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Bill Buzbee00e1ec62014-02-27 23:44:13 +00001/*
2 * Copyright (C) 2014 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#ifndef ART_COMPILER_DEX_REG_STORAGE_H_
18#define ART_COMPILER_DEX_REG_STORAGE_H_
19
Vladimir Marko83642482014-06-11 12:12:07 +010020#include "base/logging.h"
Bill Buzbee00e1ec62014-02-27 23:44:13 +000021
22namespace art {
23
24/*
buzbee091cc402014-03-31 10:14:40 -070025 * 16-bit representation of the physical register container holding a Dalvik value.
buzbeed111c6e2014-05-11 21:09:53 -070026 * The encoding allows up to 64 physical elements per storage class, and supports eight
buzbee091cc402014-03-31 10:14:40 -070027 * register container shapes.
Bill Buzbee00e1ec62014-02-27 23:44:13 +000028 *
buzbeed111c6e2014-05-11 21:09:53 -070029 * [V] [HHHHH] [SSS] [F] [LLLLLL]
Bill Buzbee00e1ec62014-02-27 23:44:13 +000030 *
buzbeed111c6e2014-05-11 21:09:53 -070031 * [LLLLLL]
buzbee091cc402014-03-31 10:14:40 -070032 * Physical register number for the low or solo register.
buzbeed111c6e2014-05-11 21:09:53 -070033 * 0..63
Bill Buzbee00e1ec62014-02-27 23:44:13 +000034 *
buzbee091cc402014-03-31 10:14:40 -070035 * [F]
36 * Describes type of the [LLLLL] register.
37 * 0: Core
38 * 1: Floating point
Bill Buzbee00e1ec62014-02-27 23:44:13 +000039 *
buzbee091cc402014-03-31 10:14:40 -070040 * [SSS]
41 * Shape of the register container.
42 * 000: Invalid
43 * 001: 32-bit solo register
44 * 010: 64-bit solo register
45 * 011: 64-bit pair consisting of two 32-bit solo registers
46 * 100: 128-bit solo register
47 * 101: 256-bit solo register
48 * 110: 512-bit solo register
49 * 111: 1024-bit solo register
Bill Buzbee00e1ec62014-02-27 23:44:13 +000050 *
buzbee091cc402014-03-31 10:14:40 -070051 * [HHHHH]
52 * Physical register number of the high register (valid only for register pair).
53 * 0..31
Bill Buzbee00e1ec62014-02-27 23:44:13 +000054 *
buzbee091cc402014-03-31 10:14:40 -070055 * [V]
56 * 0 -> Invalid
57 * 1 -> Valid
58 *
59 * Note that in all non-invalid cases, we can determine if the storage is floating point
buzbeed111c6e2014-05-11 21:09:53 -070060 * by testing bit 7. Note also that a register pair is effectively limited to a pair of
61 * physical register numbers in the 0..31 range.
buzbee091cc402014-03-31 10:14:40 -070062 *
63 * On some target architectures, the same underlying physical register container can be given
64 * different views. For example, Arm's 32-bit single-precision floating point registers
65 * s2 and s3 map to the low and high halves of double-precision d1. Similarly, X86's xmm3
66 * vector register can be viewed as 32-bit, 64-bit, 128-bit, etc. In these cases the use of
67 * one view will affect the other views. The RegStorage class does not concern itself
68 * with potential aliasing. That will be done using the associated RegisterInfo struct.
69 * Distinct RegStorage elements should be created for each view of a physical register
70 * container. The management of the aliased physical elements will be handled via RegisterInfo
71 * records.
