| Christopher Ferris | 61d4097 | 2017-06-12 19:14:20 -0700 | [diff] [blame] | 1 | /* | 
 | 2 |  * Copyright (C) 2017 The Android Open Source Project | 
 | 3 |  * | 
 | 4 |  * Licensed under the Apache License, Version 2.0 (the "License"); | 
 | 5 |  * you may not use this file except in compliance with the License. | 
 | 6 |  * You may obtain a copy of the License at | 
 | 7 |  * | 
 | 8 |  *      http://www.apache.org/licenses/LICENSE-2.0 | 
 | 9 |  * | 
 | 10 |  * Unless required by applicable law or agreed to in writing, software | 
 | 11 |  * distributed under the License is distributed on an "AS IS" BASIS, | 
 | 12 |  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. | 
 | 13 |  * See the License for the specific language governing permissions and | 
 | 14 |  * limitations under the License. | 
 | 15 |  */ | 
 | 16 |  | 
 | 17 | #include <stdint.h> | 
 | 18 | #include <stdlib.h> | 
 | 19 |  | 
 | 20 | #include <algorithm> | 
 | 21 |  | 
 | 22 | #include "DwarfDebugFrame.h" | 
 | 23 | #include "DwarfMemory.h" | 
 | 24 | #include "DwarfSection.h" | 
 | 25 | #include "DwarfStructs.h" | 
 | 26 | #include "Memory.h" | 
 | 27 |  | 
 | 28 | template <typename AddressType> | 
 | 29 | bool DwarfDebugFrame<AddressType>::Init(uint64_t offset, uint64_t size) { | 
 | 30 |   offset_ = offset; | 
 | 31 |   end_offset_ = offset + size; | 
 | 32 |  | 
 | 33 |   memory_.clear_func_offset(); | 
 | 34 |   memory_.clear_text_offset(); | 
 | 35 |   memory_.set_data_offset(offset); | 
 | 36 |   memory_.set_cur_offset(offset); | 
 | 37 |  | 
 | 38 |   return CreateSortedFdeList(); | 
 | 39 | } | 
 | 40 |  | 
 | 41 | template <typename AddressType> | 
 | 42 | bool DwarfDebugFrame<AddressType>::GetCieInfo(uint8_t* segment_size, uint8_t* encoding) { | 
 | 43 |   uint8_t version; | 
 | 44 |   if (!memory_.ReadBytes(&version, 1)) { | 
 | 45 |     last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 46 |     return false; | 
 | 47 |   } | 
 | 48 |   // Read the augmentation string. | 
 | 49 |   std::vector<char> aug_string; | 
 | 50 |   char aug_value; | 
 | 51 |   bool get_encoding = false; | 
 | 52 |   do { | 
 | 53 |     if (!memory_.ReadBytes(&aug_value, 1)) { | 
 | 54 |       last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 55 |       return false; | 
 | 56 |     } | 
 | 57 |     if (aug_value == 'R') { | 
 | 58 |       get_encoding = true; | 
 | 59 |     } | 
 | 60 |     aug_string.push_back(aug_value); | 
 | 61 |   } while (aug_value != '\0'); | 
 | 62 |  | 
 | 63 |   if (version == 4) { | 
 | 64 |     // Skip the Address Size field. | 
 | 65 |     memory_.set_cur_offset(memory_.cur_offset() + 1); | 
 | 66 |  | 
 | 67 |     // Read the segment size. | 
 | 68 |     if (!memory_.ReadBytes(segment_size, 1)) { | 
 | 69 |       last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 70 |       return false; | 
 | 71 |     } | 
 | 72 |   } else { | 
 | 73 |     *segment_size = 0; | 
 | 74 |   } | 
 | 75 |  | 
 | 76 |   if (aug_string[0] != 'z' || !get_encoding) { | 
 | 77 |     // No encoding | 
 | 78 |     return true; | 
 | 79 |   } | 
 | 80 |  | 
 | 81 |   // Skip code alignment factor | 
 | 82 |   uint8_t value; | 
 | 83 |   do { | 
 | 84 |     if (!memory_.ReadBytes(&value, 1)) { | 
 | 85 |       last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 86 |       return false; | 
 | 87 |     } | 
 | 88 |   } while (value & 0x80); | 
 | 89 |  | 
 | 90 |   // Skip data alignment factor | 
 | 91 |   do { | 
 | 92 |     if (!memory_.ReadBytes(&value, 1)) { | 
 | 93 |       last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 94 |       return false; | 
 | 95 |     } | 
 | 96 |   } while (value & 0x80); | 
 | 97 |  | 
 | 98 |   if (version == 1) { | 
 | 99 |     // Skip return address register. | 
 | 100 |     memory_.set_cur_offset(memory_.cur_offset() + 1); | 
 | 101 |   } else { | 
 | 102 |     // Skip return address register. | 
 | 103 |     do { | 
 | 104 |       if (!memory_.ReadBytes(&value, 1)) { | 
 | 105 |         last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 106 |         return false; | 
 | 107 |       } | 
 | 108 |     } while (value & 0x80); | 
