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Ethan Nicholascc305772017-10-13 16:17:45 -04001/*
2 * Copyright 2016 Google Inc.
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
John Stiles3738ef52021-04-13 10:41:57 -04008#include "src/sksl/codegen/SkSLMetalCodeGenerator.h"
Ethan Nicholascc305772017-10-13 16:17:45 -04009
John Stiles986c7fb2020-12-01 14:44:56 -050010#include "src/core/SkScopeExit.h"
Mike Kleinc0bd9f92019-04-23 12:05:21 -050011#include "src/sksl/SkSLCompiler.h"
John Stiles0023c0c2020-11-16 13:32:18 -050012#include "src/sksl/SkSLMemoryLayout.h"
John Stiles7384b372021-04-01 13:48:15 -040013#include "src/sksl/ir/SkSLConstructorArray.h"
John Stilese3ae9682021-08-05 10:35:01 -040014#include "src/sksl/ir/SkSLConstructorArrayCast.h"
John Stiles8cad6372021-04-07 12:31:13 -040015#include "src/sksl/ir/SkSLConstructorCompoundCast.h"
John Stiles7384b372021-04-01 13:48:15 -040016#include "src/sksl/ir/SkSLConstructorDiagonalMatrix.h"
John Stiles5abb9e12021-04-06 13:47:19 -040017#include "src/sksl/ir/SkSLConstructorMatrixResize.h"
John Stiles2938eea2021-04-01 18:58:25 -040018#include "src/sksl/ir/SkSLConstructorSplat.h"
John Stilesd47330f2021-04-08 23:25:52 -040019#include "src/sksl/ir/SkSLConstructorStruct.h"
Mike Kleinc0bd9f92019-04-23 12:05:21 -050020#include "src/sksl/ir/SkSLExpressionStatement.h"
21#include "src/sksl/ir/SkSLExtension.h"
22#include "src/sksl/ir/SkSLIndexExpression.h"
23#include "src/sksl/ir/SkSLModifiersDeclaration.h"
24#include "src/sksl/ir/SkSLNop.h"
John Stilesdc75a972020-11-25 16:24:55 -050025#include "src/sksl/ir/SkSLStructDefinition.h"
Mike Kleinc0bd9f92019-04-23 12:05:21 -050026#include "src/sksl/ir/SkSLVariableReference.h"
Ethan Nicholascc305772017-10-13 16:17:45 -040027
Brian Osmanc262a122020-08-06 16:34:34 -040028#include <algorithm>
29
Ethan Nicholascc305772017-10-13 16:17:45 -040030namespace SkSL {
31
John Stiles45990502021-02-16 10:55:27 -050032const char* MetalCodeGenerator::OperatorName(Operator op) {
33 switch (op.kind()) {
John Stilesd6449e92020-11-30 09:13:23 -050034 case Token::Kind::TK_LOGICALXOR: return "!=";
John Stiles45990502021-02-16 10:55:27 -050035 default: return op.operatorName();
John Stilesd6449e92020-11-30 09:13:23 -050036 }
37}
38
John Stilescdcdb042020-07-06 09:03:51 -040039class MetalCodeGenerator::GlobalStructVisitor {
40public:
41 virtual ~GlobalStructVisitor() = default;
Ethan Nicholas962dec42021-06-10 13:06:39 -040042 virtual void visitInterfaceBlock(const InterfaceBlock& block, skstd::string_view blockName) = 0;
43 virtual void visitTexture(const Type& type, skstd::string_view name) = 0;
44 virtual void visitSampler(const Type& type, skstd::string_view name) = 0;
John Stilesfdb8dbe2020-12-04 11:00:03 -050045 virtual void visitVariable(const Variable& var, const Expression* value) = 0;
John Stilescdcdb042020-07-06 09:03:51 -040046};
47
Ethan Nicholas962dec42021-06-10 13:06:39 -040048void MetalCodeGenerator::write(skstd::string_view s) {
Ethan Nicholasd2e09602021-06-10 11:21:59 -040049 if (s.empty()) {
Ethan Nicholascc305772017-10-13 16:17:45 -040050 return;
51 }
52 if (fAtLineStart) {
53 for (int i = 0; i < fIndentation; i++) {
54 fOut->writeText(" ");
55 }
56 }
Ethan Nicholasd2e09602021-06-10 11:21:59 -040057 fOut->writeText(String(s).c_str());
Ethan Nicholascc305772017-10-13 16:17:45 -040058 fAtLineStart = false;
59}
60
Ethan Nicholas962dec42021-06-10 13:06:39 -040061void MetalCodeGenerator::writeLine(skstd::string_view s) {
Ethan Nicholascc305772017-10-13 16:17:45 -040062 this->write(s);
John Stilese8b5a732021-03-12 13:25:52 -050063 fOut->writeText(fLineEnding);
64 fAtLineStart = true;
65}
66
67void MetalCodeGenerator::finishLine() {
68 if (!fAtLineStart) {
69 this->writeLine();
70 }
Ethan Nicholascc305772017-10-13 16:17:45 -040071}
72
73void MetalCodeGenerator::writeExtension(const Extension& ext) {
Ethan Nicholasefb09e22020-09-30 10:17:00 -040074 this->writeLine("#extension " + ext.name() + " : enable");
Ethan Nicholascc305772017-10-13 16:17:45 -040075}
76
Ethan Nicholas45fa8102020-01-13 10:58:49 -050077String MetalCodeGenerator::typeName(const Type& type) {
Ethan Nicholase6592142020-09-08 10:22:09 -040078 switch (type.typeKind()) {
John Stilesb4418502021-02-04 10:57:08 -050079 case Type::TypeKind::kArray:
80 SkASSERTF(type.columns() > 0, "invalid array size: %s", type.description().c_str());
81 return String::printf("array<%s, %d>",
82 this->typeName(type.componentType()).c_str(), type.columns());
83
Ethan Nicholase6592142020-09-08 10:22:09 -040084 case Type::TypeKind::kVector:
Ethan Nicholas45fa8102020-01-13 10:58:49 -050085 return this->typeName(type.componentType()) + to_string(type.columns());
John Stilesb4418502021-02-04 10:57:08 -050086
Ethan Nicholase6592142020-09-08 10:22:09 -040087 case Type::TypeKind::kMatrix:
Ethan Nicholas45fa8102020-01-13 10:58:49 -050088 return this->typeName(type.componentType()) + to_string(type.columns()) + "x" +
89 to_string(type.rows());
John Stilesb4418502021-02-04 10:57:08 -050090
Ethan Nicholase6592142020-09-08 10:22:09 -040091 case Type::TypeKind::kSampler:
John Stiles368db7c2020-12-29 11:20:08 -050092 return "texture2d<float>"; // FIXME - support other texture types
John Stilesb4418502021-02-04 10:57:08 -050093
Ethan Nicholascc305772017-10-13 16:17:45 -040094 default:
John Stiles7b2b8582021-08-09 14:20:54 -040095 // We currently only support full-precision types in MSL to avoid type coercion issues.
John Stiles54e7c052021-01-11 14:22:36 -050096 if (type == *fContext.fTypes.fHalf) {
John Stiles7b2b8582021-08-09 14:20:54 -040097 return "float";
Timothy Liang7d637782018-06-05 09:58:07 -040098 }
John Stiles7b2b8582021-08-09 14:20:54 -040099 if (type == *fContext.fTypes.fShort) {
100 return "int";
101 }
102 if (type == *fContext.fTypes.fUShort) {
103 return "uint";
104 }
105 return String(type.name());
Ethan Nicholascc305772017-10-13 16:17:45 -0400106 }
107}
108
Brian Osman02bc5222021-01-28 11:00:20 -0500109void MetalCodeGenerator::writeStructDefinition(const StructDefinition& s) {
110 const Type& type = s.type();
John Stilesdc75a972020-11-25 16:24:55 -0500111 this->writeLine("struct " + type.name() + " {");
112 fIndentation++;
113 this->writeFields(type.fields(), type.fOffset);
114 fIndentation--;
Brian Osman02bc5222021-01-28 11:00:20 -0500115 this->writeLine("};");
John Stilesdc75a972020-11-25 16:24:55 -0500116}
117
John Stilesb4418502021-02-04 10:57:08 -0500118void MetalCodeGenerator::writeType(const Type& type) {
119 this->write(this->typeName(type));
Ethan Nicholas45fa8102020-01-13 10:58:49 -0500120}
121
Ethan Nicholascc305772017-10-13 16:17:45 -0400122void MetalCodeGenerator::writeExpression(const Expression& expr, Precedence parentPrecedence) {
Ethan Nicholase6592142020-09-08 10:22:09 -0400123 switch (expr.kind()) {
124 case Expression::Kind::kBinary:
John Stiles81365af2020-08-18 09:24:00 -0400125 this->writeBinaryExpression(expr.as<BinaryExpression>(), parentPrecedence);
Ethan Nicholascc305772017-10-13 16:17:45 -0400126 break;
John Stiles2bec8ab2021-04-06 18:40:04 -0400127 case Expression::Kind::kConstructorArray:
John Stilesd47330f2021-04-08 23:25:52 -0400128 case Expression::Kind::kConstructorStruct:
John Stiles2bec8ab2021-04-06 18:40:04 -0400129 this->writeAnyConstructor(expr.asAnyConstructor(), "{", "}", parentPrecedence);
130 break;
John Stilese3ae9682021-08-05 10:35:01 -0400131 case Expression::Kind::kConstructorArrayCast:
132 this->writeExpression(*expr.as<ConstructorArrayCast>().argument(), parentPrecedence);
133 break;
John Stiles8cad6372021-04-07 12:31:13 -0400134 case Expression::Kind::kConstructorCompound:
135 this->writeConstructorCompound(expr.as<ConstructorCompound>(), parentPrecedence);
John Stiles2bec8ab2021-04-06 18:40:04 -0400136 break;
137 case Expression::Kind::kConstructorDiagonalMatrix:
138 case Expression::Kind::kConstructorSplat:
139 this->writeAnyConstructor(expr.asAnyConstructor(), "(", ")", parentPrecedence);
Ethan Nicholascc305772017-10-13 16:17:45 -0400140 break;
John Stiles5abb9e12021-04-06 13:47:19 -0400141 case Expression::Kind::kConstructorMatrixResize:
142 this->writeConstructorMatrixResize(expr.as<ConstructorMatrixResize>(),
143 parentPrecedence);
144 break;
John Stilesfd7252f2021-04-04 22:24:40 -0400145 case Expression::Kind::kConstructorScalarCast:
John Stiles8cad6372021-04-07 12:31:13 -0400146 case Expression::Kind::kConstructorCompoundCast:
John Stilesb14a8192021-04-05 11:40:46 -0400147 this->writeCastConstructor(expr.asAnyConstructor(), "(", ")", parentPrecedence);
John Stiles2938eea2021-04-01 18:58:25 -0400148 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400149 case Expression::Kind::kFieldAccess:
John Stiles81365af2020-08-18 09:24:00 -0400150 this->writeFieldAccess(expr.as<FieldAccess>());
Ethan Nicholascc305772017-10-13 16:17:45 -0400151 break;
John Stiles7591d4b2021-09-13 13:32:06 -0400152 case Expression::Kind::kLiteral:
153 this->writeLiteral(expr.as<Literal>());
Ethan Nicholascc305772017-10-13 16:17:45 -0400154 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400155 case Expression::Kind::kFunctionCall:
John Stiles81365af2020-08-18 09:24:00 -0400156 this->writeFunctionCall(expr.as<FunctionCall>());
Ethan Nicholascc305772017-10-13 16:17:45 -0400157 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400158 case Expression::Kind::kPrefix:
John Stiles81365af2020-08-18 09:24:00 -0400159 this->writePrefixExpression(expr.as<PrefixExpression>(), parentPrecedence);
Ethan Nicholascc305772017-10-13 16:17:45 -0400160 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400161 case Expression::Kind::kPostfix:
John Stiles81365af2020-08-18 09:24:00 -0400162 this->writePostfixExpression(expr.as<PostfixExpression>(), parentPrecedence);
Ethan Nicholascc305772017-10-13 16:17:45 -0400163 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400164 case Expression::Kind::kSetting:
John Stiles81365af2020-08-18 09:24:00 -0400165 this->writeSetting(expr.as<Setting>());
Ethan Nicholascc305772017-10-13 16:17:45 -0400166 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400167 case Expression::Kind::kSwizzle:
John Stiles81365af2020-08-18 09:24:00 -0400168 this->writeSwizzle(expr.as<Swizzle>());
Ethan Nicholascc305772017-10-13 16:17:45 -0400169 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400170 case Expression::Kind::kVariableReference:
John Stiles81365af2020-08-18 09:24:00 -0400171 this->writeVariableReference(expr.as<VariableReference>());
Ethan Nicholascc305772017-10-13 16:17:45 -0400172 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400173 case Expression::Kind::kTernary:
John Stiles81365af2020-08-18 09:24:00 -0400174 this->writeTernaryExpression(expr.as<TernaryExpression>(), parentPrecedence);
Ethan Nicholascc305772017-10-13 16:17:45 -0400175 break;
Ethan Nicholase6592142020-09-08 10:22:09 -0400176 case Expression::Kind::kIndex:
John Stiles81365af2020-08-18 09:24:00 -0400177 this->writeIndexExpression(expr.as<IndexExpression>());
Ethan Nicholascc305772017-10-13 16:17:45 -0400178 break;
179 default:
John Stileseada7bc2021-02-02 16:29:32 -0500180 SkDEBUGFAILF("unsupported expression: %s", expr.description().c_str());
Ethan Nicholas2a099da2020-01-02 14:40:54 -0500181 break;
Ethan Nicholascc305772017-10-13 16:17:45 -0400182 }
183}
184
John Stiles06b84ef2020-12-09 12:35:48 -0500185String MetalCodeGenerator::getOutParamHelper(const FunctionCall& call,
186 const ExpressionArray& arguments,
187 const SkTArray<VariableReference*>& outVars) {
188 AutoOutputStream outputToExtraFunctions(this, &fExtraFunctions, &fIndentation);
189 const FunctionDeclaration& function = call.function();
190
John Stilese1068342021-03-22 11:57:41 -0400191 String name = "_skOutParamHelper" + to_string(fSwizzleHelperCount++) +
192 "_" + function.mangledName();
John Stiles06b84ef2020-12-09 12:35:48 -0500193 const char* separator = "";
194
195 // Emit a prototype for the function we'll be calling through to in our helper.
196 if (!function.isBuiltin()) {
197 this->writeFunctionDeclaration(function);
198 this->writeLine(";");
199 }
200
201 // Synthesize a helper function that takes the same inputs as `function`, except in places where
202 // `outVars` is non-null; in those places, we take the type of the VariableReference.
203 //
204 // float _skOutParamHelper0_originalFuncName(float _var0, float _var1, float& outParam) {
John Stilesb4418502021-02-04 10:57:08 -0500205 this->writeType(call.type());
John Stiles06b84ef2020-12-09 12:35:48 -0500206 this->write(" ");
207 this->write(name);
208 this->write("(");
209 this->writeFunctionRequirementParams(function, separator);
210
211 SkASSERT(outVars.size() == arguments.size());
212 SkASSERT(outVars.size() == function.parameters().size());
213
John Stiles73e2c892021-02-13 13:58:01 -0500214 // We need to detect cases where the caller passes the same variable as an out-param more than
215 // once, and avoid reusing the variable name. (In those cases we can actually just ignore the
216 // redundant input parameter entirely, and not give it any name.)
217 std::unordered_set<const Variable*> writtenVars;
218
John Stiles06b84ef2020-12-09 12:35:48 -0500219 for (int index = 0; index < arguments.count(); ++index) {
220 this->write(separator);
221 separator = ", ";
222
223 const Variable* param = function.parameters()[index];
Brian Osman58134e12021-05-13 14:51:07 -0400224 this->writeModifiers(param->modifiers());
John Stiles06b84ef2020-12-09 12:35:48 -0500225
226 const Type* type = outVars[index] ? &outVars[index]->type() : &arguments[index]->type();
John Stilesb4418502021-02-04 10:57:08 -0500227 this->writeType(*type);
John Stiles06b84ef2020-12-09 12:35:48 -0500228
229 if (param->modifiers().fFlags & Modifiers::kOut_Flag) {
230 this->write("&");
231 }
232 if (outVars[index]) {
John Stiles73e2c892021-02-13 13:58:01 -0500233 auto [iter, didInsert] = writtenVars.insert(outVars[index]->variable());
234 if (didInsert) {
235 this->write(" ");
236 fIgnoreVariableReferenceModifiers = true;
237 this->writeVariableReference(*outVars[index]);
238 fIgnoreVariableReferenceModifiers = false;
239 }
John Stiles06b84ef2020-12-09 12:35:48 -0500240 } else {
241 this->write(" _var");
242 this->write(to_string(index));
243 }
John Stiles06b84ef2020-12-09 12:35:48 -0500244 }
245 this->writeLine(") {");
246
247 ++fIndentation;
248 for (int index = 0; index < outVars.count(); ++index) {
249 if (!outVars[index]) {
250 continue;
251 }
252 // float3 _var2[ = outParam.zyx];
John Stilesb4418502021-02-04 10:57:08 -0500253 this->writeType(arguments[index]->type());
John Stiles06b84ef2020-12-09 12:35:48 -0500254 this->write(" _var");
255 this->write(to_string(index));
256
257 const Variable* param = function.parameters()[index];
258 if (param->modifiers().fFlags & Modifiers::kIn_Flag) {
259 this->write(" = ");
260 fIgnoreVariableReferenceModifiers = true;
Brian Osman00185012021-02-04 16:07:11 -0500261 this->writeExpression(*arguments[index], Precedence::kAssignment);
John Stiles06b84ef2020-12-09 12:35:48 -0500262 fIgnoreVariableReferenceModifiers = false;
263 }
264
265 this->writeLine(";");
266 }
267
John Stilesf7410bd2021-01-19 13:07:55 -0500268 // [int _skResult = ] myFunction(inputs, outputs, _globals, _var0, _var1, _var2, _var3);
John Stiles06b84ef2020-12-09 12:35:48 -0500269 bool hasResult = (call.type().name() != "void");
270 if (hasResult) {
John Stilesb4418502021-02-04 10:57:08 -0500271 this->writeType(call.type());
John Stiles06b84ef2020-12-09 12:35:48 -0500272 this->write(" _skResult = ");
273 }
274
John Stilese1068342021-03-22 11:57:41 -0400275 this->writeName(function.mangledName());
John Stiles06b84ef2020-12-09 12:35:48 -0500276 this->write("(");
277 separator = "";
278 this->writeFunctionRequirementArgs(function, separator);
279
280 for (int index = 0; index < arguments.count(); ++index) {
281 this->write(separator);
282 separator = ", ";
283
284 this->write("_var");
285 this->write(to_string(index));
286 }
287 this->writeLine(");");
288
289 for (int index = 0; index < outVars.count(); ++index) {
290 if (!outVars[index]) {
291 continue;
292 }
293 // outParam.zyx = _var2;
294 fIgnoreVariableReferenceModifiers = true;
Brian Osman00185012021-02-04 16:07:11 -0500295 this->writeExpression(*arguments[index], Precedence::kAssignment);
John Stiles06b84ef2020-12-09 12:35:48 -0500296 fIgnoreVariableReferenceModifiers = false;
297 this->write(" = _var");
298 this->write(to_string(index));
299 this->writeLine(";");
300 }
301
302 if (hasResult) {
303 this->writeLine("return _skResult;");
304 }
305
306 --fIndentation;
307 this->writeLine("}");
308
309 return name;
John Stilesb21fac22020-12-04 15:36:49 -0500310}
311
John Stilesf64e4072020-12-10 10:34:27 -0500312String MetalCodeGenerator::getBitcastIntrinsic(const Type& outType) {
313 return "as_type<" + outType.displayName() + ">";
314}
315
Ethan Nicholascc305772017-10-13 16:17:45 -0400316void MetalCodeGenerator::writeFunctionCall(const FunctionCall& c) {
Ethan Nicholas0dec9922020-10-05 15:51:52 -0400317 const FunctionDeclaration& function = c.function();
John Stiles496b7d12021-05-06 10:26:45 -0400318
319 // Many intrinsics need to be rewritten in Metal.
320 if (function.isIntrinsic()) {
321 if (this->writeIntrinsicCall(c, function.intrinsicKind())) {
John Stiles89ac7c22020-12-30 17:47:31 -0500322 return;
323 }
Timothy Liang6403b0e2018-05-17 10:40:04 -0400324 }
John Stilesb21fac22020-12-04 15:36:49 -0500325
John Stilesd7199b22020-12-30 16:22:58 -0500326 // Determine whether or not we need to emulate GLSL's out-param semantics for Metal using a
327 // helper function. (Specifically, out-parameters in GLSL are only written back to the original
328 // variable at the end of the function call; also, swizzles are supported, whereas Metal doesn't
329 // allow a swizzle to be passed to a `floatN&`.)
330 const ExpressionArray& arguments = c.arguments();
John Stilesb21fac22020-12-04 15:36:49 -0500331 const std::vector<const Variable*>& parameters = function.parameters();
332 SkASSERT(arguments.size() == parameters.size());
John Stiles06b84ef2020-12-09 12:35:48 -0500333
334 bool foundOutParam = false;
335 SkSTArray<16, VariableReference*> outVars;
John Stilesf64e4072020-12-10 10:34:27 -0500336 outVars.push_back_n(arguments.count(), (VariableReference*)nullptr);
John Stiles06b84ef2020-12-09 12:35:48 -0500337
338 for (int index = 0; index < arguments.count(); ++index) {
John Stilesb21fac22020-12-04 15:36:49 -0500339 // If this is an out parameter...
340 if (parameters[index]->modifiers().fFlags & Modifiers::kOut_Flag) {
John Stiles06b84ef2020-12-09 12:35:48 -0500341 // Find the expression's inner variable being written to.
John Stilesb21fac22020-12-04 15:36:49 -0500342 Analysis::AssignmentInfo info;
John Stiles06b84ef2020-12-09 12:35:48 -0500343 // Assignability was verified at IRGeneration time, so this should always succeed.
344 SkAssertResult(Analysis::IsAssignable(*arguments[index], &info));
345 outVars[index] = info.fAssignedVar;
346 foundOutParam = true;
John Stilesb21fac22020-12-04 15:36:49 -0500347 }
348 }
349
John Stiles06b84ef2020-12-09 12:35:48 -0500350 if (foundOutParam) {
351 // Out parameters need to be written back to at the end of the function. To do this, we
352 // synthesize a helper function which evaluates the out-param expression into a temporary
353 // variable, calls the original function, then writes the temp var back into the out param
354 // using the original out-param expression. (This lets us support things like swizzles and
355 // array indices.)