Bill Buzbee00e1ec62014-02-27 23:44:13 +000072 */
73
74class RegStorage {
75 public:
76 enum RegStorageKind {
buzbee091cc402014-03-31 10:14:40 -070077 kValidMask = 0x8000,
78 kValid = 0x8000,
79 kInvalid = 0x0000,
buzbeed111c6e2014-05-11 21:09:53 -070080 kShapeMask = 0x0380,
81 k32BitSolo = 0x0080,
82 k64BitSolo = 0x0100,
83 k64BitPair = 0x0180,
84 k128BitSolo = 0x0200,
85 k256BitSolo = 0x0280,
86 k512BitSolo = 0x0300,
87 k1024BitSolo = 0x0380,
88 k64BitMask = 0x0300,
89 k64Bits = 0x0100,
90 kShapeTypeMask = 0x03c0,
91 kFloatingPoint = 0x0040,
buzbee091cc402014-03-31 10:14:40 -070092 kCoreRegister = 0x0000,
Bill Buzbee00e1ec62014-02-27 23:44:13 +000093 };
94
buzbeed111c6e2014-05-11 21:09:53 -070095 static const uint16_t kRegValMask = 0x03ff; // Num, type and shape.
96 static const uint16_t kRegTypeMask = 0x007f; // Num and type.
97 static const uint16_t kRegNumMask = 0x003f; // Num only.
98 static const uint16_t kHighRegNumMask = 0x001f; // 0..31 for high reg
buzbee091cc402014-03-31 10:14:40 -070099 static const uint16_t kMaxRegs = kRegValMask + 1;
buzbeed111c6e2014-05-11 21:09:53 -0700100 // TODO: deprecate use of kInvalidRegVal and speed up GetReg(). Rely on valid bit instead.
101 static const uint16_t kInvalidRegVal = 0x03ff;
102 static const uint16_t kHighRegShift = 10;
103 static const uint16_t kHighRegMask = (kHighRegNumMask << kHighRegShift);
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000104
buzbee091cc402014-03-31 10:14:40 -0700105 // Reg is [F][LLLLL], will override any existing shape and use rs_kind.
Vladimir Marko83642482014-06-11 12:12:07 +0100106 constexpr RegStorage(RegStorageKind rs_kind, int reg)
107 : reg_(
108 DCHECK_CONSTEXPR(rs_kind != k64BitPair, , 0u)
109 DCHECK_CONSTEXPR((rs_kind & ~kShapeMask) == 0, , 0u)
110 kValid | rs_kind | (reg & kRegTypeMask)) {
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000111 }
Vladimir Marko83642482014-06-11 12:12:07 +0100112 constexpr RegStorage(RegStorageKind rs_kind, int low_reg, int high_reg)
113 : reg_(
114 DCHECK_CONSTEXPR(rs_kind == k64BitPair, << rs_kind, 0u)
115 DCHECK_CONSTEXPR((low_reg & kFloatingPoint) == (high_reg & kFloatingPoint),
116 << low_reg << ", " << high_reg, 0u)
117 DCHECK_CONSTEXPR((high_reg & kRegNumMask) <= kHighRegNumMask,
118 << "High reg must be in 0..31: " << high_reg, false)
119 kValid | rs_kind | ((high_reg & kHighRegNumMask) << kHighRegShift) |
120 (low_reg & kRegTypeMask)) {
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000121 }
buzbee091cc402014-03-31 10:14:40 -0700122 constexpr explicit RegStorage(uint16_t val) : reg_(val) {}
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000123 RegStorage() : reg_(kInvalid) {}
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000124
buzbeeb5860fb2014-06-21 15:31:01 -0700125 // We do not provide a general operator overload for equality of reg storage, as this is
126 // dangerous in the case of architectures with multiple views, and the naming ExactEquals
127 // expresses the exact match expressed here. It is more likely that a comparison between the views
128 // is intended in most cases. Such code can be found in, for example, Mir2Lir::IsSameReg.
129 //
130 // If you know what you are doing, include reg_storage_eq.h, which defines == and != for brevity.
