125f80e16SEugene Zhulenev //===- AsyncToAsyncRuntime.cpp - Lower from Async to Async Runtime --------===//
225f80e16SEugene Zhulenev //
325f80e16SEugene Zhulenev // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
425f80e16SEugene Zhulenev // See https://llvm.org/LICENSE.txt for license information.
525f80e16SEugene Zhulenev // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
625f80e16SEugene Zhulenev //
725f80e16SEugene Zhulenev //===----------------------------------------------------------------------===//
825f80e16SEugene Zhulenev //
925f80e16SEugene Zhulenev // This file implements lowering from high level async operations to async.coro
1025f80e16SEugene Zhulenev // and async.runtime operations.
1125f80e16SEugene Zhulenev //
1225f80e16SEugene Zhulenev //===----------------------------------------------------------------------===//
1325f80e16SEugene Zhulenev 
1425f80e16SEugene Zhulenev #include "PassDetail.h"
15de7a4e53SEugene Zhulenev #include "mlir/Conversion/SCFToStandard/SCFToStandard.h"
16*a54f4eaeSMogball #include "mlir/Dialect/Arithmetic/IR/Arithmetic.h"
1725f80e16SEugene Zhulenev #include "mlir/Dialect/Async/IR/Async.h"
1825f80e16SEugene Zhulenev #include "mlir/Dialect/Async/Passes.h"
19de7a4e53SEugene Zhulenev #include "mlir/Dialect/SCF/SCF.h"
2025f80e16SEugene Zhulenev #include "mlir/Dialect/StandardOps/IR/Ops.h"
2125f80e16SEugene Zhulenev #include "mlir/IR/BlockAndValueMapping.h"
2225f80e16SEugene Zhulenev #include "mlir/IR/ImplicitLocOpBuilder.h"
2325f80e16SEugene Zhulenev #include "mlir/IR/PatternMatch.h"
2425f80e16SEugene Zhulenev #include "mlir/Transforms/DialectConversion.h"
2525f80e16SEugene Zhulenev #include "mlir/Transforms/RegionUtils.h"
2625f80e16SEugene Zhulenev #include "llvm/ADT/SetVector.h"
27297a5b7cSNico Weber #include "llvm/Support/Debug.h"
2825f80e16SEugene Zhulenev 
2925f80e16SEugene Zhulenev using namespace mlir;
3025f80e16SEugene Zhulenev using namespace mlir::async;
3125f80e16SEugene Zhulenev 
3225f80e16SEugene Zhulenev #define DEBUG_TYPE "async-to-async-runtime"
3325f80e16SEugene Zhulenev // Prefix for functions outlined from `async.execute` op regions.
3425f80e16SEugene Zhulenev static constexpr const char kAsyncFnPrefix[] = "async_execute_fn";
3525f80e16SEugene Zhulenev 
3625f80e16SEugene Zhulenev namespace {
3725f80e16SEugene Zhulenev 
3825f80e16SEugene Zhulenev class AsyncToAsyncRuntimePass
3925f80e16SEugene Zhulenev     : public AsyncToAsyncRuntimeBase<AsyncToAsyncRuntimePass> {
4025f80e16SEugene Zhulenev public:
4125f80e16SEugene Zhulenev   AsyncToAsyncRuntimePass() = default;
4225f80e16SEugene Zhulenev   void runOnOperation() override;
4325f80e16SEugene Zhulenev };
4425f80e16SEugene Zhulenev 
4525f80e16SEugene Zhulenev } // namespace
4625f80e16SEugene Zhulenev 
4725f80e16SEugene Zhulenev //===----------------------------------------------------------------------===//
4825f80e16SEugene Zhulenev // async.execute op outlining to the coroutine functions.
4925f80e16SEugene Zhulenev //===----------------------------------------------------------------------===//
5025f80e16SEugene Zhulenev 
5125f80e16SEugene Zhulenev /// Function targeted for coroutine transformation has two additional blocks at
5225f80e16SEugene Zhulenev /// the end: coroutine cleanup and coroutine suspension.
5325f80e16SEugene Zhulenev ///
5425f80e16SEugene Zhulenev /// async.await op lowering additionaly creates a resume block for each
5525f80e16SEugene Zhulenev /// operation to enable non-blocking waiting via coroutine suspension.
5625f80e16SEugene Zhulenev namespace {
5725f80e16SEugene Zhulenev struct CoroMachinery {
5839957aa4SEugene Zhulenev   FuncOp func;
5939957aa4SEugene Zhulenev 
6025f80e16SEugene Zhulenev   // Async execute region returns a completion token, and an async value for
6125f80e16SEugene Zhulenev   // each yielded value.
6225f80e16SEugene Zhulenev   //
6325f80e16SEugene Zhulenev   //   %token, %result = async.execute -> !async.value<T> {
6425f80e16SEugene Zhulenev   //     %0 = constant ... : T
6525f80e16SEugene Zhulenev   //     async.yield %0 : T
6625f80e16SEugene Zhulenev   //   }
6725f80e16SEugene Zhulenev   Value asyncToken; // token representing completion of the async region
6825f80e16SEugene Zhulenev   llvm::SmallVector<Value, 4> returnValues; // returned async values
6925f80e16SEugene Zhulenev 
7025f80e16SEugene Zhulenev   Value coroHandle; // coroutine handle (!async.coro.handle value)
711c144410Sbakhtiyar   Block *entry;     // coroutine entry block
7239957aa4SEugene Zhulenev   Block *setError;  // switch completion token and all values to error state
7325f80e16SEugene Zhulenev   Block *cleanup;   // coroutine cleanup block
7425f80e16SEugene Zhulenev   Block *suspend;   // coroutine suspension block
7525f80e16SEugene Zhulenev };
7625f80e16SEugene Zhulenev } // namespace
7725f80e16SEugene Zhulenev 
786ea22d46Sbakhtiyar /// Utility to partially update the regular function CFG to the coroutine CFG
796ea22d46Sbakhtiyar /// compatible with LLVM coroutines switched-resume lowering using
801c144410Sbakhtiyar /// `async.runtime.*` and `async.coro.*` operations. Adds a new entry block
811c144410Sbakhtiyar /// that branches into preexisting entry block. Also inserts trailing blocks.
826ea22d46Sbakhtiyar ///
836ea22d46Sbakhtiyar /// The result types of the passed `func` must start with an `async.token`
846ea22d46Sbakhtiyar /// and be continued with some number of `async.value`s.
856ea22d46Sbakhtiyar ///
861c144410Sbakhtiyar /// The func given to this function needs to have been preprocessed to have
871c144410Sbakhtiyar /// either branch or yield ops as terminators. Branches to the cleanup block are
881c144410Sbakhtiyar /// inserted after each yield.
8925f80e16SEugene Zhulenev ///
9025f80e16SEugene Zhulenev /// See LLVM coroutines documentation: https://llvm.org/docs/Coroutines.html
9125f80e16SEugene Zhulenev ///
9225f80e16SEugene Zhulenev ///  - `entry` block sets up the coroutine.
9339957aa4SEugene Zhulenev ///  - `set_error` block sets completion token and async values state to error.
9425f80e16SEugene Zhulenev ///  - `cleanup` block cleans up the coroutine state.
9525f80e16SEugene Zhulenev ///  - `suspend block after the @llvm.coro.end() defines what value will be
9625f80e16SEugene Zhulenev ///    returned to the initial caller of a coroutine. Everything before the
9725f80e16SEugene Zhulenev ///    @llvm.coro.end() will be executed at every suspension point.