John Stilesd7199b22020-12-30 16:22:58 -0500356 this->write(getOutParamHelper(c, arguments, outVars));
357 } else {
John Stilese1068342021-03-22 11:57:41 -0400358 this->write(function.mangledName());
John Stiles06b84ef2020-12-09 12:35:48 -0500359 }
360
Ethan Nicholascc305772017-10-13 16:17:45 -0400361 this->write("(");
362 const char* separator = "";
John Stiles06b84ef2020-12-09 12:35:48 -0500363 this->writeFunctionRequirementArgs(function, separator);
364 for (int i = 0; i < arguments.count(); ++i) {
Ethan Nicholascc305772017-10-13 16:17:45 -0400365 this->write(separator);
366 separator = ", ";
John Stiles06b84ef2020-12-09 12:35:48 -0500367
368 if (outVars[i]) {
Brian Osman00185012021-02-04 16:07:11 -0500369 this->writeExpression(*outVars[i], Precedence::kSequence);
John Stiles06b84ef2020-12-09 12:35:48 -0500370 } else {
Brian Osman00185012021-02-04 16:07:11 -0500371 this->writeExpression(*arguments[i], Precedence::kSequence);
John Stiles06b84ef2020-12-09 12:35:48 -0500372 }
Ethan Nicholascc305772017-10-13 16:17:45 -0400373 }
374 this->write(")");
375}
376
Brian Osman964f0a02020-12-29 10:15:22 -0500377static constexpr char kInverse2x2[] = R"(
378float2x2 float2x2_inverse(float2x2 m) {
379 return float2x2(m[1][1], -m[0][1], -m[1][0], m[0][0]) * (1/determinant(m));
380}
381)";
382
383static constexpr char kInverse3x3[] = R"(
384float3x3 float3x3_inverse(float3x3 m) {
385 float a00 = m[0][0], a01 = m[0][1], a02 = m[0][2];
386 float a10 = m[1][0], a11 = m[1][1], a12 = m[1][2];
387 float a20 = m[2][0], a21 = m[2][1], a22 = m[2][2];
388 float b01 = a22*a11 - a12*a21;
389 float b11 = -a22*a10 + a12*a20;
390 float b21 = a21*a10 - a11*a20;
391 float det = a00*b01 + a01*b11 + a02*b21;
392 return float3x3(b01, (-a22*a01 + a02*a21), ( a12*a01 - a02*a11),
393 b11, ( a22*a00 - a02*a20), (-a12*a00 + a02*a10),
394 b21, (-a21*a00 + a01*a20), ( a11*a00 - a01*a10)) * (1/det);
395}
396)";
397
398static constexpr char kInverse4x4[] = R"(
399float4x4 float4x4_inverse(float4x4 m) {
400 float a00 = m[0][0], a01 = m[0][1], a02 = m[0][2], a03 = m[0][3];
401 float a10 = m[1][0], a11 = m[1][1], a12 = m[1][2], a13 = m[1][3];
402 float a20 = m[2][0], a21 = m[2][1], a22 = m[2][2], a23 = m[2][3];
403 float a30 = m[3][0], a31 = m[3][1], a32 = m[3][2], a33 = m[3][3];
404 float b00 = a00*a11 - a01*a10;
405 float b01 = a00*a12 - a02*a10;
406 float b02 = a00*a13 - a03*a10;
407 float b03 = a01*a12 - a02*a11;
408 float b04 = a01*a13 - a03*a11;
409 float b05 = a02*a13 - a03*a12;
410 float b06 = a20*a31 - a21*a30;
411 float b07 = a20*a32 - a22*a30;
412 float b08 = a20*a33 - a23*a30;
413 float b09 = a21*a32 - a22*a31;
414 float b10 = a21*a33 - a23*a31;
415 float b11 = a22*a33 - a23*a32;
416 float det = b00*b11 - b01*b10 + b02*b09 + b03*b08 - b04*b07 + b05*b06;
417 return float4x4(a11*b11 - a12*b10 + a13*b09,
418 a02*b10 - a01*b11 - a03*b09,
419 a31*b05 - a32*b04 + a33*b03,
420 a22*b04 - a21*b05 - a23*b03,
421 a12*b08 - a10*b11 - a13*b07,
422 a00*b11 - a02*b08 + a03*b07,
423 a32*b02 - a30*b05 - a33*b01,
424 a20*b05 - a22*b02 + a23*b01,
425 a10*b10 - a11*b08 + a13*b06,
426 a01*b08 - a00*b10 - a03*b06,
427 a30*b04 - a31*b02 + a33*b00,
428 a21*b02 - a20*b04 - a23*b00,
429 a11*b07 - a10*b09 - a12*b06,
430 a00*b09 - a01*b07 + a02*b06,
431 a31*b01 - a30*b03 - a32*b00,
432 a20*b03 - a21*b01 + a22*b00) * (1/det);
433}
434)";
435
John Stilesd7199b22020-12-30 16:22:58 -0500436String MetalCodeGenerator::getInversePolyfill(const ExpressionArray& arguments) {
437 // Only use polyfills for a function taking a single-argument square matrix.
438 if (arguments.size() == 1) {
439 const Type& type = arguments.front()->type();
440 if (type.isMatrix() && type.rows() == type.columns()) {
441 // Inject the correct polyfill based on the matrix size.
442 String name = this->typeName(type) + "_inverse";
443 auto [iter, didInsert] = fWrittenIntrinsics.insert(name);
444 if (didInsert) {
445 switch (type.rows()) {
446 case 2:
447 fExtraFunctions.writeText(kInverse2x2);
448 break;
449 case 3:
450 fExtraFunctions.writeText(kInverse3x3);
451 break;
452 case 4:
453 fExtraFunctions.writeText(kInverse4x4);
454 break;
455 }
456 }
457 return name;
Chris Daltondba7aab2018-11-15 10:57:49 -0500458 }
459 }
John Stilesd7199b22020-12-30 16:22:58 -0500460 // This isn't the built-in `inverse`. We don't want to polyfill it at all.
461 return "inverse";
Chris Daltondba7aab2018-11-15 10:57:49 -0500462}
463
John Stilesfeb1e122021-09-09 14:27:28 -0400464void MetalCodeGenerator::writeMatrixCompMult() {
465 static constexpr char kMatrixCompMult[] = R"(
Brian Osman93aed9a2020-12-28 15:18:46 -0500466template <int C, int R>
John Stilesb701fa02021-09-14 13:09:36 -0400467matrix<float, C, R> matrixCompMult(matrix<float, C, R> a, const matrix<float, C, R> b) {
Brian Osman93aed9a2020-12-28 15:18:46 -0500468 for (int c = 0; c < C; ++c) {
John Stilesb701fa02021-09-14 13:09:36 -0400469 a[c] *= b[c];
Brian Osman93aed9a2020-12-28 15:18:46 -0500470 }
John Stilesb701fa02021-09-14 13:09:36 -0400471 return a;
Brian Osman93aed9a2020-12-28 15:18:46 -0500472}
473)";
474
Brian Osman93aed9a2020-12-28 15:18:46 -0500475 String name = "matrixCompMult";
476 if (fWrittenIntrinsics.find(name) == fWrittenIntrinsics.end()) {
477 fWrittenIntrinsics.insert(name);
478 fExtraFunctions.writeText(kMatrixCompMult);
479 }
480}
481
John Stilesfeb1e122021-09-09 14:27:28 -0400482void MetalCodeGenerator::writeOuterProduct() {
483 static constexpr char kOuterProduct[] = R"(
484template <int C, int R>
485matrix<float, C, R> outerProduct(const vec<float, R> a, const vec<float, C> b) {
486 matrix<float, C, R> result;
487 for (int c = 0; c < C; ++c) {
488 result[c] = a * b[c];
489 }
490 return result;
491}
492)";
493
494 String name = "outerProduct";
495 if (fWrittenIntrinsics.find(name) == fWrittenIntrinsics.end()) {
496 fWrittenIntrinsics.insert(name);
497 fExtraFunctions.writeText(kOuterProduct);
498 }
499}
500
John Stiles86424eb2020-12-11 11:17:14 -0500501String MetalCodeGenerator::getTempVariable(const Type& type) {
502 String tempVar = "_skTemp" + to_string(fVarCount++);
503 this->fFunctionHeader += " " + this->typeName(type) + " " + tempVar + ";\n";
504 return tempVar;
505}
506
John Stiles791c27d2020-12-30 14:56:57 -0500507void MetalCodeGenerator::writeSimpleIntrinsic(const FunctionCall& c) {
508 // Write out an intrinsic function call exactly as-is. No muss no fuss.
509 this->write(c.function().name());
John Stilesd7199b22020-12-30 16:22:58 -0500510 this->writeArgumentList(c.arguments());
511}
512
513void MetalCodeGenerator::writeArgumentList(const ExpressionArray& arguments) {
John Stiles791c27d2020-12-30 14:56:57 -0500514 this->write("(");
515 const char* separator = "";
John Stilesd7199b22020-12-30 16:22:58 -0500516 for (const std::unique_ptr<Expression>& arg : arguments) {
John Stiles791c27d2020-12-30 14:56:57 -0500517 this->write(separator);
518 separator = ", ";
Brian Osman00185012021-02-04 16:07:11 -0500519 this->writeExpression(*arg, Precedence::kSequence);
John Stiles791c27d2020-12-30 14:56:57 -0500520 }
521 this->write(")");
522}
523
John Stiles496b7d12021-05-06 10:26:45 -0400524bool MetalCodeGenerator::writeIntrinsicCall(const FunctionCall& c, IntrinsicKind kind) {
John Stiles8e3b6be2020-10-13 11:14:08 -0400525 const ExpressionArray& arguments = c.arguments();
Timothy Liang6403b0e2018-05-17 10:40:04 -0400526 switch (kind) {
John Stiles496b7d12021-05-06 10:26:45 -0400527 case k_sample_IntrinsicKind: {
Brian Osman00185012021-02-04 16:07:11 -0500528 this->writeExpression(*arguments[0], Precedence::kSequence);
Timothy Lianga06f2152018-05-24 15:33:31 -0400529 this->write(".sample(");
Brian Osman00185012021-02-04 16:07:11 -0500530 this->writeExpression(*arguments[0], Precedence::kSequence);
Timothy Lianga06f2152018-05-24 15:33:31 -0400531 this->write(SAMPLER_SUFFIX);
532 this->write(", ");
Ethan Nicholas0dec9922020-10-05 15:51:52 -0400533 const Type& arg1Type = arguments[1]->type();
John Stilesb14a8192021-04-05 11:40:46 -0400534 if (arg1Type.columns() == 3) {
Ethan Nicholas45fa8102020-01-13 10:58:49 -0500535 // have to store the vector in a temp variable to avoid double evaluating it
John Stiles86424eb2020-12-11 11:17:14 -0500536 String tmpVar = this->getTempVariable(arg1Type);
Ethan Nicholas45fa8102020-01-13 10:58:49 -0500537 this->write("(" + tmpVar + " = ");
Brian Osman00185012021-02-04 16:07:11 -0500538 this->writeExpression(*arguments[1], Precedence::kSequence);
Ethan Nicholas45fa8102020-01-13 10:58:49 -0500539 this->write(", " + tmpVar + ".xy / " + tmpVar + ".z))");
Timothy Liangee84fe12018-05-18 14:38:19 -0400540 } else {
John Stilesb14a8192021-04-05 11:40:46 -0400541 SkASSERT(arg1Type.columns() == 2);
Brian Osman00185012021-02-04 16:07:11 -0500542 this->writeExpression(*arguments[1], Precedence::kSequence);
Timothy Liangee84fe12018-05-18 14:38:19 -0400543 this->write(")");
544 }
John Stiles496b7d12021-05-06 10:26:45 -0400545 return true;
Ethan Nicholas30d30222020-09-11 12:27:26 -0400546 }
John Stiles496b7d12021-05-06 10:26:45 -0400547 case k_mod_IntrinsicKind: {
Timothy Liang651286f2018-06-07 09:55:33 -0400548 // fmod(x, y) in metal calculates x - y * trunc(x / y) instead of x - y * floor(x / y)
John Stiles86424eb2020-12-11 11:17:14 -0500549 String tmpX = this->getTempVariable(arguments[0]->type());
John Stiles61b2e812020-12-30 18:27:31 -0500550 String tmpY = this->getTempVariable(arguments[1]->type());
Ethan Nicholas45fa8102020-01-13 10:58:49 -0500551 this->write("(" + tmpX + " = ");
Brian Osman00185012021-02-04 16:07:11 -0500552 this->writeExpression(*arguments[0], Precedence::kSequence);
Ethan Nicholas45fa8102020-01-13 10:58:49 -0500553 this->write(", " + tmpY + " = ");
Brian Osman00185012021-02-04 16:07:11 -0500554 this->writeExpression(*arguments[1], Precedence::kSequence);
Ethan Nicholas45fa8102020-01-13 10:58:49 -0500555 this->write(", " + tmpX + " - " + tmpY + " * floor(" + tmpX + " / " + tmpY + "))");
John Stiles496b7d12021-05-06 10:26:45 -0400556 return true;
Ethan Nicholas45fa8102020-01-13 10:58:49 -0500557 }
Brian Osman46787d52020-11-24 14:18:23 -0500558 // GLSL declares scalar versions of most geometric intrinsics, but these don't exist in MSL
John Stiles496b7d12021-05-06 10:26:45 -0400559 case k_distance_IntrinsicKind: {
Brian Osman46787d52020-11-24 14:18:23 -0500560 if (arguments[0]->type().columns() == 1) {
561 this->write("abs(");
Brian Osman00185012021-02-04 16:07:11 -0500562 this->writeExpression(*arguments[0], Precedence::kAdditive);
Brian Osman46787d52020-11-24 14:18:23 -0500563 this->write(" - ");
Brian Osman00185012021-02-04 16:07:11 -0500564 this->writeExpression(*arguments[1], Precedence::kAdditive);
Brian Osman46787d52020-11-24 14:18:23 -0500565 this->write(")");
566 } else {
John Stiles791c27d2020-12-30 14:56:57 -0500567 this->writeSimpleIntrinsic(c);
Brian Osman46787d52020-11-24 14:18:23 -0500568 }
John Stiles496b7d12021-05-06 10:26:45 -0400569 return true;
Brian Osman46787d52020-11-24 14:18:23 -0500570 }
John Stiles496b7d12021-05-06 10:26:45 -0400571 case k_dot_IntrinsicKind: {
Brian Osman46787d52020-11-24 14:18:23 -0500572 if (arguments[0]->type().columns() == 1) {
573 this->write("(");
Brian Osman00185012021-02-04 16:07:11 -0500574 this->writeExpression(*arguments[0], Precedence::kMultiplicative);
Brian Osman46787d52020-11-24 14:18:23 -0500575 this->write(" * ");
Brian Osman00185012021-02-04 16:07:11 -0500576 this->writeExpression(*arguments[1], Precedence::kMultiplicative);
Brian Osman46787d52020-11-24 14:18:23 -0500577 this->write(")");
578 } else {
John Stiles791c27d2020-12-30 14:56:57 -0500579 this->writeSimpleIntrinsic(c);
Brian Osman46787d52020-11-24 14:18:23 -0500580 }
John Stiles496b7d12021-05-06 10:26:45 -0400581 return true;
Brian Osman46787d52020-11-24 14:18:23 -0500582 }
John Stiles496b7d12021-05-06 10:26:45 -0400583 case k_faceforward_IntrinsicKind: {
John Stilesad0571f2020-12-10 18:03:10 -0500584 if (arguments[0]->type().columns() == 1) {
585 // ((((Nref) * (I) < 0) ? 1 : -1) * (N))
586 this->write("((((");
Brian Osman00185012021-02-04 16:07:11 -0500587 this->writeExpression(*arguments[2], Precedence::kSequence);
John Stilesad0571f2020-12-10 18:03:10 -0500588 this->write(") * (");
Brian Osman00185012021-02-04 16:07:11 -0500589 this->writeExpression(*arguments[1], Precedence::kSequence);
John Stilesad0571f2020-12-10 18:03:10 -0500590 this->write(") < 0) ? 1 : -1) * (");
Brian Osman00185012021-02-04 16:07:11 -0500591 this->writeExpression(*arguments[0], Precedence::kSequence);
John Stilesad0571f2020-12-10 18:03:10 -0500592 this->write("))");
593 } else {
John Stiles791c27d2020-12-30 14:56:57 -0500594 this->writeSimpleIntrinsic(c);
John Stilesad0571f2020-12-10 18:03:10 -0500595 }
John Stiles496b7d12021-05-06 10:26:45 -0400596 return true;
John Stilesad0571f2020-12-10 18:03:10 -0500597 }
John Stiles496b7d12021-05-06 10:26:45 -0400598 case k_length_IntrinsicKind: {
Brian Osman46787d52020-11-24 14:18:23 -0500599 this->write(arguments[0]->type().columns() == 1 ? "abs(" : "length(");
Brian Osman00185012021-02-04 16:07:11 -0500600 this->writeExpression(*arguments[0], Precedence::kSequence);
Brian Osman46787d52020-11-24 14:18:23 -0500601 this->write(")");
John Stiles496b7d12021-05-06 10:26:45 -0400602 return true;
Brian Osman46787d52020-11-24 14:18:23 -0500603 }
John Stiles496b7d12021-05-06 10:26:45 -0400604 case k_normalize_IntrinsicKind: {
Brian Osman46787d52020-11-24 14:18:23 -0500605 this->write(arguments[0]->type().columns() == 1 ? "sign(" : "normalize(");
Brian Osman00185012021-02-04 16:07:11 -0500606 this->writeExpression(*arguments[0], Precedence::kSequence);
Brian Osman46787d52020-11-24 14:18:23 -0500607 this->write(")");
John Stiles496b7d12021-05-06 10:26:45 -0400608 return true;
Brian Osman46787d52020-11-24 14:18:23 -0500609 }
John Stilesb6981fb2021-09-08 15:11:27 -0400610 case k_packUnorm2x16_IntrinsicKind: {
611 this->write("pack_float_to_unorm2x16(");
612 this->writeExpression(*arguments[0], Precedence::kSequence);
613 this->write(")");
614 return true;
615 }
616 case k_unpackUnorm2x16_IntrinsicKind: {
617 this->write("unpack_unorm2x16_to_float(");
618 this->writeExpression(*arguments[0], Precedence::kSequence);
619 this->write(")");
620 return true;
621 }
622 case k_packSnorm2x16_IntrinsicKind: {
623 this->write("pack_float_to_snorm2x16(");
624 this->writeExpression(*arguments[0], Precedence::kSequence);
625 this->write(")");
626 return true;
627 }
628 case k_unpackSnorm2x16_IntrinsicKind: {
629 this->write("unpack_snorm2x16_to_float(");
630 this->writeExpression(*arguments[0], Precedence::kSequence);
631 this->write(")");
632 return true;
633 }
634 case k_packUnorm4x8_IntrinsicKind: {
635 this->write("pack_float_to_unorm4x8(");
636 this->writeExpression(*arguments[0], Precedence::kSequence);
637 this->write(")");
638 return true;
639 }
640 case k_unpackUnorm4x8_IntrinsicKind: {
641 this->write("unpack_unorm4x8_to_float(");
642 this->writeExpression(*arguments[0], Precedence::kSequence);
643 this->write(")");
644 return true;
645 }
646 case k_packSnorm4x8_IntrinsicKind: {
647 this->write("pack_float_to_snorm4x8(");
648 this->writeExpression(*arguments[0], Precedence::kSequence);
649 this->write(")");
650 return true;
651 }
652 case k_unpackSnorm4x8_IntrinsicKind: {
653 this->write("unpack_snorm4x8_to_float(");
654 this->writeExpression(*arguments[0], Precedence::kSequence);
655 this->write(")");
656 return true;
657 }
658 case k_packHalf2x16_IntrinsicKind: {
659 this->write("as_type<uint>(half2(");
660 this->writeExpression(*arguments[0], Precedence::kSequence);
661 this->write("))");
662 return true;
663 }
664 case k_unpackHalf2x16_IntrinsicKind: {
665 this->write("float2(as_type<half2>(");
666 this->writeExpression(*arguments[0], Precedence::kSequence);
667 this->write("))");
668 return true;
669 }
John Stiles496b7d12021-05-06 10:26:45 -0400670 case k_floatBitsToInt_IntrinsicKind:
671 case k_floatBitsToUint_IntrinsicKind:
672 case k_intBitsToFloat_IntrinsicKind:
673 case k_uintBitsToFloat_IntrinsicKind: {
John Stiles0063a9f2020-12-10 18:01:45 -0500674 this->write(this->getBitcastIntrinsic(c.type()));
675 this->write("(");
Brian Osman00185012021-02-04 16:07:11 -0500676 this->writeExpression(*arguments[0], Precedence::kSequence);
John Stiles0063a9f2020-12-10 18:01:45 -0500677 this->write(")");
John Stiles496b7d12021-05-06 10:26:45 -0400678 return true;
John Stiles0063a9f2020-12-10 18:01:45 -0500679 }
John Stiles496b7d12021-05-06 10:26:45 -0400680 case k_degrees_IntrinsicKind: {
John Stilese2d34f82020-12-10 18:02:02 -0500681 this->write("((");
Brian Osman00185012021-02-04 16:07:11 -0500682 this->writeExpression(*arguments[0], Precedence::kSequence);
John Stilese2d34f82020-12-10 18:02:02 -0500683 this->write(") * 57.2957795)");
John Stiles496b7d12021-05-06 10:26:45 -0400684 return true;
John Stilese2d34f82020-12-10 18:02:02 -0500685 }
John Stiles496b7d12021-05-06 10:26:45 -0400686 case k_radians_IntrinsicKind: {
John Stilese2d34f82020-12-10 18:02:02 -0500687 this->write("((");
Brian Osman00185012021-02-04 16:07:11 -0500688 this->writeExpression(*arguments[0], Precedence::kSequence);
John Stilese2d34f82020-12-10 18:02:02 -0500689 this->write(") * 0.0174532925)");
John Stiles496b7d12021-05-06 10:26:45 -0400690 return true;
John Stilese2d34f82020-12-10 18:02:02 -0500691 }
John Stiles496b7d12021-05-06 10:26:45 -0400692 case k_dFdx_IntrinsicKind: {
John Stilesd7199b22020-12-30 16:22:58 -0500693 this->write("dfdx");
694 this->writeArgumentList(c.arguments());
John Stiles496b7d12021-05-06 10:26:45 -0400695 return true;
John Stilesd7199b22020-12-30 16:22:58 -0500696 }
John Stiles496b7d12021-05-06 10:26:45 -0400697 case k_dFdy_IntrinsicKind: {
Brian Salomond8d85b92021-07-07 09:41:17 -0400698 this->write(fRTFlipName + ".y*dfdy");
John Stilesd7199b22020-12-30 16:22:58 -0500699 this->writeArgumentList(c.arguments());
John Stiles496b7d12021-05-06 10:26:45 -0400700 return true;
John Stilesd7199b22020-12-30 16:22:58 -0500701 }
John Stiles496b7d12021-05-06 10:26:45 -0400702 case k_inverse_IntrinsicKind: {
John Stilesd7199b22020-12-30 16:22:58 -0500703 this->write(this->getInversePolyfill(arguments));
704 this->writeArgumentList(c.arguments());
John Stiles496b7d12021-05-06 10:26:45 -0400705 return true;
John Stilesd7199b22020-12-30 16:22:58 -0500706 }
John Stiles496b7d12021-05-06 10:26:45 -0400707 case k_inversesqrt_IntrinsicKind: {
John Stilesd7199b22020-12-30 16:22:58 -0500708 this->write("rsqrt");
709 this->writeArgumentList(c.arguments());
John Stiles496b7d12021-05-06 10:26:45 -0400710 return true;
John Stilesd7199b22020-12-30 16:22:58 -0500711 }
John Stiles496b7d12021-05-06 10:26:45 -0400712 case k_atan_IntrinsicKind: {
John Stilesd7199b22020-12-30 16:22:58 -0500713 this->write(c.arguments().size() == 2 ? "atan2" : "atan");
714 this->writeArgumentList(c.arguments());
John Stiles496b7d12021-05-06 10:26:45 -0400715 return true;
John Stilesd7199b22020-12-30 16:22:58 -0500716 }
John Stiles496b7d12021-05-06 10:26:45 -0400717 case k_reflect_IntrinsicKind: {
John Stiles791c27d2020-12-30 14:56:57 -0500718 if (arguments[0]->type().columns() == 1) {
719 // We need to synthesize `I - 2 * N * I * N`.
