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Nicolas Capens598f8d82016-09-26 15:09:10 -04001// Copyright 2016 The SwiftShader Authors. All Rights Reserved.
2//
3// Licensed under the Apache License, Version 2.0 (the "License");
4// you may not use this file except in compliance with the License.
5// You may obtain a copy of the License at
6//
7// http://www.apache.org/licenses/LICENSE-2.0
8//
9// Unless required by applicable law or agreed to in writing, software
10// distributed under the License is distributed on an "AS IS" BASIS,
11// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12// See the License for the specific language governing permissions and
13// limitations under the License.
14
Ben Claytoneb50d252019-04-15 13:50:01 -040015#include "Debug.hpp"
Antonio Maiorano62427e02020-02-13 09:18:05 -050016#include "Print.hpp"
Ben Clayton713b8d32019-12-17 20:37:56 +000017#include "Reactor.hpp"
Antonio Maioranoaae33732020-02-14 14:52:34 -050018#include "ReactorDebugInfo.hpp"
Nicolas Capens598f8d82016-09-26 15:09:10 -040019
Nicolas Capens1a3ce872018-10-10 10:42:36 -040020#include "ExecutableMemory.hpp"
Ben Clayton713b8d32019-12-17 20:37:56 +000021#include "Optimizer.hpp"
Nicolas Capensa062f322018-09-06 15:34:46 -040022
Nicolas Capens598f8d82016-09-26 15:09:10 -040023#include "src/IceCfg.h"
Nicolas Capens598f8d82016-09-26 15:09:10 -040024#include "src/IceCfgNode.h"
25#include "src/IceELFObjectWriter.h"
Ben Clayton713b8d32019-12-17 20:37:56 +000026#include "src/IceELFStreamer.h"
27#include "src/IceGlobalContext.h"
Nicolas Capens8dfd9a72016-10-13 17:44:51 -040028#include "src/IceGlobalInits.h"
Ben Clayton713b8d32019-12-17 20:37:56 +000029#include "src/IceTypes.h"
Nicolas Capens598f8d82016-09-26 15:09:10 -040030
Ben Clayton713b8d32019-12-17 20:37:56 +000031#include "llvm/Support/Compiler.h"
Nicolas Capens598f8d82016-09-26 15:09:10 -040032#include "llvm/Support/FileSystem.h"
Antonio Maiorano8b4cf1c2021-01-26 14:40:03 -050033#include "llvm/Support/ManagedStatic.h"
Nicolas Capens598f8d82016-09-26 15:09:10 -040034#include "llvm/Support/raw_os_ostream.h"
Nicolas Capens6a990f82018-07-06 15:54:07 -040035
Antonio Maiorano8bce0672020-02-28 13:13:45 -050036#include "marl/event.h"
37
Nicolas Capens6a990f82018-07-06 15:54:07 -040038#if __has_feature(memory_sanitizer)
Ben Clayton713b8d32019-12-17 20:37:56 +000039# include <sanitizer/msan_interface.h>
Nicolas Capens6a990f82018-07-06 15:54:07 -040040#endif
Nicolas Capens598f8d82016-09-26 15:09:10 -040041
Nicolas Capensbd65da92017-01-05 16:31:06 -050042#if defined(_WIN32)
Ben Clayton713b8d32019-12-17 20:37:56 +000043# ifndef WIN32_LEAN_AND_MEAN
44# define WIN32_LEAN_AND_MEAN
45# endif // !WIN32_LEAN_AND_MEAN
46# ifndef NOMINMAX
47# define NOMINMAX
48# endif // !NOMINMAX
49# include <Windows.h>
Nicolas Capensbd65da92017-01-05 16:31:06 -050050#endif
Nicolas Capens598f8d82016-09-26 15:09:10 -040051
Ben Clayton683bad82020-02-10 23:57:09 +000052#include <array>
Nicolas Capens4ee53092022-02-05 01:53:12 -050053#include <cmath>
Nicolas Capens598f8d82016-09-26 15:09:10 -040054#include <iostream>
Ben Clayton713b8d32019-12-17 20:37:56 +000055#include <limits>
56#include <mutex>
Nicolas Capens598f8d82016-09-26 15:09:10 -040057
Antonio Maiorano02a39532020-01-21 15:15:34 -050058// Subzero utility functions
59// These functions only accept and return Subzero (Ice) types, and do not access any globals.
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -050060namespace {
Antonio Maiorano02a39532020-01-21 15:15:34 -050061namespace sz {
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -050062
63Ice::Cfg *createFunction(Ice::GlobalContext *context, Ice::Type returnType, const std::vector<Ice::Type> &paramTypes)
64{
65 uint32_t sequenceNumber = 0;
Nicolas Capensff010f92021-02-01 12:22:53 -050066 auto *function = Ice::Cfg::create(context, sequenceNumber).release();
67
68 function->setStackSizeLimit(512 * 1024); // 512 KiB
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -050069
70 Ice::CfgLocalAllocatorScope allocScope{ function };
71
72 for(auto type : paramTypes)
73 {
74 Ice::Variable *arg = function->makeVariable(type);
75 function->addArg(arg);
76 }
77
78 Ice::CfgNode *node = function->makeNode();
79 function->setEntryNode(node);
80
81 return function;
82}
83
84Ice::Type getPointerType(Ice::Type elementType)
85{
86 if(sizeof(void *) == 8)
87 {
88 return Ice::IceType_i64;
89 }
90 else
91 {
92 return Ice::IceType_i32;
93 }
94}
95
96Ice::Variable *allocateStackVariable(Ice::Cfg *function, Ice::Type type, int arraySize = 0)
97{
98 int typeSize = Ice::typeWidthInBytes(type);
99 int totalSize = typeSize * (arraySize ? arraySize : 1);
100
101 auto bytes = Ice::ConstantInteger32::create(function->getContext(), Ice::IceType_i32, totalSize);
102 auto address = function->makeVariable(getPointerType(type));
Nicolas Capens0cfc0432021-02-05 15:18:42 -0500103 auto alloca = Ice::InstAlloca::create(function, address, bytes, typeSize); // SRoA depends on the alignment to match the type size.
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500104 function->getEntryNode()->getInsts().push_front(alloca);
105
106 return address;
107}
108
109Ice::Constant *getConstantPointer(Ice::GlobalContext *context, void const *ptr)
Antonio Maiorano02a39532020-01-21 15:15:34 -0500110{
111 if(sizeof(void *) == 8)
112 {
113 return context->getConstantInt64(reinterpret_cast<intptr_t>(ptr));
114 }
115 else
116 {
117 return context->getConstantInt32(reinterpret_cast<intptr_t>(ptr));
118 }
119}
120
Antonio Maiorano16ae92a2020-03-10 10:53:24 -0400121// TODO(amaiorano): remove this prototype once these are moved to separate header/cpp
122Ice::Variable *createTruncate(Ice::Cfg *function, Ice::CfgNode *basicBlock, Ice::Operand *from, Ice::Type toType);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500123
Antonio Maiorano16ae92a2020-03-10 10:53:24 -0400124// Wrapper for calls on C functions with Ice types
125Ice::Variable *Call(Ice::Cfg *function, Ice::CfgNode *basicBlock, Ice::Type retTy, Ice::Operand *callTarget, const std::vector<Ice::Operand *> &iceArgs, bool isVariadic)
126{
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500127 Ice::Variable *ret = nullptr;
Antonio Maiorano16ae92a2020-03-10 10:53:24 -0400128
129 // Subzero doesn't support boolean return values. Replace with an i32 temporarily,
130 // then truncate result to bool.
131 // TODO(b/151158858): Add support to Subzero's InstCall for bool-returning functions
132 const bool returningBool = (retTy == Ice::IceType_i1);
133 if(returningBool)
134 {
135 ret = function->makeVariable(Ice::IceType_i32);
136 }
137 else if(retTy != Ice::IceType_void)
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500138 {
139 ret = function->makeVariable(retTy);
140 }
141
Antonio Maiorano16ae92a2020-03-10 10:53:24 -0400142 auto call = Ice::InstCall::create(function, iceArgs.size(), ret, callTarget, false, false, isVariadic);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500143 for(auto arg : iceArgs)
144 {
145 call->addArg(arg);
146 }
147
148 basicBlock->appendInst(call);
Antonio Maiorano16ae92a2020-03-10 10:53:24 -0400149
150 if(returningBool)
151 {
152 // Truncate result to bool so that if any (lsb) bits were set, result will be true
153 ret = createTruncate(function, basicBlock, ret, Ice::IceType_i1);
154 }
155
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500156 return ret;
157}
158
Antonio Maiorano16ae92a2020-03-10 10:53:24 -0400159Ice::Variable *Call(Ice::Cfg *function, Ice::CfgNode *basicBlock, Ice::Type retTy, void const *fptr, const std::vector<Ice::Operand *> &iceArgs, bool isVariadic)
160{
161 Ice::Operand *callTarget = getConstantPointer(function->getContext(), fptr);
162 return Call(function, basicBlock, retTy, callTarget, iceArgs, isVariadic);
163}
164
Antonio Maiorano62427e02020-02-13 09:18:05 -0500165// Wrapper for calls on C functions with Ice types
166template<typename Return, typename... CArgs, typename... RArgs>
Nicolas Capens629bf952022-01-18 15:08:14 -0500167Ice::Variable *Call(Ice::Cfg *function, Ice::CfgNode *basicBlock, Return(fptr)(CArgs...), RArgs &&...args)
Antonio Maiorano62427e02020-02-13 09:18:05 -0500168{
Antonio Maioranobc98fbe2020-03-17 15:46:22 -0400169 static_assert(sizeof...(CArgs) == sizeof...(RArgs), "Expected number of args don't match");
170
Nicolas Capens519cf222020-05-08 15:27:19 -0400171 Ice::Type retTy = T(rr::CToReactorT<Return>::type());
Antonio Maiorano62427e02020-02-13 09:18:05 -0500172 std::vector<Ice::Operand *> iceArgs{ std::forward<RArgs>(args)... };
Antonio Maioranoad3e42a2020-02-26 14:23:09 -0500173 return Call(function, basicBlock, retTy, reinterpret_cast<void const *>(fptr), iceArgs, false);
Antonio Maiorano62427e02020-02-13 09:18:05 -0500174}
175
Antonio Maiorano16ae92a2020-03-10 10:53:24 -0400176Ice::Variable *createTruncate(Ice::Cfg *function, Ice::CfgNode *basicBlock, Ice::Operand *from, Ice::Type toType)
177{
178 Ice::Variable *to = function->makeVariable(toType);
179 Ice::InstCast *cast = Ice::InstCast::create(function, Ice::InstCast::Trunc, to, from);
180 basicBlock->appendInst(cast);
181 return to;
182}
183
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500184Ice::Variable *createLoad(Ice::Cfg *function, Ice::CfgNode *basicBlock, Ice::Operand *ptr, Ice::Type type, unsigned int align)
Antonio Maiorano02a39532020-01-21 15:15:34 -0500185{
Antonio Maiorano02a39532020-01-21 15:15:34 -0500186 Ice::Variable *result = function->makeVariable(type);
187 auto load = Ice::InstLoad::create(function, result, ptr, align);
188 basicBlock->appendInst(load);
189
190 return result;
191}
192
193} // namespace sz
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500194} // namespace
195
Ben Clayton713b8d32019-12-17 20:37:56 +0000196namespace rr {
197class ELFMemoryStreamer;
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500198class CoroutineGenerator;
199} // namespace rr
Nicolas Capens157ba262019-12-10 17:49:14 -0500200
201namespace {
202
Antonio Maiorano8b4cf1c2021-01-26 14:40:03 -0500203// Used to automatically invoke llvm_shutdown() when driver is unloaded
204llvm::llvm_shutdown_obj llvmShutdownObj;
205
Nicolas Capens157ba262019-12-10 17:49:14 -0500206// Default configuration settings. Must be accessed under mutex lock.
207std::mutex defaultConfigLock;
208rr::Config &defaultConfig()
Ben Claytonb7eb3a82019-11-19 00:43:50 +0000209{
Nicolas Capens157ba262019-12-10 17:49:14 -0500210 // This uses a static in a function to avoid the cost of a global static
211 // initializer. See http://neugierig.org/software/chromium/notes/2011/08/static-initializers.html
212 static rr::Config config = rr::Config::Edit()
Ben Clayton713b8d32019-12-17 20:37:56 +0000213 .apply({});
Nicolas Capens157ba262019-12-10 17:49:14 -0500214 return config;
Ben Claytonb7eb3a82019-11-19 00:43:50 +0000215}
216
Nicolas Capens157ba262019-12-10 17:49:14 -0500217Ice::GlobalContext *context = nullptr;
218Ice::Cfg *function = nullptr;
Antonio Maiorano22d73d12020-03-20 00:13:28 -0400219Ice::CfgNode *entryBlock = nullptr;
220Ice::CfgNode *basicBlockTop = nullptr;
Nicolas Capens157ba262019-12-10 17:49:14 -0500221Ice::CfgNode *basicBlock = nullptr;
222Ice::CfgLocalAllocatorScope *allocator = nullptr;
223rr::ELFMemoryStreamer *routine = nullptr;
224
225std::mutex codegenMutex;
226
227Ice::ELFFileStreamer *elfFile = nullptr;
228Ice::Fdstream *out = nullptr;
229
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500230// Coroutine globals
231rr::Type *coroYieldType = nullptr;
232std::shared_ptr<rr::CoroutineGenerator> coroGen;
Antonio Maiorano8f2d48f2020-02-28 13:39:11 -0500233marl::Scheduler &getOrCreateScheduler()
234{
235 static auto scheduler = [] {
Ben Claytonef3914c2020-06-15 22:17:46 +0100236 marl::Scheduler::Config cfg;
237 cfg.setWorkerThreadCount(8);
238 return std::make_unique<marl::Scheduler>(cfg);
Antonio Maiorano8f2d48f2020-02-28 13:39:11 -0500239 }();
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500240
Antonio Maiorano8f2d48f2020-02-28 13:39:11 -0500241 return *scheduler;
242}
Nicolas Capens54313fb2021-02-19 14:26:27 -0500243
244rr::Nucleus::OptimizerCallback *optimizerCallback = nullptr;
245
Nicolas Capens157ba262019-12-10 17:49:14 -0500246} // Anonymous namespace
247
248namespace {
249
250#if !defined(__i386__) && defined(_M_IX86)
Ben Clayton713b8d32019-12-17 20:37:56 +0000251# define __i386__ 1
Nicolas Capens157ba262019-12-10 17:49:14 -0500252#endif
253
Ben Clayton713b8d32019-12-17 20:37:56 +0000254#if !defined(__x86_64__) && (defined(_M_AMD64) || defined(_M_X64))
255# define __x86_64__ 1
Nicolas Capens157ba262019-12-10 17:49:14 -0500256#endif
257
Antonio Maiorano370cba52019-12-31 11:36:07 -0500258Ice::OptLevel toIce(rr::Optimization::Level level)
Nicolas Capens598f8d82016-09-26 15:09:10 -0400259{
Nicolas Capens81bc9d92019-12-16 15:05:57 -0500260 switch(level)
Ben Clayton55bc37a2019-07-04 12:17:12 +0100261 {
Nicolas Capens112faf42019-12-13 17:32:26 -0500262 // Note that Opt_0 and Opt_1 are not implemented by Subzero
263 case rr::Optimization::Level::None: return Ice::Opt_m1;
264 case rr::Optimization::Level::Less: return Ice::Opt_m1;
265 case rr::Optimization::Level::Default: return Ice::Opt_2;
266 case rr::Optimization::Level::Aggressive: return Ice::Opt_2;
267 default: UNREACHABLE("Unknown Optimization Level %d", int(level));
Ben Clayton55bc37a2019-07-04 12:17:12 +0100268 }
Nicolas Capens157ba262019-12-10 17:49:14 -0500269 return Ice::Opt_2;
Nicolas Capens598f8d82016-09-26 15:09:10 -0400270}
271
Antonio Maiorano370cba52019-12-31 11:36:07 -0500272Ice::Intrinsics::MemoryOrder stdToIceMemoryOrder(std::memory_order memoryOrder)
273{
274 switch(memoryOrder)
275 {
Nicolas Capens112faf42019-12-13 17:32:26 -0500276 case std::memory_order_relaxed: return Ice::Intrinsics::MemoryOrderRelaxed;
277 case std::memory_order_consume: return Ice::Intrinsics::MemoryOrderConsume;
278 case std::memory_order_acquire: return Ice::Intrinsics::MemoryOrderAcquire;
279 case std::memory_order_release: return Ice::Intrinsics::MemoryOrderRelease;
280 case std::memory_order_acq_rel: return Ice::Intrinsics::MemoryOrderAcquireRelease;
281 case std::memory_order_seq_cst: return Ice::Intrinsics::MemoryOrderSequentiallyConsistent;
Antonio Maiorano370cba52019-12-31 11:36:07 -0500282 }
283 return Ice::Intrinsics::MemoryOrderInvalid;
284}
285
Nicolas Capens157ba262019-12-10 17:49:14 -0500286class CPUID
Nicolas Capensccd5ecb2017-01-14 12:52:55 -0500287{
Nicolas Capens157ba262019-12-10 17:49:14 -0500288public:
289 const static bool ARM;
290 const static bool SSE4_1;
Nicolas Capens47dc8672017-04-25 12:54:39 -0400291
Nicolas Capens157ba262019-12-10 17:49:14 -0500292private:
293 static void cpuid(int registers[4], int info)
Ben Clayton55bc37a2019-07-04 12:17:12 +0100294 {
Ben Clayton713b8d32019-12-17 20:37:56 +0000295#if defined(__i386__) || defined(__x86_64__)
296# if defined(_WIN32)
297 __cpuid(registers, info);
298# else
299 __asm volatile("cpuid"
300 : "=a"(registers[0]), "=b"(registers[1]), "=c"(registers[2]), "=d"(registers[3])
301 : "a"(info));
302# endif
303#else
304 registers[0] = 0;
305 registers[1] = 0;
306 registers[2] = 0;
307 registers[3] = 0;
308#endif
Ben Clayton55bc37a2019-07-04 12:17:12 +0100309 }
310
Sean Risser46a649d2021-08-30 15:44:33 -0400311 constexpr static bool detectARM()
Nicolas Capensccd5ecb2017-01-14 12:52:55 -0500312 {
Ben Clayton713b8d32019-12-17 20:37:56 +0000313#if defined(__arm__) || defined(__aarch64__)
314 return true;
315#elif defined(__i386__) || defined(__x86_64__)
316 return false;
317#elif defined(__mips__)
318 return false;
319#else
320# error "Unknown architecture"
321#endif
Nicolas Capens157ba262019-12-10 17:49:14 -0500322 }
Nicolas Capensccd5ecb2017-01-14 12:52:55 -0500323
Nicolas Capens157ba262019-12-10 17:49:14 -0500324 static bool detectSSE4_1()
325 {
Ben Clayton713b8d32019-12-17 20:37:56 +0000326#if defined(__i386__) || defined(__x86_64__)
327 int registers[4];
328 cpuid(registers, 1);
329 return (registers[2] & 0x00080000) != 0;
330#else
331 return false;
332#endif
Nicolas Capens157ba262019-12-10 17:49:14 -0500333 }
334};
Nicolas Capensccd5ecb2017-01-14 12:52:55 -0500335
Sean Risser46a649d2021-08-30 15:44:33 -0400336constexpr bool CPUID::ARM = CPUID::detectARM();
Nicolas Capens157ba262019-12-10 17:49:14 -0500337const bool CPUID::SSE4_1 = CPUID::detectSSE4_1();
Sean Risser46a649d2021-08-30 15:44:33 -0400338constexpr bool emulateIntrinsics = false;
339constexpr bool emulateMismatchedBitCast = CPUID::ARM;
Nicolas Capensf7b75882017-04-26 09:30:47 -0400340
Nicolas Capens157ba262019-12-10 17:49:14 -0500341constexpr bool subzeroDumpEnabled = false;
342constexpr bool subzeroEmitTextAsm = false;
Antonio Maiorano05ac79a2019-11-20 15:45:13 -0500343
344#if !ALLOW_DUMP
Nicolas Capens157ba262019-12-10 17:49:14 -0500345static_assert(!subzeroDumpEnabled, "Compile Subzero with ALLOW_DUMP=1 for subzeroDumpEnabled");
346static_assert(!subzeroEmitTextAsm, "Compile Subzero with ALLOW_DUMP=1 for subzeroEmitTextAsm");
Antonio Maiorano05ac79a2019-11-20 15:45:13 -0500347#endif
Nicolas Capens157ba262019-12-10 17:49:14 -0500348
349} // anonymous namespace
350
351namespace rr {
352
Nicolas Capens70505b42022-01-31 22:29:48 -0500353std::string Caps::backendName()
Antonio Maioranoab210f92019-12-13 16:26:24 -0500354{
355 return "Subzero";
356}
357
Nicolas Capens70505b42022-01-31 22:29:48 -0500358bool Caps::coroutinesSupported()
359{
360 return true;
361}
362
363bool Caps::fmaIsFast()
364{
365 // TODO(b/214591655): Subzero currently never emits FMA instructions. std::fma() is called instead.
366 return false;
367}
Nicolas Capens157ba262019-12-10 17:49:14 -0500368
369enum EmulatedType
370{
371 EmulatedShift = 16,
372 EmulatedV2 = 2 << EmulatedShift,
373 EmulatedV4 = 4 << EmulatedShift,
374 EmulatedV8 = 8 << EmulatedShift,
375 EmulatedBits = EmulatedV2 | EmulatedV4 | EmulatedV8,
376
377 Type_v2i32 = Ice::IceType_v4i32 | EmulatedV2,
378 Type_v4i16 = Ice::IceType_v8i16 | EmulatedV4,
379 Type_v2i16 = Ice::IceType_v8i16 | EmulatedV2,
Ben Clayton713b8d32019-12-17 20:37:56 +0000380 Type_v8i8 = Ice::IceType_v16i8 | EmulatedV8,
381 Type_v4i8 = Ice::IceType_v16i8 | EmulatedV4,
Nicolas Capens157ba262019-12-10 17:49:14 -0500382 Type_v2f32 = Ice::IceType_v4f32 | EmulatedV2,
383};
384
Ben Clayton713b8d32019-12-17 20:37:56 +0000385class Value : public Ice::Operand
386{};
387class SwitchCases : public Ice::InstSwitch
388{};
389class BasicBlock : public Ice::CfgNode
390{};
Nicolas Capens157ba262019-12-10 17:49:14 -0500391
392Ice::Type T(Type *t)
393{
394 static_assert(static_cast<unsigned int>(Ice::IceType_NUM) < static_cast<unsigned int>(EmulatedBits), "Ice::Type overlaps with our emulated types!");
395 return (Ice::Type)(reinterpret_cast<std::intptr_t>(t) & ~EmulatedBits);
Nicolas Capensccd5ecb2017-01-14 12:52:55 -0500396}
397
Nicolas Capens157ba262019-12-10 17:49:14 -0500398Type *T(Ice::Type t)
Nicolas Capens598f8d82016-09-26 15:09:10 -0400399{
Ben Clayton713b8d32019-12-17 20:37:56 +0000400 return reinterpret_cast<Type *>(t);
Nicolas Capens157ba262019-12-10 17:49:14 -0500401}
402
403Type *T(EmulatedType t)
404{
Ben Clayton713b8d32019-12-17 20:37:56 +0000405 return reinterpret_cast<Type *>(t);
Nicolas Capens157ba262019-12-10 17:49:14 -0500406}
407
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500408std::vector<Ice::Type> T(const std::vector<Type *> &types)
409{
410 std::vector<Ice::Type> result;
411 result.reserve(types.size());
412 for(auto &t : types)
413 {
414 result.push_back(T(t));
415 }
416 return result;
417}
418
Nicolas Capens157ba262019-12-10 17:49:14 -0500419Value *V(Ice::Operand *v)
420{
Ben Clayton713b8d32019-12-17 20:37:56 +0000421 return reinterpret_cast<Value *>(v);
Nicolas Capens157ba262019-12-10 17:49:14 -0500422}
423
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500424Ice::Operand *V(Value *v)
425{
Antonio Maiorano38c065d2020-01-30 09:51:37 -0500426 return reinterpret_cast<Ice::Operand *>(v);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500427}
428
Antonio Maiorano62427e02020-02-13 09:18:05 -0500429std::vector<Ice::Operand *> V(const std::vector<Value *> &values)
430{
431 std::vector<Ice::Operand *> result;
432 result.reserve(values.size());
433 for(auto &v : values)
434 {
435 result.push_back(V(v));
436 }
437 return result;
438}
439
Nicolas Capens157ba262019-12-10 17:49:14 -0500440BasicBlock *B(Ice::CfgNode *b)
441{
Ben Clayton713b8d32019-12-17 20:37:56 +0000442 return reinterpret_cast<BasicBlock *>(b);
Nicolas Capens157ba262019-12-10 17:49:14 -0500443}
444
445static size_t typeSize(Type *type)
446{
447 if(reinterpret_cast<std::intptr_t>(type) & EmulatedBits)
Ben Claytonc7904162019-04-17 17:35:48 -0400448 {
Nicolas Capens157ba262019-12-10 17:49:14 -0500449 switch(reinterpret_cast<std::intptr_t>(type))
Nicolas Capens584088c2017-01-26 16:05:18 -0800450 {
Nicolas Capens112faf42019-12-13 17:32:26 -0500451 case Type_v2i32: return 8;
452 case Type_v4i16: return 8;
453 case Type_v2i16: return 4;
454 case Type_v8i8: return 8;
455 case Type_v4i8: return 4;
456 case Type_v2f32: return 8;
457 default: ASSERT(false);
Nicolas Capens157ba262019-12-10 17:49:14 -0500458 }
459 }
460
461 return Ice::typeWidthInBytes(T(type));
462}
463
Antonio Maiorano22d73d12020-03-20 00:13:28 -0400464static void finalizeFunction()
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500465{
Antonio Maiorano22d73d12020-03-20 00:13:28 -0400466 // Create a return if none was added
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500467 if(::basicBlock->getInsts().empty() || ::basicBlock->getInsts().back().getKind() != Ice::Inst::Ret)
468 {
469 Nucleus::createRetVoid();
470 }
Antonio Maiorano22d73d12020-03-20 00:13:28 -0400471
472 // Connect the entry block to the top of the initial basic block
473 auto br = Ice::InstBr::create(::function, ::basicBlockTop);
474 ::entryBlock->appendInst(br);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500475}
476
Ben Clayton713b8d32019-12-17 20:37:56 +0000477using ElfHeader = std::conditional<sizeof(void *) == 8, Elf64_Ehdr, Elf32_Ehdr>::type;
478using SectionHeader = std::conditional<sizeof(void *) == 8, Elf64_Shdr, Elf32_Shdr>::type;
Nicolas Capens157ba262019-12-10 17:49:14 -0500479
480inline const SectionHeader *sectionHeader(const ElfHeader *elfHeader)
481{
Ben Clayton713b8d32019-12-17 20:37:56 +0000482 return reinterpret_cast<const SectionHeader *>((intptr_t)elfHeader + elfHeader->e_shoff);
Nicolas Capens157ba262019-12-10 17:49:14 -0500483}
484
485inline const SectionHeader *elfSection(const ElfHeader *elfHeader, int index)
486{
487 return &sectionHeader(elfHeader)[index];
488}
489
490static void *relocateSymbol(const ElfHeader *elfHeader, const Elf32_Rel &relocation, const SectionHeader &relocationTable)
491{
492 const SectionHeader *target = elfSection(elfHeader, relocationTable.sh_info);
493
494 uint32_t index = relocation.getSymbol();
495 int table = relocationTable.sh_link;
496 void *symbolValue = nullptr;
497
498 if(index != SHN_UNDEF)
499 {
500 if(table == SHN_UNDEF) return nullptr;
501 const SectionHeader *symbolTable = elfSection(elfHeader, table);
502
503 uint32_t symtab_entries = symbolTable->sh_size / symbolTable->sh_entsize;
504 if(index >= symtab_entries)
505 {
506 ASSERT(index < symtab_entries && "Symbol Index out of range");
507 return nullptr;
Nicolas Capens584088c2017-01-26 16:05:18 -0800508 }
509
Nicolas Capens157ba262019-12-10 17:49:14 -0500510 intptr_t symbolAddress = (intptr_t)elfHeader + symbolTable->sh_offset;
Ben Clayton713b8d32019-12-17 20:37:56 +0000511 Elf32_Sym &symbol = ((Elf32_Sym *)symbolAddress)[index];
Nicolas Capens157ba262019-12-10 17:49:14 -0500512 uint16_t section = symbol.st_shndx;
Nicolas Capens584088c2017-01-26 16:05:18 -0800513
Nicolas Capens157ba262019-12-10 17:49:14 -0500514 if(section != SHN_UNDEF && section < SHN_LORESERVE)
Nicolas Capens66478362016-10-13 15:36:36 -0400515 {
Nicolas Capens157ba262019-12-10 17:49:14 -0500516 const SectionHeader *target = elfSection(elfHeader, symbol.st_shndx);
Ben Clayton713b8d32019-12-17 20:37:56 +0000517 symbolValue = reinterpret_cast<void *>((intptr_t)elfHeader + symbol.st_value + target->sh_offset);
Nicolas Capensf110e4d2017-05-03 15:33:49 -0400518 }
519 else
520 {
Nicolas Capens157ba262019-12-10 17:49:14 -0500521 return nullptr;
Nicolas Capensf110e4d2017-05-03 15:33:49 -0400522 }
Nicolas Capens66478362016-10-13 15:36:36 -0400523 }
524
Nicolas Capens157ba262019-12-10 17:49:14 -0500525 intptr_t address = (intptr_t)elfHeader + target->sh_offset;
Ben Clayton713b8d32019-12-17 20:37:56 +0000526 unaligned_ptr<int32_t> patchSite = (int32_t *)(address + relocation.r_offset);
Nicolas Capens157ba262019-12-10 17:49:14 -0500527
528 if(CPUID::ARM)
Nicolas Capens66478362016-10-13 15:36:36 -0400529 {
Nicolas Capensf110e4d2017-05-03 15:33:49 -0400530 switch(relocation.getType())
531 {
Nicolas Capens112faf42019-12-13 17:32:26 -0500532 case R_ARM_NONE:
533 // No relocation
534 break;
535 case R_ARM_MOVW_ABS_NC:
Nicolas Capens157ba262019-12-10 17:49:14 -0500536 {
Ben Clayton713b8d32019-12-17 20:37:56 +0000537 uint32_t thumb = 0; // Calls to Thumb code not supported.