9825f80e16SEugene Zhulenev ///
9925f80e16SEugene Zhulenev /// Coroutine structure (only the important bits):
10025f80e16SEugene Zhulenev ///
1016ea22d46Sbakhtiyar ///   func @some_fn(<function-arguments>) -> (!async.token, !async.value<T>)
10225f80e16SEugene Zhulenev ///   {
10325f80e16SEugene Zhulenev ///     ^entry(<function-arguments>):
10425f80e16SEugene Zhulenev ///       %token = <async token> : !async.token    // create async runtime token
10525f80e16SEugene Zhulenev ///       %value = <async value> : !async.value<T> // create async value
10625f80e16SEugene Zhulenev ///       %id = async.coro.id                      // create a coroutine id
10725f80e16SEugene Zhulenev ///       %hdl = async.coro.begin %id              // create a coroutine handle
1081c144410Sbakhtiyar ///       br ^preexisting_entry_block
1096ea22d46Sbakhtiyar ///
1101c144410Sbakhtiyar ///     /*  preexisting blocks modified to branch to the cleanup block */
11125f80e16SEugene Zhulenev ///
11239957aa4SEugene Zhulenev ///     ^set_error: // this block created lazily only if needed (see code below)
11339957aa4SEugene Zhulenev ///       async.runtime.set_error %token : !async.token
11439957aa4SEugene Zhulenev ///       async.runtime.set_error %value : !async.value<T>
11539957aa4SEugene Zhulenev ///       br ^cleanup
11639957aa4SEugene Zhulenev ///
11725f80e16SEugene Zhulenev ///     ^cleanup:
11825f80e16SEugene Zhulenev ///       async.coro.free %hdl // delete the coroutine state
11925f80e16SEugene Zhulenev ///       br ^suspend
12025f80e16SEugene Zhulenev ///
12125f80e16SEugene Zhulenev ///     ^suspend:
12225f80e16SEugene Zhulenev ///       async.coro.end %hdl // marks the end of a coroutine
12325f80e16SEugene Zhulenev ///       return %token, %value : !async.token, !async.value<T>
12425f80e16SEugene Zhulenev ///   }
12525f80e16SEugene Zhulenev ///
12625f80e16SEugene Zhulenev static CoroMachinery setupCoroMachinery(FuncOp func) {
1276ea22d46Sbakhtiyar   assert(!func.getBlocks().empty() && "Function must have an entry block");
12825f80e16SEugene Zhulenev 
12925f80e16SEugene Zhulenev   MLIRContext *ctx = func.getContext();
1306ea22d46Sbakhtiyar   Block *entryBlock = &func.getBlocks().front();
1311c144410Sbakhtiyar   Block *originalEntryBlock =
1321c144410Sbakhtiyar       entryBlock->splitBlock(entryBlock->getOperations().begin());
13325f80e16SEugene Zhulenev   auto builder = ImplicitLocOpBuilder::atBlockBegin(func->getLoc(), entryBlock);
13425f80e16SEugene Zhulenev 
13525f80e16SEugene Zhulenev   // ------------------------------------------------------------------------ //
13625f80e16SEugene Zhulenev   // Allocate async token/values that we will return from a ramp function.
13725f80e16SEugene Zhulenev   // ------------------------------------------------------------------------ //
13825f80e16SEugene Zhulenev   auto retToken = builder.create<RuntimeCreateOp>(TokenType::get(ctx)).result();
13925f80e16SEugene Zhulenev 
14025f80e16SEugene Zhulenev   llvm::SmallVector<Value, 4> retValues;
14125f80e16SEugene Zhulenev   for (auto resType : func.getCallableResults().drop_front())
14225f80e16SEugene Zhulenev     retValues.emplace_back(builder.create<RuntimeCreateOp>(resType).result());
14325f80e16SEugene Zhulenev 
14425f80e16SEugene Zhulenev   // ------------------------------------------------------------------------ //
14525f80e16SEugene Zhulenev   // Initialize coroutine: get coroutine id and coroutine handle.
14625f80e16SEugene Zhulenev   // ------------------------------------------------------------------------ //
14725f80e16SEugene Zhulenev   auto coroIdOp = builder.create<CoroIdOp>(CoroIdType::get(ctx));
14825f80e16SEugene Zhulenev   auto coroHdlOp =
14925f80e16SEugene Zhulenev       builder.create<CoroBeginOp>(CoroHandleType::get(ctx), coroIdOp.id());
1501c144410Sbakhtiyar   builder.create<BranchOp>(originalEntryBlock);
15125f80e16SEugene Zhulenev 
15225f80e16SEugene Zhulenev   Block *cleanupBlock = func.addBlock();
15325f80e16SEugene Zhulenev   Block *suspendBlock = func.addBlock();
15425f80e16SEugene Zhulenev 
15525f80e16SEugene Zhulenev   // ------------------------------------------------------------------------ //
15625f80e16SEugene Zhulenev   // Coroutine cleanup block: deallocate coroutine frame, free the memory.
15725f80e16SEugene Zhulenev   // ------------------------------------------------------------------------ //
15825f80e16SEugene Zhulenev   builder.setInsertionPointToStart(cleanupBlock);
15925f80e16SEugene Zhulenev   builder.create<CoroFreeOp>(coroIdOp.id(), coroHdlOp.handle());
16025f80e16SEugene Zhulenev 
16125f80e16SEugene Zhulenev   // Branch into the suspend block.
16225f80e16SEugene Zhulenev   builder.create<BranchOp>(suspendBlock);
16325f80e16SEugene Zhulenev 
16425f80e16SEugene Zhulenev   // ------------------------------------------------------------------------ //
16525f80e16SEugene Zhulenev   // Coroutine suspend block: mark the end of a coroutine and return allocated
16625f80e16SEugene Zhulenev   // async token.
16725f80e16SEugene Zhulenev   // ------------------------------------------------------------------------ //
16825f80e16SEugene Zhulenev   builder.setInsertionPointToStart(suspendBlock);
16925f80e16SEugene Zhulenev 
17025f80e16SEugene Zhulenev   // Mark the end of a coroutine: async.coro.end
17125f80e16SEugene Zhulenev   builder.create<CoroEndOp>(coroHdlOp.handle());
17225f80e16SEugene Zhulenev 
17325f80e16SEugene Zhulenev   // Return created `async.token` and `async.values` from the suspend block.
17425f80e16SEugene Zhulenev   // This will be the return value of a coroutine ramp function.
17525f80e16SEugene Zhulenev   SmallVector<Value, 4> ret{retToken};
17625f80e16SEugene Zhulenev   ret.insert(ret.end(), retValues.begin(), retValues.end());
17725f80e16SEugene Zhulenev   builder.create<ReturnOp>(ret);
17825f80e16SEugene Zhulenev 
17925f80e16SEugene Zhulenev   // `async.await` op lowering will create resume blocks for async
18025f80e16SEugene Zhulenev   // continuations, and will conditionally branch to cleanup or suspend blocks.
18125f80e16SEugene Zhulenev 
1821c144410Sbakhtiyar   for (Block &block : func.body().getBlocks()) {
1831c144410Sbakhtiyar     if (&block == entryBlock || &block == cleanupBlock ||
1841c144410Sbakhtiyar         &block == suspendBlock)
1851c144410Sbakhtiyar       continue;
1861c144410Sbakhtiyar     Operation *terminator = block.getTerminator();
1871c144410Sbakhtiyar     if (auto yield = dyn_cast<YieldOp>(terminator)) {
1881c144410Sbakhtiyar       builder.setInsertionPointToEnd(&block);
1891c144410Sbakhtiyar       builder.create<BranchOp>(cleanupBlock);
1901c144410Sbakhtiyar     }
1911c144410Sbakhtiyar   }
1921c144410Sbakhtiyar 
19325f80e16SEugene Zhulenev   CoroMachinery machinery;
19439957aa4SEugene Zhulenev   machinery.func = func;
19525f80e16SEugene Zhulenev   machinery.asyncToken = retToken;
19625f80e16SEugene Zhulenev   machinery.returnValues = retValues;
19725f80e16SEugene Zhulenev   machinery.coroHandle = coroHdlOp.handle();
1981c144410Sbakhtiyar   machinery.entry = entryBlock;
19939957aa4SEugene Zhulenev   machinery.setError = nullptr; // created lazily only if needed
20025f80e16SEugene Zhulenev   machinery.cleanup = cleanupBlock;
20125f80e16SEugene Zhulenev   machinery.suspend = suspendBlock;
20225f80e16SEugene Zhulenev   return machinery;
20325f80e16SEugene Zhulenev }
20425f80e16SEugene Zhulenev 
20539957aa4SEugene Zhulenev // Lazily creates `set_error` block only if it is required for lowering to the
20639957aa4SEugene Zhulenev // runtime operations (see for example lowering of assert operation).
