1 #include "eeprom_device.hpp" 2 3 #include "common/include/software.hpp" 4 #include "common/include/utils.hpp" 5 6 #include <phosphor-logging/lg2.hpp> 7 #include <sdbusplus/async.hpp> 8 #include <sdbusplus/message.hpp> 9 10 #include <filesystem> 11 #include <fstream> 12 13 PHOSPHOR_LOG2_USING; 14 15 namespace fs = std::filesystem; 16 namespace MatchRules = sdbusplus::bus::match::rules; 17 namespace State = sdbusplus::common::xyz::openbmc_project::state; 18 19 static std::vector<std::unique_ptr<::gpiod::line_bulk>> requestMuxGPIOs( 20 const std::vector<std::string>& gpioLines, 21 const std::vector<bool>& gpioPolarities, bool inverted) 22 { 23 std::map<std::string, std::vector<std::string>> groupLineNames; 24 std::map<std::string, std::vector<int>> groupValues; 25 26 for (size_t i = 0; i < gpioLines.size(); ++i) 27 { 28 auto line = ::gpiod::find_line(gpioLines[i]); 29 30 if (!line) 31 { 32 error("Failed to find GPIO line: {LINE}", "LINE", gpioLines[i]); 33 return {}; 34 } 35 36 if (line.is_used()) 37 { 38 error("GPIO line {LINE} was still used", "LINE", gpioLines[i]); 39 return {}; 40 } 41 42 std::string chipName = line.get_chip().name(); 43 groupLineNames[chipName].push_back(gpioLines[i]); 44 groupValues[chipName].push_back(gpioPolarities[i] ^ inverted ? 1 : 0); 45 } 46 47 std::vector<std::unique_ptr<::gpiod::line_bulk>> lineBulks; 48 ::gpiod::line_request config{"", ::gpiod::line_request::DIRECTION_OUTPUT, 49 0}; 50 51 for (auto& [chipName, lineNames] : groupLineNames) 52 { 53 ::gpiod::chip chip(chipName); 54 std::vector<::gpiod::line> lines; 55 56 for (size_t i = 0; i < lineNames.size(); ++i) 57 { 58 const auto& name = lineNames[i]; 59 auto line = chip.find_line(name); 60 61 if (!line) 62 { 63 error("Failed to get {LINE} from chip {CHIP}", "LINE", name, 64 "CHIP", chipName); 65 return {}; 66 } 67 68 debug("Requesting chip {CHIP}, GPIO line {LINE} to {VALUE}", "CHIP", 69 chip.name(), "LINE", line.name(), "VALUE", 70 groupValues[chipName][i]); 71 72 lines.push_back(std::move(line)); 73 } 74 75 auto lineBulk = std::make_unique<::gpiod::line_bulk>(lines); 76 77 if (!lineBulk) 78 { 79 error("Failed to create line bulk for chip={CHIP}", "CHIP", 80 chipName); 81 return {}; 82 } 83 84 lineBulk->request(config, groupValues[chipName]); 85 86 lineBulks.push_back(std::move(lineBulk)); 87 } 88 89 return lineBulks; 90 } 91 92 static std::string getDriverPath(const std::string& chipModel) 93 { 94 // Currently, only EEPROM chips with the model AT24 are supported. 95 if (chipModel.find("EEPROM_24C") == std::string::npos) 96 { 97 error("Invalid EEPROM chip model: {CHIP}", "CHIP", chipModel); 98 return ""; 99 } 100 101 std::string path = "/sys/bus/i2c/drivers/at24"; 102 return std::filesystem::exists(path) ? path : ""; 103 } 104 105 static std::string getI2CDeviceId(const uint16_t bus, const uint8_t address) 106 { 107 std::ostringstream oss; 108 oss << bus << "-" << std::hex << std::setfill('0') << std::setw(4) 109 << static_cast<int>(address); 110 return oss.str(); 111 } 112 113 static std::string getEEPROMPath(const uint16_t bus, const uint8_t address) 114 { 115 std::string devicePath = 116 "/sys/bus/i2c/devices/" + getI2CDeviceId(bus, address) + "/eeprom"; 117 118 if (fs::exists(devicePath) && fs::is_regular_file(devicePath)) 119 { 120 debug("Found EEPROM device path: {PATH}", "PATH", devicePath); 121 return devicePath; 122 } 123 124 return ""; 125 } 126 127 EEPROMDevice::EEPROMDevice( 128 sdbusplus::async::context& ctx, const uint16_t bus, const uint8_t address, 129 const std::string& chipModel, const