Nicolas Capens157ba262019-12-10 17:49:14 -0500538 uint32_t lo = (uint32_t)(intptr_t)symbolValue | thumb;
539 *patchSite = (*patchSite & 0xFFF0F000) | ((lo & 0xF000) << 4) | (lo & 0x0FFF);
540 }
Nicolas Capensf110e4d2017-05-03 15:33:49 -0400541 break;
Nicolas Capens112faf42019-12-13 17:32:26 -0500542 case R_ARM_MOVT_ABS:
Nicolas Capens157ba262019-12-10 17:49:14 -0500543 {
544 uint32_t hi = (uint32_t)(intptr_t)(symbolValue) >> 16;
545 *patchSite = (*patchSite & 0xFFF0F000) | ((hi & 0xF000) << 4) | (hi & 0x0FFF);
546 }
Nicolas Capensf110e4d2017-05-03 15:33:49 -0400547 break;
Nicolas Capens112faf42019-12-13 17:32:26 -0500548 default:
549 ASSERT(false && "Unsupported relocation type");
550 return nullptr;
Nicolas Capensf110e4d2017-05-03 15:33:49 -0400551 }
Nicolas Capens157ba262019-12-10 17:49:14 -0500552 }
553 else
554 {
555 switch(relocation.getType())
556 {
Nicolas Capens112faf42019-12-13 17:32:26 -0500557 case R_386_NONE:
558 // No relocation
559 break;
560 case R_386_32:
561 *patchSite = (int32_t)((intptr_t)symbolValue + *patchSite);
562 break;
563 case R_386_PC32:
564 *patchSite = (int32_t)((intptr_t)symbolValue + *patchSite - (intptr_t)patchSite);
565 break;
566 default:
567 ASSERT(false && "Unsupported relocation type");
568 return nullptr;
Nicolas Capens157ba262019-12-10 17:49:14 -0500569 }
Nicolas Capens66478362016-10-13 15:36:36 -0400570 }
571
Nicolas Capens157ba262019-12-10 17:49:14 -0500572 return symbolValue;
573}
Nicolas Capens598f8d82016-09-26 15:09:10 -0400574
Nicolas Capens157ba262019-12-10 17:49:14 -0500575static void *relocateSymbol(const ElfHeader *elfHeader, const Elf64_Rela &relocation, const SectionHeader &relocationTable)
576{
577 const SectionHeader *target = elfSection(elfHeader, relocationTable.sh_info);
578
579 uint32_t index = relocation.getSymbol();
580 int table = relocationTable.sh_link;
581 void *symbolValue = nullptr;
582
583 if(index != SHN_UNDEF)
584 {
585 if(table == SHN_UNDEF) return nullptr;
586 const SectionHeader *symbolTable = elfSection(elfHeader, table);
587
588 uint32_t symtab_entries = symbolTable->sh_size / symbolTable->sh_entsize;
589 if(index >= symtab_entries)
Nicolas Capens598f8d82016-09-26 15:09:10 -0400590 {
Nicolas Capens157ba262019-12-10 17:49:14 -0500591 ASSERT(index < symtab_entries && "Symbol Index out of range");
Nicolas Capens598f8d82016-09-26 15:09:10 -0400592 return nullptr;
593 }
594
Nicolas Capens157ba262019-12-10 17:49:14 -0500595 intptr_t symbolAddress = (intptr_t)elfHeader + symbolTable->sh_offset;
Ben Clayton713b8d32019-12-17 20:37:56 +0000596 Elf64_Sym &symbol = ((Elf64_Sym *)symbolAddress)[index];
Nicolas Capens157ba262019-12-10 17:49:14 -0500597 uint16_t section = symbol.st_shndx;
Nicolas Capens66478362016-10-13 15:36:36 -0400598
Nicolas Capens157ba262019-12-10 17:49:14 -0500599 if(section != SHN_UNDEF && section < SHN_LORESERVE)
Nicolas Capens598f8d82016-09-26 15:09:10 -0400600 {
Nicolas Capens157ba262019-12-10 17:49:14 -0500601 const SectionHeader *target = elfSection(elfHeader, symbol.st_shndx);
Ben Clayton713b8d32019-12-17 20:37:56 +0000602 symbolValue = reinterpret_cast<void *>((intptr_t)elfHeader + symbol.st_value + target->sh_offset);
Nicolas Capens157ba262019-12-10 17:49:14 -0500603 }
604 else
605 {
606 return nullptr;
607 }
608 }
Nicolas Capens66478362016-10-13 15:36:36 -0400609
Nicolas Capens157ba262019-12-10 17:49:14 -0500610 intptr_t address = (intptr_t)elfHeader + target->sh_offset;
Ben Clayton713b8d32019-12-17 20:37:56 +0000611 unaligned_ptr<int32_t> patchSite32 = (int32_t *)(address + relocation.r_offset);
612 unaligned_ptr<int64_t> patchSite64 = (int64_t *)(address + relocation.r_offset);
Nicolas Capens66478362016-10-13 15:36:36 -0400613
Nicolas Capens157ba262019-12-10 17:49:14 -0500614 switch(relocation.getType())
615 {
Nicolas Capens112faf42019-12-13 17:32:26 -0500616 case R_X86_64_NONE:
617 // No relocation
618 break;
619 case R_X86_64_64:
620 *patchSite64 = (int64_t)((intptr_t)symbolValue + *patchSite64 + relocation.r_addend);
621 break;
622 case R_X86_64_PC32:
623 *patchSite32 = (int32_t)((intptr_t)symbolValue + *patchSite32 - (intptr_t)patchSite32 + relocation.r_addend);
624 break;
625 case R_X86_64_32S:
626 *patchSite32 = (int32_t)((intptr_t)symbolValue + *patchSite32 + relocation.r_addend);
627 break;
628 default:
629 ASSERT(false && "Unsupported relocation type");
630 return nullptr;
Nicolas Capens157ba262019-12-10 17:49:14 -0500631 }
632
633 return symbolValue;
634}
635
Antonio Maioranobc98fbe2020-03-17 15:46:22 -0400636struct EntryPoint
Nicolas Capens157ba262019-12-10 17:49:14 -0500637{
Antonio Maioranobc98fbe2020-03-17 15:46:22 -0400638 const void *entry;
639 size_t codeSize = 0;
640};
641
642std::vector<EntryPoint> loadImage(uint8_t *const elfImage, const std::vector<const char *> &functionNames)
643{
644 ASSERT(functionNames.size() > 0);
645 std::vector<EntryPoint> entryPoints(functionNames.size());
646
Ben Clayton713b8d32019-12-17 20:37:56 +0000647 ElfHeader *elfHeader = (ElfHeader *)elfImage;
Nicolas Capens157ba262019-12-10 17:49:14 -0500648
Antonio Maioranobc98fbe2020-03-17 15:46:22 -0400649 // TODO: assert?
Nicolas Capens157ba262019-12-10 17:49:14 -0500650 if(!elfHeader->checkMagic())
651 {
Antonio Maioranobc98fbe2020-03-17 15:46:22 -0400652 return {};
Nicolas Capens157ba262019-12-10 17:49:14 -0500653 }
654
655 // Expect ELF bitness to match platform
Ben Clayton713b8d32019-12-17 20:37:56 +0000656 ASSERT(sizeof(void *) == 8 ? elfHeader->getFileClass() == ELFCLASS64 : elfHeader->getFileClass() == ELFCLASS32);
657#if defined(__i386__)
658 ASSERT(sizeof(void *) == 4 && elfHeader->e_machine == EM_386);
659#elif defined(__x86_64__)
660 ASSERT(sizeof(void *) == 8 && elfHeader->e_machine == EM_X86_64);
661#elif defined(__arm__)
662 ASSERT(sizeof(void *) == 4 && elfHeader->e_machine == EM_ARM);
663#elif defined(__aarch64__)
664 ASSERT(sizeof(void *) == 8 && elfHeader->e_machine == EM_AARCH64);
665#elif defined(__mips__)
666 ASSERT(sizeof(void *) == 4 && elfHeader->e_machine == EM_MIPS);
667#else
668# error "Unsupported platform"
669#endif
Nicolas Capens157ba262019-12-10 17:49:14 -0500670
Ben Clayton713b8d32019-12-17 20:37:56 +0000671 SectionHeader *sectionHeader = (SectionHeader *)(elfImage + elfHeader->e_shoff);
Nicolas Capens157ba262019-12-10 17:49:14 -0500672
673 for(int i = 0; i < elfHeader->e_shnum; i++)
674 {
675 if(sectionHeader[i].sh_type == SHT_PROGBITS)
676 {
677 if(sectionHeader[i].sh_flags & SHF_EXECINSTR)
678 {
Antonio Maioranobc98fbe2020-03-17 15:46:22 -0400679 auto findSectionNameEntryIndex = [&]() -> size_t {
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500680 auto sectionNameOffset = sectionHeader[elfHeader->e_shstrndx].sh_offset + sectionHeader[i].sh_name;
Antonio Maioranobc98fbe2020-03-17 15:46:22 -0400681 const char *sectionName = reinterpret_cast<const char *>(elfImage + sectionNameOffset);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500682
Antonio Maioranobc98fbe2020-03-17 15:46:22 -0400683 for(size_t j = 0; j < functionNames.size(); ++j)
684 {
685 if(strstr(sectionName, functionNames[j]) != nullptr)
686 {
687 return j;
688 }
689 }
690
691 UNREACHABLE("Failed to find executable section that matches input function names");
692 return static_cast<size_t>(-1);
693 };
694
695 size_t index = findSectionNameEntryIndex();
696 entryPoints[index].entry = elfImage + sectionHeader[i].sh_offset;
697 entryPoints[index].codeSize = sectionHeader[i].sh_size;
Nicolas Capens598f8d82016-09-26 15:09:10 -0400698 }
699 }
Nicolas Capens157ba262019-12-10 17:49:14 -0500700 else if(sectionHeader[i].sh_type == SHT_REL)
701 {
Ben Clayton713b8d32019-12-17 20:37:56 +0000702 ASSERT(sizeof(void *) == 4 && "UNIMPLEMENTED"); // Only expected/implemented for 32-bit code
Nicolas Capens598f8d82016-09-26 15:09:10 -0400703
Nicolas Capens157ba262019-12-10 17:49:14 -0500704 for(Elf32_Word index = 0; index < sectionHeader[i].sh_size / sectionHeader[i].sh_entsize; index++)
705 {
Ben Clayton713b8d32019-12-17 20:37:56 +0000706 const Elf32_Rel &relocation = ((const Elf32_Rel *)(elfImage + sectionHeader[i].sh_offset))[index];
Nicolas Capens157ba262019-12-10 17:49:14 -0500707 relocateSymbol(elfHeader, relocation, sectionHeader[i]);
708 }
709 }
710 else if(sectionHeader[i].sh_type == SHT_RELA)
711 {
Ben Clayton713b8d32019-12-17 20:37:56 +0000712 ASSERT(sizeof(void *) == 8 && "UNIMPLEMENTED"); // Only expected/implemented for 64-bit code
Nicolas Capens157ba262019-12-10 17:49:14 -0500713
714 for(Elf32_Word index = 0; index < sectionHeader[i].sh_size / sectionHeader[i].sh_entsize; index++)
715 {
Ben Clayton713b8d32019-12-17 20:37:56 +0000716 const Elf64_Rela &relocation = ((const Elf64_Rela *)(elfImage + sectionHeader[i].sh_offset))[index];
Nicolas Capens157ba262019-12-10 17:49:14 -0500717 relocateSymbol(elfHeader, relocation, sectionHeader[i]);
718 }
719 }
720 }
721
Antonio Maioranobc98fbe2020-03-17 15:46:22 -0400722 return entryPoints;
Nicolas Capens157ba262019-12-10 17:49:14 -0500723}
724
725template<typename T>
726struct ExecutableAllocator
727{
728 ExecutableAllocator() {}
Ben Clayton713b8d32019-12-17 20:37:56 +0000729 template<class U>
730 ExecutableAllocator(const ExecutableAllocator<U> &other)
731 {}
Nicolas Capens157ba262019-12-10 17:49:14 -0500732
733 using value_type = T;
734 using size_type = std::size_t;
735
736 T *allocate(size_type n)
737 {
Ben Clayton713b8d32019-12-17 20:37:56 +0000738 return (T *)allocateMemoryPages(
739 sizeof(T) * n, PERMISSION_READ | PERMISSION_WRITE, true);
Nicolas Capens157ba262019-12-10 17:49:14 -0500740 }
741
742 void deallocate(T *p, size_type n)
743 {
Sergey Ulanovebb0bec2019-12-12 11:53:04 -0800744 deallocateMemoryPages(p, sizeof(T) * n);
Nicolas Capens157ba262019-12-10 17:49:14 -0500745 }
746};
747
748class ELFMemoryStreamer : public Ice::ELFStreamer, public Routine
749{
750 ELFMemoryStreamer(const ELFMemoryStreamer &) = delete;
751 ELFMemoryStreamer &operator=(const ELFMemoryStreamer &) = delete;
752
753public:
Ben Clayton713b8d32019-12-17 20:37:56 +0000754 ELFMemoryStreamer()
755 : Routine()
Nicolas Capens157ba262019-12-10 17:49:14 -0500756 {
757 position = 0;
758 buffer.reserve(0x1000);
759 }
760
761 ~ELFMemoryStreamer() override
762 {
Nicolas Capens157ba262019-12-10 17:49:14 -0500763 }
764
765 void write8(uint8_t Value) override
766 {
767 if(position == (uint64_t)buffer.size())
768 {
769 buffer.push_back(Value);
770 position++;
771 }
772 else if(position < (uint64_t)buffer.size())
773 {
774 buffer[position] = Value;
775 position++;
776 }
Ben Clayton713b8d32019-12-17 20:37:56 +0000777 else
778 ASSERT(false && "UNIMPLEMENTED");
Nicolas Capens157ba262019-12-10 17:49:14 -0500779 }
780
781 void writeBytes(llvm::StringRef Bytes) override
782 {
783 std::size_t oldSize = buffer.size();
784 buffer.resize(oldSize + Bytes.size());
785 memcpy(&buffer[oldSize], Bytes.begin(), Bytes.size());
786 position += Bytes.size();
787 }
788
789 uint64_t tell() const override { return position; }
790
791 void seek(uint64_t Off) override { position = Off; }
792
Antonio Maioranobc98fbe2020-03-17 15:46:22 -0400793 std::vector<EntryPoint> loadImageAndGetEntryPoints(const std::vector<const char *> &functionNames)
Nicolas Capens157ba262019-12-10 17:49:14 -0500794 {
Antonio Maioranobc98fbe2020-03-17 15:46:22 -0400795 auto entryPoints = loadImage(&buffer[0], functionNames);
Nicolas Capens157ba262019-12-10 17:49:14 -0500796
797#if defined(_WIN32)
Nicolas Capens157ba262019-12-10 17:49:14 -0500798 FlushInstructionCache(GetCurrentProcess(), NULL, 0);
799#else
Antonio Maioranobc98fbe2020-03-17 15:46:22 -0400800 for(auto &entryPoint : entryPoints)
801 {
802 __builtin___clear_cache((char *)entryPoint.entry, (char *)entryPoint.entry + entryPoint.codeSize);
803 }
Nicolas Capens157ba262019-12-10 17:49:14 -0500804#endif
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500805
Antonio Maioranobc98fbe2020-03-17 15:46:22 -0400806 return entryPoints;
Nicolas Capens598f8d82016-09-26 15:09:10 -0400807 }
808
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500809 void finalize()
810 {
811 position = std::numeric_limits<std::size_t>::max(); // Can't stream more data after this
812
813 protectMemoryPages(&buffer[0], buffer.size(), PERMISSION_READ | PERMISSION_EXECUTE);
814 }
815
Ben Clayton713b8d32019-12-17 20:37:56 +0000816 void setEntry(int index, const void *func)
Nicolas Capens598f8d82016-09-26 15:09:10 -0400817 {
Nicolas Capens157ba262019-12-10 17:49:14 -0500818 ASSERT(func);
819 funcs[index] = func;
820 }
Nicolas Capens598f8d82016-09-26 15:09:10 -0400821
Nicolas Capens157ba262019-12-10 17:49:14 -0500822 const void *getEntry(int index) const override
Nicolas Capens598f8d82016-09-26 15:09:10 -0400823 {
Nicolas Capens157ba262019-12-10 17:49:14 -0500824 ASSERT(funcs[index]);
825 return funcs[index];
826 }
Nicolas Capens598f8d82016-09-26 15:09:10 -0400827
Antonio Maiorano02a39532020-01-21 15:15:34 -0500828 const void *addConstantData(const void *data, size_t size, size_t alignment = 1)
Nicolas Capens157ba262019-12-10 17:49:14 -0500829 {
Nicolas Capens4e75f452021-01-28 01:52:56 -0500830 // Check if we already have a suitable constant.
831 for(const auto &c : constantsPool)
832 {
833 void *ptr = c.data.get();
834 size_t space = c.space;
835
836 void *alignedPtr = std::align(alignment, size, ptr, space);
837
838 if(space < size)
839 {
840 continue;
841 }
842
843 if(memcmp(data, alignedPtr, size) == 0)
844 {
845 return alignedPtr;
846 }
847 }
848
Antonio Maiorano02a39532020-01-21 15:15:34 -0500849 // TODO(b/148086935): Replace with a buffer allocator.
850 size_t space = size + alignment;
851 auto buf = std::unique_ptr<uint8_t[]>(new uint8_t[space]);
852 void *ptr = buf.get();
853 void *alignedPtr = std::align(alignment, size, ptr, space);
854 ASSERT(alignedPtr);
855 memcpy(alignedPtr, data, size);
Nicolas Capens4e75f452021-01-28 01:52:56 -0500856 constantsPool.emplace_back(std::move(buf), space);
857
Antonio Maiorano02a39532020-01-21 15:15:34 -0500858 return alignedPtr;
Nicolas Capens157ba262019-12-10 17:49:14 -0500859 }
Nicolas Capens598f8d82016-09-26 15:09:10 -0400860
Nicolas Capens157ba262019-12-10 17:49:14 -0500861private:
Nicolas Capens4e75f452021-01-28 01:52:56 -0500862 struct Constant
863 {
864 Constant(std::unique_ptr<uint8_t[]> data, size_t space)
865 : data(std::move(data))
866 , space(space)
867 {}
868
869 std::unique_ptr<uint8_t[]> data;
870 size_t space;
871 };
872
Ben Clayton713b8d32019-12-17 20:37:56 +0000873 std::array<const void *, Nucleus::CoroutineEntryCount> funcs = {};
Nicolas Capens157ba262019-12-10 17:49:14 -0500874 std::vector<uint8_t, ExecutableAllocator<uint8_t>> buffer;
875 std::size_t position;
Nicolas Capens4e75f452021-01-28 01:52:56 -0500876 std::vector<Constant> constantsPool;
Nicolas Capens157ba262019-12-10 17:49:14 -0500877};
878
Antonio Maiorano62427e02020-02-13 09:18:05 -0500879#ifdef ENABLE_RR_PRINT
880void VPrintf(const std::vector<Value *> &vals)
881{
Antonio Maiorano8cbee412020-06-10 15:59:20 -0400882 sz::Call(::function, ::basicBlock, Ice::IceType_i32, reinterpret_cast<const void *>(rr::DebugPrintf), V(vals), true);
Antonio Maiorano62427e02020-02-13 09:18:05 -0500883}
884#endif // ENABLE_RR_PRINT
885
Nicolas Capens157ba262019-12-10 17:49:14 -0500886Nucleus::Nucleus()
887{
Nicolas Capens7d6b5912020-04-28 15:57:57 -0400888 ::codegenMutex.lock(); // SubzeroReactor is currently not thread safe
Nicolas Capens157ba262019-12-10 17:49:14 -0500889
890 Ice::ClFlags &Flags = Ice::ClFlags::Flags;
891 Ice::ClFlags::getParsedClFlags(Flags);
892
Ben Clayton713b8d32019-12-17 20:37:56 +0000893#if defined(__arm__)
894 Flags.setTargetArch(Ice::Target_ARM32);
895 Flags.setTargetInstructionSet(Ice::ARM32InstructionSet_HWDivArm);
896#elif defined(__mips__)
897 Flags.setTargetArch(Ice::Target_MIPS32);
898 Flags.setTargetInstructionSet(Ice::BaseInstructionSet);
899#else // x86
900 Flags.setTargetArch(sizeof(void *) == 8 ? Ice::Target_X8664 : Ice::Target_X8632);
901 Flags.setTargetInstructionSet(CPUID::SSE4_1 ? Ice::X86InstructionSet_SSE4_1 : Ice::X86InstructionSet_SSE2);
902#endif
Nicolas Capens157ba262019-12-10 17:49:14 -0500903 Flags.setOutFileType(Ice::FT_Elf);
904 Flags.setOptLevel(toIce(getDefaultConfig().getOptimization().getLevel()));
Nicolas Capens157ba262019-12-10 17:49:14 -0500905 Flags.setVerbose(subzeroDumpEnabled ? Ice::IceV_Most : Ice::IceV_None);
906 Flags.setDisableHybridAssembly(true);
907
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500908 // Emit functions into separate sections in the ELF so we can find them by name
909 Flags.setFunctionSections(true);
910
Nicolas Capens157ba262019-12-10 17:49:14 -0500911 static llvm::raw_os_ostream cout(std::cout);
912 static llvm::raw_os_ostream cerr(std::cerr);
913
Nicolas Capens81bc9d92019-12-16 15:05:57 -0500914 if(subzeroEmitTextAsm)
Nicolas Capens157ba262019-12-10 17:49:14 -0500915 {
916 // Decorate text asm with liveness info
917 Flags.setDecorateAsm(true);
918 }
919
Ben Clayton713b8d32019-12-17 20:37:56 +0000920 if(false) // Write out to a file
Nicolas Capens157ba262019-12-10 17:49:14 -0500921 {
922 std::error_code errorCode;
923 ::out = new Ice::Fdstream("out.o", errorCode, llvm::sys::fs::F_None);
924 ::elfFile = new Ice::ELFFileStreamer(*out);
925 ::context = new Ice::GlobalContext(&cout, &cout, &cerr, elfFile);
926 }
927 else
928 {
929 ELFMemoryStreamer *elfMemory = new ELFMemoryStreamer();
930 ::context = new Ice::GlobalContext(&cout, &cout, &cerr, elfMemory);
931 ::routine = elfMemory;
932 }
Nicolas Capens7d6b5912020-04-28 15:57:57 -0400933
Nicolas Capens00c30ce2020-10-29 09:17:25 -0400934#if !__has_feature(memory_sanitizer)
935 // thread_local variables in shared libraries are initialized at load-time,
936 // but this is not observed by MemorySanitizer if the loader itself was not
Nicolas Capensaf907702021-05-14 11:10:49 -0400937 // instrumented, leading to false-positive uninitialized variable errors.
Nicolas Capens7d6b5912020-04-28 15:57:57 -0400938 ASSERT(Variable::unmaterializedVariables == nullptr);
Nicolas Capens46485a02020-06-17 01:31:10 -0400939#endif
Antonio Maioranof14f6c42020-11-03 16:34:35 -0500940 Variable::unmaterializedVariables = new Variable::UnmaterializedVariables{};
Nicolas Capens157ba262019-12-10 17:49:14 -0500941}
942
943Nucleus::~Nucleus()
944{
Nicolas Capens7d6b5912020-04-28 15:57:57 -0400945 delete Variable::unmaterializedVariables;
946 Variable::unmaterializedVariables = nullptr;
947
Nicolas Capens157ba262019-12-10 17:49:14 -0500948 delete ::routine;
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500949 ::routine = nullptr;
Nicolas Capens157ba262019-12-10 17:49:14 -0500950
951 delete ::allocator;
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500952 ::allocator = nullptr;
953
Nicolas Capens157ba262019-12-10 17:49:14 -0500954 delete ::function;
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500955 ::function = nullptr;
956
Nicolas Capens157ba262019-12-10 17:49:14 -0500957 delete ::context;
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500958 ::context = nullptr;
Nicolas Capens157ba262019-12-10 17:49:14 -0500959
960 delete ::elfFile;
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500961 ::elfFile = nullptr;
962
Nicolas Capens157ba262019-12-10 17:49:14 -0500963 delete ::out;
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500964 ::out = nullptr;
965
Antonio Maiorano22d73d12020-03-20 00:13:28 -0400966 ::entryBlock = nullptr;
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500967 ::basicBlock = nullptr;
Antonio Maiorano22d73d12020-03-20 00:13:28 -0400968 ::basicBlockTop = nullptr;
Nicolas Capens157ba262019-12-10 17:49:14 -0500969
970 ::codegenMutex.unlock();
971}
972
973void Nucleus::setDefaultConfig(const Config &cfg)
974{
975 std::unique_lock<std::mutex> lock(::defaultConfigLock);
976 ::defaultConfig() = cfg;
977}
978
979void Nucleus::adjustDefaultConfig(const Config::Edit &cfgEdit)
980{
981 std::unique_lock<std::mutex> lock(::defaultConfigLock);
982 auto &config = ::defaultConfig();
983 config = cfgEdit.apply(config);
984}
985
986Config Nucleus::getDefaultConfig()
987{
988 std::unique_lock<std::mutex> lock(::defaultConfigLock);
989 return ::defaultConfig();
990}
991
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500992// This function lowers and produces executable binary code in memory for the input functions,
993// and returns a Routine with the entry points to these functions.
994template<size_t Count>
Sean Risser705231f2021-08-19 18:17:24 -0400995static std::shared_ptr<Routine> acquireRoutine(Ice::Cfg *const (&functions)[Count], const char *const (&names)[Count], const Config::Edit *cfgEdit)
Nicolas Capens157ba262019-12-10 17:49:14 -0500996{
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -0500997 // This logic is modeled after the IceCompiler, as well as GlobalContext::translateFunctions
998 // and GlobalContext::emitItems.
999
Nicolas Capens81bc9d92019-12-16 15:05:57 -05001000 if(subzeroDumpEnabled)
Nicolas Capens157ba262019-12-10 17:49:14 -05001001 {
1002 // Output dump strings immediately, rather than once buffer is full. Useful for debugging.
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001003 ::context->getStrDump().SetUnbuffered();
Nicolas Capens157ba262019-12-10 17:49:14 -05001004 }
1005
1006 ::context->emitFileHeader();
1007
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001008 // Translate
1009
1010 for(size_t i = 0; i < Count; ++i)
Nicolas Capens157ba262019-12-10 17:49:14 -05001011 {
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001012 Ice::Cfg *currFunc = functions[i];
1013
1014 // Install function allocator in TLS for Cfg-specific container allocators
1015 Ice::CfgLocalAllocatorScope allocScope(currFunc);
1016
1017 currFunc->setFunctionName(Ice::GlobalString::createWithString(::context, names[i]));
1018
Nicolas Capens54313fb2021-02-19 14:26:27 -05001019 if(::optimizerCallback)
1020 {
1021 Nucleus::OptimizerReport report;
1022 rr::optimize(currFunc, &report);
1023 ::optimizerCallback(&report);
1024 ::optimizerCallback = nullptr;
1025 }
1026 else
1027 {
1028 rr::optimize(currFunc);
1029 }
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001030
1031 currFunc->computeInOutEdges();
Antonio Maioranob3d9a2a2020-02-14 14:38:04 -05001032 ASSERT_MSG(!currFunc->hasError(), "%s", currFunc->getError().c_str());
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001033
1034 currFunc->translate();
Antonio Maioranob3d9a2a2020-02-14 14:38:04 -05001035 ASSERT_MSG(!currFunc->hasError(), "%s", currFunc->getError().c_str());
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001036
1037 currFunc->getAssembler<>()->setInternal(currFunc->getInternal());
1038
1039 if(subzeroEmitTextAsm)
1040 {
1041 currFunc->emit();
1042 }
1043
1044 currFunc->emitIAS();
Nicolas Capensff010f92021-02-01 12:22:53 -05001045
1046 if(currFunc->hasError())
1047 {
1048 return nullptr;
1049 }
Nicolas Capens157ba262019-12-10 17:49:14 -05001050 }
1051
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001052 // Emit items
1053
1054 ::context->lowerGlobals("");
1055
Nicolas Capens157ba262019-12-10 17:49:14 -05001056 auto objectWriter = ::context->getObjectWriter();
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001057
1058 for(size_t i = 0; i < Count; ++i)
1059 {
1060 Ice::Cfg *currFunc = functions[i];
1061
1062 // Accumulate globals from functions to emit into the "last" section at the end
1063 auto globals = currFunc->getGlobalInits();
1064 if(globals && !globals->empty())
1065 {
1066 ::context->getGlobals()->merge(globals.get());
1067 }
1068
1069 auto assembler = currFunc->releaseAssembler();
1070 assembler->alignFunction();
1071 objectWriter->writeFunctionCode(currFunc->getFunctionName(), currFunc->getInternal(), assembler.get());
1072 }
1073
Nicolas Capens157ba262019-12-10 17:49:14 -05001074 ::context->lowerGlobals("last");
1075 ::context->lowerConstants();
1076 ::context->lowerJumpTables();
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001077
Nicolas Capens157ba262019-12-10 17:49:14 -05001078 objectWriter->setUndefinedSyms(::context->getConstantExternSyms());
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001079 ::context->emitTargetRODataSections();
Nicolas Capens157ba262019-12-10 17:49:14 -05001080 objectWriter->writeNonUserSections();
1081
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001082 // Done compiling functions, get entry pointers to each of them
Antonio Maioranobc98fbe2020-03-17 15:46:22 -04001083 auto entryPoints = ::routine->loadImageAndGetEntryPoints({ names, names + Count });
1084 ASSERT(entryPoints.size() == Count);
1085 for(size_t i = 0; i < entryPoints.size(); ++i)
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001086 {
Antonio Maioranobc98fbe2020-03-17 15:46:22 -04001087 ::routine->setEntry(i, entryPoints[i].entry);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001088 }
1089
1090 ::routine->finalize();
Nicolas Capens157ba262019-12-10 17:49:14 -05001091
1092 Routine *handoffRoutine = ::routine;
1093 ::routine = nullptr;
1094
1095 return std::shared_ptr<Routine>(handoffRoutine);
1096}
1097
Sean Risser705231f2021-08-19 18:17:24 -04001098std::shared_ptr<Routine> Nucleus::acquireRoutine(const char *name, const Config::Edit *cfgEdit /* = nullptr */)
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001099{
Antonio Maiorano22d73d12020-03-20 00:13:28 -04001100 finalizeFunction();
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001101 return rr::acquireRoutine({ ::function }, { name }, cfgEdit);
1102}
1103
Nicolas Capens157ba262019-12-10 17:49:14 -05001104Value *Nucleus::allocateStackVariable(Type *t, int arraySize)
1105{
1106 Ice::Type type = T(t);
1107 int typeSize = Ice::typeWidthInBytes(type);
1108 int totalSize = typeSize * (arraySize ? arraySize : 1);
1109
1110 auto bytes = Ice::ConstantInteger32::create(::context, Ice::IceType_i32, totalSize);
1111 auto address = ::function->makeVariable(T(getPointerType(t)));
Nicolas Capens0cfc0432021-02-05 15:18:42 -05001112 auto alloca = Ice::InstAlloca::create(::function, address, bytes, typeSize); // SRoA depends on the alignment to match the type size.
Nicolas Capens157ba262019-12-10 17:49:14 -05001113 ::function->getEntryNode()->getInsts().push_front(alloca);
1114
1115 return V(address);
1116}
1117
1118BasicBlock *Nucleus::createBasicBlock()
1119{
1120 return B(::function->makeNode());
1121}
1122
1123BasicBlock *Nucleus::getInsertBlock()
1124{
1125 return B(::basicBlock);
1126}
1127
1128void Nucleus::setInsertBlock(BasicBlock *basicBlock)
1129{
Nicolas Capens7c296ec2021-02-18 14:10:26 -05001130 // ASSERT(::basicBlock->getInsts().back().getTerminatorEdges().size() >= 0 && "Previous basic block must have a terminator");
Nicolas Capens157ba262019-12-10 17:49:14 -05001131
1132 ::basicBlock = basicBlock;
1133}
1134
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001135void Nucleus::createFunction(Type *returnType, const std::vector<Type *> &paramTypes)
Nicolas Capens157ba262019-12-10 17:49:14 -05001136{
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001137 ASSERT(::function == nullptr);
1138 ASSERT(::allocator == nullptr);
Antonio Maiorano22d73d12020-03-20 00:13:28 -04001139 ASSERT(::entryBlock == nullptr);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001140 ASSERT(::basicBlock == nullptr);
Antonio Maiorano22d73d12020-03-20 00:13:28 -04001141 ASSERT(::basicBlockTop == nullptr);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001142
1143 ::function = sz::createFunction(::context, T(returnType), T(paramTypes));
1144
1145 // NOTE: The scoped allocator sets the TLS allocator to the one in the function. This global one
1146 // becomes invalid if another one is created; for example, when creating await and destroy functions
1147 // for coroutines, in which case, we must make sure to create a new scoped allocator for ::function again.
