aboutsummaryrefslogtreecommitdiffstats
path: root/lib/ExecutionEngine/RuntimeDyld/Targets/RuntimeDyldCOFFX86_64.h
blob: ce2f4a2ae462cf41e9e5b8ae4f1d5f12ff9320d0 (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
//===-- RuntimeDyldCOFFX86_64.h --- COFF/X86_64 specific code ---*- C++ -*-===//
//
//                     The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
//
// COFF x86_x64 support for MC-JIT runtime dynamic linker.
//
//===----------------------------------------------------------------------===//

#ifndef LLVM_LIB_EXECUTIONENGINE_RUNTIMEDYLD_TARGETS_RUNTIMEDYLDCOFF86_64_H
#define LLVM_LIB_EXECUTIONENGINE_RUNTIMEDYLD_TARGETS_RUNTIMEDYLDCOFF86_64_H

#include "llvm/Object/COFF.h"
#include "llvm/Support/COFF.h"
#include "../RuntimeDyldCOFF.h"

#define DEBUG_TYPE "dyld"

namespace llvm {

class RuntimeDyldCOFFX86_64 : public RuntimeDyldCOFF {

private:
  // When a module is loaded we save the SectionID of the unwind
  // sections in a table until we receive a request to register all
  // unregisteredEH frame sections with the memory manager.
  SmallVector<SID, 2> UnregisteredEHFrameSections;
  SmallVector<SID, 2> RegisteredEHFrameSections;

public:
  RuntimeDyldCOFFX86_64(RTDyldMemoryManager *MM) : RuntimeDyldCOFF(MM) {}

  unsigned getMaxStubSize() override {
    return 6; // 2-byte jmp instruction + 32-bit relative address
  }

  // The target location for the relocation is described by RE.SectionID and
  // RE.Offset.  RE.SectionID can be used to find the SectionEntry.  Each
  // SectionEntry has three members describing its location.
  // SectionEntry::Address is the address at which the section has been loaded
  // into memory in the current (host) process.  SectionEntry::LoadAddress is
  // the address that the section will have in the target process.
  // SectionEntry::ObjAddress is the address of the bits for this section in the
  // original emitted object image (also in the current address space).
  //
  // Relocations will be applied as if the section were loaded at
  // SectionEntry::LoadAddress, but they will be applied at an address based
  // on SectionEntry::Address.  SectionEntry::ObjAddress will be used to refer
  // to Target memory contents if they are required for value calculations.
  //
  // The Value parameter here is the load address of the symbol for the
  // relocation to be applied.  For relocations which refer to symbols in the
  // current object Value will be the LoadAddress of the section in which
  // the symbol resides (RE.Addend provides additional information about the
  // symbol location).  For external symbols, Value will be the address of the
  // symbol in the target address space.
  void resolveRelocation(const RelocationEntry &RE, uint64_t Value) override {
    const SectionEntry &Section = Sections[RE.SectionID];
    uint8_t *Target = Section.Address + RE.Offset;

    switch (RE.RelType) {

    case COFF::IMAGE_REL_AMD64_REL32:
    case COFF::IMAGE_REL_AMD64_REL32_1:
    case COFF::IMAGE_REL_AMD64_REL32_2:
    case COFF::IMAGE_REL_AMD64_REL32_3:
    case COFF::IMAGE_REL_AMD64_REL32_4:
    case COFF::IMAGE_REL_AMD64_REL32_5: {
      uint32_t *TargetAddress = (uint32_t *)Target;
      uint64_t FinalAddress = Section.LoadAddress + RE.Offset;
      // Delta is the distance from the start of the reloc to the end of the
      // instruction with the reloc.
      uint64_t Delta = 4 + (RE.RelType - COFF::IMAGE_REL_AMD64_REL32);
      Value -= FinalAddress + Delta;
      uint64_t Result = Value + RE.Addend;
      assert(((int64_t)Result <= INT32_MAX) && "Relocation overflow");
      assert(((int64_t)Result >= INT32_MIN) && "Relocation underflow");
      *TargetAddress = Result;
      break;
    }

    case COFF::IMAGE_REL_AMD64_ADDR32NB: {
      // Note ADDR32NB requires a well-established notion of
      // image base. This address must be less than or equal
      // to every section's load address, and all sections must be
      // within a 32 bit offset from the base.
      //
      // For now we just set these to zero.
      uint32_t *TargetAddress = (uint32_t *)Target;
      *TargetAddress = 0;
      break;
    }

