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Patrick Ventureab296412020-12-30 13:39:37 -08001/*
2// Copyright (c) 2018 Intel Corporation
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*/
Brad Bishope45d8c72022-05-25 15:12:53 -040016/// \file fru_utils.cpp
Patrick Ventureab296412020-12-30 13:39:37 -080017
Brad Bishope45d8c72022-05-25 15:12:53 -040018#include "fru_utils.hpp"
Patrick Ventureab296412020-12-30 13:39:37 -080019
Alexander Hansenc3db2c32024-08-20 15:01:38 +020020#include <phosphor-logging/lg2.hpp>
21
Patrick Ventureab296412020-12-30 13:39:37 -080022#include <array>
Ed Tanous3013fb42022-07-09 08:27:06 -070023#include <cstddef>
Patrick Ventureab296412020-12-30 13:39:37 -080024#include <cstdint>
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +053025#include <filesystem>
Hieu Huynh5286afe2022-10-12 11:41:12 +000026#include <iomanip>
Patrick Ventureab296412020-12-30 13:39:37 -080027#include <iostream>
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +053028#include <numeric>
Patrick Ventureab296412020-12-30 13:39:37 -080029#include <set>
Hieu Huynh5286afe2022-10-12 11:41:12 +000030#include <sstream>
Patrick Ventureab296412020-12-30 13:39:37 -080031#include <string>
32#include <vector>
33
34extern "C"
35{
36// Include for I2C_SMBUS_BLOCK_MAX
37#include <linux/i2c.h>
38}
39
Patrick Ventureab296412020-12-30 13:39:37 -080040constexpr size_t fruVersion = 1; // Current FRU spec version number is 1
41
Delphine CC Chiua3ca14a2024-03-27 17:02:24 +080042std::tm intelEpoch()
Vijay Khemka06d1b4a2021-02-09 18:39:11 +000043{
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +053044 std::tm val = {};
45 val.tm_year = 1996 - 1900;
Scron-Chang9e5a6752021-03-16 10:51:50 +080046 val.tm_mday = 1;
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +053047 return val;
Vijay Khemka06d1b4a2021-02-09 18:39:11 +000048}
49
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +053050char sixBitToChar(uint8_t val)
Patrick Ventureab296412020-12-30 13:39:37 -080051{
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +053052 return static_cast<char>((val & 0x3f) + ' ');
53}
54
55char bcdPlusToChar(uint8_t val)
56{
57 val &= 0xf;
58 return (val < 10) ? static_cast<char>(val + '0') : bcdHighChars[val - 10];
59}
60
61enum FRUDataEncoding
62{
63 binary = 0x0,
64 bcdPlus = 0x1,
65 sixBitASCII = 0x2,
66 languageDependent = 0x3,
67};
68
Hieu Huynh5286afe2022-10-12 11:41:12 +000069enum MultiRecordType : uint8_t
70{
71 powerSupplyInfo = 0x00,
72 dcOutput = 0x01,
73 dcLoad = 0x02,
74 managementAccessRecord = 0x03,
75 baseCompatibilityRecord = 0x04,
76 extendedCompatibilityRecord = 0x05,
77 resvASFSMBusDeviceRecord = 0x06,
78 resvASFLegacyDeviceAlerts = 0x07,
79 resvASFRemoteControl = 0x08,
80 extendedDCOutput = 0x09,
81 extendedDCLoad = 0x0A
82};
83
84enum SubManagementAccessRecord : uint8_t
85{
86 systemManagementURL = 0x01,
87 systemName = 0x02,
88 systemPingAddress = 0x03,
89 componentManagementURL = 0x04,
90 componentName = 0x05,
91 componentPingAddress = 0x06,
92 systemUniqueID = 0x07
93};
94
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +053095/* Decode FRU data into a std::string, given an input iterator and end. If the
96 * state returned is fruDataOk, then the resulting string is the decoded FRU
97 * data. The input iterator is advanced past the data consumed.