131
132 bool ExactlyEquals(const RegStorage& rhs) const {
buzbee2700f7e2014-03-07 09:46:20 -0800133 return (reg_ == rhs.GetRawBits());
134 }
135
buzbeeb5860fb2014-06-21 15:31:01 -0700136 bool NotExactlyEquals(const RegStorage& rhs) const {
buzbee2700f7e2014-03-07 09:46:20 -0800137 return (reg_ != rhs.GetRawBits());
138 }
139
Vladimir Marko83642482014-06-11 12:12:07 +0100140 constexpr bool Valid() const {
buzbee091cc402014-03-31 10:14:40 -0700141 return ((reg_ & kValidMask) == kValid);
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000142 }
143
Vladimir Marko83642482014-06-11 12:12:07 +0100144 constexpr bool Is32Bit() const {
buzbee091cc402014-03-31 10:14:40 -0700145 return ((reg_ & kShapeMask) == k32BitSolo);
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000146 }
147
Vladimir Marko83642482014-06-11 12:12:07 +0100148 constexpr bool Is64Bit() const {
buzbee091cc402014-03-31 10:14:40 -0700149 return ((reg_ & k64BitMask) == k64Bits);
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000150 }
151
Vladimir Marko83642482014-06-11 12:12:07 +0100152 constexpr bool Is64BitSolo() const {
Dmitry Petrochenko9ee801f2014-05-12 11:31:37 +0700153 return ((reg_ & kShapeMask) == k64BitSolo);
154 }
155
Vladimir Marko83642482014-06-11 12:12:07 +0100156 constexpr bool IsPair() const {
buzbee091cc402014-03-31 10:14:40 -0700157 return ((reg_ & kShapeMask) == k64BitPair);
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000158 }
159
Vladimir Marko83642482014-06-11 12:12:07 +0100160 constexpr bool IsFloat() const {
161 return
162 DCHECK_CONSTEXPR(Valid(), , false)
163 ((reg_ & kFloatingPoint) == kFloatingPoint);
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000164 }
165
Vladimir Marko83642482014-06-11 12:12:07 +0100166 constexpr bool IsDouble() const {
167 return
168 DCHECK_CONSTEXPR(Valid(), , false)
169 (reg_ & (kFloatingPoint | k64BitMask)) == (kFloatingPoint | k64Bits);
buzbee091cc402014-03-31 10:14:40 -0700170 }
171
Vladimir Marko83642482014-06-11 12:12:07 +0100172 constexpr bool IsSingle() const {
173 return
174 DCHECK_CONSTEXPR(Valid(), , false)
175 (reg_ & (kFloatingPoint | k64BitMask)) == kFloatingPoint;
buzbee091cc402014-03-31 10:14:40 -0700176 }
177
Vladimir Marko83642482014-06-11 12:12:07 +0100178 static constexpr bool IsFloat(uint16_t reg) {
buzbee091cc402014-03-31 10:14:40 -0700179 return ((reg & kFloatingPoint) == kFloatingPoint);
180 }
181
Vladimir Marko83642482014-06-11 12:12:07 +0100182 static constexpr bool IsDouble(uint16_t reg) {
buzbee091cc402014-03-31 10:14:40 -0700183 return (reg & (kFloatingPoint | k64BitMask)) == (kFloatingPoint | k64Bits);
184 }
185
Vladimir Marko83642482014-06-11 12:12:07 +0100186 static constexpr bool IsSingle(uint16_t reg) {
buzbee091cc402014-03-31 10:14:40 -0700187 return (reg & (kFloatingPoint | k64BitMask)) == kFloatingPoint;
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000188 }
189
190 // Used to retrieve either the low register of a pair, or the only register.
191 int GetReg() const {
buzbee091cc402014-03-31 10:14:40 -0700192 DCHECK(!IsPair()) << "reg_ = 0x" << std::hex << reg_;
buzbee2700f7e2014-03-07 09:46:20 -0800193 return Valid() ? (reg_ & kRegValMask) : kInvalidRegVal;
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000194 }
195
buzbee091cc402014-03-31 10:14:40 -0700196 // Sets shape, type and num of solo.