1148 // TODO: Get rid of this as a global, and create scoped allocs in every Nucleus function instead.
Nicolas Capens157ba262019-12-10 17:49:14 -05001149 ::allocator = new Ice::CfgLocalAllocatorScope(::function);
1150
Antonio Maiorano22d73d12020-03-20 00:13:28 -04001151 ::entryBlock = ::function->getEntryNode();
1152 ::basicBlock = ::function->makeNode();
1153 ::basicBlockTop = ::basicBlock;
Nicolas Capens157ba262019-12-10 17:49:14 -05001154}
1155
1156Value *Nucleus::getArgument(unsigned int index)
1157{
1158 return V(::function->getArgs()[index]);
1159}
1160
1161void Nucleus::createRetVoid()
1162{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001163 RR_DEBUG_INFO_UPDATE_LOC();
1164
Nicolas Capens157ba262019-12-10 17:49:14 -05001165 // Code generated after this point is unreachable, so any variables
1166 // being read can safely return an undefined value. We have to avoid
1167 // materializing variables after the terminator ret instruction.
1168 Variable::killUnmaterialized();
1169
1170 Ice::InstRet *ret = Ice::InstRet::create(::function);
1171 ::basicBlock->appendInst(ret);
1172}
1173
1174void Nucleus::createRet(Value *v)
1175{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001176 RR_DEBUG_INFO_UPDATE_LOC();
1177
Nicolas Capens157ba262019-12-10 17:49:14 -05001178 // Code generated after this point is unreachable, so any variables
1179 // being read can safely return an undefined value. We have to avoid
1180 // materializing variables after the terminator ret instruction.
1181 Variable::killUnmaterialized();
1182
1183 Ice::InstRet *ret = Ice::InstRet::create(::function, v);
1184 ::basicBlock->appendInst(ret);
1185}
1186
1187void Nucleus::createBr(BasicBlock *dest)
1188{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001189 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001190 Variable::materializeAll();
1191
1192 auto br = Ice::InstBr::create(::function, dest);
1193 ::basicBlock->appendInst(br);
1194}
1195
1196void Nucleus::createCondBr(Value *cond, BasicBlock *ifTrue, BasicBlock *ifFalse)
1197{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001198 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001199 Variable::materializeAll();
1200
1201 auto br = Ice::InstBr::create(::function, cond, ifTrue, ifFalse);
1202 ::basicBlock->appendInst(br);
1203}
1204
1205static bool isCommutative(Ice::InstArithmetic::OpKind op)
1206{
1207 switch(op)
1208 {
Nicolas Capens112faf42019-12-13 17:32:26 -05001209 case Ice::InstArithmetic::Add:
1210 case Ice::InstArithmetic::Fadd:
1211 case Ice::InstArithmetic::Mul:
1212 case Ice::InstArithmetic::Fmul:
1213 case Ice::InstArithmetic::And:
1214 case Ice::InstArithmetic::Or:
1215 case Ice::InstArithmetic::Xor:
1216 return true;
1217 default:
1218 return false;
Nicolas Capens157ba262019-12-10 17:49:14 -05001219 }
1220}
1221
1222static Value *createArithmetic(Ice::InstArithmetic::OpKind op, Value *lhs, Value *rhs)
1223{
1224 ASSERT(lhs->getType() == rhs->getType() || llvm::isa<Ice::Constant>(rhs));
1225
1226 bool swapOperands = llvm::isa<Ice::Constant>(lhs) && isCommutative(op);
1227
1228 Ice::Variable *result = ::function->makeVariable(lhs->getType());
1229 Ice::InstArithmetic *arithmetic = Ice::InstArithmetic::create(::function, op, result, swapOperands ? rhs : lhs, swapOperands ? lhs : rhs);
1230 ::basicBlock->appendInst(arithmetic);
1231
1232 return V(result);
1233}
1234
1235Value *Nucleus::createAdd(Value *lhs, Value *rhs)
1236{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001237 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001238 return createArithmetic(Ice::InstArithmetic::Add, lhs, rhs);
1239}
1240
1241Value *Nucleus::createSub(Value *lhs, Value *rhs)
1242{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001243 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001244 return createArithmetic(Ice::InstArithmetic::Sub, lhs, rhs);
1245}
1246
1247Value *Nucleus::createMul(Value *lhs, Value *rhs)
1248{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001249 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001250 return createArithmetic(Ice::InstArithmetic::Mul, lhs, rhs);
1251}
1252
1253Value *Nucleus::createUDiv(Value *lhs, Value *rhs)
1254{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001255 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001256 return createArithmetic(Ice::InstArithmetic::Udiv, lhs, rhs);
1257}
1258
1259Value *Nucleus::createSDiv(Value *lhs, Value *rhs)
1260{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001261 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001262 return createArithmetic(Ice::InstArithmetic::Sdiv, lhs, rhs);
1263}
1264
1265Value *Nucleus::createFAdd(Value *lhs, Value *rhs)
1266{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001267 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001268 return createArithmetic(Ice::InstArithmetic::Fadd, lhs, rhs);
1269}
1270
1271Value *Nucleus::createFSub(Value *lhs, Value *rhs)
1272{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001273 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001274 return createArithmetic(Ice::InstArithmetic::Fsub, lhs, rhs);
1275}
1276
1277Value *Nucleus::createFMul(Value *lhs, Value *rhs)
1278{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001279 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001280 return createArithmetic(Ice::InstArithmetic::Fmul, lhs, rhs);
1281}
1282
1283Value *Nucleus::createFDiv(Value *lhs, Value *rhs)
1284{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001285 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001286 return createArithmetic(Ice::InstArithmetic::Fdiv, lhs, rhs);
1287}
1288
1289Value *Nucleus::createURem(Value *lhs, Value *rhs)
1290{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001291 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001292 return createArithmetic(Ice::InstArithmetic::Urem, lhs, rhs);
1293}
1294
1295Value *Nucleus::createSRem(Value *lhs, Value *rhs)
1296{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001297 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001298 return createArithmetic(Ice::InstArithmetic::Srem, lhs, rhs);
1299}
1300
1301Value *Nucleus::createFRem(Value *lhs, Value *rhs)
1302{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001303 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano5ef91b82020-01-21 15:10:22 -05001304 // TODO(b/148139679) Fix Subzero generating invalid code for FRem on vector types
1305 // createArithmetic(Ice::InstArithmetic::Frem, lhs, rhs);
Ben Claytonce54c592020-02-07 11:30:51 +00001306 UNIMPLEMENTED("b/148139679 Nucleus::createFRem");
Antonio Maiorano5ef91b82020-01-21 15:10:22 -05001307 return nullptr;
1308}
1309
Nicolas Capens157ba262019-12-10 17:49:14 -05001310Value *Nucleus::createShl(Value *lhs, Value *rhs)
1311{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001312 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001313 return createArithmetic(Ice::InstArithmetic::Shl, lhs, rhs);
1314}
1315
1316Value *Nucleus::createLShr(Value *lhs, Value *rhs)
1317{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001318 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001319 return createArithmetic(Ice::InstArithmetic::Lshr, lhs, rhs);
1320}
1321
1322Value *Nucleus::createAShr(Value *lhs, Value *rhs)
1323{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001324 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001325 return createArithmetic(Ice::InstArithmetic::Ashr, lhs, rhs);
1326}
1327
1328Value *Nucleus::createAnd(Value *lhs, Value *rhs)
1329{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001330 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001331 return createArithmetic(Ice::InstArithmetic::And, lhs, rhs);
1332}
1333
1334Value *Nucleus::createOr(Value *lhs, Value *rhs)
1335{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001336 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001337 return createArithmetic(Ice::InstArithmetic::Or, lhs, rhs);
1338}
1339
1340Value *Nucleus::createXor(Value *lhs, Value *rhs)
1341{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001342 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001343 return createArithmetic(Ice::InstArithmetic::Xor, lhs, rhs);
1344}
1345
1346Value *Nucleus::createNeg(Value *v)
1347{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001348 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001349 return createSub(createNullValue(T(v->getType())), v);
1350}
1351
1352Value *Nucleus::createFNeg(Value *v)
1353{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001354 RR_DEBUG_INFO_UPDATE_LOC();
Ben Clayton713b8d32019-12-17 20:37:56 +00001355 double c[4] = { -0.0, -0.0, -0.0, -0.0 };
1356 Value *negativeZero = Ice::isVectorType(v->getType()) ? createConstantVector(c, T(v->getType())) : V(::context->getConstantFloat(-0.0f));
Nicolas Capens157ba262019-12-10 17:49:14 -05001357
1358 return createFSub(negativeZero, v);
1359}
1360
1361Value *Nucleus::createNot(Value *v)
1362{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001363 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001364 if(Ice::isScalarIntegerType(v->getType()))
1365 {
1366 return createXor(v, V(::context->getConstantInt(v->getType(), -1)));
1367 }
Ben Clayton713b8d32019-12-17 20:37:56 +00001368 else // Vector
Nicolas Capens157ba262019-12-10 17:49:14 -05001369 {
Ben Clayton713b8d32019-12-17 20:37:56 +00001370 int64_t c[16] = { -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1 };
Nicolas Capens157ba262019-12-10 17:49:14 -05001371 return createXor(v, createConstantVector(c, T(v->getType())));
1372 }
1373}
1374
Antonio Maiorano2e6cd9c2020-02-28 15:48:22 -05001375static void validateAtomicAndMemoryOrderArgs(bool atomic, std::memory_order memoryOrder)
1376{
1377#if defined(__i386__) || defined(__x86_64__)
1378 // We're good, atomics and strictest memory order (except seq_cst) are guaranteed.
1379 // Note that sequential memory ordering could be guaranteed by using x86's LOCK prefix.
1380 // Note also that relaxed memory order could be implemented using MOVNTPS and friends.
1381#else
1382 if(atomic)
1383 {
1384 UNIMPLEMENTED("b/150475088 Atomic load/store not implemented for current platform");
1385 }
1386 if(memoryOrder != std::memory_order_relaxed)
1387 {
1388 UNIMPLEMENTED("b/150475088 Memory order other than memory_order_relaxed not implemented for current platform");
1389 }
1390#endif
1391
1392 // Vulkan doesn't allow sequential memory order
1393 ASSERT(memoryOrder != std::memory_order_seq_cst);
1394}
1395
Nicolas Capens157ba262019-12-10 17:49:14 -05001396Value *Nucleus::createLoad(Value *ptr, Type *type, bool isVolatile, unsigned int align, bool atomic, std::memory_order memoryOrder)
1397{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001398 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano2e6cd9c2020-02-28 15:48:22 -05001399 validateAtomicAndMemoryOrderArgs(atomic, memoryOrder);
Nicolas Capens157ba262019-12-10 17:49:14 -05001400
1401 int valueType = (int)reinterpret_cast<intptr_t>(type);
Antonio Maiorano02a39532020-01-21 15:15:34 -05001402 Ice::Variable *result = nullptr;
Nicolas Capens157ba262019-12-10 17:49:14 -05001403
Ben Clayton713b8d32019-12-17 20:37:56 +00001404 if((valueType & EmulatedBits) && (align != 0)) // Narrow vector not stored on stack.
Nicolas Capens157ba262019-12-10 17:49:14 -05001405 {
1406 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04001407 {
Nicolas Capens157ba262019-12-10 17:49:14 -05001408 if(typeSize(type) == 4)
Nicolas Capens598f8d82016-09-26 15:09:10 -04001409 {
Nicolas Capens157ba262019-12-10 17:49:14 -05001410 auto pointer = RValue<Pointer<Byte>>(ptr);
1411 Int x = *Pointer<Int>(pointer);
1412
1413 Int4 vector;
1414 vector = Insert(vector, x, 0);
1415
Antonio Maiorano02a39532020-01-21 15:15:34 -05001416 result = ::function->makeVariable(T(type));
Nicolas Capens157ba262019-12-10 17:49:14 -05001417 auto bitcast = Ice::InstCast::create(::function, Ice::InstCast::Bitcast, result, vector.loadValue());
1418 ::basicBlock->appendInst(bitcast);
Nicolas Capens598f8d82016-09-26 15:09:10 -04001419 }
Nicolas Capens157ba262019-12-10 17:49:14 -05001420 else if(typeSize(type) == 8)
Nicolas Capens598f8d82016-09-26 15:09:10 -04001421 {
Antonio Maiorano2e6cd9c2020-02-28 15:48:22 -05001422 ASSERT_MSG(!atomic, "Emulated 64-bit loads are not atomic");
Nicolas Capens157ba262019-12-10 17:49:14 -05001423 auto pointer = RValue<Pointer<Byte>>(ptr);
1424 Int x = *Pointer<Int>(pointer);
1425 Int y = *Pointer<Int>(pointer + 4);
1426
1427 Int4 vector;
1428 vector = Insert(vector, x, 0);
1429 vector = Insert(vector, y, 1);
1430
Antonio Maiorano02a39532020-01-21 15:15:34 -05001431 result = ::function->makeVariable(T(type));
Nicolas Capens157ba262019-12-10 17:49:14 -05001432 auto bitcast = Ice::InstCast::create(::function, Ice::InstCast::Bitcast, result, vector.loadValue());
1433 ::basicBlock->appendInst(bitcast);
Nicolas Capens598f8d82016-09-26 15:09:10 -04001434 }
Ben Clayton713b8d32019-12-17 20:37:56 +00001435 else
1436 UNREACHABLE("typeSize(type): %d", int(typeSize(type)));
Nicolas Capens598f8d82016-09-26 15:09:10 -04001437 }
Nicolas Capens157ba262019-12-10 17:49:14 -05001438 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04001439 {
Ben Clayton713b8d32019-12-17 20:37:56 +00001440 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::LoadSubVector, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Antonio Maiorano02a39532020-01-21 15:15:34 -05001441 result = ::function->makeVariable(T(type));
Nicolas Capens33a77f72021-02-08 15:04:38 -05001442 auto load = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capens157ba262019-12-10 17:49:14 -05001443 load->addArg(ptr);
1444 load->addArg(::context->getConstantInt32(typeSize(type)));
1445 ::basicBlock->appendInst(load);
Nicolas Capens598f8d82016-09-26 15:09:10 -04001446 }
Nicolas Capens157ba262019-12-10 17:49:14 -05001447 }
1448 else
1449 {
Antonio Maiorano02a39532020-01-21 15:15:34 -05001450 result = sz::createLoad(::function, ::basicBlock, V(ptr), T(type), align);
Nicolas Capens157ba262019-12-10 17:49:14 -05001451 }
Nicolas Capens598f8d82016-09-26 15:09:10 -04001452
Antonio Maiorano02a39532020-01-21 15:15:34 -05001453 ASSERT(result);
Nicolas Capens157ba262019-12-10 17:49:14 -05001454 return V(result);
1455}
Nicolas Capens598f8d82016-09-26 15:09:10 -04001456
Nicolas Capens157ba262019-12-10 17:49:14 -05001457Value *Nucleus::createStore(Value *value, Value *ptr, Type *type, bool isVolatile, unsigned int align, bool atomic, std::memory_order memoryOrder)
1458{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001459 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano2e6cd9c2020-02-28 15:48:22 -05001460 validateAtomicAndMemoryOrderArgs(atomic, memoryOrder);
Nicolas Capens598f8d82016-09-26 15:09:10 -04001461
Ben Clayton713b8d32019-12-17 20:37:56 +00001462#if __has_feature(memory_sanitizer)
Antonio Maiorano2e6cd9c2020-02-28 15:48:22 -05001463 // Mark all (non-stack) memory writes as initialized by calling __msan_unpoison
Ben Clayton713b8d32019-12-17 20:37:56 +00001464 if(align != 0)
1465 {
1466 auto call = Ice::InstCall::create(::function, 2, nullptr, ::context->getConstantInt64(reinterpret_cast<intptr_t>(__msan_unpoison)), false);
1467 call->addArg(ptr);
1468 call->addArg(::context->getConstantInt64(typeSize(type)));
1469 ::basicBlock->appendInst(call);
1470 }
1471#endif
Nicolas Capens598f8d82016-09-26 15:09:10 -04001472
Nicolas Capens157ba262019-12-10 17:49:14 -05001473 int valueType = (int)reinterpret_cast<intptr_t>(type);
1474
Ben Clayton713b8d32019-12-17 20:37:56 +00001475 if((valueType & EmulatedBits) && (align != 0)) // Narrow vector not stored on stack.
Nicolas Capens157ba262019-12-10 17:49:14 -05001476 {
1477 if(emulateIntrinsics)
Antonio Maiorano9c0617c2019-11-29 10:43:16 -05001478 {
Nicolas Capens157ba262019-12-10 17:49:14 -05001479 if(typeSize(type) == 4)
1480 {
1481 Ice::Variable *vector = ::function->makeVariable(Ice::IceType_v4i32);
1482 auto bitcast = Ice::InstCast::create(::function, Ice::InstCast::Bitcast, vector, value);
1483 ::basicBlock->appendInst(bitcast);
1484
1485 RValue<Int4> v(V(vector));
1486
1487 auto pointer = RValue<Pointer<Byte>>(ptr);
1488 Int x = Extract(v, 0);
1489 *Pointer<Int>(pointer) = x;
1490 }
1491 else if(typeSize(type) == 8)
1492 {
Antonio Maiorano2e6cd9c2020-02-28 15:48:22 -05001493 ASSERT_MSG(!atomic, "Emulated 64-bit stores are not atomic");
Nicolas Capens157ba262019-12-10 17:49:14 -05001494 Ice::Variable *vector = ::function->makeVariable(Ice::IceType_v4i32);
1495 auto bitcast = Ice::InstCast::create(::function, Ice::InstCast::Bitcast, vector, value);
1496 ::basicBlock->appendInst(bitcast);
1497
1498 RValue<Int4> v(V(vector));
1499
1500 auto pointer = RValue<Pointer<Byte>>(ptr);
1501 Int x = Extract(v, 0);
1502 *Pointer<Int>(pointer) = x;
1503 Int y = Extract(v, 1);
1504 *Pointer<Int>(pointer + 4) = y;
1505 }
Ben Clayton713b8d32019-12-17 20:37:56 +00001506 else
1507 UNREACHABLE("typeSize(type): %d", int(typeSize(type)));
Antonio Maiorano9c0617c2019-11-29 10:43:16 -05001508 }
Nicolas Capens157ba262019-12-10 17:49:14 -05001509 else
Antonio Maiorano9c0617c2019-11-29 10:43:16 -05001510 {
Ben Clayton713b8d32019-12-17 20:37:56 +00001511 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::StoreSubVector, Ice::Intrinsics::SideEffects_T, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_T };
Nicolas Capens33a77f72021-02-08 15:04:38 -05001512 auto store = Ice::InstIntrinsic::create(::function, 3, nullptr, intrinsic);
Nicolas Capens157ba262019-12-10 17:49:14 -05001513 store->addArg(value);
1514 store->addArg(ptr);
1515 store->addArg(::context->getConstantInt32(typeSize(type)));
1516 ::basicBlock->appendInst(store);
Antonio Maiorano9c0617c2019-11-29 10:43:16 -05001517 }
Nicolas Capens157ba262019-12-10 17:49:14 -05001518 }
1519 else
1520 {
1521 ASSERT(value->getType() == T(type));
Antonio Maiorano9c0617c2019-11-29 10:43:16 -05001522
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001523 auto store = Ice::InstStore::create(::function, V(value), V(ptr), align);
Nicolas Capens157ba262019-12-10 17:49:14 -05001524 ::basicBlock->appendInst(store);
1525 }
1526
1527 return value;
1528}
1529
1530Value *Nucleus::createGEP(Value *ptr, Type *type, Value *index, bool unsignedIndex)
1531{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001532 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001533 ASSERT(index->getType() == Ice::IceType_i32);
1534
1535 if(auto *constant = llvm::dyn_cast<Ice::ConstantInteger32>(index))
1536 {
1537 int32_t offset = constant->getValue() * (int)typeSize(type);
1538
1539 if(offset == 0)
Ben Claytonb7eb3a82019-11-19 00:43:50 +00001540 {
Ben Claytonb7eb3a82019-11-19 00:43:50 +00001541 return ptr;
1542 }
1543
Nicolas Capens157ba262019-12-10 17:49:14 -05001544 return createAdd(ptr, createConstantInt(offset));
1545 }
Nicolas Capensbd65da92017-01-05 16:31:06 -05001546
Nicolas Capens157ba262019-12-10 17:49:14 -05001547 if(!Ice::isByteSizedType(T(type)))
1548 {
1549 index = createMul(index, createConstantInt((int)typeSize(type)));
1550 }
1551
Ben Clayton713b8d32019-12-17 20:37:56 +00001552 if(sizeof(void *) == 8)
Nicolas Capens157ba262019-12-10 17:49:14 -05001553 {
1554 if(unsignedIndex)
1555 {
1556 index = createZExt(index, T(Ice::IceType_i64));
1557 }
1558 else
1559 {
1560 index = createSExt(index, T(Ice::IceType_i64));
1561 }
1562 }
1563
1564 return createAdd(ptr, index);
1565}
1566
Antonio Maiorano370cba52019-12-31 11:36:07 -05001567static Value *createAtomicRMW(Ice::Intrinsics::AtomicRMWOperation rmwOp, Value *ptr, Value *value, std::memory_order memoryOrder)
1568{
1569 Ice::Variable *result = ::function->makeVariable(value->getType());
1570
1571 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::AtomicRMW, Ice::Intrinsics::SideEffects_T, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_T };
Nicolas Capens33a77f72021-02-08 15:04:38 -05001572 auto inst = Ice::InstIntrinsic::create(::function, 0, result, intrinsic);
Antonio Maiorano370cba52019-12-31 11:36:07 -05001573 auto op = ::context->getConstantInt32(rmwOp);
1574 auto order = ::context->getConstantInt32(stdToIceMemoryOrder(memoryOrder));
1575 inst->addArg(op);
1576 inst->addArg(ptr);
1577 inst->addArg(value);
1578 inst->addArg(order);
1579 ::basicBlock->appendInst(inst);
1580
1581 return V(result);
1582}
1583
Nicolas Capens157ba262019-12-10 17:49:14 -05001584Value *Nucleus::createAtomicAdd(Value *ptr, Value *value, std::memory_order memoryOrder)
1585{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001586 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano370cba52019-12-31 11:36:07 -05001587 return createAtomicRMW(Ice::Intrinsics::AtomicAdd, ptr, value, memoryOrder);
Nicolas Capens157ba262019-12-10 17:49:14 -05001588}
1589
1590Value *Nucleus::createAtomicSub(Value *ptr, Value *value, std::memory_order memoryOrder)
1591{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001592 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano370cba52019-12-31 11:36:07 -05001593 return createAtomicRMW(Ice::Intrinsics::AtomicSub, ptr, value, memoryOrder);
Nicolas Capens157ba262019-12-10 17:49:14 -05001594}
1595
1596Value *Nucleus::createAtomicAnd(Value *ptr, Value *value, std::memory_order memoryOrder)
1597{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001598 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano370cba52019-12-31 11:36:07 -05001599 return createAtomicRMW(Ice::Intrinsics::AtomicAnd, ptr, value, memoryOrder);
Nicolas Capens157ba262019-12-10 17:49:14 -05001600}
1601
1602Value *Nucleus::createAtomicOr(Value *ptr, Value *value, std::memory_order memoryOrder)
1603{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001604 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano370cba52019-12-31 11:36:07 -05001605 return createAtomicRMW(Ice::Intrinsics::AtomicOr, ptr, value, memoryOrder);
Nicolas Capens157ba262019-12-10 17:49:14 -05001606}
1607
1608Value *Nucleus::createAtomicXor(Value *ptr, Value *value, std::memory_order memoryOrder)
1609{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001610 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano370cba52019-12-31 11:36:07 -05001611 return createAtomicRMW(Ice::Intrinsics::AtomicXor, ptr, value, memoryOrder);
Nicolas Capens157ba262019-12-10 17:49:14 -05001612}
1613
1614Value *Nucleus::createAtomicExchange(Value *ptr, Value *value, std::memory_order memoryOrder)
1615{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001616 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano370cba52019-12-31 11:36:07 -05001617 return createAtomicRMW(Ice::Intrinsics::AtomicExchange, ptr, value, memoryOrder);
Nicolas Capens157ba262019-12-10 17:49:14 -05001618}
1619
1620Value *Nucleus::createAtomicCompareExchange(Value *ptr, Value *value, Value *compare, std::memory_order memoryOrderEqual, std::memory_order memoryOrderUnequal)
1621{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001622 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano370cba52019-12-31 11:36:07 -05001623 Ice::Variable *result = ::function->makeVariable(value->getType());
1624
1625 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::AtomicCmpxchg, Ice::Intrinsics::SideEffects_T, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_T };
Nicolas Capens33a77f72021-02-08 15:04:38 -05001626 auto inst = Ice::InstIntrinsic::create(::function, 0, result, intrinsic);
Antonio Maiorano370cba52019-12-31 11:36:07 -05001627 auto orderEq = ::context->getConstantInt32(stdToIceMemoryOrder(memoryOrderEqual));
1628 auto orderNeq = ::context->getConstantInt32(stdToIceMemoryOrder(memoryOrderUnequal));
1629 inst->addArg(ptr);
1630 inst->addArg(compare);
1631 inst->addArg(value);
1632 inst->addArg(orderEq);
1633 inst->addArg(orderNeq);
1634 ::basicBlock->appendInst(inst);
1635
1636 return V(result);
Nicolas Capens157ba262019-12-10 17:49:14 -05001637}
1638
1639static Value *createCast(Ice::InstCast::OpKind op, Value *v, Type *destType)
1640{
1641 if(v->getType() == T(destType))
1642 {
1643 return v;
1644 }
1645
1646 Ice::Variable *result = ::function->makeVariable(T(destType));
1647 Ice::InstCast *cast = Ice::InstCast::create(::function, op, result, v);
1648 ::basicBlock->appendInst(cast);
1649
1650 return V(result);
1651}
1652
1653Value *Nucleus::createTrunc(Value *v, Type *destType)
1654{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001655 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001656 return createCast(Ice::InstCast::Trunc, v, destType);
1657}
1658
1659Value *Nucleus::createZExt(Value *v, Type *destType)
1660{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001661 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001662 return createCast(Ice::InstCast::Zext, v, destType);
1663}
1664
1665Value *Nucleus::createSExt(Value *v, Type *destType)
1666{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001667 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001668 return createCast(Ice::InstCast::Sext, v, destType);
1669}
1670
1671Value *Nucleus::createFPToUI(Value *v, Type *destType)
1672{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001673 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001674 return createCast(Ice::InstCast::Fptoui, v, destType);
1675}
1676
1677Value *Nucleus::createFPToSI(Value *v, Type *destType)
1678{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001679 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001680 return createCast(Ice::InstCast::Fptosi, v, destType);
1681}
1682
1683Value *Nucleus::createSIToFP(Value *v, Type *destType)
1684{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001685 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001686 return createCast(Ice::InstCast::Sitofp, v, destType);
1687}
1688
1689Value *Nucleus::createFPTrunc(Value *v, Type *destType)
1690{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001691 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001692 return createCast(Ice::InstCast::Fptrunc, v, destType);
1693}
1694
1695Value *Nucleus::createFPExt(Value *v, Type *destType)
1696{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001697 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001698 return createCast(Ice::InstCast::Fpext, v, destType);
1699}
1700
1701Value *Nucleus::createBitCast(Value *v, Type *destType)
1702{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001703 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001704 // Bitcasts must be between types of the same logical size. But with emulated narrow vectors we need
1705 // support for casting between scalars and wide vectors. For platforms where this is not supported,
1706 // emulate them by writing to the stack and reading back as the destination type.