98 *
99 * On fruDataErr, we have lost synchronisation with the length bytes, so the
100 * iterator is no longer usable.
101 */
Patrick Williamsb7077432024-08-16 15:22:21 -0400102std::pair<DecodeState, std::string> decodeFRUData(
Ed Tanous23e3f452025-04-08 10:37:56 -0700103 std::span<const uint8_t>::const_iterator& iter,
104 std::span<const uint8_t>::const_iterator& end, bool isLangEng)
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530105{
106 std::string value;
Ed Tanous3013fb42022-07-09 08:27:06 -0700107 unsigned int i = 0;
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530108
109 /* we need at least one byte to decode the type/len header */
110 if (iter == end)
Patrick Ventureab296412020-12-30 13:39:37 -0800111 {
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530112 std::cerr << "Truncated FRU data\n";
113 return make_pair(DecodeState::err, value);
114 }
115
116 uint8_t c = *(iter++);
117
118 /* 0xc1 is the end marker */
119 if (c == 0xc1)
120 {
121 return make_pair(DecodeState::end, value);
122 }
123
124 /* decode type/len byte */
125 uint8_t type = static_cast<uint8_t>(c >> 6);
126 uint8_t len = static_cast<uint8_t>(c & 0x3f);
127
128 /* we should have at least len bytes of data available overall */
129 if (iter + len > end)
130 {
131 std::cerr << "FRU data field extends past end of FRU area data\n";
132 return make_pair(DecodeState::err, value);
133 }
134
135 switch (type)
136 {
137 case FRUDataEncoding::binary:
Patrick Ventureab296412020-12-30 13:39:37 -0800138 {
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530139 std::stringstream ss;
140 ss << std::hex << std::setfill('0');
141 for (i = 0; i < len; i++, iter++)
142 {
143 uint8_t val = static_cast<uint8_t>(*iter);
144 ss << std::setw(2) << static_cast<int>(val);
145 }
146 value = ss.str();
147 break;
Patrick Ventureab296412020-12-30 13:39:37 -0800148 }
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530149 case FRUDataEncoding::languageDependent:
150 /* For language-code dependent encodings, assume 8-bit ASCII */
151 value = std::string(iter, iter + len);
152 iter += len;
153
154 /* English text is encoded in 8-bit ASCII + Latin 1. All other
155 * languages are required to use 2-byte unicode. FruDevice does not
156 * handle unicode.
157 */
158 if (!isLangEng)
159 {
160 std::cerr << "Error: Non english string is not supported \n";
161 return make_pair(DecodeState::err, value);
162 }
163
164 break;
165
166 case FRUDataEncoding::bcdPlus:
167 value = std::string();
168 for (i = 0; i < len; i++, iter++)
169 {
170 uint8_t val = *iter;
171 value.push_back(bcdPlusToChar(val >> 4));
172 value.push_back(bcdPlusToChar(val & 0xf));
173 }
174 break;
175
176 case FRUDataEncoding::sixBitASCII:
177 {
178 unsigned int accum = 0;
179 unsigned int accumBitLen = 0;
180 value = std::string();
181 for (i = 0; i < len; i++, iter++)
182 {
183 accum |= *iter << accumBitLen;
184 accumBitLen += 8;
185 while (accumBitLen >= 6)
186 {
187 value.push_back(sixBitToChar(accum & 0x3f));
188 accum >>= 6;
189 accumBitLen -= 6;
190 }
191 }
192 }
193 break;
Ed Tanousfc171422024-04-04 17:18:16 -0700194
195 default:
196 {
197 return make_pair(DecodeState::err, value);
198 }
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530199 }
200
201 return make_pair(DecodeState::ok, value);
202}
203
204bool checkLangEng(uint8_t lang)
205{
206 // If Lang is not English then the encoding is defined as 2-byte UNICODE,
207 // but we don't support that.