 | 109 |   } | 
 | 110 |  | 
 | 111 |   // Skip the augmentation length. | 
 | 112 |   do { | 
 | 113 |     if (!memory_.ReadBytes(&value, 1)) { | 
 | 114 |       last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 115 |       return false; | 
 | 116 |     } | 
 | 117 |   } while (value & 0x80); | 
 | 118 |  | 
 | 119 |   for (size_t i = 1; i < aug_string.size(); i++) { | 
 | 120 |     if (aug_string[i] == 'R') { | 
 | 121 |       if (!memory_.ReadBytes(encoding, 1)) { | 
 | 122 |         last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 123 |         return false; | 
 | 124 |       } | 
 | 125 |       // Got the encoding, that's all we are looking for. | 
 | 126 |       return true; | 
 | 127 |     } else if (aug_string[i] == 'L') { | 
 | 128 |       memory_.set_cur_offset(memory_.cur_offset() + 1); | 
 | 129 |     } else if (aug_string[i] == 'P') { | 
 | 130 |       uint8_t encoding; | 
 | 131 |       if (!memory_.ReadBytes(&encoding, 1)) { | 
 | 132 |         last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 133 |         return false; | 
 | 134 |       } | 
 | 135 |       uint64_t value; | 
 | 136 |       if (!memory_.template ReadEncodedValue<AddressType>(encoding, &value)) { | 
 | 137 |         last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 138 |         return false; | 
 | 139 |       } | 
 | 140 |     } | 
 | 141 |   } | 
 | 142 |  | 
 | 143 |   // It should be impossible to get here. | 
 | 144 |   abort(); | 
 | 145 | } | 
 | 146 |  | 
 | 147 | template <typename AddressType> | 
 | 148 | bool DwarfDebugFrame<AddressType>::AddFdeInfo(uint64_t entry_offset, uint8_t segment_size, | 
 | 149 |                                               uint8_t encoding) { | 
 | 150 |   if (segment_size != 0) { | 
 | 151 |     memory_.set_cur_offset(memory_.cur_offset() + 1); | 
 | 152 |   } | 
 | 153 |  | 
 | 154 |   uint64_t start; | 
 | 155 |   if (!memory_.template ReadEncodedValue<AddressType>(encoding & 0xf, &start)) { | 
 | 156 |     last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 157 |     return false; | 
 | 158 |   } | 
 | 159 |  | 
 | 160 |   uint64_t length; | 
 | 161 |   if (!memory_.template ReadEncodedValue<AddressType>(encoding & 0xf, &length)) { | 
 | 162 |     last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 163 |     return false; | 
 | 164 |   } | 
 | 165 |   if (length != 0) { | 
 | 166 |     fdes_.emplace_back(entry_offset, start, length); | 
 | 167 |   } | 
 | 168 |  | 
 | 169 |   return true; | 
 | 170 | } | 
 | 171 |  | 
 | 172 | template <typename AddressType> | 
 | 173 | bool DwarfDebugFrame<AddressType>::CreateSortedFdeList() { | 
 | 174 |   memory_.set_cur_offset(offset_); | 
 | 175 |  | 
 | 176 |   // Loop through all of the entries and read just enough to create | 
 | 177 |   // a sorted list of pcs. | 
 | 178 |   // This code assumes that first comes the cie, then the fdes that | 
 | 179 |   // it applies to. | 
 | 180 |   uint64_t cie_offset = 0; | 
 | 181 |   uint8_t address_encoding; | 
 | 182 |   uint8_t segment_size; | 
 | 183 |   while (memory_.cur_offset() < end_offset_) { | 
 | 184 |     uint64_t cur_entry_offset = memory_.cur_offset(); | 
 | 185 |  | 
 | 186 |     // Figure out the entry length and type. | 
 | 187 |     uint32_t value32; | 
 | 188 |     if (!memory_.ReadBytes(&value32, sizeof(value32))) { | 
 | 189 |       last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 190 |       return false; | 
 | 191 |     } | 
 | 192 |  | 
 | 193 |     uint64_t next_entry_offset; | 
 | 194 |     if (value32 == static_cast<uint32_t>(-1)) { | 
 | 195 |       uint64_t value64; | 
 | 196 |       if (!memory_.ReadBytes(&value64, sizeof(value64))) { | 
 | 197 |         last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 198 |         return false; | 
 | 199 |       } | 
 | 200 |       next_entry_offset = memory_.cur_offset() + value64; | 
 | 201 |  | 
 | 202 |       // Read the Cie Id of a Cie or the pointer of the Fde. | 
 | 203 |       if (!memory_.ReadBytes(&value64, sizeof(value64))) { | 
 | 204 |         last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 205 |         return false; | 