1707 if(emulateMismatchedBitCast)
1708 {
1709 if(!Ice::isVectorType(v->getType()) && Ice::isVectorType(T(destType)))
1710 {
1711 Value *address = allocateStackVariable(destType);
1712 createStore(v, address, T(v->getType()));
1713 return createLoad(address, destType);
1714 }
1715 else if(Ice::isVectorType(v->getType()) && !Ice::isVectorType(T(destType)))
1716 {
1717 Value *address = allocateStackVariable(T(v->getType()));
1718 createStore(v, address, T(v->getType()));
1719 return createLoad(address, destType);
1720 }
1721 }
1722
1723 return createCast(Ice::InstCast::Bitcast, v, destType);
1724}
1725
1726static Value *createIntCompare(Ice::InstIcmp::ICond condition, Value *lhs, Value *rhs)
1727{
1728 ASSERT(lhs->getType() == rhs->getType());
1729
1730 auto result = ::function->makeVariable(Ice::isScalarIntegerType(lhs->getType()) ? Ice::IceType_i1 : lhs->getType());
1731 auto cmp = Ice::InstIcmp::create(::function, condition, result, lhs, rhs);
1732 ::basicBlock->appendInst(cmp);
1733
1734 return V(result);
1735}
1736
Nicolas Capens157ba262019-12-10 17:49:14 -05001737Value *Nucleus::createICmpEQ(Value *lhs, Value *rhs)
1738{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001739 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001740 return createIntCompare(Ice::InstIcmp::Eq, lhs, rhs);
1741}
1742
1743Value *Nucleus::createICmpNE(Value *lhs, Value *rhs)
1744{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001745 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001746 return createIntCompare(Ice::InstIcmp::Ne, lhs, rhs);
1747}
1748
1749Value *Nucleus::createICmpUGT(Value *lhs, Value *rhs)
1750{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001751 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001752 return createIntCompare(Ice::InstIcmp::Ugt, lhs, rhs);
1753}
1754
1755Value *Nucleus::createICmpUGE(Value *lhs, Value *rhs)
1756{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001757 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001758 return createIntCompare(Ice::InstIcmp::Uge, lhs, rhs);
1759}
1760
1761Value *Nucleus::createICmpULT(Value *lhs, Value *rhs)
1762{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001763 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001764 return createIntCompare(Ice::InstIcmp::Ult, lhs, rhs);
1765}
1766
1767Value *Nucleus::createICmpULE(Value *lhs, Value *rhs)
1768{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001769 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001770 return createIntCompare(Ice::InstIcmp::Ule, lhs, rhs);
1771}
1772
1773Value *Nucleus::createICmpSGT(Value *lhs, Value *rhs)
1774{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001775 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001776 return createIntCompare(Ice::InstIcmp::Sgt, lhs, rhs);
1777}
1778
1779Value *Nucleus::createICmpSGE(Value *lhs, Value *rhs)
1780{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001781 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001782 return createIntCompare(Ice::InstIcmp::Sge, lhs, rhs);
1783}
1784
1785Value *Nucleus::createICmpSLT(Value *lhs, Value *rhs)
1786{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001787 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001788 return createIntCompare(Ice::InstIcmp::Slt, lhs, rhs);
1789}
1790
1791Value *Nucleus::createICmpSLE(Value *lhs, Value *rhs)
1792{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001793 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001794 return createIntCompare(Ice::InstIcmp::Sle, lhs, rhs);
1795}
1796
1797static Value *createFloatCompare(Ice::InstFcmp::FCond condition, Value *lhs, Value *rhs)
1798{
1799 ASSERT(lhs->getType() == rhs->getType());
1800 ASSERT(Ice::isScalarFloatingType(lhs->getType()) || lhs->getType() == Ice::IceType_v4f32);
1801
1802 auto result = ::function->makeVariable(Ice::isScalarFloatingType(lhs->getType()) ? Ice::IceType_i1 : Ice::IceType_v4i32);
1803 auto cmp = Ice::InstFcmp::create(::function, condition, result, lhs, rhs);
1804 ::basicBlock->appendInst(cmp);
1805
1806 return V(result);
1807}
1808
1809Value *Nucleus::createFCmpOEQ(Value *lhs, Value *rhs)
1810{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001811 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001812 return createFloatCompare(Ice::InstFcmp::Oeq, lhs, rhs);
1813}
1814
1815Value *Nucleus::createFCmpOGT(Value *lhs, Value *rhs)
1816{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001817 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001818 return createFloatCompare(Ice::InstFcmp::Ogt, lhs, rhs);
1819}
1820
1821Value *Nucleus::createFCmpOGE(Value *lhs, Value *rhs)
1822{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001823 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001824 return createFloatCompare(Ice::InstFcmp::Oge, lhs, rhs);
1825}
1826
1827Value *Nucleus::createFCmpOLT(Value *lhs, Value *rhs)
1828{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001829 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001830 return createFloatCompare(Ice::InstFcmp::Olt, lhs, rhs);
1831}
1832
1833Value *Nucleus::createFCmpOLE(Value *lhs, Value *rhs)
1834{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001835 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001836 return createFloatCompare(Ice::InstFcmp::Ole, lhs, rhs);
1837}
1838
1839Value *Nucleus::createFCmpONE(Value *lhs, Value *rhs)
1840{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001841 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001842 return createFloatCompare(Ice::InstFcmp::One, lhs, rhs);
1843}
1844
1845Value *Nucleus::createFCmpORD(Value *lhs, Value *rhs)
1846{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001847 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001848 return createFloatCompare(Ice::InstFcmp::Ord, lhs, rhs);
1849}
1850
1851Value *Nucleus::createFCmpUNO(Value *lhs, Value *rhs)
1852{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001853 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001854 return createFloatCompare(Ice::InstFcmp::Uno, lhs, rhs);
1855}
1856
1857Value *Nucleus::createFCmpUEQ(Value *lhs, Value *rhs)
1858{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001859 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001860 return createFloatCompare(Ice::InstFcmp::Ueq, lhs, rhs);
1861}
1862
1863Value *Nucleus::createFCmpUGT(Value *lhs, Value *rhs)
1864{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001865 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001866 return createFloatCompare(Ice::InstFcmp::Ugt, lhs, rhs);
1867}
1868
1869Value *Nucleus::createFCmpUGE(Value *lhs, Value *rhs)
1870{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001871 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001872 return createFloatCompare(Ice::InstFcmp::Uge, lhs, rhs);
1873}
1874
1875Value *Nucleus::createFCmpULT(Value *lhs, Value *rhs)
1876{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001877 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001878 return createFloatCompare(Ice::InstFcmp::Ult, lhs, rhs);
1879}
1880
1881Value *Nucleus::createFCmpULE(Value *lhs, Value *rhs)
1882{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001883 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001884 return createFloatCompare(Ice::InstFcmp::Ule, lhs, rhs);
1885}
1886
1887Value *Nucleus::createFCmpUNE(Value *lhs, Value *rhs)
1888{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001889 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001890 return createFloatCompare(Ice::InstFcmp::Une, lhs, rhs);
1891}
1892
1893Value *Nucleus::createExtractElement(Value *vector, Type *type, int index)
1894{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001895 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001896 auto result = ::function->makeVariable(T(type));
Antonio Maiorano62427e02020-02-13 09:18:05 -05001897 auto extract = Ice::InstExtractElement::create(::function, result, V(vector), ::context->getConstantInt32(index));
Nicolas Capens157ba262019-12-10 17:49:14 -05001898 ::basicBlock->appendInst(extract);
1899
1900 return V(result);
1901}
1902
1903Value *Nucleus::createInsertElement(Value *vector, Value *element, int index)
1904{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001905 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001906 auto result = ::function->makeVariable(vector->getType());
1907 auto insert = Ice::InstInsertElement::create(::function, result, vector, element, ::context->getConstantInt32(index));
1908 ::basicBlock->appendInst(insert);
1909
1910 return V(result);
1911}
1912
1913Value *Nucleus::createShuffleVector(Value *V1, Value *V2, const int *select)
1914{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001915 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001916 ASSERT(V1->getType() == V2->getType());
1917
1918 int size = Ice::typeNumElements(V1->getType());
1919 auto result = ::function->makeVariable(V1->getType());
1920 auto shuffle = Ice::InstShuffleVector::create(::function, result, V1, V2);
1921
1922 for(int i = 0; i < size; i++)
1923 {
1924 shuffle->addIndex(llvm::cast<Ice::ConstantInteger32>(::context->getConstantInt32(select[i])));
1925 }
1926
1927 ::basicBlock->appendInst(shuffle);
1928
1929 return V(result);
1930}
1931
1932Value *Nucleus::createSelect(Value *C, Value *ifTrue, Value *ifFalse)
1933{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001934 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001935 ASSERT(ifTrue->getType() == ifFalse->getType());
1936
1937 auto result = ::function->makeVariable(ifTrue->getType());
1938 auto *select = Ice::InstSelect::create(::function, result, C, ifTrue, ifFalse);
1939 ::basicBlock->appendInst(select);
1940
1941 return V(result);
1942}
1943
1944SwitchCases *Nucleus::createSwitch(Value *control, BasicBlock *defaultBranch, unsigned numCases)
1945{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001946 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001947 auto switchInst = Ice::InstSwitch::create(::function, numCases, control, defaultBranch);
1948 ::basicBlock->appendInst(switchInst);
1949
Ben Clayton713b8d32019-12-17 20:37:56 +00001950 return reinterpret_cast<SwitchCases *>(switchInst);
Nicolas Capens157ba262019-12-10 17:49:14 -05001951}
1952
1953void Nucleus::addSwitchCase(SwitchCases *switchCases, int label, BasicBlock *branch)
1954{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001955 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001956 switchCases->addBranch(label, label, branch);
1957}
1958
1959void Nucleus::createUnreachable()
1960{
Antonio Maioranoaae33732020-02-14 14:52:34 -05001961 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05001962 Ice::InstUnreachable *unreachable = Ice::InstUnreachable::create(::function);
1963 ::basicBlock->appendInst(unreachable);
1964}
1965
Antonio Maiorano62427e02020-02-13 09:18:05 -05001966Type *Nucleus::getType(Value *value)
1967{
1968 return T(V(value)->getType());
1969}
1970
1971Type *Nucleus::getContainedType(Type *vectorType)
1972{
1973 Ice::Type vecTy = T(vectorType);
1974 switch(vecTy)
1975 {
Nicolas Capens112faf42019-12-13 17:32:26 -05001976 case Ice::IceType_v4i1: return T(Ice::IceType_i1);
1977 case Ice::IceType_v8i1: return T(Ice::IceType_i1);
1978 case Ice::IceType_v16i1: return T(Ice::IceType_i1);
1979 case Ice::IceType_v16i8: return T(Ice::IceType_i8);
1980 case Ice::IceType_v8i16: return T(Ice::IceType_i16);
1981 case Ice::IceType_v4i32: return T(Ice::IceType_i32);
1982 case Ice::IceType_v4f32: return T(Ice::IceType_f32);
1983 default:
1984 ASSERT_MSG(false, "getContainedType: input type is not a vector type");
1985 return {};
Antonio Maiorano62427e02020-02-13 09:18:05 -05001986 }
1987}
1988
Nicolas Capens157ba262019-12-10 17:49:14 -05001989Type *Nucleus::getPointerType(Type *ElementType)
1990{
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05001991 return T(sz::getPointerType(T(ElementType)));
Nicolas Capens157ba262019-12-10 17:49:14 -05001992}
1993
Antonio Maiorano62427e02020-02-13 09:18:05 -05001994static constexpr Ice::Type getNaturalIntType()
1995{
1996 constexpr size_t intSize = sizeof(int);
1997 static_assert(intSize == 4 || intSize == 8, "");
1998 return intSize == 4 ? Ice::IceType_i32 : Ice::IceType_i64;
1999}
2000
2001Type *Nucleus::getPrintfStorageType(Type *valueType)
2002{
2003 Ice::Type valueTy = T(valueType);
2004 switch(valueTy)
2005 {
Nicolas Capens112faf42019-12-13 17:32:26 -05002006 case Ice::IceType_i32:
2007 return T(getNaturalIntType());
Antonio Maiorano62427e02020-02-13 09:18:05 -05002008
Nicolas Capens112faf42019-12-13 17:32:26 -05002009 case Ice::IceType_f32:
2010 return T(Ice::IceType_f64);
Antonio Maiorano62427e02020-02-13 09:18:05 -05002011
Nicolas Capens112faf42019-12-13 17:32:26 -05002012 default:
2013 UNIMPLEMENTED_NO_BUG("getPrintfStorageType: add more cases as needed");
2014 return {};
Antonio Maiorano62427e02020-02-13 09:18:05 -05002015 }
2016}
2017
Nicolas Capens157ba262019-12-10 17:49:14 -05002018Value *Nucleus::createNullValue(Type *Ty)
2019{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002020 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002021 if(Ice::isVectorType(T(Ty)))
2022 {
2023 ASSERT(Ice::typeNumElements(T(Ty)) <= 16);
Ben Clayton713b8d32019-12-17 20:37:56 +00002024 int64_t c[16] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };
Nicolas Capens157ba262019-12-10 17:49:14 -05002025 return createConstantVector(c, Ty);
2026 }
2027 else
2028 {
2029 return V(::context->getConstantZero(T(Ty)));
2030 }
2031}
2032
2033Value *Nucleus::createConstantLong(int64_t i)
2034{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002035 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002036 return V(::context->getConstantInt64(i));
2037}
2038
2039Value *Nucleus::createConstantInt(int i)
2040{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002041 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002042 return V(::context->getConstantInt32(i));
2043}
2044
2045Value *Nucleus::createConstantInt(unsigned int i)
2046{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002047 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002048 return V(::context->getConstantInt32(i));
2049}
2050
2051Value *Nucleus::createConstantBool(bool b)
2052{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002053 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002054 return V(::context->getConstantInt1(b));
2055}
2056
2057Value *Nucleus::createConstantByte(signed char i)
2058{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002059 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002060 return V(::context->getConstantInt8(i));
2061}
2062
2063Value *Nucleus::createConstantByte(unsigned char i)
2064{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002065 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002066 return V(::context->getConstantInt8(i));
2067}
2068
2069Value *Nucleus::createConstantShort(short i)
2070{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002071 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002072 return V(::context->getConstantInt16(i));
2073}
2074
2075Value *Nucleus::createConstantShort(unsigned short i)
2076{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002077 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002078 return V(::context->getConstantInt16(i));
2079}
2080
2081Value *Nucleus::createConstantFloat(float x)
2082{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002083 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002084 return V(::context->getConstantFloat(x));
2085}
2086
2087Value *Nucleus::createNullPointer(Type *Ty)
2088{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002089 RR_DEBUG_INFO_UPDATE_LOC();
Ben Clayton713b8d32019-12-17 20:37:56 +00002090 return createNullValue(T(sizeof(void *) == 8 ? Ice::IceType_i64 : Ice::IceType_i32));
Nicolas Capens157ba262019-12-10 17:49:14 -05002091}
2092
Antonio Maiorano02a39532020-01-21 15:15:34 -05002093static Ice::Constant *IceConstantData(void const *data, size_t size, size_t alignment = 1)
2094{
2095 return sz::getConstantPointer(::context, ::routine->addConstantData(data, size, alignment));
2096}
2097
Nicolas Capens157ba262019-12-10 17:49:14 -05002098Value *Nucleus::createConstantVector(const int64_t *constants, Type *type)
2099{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002100 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002101 const int vectorSize = 16;
2102 ASSERT(Ice::typeWidthInBytes(T(type)) == vectorSize);
2103 const int alignment = vectorSize;
Nicolas Capens157ba262019-12-10 17:49:14 -05002104
2105 const int64_t *i = constants;
Ben Clayton713b8d32019-12-17 20:37:56 +00002106 const double *f = reinterpret_cast<const double *>(constants);
Antonio Maiorano02a39532020-01-21 15:15:34 -05002107
Antonio Maioranoa0957112020-03-04 15:06:19 -05002108 // TODO(b/148082873): Fix global variable constants when generating multiple functions
Antonio Maiorano02a39532020-01-21 15:15:34 -05002109 Ice::Constant *ptr = nullptr;
Nicolas Capens157ba262019-12-10 17:49:14 -05002110
2111 switch((int)reinterpret_cast<intptr_t>(type))
2112 {
Nicolas Capens112faf42019-12-13 17:32:26 -05002113 case Ice::IceType_v4i32:
2114 case Ice::IceType_v4i1:
Nicolas Capens157ba262019-12-10 17:49:14 -05002115 {
Ben Clayton713b8d32019-12-17 20:37:56 +00002116 const int initializer[4] = { (int)i[0], (int)i[1], (int)i[2], (int)i[3] };
Nicolas Capens157ba262019-12-10 17:49:14 -05002117 static_assert(sizeof(initializer) == vectorSize, "!");
Antonio Maiorano02a39532020-01-21 15:15:34 -05002118 ptr = IceConstantData(initializer, vectorSize, alignment);
Nicolas Capens157ba262019-12-10 17:49:14 -05002119 }
2120 break;
Nicolas Capens112faf42019-12-13 17:32:26 -05002121 case Ice::IceType_v4f32:
Nicolas Capens157ba262019-12-10 17:49:14 -05002122 {
Ben Clayton713b8d32019-12-17 20:37:56 +00002123 const float initializer[4] = { (float)f[0], (float)f[1], (float)f[2], (float)f[3] };
Nicolas Capens157ba262019-12-10 17:49:14 -05002124 static_assert(sizeof(initializer) == vectorSize, "!");
Antonio Maiorano02a39532020-01-21 15:15:34 -05002125 ptr = IceConstantData(initializer, vectorSize, alignment);
Nicolas Capens157ba262019-12-10 17:49:14 -05002126 }
2127 break;
Nicolas Capens112faf42019-12-13 17:32:26 -05002128 case Ice::IceType_v8i16:
2129 case Ice::IceType_v8i1:
Nicolas Capens157ba262019-12-10 17:49:14 -05002130 {
Ben Clayton713b8d32019-12-17 20:37:56 +00002131 const short initializer[8] = { (short)i[0], (short)i[1], (short)i[2], (short)i[3], (short)i[4], (short)i[5], (short)i[6], (short)i[7] };
Nicolas Capens157ba262019-12-10 17:49:14 -05002132 static_assert(sizeof(initializer) == vectorSize, "!");
Antonio Maiorano02a39532020-01-21 15:15:34 -05002133 ptr = IceConstantData(initializer, vectorSize, alignment);
Nicolas Capens157ba262019-12-10 17:49:14 -05002134 }
2135 break;
Nicolas Capens112faf42019-12-13 17:32:26 -05002136 case Ice::IceType_v16i8:
2137 case Ice::IceType_v16i1:
Nicolas Capens157ba262019-12-10 17:49:14 -05002138 {
Ben Clayton713b8d32019-12-17 20:37:56 +00002139 const char initializer[16] = { (char)i[0], (char)i[1], (char)i[2], (char)i[3], (char)i[4], (char)i[5], (char)i[6], (char)i[7], (char)i[8], (char)i[9], (char)i[10], (char)i[11], (char)i[12], (char)i[13], (char)i[14], (char)i[15] };
Nicolas Capens157ba262019-12-10 17:49:14 -05002140 static_assert(sizeof(initializer) == vectorSize, "!");
Antonio Maiorano02a39532020-01-21 15:15:34 -05002141 ptr = IceConstantData(initializer, vectorSize, alignment);
Nicolas Capens157ba262019-12-10 17:49:14 -05002142 }
2143 break;
Nicolas Capens112faf42019-12-13 17:32:26 -05002144 case Type_v2i32:
Nicolas Capens157ba262019-12-10 17:49:14 -05002145 {
Ben Clayton713b8d32019-12-17 20:37:56 +00002146 const int initializer[4] = { (int)i[0], (int)i[1], (int)i[0], (int)i[1] };
Nicolas Capens157ba262019-12-10 17:49:14 -05002147 static_assert(sizeof(initializer) == vectorSize, "!");
Antonio Maiorano02a39532020-01-21 15:15:34 -05002148 ptr = IceConstantData(initializer, vectorSize, alignment);
Nicolas Capens157ba262019-12-10 17:49:14 -05002149 }
2150 break;
Nicolas Capens112faf42019-12-13 17:32:26 -05002151 case Type_v2f32:
Nicolas Capens157ba262019-12-10 17:49:14 -05002152 {
Ben Clayton713b8d32019-12-17 20:37:56 +00002153 const float initializer[4] = { (float)f[0], (float)f[1], (float)f[0], (float)f[1] };
Nicolas Capens157ba262019-12-10 17:49:14 -05002154 static_assert(sizeof(initializer) == vectorSize, "!");
Antonio Maiorano02a39532020-01-21 15:15:34 -05002155 ptr = IceConstantData(initializer, vectorSize, alignment);
Nicolas Capens157ba262019-12-10 17:49:14 -05002156 }
2157 break;
Nicolas Capens112faf42019-12-13 17:32:26 -05002158 case Type_v4i16:
Nicolas Capens157ba262019-12-10 17:49:14 -05002159 {
Ben Clayton713b8d32019-12-17 20:37:56 +00002160 const short initializer[8] = { (short)i[0], (short)i[1], (short)i[2], (short)i[3], (short)i[0], (short)i[1], (short)i[2], (short)i[3] };
Nicolas Capens157ba262019-12-10 17:49:14 -05002161 static_assert(sizeof(initializer) == vectorSize, "!");
Antonio Maiorano02a39532020-01-21 15:15:34 -05002162 ptr = IceConstantData(initializer, vectorSize, alignment);
Nicolas Capens157ba262019-12-10 17:49:14 -05002163 }
2164 break;
Nicolas Capens112faf42019-12-13 17:32:26 -05002165 case Type_v8i8:
Nicolas Capens157ba262019-12-10 17:49:14 -05002166 {
Ben Clayton713b8d32019-12-17 20:37:56 +00002167 const char initializer[16] = { (char)i[0], (char)i[1], (char)i[2], (char)i[3], (char)i[4], (char)i[5], (char)i[6], (char)i[7], (char)i[0], (char)i[1], (char)i[2], (char)i[3], (char)i[4], (char)i[5], (char)i[6], (char)i[7] };
Nicolas Capens157ba262019-12-10 17:49:14 -05002168 static_assert(sizeof(initializer) == vectorSize, "!");
Antonio Maiorano02a39532020-01-21 15:15:34 -05002169 ptr = IceConstantData(initializer, vectorSize, alignment);
Nicolas Capens157ba262019-12-10 17:49:14 -05002170 }
2171 break;
Nicolas Capens112faf42019-12-13 17:32:26 -05002172 case Type_v4i8:
Nicolas Capens157ba262019-12-10 17:49:14 -05002173 {
Ben Clayton713b8d32019-12-17 20:37:56 +00002174 const char initializer[16] = { (char)i[0], (char)i[1], (char)i[2], (char)i[3], (char)i[0], (char)i[1], (char)i[2], (char)i[3], (char)i[0], (char)i[1], (char)i[2], (char)i[3], (char)i[0], (char)i[1], (char)i[2], (char)i[3] };
Nicolas Capens157ba262019-12-10 17:49:14 -05002175 static_assert(sizeof(initializer) == vectorSize, "!");
Antonio Maiorano02a39532020-01-21 15:15:34 -05002176 ptr = IceConstantData(initializer, vectorSize, alignment);
Nicolas Capens157ba262019-12-10 17:49:14 -05002177 }
2178 break;
Nicolas Capens112faf42019-12-13 17:32:26 -05002179 default:
2180 UNREACHABLE("Unknown constant vector type: %d", (int)reinterpret_cast<intptr_t>(type));
Nicolas Capens157ba262019-12-10 17:49:14 -05002181 }
2182
Antonio Maiorano02a39532020-01-21 15:15:34 -05002183 ASSERT(ptr);
Nicolas Capens157ba262019-12-10 17:49:14 -05002184
Antonio Maiorano02a39532020-01-21 15:15:34 -05002185 Ice::Variable *result = sz::createLoad(::function, ::basicBlock, ptr, T(type), alignment);
Nicolas Capens157ba262019-12-10 17:49:14 -05002186 return V(result);
2187}
2188
2189Value *Nucleus::createConstantVector(const double *constants, Type *type)
2190{
Ben Clayton713b8d32019-12-17 20:37:56 +00002191 return createConstantVector((const int64_t *)constants, type);
Nicolas Capens157ba262019-12-10 17:49:14 -05002192}
2193
Antonio Maiorano62427e02020-02-13 09:18:05 -05002194Value *Nucleus::createConstantString(const char *v)
2195{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002196 // NOTE: Do not call RR_DEBUG_INFO_UPDATE_LOC() here to avoid recursion when called from rr::Printv
Antonio Maiorano62427e02020-02-13 09:18:05 -05002197 return V(IceConstantData(v, strlen(v) + 1));
2198}
2199
Nicolas Capens54313fb2021-02-19 14:26:27 -05002200void Nucleus::setOptimizerCallback(OptimizerCallback *callback)
2201{
2202 ::optimizerCallback = callback;
2203}
2204
Nicolas Capens519cf222020-05-08 15:27:19 -04002205Type *Void::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002206{
2207 return T(Ice::IceType_void);
2208}
2209
Nicolas Capens519cf222020-05-08 15:27:19 -04002210Type *Bool::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002211{
2212 return T(Ice::IceType_i1);
2213}
2214
Nicolas Capens519cf222020-05-08 15:27:19 -04002215Type *Byte::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002216{
2217 return T(Ice::IceType_i8);
2218}
2219
Nicolas Capens519cf222020-05-08 15:27:19 -04002220Type *SByte::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002221{
2222 return T(Ice::IceType_i8);
2223}
2224
Nicolas Capens519cf222020-05-08 15:27:19 -04002225Type *Short::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002226{
2227 return T(Ice::IceType_i16);
2228}
2229
Nicolas Capens519cf222020-05-08 15:27:19 -04002230Type *UShort::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002231{
2232 return T(Ice::IceType_i16);
2233}
2234
Nicolas Capens519cf222020-05-08 15:27:19 -04002235Type *Byte4::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002236{
2237 return T(Type_v4i8);
2238}
2239
Nicolas Capens519cf222020-05-08 15:27:19 -04002240Type *SByte4::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002241{
2242 return T(Type_v4i8);
2243}
2244
Ben Clayton713b8d32019-12-17 20:37:56 +00002245namespace {
2246RValue<Byte> SaturateUnsigned(RValue<Short> x)
Nicolas Capens157ba262019-12-10 17:49:14 -05002247{
Ben Clayton713b8d32019-12-17 20:37:56 +00002248 return Byte(IfThenElse(Int(x) > 0xFF, Int(0xFF), IfThenElse(Int(x) < 0, Int(0), Int(x))));
Nicolas Capens157ba262019-12-10 17:49:14 -05002249}
2250
Ben Clayton713b8d32019-12-17 20:37:56 +00002251RValue<Byte> Extract(RValue<Byte8> val, int i)
2252{
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002253 return RValue<Byte>(Nucleus::createExtractElement(val.value(), Byte::type(), i));
Ben Clayton713b8d32019-12-17 20:37:56 +00002254}
2255
2256RValue<Byte8> Insert(RValue<Byte8> val, RValue<Byte> element, int i)
2257{
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002258 return RValue<Byte8>(Nucleus::createInsertElement(val.value(), element.value(), i));
Ben Clayton713b8d32019-12-17 20:37:56 +00002259}
2260} // namespace
2261
Nicolas Capens157ba262019-12-10 17:49:14 -05002262RValue<Byte8> AddSat(RValue<Byte8> x, RValue<Byte8> y)
2263{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002264 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002265 if(emulateIntrinsics)
2266 {
2267 Byte8 result;
2268 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 0)) + Int(Extract(y, 0)))), 0);
2269 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 1)) + Int(Extract(y, 1)))), 1);
2270 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 2)) + Int(Extract(y, 2)))), 2);
2271 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 3)) + Int(Extract(y, 3)))), 3);
2272 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 4)) + Int(Extract(y, 4)))), 4);
2273 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 5)) + Int(Extract(y, 5)))), 5);
2274 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 6)) + Int(Extract(y, 6)))), 6);
2275 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 7)) + Int(Extract(y, 7)))), 7);
2276
2277 return result;
2278 }
2279 else
2280 {
2281 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v16i8);
Ben Clayton713b8d32019-12-17 20:37:56 +00002282 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::AddSaturateUnsigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002283 auto paddusb = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002284 paddusb->addArg(x.value());
2285 paddusb->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002286 ::basicBlock->appendInst(paddusb);
2287
2288 return RValue<Byte8>(V(result));
2289 }
2290}
2291
2292RValue<Byte8> SubSat(RValue<Byte8> x, RValue<Byte8> y)
2293{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002294 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002295 if(emulateIntrinsics)
2296 {
2297 Byte8 result;
2298 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 0)) - Int(Extract(y, 0)))), 0);
2299 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 1)) - Int(Extract(y, 1)))), 1);
2300 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 2)) - Int(Extract(y, 2)))), 2);
2301 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 3)) - Int(Extract(y, 3)))), 3);
2302 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 4)) - Int(Extract(y, 4)))), 4);
2303 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 5)) - Int(Extract(y, 5)))), 5);
2304 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 6)) - Int(Extract(y, 6)))), 6);
2305 result = Insert(result, SaturateUnsigned(Short(Int(Extract(x, 7)) - Int(Extract(y, 7)))), 7);
2306
2307 return result;
2308 }
2309 else
2310 {
2311 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v16i8);
Ben Clayton713b8d32019-12-17 20:37:56 +00002312 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::SubtractSaturateUnsigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002313 auto psubusw = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002314 psubusw->addArg(x.value());
2315 psubusw->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002316 ::basicBlock->appendInst(psubusw);
2317
2318 return RValue<Byte8>(V(result));
2319 }
2320}
2321
2322RValue<SByte> Extract(RValue<SByte8> val, int i)
2323{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002324 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002325 return RValue<SByte>(Nucleus::createExtractElement(val.value(), SByte::type(), i));
Nicolas Capens157ba262019-12-10 17:49:14 -05002326}
2327
2328RValue<SByte8> Insert(RValue<SByte8> val, RValue<SByte> element, int i)
2329{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002330 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002331 return RValue<SByte8>(Nucleus::createInsertElement(val.value(), element.value(), i));
Nicolas Capens157ba262019-12-10 17:49:14 -05002332}
2333
2334RValue<SByte8> operator>>(RValue<SByte8> lhs, unsigned char rhs)
2335{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002336 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002337 if(emulateIntrinsics)
2338 {
2339 SByte8 result;
2340 result = Insert(result, Extract(lhs, 0) >> SByte(rhs), 0);
2341 result = Insert(result, Extract(lhs, 1) >> SByte(rhs), 1);
2342 result = Insert(result, Extract(lhs, 2) >> SByte(rhs), 2);
2343 result = Insert(result, Extract(lhs, 3) >> SByte(rhs), 3);
2344 result = Insert(result, Extract(lhs, 4) >> SByte(rhs), 4);
2345 result = Insert(result, Extract(lhs, 5) >> SByte(rhs), 5);
2346 result = Insert(result, Extract(lhs, 6) >> SByte(rhs), 6);
2347 result = Insert(result, Extract(lhs, 7) >> SByte(rhs), 7);
2348
2349 return result;
2350 }
2351 else
2352 {
Ben Clayton713b8d32019-12-17 20:37:56 +00002353#if defined(__i386__) || defined(__x86_64__)
2354 // SSE2 doesn't support byte vector shifts, so shift as shorts and recombine.
