1 //===-- RTDyldMemoryManager.cpp - Memory manager for MC-JIT -----*- C++ -*-===//
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
7 //===----------------------------------------------------------------------===//
9 // Interface of the runtime dynamic memory manager base class.
11 //===----------------------------------------------------------------------===//
13 #ifndef LLVM_EXECUTIONENGINE_RTDYLDMEMORYMANAGER_H
14 #define LLVM_EXECUTIONENGINE_RTDYLDMEMORYMANAGER_H
16 #include "llvm-c/ExecutionEngine.h"
17 #include "llvm/ExecutionEngine/JITSymbol.h"
18 #include "llvm/ExecutionEngine/RuntimeDyld.h"
19 #include "llvm/Support/CBindingWrapping.h"
26 class ExecutionEngine
;
30 } // end namespace object
32 class MCJITMemoryManager
: public RuntimeDyld::MemoryManager
{
34 // Don't hide the notifyObjectLoaded method from RuntimeDyld::MemoryManager.
35 using RuntimeDyld::MemoryManager::notifyObjectLoaded
;
37 /// This method is called after an object has been loaded into memory but
38 /// before relocations are applied to the loaded sections. The object load
39 /// may have been initiated by MCJIT to resolve an external symbol for another
40 /// object that is being finalized. In that case, the object about which
41 /// the memory manager is being notified will be finalized immediately after
42 /// the memory manager returns from this call.
44 /// Memory managers which are preparing code for execution in an external
45 /// address space can use this call to remap the section addresses for the
46 /// newly loaded object.
47 virtual void notifyObjectLoaded(ExecutionEngine
*EE
,
48 const object::ObjectFile
&) {}
51 void anchor() override
;
54 // RuntimeDyld clients often want to handle the memory management of
55 // what gets placed where. For JIT clients, this is the subset of
56 // JITMemoryManager required for dynamic loading of binaries.
58 // FIXME: As the RuntimeDyld fills out, additional routines will be needed
59 // for the varying types of objects to be allocated.
60 class RTDyldMemoryManager
: public MCJITMemoryManager
,
61 public LegacyJITSymbolResolver
{
63 RTDyldMemoryManager() = default;
64 RTDyldMemoryManager(const RTDyldMemoryManager
&) = delete;
65 void operator=(const RTDyldMemoryManager
&) = delete;
66 ~RTDyldMemoryManager() override
;
68 /// Register EH frames in the current process.
69 static void registerEHFramesInProcess(uint8_t *Addr
, size_t Size
);
71 /// Deregister EH frames in the current proces.
72 static void deregisterEHFramesInProcess(uint8_t *Addr
, size_t Size
);
74 void registerEHFrames(uint8_t *Addr
, uint64_t LoadAddr
, size_t Size
) override
;
75 void deregisterEHFrames() override
;
77 /// This method returns the address of the specified function or variable in
78 /// the current process.
79 static uint64_t getSymbolAddressInProcess(const std::string
&Name
);
81 /// Legacy symbol lookup - DEPRECATED! Please override findSymbol instead.
83 /// This method returns the address of the specified function or variable.
84 /// It is used to resolve symbols during module linking.
85 virtual uint64_t getSymbolAddress(const std::string
&Name
) {
86 return getSymbolAddressInProcess(Name
);
89 /// This method returns a RuntimeDyld::SymbolInfo for the specified function
90 /// or variable. It is used to resolve symbols during module linking.
92 /// By default this falls back on the legacy lookup method:
93 /// 'getSymbolAddress'. The address returned by getSymbolAddress is treated as
94 /// a strong, exported symbol, consistent with historical treatment by
97 /// Clients writing custom RTDyldMemoryManagers are encouraged to override
98 /// this method and return a SymbolInfo with the flags set correctly. This is
99 /// necessary for RuntimeDyld to correctly handle weak and non-exported symbols.
100 JITSymbol
findSymbol(const std::string
&Name
) override
{
101 return JITSymbol(getSymbolAddress(Name
), JITSymbolFlags::Exported
);
104 /// Legacy symbol lookup -- DEPRECATED! Please override
105 /// findSymbolInLogicalDylib instead.
107 /// Default to treating all modules as separate.
108 virtual uint64_t getSymbolAddressInLogicalDylib(const std::string
&Name
) {
112 /// Default to treating all modules as separate.
114 /// By default this falls back on the legacy lookup method:
115 /// 'getSymbolAddressInLogicalDylib'. The address returned by
116 /// getSymbolAddressInLogicalDylib is treated as a strong, exported symbol,
117 /// consistent with historical treatment by RuntimeDyld.
119 /// Clients writing custom RTDyldMemoryManagers are encouraged to override
120 /// this method and return a SymbolInfo with the flags set correctly. This is
121 /// necessary for RuntimeDyld to correctly handle weak and non-exported symbols.
123 findSymbolInLogicalDylib(const std::string
&Name
) override
{
124 return JITSymbol(getSymbolAddressInLogicalDylib(Name
),
125 JITSymbolFlags::Exported
);
128 /// This method returns the address of the specified function. As such it is
129 /// only useful for resolving library symbols, not code generated symbols.
131 /// If \p AbortOnFailure is false and no function with the given name is
132 /// found, this function returns a null pointer. Otherwise, it prints a
133 /// message to stderr and aborts.
135 /// This function is deprecated for memory managers to be used with
136 /// MCJIT or RuntimeDyld. Use getSymbolAddress instead.
137 virtual void *getPointerToNamedFunction(const std::string
&Name
,
138 bool AbortOnFailure
= true);
145 typedef std::vector
<EHFrame
> EHFrameInfos
;
146 EHFrameInfos EHFrames
;
149 void anchor() override
;
152 // Create wrappers for C Binding types (see CBindingWrapping.h).
153 DEFINE_SIMPLE_CONVERSION_FUNCTIONS(
154 RTDyldMemoryManager
, LLVMMCJITMemoryManagerRef
)
156 } // end namespace llvm
158 #endif // LLVM_EXECUTIONENGINE_RTDYLDMEMORYMANAGER_H