LLVM 23.0.0git
ExecutorProcessControl.h
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1//===- ExecutorProcessControl.h - Executor process control APIs -*- C++ -*-===//
2//
3// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6//
7//===----------------------------------------------------------------------===//
8//
9// Utilities for interacting with the executor processes.
10//
11//===----------------------------------------------------------------------===//
12
13#ifndef LLVM_EXECUTIONENGINE_ORC_EXECUTORPROCESSCONTROL_H
14#define LLVM_EXECUTIONENGINE_ORC_EXECUTORPROCESSCONTROL_H
15
16#include "llvm/ADT/StringRef.h"
28
29#include <future>
30#include <mutex>
31#include <vector>
32
33namespace llvm::orc {
34
36
37/// ExecutorProcessControl supports interaction with a JIT target process.
39 friend class ExecutionSession;
40public:
41
42 /// A handler or incoming WrapperFunctionBuffers -- either return values from
43 /// callWrapper* calls, or incoming JIT-dispatch requests.
44 ///
45 /// IncomingWFRHandlers are constructible from
46 /// unique_function<void(shared::WrapperFunctionBuffer)>s using the
47 /// runInPlace function or a RunWithDispatch object.
50 public:
51 IncomingWFRHandler() = default;
52 explicit operator bool() const { return !!H; }
53 void operator()(shared::WrapperFunctionBuffer WFR) { H(std::move(WFR)); }
54 private:
55 template <typename FnT> IncomingWFRHandler(FnT &&Fn)
56 : H(std::forward<FnT>(Fn)) {}
57
59 };
60
61 /// Constructs an IncomingWFRHandler from a function object that is callable
62 /// as void(shared::WrapperFunctionBuffer). The function object will be called
63 /// directly. This should be used with care as it may block listener threads
64 /// in remote EPCs. It is only suitable for simple tasks (e.g. setting a
65 /// future), or for performing some quick analysis before dispatching "real"
66 /// work as a Task.
67 class RunInPlace {
68 public:
69 template <typename FnT>
71 return IncomingWFRHandler(std::forward<FnT>(Fn));
72 }
73 };
74
75 /// Constructs an IncomingWFRHandler from a function object by creating a new
76 /// function object that dispatches the original using a TaskDispatcher,
77 /// wrapping the original as a GenericNamedTask.
78 ///
79 /// This is the default approach for running WFR handlers.
80 class RunAsTask {
81 public:
83
84 template <typename FnT>
86 return IncomingWFRHandler(
87 [&D = this->D, Fn = std::move(Fn)]
88 (shared::WrapperFunctionBuffer WFR) mutable {
89 D.dispatch(
91 [Fn = std::move(Fn), WFR = std::move(WFR)]() mutable {
92 Fn(std::move(WFR));
93 }, "WFR handler task"));
94 });
95 }
96 private:
98 };
99
100 /// Contains the address of the dispatch function and context that the ORC
101 /// runtime can use to call functions in the JIT.
106
107 ExecutorProcessControl(std::shared_ptr<SymbolStringPool> SSP,
108 std::unique_ptr<TaskDispatcher> D)
109 : SSP(std::move(SSP)), D(std::move(D)) {}
110
112
113 /// Return the ExecutionSession associated with this instance.
114 /// Not callable until the ExecutionSession has been associated.
116 assert(ES && "No ExecutionSession associated yet");
117 return *ES;
118 }
119
120 /// Intern a symbol name in the SymbolStringPool.
121 SymbolStringPtr intern(StringRef SymName) { return SSP->intern(SymName); }
122
123 /// Return a shared pointer to the SymbolStringPool for this instance.
124 std::shared_ptr<SymbolStringPool> getSymbolStringPool() const { return SSP; }
125
127
128 /// Return the Triple for the target process.
129 const Triple &getTargetTriple() const { return TargetTriple; }
130
131 /// Get the page size for the target process.
132 unsigned getPageSize() const { return PageSize; }
133
134 /// Get the JIT dispatch function and context address for the executor.
135 const JITDispatchInfo &getJITDispatchInfo() const { return JDI; }
136
137 /// Return a MemoryAccess object for the target process.
139 assert(MemAccess && "No MemAccess object set.");
140 return *MemAccess;
141 }
142
143 /// Return a JITLinkMemoryManager for the target process.