2355 RValue<Short4> hi = (As<Short4>(lhs) >> rhs) & Short4(0xFF00u);
2356 RValue<Short4> lo = As<Short4>(As<UShort4>((As<Short4>(lhs) << 8) >> rhs) >> 8);
Nicolas Capens157ba262019-12-10 17:49:14 -05002357
Ben Clayton713b8d32019-12-17 20:37:56 +00002358 return As<SByte8>(hi | lo);
2359#else
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002360 return RValue<SByte8>(Nucleus::createAShr(lhs.value(), V(::context->getConstantInt32(rhs))));
Ben Clayton713b8d32019-12-17 20:37:56 +00002361#endif
Nicolas Capens598f8d82016-09-26 15:09:10 -04002362 }
Nicolas Capens157ba262019-12-10 17:49:14 -05002363}
Nicolas Capens598f8d82016-09-26 15:09:10 -04002364
Nicolas Capens157ba262019-12-10 17:49:14 -05002365RValue<Int> SignMask(RValue<Byte8> x)
2366{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002367 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002368 if(emulateIntrinsics || CPUID::ARM)
Nicolas Capens598f8d82016-09-26 15:09:10 -04002369 {
Nicolas Capens157ba262019-12-10 17:49:14 -05002370 Byte8 xx = As<Byte8>(As<SByte8>(x) >> 7) & Byte8(0x01, 0x02, 0x04, 0x08, 0x10, 0x20, 0x40, 0x80);
2371 return Int(Extract(xx, 0)) | Int(Extract(xx, 1)) | Int(Extract(xx, 2)) | Int(Extract(xx, 3)) | Int(Extract(xx, 4)) | Int(Extract(xx, 5)) | Int(Extract(xx, 6)) | Int(Extract(xx, 7));
Nicolas Capens598f8d82016-09-26 15:09:10 -04002372 }
Nicolas Capens157ba262019-12-10 17:49:14 -05002373 else
Ben Clayton55bc37a2019-07-04 12:17:12 +01002374 {
Nicolas Capens157ba262019-12-10 17:49:14 -05002375 Ice::Variable *result = ::function->makeVariable(Ice::IceType_i32);
Ben Clayton713b8d32019-12-17 20:37:56 +00002376 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::SignMask, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002377 auto movmsk = Ice::InstIntrinsic::create(::function, 1, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002378 movmsk->addArg(x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002379 ::basicBlock->appendInst(movmsk);
Ben Clayton55bc37a2019-07-04 12:17:12 +01002380
Nicolas Capens157ba262019-12-10 17:49:14 -05002381 return RValue<Int>(V(result)) & 0xFF;
Ben Clayton55bc37a2019-07-04 12:17:12 +01002382 }
Nicolas Capens157ba262019-12-10 17:49:14 -05002383}
Nicolas Capens598f8d82016-09-26 15:09:10 -04002384
2385// RValue<Byte8> CmpGT(RValue<Byte8> x, RValue<Byte8> y)
2386// {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002387// return RValue<Byte8>(createIntCompare(Ice::InstIcmp::Ugt, x.value(), y.value()));
Nicolas Capens598f8d82016-09-26 15:09:10 -04002388// }
2389
Nicolas Capens157ba262019-12-10 17:49:14 -05002390RValue<Byte8> CmpEQ(RValue<Byte8> x, RValue<Byte8> y)
2391{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002392 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002393 return RValue<Byte8>(Nucleus::createICmpEQ(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05002394}
Nicolas Capens598f8d82016-09-26 15:09:10 -04002395
Nicolas Capens519cf222020-05-08 15:27:19 -04002396Type *Byte8::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002397{
2398 return T(Type_v8i8);
2399}
Nicolas Capens598f8d82016-09-26 15:09:10 -04002400
Nicolas Capens598f8d82016-09-26 15:09:10 -04002401// RValue<SByte8> operator<<(RValue<SByte8> lhs, unsigned char rhs)
2402// {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002403// return RValue<SByte8>(Nucleus::createShl(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens598f8d82016-09-26 15:09:10 -04002404// }
2405
2406// RValue<SByte8> operator>>(RValue<SByte8> lhs, unsigned char rhs)
2407// {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002408// return RValue<SByte8>(Nucleus::createAShr(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens598f8d82016-09-26 15:09:10 -04002409// }
2410
Nicolas Capens157ba262019-12-10 17:49:14 -05002411RValue<SByte> SaturateSigned(RValue<Short> x)
2412{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002413 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002414 return SByte(IfThenElse(Int(x) > 0x7F, Int(0x7F), IfThenElse(Int(x) < -0x80, Int(0x80), Int(x))));
2415}
2416
2417RValue<SByte8> AddSat(RValue<SByte8> x, RValue<SByte8> y)
2418{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002419 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002420 if(emulateIntrinsics)
Nicolas Capens98436732017-07-25 15:32:12 -04002421 {
Nicolas Capens157ba262019-12-10 17:49:14 -05002422 SByte8 result;
2423 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 0)) + Int(Extract(y, 0)))), 0);
2424 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 1)) + Int(Extract(y, 1)))), 1);
2425 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 2)) + Int(Extract(y, 2)))), 2);
2426 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 3)) + Int(Extract(y, 3)))), 3);
2427 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 4)) + Int(Extract(y, 4)))), 4);
2428 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 5)) + Int(Extract(y, 5)))), 5);
2429 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 6)) + Int(Extract(y, 6)))), 6);
2430 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 7)) + Int(Extract(y, 7)))), 7);
Nicolas Capens98436732017-07-25 15:32:12 -04002431
Nicolas Capens157ba262019-12-10 17:49:14 -05002432 return result;
2433 }
2434 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04002435 {
Nicolas Capens157ba262019-12-10 17:49:14 -05002436 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v16i8);
Ben Clayton713b8d32019-12-17 20:37:56 +00002437 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::AddSaturateSigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002438 auto paddsb = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002439 paddsb->addArg(x.value());
2440 paddsb->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002441 ::basicBlock->appendInst(paddsb);
Nicolas Capensc71bed22016-11-07 22:25:14 -05002442
Nicolas Capens157ba262019-12-10 17:49:14 -05002443 return RValue<SByte8>(V(result));
Nicolas Capens598f8d82016-09-26 15:09:10 -04002444 }
Nicolas Capens157ba262019-12-10 17:49:14 -05002445}
Nicolas Capens598f8d82016-09-26 15:09:10 -04002446
Nicolas Capens157ba262019-12-10 17:49:14 -05002447RValue<SByte8> SubSat(RValue<SByte8> x, RValue<SByte8> y)
2448{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002449 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002450 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04002451 {
Nicolas Capens157ba262019-12-10 17:49:14 -05002452 SByte8 result;
2453 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 0)) - Int(Extract(y, 0)))), 0);
2454 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 1)) - Int(Extract(y, 1)))), 1);
2455 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 2)) - Int(Extract(y, 2)))), 2);
2456 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 3)) - Int(Extract(y, 3)))), 3);
2457 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 4)) - Int(Extract(y, 4)))), 4);
2458 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 5)) - Int(Extract(y, 5)))), 5);
2459 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 6)) - Int(Extract(y, 6)))), 6);
2460 result = Insert(result, SaturateSigned(Short(Int(Extract(x, 7)) - Int(Extract(y, 7)))), 7);
Nicolas Capensc71bed22016-11-07 22:25:14 -05002461
Nicolas Capens157ba262019-12-10 17:49:14 -05002462 return result;
Nicolas Capens598f8d82016-09-26 15:09:10 -04002463 }
Nicolas Capens157ba262019-12-10 17:49:14 -05002464 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04002465 {
Nicolas Capens157ba262019-12-10 17:49:14 -05002466 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v16i8);
Ben Clayton713b8d32019-12-17 20:37:56 +00002467 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::SubtractSaturateSigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002468 auto psubsb = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002469 psubsb->addArg(x.value());
2470 psubsb->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002471 ::basicBlock->appendInst(psubsb);
Nicolas Capensf2cb9df2016-10-21 17:26:13 -04002472
Nicolas Capens157ba262019-12-10 17:49:14 -05002473 return RValue<SByte8>(V(result));
Nicolas Capens598f8d82016-09-26 15:09:10 -04002474 }
Nicolas Capens157ba262019-12-10 17:49:14 -05002475}
Nicolas Capens598f8d82016-09-26 15:09:10 -04002476
Nicolas Capens157ba262019-12-10 17:49:14 -05002477RValue<Int> SignMask(RValue<SByte8> x)
2478{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002479 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002480 if(emulateIntrinsics || CPUID::ARM)
Nicolas Capens598f8d82016-09-26 15:09:10 -04002481 {
Nicolas Capens157ba262019-12-10 17:49:14 -05002482 SByte8 xx = (x >> 7) & SByte8(0x01, 0x02, 0x04, 0x08, 0x10, 0x20, 0x40, 0x80);
2483 return Int(Extract(xx, 0)) | Int(Extract(xx, 1)) | Int(Extract(xx, 2)) | Int(Extract(xx, 3)) | Int(Extract(xx, 4)) | Int(Extract(xx, 5)) | Int(Extract(xx, 6)) | Int(Extract(xx, 7));
Nicolas Capens598f8d82016-09-26 15:09:10 -04002484 }
Nicolas Capens157ba262019-12-10 17:49:14 -05002485 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04002486 {
Nicolas Capens157ba262019-12-10 17:49:14 -05002487 Ice::Variable *result = ::function->makeVariable(Ice::IceType_i32);
Ben Clayton713b8d32019-12-17 20:37:56 +00002488 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::SignMask, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002489 auto movmsk = Ice::InstIntrinsic::create(::function, 1, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002490 movmsk->addArg(x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002491 ::basicBlock->appendInst(movmsk);
2492
2493 return RValue<Int>(V(result)) & 0xFF;
Nicolas Capens598f8d82016-09-26 15:09:10 -04002494 }
Nicolas Capens157ba262019-12-10 17:49:14 -05002495}
Nicolas Capens598f8d82016-09-26 15:09:10 -04002496
Nicolas Capens157ba262019-12-10 17:49:14 -05002497RValue<Byte8> CmpGT(RValue<SByte8> x, RValue<SByte8> y)
2498{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002499 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002500 return RValue<Byte8>(createIntCompare(Ice::InstIcmp::Sgt, x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05002501}
Nicolas Capens598f8d82016-09-26 15:09:10 -04002502
Nicolas Capens157ba262019-12-10 17:49:14 -05002503RValue<Byte8> CmpEQ(RValue<SByte8> x, RValue<SByte8> y)
2504{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002505 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002506 return RValue<Byte8>(Nucleus::createICmpEQ(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05002507}
Nicolas Capens598f8d82016-09-26 15:09:10 -04002508
Nicolas Capens519cf222020-05-08 15:27:19 -04002509Type *SByte8::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002510{
2511 return T(Type_v8i8);
2512}
Nicolas Capens598f8d82016-09-26 15:09:10 -04002513
Nicolas Capens519cf222020-05-08 15:27:19 -04002514Type *Byte16::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002515{
2516 return T(Ice::IceType_v16i8);
2517}
Nicolas Capens16b5f152016-10-13 13:39:01 -04002518
Nicolas Capens519cf222020-05-08 15:27:19 -04002519Type *SByte16::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002520{
2521 return T(Ice::IceType_v16i8);
2522}
Nicolas Capens16b5f152016-10-13 13:39:01 -04002523
Nicolas Capens519cf222020-05-08 15:27:19 -04002524Type *Short2::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002525{
2526 return T(Type_v2i16);
2527}
Nicolas Capensd4227962016-11-09 14:24:25 -05002528
Nicolas Capens519cf222020-05-08 15:27:19 -04002529Type *UShort2::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002530{
2531 return T(Type_v2i16);
2532}
Nicolas Capensd4227962016-11-09 14:24:25 -05002533
Nicolas Capens157ba262019-12-10 17:49:14 -05002534Short4::Short4(RValue<Int4> cast)
2535{
Ben Clayton713b8d32019-12-17 20:37:56 +00002536 int select[8] = { 0, 2, 4, 6, 0, 2, 4, 6 };
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002537 Value *short8 = Nucleus::createBitCast(cast.value(), Short8::type());
Nicolas Capens157ba262019-12-10 17:49:14 -05002538 Value *packed = Nucleus::createShuffleVector(short8, short8, select);
2539
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002540 Value *int2 = RValue<Int2>(Int2(As<Int4>(packed))).value();
Nicolas Capens519cf222020-05-08 15:27:19 -04002541 Value *short4 = Nucleus::createBitCast(int2, Short4::type());
Nicolas Capens157ba262019-12-10 17:49:14 -05002542
2543 storeValue(short4);
2544}
Nicolas Capens598f8d82016-09-26 15:09:10 -04002545
2546// Short4::Short4(RValue<Float> cast)
2547// {
2548// }
2549
Nicolas Capens157ba262019-12-10 17:49:14 -05002550Short4::Short4(RValue<Float4> cast)
2551{
Antonio Maioranoa0957112020-03-04 15:06:19 -05002552 // TODO(b/150791192): Generalize and optimize
2553 auto smin = std::numeric_limits<short>::min();
2554 auto smax = std::numeric_limits<short>::max();
2555 *this = Short4(Int4(Max(Min(cast, Float4(smax)), Float4(smin))));
Nicolas Capens157ba262019-12-10 17:49:14 -05002556}
2557
2558RValue<Short4> operator<<(RValue<Short4> lhs, unsigned char rhs)
2559{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002560 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002561 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04002562 {
Nicolas Capens157ba262019-12-10 17:49:14 -05002563 Short4 result;
2564 result = Insert(result, Extract(lhs, 0) << Short(rhs), 0);
2565 result = Insert(result, Extract(lhs, 1) << Short(rhs), 1);
2566 result = Insert(result, Extract(lhs, 2) << Short(rhs), 2);
2567 result = Insert(result, Extract(lhs, 3) << Short(rhs), 3);
Chris Forbesaa8f6992019-03-01 14:18:30 -08002568
2569 return result;
2570 }
Nicolas Capens157ba262019-12-10 17:49:14 -05002571 else
Chris Forbesaa8f6992019-03-01 14:18:30 -08002572 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002573 return RValue<Short4>(Nucleus::createShl(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens157ba262019-12-10 17:49:14 -05002574 }
2575}
Chris Forbesaa8f6992019-03-01 14:18:30 -08002576
Nicolas Capens157ba262019-12-10 17:49:14 -05002577RValue<Short4> operator>>(RValue<Short4> lhs, unsigned char rhs)
2578{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002579 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002580 if(emulateIntrinsics)
2581 {
2582 Short4 result;
2583 result = Insert(result, Extract(lhs, 0) >> Short(rhs), 0);
2584 result = Insert(result, Extract(lhs, 1) >> Short(rhs), 1);
2585 result = Insert(result, Extract(lhs, 2) >> Short(rhs), 2);
2586 result = Insert(result, Extract(lhs, 3) >> Short(rhs), 3);
2587
2588 return result;
2589 }
2590 else
2591 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002592 return RValue<Short4>(Nucleus::createAShr(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens157ba262019-12-10 17:49:14 -05002593 }
2594}
2595
2596RValue<Short4> Max(RValue<Short4> x, RValue<Short4> y)
2597{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002598 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002599 Ice::Variable *condition = ::function->makeVariable(Ice::IceType_v8i1);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002600 auto cmp = Ice::InstIcmp::create(::function, Ice::InstIcmp::Sle, condition, x.value(), y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002601 ::basicBlock->appendInst(cmp);
2602
2603 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v8i16);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002604 auto select = Ice::InstSelect::create(::function, result, condition, y.value(), x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002605 ::basicBlock->appendInst(select);
2606
2607 return RValue<Short4>(V(result));
2608}
2609
2610RValue<Short4> Min(RValue<Short4> x, RValue<Short4> y)
2611{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002612 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002613 Ice::Variable *condition = ::function->makeVariable(Ice::IceType_v8i1);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002614 auto cmp = Ice::InstIcmp::create(::function, Ice::InstIcmp::Sgt, condition, x.value(), y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002615 ::basicBlock->appendInst(cmp);
2616
2617 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v8i16);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002618 auto select = Ice::InstSelect::create(::function, result, condition, y.value(), x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002619 ::basicBlock->appendInst(select);
2620
2621 return RValue<Short4>(V(result));
2622}
2623
2624RValue<Short> SaturateSigned(RValue<Int> x)
2625{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002626 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002627 return Short(IfThenElse(x > 0x7FFF, Int(0x7FFF), IfThenElse(x < -0x8000, Int(0x8000), x)));
2628}
2629
2630RValue<Short4> AddSat(RValue<Short4> x, RValue<Short4> y)
2631{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002632 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002633 if(emulateIntrinsics)
2634 {
2635 Short4 result;
2636 result = Insert(result, SaturateSigned(Int(Extract(x, 0)) + Int(Extract(y, 0))), 0);
2637 result = Insert(result, SaturateSigned(Int(Extract(x, 1)) + Int(Extract(y, 1))), 1);
2638 result = Insert(result, SaturateSigned(Int(Extract(x, 2)) + Int(Extract(y, 2))), 2);
2639 result = Insert(result, SaturateSigned(Int(Extract(x, 3)) + Int(Extract(y, 3))), 3);
2640
2641 return result;
2642 }
2643 else
2644 {
2645 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v8i16);
Ben Clayton713b8d32019-12-17 20:37:56 +00002646 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::AddSaturateSigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002647 auto paddsw = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002648 paddsw->addArg(x.value());
2649 paddsw->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002650 ::basicBlock->appendInst(paddsw);
2651
2652 return RValue<Short4>(V(result));
2653 }
2654}
2655
2656RValue<Short4> SubSat(RValue<Short4> x, RValue<Short4> y)
2657{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002658 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002659 if(emulateIntrinsics)
2660 {
2661 Short4 result;
2662 result = Insert(result, SaturateSigned(Int(Extract(x, 0)) - Int(Extract(y, 0))), 0);
2663 result = Insert(result, SaturateSigned(Int(Extract(x, 1)) - Int(Extract(y, 1))), 1);
2664 result = Insert(result, SaturateSigned(Int(Extract(x, 2)) - Int(Extract(y, 2))), 2);
2665 result = Insert(result, SaturateSigned(Int(Extract(x, 3)) - Int(Extract(y, 3))), 3);
2666
2667 return result;
2668 }
2669 else
2670 {
2671 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v8i16);
Ben Clayton713b8d32019-12-17 20:37:56 +00002672 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::SubtractSaturateSigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002673 auto psubsw = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002674 psubsw->addArg(x.value());
2675 psubsw->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002676 ::basicBlock->appendInst(psubsw);
2677
2678 return RValue<Short4>(V(result));
2679 }
2680}
2681
2682RValue<Short4> MulHigh(RValue<Short4> x, RValue<Short4> y)
2683{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002684 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002685 if(emulateIntrinsics)
2686 {
2687 Short4 result;
2688 result = Insert(result, Short((Int(Extract(x, 0)) * Int(Extract(y, 0))) >> 16), 0);
2689 result = Insert(result, Short((Int(Extract(x, 1)) * Int(Extract(y, 1))) >> 16), 1);
2690 result = Insert(result, Short((Int(Extract(x, 2)) * Int(Extract(y, 2))) >> 16), 2);
2691 result = Insert(result, Short((Int(Extract(x, 3)) * Int(Extract(y, 3))) >> 16), 3);
2692
2693 return result;
2694 }
2695 else
2696 {
2697 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v8i16);
Ben Clayton713b8d32019-12-17 20:37:56 +00002698 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::MultiplyHighSigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002699 auto pmulhw = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002700 pmulhw->addArg(x.value());
2701 pmulhw->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002702 ::basicBlock->appendInst(pmulhw);
2703
2704 return RValue<Short4>(V(result));
2705 }
2706}
2707
2708RValue<Int2> MulAdd(RValue<Short4> x, RValue<Short4> y)
2709{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002710 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002711 if(emulateIntrinsics)
2712 {
2713 Int2 result;
2714 result = Insert(result, Int(Extract(x, 0)) * Int(Extract(y, 0)) + Int(Extract(x, 1)) * Int(Extract(y, 1)), 0);
2715 result = Insert(result, Int(Extract(x, 2)) * Int(Extract(y, 2)) + Int(Extract(x, 3)) * Int(Extract(y, 3)), 1);
2716
2717 return result;
2718 }
2719 else
2720 {
2721 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v8i16);
Ben Clayton713b8d32019-12-17 20:37:56 +00002722 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::MultiplyAddPairs, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002723 auto pmaddwd = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002724 pmaddwd->addArg(x.value());
2725 pmaddwd->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002726 ::basicBlock->appendInst(pmaddwd);
2727
2728 return As<Int2>(V(result));
2729 }
2730}
2731
2732RValue<SByte8> PackSigned(RValue<Short4> x, RValue<Short4> y)
2733{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002734 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002735 if(emulateIntrinsics)
2736 {
2737 SByte8 result;
2738 result = Insert(result, SaturateSigned(Extract(x, 0)), 0);
2739 result = Insert(result, SaturateSigned(Extract(x, 1)), 1);
2740 result = Insert(result, SaturateSigned(Extract(x, 2)), 2);
2741 result = Insert(result, SaturateSigned(Extract(x, 3)), 3);
2742 result = Insert(result, SaturateSigned(Extract(y, 0)), 4);
2743 result = Insert(result, SaturateSigned(Extract(y, 1)), 5);
2744 result = Insert(result, SaturateSigned(Extract(y, 2)), 6);
2745 result = Insert(result, SaturateSigned(Extract(y, 3)), 7);
2746
2747 return result;
2748 }
2749 else
2750 {
2751 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v16i8);
Ben Clayton713b8d32019-12-17 20:37:56 +00002752 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::VectorPackSigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002753 auto pack = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002754 pack->addArg(x.value());
2755 pack->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002756 ::basicBlock->appendInst(pack);
2757
2758 return As<SByte8>(Swizzle(As<Int4>(V(result)), 0x0202));
2759 }
2760}
2761
2762RValue<Byte8> PackUnsigned(RValue<Short4> x, RValue<Short4> y)
2763{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002764 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002765 if(emulateIntrinsics)
2766 {
2767 Byte8 result;
2768 result = Insert(result, SaturateUnsigned(Extract(x, 0)), 0);
2769 result = Insert(result, SaturateUnsigned(Extract(x, 1)), 1);
2770 result = Insert(result, SaturateUnsigned(Extract(x, 2)), 2);
2771 result = Insert(result, SaturateUnsigned(Extract(x, 3)), 3);
2772 result = Insert(result, SaturateUnsigned(Extract(y, 0)), 4);
2773 result = Insert(result, SaturateUnsigned(Extract(y, 1)), 5);
2774 result = Insert(result, SaturateUnsigned(Extract(y, 2)), 6);
2775 result = Insert(result, SaturateUnsigned(Extract(y, 3)), 7);
2776
2777 return result;
2778 }
2779 else
2780 {
2781 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v16i8);
Ben Clayton713b8d32019-12-17 20:37:56 +00002782 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::VectorPackUnsigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002783 auto pack = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002784 pack->addArg(x.value());
2785 pack->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002786 ::basicBlock->appendInst(pack);
2787
2788 return As<Byte8>(Swizzle(As<Int4>(V(result)), 0x0202));
2789 }
2790}
2791
2792RValue<Short4> CmpGT(RValue<Short4> x, RValue<Short4> y)
2793{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002794 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002795 return RValue<Short4>(createIntCompare(Ice::InstIcmp::Sgt, x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05002796}
2797
2798RValue<Short4> CmpEQ(RValue<Short4> x, RValue<Short4> y)
2799{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002800 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002801 return RValue<Short4>(Nucleus::createICmpEQ(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05002802}
2803
Nicolas Capens519cf222020-05-08 15:27:19 -04002804Type *Short4::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05002805{
2806 return T(Type_v4i16);
2807}
2808
2809UShort4::UShort4(RValue<Float4> cast, bool saturate)
2810{
2811 if(saturate)
2812 {
2813 if(CPUID::SSE4_1)
Chris Forbesaa8f6992019-03-01 14:18:30 -08002814 {
Nicolas Capens157ba262019-12-10 17:49:14 -05002815 // x86 produces 0x80000000 on 32-bit integer overflow/underflow.
2816 // PackUnsigned takes care of 0x0000 saturation.
2817 Int4 int4(Min(cast, Float4(0xFFFF)));
2818 *this = As<UShort4>(PackUnsigned(int4, int4));
Chris Forbesaa8f6992019-03-01 14:18:30 -08002819 }
Nicolas Capens157ba262019-12-10 17:49:14 -05002820 else if(CPUID::ARM)
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04002821 {
Nicolas Capens157ba262019-12-10 17:49:14 -05002822 // ARM saturates the 32-bit integer result on overflow/undeflow.
2823 Int4 int4(cast);
2824 *this = As<UShort4>(PackUnsigned(int4, int4));
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04002825 }
2826 else
2827 {
Nicolas Capens157ba262019-12-10 17:49:14 -05002828 *this = Short4(Int4(Max(Min(cast, Float4(0xFFFF)), Float4(0x0000))));
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04002829 }
Nicolas Capens598f8d82016-09-26 15:09:10 -04002830 }
Nicolas Capens157ba262019-12-10 17:49:14 -05002831 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04002832 {
Nicolas Capens157ba262019-12-10 17:49:14 -05002833 *this = Short4(Int4(cast));
2834 }
2835}
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04002836
Nicolas Capens157ba262019-12-10 17:49:14 -05002837RValue<UShort> Extract(RValue<UShort4> val, int i)
2838{
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002839 return RValue<UShort>(Nucleus::createExtractElement(val.value(), UShort::type(), i));
Nicolas Capens157ba262019-12-10 17:49:14 -05002840}
2841
2842RValue<UShort4> Insert(RValue<UShort4> val, RValue<UShort> element, int i)
2843{
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002844 return RValue<UShort4>(Nucleus::createInsertElement(val.value(), element.value(), i));
Nicolas Capens157ba262019-12-10 17:49:14 -05002845}
2846
2847RValue<UShort4> operator<<(RValue<UShort4> lhs, unsigned char rhs)
2848{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002849 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002850 if(emulateIntrinsics)
Antonio Maioranoaae33732020-02-14 14:52:34 -05002851
Nicolas Capens157ba262019-12-10 17:49:14 -05002852 {
2853 UShort4 result;
2854 result = Insert(result, Extract(lhs, 0) << UShort(rhs), 0);
2855 result = Insert(result, Extract(lhs, 1) << UShort(rhs), 1);
2856 result = Insert(result, Extract(lhs, 2) << UShort(rhs), 2);
2857 result = Insert(result, Extract(lhs, 3) << UShort(rhs), 3);
2858
2859 return result;
2860 }
2861 else
2862 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002863 return RValue<UShort4>(Nucleus::createShl(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens157ba262019-12-10 17:49:14 -05002864 }
2865}
2866
2867RValue<UShort4> operator>>(RValue<UShort4> lhs, unsigned char rhs)
2868{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002869 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002870 if(emulateIntrinsics)
2871 {
2872 UShort4 result;
2873 result = Insert(result, Extract(lhs, 0) >> UShort(rhs), 0);
2874 result = Insert(result, Extract(lhs, 1) >> UShort(rhs), 1);
2875 result = Insert(result, Extract(lhs, 2) >> UShort(rhs), 2);
2876 result = Insert(result, Extract(lhs, 3) >> UShort(rhs), 3);
2877
2878 return result;
2879 }
2880 else
2881 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002882 return RValue<UShort4>(Nucleus::createLShr(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens157ba262019-12-10 17:49:14 -05002883 }
2884}
2885
2886RValue<UShort4> Max(RValue<UShort4> x, RValue<UShort4> y)
2887{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002888 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002889 Ice::Variable *condition = ::function->makeVariable(Ice::IceType_v8i1);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002890 auto cmp = Ice::InstIcmp::create(::function, Ice::InstIcmp::Ule, condition, x.value(), y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002891 ::basicBlock->appendInst(cmp);
2892
2893 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v8i16);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002894 auto select = Ice::InstSelect::create(::function, result, condition, y.value(), x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002895 ::basicBlock->appendInst(select);
2896
2897 return RValue<UShort4>(V(result));
2898}
2899
2900RValue<UShort4> Min(RValue<UShort4> x, RValue<UShort4> y)
2901{
2902 Ice::Variable *condition = ::function->makeVariable(Ice::IceType_v8i1);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002903 auto cmp = Ice::InstIcmp::create(::function, Ice::InstIcmp::Ugt, condition, x.value(), y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002904 ::basicBlock->appendInst(cmp);
2905
2906 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v8i16);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002907 auto select = Ice::InstSelect::create(::function, result, condition, y.value(), x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002908 ::basicBlock->appendInst(select);
2909
2910 return RValue<UShort4>(V(result));
2911}
2912
2913RValue<UShort> SaturateUnsigned(RValue<Int> x)
2914{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002915 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002916 return UShort(IfThenElse(x > 0xFFFF, Int(0xFFFF), IfThenElse(x < 0, Int(0), x)));
2917}
2918
2919RValue<UShort4> AddSat(RValue<UShort4> x, RValue<UShort4> y)
2920{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002921 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002922 if(emulateIntrinsics)
2923 {
2924 UShort4 result;
2925 result = Insert(result, SaturateUnsigned(Int(Extract(x, 0)) + Int(Extract(y, 0))), 0);
2926 result = Insert(result, SaturateUnsigned(Int(Extract(x, 1)) + Int(Extract(y, 1))), 1);
2927 result = Insert(result, SaturateUnsigned(Int(Extract(x, 2)) + Int(Extract(y, 2))), 2);
2928 result = Insert(result, SaturateUnsigned(Int(Extract(x, 3)) + Int(Extract(y, 3))), 3);
2929
2930 return result;
2931 }
2932 else
2933 {
2934 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v8i16);
Ben Clayton713b8d32019-12-17 20:37:56 +00002935 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::AddSaturateUnsigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002936 auto paddusw = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002937 paddusw->addArg(x.value());
2938 paddusw->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002939 ::basicBlock->appendInst(paddusw);
2940
2941 return RValue<UShort4>(V(result));
2942 }
2943}
2944
2945RValue<UShort4> SubSat(RValue<UShort4> x, RValue<UShort4> y)
2946{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002947 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002948 if(emulateIntrinsics)
2949 {
2950 UShort4 result;
2951 result = Insert(result, SaturateUnsigned(Int(Extract(x, 0)) - Int(Extract(y, 0))), 0);
2952 result = Insert(result, SaturateUnsigned(Int(Extract(x, 1)) - Int(Extract(y, 1))), 1);
2953 result = Insert(result, SaturateUnsigned(Int(Extract(x, 2)) - Int(Extract(y, 2))), 2);
2954 result = Insert(result, SaturateUnsigned(Int(Extract(x, 3)) - Int(Extract(y, 3))), 3);
2955
2956 return result;
2957 }
2958 else
2959 {
2960 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v8i16);
Ben Clayton713b8d32019-12-17 20:37:56 +00002961 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::SubtractSaturateUnsigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002962 auto psubusw = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002963 psubusw->addArg(x.value());
2964 psubusw->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002965 ::basicBlock->appendInst(psubusw);
2966
2967 return RValue<UShort4>(V(result));
2968 }
2969}
2970
2971RValue<UShort4> MulHigh(RValue<UShort4> x, RValue<UShort4> y)
2972{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002973 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05002974 if(emulateIntrinsics)
2975 {
2976 UShort4 result;
2977 result = Insert(result, UShort((UInt(Extract(x, 0)) * UInt(Extract(y, 0))) >> 16), 0);
2978 result = Insert(result, UShort((UInt(Extract(x, 1)) * UInt(Extract(y, 1))) >> 16), 1);
2979 result = Insert(result, UShort((UInt(Extract(x, 2)) * UInt(Extract(y, 2))) >> 16), 2);
2980 result = Insert(result, UShort((UInt(Extract(x, 3)) * UInt(Extract(y, 3))) >> 16), 3);
2981
2982 return result;
2983 }
2984 else
2985 {
2986 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v8i16);
Ben Clayton713b8d32019-12-17 20:37:56 +00002987 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::MultiplyHighUnsigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05002988 auto pmulhuw = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04002989 pmulhuw->addArg(x.value());
2990 pmulhuw->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05002991 ::basicBlock->appendInst(pmulhuw);
2992
2993 return RValue<UShort4>(V(result));
2994 }
2995}
2996
2997RValue<Int4> MulHigh(RValue<Int4> x, RValue<Int4> y)
2998{
Antonio Maioranoaae33732020-02-14 14:52:34 -05002999 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003000 // TODO: For x86, build an intrinsics version of this which uses shuffles + pmuludq.
3001
3002 // Scalarized implementation.
3003 Int4 result;
3004 result = Insert(result, Int((Long(Extract(x, 0)) * Long(Extract(y, 0))) >> Long(Int(32))), 0);
3005 result = Insert(result, Int((Long(Extract(x, 1)) * Long(Extract(y, 1))) >> Long(Int(32))), 1);
3006 result = Insert(result, Int((Long(Extract(x, 2)) * Long(Extract(y, 2))) >> Long(Int(32))), 2);
3007 result = Insert(result, Int((Long(Extract(x, 3)) * Long(Extract(y, 3))) >> Long(Int(32))), 3);
3008
3009 return result;
3010}
3011
3012RValue<UInt4> MulHigh(RValue<UInt4> x, RValue<UInt4> y)
3013{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003014 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003015 // TODO: For x86, build an intrinsics version of this which uses shuffles + pmuludq.
3016
3017 if(false) // Partial product based implementation.
3018 {
3019 auto xh = x >> 16;
3020 auto yh = y >> 16;
3021 auto xl = x & UInt4(0x0000FFFF);
3022 auto yl = y & UInt4(0x0000FFFF);
3023 auto xlyh = xl * yh;
3024 auto xhyl = xh * yl;
3025 auto xlyhh = xlyh >> 16;
3026 auto xhylh = xhyl >> 16;
3027 auto xlyhl = xlyh & UInt4(0x0000FFFF);
3028 auto xhyll = xhyl & UInt4(0x0000FFFF);
3029 auto xlylh = (xl * yl) >> 16;
3030 auto oflow = (xlyhl + xhyll + xlylh) >> 16;
3031
3032 return (xh * yh) + (xlyhh + xhylh) + oflow;
Nicolas Capens598f8d82016-09-26 15:09:10 -04003033 }
3034
Nicolas Capens157ba262019-12-10 17:49:14 -05003035 // Scalarized implementation.