Ed Tanous3013fb42022-07-09 08:27:06 -0700208 if ((lang != 0U) && lang != 25)
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530209 {
210 std::cerr << "Warning: languages other than English is not "
211 "supported\n";
212 // Return language flag as non english
Patrick Ventureab296412020-12-30 13:39:37 -0800213 return false;
214 }
Ed Tanous07d467b2021-02-23 14:48:37 -0800215 return true;
Patrick Ventureab296412020-12-30 13:39:37 -0800216}
217
Vijay Khemka06d1b4a2021-02-09 18:39:11 +0000218/* This function verifies for other offsets to check if they are not
219 * falling under other field area
220 *
221 * fruBytes: Start of Fru data
222 * currentArea: Index of current area offset to be compared against all area
223 * offset and it is a multiple of 8 bytes as per specification
224 * len: Length of current area space and it is a multiple of 8 bytes
225 * as per specification
226 */
Ed Tanous23e3f452025-04-08 10:37:56 -0700227bool verifyOffset(std::span<const uint8_t> fruBytes, fruAreas currentArea,
Vijay Khemka06d1b4a2021-02-09 18:39:11 +0000228 uint8_t len)
229{
Vijay Khemka06d1b4a2021-02-09 18:39:11 +0000230 unsigned int fruBytesSize = fruBytes.size();
231
232 // check if Fru data has at least 8 byte header
233 if (fruBytesSize <= fruBlockSize)
234 {
235 std::cerr << "Error: trying to parse empty FRU\n";
236 return false;
237 }
238
239 // Check range of passed currentArea value
240 if (currentArea > fruAreas::fruAreaMultirecord)
241 {
242 std::cerr << "Error: Fru area is out of range\n";
243 return false;
244 }
245
246 unsigned int currentAreaIndex = getHeaderAreaFieldOffset(currentArea);
247 if (currentAreaIndex > fruBytesSize)
248 {
249 std::cerr << "Error: Fru area index is out of range\n";
250 return false;
251 }
252
253 unsigned int start = fruBytes[currentAreaIndex];
254 unsigned int end = start + len;
255
256 /* Verify each offset within the range of start and end */
257 for (fruAreas area = fruAreas::fruAreaInternal;
258 area <= fruAreas::fruAreaMultirecord; ++area)
259 {
260 // skip the current offset
261 if (area == currentArea)
262 {
263 continue;
264 }
265
266 unsigned int areaIndex = getHeaderAreaFieldOffset(area);
267 if (areaIndex > fruBytesSize)
268 {
269 std::cerr << "Error: Fru area index is out of range\n";
270 return false;
271 }
272
273 unsigned int areaOffset = fruBytes[areaIndex];
274 // if areaOffset is 0 means this area is not available so skip
275 if (areaOffset == 0)
276 {
277 continue;
278 }
279
280 // check for overlapping of current offset with given areaoffset
281 if (areaOffset == start || (areaOffset > start && areaOffset < end))
282 {
283 std::cerr << getFruAreaName(currentArea)
284 << " offset is overlapping with " << getFruAreaName(area)
285 << " offset\n";
286 return false;
287 }
288 }
289 return true;
290}
291
Hieu Huynh5286afe2022-10-12 11:41:12 +0000292static void parseMultirecordUUID(
Ed Tanous23e3f452025-04-08 10:37:56 -0700293 std::span<const uint8_t> device,
Hieu Huynh5286afe2022-10-12 11:41:12 +0000294 boost::container::flat_map<std::string, std::string>& result)
295{
296 constexpr size_t uuidDataLen = 16;
297 constexpr size_t multiRecordHeaderLen = 5;
298 /* UUID record data, plus one to skip past the sub-record type byte */
299 constexpr size_t uuidRecordData = multiRecordHeaderLen + 1;
300 constexpr size_t multiRecordEndOfListMask = 0x80;