20739957aa4SEugene Zhulenev static Block *setupSetErrorBlock(CoroMachinery &coro) {
20839957aa4SEugene Zhulenev   if (coro.setError)
20939957aa4SEugene Zhulenev     return coro.setError;
21039957aa4SEugene Zhulenev 
21139957aa4SEugene Zhulenev   coro.setError = coro.func.addBlock();
21239957aa4SEugene Zhulenev   coro.setError->moveBefore(coro.cleanup);
21339957aa4SEugene Zhulenev 
21439957aa4SEugene Zhulenev   auto builder =
21539957aa4SEugene Zhulenev       ImplicitLocOpBuilder::atBlockBegin(coro.func->getLoc(), coro.setError);
21639957aa4SEugene Zhulenev 
21739957aa4SEugene Zhulenev   // Coroutine set_error block: set error on token and all returned values.
21839957aa4SEugene Zhulenev   builder.create<RuntimeSetErrorOp>(coro.asyncToken);
21939957aa4SEugene Zhulenev   for (Value retValue : coro.returnValues)
22039957aa4SEugene Zhulenev     builder.create<RuntimeSetErrorOp>(retValue);
22139957aa4SEugene Zhulenev 
22239957aa4SEugene Zhulenev   // Branch into the cleanup block.
22339957aa4SEugene Zhulenev   builder.create<BranchOp>(coro.cleanup);
22439957aa4SEugene Zhulenev 
22539957aa4SEugene Zhulenev   return coro.setError;
22639957aa4SEugene Zhulenev }
22739957aa4SEugene Zhulenev 
22825f80e16SEugene Zhulenev /// Outline the body region attached to the `async.execute` op into a standalone
22925f80e16SEugene Zhulenev /// function.
23025f80e16SEugene Zhulenev ///
23125f80e16SEugene Zhulenev /// Note that this is not reversible transformation.
23225f80e16SEugene Zhulenev static std::pair<FuncOp, CoroMachinery>
23325f80e16SEugene Zhulenev outlineExecuteOp(SymbolTable &symbolTable, ExecuteOp execute) {
23425f80e16SEugene Zhulenev   ModuleOp module = execute->getParentOfType<ModuleOp>();
23525f80e16SEugene Zhulenev 
23625f80e16SEugene Zhulenev   MLIRContext *ctx = module.getContext();
23725f80e16SEugene Zhulenev   Location loc = execute.getLoc();
23825f80e16SEugene Zhulenev 
239b537c5b4SEugene Zhulenev   // Make sure that all constants will be inside the outlined async function to
240b537c5b4SEugene Zhulenev   // reduce the number of function arguments.
241b537c5b4SEugene Zhulenev   cloneConstantsIntoTheRegion(execute.body());
242b537c5b4SEugene Zhulenev 
24325f80e16SEugene Zhulenev   // Collect all outlined function inputs.
2444efb7754SRiver Riddle   SetVector<mlir::Value> functionInputs(execute.dependencies().begin(),
24525f80e16SEugene Zhulenev                                         execute.dependencies().end());
24625f80e16SEugene Zhulenev   functionInputs.insert(execute.operands().begin(), execute.operands().end());
24725f80e16SEugene Zhulenev   getUsedValuesDefinedAbove(execute.body(), functionInputs);
24825f80e16SEugene Zhulenev 
24925f80e16SEugene Zhulenev   // Collect types for the outlined function inputs and outputs.
25025f80e16SEugene Zhulenev   auto typesRange = llvm::map_range(
25125f80e16SEugene Zhulenev       functionInputs, [](Value value) { return value.getType(); });
25225f80e16SEugene Zhulenev   SmallVector<Type, 4> inputTypes(typesRange.begin(), typesRange.end());
25325f80e16SEugene Zhulenev   auto outputTypes = execute.getResultTypes();
25425f80e16SEugene Zhulenev 
25525f80e16SEugene Zhulenev   auto funcType = FunctionType::get(ctx, inputTypes, outputTypes);
25625f80e16SEugene Zhulenev   auto funcAttrs = ArrayRef<NamedAttribute>();
25725f80e16SEugene Zhulenev 
25825f80e16SEugene Zhulenev   // TODO: Derive outlined function name from the parent FuncOp (support
25925f80e16SEugene Zhulenev   // multiple nested async.execute operations).
26025f80e16SEugene Zhulenev   FuncOp func = FuncOp::create(loc, kAsyncFnPrefix, funcType, funcAttrs);
261973ddb7dSMehdi Amini   symbolTable.insert(func);
26225f80e16SEugene Zhulenev 
26325f80e16SEugene Zhulenev   SymbolTable::setSymbolVisibility(func, SymbolTable::Visibility::Private);
2641c144410Sbakhtiyar   auto builder = ImplicitLocOpBuilder::atBlockBegin(loc, func.addEntryBlock());
26525f80e16SEugene Zhulenev 
2661c144410Sbakhtiyar   // Prepare for coroutine conversion by creating the body of the function.
2671c144410Sbakhtiyar   {
26825f80e16SEugene Zhulenev     size_t numDependencies = execute.dependencies().size();
26925f80e16SEugene Zhulenev     size_t numOperands = execute.operands().size();
27025f80e16SEugene Zhulenev 
27125f80e16SEugene Zhulenev     // Await on all dependencies before starting to execute the body region.
27225f80e16SEugene Zhulenev     for (size_t i = 0; i < numDependencies; ++i)
27325f80e16SEugene Zhulenev       builder.create<AwaitOp>(func.getArgument(i));
27425f80e16SEugene Zhulenev 
27525f80e16SEugene Zhulenev     // Await on all async value operands and unwrap the payload.
27625f80e16SEugene Zhulenev     SmallVector<Value, 4> unwrappedOperands(numOperands);
27725f80e16SEugene Zhulenev     for (size_t i = 0; i < numOperands; ++i) {
27825f80e16SEugene Zhulenev       Value operand = func.getArgument(numDependencies + i);
27925f80e16SEugene Zhulenev       unwrappedOperands[i] = builder.create<AwaitOp>(loc, operand).result();
28025f80e16SEugene Zhulenev     }
28125f80e16SEugene Zhulenev 
28225f80e16SEugene Zhulenev     // Map from function inputs defined above the execute op to the function
28325f80e16SEugene Zhulenev     // arguments.
28425f80e16SEugene Zhulenev     BlockAndValueMapping valueMapping;
28525f80e16SEugene Zhulenev     valueMapping.map(functionInputs, func.getArguments());
28625f80e16SEugene Zhulenev     valueMapping.map(execute.body().getArguments(), unwrappedOperands);
28725f80e16SEugene Zhulenev 
28825f80e16SEugene Zhulenev     // Clone all operations from the execute operation body into the outlined
28925f80e16SEugene Zhulenev     // function body.
29025f80e16SEugene Zhulenev     for (Operation &op : execute.body().getOps())
29125f80e16SEugene Zhulenev       builder.clone(op, valueMapping);
2921c144410Sbakhtiyar   }
2931c144410Sbakhtiyar 
2941c144410Sbakhtiyar   // Adding entry/cleanup/suspend blocks.
2951c144410Sbakhtiyar   CoroMachinery coro = setupCoroMachinery(func);
2961c144410Sbakhtiyar 
2971c144410Sbakhtiyar   // Suspend async function at the end of an entry block, and resume it using
2981c144410Sbakhtiyar   // Async resume operation (execution will be resumed in a thread managed by
2991c144410Sbakhtiyar   // the async runtime).
3001c144410Sbakhtiyar   {
3011c144410Sbakhtiyar     BranchOp branch = cast<BranchOp>(coro.entry->getTerminator());
3021c144410Sbakhtiyar     builder.setInsertionPointToEnd(coro.entry);
3031c144410Sbakhtiyar 
3041c144410Sbakhtiyar     // Save the coroutine state: async.coro.save
3051c144410Sbakhtiyar     auto coroSaveOp =
3061c144410Sbakhtiyar         builder.create<CoroSaveOp>(CoroStateType::get(ctx), coro.coroHandle);
3071c144410Sbakhtiyar 
3081c144410Sbakhtiyar     // Pass coroutine to the runtime to be resumed on a runtime managed
3091c144410Sbakhtiyar     // thread.