3036 Int4 result;
3037 result = Insert(result, Int((Long(UInt(Extract(As<Int4>(x), 0))) * Long(UInt(Extract(As<Int4>(y), 0)))) >> Long(Int(32))), 0);
3038 result = Insert(result, Int((Long(UInt(Extract(As<Int4>(x), 1))) * Long(UInt(Extract(As<Int4>(y), 1)))) >> Long(Int(32))), 1);
3039 result = Insert(result, Int((Long(UInt(Extract(As<Int4>(x), 2))) * Long(UInt(Extract(As<Int4>(y), 2)))) >> Long(Int(32))), 2);
3040 result = Insert(result, Int((Long(UInt(Extract(As<Int4>(x), 3))) * Long(UInt(Extract(As<Int4>(y), 3)))) >> Long(Int(32))), 3);
3041
3042 return As<UInt4>(result);
3043}
3044
3045RValue<UShort4> Average(RValue<UShort4> x, RValue<UShort4> y)
3046{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003047 RR_DEBUG_INFO_UPDATE_LOC();
Ben Claytonce54c592020-02-07 11:30:51 +00003048 UNIMPLEMENTED_NO_BUG("RValue<UShort4> Average(RValue<UShort4> x, RValue<UShort4> y)");
Nicolas Capens157ba262019-12-10 17:49:14 -05003049 return UShort4(0);
3050}
3051
Nicolas Capens519cf222020-05-08 15:27:19 -04003052Type *UShort4::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05003053{
3054 return T(Type_v4i16);
3055}
3056
3057RValue<Short> Extract(RValue<Short8> val, int i)
3058{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003059 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003060 return RValue<Short>(Nucleus::createExtractElement(val.value(), Short::type(), i));
Nicolas Capens157ba262019-12-10 17:49:14 -05003061}
3062
3063RValue<Short8> Insert(RValue<Short8> val, RValue<Short> element, int i)
3064{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003065 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003066 return RValue<Short8>(Nucleus::createInsertElement(val.value(), element.value(), i));
Nicolas Capens157ba262019-12-10 17:49:14 -05003067}
3068
3069RValue<Short8> operator<<(RValue<Short8> lhs, unsigned char rhs)
3070{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003071 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003072 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003073 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003074 Short8 result;
3075 result = Insert(result, Extract(lhs, 0) << Short(rhs), 0);
3076 result = Insert(result, Extract(lhs, 1) << Short(rhs), 1);
3077 result = Insert(result, Extract(lhs, 2) << Short(rhs), 2);
3078 result = Insert(result, Extract(lhs, 3) << Short(rhs), 3);
3079 result = Insert(result, Extract(lhs, 4) << Short(rhs), 4);
3080 result = Insert(result, Extract(lhs, 5) << Short(rhs), 5);
3081 result = Insert(result, Extract(lhs, 6) << Short(rhs), 6);
3082 result = Insert(result, Extract(lhs, 7) << Short(rhs), 7);
Nicolas Capens598f8d82016-09-26 15:09:10 -04003083
Nicolas Capens157ba262019-12-10 17:49:14 -05003084 return result;
3085 }
3086 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003087 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003088 return RValue<Short8>(Nucleus::createShl(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003089 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003090}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003091
Nicolas Capens157ba262019-12-10 17:49:14 -05003092RValue<Short8> operator>>(RValue<Short8> lhs, unsigned char rhs)
3093{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003094 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003095 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003096 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003097 Short8 result;
3098 result = Insert(result, Extract(lhs, 0) >> Short(rhs), 0);
3099 result = Insert(result, Extract(lhs, 1) >> Short(rhs), 1);
3100 result = Insert(result, Extract(lhs, 2) >> Short(rhs), 2);
3101 result = Insert(result, Extract(lhs, 3) >> Short(rhs), 3);
3102 result = Insert(result, Extract(lhs, 4) >> Short(rhs), 4);
3103 result = Insert(result, Extract(lhs, 5) >> Short(rhs), 5);
3104 result = Insert(result, Extract(lhs, 6) >> Short(rhs), 6);
3105 result = Insert(result, Extract(lhs, 7) >> Short(rhs), 7);
Nicolas Capens598f8d82016-09-26 15:09:10 -04003106
Nicolas Capens157ba262019-12-10 17:49:14 -05003107 return result;
3108 }
3109 else
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04003110 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003111 return RValue<Short8>(Nucleus::createAShr(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04003112 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003113}
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04003114
Nicolas Capens157ba262019-12-10 17:49:14 -05003115RValue<Int4> MulAdd(RValue<Short8> x, RValue<Short8> y)
3116{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003117 RR_DEBUG_INFO_UPDATE_LOC();
Ben Claytonce54c592020-02-07 11:30:51 +00003118 UNIMPLEMENTED_NO_BUG("RValue<Int4> MulAdd(RValue<Short8> x, RValue<Short8> y)");
Nicolas Capens157ba262019-12-10 17:49:14 -05003119 return Int4(0);
3120}
3121
3122RValue<Short8> MulHigh(RValue<Short8> x, RValue<Short8> y)
3123{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003124 RR_DEBUG_INFO_UPDATE_LOC();
Ben Claytonce54c592020-02-07 11:30:51 +00003125 UNIMPLEMENTED_NO_BUG("RValue<Short8> MulHigh(RValue<Short8> x, RValue<Short8> y)");
Nicolas Capens157ba262019-12-10 17:49:14 -05003126 return Short8(0);
3127}
3128
Nicolas Capens519cf222020-05-08 15:27:19 -04003129Type *Short8::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05003130{
3131 return T(Ice::IceType_v8i16);
3132}
3133
3134RValue<UShort> Extract(RValue<UShort8> val, int i)
3135{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003136 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003137 return RValue<UShort>(Nucleus::createExtractElement(val.value(), UShort::type(), i));
Nicolas Capens157ba262019-12-10 17:49:14 -05003138}
3139
3140RValue<UShort8> Insert(RValue<UShort8> val, RValue<UShort> element, int i)
3141{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003142 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003143 return RValue<UShort8>(Nucleus::createInsertElement(val.value(), element.value(), i));
Nicolas Capens157ba262019-12-10 17:49:14 -05003144}
3145
3146RValue<UShort8> operator<<(RValue<UShort8> lhs, unsigned char rhs)
3147{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003148 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003149 if(emulateIntrinsics)
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04003150 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003151 UShort8 result;
3152 result = Insert(result, Extract(lhs, 0) << UShort(rhs), 0);
3153 result = Insert(result, Extract(lhs, 1) << UShort(rhs), 1);
3154 result = Insert(result, Extract(lhs, 2) << UShort(rhs), 2);
3155 result = Insert(result, Extract(lhs, 3) << UShort(rhs), 3);
3156 result = Insert(result, Extract(lhs, 4) << UShort(rhs), 4);
3157 result = Insert(result, Extract(lhs, 5) << UShort(rhs), 5);
3158 result = Insert(result, Extract(lhs, 6) << UShort(rhs), 6);
3159 result = Insert(result, Extract(lhs, 7) << UShort(rhs), 7);
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04003160
Nicolas Capens157ba262019-12-10 17:49:14 -05003161 return result;
3162 }
3163 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003164 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003165 return RValue<UShort8>(Nucleus::createShl(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003166 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003167}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003168
Nicolas Capens157ba262019-12-10 17:49:14 -05003169RValue<UShort8> operator>>(RValue<UShort8> lhs, unsigned char rhs)
3170{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003171 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003172 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003173 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003174 UShort8 result;
3175 result = Insert(result, Extract(lhs, 0) >> UShort(rhs), 0);
3176 result = Insert(result, Extract(lhs, 1) >> UShort(rhs), 1);
3177 result = Insert(result, Extract(lhs, 2) >> UShort(rhs), 2);
3178 result = Insert(result, Extract(lhs, 3) >> UShort(rhs), 3);
3179 result = Insert(result, Extract(lhs, 4) >> UShort(rhs), 4);
3180 result = Insert(result, Extract(lhs, 5) >> UShort(rhs), 5);
3181 result = Insert(result, Extract(lhs, 6) >> UShort(rhs), 6);
3182 result = Insert(result, Extract(lhs, 7) >> UShort(rhs), 7);
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04003183
Nicolas Capens157ba262019-12-10 17:49:14 -05003184 return result;
Nicolas Capens598f8d82016-09-26 15:09:10 -04003185 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003186 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003187 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003188 return RValue<UShort8>(Nucleus::createLShr(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003189 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003190}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003191
Nicolas Capens157ba262019-12-10 17:49:14 -05003192RValue<UShort8> MulHigh(RValue<UShort8> x, RValue<UShort8> y)
3193{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003194 RR_DEBUG_INFO_UPDATE_LOC();
Ben Claytonce54c592020-02-07 11:30:51 +00003195 UNIMPLEMENTED_NO_BUG("RValue<UShort8> MulHigh(RValue<UShort8> x, RValue<UShort8> y)");
Nicolas Capens157ba262019-12-10 17:49:14 -05003196 return UShort8(0);
3197}
3198
Nicolas Capens519cf222020-05-08 15:27:19 -04003199Type *UShort8::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05003200{
3201 return T(Ice::IceType_v8i16);
3202}
3203
Ben Clayton713b8d32019-12-17 20:37:56 +00003204RValue<Int> operator++(Int &val, int) // Post-increment
Nicolas Capens157ba262019-12-10 17:49:14 -05003205{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003206 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003207 RValue<Int> res = val;
3208 val += 1;
3209 return res;
3210}
3211
Ben Clayton713b8d32019-12-17 20:37:56 +00003212const Int &operator++(Int &val) // Pre-increment
Nicolas Capens157ba262019-12-10 17:49:14 -05003213{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003214 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003215 val += 1;
3216 return val;
3217}
3218
Ben Clayton713b8d32019-12-17 20:37:56 +00003219RValue<Int> operator--(Int &val, int) // Post-decrement
Nicolas Capens157ba262019-12-10 17:49:14 -05003220{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003221 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003222 RValue<Int> res = val;
3223 val -= 1;
3224 return res;
3225}
3226
Ben Clayton713b8d32019-12-17 20:37:56 +00003227const Int &operator--(Int &val) // Pre-decrement
Nicolas Capens157ba262019-12-10 17:49:14 -05003228{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003229 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003230 val -= 1;
3231 return val;
3232}
3233
3234RValue<Int> RoundInt(RValue<Float> cast)
3235{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003236 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003237 if(emulateIntrinsics || CPUID::ARM)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003238 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003239 // Push the fractional part off the mantissa. Accurate up to +/-2^22.
3240 return Int((cast + Float(0x00C00000)) - Float(0x00C00000));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003241 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003242 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003243 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003244 Ice::Variable *result = ::function->makeVariable(Ice::IceType_i32);
Ben Clayton713b8d32019-12-17 20:37:56 +00003245 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::Nearbyint, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05003246 auto nearbyint = Ice::InstIntrinsic::create(::function, 1, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003247 nearbyint->addArg(cast.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003248 ::basicBlock->appendInst(nearbyint);
3249
3250 return RValue<Int>(V(result));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003251 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003252}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003253
Nicolas Capens519cf222020-05-08 15:27:19 -04003254Type *Int::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05003255{
3256 return T(Ice::IceType_i32);
3257}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003258
Nicolas Capens519cf222020-05-08 15:27:19 -04003259Type *Long::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05003260{
3261 return T(Ice::IceType_i64);
3262}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003263
Nicolas Capens157ba262019-12-10 17:49:14 -05003264UInt::UInt(RValue<Float> cast)
3265{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003266 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003267 // Smallest positive value representable in UInt, but not in Int
3268 const unsigned int ustart = 0x80000000u;
3269 const float ustartf = float(ustart);
Nicolas Capens598f8d82016-09-26 15:09:10 -04003270
Nicolas Capens157ba262019-12-10 17:49:14 -05003271 // If the value is negative, store 0, otherwise store the result of the conversion
3272 storeValue((~(As<Int>(cast) >> 31) &
Ben Clayton713b8d32019-12-17 20:37:56 +00003273 // Check if the value can be represented as an Int
3274 IfThenElse(cast >= ustartf,
3275 // If the value is too large, subtract ustart and re-add it after conversion.
3276 As<Int>(As<UInt>(Int(cast - Float(ustartf))) + UInt(ustart)),
3277 // Otherwise, just convert normally
3278 Int(cast)))
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003279 .value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003280}
Nicolas Capensa8086512016-11-07 17:32:17 -05003281
Ben Clayton713b8d32019-12-17 20:37:56 +00003282RValue<UInt> operator++(UInt &val, int) // Post-increment
Nicolas Capens157ba262019-12-10 17:49:14 -05003283{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003284 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003285 RValue<UInt> res = val;
3286 val += 1;
3287 return res;
3288}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003289
Ben Clayton713b8d32019-12-17 20:37:56 +00003290const UInt &operator++(UInt &val) // Pre-increment
Nicolas Capens157ba262019-12-10 17:49:14 -05003291{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003292 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003293 val += 1;
3294 return val;
3295}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003296
Ben Clayton713b8d32019-12-17 20:37:56 +00003297RValue<UInt> operator--(UInt &val, int) // Post-decrement
Nicolas Capens157ba262019-12-10 17:49:14 -05003298{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003299 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003300 RValue<UInt> res = val;
3301 val -= 1;
3302 return res;
3303}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003304
Ben Clayton713b8d32019-12-17 20:37:56 +00003305const UInt &operator--(UInt &val) // Pre-decrement
Nicolas Capens157ba262019-12-10 17:49:14 -05003306{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003307 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003308 val -= 1;
3309 return val;
3310}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003311
Nicolas Capens598f8d82016-09-26 15:09:10 -04003312// RValue<UInt> RoundUInt(RValue<Float> cast)
3313// {
Ben Claytoneb50d252019-04-15 13:50:01 -04003314// ASSERT(false && "UNIMPLEMENTED"); return RValue<UInt>(V(nullptr));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003315// }
3316
Nicolas Capens519cf222020-05-08 15:27:19 -04003317Type *UInt::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05003318{
3319 return T(Ice::IceType_i32);
3320}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003321
3322// Int2::Int2(RValue<Int> cast)
3323// {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003324// Value *extend = Nucleus::createZExt(cast.value(), Long::type());
Nicolas Capens519cf222020-05-08 15:27:19 -04003325// Value *vector = Nucleus::createBitCast(extend, Int2::type());
Nicolas Capens598f8d82016-09-26 15:09:10 -04003326//
3327// Constant *shuffle[2];
3328// shuffle[0] = Nucleus::createConstantInt(0);
3329// shuffle[1] = Nucleus::createConstantInt(0);
3330//
Nicolas Capens519cf222020-05-08 15:27:19 -04003331// Value *replicate = Nucleus::createShuffleVector(vector, UndefValue::get(Int2::type()), Nucleus::createConstantVector(shuffle, 2));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003332//
3333// storeValue(replicate);
3334// }
3335
Nicolas Capens157ba262019-12-10 17:49:14 -05003336RValue<Int2> operator<<(RValue<Int2> lhs, unsigned char rhs)
3337{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003338 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003339 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003340 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003341 Int2 result;
3342 result = Insert(result, Extract(lhs, 0) << Int(rhs), 0);
3343 result = Insert(result, Extract(lhs, 1) << Int(rhs), 1);
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04003344
Nicolas Capens157ba262019-12-10 17:49:14 -05003345 return result;
Nicolas Capens598f8d82016-09-26 15:09:10 -04003346 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003347 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003348 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003349 return RValue<Int2>(Nucleus::createShl(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003350 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003351}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003352
Nicolas Capens157ba262019-12-10 17:49:14 -05003353RValue<Int2> operator>>(RValue<Int2> lhs, unsigned char rhs)
3354{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003355 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003356 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003357 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003358 Int2 result;
3359 result = Insert(result, Extract(lhs, 0) >> Int(rhs), 0);
3360 result = Insert(result, Extract(lhs, 1) >> Int(rhs), 1);
3361
3362 return result;
Nicolas Capens598f8d82016-09-26 15:09:10 -04003363 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003364 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003365 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003366 return RValue<Int2>(Nucleus::createAShr(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003367 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003368}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003369
Nicolas Capens519cf222020-05-08 15:27:19 -04003370Type *Int2::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05003371{
3372 return T(Type_v2i32);
3373}
3374
3375RValue<UInt2> operator<<(RValue<UInt2> lhs, unsigned char rhs)
3376{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003377 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003378 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003379 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003380 UInt2 result;
3381 result = Insert(result, Extract(lhs, 0) << UInt(rhs), 0);
3382 result = Insert(result, Extract(lhs, 1) << UInt(rhs), 1);
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04003383
Nicolas Capens157ba262019-12-10 17:49:14 -05003384 return result;
Nicolas Capens598f8d82016-09-26 15:09:10 -04003385 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003386 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003387 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003388 return RValue<UInt2>(Nucleus::createShl(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003389 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003390}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003391
Nicolas Capens157ba262019-12-10 17:49:14 -05003392RValue<UInt2> operator>>(RValue<UInt2> lhs, unsigned char rhs)
3393{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003394 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003395 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003396 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003397 UInt2 result;
3398 result = Insert(result, Extract(lhs, 0) >> UInt(rhs), 0);
3399 result = Insert(result, Extract(lhs, 1) >> UInt(rhs), 1);
Nicolas Capensd4227962016-11-09 14:24:25 -05003400
Nicolas Capens157ba262019-12-10 17:49:14 -05003401 return result;
Nicolas Capens598f8d82016-09-26 15:09:10 -04003402 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003403 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003404 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003405 return RValue<UInt2>(Nucleus::createLShr(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003406 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003407}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003408
Nicolas Capens519cf222020-05-08 15:27:19 -04003409Type *UInt2::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05003410{
3411 return T(Type_v2i32);
3412}
3413
Ben Clayton713b8d32019-12-17 20:37:56 +00003414Int4::Int4(RValue<Byte4> cast)
3415 : XYZW(this)
Nicolas Capens157ba262019-12-10 17:49:14 -05003416{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003417 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003418 Value *x = Nucleus::createBitCast(cast.value(), Int::type());
Nicolas Capens157ba262019-12-10 17:49:14 -05003419 Value *a = Nucleus::createInsertElement(loadValue(), x, 0);
3420
3421 Value *e;
Ben Clayton713b8d32019-12-17 20:37:56 +00003422 int swizzle[16] = { 0, 16, 1, 17, 2, 18, 3, 19, 4, 20, 5, 21, 6, 22, 7, 23 };
Nicolas Capens519cf222020-05-08 15:27:19 -04003423 Value *b = Nucleus::createBitCast(a, Byte16::type());
3424 Value *c = Nucleus::createShuffleVector(b, Nucleus::createNullValue(Byte16::type()), swizzle);
Nicolas Capens157ba262019-12-10 17:49:14 -05003425
Ben Clayton713b8d32019-12-17 20:37:56 +00003426 int swizzle2[8] = { 0, 8, 1, 9, 2, 10, 3, 11 };
Nicolas Capens519cf222020-05-08 15:27:19 -04003427 Value *d = Nucleus::createBitCast(c, Short8::type());
3428 e = Nucleus::createShuffleVector(d, Nucleus::createNullValue(Short8::type()), swizzle2);
Nicolas Capens157ba262019-12-10 17:49:14 -05003429
Nicolas Capens519cf222020-05-08 15:27:19 -04003430 Value *f = Nucleus::createBitCast(e, Int4::type());
Nicolas Capens157ba262019-12-10 17:49:14 -05003431 storeValue(f);
3432}
3433
Ben Clayton713b8d32019-12-17 20:37:56 +00003434Int4::Int4(RValue<SByte4> cast)
3435 : XYZW(this)
Nicolas Capens157ba262019-12-10 17:49:14 -05003436{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003437 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003438 Value *x = Nucleus::createBitCast(cast.value(), Int::type());
Nicolas Capens157ba262019-12-10 17:49:14 -05003439 Value *a = Nucleus::createInsertElement(loadValue(), x, 0);
3440
Ben Clayton713b8d32019-12-17 20:37:56 +00003441 int swizzle[16] = { 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7 };
Nicolas Capens519cf222020-05-08 15:27:19 -04003442 Value *b = Nucleus::createBitCast(a, Byte16::type());
Nicolas Capens157ba262019-12-10 17:49:14 -05003443 Value *c = Nucleus::createShuffleVector(b, b, swizzle);
3444
Ben Clayton713b8d32019-12-17 20:37:56 +00003445 int swizzle2[8] = { 0, 0, 1, 1, 2, 2, 3, 3 };
Nicolas Capens519cf222020-05-08 15:27:19 -04003446 Value *d = Nucleus::createBitCast(c, Short8::type());
Nicolas Capens157ba262019-12-10 17:49:14 -05003447 Value *e = Nucleus::createShuffleVector(d, d, swizzle2);
3448
3449 *this = As<Int4>(e) >> 24;
3450}
3451
Ben Clayton713b8d32019-12-17 20:37:56 +00003452Int4::Int4(RValue<Short4> cast)
3453 : XYZW(this)
Nicolas Capens157ba262019-12-10 17:49:14 -05003454{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003455 RR_DEBUG_INFO_UPDATE_LOC();
Ben Clayton713b8d32019-12-17 20:37:56 +00003456 int swizzle[8] = { 0, 0, 1, 1, 2, 2, 3, 3 };
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003457 Value *c = Nucleus::createShuffleVector(cast.value(), cast.value(), swizzle);
Nicolas Capens157ba262019-12-10 17:49:14 -05003458
3459 *this = As<Int4>(c) >> 16;
3460}
3461
Ben Clayton713b8d32019-12-17 20:37:56 +00003462Int4::Int4(RValue<UShort4> cast)
3463 : XYZW(this)
Nicolas Capens157ba262019-12-10 17:49:14 -05003464{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003465 RR_DEBUG_INFO_UPDATE_LOC();
Ben Clayton713b8d32019-12-17 20:37:56 +00003466 int swizzle[8] = { 0, 8, 1, 9, 2, 10, 3, 11 };
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003467 Value *c = Nucleus::createShuffleVector(cast.value(), Short8(0, 0, 0, 0, 0, 0, 0, 0).loadValue(), swizzle);
Nicolas Capens519cf222020-05-08 15:27:19 -04003468 Value *d = Nucleus::createBitCast(c, Int4::type());
Nicolas Capens157ba262019-12-10 17:49:14 -05003469 storeValue(d);
3470}
3471
Ben Clayton713b8d32019-12-17 20:37:56 +00003472Int4::Int4(RValue<Int> rhs)
3473 : XYZW(this)
Nicolas Capens157ba262019-12-10 17:49:14 -05003474{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003475 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003476 Value *vector = Nucleus::createBitCast(rhs.value(), Int4::type());
Nicolas Capens157ba262019-12-10 17:49:14 -05003477
Ben Clayton713b8d32019-12-17 20:37:56 +00003478 int swizzle[4] = { 0, 0, 0, 0 };
Nicolas Capens157ba262019-12-10 17:49:14 -05003479 Value *replicate = Nucleus::createShuffleVector(vector, vector, swizzle);
3480
3481 storeValue(replicate);
3482}
3483
3484RValue<Int4> operator<<(RValue<Int4> lhs, unsigned char rhs)
3485{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003486 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003487 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003488 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003489 Int4 result;
3490 result = Insert(result, Extract(lhs, 0) << Int(rhs), 0);
3491 result = Insert(result, Extract(lhs, 1) << Int(rhs), 1);
3492 result = Insert(result, Extract(lhs, 2) << Int(rhs), 2);
3493 result = Insert(result, Extract(lhs, 3) << Int(rhs), 3);
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04003494
Nicolas Capens157ba262019-12-10 17:49:14 -05003495 return result;
Nicolas Capens598f8d82016-09-26 15:09:10 -04003496 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003497 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003498 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003499 return RValue<Int4>(Nucleus::createShl(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003500 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003501}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003502
Nicolas Capens157ba262019-12-10 17:49:14 -05003503RValue<Int4> operator>>(RValue<Int4> lhs, unsigned char rhs)
3504{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003505 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003506 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003507 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003508 Int4 result;
3509 result = Insert(result, Extract(lhs, 0) >> Int(rhs), 0);
3510 result = Insert(result, Extract(lhs, 1) >> Int(rhs), 1);
3511 result = Insert(result, Extract(lhs, 2) >> Int(rhs), 2);
3512 result = Insert(result, Extract(lhs, 3) >> Int(rhs), 3);
Nicolas Capensd4227962016-11-09 14:24:25 -05003513
Nicolas Capens157ba262019-12-10 17:49:14 -05003514 return result;
Nicolas Capens598f8d82016-09-26 15:09:10 -04003515 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003516 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003517 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003518 return RValue<Int4>(Nucleus::createAShr(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003519 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003520}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003521
Nicolas Capens157ba262019-12-10 17:49:14 -05003522RValue<Int4> CmpEQ(RValue<Int4> x, RValue<Int4> y)
3523{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003524 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003525 return RValue<Int4>(Nucleus::createICmpEQ(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05003526}
3527
3528RValue<Int4> CmpLT(RValue<Int4> x, RValue<Int4> y)
3529{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003530 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003531 return RValue<Int4>(Nucleus::createICmpSLT(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05003532}
3533
3534RValue<Int4> CmpLE(RValue<Int4> x, RValue<Int4> y)
3535{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003536 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003537 return RValue<Int4>(Nucleus::createICmpSLE(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05003538}
3539
3540RValue<Int4> CmpNEQ(RValue<Int4> x, RValue<Int4> y)
3541{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003542 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003543 return RValue<Int4>(Nucleus::createICmpNE(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05003544}
3545
3546RValue<Int4> CmpNLT(RValue<Int4> x, RValue<Int4> y)
3547{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003548 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003549 return RValue<Int4>(Nucleus::createICmpSGE(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05003550}
3551
3552RValue<Int4> CmpNLE(RValue<Int4> x, RValue<Int4> y)
3553{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003554 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003555 return RValue<Int4>(Nucleus::createICmpSGT(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05003556}
3557
Nicolas Capens629bf952022-01-18 15:08:14 -05003558RValue<Int4> Abs(RValue<Int4> x)
3559{
3560 // TODO: Optimize.
3561 auto negative = x >> 31;
3562 return (x ^ negative) - negative;
3563}
3564
Nicolas Capens157ba262019-12-10 17:49:14 -05003565RValue<Int4> Max(RValue<Int4> x, RValue<Int4> y)
3566{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003567 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003568 Ice::Variable *condition = ::function->makeVariable(Ice::IceType_v4i1);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003569 auto cmp = Ice::InstIcmp::create(::function, Ice::InstIcmp::Sle, condition, x.value(), y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003570 ::basicBlock->appendInst(cmp);
3571
3572 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v4i32);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003573 auto select = Ice::InstSelect::create(::function, result, condition, y.value(), x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003574 ::basicBlock->appendInst(select);
3575
3576 return RValue<Int4>(V(result));
3577}
3578
3579RValue<Int4> Min(RValue<Int4> x, RValue<Int4> y)
3580{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003581 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003582 Ice::Variable *condition = ::function->makeVariable(Ice::IceType_v4i1);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003583 auto cmp = Ice::InstIcmp::create(::function, Ice::InstIcmp::Sgt, condition, x.value(), y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003584 ::basicBlock->appendInst(cmp);
3585
3586 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v4i32);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003587 auto select = Ice::InstSelect::create(::function, result, condition, y.value(), x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003588 ::basicBlock->appendInst(select);
3589
3590 return RValue<Int4>(V(result));
3591}
3592
3593RValue<Int4> RoundInt(RValue<Float4> cast)
3594{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003595 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003596 if(emulateIntrinsics || CPUID::ARM)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003597 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003598 // Push the fractional part off the mantissa. Accurate up to +/-2^22.
3599 return Int4((cast + Float4(0x00C00000)) - Float4(0x00C00000));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003600 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003601 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003602 {
Nicolas Capens53a8a3f2016-10-26 00:23:12 -04003603 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v4i32);
Ben Clayton713b8d32019-12-17 20:37:56 +00003604 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::Nearbyint, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05003605 auto nearbyint = Ice::InstIntrinsic::create(::function, 1, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003606 nearbyint->addArg(cast.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003607 ::basicBlock->appendInst(nearbyint);
Nicolas Capens53a8a3f2016-10-26 00:23:12 -04003608
3609 return RValue<Int4>(V(result));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003610 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003611}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003612
Nicolas Capenseeb81842021-01-12 17:44:40 -05003613RValue<Int4> RoundIntClamped(RValue<Float4> cast)
3614{
3615 RR_DEBUG_INFO_UPDATE_LOC();
3616
3617 // cvtps2dq produces 0x80000000, a negative value, for input larger than
3618 // 2147483520.0, so clamp to 2147483520. Values less than -2147483520.0
3619 // saturate to 0x80000000.
3620 RValue<Float4> clamped = Min(cast, Float4(0x7FFFFF80));
3621
3622 if(emulateIntrinsics || CPUID::ARM)
3623 {
3624 // Push the fractional part off the mantissa. Accurate up to +/-2^22.
3625 return Int4((clamped + Float4(0x00C00000)) - Float4(0x00C00000));
3626 }
3627 else
3628 {
3629 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v4i32);
3630 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::Nearbyint, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05003631 auto nearbyint = Ice::InstIntrinsic::create(::function, 1, result, intrinsic);
Nicolas Capenseeb81842021-01-12 17:44:40 -05003632 nearbyint->addArg(clamped.value());
3633 ::basicBlock->appendInst(nearbyint);
3634
3635 return RValue<Int4>(V(result));
3636 }
3637}
3638
Nicolas Capens157ba262019-12-10 17:49:14 -05003639RValue<Short8> PackSigned(RValue<Int4> x, RValue<Int4> y)
3640{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003641 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003642 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003643 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003644 Short8 result;
3645 result = Insert(result, SaturateSigned(Extract(x, 0)), 0);
3646 result = Insert(result, SaturateSigned(Extract(x, 1)), 1);
3647 result = Insert(result, SaturateSigned(Extract(x, 2)), 2);
3648 result = Insert(result, SaturateSigned(Extract(x, 3)), 3);
3649 result = Insert(result, SaturateSigned(Extract(y, 0)), 4);
3650 result = Insert(result, SaturateSigned(Extract(y, 1)), 5);
3651 result = Insert(result, SaturateSigned(Extract(y, 2)), 6);
3652 result = Insert(result, SaturateSigned(Extract(y, 3)), 7);
Nicolas Capens53a8a3f2016-10-26 00:23:12 -04003653
Nicolas Capens157ba262019-12-10 17:49:14 -05003654 return result;
Nicolas Capens598f8d82016-09-26 15:09:10 -04003655 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003656 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003657 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003658 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v8i16);
Ben Clayton713b8d32019-12-17 20:37:56 +00003659 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::VectorPackSigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05003660 auto pack = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003661 pack->addArg(x.value());
3662 pack->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003663 ::basicBlock->appendInst(pack);
Nicolas Capensa8086512016-11-07 17:32:17 -05003664
Nicolas Capens157ba262019-12-10 17:49:14 -05003665 return RValue<Short8>(V(result));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003666 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003667}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003668
Nicolas Capens157ba262019-12-10 17:49:14 -05003669RValue<UShort8> PackUnsigned(RValue<Int4> x, RValue<Int4> y)
3670{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003671 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003672 if(emulateIntrinsics || !(CPUID::SSE4_1 || CPUID::ARM))
Nicolas Capens598f8d82016-09-26 15:09:10 -04003673 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003674 RValue<Int4> sx = As<Int4>(x);
3675 RValue<Int4> bx = (sx & ~(sx >> 31)) - Int4(0x8000);
Nicolas Capensec54a172016-10-25 17:32:37 -04003676
Nicolas Capens157ba262019-12-10 17:49:14 -05003677 RValue<Int4> sy = As<Int4>(y);
3678 RValue<Int4> by = (sy & ~(sy >> 31)) - Int4(0x8000);
Nicolas Capens8960fbf2017-07-25 15:32:12 -04003679
Nicolas Capens157ba262019-12-10 17:49:14 -05003680 return As<UShort8>(PackSigned(bx, by) + Short8(0x8000u));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003681 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003682 else
Nicolas Capens33438a62017-09-27 11:47:35 -04003683 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003684 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v8i16);
Ben Clayton713b8d32019-12-17 20:37:56 +00003685 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::VectorPackUnsigned, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05003686 auto pack = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003687 pack->addArg(x.value());
3688 pack->addArg(y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003689 ::basicBlock->appendInst(pack);
Nicolas Capens091f3502017-10-03 14:56:49 -04003690
Nicolas Capens157ba262019-12-10 17:49:14 -05003691 return RValue<UShort8>(V(result));
Nicolas Capens33438a62017-09-27 11:47:35 -04003692 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003693}
Nicolas Capens33438a62017-09-27 11:47:35 -04003694
Nicolas Capens157ba262019-12-10 17:49:14 -05003695RValue<Int> SignMask(RValue<Int4> x)
3696{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003697 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003698 if(emulateIntrinsics || CPUID::ARM)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003699 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003700 Int4 xx = (x >> 31) & Int4(0x00000001, 0x00000002, 0x00000004, 0x00000008);
3701 return Extract(xx, 0) | Extract(xx, 1) | Extract(xx, 2) | Extract(xx, 3);
Nicolas Capens598f8d82016-09-26 15:09:10 -04003702 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003703 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003704 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003705 Ice::Variable *result = ::function->makeVariable(Ice::IceType_i32);
Ben Clayton713b8d32019-12-17 20:37:56 +00003706 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::SignMask, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05003707 auto movmsk = Ice::InstIntrinsic::create(::function, 1, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003708 movmsk->addArg(x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003709 ::basicBlock->appendInst(movmsk);
3710
3711 return RValue<Int>(V(result));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003712 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003713}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003714
Nicolas Capens519cf222020-05-08 15:27:19 -04003715Type *Int4::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05003716{
3717 return T(Ice::IceType_v4i32);
3718}
3719
Ben Clayton713b8d32019-12-17 20:37:56 +00003720UInt4::UInt4(RValue<Float4> cast)
3721 : XYZW(this)
Nicolas Capens157ba262019-12-10 17:49:14 -05003722{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003723 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003724 // Smallest positive value representable in UInt, but not in Int
3725 const unsigned int ustart = 0x80000000u;
3726 const float ustartf = float(ustart);
3727
3728 // Check if the value can be represented as an Int
3729 Int4 uiValue = CmpNLT(cast, Float4(ustartf));
3730 // If the value is too large, subtract ustart and re-add it after conversion.
