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Andrew Kaylorcc7773b2012-11-27 19:00:17 +00001//===- SectionMemoryManager.cpp - Memory manager for MCJIT/RtDyld *- C++ -*-==//
Andrew Kaylor2d6d5852012-10-04 20:29:44 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
Andrew Kaylorcc7773b2012-11-27 19:00:17 +000010// This file implements the section-based memory manager used by the MCJIT
11// execution engine and RuntimeDyld
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000012//
13//===----------------------------------------------------------------------===//
14
15#include "llvm/Config/config.h"
Andrew Kaylor927ba6a2012-11-27 19:42:02 +000016#include "llvm/ExecutionEngine/SectionMemoryManager.h"
Amara Emersona25ad192012-10-31 17:41:51 +000017#include "llvm/Support/MathExtras.h"
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000018
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000019namespace llvm {
20
21uint8_t *SectionMemoryManager::allocateDataSection(uintptr_t Size,
22 unsigned Alignment,
Andrew Kaylor53608a32012-11-15 23:50:01 +000023 unsigned SectionID,
24 bool IsReadOnly) {
Andrew Kaylorcc7773b2012-11-27 19:00:17 +000025 if (IsReadOnly)
26 return allocateSection(RODataMem, Size, Alignment);
27 return allocateSection(RWDataMem, Size, Alignment);
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000028}
29
30uint8_t *SectionMemoryManager::allocateCodeSection(uintptr_t Size,
Andrew Kaylorcc7773b2012-11-27 19:00:17 +000031 unsigned Alignment,
32 unsigned SectionID) {
33 return allocateSection(CodeMem, Size, Alignment);
34}
35
36uint8_t *SectionMemoryManager::allocateSection(MemoryGroup &MemGroup,
37 uintptr_t Size,
38 unsigned Alignment) {
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000039 if (!Alignment)
40 Alignment = 16;
Andrew Kaylorcc7773b2012-11-27 19:00:17 +000041
42 assert(!(Alignment & (Alignment - 1)) && "Alignment must be a power of two.");
43
44 uintptr_t RequiredSize = Alignment * ((Size + Alignment - 1)/Alignment + 1);
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000045 uintptr_t Addr = 0;
Andrew Kaylorcc7773b2012-11-27 19:00:17 +000046
47 // Look in the list of free memory regions and use a block there if one
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000048 // is available.
Andrew Kaylorcc7773b2012-11-27 19:00:17 +000049 for (int i = 0, e = MemGroup.FreeMem.size(); i != e; ++i) {
50 sys::MemoryBlock &MB = MemGroup.FreeMem[i];
51 if (MB.size() >= RequiredSize) {
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000052 Addr = (uintptr_t)MB.base();
53 uintptr_t EndOfBlock = Addr + MB.size();
54 // Align the address.
55 Addr = (Addr + Alignment - 1) & ~(uintptr_t)(Alignment - 1);
56 // Store cutted free memory block.
Andrew Kaylorcc7773b2012-11-27 19:00:17 +000057 MemGroup.FreeMem[i] = sys::MemoryBlock((void*)(Addr + Size),
58 EndOfBlock - Addr - Size);
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000059 return (uint8_t*)Addr;
60 }
61 }
62
63 // No pre-allocated free block was large enough. Allocate a new memory region.
Andrew Kaylorcc7773b2012-11-27 19:00:17 +000064 // Note that all sections get allocated as read-write. The permissions will
65 // be updated later based on memory group.
66 //
67 // FIXME: It would be useful to define a default allocation size (or add
68 // it as a constructor parameter) to minimize the number of allocations.
Andrew Kaylor927ba6a2012-11-27 19:42:02 +000069 //
Andrew Kaylorcc7773b2012-11-27 19:00:17 +000070 // FIXME: Initialize the Near member for each memory group to avoid
71 // interleaving.
72 error_code ec;
73 sys::MemoryBlock MB = sys::Memory::allocateMappedMemory(RequiredSize,
74 &MemGroup.Near,
75 sys::Memory::MF_READ |
76 sys::Memory::MF_WRITE,
77 ec);
78 if (ec) {
79 // FIXME: Add error propogation to the interface.
80 return NULL;
81 }
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000082
Andrew Kaylorcc7773b2012-11-27 19:00:17 +000083 // Save this address as the basis for our next request
84 MemGroup.Near = MB;
85
86 MemGroup.AllocatedMem.push_back(MB);
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000087 Addr = (uintptr_t)MB.base();
88 uintptr_t EndOfBlock = Addr + MB.size();
Andrew Kaylorcc7773b2012-11-27 19:00:17 +000089
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000090 // Align the address.