720 String tmpI = this->getTempVariable(arguments[0]->type());
721 String tmpN = this->getTempVariable(arguments[1]->type());
722
723 // (_skTempI = ...
724 this->write("(" + tmpI + " = ");
Brian Osman00185012021-02-04 16:07:11 -0500725 this->writeExpression(*arguments[0], Precedence::kSequence);
John Stiles791c27d2020-12-30 14:56:57 -0500726
727 // , _skTempN = ...
728 this->write(", " + tmpN + " = ");
Brian Osman00185012021-02-04 16:07:11 -0500729 this->writeExpression(*arguments[1], Precedence::kSequence);
John Stiles791c27d2020-12-30 14:56:57 -0500730
731 // , _skTempI - 2 * _skTempN * _skTempI * _skTempN)
732 this->write(", " + tmpI + " - 2 * " + tmpN + " * " + tmpI + " * " + tmpN + ")");
733 } else {
734 this->writeSimpleIntrinsic(c);
735 }
John Stiles496b7d12021-05-06 10:26:45 -0400736 return true;
John Stiles791c27d2020-12-30 14:56:57 -0500737 }
John Stiles496b7d12021-05-06 10:26:45 -0400738 case k_refract_IntrinsicKind: {
John Stiles4b783d62020-12-30 14:58:07 -0500739 if (arguments[0]->type().columns() == 1) {
740 // Metal does implement refract for vectors; rather than reimplementing refract from
741 // scratch, we can replace the call with `refract(float2(I,0), float2(N,0), eta).x`.
742 this->write("(refract(float2(");
Brian Osman00185012021-02-04 16:07:11 -0500743 this->writeExpression(*arguments[0], Precedence::kSequence);
John Stiles4b783d62020-12-30 14:58:07 -0500744 this->write(", 0), float2(");
Brian Osman00185012021-02-04 16:07:11 -0500745 this->writeExpression(*arguments[1], Precedence::kSequence);
John Stiles4b783d62020-12-30 14:58:07 -0500746 this->write(", 0), ");
Brian Osman00185012021-02-04 16:07:11 -0500747 this->writeExpression(*arguments[2], Precedence::kSequence);
John Stiles4b783d62020-12-30 14:58:07 -0500748 this->write(").x)");
749 } else {
750 this->writeSimpleIntrinsic(c);
751 }
John Stiles496b7d12021-05-06 10:26:45 -0400752 return true;
John Stiles4b783d62020-12-30 14:58:07 -0500753 }
John Stiles496b7d12021-05-06 10:26:45 -0400754 case k_roundEven_IntrinsicKind: {
John Stiles23456532020-12-30 18:12:48 -0500755 this->write("rint");
756 this->writeArgumentList(c.arguments());
John Stiles496b7d12021-05-06 10:26:45 -0400757 return true;
John Stiles23456532020-12-30 18:12:48 -0500758 }
John Stiles496b7d12021-05-06 10:26:45 -0400759 case k_bitCount_IntrinsicKind: {
John Stilese7dc7cb2020-12-22 15:37:14 -0500760 this->write("popcount(");
Brian Osman00185012021-02-04 16:07:11 -0500761 this->writeExpression(*arguments[0], Precedence::kSequence);
John Stilese7dc7cb2020-12-22 15:37:14 -0500762 this->write(")");
John Stiles496b7d12021-05-06 10:26:45 -0400763 return true;
John Stilese7dc7cb2020-12-22 15:37:14 -0500764 }
John Stiles496b7d12021-05-06 10:26:45 -0400765 case k_findLSB_IntrinsicKind: {
John Stiles86424eb2020-12-11 11:17:14 -0500766 // Create a temp variable to store the expression, to avoid double-evaluating it.
767 String skTemp = this->getTempVariable(arguments[0]->type());
768 String exprType = this->typeName(arguments[0]->type());
769
770 // ctz returns numbits(type) on zero inputs; GLSL documents it as generating -1 instead.
771 // Use select to detect zero inputs and force a -1 result.
772
773 // (_skTemp1 = (.....), select(ctz(_skTemp1), int4(-1), _skTemp1 == int4(0)))
774 this->write("(");
775 this->write(skTemp);
776 this->write(" = (");
Brian Osman00185012021-02-04 16:07:11 -0500777 this->writeExpression(*arguments[0], Precedence::kSequence);
John Stiles86424eb2020-12-11 11:17:14 -0500778 this->write("), select(ctz(");
779 this->write(skTemp);
780 this->write("), ");
781 this->write(exprType);
782 this->write("(-1), ");
783 this->write(skTemp);
784 this->write(" == ");
785 this->write(exprType);
786 this->write("(0)))");
John Stiles496b7d12021-05-06 10:26:45 -0400787 return true;
John Stiles86424eb2020-12-11 11:17:14 -0500788 }
John Stiles496b7d12021-05-06 10:26:45 -0400789 case k_findMSB_IntrinsicKind: {
John Stiles9685e522020-12-14 11:52:14 -0500790 // Create a temp variable to store the expression, to avoid double-evaluating it.
791 String skTemp1 = this->getTempVariable(arguments[0]->type());
792 String exprType = this->typeName(arguments[0]->type());
793
794 // GLSL findMSB is actually quite different from Metal's clz:
795 // - For signed negative numbers, it returns the first zero bit, not the first one bit!
796 // - For an empty input (0/~0 depending on sign), findMSB gives -1; clz is numbits(type)
797
798 // (_skTemp1 = (.....),
799 this->write("(");
800 this->write(skTemp1);
801 this->write(" = (");
Brian Osman00185012021-02-04 16:07:11 -0500802 this->writeExpression(*arguments[0], Precedence::kSequence);
John Stiles9685e522020-12-14 11:52:14 -0500803 this->write("), ");
804
805 // Signed input types might be negative; we need another helper variable to negate the
806 // input (since we can only find one bits, not zero bits).
807 String skTemp2;
808 if (arguments[0]->type().isSigned()) {
809 // ... _skTemp2 = (select(_skTemp1, ~_skTemp1, _skTemp1 < 0)),
810 skTemp2 = this->getTempVariable(arguments[0]->type());
811 this->write(skTemp2);
812 this->write(" = (select(");
813 this->write(skTemp1);
814 this->write(", ~");
815 this->write(skTemp1);
816 this->write(", ");
817 this->write(skTemp1);
818 this->write(" < 0)), ");
819 } else {
820 skTemp2 = skTemp1;
821 }
822
823 // ... select(int4(clz(_skTemp2)), int4(-1), _skTemp2 == int4(0)))
824 this->write("select(");
825 this->write(this->typeName(c.type()));
826 this->write("(clz(");
827 this->write(skTemp2);
828 this->write(")), ");
829 this->write(this->typeName(c.type()));
830 this->write("(-1), ");
831 this->write(skTemp2);
832 this->write(" == ");
833 this->write(exprType);
834 this->write("(0)))");
John Stiles496b7d12021-05-06 10:26:45 -0400835 return true;
John Stiles9685e522020-12-14 11:52:14 -0500836 }
John Stiles496b7d12021-05-06 10:26:45 -0400837 case k_matrixCompMult_IntrinsicKind: {
John Stilesd7199b22020-12-30 16:22:58 -0500838 this->writeMatrixCompMult();
839 this->writeSimpleIntrinsic(c);
John Stiles496b7d12021-05-06 10:26:45 -0400840 return true;
John Stilesd7199b22020-12-30 16:22:58 -0500841 }
John Stilesfeb1e122021-09-09 14:27:28 -0400842 case k_outerProduct_IntrinsicKind: {
843 this->writeOuterProduct();
844 this->writeSimpleIntrinsic(c);
845 return true;
846 }
John Stilescc2d9cc2021-07-09 17:38:41 -0400847 case k_mix_IntrinsicKind: {
848 SkASSERT(c.arguments().size() == 3);
849 if (arguments[2]->type().componentType().isBoolean()) {
850 // The Boolean forms of GLSL mix() use the select() intrinsic in Metal.
851 this->write("select");
852 this->writeArgumentList(c.arguments());
853 return true;
854 }
855 // The basic form of mix() is supported by Metal as-is.
856 this->writeSimpleIntrinsic(c);
857 return true;
858 }
John Stiles496b7d12021-05-06 10:26:45 -0400859 case k_equal_IntrinsicKind:
860 case k_greaterThan_IntrinsicKind:
861 case k_greaterThanEqual_IntrinsicKind:
862 case k_lessThan_IntrinsicKind:
863 case k_lessThanEqual_IntrinsicKind:
864 case k_notEqual_IntrinsicKind: {
John Stilesd7199b22020-12-30 16:22:58 -0500865 this->write("(");
Brian Osman00185012021-02-04 16:07:11 -0500866 this->writeExpression(*c.arguments()[0], Precedence::kRelational);
John Stilesd7199b22020-12-30 16:22:58 -0500867 switch (kind) {
John Stiles496b7d12021-05-06 10:26:45 -0400868 case k_equal_IntrinsicKind:
John Stilesd7199b22020-12-30 16:22:58 -0500869 this->write(" == ");
870 break;
John Stiles496b7d12021-05-06 10:26:45 -0400871 case k_notEqual_IntrinsicKind:
John Stilesd7199b22020-12-30 16:22:58 -0500872 this->write(" != ");
873 break;
John Stiles496b7d12021-05-06 10:26:45 -0400874 case k_lessThan_IntrinsicKind:
John Stilesd7199b22020-12-30 16:22:58 -0500875 this->write(" < ");
876 break;
John Stiles496b7d12021-05-06 10:26:45 -0400877 case k_lessThanEqual_IntrinsicKind:
John Stilesd7199b22020-12-30 16:22:58 -0500878 this->write(" <= ");
879 break;
John Stiles496b7d12021-05-06 10:26:45 -0400880 case k_greaterThan_IntrinsicKind:
John Stilesd7199b22020-12-30 16:22:58 -0500881 this->write(" > ");
882 break;
John Stiles496b7d12021-05-06 10:26:45 -0400883 case k_greaterThanEqual_IntrinsicKind:
John Stilesd7199b22020-12-30 16:22:58 -0500884 this->write(" >= ");
885 break;
886 default:
John Stilesf57207b2021-02-02 17:50:34 -0500887 SK_ABORT("unsupported comparison intrinsic kind");
John Stilesd7199b22020-12-30 16:22:58 -0500888 }
Brian Osman00185012021-02-04 16:07:11 -0500889 this->writeExpression(*c.arguments()[1], Precedence::kRelational);
John Stilesd7199b22020-12-30 16:22:58 -0500890 this->write(")");
John Stiles496b7d12021-05-06 10:26:45 -0400891 return true;
John Stilesd7199b22020-12-30 16:22:58 -0500892 }
Timothy Liang6403b0e2018-05-17 10:40:04 -0400893 default:
John Stiles496b7d12021-05-06 10:26:45 -0400894 return false;
Timothy Liang6403b0e2018-05-17 10:40:04 -0400895 }
896}
897
John Stilesfcf8cb22020-08-06 14:29:22 -0400898// Assembles a matrix of type floatRxC by resizing another matrix named `x0`.
899// Cells that don't exist in the source matrix will be populated with identity-matrix values.
900void MetalCodeGenerator::assembleMatrixFromMatrix(const Type& sourceMatrix, int rows, int columns) {
901 SkASSERT(rows <= 4);
902 SkASSERT(columns <= 4);
903
John Stilesc18ee4e2021-08-13 17:53:49 -0400904 std::string matrixType = this->typeName(sourceMatrix.componentType());
905
906 const char* separator = "";
John Stilesfcf8cb22020-08-06 14:29:22 -0400907 for (int c = 0; c < columns; ++c) {
John Stilesc18ee4e2021-08-13 17:53:49 -0400908 fExtraFunctions.printf("%s%s%d(", separator, matrixType.c_str(), rows);
909 separator = "), ";
John Stilesfcf8cb22020-08-06 14:29:22 -0400910
911 // Determine how many values to take from the source matrix for this row.
912 int swizzleLength = 0;
913 if (c < sourceMatrix.columns()) {
914 swizzleLength = std::min<>(rows, sourceMatrix.rows());
915 }
916
917 // Emit all the values from the source matrix row.
918 bool firstItem;
919 switch (swizzleLength) {
920 case 0: firstItem = true; break;
921 case 1: firstItem = false; fExtraFunctions.printf("x0[%d].x", c); break;
922 case 2: firstItem = false; fExtraFunctions.printf("x0[%d].xy", c); break;
923 case 3: firstItem = false; fExtraFunctions.printf("x0[%d].xyz", c); break;
924 case 4: firstItem = false; fExtraFunctions.printf("x0[%d].xyzw", c); break;
925 default: SkUNREACHABLE;
926 }
927
928 // Emit the placeholder identity-matrix cells.
929 for (int r = swizzleLength; r < rows; ++r) {
930 fExtraFunctions.printf("%s%s", firstItem ? "" : ", ", (r == c) ? "1.0" : "0.0");
931 firstItem = false;
932 }
933 }
934
935 fExtraFunctions.writeText(")");
936}
937
John Stiles1f7300b2021-07-08 15:40:38 -0400938// Assembles a matrix of type floatCxR by concatenating an arbitrary mix of values, named `x0`,
939// `x1`, etc. An error is written if the expression list don't contain exactly C*R scalars.
John Stiles5abb9e12021-04-06 13:47:19 -0400940void MetalCodeGenerator::assembleMatrixFromExpressions(const AnyConstructor& ctor,
John Stiles1f7300b2021-07-08 15:40:38 -0400941 int columns, int rows) {
John Stilesc18ee4e2021-08-13 17:53:49 -0400942 SkASSERT(rows <= 4);
943 SkASSERT(columns <= 4);
944
945 std::string matrixType = this->typeName(ctor.type().componentType());
John Stilesfcf8cb22020-08-06 14:29:22 -0400946 size_t argIndex = 0;
947 int argPosition = 0;
John Stiles5abb9e12021-04-06 13:47:19 -0400948 auto args = ctor.argumentSpan();
John Stilesfcf8cb22020-08-06 14:29:22 -0400949
John Stilesc18ee4e2021-08-13 17:53:49 -0400950 const char* separator = "";
John Stiles143e8502021-09-14 12:04:11 -0400951 for (int c = 0; c < columns; ++c) {
John Stilesc18ee4e2021-08-13 17:53:49 -0400952 fExtraFunctions.printf("%s%s%d(", separator, matrixType.c_str(), rows);
953 separator = "), ";
John Stilesfcf8cb22020-08-06 14:29:22 -0400954
John Stiles1f7300b2021-07-08 15:40:38 -0400955 const char* columnSeparator = "";
John Stiles143e8502021-09-14 12:04:11 -0400956 for (int r = 0; r < rows; ++r) {
John Stiles1f7300b2021-07-08 15:40:38 -0400957 fExtraFunctions.writeText(columnSeparator);
958 columnSeparator = ", ";
John Stilesfcf8cb22020-08-06 14:29:22 -0400959
960 if (argIndex < args.size()) {
Ethan Nicholas30d30222020-09-11 12:27:26 -0400961 const Type& argType = args[argIndex]->type();
Ethan Nicholase6592142020-09-08 10:22:09 -0400962 switch (argType.typeKind()) {
963 case Type::TypeKind::kScalar: {
John Stilesfcf8cb22020-08-06 14:29:22 -0400964 fExtraFunctions.printf("x%zu", argIndex);
965 break;
966 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400967 case Type::TypeKind::kVector: {
John Stilesfcf8cb22020-08-06 14:29:22 -0400968 fExtraFunctions.printf("x%zu[%d]", argIndex, argPosition);
969 break;
970 }
Ethan Nicholase6592142020-09-08 10:22:09 -0400971 case Type::TypeKind::kMatrix: {
John Stilesfcf8cb22020-08-06 14:29:22 -0400972 fExtraFunctions.printf("x%zu[%d][%d]", argIndex,
973 argPosition / argType.rows(),
974 argPosition % argType.rows());
975 break;
976 }
977 default: {
978 SkDEBUGFAIL("incorrect type of argument for matrix constructor");
979 fExtraFunctions.writeText("<error>");
980 break;
981 }
982 }
983
984 ++argPosition;
985 if (argPosition >= argType.columns() * argType.rows()) {
986 ++argIndex;
987 argPosition = 0;
988 }
989 } else {
990 SkDEBUGFAIL("not enough arguments for matrix constructor");
991 fExtraFunctions.writeText("<error>");
992 }
993 }
994 }
995
996 if (argPosition != 0 || argIndex != args.size()) {
997 SkDEBUGFAIL("incorrect number of arguments for matrix constructor");
998 fExtraFunctions.writeText(", <error>");
999 }
1000
1001 fExtraFunctions.writeText(")");
1002}
1003
John Stiles1bdafbf2020-05-28 12:17:20 -04001004// Generates a constructor for 'matrix' which reorganizes the input arguments into the proper shape.
1005// Keeps track of previously generated constructors so that we won't generate more than one
1006// constructor for any given permutation of input argument types. Returns the name of the
1007// generated constructor method.
John Stiles5abb9e12021-04-06 13:47:19 -04001008String MetalCodeGenerator::getMatrixConstructHelper(const AnyConstructor& c) {
John Stilesc18ee4e2021-08-13 17:53:49 -04001009 const Type& type = c.type();
1010 int columns = type.columns();
1011 int rows = type.rows();
John Stiles5abb9e12021-04-06 13:47:19 -04001012 auto args = c.argumentSpan();
John Stilesc18ee4e2021-08-13 17:53:49 -04001013 String typeName = this->typeName(type);
John Stiles1bdafbf2020-05-28 12:17:20 -04001014
1015 // Create the helper-method name and use it as our lookup key.
1016 String name;
John Stilesc18ee4e2021-08-13 17:53:49 -04001017 name.appendf("%s_from", typeName.c_str());
John Stiles1bdafbf2020-05-28 12:17:20 -04001018 for (const std::unique_ptr<Expression>& expr : args) {
John Stiles36129132020-12-29 12:28:04 -05001019 name.appendf("_%s", this->typeName(expr->type()).c_str());
John Stiles1bdafbf2020-05-28 12:17:20 -04001020 }
1021
1022 // If a helper-method has already been synthesized, we don't need to synthesize it again.
1023 auto [iter, newlyCreated] = fHelpers.insert(name);
1024 if (!newlyCreated) {
1025 return name;
1026 }
1027
1028 // Unlike GLSL, Metal requires that matrices are initialized with exactly R vectors of C
1029 // components apiece. (In Metal 2.0, you can also supply R*C scalars, but you still cannot
1030 // supply a mixture of scalars and vectors.)
John Stilesc18ee4e2021-08-13 17:53:49 -04001031 fExtraFunctions.printf("%s %s(", typeName.c_str(), name.c_str());
John Stiles1bdafbf2020-05-28 12:17:20 -04001032
1033 size_t argIndex = 0;
1034 const char* argSeparator = "";
John Stilesfcf8cb22020-08-06 14:29:22 -04001035 for (const std::unique_ptr<Expression>& expr : args) {
John Stiles1bdafbf2020-05-28 12:17:20 -04001036 fExtraFunctions.printf("%s%s x%zu", argSeparator,
John Stiles36129132020-12-29 12:28:04 -05001037 this->typeName(expr->type()).c_str(), argIndex++);
John Stiles1bdafbf2020-05-28 12:17:20 -04001038 argSeparator = ", ";
1039 }
1040
John Stilesc18ee4e2021-08-13 17:53:49 -04001041 fExtraFunctions.printf(") {\n return %s(", typeName.c_str());
John Stiles1bdafbf2020-05-28 12:17:20 -04001042
John Stiles9aeed132020-11-24 17:36:06 -05001043 if (args.size() == 1 && args.front()->type().isMatrix()) {
Ethan Nicholas30d30222020-09-11 12:27:26 -04001044 this->assembleMatrixFromMatrix(args.front()->type(), rows, columns);
John Stilesfcf8cb22020-08-06 14:29:22 -04001045 } else {
John Stiles1f7300b2021-07-08 15:40:38 -04001046 this->assembleMatrixFromExpressions(c, columns, rows);
John Stiles1bdafbf2020-05-28 12:17:20 -04001047 }
1048
John Stilesfcf8cb22020-08-06 14:29:22 -04001049 fExtraFunctions.writeText(");\n}\n");
Ethan Nicholas842d31b2019-01-22 10:59:11 -05001050 return name;
1051}
1052
1053bool MetalCodeGenerator::canCoerce(const Type& t1, const Type& t2) {
1054 if (t1.columns() != t2.columns() || t1.rows() != t2.rows()) {
1055 return false;
1056 }
1057 if (t1.columns() > 1) {
1058 return this->canCoerce(t1.componentType(), t2.componentType());
1059 }
Ethan Nicholase1f55022019-02-05 17:17:40 -05001060 return t1.isFloat() && t2.isFloat();
Ethan Nicholas842d31b2019-01-22 10:59:11 -05001061}
1062
John Stiles8cad6372021-04-07 12:31:13 -04001063bool MetalCodeGenerator::matrixConstructHelperIsNeeded(const ConstructorCompound& c) {
John Stiles2bec8ab2021-04-06 18:40:04 -04001064 SkASSERT(c.type().isMatrix());
John Stiles1bdafbf2020-05-28 12:17:20 -04001065
1066 // GLSL is fairly free-form about inputs to its matrix constructors, but Metal is not; it
1067 // expects exactly R vectors of C components apiece. (Metal 2.0 also allows a list of R*C
1068 // scalars.) Some cases are simple to translate and so we handle those inline--e.g. a list of
1069 // scalars can be constructed trivially. In more complex cases, we generate a helper function
1070 // that converts our inputs into a properly-shaped matrix.
