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Brian Osmanb380e712019-07-24 17:02:39 -04001/*
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04002 * Copyright 2019 Google LLC
3 *
4 * Use of this source code is governed by a BSD-style license that can be
5 * found in the LICENSE file.
6 */
7
Mike Kleinc0bd9f92019-04-23 12:05:21 -05008#include "src/sksl/SkSLByteCodeGenerator.h"
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04009
Brian Osman95253bd2019-06-05 10:28:45 -040010#include <algorithm>
11
Ethan Nicholas0e9401d2019-03-21 11:05:37 -040012namespace SkSL {
13
Ethan Nicholas82162ee2019-05-21 16:05:08 -040014ByteCodeGenerator::ByteCodeGenerator(const Context* context, const Program* program, ErrorReporter* errors,
15 ByteCode* output)
16 : INHERITED(program, errors, nullptr)
17 , fContext(*context)
Ethan Nicholasae9633b2019-05-24 12:46:34 -040018 , fOutput(output)
19 , fIntrinsics {
Brian Osman886af0d2019-07-26 15:12:56 -040020 { "cos", ByteCodeInstruction::kCos },
21 { "dot", SpecialIntrinsic::kDot },
22 { "inverse", ByteCodeInstruction::kInverse2x2 },
23 { "sin", ByteCodeInstruction::kSin },
24 { "sqrt", ByteCodeInstruction::kSqrt },
25 { "tan", ByteCodeInstruction::kTan },
Ethan Nicholasae9633b2019-05-24 12:46:34 -040026 } {}
27
Ethan Nicholas82162ee2019-05-21 16:05:08 -040028
Brian Osman07c117b2019-05-23 12:51:06 -070029int ByteCodeGenerator::SlotCount(const Type& type) {
Brian Osmanfba386b2019-06-20 14:54:15 -040030 if (type.kind() == Type::kOther_Kind) {
31 return 0;
32 } else if (type.kind() == Type::kStruct_Kind) {
Brian Osman07c117b2019-05-23 12:51:06 -070033 int slots = 0;
34 for (const auto& f : type.fields()) {
35 slots += SlotCount(*f.fType);
36 }
37 SkASSERT(slots <= 255);
38 return slots;
39 } else if (type.kind() == Type::kArray_Kind) {
40 int columns = type.columns();
41 SkASSERT(columns >= 0);
42 int slots = columns * SlotCount(type.componentType());
43 SkASSERT(slots <= 255);
44 return slots;
45 } else {
46 return type.columns() * type.rows();
47 }
Ethan Nicholas0e9401d2019-03-21 11:05:37 -040048}
49
50bool ByteCodeGenerator::generateCode() {
51 for (const auto& e : fProgram) {
52 switch (e.fKind) {
53 case ProgramElement::kFunction_Kind: {
54 std::unique_ptr<ByteCodeFunction> f = this->writeFunction((FunctionDefinition&) e);
55 if (!f) {
56 return false;
57 }
58 fOutput->fFunctions.push_back(std::move(f));
Brian Osman80164412019-06-07 13:00:23 -040059 fFunctions.push_back(&(FunctionDefinition&)e);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -040060 break;
61 }
62 case ProgramElement::kVar_Kind: {
63 VarDeclarations& decl = (VarDeclarations&) e;
64 for (const auto& v : decl.fVars) {
65 const Variable* declVar = ((VarDeclaration&) *v).fVar;
66 if (declVar->fModifiers.fLayout.fBuiltin >= 0) {
67 continue;
68 }
69 if (declVar->fModifiers.fFlags & Modifiers::kIn_Flag) {
Brian Osman07c117b2019-05-23 12:51:06 -070070 for (int i = SlotCount(declVar->fType); i > 0; --i) {
Ethan Nicholas0e9401d2019-03-21 11:05:37 -040071 fOutput->fInputSlots.push_back(fOutput->fGlobalCount++);
72 }
73 } else {
Brian Osman07c117b2019-05-23 12:51:06 -070074 fOutput->fGlobalCount += SlotCount(declVar->fType);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -040075 }
76 }
77 break;
78 }
79 default:
80 ; // ignore
81 }
82 }
Brian Osman6f5358f2019-07-09 14:17:23 -040083 return 0 == fErrors.errorCount();
Ethan Nicholas0e9401d2019-03-21 11:05:37 -040084}
85
86std::unique_ptr<ByteCodeFunction> ByteCodeGenerator::writeFunction(const FunctionDefinition& f) {
87 fFunction = &f;
Brian Osman226668a2019-05-14 16:47:30 -040088 std::unique_ptr<ByteCodeFunction> result(new ByteCodeFunction(&f.fDeclaration));
Brian Osman80164412019-06-07 13:00:23 -040089 fParameterCount = result->fParameterCount;
Brian Osman4a47da72019-07-12 11:30:32 -040090 fLoopCount = fMaxLoopCount = 0;
91 fConditionCount = fMaxConditionCount = 0;
Brian Osmanaa2ca3f2019-07-15 13:24:48 -040092 fStackCount = fMaxStackCount = 0;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -040093 fCode = &result->fCode;
Brian Osman4a47da72019-07-12 11:30:32 -040094
Ethan Nicholas0e9401d2019-03-21 11:05:37 -040095 this->writeStatement(*f.fBody);
Brian Osmanaa2ca3f2019-07-15 13:24:48 -040096 if (0 == fErrors.errorCount()) {
97 SkASSERT(fLoopCount == 0);
98 SkASSERT(fConditionCount == 0);
99 SkASSERT(fStackCount == 0);
100 }
101 this->write(ByteCodeInstruction::kReturn, 0);
Ethan Nicholas7e603db2019-05-03 12:57:47 -0400102 this->write8(0);
Brian Osman4a47da72019-07-12 11:30:32 -0400103
104 result->fLocalCount = fLocals.size();
105 result->fConditionCount = fMaxConditionCount;
106 result->fLoopCount = fMaxLoopCount;
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400107 result->fStackCount = fMaxStackCount;
Brian Osman4a47da72019-07-12 11:30:32 -0400108
Ethan Nicholasdfcad062019-05-07 12:53:34 -0400109 const Type& returnType = f.fDeclaration.fReturnType;
110 if (returnType != *fContext.fVoid_Type) {
Brian Osman07c117b2019-05-23 12:51:06 -0700111 result->fReturnCount = SlotCount(returnType);
Ethan Nicholasdfcad062019-05-07 12:53:34 -0400112 }
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400113 fLocals.clear();
114 fFunction = nullptr;
115 return result;
116}
117
118enum class TypeCategory {
119 kBool,
120 kSigned,
121 kUnsigned,
122 kFloat,
123};
124
125static TypeCategory type_category(const Type& type) {
126 switch (type.kind()) {
127 case Type::Kind::kVector_Kind:
128 case Type::Kind::kMatrix_Kind:
129 return type_category(type.componentType());
130 default:
131 if (type.fName == "bool") {
132 return TypeCategory::kBool;
133 } else if (type.fName == "int" || type.fName == "short") {
134 return TypeCategory::kSigned;
135 } else if (type.fName == "uint" || type.fName == "ushort") {
136 return TypeCategory::kUnsigned;
137 } else {
138 SkASSERT(type.fName == "float" || type.fName == "half");
139 return TypeCategory::kFloat;
140 }
141 ABORT("unsupported type: %s\n", type.description().c_str());
142 }
143}
144
Brian Osman0785db02019-05-24 14:19:11 -0400145// A "simple" Swizzle is based on a variable (or a compound variable like a struct or array), and
146// that references consecutive values, such that it can be implemented using normal load/store ops
147// with an offset. Note that all single-component swizzles (of suitable base types) are simple.
148static bool swizzle_is_simple(const Swizzle& s) {
149 switch (s.fBase->fKind) {
150 case Expression::kFieldAccess_Kind:
151 case Expression::kIndex_Kind:
152 case Expression::kVariableReference_Kind:
153 break;
154 default:
155 return false;
156 }
157
158 for (size_t i = 1; i < s.fComponents.size(); ++i) {
159 if (s.fComponents[i] != s.fComponents[i - 1] + 1) {
160 return false;
161 }
162 }
163 return true;
164}
165
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400166int ByteCodeGenerator::StackUsage(ByteCodeInstruction inst, int count_) {
167 // Ensures that we use count iff we're passed a non-default value. Most instructions have an
168 // implicit count, so the caller shouldn't need to worry about it (or count makes no sense).
169 // The asserts avoids callers thinking they're supplying useful information in that scenario,
170 // or failing to supply necessary information for the ops that need a count.