    case COFF::IMAGE_REL_AMD64_ADDR64: {
      uint64_t *TargetAddress = (uint64_t *)Target;
      *TargetAddress = Value + RE.Addend;
      break;
    }

    default:
      llvm_unreachable("Relocation type not implemented yet!");
      break;
    }
  }

  relocation_iterator processRelocationRef(unsigned SectionID,
                                           relocation_iterator RelI,
                                           const ObjectFile &Obj,
                                           ObjSectionToIDMap &ObjSectionToID,
                                           StubMap &Stubs) override {
    // Find the symbol referred to in the relocation, and
    // get its section and offset.
    //
    // Insist for now that all symbols be resolvable within
    // the scope of this object file.
    symbol_iterator Symbol = RelI->getSymbol();
    if (Symbol == Obj.symbol_end())
      report_fatal_error("Unknown symbol in relocation");
    unsigned TargetSectionID = 0;
    uint64_t TargetOffset = UnknownAddressOrSize;
    section_iterator SecI(Obj.section_end());
    Symbol->getSection(SecI);
    if (SecI == Obj.section_end())
      report_fatal_error("Unknown section in relocation");
    bool IsCode = SecI->isText();
    TargetSectionID = findOrEmitSection(Obj, *SecI, IsCode, ObjSectionToID);
    TargetOffset = getSymbolOffset(*Symbol);

    // Determine the Addend used to adjust the relocation value.
    uint64_t RelType;
    Check(RelI->getType(RelType));
    uint64_t Offset;
    Check(RelI->getOffset(Offset));
    uint64_t Addend = 0;
    SectionEntry &Section = Sections[SectionID];
    uintptr_t ObjTarget = Section.ObjAddress + Offset;

    switch (RelType) {

    case COFF::IMAGE_REL_AMD64_REL32:
    case COFF::IMAGE_REL_AMD64_REL32_1:
    case COFF::IMAGE_REL_AMD64_REL32_2:
    case COFF::IMAGE_REL_AMD64_REL32_3:
    case COFF::IMAGE_REL_AMD64_REL32_4:
    case COFF::IMAGE_REL_AMD64_REL32_5:
    case COFF::IMAGE_REL_AMD64_ADDR32NB: {
      uint32_t *Displacement = (uint32_t *)ObjTarget;
      Addend = *Displacement;
      break;
    }

    case COFF::IMAGE_REL_AMD64_ADDR64: {
      uint64_t *Displacement = (uint64_t *)ObjTarget;
      Addend = *Displacement;
      break;
    }

    default:
      break;
    }

    StringRef TargetName;
    Symbol->getName(TargetName);
    DEBUG(dbgs() << "\t\tIn Section " << SectionID << " Offset " << Offset
                 << " RelType: " << RelType << " TargetName: " << TargetName
                 << " Addend " << Addend << "\n");

    RelocationEntry RE(SectionID, Offset, RelType, TargetOffset + Addend);
    addRelocationForSection(RE, TargetSectionID);

    return ++RelI;
  }

  unsigned getStubAlignment() override { return 1; }
  void registerEHFrames() override {
    if (!MemMgr)
      return;
    for (auto const &EHFrameSID : UnregisteredEHFrameSections) {
      uint8_t *EHFrameAddr = Sections[EHFrameSID].Address;
      uint64_t EHFrameLoadAddr = Sections[EHFrameSID].LoadAddress;
      size_t EHFrameSize = Sections[EHFrameSID].Size;
      MemMgr->registerEHFrames(EHFrameAddr, EHFrameLoadAddr, EHFrameSize);
      RegisteredEHFrameSections.push_back(EHFrameSID);
    }
    UnregisteredEHFrameSections.clear();
  }
  void deregisterEHFrames() override {
    // Stub
  }
  void finalizeLoad(const ObjectFile &Obj,
                    ObjSectionToIDMap &SectionMap) override {
    // Look for and record the EH frame section IDs.
    for (const auto &SectionPair : SectionMap) {
      const SectionRef &Section = SectionPair.first;
      StringRef Name;
      Check(Section.getName(Name));
      // Note unwind info is split across .pdata and .xdata, so this
      // may not be sufficiently general for all users.
      if (Name == ".xdata") {
        UnregisteredEHFrameSections.push_back(SectionPair.second);
      }
    }
  }
};

} // end namespace llvm

#undef DEBUG_TYPE

#endif