1071 // A matrix construct helper method is always used if any input argument is a matrix.
1072 // Helper methods are also necessary when any argument would span multiple rows. For instance:
1073 //
1074 // float2 x = (1, 2);
1075 // float3x2(x, 3, 4, 5, 6) = | 1 3 5 | = no helper needed; conversion can be done inline
1076 // | 2 4 6 |
1077 //
1078 // float2 x = (2, 3);
1079 // float3x2(1, x, 4, 5, 6) = | 1 3 5 | = x spans multiple rows; a helper method will be used
1080 // | 2 4 6 |
1081 //
1082 // float4 x = (1, 2, 3, 4);
1083 // float2x2(x) = | 1 3 | = x spans multiple rows; a helper method will be used
1084 // | 2 4 |
1085 //
1086
1087 int position = 0;
Ethan Nicholasf70f0442020-09-29 12:41:35 -04001088 for (const std::unique_ptr<Expression>& expr : c.arguments()) {
John Stiles1bdafbf2020-05-28 12:17:20 -04001089 // If an input argument is a matrix, we need a helper function.
John Stiles9aeed132020-11-24 17:36:06 -05001090 if (expr->type().isMatrix()) {
John Stiles1bdafbf2020-05-28 12:17:20 -04001091 return true;
1092 }
Ethan Nicholas30d30222020-09-11 12:27:26 -04001093 position += expr->type().columns();
1094 if (position > c.type().rows()) {
John Stiles1bdafbf2020-05-28 12:17:20 -04001095 // An input argument would span multiple rows; a helper function is required.
1096 return true;
1097 }
Ethan Nicholas30d30222020-09-11 12:27:26 -04001098 if (position == c.type().rows()) {
John Stiles1bdafbf2020-05-28 12:17:20 -04001099 // We've advanced to the end of a row. Wrap to the start of the next row.
1100 position = 0;
1101 }
1102 }
1103
1104 return false;
1105}
1106
John Stiles5abb9e12021-04-06 13:47:19 -04001107void MetalCodeGenerator::writeConstructorMatrixResize(const ConstructorMatrixResize& c,
1108 Precedence parentPrecedence) {
1109 // Matrix-resize via casting doesn't natively exist in Metal at all, so we always need to use a
1110 // matrix-construct helper here.
1111 this->write(this->getMatrixConstructHelper(c));
1112 this->write("(");
1113 this->writeExpression(*c.argument(), Precedence::kSequence);
1114 this->write(")");
1115}
1116
John Stiles8cad6372021-04-07 12:31:13 -04001117void MetalCodeGenerator::writeConstructorCompound(const ConstructorCompound& c,
1118 Precedence parentPrecedence) {
John Stiles6de2e1d2021-07-09 12:41:55 -04001119 if (c.type().isVector()) {
1120 this->writeConstructorCompoundVector(c, parentPrecedence);
1121 } else if (c.type().isMatrix()) {
John Stiles8cad6372021-04-07 12:31:13 -04001122 this->writeConstructorCompoundMatrix(c, parentPrecedence);
John Stiles2bec8ab2021-04-06 18:40:04 -04001123 } else {
Ethan Nicholas39f6da42021-08-23 13:10:07 -04001124 fContext.fErrors->error(c.fOffset, "unsupported compound constructor");
John Stiles2bec8ab2021-04-06 18:40:04 -04001125 }
1126}
John Stiles7384b372021-04-01 13:48:15 -04001127
John Stilesc18ee4e2021-08-13 17:53:49 -04001128String MetalCodeGenerator::getVectorFromMat2x2ConstructorHelper(const Type& matrixType) {
1129 SkASSERT(matrixType.isMatrix());
1130 SkASSERT(matrixType.rows() == 2);
1131 SkASSERT(matrixType.columns() == 2);
John Stiles6de2e1d2021-07-09 12:41:55 -04001132
John Stilesc18ee4e2021-08-13 17:53:49 -04001133 String baseType = this->typeName(matrixType.componentType());
1134 String name = String::printf("%s4_from_%s2x2", baseType.c_str(), baseType.c_str());
1135 if (fHelpers.find(name) == fHelpers.end()) {
1136 fHelpers.insert(name);
1137
1138 fExtraFunctions.printf(R"(
1139%s4 %s(%s2x2 x) {
1140 return %s4(x[0].xy, x[1].xy);
1141}
1142)", baseType.c_str(), name.c_str(), baseType.c_str(), baseType.c_str());
John Stiles6de2e1d2021-07-09 12:41:55 -04001143 }
John Stilesc18ee4e2021-08-13 17:53:49 -04001144
1145 return name;
John Stiles6de2e1d2021-07-09 12:41:55 -04001146}
1147
1148void MetalCodeGenerator::writeConstructorCompoundVector(const ConstructorCompound& c,
1149 Precedence parentPrecedence) {
1150 SkASSERT(c.type().isVector());
1151
1152 // Metal supports constructing vectors from a mix of scalars and vectors, but not matrices.
1153 // GLSL supports vec4(mat2x2), so we detect that case here and emit a helper function.
1154 if (c.type().columns() == 4 && c.argumentSpan().size() == 1) {
1155 const Expression& expr = *c.argumentSpan().front();
1156 if (expr.type().isMatrix()) {
John Stilesc18ee4e2021-08-13 17:53:49 -04001157 this->write(this->getVectorFromMat2x2ConstructorHelper(expr.type()));
1158 this->write("(");
John Stiles6de2e1d2021-07-09 12:41:55 -04001159 this->writeExpression(expr, Precedence::kSequence);
1160 this->write(")");
1161 return;
1162 }
1163 }
1164
1165 this->writeAnyConstructor(c, "(", ")", parentPrecedence);
1166}
1167
John Stiles8cad6372021-04-07 12:31:13 -04001168void MetalCodeGenerator::writeConstructorCompoundMatrix(const ConstructorCompound& c,
1169 Precedence parentPrecedence) {
John Stiles6de2e1d2021-07-09 12:41:55 -04001170 SkASSERT(c.type().isMatrix());
1171
John Stiles1bdafbf2020-05-28 12:17:20 -04001172 // Emit and invoke a matrix-constructor helper method if one is necessary.
1173 if (this->matrixConstructHelperIsNeeded(c)) {
1174 this->write(this->getMatrixConstructHelper(c));
John Stiles1fa15b12020-05-28 17:36:54 +00001175 this->write("(");
1176 const char* separator = "";
Ethan Nicholasf70f0442020-09-29 12:41:35 -04001177 for (const std::unique_ptr<Expression>& expr : c.arguments()) {
John Stiles1fa15b12020-05-28 17:36:54 +00001178 this->write(separator);
1179 separator = ", ";
Brian Osman00185012021-02-04 16:07:11 -05001180 this->writeExpression(*expr, Precedence::kSequence);
John Stilesdaa573e2020-05-28 12:17:20 -04001181 }
John Stiles1fa15b12020-05-28 17:36:54 +00001182 this->write(")");
John Stiles1bdafbf2020-05-28 12:17:20 -04001183 return;
John Stilesdaa573e2020-05-28 12:17:20 -04001184 }
John Stiles1bdafbf2020-05-28 12:17:20 -04001185
John Stiles2bec8ab2021-04-06 18:40:04 -04001186 // Metal doesn't allow creating matrices by passing in scalars and vectors in a jumble; it
1187 // requires your scalars to be grouped up into columns. Because `matrixConstructHelperIsNeeded`
1188 // returned false, we know that none of our scalars/vectors "wrap" across across a column, so we
1189 // can group our inputs up and synthesize a constructor for each column.
1190 const Type& matrixType = c.type();
1191 const Type& columnType = matrixType.componentType().toCompound(
1192 fContext, /*columns=*/matrixType.rows(), /*rows=*/1);
1193
1194 this->writeType(matrixType);
John Stiles7384b372021-04-01 13:48:15 -04001195 this->write("(");
John Stiles1bdafbf2020-05-28 12:17:20 -04001196 const char* separator = "";
1197 int scalarCount = 0;
Ethan Nicholasf70f0442020-09-29 12:41:35 -04001198 for (const std::unique_ptr<Expression>& arg : c.arguments()) {
John Stiles1bdafbf2020-05-28 12:17:20 -04001199 this->write(separator);
1200 separator = ", ";
John Stiles2bec8ab2021-04-06 18:40:04 -04001201 if (arg->type().columns() < matrixType.rows()) {
1202 // Write a `floatN(` constructor to group scalars and smaller vectors together.
John Stiles1bdafbf2020-05-28 12:17:20 -04001203 if (!scalarCount) {
John Stiles2bec8ab2021-04-06 18:40:04 -04001204 this->writeType(columnType);
John Stiles1bdafbf2020-05-28 12:17:20 -04001205 this->write("(");
1206 }
John Stiles2bec8ab2021-04-06 18:40:04 -04001207 scalarCount += arg->type().columns();
John Stiles1bdafbf2020-05-28 12:17:20 -04001208 }
Brian Osman00185012021-02-04 16:07:11 -05001209 this->writeExpression(*arg, Precedence::kSequence);
John Stiles2bec8ab2021-04-06 18:40:04 -04001210 if (scalarCount && scalarCount == matrixType.rows()) {
1211 // Close our `floatN(...` constructor block from above.
John Stiles1bdafbf2020-05-28 12:17:20 -04001212 this->write(")");
1213 scalarCount = 0;
1214 }
1215 }
John Stiles7384b372021-04-01 13:48:15 -04001216 this->write(")");
Ethan Nicholascc305772017-10-13 16:17:45 -04001217}
1218
John Stilesb14a8192021-04-05 11:40:46 -04001219void MetalCodeGenerator::writeAnyConstructor(const AnyConstructor& c,
1220 const char* leftBracket,
1221 const char* rightBracket,
1222 Precedence parentPrecedence) {
John Stilese1182782021-03-30 22:09:37 -04001223 this->writeType(c.type());
John Stilesb14a8192021-04-05 11:40:46 -04001224 this->write(leftBracket);
John Stiles7384b372021-04-01 13:48:15 -04001225 const char* separator = "";
John Stilesb14a8192021-04-05 11:40:46 -04001226 for (const std::unique_ptr<Expression>& arg : c.argumentSpan()) {
John Stiles7384b372021-04-01 13:48:15 -04001227 this->write(separator);
1228 separator = ", ";
1229 this->writeExpression(*arg, Precedence::kSequence);
1230 }
John Stilesb14a8192021-04-05 11:40:46 -04001231 this->write(rightBracket);
John Stiles7384b372021-04-01 13:48:15 -04001232}
1233
John Stilesb14a8192021-04-05 11:40:46 -04001234void MetalCodeGenerator::writeCastConstructor(const AnyConstructor& c,
1235 const char* leftBracket,
1236 const char* rightBracket,
1237 Precedence parentPrecedence) {
1238 // If the type is coercible, emit it directly without the cast.
1239 auto args = c.argumentSpan();
1240 if (args.size() == 1) {
1241 if (this->canCoerce(c.type(), args.front()->type())) {
1242 this->writeExpression(*args.front(), parentPrecedence);
1243 return;
1244 }
John Stilesfd7252f2021-04-04 22:24:40 -04001245 }
1246
John Stilesb14a8192021-04-05 11:40:46 -04001247 return this->writeAnyConstructor(c, leftBracket, rightBracket, parentPrecedence);
John Stilesfd7252f2021-04-04 22:24:40 -04001248}
1249
Ethan Nicholascc305772017-10-13 16:17:45 -04001250void MetalCodeGenerator::writeFragCoord() {
Brian Salomond8d85b92021-07-07 09:41:17 -04001251 SkASSERT(fRTFlipName.length());
1252 this->write("float4(_fragCoord.x, ");
1253 this->write(fRTFlipName.c_str());
1254 this->write(".x + ");
1255 this->write(fRTFlipName.c_str());
1256 this->write(".y * _fragCoord.y, 0.0, _fragCoord.w)");
Ethan Nicholascc305772017-10-13 16:17:45 -04001257}
1258
1259void MetalCodeGenerator::writeVariableReference(const VariableReference& ref) {
John Stiles06b84ef2020-12-09 12:35:48 -05001260 // When assembling out-param helper functions, we copy variables into local clones with matching
John Stilesf7410bd2021-01-19 13:07:55 -05001261 // names. We never want to prepend "_in." or "_globals." when writing these variables since
John Stiles06b84ef2020-12-09 12:35:48 -05001262 // we're actually targeting the clones.
1263 if (fIgnoreVariableReferenceModifiers) {
1264 this->writeName(ref.variable()->name());
1265 return;
1266 }
1267
Ethan Nicholas78686922020-10-08 06:46:27 -04001268 switch (ref.variable()->modifiers().fLayout.fBuiltin) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001269 case SK_FRAGCOLOR_BUILTIN:
John Stilesf7410bd2021-01-19 13:07:55 -05001270 this->write("_out.sk_FragColor");
Ethan Nicholascc305772017-10-13 16:17:45 -04001271 break;
Timothy Liang6403b0e2018-05-17 10:40:04 -04001272 case SK_FRAGCOORD_BUILTIN:
1273 this->writeFragCoord();
1274 break;
Timothy Liangdc89f192018-06-13 09:20:31 -04001275 case SK_VERTEXID_BUILTIN:
1276 this->write("sk_VertexID");
1277 break;
1278 case SK_INSTANCEID_BUILTIN:
1279 this->write("sk_InstanceID");
1280 break;
Timothy Liang7b8875d2018-08-10 09:42:31 -04001281 case SK_CLOCKWISE_BUILTIN:
1282 // We'd set the front facing winding in the MTLRenderCommandEncoder to be counter
Brian Salomonf4ba4ec2020-03-19 15:54:28 -04001283 // clockwise to match Skia convention.
Brian Salomond8d85b92021-07-07 09:41:17 -04001284 this->write("(" + fRTFlipName + ".y < 0 ? _frontFacing : !_frontFacing)");
Timothy Liang7b8875d2018-08-10 09:42:31 -04001285 break;
Ethan Nicholascc305772017-10-13 16:17:45 -04001286 default:
Ethan Nicholas78686922020-10-08 06:46:27 -04001287 const Variable& var = *ref.variable();
Ethan Nicholas453f67f2020-10-09 10:43:45 -04001288 if (var.storage() == Variable::Storage::kGlobal) {
Ethan Nicholas78686922020-10-08 06:46:27 -04001289 if (var.modifiers().fFlags & Modifiers::kIn_Flag) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001290 this->write("_in.");
Ethan Nicholas78686922020-10-08 06:46:27 -04001291 } else if (var.modifiers().fFlags & Modifiers::kOut_Flag) {
John Stilesf7410bd2021-01-19 13:07:55 -05001292 this->write("_out.");
Ethan Nicholas78686922020-10-08 06:46:27 -04001293 } else if (var.modifiers().fFlags & Modifiers::kUniform_Flag &&
1294 var.type().typeKind() != Type::TypeKind::kSampler) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001295 this->write("_uniforms.");
1296 } else {
John Stilesf7410bd2021-01-19 13:07:55 -05001297 this->write("_globals.");
Ethan Nicholascc305772017-10-13 16:17:45 -04001298 }
1299 }
Ethan Nicholas78686922020-10-08 06:46:27 -04001300 this->writeName(var.name());
Ethan Nicholascc305772017-10-13 16:17:45 -04001301 }
1302}
1303
1304void MetalCodeGenerator::writeIndexExpression(const IndexExpression& expr) {
Brian Osman00185012021-02-04 16:07:11 -05001305 this->writeExpression(*expr.base(), Precedence::kPostfix);
Ethan Nicholascc305772017-10-13 16:17:45 -04001306 this->write("[");
Brian Osman00185012021-02-04 16:07:11 -05001307 this->writeExpression(*expr.index(), Precedence::kTopLevel);
Ethan Nicholascc305772017-10-13 16:17:45 -04001308 this->write("]");
1309}
1310
1311void MetalCodeGenerator::writeFieldAccess(const FieldAccess& f) {
Ethan Nicholas7a95b202020-10-09 11:55:40 -04001312 const Type::Field* field = &f.base()->type().fields()[f.fieldIndex()];
1313 if (FieldAccess::OwnerKind::kDefault == f.ownerKind()) {
Brian Osman00185012021-02-04 16:07:11 -05001314 this->writeExpression(*f.base(), Precedence::kPostfix);
Ethan Nicholascc305772017-10-13 16:17:45 -04001315 this->write(".");
1316 }
Timothy Liang7d637782018-06-05 09:58:07 -04001317 switch (field->fModifiers.fLayout.fBuiltin) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001318 case SK_POSITION_BUILTIN:
John Stilesf7410bd2021-01-19 13:07:55 -05001319 this->write("_out.sk_Position");
Ethan Nicholascc305772017-10-13 16:17:45 -04001320 break;
1321 default:
Timothy Liang7d637782018-06-05 09:58:07 -04001322 if (field->fName == "sk_PointSize") {
John Stilesf7410bd2021-01-19 13:07:55 -05001323 this->write("_out.sk_PointSize");
Timothy Liang7d637782018-06-05 09:58:07 -04001324 } else {
Ethan Nicholas7a95b202020-10-09 11:55:40 -04001325 if (FieldAccess::OwnerKind::kAnonymousInterfaceBlock == f.ownerKind()) {
John Stilesf7410bd2021-01-19 13:07:55 -05001326 this->write("_globals.");
Timothy Liang7d637782018-06-05 09:58:07 -04001327 this->write(fInterfaceBlockNameMap[fInterfaceBlockMap[field]]);
1328 this->write("->");
1329 }
Timothy Liang651286f2018-06-07 09:55:33 -04001330 this->writeName(field->fName);
Timothy Lianga06f2152018-05-24 15:33:31 -04001331 }
Ethan Nicholascc305772017-10-13 16:17:45 -04001332 }
1333}
1334
1335void MetalCodeGenerator::writeSwizzle(const Swizzle& swizzle) {
Brian Osman00185012021-02-04 16:07:11 -05001336 this->writeExpression(*swizzle.base(), Precedence::kPostfix);
Ethan Nicholascc305772017-10-13 16:17:45 -04001337 this->write(".");
Ethan Nicholas6b4d5812020-10-12 16:11:51 -04001338 for (int c : swizzle.components()) {
Brian Osman25647672020-09-15 15:16:56 -04001339 SkASSERT(c >= 0 && c <= 3);
1340 this->write(&("x\0y\0z\0w\0"[c * 2]));
Ethan Nicholascc305772017-10-13 16:17:45 -04001341 }
1342}
1343
Ethan Nicholas0dc80872019-02-08 15:46:24 -05001344void MetalCodeGenerator::writeMatrixTimesEqualHelper(const Type& left, const Type& right,
1345 const Type& result) {
John Stilesc985e142021-05-13 14:01:48 -04001346 SkASSERT(left.isMatrix());
1347 SkASSERT(right.isMatrix());
1348 SkASSERT(result.isMatrix());
1349 SkASSERT(left.rows() == right.rows());
1350 SkASSERT(left.columns() == right.columns());
1351 SkASSERT(left.rows() == result.rows());
1352 SkASSERT(left.columns() == result.columns());
1353
1354 String key = "Matrix *= " + this->typeName(left) + ":" + this->typeName(right);
John Stiles56233d12021-02-03 13:03:29 -05001355
1356 auto [iter, wasInserted] = fHelpers.insert(key);
1357 if (wasInserted) {
John Stiles368db7c2020-12-29 11:20:08 -05001358 fExtraFunctions.printf("thread %s& operator*=(thread %s& left, thread const %s& right) {\n"
Ethan Nicholas0dc80872019-02-08 15:46:24 -05001359 " left = left * right;\n"
1360 " return left;\n"
John Stiles368db7c2020-12-29 11:20:08 -05001361 "}\n",
1362 this->typeName(result).c_str(), this->typeName(left).c_str(),
1363 this->typeName(right).c_str());
Ethan Nicholas0dc80872019-02-08 15:46:24 -05001364 }
1365}
1366
John Stiles39346472021-04-29 14:39:35 -04001367void MetalCodeGenerator::writeMatrixEqualityHelpers(const Type& left, const Type& right) {
1368 SkASSERT(left.isMatrix());
1369 SkASSERT(right.isMatrix());
1370 SkASSERT(left.rows() == right.rows());
1371 SkASSERT(left.columns() == right.columns());
John Stiles01cdf012021-02-10 09:53:41 -05001372
John Stilesc985e142021-05-13 14:01:48 -04001373 String key = "Matrix == " + this->typeName(left) + ":" + this->typeName(right);
John Stiles01cdf012021-02-10 09:53:41 -05001374
1375 auto [iter, wasInserted] = fHelpers.insert(key);
1376 if (wasInserted) {
John Stiles82d4c122021-08-10 16:03:23 -04001377 fExtraFunctionPrototypes.printf(R"(
1378thread bool operator==(const %s left, const %s right);
1379thread bool operator!=(const %s left, const %s right);
1380)",
1381 this->typeName(left).c_str(),
1382 this->typeName(right).c_str(),
1383 this->typeName(left).c_str(),
1384 this->typeName(right).c_str());
1385
John Stiles01cdf012021-02-10 09:53:41 -05001386 fExtraFunctions.printf(
1387 "thread bool operator==(const %s left, const %s right) {\n"
John Stiles39346472021-04-29 14:39:35 -04001388 " return ",
John Stiles01cdf012021-02-10 09:53:41 -05001389 this->typeName(left).c_str(), this->typeName(right).c_str());
1390
John Stiles39346472021-04-29 14:39:35 -04001391 const char* separator = "";
John Stiles01cdf012021-02-10 09:53:41 -05001392 for (int index=0; index<left.columns(); ++index) {
John Stiles39346472021-04-29 14:39:35 -04001393 fExtraFunctions.printf("%sall(left[%d] == right[%d])", separator, index, index);
1394 separator = " &&\n ";
John Stiles01cdf012021-02-10 09:53:41 -05001395 }
John Stiles39346472021-04-29 14:39:35 -04001396
1397 fExtraFunctions.printf(
1398 ";\n"
1399 "}\n"
1400 "thread bool operator!=(const %s left, const %s right) {\n"
1401 " return !(left == right);\n"
1402 "}\n",
1403 this->typeName(left).c_str(), this->typeName(right).c_str());
John Stiles01cdf012021-02-10 09:53:41 -05001404 }
1405}
1406
John Stilesc985e142021-05-13 14:01:48 -04001407void MetalCodeGenerator::writeMatrixDivisionHelpers(const Type& type) {
1408 SkASSERT(type.isMatrix());
1409
1410 String key = "Matrix / " + this->typeName(type);
1411
1412 auto [iter, wasInserted] = fHelpers.insert(key);
1413 if (wasInserted) {
1414 String typeName = this->typeName(type);
1415
1416 fExtraFunctions.printf(
1417 "thread %s operator/(const %s left, const %s right) {\n"
1418 " return %s(",
1419 typeName.c_str(), typeName.c_str(), typeName.c_str(), typeName.c_str());
1420
1421 const char* separator = "";
1422 for (int index=0; index<type.columns(); ++index) {
1423 fExtraFunctions.printf("%sleft[%d] / right[%d]", separator, index, index);
1424 separator = ", ";
1425 }
1426
1427 fExtraFunctions.printf(");\n"
1428 "}\n"
1429 "thread %s& operator/=(thread %s& left, thread const %s& right) {\n"
1430 " left = left / right;\n"
1431 " return left;\n"
1432 "}\n",
1433 typeName.c_str(), typeName.c_str(), typeName.c_str());
1434 }
1435}
1436
John Stiles39346472021-04-29 14:39:35 -04001437void MetalCodeGenerator::writeArrayEqualityHelpers(const Type& type) {
1438 SkASSERT(type.isArray());
John Stiles01cdf012021-02-10 09:53:41 -05001439
John Stiles39346472021-04-29 14:39:35 -04001440 // If the array's component type needs a helper as well, we need to emit that one first.