145 assert(MemMgr && "No MemMgr object set");
146 return *MemMgr;
147 }
148
149 /// Create a default DylibManager for the target process.
151
152 /// Returns the bootstrap map.
154 return BootstrapMap;
155 }
156
157 /// Look up and SPS-deserialize a bootstrap map value.
158 template <typename T, typename SPSTagT>
159 Error getBootstrapMapValue(StringRef Key, std::optional<T> &Val) const {
160 Val = std::nullopt;
161
162 auto I = BootstrapMap.find(Key);
163 if (I == BootstrapMap.end())
164 return Error::success();
165
166 T Tmp;
167 shared::SPSInputBuffer IB(I->second.data(), I->second.size());
169 return make_error<StringError>("Could not deserialize value for key " +
170 Key,
172
173 Val = std::move(Tmp);
174 return Error::success();
175 }
176
177 /// Returns the bootstrap symbol map.
181
182 /// For each (ExecutorAddr&, StringRef) pair, looks up the string in the
183 /// bootstrap symbols map and writes its address to the ExecutorAddr if
184 /// found. If any symbol is not found then the function returns an error.
186 ArrayRef<std::pair<ExecutorAddr &, StringRef>> Pairs) const {
187 for (const auto &KV : Pairs) {
188 auto I = BootstrapSymbols.find(KV.second);
189 if (I == BootstrapSymbols.end())
190 return make_error<StringError>("Symbol \"" + KV.second +
191 "\" not found "
192 "in bootstrap symbols map",
194
195 KV.first = I->second;
196 }
197 return Error::success();
198 }
199
200 /// Run function with a main-like signature.
202 ArrayRef<std::string> Args) = 0;
203
204 // TODO: move this to ORC runtime.
205 /// Run function with a int (*)(void) signature.
207
208 // TODO: move this to ORC runtime.
209 /// Run function with a int (*)(int) signature.
211 int Arg) = 0;
212
213 /// Run a wrapper function in the executor. The given WFRHandler will be
214 /// called on the result when it is returned.
215 ///
216 /// The wrapper function should be callable as:
217 ///
218 /// \code{.cpp}
219 /// CWrapperFunctionBuffer fn(uint8_t *Data, uint64_t Size);
220 /// \endcode{.cpp}
221 virtual void callWrapperAsync(ExecutorAddr WrapperFnAddr,
222 IncomingWFRHandler OnComplete,
223 ArrayRef<char> ArgBuffer) = 0;
224
225 /// Run a wrapper function in the executor using the given Runner to dispatch
226 /// OnComplete when the result is ready.
227 template <typename RunPolicyT, typename FnT>
228 void callWrapperAsync(RunPolicyT &&Runner, ExecutorAddr WrapperFnAddr,
229 FnT &&OnComplete, ArrayRef<char> ArgBuffer) {
231 WrapperFnAddr, Runner(std::forward<FnT>(OnComplete)), ArgBuffer);
232 }
233
234 /// Run a wrapper function in the executor. OnComplete will be dispatched
235 /// as a GenericNamedTask using this instance's TaskDispatch object.
236 template <typename FnT>
237 void callWrapperAsync(ExecutorAddr WrapperFnAddr, FnT &&OnComplete,
238 ArrayRef<char> ArgBuffer) {
239 callWrapperAsync(RunAsTask(*D), WrapperFnAddr,
240 std::forward<FnT>(OnComplete), ArgBuffer);
241 }
242
243 /// Run a wrapper function in the executor. The wrapper function should be
244 /// callable as:
245 ///
246 /// \code{.cpp}
247 /// CWrapperFunctionBuffer fn(uint8_t *Data, uint64_t Size);
248 /// \endcode{.cpp}
250 ArrayRef<char> ArgBuffer) {
251 std::promise<shared::WrapperFunctionBuffer> RP;
252 auto RF = RP.get_future();
254 RunInPlace(), WrapperFnAddr,
256 RP.set_value(std::move(R));
257 }, ArgBuffer);
258 return RF.get();
259 }
260
261 /// Run a wrapper function using SPS to serialize the arguments and
262 /// deserialize the results.