171 struct CountValue {
172 operator int() {
173 SkASSERT(val != ByteCodeGenerator::kUnusedStackCount);
174 SkDEBUGCODE(used = true);
175 return val;
176 }
177 ~CountValue() {
178 SkASSERT(used || val == ByteCodeGenerator::kUnusedStackCount);
179 }
180 int val;
181 SkDEBUGCODE(bool used = false;)
182 } count = { count_ };
183
184 switch (inst) {
185 // Unary functions/operators that don't change stack depth at all:
186#define VECTOR_UNARY_OP(base) \
187 case ByteCodeInstruction::base: \
188 case ByteCodeInstruction::base ## 2: \
189 case ByteCodeInstruction::base ## 3: \
190 case ByteCodeInstruction::base ## 4: \
191 return 0;
192
193 VECTOR_UNARY_OP(kConvertFtoI)
194 VECTOR_UNARY_OP(kConvertStoF)
195 VECTOR_UNARY_OP(kConvertUtoF)
196
197 VECTOR_UNARY_OP(kCos)
198 VECTOR_UNARY_OP(kSin)
199 VECTOR_UNARY_OP(kSqrt)
200 VECTOR_UNARY_OP(kTan)
201
202 VECTOR_UNARY_OP(kNegateF)
203 VECTOR_UNARY_OP(kNegateI)
204
Mike Reed634c9412019-07-18 13:20:04 -0400205 case ByteCodeInstruction::kInverse2x2:
206 case ByteCodeInstruction::kInverse3x3:
207 case ByteCodeInstruction::kInverse4x4: return 0;
208
Brian Osman869a3e82019-07-18 17:00:34 -0400209 case ByteCodeInstruction::kClampIndex: return 0;
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400210 case ByteCodeInstruction::kNotB: return 0;
211 case ByteCodeInstruction::kNegateFN: return 0;
212
213#undef VECTOR_UNARY_OP
214
215 // Binary functions/operators that do a 2 -> 1 reduction (possibly N times)
216#define VECTOR_BINARY_OP(base) \
217 case ByteCodeInstruction::base: return -1; \
218 case ByteCodeInstruction::base ## 2: return -2; \
219 case ByteCodeInstruction::base ## 3: return -3; \
220 case ByteCodeInstruction::base ## 4: return -4;
221
222#define VECTOR_MATRIX_BINARY_OP(base) \
223 VECTOR_BINARY_OP(base) \
224 case ByteCodeInstruction::base ## N: return -count;
225
226 case ByteCodeInstruction::kAndB: return -1;
227 case ByteCodeInstruction::kOrB: return -1;
228 case ByteCodeInstruction::kXorB: return -1;
229
230 VECTOR_BINARY_OP(kAddI)
231 VECTOR_MATRIX_BINARY_OP(kAddF)
232
233 VECTOR_BINARY_OP(kCompareIEQ)
234 VECTOR_MATRIX_BINARY_OP(kCompareFEQ)
235 VECTOR_BINARY_OP(kCompareINEQ)
236 VECTOR_MATRIX_BINARY_OP(kCompareFNEQ)
237 VECTOR_BINARY_OP(kCompareSGT)
238 VECTOR_BINARY_OP(kCompareUGT)
239 VECTOR_BINARY_OP(kCompareFGT)
240 VECTOR_BINARY_OP(kCompareSGTEQ)
241 VECTOR_BINARY_OP(kCompareUGTEQ)
242 VECTOR_BINARY_OP(kCompareFGTEQ)
243 VECTOR_BINARY_OP(kCompareSLT)
244 VECTOR_BINARY_OP(kCompareULT)
245 VECTOR_BINARY_OP(kCompareFLT)
246 VECTOR_BINARY_OP(kCompareSLTEQ)
247 VECTOR_BINARY_OP(kCompareULTEQ)
248 VECTOR_BINARY_OP(kCompareFLTEQ)
249
250 VECTOR_BINARY_OP(kDivideS)
251 VECTOR_BINARY_OP(kDivideU)
252 VECTOR_MATRIX_BINARY_OP(kDivideF)
253 VECTOR_BINARY_OP(kMultiplyI)
254 VECTOR_MATRIX_BINARY_OP(kMultiplyF)
255 VECTOR_BINARY_OP(kRemainderF)
256 VECTOR_BINARY_OP(kRemainderS)
257 VECTOR_BINARY_OP(kRemainderU)
258 VECTOR_BINARY_OP(kSubtractI)
259 VECTOR_MATRIX_BINARY_OP(kSubtractF)
260
261#undef VECTOR_BINARY_OP
262#undef VECTOR_MATRIX_BINARY_OP
263
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400264 // Ops that push or load data to grow the stack:
265 case ByteCodeInstruction::kDup:
266 case ByteCodeInstruction::kLoad:
267 case ByteCodeInstruction::kLoadGlobal:
268 case ByteCodeInstruction::kReadExternal:
269 case ByteCodeInstruction::kPushImmediate:
270 return 1;
271
272 case ByteCodeInstruction::kDup2:
273 case ByteCodeInstruction::kLoad2:
274 case ByteCodeInstruction::kLoadGlobal2:
275 case ByteCodeInstruction::kReadExternal2:
276 return 2;
277
278 case ByteCodeInstruction::kDup3:
279 case ByteCodeInstruction::kLoad3:
280 case ByteCodeInstruction::kLoadGlobal3:
281 case ByteCodeInstruction::kReadExternal3:
282 return 3;
283
284 case ByteCodeInstruction::kDup4:
285 case ByteCodeInstruction::kLoad4:
286 case ByteCodeInstruction::kLoadGlobal4:
287 case ByteCodeInstruction::kReadExternal4:
288 return 4;
289
290 case ByteCodeInstruction::kDupN:
291 case ByteCodeInstruction::kLoadSwizzle:
292 case ByteCodeInstruction::kLoadSwizzleGlobal:
293 return count;
294
295 // Pushes 'count' values, minus one for the 'address' that's consumed first
296 case ByteCodeInstruction::kLoadExtended:
297 case ByteCodeInstruction::kLoadExtendedGlobal:
298 return count - 1;
299
300 // Ops that pop or store data to shrink the stack:
301 case ByteCodeInstruction::kPop:
302 case ByteCodeInstruction::kStore:
303 case ByteCodeInstruction::kStoreGlobal:
304 case ByteCodeInstruction::kWriteExternal:
305 return -1;
306
307 case ByteCodeInstruction::kPop2:
308 case ByteCodeInstruction::kStore2:
309 case ByteCodeInstruction::kStoreGlobal2:
310 case ByteCodeInstruction::kWriteExternal2:
311 return -2;
312
313 case ByteCodeInstruction::kPop3:
314 case ByteCodeInstruction::kStore3:
315 case ByteCodeInstruction::kStoreGlobal3:
316 case ByteCodeInstruction::kWriteExternal3:
317 return -3;
318
319 case ByteCodeInstruction::kPop4:
320 case ByteCodeInstruction::kStore4:
321 case ByteCodeInstruction::kStoreGlobal4:
322 case ByteCodeInstruction::kWriteExternal4:
323 return -4;
324
325 case ByteCodeInstruction::kPopN:
326 case ByteCodeInstruction::kStoreSwizzle:
327 case ByteCodeInstruction::kStoreSwizzleGlobal:
328 return -count;
329
330 // Consumes 'count' values, plus one for the 'address'
331 case ByteCodeInstruction::kStoreExtended:
332 case ByteCodeInstruction::kStoreExtendedGlobal:
333 case ByteCodeInstruction::kStoreSwizzleIndirect:
334 case ByteCodeInstruction::kStoreSwizzleIndirectGlobal:
335 return -count - 1;
336
337 // Strange ops where the caller computes the delta for us:
338 case ByteCodeInstruction::kCallExternal:
339 case ByteCodeInstruction::kMatrixToMatrix:
340 case ByteCodeInstruction::kMatrixMultiply:
341 case ByteCodeInstruction::kReserve:
342 case ByteCodeInstruction::kReturn:
343 case ByteCodeInstruction::kScalarToMatrix:
344 case ByteCodeInstruction::kSwizzle:
345 return count;
346
347 // Miscellaneous
348
349 // kCall is net-zero. Max stack depth is adjusted in writeFunctionCall.
350 case ByteCodeInstruction::kCall: return 0;
351 case ByteCodeInstruction::kBranch: return 0;
352 case ByteCodeInstruction::kBranchIfAllFalse: return 0;
353
354 case ByteCodeInstruction::kMaskPush: return -1;
355 case ByteCodeInstruction::kMaskPop: return 0;
356 case ByteCodeInstruction::kMaskNegate: return 0;
357 case ByteCodeInstruction::kMaskBlend: return -count;
358
359 case ByteCodeInstruction::kLoopBegin: return 0;
360 case ByteCodeInstruction::kLoopNext: return 0;
361 case ByteCodeInstruction::kLoopMask: return -1;
362 case ByteCodeInstruction::kLoopEnd: return 0;
363 case ByteCodeInstruction::kLoopBreak: return 0;
364 case ByteCodeInstruction::kLoopContinue: return 0;
365
366 default:
Brian Osmanc7ec9e22019-07-16 08:49:11 -0400367 ABORT("unsupported instruction %d\n", (int)inst);
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400368 return 0;
369 }
370}
371
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400372int ByteCodeGenerator::getLocation(const Variable& var) {
373 // given that we seldom have more than a couple of variables, linear search is probably the most
374 // efficient way to handle lookups
375 switch (var.fStorage) {
376 case Variable::kLocal_Storage: {
377 for (int i = fLocals.size() - 1; i >= 0; --i) {
378 if (fLocals[i] == &var) {
Brian Osman1091f022019-05-16 09:42:16 -0400379 SkASSERT(fParameterCount + i <= 255);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400380 return fParameterCount + i;
381 }
382 }
383 int result = fParameterCount + fLocals.size();
384 fLocals.push_back(&var);
Brian Osman07c117b2019-05-23 12:51:06 -0700385 for (int i = 0; i < SlotCount(var.fType) - 1; ++i) {
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400386 fLocals.push_back(nullptr);
387 }
Brian Osman1091f022019-05-16 09:42:16 -0400388 SkASSERT(result <= 255);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400389 return result;
390 }
391 case Variable::kParameter_Storage: {
392 int offset = 0;
393 for (const auto& p : fFunction->fDeclaration.fParameters) {
394 if (p == &var) {
Brian Osman1091f022019-05-16 09:42:16 -0400395 SkASSERT(offset <= 255);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400396 return offset;
397 }
Brian Osman07c117b2019-05-23 12:51:06 -0700398 offset += SlotCount(p->fType);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400399 }
400 SkASSERT(false);
Brian Osman1091f022019-05-16 09:42:16 -0400401 return 0;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400402 }
403 case Variable::kGlobal_Storage: {
404 int offset = 0;
405 for (const auto& e : fProgram) {
406 if (e.fKind == ProgramElement::kVar_Kind) {
407 VarDeclarations& decl = (VarDeclarations&) e;
408 for (const auto& v : decl.fVars) {
409 const Variable* declVar = ((VarDeclaration&) *v).fVar;
410 if (declVar->fModifiers.fLayout.fBuiltin >= 0) {
411 continue;
412 }
413 if (declVar == &var) {
Brian Osmanb7451292019-05-15 13:02:13 -0400414 SkASSERT(offset <= 255);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400415 return offset;
416 }
Brian Osman07c117b2019-05-23 12:51:06 -0700417 offset += SlotCount(declVar->fType);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400418 }
419 }
420 }
421 SkASSERT(false);
Brian Osman1091f022019-05-16 09:42:16 -0400422 return 0;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400423 }
424 default:
425 SkASSERT(false);
426 return 0;
427 }
428}
429
Brian Osman07c117b2019-05-23 12:51:06 -0700430int ByteCodeGenerator::getLocation(const Expression& expr, Variable::Storage* storage) {
431 switch (expr.fKind) {
432 case Expression::kFieldAccess_Kind: {
433 const FieldAccess& f = (const FieldAccess&)expr;
434 int baseAddr = this->getLocation(*f.fBase, storage);
435 int offset = 0;
436 for (int i = 0; i < f.fFieldIndex; ++i) {
437 offset += SlotCount(*f.fBase->fType.fields()[i].fType);
438 }
439 if (baseAddr < 0) {
Brian Osman86769292019-06-21 11:05:47 -0400440 if (offset != 0) {
441 this->write(ByteCodeInstruction::kPushImmediate);
442 this->write32(offset);
443 this->write(ByteCodeInstruction::kAddI);
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400444 this->write8(1);
Brian Osman86769292019-06-21 11:05:47 -0400445 }
Brian Osman07c117b2019-05-23 12:51:06 -0700446 return -1;
447 } else {
448 return baseAddr + offset;
449 }
450 }
451 case Expression::kIndex_Kind: {
452 const IndexExpression& i = (const IndexExpression&)expr;
453 int stride = SlotCount(i.fType);
Brian Osman869a3e82019-07-18 17:00:34 -0400454 int length = i.fBase->fType.columns();
455 SkASSERT(length <= 255);
Brian Osman07c117b2019-05-23 12:51:06 -0700456 int offset = -1;
457 if (i.fIndex->isConstant()) {
Brian Osman869a3e82019-07-18 17:00:34 -0400458 int64_t index = i.fIndex->getConstantInt();
459 if (index < 0 || index >= length) {
460 fErrors.error(i.fIndex->fOffset, "Array index out of bounds.");
461 return 0;
462 }
463 offset = index * stride;
Brian Osman07c117b2019-05-23 12:51:06 -0700464 } else {
Brian Osman86769292019-06-21 11:05:47 -0400465 if (i.fIndex->hasSideEffects()) {
466 // Having a side-effect in an indexer is technically safe for an rvalue,
467 // but with lvalues we have to evaluate the indexer twice, so make it an error.