301 /* The UUID {00112233-4455-6677-8899-AABBCCDDEEFF} would thus be represented
302 * as: 0x33 0x22 0x11 0x00 0x55 0x44 0x77 0x66 0x88 0x99 0xAA 0xBB 0xCC 0xDD
303 * 0xEE 0xFF
304 */
305 const std::array<uint8_t, uuidDataLen> uuidCharOrder = {
306 3, 2, 1, 0, 5, 4, 7, 6, 8, 9, 10, 11, 12, 13, 14, 15};
Ed Tanous23e3f452025-04-08 10:37:56 -0700307 size_t offset = getHeaderAreaFieldOffset(fruAreas::fruAreaMultirecord);
308 if (offset >= device.size())
309 {
310 throw std::runtime_error("Multirecord UUID offset is out of range");
311 }
312 uint32_t areaOffset = device[offset];
Hieu Huynh5286afe2022-10-12 11:41:12 +0000313
314 if (areaOffset == 0)
315 {
316 return;
317 }
318
319 areaOffset *= fruBlockSize;
Ed Tanous23e3f452025-04-08 10:37:56 -0700320 std::span<const uint8_t>::const_iterator fruBytesIter =
Patrick Williamsb7077432024-08-16 15:22:21 -0400321 device.begin() + areaOffset;
Hieu Huynh5286afe2022-10-12 11:41:12 +0000322
323 /* Verify area offset */
324 if (!verifyOffset(device, fruAreas::fruAreaMultirecord, *fruBytesIter))
325 {
326 return;
327 }
328 while (areaOffset + uuidRecordData + uuidDataLen <= device.size())
329 {
330 if ((areaOffset < device.size()) &&
331 (device[areaOffset] ==
332 (uint8_t)MultiRecordType::managementAccessRecord))
333 {
334 if ((areaOffset + multiRecordHeaderLen < device.size()) &&
335 (device[areaOffset + multiRecordHeaderLen] ==
336 (uint8_t)SubManagementAccessRecord::systemUniqueID))
337 {
338 /* Layout of UUID:
339 * source: https://www.ietf.org/rfc/rfc4122.txt
340 *
341 * UUID binary format (16 bytes):
342 * 4B-2B-2B-2B-6B (big endian)
343 *
344 * UUID string is 36 length of characters (36 bytes):
345 * 0 9 14 19 24
346 * xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx
347 * be be be be be
348 * be means it should be converted to big endian.
349 */
350 /* Get UUID bytes to UUID string */
351 std::stringstream tmp;
352 tmp << std::hex << std::setfill('0');
353 for (size_t i = 0; i < uuidDataLen; i++)
354 {
355 tmp << std::setw(2)
356 << static_cast<uint16_t>(
357 device[areaOffset + uuidRecordData +
358 uuidCharOrder[i]]);
359 }
360 std::string uuidStr = tmp.str();
361 result["MULTIRECORD_UUID"] =
362 uuidStr.substr(0, 8) + '-' + uuidStr.substr(8, 4) + '-' +
363 uuidStr.substr(12, 4) + '-' + uuidStr.substr(16, 4) + '-' +
364 uuidStr.substr(20, 12);
365 break;
366 }
367 }
368 if ((device[areaOffset + 1] & multiRecordEndOfListMask) != 0)
369 {
370 break;
371 }
372 areaOffset = areaOffset + device[areaOffset + 2] + multiRecordHeaderLen;
373 }
374}
375
Patrick Williams5a807032025-03-03 11:20:39 -0500376resCodes formatIPMIFRU(
Ed Tanous23e3f452025-04-08 10:37:56 -0700377 std::span<const uint8_t> fruBytes,
Patrick Williams5a807032025-03-03 11:20:39 -0500378 boost::container::flat_map<std::string, std::string>& result)
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530379{
380 resCodes ret = resCodes::resOK;
381 if (fruBytes.size() <= fruBlockSize)
382 {
383 std::cerr << "Error: trying to parse empty FRU \n";
384 return resCodes::resErr;
385 }
386 result["Common_Format_Version"] =
387 std::to_string(static_cast<int>(*fruBytes.begin()));
388
Ed Tanous3013fb42022-07-09 08:27:06 -0700389 const std::vector<std::string>* fruAreaFieldNames = nullptr;
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530390
391 // Don't parse Internal and Multirecord areas
