701 displacement + LOWORD_OFFSET);
2702 AnnotateDalvikRegAccess(m, (displacement + LOWORD_OFFSET) >> 2,
2703 true /* is_load */, true /* is_64bit */);
2704 }
2705 StoreValueWide(rl_dest, rl_result);
2706}
2707
2708void X86Mir2Lir::GenShiftOpLong(Instruction::Code opcode, RegLocation rl_dest,
2709 RegLocation rl_src1, RegLocation rl_shift) {
Elena Sayapinadd644502014-07-01 18:39:52 +07002710 if (!cu_->target64) {
Chao-ying Fua0147762014-06-06 18:38:49 -07002711 Mir2Lir::GenShiftOpLong(opcode, rl_dest, rl_src1, rl_shift);
2712 return;
2713 }
2714
2715 bool is_two_addr = false;
2716 OpKind op = kOpBkpt;
2717 RegLocation rl_result;
2718
2719 switch (opcode) {
2720 case Instruction::SHL_LONG_2ADDR:
2721 is_two_addr = true;
2722 // Fallthrough
2723 case Instruction::SHL_LONG:
2724 op = kOpLsl;
2725 break;
2726 case Instruction::SHR_LONG_2ADDR:
2727 is_two_addr = true;
2728 // Fallthrough
2729 case Instruction::SHR_LONG:
2730 op = kOpAsr;
2731 break;
2732 case Instruction::USHR_LONG_2ADDR:
2733 is_two_addr = true;
2734 // Fallthrough
2735 case Instruction::USHR_LONG:
2736 op = kOpLsr;
2737 break;
2738 default:
2739 op = kOpBkpt;
2740 }
2741
2742 // X86 doesn't require masking and must use ECX.
2743 RegStorage t_reg = TargetReg(kCount); // rCX
2744 LoadValueDirectFixed(rl_shift, t_reg);
2745 if (is_two_addr) {
2746 // Can we do this directly into memory?
2747 rl_result = UpdateLocWideTyped(rl_dest, kCoreReg);
2748 if (rl_result.location != kLocPhysReg) {
2749 // Okay, we can do this into memory
Vladimir Marko8dea81c2014-06-06 14:50:36 +01002750 ScopedMemRefType mem_ref_type(this, ResourceMask::kDalvikReg);
Chao-ying Fua0147762014-06-06 18:38:49 -07002751 OpMemReg(op, rl_result, t_reg.GetReg());
2752 } else if (!rl_result.reg.IsFloat()) {
2753 // Can do this directly into the result register
2754 OpRegReg(op, rl_result.reg, t_reg);
2755 StoreFinalValueWide(rl_dest, rl_result);
2756 }
2757 } else {
2758 // Three address form, or we can't do directly.
2759 rl_src1 = LoadValueWide(rl_src1, kCoreReg);
2760 rl_result = EvalLocWide(rl_dest, kCoreReg, true);
2761 OpRegRegReg(op, rl_result.reg, rl_src1.reg, t_reg);
2762 StoreFinalValueWide(rl_dest, rl_result);
2763 }
2764
2765 FreeTemp(t_reg);
2766}
2767
Brian Carlstrom7940e442013-07-12 13:46:57 -07002768} // namespace art