std::vector<std::string>& gpioLines, 130 const std::vector<bool>& gpioPolarities, 131 std::unique_ptr<DeviceVersion> deviceVersion, SoftwareConfig& config, 132 ManagerInf::SoftwareManager* parent) : 133 Device(ctx, config, parent, 134 {RequestedApplyTimes::Immediate, RequestedApplyTimes::OnReset}), 135 bus(bus), address(address), chipModel(chipModel), gpioLines(gpioLines), 136 gpioPolarities(gpioPolarities), deviceVersion(std::move(deviceVersion)), 137 hostPower(ctx) 138 { 139 // Some EEPROM devices require the host to be in a specific state before 140 // retrieving the version. To handle this, set up a match to listen for 141 // property changes on the host state. Once the host reaches the required 142 // condition, the version can be updated accordingly. 143 ctx.spawn(processHostStateChange()); 144 145 debug("Initialized EEPROM device instance on dbus"); 146 } 147 148 sdbusplus::async::task<bool> EEPROMDevice::updateDevice(const uint8_t* image, 149 size_t image_size) 150 { 151 std::vector<std::unique_ptr<::gpiod::line_bulk>> lineBulks; 152 153 if (!gpioLines.empty()) 154 { 155 debug("Requesting GPIOs to mux EEPROM to BMC"); 156 157 lineBulks = requestMuxGPIOs(gpioLines, gpioPolarities, false); 158 159 if (lineBulks.empty()) 160 { 161 error("Failed to mux EEPROM to BMC"); 162 co_return false; 163 } 164 } 165 166 setUpdateProgress(20); 167 168 if (!co_await bindEEPROM()) 169 { 170 co_return false; 171 } 172 173 setUpdateProgress(40); 174 175 auto success = co_await writeEEPROM(image, image_size); 176 177 if (success) 178 { 179 debug("Successfully wrote EEPROM"); 180 setUpdateProgress(60); 181 } 182 else 183 { 184 error("Failed to write EEPROM"); 185 } 186 187 success = success && co_await unbindEEPROM(); 188 189 if (success) 190 { 191 setUpdateProgress(80); 192 } 193 194 if (!gpioLines.empty()) 195 { 196 for (auto& lineBulk : lineBulks) 197 { 198 lineBulk->release(); 199 } 200 201 debug("Requesting GPIOs to mux EEPROM back to device"); 202 203 lineBulks = requestMuxGPIOs(gpioLines, gpioPolarities, true); 204 205 if (lineBulks.empty()) 206 { 207 error("Failed to mux EEPROM back to device"); 208 co_return false; 209 } 210 211 for (auto& lineBulk : lineBulks) 212 { 213 lineBulk->release(); 214 } 215 } 216 217 if (success) 218 { 219 debug("EEPROM device successfully updated"); 220 setUpdateProgress(100); 221 } 222 else 223 { 224 error("Failed to update EEPROM device"); 225 } 226 227 co_return success; 228 } 229 230 sdbusplus::async::task<bool> EEPROMDevice::bindEEPROM() 231 { 232 auto i2cDeviceId = getI2CDeviceId(bus, address); 233 234 debug("Binding {I2CDEVICE} EEPROM", "I2CDEVICE", i2cDeviceId); 235 236 if (isEEPROMBound()) 237 { 238 debug("EEPROM was already bound, unbinding it now"); 239 if (!co_await unbindEEPROM()) 240 { 241 error("Error unbinding EEPROM"); 242 co_return false; 243 } 244 } 245 246 auto driverPath = getDriverPath(chipModel); 247 if (driverPath.empty()) 248 { 249 error("Driver path not found for chip model: {CHIP}", "CHIP", 250 chipModel); 251 co_return false; 252 } 253 254 auto bindPath = driverPath + "/bind"; 255 std::ofstream ofbind(bindPath, std::ofstream::out); 256 if (!ofbind) 257 { 258 error("Failed to open bind file: {PATH}", "PATH", bindPath); 259 co_return false; 260 } 261 262 ofbind << i2cDeviceId; 263 ofbind.close(); 264 265 // wait for kernel 266 co_await sdbusplus::async::sleep_for(ctx, std::chrono::seconds(2)); 267 268 auto bound = isEEPROMBound(); 269 if (!bound) 270 { 271 error("Failed to bind {I2CDEVICE} EEPROM", "I2CDEVICE", i2cDeviceId); 272 } 273 274 co_return bound; 