392 for (fruAreas area = fruAreas::fruAreaChassis;
393 area <= fruAreas::fruAreaProduct; ++area)
394 {
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530395 size_t offset = *(fruBytes.begin() + getHeaderAreaFieldOffset(area));
396 if (offset == 0)
397 {
398 continue;
399 }
400 offset *= fruBlockSize;
Ed Tanous23e3f452025-04-08 10:37:56 -0700401 std::span<const uint8_t>::const_iterator fruBytesIter =
Patrick Williamsb7077432024-08-16 15:22:21 -0400402 fruBytes.begin() + offset;
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530403 if (fruBytesIter + fruBlockSize >= fruBytes.end())
404 {
405 std::cerr << "Not enough data to parse \n";
406 return resCodes::resErr;
407 }
408 // check for format version 1
409 if (*fruBytesIter != 0x01)
410 {
411 std::cerr << "Unexpected version " << *fruBytesIter << "\n";
412 return resCodes::resErr;
413 }
414 ++fruBytesIter;
415
416 /* Verify other area offset for overlap with current area by passing
417 * length of current area offset pointed by *fruBytesIter
418 */
419 if (!verifyOffset(fruBytes, area, *fruBytesIter))
420 {
421 return resCodes::resErr;
422 }
423
Andrew Jeffery65ed6642021-08-02 22:32:23 +0930424 size_t fruAreaSize = *fruBytesIter * fruBlockSize;
Ed Tanous23e3f452025-04-08 10:37:56 -0700425 std::span<const uint8_t>::const_iterator fruBytesIterEndArea =
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530426 fruBytes.begin() + offset + fruAreaSize - 1;
427 ++fruBytesIter;
428
429 uint8_t fruComputedChecksum =
430 calculateChecksum(fruBytes.begin() + offset, fruBytesIterEndArea);
431 if (fruComputedChecksum != *fruBytesIterEndArea)
432 {
433 std::stringstream ss;
434 ss << std::hex << std::setfill('0');
435 ss << "Checksum error in FRU area " << getFruAreaName(area) << "\n";
436 ss << "\tComputed checksum: 0x" << std::setw(2)
437 << static_cast<int>(fruComputedChecksum) << "\n";
438 ss << "\tThe read checksum: 0x" << std::setw(2)
439 << static_cast<int>(*fruBytesIterEndArea) << "\n";
440 std::cerr << ss.str();
441 ret = resCodes::resWarn;
442 }
443
444 /* Set default language flag to true as Chassis Fru area are always
445 * encoded in English defined in Section 10 of Fru specification
446 */
447
448 bool isLangEng = true;
449 switch (area)
450 {
451 case fruAreas::fruAreaChassis:
452 {
453 result["CHASSIS_TYPE"] =
454 std::to_string(static_cast<int>(*fruBytesIter));
455 fruBytesIter += 1;
Ed Tanous07d467b2021-02-23 14:48:37 -0800456 fruAreaFieldNames = &chassisFruAreas;
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530457 break;
458 }
459 case fruAreas::fruAreaBoard:
460 {
461 uint8_t lang = *fruBytesIter;
462 result["BOARD_LANGUAGE_CODE"] =
463 std::to_string(static_cast<int>(lang));
464 isLangEng = checkLangEng(lang);
465 fruBytesIter += 1;
466
Patrick Williamsb7077432024-08-16 15:22:21 -0400467 unsigned int minutes =
468 *fruBytesIter | *(fruBytesIter + 1) << 8 |
469 *(fruBytesIter + 2) << 16;
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530470 std::tm fruTime = intelEpoch();
Willy Tu3f98b5e2023-04-12 08:16:52 -0700471 std::time_t timeValue = timegm(&fruTime);
Ed Tanous3013fb42022-07-09 08:27:06 -0700472 timeValue += static_cast<long>(minutes) * 60;
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530473 fruTime = *std::gmtime(&timeValue);
474
475 // Tue Nov 20 23:08:00 2018
Ed Tanous3013fb42022-07-09 08:27:06 -0700476 std::array<char, 32> timeString = {};