1441 this->writeEqualityHelpers(type.componentType(), type.componentType());
1442
1443 auto [iter, wasInserted] = fHelpers.insert("ArrayEquality []");
1444 if (wasInserted) {
John Stiles82d4c122021-08-10 16:03:23 -04001445 fExtraFunctionPrototypes.writeText(R"(
1446template <typename T1, typename T2, size_t N>
1447bool operator==(thread const array<T1, N>& left, thread const array<T2, N>& right);
1448template <typename T1, typename T2, size_t N>
1449bool operator!=(thread const array<T1, N>& left, thread const array<T2, N>& right);
1450)");
John Stiles39346472021-04-29 14:39:35 -04001451 fExtraFunctions.writeText(R"(
John Stilese3ae9682021-08-05 10:35:01 -04001452template <typename T1, typename T2, size_t N>
1453bool operator==(thread const array<T1, N>& left, thread const array<T2, N>& right) {
John Stiles39346472021-04-29 14:39:35 -04001454 for (size_t index = 0; index < N; ++index) {
John Stilese076c382021-08-10 16:56:23 +00001455 if (!all(left[index] == right[index])) {
John Stiles39346472021-04-29 14:39:35 -04001456 return false;
1457 }
1458 }
1459 return true;
1460}
1461
John Stilese3ae9682021-08-05 10:35:01 -04001462template <typename T1, typename T2, size_t N>
1463bool operator!=(thread const array<T1, N>& left, thread const array<T2, N>& right) {
John Stiles39346472021-04-29 14:39:35 -04001464 return !(left == right);
1465}
1466)");
1467 }
1468}
1469
1470void MetalCodeGenerator::writeStructEqualityHelpers(const Type& type) {
1471 SkASSERT(type.isStruct());
1472 String key = "StructEquality " + this->typeName(type);
John Stiles01cdf012021-02-10 09:53:41 -05001473
1474 auto [iter, wasInserted] = fHelpers.insert(key);
1475 if (wasInserted) {
John Stiles39346472021-04-29 14:39:35 -04001476 // If one of the struct's fields needs a helper as well, we need to emit that one first.
1477 for (const Type::Field& field : type.fields()) {
1478 this->writeEqualityHelpers(*field.fType, *field.fType);
John Stiles830c69c2021-04-28 17:16:16 -04001479 }
John Stiles39346472021-04-29 14:39:35 -04001480
1481 // Write operator== and operator!= for this struct, since those are assumed to exist in SkSL
1482 // and GLSL but do not exist by default in Metal.
John Stiles82d4c122021-08-10 16:03:23 -04001483 fExtraFunctionPrototypes.printf(R"(
1484thread bool operator==(thread const %s& left, thread const %s& right);
1485thread bool operator!=(thread const %s& left, thread const %s& right);
1486)",
1487 this->typeName(type).c_str(),
1488 this->typeName(type).c_str(),
1489 this->typeName(type).c_str(),
1490 this->typeName(type).c_str());
1491
John Stiles39346472021-04-29 14:39:35 -04001492 fExtraFunctions.printf(
1493 "thread bool operator==(thread const %s& left, thread const %s& right) {\n"
1494 " return ",
1495 this->typeName(type).c_str(),
1496 this->typeName(type).c_str());
1497
1498 const char* separator = "";
1499 for (const Type::Field& field : type.fields()) {
1500 fExtraFunctions.printf("%s(left.%.*s == right.%.*s)",
1501 separator,
1502 (int)field.fName.size(), field.fName.data(),
1503 (int)field.fName.size(), field.fName.data());
1504 separator = " &&\n ";
1505 }
1506 fExtraFunctions.printf(
1507 ";\n"
1508 "}\n"
1509 "thread bool operator!=(thread const %s& left, thread const %s& right) {\n"
1510 " return !(left == right);\n"
1511 "}\n",
1512 this->typeName(type).c_str(),
1513 this->typeName(type).c_str());
1514 }
1515}
1516
1517void MetalCodeGenerator::writeEqualityHelpers(const Type& leftType, const Type& rightType) {
1518 if (leftType.isArray() && rightType.isArray()) {
1519 this->writeArrayEqualityHelpers(leftType);
1520 return;
1521 }
1522 if (leftType.isStruct() && rightType.isStruct()) {
1523 this->writeStructEqualityHelpers(leftType);
1524 return;
1525 }
1526 if (leftType.isMatrix() && rightType.isMatrix()) {
1527 this->writeMatrixEqualityHelpers(leftType, rightType);
1528 return;
John Stiles01cdf012021-02-10 09:53:41 -05001529 }
1530}
1531
John Stiles6b131292021-05-12 17:12:21 -04001532void MetalCodeGenerator::writeNumberAsMatrix(const Expression& expr, const Type& matrixType) {
1533 SkASSERT(expr.type().isNumber());
1534 SkASSERT(matrixType.isMatrix());
1535
1536 // Componentwise multiply the scalar against a matrix of the desired size which contains all 1s.
1537 this->write("(");
1538 this->writeType(matrixType);
1539 this->write("(");
1540
1541 const char* separator = "";
1542 for (int index = matrixType.slotCount(); index--;) {
1543 this->write(separator);
1544 this->write("1.0");
1545 separator = ", ";
1546 }
1547
1548 this->write(") * ");
1549 this->writeExpression(expr, Precedence::kMultiplicative);
1550 this->write(")");
1551}
1552
Ethan Nicholascc305772017-10-13 16:17:45 -04001553void MetalCodeGenerator::writeBinaryExpression(const BinaryExpression& b,
1554 Precedence parentPrecedence) {
John Stiles2d4f9592020-10-30 10:29:12 -04001555 const Expression& left = *b.left();
1556 const Expression& right = *b.right();
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -04001557 const Type& leftType = left.type();
1558 const Type& rightType = right.type();
John Stiles45990502021-02-16 10:55:27 -05001559 Operator op = b.getOperator();
1560 Precedence precedence = op.getBinaryPrecedence();
Ethan Nicholas0dc80872019-02-08 15:46:24 -05001561 bool needParens = precedence >= parentPrecedence;
John Stiles45990502021-02-16 10:55:27 -05001562 switch (op.kind()) {
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001563 case Token::Kind::TK_EQEQ:
John Stiles39346472021-04-29 14:39:35 -04001564 this->writeEqualityHelpers(leftType, rightType);
John Stiles9aeed132020-11-24 17:36:06 -05001565 if (leftType.isVector()) {
Ethan Nicholas0dc80872019-02-08 15:46:24 -05001566 this->write("all");
1567 needParens = true;
1568 }
1569 break;
Ethan Nicholas5a9e7fb2020-04-17 12:45:51 -04001570 case Token::Kind::TK_NEQ:
John Stiles39346472021-04-29 14:39:35 -04001571 this->writeEqualityHelpers(leftType, rightType);
John Stiles9aeed132020-11-24 17:36:06 -05001572 if (leftType.isVector()) {
Jim Van Verth36477b42019-04-11 14:57:30 -04001573 this->write("any");
Ethan Nicholas0dc80872019-02-08 15:46:24 -05001574 needParens = true;
1575 }
1576 break;
1577 default:
1578 break;
1579 }
John Stiles39346472021-04-29 14:39:35 -04001580 if (leftType.isMatrix() && rightType.isMatrix() && op.kind() == Token::Kind::TK_STAREQ) {
1581 this->writeMatrixTimesEqualHelper(leftType, rightType, b.type());
Ethan Nicholas0dc80872019-02-08 15:46:24 -05001582 }
John Stilesc985e142021-05-13 14:01:48 -04001583 if (op.removeAssignment().kind() == Token::Kind::TK_SLASH &&
1584 ((leftType.isMatrix() && rightType.isMatrix()) ||
1585 (leftType.isScalar() && rightType.isMatrix()) ||
1586 (leftType.isMatrix() && rightType.isScalar()))) {
1587 this->writeMatrixDivisionHelpers(leftType.isMatrix() ? leftType : rightType);
1588 }
1589 if (needParens) {
1590 this->write("(");
1591 }
John Stiles6011bbc2021-05-19 22:56:18 -04001592 bool needMatrixSplatOnScalar = rightType.isMatrix() && leftType.isNumber() &&
1593 op.isValidForMatrixOrVector() &&
John Stiles6b131292021-05-12 17:12:21 -04001594 op.removeAssignment().kind() != Token::Kind::TK_STAR;
1595 if (needMatrixSplatOnScalar) {
1596 this->writeNumberAsMatrix(left, rightType);
1597 } else {
1598 this->writeExpression(left, precedence);
1599 }
John Stiles45990502021-02-16 10:55:27 -05001600 if (op.kind() != Token::Kind::TK_EQ && op.isAssignment() &&
Ethan Nicholasc8d9c8e2020-09-22 15:05:37 -04001601 left.kind() == Expression::Kind::kSwizzle && !left.hasSideEffects()) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001602 // This doesn't compile in Metal:
1603 // float4 x = float4(1);
1604 // x.xy *= float2x2(...);
1605 // with the error message "non-const reference cannot bind to vector element",
1606 // but switching it to x.xy = x.xy * float2x2(...) fixes it. We perform this tranformation
1607 // as long as the LHS has no side effects, and hope for the best otherwise.
1608 this->write(" = ");
Brian Osman00185012021-02-04 16:07:11 -05001609 this->writeExpression(left, Precedence::kAssignment);
Ethan Nicholascc305772017-10-13 16:17:45 -04001610 this->write(" ");
John Stiles7cbe66b2021-05-12 17:01:23 -04001611 this->write(OperatorName(op.removeAssignment()));
Ethan Nicholascc305772017-10-13 16:17:45 -04001612 this->write(" ");
1613 } else {
John Stilesd6449e92020-11-30 09:13:23 -05001614 this->write(String(" ") + OperatorName(op) + " ");
Ethan Nicholascc305772017-10-13 16:17:45 -04001615 }
John Stiles6b131292021-05-12 17:12:21 -04001616
John Stiles6011bbc2021-05-19 22:56:18 -04001617 needMatrixSplatOnScalar = leftType.isMatrix() && rightType.isNumber() &&
1618 op.isValidForMatrixOrVector() &&
John Stiles6b131292021-05-12 17:12:21 -04001619 op.removeAssignment().kind() != Token::Kind::TK_STAR;
1620 if (needMatrixSplatOnScalar) {
1621 this->writeNumberAsMatrix(right, leftType);
1622 } else {
1623 this->writeExpression(right, precedence);
1624 }
Ethan Nicholas0dc80872019-02-08 15:46:24 -05001625 if (needParens) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001626 this->write(")");
1627 }
1628}
1629
1630void MetalCodeGenerator::writeTernaryExpression(const TernaryExpression& t,
1631 Precedence parentPrecedence) {
Brian Osman00185012021-02-04 16:07:11 -05001632 if (Precedence::kTernary >= parentPrecedence) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001633 this->write("(");
1634 }
Brian Osman00185012021-02-04 16:07:11 -05001635 this->writeExpression(*t.test(), Precedence::kTernary);
Ethan Nicholascc305772017-10-13 16:17:45 -04001636 this->write(" ? ");
Brian Osman00185012021-02-04 16:07:11 -05001637 this->writeExpression(*t.ifTrue(), Precedence::kTernary);
Ethan Nicholascc305772017-10-13 16:17:45 -04001638 this->write(" : ");
Brian Osman00185012021-02-04 16:07:11 -05001639 this->writeExpression(*t.ifFalse(), Precedence::kTernary);
1640 if (Precedence::kTernary >= parentPrecedence) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001641 this->write(")");
1642 }
1643}
1644
1645void MetalCodeGenerator::writePrefixExpression(const PrefixExpression& p,
1646 Precedence parentPrecedence) {
Brian Osman00185012021-02-04 16:07:11 -05001647 if (Precedence::kPrefix >= parentPrecedence) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001648 this->write("(");
1649 }
John Stilesd6449e92020-11-30 09:13:23 -05001650 this->write(OperatorName(p.getOperator()));
Brian Osman00185012021-02-04 16:07:11 -05001651 this->writeExpression(*p.operand(), Precedence::kPrefix);
1652 if (Precedence::kPrefix >= parentPrecedence) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001653 this->write(")");
1654 }
1655}
1656
1657void MetalCodeGenerator::writePostfixExpression(const PostfixExpression& p,
1658 Precedence parentPrecedence) {
Brian Osman00185012021-02-04 16:07:11 -05001659 if (Precedence::kPostfix >= parentPrecedence) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001660 this->write("(");
1661 }
Brian Osman00185012021-02-04 16:07:11 -05001662 this->writeExpression(*p.operand(), Precedence::kPostfix);
John Stilesd6449e92020-11-30 09:13:23 -05001663 this->write(OperatorName(p.getOperator()));
Brian Osman00185012021-02-04 16:07:11 -05001664 if (Precedence::kPostfix >= parentPrecedence) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001665 this->write(")");
1666 }
1667}
1668
John Stiles7591d4b2021-09-13 13:32:06 -04001669void MetalCodeGenerator::writeLiteral(const Literal& l) {
1670 const Type& type = l.type();
1671 if (type.isFloat()) {
1672 this->write(to_string(l.floatValue()));
1673 return;
Ethan Nicholascc305772017-10-13 16:17:45 -04001674 }
John Stiles7591d4b2021-09-13 13:32:06 -04001675 if (type.isInteger()) {
1676 if (type == *fContext.fTypes.fUInt) {
1677 this->write(to_string(l.intValue() & 0xffffffff) + "u");
1678 } else if (type == *fContext.fTypes.fUShort) {
1679 this->write(to_string(l.intValue() & 0xffff) + "u");
1680 } else {
1681 this->write(to_string(l.intValue()));
1682 }
1683 return;
1684 }
1685 SkASSERT(type.isBoolean());
1686 this->write(l.boolValue() ? "true" : "false");
Ethan Nicholascc305772017-10-13 16:17:45 -04001687}
1688
1689void MetalCodeGenerator::writeSetting(const Setting& s) {
John Stilesf57207b2021-02-02 17:50:34 -05001690 SK_ABORT("internal error; setting was not folded to a constant during compilation\n");
Ethan Nicholascc305772017-10-13 16:17:45 -04001691}
1692
John Stiles06b84ef2020-12-09 12:35:48 -05001693void MetalCodeGenerator::writeFunctionRequirementArgs(const FunctionDeclaration& f,
1694 const char*& separator) {
1695 Requirements requirements = this->requirements(f);
1696 if (requirements & kInputs_Requirement) {
1697 this->write(separator);
1698 this->write("_in");
1699 separator = ", ";
1700 }
1701 if (requirements & kOutputs_Requirement) {
1702 this->write(separator);
1703 this->write("_out");
1704 separator = ", ";
1705 }
1706 if (requirements & kUniforms_Requirement) {
1707 this->write(separator);
1708 this->write("_uniforms");
1709 separator = ", ";
1710 }
1711 if (requirements & kGlobals_Requirement) {
1712 this->write(separator);
John Stilesf7410bd2021-01-19 13:07:55 -05001713 this->write("_globals");
John Stiles06b84ef2020-12-09 12:35:48 -05001714 separator = ", ";
1715 }
1716 if (requirements & kFragCoord_Requirement) {
1717 this->write(separator);
1718 this->write("_fragCoord");
1719 separator = ", ";
1720 }
1721}
1722
1723void MetalCodeGenerator::writeFunctionRequirementParams(const FunctionDeclaration& f,
1724 const char*& separator) {
1725 Requirements requirements = this->requirements(f);
1726 if (requirements & kInputs_Requirement) {
1727 this->write(separator);
1728 this->write("Inputs _in");
1729 separator = ", ";
1730 }
1731 if (requirements & kOutputs_Requirement) {
1732 this->write(separator);
John Stilesf7410bd2021-01-19 13:07:55 -05001733 this->write("thread Outputs& _out");
John Stiles06b84ef2020-12-09 12:35:48 -05001734 separator = ", ";
1735 }
1736 if (requirements & kUniforms_Requirement) {
1737 this->write(separator);
1738 this->write("Uniforms _uniforms");
1739 separator = ", ";
1740 }
1741 if (requirements & kGlobals_Requirement) {
1742 this->write(separator);
John Stilesf7410bd2021-01-19 13:07:55 -05001743 this->write("thread Globals& _globals");
John Stiles06b84ef2020-12-09 12:35:48 -05001744 separator = ", ";
1745 }
1746 if (requirements & kFragCoord_Requirement) {
1747 this->write(separator);
1748 this->write("float4 _fragCoord");
1749 separator = ", ";
1750 }
1751}
1752
John Stilesda5cdf62021-01-28 11:47:29 -05001753int MetalCodeGenerator::getUniformBinding(const Modifiers& m) {
1754 return (m.fLayout.fBinding >= 0) ? m.fLayout.fBinding
John Stiles270cec22021-02-17 12:59:36 -05001755 : fProgram.fConfig->fSettings.fDefaultUniformBinding;
John Stilesda5cdf62021-01-28 11:47:29 -05001756}
1757
1758int MetalCodeGenerator::getUniformSet(const Modifiers& m) {
1759 return (m.fLayout.fSet >= 0) ? m.fLayout.fSet
John Stiles270cec22021-02-17 12:59:36 -05001760 : fProgram.fConfig->fSettings.fDefaultUniformSet;
John Stilesda5cdf62021-01-28 11:47:29 -05001761}
1762
John Stiles569249b2020-11-03 12:18:22 -05001763bool MetalCodeGenerator::writeFunctionDeclaration(const FunctionDeclaration& f) {
Brian Salomond8d85b92021-07-07 09:41:17 -04001764 fRTFlipName = fProgram.fInputs.fUseFlipRTUniform
1765 ? "_globals._anonInterface0->" SKSL_RTFLIP_NAME
1766 : "";
Ethan Nicholascc305772017-10-13 16:17:45 -04001767 const char* separator = "";
John Stilese8da4d22021-03-24 09:19:45 -04001768 if (f.isMain()) {
John Stiles270cec22021-02-17 12:59:36 -05001769 switch (fProgram.fConfig->fKind) {
John Stilesdbd4e6f2021-02-16 13:29:15 -05001770 case ProgramKind::kFragment:
Timothy Liangb8eeb802018-07-23 16:46:16 -04001771 this->write("fragment Outputs fragmentMain");
Ethan Nicholascc305772017-10-13 16:17:45 -04001772 break;
John Stilesdbd4e6f2021-02-16 13:29:15 -05001773 case ProgramKind::kVertex:
Timothy Liangb8eeb802018-07-23 16:46:16 -04001774 this->write("vertex Outputs vertexMain");
Ethan Nicholascc305772017-10-13 16:17:45 -04001775 break;
1776 default:
Ethan Nicholas39f6da42021-08-23 13:10:07 -04001777 fContext.fErrors->error(-1, "unsupported kind of program");
John Stiles569249b2020-11-03 12:18:22 -05001778 return false;
Ethan Nicholascc305772017-10-13 16:17:45 -04001779 }
1780 this->write("(Inputs _in [[stage_in]]");
1781 if (-1 != fUniformBuffer) {
1782 this->write(", constant Uniforms& _uniforms [[buffer(" +
1783 to_string(fUniformBuffer) + ")]]");
1784 }
Brian Osman133724c2020-10-28 14:14:39 -04001785 for (const ProgramElement* e : fProgram.elements()) {
Brian Osman1179fcf2020-10-08 16:04:40 -04001786 if (e->is<GlobalVarDeclaration>()) {
1787 const GlobalVarDeclaration& decls = e->as<GlobalVarDeclaration>();
Ethan Nicholasc51f33e2020-10-13 13:49:44 -04001788 const VarDeclaration& var = decls.declaration()->as<VarDeclaration>();
1789 if (var.var().type().typeKind() == Type::TypeKind::kSampler) {
1790 if (var.var().modifiers().fLayout.fBinding < 0) {
Ethan Nicholas39f6da42021-08-23 13:10:07 -04001791 fContext.fErrors->error(decls.fOffset,
Ethan Nicholas3abc6c62021-08-13 11:20:09 -04001792 "Metal samplers must have 'layout(binding=...)'");
John Stiles569249b2020-11-03 12:18:22 -05001793 return false;
Timothy Liangee84fe12018-05-18 14:38:19 -04001794 }
Ethan Nicholasc51f33e2020-10-13 13:49:44 -04001795 if (var.var().type().dimensions() != SpvDim2D) {
John Stiles569249b2020-11-03 12:18:22 -05001796 // Not yet implemented--Skia currently only uses 2D textures.