263 template <typename SPSSignature, typename RunPolicyT, typename SendResultT,
264 typename... ArgTs>
265 void callSPSWrapperAsync(RunPolicyT &&Runner, ExecutorAddr WrapperFnAddr,
266 SendResultT &&SendResult, const ArgTs &...Args) {
268 [this, WrapperFnAddr, Runner = std::move(Runner)]
269 (auto &&SendResult, const char *ArgData, size_t ArgSize) mutable {
270 this->callWrapperAsync(std::move(Runner), WrapperFnAddr,
271 std::move(SendResult),
272 ArrayRef<char>(ArgData, ArgSize));
273 },
274 std::forward<SendResultT>(SendResult), Args...);
275 }
276
277 /// Run a wrapper function using SPS to serialize the arguments and
278 /// deserialize the results.
279 template <typename SPSSignature, typename SendResultT, typename... ArgTs>
280 void callSPSWrapperAsync(ExecutorAddr WrapperFnAddr, SendResultT &&SendResult,
281 const ArgTs &...Args) {
283 std::forward<SendResultT>(SendResult),
284 Args...);
285 }
286
287 /// Run a wrapper function using SPS to serialize the arguments and
288 /// deserialize the results.
289 ///
290 /// If SPSSignature is a non-void function signature then the second argument
291 /// (the first in the Args list) should be a reference to a return value.
292 template <typename SPSSignature, typename... WrapperCallArgTs>
294 WrapperCallArgTs &&...WrapperCallArgs) {
296 [this, WrapperFnAddr](const char *ArgData, size_t ArgSize) {
297 return callWrapper(WrapperFnAddr, ArrayRef<char>(ArgData, ArgSize));
298 },
299 std::forward<WrapperCallArgTs>(WrapperCallArgs)...);
300 }
301
302 /// Disconnect from the target process.
303 ///
304 /// This should be called after the JIT session is shut down.
305 virtual Error disconnect() = 0;
306
307protected:
308
309 std::shared_ptr<SymbolStringPool> SSP;
310 std::unique_ptr<TaskDispatcher> D;
313 unsigned PageSize = 0;
319};
320
321} // namespace llvm::orc
322
323#endif // LLVM_EXECUTIONENGINE_ORC_EXECUTORPROCESSCONTROL_H
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
#define LLVM_ABI
Definition Compiler.h:213
#define I(x, y, z)
Definition MD5.cpp:57
#define H(x, y, z)
Definition MD5.cpp:56
#define T
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
Definition ArrayRef.h:40
Lightweight error class with error context and mandatory checking.
Definition Error.h:159
static ErrorSuccess success()
Create a success value.
Definition Error.h:336
Tagged union holding either a T or a Error.
Definition Error.h:485
StringMap - This is an unconventional map that is specialized for handling keys that are "strings",...
Definition StringMap.h:133
StringRef - Represent a constant reference to a string, i.e.
Definition StringRef.h:55
Triple - Helper class for working with autoconf configuration names.
Definition Triple.h:47
An ExecutionSession represents a running JIT program.
Definition Core.h:1355
Represents an address in the executor process.
A handler or incoming WrapperFunctionBuffers – either return values from callWrapper* calls,...
Constructs an IncomingWFRHandler from a function object by creating a new function object that dispat...
Constructs an IncomingWFRHandler from a function object that is callable as void(shared::WrapperFunct...
jitlink::JITLinkMemoryManager & getMemMgr() const
Return a JITLinkMemoryManager for the target process.
void callWrapperAsync(ExecutorAddr WrapperFnAddr, FnT &&OnComplete, ArrayRef< char > ArgBuffer)
Run a wrapper function in the executor.
virtual Expected< int32_t > runAsIntFunction(ExecutorAddr IntFnAddr, int Arg)=0
Run function with a int (*)(int) signature.
void callSPSWrapperAsync(RunPolicyT &&Runner, ExecutorAddr WrapperFnAddr, SendResultT &&SendResult, const ArgTs &...Args)
Run a wrapper function using SPS to serialize the arguments and deserialize the results.
virtual Expected< int32_t > runAsMain(ExecutorAddr MainFnAddr, ArrayRef< std::string > Args)=0
Run function with a main-like signature.