3101c144410Sbakhtiyar     builder.create<RuntimeResumeOp>(coro.coroHandle);
3111c144410Sbakhtiyar 
3121c144410Sbakhtiyar     // Add async.coro.suspend as a suspended block terminator.
3131c144410Sbakhtiyar     builder.create<CoroSuspendOp>(coroSaveOp.state(), coro.suspend,
3141c144410Sbakhtiyar                                   branch.getDest(), coro.cleanup);
3151c144410Sbakhtiyar 
3161c144410Sbakhtiyar     branch.erase();
3171c144410Sbakhtiyar   }
31825f80e16SEugene Zhulenev 
31925f80e16SEugene Zhulenev   // Replace the original `async.execute` with a call to outlined function.
3201c144410Sbakhtiyar   {
32125f80e16SEugene Zhulenev     ImplicitLocOpBuilder callBuilder(loc, execute);
32225f80e16SEugene Zhulenev     auto callOutlinedFunc = callBuilder.create<CallOp>(
32325f80e16SEugene Zhulenev         func.getName(), execute.getResultTypes(), functionInputs.getArrayRef());
32425f80e16SEugene Zhulenev     execute.replaceAllUsesWith(callOutlinedFunc.getResults());
32525f80e16SEugene Zhulenev     execute.erase();
3261c144410Sbakhtiyar   }
32725f80e16SEugene Zhulenev 
32825f80e16SEugene Zhulenev   return {func, coro};
32925f80e16SEugene Zhulenev }
33025f80e16SEugene Zhulenev 
33125f80e16SEugene Zhulenev //===----------------------------------------------------------------------===//
332d43b2360SEugene Zhulenev // Convert async.create_group operation to async.runtime.create_group
33325f80e16SEugene Zhulenev //===----------------------------------------------------------------------===//
33425f80e16SEugene Zhulenev 
33525f80e16SEugene Zhulenev namespace {
33625f80e16SEugene Zhulenev class CreateGroupOpLowering : public OpConversionPattern<CreateGroupOp> {
33725f80e16SEugene Zhulenev public:
33825f80e16SEugene Zhulenev   using OpConversionPattern::OpConversionPattern;
33925f80e16SEugene Zhulenev 
34025f80e16SEugene Zhulenev   LogicalResult
341b54c724bSRiver Riddle   matchAndRewrite(CreateGroupOp op, OpAdaptor adaptor,
34225f80e16SEugene Zhulenev                   ConversionPatternRewriter &rewriter) const override {
343d43b2360SEugene Zhulenev     rewriter.replaceOpWithNewOp<RuntimeCreateGroupOp>(
344b54c724bSRiver Riddle         op, GroupType::get(op->getContext()), adaptor.getOperands());
34525f80e16SEugene Zhulenev     return success();
34625f80e16SEugene Zhulenev   }
34725f80e16SEugene Zhulenev };
34825f80e16SEugene Zhulenev } // namespace
34925f80e16SEugene Zhulenev 
35025f80e16SEugene Zhulenev //===----------------------------------------------------------------------===//
35125f80e16SEugene Zhulenev // Convert async.add_to_group operation to async.runtime.add_to_group.
35225f80e16SEugene Zhulenev //===----------------------------------------------------------------------===//
35325f80e16SEugene Zhulenev 
35425f80e16SEugene Zhulenev namespace {
35525f80e16SEugene Zhulenev class AddToGroupOpLowering : public OpConversionPattern<AddToGroupOp> {
35625f80e16SEugene Zhulenev public:
35725f80e16SEugene Zhulenev   using OpConversionPattern::OpConversionPattern;
35825f80e16SEugene Zhulenev 
35925f80e16SEugene Zhulenev   LogicalResult
360b54c724bSRiver Riddle   matchAndRewrite(AddToGroupOp op, OpAdaptor adaptor,
36125f80e16SEugene Zhulenev                   ConversionPatternRewriter &rewriter) const override {
36225f80e16SEugene Zhulenev     rewriter.replaceOpWithNewOp<RuntimeAddToGroupOp>(
363b54c724bSRiver Riddle         op, rewriter.getIndexType(), adaptor.getOperands());
36425f80e16SEugene Zhulenev     return success();
36525f80e16SEugene Zhulenev   }
36625f80e16SEugene Zhulenev };
36725f80e16SEugene Zhulenev } // namespace
36825f80e16SEugene Zhulenev 
36925f80e16SEugene Zhulenev //===----------------------------------------------------------------------===//
37025f80e16SEugene Zhulenev // Convert async.await and async.await_all operations to the async.runtime.await
37125f80e16SEugene Zhulenev // or async.runtime.await_and_resume operations.
37225f80e16SEugene Zhulenev //===----------------------------------------------------------------------===//
37325f80e16SEugene Zhulenev 
37425f80e16SEugene Zhulenev namespace {
37525f80e16SEugene Zhulenev template <typename AwaitType, typename AwaitableType>
37625f80e16SEugene Zhulenev class AwaitOpLoweringBase : public OpConversionPattern<AwaitType> {
37725f80e16SEugene Zhulenev   using AwaitAdaptor = typename AwaitType::Adaptor;
37825f80e16SEugene Zhulenev 
37925f80e16SEugene Zhulenev public:
38039957aa4SEugene Zhulenev   AwaitOpLoweringBase(MLIRContext *ctx,
38139957aa4SEugene Zhulenev                       llvm::DenseMap<FuncOp, CoroMachinery> &outlinedFunctions)
38225f80e16SEugene Zhulenev       : OpConversionPattern<AwaitType>(ctx),
38325f80e16SEugene Zhulenev         outlinedFunctions(outlinedFunctions) {}
38425f80e16SEugene Zhulenev 
38525f80e16SEugene Zhulenev   LogicalResult
386b54c724bSRiver Riddle   matchAndRewrite(AwaitType op, typename AwaitType::Adaptor adaptor,
38725f80e16SEugene Zhulenev                   ConversionPatternRewriter &rewriter) const override {
38825f80e16SEugene Zhulenev     // We can only await on one the `AwaitableType` (for `await` it can be
38925f80e16SEugene Zhulenev     // a `token` or a `value`, for `await_all` it must be a `group`).
39025f80e16SEugene Zhulenev     if (!op.operand().getType().template isa<AwaitableType>())
39125f80e16SEugene Zhulenev       return rewriter.notifyMatchFailure(op, "unsupported awaitable type");
39225f80e16SEugene Zhulenev 
39325f80e16SEugene Zhulenev     // Check if await operation is inside the outlined coroutine function.
39425f80e16SEugene Zhulenev     auto func = op->template getParentOfType<FuncOp>();
39525f80e16SEugene Zhulenev     auto outlined = outlinedFunctions.find(func);
39625f80e16SEugene Zhulenev     const bool isInCoroutine = outlined != outlinedFunctions.end();
39725f80e16SEugene Zhulenev 
39825f80e16SEugene Zhulenev     Location loc = op->getLoc();
399b54c724bSRiver Riddle     Value operand = adaptor.operand();
40025f80e16SEugene Zhulenev 
401fd52b435SEugene Zhulenev     Type i1 = rewriter.getI1Type();
402fd52b435SEugene Zhulenev 
40325f80e16SEugene Zhulenev     // Inside regular functions we use the blocking wait operation to wait for
40425f80e16SEugene Zhulenev     // the async object (token, value or group) to become available.
405fd52b435SEugene Zhulenev     if (!isInCoroutine) {
406fd52b435SEugene Zhulenev       ImplicitLocOpBuilder builder(loc, op, rewriter.getListener());
407fd52b435SEugene Zhulenev       builder.create<RuntimeAwaitOp>(loc, operand);
408fd52b435SEugene Zhulenev 
409fd52b435SEugene Zhulenev       // Assert that the awaited operands is not in the error state.