Ethan Nicholas39f6da42021-08-23 13:10:07 -04001797 fContext.fErrors->error(decls.fOffset, "Unsupported texture dimensions");
John Stiles569249b2020-11-03 12:18:22 -05001798 return false;
Brian Osmanc0213602020-10-06 14:43:32 -04001799 }
1800 this->write(", texture2d<float> ");
Ethan Nicholasc51f33e2020-10-13 13:49:44 -04001801 this->writeName(var.var().name());
Brian Osmanc0213602020-10-06 14:43:32 -04001802 this->write("[[texture(");
Ethan Nicholasc51f33e2020-10-13 13:49:44 -04001803 this->write(to_string(var.var().modifiers().fLayout.fBinding));
Brian Osmanc0213602020-10-06 14:43:32 -04001804 this->write(")]]");
1805 this->write(", sampler ");
Ethan Nicholasc51f33e2020-10-13 13:49:44 -04001806 this->writeName(var.var().name());
Brian Osmanc0213602020-10-06 14:43:32 -04001807 this->write(SAMPLER_SUFFIX);
1808 this->write("[[sampler(");
Ethan Nicholasc51f33e2020-10-13 13:49:44 -04001809 this->write(to_string(var.var().modifiers().fLayout.fBinding));
Brian Osmanc0213602020-10-06 14:43:32 -04001810 this->write(")]]");
Timothy Liang6403b0e2018-05-17 10:40:04 -04001811 }
Brian Osman1179fcf2020-10-08 16:04:40 -04001812 } else if (e->is<InterfaceBlock>()) {
1813 const InterfaceBlock& intf = e->as<InterfaceBlock>();
Ethan Nicholaseaf47882020-10-15 10:10:08 -04001814 if (intf.typeName() == "sk_PerVertex") {
Timothy Lianga06f2152018-05-24 15:33:31 -04001815 continue;
1816 }
1817 this->write(", constant ");
John Stilesb4418502021-02-04 10:57:08 -05001818 this->writeType(intf.variable().type());
Timothy Lianga06f2152018-05-24 15:33:31 -04001819 this->write("& " );
1820 this->write(fInterfaceBlockNameMap[&intf]);
1821 this->write(" [[buffer(");
John Stilesda5cdf62021-01-28 11:47:29 -05001822 this->write(to_string(this->getUniformBinding(intf.variable().modifiers())));
Timothy Lianga06f2152018-05-24 15:33:31 -04001823 this->write(")]]");
Timothy Liang6403b0e2018-05-17 10:40:04 -04001824 }
1825 }
John Stiles270cec22021-02-17 12:59:36 -05001826 if (fProgram.fConfig->fKind == ProgramKind::kFragment) {
Brian Salomond8d85b92021-07-07 09:41:17 -04001827 if (fProgram.fInputs.fUseFlipRTUniform && fInterfaceBlockNameMap.empty()) {
Timothy Liang5422f9a2018-08-10 10:57:55 -04001828 this->write(", constant sksl_synthetic_uniforms& _anonInterface0 [[buffer(1)]]");
Brian Salomond8d85b92021-07-07 09:41:17 -04001829 fRTFlipName = "_anonInterface0." SKSL_RTFLIP_NAME;
Timothy Liang5422f9a2018-08-10 10:57:55 -04001830 }
Timothy Liang7b8875d2018-08-10 09:42:31 -04001831 this->write(", bool _frontFacing [[front_facing]]");
Timothy Liang7d637782018-06-05 09:58:07 -04001832 this->write(", float4 _fragCoord [[position]]");
John Stiles270cec22021-02-17 12:59:36 -05001833 } else if (fProgram.fConfig->fKind == ProgramKind::kVertex) {
Timothy Liangdc89f192018-06-13 09:20:31 -04001834 this->write(", uint sk_VertexID [[vertex_id]], uint sk_InstanceID [[instance_id]]");
Timothy Liang7d637782018-06-05 09:58:07 -04001835 }
Ethan Nicholascc305772017-10-13 16:17:45 -04001836 separator = ", ";
1837 } else {
John Stilesb4418502021-02-04 10:57:08 -05001838 this->writeType(f.returnType());
Timothy Liang651286f2018-06-07 09:55:33 -04001839 this->write(" ");
John Stilese1068342021-03-22 11:57:41 -04001840 this->writeName(f.mangledName());
Timothy Liang651286f2018-06-07 09:55:33 -04001841 this->write("(");
John Stiles06b84ef2020-12-09 12:35:48 -05001842 this->writeFunctionRequirementParams(f, separator);
Ethan Nicholascc305772017-10-13 16:17:45 -04001843 }
John Stiles569249b2020-11-03 12:18:22 -05001844 for (const auto& param : f.parameters()) {
Brian Osman716aeb92021-04-21 13:20:00 -04001845 if (f.isMain() && param->modifiers().fLayout.fBuiltin != -1) {
1846 continue;
1847 }
Ethan Nicholascc305772017-10-13 16:17:45 -04001848 this->write(separator);
1849 separator = ", ";
Brian Osman58134e12021-05-13 14:51:07 -04001850 this->writeModifiers(param->modifiers());
Ethan Nicholas30d30222020-09-11 12:27:26 -04001851 const Type* type = &param->type();
John Stilesb4418502021-02-04 10:57:08 -05001852 this->writeType(*type);
Ethan Nicholas041fd0a2020-10-07 16:42:04 -04001853 if (param->modifiers().fFlags & Modifiers::kOut_Flag) {
John Stilesf2bd5012020-12-04 11:58:26 -05001854 this->write("&");
Ethan Nicholascc305772017-10-13 16:17:45 -04001855 }
Timothy Liang651286f2018-06-07 09:55:33 -04001856 this->write(" ");
Ethan Nicholase2c49992020-10-05 11:49:11 -04001857 this->writeName(param->name());
Ethan Nicholascc305772017-10-13 16:17:45 -04001858 }
John Stiles569249b2020-11-03 12:18:22 -05001859 this->write(")");
1860 return true;
1861}
Ethan Nicholascc305772017-10-13 16:17:45 -04001862
John Stiles569249b2020-11-03 12:18:22 -05001863void MetalCodeGenerator::writeFunctionPrototype(const FunctionPrototype& f) {
1864 this->writeFunctionDeclaration(f.declaration());
1865 this->writeLine(";");
1866}
1867
John Stiles986c7fb2020-12-01 14:44:56 -05001868static bool is_block_ending_with_return(const Statement* stmt) {
1869 // This function detects (potentially nested) blocks that end in a return statement.
1870 if (!stmt->is<Block>()) {
1871 return false;
1872 }
1873 const StatementArray& block = stmt->as<Block>().children();
1874 for (int index = block.count(); index--; ) {
John Stiles628777c2021-08-04 22:07:41 -04001875 stmt = block[index].get();
1876 if (stmt->is<ReturnStatement>()) {
John Stiles986c7fb2020-12-01 14:44:56 -05001877 return true;
1878 }
John Stiles628777c2021-08-04 22:07:41 -04001879 if (stmt->is<Block>()) {
1880 return is_block_ending_with_return(stmt);
John Stiles986c7fb2020-12-01 14:44:56 -05001881 }
John Stiles628777c2021-08-04 22:07:41 -04001882 if (!stmt->is<Nop>()) {
John Stiles986c7fb2020-12-01 14:44:56 -05001883 break;
1884 }
1885 }
1886 return false;
1887}
1888
John Stiles569249b2020-11-03 12:18:22 -05001889void MetalCodeGenerator::writeFunction(const FunctionDefinition& f) {
John Stiles270cec22021-02-17 12:59:36 -05001890 SkASSERT(!fProgram.fConfig->fSettings.fFragColorIsInOut);
Brian Salomondc092132018-04-04 10:14:16 -04001891
John Stiles569249b2020-11-03 12:18:22 -05001892 if (!this->writeFunctionDeclaration(f.declaration())) {
1893 return;
1894 }
1895
John Stiles986c7fb2020-12-01 14:44:56 -05001896 fCurrentFunction = &f.declaration();
1897 SkScopeExit clearCurrentFunction([&] { fCurrentFunction = nullptr; });
1898
John Stiles569249b2020-11-03 12:18:22 -05001899 this->writeLine(" {");
1900
John Stilese8da4d22021-03-24 09:19:45 -04001901 if (f.declaration().isMain()) {
John Stilescdcdb042020-07-06 09:03:51 -04001902 this->writeGlobalInit();
John Stilesf7410bd2021-01-19 13:07:55 -05001903 this->writeLine(" Outputs _out;");
John Stiles37279172021-01-21 22:24:28 -05001904 this->writeLine(" (void)_out;");
Ethan Nicholascc305772017-10-13 16:17:45 -04001905 }
John Stilesc67b3622020-05-28 17:53:13 -04001906
John Stiles95680232021-04-22 15:05:20 -04001907 fFunctionHeader.clear();
Ethan Nicholascc305772017-10-13 16:17:45 -04001908 StringStream buffer;
John Stiles44532372020-12-07 12:33:55 -05001909 {
1910 AutoOutputStream outputToBuffer(this, &buffer);
1911 fIndentation++;
1912 for (const std::unique_ptr<Statement>& stmt : f.body()->as<Block>().children()) {
1913 if (!stmt->isEmpty()) {
1914 this->writeStatement(*stmt);
John Stilese8b5a732021-03-12 13:25:52 -05001915 this->finishLine();
John Stiles44532372020-12-07 12:33:55 -05001916 }
Ethan Nicholas7bd60432020-09-25 14:31:59 -04001917 }
John Stilese8da4d22021-03-24 09:19:45 -04001918 if (f.declaration().isMain()) {
John Stiles44532372020-12-07 12:33:55 -05001919 // If the main function doesn't end with a return, we need to synthesize one here.
1920 if (!is_block_ending_with_return(f.body().get())) {
1921 this->writeReturnStatementFromMain();
John Stilese8b5a732021-03-12 13:25:52 -05001922 this->finishLine();
John Stiles44532372020-12-07 12:33:55 -05001923 }
Ethan Nicholascc305772017-10-13 16:17:45 -04001924 }
John Stiles44532372020-12-07 12:33:55 -05001925 fIndentation--;
1926 this->writeLine("}");
Ethan Nicholascc305772017-10-13 16:17:45 -04001927 }
Ethan Nicholascc305772017-10-13 16:17:45 -04001928 this->write(fFunctionHeader);
1929 this->write(buffer.str());
1930}
1931
Brian Osman58134e12021-05-13 14:51:07 -04001932void MetalCodeGenerator::writeModifiers(const Modifiers& modifiers) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001933 if (modifiers.fFlags & Modifiers::kOut_Flag) {
1934 this->write("thread ");
1935 }
1936 if (modifiers.fFlags & Modifiers::kConst_Flag) {
John Stiles0bd55782021-02-09 18:29:40 -05001937 this->write("const ");
Ethan Nicholascc305772017-10-13 16:17:45 -04001938 }
1939}
1940
1941void MetalCodeGenerator::writeInterfaceBlock(const InterfaceBlock& intf) {
Ethan Nicholaseaf47882020-10-15 10:10:08 -04001942 if ("sk_PerVertex" == intf.typeName()) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001943 return;
1944 }
Brian Osman58134e12021-05-13 14:51:07 -04001945 this->writeModifiers(intf.variable().modifiers());
Timothy Liangdc89f192018-06-13 09:20:31 -04001946 this->write("struct ");
Ethan Nicholaseaf47882020-10-15 10:10:08 -04001947 this->writeLine(intf.typeName() + " {");
1948 const Type* structType = &intf.variable().type();
John Stilesbb43b7e2020-12-03 17:36:32 -05001949 if (structType->isArray()) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001950 structType = &structType->componentType();
1951 }
Timothy Liangdc89f192018-06-13 09:20:31 -04001952 fIndentation++;
John Stiles3dba3ee2020-12-02 23:35:49 -05001953 this->writeFields(structType->fields(), structType->fOffset, &intf);
Brian Salomond8d85b92021-07-07 09:41:17 -04001954 if (fProgram.fInputs.fUseFlipRTUniform) {
1955 this->writeLine("float2 " SKSL_RTFLIP_NAME ";");
Ethan Nicholascc305772017-10-13 16:17:45 -04001956 }
1957 fIndentation--;
1958 this->write("}");
Ethan Nicholaseaf47882020-10-15 10:10:08 -04001959 if (intf.instanceName().size()) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001960 this->write(" ");
Ethan Nicholaseaf47882020-10-15 10:10:08 -04001961 this->write(intf.instanceName());
John Stilesd39aec02020-12-03 10:42:26 -05001962 if (intf.arraySize() > 0) {
Ethan Nicholascc305772017-10-13 16:17:45 -04001963 this->write("[");
John Stilesd39aec02020-12-03 10:42:26 -05001964 this->write(to_string(intf.arraySize()));
Ethan Nicholascc305772017-10-13 16:17:45 -04001965 this->write("]");
1966 }
Ethan Nicholaseaf47882020-10-15 10:10:08 -04001967 fInterfaceBlockNameMap[&intf] = intf.instanceName();
Timothy Lianga06f2152018-05-24 15:33:31 -04001968 } else {
Ethan Nicholas3533ff12021-08-02 12:53:29 -04001969 fInterfaceBlockNameMap[&intf] = *fProgram.fSymbols->takeOwnershipOfString("_anonInterface" +
1970 to_string(fAnonInterfaceCount++));
Ethan Nicholascc305772017-10-13 16:17:45 -04001971 }
1972 this->writeLine(";");
1973}
1974
Timothy Liangdc89f192018-06-13 09:20:31 -04001975void MetalCodeGenerator::writeFields(const std::vector<Type::Field>& fields, int parentOffset,
1976 const InterfaceBlock* parentIntf) {
Timothy Liang609fbe32018-08-10 16:40:49 -04001977 MemoryLayout memoryLayout(MemoryLayout::kMetal_Standard);
Timothy Liangdc89f192018-06-13 09:20:31 -04001978 int currentOffset = 0;
John Stiles39346472021-04-29 14:39:35 -04001979 for (const Type::Field& field : fields) {
Timothy Liangdc89f192018-06-13 09:20:31 -04001980 int fieldOffset = field.fModifiers.fLayout.fOffset;
1981 const Type* fieldType = field.fType;
John Stiles21f5f452020-11-30 09:57:59 -05001982 if (!MemoryLayout::LayoutIsSupported(*fieldType)) {
Ethan Nicholas39f6da42021-08-23 13:10:07 -04001983 fContext.fErrors->error(parentOffset, "type '" + fieldType->name() +
Ethan Nicholas3abc6c62021-08-13 11:20:09 -04001984 "' is not permitted here");
John Stiles0023c0c2020-11-16 13:32:18 -05001985 return;
1986 }
Timothy Liangdc89f192018-06-13 09:20:31 -04001987 if (fieldOffset != -1) {
1988 if (currentOffset > fieldOffset) {
Ethan Nicholas39f6da42021-08-23 13:10:07 -04001989 fContext.fErrors->error(parentOffset,
Ethan Nicholas3abc6c62021-08-13 11:20:09 -04001990 "offset of field '" + field.fName + "' must be at least " +
1991 to_string((int) currentOffset));
Brian Osman8609a242020-09-08 14:01:49 -04001992 return;
Timothy Liangdc89f192018-06-13 09:20:31 -04001993 } else if (currentOffset < fieldOffset) {
1994 this->write("char pad");
1995 this->write(to_string(fPaddingCount++));
1996 this->write("[");
1997 this->write(to_string(fieldOffset - currentOffset));
1998 this->writeLine("];");
1999 currentOffset = fieldOffset;
2000 }
2001 int alignment = memoryLayout.alignment(*fieldType);
2002 if (fieldOffset % alignment) {
Ethan Nicholas39f6da42021-08-23 13:10:07 -04002003 fContext.fErrors->error(parentOffset,
Ethan Nicholas3abc6c62021-08-13 11:20:09 -04002004 "offset of field '" + field.fName + "' must be a multiple of " +
2005 to_string((int) alignment));
Brian Osman8609a242020-09-08 14:01:49 -04002006 return;
Timothy Liangdc89f192018-06-13 09:20:31 -04002007 }
2008 }
Brian Osman8609a242020-09-08 14:01:49 -04002009 size_t fieldSize = memoryLayout.size(*fieldType);
2010 if (fieldSize > static_cast<size_t>(std::numeric_limits<int>::max() - currentOffset)) {
Ethan Nicholas39f6da42021-08-23 13:10:07 -04002011 fContext.fErrors->error(parentOffset, "field offset overflow");
Brian Osman8609a242020-09-08 14:01:49 -04002012 return;
2013 }
2014 currentOffset += fieldSize;
Brian Osman58134e12021-05-13 14:51:07 -04002015 this->writeModifiers(field.fModifiers);
John Stilesb4418502021-02-04 10:57:08 -05002016 this->writeType(*fieldType);
Timothy Liangdc89f192018-06-13 09:20:31 -04002017 this->write(" ");
2018 this->writeName(field.fName);
Timothy Liangdc89f192018-06-13 09:20:31 -04002019 this->writeLine(";");
2020 if (parentIntf) {
2021 fInterfaceBlockMap[&field] = parentIntf;
2022 }
2023 }
2024}
2025
Ethan Nicholascc305772017-10-13 16:17:45 -04002026void MetalCodeGenerator::writeVarInitializer(const Variable& var, const Expression& value) {
Brian Osman00185012021-02-04 16:07:11 -05002027 this->writeExpression(value, Precedence::kTopLevel);
Ethan Nicholascc305772017-10-13 16:17:45 -04002028}
2029
Ethan Nicholas962dec42021-06-10 13:06:39 -04002030void MetalCodeGenerator::writeName(skstd::string_view name) {
Timothy Liang651286f2018-06-07 09:55:33 -04002031 if (fReservedWords.find(name) != fReservedWords.end()) {
2032 this->write("_"); // adding underscore before name to avoid conflict with reserved words
2033 }
2034 this->write(name);
2035}
2036
Brian Osman58134e12021-05-13 14:51:07 -04002037void MetalCodeGenerator::writeVarDeclaration(const VarDeclaration& varDecl) {
2038 this->writeModifiers(varDecl.var().modifiers());
John Stilesb4418502021-02-04 10:57:08 -05002039 this->writeType(varDecl.var().type());
Brian Osmanc0213602020-10-06 14:43:32 -04002040 this->write(" ");
John Stilesb4418502021-02-04 10:57:08 -05002041 this->writeName(varDecl.var().name());
2042 if (varDecl.value()) {
Brian Osmanc0213602020-10-06 14:43:32 -04002043 this->write(" = ");
John Stilesb4418502021-02-04 10:57:08 -05002044 this->writeVarInitializer(varDecl.var(), *varDecl.value());
Brian Osmanc0213602020-10-06 14:43:32 -04002045 }
2046 this->write(";");
Ethan Nicholascc305772017-10-13 16:17:45 -04002047}
2048
2049void MetalCodeGenerator::writeStatement(const Statement& s) {
Ethan Nicholase6592142020-09-08 10:22:09 -04002050 switch (s.kind()) {
2051 case Statement::Kind::kBlock:
John Stiles26f98502020-08-18 09:30:51 -04002052 this->writeBlock(s.as<Block>());
Ethan Nicholascc305772017-10-13 16:17:45 -04002053 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04002054 case Statement::Kind::kExpression:
Brian Osman00185012021-02-04 16:07:11 -05002055 this->writeExpression(*s.as<ExpressionStatement>().expression(), Precedence::kTopLevel);
Ethan Nicholascc305772017-10-13 16:17:45 -04002056 this->write(";");
2057 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04002058 case Statement::Kind::kReturn:
John Stiles26f98502020-08-18 09:30:51 -04002059 this->writeReturnStatement(s.as<ReturnStatement>());
Ethan Nicholascc305772017-10-13 16:17:45 -04002060 break;
Brian Osmanc0213602020-10-06 14:43:32 -04002061 case Statement::Kind::kVarDeclaration:
Brian Osman58134e12021-05-13 14:51:07 -04002062 this->writeVarDeclaration(s.as<VarDeclaration>());
Ethan Nicholascc305772017-10-13 16:17:45 -04002063 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04002064 case Statement::Kind::kIf:
John Stiles26f98502020-08-18 09:30:51 -04002065 this->writeIfStatement(s.as<IfStatement>());
Ethan Nicholascc305772017-10-13 16:17:45 -04002066 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04002067 case Statement::Kind::kFor:
John Stiles26f98502020-08-18 09:30:51 -04002068 this->writeForStatement(s.as<ForStatement>());
Ethan Nicholascc305772017-10-13 16:17:45 -04002069 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04002070 case Statement::Kind::kDo:
John Stiles26f98502020-08-18 09:30:51 -04002071 this->writeDoStatement(s.as<DoStatement>());
Ethan Nicholascc305772017-10-13 16:17:45 -04002072 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04002073 case Statement::Kind::kSwitch:
John Stiles26f98502020-08-18 09:30:51 -04002074 this->writeSwitchStatement(s.as<SwitchStatement>());
Ethan Nicholascc305772017-10-13 16:17:45 -04002075 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04002076 case Statement::Kind::kBreak:
Ethan Nicholascc305772017-10-13 16:17:45 -04002077 this->write("break;");
2078 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04002079 case Statement::Kind::kContinue:
Ethan Nicholascc305772017-10-13 16:17:45 -04002080 this->write("continue;");
2081 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04002082 case Statement::Kind::kDiscard:
Timothy Lianga06f2152018-05-24 15:33:31 -04002083 this->write("discard_fragment();");
Ethan Nicholascc305772017-10-13 16:17:45 -04002084 break;
John Stiles98c1f822020-09-09 14:18:53 -04002085 case Statement::Kind::kInlineMarker:
Ethan Nicholase6592142020-09-08 10:22:09 -04002086 case Statement::Kind::kNop:
Ethan Nicholascc305772017-10-13 16:17:45 -04002087 this->write(";");
2088 break;
2089 default:
John Stileseada7bc2021-02-02 16:29:32 -05002090 SkDEBUGFAILF("unsupported statement: %s", s.description().c_str());
Ethan Nicholas2a099da2020-01-02 14:40:54 -05002091 break;
Ethan Nicholascc305772017-10-13 16:17:45 -04002092 }
2093}
2094
Ethan Nicholascc305772017-10-13 16:17:45 -04002095void MetalCodeGenerator::writeBlock(const Block& b) {
John Stiles3744bd62021-01-26 13:49:43 -05002096 // Write scope markers if this block is a scope, or if the block is empty (since we need to emit
2097 // something here to make the code valid).