3731 uiValue = (uiValue & As<Int4>(As<UInt4>(Int4(cast - Float4(ustartf))) + UInt4(ustart))) |
Ben Clayton713b8d32019-12-17 20:37:56 +00003732 // Otherwise, just convert normally
Nicolas Capens157ba262019-12-10 17:49:14 -05003733 (~uiValue & Int4(cast));
3734 // If the value is negative, store 0, otherwise store the result of the conversion
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003735 storeValue((~(As<Int4>(cast) >> 31) & uiValue).value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003736}
3737
Ben Clayton713b8d32019-12-17 20:37:56 +00003738UInt4::UInt4(RValue<UInt> rhs)
3739 : XYZW(this)
Nicolas Capens157ba262019-12-10 17:49:14 -05003740{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003741 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003742 Value *vector = Nucleus::createBitCast(rhs.value(), UInt4::type());
Nicolas Capens157ba262019-12-10 17:49:14 -05003743
Ben Clayton713b8d32019-12-17 20:37:56 +00003744 int swizzle[4] = { 0, 0, 0, 0 };
Nicolas Capens157ba262019-12-10 17:49:14 -05003745 Value *replicate = Nucleus::createShuffleVector(vector, vector, swizzle);
3746
3747 storeValue(replicate);
3748}
3749
3750RValue<UInt4> operator<<(RValue<UInt4> lhs, unsigned char rhs)
3751{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003752 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003753 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003754 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003755 UInt4 result;
3756 result = Insert(result, Extract(lhs, 0) << UInt(rhs), 0);
3757 result = Insert(result, Extract(lhs, 1) << UInt(rhs), 1);
3758 result = Insert(result, Extract(lhs, 2) << UInt(rhs), 2);
3759 result = Insert(result, Extract(lhs, 3) << UInt(rhs), 3);
Nicolas Capensc70a1162016-12-03 00:16:14 -05003760
Nicolas Capens157ba262019-12-10 17:49:14 -05003761 return result;
Nicolas Capens598f8d82016-09-26 15:09:10 -04003762 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003763 else
Ben Clayton88816fa2019-05-15 17:08:14 +01003764 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003765 return RValue<UInt4>(Nucleus::createShl(lhs.value(), V(::context->getConstantInt32(rhs))));
Ben Clayton88816fa2019-05-15 17:08:14 +01003766 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003767}
Ben Clayton88816fa2019-05-15 17:08:14 +01003768
Nicolas Capens157ba262019-12-10 17:49:14 -05003769RValue<UInt4> operator>>(RValue<UInt4> lhs, unsigned char rhs)
3770{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003771 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003772 if(emulateIntrinsics)
Nicolas Capens598f8d82016-09-26 15:09:10 -04003773 {
Nicolas Capens157ba262019-12-10 17:49:14 -05003774 UInt4 result;
3775 result = Insert(result, Extract(lhs, 0) >> UInt(rhs), 0);
3776 result = Insert(result, Extract(lhs, 1) >> UInt(rhs), 1);
3777 result = Insert(result, Extract(lhs, 2) >> UInt(rhs), 2);
3778 result = Insert(result, Extract(lhs, 3) >> UInt(rhs), 3);
Nicolas Capens8be6c7b2017-07-25 15:32:12 -04003779
Nicolas Capens157ba262019-12-10 17:49:14 -05003780 return result;
Nicolas Capens598f8d82016-09-26 15:09:10 -04003781 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003782 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04003783 {
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003784 return RValue<UInt4>(Nucleus::createLShr(lhs.value(), V(::context->getConstantInt32(rhs))));
Nicolas Capens598f8d82016-09-26 15:09:10 -04003785 }
Nicolas Capens157ba262019-12-10 17:49:14 -05003786}
Nicolas Capens598f8d82016-09-26 15:09:10 -04003787
Nicolas Capens157ba262019-12-10 17:49:14 -05003788RValue<UInt4> CmpEQ(RValue<UInt4> x, RValue<UInt4> y)
3789{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003790 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003791 return RValue<UInt4>(Nucleus::createICmpEQ(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05003792}
3793
3794RValue<UInt4> CmpLT(RValue<UInt4> x, RValue<UInt4> y)
3795{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003796 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003797 return RValue<UInt4>(Nucleus::createICmpULT(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05003798}
3799
3800RValue<UInt4> CmpLE(RValue<UInt4> x, RValue<UInt4> y)
3801{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003802 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003803 return RValue<UInt4>(Nucleus::createICmpULE(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05003804}
3805
3806RValue<UInt4> CmpNEQ(RValue<UInt4> x, RValue<UInt4> y)
3807{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003808 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003809 return RValue<UInt4>(Nucleus::createICmpNE(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05003810}
3811
3812RValue<UInt4> CmpNLT(RValue<UInt4> x, RValue<UInt4> y)
3813{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003814 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003815 return RValue<UInt4>(Nucleus::createICmpUGE(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05003816}
3817
3818RValue<UInt4> CmpNLE(RValue<UInt4> x, RValue<UInt4> y)
3819{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003820 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003821 return RValue<UInt4>(Nucleus::createICmpUGT(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05003822}
3823
3824RValue<UInt4> Max(RValue<UInt4> x, RValue<UInt4> y)
3825{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003826 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003827 Ice::Variable *condition = ::function->makeVariable(Ice::IceType_v4i1);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003828 auto cmp = Ice::InstIcmp::create(::function, Ice::InstIcmp::Ule, condition, x.value(), y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003829 ::basicBlock->appendInst(cmp);
3830
3831 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v4i32);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003832 auto select = Ice::InstSelect::create(::function, result, condition, y.value(), x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003833 ::basicBlock->appendInst(select);
3834
3835 return RValue<UInt4>(V(result));
3836}
3837
3838RValue<UInt4> Min(RValue<UInt4> x, RValue<UInt4> y)
3839{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003840 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003841 Ice::Variable *condition = ::function->makeVariable(Ice::IceType_v4i1);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003842 auto cmp = Ice::InstIcmp::create(::function, Ice::InstIcmp::Ugt, condition, x.value(), y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003843 ::basicBlock->appendInst(cmp);
3844
3845 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v4i32);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003846 auto select = Ice::InstSelect::create(::function, result, condition, y.value(), x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003847 ::basicBlock->appendInst(select);
3848
3849 return RValue<UInt4>(V(result));
3850}
3851
Nicolas Capens519cf222020-05-08 15:27:19 -04003852Type *UInt4::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05003853{
3854 return T(Ice::IceType_v4i32);
3855}
3856
Nicolas Capens519cf222020-05-08 15:27:19 -04003857Type *Half::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05003858{
3859 return T(Ice::IceType_i16);
3860}
3861
3862RValue<Float> Rcp_pp(RValue<Float> x, bool exactAtPow2)
3863{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003864 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003865 return 1.0f / x;
3866}
3867
3868RValue<Float> RcpSqrt_pp(RValue<Float> x)
3869{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003870 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003871 return Rcp_pp(Sqrt(x));
3872}
3873
3874RValue<Float> Sqrt(RValue<Float> x)
3875{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003876 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003877 Ice::Variable *result = ::function->makeVariable(Ice::IceType_f32);
Ben Clayton713b8d32019-12-17 20:37:56 +00003878 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::Sqrt, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05003879 auto sqrt = Ice::InstIntrinsic::create(::function, 1, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003880 sqrt->addArg(x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05003881 ::basicBlock->appendInst(sqrt);
3882
3883 return RValue<Float>(V(result));
3884}
3885
3886RValue<Float> Round(RValue<Float> x)
3887{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003888 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003889 return Float4(Round(Float4(x))).x;
3890}
3891
3892RValue<Float> Trunc(RValue<Float> x)
3893{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003894 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003895 return Float4(Trunc(Float4(x))).x;
3896}
3897
3898RValue<Float> Frac(RValue<Float> x)
3899{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003900 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003901 return Float4(Frac(Float4(x))).x;
3902}
3903
3904RValue<Float> Floor(RValue<Float> x)
3905{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003906 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003907 return Float4(Floor(Float4(x))).x;
3908}
3909
3910RValue<Float> Ceil(RValue<Float> x)
3911{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003912 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05003913 return Float4(Ceil(Float4(x))).x;
3914}
3915
Nicolas Capens519cf222020-05-08 15:27:19 -04003916Type *Float::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05003917{
3918 return T(Ice::IceType_f32);
3919}
3920
Nicolas Capens519cf222020-05-08 15:27:19 -04003921Type *Float2::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05003922{
3923 return T(Type_v2f32);
3924}
3925
Ben Clayton713b8d32019-12-17 20:37:56 +00003926Float4::Float4(RValue<Float> rhs)
3927 : XYZW(this)
Nicolas Capens157ba262019-12-10 17:49:14 -05003928{
Antonio Maioranoaae33732020-02-14 14:52:34 -05003929 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04003930 Value *vector = Nucleus::createBitCast(rhs.value(), Float4::type());
Nicolas Capens157ba262019-12-10 17:49:14 -05003931
Ben Clayton713b8d32019-12-17 20:37:56 +00003932 int swizzle[4] = { 0, 0, 0, 0 };
Nicolas Capens157ba262019-12-10 17:49:14 -05003933 Value *replicate = Nucleus::createShuffleVector(vector, vector, swizzle);
3934
3935 storeValue(replicate);
3936}
3937
Nicolas Capens4ee53092022-02-05 01:53:12 -05003938// Call single arg function on a vector type
3939template<typename Func, typename T>
3940static RValue<T> call4(Func func, const RValue<T> &x)
3941{
3942 T result;
3943 result = Insert(result, Call(func, Extract(x, 0)), 0);
3944 result = Insert(result, Call(func, Extract(x, 1)), 1);
3945 result = Insert(result, Call(func, Extract(x, 2)), 2);
3946 result = Insert(result, Call(func, Extract(x, 3)), 3);
3947 return result;
3948}
3949
3950// Call two arg function on a vector type
3951template<typename Func, typename T>
3952static RValue<T> call4(Func func, const RValue<T> &x, const RValue<T> &y)
3953{
3954 T result;
3955 result = Insert(result, Call(func, Extract(x, 0), Extract(y, 0)), 0);
3956 result = Insert(result, Call(func, Extract(x, 1), Extract(y, 1)), 1);
3957 result = Insert(result, Call(func, Extract(x, 2), Extract(y, 2)), 2);
3958 result = Insert(result, Call(func, Extract(x, 3), Extract(y, 3)), 3);
3959 return result;
3960}
3961
3962// Call three arg function on a vector type
3963template<typename Func, typename T>
3964static RValue<T> call4(Func func, const RValue<T> &x, const RValue<T> &y, const RValue<T> &z)
3965{
3966 T result;
3967 result = Insert(result, Call(func, Extract(x, 0), Extract(y, 0), Extract(z, 0)), 0);
3968 result = Insert(result, Call(func, Extract(x, 1), Extract(y, 1), Extract(z, 1)), 1);
3969 result = Insert(result, Call(func, Extract(x, 2), Extract(y, 2), Extract(z, 2)), 2);
3970 result = Insert(result, Call(func, Extract(x, 3), Extract(y, 3), Extract(z, 3)), 3);
3971 return result;
3972}
3973
3974RValue<Float4> operator%(RValue<Float4> lhs, RValue<Float4> rhs)
3975{
3976 return call4(fmodf, lhs, rhs);
3977}
3978
Nicolas Capensbc74bc22022-01-26 10:47:00 -05003979RValue<Float4> MulAdd(RValue<Float4> x, RValue<Float4> y, RValue<Float4> z)
3980{
3981 // TODO(b/214591655): Use FMA when available.
3982 return x * y + z;
3983}
3984
Nicolas Capens75d79f22022-01-31 17:46:26 -05003985RValue<Float4> FMA(RValue<Float4> x, RValue<Float4> y, RValue<Float4> z)
3986{
3987 // TODO(b/214591655): Use FMA instructions when available.
Nicolas Capens4ee53092022-02-05 01:53:12 -05003988 return call4(fmaf, x, y, z);
Nicolas Capens75d79f22022-01-31 17:46:26 -05003989}
3990
Nicolas Capens629bf952022-01-18 15:08:14 -05003991RValue<Float4> Abs(RValue<Float4> x)
3992{
3993 // TODO: Optimize.
3994 Value *vector = Nucleus::createBitCast(x.value(), Int4::type());
3995 int64_t constantVector[4] = { 0x7FFFFFFF, 0x7FFFFFFF, 0x7FFFFFFF, 0x7FFFFFFF };
3996 Value *result = Nucleus::createAnd(vector, Nucleus::createConstantVector(constantVector, Int4::type()));
3997
3998 return As<Float4>(result);
3999}
4000
Nicolas Capens157ba262019-12-10 17:49:14 -05004001RValue<Float4> Max(RValue<Float4> x, RValue<Float4> y)
4002{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004003 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05004004 Ice::Variable *condition = ::function->makeVariable(Ice::IceType_v4i1);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004005 auto cmp = Ice::InstFcmp::create(::function, Ice::InstFcmp::Ogt, condition, x.value(), y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05004006 ::basicBlock->appendInst(cmp);
4007
4008 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v4f32);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004009 auto select = Ice::InstSelect::create(::function, result, condition, x.value(), y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05004010 ::basicBlock->appendInst(select);
4011
4012 return RValue<Float4>(V(result));
4013}
4014
4015RValue<Float4> Min(RValue<Float4> x, RValue<Float4> y)
4016{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004017 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05004018 Ice::Variable *condition = ::function->makeVariable(Ice::IceType_v4i1);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004019 auto cmp = Ice::InstFcmp::create(::function, Ice::InstFcmp::Olt, condition, x.value(), y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05004020 ::basicBlock->appendInst(cmp);
4021
4022 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v4f32);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004023 auto select = Ice::InstSelect::create(::function, result, condition, x.value(), y.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05004024 ::basicBlock->appendInst(select);
4025
4026 return RValue<Float4>(V(result));
4027}
4028
4029RValue<Float4> Rcp_pp(RValue<Float4> x, bool exactAtPow2)
4030{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004031 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05004032 return Float4(1.0f) / x;
4033}
4034
4035RValue<Float4> RcpSqrt_pp(RValue<Float4> x)
4036{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004037 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05004038 return Rcp_pp(Sqrt(x));
4039}
4040
Antonio Maioranod1561872020-12-14 14:03:53 -05004041bool HasRcpApprox()
4042{
4043 // TODO(b/175612820): Update once we implement x86 SSE rcp_ss and rsqrt_ss intrinsics in Subzero
4044 return false;
4045}
4046
4047RValue<Float4> RcpApprox(RValue<Float4> x, bool exactAtPow2)
4048{
4049 // TODO(b/175612820): Update once we implement x86 SSE rcp_ss and rsqrt_ss intrinsics in Subzero
4050 UNREACHABLE("RValue<Float4> RcpApprox()");
4051 return { 0.0f };
4052}
4053
4054RValue<Float> RcpApprox(RValue<Float> x, bool exactAtPow2)
4055{
4056 // TODO(b/175612820): Update once we implement x86 SSE rcp_ss and rsqrt_ss intrinsics in Subzero
4057 UNREACHABLE("RValue<Float> RcpApprox()");
4058 return { 0.0f };
4059}
4060
Antonio Maiorano1cc5b332020-12-14 16:57:28 -05004061bool HasRcpSqrtApprox()
4062{
4063 return false;
4064}
4065
4066RValue<Float4> RcpSqrtApprox(RValue<Float4> x)
4067{
4068 // TODO(b/175612820): Update once we implement x86 SSE rcp_ss and rsqrt_ss intrinsics in Subzero
4069 UNREACHABLE("RValue<Float4> RcpSqrtApprox()");
4070 return { 0.0f };
4071}
4072
4073RValue<Float> RcpSqrtApprox(RValue<Float> x)
4074{
4075 // TODO(b/175612820): Update once we implement x86 SSE rcp_ss and rsqrt_ss intrinsics in Subzero
4076 UNREACHABLE("RValue<Float> RcpSqrtApprox()");
4077 return { 0.0f };
4078}
4079
Nicolas Capens157ba262019-12-10 17:49:14 -05004080RValue<Float4> Sqrt(RValue<Float4> x)
4081{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004082 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05004083 if(emulateIntrinsics || CPUID::ARM)
Nicolas Capens598f8d82016-09-26 15:09:10 -04004084 {
Nicolas Capens157ba262019-12-10 17:49:14 -05004085 Float4 result;
4086 result.x = Sqrt(Float(Float4(x).x));
4087 result.y = Sqrt(Float(Float4(x).y));
4088 result.z = Sqrt(Float(Float4(x).z));
4089 result.w = Sqrt(Float(Float4(x).w));
4090
4091 return result;
Nicolas Capens598f8d82016-09-26 15:09:10 -04004092 }
Nicolas Capens157ba262019-12-10 17:49:14 -05004093 else
Nicolas Capens598f8d82016-09-26 15:09:10 -04004094 {
Nicolas Capens157ba262019-12-10 17:49:14 -05004095 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v4f32);
Ben Clayton713b8d32019-12-17 20:37:56 +00004096 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::Sqrt, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05004097 auto sqrt = Ice::InstIntrinsic::create(::function, 1, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004098 sqrt->addArg(x.value());
Nicolas Capensd52e9362016-10-31 23:23:15 -04004099 ::basicBlock->appendInst(sqrt);
4100
Nicolas Capens53a8a3f2016-10-26 00:23:12 -04004101 return RValue<Float4>(V(result));
Nicolas Capens598f8d82016-09-26 15:09:10 -04004102 }
Nicolas Capens598f8d82016-09-26 15:09:10 -04004103}
Nicolas Capens157ba262019-12-10 17:49:14 -05004104
4105RValue<Int> SignMask(RValue<Float4> x)
4106{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004107 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05004108 if(emulateIntrinsics || CPUID::ARM)
4109 {
4110 Int4 xx = (As<Int4>(x) >> 31) & Int4(0x00000001, 0x00000002, 0x00000004, 0x00000008);
4111 return Extract(xx, 0) | Extract(xx, 1) | Extract(xx, 2) | Extract(xx, 3);
4112 }
4113 else
4114 {
4115 Ice::Variable *result = ::function->makeVariable(Ice::IceType_i32);
Ben Clayton713b8d32019-12-17 20:37:56 +00004116 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::SignMask, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05004117 auto movmsk = Ice::InstIntrinsic::create(::function, 1, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004118 movmsk->addArg(x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05004119 ::basicBlock->appendInst(movmsk);
4120
4121 return RValue<Int>(V(result));
4122 }
4123}
4124
4125RValue<Int4> CmpEQ(RValue<Float4> x, RValue<Float4> y)
4126{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004127 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004128 return RValue<Int4>(Nucleus::createFCmpOEQ(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05004129}
4130
4131RValue<Int4> CmpLT(RValue<Float4> x, RValue<Float4> y)
4132{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004133 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004134 return RValue<Int4>(Nucleus::createFCmpOLT(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05004135}
4136
4137RValue<Int4> CmpLE(RValue<Float4> x, RValue<Float4> y)
4138{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004139 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004140 return RValue<Int4>(Nucleus::createFCmpOLE(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05004141}
4142
4143RValue<Int4> CmpNEQ(RValue<Float4> x, RValue<Float4> y)
4144{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004145 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004146 return RValue<Int4>(Nucleus::createFCmpONE(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05004147}
4148
4149RValue<Int4> CmpNLT(RValue<Float4> x, RValue<Float4> y)
4150{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004151 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004152 return RValue<Int4>(Nucleus::createFCmpOGE(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05004153}
4154
4155RValue<Int4> CmpNLE(RValue<Float4> x, RValue<Float4> y)
4156{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004157 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004158 return RValue<Int4>(Nucleus::createFCmpOGT(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05004159}
4160
4161RValue<Int4> CmpUEQ(RValue<Float4> x, RValue<Float4> y)
4162{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004163 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004164 return RValue<Int4>(Nucleus::createFCmpUEQ(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05004165}
4166
4167RValue<Int4> CmpULT(RValue<Float4> x, RValue<Float4> y)
4168{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004169 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004170 return RValue<Int4>(Nucleus::createFCmpULT(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05004171}
4172
4173RValue<Int4> CmpULE(RValue<Float4> x, RValue<Float4> y)
4174{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004175 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004176 return RValue<Int4>(Nucleus::createFCmpULE(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05004177}
4178
4179RValue<Int4> CmpUNEQ(RValue<Float4> x, RValue<Float4> y)
4180{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004181 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004182 return RValue<Int4>(Nucleus::createFCmpUNE(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05004183}
4184
4185RValue<Int4> CmpUNLT(RValue<Float4> x, RValue<Float4> y)
4186{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004187 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004188 return RValue<Int4>(Nucleus::createFCmpUGE(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05004189}
4190
4191RValue<Int4> CmpUNLE(RValue<Float4> x, RValue<Float4> y)
4192{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004193 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004194 return RValue<Int4>(Nucleus::createFCmpUGT(x.value(), y.value()));
Nicolas Capens157ba262019-12-10 17:49:14 -05004195}
4196
4197RValue<Float4> Round(RValue<Float4> x)
4198{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004199 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05004200 if(emulateIntrinsics || CPUID::ARM)
4201 {
4202 // Push the fractional part off the mantissa. Accurate up to +/-2^22.
4203 return (x + Float4(0x00C00000)) - Float4(0x00C00000);
4204 }
4205 else if(CPUID::SSE4_1)
4206 {
4207 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v4f32);
Ben Clayton713b8d32019-12-17 20:37:56 +00004208 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::Round, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05004209 auto round = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004210 round->addArg(x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05004211 round->addArg(::context->getConstantInt32(0));
4212 ::basicBlock->appendInst(round);
4213
4214 return RValue<Float4>(V(result));
4215 }
4216 else
4217 {
4218 return Float4(RoundInt(x));
4219 }
4220}
4221
4222RValue<Float4> Trunc(RValue<Float4> x)
4223{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004224 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05004225 if(CPUID::SSE4_1)
4226 {
4227 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v4f32);
Ben Clayton713b8d32019-12-17 20:37:56 +00004228 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::Round, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05004229 auto round = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004230 round->addArg(x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05004231 round->addArg(::context->getConstantInt32(3));
4232 ::basicBlock->appendInst(round);
4233
4234 return RValue<Float4>(V(result));
4235 }
4236 else
4237 {
4238 return Float4(Int4(x));
4239 }
4240}
4241
4242RValue<Float4> Frac(RValue<Float4> x)
4243{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004244 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05004245 Float4 frc;
4246
4247 if(CPUID::SSE4_1)
4248 {
4249 frc = x - Floor(x);
4250 }
4251 else
4252 {
Ben Clayton713b8d32019-12-17 20:37:56 +00004253 frc = x - Float4(Int4(x)); // Signed fractional part.
Nicolas Capens157ba262019-12-10 17:49:14 -05004254
Ben Clayton713b8d32019-12-17 20:37:56 +00004255 frc += As<Float4>(As<Int4>(CmpNLE(Float4(0.0f), frc)) & As<Int4>(Float4(1, 1, 1, 1))); // Add 1.0 if negative.
Nicolas Capens157ba262019-12-10 17:49:14 -05004256 }
4257
4258 // x - floor(x) can be 1.0 for very small negative x.
4259 // Clamp against the value just below 1.0.