410fd52b435SEugene Zhulenev       Value isError = builder.create<RuntimeIsErrorOp>(i1, operand);
411*a54f4eaeSMogball       Value notError = builder.create<arith::XOrIOp>(
412*a54f4eaeSMogball           isError, builder.create<arith::ConstantOp>(
413*a54f4eaeSMogball                        loc, i1, builder.getIntegerAttr(i1, 1)));
414fd52b435SEugene Zhulenev 
415fd52b435SEugene Zhulenev       builder.create<AssertOp>(notError,
416fd52b435SEugene Zhulenev                                "Awaited async operand is in error state");
417fd52b435SEugene Zhulenev     }
41825f80e16SEugene Zhulenev 
41925f80e16SEugene Zhulenev     // Inside the coroutine we convert await operation into coroutine suspension
42025f80e16SEugene Zhulenev     // point, and resume execution asynchronously.
42125f80e16SEugene Zhulenev     if (isInCoroutine) {
42239957aa4SEugene Zhulenev       CoroMachinery &coro = outlined->getSecond();
42325f80e16SEugene Zhulenev       Block *suspended = op->getBlock();
42425f80e16SEugene Zhulenev 
42525f80e16SEugene Zhulenev       ImplicitLocOpBuilder builder(loc, op, rewriter.getListener());
42625f80e16SEugene Zhulenev       MLIRContext *ctx = op->getContext();
42725f80e16SEugene Zhulenev 
42825f80e16SEugene Zhulenev       // Save the coroutine state and resume on a runtime managed thread when
42925f80e16SEugene Zhulenev       // the operand becomes available.
43025f80e16SEugene Zhulenev       auto coroSaveOp =
43125f80e16SEugene Zhulenev           builder.create<CoroSaveOp>(CoroStateType::get(ctx), coro.coroHandle);
43225f80e16SEugene Zhulenev       builder.create<RuntimeAwaitAndResumeOp>(operand, coro.coroHandle);
43325f80e16SEugene Zhulenev 
43425f80e16SEugene Zhulenev       // Split the entry block before the await operation.
43525f80e16SEugene Zhulenev       Block *resume = rewriter.splitBlock(suspended, Block::iterator(op));
43625f80e16SEugene Zhulenev 
43725f80e16SEugene Zhulenev       // Add async.coro.suspend as a suspended block terminator.
43825f80e16SEugene Zhulenev       builder.setInsertionPointToEnd(suspended);
43925f80e16SEugene Zhulenev       builder.create<CoroSuspendOp>(coroSaveOp.state(), coro.suspend, resume,
44025f80e16SEugene Zhulenev                                     coro.cleanup);
44125f80e16SEugene Zhulenev 
44239957aa4SEugene Zhulenev       // Split the resume block into error checking and continuation.
44339957aa4SEugene Zhulenev       Block *continuation = rewriter.splitBlock(resume, Block::iterator(op));
44439957aa4SEugene Zhulenev 
44539957aa4SEugene Zhulenev       // Check if the awaited value is in the error state.
44639957aa4SEugene Zhulenev       builder.setInsertionPointToStart(resume);
447fd52b435SEugene Zhulenev       auto isError = builder.create<RuntimeIsErrorOp>(loc, i1, operand);
44839957aa4SEugene Zhulenev       builder.create<CondBranchOp>(isError,
44939957aa4SEugene Zhulenev                                    /*trueDest=*/setupSetErrorBlock(coro),
45039957aa4SEugene Zhulenev                                    /*trueArgs=*/ArrayRef<Value>(),
45139957aa4SEugene Zhulenev                                    /*falseDest=*/continuation,
45239957aa4SEugene Zhulenev                                    /*falseArgs=*/ArrayRef<Value>());
45339957aa4SEugene Zhulenev 
45439957aa4SEugene Zhulenev       // Make sure that replacement value will be constructed in the
45539957aa4SEugene Zhulenev       // continuation block.
45639957aa4SEugene Zhulenev       rewriter.setInsertionPointToStart(continuation);
45739957aa4SEugene Zhulenev     }
45825f80e16SEugene Zhulenev 
45925f80e16SEugene Zhulenev     // Erase or replace the await operation with the new value.
46025f80e16SEugene Zhulenev     if (Value replaceWith = getReplacementValue(op, operand, rewriter))
46125f80e16SEugene Zhulenev       rewriter.replaceOp(op, replaceWith);
46225f80e16SEugene Zhulenev     else
46325f80e16SEugene Zhulenev       rewriter.eraseOp(op);
46425f80e16SEugene Zhulenev 
46525f80e16SEugene Zhulenev     return success();
46625f80e16SEugene Zhulenev   }
46725f80e16SEugene Zhulenev 
46825f80e16SEugene Zhulenev   virtual Value getReplacementValue(AwaitType op, Value operand,
46925f80e16SEugene Zhulenev                                     ConversionPatternRewriter &rewriter) const {
47025f80e16SEugene Zhulenev     return Value();
47125f80e16SEugene Zhulenev   }
47225f80e16SEugene Zhulenev 
47325f80e16SEugene Zhulenev private:
47439957aa4SEugene Zhulenev   llvm::DenseMap<FuncOp, CoroMachinery> &outlinedFunctions;
47525f80e16SEugene Zhulenev };
47625f80e16SEugene Zhulenev 
47725f80e16SEugene Zhulenev /// Lowering for `async.await` with a token operand.
47825f80e16SEugene Zhulenev class AwaitTokenOpLowering : public AwaitOpLoweringBase<AwaitOp, TokenType> {
47925f80e16SEugene Zhulenev   using Base = AwaitOpLoweringBase<AwaitOp, TokenType>;
48025f80e16SEugene Zhulenev 
48125f80e16SEugene Zhulenev public:
48225f80e16SEugene Zhulenev   using Base::Base;
48325f80e16SEugene Zhulenev };
48425f80e16SEugene Zhulenev 
48525f80e16SEugene Zhulenev /// Lowering for `async.await` with a value operand.
48625f80e16SEugene Zhulenev class AwaitValueOpLowering : public AwaitOpLoweringBase<AwaitOp, ValueType> {
48725f80e16SEugene Zhulenev   using Base = AwaitOpLoweringBase<AwaitOp, ValueType>;
48825f80e16SEugene Zhulenev 
48925f80e16SEugene Zhulenev public:
49025f80e16SEugene Zhulenev   using Base::Base;
49125f80e16SEugene Zhulenev 
49225f80e16SEugene Zhulenev   Value
49325f80e16SEugene Zhulenev   getReplacementValue(AwaitOp op, Value operand,
49425f80e16SEugene Zhulenev                       ConversionPatternRewriter &rewriter) const override {
49525f80e16SEugene Zhulenev     // Load from the async value storage.
49625f80e16SEugene Zhulenev     auto valueType = operand.getType().cast<ValueType>().getValueType();
49725f80e16SEugene Zhulenev     return rewriter.create<RuntimeLoadOp>(op->getLoc(), valueType, operand);
49825f80e16SEugene Zhulenev   }
49925f80e16SEugene Zhulenev };
50025f80e16SEugene Zhulenev 
50125f80e16SEugene Zhulenev /// Lowering for `async.await_all` operation.
50225f80e16SEugene Zhulenev class AwaitAllOpLowering : public AwaitOpLoweringBase<AwaitAllOp, GroupType> {
50325f80e16SEugene Zhulenev   using Base = AwaitOpLoweringBase<AwaitAllOp, GroupType>;
50425f80e16SEugene Zhulenev 
50525f80e16SEugene Zhulenev public:
50625f80e16SEugene Zhulenev   using Base::Base;
50725f80e16SEugene Zhulenev };
50825f80e16SEugene Zhulenev 
50925f80e16SEugene Zhulenev } // namespace
51025f80e16SEugene Zhulenev 
51125f80e16SEugene Zhulenev //===----------------------------------------------------------------------===//
51225f80e16SEugene Zhulenev // Convert async.yield operation to async.runtime operations.