Error getBootstrapMapValue(StringRef Key, std::optional< T > &Val) const
Look up and SPS-deserialize a bootstrap map value.
std::unique_ptr< TaskDispatcher > D
void callSPSWrapperAsync(ExecutorAddr WrapperFnAddr, SendResultT &&SendResult, const ArgTs &...Args)
Run a wrapper function using SPS to serialize the arguments and deserialize the results.
virtual void callWrapperAsync(ExecutorAddr WrapperFnAddr, IncomingWFRHandler OnComplete, ArrayRef< char > ArgBuffer)=0
Run a wrapper function in the executor.
const StringMap< std::vector< char > > & getBootstrapMap() const
Returns the bootstrap map.
virtual Expected< std::unique_ptr< DylibManager > > createDefaultDylibMgr()=0
Create a default DylibManager for the target process.
std::shared_ptr< SymbolStringPool > SSP
const Triple & getTargetTriple() const
Return the Triple for the target process.
StringMap< ExecutorAddr > BootstrapSymbols
SymbolStringPtr intern(StringRef SymName)
Intern a symbol name in the SymbolStringPool.
virtual Error disconnect()=0
Disconnect from the target process.
shared::WrapperFunctionBuffer callWrapper(ExecutorAddr WrapperFnAddr, ArrayRef< char > ArgBuffer)
Run a wrapper function in the executor.
StringMap< std::vector< char > > BootstrapMap
std::shared_ptr< SymbolStringPool > getSymbolStringPool() const
Return a shared pointer to the SymbolStringPool for this instance.
const StringMap< ExecutorAddr > & getBootstrapSymbolsMap() const
Returns the bootstrap symbol map.
virtual Expected< int32_t > runAsVoidFunction(ExecutorAddr VoidFnAddr)=0
Run function with a int (*)(void) signature.
jitlink::JITLinkMemoryManager * MemMgr
unsigned getPageSize() const
Get the page size for the target process.
const JITDispatchInfo & getJITDispatchInfo() const
Get the JIT dispatch function and context address for the executor.
Error callSPSWrapper(ExecutorAddr WrapperFnAddr, WrapperCallArgTs &&...WrapperCallArgs)
Run a wrapper function using SPS to serialize the arguments and deserialize the results.
void callWrapperAsync(RunPolicyT &&Runner, ExecutorAddr WrapperFnAddr, FnT &&OnComplete, ArrayRef< char > ArgBuffer)
Run a wrapper function in the executor using the given Runner to dispatch OnComplete when the result ...
Error getBootstrapSymbols(ArrayRef< std::pair< ExecutorAddr &, StringRef > > Pairs) const
For each (ExecutorAddr&, StringRef) pair, looks up the string in the bootstrap symbols map and writes...
ExecutionSession & getExecutionSession()
Return the ExecutionSession associated with this instance.
ExecutorProcessControl(std::shared_ptr< SymbolStringPool > SSP, std::unique_ptr< TaskDispatcher > D)
MemoryAccess & getMemoryAccess() const
Return a MemoryAccess object for the target process.
APIs for manipulating memory in the target process.
Pointer to a pooled string representing a symbol name.
Abstract base for classes that dispatch ORC Tasks.
A utility class for serializing to a blob from a variadic list.
Input char buffer with underflow check.
C++ wrapper function buffer: Same as CWrapperFunctionBuffer but auto-releases memory.
unique_function is a type-erasing functor similar to std::function.
std::unique_ptr< GenericNamedTask > makeGenericNamedTask(FnT &&Fn, std::string Desc)
Create a generic named task from a std::string description.
LLVM_ABI std::error_code inconvertibleErrorCode()
The value returned by this function can be returned from convertToErrorCode for Error values where no...
Definition Error.cpp:94
LLVM_ATTRIBUTE_VISIBILITY_DEFAULT AnalysisKey InnerAnalysisManagerProxy< AnalysisManagerT, IRUnitT, ExtraArgTs... >::Key
Error make_error(ArgTs &&... Args)
Make a Error instance representing failure using the given error info type.
Definition Error.h:340
OutputIt move(R &&Range, OutputIt Out)
Provide wrappers to std::move which take ranges instead of having to pass begin/end explicitly.
Definition STLExtras.h:1917
Implement std::hash so that hash_code can be used in STL containers.
Definition BitVector.h:870
Contains the address of the dispatch function and context that the ORC runtime can use to call functi...