468 fErrors.error(i.fIndex->fOffset,
469 "Index expressions with side-effects not supported in byte code.");
470 return 0;
471 }
Brian Osman07c117b2019-05-23 12:51:06 -0700472 this->writeExpression(*i.fIndex);
Brian Osman869a3e82019-07-18 17:00:34 -0400473 this->write(ByteCodeInstruction::kClampIndex);
474 this->write8(length);
Brian Osman86769292019-06-21 11:05:47 -0400475 if (stride != 1) {
476 this->write(ByteCodeInstruction::kPushImmediate);
477 this->write32(stride);
478 this->write(ByteCodeInstruction::kMultiplyI);
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400479 this->write8(1);
Brian Osman86769292019-06-21 11:05:47 -0400480 }
Brian Osman07c117b2019-05-23 12:51:06 -0700481 }
482 int baseAddr = this->getLocation(*i.fBase, storage);
Brian Osman86769292019-06-21 11:05:47 -0400483
484 // Are both components known statically?
Brian Osman07c117b2019-05-23 12:51:06 -0700485 if (baseAddr >= 0 && offset >= 0) {
486 return baseAddr + offset;
487 }
Brian Osman86769292019-06-21 11:05:47 -0400488
489 // At least one component is dynamic (and on the stack).
490
491 // If the other component is zero, we're done
492 if (baseAddr == 0 || offset == 0) {
493 return -1;
494 }
495
496 // Push the non-dynamic component (if any) to the stack, then add the two
Brian Osman07c117b2019-05-23 12:51:06 -0700497 if (baseAddr >= 0) {
498 this->write(ByteCodeInstruction::kPushImmediate);
499 this->write32(baseAddr);
500 }
501 if (offset >= 0) {
502 this->write(ByteCodeInstruction::kPushImmediate);
503 this->write32(offset);
504 }
505 this->write(ByteCodeInstruction::kAddI);
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400506 this->write8(1);
Brian Osman07c117b2019-05-23 12:51:06 -0700507 return -1;
508 }
Brian Osman0785db02019-05-24 14:19:11 -0400509 case Expression::kSwizzle_Kind: {
510 const Swizzle& s = (const Swizzle&)expr;
511 SkASSERT(swizzle_is_simple(s));
512 int baseAddr = this->getLocation(*s.fBase, storage);
513 int offset = s.fComponents[0];
514 if (baseAddr < 0) {
Brian Osman86769292019-06-21 11:05:47 -0400515 if (offset != 0) {
516 this->write(ByteCodeInstruction::kPushImmediate);
517 this->write32(offset);
518 this->write(ByteCodeInstruction::kAddI);
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400519 this->write8(1);
Brian Osman86769292019-06-21 11:05:47 -0400520 }
Brian Osman0785db02019-05-24 14:19:11 -0400521 return -1;
522 } else {
523 return baseAddr + offset;
524 }
525 }
Brian Osman07c117b2019-05-23 12:51:06 -0700526 case Expression::kVariableReference_Kind: {
527 const Variable& var = ((const VariableReference&)expr).fVariable;
528 *storage = var.fStorage;
529 return this->getLocation(var);
530 }
531 default:
532 SkASSERT(false);
533 return 0;
534 }
535}
536
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400537void ByteCodeGenerator::write8(uint8_t b) {
538 fCode->push_back(b);
539}
540
541void ByteCodeGenerator::write16(uint16_t i) {
Mike Klein76346ac2019-05-17 11:57:10 -0500542 size_t n = fCode->size();
543 fCode->resize(n+2);
544 memcpy(fCode->data() + n, &i, 2);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400545}
546
547void ByteCodeGenerator::write32(uint32_t i) {
Mike Klein76346ac2019-05-17 11:57:10 -0500548 size_t n = fCode->size();
549 fCode->resize(n+4);
550 memcpy(fCode->data() + n, &i, 4);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400551}
552
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400553void ByteCodeGenerator::write(ByteCodeInstruction i, int count) {
Brian Osman4a47da72019-07-12 11:30:32 -0400554 switch (i) {
555 case ByteCodeInstruction::kLoopBegin: this->enterLoop(); break;
556 case ByteCodeInstruction::kLoopEnd: this->exitLoop(); break;
557
558 case ByteCodeInstruction::kMaskPush: this->enterCondition(); break;
559 case ByteCodeInstruction::kMaskPop:
560 case ByteCodeInstruction::kMaskBlend: this->exitCondition(); break;
561 default: /* Do nothing */ break;
562 }
Mike Klein108e9352019-05-21 11:05:17 -0500563 this->write16((uint16_t)i);
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400564 fStackCount += StackUsage(i, count);
565 fMaxStackCount = std::max(fMaxStackCount, fStackCount);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400566}
567
Mike Klein76346ac2019-05-17 11:57:10 -0500568static ByteCodeInstruction vector_instruction(ByteCodeInstruction base, int count) {
Brian Osman07c117b2019-05-23 12:51:06 -0700569 SkASSERT(count >= 1 && count <= 4);
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400570 return ((ByteCodeInstruction) ((int) base + 1 - count));
Ethan Nicholas48a75aa2019-05-16 17:15:56 -0400571}
572
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400573void ByteCodeGenerator::writeTypedInstruction(const Type& type, ByteCodeInstruction s,
Ethan Nicholas48a75aa2019-05-16 17:15:56 -0400574 ByteCodeInstruction u, ByteCodeInstruction f,
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400575 int count, bool writeCount) {
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400576 switch (type_category(type)) {
577 case TypeCategory::kSigned:
Ethan Nicholas48a75aa2019-05-16 17:15:56 -0400578 this->write(vector_instruction(s, count));
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400579 break;
580 case TypeCategory::kUnsigned:
Ethan Nicholas48a75aa2019-05-16 17:15:56 -0400581 this->write(vector_instruction(u, count));
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400582 break;
Brian Osman1e855b22019-05-29 15:21:52 -0400583 case TypeCategory::kFloat: {
584 if (count > 4) {
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400585 this->write((ByteCodeInstruction)((int)f + 1), count);
Brian Osman1e855b22019-05-29 15:21:52 -0400586 } else {
587 this->write(vector_instruction(f, count));
588 }
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400589 break;
Brian Osman1e855b22019-05-29 15:21:52 -0400590 }
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400591 default:
592 SkASSERT(false);
593 }
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400594 if (writeCount) {
595 this->write8(count);
596 }
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400597}
598
Brian Osman3e29f1d2019-05-28 09:35:05 -0400599bool ByteCodeGenerator::writeBinaryExpression(const BinaryExpression& b, bool discard) {
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400600 if (b.fOperator == Token::Kind::EQ) {
601 std::unique_ptr<LValue> lvalue = this->getLValue(*b.fLeft);
602 this->writeExpression(*b.fRight);
Brian Osman3e29f1d2019-05-28 09:35:05 -0400603 lvalue->store(discard);
604 discard = false;
605 return discard;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400606 }
Brian Osman16e6fd52019-05-29 11:19:00 -0400607 const Type& lType = b.fLeft->fType;
608 const Type& rType = b.fRight->fType;
Brian Osman909231c2019-05-29 15:34:36 -0400609 bool lVecOrMtx = (lType.kind() == Type::kVector_Kind || lType.kind() == Type::kMatrix_Kind);
610 bool rVecOrMtx = (rType.kind() == Type::kVector_Kind || rType.kind() == Type::kMatrix_Kind);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400611 Token::Kind op;
612 std::unique_ptr<LValue> lvalue;
613 if (is_assignment(b.fOperator)) {
614 lvalue = this->getLValue(*b.fLeft);
615 lvalue->load();
616 op = remove_assignment(b.fOperator);
617 } else {
618 this->writeExpression(*b.fLeft);
619 op = b.fOperator;
Brian Osman909231c2019-05-29 15:34:36 -0400620 if (!lVecOrMtx && rVecOrMtx) {
Brian Osman16e6fd52019-05-29 11:19:00 -0400621 for (int i = SlotCount(rType); i > 1; --i) {
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400622 this->write(ByteCodeInstruction::kDup);
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400623 this->write8(1);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400624 }
625 }
626 }
627 this->writeExpression(*b.fRight);
Brian Osman909231c2019-05-29 15:34:36 -0400628 if (lVecOrMtx && !rVecOrMtx) {
Brian Osman16e6fd52019-05-29 11:19:00 -0400629 for (int i = SlotCount(lType); i > 1; --i) {
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400630 this->write(ByteCodeInstruction::kDup);
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400631 this->write8(1);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400632 }
633 }
Brian Osman909231c2019-05-29 15:34:36 -0400634 // Special case for M*V, V*M, M*M (but not V*V!)