51325f80e16SEugene Zhulenev //===----------------------------------------------------------------------===//
51425f80e16SEugene Zhulenev 
51525f80e16SEugene Zhulenev class YieldOpLowering : public OpConversionPattern<async::YieldOp> {
51625f80e16SEugene Zhulenev public:
51725f80e16SEugene Zhulenev   YieldOpLowering(
51825f80e16SEugene Zhulenev       MLIRContext *ctx,
51925f80e16SEugene Zhulenev       const llvm::DenseMap<FuncOp, CoroMachinery> &outlinedFunctions)
52025f80e16SEugene Zhulenev       : OpConversionPattern<async::YieldOp>(ctx),
52125f80e16SEugene Zhulenev         outlinedFunctions(outlinedFunctions) {}
52225f80e16SEugene Zhulenev 
52325f80e16SEugene Zhulenev   LogicalResult
524b54c724bSRiver Riddle   matchAndRewrite(async::YieldOp op, OpAdaptor adaptor,
52525f80e16SEugene Zhulenev                   ConversionPatternRewriter &rewriter) const override {
52639957aa4SEugene Zhulenev     // Check if yield operation is inside the async coroutine function.
52725f80e16SEugene Zhulenev     auto func = op->template getParentOfType<FuncOp>();
52825f80e16SEugene Zhulenev     auto outlined = outlinedFunctions.find(func);
52925f80e16SEugene Zhulenev     if (outlined == outlinedFunctions.end())
53025f80e16SEugene Zhulenev       return rewriter.notifyMatchFailure(
53139957aa4SEugene Zhulenev           op, "operation is not inside the async coroutine function");
53225f80e16SEugene Zhulenev 
53325f80e16SEugene Zhulenev     Location loc = op->getLoc();
53425f80e16SEugene Zhulenev     const CoroMachinery &coro = outlined->getSecond();
53525f80e16SEugene Zhulenev 
53625f80e16SEugene Zhulenev     // Store yielded values into the async values storage and switch async
53725f80e16SEugene Zhulenev     // values state to available.
538b54c724bSRiver Riddle     for (auto tuple : llvm::zip(adaptor.getOperands(), coro.returnValues)) {
53925f80e16SEugene Zhulenev       Value yieldValue = std::get<0>(tuple);
54025f80e16SEugene Zhulenev       Value asyncValue = std::get<1>(tuple);
54125f80e16SEugene Zhulenev       rewriter.create<RuntimeStoreOp>(loc, yieldValue, asyncValue);
54225f80e16SEugene Zhulenev       rewriter.create<RuntimeSetAvailableOp>(loc, asyncValue);
54325f80e16SEugene Zhulenev     }
54425f80e16SEugene Zhulenev 
54525f80e16SEugene Zhulenev     // Switch the coroutine completion token to available state.
54625f80e16SEugene Zhulenev     rewriter.replaceOpWithNewOp<RuntimeSetAvailableOp>(op, coro.asyncToken);
54725f80e16SEugene Zhulenev 
54825f80e16SEugene Zhulenev     return success();
54925f80e16SEugene Zhulenev   }
55025f80e16SEugene Zhulenev 
55125f80e16SEugene Zhulenev private:
55225f80e16SEugene Zhulenev   const llvm::DenseMap<FuncOp, CoroMachinery> &outlinedFunctions;
55325f80e16SEugene Zhulenev };
55425f80e16SEugene Zhulenev 
55525f80e16SEugene Zhulenev //===----------------------------------------------------------------------===//
55639957aa4SEugene Zhulenev // Convert std.assert operation to cond_br into `set_error` block.
55739957aa4SEugene Zhulenev //===----------------------------------------------------------------------===//
55839957aa4SEugene Zhulenev 
55939957aa4SEugene Zhulenev class AssertOpLowering : public OpConversionPattern<AssertOp> {
56039957aa4SEugene Zhulenev public:
56139957aa4SEugene Zhulenev   AssertOpLowering(MLIRContext *ctx,
56239957aa4SEugene Zhulenev                    llvm::DenseMap<FuncOp, CoroMachinery> &outlinedFunctions)
56339957aa4SEugene Zhulenev       : OpConversionPattern<AssertOp>(ctx),
56439957aa4SEugene Zhulenev         outlinedFunctions(outlinedFunctions) {}
56539957aa4SEugene Zhulenev 
56639957aa4SEugene Zhulenev   LogicalResult
567b54c724bSRiver Riddle   matchAndRewrite(AssertOp op, OpAdaptor adaptor,
56839957aa4SEugene Zhulenev                   ConversionPatternRewriter &rewriter) const override {
56939957aa4SEugene Zhulenev     // Check if assert operation is inside the async coroutine function.
57039957aa4SEugene Zhulenev     auto func = op->template getParentOfType<FuncOp>();
57139957aa4SEugene Zhulenev     auto outlined = outlinedFunctions.find(func);
57239957aa4SEugene Zhulenev     if (outlined == outlinedFunctions.end())
57339957aa4SEugene Zhulenev       return rewriter.notifyMatchFailure(
57439957aa4SEugene Zhulenev           op, "operation is not inside the async coroutine function");
57539957aa4SEugene Zhulenev 
57639957aa4SEugene Zhulenev     Location loc = op->getLoc();
57739957aa4SEugene Zhulenev     CoroMachinery &coro = outlined->getSecond();
57839957aa4SEugene Zhulenev 
57939957aa4SEugene Zhulenev     Block *cont = rewriter.splitBlock(op->getBlock(), Block::iterator(op));
58039957aa4SEugene Zhulenev     rewriter.setInsertionPointToEnd(cont->getPrevNode());
581b54c724bSRiver Riddle     rewriter.create<CondBranchOp>(loc, adaptor.arg(),
58239957aa4SEugene Zhulenev                                   /*trueDest=*/cont,
58339957aa4SEugene Zhulenev                                   /*trueArgs=*/ArrayRef<Value>(),
58439957aa4SEugene Zhulenev                                   /*falseDest=*/setupSetErrorBlock(coro),
58539957aa4SEugene Zhulenev                                   /*falseArgs=*/ArrayRef<Value>());
58639957aa4SEugene Zhulenev     rewriter.eraseOp(op);
58739957aa4SEugene Zhulenev 
58839957aa4SEugene Zhulenev     return success();
58939957aa4SEugene Zhulenev   }
59039957aa4SEugene Zhulenev 
59139957aa4SEugene Zhulenev private:
59239957aa4SEugene Zhulenev   llvm::DenseMap<FuncOp, CoroMachinery> &outlinedFunctions;
59339957aa4SEugene Zhulenev };
59439957aa4SEugene Zhulenev 
59539957aa4SEugene Zhulenev //===----------------------------------------------------------------------===//
59625f80e16SEugene Zhulenev 
5976ea22d46Sbakhtiyar /// Rewrite a func as a coroutine by:
5986ea22d46Sbakhtiyar /// 1) Wrapping the results into `async.value`.
5996ea22d46Sbakhtiyar /// 2) Prepending the results with `async.token`.
6006ea22d46Sbakhtiyar /// 3) Setting up coroutine blocks.
6016ea22d46Sbakhtiyar /// 4) Rewriting return ops as yield op and branch op into the suspend block.
6026ea22d46Sbakhtiyar static CoroMachinery rewriteFuncAsCoroutine(FuncOp func) {
6036ea22d46Sbakhtiyar   auto *ctx = func->getContext();
6046ea22d46Sbakhtiyar   auto loc = func.getLoc();
6056ea22d46Sbakhtiyar   SmallVector<Type> resultTypes;
6066ea22d46Sbakhtiyar   resultTypes.reserve(func.getCallableResults().size());
6076ea22d46Sbakhtiyar   llvm::transform(func.getCallableResults(), std::back_inserter(resultTypes),
6086ea22d46Sbakhtiyar                   [](Type type) { return ValueType::get(type); });
6096ea22d46Sbakhtiyar   func.setType(FunctionType::get(ctx, func.getType().getInputs(), resultTypes));
6106ea22d46Sbakhtiyar   func.insertResult(0, TokenType::get(ctx), {});
6116ea22d46Sbakhtiyar   for (Block &block : func.getBlocks()) {
6126ea22d46Sbakhtiyar     Operation *terminator = block.getTerminator();
6136ea22d46Sbakhtiyar     if (auto returnOp = dyn_cast<ReturnOp>(*terminator)) {
6146ea22d46Sbakhtiyar       ImplicitLocOpBuilder builder(loc, returnOp);
6156ea22d46Sbakhtiyar       builder.create<YieldOp>(returnOp.getOperands());
6166ea22d46Sbakhtiyar       returnOp.erase();
6176ea22d46Sbakhtiyar     }
6186ea22d46Sbakhtiyar   }
6191c144410Sbakhtiyar   return setupCoroMachinery(func);
6206ea22d46Sbakhtiyar }
6216ea22d46Sbakhtiyar 
6226ea22d46Sbakhtiyar /// Rewrites a call into a function that has been rewritten as a coroutine.