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000197 void SetReg(int reg) {
buzbee2700f7e2014-03-07 09:46:20 -0800198 DCHECK(Valid());
buzbee091cc402014-03-31 10:14:40 -0700199 DCHECK(!IsPair());
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000200 reg_ = (reg_ & ~kRegValMask) | reg;
buzbee2700f7e2014-03-07 09:46:20 -0800201 }
202
buzbee091cc402014-03-31 10:14:40 -0700203 // Set the reg number and type only, target remain 64-bit pair.
buzbee2700f7e2014-03-07 09:46:20 -0800204 void SetLowReg(int reg) {
205 DCHECK(IsPair());
buzbee091cc402014-03-31 10:14:40 -0700206 reg_ = (reg_ & ~kRegTypeMask) | (reg & kRegTypeMask);
buzbee2700f7e2014-03-07 09:46:20 -0800207 }
208
buzbee091cc402014-03-31 10:14:40 -0700209 // Retrieve the least significant register of a pair and return as 32-bit solo.
buzbee2700f7e2014-03-07 09:46:20 -0800210 int GetLowReg() const {
211 DCHECK(IsPair());
buzbee091cc402014-03-31 10:14:40 -0700212 return ((reg_ & kRegTypeMask) | k32BitSolo);
buzbee2700f7e2014-03-07 09:46:20 -0800213 }
214
215 // Create a stand-alone RegStorage from the low reg of a pair.
216 RegStorage GetLow() const {
217 DCHECK(IsPair());
buzbee091cc402014-03-31 10:14:40 -0700218 return RegStorage(k32BitSolo, reg_ & kRegTypeMask);
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000219 }
220
221 // Retrieve the most significant register of a pair.
222 int GetHighReg() const {
223 DCHECK(IsPair());
buzbeed111c6e2014-05-11 21:09:53 -0700224 return k32BitSolo | ((reg_ & kHighRegMask) >> kHighRegShift) | (reg_ & kFloatingPoint);
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000225 }
226
buzbee2700f7e2014-03-07 09:46:20 -0800227 // Create a stand-alone RegStorage from the high reg of a pair.
228 RegStorage GetHigh() const {
229 DCHECK(IsPair());
buzbee091cc402014-03-31 10:14:40 -0700230 return RegStorage(kValid | GetHighReg());
buzbee2700f7e2014-03-07 09:46:20 -0800231 }
232
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000233 void SetHighReg(int reg) {
234 DCHECK(IsPair());
buzbeed111c6e2014-05-11 21:09:53 -0700235 reg_ = (reg_ & ~kHighRegMask) | ((reg & kHighRegNumMask) << kHighRegShift);
buzbee091cc402014-03-31 10:14:40 -0700236 }
237
238 // Return the register number of low or solo.
Vladimir Marko83642482014-06-11 12:12:07 +0100239 constexpr int GetRegNum() const {
buzbee091cc402014-03-31 10:14:40 -0700240 return reg_ & kRegNumMask;
241 }
242
buzbee091cc402014-03-31 10:14:40 -0700243 // Is register number in 0..7?
Vladimir Marko83642482014-06-11 12:12:07 +0100244 constexpr bool Low8() const {
buzbee091cc402014-03-31 10:14:40 -0700245 return GetRegNum() < 8;
246 }
247
248 // Is register number in 0..3?
Vladimir Marko83642482014-06-11 12:12:07 +0100249 constexpr bool Low4() const {
buzbee091cc402014-03-31 10:14:40 -0700250 return GetRegNum() < 4;
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000251 }
252
buzbee2700f7e2014-03-07 09:46:20 -0800253 // Combine 2 32-bit solo regs into a pair.