91 Addr = (Addr + Alignment - 1) & ~(uintptr_t)(Alignment - 1);
Andrew Kaylorcc7773b2012-11-27 19:00:17 +000092
93 // The allocateMappedMemory may allocate much more memory than we need. In
94 // this case, we store the unused memory as a free memory block.
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000095 unsigned FreeSize = EndOfBlock-Addr-Size;
96 if (FreeSize > 16)
Andrew Kaylorcc7773b2012-11-27 19:00:17 +000097 MemGroup.FreeMem.push_back(sys::MemoryBlock((void*)(Addr + Size), FreeSize));
Andrew Kaylor2d6d5852012-10-04 20:29:44 +000098
99 // Return aligned address
100 return (uint8_t*)Addr;
101}
102
David Tweedabb38fe2013-05-17 10:01:46 +0000103bool SectionMemoryManager::finalizeMemory(std::string *ErrMsg)
Andrew Kaylorcc7773b2012-11-27 19:00:17 +0000104{
105 // FIXME: Should in-progress permissions be reverted if an error occurs?
106 error_code ec;
107
Andrew Kaylor8e9ec012013-10-01 01:47:35 +0000108 // Don't allow free memory blocks to be used after setting protection flags.
109 CodeMem.FreeMem.clear();
110
Andrew Kaylorcc7773b2012-11-27 19:00:17 +0000111 // Make code memory executable.
112 ec = applyMemoryGroupPermissions(CodeMem,
113 sys::Memory::MF_READ | sys::Memory::MF_EXEC);
114 if (ec) {
115 if (ErrMsg) {
116 *ErrMsg = ec.message();
117 }
118 return true;
119 }
120
Andrew Kaylor8e9ec012013-10-01 01:47:35 +0000121 // Don't allow free memory blocks to be used after setting protection flags.
122 RODataMem.FreeMem.clear();
123
Andrew Kaylorcc7773b2012-11-27 19:00:17 +0000124 // Make read-only data memory read-only.
125 ec = applyMemoryGroupPermissions(RODataMem,
126 sys::Memory::MF_READ | sys::Memory::MF_EXEC);
127 if (ec) {
128 if (ErrMsg) {
129 *ErrMsg = ec.message();
130 }
131 return true;
132 }
133
134 // Read-write data memory already has the correct permissions
135
Andrew Kaylor034f4be2013-04-24 22:39:12 +0000136 // Some platforms with separate data cache and instruction cache require
137 // explicit cache flush, otherwise JIT code manipulations (like resolved
138 // relocations) will get to the data cache but not to the instruction cache.
139 invalidateInstructionCache();
140
Andrew Kaylorcc7773b2012-11-27 19:00:17 +0000141 return false;
142}
143
144error_code SectionMemoryManager::applyMemoryGroupPermissions(MemoryGroup &MemGroup,
145 unsigned Permissions) {
146
147 for (int i = 0, e = MemGroup.AllocatedMem.size(); i != e; ++i) {
148 error_code ec;
149 ec = sys::Memory::protectMappedMemory(MemGroup.AllocatedMem[i],
150 Permissions);
151 if (ec) {
152 return ec;
153 }
154 }
155
156 return error_code::success();
157}
158
Andrew Kaylor2d6d5852012-10-04 20:29:44 +0000159void SectionMemoryManager::invalidateInstructionCache() {
Andrew Kaylorcc7773b2012-11-27 19:00:17 +0000160 for (int i = 0, e = CodeMem.AllocatedMem.size(); i != e; ++i)
161 sys::Memory::InvalidateInstructionCache(CodeMem.AllocatedMem[i].base(),
162 CodeMem.AllocatedMem[i].size());
163}
164
Andrew Kaylor2d6d5852012-10-04 20:29:44 +0000165SectionMemoryManager::~SectionMemoryManager() {
Andrew Kaylorcc7773b2012-11-27 19:00:17 +0000166 for (unsigned i = 0, e = CodeMem.AllocatedMem.size(); i != e; ++i)
167 sys::Memory::releaseMappedMemory(CodeMem.AllocatedMem[i]);
168 for (unsigned i = 0, e = RWDataMem.AllocatedMem.size(); i != e; ++i)
169 sys::Memory::releaseMappedMemory(RWDataMem.AllocatedMem[i]);
170 for (unsigned i = 0, e = RODataMem.AllocatedMem.size(); i != e; ++i)
171 sys::Memory::releaseMappedMemory(RODataMem.AllocatedMem[i]);
Andrew Kaylor2d6d5852012-10-04 20:29:44 +0000172}
173
174} // namespace llvm
Andrew Kaylorcc7773b2012-11-27 19:00:17 +0000175