6236ea22d46Sbakhtiyar ///
6246ea22d46Sbakhtiyar /// The invocation of this function is safe only when call ops are traversed in
6256ea22d46Sbakhtiyar /// reverse order of how they appear in a single block. See `funcsToCoroutines`.
6266ea22d46Sbakhtiyar static void rewriteCallsiteForCoroutine(CallOp oldCall, FuncOp func) {
6276ea22d46Sbakhtiyar   auto loc = func.getLoc();
6286ea22d46Sbakhtiyar   ImplicitLocOpBuilder callBuilder(loc, oldCall);
6296ea22d46Sbakhtiyar   auto newCall = callBuilder.create<CallOp>(
6306ea22d46Sbakhtiyar       func.getName(), func.getCallableResults(), oldCall.getArgOperands());
6316ea22d46Sbakhtiyar 
6326ea22d46Sbakhtiyar   // Await on the async token and all the value results and unwrap the latter.
6336ea22d46Sbakhtiyar   callBuilder.create<AwaitOp>(loc, newCall.getResults().front());
6346ea22d46Sbakhtiyar   SmallVector<Value> unwrappedResults;
6356ea22d46Sbakhtiyar   unwrappedResults.reserve(newCall->getResults().size() - 1);
6366ea22d46Sbakhtiyar   for (Value result : newCall.getResults().drop_front())
6376ea22d46Sbakhtiyar     unwrappedResults.push_back(
6386ea22d46Sbakhtiyar         callBuilder.create<AwaitOp>(loc, result).result());
6396ea22d46Sbakhtiyar   // Careful, when result of a call is piped into another call this could lead
6406ea22d46Sbakhtiyar   // to a dangling pointer.
6416ea22d46Sbakhtiyar   oldCall.replaceAllUsesWith(unwrappedResults);
6426ea22d46Sbakhtiyar   oldCall.erase();
6436ea22d46Sbakhtiyar }
6446ea22d46Sbakhtiyar 
6459a5bc836Sbakhtiyar static bool isAllowedToBlock(FuncOp func) {
6469a5bc836Sbakhtiyar   return !!func->getAttrOfType<UnitAttr>(AsyncDialect::kAllowedToBlockAttrName);
6479a5bc836Sbakhtiyar }
6489a5bc836Sbakhtiyar 
6496ea22d46Sbakhtiyar static LogicalResult
6506ea22d46Sbakhtiyar funcsToCoroutines(ModuleOp module,
6516ea22d46Sbakhtiyar                   llvm::DenseMap<FuncOp, CoroMachinery> &outlinedFunctions) {
6526ea22d46Sbakhtiyar   // The following code supports the general case when 2 functions mutually
6536ea22d46Sbakhtiyar   // recurse into each other. Because of this and that we are relying on
6546ea22d46Sbakhtiyar   // SymbolUserMap to find pointers to calling FuncOps, we cannot simply erase
6556ea22d46Sbakhtiyar   // a FuncOp while inserting an equivalent coroutine, because that could lead
6566ea22d46Sbakhtiyar   // to dangling pointers.
6576ea22d46Sbakhtiyar 
6586ea22d46Sbakhtiyar   SmallVector<FuncOp> funcWorklist;
6596ea22d46Sbakhtiyar 
6606ea22d46Sbakhtiyar   // Careful, it's okay to add a func to the worklist multiple times if and only
6616ea22d46Sbakhtiyar   // if the loop processing the worklist will skip the functions that have
6626ea22d46Sbakhtiyar   // already been converted to coroutines.
6639a5bc836Sbakhtiyar   auto addToWorklist = [&](FuncOp func) {
6649a5bc836Sbakhtiyar     if (isAllowedToBlock(func))
6659a5bc836Sbakhtiyar       return;
6666ea22d46Sbakhtiyar     // N.B. To refactor this code into a separate pass the lookup in
6676ea22d46Sbakhtiyar     // outlinedFunctions is the most obvious obstacle. Looking at an arbitrary
6686ea22d46Sbakhtiyar     // func and recognizing if it has a coroutine structure is messy. Passing
6696ea22d46Sbakhtiyar     // this dict between the passes is ugly.
6709a5bc836Sbakhtiyar     if (isAllowedToBlock(func) ||
6719a5bc836Sbakhtiyar         outlinedFunctions.find(func) == outlinedFunctions.end()) {
6726ea22d46Sbakhtiyar       for (Operation &op : func.body().getOps()) {
6736ea22d46Sbakhtiyar         if (dyn_cast<AwaitOp>(op) || dyn_cast<AwaitAllOp>(op)) {
6746ea22d46Sbakhtiyar           funcWorklist.push_back(func);
6756ea22d46Sbakhtiyar           break;
6766ea22d46Sbakhtiyar         }
6776ea22d46Sbakhtiyar       }
6786ea22d46Sbakhtiyar     }
6796ea22d46Sbakhtiyar   };
6806ea22d46Sbakhtiyar 
6816ea22d46Sbakhtiyar   // Traverse in post-order collecting for each func op the await ops it has.
6826ea22d46Sbakhtiyar   for (FuncOp func : module.getOps<FuncOp>())
6836ea22d46Sbakhtiyar     addToWorklist(func);
6846ea22d46Sbakhtiyar 
6856ea22d46Sbakhtiyar   SymbolTableCollection symbolTable;
6866ea22d46Sbakhtiyar   SymbolUserMap symbolUserMap(symbolTable, module);
6876ea22d46Sbakhtiyar 
6886ea22d46Sbakhtiyar   // Rewrite funcs, while updating call sites and adding them to the worklist.
6896ea22d46Sbakhtiyar   while (!funcWorklist.empty()) {
6906ea22d46Sbakhtiyar     auto func = funcWorklist.pop_back_val();
6916ea22d46Sbakhtiyar     auto insertion = outlinedFunctions.insert({func, CoroMachinery{}});
6926ea22d46Sbakhtiyar     if (!insertion.second)
6936ea22d46Sbakhtiyar       // This function has already been processed because this is either
6946ea22d46Sbakhtiyar       // the corecursive case, or a caller with multiple calls to a newly
6956ea22d46Sbakhtiyar       // created corouting. Either way, skip updating the call sites.
6966ea22d46Sbakhtiyar       continue;
6976ea22d46Sbakhtiyar     insertion.first->second = rewriteFuncAsCoroutine(func);
6986ea22d46Sbakhtiyar     SmallVector<Operation *> users(symbolUserMap.getUsers(func).begin(),
6996ea22d46Sbakhtiyar                                    symbolUserMap.getUsers(func).end());
7006ea22d46Sbakhtiyar     // If there are multiple calls from the same block they need to be traversed
7016ea22d46Sbakhtiyar     // in reverse order so that symbolUserMap references are not invalidated
7026ea22d46Sbakhtiyar     // when updating the users of the call op which is earlier in the block.
7036ea22d46Sbakhtiyar     llvm::sort(users, [](Operation *a, Operation *b) {
7046ea22d46Sbakhtiyar       Block *blockA = a->getBlock();
7056ea22d46Sbakhtiyar       Block *blockB = b->getBlock();
7066ea22d46Sbakhtiyar       // Impose arbitrary order on blocks so that there is a well-defined order.
7076ea22d46Sbakhtiyar       return blockA > blockB || (blockA == blockB && !a->isBeforeInBlock(b));
7086ea22d46Sbakhtiyar     });
7096ea22d46Sbakhtiyar     // Rewrite the callsites to await on results of the newly created coroutine.
7106ea22d46Sbakhtiyar     for (Operation *op : users) {
7116ea22d46Sbakhtiyar       if (CallOp call = dyn_cast<mlir::CallOp>(*op)) {
7126ea22d46Sbakhtiyar         FuncOp caller = call->getParentOfType<FuncOp>();
7136ea22d46Sbakhtiyar         rewriteCallsiteForCoroutine(call, func); // Careful, erases the call op.