2098 bool isScope = b.isScope() || b.isEmpty();
Ethan Nicholas7bd60432020-09-25 14:31:59 -04002099 if (isScope) {
Ethan Nicholas70728ef2020-05-28 07:09:00 -04002100 this->writeLine("{");
2101 fIndentation++;
2102 }
Ethan Nicholas7bd60432020-09-25 14:31:59 -04002103 for (const std::unique_ptr<Statement>& stmt : b.children()) {
2104 if (!stmt->isEmpty()) {
2105 this->writeStatement(*stmt);
John Stilese8b5a732021-03-12 13:25:52 -05002106 this->finishLine();
Ethan Nicholas7bd60432020-09-25 14:31:59 -04002107 }
2108 }
2109 if (isScope) {
Ethan Nicholas70728ef2020-05-28 07:09:00 -04002110 fIndentation--;
2111 this->write("}");
2112 }
Ethan Nicholascc305772017-10-13 16:17:45 -04002113}
2114
2115void MetalCodeGenerator::writeIfStatement(const IfStatement& stmt) {
2116 this->write("if (");
Brian Osman00185012021-02-04 16:07:11 -05002117 this->writeExpression(*stmt.test(), Precedence::kTopLevel);
Ethan Nicholascc305772017-10-13 16:17:45 -04002118 this->write(") ");
Ethan Nicholas8c44eca2020-10-07 16:47:09 -04002119 this->writeStatement(*stmt.ifTrue());
2120 if (stmt.ifFalse()) {
Ethan Nicholascc305772017-10-13 16:17:45 -04002121 this->write(" else ");
Ethan Nicholas8c44eca2020-10-07 16:47:09 -04002122 this->writeStatement(*stmt.ifFalse());
Ethan Nicholascc305772017-10-13 16:17:45 -04002123 }
2124}
2125
2126void MetalCodeGenerator::writeForStatement(const ForStatement& f) {
Brian Osmand6f23382020-12-15 17:08:59 -05002127 // Emit loops of the form 'for(;test;)' as 'while(test)', which is probably how they started
2128 if (!f.initializer() && f.test() && !f.next()) {
2129 this->write("while (");
Brian Osman00185012021-02-04 16:07:11 -05002130 this->writeExpression(*f.test(), Precedence::kTopLevel);
Brian Osmand6f23382020-12-15 17:08:59 -05002131 this->write(") ");
2132 this->writeStatement(*f.statement());
2133 return;
2134 }
2135
John Stiles1a15e572021-04-19 14:57:15 -04002136 this->write("for (");
Ethan Nicholas0d31ed52020-10-05 14:47:09 -04002137 if (f.initializer() && !f.initializer()->isEmpty()) {
John Stiles1a15e572021-04-19 14:57:15 -04002138 this->writeStatement(*f.initializer());
Ethan Nicholascc305772017-10-13 16:17:45 -04002139 } else {
John Stiles1a15e572021-04-19 14:57:15 -04002140 this->write("; ");
Ethan Nicholascc305772017-10-13 16:17:45 -04002141 }
Ethan Nicholas0d31ed52020-10-05 14:47:09 -04002142 if (f.test()) {
Brian Osman00185012021-02-04 16:07:11 -05002143 this->writeExpression(*f.test(), Precedence::kTopLevel);
Ethan Nicholascc305772017-10-13 16:17:45 -04002144 }
2145 this->write("; ");
Ethan Nicholas0d31ed52020-10-05 14:47:09 -04002146 if (f.next()) {
Brian Osman00185012021-02-04 16:07:11 -05002147 this->writeExpression(*f.next(), Precedence::kTopLevel);
Ethan Nicholascc305772017-10-13 16:17:45 -04002148 }
2149 this->write(") ");
Ethan Nicholas0d31ed52020-10-05 14:47:09 -04002150 this->writeStatement(*f.statement());
Ethan Nicholascc305772017-10-13 16:17:45 -04002151}
2152
Ethan Nicholascc305772017-10-13 16:17:45 -04002153void MetalCodeGenerator::writeDoStatement(const DoStatement& d) {
2154 this->write("do ");
Ethan Nicholas1fd61162020-09-28 13:14:19 -04002155 this->writeStatement(*d.statement());
Ethan Nicholascc305772017-10-13 16:17:45 -04002156 this->write(" while (");
Brian Osman00185012021-02-04 16:07:11 -05002157 this->writeExpression(*d.test(), Precedence::kTopLevel);
Ethan Nicholascc305772017-10-13 16:17:45 -04002158 this->write(");");
2159}
2160
2161void MetalCodeGenerator::writeSwitchStatement(const SwitchStatement& s) {
2162 this->write("switch (");
Brian Osman00185012021-02-04 16:07:11 -05002163 this->writeExpression(*s.value(), Precedence::kTopLevel);
Ethan Nicholascc305772017-10-13 16:17:45 -04002164 this->writeLine(") {");
2165 fIndentation++;
John Stilesb23a64b2021-03-11 08:27:59 -05002166 for (const std::unique_ptr<Statement>& stmt : s.cases()) {
2167 const SwitchCase& c = stmt->as<SwitchCase>();
2168 if (c.value()) {
Ethan Nicholascc305772017-10-13 16:17:45 -04002169 this->write("case ");
John Stilesb23a64b2021-03-11 08:27:59 -05002170 this->writeExpression(*c.value(), Precedence::kTopLevel);
Ethan Nicholascc305772017-10-13 16:17:45 -04002171 this->writeLine(":");
2172 } else {
2173 this->writeLine("default:");
2174 }
John Stilesb23a64b2021-03-11 08:27:59 -05002175 if (!c.statement()->isEmpty()) {
John Stilesc3ce43b2021-03-09 15:37:01 -05002176 fIndentation++;
John Stilesb23a64b2021-03-11 08:27:59 -05002177 this->writeStatement(*c.statement());
John Stilese8b5a732021-03-12 13:25:52 -05002178 this->finishLine();
John Stilesc3ce43b2021-03-09 15:37:01 -05002179 fIndentation--;
Ethan Nicholascc305772017-10-13 16:17:45 -04002180 }
Ethan Nicholascc305772017-10-13 16:17:45 -04002181 }
2182 fIndentation--;
2183 this->write("}");
2184}
2185
John Stiles986c7fb2020-12-01 14:44:56 -05002186void MetalCodeGenerator::writeReturnStatementFromMain() {
2187 // main functions in Metal return a magic _out parameter that doesn't exist in SkSL.
John Stiles270cec22021-02-17 12:59:36 -05002188 switch (fProgram.fConfig->fKind) {
Brian Salomon3e2fe2b2021-06-02 09:16:30 -04002189 case ProgramKind::kVertex:
John Stilesdbd4e6f2021-02-16 13:29:15 -05002190 case ProgramKind::kFragment:
John Stilesf7410bd2021-01-19 13:07:55 -05002191 this->write("return _out;");
John Stiles986c7fb2020-12-01 14:44:56 -05002192 break;
John Stiles986c7fb2020-12-01 14:44:56 -05002193 default:
2194 SkDEBUGFAIL("unsupported kind of program");
2195 }
2196}
2197
Ethan Nicholascc305772017-10-13 16:17:45 -04002198void MetalCodeGenerator::writeReturnStatement(const ReturnStatement& r) {
John Stilese8da4d22021-03-24 09:19:45 -04002199 if (fCurrentFunction && fCurrentFunction->isMain()) {
John Stiles986c7fb2020-12-01 14:44:56 -05002200 if (r.expression()) {
John Stiles97d18172021-01-22 16:47:42 -05002201 if (r.expression()->type() == *fContext.fTypes.fHalf4) {
2202 this->write("_out.sk_FragColor = ");
Brian Osman00185012021-02-04 16:07:11 -05002203 this->writeExpression(*r.expression(), Precedence::kTopLevel);
John Stiles97d18172021-01-22 16:47:42 -05002204 this->writeLine(";");
2205 } else {
Ethan Nicholas39f6da42021-08-23 13:10:07 -04002206 fContext.fErrors->error(r.fOffset,
Ethan Nicholas3abc6c62021-08-13 11:20:09 -04002207 "Metal does not support returning '" +
2208 r.expression()->type().description() + "' from main()");
John Stiles97d18172021-01-22 16:47:42 -05002209 }
John Stiles986c7fb2020-12-01 14:44:56 -05002210 }
2211 this->writeReturnStatementFromMain();
2212 return;
2213 }
2214
Ethan Nicholascc305772017-10-13 16:17:45 -04002215 this->write("return");
Ethan Nicholas2a4952d2020-10-08 15:35:56 -04002216 if (r.expression()) {
Ethan Nicholascc305772017-10-13 16:17:45 -04002217 this->write(" ");
Brian Osman00185012021-02-04 16:07:11 -05002218 this->writeExpression(*r.expression(), Precedence::kTopLevel);
Ethan Nicholascc305772017-10-13 16:17:45 -04002219 }
2220 this->write(";");
2221}
2222
Michael Ludwigbf58add2021-03-16 10:40:11 -04002223void MetalCodeGenerator::writeHeader() {
2224 this->write("#include <metal_stdlib>\n");
2225 this->write("#include <simd/simd.h>\n");
2226 this->write("using namespace metal;\n");
2227}
2228
Ethan Nicholascc305772017-10-13 16:17:45 -04002229void MetalCodeGenerator::writeUniformStruct() {
Brian Osman133724c2020-10-28 14:14:39 -04002230 for (const ProgramElement* e : fProgram.elements()) {
Brian Osman1179fcf2020-10-08 16:04:40 -04002231 if (e->is<GlobalVarDeclaration>()) {
2232 const GlobalVarDeclaration& decls = e->as<GlobalVarDeclaration>();
Ethan Nicholasc51f33e2020-10-13 13:49:44 -04002233 const Variable& var = decls.declaration()->as<VarDeclaration>().var();
Ethan Nicholas041fd0a2020-10-07 16:42:04 -04002234 if (var.modifiers().fFlags & Modifiers::kUniform_Flag &&
Brian Osmanc0213602020-10-06 14:43:32 -04002235 var.type().typeKind() != Type::TypeKind::kSampler) {
John Stilesda5cdf62021-01-28 11:47:29 -05002236 int uniformSet = this->getUniformSet(var.modifiers());
John Stilesd8fc95d2021-01-26 16:22:53 -05002237 // Make sure that the program's uniform-set value is consistent throughout.
Ethan Nicholascc305772017-10-13 16:17:45 -04002238 if (-1 == fUniformBuffer) {
2239 this->write("struct Uniforms {\n");
John Stilesd8fc95d2021-01-26 16:22:53 -05002240 fUniformBuffer = uniformSet;
2241 } else if (uniformSet != fUniformBuffer) {
Ethan Nicholas39f6da42021-08-23 13:10:07 -04002242 fContext.fErrors->error(decls.fOffset,
Ethan Nicholas3abc6c62021-08-13 11:20:09 -04002243 "Metal backend requires all uniforms to have the same "
2244 "'layout(set=...)'");
Ethan Nicholascc305772017-10-13 16:17:45 -04002245 }
2246 this->write(" ");
John Stilesb4418502021-02-04 10:57:08 -05002247 this->writeType(var.type());
Ethan Nicholascc305772017-10-13 16:17:45 -04002248 this->write(" ");
Brian Osmanc0213602020-10-06 14:43:32 -04002249 this->writeName(var.name());
Ethan Nicholascc305772017-10-13 16:17:45 -04002250 this->write(";\n");
2251 }
2252 }
2253 }
2254 if (-1 != fUniformBuffer) {
2255 this->write("};\n");
2256 }
2257}
2258
2259void MetalCodeGenerator::writeInputStruct() {
2260 this->write("struct Inputs {\n");
Brian Osman133724c2020-10-28 14:14:39 -04002261 for (const ProgramElement* e : fProgram.elements()) {
Brian Osman1179fcf2020-10-08 16:04:40 -04002262 if (e->is<GlobalVarDeclaration>()) {
2263 const GlobalVarDeclaration& decls = e->as<GlobalVarDeclaration>();
Ethan Nicholasc51f33e2020-10-13 13:49:44 -04002264 const Variable& var = decls.declaration()->as<VarDeclaration>().var();
Ethan Nicholas041fd0a2020-10-07 16:42:04 -04002265 if (var.modifiers().fFlags & Modifiers::kIn_Flag &&
2266 -1 == var.modifiers().fLayout.fBuiltin) {
Ethan Nicholascc305772017-10-13 16:17:45 -04002267 this->write(" ");
John Stilesb4418502021-02-04 10:57:08 -05002268 this->writeType(var.type());
Ethan Nicholascc305772017-10-13 16:17:45 -04002269 this->write(" ");
Brian Osmanc0213602020-10-06 14:43:32 -04002270 this->writeName(var.name());
Ethan Nicholas041fd0a2020-10-07 16:42:04 -04002271 if (-1 != var.modifiers().fLayout.fLocation) {
John Stiles270cec22021-02-17 12:59:36 -05002272 if (fProgram.fConfig->fKind == ProgramKind::kVertex) {
Brian Osmanc0213602020-10-06 14:43:32 -04002273 this->write(" [[attribute(" +
Ethan Nicholas041fd0a2020-10-07 16:42:04 -04002274 to_string(var.modifiers().fLayout.fLocation) + ")]]");
John Stiles270cec22021-02-17 12:59:36 -05002275 } else if (fProgram.fConfig->fKind == ProgramKind::kFragment) {
Brian Osmanc0213602020-10-06 14:43:32 -04002276 this->write(" [[user(locn" +
Ethan Nicholas041fd0a2020-10-07 16:42:04 -04002277 to_string(var.modifiers().fLayout.fLocation) + ")]]");
Ethan Nicholascc305772017-10-13 16:17:45 -04002278 }
2279 }
2280 this->write(";\n");
2281 }
2282 }
2283 }
2284 this->write("};\n");
2285}
2286
2287void MetalCodeGenerator::writeOutputStruct() {
2288 this->write("struct Outputs {\n");
John Stiles270cec22021-02-17 12:59:36 -05002289 if (fProgram.fConfig->fKind == ProgramKind::kVertex) {
Timothy Liangb8eeb802018-07-23 16:46:16 -04002290 this->write(" float4 sk_Position [[position]];\n");
John Stiles270cec22021-02-17 12:59:36 -05002291 } else if (fProgram.fConfig->fKind == ProgramKind::kFragment) {
Timothy Liangde0be802018-08-10 13:48:08 -04002292 this->write(" float4 sk_FragColor [[color(0)]];\n");
Timothy Liang7d637782018-06-05 09:58:07 -04002293 }
Brian Osman133724c2020-10-28 14:14:39 -04002294 for (const ProgramElement* e : fProgram.elements()) {
Brian Osman1179fcf2020-10-08 16:04:40 -04002295 if (e->is<GlobalVarDeclaration>()) {
2296 const GlobalVarDeclaration& decls = e->as<GlobalVarDeclaration>();
Ethan Nicholasc51f33e2020-10-13 13:49:44 -04002297 const Variable& var = decls.declaration()->as<VarDeclaration>().var();
Ethan Nicholas041fd0a2020-10-07 16:42:04 -04002298 if (var.modifiers().fFlags & Modifiers::kOut_Flag &&
2299 -1 == var.modifiers().fLayout.fBuiltin) {
Ethan Nicholascc305772017-10-13 16:17:45 -04002300 this->write(" ");
John Stilesb4418502021-02-04 10:57:08 -05002301 this->writeType(var.type());
Ethan Nicholascc305772017-10-13 16:17:45 -04002302 this->write(" ");
Brian Osmanc0213602020-10-06 14:43:32 -04002303 this->writeName(var.name());
John Stiles842b3592020-12-01 10:36:37 -05002304
2305 int location = var.modifiers().fLayout.fLocation;
2306 if (location < 0) {
Ethan Nicholas39f6da42021-08-23 13:10:07 -04002307 fContext.fErrors->error(var.fOffset,
Ethan Nicholas3abc6c62021-08-13 11:20:09 -04002308 "Metal out variables must have 'layout(location=...)'");
John Stiles270cec22021-02-17 12:59:36 -05002309 } else if (fProgram.fConfig->fKind == ProgramKind::kVertex) {
John Stiles842b3592020-12-01 10:36:37 -05002310 this->write(" [[user(locn" + to_string(location) + ")]]");
John Stiles270cec22021-02-17 12:59:36 -05002311 } else if (fProgram.fConfig->fKind == ProgramKind::kFragment) {
John Stiles842b3592020-12-01 10:36:37 -05002312 this->write(" [[color(" + to_string(location) + ")");
Ethan Nicholas041fd0a2020-10-07 16:42:04 -04002313 int colorIndex = var.modifiers().fLayout.fIndex;
Brian Osmanc0213602020-10-06 14:43:32 -04002314 if (colorIndex) {
2315 this->write(", index(" + to_string(colorIndex) + ")");
Timothy Liang7d637782018-06-05 09:58:07 -04002316 }
Brian Osmanc0213602020-10-06 14:43:32 -04002317 this->write("]]");
Ethan Nicholascc305772017-10-13 16:17:45 -04002318 }
2319 this->write(";\n");
2320 }
2321 }
Timothy Liang7d637782018-06-05 09:58:07 -04002322 }
John Stiles270cec22021-02-17 12:59:36 -05002323 if (fProgram.fConfig->fKind == ProgramKind::kVertex) {
Jim Van Verth3913d3e2020-08-31 15:16:57 -04002324 this->write(" float sk_PointSize [[point_size]];\n");
Timothy Liang7d637782018-06-05 09:58:07 -04002325 }
2326 this->write("};\n");
2327}
2328
2329void MetalCodeGenerator::writeInterfaceBlocks() {
2330 bool wroteInterfaceBlock = false;
Brian Osman133724c2020-10-28 14:14:39 -04002331 for (const ProgramElement* e : fProgram.elements()) {
Brian Osman1179fcf2020-10-08 16:04:40 -04002332 if (e->is<InterfaceBlock>()) {
2333 this->writeInterfaceBlock(e->as<InterfaceBlock>());
Timothy Liang7d637782018-06-05 09:58:07 -04002334 wroteInterfaceBlock = true;
2335 }
2336 }
Brian Salomond8d85b92021-07-07 09:41:17 -04002337 if (!wroteInterfaceBlock && fProgram.fInputs.fUseFlipRTUniform) {
Timothy Liang7d637782018-06-05 09:58:07 -04002338 this->writeLine("struct sksl_synthetic_uniforms {");
Brian Salomond8d85b92021-07-07 09:41:17 -04002339 this->writeLine(" float2 " SKSL_RTFLIP_NAME ";");
Timothy Liang7d637782018-06-05 09:58:07 -04002340 this->writeLine("};");
2341 }
Ethan Nicholascc305772017-10-13 16:17:45 -04002342}
2343
John Stilesdc75a972020-11-25 16:24:55 -05002344void MetalCodeGenerator::writeStructDefinitions() {
2345 for (const ProgramElement* e : fProgram.elements()) {
2346 if (e->is<StructDefinition>()) {
Brian Osman02bc5222021-01-28 11:00:20 -05002347 this->writeStructDefinition(e->as<StructDefinition>());
John Stilesdc75a972020-11-25 16:24:55 -05002348 }
2349 }
2350}
2351
John Stilescdcdb042020-07-06 09:03:51 -04002352void MetalCodeGenerator::visitGlobalStruct(GlobalStructVisitor* visitor) {
2353 // Visit the interface blocks.
2354 for (const auto& [interfaceType, interfaceName] : fInterfaceBlockNameMap) {
John Stilesfdb8dbe2020-12-04 11:00:03 -05002355 visitor->visitInterfaceBlock(*interfaceType, interfaceName);
John Stilescdcdb042020-07-06 09:03:51 -04002356 }
Brian Osman133724c2020-10-28 14:14:39 -04002357 for (const ProgramElement* element : fProgram.elements()) {
Brian Osman1179fcf2020-10-08 16:04:40 -04002358 if (!element->is<GlobalVarDeclaration>()) {
John Stilescdcdb042020-07-06 09:03:51 -04002359 continue;
Timothy Liang7d637782018-06-05 09:58:07 -04002360 }
Ethan Nicholasc51f33e2020-10-13 13:49:44 -04002361 const GlobalVarDeclaration& global = element->as<GlobalVarDeclaration>();
2362 const VarDeclaration& decl = global.declaration()->as<VarDeclaration>();
2363 const Variable& var = decl.var();
Brian Osman58134e12021-05-13 14:51:07 -04002364 if (var.type().typeKind() == Type::TypeKind::kSampler) {
2365 // Samplers are represented as a "texture/sampler" duo in the global struct.
2366 visitor->visitTexture(var.type(), var.name());
Ethan Nicholasd2e09602021-06-10 11:21:59 -04002367 visitor->visitSampler(var.type(), var.name() + SAMPLER_SUFFIX);
Brian Osman58134e12021-05-13 14:51:07 -04002368 continue;
2369 }
2370
2371 if (!(var.modifiers().fFlags & ~Modifiers::kConst_Flag) &&
2372 -1 == var.modifiers().fLayout.fBuiltin) {
2373 // Visit a regular variable.