4260 return Min(frc, As<Float4>(Int4(0x3F7FFFFF)));
4261}
4262
4263RValue<Float4> Floor(RValue<Float4> x)
4264{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004265 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05004266 if(CPUID::SSE4_1)
4267 {
4268 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v4f32);
Ben Clayton713b8d32019-12-17 20:37:56 +00004269 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::Round, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05004270 auto round = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004271 round->addArg(x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05004272 round->addArg(::context->getConstantInt32(1));
4273 ::basicBlock->appendInst(round);
4274
4275 return RValue<Float4>(V(result));
4276 }
4277 else
4278 {
4279 return x - Frac(x);
4280 }
4281}
4282
4283RValue<Float4> Ceil(RValue<Float4> x)
4284{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004285 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens157ba262019-12-10 17:49:14 -05004286 if(CPUID::SSE4_1)
4287 {
4288 Ice::Variable *result = ::function->makeVariable(Ice::IceType_v4f32);
Ben Clayton713b8d32019-12-17 20:37:56 +00004289 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::Round, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05004290 auto round = Ice::InstIntrinsic::create(::function, 2, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004291 round->addArg(x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05004292 round->addArg(::context->getConstantInt32(2));
4293 ::basicBlock->appendInst(round);
4294
4295 return RValue<Float4>(V(result));
4296 }
4297 else
4298 {
4299 return -Floor(-x);
4300 }
4301}
4302
Nicolas Capens519cf222020-05-08 15:27:19 -04004303Type *Float4::type()
Nicolas Capens157ba262019-12-10 17:49:14 -05004304{
4305 return T(Ice::IceType_v4f32);
4306}
4307
4308RValue<Long> Ticks()
4309{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004310 RR_DEBUG_INFO_UPDATE_LOC();
Ben Claytonce54c592020-02-07 11:30:51 +00004311 UNIMPLEMENTED_NO_BUG("RValue<Long> Ticks()");
Nicolas Capens157ba262019-12-10 17:49:14 -05004312 return Long(Int(0));
4313}
4314
Ben Clayton713b8d32019-12-17 20:37:56 +00004315RValue<Pointer<Byte>> ConstantPointer(void const *ptr)
Nicolas Capens157ba262019-12-10 17:49:14 -05004316{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004317 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano02a39532020-01-21 15:15:34 -05004318 return RValue<Pointer<Byte>>{ V(sz::getConstantPointer(::context, ptr)) };
Nicolas Capens157ba262019-12-10 17:49:14 -05004319}
4320
Ben Clayton713b8d32019-12-17 20:37:56 +00004321RValue<Pointer<Byte>> ConstantData(void const *data, size_t size)
Nicolas Capens157ba262019-12-10 17:49:14 -05004322{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004323 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano02a39532020-01-21 15:15:34 -05004324 return RValue<Pointer<Byte>>{ V(IceConstantData(data, size)) };
Nicolas Capens157ba262019-12-10 17:49:14 -05004325}
4326
Ben Clayton713b8d32019-12-17 20:37:56 +00004327Value *Call(RValue<Pointer<Byte>> fptr, Type *retTy, std::initializer_list<Value *> args, std::initializer_list<Type *> argTys)
Nicolas Capens157ba262019-12-10 17:49:14 -05004328{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004329 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004330 return V(sz::Call(::function, ::basicBlock, T(retTy), V(fptr.value()), V(args), false));
Nicolas Capens157ba262019-12-10 17:49:14 -05004331}
4332
4333void Breakpoint()
4334{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004335 RR_DEBUG_INFO_UPDATE_LOC();
Ben Clayton713b8d32019-12-17 20:37:56 +00004336 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::Trap, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05004337 auto trap = Ice::InstIntrinsic::create(::function, 0, nullptr, intrinsic);
Nicolas Capens157ba262019-12-10 17:49:14 -05004338 ::basicBlock->appendInst(trap);
4339}
4340
Ben Clayton713b8d32019-12-17 20:37:56 +00004341void Nucleus::createFence(std::memory_order memoryOrder)
4342{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004343 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano370cba52019-12-31 11:36:07 -05004344 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::AtomicFence, Ice::Intrinsics::SideEffects_T, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05004345 auto inst = Ice::InstIntrinsic::create(::function, 0, nullptr, intrinsic);
Antonio Maiorano370cba52019-12-31 11:36:07 -05004346 auto order = ::context->getConstantInt32(stdToIceMemoryOrder(memoryOrder));
4347 inst->addArg(order);
4348 ::basicBlock->appendInst(inst);
Ben Clayton713b8d32019-12-17 20:37:56 +00004349}
Antonio Maiorano370cba52019-12-31 11:36:07 -05004350
Ben Clayton713b8d32019-12-17 20:37:56 +00004351Value *Nucleus::createMaskedLoad(Value *ptr, Type *elTy, Value *mask, unsigned int alignment, bool zeroMaskedLanes)
4352{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004353 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capense4b77942021-08-03 17:09:41 -04004354 UNIMPLEMENTED("b/155867273 Subzero createMaskedLoad()");
Ben Clayton713b8d32019-12-17 20:37:56 +00004355 return nullptr;
4356}
Nicolas Capense4b77942021-08-03 17:09:41 -04004357
Ben Clayton713b8d32019-12-17 20:37:56 +00004358void Nucleus::createMaskedStore(Value *ptr, Value *val, Value *mask, unsigned int alignment)
4359{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004360 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capense4b77942021-08-03 17:09:41 -04004361 UNIMPLEMENTED("b/155867273 Subzero createMaskedStore()");
Ben Clayton713b8d32019-12-17 20:37:56 +00004362}
Nicolas Capens157ba262019-12-10 17:49:14 -05004363
Nicolas Capens4ee53092022-02-05 01:53:12 -05004364template<typename T>
4365struct UnderlyingType
4366{
4367 using Type = typename decltype(rr::Extract(std::declval<RValue<T>>(), 0))::rvalue_underlying_type;
4368};
4369
4370template<typename T>
4371using UnderlyingTypeT = typename UnderlyingType<T>::Type;
4372
4373template<typename T, typename EL = UnderlyingTypeT<T>>
4374static void gather(T &out, RValue<Pointer<EL>> base, RValue<Int4> offsets, RValue<Int4> mask, unsigned int alignment, bool zeroMaskedLanes)
4375{
4376 constexpr bool atomic = false;
4377 constexpr std::memory_order order = std::memory_order_relaxed;
4378
4379 Pointer<Byte> baseBytePtr = base;
4380
4381 out = T(0);
4382 for(int i = 0; i < 4; i++)
4383 {
4384 If(Extract(mask, i) != 0)
4385 {
4386 auto offset = Extract(offsets, i);
4387 auto el = Load(Pointer<EL>(&baseBytePtr[offset]), alignment, atomic, order);
4388 out = Insert(out, el, i);
4389 }
4390 Else If(zeroMaskedLanes)
4391 {
4392 out = Insert(out, EL(0), i);
4393 }
4394 }
4395}
4396
4397template<typename T, typename EL = UnderlyingTypeT<T>>
4398static void scatter(RValue<Pointer<EL>> base, RValue<T> val, RValue<Int4> offsets, RValue<Int4> mask, unsigned int alignment)
4399{
4400 constexpr bool atomic = false;
4401 constexpr std::memory_order order = std::memory_order_relaxed;
4402
4403 Pointer<Byte> baseBytePtr = base;
4404
4405 for(int i = 0; i < 4; i++)
4406 {
4407 If(Extract(mask, i) != 0)
4408 {
4409 auto offset = Extract(offsets, i);
4410 Store(Extract(val, i), Pointer<EL>(&baseBytePtr[offset]), alignment, atomic, order);
4411 }
4412 }
4413}
4414
Nicolas Capens157ba262019-12-10 17:49:14 -05004415RValue<Float4> Gather(RValue<Pointer<Float>> base, RValue<Int4> offsets, RValue<Int4> mask, unsigned int alignment, bool zeroMaskedLanes /* = false */)
4416{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004417 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004418 Float4 result{};
4419 gather(result, base, offsets, mask, alignment, zeroMaskedLanes);
4420 return result;
Nicolas Capens157ba262019-12-10 17:49:14 -05004421}
4422
4423RValue<Int4> Gather(RValue<Pointer<Int>> base, RValue<Int4> offsets, RValue<Int4> mask, unsigned int alignment, bool zeroMaskedLanes /* = false */)
4424{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004425 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004426 Int4 result{};
4427 gather(result, base, offsets, mask, alignment, zeroMaskedLanes);
4428 return result;
Nicolas Capens157ba262019-12-10 17:49:14 -05004429}
4430
4431void Scatter(RValue<Pointer<Float>> base, RValue<Float4> val, RValue<Int4> offsets, RValue<Int4> mask, unsigned int alignment)
4432{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004433 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004434 scatter(base, val, offsets, mask, alignment);
Nicolas Capens157ba262019-12-10 17:49:14 -05004435}
4436
4437void Scatter(RValue<Pointer<Int>> base, RValue<Int4> val, RValue<Int4> offsets, RValue<Int4> mask, unsigned int alignment)
4438{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004439 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004440 scatter<Int4>(base, val, offsets, mask, alignment);
Nicolas Capens157ba262019-12-10 17:49:14 -05004441}
4442
4443RValue<Float> Exp2(RValue<Float> x)
4444{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004445 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004446 return Call(exp2f, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004447}
4448
4449RValue<Float> Log2(RValue<Float> x)
4450{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004451 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004452 return Call(log2f, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004453}
4454
4455RValue<Float4> Sin(RValue<Float4> x)
4456{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004457 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004458 return call4(sinf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004459}
4460
4461RValue<Float4> Cos(RValue<Float4> x)
4462{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004463 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004464 return call4(cosf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004465}
4466
4467RValue<Float4> Tan(RValue<Float4> x)
4468{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004469 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004470 return call4(tanf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004471}
4472
Nicolas Capensd04f3f52022-02-05 01:19:14 -05004473RValue<Float4> Asin(RValue<Float4> x)
Nicolas Capens157ba262019-12-10 17:49:14 -05004474{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004475 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004476 return call4(asinf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004477}
4478
Nicolas Capensd04f3f52022-02-05 01:19:14 -05004479RValue<Float4> Acos(RValue<Float4> x)
Nicolas Capens157ba262019-12-10 17:49:14 -05004480{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004481 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004482 return call4(acosf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004483}
4484
4485RValue<Float4> Atan(RValue<Float4> x)
4486{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004487 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004488 return call4(atanf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004489}
4490
4491RValue<Float4> Sinh(RValue<Float4> x)
4492{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004493 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004494 return call4(sinhf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004495}
4496
4497RValue<Float4> Cosh(RValue<Float4> x)
4498{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004499 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004500 return call4(coshf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004501}
4502
4503RValue<Float4> Tanh(RValue<Float4> x)
4504{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004505 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004506 return call4(tanhf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004507}
4508
4509RValue<Float4> Asinh(RValue<Float4> x)
4510{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004511 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004512 return call4(asinhf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004513}
4514
4515RValue<Float4> Acosh(RValue<Float4> x)
4516{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004517 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004518 return call4(acoshf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004519}
4520
4521RValue<Float4> Atanh(RValue<Float4> x)
4522{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004523 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004524 return call4(atanhf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004525}
4526
4527RValue<Float4> Atan2(RValue<Float4> x, RValue<Float4> y)
4528{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004529 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004530 return call4(atan2f, x, y);
Nicolas Capens157ba262019-12-10 17:49:14 -05004531}
4532
4533RValue<Float4> Pow(RValue<Float4> x, RValue<Float4> y)
4534{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004535 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004536 return call4(powf, x, y);
Nicolas Capens157ba262019-12-10 17:49:14 -05004537}
4538
4539RValue<Float4> Exp(RValue<Float4> x)
4540{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004541 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004542 return call4(expf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004543}
4544
4545RValue<Float4> Log(RValue<Float4> x)
4546{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004547 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004548 return call4(logf, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004549}
4550
4551RValue<Float4> Exp2(RValue<Float4> x)
4552{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004553 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004554 return call4(exp2f, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004555}
4556
4557RValue<Float4> Log2(RValue<Float4> x)
4558{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004559 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004560 return call4(log2f, x);
Nicolas Capens157ba262019-12-10 17:49:14 -05004561}
4562
4563RValue<UInt> Ctlz(RValue<UInt> x, bool isZeroUndef)
4564{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004565 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens81bc9d92019-12-16 15:05:57 -05004566 if(emulateIntrinsics)
Nicolas Capens157ba262019-12-10 17:49:14 -05004567 {
Ben Claytonce54c592020-02-07 11:30:51 +00004568 UNIMPLEMENTED_NO_BUG("Subzero Ctlz()");
Ben Clayton713b8d32019-12-17 20:37:56 +00004569 return UInt(0);
Nicolas Capens157ba262019-12-10 17:49:14 -05004570 }
4571 else
4572 {
Ben Clayton713b8d32019-12-17 20:37:56 +00004573 Ice::Variable *result = ::function->makeVariable(Ice::IceType_i32);
Nicolas Capens157ba262019-12-10 17:49:14 -05004574 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::Ctlz, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05004575 auto ctlz = Ice::InstIntrinsic::create(::function, 1, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004576 ctlz->addArg(x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05004577 ::basicBlock->appendInst(ctlz);
4578
4579 return RValue<UInt>(V(result));
4580 }
4581}
4582
4583RValue<UInt4> Ctlz(RValue<UInt4> x, bool isZeroUndef)
4584{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004585 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens81bc9d92019-12-16 15:05:57 -05004586 if(emulateIntrinsics)
Nicolas Capens157ba262019-12-10 17:49:14 -05004587 {
Ben Claytonce54c592020-02-07 11:30:51 +00004588 UNIMPLEMENTED_NO_BUG("Subzero Ctlz()");
Ben Clayton713b8d32019-12-17 20:37:56 +00004589 return UInt4(0);
Nicolas Capens157ba262019-12-10 17:49:14 -05004590 }
4591 else
4592 {
4593 // TODO: implement vectorized version in Subzero
4594 UInt4 result;
4595 result = Insert(result, Ctlz(Extract(x, 0), isZeroUndef), 0);
4596 result = Insert(result, Ctlz(Extract(x, 1), isZeroUndef), 1);
4597 result = Insert(result, Ctlz(Extract(x, 2), isZeroUndef), 2);
4598 result = Insert(result, Ctlz(Extract(x, 3), isZeroUndef), 3);
4599 return result;
4600 }
4601}
4602
4603RValue<UInt> Cttz(RValue<UInt> x, bool isZeroUndef)
4604{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004605 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens81bc9d92019-12-16 15:05:57 -05004606 if(emulateIntrinsics)
Nicolas Capens157ba262019-12-10 17:49:14 -05004607 {
Ben Claytonce54c592020-02-07 11:30:51 +00004608 UNIMPLEMENTED_NO_BUG("Subzero Cttz()");
Ben Clayton713b8d32019-12-17 20:37:56 +00004609 return UInt(0);
Nicolas Capens157ba262019-12-10 17:49:14 -05004610 }
4611 else
4612 {
Ben Clayton713b8d32019-12-17 20:37:56 +00004613 Ice::Variable *result = ::function->makeVariable(Ice::IceType_i32);
Nicolas Capens157ba262019-12-10 17:49:14 -05004614 const Ice::Intrinsics::IntrinsicInfo intrinsic = { Ice::Intrinsics::Cttz, Ice::Intrinsics::SideEffects_F, Ice::Intrinsics::ReturnsTwice_F, Ice::Intrinsics::MemoryWrite_F };
Nicolas Capens33a77f72021-02-08 15:04:38 -05004615 auto ctlz = Ice::InstIntrinsic::create(::function, 1, result, intrinsic);
Nicolas Capensb6e8c3f2020-05-01 23:28:37 -04004616 ctlz->addArg(x.value());
Nicolas Capens157ba262019-12-10 17:49:14 -05004617 ::basicBlock->appendInst(ctlz);
4618
4619 return RValue<UInt>(V(result));
4620 }
4621}
4622
4623RValue<UInt4> Cttz(RValue<UInt4> x, bool isZeroUndef)
4624{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004625 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens81bc9d92019-12-16 15:05:57 -05004626 if(emulateIntrinsics)
Nicolas Capens157ba262019-12-10 17:49:14 -05004627 {
Ben Claytonce54c592020-02-07 11:30:51 +00004628 UNIMPLEMENTED_NO_BUG("Subzero Cttz()");
Ben Clayton713b8d32019-12-17 20:37:56 +00004629 return UInt4(0);
Nicolas Capens157ba262019-12-10 17:49:14 -05004630 }
4631 else
4632 {
4633 // TODO: implement vectorized version in Subzero
4634 UInt4 result;
4635 result = Insert(result, Cttz(Extract(x, 0), isZeroUndef), 0);
4636 result = Insert(result, Cttz(Extract(x, 1), isZeroUndef), 1);
4637 result = Insert(result, Cttz(Extract(x, 2), isZeroUndef), 2);
4638 result = Insert(result, Cttz(Extract(x, 3), isZeroUndef), 3);
4639 return result;
4640 }
4641}
4642
Nicolas Capens4ee53092022-02-05 01:53:12 -05004643// TODO(b/148276653): Both atomicMin and atomicMax use a static (global) mutex that makes all min
4644// operations for a given T mutually exclusive, rather than only the ones on the value pointed to
4645// by ptr. Use a CAS loop, as is done for LLVMReactor's min/max atomic for Android.
4646// TODO(b/148207274): Or, move this down into Subzero as a CAS-based operation.
4647template<typename T>
4648static T atomicMin(T *ptr, T value)
4649{
4650 static std::mutex m;
4651
4652 std::lock_guard<std::mutex> lock(m);
4653 T origValue = *ptr;
4654 *ptr = std::min(origValue, value);
4655 return origValue;
4656}
4657
4658template<typename T>
4659static T atomicMax(T *ptr, T value)
4660{
4661 static std::mutex m;
4662
4663 std::lock_guard<std::mutex> lock(m);
4664 T origValue = *ptr;
4665 *ptr = std::max(origValue, value);
4666 return origValue;
4667}
4668
Antonio Maiorano370cba52019-12-31 11:36:07 -05004669RValue<Int> MinAtomic(RValue<Pointer<Int>> x, RValue<Int> y, std::memory_order memoryOrder)
4670{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004671 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004672 return Call(atomicMin<int32_t>, x, y);
Antonio Maiorano370cba52019-12-31 11:36:07 -05004673}
4674
4675RValue<UInt> MinAtomic(RValue<Pointer<UInt>> x, RValue<UInt> y, std::memory_order memoryOrder)
4676{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004677 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004678 return Call(atomicMin<uint32_t>, x, y);
Antonio Maiorano370cba52019-12-31 11:36:07 -05004679}
4680
4681RValue<Int> MaxAtomic(RValue<Pointer<Int>> x, RValue<Int> y, std::memory_order memoryOrder)
4682{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004683 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004684 return Call(atomicMax<int32_t>, x, y);
Antonio Maiorano370cba52019-12-31 11:36:07 -05004685}
4686
4687RValue<UInt> MaxAtomic(RValue<Pointer<UInt>> x, RValue<UInt> y, std::memory_order memoryOrder)
4688{
Antonio Maioranoaae33732020-02-14 14:52:34 -05004689 RR_DEBUG_INFO_UPDATE_LOC();
Nicolas Capens4ee53092022-02-05 01:53:12 -05004690 return Call(atomicMax<uint32_t>, x, y);
Antonio Maiorano370cba52019-12-31 11:36:07 -05004691}
4692
Antonio Maioranoaae33732020-02-14 14:52:34 -05004693void EmitDebugLocation()
4694{
4695#ifdef ENABLE_RR_DEBUG_INFO
Antonio Maioranoaae33732020-02-14 14:52:34 -05004696 emitPrintLocation(getCallerBacktrace());
Antonio Maiorano4b777772020-06-22 14:55:37 -04004697#endif // ENABLE_RR_DEBUG_INFO
Antonio Maioranoaae33732020-02-14 14:52:34 -05004698}
Ben Clayton713b8d32019-12-17 20:37:56 +00004699void EmitDebugVariable(Value *value) {}
Nicolas Capens157ba262019-12-10 17:49:14 -05004700void FlushDebug() {}
4701
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004702namespace {
4703namespace coro {
4704
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004705// Instance data per generated coroutine
4706// This is the "handle" type used for Coroutine functions
4707// Lifetime: from yield to when CoroutineEntryDestroy generated function is called.
4708struct CoroutineData
Nicolas Capens157ba262019-12-10 17:49:14 -05004709{
Antonio Maiorano8f2d48f2020-02-28 13:39:11 -05004710 bool useInternalScheduler = false;
Ben Claytonc3466532020-03-24 11:54:05 +00004711 bool done = false; // the coroutine should stop at the next yield()
4712 bool terminated = false; // the coroutine has finished.
4713 bool inRoutine = false; // is the coroutine currently executing?
4714 marl::Scheduler::Fiber *mainFiber = nullptr;
4715 marl::Scheduler::Fiber *routineFiber = nullptr;
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004716 void *promisePtr = nullptr;
4717};
4718
4719CoroutineData *createCoroutineData()
4720{
4721 return new CoroutineData{};
4722}
4723
4724void destroyCoroutineData(CoroutineData *coroData)
4725{
4726 delete coroData;
4727}
4728
Antonio Maiorano8bce0672020-02-28 13:13:45 -05004729// suspend() pauses execution of the coroutine, and resumes execution from the
4730// caller's call to await().
4731// Returns true if await() is called again, or false if coroutine_destroy()
4732// is called.
4733bool suspend(Nucleus::CoroutineHandle handle)
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004734{
Ben Claytonc3466532020-03-24 11:54:05 +00004735 auto *coroData = reinterpret_cast<CoroutineData *>(handle);
4736 ASSERT(marl::Scheduler::Fiber::current() == coroData->routineFiber);
4737 ASSERT(coroData->inRoutine);
4738 coroData->inRoutine = false;
4739 coroData->mainFiber->notify();
4740 while(!coroData->inRoutine)
4741 {
4742 coroData->routineFiber->wait();
4743 }
4744 return !coroData->done;
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004745}
4746
Antonio Maiorano8bce0672020-02-28 13:13:45 -05004747// resume() is called by await(), blocking until the coroutine calls yield()
4748// or the coroutine terminates.
4749void resume(Nucleus::CoroutineHandle handle)
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004750{
Ben Claytonc3466532020-03-24 11:54:05 +00004751 auto *coroData = reinterpret_cast<CoroutineData *>(handle);
4752 ASSERT(marl::Scheduler::Fiber::current() == coroData->mainFiber);
4753 ASSERT(!coroData->inRoutine);
4754 coroData->inRoutine = true;
4755 coroData->routineFiber->notify();
4756 while(coroData->inRoutine)
4757 {
4758 coroData->mainFiber->wait();
4759 }
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004760}
4761
Antonio Maiorano8bce0672020-02-28 13:13:45 -05004762// stop() is called by coroutine_destroy(), signalling that it's done, then blocks
4763// until the coroutine ends, and deletes the coroutine data.
4764void stop(Nucleus::CoroutineHandle handle)
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004765{
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004766 auto *coroData = reinterpret_cast<CoroutineData *>(handle);
Ben Claytonc3466532020-03-24 11:54:05 +00004767 ASSERT(marl::Scheduler::Fiber::current() == coroData->mainFiber);
4768 ASSERT(!coroData->inRoutine);
4769 if(!coroData->terminated)
4770 {
4771 coroData->done = true;
4772 coroData->inRoutine = true;
4773 coroData->routineFiber->notify();
4774 while(!coroData->terminated)
4775 {
4776 coroData->mainFiber->wait();
4777 }
4778 }
Antonio Maiorano8f2d48f2020-02-28 13:39:11 -05004779 if(coroData->useInternalScheduler)
4780 {
4781 ::getOrCreateScheduler().unbind();
4782 }
Antonio Maiorano8bce0672020-02-28 13:13:45 -05004783 coro::destroyCoroutineData(coroData); // free the coroutine data.
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004784}
4785
4786namespace detail {
4787thread_local rr::Nucleus::CoroutineHandle coroHandle{};
4788} // namespace detail
4789
4790void setHandleParam(Nucleus::CoroutineHandle handle)
4791{
4792 ASSERT(!detail::coroHandle);
4793 detail::coroHandle = handle;
4794}
4795
4796Nucleus::CoroutineHandle getHandleParam()
4797{
4798 ASSERT(detail::coroHandle);
4799 auto handle = detail::coroHandle;
4800 detail::coroHandle = {};
4801 return handle;
4802}
4803
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004804bool isDone(Nucleus::CoroutineHandle handle)
4805{
4806 auto *coroData = reinterpret_cast<CoroutineData *>(handle);
Ben Claytonc3466532020-03-24 11:54:05 +00004807 return coroData->done;
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004808}
4809
4810void setPromisePtr(Nucleus::CoroutineHandle handle, void *promisePtr)
4811{
4812 auto *coroData = reinterpret_cast<CoroutineData *>(handle);
4813 coroData->promisePtr = promisePtr;
4814}
4815
4816void *getPromisePtr(Nucleus::CoroutineHandle handle)
4817{
4818 auto *coroData = reinterpret_cast<CoroutineData *>(handle);
4819 return coroData->promisePtr;
4820}
4821
4822} // namespace coro
4823} // namespace
4824
4825// Used to generate coroutines.
4826// Lifetime: from yield to acquireCoroutine
4827class CoroutineGenerator
4828{
4829public:
4830 CoroutineGenerator()
4831 {
4832 }
4833
4834 // Inserts instructions at the top of the current function to make it a coroutine.
4835 void generateCoroutineBegin()
4836 {
4837 // Begin building the main coroutine_begin() function.
4838 // We insert these instructions at the top of the entry node,
4839 // before existing reactor-generated instructions.
4840
4841 // CoroutineHandle coroutine_begin(<Arguments>)
4842 // {
4843 // this->handle = coro::getHandleParam();
4844 //
4845 // YieldType promise;
4846 // coro::setPromisePtr(handle, &promise); // For await
4847 //
4848 // ... <REACTOR CODE> ...
4849 //
4850
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004851 // this->handle = coro::getHandleParam();
Antonio Maiorano22d73d12020-03-20 00:13:28 -04004852 this->handle = sz::Call(::function, ::entryBlock, coro::getHandleParam);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004853
4854 // YieldType promise;
4855 // coro::setPromisePtr(handle, &promise); // For await
4856 this->promise = sz::allocateStackVariable(::function, T(::coroYieldType));
Antonio Maiorano22d73d12020-03-20 00:13:28 -04004857 sz::Call(::function, ::entryBlock, coro::setPromisePtr, this->handle, this->promise);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004858 }
4859
4860 // Adds instructions for Yield() calls at the current location of the main coroutine function.
4861 void generateYield(Value *val)
4862 {
4863 // ... <REACTOR CODE> ...
4864 //
4865 // promise = val;
Antonio Maiorano8bce0672020-02-28 13:13:45 -05004866 // if (!coro::suspend(handle)) {
4867 // return false; // coroutine has been stopped by the caller.
4868 // }
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004869 //
4870 // ... <REACTOR CODE> ...
4871
Antonio Maiorano8bce0672020-02-28 13:13:45 -05004872 // promise = val;
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004873 Nucleus::createStore(val, V(this->promise), ::coroYieldType);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004874
Antonio Maiorano8bce0672020-02-28 13:13:45 -05004875 // if (!coro::suspend(handle)) {
4876 auto result = sz::Call(::function, ::basicBlock, coro::suspend, this->handle);
4877 auto doneBlock = Nucleus::createBasicBlock();
4878 auto resumeBlock = Nucleus::createBasicBlock();
4879 Nucleus::createCondBr(V(result), resumeBlock, doneBlock);
4880
4881 // return false; // coroutine has been stopped by the caller.
4882 ::basicBlock = doneBlock;
4883 Nucleus::createRetVoid(); // coroutine return value is ignored.
4884
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004885 // ... <REACTOR CODE> ...
Antonio Maiorano8bce0672020-02-28 13:13:45 -05004886 ::basicBlock = resumeBlock;
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004887 }
4888
4889 using FunctionUniquePtr = std::unique_ptr<Ice::Cfg>;
4890
4891 // Generates the await function for the current coroutine.
4892 // Cannot use Nucleus functions that modify ::function and ::basicBlock.
4893 static FunctionUniquePtr generateAwaitFunction()
4894 {
4895 // bool coroutine_await(CoroutineHandle handle, YieldType* out)
4896 // {
4897 // if (coro::isDone())
4898 // {
4899 // return false;
4900 // }
4901 // else // resume
4902 // {
4903 // YieldType* promise = coro::getPromisePtr(handle);
4904 // *out = *promise;
Antonio Maiorano8bce0672020-02-28 13:13:45 -05004905 // coro::resume(handle);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004906 // return true;
4907 // }
4908 // }
4909
4910 // Subzero doesn't support bool types (IceType_i1) as return type
4911 const Ice::Type ReturnType = Ice::IceType_i32;
4912 const Ice::Type YieldPtrType = sz::getPointerType(T(::coroYieldType));
4913 const Ice::Type HandleType = sz::getPointerType(Ice::IceType_void);
4914
4915 Ice::Cfg *awaitFunc = sz::createFunction(::context, ReturnType, std::vector<Ice::Type>{ HandleType, YieldPtrType });
4916 Ice::CfgLocalAllocatorScope scopedAlloc{ awaitFunc };
4917
4918 Ice::Variable *handle = awaitFunc->getArgs()[0];
4919 Ice::Variable *outPtr = awaitFunc->getArgs()[1];
4920
4921 auto doneBlock = awaitFunc->makeNode();
4922 {
4923 // return false;
4924 Ice::InstRet *ret = Ice::InstRet::create(awaitFunc, ::context->getConstantInt32(0));
4925 doneBlock->appendInst(ret);
4926 }
4927
4928 auto resumeBlock = awaitFunc->makeNode();
4929 {
4930 // YieldType* promise = coro::getPromisePtr(handle);
4931 Ice::Variable *promise = sz::Call(awaitFunc, resumeBlock, coro::getPromisePtr, handle);
4932
4933 // *out = *promise;
4934 // Load promise value
4935 Ice::Variable *promiseVal = awaitFunc->makeVariable(T(::coroYieldType));
4936 auto load = Ice::InstLoad::create(awaitFunc, promiseVal, promise);
4937 resumeBlock->appendInst(load);
4938 // Then store it in output param
4939 auto store = Ice::InstStore::create(awaitFunc, promiseVal, outPtr);
4940 resumeBlock->appendInst(store);
4941
Antonio Maiorano8bce0672020-02-28 13:13:45 -05004942 // coro::resume(handle);
4943 sz::Call(awaitFunc, resumeBlock, coro::resume, handle);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004944
4945 // return true;
4946 Ice::InstRet *ret = Ice::InstRet::create(awaitFunc, ::context->getConstantInt32(1));
4947 resumeBlock->appendInst(ret);
4948 }
4949
4950 // if (coro::isDone())
4951 // {
4952 // <doneBlock>
4953 // }
4954 // else // resume
4955 // {
4956 // <resumeBlock>
4957 // }
4958 Ice::CfgNode *bb = awaitFunc->getEntryNode();
Antonio Maioranobc98fbe2020-03-17 15:46:22 -04004959 Ice::Variable *done = sz::Call(awaitFunc, bb, coro::isDone, handle);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004960 auto br = Ice::InstBr::create(awaitFunc, done, doneBlock, resumeBlock);
4961 bb->appendInst(br);
4962
4963 return FunctionUniquePtr{ awaitFunc };
4964 }
4965
4966 // Generates the destroy function for the current coroutine.
4967 // Cannot use Nucleus functions that modify ::function and ::basicBlock.
4968 static FunctionUniquePtr generateDestroyFunction()
4969 {
4970 // void coroutine_destroy(Nucleus::CoroutineHandle handle)
4971 // {
Antonio Maiorano8bce0672020-02-28 13:13:45 -05004972 // coro::stop(handle); // signal and wait for coroutine to stop, and delete coroutine data
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004973 // return;
4974 // }
4975
4976 const Ice::Type ReturnType = Ice::IceType_void;
4977 const Ice::Type HandleType = sz::getPointerType(Ice::IceType_void);
4978
4979 Ice::Cfg *destroyFunc = sz::createFunction(::context, ReturnType, std::vector<Ice::Type>{ HandleType });
4980 Ice::CfgLocalAllocatorScope scopedAlloc{ destroyFunc };
4981
4982 Ice::Variable *handle = destroyFunc->getArgs()[0];
4983
4984 auto *bb = destroyFunc->getEntryNode();
4985
Antonio Maiorano8bce0672020-02-28 13:13:45 -05004986 // coro::stop(handle); // signal and wait for coroutine to stop, and delete coroutine data
4987 sz::Call(destroyFunc, bb, coro::stop, handle);
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05004988
4989 // return;
4990 Ice::InstRet *ret = Ice::InstRet::create(destroyFunc);
4991 bb->appendInst(ret);
4992
4993 return FunctionUniquePtr{ destroyFunc };
4994 }
4995
4996private:
4997 Ice::Variable *handle{};
4998 Ice::Variable *promise{};
4999};
5000
5001static Nucleus::CoroutineHandle invokeCoroutineBegin(std::function<Nucleus::CoroutineHandle()> beginFunc)
5002{
5003 // This doubles up as our coroutine handle
5004 auto coroData = coro::createCoroutineData();
5005
Antonio Maiorano8f2d48f2020-02-28 13:39:11 -05005006 coroData->useInternalScheduler = (marl::Scheduler::get() == nullptr);
5007 if(coroData->useInternalScheduler)
5008 {
5009 ::getOrCreateScheduler().bind();
5010 }
5011
Ben Clayton76e9e532020-03-16 20:35:04 +00005012 auto run = [=] {
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05005013 // Store handle in TLS so that the coroutine can grab it right away, before
5014 // any fiber switch occurs.
5015 coro::setHandleParam(coroData);
5016
Ben Claytonc3466532020-03-24 11:54:05 +00005017 ASSERT(!coroData->routineFiber);
5018 coroData->routineFiber = marl::Scheduler::Fiber::current();
5019
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05005020 beginFunc();
5021
Ben Claytonc3466532020-03-24 11:54:05 +00005022 ASSERT(coroData->inRoutine);
5023 coroData->done = true; // coroutine is done.
5024 coroData->terminated = true; // signal that the coroutine data is ready for freeing.
5025 coroData->inRoutine = false;
5026 coroData->mainFiber->notify();
Ben Clayton76e9e532020-03-16 20:35:04 +00005027 };
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05005028
Ben Claytonc3466532020-03-24 11:54:05 +00005029 ASSERT(!coroData->mainFiber);
5030 coroData->mainFiber = marl::Scheduler::Fiber::current();
5031
5032 // block until the first yield or coroutine end
5033 ASSERT(!coroData->inRoutine);
5034 coroData->inRoutine = true;
5035 marl::schedule(marl::Task(run, marl::Task::Flags::SameThread));
5036 while(coroData->inRoutine)
5037 {
5038 coroData->mainFiber->wait();
5039 }
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05005040
5041 return coroData;
5042}
5043
5044void Nucleus::createCoroutine(Type *yieldType, const std::vector<Type *> &params)
5045{
5046 // Start by creating a regular function
5047 createFunction(yieldType, params);
5048
5049 // Save in case yield() is called
5050 ASSERT(::coroYieldType == nullptr); // Only one coroutine can be generated at once
5051 ::coroYieldType = yieldType;
5052}
5053
5054void Nucleus::yield(Value *val)
5055{
Antonio Maioranoaae33732020-02-14 14:52:34 -05005056 RR_DEBUG_INFO_UPDATE_LOC();
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05005057 Variable::materializeAll();
5058
5059 // On first yield, we start generating coroutine functions
5060 if(!::coroGen)
5061 {
5062 ::coroGen = std::make_shared<CoroutineGenerator>();
5063 ::coroGen->generateCoroutineBegin();
5064 }
5065
5066 ASSERT(::coroGen);
5067 ::coroGen->generateYield(val);
Nicolas Capens157ba262019-12-10 17:49:14 -05005068}
5069
Ben Clayton713b8d32019-12-17 20:37:56 +00005070static bool coroutineEntryAwaitStub(Nucleus::CoroutineHandle, void *yieldValue)
5071{
5072 return false;
5073}
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05005074
5075static void coroutineEntryDestroyStub(Nucleus::CoroutineHandle handle)
5076{
5077}
Nicolas Capens157ba262019-12-10 17:49:14 -05005078
Sean Risser705231f2021-08-19 18:17:24 -04005079std::shared_ptr<Routine> Nucleus::acquireCoroutine(const char *name, const Config::Edit *cfgEdit /* = nullptr */)
Nicolas Capens157ba262019-12-10 17:49:14 -05005080{
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05005081 if(::coroGen)
5082 {
5083 // Finish generating coroutine functions
5084 {
5085 Ice::CfgLocalAllocatorScope scopedAlloc{ ::function };
Antonio Maiorano22d73d12020-03-20 00:13:28 -04005086 finalizeFunction();
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05005087 }
Nicolas Capens157ba262019-12-10 17:49:14 -05005088
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05005089 auto awaitFunc = ::coroGen->generateAwaitFunction();
5090 auto destroyFunc = ::coroGen->generateDestroyFunction();
Nicolas Capens157ba262019-12-10 17:49:14 -05005091
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05005092 // At this point, we no longer need the CoroutineGenerator.
5093 ::coroGen.reset();
5094 ::coroYieldType = nullptr;
5095
5096 auto routine = rr::acquireRoutine({ ::function, awaitFunc.get(), destroyFunc.get() },
5097 { name, "await", "destroy" },
5098 cfgEdit);
5099
5100 return routine;
5101 }
5102 else
5103 {
5104 {
5105 Ice::CfgLocalAllocatorScope scopedAlloc{ ::function };
Antonio Maiorano22d73d12020-03-20 00:13:28 -04005106 finalizeFunction();
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05005107 }
5108
5109 ::coroYieldType = nullptr;
5110
5111 // Not an actual coroutine (no yields), so return stubs for await and destroy
5112 auto routine = rr::acquireRoutine({ ::function }, { name }, cfgEdit);
5113
5114 auto routineImpl = std::static_pointer_cast<ELFMemoryStreamer>(routine);
5115 routineImpl->setEntry(Nucleus::CoroutineEntryAwait, reinterpret_cast<const void *>(&coroutineEntryAwaitStub));
5116 routineImpl->setEntry(Nucleus::CoroutineEntryDestroy, reinterpret_cast<const void *>(&coroutineEntryDestroyStub));
5117 return routine;
5118 }
Nicolas Capens157ba262019-12-10 17:49:14 -05005119}
5120
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05005121Nucleus::CoroutineHandle Nucleus::invokeCoroutineBegin(Routine &routine, std::function<Nucleus::CoroutineHandle()> func)
Ben Clayton713b8d32019-12-17 20:37:56 +00005122{
Antonio Maiorano5ba2a5b2020-01-17 15:29:37 -05005123 const bool isCoroutine = routine.getEntry(Nucleus::CoroutineEntryAwait) != reinterpret_cast<const void *>(&coroutineEntryAwaitStub);
5124
5125 if(isCoroutine)
5126 {
5127 return rr::invokeCoroutineBegin(func);
5128 }
5129 else
5130 {
5131 // For regular routines, just invoke the begin func directly
5132 return func();
5133 }
Ben Clayton713b8d32019-12-17 20:37:56 +00005134}
Nicolas Capens157ba262019-12-10 17:49:14 -05005135
5136} // namespace rr