7146ea22d46Sbakhtiyar         addToWorklist(caller);
7156ea22d46Sbakhtiyar       } else {
7166ea22d46Sbakhtiyar         op->emitError("Unexpected reference to func referenced by symbol");
7176ea22d46Sbakhtiyar         return failure();
7186ea22d46Sbakhtiyar       }
7196ea22d46Sbakhtiyar     }
7206ea22d46Sbakhtiyar   }
7216ea22d46Sbakhtiyar   return success();
7226ea22d46Sbakhtiyar }
7236ea22d46Sbakhtiyar 
7246ea22d46Sbakhtiyar //===----------------------------------------------------------------------===//
72525f80e16SEugene Zhulenev void AsyncToAsyncRuntimePass::runOnOperation() {
72625f80e16SEugene Zhulenev   ModuleOp module = getOperation();
72725f80e16SEugene Zhulenev   SymbolTable symbolTable(module);
72825f80e16SEugene Zhulenev 
72925f80e16SEugene Zhulenev   // Outline all `async.execute` body regions into async functions (coroutines).
73025f80e16SEugene Zhulenev   llvm::DenseMap<FuncOp, CoroMachinery> outlinedFunctions;
73125f80e16SEugene Zhulenev 
73225f80e16SEugene Zhulenev   module.walk([&](ExecuteOp execute) {
73325f80e16SEugene Zhulenev     outlinedFunctions.insert(outlineExecuteOp(symbolTable, execute));
73425f80e16SEugene Zhulenev   });
73525f80e16SEugene Zhulenev 
73625f80e16SEugene Zhulenev   LLVM_DEBUG({
73725f80e16SEugene Zhulenev     llvm::dbgs() << "Outlined " << outlinedFunctions.size()
73825f80e16SEugene Zhulenev                  << " functions built from async.execute operations\n";
73925f80e16SEugene Zhulenev   });
74025f80e16SEugene Zhulenev 
741de7a4e53SEugene Zhulenev   // Returns true if operation is inside the coroutine.
742de7a4e53SEugene Zhulenev   auto isInCoroutine = [&](Operation *op) -> bool {
743de7a4e53SEugene Zhulenev     auto parentFunc = op->getParentOfType<FuncOp>();
744de7a4e53SEugene Zhulenev     return outlinedFunctions.find(parentFunc) != outlinedFunctions.end();
745de7a4e53SEugene Zhulenev   };
746de7a4e53SEugene Zhulenev 
7476ea22d46Sbakhtiyar   if (eliminateBlockingAwaitOps &&
7486ea22d46Sbakhtiyar       failed(funcsToCoroutines(module, outlinedFunctions))) {
7496ea22d46Sbakhtiyar     signalPassFailure();
7506ea22d46Sbakhtiyar     return;
7516ea22d46Sbakhtiyar   }
7526ea22d46Sbakhtiyar 
75325f80e16SEugene Zhulenev   // Lower async operations to async.runtime operations.
75425f80e16SEugene Zhulenev   MLIRContext *ctx = module->getContext();
755dc4e913bSChris Lattner   RewritePatternSet asyncPatterns(ctx);
75625f80e16SEugene Zhulenev 
757de7a4e53SEugene Zhulenev   // Conversion to async runtime augments original CFG with the coroutine CFG,
758de7a4e53SEugene Zhulenev   // and we have to make sure that structured control flow operations with async
759de7a4e53SEugene Zhulenev   // operations in nested regions will be converted to branch-based control flow
760de7a4e53SEugene Zhulenev   // before we add the coroutine basic blocks.
761de7a4e53SEugene Zhulenev   populateLoopToStdConversionPatterns(asyncPatterns);
762de7a4e53SEugene Zhulenev 
76325f80e16SEugene Zhulenev   // Async lowering does not use type converter because it must preserve all
76425f80e16SEugene Zhulenev   // types for async.runtime operations.
765dc4e913bSChris Lattner   asyncPatterns.add<CreateGroupOpLowering, AddToGroupOpLowering>(ctx);
766dc4e913bSChris Lattner   asyncPatterns.add<AwaitTokenOpLowering, AwaitValueOpLowering,
76725f80e16SEugene Zhulenev                     AwaitAllOpLowering, YieldOpLowering>(ctx,
76825f80e16SEugene Zhulenev                                                          outlinedFunctions);
76925f80e16SEugene Zhulenev 
77039957aa4SEugene Zhulenev   // Lower assertions to conditional branches into error blocks.
77139957aa4SEugene Zhulenev   asyncPatterns.add<AssertOpLowering>(ctx, outlinedFunctions);
77239957aa4SEugene Zhulenev 
77325f80e16SEugene Zhulenev   // All high level async operations must be lowered to the runtime operations.
77425f80e16SEugene Zhulenev   ConversionTarget runtimeTarget(*ctx);
77525f80e16SEugene Zhulenev   runtimeTarget.addLegalDialect<AsyncDialect>();
77625f80e16SEugene Zhulenev   runtimeTarget.addIllegalOp<CreateGroupOp, AddToGroupOp>();
77725f80e16SEugene Zhulenev   runtimeTarget.addIllegalOp<ExecuteOp, AwaitOp, AwaitAllOp, async::YieldOp>();
77825f80e16SEugene Zhulenev 
779de7a4e53SEugene Zhulenev   // Decide if structured control flow has to be lowered to branch-based CFG.
780de7a4e53SEugene Zhulenev   runtimeTarget.addDynamicallyLegalDialect<scf::SCFDialect>([&](Operation *op) {
781de7a4e53SEugene Zhulenev     auto walkResult = op->walk([&](Operation *nested) {
782de7a4e53SEugene Zhulenev       bool isAsync = isa<async::AsyncDialect>(nested->getDialect());
783de7a4e53SEugene Zhulenev       return isAsync && isInCoroutine(nested) ? WalkResult::interrupt()
784de7a4e53SEugene Zhulenev                                               : WalkResult::advance();
785de7a4e53SEugene Zhulenev     });
786de7a4e53SEugene Zhulenev     return !walkResult.wasInterrupted();
787de7a4e53SEugene Zhulenev   });
788*a54f4eaeSMogball   runtimeTarget.addLegalOp<AssertOp, arith::XOrIOp, arith::ConstantOp,
789*a54f4eaeSMogball                            ConstantOp, BranchOp, CondBranchOp>();
790de7a4e53SEugene Zhulenev 
7918f23fac4SEugene Zhulenev   // Assertions must be converted to runtime errors inside async functions.
7928f23fac4SEugene Zhulenev   runtimeTarget.addDynamicallyLegalOp<AssertOp>([&](AssertOp op) -> bool {
7938f23fac4SEugene Zhulenev     auto func = op->getParentOfType<FuncOp>();
7948f23fac4SEugene Zhulenev     return outlinedFunctions.find(func) == outlinedFunctions.end();
7958f23fac4SEugene Zhulenev   });
79639957aa4SEugene Zhulenev 
7976ea22d46Sbakhtiyar   if (eliminateBlockingAwaitOps)
7989a5bc836Sbakhtiyar     runtimeTarget.addDynamicallyLegalOp<RuntimeAwaitOp>(
7999a5bc836Sbakhtiyar         [&](RuntimeAwaitOp op) -> bool {
8009a5bc836Sbakhtiyar           return isAllowedToBlock(op->getParentOfType<FuncOp>());
8019a5bc836Sbakhtiyar         });
8026ea22d46Sbakhtiyar 
80325f80e16SEugene Zhulenev   if (failed(applyPartialConversion(module, runtimeTarget,
80425f80e16SEugene Zhulenev                                     std::move(asyncPatterns)))) {
80525f80e16SEugene Zhulenev     signalPassFailure();
80625f80e16SEugene Zhulenev     return;
80725f80e16SEugene Zhulenev   }
80825f80e16SEugene Zhulenev }
80925f80e16SEugene Zhulenev 
81025f80e16SEugene Zhulenev std::unique_ptr<OperationPass<ModuleOp>> mlir::createAsyncToAsyncRuntimePass() {
81125f80e16SEugene Zhulenev   return std::make_unique<AsyncToAsyncRuntimePass>();
81225f80e16SEugene Zhulenev }
813