635 if (op == Token::Kind::STAR && lVecOrMtx && rVecOrMtx &&
636 !(lType.kind() == Type::kVector_Kind && rType.kind() == Type::kVector_Kind)) {
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400637 this->write(ByteCodeInstruction::kMatrixMultiply,
638 SlotCount(b.fType) - (SlotCount(lType) + SlotCount(rType)));
Brian Osman909231c2019-05-29 15:34:36 -0400639 int rCols = rType.columns(),
640 rRows = rType.rows(),
641 lCols = lType.columns(),
642 lRows = lType.rows();
643 // M*V treats the vector as a column
644 if (rType.kind() == Type::kVector_Kind) {
645 std::swap(rCols, rRows);
646 }
647 SkASSERT(lCols == rRows);
648 SkASSERT(SlotCount(b.fType) == lRows * rCols);
649 this->write8(lCols);
650 this->write8(lRows);
651 this->write8(rCols);
652 } else {
653 int count = std::max(SlotCount(lType), SlotCount(rType));
654 switch (op) {
655 case Token::Kind::EQEQ:
656 this->writeTypedInstruction(lType, ByteCodeInstruction::kCompareIEQ,
657 ByteCodeInstruction::kCompareIEQ,
658 ByteCodeInstruction::kCompareFEQ,
659 count);
660 // Collapse to a single bool
661 for (int i = count; i > 1; --i) {
662 this->write(ByteCodeInstruction::kAndB);
663 }
664 break;
665 case Token::Kind::GT:
666 this->writeTypedInstruction(lType, ByteCodeInstruction::kCompareSGT,
667 ByteCodeInstruction::kCompareUGT,
668 ByteCodeInstruction::kCompareFGT,
669 count);
670 break;
671 case Token::Kind::GTEQ:
672 this->writeTypedInstruction(lType, ByteCodeInstruction::kCompareSGTEQ,
673 ByteCodeInstruction::kCompareUGTEQ,
674 ByteCodeInstruction::kCompareFGTEQ,
675 count);
676 break;
677 case Token::Kind::LT:
678 this->writeTypedInstruction(lType, ByteCodeInstruction::kCompareSLT,
679 ByteCodeInstruction::kCompareULT,
680 ByteCodeInstruction::kCompareFLT,
681 count);
682 break;
683 case Token::Kind::LTEQ:
684 this->writeTypedInstruction(lType, ByteCodeInstruction::kCompareSLTEQ,
685 ByteCodeInstruction::kCompareULTEQ,
686 ByteCodeInstruction::kCompareFLTEQ,
687 count);
688 break;
689 case Token::Kind::MINUS:
690 this->writeTypedInstruction(lType, ByteCodeInstruction::kSubtractI,
691 ByteCodeInstruction::kSubtractI,
692 ByteCodeInstruction::kSubtractF,
693 count);
694 break;
695 case Token::Kind::NEQ:
696 this->writeTypedInstruction(lType, ByteCodeInstruction::kCompareINEQ,
697 ByteCodeInstruction::kCompareINEQ,
698 ByteCodeInstruction::kCompareFNEQ,
699 count);
700 // Collapse to a single bool
701 for (int i = count; i > 1; --i) {
702 this->write(ByteCodeInstruction::kOrB);
703 }
704 break;
705 case Token::Kind::PERCENT:
706 this->writeTypedInstruction(lType, ByteCodeInstruction::kRemainderS,
707 ByteCodeInstruction::kRemainderU,
708 ByteCodeInstruction::kRemainderF,
709 count);
710 break;
711 case Token::Kind::PLUS:
712 this->writeTypedInstruction(lType, ByteCodeInstruction::kAddI,
713 ByteCodeInstruction::kAddI,
714 ByteCodeInstruction::kAddF,
715 count);
716 break;
717 case Token::Kind::SLASH:
718 this->writeTypedInstruction(lType, ByteCodeInstruction::kDivideS,
719 ByteCodeInstruction::kDivideU,
720 ByteCodeInstruction::kDivideF,
721 count);
722 break;
723 case Token::Kind::STAR:
724 this->writeTypedInstruction(lType, ByteCodeInstruction::kMultiplyI,
725 ByteCodeInstruction::kMultiplyI,
726 ByteCodeInstruction::kMultiplyF,
727 count);
728 break;
Brian Osman569f12f2019-06-13 11:23:57 -0400729
730 case Token::Kind::LOGICALAND:
731 SkASSERT(type_category(lType) == SkSL::TypeCategory::kBool && count == 1);
732 this->write(ByteCodeInstruction::kAndB);
733 break;
734 case Token::Kind::LOGICALNOT:
735 SkASSERT(type_category(lType) == SkSL::TypeCategory::kBool && count == 1);
736 this->write(ByteCodeInstruction::kNotB);
737 break;
738 case Token::Kind::LOGICALOR:
739 SkASSERT(type_category(lType) == SkSL::TypeCategory::kBool && count == 1);
740 this->write(ByteCodeInstruction::kOrB);
741 break;
742 case Token::Kind::LOGICALXOR:
743 SkASSERT(type_category(lType) == SkSL::TypeCategory::kBool && count == 1);
744 this->write(ByteCodeInstruction::kXorB);
745 break;
746
Brian Osman909231c2019-05-29 15:34:36 -0400747 default:
Brian Osmandb3dad22019-07-26 15:44:29 -0400748 fErrors.error(b.fOffset, SkSL::String::printf("Unsupported binary operator '%s'",
749 Compiler::OperatorName(op)));
750 break;
Brian Osman909231c2019-05-29 15:34:36 -0400751 }
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400752 }
753 if (lvalue) {
Brian Osman3e29f1d2019-05-28 09:35:05 -0400754 lvalue->store(discard);
755 discard = false;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400756 }
Brian Osman3e29f1d2019-05-28 09:35:05 -0400757 return discard;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400758}
759
760void ByteCodeGenerator::writeBoolLiteral(const BoolLiteral& b) {
761 this->write(ByteCodeInstruction::kPushImmediate);
Brian Osman569f12f2019-06-13 11:23:57 -0400762 this->write32(b.fValue ? ~0 : 0);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400763}
764
765void ByteCodeGenerator::writeConstructor(const Constructor& c) {
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400766 for (const auto& arg : c.fArguments) {
767 this->writeExpression(*arg);
768 }
769 if (c.fArguments.size() == 1) {
Brian Osman29e013d2019-05-28 17:16:03 -0400770 const Type& inType = c.fArguments[0]->fType;
771 const Type& outType = c.fType;
772 TypeCategory inCategory = type_category(inType);
773 TypeCategory outCategory = type_category(outType);
774 int inCount = SlotCount(inType);
775 int outCount = SlotCount(outType);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400776 if (inCategory != outCategory) {
Brian Osmanc51d7912019-05-22 15:16:16 -0700777 SkASSERT(inCount == outCount);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400778 if (inCategory == TypeCategory::kFloat) {
779 SkASSERT(outCategory == TypeCategory::kSigned ||
780 outCategory == TypeCategory::kUnsigned);
Brian Osmanc51d7912019-05-22 15:16:16 -0700781 this->write(vector_instruction(ByteCodeInstruction::kConvertFtoI, outCount));
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400782 } else if (outCategory == TypeCategory::kFloat) {
783 if (inCategory == TypeCategory::kSigned) {
Brian Osmanc51d7912019-05-22 15:16:16 -0700784 this->write(vector_instruction(ByteCodeInstruction::kConvertStoF, outCount));
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400785 } else {
786 SkASSERT(inCategory == TypeCategory::kUnsigned);
Brian Osmanc51d7912019-05-22 15:16:16 -0700787 this->write(vector_instruction(ByteCodeInstruction::kConvertUtoF, outCount));
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400788 }
789 } else {
790 SkASSERT(false);
791 }
792 }
Brian Osman29e013d2019-05-28 17:16:03 -0400793 if (inType.kind() == Type::kMatrix_Kind && outType.kind() == Type::kMatrix_Kind) {
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400794 this->write(ByteCodeInstruction::kMatrixToMatrix,
795 SlotCount(outType) - SlotCount(inType));
Brian Osman29e013d2019-05-28 17:16:03 -0400796 this->write8(inType.columns());
797 this->write8(inType.rows());
798 this->write8(outType.columns());
799 this->write8(outType.rows());
800 } else if (inCount != outCount) {
Brian Osmanc51d7912019-05-22 15:16:16 -0700801 SkASSERT(inCount == 1);
Brian Osman29e013d2019-05-28 17:16:03 -0400802 if (outType.kind() == Type::kMatrix_Kind) {
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400803 this->write(ByteCodeInstruction::kScalarToMatrix, SlotCount(outType) - 1);
Brian Osman29e013d2019-05-28 17:16:03 -0400804 this->write8(outType.columns());
805 this->write8(outType.rows());
806 } else {
807 SkASSERT(outType.kind() == Type::kVector_Kind);
808 for (; inCount != outCount; ++inCount) {
809 this->write(ByteCodeInstruction::kDup);
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400810 this->write8(1);
Brian Osman29e013d2019-05-28 17:16:03 -0400811 }
Brian Osmanc51d7912019-05-22 15:16:16 -0700812 }
813 }
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400814 }
815}
816
Ethan Nicholas9e6a3932019-05-17 16:31:21 -0400817void ByteCodeGenerator::writeExternalFunctionCall(const ExternalFunctionCall& f) {
818 int argumentCount = 0;
819 for (const auto& arg : f.fArguments) {
820 this->writeExpression(*arg);
Brian Osman07c117b2019-05-23 12:51:06 -0700821 argumentCount += SlotCount(arg->fType);
Ethan Nicholas9e6a3932019-05-17 16:31:21 -0400822 }
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400823 this->write(ByteCodeInstruction::kCallExternal, SlotCount(f.fType) - argumentCount);