477 auto bytes = std::strftime(timeString.data(), timeString.size(),
Yi-Shum536665b2024-05-14 10:08:27 +0800478 "%Y%m%dT%H%M%SZ", &fruTime);
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530479 if (bytes == 0)
480 {
481 std::cerr << "invalid time string encountered\n";
482 return resCodes::resErr;
483 }
484
Ed Tanous3013fb42022-07-09 08:27:06 -0700485 result["BOARD_MANUFACTURE_DATE"] =
486 std::string_view(timeString.data(), bytes);
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530487 fruBytesIter += 3;
Ed Tanous07d467b2021-02-23 14:48:37 -0800488 fruAreaFieldNames = &boardFruAreas;
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530489 break;
490 }
491 case fruAreas::fruAreaProduct:
492 {
493 uint8_t lang = *fruBytesIter;
494 result["PRODUCT_LANGUAGE_CODE"] =
495 std::to_string(static_cast<int>(lang));
496 isLangEng = checkLangEng(lang);
497 fruBytesIter += 1;
Ed Tanous07d467b2021-02-23 14:48:37 -0800498 fruAreaFieldNames = &productFruAreas;
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530499 break;
500 }
501 default:
502 {
503 std::cerr << "Internal error: unexpected FRU area index: "
504 << static_cast<int>(area) << " \n";
505 return resCodes::resErr;
506 }
507 }
508 size_t fieldIndex = 0;
Ed Tanous3013fb42022-07-09 08:27:06 -0700509 DecodeState state = DecodeState::ok;
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530510 do
511 {
Patrick Williamsb7077432024-08-16 15:22:21 -0400512 auto res =
513 decodeFRUData(fruBytesIter, fruBytesIterEndArea, isLangEng);
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530514 state = res.first;
515 std::string value = res.second;
516 std::string name;
517 if (fieldIndex < fruAreaFieldNames->size())
518 {
519 name = std::string(getFruAreaName(area)) + "_" +
520 fruAreaFieldNames->at(fieldIndex);
521 }
Scron-Chang77987122021-03-30 20:53:52 +0800522 else
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530523 {
524 name =
525 std::string(getFruAreaName(area)) + "_" +
Ed Tanous07d467b2021-02-23 14:48:37 -0800526 fruCustomFieldName +
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530527 std::to_string(fieldIndex - fruAreaFieldNames->size() + 1);
528 }
529
530 if (state == DecodeState::ok)
531 {
Chiang Brianae2a6f22024-09-03 09:12:10 +0800532 // Strip non null characters and trailing spaces from the end
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530533 value.erase(std::find_if(value.rbegin(), value.rend(),
Chiang Brianae2a6f22024-09-03 09:12:10 +0800534 [](char ch) {
535 return ((ch != 0) && (ch != ' '));
536 })
Patrick Williamsb7077432024-08-16 15:22:21 -0400537 .base(),
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530538 value.end());
539
540 result[name] = std::move(value);
541 ++fieldIndex;
542 }
543 else if (state == DecodeState::err)
544 {
545 std::cerr << "Error while parsing " << name << "\n";
546 ret = resCodes::resWarn;
547 // Cancel decoding if failed to parse any of mandatory
548 // fields
549 if (fieldIndex < fruAreaFieldNames->size())
550 {
551 std::cerr << "Failed to parse mandatory field \n";
552 return resCodes::resErr;
553 }
554 }
555 else
556 {
557 if (fieldIndex < fruAreaFieldNames->size())
558 {
Patrick Williamsb7077432024-08-16 15:22:21 -0400559 std::cerr
560 << "Mandatory fields absent in FRU area "
561 << getFruAreaName(area) << " after " << name << "\n";