254 static RegStorage MakeRegPair(RegStorage low, RegStorage high) {
255 DCHECK(!low.IsPair());
256 DCHECK(low.Is32Bit());
257 DCHECK(!high.IsPair());
258 DCHECK(high.Is32Bit());
259 return RegStorage(k64BitPair, low.GetReg(), high.GetReg());
260 }
261
Vladimir Marko83642482014-06-11 12:12:07 +0100262 static constexpr bool SameRegType(RegStorage reg1, RegStorage reg2) {
buzbee091cc402014-03-31 10:14:40 -0700263 return (reg1.IsDouble() == reg2.IsDouble()) && (reg1.IsSingle() == reg2.IsSingle());
264 }
265
Vladimir Marko83642482014-06-11 12:12:07 +0100266 static constexpr bool SameRegType(int reg1, int reg2) {
buzbee091cc402014-03-31 10:14:40 -0700267 return (IsDouble(reg1) == IsDouble(reg2)) && (IsSingle(reg1) == IsSingle(reg2));
268 }
269
buzbee2700f7e2014-03-07 09:46:20 -0800270 // Create a 32-bit solo.
271 static RegStorage Solo32(int reg_num) {
buzbee091cc402014-03-31 10:14:40 -0700272 return RegStorage(k32BitSolo, reg_num & kRegTypeMask);
273 }
274
275 // Create a floating point 32-bit solo.
Vladimir Marko83642482014-06-11 12:12:07 +0100276 static constexpr RegStorage FloatSolo32(int reg_num) {
buzbee091cc402014-03-31 10:14:40 -0700277 return RegStorage(k32BitSolo, (reg_num & kRegNumMask) | kFloatingPoint);
buzbee2700f7e2014-03-07 09:46:20 -0800278 }
279
Mark Mendellfe945782014-05-22 09:52:36 -0400280 // Create a 128-bit solo.
Vladimir Marko83642482014-06-11 12:12:07 +0100281 static constexpr RegStorage Solo128(int reg_num) {
Mark Mendellfe945782014-05-22 09:52:36 -0400282 return RegStorage(k128BitSolo, reg_num & kRegTypeMask);
283 }
284
buzbee2700f7e2014-03-07 09:46:20 -0800285 // Create a 64-bit solo.
Vladimir Marko83642482014-06-11 12:12:07 +0100286 static constexpr RegStorage Solo64(int reg_num) {
buzbee091cc402014-03-31 10:14:40 -0700287 return RegStorage(k64BitSolo, reg_num & kRegTypeMask);
288 }
289
290 // Create a floating point 64-bit solo.
291 static RegStorage FloatSolo64(int reg_num) {
292 return RegStorage(k64BitSolo, (reg_num & kRegNumMask) | kFloatingPoint);
buzbee2700f7e2014-03-07 09:46:20 -0800293 }
294
Vladimir Marko83642482014-06-11 12:12:07 +0100295 static constexpr RegStorage InvalidReg() {
buzbee2700f7e2014-03-07 09:46:20 -0800296 return RegStorage(kInvalid);
297 }
298
Vladimir Marko83642482014-06-11 12:12:07 +0100299 static constexpr uint16_t RegNum(int raw_reg_bits) {
buzbee091cc402014-03-31 10:14:40 -0700300 return raw_reg_bits & kRegNumMask;
301 }
302
Vladimir Marko83642482014-06-11 12:12:07 +0100303 constexpr int GetRawBits() const {
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000304 return reg_;
305 }
306
Vladimir Marko83642482014-06-11 12:12:07 +0100307 size_t StorageSize() const {
buzbee091cc402014-03-31 10:14:40 -0700308 switch (reg_ & kShapeMask) {
309 case kInvalid: return 0;
310 case k32BitSolo: return 4;
311 case k64BitSolo: return 8;
312 case k64BitPair: return 8; // Is this useful? Might want to disallow taking size of pair.
313 case k128BitSolo: return 16;
314 case k256BitSolo: return 32;
315 case k512BitSolo: return 64;
316 case k1024BitSolo: return 128;
Serban Constantinescued65c5e2014-05-22 15:10:18 +0100317 default: LOG(FATAL) << "Unexpected shape";
buzbee091cc402014-03-31 10:14:40 -0700318 }
319 return 0;
320 }
321
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000322 private:
323 uint16_t reg_;
324};
325
326} // namespace art
327
328#endif // ART_COMPILER_DEX_REG_STORAGE_H_