Ethan Nicholas9e6a3932019-05-17 16:31:21 -0400824 SkASSERT(argumentCount <= 255);
825 this->write8(argumentCount);
Brian Osman07c117b2019-05-23 12:51:06 -0700826 this->write8(SlotCount(f.fType));
Ethan Nicholas9e6a3932019-05-17 16:31:21 -0400827 int index = fOutput->fExternalValues.size();
828 fOutput->fExternalValues.push_back(f.fFunction);
829 SkASSERT(index <= 255);
830 this->write8(index);
831}
832
Ethan Nicholas91164d12019-05-15 15:29:54 -0400833void ByteCodeGenerator::writeExternalValue(const ExternalValueReference& e) {
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400834 int count = SlotCount(e.fValue->type());
835 this->write(vector_instruction(ByteCodeInstruction::kReadExternal, count));
836 this->write8(count);
Ethan Nicholas91164d12019-05-15 15:29:54 -0400837 int index = fOutput->fExternalValues.size();
838 fOutput->fExternalValues.push_back(e.fValue);
839 SkASSERT(index <= 255);
840 this->write8(index);
841}
842
Brian Osman07c117b2019-05-23 12:51:06 -0700843void ByteCodeGenerator::writeVariableExpression(const Expression& expr) {
Brian Osman869a3e82019-07-18 17:00:34 -0400844 Variable::Storage storage = Variable::kLocal_Storage;
Brian Osman07c117b2019-05-23 12:51:06 -0700845 int location = this->getLocation(expr, &storage);
846 bool isGlobal = storage == Variable::kGlobal_Storage;
847 int count = SlotCount(expr.fType);
848 if (location < 0 || count > 4) {
849 if (location >= 0) {
850 this->write(ByteCodeInstruction::kPushImmediate);
851 this->write32(location);
852 }
853 this->write(isGlobal ? ByteCodeInstruction::kLoadExtendedGlobal
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400854 : ByteCodeInstruction::kLoadExtended,
855 count);
Brian Osman07c117b2019-05-23 12:51:06 -0700856 this->write8(count);
857 } else {
858 this->write(vector_instruction(isGlobal ? ByteCodeInstruction::kLoadGlobal
859 : ByteCodeInstruction::kLoad,
860 count));
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400861 this->write8(count);
Brian Osman07c117b2019-05-23 12:51:06 -0700862 this->write8(location);
863 }
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400864}
865
Brian Osmand30e0392019-06-14 14:05:14 -0400866static inline uint32_t float_to_bits(float x) {
867 uint32_t u;
868 memcpy(&u, &x, sizeof(uint32_t));
869 return u;
870}
871
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400872void ByteCodeGenerator::writeFloatLiteral(const FloatLiteral& f) {
873 this->write(ByteCodeInstruction::kPushImmediate);
Brian Osmand30e0392019-06-14 14:05:14 -0400874 this->write32(float_to_bits(f.fValue));
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400875}
876
Ethan Nicholas82162ee2019-05-21 16:05:08 -0400877void ByteCodeGenerator::writeIntrinsicCall(const FunctionCall& c) {
878 auto found = fIntrinsics.find(c.fFunction.fName);
879 if (found == fIntrinsics.end()) {
880 fErrors.error(c.fOffset, "unsupported intrinsic function");
881 return;
882 }
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400883 int count = SlotCount(c.fArguments[0]->fType);
Ethan Nicholasae9633b2019-05-24 12:46:34 -0400884 if (found->second.fIsSpecial) {
Brian Osmanb380e712019-07-24 17:02:39 -0400885 SpecialIntrinsic special = found->second.fValue.fSpecial;
886 switch (special) {
887 case SpecialIntrinsic::kDot: {
888 SkASSERT(c.fArguments.size() == 2);
889 SkASSERT(count == SlotCount(c.fArguments[1]->fType));
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400890 this->write(vector_instruction(ByteCodeInstruction::kMultiplyF, count));
891 this->write8(count);
Brian Osmanb380e712019-07-24 17:02:39 -0400892 for (int i = count; i > 1; --i) {
893 this->write(ByteCodeInstruction::kAddF);
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400894 this->write8(1);
Brian Osmanb380e712019-07-24 17:02:39 -0400895 }
896 break;
897 }
Brian Osmanb380e712019-07-24 17:02:39 -0400898 default:
899 SkASSERT(false);
Ethan Nicholasae9633b2019-05-24 12:46:34 -0400900 }
901 } else {
902 switch (found->second.fValue.fInstruction) {
903 case ByteCodeInstruction::kCos:
Ethan Nicholasae9633b2019-05-24 12:46:34 -0400904 case ByteCodeInstruction::kSin:
Ethan Nicholasae9633b2019-05-24 12:46:34 -0400905 case ByteCodeInstruction::kTan:
906 SkASSERT(c.fArguments.size() > 0);
Ethan Nicholasadecf4b2019-09-05 12:43:34 -0400907 this->write(vector_instruction(found->second.fValue.fInstruction, count));
908 this->write8(count);
909 break;
910 case ByteCodeInstruction::kSqrt:
911 SkASSERT(c.fArguments.size() > 0);
912 this->write(vector_instruction(found->second.fValue.fInstruction, count));
Ethan Nicholasae9633b2019-05-24 12:46:34 -0400913 break;
Mike Reed634c9412019-07-18 13:20:04 -0400914 case ByteCodeInstruction::kInverse2x2: {
915 SkASSERT(c.fArguments.size() > 0);
916 auto op = ByteCodeInstruction::kInverse2x2;
917 switch (count) {
918 case 4: break; // float2x2
919 case 9: op = ByteCodeInstruction::kInverse3x3; break;
920 case 16: op = ByteCodeInstruction::kInverse4x4; break;
921 default: SkASSERT(false);
922 }
923 this->write(op);
Brian Osmanb380e712019-07-24 17:02:39 -0400924 break;
925 }
Ethan Nicholasae9633b2019-05-24 12:46:34 -0400926 default:
927 SkASSERT(false);
928 }
Ethan Nicholas82162ee2019-05-21 16:05:08 -0400929 }
930}
931
Ethan Nicholas0e9401d2019-03-21 11:05:37 -0400932void ByteCodeGenerator::writeFunctionCall(const FunctionCall& f) {
Brian Osmand3494ed2019-06-20 15:41:34 -0400933 // Builtins have simple signatures...
Ethan Nicholas82162ee2019-05-21 16:05:08 -0400934 if (f.fFunction.fBuiltin) {
Brian Osmand3494ed2019-06-20 15:41:34 -0400935 for (const auto& arg : f.fArguments) {
936 this->writeExpression(*arg);
937 }
Ethan Nicholas82162ee2019-05-21 16:05:08 -0400938 this->writeIntrinsicCall(f);
939 return;
940 }
Brian Osmand3494ed2019-06-20 15:41:34 -0400941
Brian Osman6f5358f2019-07-09 14:17:23 -0400942 // Find the index of the function we're calling. We explicitly do not allow calls to functions
943 // before they're defined. This is an easy-to-understand rule that prevents recursion.
944 size_t idx;
945 for (idx = 0; idx < fFunctions.size(); ++idx) {
946 if (f.fFunction.matches(fFunctions[idx]->fDeclaration)) {
947 break;
948 }
949 }
950 if (idx > 255) {
951 fErrors.error(f.fOffset, "Function count limit exceeded");
952 return;
953 } else if (idx >= fFunctions.size()) {
954 fErrors.error(f.fOffset, "Call to undefined function");
955 return;
956 }
957
958 // We may need to deal with out parameters, so the sequence is tricky
Brian Osmand3494ed2019-06-20 15:41:34 -0400959 if (int returnCount = SlotCount(f.fType)) {
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400960 this->write(ByteCodeInstruction::kReserve, returnCount);
Brian Osmand3494ed2019-06-20 15:41:34 -0400961 this->write8(returnCount);
962 }
963
964 int argCount = f.fArguments.size();
965 std::vector<std::unique_ptr<LValue>> lvalues;
966 for (int i = 0; i < argCount; ++i) {
967 const auto& param = f.fFunction.fParameters[i];
968 const auto& arg = f.fArguments[i];
969 if (param->fModifiers.fFlags & Modifiers::kOut_Flag) {
970 lvalues.emplace_back(this->getLValue(*arg));
971 lvalues.back()->load();
972 } else {
973 this->writeExpression(*arg);
974 }
975 }
976
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400977 // The space used by the call is based on the callee, but it also unwinds all of that before
978 // we continue execution. We adjust our max stack depths below.
Brian Osman226668a2019-05-14 16:47:30 -0400979 this->write(ByteCodeInstruction::kCall);
Brian Osman6f5358f2019-07-09 14:17:23 -0400980 this->write8(idx);
Brian Osmand3494ed2019-06-20 15:41:34 -0400981
Brian Osman4a47da72019-07-12 11:30:32 -0400982 const ByteCodeFunction* callee = fOutput->fFunctions[idx].get();
983 fMaxLoopCount = std::max(fMaxLoopCount, fLoopCount + callee->fLoopCount);
984 fMaxConditionCount = std::max(fMaxConditionCount, fConditionCount + callee->fConditionCount);
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400985 fMaxStackCount = std::max(fMaxStackCount, fStackCount + callee->fLocalCount
986 + callee->fStackCount);
Brian Osman4a47da72019-07-12 11:30:32 -0400987
Brian Osmand3494ed2019-06-20 15:41:34 -0400988 // After the called function returns, the stack will still contain our arguments. We have to
989 // pop them (storing any out parameters back to their lvalues as we go). We glob together slot
990 // counts for all parameters that aren't out-params, so we can pop them in one big chunk.