2374 visitor->visitVariable(var, decl.value().get());
Timothy Liangee84fe12018-05-18 14:38:19 -04002375 }
2376 }
John Stilescdcdb042020-07-06 09:03:51 -04002377}
2378
2379void MetalCodeGenerator::writeGlobalStruct() {
2380 class : public GlobalStructVisitor {
2381 public:
Ethan Nicholas962dec42021-06-10 13:06:39 -04002382 void visitInterfaceBlock(const InterfaceBlock& block,
2383 skstd::string_view blockName) override {
John Stiles83f3b8d2020-12-07 17:52:25 -05002384 this->addElement();
John Stilescdcdb042020-07-06 09:03:51 -04002385 fCodeGen->write(" constant ");
Ethan Nicholaseaf47882020-10-15 10:10:08 -04002386 fCodeGen->write(block.typeName());
John Stilescdcdb042020-07-06 09:03:51 -04002387 fCodeGen->write("* ");
2388 fCodeGen->writeName(blockName);
2389 fCodeGen->write(";\n");
2390 }
Ethan Nicholas962dec42021-06-10 13:06:39 -04002391 void visitTexture(const Type& type, skstd::string_view name) override {
John Stiles83f3b8d2020-12-07 17:52:25 -05002392 this->addElement();
John Stilescdcdb042020-07-06 09:03:51 -04002393 fCodeGen->write(" ");
John Stilesb4418502021-02-04 10:57:08 -05002394 fCodeGen->writeType(type);
John Stilescdcdb042020-07-06 09:03:51 -04002395 fCodeGen->write(" ");
2396 fCodeGen->writeName(name);
2397 fCodeGen->write(";\n");
2398 }
Ethan Nicholas962dec42021-06-10 13:06:39 -04002399 void visitSampler(const Type&, skstd::string_view name) override {
John Stiles83f3b8d2020-12-07 17:52:25 -05002400 this->addElement();
John Stilescdcdb042020-07-06 09:03:51 -04002401 fCodeGen->write(" sampler ");
2402 fCodeGen->writeName(name);
2403 fCodeGen->write(";\n");
2404 }
John Stilesfdb8dbe2020-12-04 11:00:03 -05002405 void visitVariable(const Variable& var, const Expression* value) override {
John Stiles83f3b8d2020-12-07 17:52:25 -05002406 this->addElement();
John Stilescdcdb042020-07-06 09:03:51 -04002407 fCodeGen->write(" ");
Brian Osman58134e12021-05-13 14:51:07 -04002408 fCodeGen->writeModifiers(var.modifiers());
John Stilesb4418502021-02-04 10:57:08 -05002409 fCodeGen->writeType(var.type());
John Stilescdcdb042020-07-06 09:03:51 -04002410 fCodeGen->write(" ");
Ethan Nicholase2c49992020-10-05 11:49:11 -04002411 fCodeGen->writeName(var.name());
John Stilescdcdb042020-07-06 09:03:51 -04002412 fCodeGen->write(";\n");
2413 }
John Stiles83f3b8d2020-12-07 17:52:25 -05002414 void addElement() {
John Stilescdcdb042020-07-06 09:03:51 -04002415 if (fFirst) {
2416 fCodeGen->write("struct Globals {\n");
2417 fFirst = false;
2418 }
2419 }
John Stiles83f3b8d2020-12-07 17:52:25 -05002420 void finish() {
John Stilescdcdb042020-07-06 09:03:51 -04002421 if (!fFirst) {
John Stiles83f3b8d2020-12-07 17:52:25 -05002422 fCodeGen->writeLine("};");
John Stilescdcdb042020-07-06 09:03:51 -04002423 fFirst = true;
2424 }
2425 }
2426
2427 MetalCodeGenerator* fCodeGen = nullptr;
2428 bool fFirst = true;
2429 } visitor;
2430
2431 visitor.fCodeGen = this;
2432 this->visitGlobalStruct(&visitor);
John Stiles83f3b8d2020-12-07 17:52:25 -05002433 visitor.finish();
John Stilescdcdb042020-07-06 09:03:51 -04002434}
2435
2436void MetalCodeGenerator::writeGlobalInit() {
2437 class : public GlobalStructVisitor {
2438 public:
John Stilesfdb8dbe2020-12-04 11:00:03 -05002439 void visitInterfaceBlock(const InterfaceBlock& blockType,
Ethan Nicholas962dec42021-06-10 13:06:39 -04002440 skstd::string_view blockName) override {
John Stiles83f3b8d2020-12-07 17:52:25 -05002441 this->addElement();
John Stilescdcdb042020-07-06 09:03:51 -04002442 fCodeGen->write("&");
2443 fCodeGen->writeName(blockName);
2444 }
Ethan Nicholas962dec42021-06-10 13:06:39 -04002445 void visitTexture(const Type&, skstd::string_view name) override {
John Stiles83f3b8d2020-12-07 17:52:25 -05002446 this->addElement();
John Stilescdcdb042020-07-06 09:03:51 -04002447 fCodeGen->writeName(name);
2448 }
Ethan Nicholas962dec42021-06-10 13:06:39 -04002449 void visitSampler(const Type&, skstd::string_view name) override {
John Stiles83f3b8d2020-12-07 17:52:25 -05002450 this->addElement();
John Stilescdcdb042020-07-06 09:03:51 -04002451 fCodeGen->writeName(name);
2452 }
John Stilesfdb8dbe2020-12-04 11:00:03 -05002453 void visitVariable(const Variable& var, const Expression* value) override {
John Stiles83f3b8d2020-12-07 17:52:25 -05002454 this->addElement();
John Stilescdcdb042020-07-06 09:03:51 -04002455 if (value) {
2456 fCodeGen->writeVarInitializer(var, *value);
2457 } else {
2458 fCodeGen->write("{}");
2459 }
2460 }
John Stiles83f3b8d2020-12-07 17:52:25 -05002461 void addElement() {
John Stilescdcdb042020-07-06 09:03:51 -04002462 if (fFirst) {
John Stilesf7410bd2021-01-19 13:07:55 -05002463 fCodeGen->write(" Globals _globals{");
John Stilescdcdb042020-07-06 09:03:51 -04002464 fFirst = false;
2465 } else {
2466 fCodeGen->write(", ");
2467 }
2468 }
John Stiles83f3b8d2020-12-07 17:52:25 -05002469 void finish() {
John Stilescdcdb042020-07-06 09:03:51 -04002470 if (!fFirst) {
2471 fCodeGen->writeLine("};");
John Stiles37279172021-01-21 22:24:28 -05002472 fCodeGen->writeLine(" (void)_globals;");
John Stilescdcdb042020-07-06 09:03:51 -04002473 }
2474 }
2475 MetalCodeGenerator* fCodeGen = nullptr;
2476 bool fFirst = true;
2477 } visitor;
2478
2479 visitor.fCodeGen = this;
2480 this->visitGlobalStruct(&visitor);
John Stiles83f3b8d2020-12-07 17:52:25 -05002481 visitor.finish();
Timothy Liangee84fe12018-05-18 14:38:19 -04002482}
2483
Ethan Nicholascc305772017-10-13 16:17:45 -04002484void MetalCodeGenerator::writeProgramElement(const ProgramElement& e) {
Ethan Nicholase6592142020-09-08 10:22:09 -04002485 switch (e.kind()) {
2486 case ProgramElement::Kind::kExtension:
Ethan Nicholascc305772017-10-13 16:17:45 -04002487 break;
Brian Osman58134e12021-05-13 14:51:07 -04002488 case ProgramElement::Kind::kGlobalVar:
Ethan Nicholascc305772017-10-13 16:17:45 -04002489 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04002490 case ProgramElement::Kind::kInterfaceBlock:
Timothy Liang7d637782018-06-05 09:58:07 -04002491 // handled in writeInterfaceBlocks, do nothing
Ethan Nicholascc305772017-10-13 16:17:45 -04002492 break;
John Stilesdc75a972020-11-25 16:24:55 -05002493 case ProgramElement::Kind::kStructDefinition:
2494 // Handled in writeStructDefinitions. Do nothing.
2495 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04002496 case ProgramElement::Kind::kFunction:
John Stiles3dc0da62020-08-19 17:48:31 -04002497 this->writeFunction(e.as<FunctionDefinition>());
Ethan Nicholascc305772017-10-13 16:17:45 -04002498 break;
John Stiles569249b2020-11-03 12:18:22 -05002499 case ProgramElement::Kind::kFunctionPrototype:
2500 this->writeFunctionPrototype(e.as<FunctionPrototype>());
2501 break;
Ethan Nicholase6592142020-09-08 10:22:09 -04002502 case ProgramElement::Kind::kModifiers:
Brian Osman58134e12021-05-13 14:51:07 -04002503 this->writeModifiers(e.as<ModifiersDeclaration>().modifiers());
Ethan Nicholascc305772017-10-13 16:17:45 -04002504 this->writeLine(";");
2505 break;
2506 default:
John Stileseada7bc2021-02-02 16:29:32 -05002507 SkDEBUGFAILF("unsupported program element: %s\n", e.description().c_str());
Ethan Nicholas2a099da2020-01-02 14:40:54 -05002508 break;
Ethan Nicholascc305772017-10-13 16:17:45 -04002509 }
2510}
2511
Ethan Nicholasff350cb2020-05-14 14:05:13 -04002512MetalCodeGenerator::Requirements MetalCodeGenerator::requirements(const Expression* e) {
2513 if (!e) {
2514 return kNo_Requirements;
2515 }
Ethan Nicholase6592142020-09-08 10:22:09 -04002516 switch (e->kind()) {
2517 case Expression::Kind::kFunctionCall: {
John Stiles3dc0da62020-08-19 17:48:31 -04002518 const FunctionCall& f = e->as<FunctionCall>();
Ethan Nicholas0dec9922020-10-05 15:51:52 -04002519 Requirements result = this->requirements(f.function());
2520 for (const auto& arg : f.arguments()) {
Ethan Nicholasff350cb2020-05-14 14:05:13 -04002521 result |= this->requirements(arg.get());
Ethan Nicholascc305772017-10-13 16:17:45 -04002522 }
2523 return result;
2524 }
John Stiles8cad6372021-04-07 12:31:13 -04002525 case Expression::Kind::kConstructorCompound:
2526 case Expression::Kind::kConstructorCompoundCast:
John Stiles7384b372021-04-01 13:48:15 -04002527 case Expression::Kind::kConstructorArray:
John Stilese3ae9682021-08-05 10:35:01 -04002528 case Expression::Kind::kConstructorArrayCast:
John Stiles2938eea2021-04-01 18:58:25 -04002529 case Expression::Kind::kConstructorDiagonalMatrix:
John Stilesfd7252f2021-04-04 22:24:40 -04002530 case Expression::Kind::kConstructorScalarCast:
John Stilesd47330f2021-04-08 23:25:52 -04002531 case Expression::Kind::kConstructorSplat:
2532 case Expression::Kind::kConstructorStruct: {
John Stiles7384b372021-04-01 13:48:15 -04002533 const AnyConstructor& c = e->asAnyConstructor();
Ethan Nicholascc305772017-10-13 16:17:45 -04002534 Requirements result = kNo_Requirements;
John Stilesd8eb8752021-04-01 11:49:10 -04002535 for (const auto& arg : c.argumentSpan()) {
Ethan Nicholasff350cb2020-05-14 14:05:13 -04002536 result |= this->requirements(arg.get());
Ethan Nicholascc305772017-10-13 16:17:45 -04002537 }
2538 return result;
2539 }
Ethan Nicholase6592142020-09-08 10:22:09 -04002540 case Expression::Kind::kFieldAccess: {
John Stiles3dc0da62020-08-19 17:48:31 -04002541 const FieldAccess& f = e->as<FieldAccess>();
Ethan Nicholas7a95b202020-10-09 11:55:40 -04002542 if (FieldAccess::OwnerKind::kAnonymousInterfaceBlock == f.ownerKind()) {
Timothy Liang7d637782018-06-05 09:58:07 -04002543 return kGlobals_Requirement;
2544 }
Ethan Nicholas7a95b202020-10-09 11:55:40 -04002545 return this->requirements(f.base().get());
Timothy Liang7d637782018-06-05 09:58:07 -04002546 }
Ethan Nicholase6592142020-09-08 10:22:09 -04002547 case Expression::Kind::kSwizzle:
Ethan Nicholas6b4d5812020-10-12 16:11:51 -04002548 return this->requirements(e->as<Swizzle>().base().get());
Ethan Nicholase6592142020-09-08 10:22:09 -04002549 case Expression::Kind::kBinary: {
2550 const BinaryExpression& bin = e->as<BinaryExpression>();
John Stiles2d4f9592020-10-30 10:29:12 -04002551 return this->requirements(bin.left().get()) |
2552 this->requirements(bin.right().get());
Ethan Nicholascc305772017-10-13 16:17:45 -04002553 }
Ethan Nicholase6592142020-09-08 10:22:09 -04002554 case Expression::Kind::kIndex: {
John Stiles3dc0da62020-08-19 17:48:31 -04002555 const IndexExpression& idx = e->as<IndexExpression>();
Ethan Nicholas2a4952d2020-10-08 15:35:56 -04002556 return this->requirements(idx.base().get()) | this->requirements(idx.index().get());
Ethan Nicholascc305772017-10-13 16:17:45 -04002557 }
Ethan Nicholase6592142020-09-08 10:22:09 -04002558 case Expression::Kind::kPrefix:
Ethan Nicholas444ccc62020-10-09 10:16:22 -04002559 return this->requirements(e->as<PrefixExpression>().operand().get());
Ethan Nicholase6592142020-09-08 10:22:09 -04002560 case Expression::Kind::kPostfix:
Ethan Nicholas444ccc62020-10-09 10:16:22 -04002561 return this->requirements(e->as<PostfixExpression>().operand().get());
Ethan Nicholase6592142020-09-08 10:22:09 -04002562 case Expression::Kind::kTernary: {
John Stiles3dc0da62020-08-19 17:48:31 -04002563 const TernaryExpression& t = e->as<TernaryExpression>();
Ethan Nicholasdd218162020-10-08 05:48:01 -04002564 return this->requirements(t.test().get()) | this->requirements(t.ifTrue().get()) |
2565 this->requirements(t.ifFalse().get());
Ethan Nicholascc305772017-10-13 16:17:45 -04002566 }
Ethan Nicholase6592142020-09-08 10:22:09 -04002567 case Expression::Kind::kVariableReference: {
John Stiles3dc0da62020-08-19 17:48:31 -04002568 const VariableReference& v = e->as<VariableReference>();
Ethan Nicholas78686922020-10-08 06:46:27 -04002569 const Modifiers& modifiers = v.variable()->modifiers();
Ethan Nicholascc305772017-10-13 16:17:45 -04002570 Requirements result = kNo_Requirements;
Ethan Nicholas041fd0a2020-10-07 16:42:04 -04002571 if (modifiers.fLayout.fBuiltin == SK_FRAGCOORD_BUILTIN) {
Ethan Nicholasc6dce5a2019-07-24 16:51:36 -04002572 result = kGlobals_Requirement | kFragCoord_Requirement;
Ethan Nicholas453f67f2020-10-09 10:43:45 -04002573 } else if (Variable::Storage::kGlobal == v.variable()->storage()) {
Ethan Nicholas041fd0a2020-10-07 16:42:04 -04002574 if (modifiers.fFlags & Modifiers::kIn_Flag) {
Ethan Nicholascc305772017-10-13 16:17:45 -04002575 result = kInputs_Requirement;
Ethan Nicholas041fd0a2020-10-07 16:42:04 -04002576 } else if (modifiers.fFlags & Modifiers::kOut_Flag) {
Ethan Nicholascc305772017-10-13 16:17:45 -04002577 result = kOutputs_Requirement;
Ethan Nicholas041fd0a2020-10-07 16:42:04 -04002578 } else if (modifiers.fFlags & Modifiers::kUniform_Flag &&
Ethan Nicholas78686922020-10-08 06:46:27 -04002579 v.variable()->type().typeKind() != Type::TypeKind::kSampler) {
Ethan Nicholascc305772017-10-13 16:17:45 -04002580 result = kUniforms_Requirement;
Timothy Liangee84fe12018-05-18 14:38:19 -04002581 } else {
2582 result = kGlobals_Requirement;
Ethan Nicholascc305772017-10-13 16:17:45 -04002583 }
2584 }
2585 return result;
2586 }
2587 default:
2588 return kNo_Requirements;
2589 }
2590}
2591
Ethan Nicholasff350cb2020-05-14 14:05:13 -04002592MetalCodeGenerator::Requirements MetalCodeGenerator::requirements(const Statement* s) {
2593 if (!s) {
2594 return kNo_Requirements;
2595 }
Ethan Nicholase6592142020-09-08 10:22:09 -04002596 switch (s->kind()) {
2597 case Statement::Kind::kBlock: {
Ethan Nicholascc305772017-10-13 16:17:45 -04002598 Requirements result = kNo_Requirements;
Ethan Nicholas7bd60432020-09-25 14:31:59 -04002599 for (const std::unique_ptr<Statement>& child : s->as<Block>().children()) {
Ethan Nicholasff350cb2020-05-14 14:05:13 -04002600 result |= this->requirements(child.get());
Ethan Nicholascc305772017-10-13 16:17:45 -04002601 }
2602 return result;
2603 }
Ethan Nicholase6592142020-09-08 10:22:09 -04002604 case Statement::Kind::kVarDeclaration: {
John Stiles3dc0da62020-08-19 17:48:31 -04002605 const VarDeclaration& var = s->as<VarDeclaration>();
Ethan Nicholasc51f33e2020-10-13 13:49:44 -04002606 return this->requirements(var.value().get());
Timothy Liang7d637782018-06-05 09:58:07 -04002607 }
Ethan Nicholase6592142020-09-08 10:22:09 -04002608 case Statement::Kind::kExpression:
Ethan Nicholasd503a5a2020-09-30 09:29:55 -04002609 return this->requirements(s->as<ExpressionStatement>().expression().get());
Ethan Nicholase6592142020-09-08 10:22:09 -04002610 case Statement::Kind::kReturn: {
John Stiles3dc0da62020-08-19 17:48:31 -04002611 const ReturnStatement& r = s->as<ReturnStatement>();
Ethan Nicholas2a4952d2020-10-08 15:35:56 -04002612 return this->requirements(r.expression().get());
Ethan Nicholascc305772017-10-13 16:17:45 -04002613 }
Ethan Nicholase6592142020-09-08 10:22:09 -04002614 case Statement::Kind::kIf: {
John Stiles3dc0da62020-08-19 17:48:31 -04002615 const IfStatement& i = s->as<IfStatement>();
Ethan Nicholas8c44eca2020-10-07 16:47:09 -04002616 return this->requirements(i.test().get()) |
2617 this->requirements(i.ifTrue().get()) |
2618 this->requirements(i.ifFalse().get());
Ethan Nicholascc305772017-10-13 16:17:45 -04002619 }
Ethan Nicholase6592142020-09-08 10:22:09 -04002620 case Statement::Kind::kFor: {
John Stiles3dc0da62020-08-19 17:48:31 -04002621 const ForStatement& f = s->as<ForStatement>();
Ethan Nicholas0d31ed52020-10-05 14:47:09 -04002622 return this->requirements(f.initializer().get()) |
2623 this->requirements(f.test().get()) |
2624 this->requirements(f.next().get()) |
2625 this->requirements(f.statement().get());
Ethan Nicholascc305772017-10-13 16:17:45 -04002626 }
Ethan Nicholase6592142020-09-08 10:22:09 -04002627 case Statement::Kind::kDo: {
John Stiles3dc0da62020-08-19 17:48:31 -04002628 const DoStatement& d = s->as<DoStatement>();
Ethan Nicholas1fd61162020-09-28 13:14:19 -04002629 return this->requirements(d.test().get()) |
2630 this->requirements(d.statement().get());
Ethan Nicholascc305772017-10-13 16:17:45 -04002631 }
Ethan Nicholase6592142020-09-08 10:22:09 -04002632 case Statement::Kind::kSwitch: {
John Stiles3dc0da62020-08-19 17:48:31 -04002633 const SwitchStatement& sw = s->as<SwitchStatement>();
Ethan Nicholas01b05e52020-10-22 15:53:41 -04002634 Requirements result = this->requirements(sw.value().get());
John Stilesb23a64b2021-03-11 08:27:59 -05002635 for (const std::unique_ptr<Statement>& sc : sw.cases()) {
2636 result |= this->requirements(sc->as<SwitchCase>().statement().get());
Ethan Nicholascc305772017-10-13 16:17:45 -04002637 }
2638 return result;
2639 }
2640 default:
2641 return kNo_Requirements;
2642 }
2643}
2644
2645MetalCodeGenerator::Requirements MetalCodeGenerator::requirements(const FunctionDeclaration& f) {
Ethan Nicholased84b732020-10-08 11:45:44 -04002646 if (f.isBuiltin()) {
Ethan Nicholascc305772017-10-13 16:17:45 -04002647 return kNo_Requirements;
2648 }
2649 auto found = fRequirements.find(&f);
2650 if (found == fRequirements.end()) {
Ethan Nicholas65a8f562019-04-19 14:00:26 -04002651 fRequirements[&f] = kNo_Requirements;
Brian Osman133724c2020-10-28 14:14:39 -04002652 for (const ProgramElement* e : fProgram.elements()) {
Brian Osman1179fcf2020-10-08 16:04:40 -04002653 if (e->is<FunctionDefinition>()) {
2654 const FunctionDefinition& def = e->as<FunctionDefinition>();
Ethan Nicholas0a5d0962020-10-14 13:33:18 -04002655 if (&def.declaration() == &f) {
2656 Requirements reqs = this->requirements(def.body().get());
Ethan Nicholascc305772017-10-13 16:17:45 -04002657 fRequirements[&f] = reqs;
2658 return reqs;
2659 }
2660 }
2661 }
John Stiles569249b2020-11-03 12:18:22 -05002662 // We never found a definition for this declared function, but it's legal to prototype a
2663 // function without ever giving a definition, as long as you don't call it.
2664 return kNo_Requirements;
Ethan Nicholascc305772017-10-13 16:17:45 -04002665 }
2666 return found->second;
2667}
2668
Timothy Liangb8eeb802018-07-23 16:46:16 -04002669bool MetalCodeGenerator::generateCode() {
John Stiles44532372020-12-07 12:33:55 -05002670 StringStream header;
2671 {
2672 AutoOutputStream outputToHeader(this, &header, &fIndentation);
Michael Ludwigbf58add2021-03-16 10:40:11 -04002673 this->writeHeader();
John Stiles44532372020-12-07 12:33:55 -05002674 this->writeStructDefinitions();
2675 this->writeUniformStruct();
2676 this->writeInputStruct();
2677 this->writeOutputStruct();
2678 this->writeInterfaceBlocks();
2679 this->writeGlobalStruct();
2680 }
2681 StringStream body;
2682 {
2683 AutoOutputStream outputToBody(this, &body, &fIndentation);
2684 for (const ProgramElement* e : fProgram.elements()) {
2685 this->writeProgramElement(*e);
2686 }
2687 }
2688 write_stringstream(header, *fOut);
John Stiles82d4c122021-08-10 16:03:23 -04002689 write_stringstream(fExtraFunctionPrototypes, *fOut);
John Stiles44532372020-12-07 12:33:55 -05002690 write_stringstream(fExtraFunctions, *fOut);
2691 write_stringstream(body, *fOut);
Ethan Nicholas0f36d112021-08-23 15:27:36 -04002692 fContext.fErrors->reportPendingErrors(PositionInfo());
Ethan Nicholas39f6da42021-08-23 13:10:07 -04002693 return fContext.fErrors->errorCount() == 0;
Ethan Nicholascc305772017-10-13 16:17:45 -04002694}
2695
John Stilesa6841be2020-08-06 14:11:56 -04002696} // namespace SkSL