 | 206 |       } | 
 | 207 |  | 
 | 208 |       if (value64 == static_cast<uint64_t>(-1)) { | 
 | 209 |         // Cie 64 bit | 
 | 210 |         address_encoding = DW_EH_PE_sdata8; | 
 | 211 |         if (!GetCieInfo(&segment_size, &address_encoding)) { | 
 | 212 |           return false; | 
 | 213 |         } | 
 | 214 |         cie_offset = cur_entry_offset; | 
 | 215 |       } else { | 
 | 216 |         if (offset_ + value64 != cie_offset) { | 
 | 217 |           // This means that this Fde is not following the Cie. | 
 | 218 |           last_error_ = DWARF_ERROR_ILLEGAL_VALUE; | 
 | 219 |           return false; | 
 | 220 |         } | 
 | 221 |  | 
 | 222 |         // Fde 64 bit | 
 | 223 |         if (!AddFdeInfo(cur_entry_offset, segment_size, address_encoding)) { | 
 | 224 |           return false; | 
 | 225 |         } | 
 | 226 |       } | 
 | 227 |     } else { | 
 | 228 |       next_entry_offset = memory_.cur_offset() + value32; | 
 | 229 |  | 
 | 230 |       // Read the Cie Id of a Cie or the pointer of the Fde. | 
 | 231 |       if (!memory_.ReadBytes(&value32, sizeof(value32))) { | 
 | 232 |         last_error_ = DWARF_ERROR_MEMORY_INVALID; | 
 | 233 |         return false; | 
 | 234 |       } | 
 | 235 |  | 
 | 236 |       if (value32 == static_cast<uint32_t>(-1)) { | 
 | 237 |         // Cie 32 bit | 
 | 238 |         address_encoding = DW_EH_PE_sdata4; | 
 | 239 |         if (!GetCieInfo(&segment_size, &address_encoding)) { | 
 | 240 |           return false; | 
 | 241 |         } | 
 | 242 |         cie_offset = cur_entry_offset; | 
 | 243 |       } else { | 
 | 244 |         if (offset_ + value32 != cie_offset) { | 
 | 245 |           // This means that this Fde is not following the Cie. | 
 | 246 |           last_error_ = DWARF_ERROR_ILLEGAL_VALUE; | 
 | 247 |           return false; | 
 | 248 |         } | 
 | 249 |  | 
 | 250 |         // Fde 32 bit | 
 | 251 |         if (!AddFdeInfo(cur_entry_offset, segment_size, address_encoding)) { | 
 | 252 |           return false; | 
 | 253 |         } | 
 | 254 |       } | 
 | 255 |     } | 
 | 256 |  | 
 | 257 |     if (next_entry_offset < memory_.cur_offset()) { | 
 | 258 |       // This indicates some kind of corruption, or malformed section data. | 
 | 259 |       last_error_ = DWARF_ERROR_ILLEGAL_VALUE; | 
 | 260 |       return false; | 
 | 261 |     } | 
 | 262 |     memory_.set_cur_offset(next_entry_offset); | 
 | 263 |   } | 
 | 264 |  | 
 | 265 |   // Sort the entries. | 
 | 266 |   std::sort(fdes_.begin(), fdes_.end(), [](const FdeInfo& a, const FdeInfo& b) { | 
 | 267 |     if (a.start == b.start) return a.end < b.end; | 
 | 268 |     return a.start < b.start; | 
 | 269 |   }); | 
 | 270 |  | 
 | 271 |   fde_count_ = fdes_.size(); | 
 | 272 |  | 
 | 273 |   return true; | 
 | 274 | } | 
 | 275 |  | 
 | 276 | template <typename AddressType> | 
 | 277 | bool DwarfDebugFrame<AddressType>::GetFdeOffsetFromPc(uint64_t pc, uint64_t* fde_offset) { | 
 | 278 |   if (fde_count_ == 0) { | 
 | 279 |     return false; | 
 | 280 |   } | 
 | 281 |  | 
 | 282 |   size_t first = 0; | 
 | 283 |   size_t last = fde_count_; | 
 | 284 |   while (first < last) { | 
 | 285 |     size_t current = (first + last) / 2; | 
 | 286 |     const FdeInfo* info = &fdes_[current]; | 
 | 287 |     if (pc >= info->start && pc <= info->end) { | 
 | 288 |       *fde_offset = info->offset; | 
 | 289 |       return true; | 
 | 290 |     } | 
 | 291 |  | 
 | 292 |     if (pc < info->start) { | 
 | 293 |       last = current; | 
 | 294 |     } else { | 
 | 295 |       first = current + 1; | 
 | 296 |     } | 
 | 297 |   } | 
 | 298 |   return false; | 
 | 299 | } | 
 | 300 |  | 
 | 301 | template <typename AddressType> | 
 | 302 | const DwarfFde* DwarfDebugFrame<AddressType>::GetFdeFromIndex(size_t index) { | 
 | 303 |   if (index >= fdes_.size()) { | 
 | 304 |     return nullptr; | 
 | 305 |   } | 
 | 306 |   return this->GetFdeFromOffset(fdes_[index].offset); | 
 | 307 | } | 
 | 308 |  | 
 | 309 | // Explicitly instantiate DwarfDebugFrame. | 
 | 310 | template class DwarfDebugFrame<uint32_t>; | 
 | 311 | template class DwarfDebugFrame<uint64_t>; |