991 int popCount = 0;
992 auto pop = [&]() {
993 if (popCount > 4) {
Brian Osmanaa2ca3f2019-07-15 13:24:48 -0400994 this->write(ByteCodeInstruction::kPopN, popCount);
Brian Osmand3494ed2019-06-20 15:41:34 -0400995 this->write8(popCount);
996 } else if (popCount > 0) {
997 this->write(vector_instruction(ByteCodeInstruction::kPop, popCount));
998 }
999 popCount = 0;
1000 };
1001
1002 for (int i = argCount - 1; i >= 0; --i) {
1003 const auto& param = f.fFunction.fParameters[i];
1004 const auto& arg = f.fArguments[i];
1005 if (param->fModifiers.fFlags & Modifiers::kOut_Flag) {
1006 pop();
1007 lvalues.back()->store(true);
1008 lvalues.pop_back();
1009 } else {
1010 popCount += SlotCount(arg->fType);
1011 }
1012 }
1013 pop();
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001014}
1015
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001016void ByteCodeGenerator::writeIntLiteral(const IntLiteral& i) {
1017 this->write(ByteCodeInstruction::kPushImmediate);
1018 this->write32(i.fValue);
1019}
1020
1021void ByteCodeGenerator::writeNullLiteral(const NullLiteral& n) {
1022 // not yet implemented
1023 abort();
1024}
1025
Brian Osman3e29f1d2019-05-28 09:35:05 -04001026bool ByteCodeGenerator::writePrefixExpression(const PrefixExpression& p, bool discard) {
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001027 switch (p.fOperator) {
1028 case Token::Kind::PLUSPLUS: // fall through
1029 case Token::Kind::MINUSMINUS: {
Brian Osman07c117b2019-05-23 12:51:06 -07001030 SkASSERT(SlotCount(p.fOperand->fType) == 1);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001031 std::unique_ptr<LValue> lvalue = this->getLValue(*p.fOperand);
1032 lvalue->load();
1033 this->write(ByteCodeInstruction::kPushImmediate);
Brian Osmand30e0392019-06-14 14:05:14 -04001034 this->write32(type_category(p.fType) == TypeCategory::kFloat ? float_to_bits(1.0f) : 1);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001035 if (p.fOperator == Token::Kind::PLUSPLUS) {
1036 this->writeTypedInstruction(p.fType,
1037 ByteCodeInstruction::kAddI,
1038 ByteCodeInstruction::kAddI,
Ethan Nicholas48a75aa2019-05-16 17:15:56 -04001039 ByteCodeInstruction::kAddF,
1040 1);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001041 } else {
1042 this->writeTypedInstruction(p.fType,
1043 ByteCodeInstruction::kSubtractI,
1044 ByteCodeInstruction::kSubtractI,
Ethan Nicholas48a75aa2019-05-16 17:15:56 -04001045 ByteCodeInstruction::kSubtractF,
1046 1);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001047 }
Brian Osman3e29f1d2019-05-28 09:35:05 -04001048 lvalue->store(discard);
1049 discard = false;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001050 break;
1051 }
Ethan Nicholas354ecf32019-05-07 16:13:02 -04001052 case Token::Kind::MINUS: {
1053 this->writeExpression(*p.fOperand);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001054 this->writeTypedInstruction(p.fType,
Mike Klein12710912019-05-21 11:04:59 -05001055 ByteCodeInstruction::kNegateI,
1056 ByteCodeInstruction::kNegateI,
Ethan Nicholas48a75aa2019-05-16 17:15:56 -04001057 ByteCodeInstruction::kNegateF,
Ethan Nicholasadecf4b2019-09-05 12:43:34 -04001058 SlotCount(p.fOperand->fType),
1059 false);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001060 break;
Ethan Nicholas354ecf32019-05-07 16:13:02 -04001061 }
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001062 default:
1063 SkASSERT(false);
1064 }
Brian Osman3e29f1d2019-05-28 09:35:05 -04001065 return discard;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001066}
1067
Brian Osman3e29f1d2019-05-28 09:35:05 -04001068bool ByteCodeGenerator::writePostfixExpression(const PostfixExpression& p, bool discard) {
Brian Osmanf3fa6002019-05-17 14:26:53 -04001069 switch (p.fOperator) {
1070 case Token::Kind::PLUSPLUS: // fall through
1071 case Token::Kind::MINUSMINUS: {
Brian Osman07c117b2019-05-23 12:51:06 -07001072 SkASSERT(SlotCount(p.fOperand->fType) == 1);
Brian Osmanf3fa6002019-05-17 14:26:53 -04001073 std::unique_ptr<LValue> lvalue = this->getLValue(*p.fOperand);
1074 lvalue->load();
Brian Osman52c1bf12019-07-18 13:12:19 -04001075 // If we're not supposed to discard the result, then make a copy *before* the +/-
Brian Osman3e29f1d2019-05-28 09:35:05 -04001076 if (!discard) {
1077 this->write(ByteCodeInstruction::kDup);
Ethan Nicholasadecf4b2019-09-05 12:43:34 -04001078 this->write8(1);
Brian Osman3e29f1d2019-05-28 09:35:05 -04001079 }
Brian Osmanf3fa6002019-05-17 14:26:53 -04001080 this->write(ByteCodeInstruction::kPushImmediate);
Brian Osmand30e0392019-06-14 14:05:14 -04001081 this->write32(type_category(p.fType) == TypeCategory::kFloat ? float_to_bits(1.0f) : 1);
Brian Osmanf3fa6002019-05-17 14:26:53 -04001082 if (p.fOperator == Token::Kind::PLUSPLUS) {
1083 this->writeTypedInstruction(p.fType,
1084 ByteCodeInstruction::kAddI,
1085 ByteCodeInstruction::kAddI,
1086 ByteCodeInstruction::kAddF,
1087 1);
1088 } else {
1089 this->writeTypedInstruction(p.fType,
1090 ByteCodeInstruction::kSubtractI,
1091 ByteCodeInstruction::kSubtractI,
1092 ByteCodeInstruction::kSubtractF,
1093 1);
1094 }
Brian Osman52c1bf12019-07-18 13:12:19 -04001095 // Always consume the result as part of the store
1096 lvalue->store(true);
Brian Osman3e29f1d2019-05-28 09:35:05 -04001097 discard = false;
Brian Osmanf3fa6002019-05-17 14:26:53 -04001098 break;
1099 }
1100 default:
1101 SkASSERT(false);
1102 }
Brian Osman3e29f1d2019-05-28 09:35:05 -04001103 return discard;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001104}
1105
1106void ByteCodeGenerator::writeSwizzle(const Swizzle& s) {
Brian Osman0785db02019-05-24 14:19:11 -04001107 if (swizzle_is_simple(s)) {
1108 this->writeVariableExpression(s);
1109 return;
1110 }
1111
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001112 switch (s.fBase->fKind) {
1113 case Expression::kVariableReference_Kind: {
1114 const Variable& var = ((VariableReference&) *s.fBase).fVariable;
Brian Osman1091f022019-05-16 09:42:16 -04001115 this->write(var.fStorage == Variable::kGlobal_Storage
1116 ? ByteCodeInstruction::kLoadSwizzleGlobal
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001117 : ByteCodeInstruction::kLoadSwizzle,
1118 s.fComponents.size());
Brian Osman1091f022019-05-16 09:42:16 -04001119 this->write8(this->getLocation(var));
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001120 this->write8(s.fComponents.size());
1121 for (int c : s.fComponents) {
1122 this->write8(c);
1123 }
1124 break;
1125 }
1126 default:
1127 this->writeExpression(*s.fBase);
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001128 this->write(ByteCodeInstruction::kSwizzle,
1129 s.fComponents.size() - s.fBase->fType.columns());
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001130 this->write8(s.fBase->fType.columns());
1131 this->write8(s.fComponents.size());
1132 for (int c : s.fComponents) {
1133 this->write8(c);
1134 }
1135 }
1136}
1137
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001138void ByteCodeGenerator::writeTernaryExpression(const TernaryExpression& t) {
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001139 int count = SlotCount(t.fType);
1140 SkASSERT(count == SlotCount(t.fIfTrue->fType));
1141 SkASSERT(count == SlotCount(t.fIfFalse->fType));
1142
Brian Osman4e93feb2019-05-16 15:38:00 -04001143 this->writeExpression(*t.fTest);
Brian Osman569f12f2019-06-13 11:23:57 -04001144 this->write(ByteCodeInstruction::kMaskPush);
Brian Osman4e93feb2019-05-16 15:38:00 -04001145 this->writeExpression(*t.fIfTrue);
Brian Osman569f12f2019-06-13 11:23:57 -04001146 this->write(ByteCodeInstruction::kMaskNegate);
1147 this->writeExpression(*t.fIfFalse);
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001148 this->write(ByteCodeInstruction::kMaskBlend, count);
1149 this->write8(count);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001150}
1151
Brian Osman3e29f1d2019-05-28 09:35:05 -04001152void ByteCodeGenerator::writeExpression(const Expression& e, bool discard) {
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001153 switch (e.fKind) {
1154 case Expression::kBinary_Kind:
Brian Osman3e29f1d2019-05-28 09:35:05 -04001155 discard = this->writeBinaryExpression((BinaryExpression&) e, discard);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001156 break;
1157 case Expression::kBoolLiteral_Kind:
1158 this->writeBoolLiteral((BoolLiteral&) e);
1159 break;
1160 case Expression::kConstructor_Kind:
1161 this->writeConstructor((Constructor&) e);
1162 break;
Ethan Nicholas9e6a3932019-05-17 16:31:21 -04001163 case Expression::kExternalFunctionCall_Kind:
1164 this->writeExternalFunctionCall((ExternalFunctionCall&) e);
1165 break;
Ethan Nicholas91164d12019-05-15 15:29:54 -04001166 case Expression::kExternalValue_Kind:
1167 this->writeExternalValue((ExternalValueReference&) e);
1168 break;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001169 case Expression::kFieldAccess_Kind:
Brian Osman07c117b2019-05-23 12:51:06 -07001170 case Expression::kIndex_Kind:
1171 case Expression::kVariableReference_Kind:
1172 this->writeVariableExpression(e);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001173 break;
1174 case Expression::kFloatLiteral_Kind:
1175 this->writeFloatLiteral((FloatLiteral&) e);
1176 break;
1177 case Expression::kFunctionCall_Kind:
1178 this->writeFunctionCall((FunctionCall&) e);
1179 break;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001180 case Expression::kIntLiteral_Kind:
1181 this->writeIntLiteral((IntLiteral&) e);