275 } 276 sdbusplus::async::task<bool> EEPROMDevice::unbindEEPROM() 277 { 278 auto i2cDeviceId = getI2CDeviceId(bus, address); 279 280 debug("Unbinding EEPROM device {I2CDEVICE}", "I2CDEVICE", i2cDeviceId); 281 282 auto driverPath = getDriverPath(chipModel); 283 if (driverPath.empty()) 284 { 285 error("Failed to unbind EEPROM, driver path not found for chip {CHIP}", 286 "CHIP", chipModel); 287 co_return false; 288 } 289 290 auto unbindPath = driverPath + "/unbind"; 291 std::ofstream ofunbind(unbindPath, std::ofstream::out); 292 if (!ofunbind) 293 { 294 error("Failed to open unbind file: {PATH}", "PATH", unbindPath); 295 co_return false; 296 } 297 ofunbind << i2cDeviceId; 298 ofunbind.close(); 299 300 // wait for kernel 301 co_await sdbusplus::async::sleep_for(ctx, std::chrono::seconds(2)); 302 303 auto bound = isEEPROMBound(); 304 if (bound) 305 { 306 error("Failed to unbind {I2CDEVICE} EEPROM", "I2CDEVICE", i2cDeviceId); 307 } 308 309 co_return !bound; 310 } 311 312 bool EEPROMDevice::isEEPROMBound() 313 { 314 auto driverPath = getDriverPath(chipModel); 315 316 if (driverPath.empty()) 317 { 318 error("Failed to check if EEPROM is bound"); 319 return false; 320 } 321 322 auto i2cDeviceId = getI2CDeviceId(bus, address); 323 324 return std::filesystem::exists(driverPath + "/" + i2cDeviceId); 325 } 326 327 sdbusplus::async::task<bool> EEPROMDevice::writeEEPROM(const uint8_t* image, 328 size_t image_size) const 329 { 330 auto eepromPath = getEEPROMPath(bus, address); 331 if (eepromPath.empty()) 332 { 333 error("EEPROM file not found for device: {DEVICE}", "DEVICE", 334 getI2CDeviceId(bus, address)); 335 co_return -1; 336 } 337 const std::string path = 338 "/tmp/eeprom-image-" + 339 std::to_string(SoftwareInf::Software::getRandomId()) + ".bin"; 340 341 int fd = open(path.c_str(), O_CREAT | O_WRONLY | O_TRUNC, 0644); 342 if (fd < 0) 343 { 344 error("Failed to open file: {PATH}", "PATH", path); 345 co_return -1; 346 } 347 348 const ssize_t bytesWritten = write(fd, image, image_size); 349 350 close(fd); 351 352 if (bytesWritten < 0 || static_cast<size_t>(bytesWritten) != image_size) 353 { 354 error("Failed to write image to file"); 355 co_return -1; 356 } 357 358 debug("Wrote {SIZE} bytes to {PATH}", "SIZE", bytesWritten, "PATH", path); 359 360 std::string cmd = "dd if=" + path + " of=" + eepromPath + " bs=1k"; 361 362 debug("Running {CMD}", "CMD", cmd); 363 364 auto success = co_await asyncSystem(ctx, cmd); 365 366 std::filesystem::remove(path); 367 368 co_return success; 369 } 370 371 sdbusplus::async::task<> EEPROMDevice::processHostStateChange() 372 { 373 auto requiredHostState = deviceVersion->getHostStateToQueryVersion(); 374 375 if (!requiredHostState) 376 { 377 error("Failed to get required host state"); 378 co_return; 379 } 380 381 while (!ctx.stop_requested()) 382 { 383 auto nextResult = co_await hostPower.stateChangedMatch.next< 384 std::string, std::map<std::string, std::variant<std::string>>>(); 385 386 auto [interfaceName, changedProperties] = nextResult; 387 388 auto it = changedProperties.find("CurrentHostState"); 389 if (it != changedProperties.end()) 390 { 391 const auto& currentHostState = std::get<std::string>(it->second); 392 393 if (currentHostState == 394 State::convertForMessage(*requiredHostState)) 395 { 396 debug("Host state {STATE} matches to retrieve the version", 397 "STATE", currentHostState); 398 std::string version = deviceVersion->getVersion(); 399 if (!version.empty()) 400 { 401 softwareCurrent->setVersion(version); 402 } 403 } 404 } 405 } 406 407 co_return; 408 } 409