1182 break;
1183 case Expression::kNullLiteral_Kind:
1184 this->writeNullLiteral((NullLiteral&) e);
1185 break;
1186 case Expression::kPrefix_Kind:
Brian Osman3e29f1d2019-05-28 09:35:05 -04001187 discard = this->writePrefixExpression((PrefixExpression&) e, discard);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001188 break;
1189 case Expression::kPostfix_Kind:
Brian Osman3e29f1d2019-05-28 09:35:05 -04001190 discard = this->writePostfixExpression((PostfixExpression&) e, discard);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001191 break;
1192 case Expression::kSwizzle_Kind:
1193 this->writeSwizzle((Swizzle&) e);
1194 break;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001195 case Expression::kTernary_Kind:
1196 this->writeTernaryExpression((TernaryExpression&) e);
1197 break;
1198 default:
1199 printf("unsupported expression %s\n", e.description().c_str());
1200 SkASSERT(false);
1201 }
Brian Osman3e29f1d2019-05-28 09:35:05 -04001202 if (discard) {
1203 int count = SlotCount(e.fType);
1204 if (count > 4) {
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001205 this->write(ByteCodeInstruction::kPopN, count);
Brian Osman3e29f1d2019-05-28 09:35:05 -04001206 this->write8(count);
Brian Osmanfba386b2019-06-20 14:54:15 -04001207 } else if (count != 0) {
Brian Osman3e29f1d2019-05-28 09:35:05 -04001208 this->write(vector_instruction(ByteCodeInstruction::kPop, count));
1209 }
1210 discard = false;
1211 }
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001212}
1213
Ethan Nicholas91164d12019-05-15 15:29:54 -04001214class ByteCodeExternalValueLValue : public ByteCodeGenerator::LValue {
1215public:
1216 ByteCodeExternalValueLValue(ByteCodeGenerator* generator, ExternalValue& value, int index)
1217 : INHERITED(*generator)
Brian Osman07c117b2019-05-23 12:51:06 -07001218 , fCount(ByteCodeGenerator::SlotCount(value.type()))
Ethan Nicholas91164d12019-05-15 15:29:54 -04001219 , fIndex(index) {}
1220
1221 void load() override {
Ethan Nicholas48a75aa2019-05-16 17:15:56 -04001222 fGenerator.write(vector_instruction(ByteCodeInstruction::kReadExternal, fCount));
Ethan Nicholasadecf4b2019-09-05 12:43:34 -04001223 fGenerator.write8(fCount);
Ethan Nicholas91164d12019-05-15 15:29:54 -04001224 fGenerator.write8(fIndex);
1225 }
1226
Brian Osman3e29f1d2019-05-28 09:35:05 -04001227 void store(bool discard) override {
1228 if (!discard) {
1229 fGenerator.write(vector_instruction(ByteCodeInstruction::kDup, fCount));
Ethan Nicholasadecf4b2019-09-05 12:43:34 -04001230 fGenerator.write8(fCount);
Brian Osman3e29f1d2019-05-28 09:35:05 -04001231 }
Ethan Nicholas48a75aa2019-05-16 17:15:56 -04001232 fGenerator.write(vector_instruction(ByteCodeInstruction::kWriteExternal, fCount));
Ethan Nicholasadecf4b2019-09-05 12:43:34 -04001233 fGenerator.write8(fCount);
Ethan Nicholas91164d12019-05-15 15:29:54 -04001234 fGenerator.write8(fIndex);
1235 }
1236
1237private:
1238 typedef LValue INHERITED;
1239
1240 int fCount;
1241
1242 int fIndex;
1243};
1244
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001245class ByteCodeSwizzleLValue : public ByteCodeGenerator::LValue {
1246public:
1247 ByteCodeSwizzleLValue(ByteCodeGenerator* generator, const Swizzle& swizzle)
1248 : INHERITED(*generator)
Brian Osman07c117b2019-05-23 12:51:06 -07001249 , fSwizzle(swizzle) {}
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001250
1251 void load() override {
Brian Osman1091f022019-05-16 09:42:16 -04001252 fGenerator.writeSwizzle(fSwizzle);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001253 }
1254
Brian Osman3e29f1d2019-05-28 09:35:05 -04001255 void store(bool discard) override {
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001256 int count = fSwizzle.fComponents.size();
Brian Osman3e29f1d2019-05-28 09:35:05 -04001257 if (!discard) {
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001258 fGenerator.write(vector_instruction(ByteCodeInstruction::kDup, count));
Ethan Nicholasadecf4b2019-09-05 12:43:34 -04001259 fGenerator.write8(count);
Brian Osman3e29f1d2019-05-28 09:35:05 -04001260 }
Brian Osman869a3e82019-07-18 17:00:34 -04001261 Variable::Storage storage = Variable::kLocal_Storage;
Brian Osman07c117b2019-05-23 12:51:06 -07001262 int location = fGenerator.getLocation(*fSwizzle.fBase, &storage);
1263 bool isGlobal = storage == Variable::kGlobal_Storage;
1264 if (location < 0) {
1265 fGenerator.write(isGlobal ? ByteCodeInstruction::kStoreSwizzleIndirectGlobal
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001266 : ByteCodeInstruction::kStoreSwizzleIndirect,
1267 count);
Brian Osman07c117b2019-05-23 12:51:06 -07001268 } else {
1269 fGenerator.write(isGlobal ? ByteCodeInstruction::kStoreSwizzleGlobal
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001270 : ByteCodeInstruction::kStoreSwizzle,
1271 count);
Brian Osman07c117b2019-05-23 12:51:06 -07001272 fGenerator.write8(location);
1273 }
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001274 fGenerator.write8(count);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001275 for (int c : fSwizzle.fComponents) {
1276 fGenerator.write8(c);
1277 }
1278 }
1279
1280private:
1281 const Swizzle& fSwizzle;
1282
1283 typedef LValue INHERITED;
1284};
1285
Brian Osman07c117b2019-05-23 12:51:06 -07001286class ByteCodeExpressionLValue : public ByteCodeGenerator::LValue {
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001287public:
Brian Osman07c117b2019-05-23 12:51:06 -07001288 ByteCodeExpressionLValue(ByteCodeGenerator* generator, const Expression& expr)
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001289 : INHERITED(*generator)
Brian Osman07c117b2019-05-23 12:51:06 -07001290 , fExpression(expr) {}
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001291
1292 void load() override {
Brian Osman07c117b2019-05-23 12:51:06 -07001293 fGenerator.writeVariableExpression(fExpression);
Brian Osman1091f022019-05-16 09:42:16 -04001294 }
1295
Brian Osman3e29f1d2019-05-28 09:35:05 -04001296 void store(bool discard) override {
Brian Osman07c117b2019-05-23 12:51:06 -07001297 int count = ByteCodeGenerator::SlotCount(fExpression.fType);
Brian Osman3e29f1d2019-05-28 09:35:05 -04001298 if (!discard) {
1299 if (count > 4) {
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001300 fGenerator.write(ByteCodeInstruction::kDupN, count);
Brian Osman3e29f1d2019-05-28 09:35:05 -04001301 fGenerator.write8(count);
1302 } else {
1303 fGenerator.write(vector_instruction(ByteCodeInstruction::kDup, count));
Ethan Nicholasadecf4b2019-09-05 12:43:34 -04001304 fGenerator.write8(count);
Brian Osman3e29f1d2019-05-28 09:35:05 -04001305 }
Brian Osman07c117b2019-05-23 12:51:06 -07001306 }
Brian Osman869a3e82019-07-18 17:00:34 -04001307 Variable::Storage storage = Variable::kLocal_Storage;
Brian Osman07c117b2019-05-23 12:51:06 -07001308 int location = fGenerator.getLocation(fExpression, &storage);
1309 bool isGlobal = storage == Variable::kGlobal_Storage;
1310 if (location < 0 || count > 4) {
1311 if (location >= 0) {
1312 fGenerator.write(ByteCodeInstruction::kPushImmediate);
1313 fGenerator.write32(location);
1314 }
1315 fGenerator.write(isGlobal ? ByteCodeInstruction::kStoreExtendedGlobal
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001316 : ByteCodeInstruction::kStoreExtended,
1317 count);
Brian Osman07c117b2019-05-23 12:51:06 -07001318 fGenerator.write8(count);
1319 } else {
1320 fGenerator.write(vector_instruction(isGlobal ? ByteCodeInstruction::kStoreGlobal
1321 : ByteCodeInstruction::kStore,
1322 count));
1323 fGenerator.write8(location);
1324 }
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001325 }
1326
1327private:
1328 typedef LValue INHERITED;
1329
Brian Osman07c117b2019-05-23 12:51:06 -07001330 const Expression& fExpression;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001331};
1332
1333std::unique_ptr<ByteCodeGenerator::LValue> ByteCodeGenerator::getLValue(const Expression& e) {
1334 switch (e.fKind) {
Ethan Nicholas91164d12019-05-15 15:29:54 -04001335 case Expression::kExternalValue_Kind: {
1336 ExternalValue* value = ((ExternalValueReference&) e).fValue;
1337 int index = fOutput->fExternalValues.size();
1338 fOutput->fExternalValues.push_back(value);
1339 SkASSERT(index <= 255);
1340 return std::unique_ptr<LValue>(new ByteCodeExternalValueLValue(this, *value, index));
1341 }
Brian Osman07c117b2019-05-23 12:51:06 -07001342 case Expression::kFieldAccess_Kind:
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001343 case Expression::kIndex_Kind:
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001344 case Expression::kVariableReference_Kind:
Brian Osman07c117b2019-05-23 12:51:06 -07001345 return std::unique_ptr<LValue>(new ByteCodeExpressionLValue(this, e));
Brian Osman0785db02019-05-24 14:19:11 -04001346 case Expression::kSwizzle_Kind: {
1347 const Swizzle& s = (const Swizzle&) e;
1348 return swizzle_is_simple(s)
1349 ? std::unique_ptr<LValue>(new ByteCodeExpressionLValue(this, e))
1350 : std::unique_ptr<LValue>(new ByteCodeSwizzleLValue(this, s));
1351 }
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001352 case Expression::kTernary_Kind:
1353 default:
1354 printf("unsupported lvalue %s\n", e.description().c_str());
1355 return nullptr;
1356 }
1357}
1358
1359void ByteCodeGenerator::writeBlock(const Block& b) {
1360 for (const auto& s : b.fStatements) {
1361 this->writeStatement(*s);
1362 }
1363}
1364
1365void ByteCodeGenerator::setBreakTargets() {
1366 std::vector<DeferredLocation>& breaks = fBreakTargets.top();
1367 for (DeferredLocation& b : breaks) {
1368 b.set();
1369 }
1370 fBreakTargets.pop();
1371}
1372
1373void ByteCodeGenerator::setContinueTargets() {
1374 std::vector<DeferredLocation>& continues = fContinueTargets.top();
1375 for (DeferredLocation& c : continues) {
1376 c.set();
1377 }
1378 fContinueTargets.pop();
1379}
1380
1381void ByteCodeGenerator::writeBreakStatement(const BreakStatement& b) {
Brian Osman569f12f2019-06-13 11:23:57 -04001382 // TODO: Include BranchIfAllFalse to top-most LoopNext
1383 this->write(ByteCodeInstruction::kLoopBreak);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001384}
1385
1386void ByteCodeGenerator::writeContinueStatement(const ContinueStatement& c) {
Brian Osman569f12f2019-06-13 11:23:57 -04001387 // TODO: Include BranchIfAllFalse to top-most LoopNext
1388 this->write(ByteCodeInstruction::kLoopContinue);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001389}
1390
1391void ByteCodeGenerator::writeDoStatement(const DoStatement& d) {
Brian Osman569f12f2019-06-13 11:23:57 -04001392 this->write(ByteCodeInstruction::kLoopBegin);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001393 size_t start = fCode->size();
1394 this->writeStatement(*d.fStatement);
Brian Osman569f12f2019-06-13 11:23:57 -04001395 this->write(ByteCodeInstruction::kLoopNext);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001396 this->writeExpression(*d.fTest);
Brian Osman569f12f2019-06-13 11:23:57 -04001397 this->write(ByteCodeInstruction::kLoopMask);
1398 // TODO: Could shorten this with kBranchIfAnyTrue
1399 this->write(ByteCodeInstruction::kBranchIfAllFalse);
1400 DeferredLocation endLocation(this);
1401 this->write(ByteCodeInstruction::kBranch);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001402 this->write16(start);
Brian Osman569f12f2019-06-13 11:23:57 -04001403 endLocation.set();
1404 this->write(ByteCodeInstruction::kLoopEnd);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001405}
1406
1407void ByteCodeGenerator::writeForStatement(const ForStatement& f) {
1408 fContinueTargets.emplace();
1409 fBreakTargets.emplace();
1410 if (f.fInitializer) {
1411 this->writeStatement(*f.fInitializer);
1412 }
Brian Osman569f12f2019-06-13 11:23:57 -04001413 this->write(ByteCodeInstruction::kLoopBegin);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001414 size_t start = fCode->size();
1415 if (f.fTest) {
1416 this->writeExpression(*f.fTest);
Brian Osman569f12f2019-06-13 11:23:57 -04001417 this->write(ByteCodeInstruction::kLoopMask);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001418 }
Brian Osman569f12f2019-06-13 11:23:57 -04001419 this->write(ByteCodeInstruction::kBranchIfAllFalse);
1420 DeferredLocation endLocation(this);
1421 this->writeStatement(*f.fStatement);
1422 this->write(ByteCodeInstruction::kLoopNext);
1423 if (f.fNext) {
1424 this->writeExpression(*f.fNext, true);
1425 }
1426 this->write(ByteCodeInstruction::kBranch);
1427 this->write16(start);
1428 endLocation.set();
1429 this->write(ByteCodeInstruction::kLoopEnd);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001430}
1431
1432void ByteCodeGenerator::writeIfStatement(const IfStatement& i) {
Brian Osman569f12f2019-06-13 11:23:57 -04001433 this->writeExpression(*i.fTest);
1434 this->write(ByteCodeInstruction::kMaskPush);
1435 this->write(ByteCodeInstruction::kBranchIfAllFalse);
1436 DeferredLocation falseLocation(this);
1437 this->writeStatement(*i.fIfTrue);
1438 falseLocation.set();
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001439 if (i.fIfFalse) {
Brian Osman569f12f2019-06-13 11:23:57 -04001440 this->write(ByteCodeInstruction::kMaskNegate);
1441 this->write(ByteCodeInstruction::kBranchIfAllFalse);
1442 DeferredLocation endLocation(this);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001443 this->writeStatement(*i.fIfFalse);
Mike Kleinb45ee832019-05-17 11:11:11 -05001444 endLocation.set();
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001445 }
Brian Osman569f12f2019-06-13 11:23:57 -04001446 this->write(ByteCodeInstruction::kMaskPop);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001447}
1448
1449void ByteCodeGenerator::writeReturnStatement(const ReturnStatement& r) {
Brian Osman4a47da72019-07-12 11:30:32 -04001450 if (fLoopCount || fConditionCount) {
1451 fErrors.error(r.fOffset, "return not allowed inside conditional or loop");
1452 return;
1453 }
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001454 int count = SlotCount(r.fExpression->fType);
Ethan Nicholas746035a2019-04-23 13:31:09 -04001455 this->writeExpression(*r.fExpression);
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001456
1457 // Technically, the kReturn also pops fOutput->fLocalCount values from the stack, too, but we
1458 // haven't counted pushing those (they're outside the scope of our stack tracking). Instead,
1459 // we account for those in writeFunction().
1460
1461 // This is all fine because we don't allow conditional returns, so we only return once anyway.
1462 this->write(ByteCodeInstruction::kReturn, -count);
1463 this->write8(count);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001464}
1465
1466void ByteCodeGenerator::writeSwitchStatement(const SwitchStatement& r) {
1467 // not yet implemented
1468 abort();
1469}
1470
1471void ByteCodeGenerator::writeVarDeclarations(const VarDeclarations& v) {
1472 for (const auto& declStatement : v.fVars) {
1473 const VarDeclaration& decl = (VarDeclaration&) *declStatement;
1474 // we need to grab the location even if we don't use it, to ensure it
1475 // has been allocated
1476 int location = getLocation(*decl.fVar);
1477 if (decl.fValue) {
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001478 this->writeExpression(*decl.fValue);
Brian Osman07c117b2019-05-23 12:51:06 -07001479 int count = SlotCount(decl.fValue->fType);
1480 if (count > 4) {
1481 this->write(ByteCodeInstruction::kPushImmediate);
1482 this->write32(location);
Brian Osmanaa2ca3f2019-07-15 13:24:48 -04001483 this->write(ByteCodeInstruction::kStoreExtended, count);
Brian Osman07c117b2019-05-23 12:51:06 -07001484 this->write8(count);
1485 } else {
1486 this->write(vector_instruction(ByteCodeInstruction::kStore, count));
1487 this->write8(location);
1488 }
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001489 }
1490 }
1491}
1492
1493void ByteCodeGenerator::writeWhileStatement(const WhileStatement& w) {
Brian Osman569f12f2019-06-13 11:23:57 -04001494 this->write(ByteCodeInstruction::kLoopBegin);
1495 size_t cond = fCode->size();
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001496 this->writeExpression(*w.fTest);
Brian Osman569f12f2019-06-13 11:23:57 -04001497 this->write(ByteCodeInstruction::kLoopMask);
1498 this->write(ByteCodeInstruction::kBranchIfAllFalse);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001499 DeferredLocation endLocation(this);
1500 this->writeStatement(*w.fStatement);
Brian Osman569f12f2019-06-13 11:23:57 -04001501 this->write(ByteCodeInstruction::kLoopNext);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001502 this->write(ByteCodeInstruction::kBranch);
Brian Osman569f12f2019-06-13 11:23:57 -04001503 this->write16(cond);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001504 endLocation.set();
Brian Osman569f12f2019-06-13 11:23:57 -04001505 this->write(ByteCodeInstruction::kLoopEnd);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001506}
1507
1508void ByteCodeGenerator::writeStatement(const Statement& s) {
1509 switch (s.fKind) {
1510 case Statement::kBlock_Kind:
1511 this->writeBlock((Block&) s);
1512 break;
1513 case Statement::kBreak_Kind:
1514 this->writeBreakStatement((BreakStatement&) s);
1515 break;
1516 case Statement::kContinue_Kind:
1517 this->writeContinueStatement((ContinueStatement&) s);
1518 break;
1519 case Statement::kDiscard_Kind:
1520 // not yet implemented
1521 abort();
1522 case Statement::kDo_Kind:
1523 this->writeDoStatement((DoStatement&) s);
1524 break;
Brian Osman3e29f1d2019-05-28 09:35:05 -04001525 case Statement::kExpression_Kind:
1526 this->writeExpression(*((ExpressionStatement&) s).fExpression, true);
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001527 break;
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001528 case Statement::kFor_Kind:
1529 this->writeForStatement((ForStatement&) s);
1530 break;
1531 case Statement::kIf_Kind:
1532 this->writeIfStatement((IfStatement&) s);
1533 break;
1534 case Statement::kNop_Kind:
1535 break;
1536 case Statement::kReturn_Kind:
1537 this->writeReturnStatement((ReturnStatement&) s);
1538 break;
1539 case Statement::kSwitch_Kind:
1540 this->writeSwitchStatement((SwitchStatement&) s);
1541 break;
1542 case Statement::kVarDeclarations_Kind:
1543 this->writeVarDeclarations(*((VarDeclarationsStatement&) s).fDeclaration);
1544 break;
1545 case Statement::kWhile_Kind:
1546 this->writeWhileStatement((WhileStatement&) s);
1547 break;
1548 default:
1549 SkASSERT(false);
1550 }
1551}
1552
Brian Osman80164412019-06-07 13:00:23 -04001553ByteCodeFunction::ByteCodeFunction(const FunctionDeclaration* declaration)
1554 : fName(declaration->fName) {
1555 fParameterCount = 0;
1556 for (const auto& p : declaration->fParameters) {
1557 int slots = ByteCodeGenerator::SlotCount(p->fType);
1558 fParameters.push_back({ slots, (bool)(p->fModifiers.fFlags & Modifiers::kOut_Flag) });
1559 fParameterCount += slots;
1560 }
1561}
1562
Ethan Nicholas0e9401d2019-03-21 11:05:37 -04001563}