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530562 ret = resCodes::resWarn;
563 }
564 }
565 } while (state == DecodeState::ok);
566 for (; fruBytesIter < fruBytesIterEndArea; fruBytesIter++)
567 {
568 uint8_t c = *fruBytesIter;
Ed Tanous3013fb42022-07-09 08:27:06 -0700569 if (c != 0U)
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530570 {
571 std::cerr << "Non-zero byte after EndOfFields in FRU area "
572 << getFruAreaName(area) << "\n";
573 ret = resCodes::resWarn;
574 break;
575 }
576 }
577 }
578
Hieu Huynh5286afe2022-10-12 11:41:12 +0000579 /* Parsing the Multirecord UUID */
580 parseMultirecordUUID(fruBytes, result);
581
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530582 return ret;
583}
584
585// Calculate new checksum for fru info area
Ed Tanous23e3f452025-04-08 10:37:56 -0700586uint8_t calculateChecksum(std::span<const uint8_t>::const_iterator iter,
587 std::span<const uint8_t>::const_iterator end)
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530588{
589 constexpr int checksumMod = 256;
Andrew Jeffery499e7aa2021-08-02 22:18:22 +0930590 uint8_t sum = std::accumulate(iter, end, static_cast<uint8_t>(0));
591 return (checksumMod - sum) % checksumMod;
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530592}
593
Ed Tanous23e3f452025-04-08 10:37:56 -0700594uint8_t calculateChecksum(std::span<const uint8_t> fruAreaData)
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530595{
596 return calculateChecksum(fruAreaData.begin(), fruAreaData.end());
597}
598
599// Update new fru area length &
600// Update checksum at new checksum location
601// Return the offset of the area checksum byte
Patrick Williamsb7077432024-08-16 15:22:21 -0400602unsigned int updateFRUAreaLenAndChecksum(
603 std::vector<uint8_t>& fruData, size_t fruAreaStart,
604 size_t fruAreaEndOfFieldsOffset, size_t fruAreaEndOffset)
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530605{
606 size_t traverseFRUAreaIndex = fruAreaEndOfFieldsOffset - fruAreaStart;
607
608 // fill zeros for any remaining unused space
609 std::fill(fruData.begin() + fruAreaEndOfFieldsOffset,
610 fruData.begin() + fruAreaEndOffset, 0);
611
612 size_t mod = traverseFRUAreaIndex % fruBlockSize;
Ed Tanous3013fb42022-07-09 08:27:06 -0700613 size_t checksumLoc = 0;
614 if (mod == 0U)
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530615 {
616 traverseFRUAreaIndex += (fruBlockSize);
617 checksumLoc = fruAreaEndOfFieldsOffset + (fruBlockSize - 1);
618 }
619 else
620 {
621 traverseFRUAreaIndex += (fruBlockSize - mod);
622 checksumLoc = fruAreaEndOfFieldsOffset + (fruBlockSize - mod - 1);
623 }
624
Ed Tanous3013fb42022-07-09 08:27:06 -0700625 size_t newFRUAreaLen =
626 (traverseFRUAreaIndex / fruBlockSize) +
627 static_cast<unsigned long>((traverseFRUAreaIndex % fruBlockSize) != 0);
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530628 size_t fruAreaLengthLoc = fruAreaStart + 1;
629 fruData[fruAreaLengthLoc] = static_cast<uint8_t>(newFRUAreaLen);
630
631 // Calculate new checksum
632 std::vector<uint8_t> finalFRUData;
633 std::copy_n(fruData.begin() + fruAreaStart, checksumLoc - fruAreaStart,
634 std::back_inserter(finalFRUData));
635
636 fruData[checksumLoc] = calculateChecksum(finalFRUData);
637 return checksumLoc;
638}
639
640ssize_t getFieldLength(uint8_t fruFieldTypeLenValue)
641{
642 constexpr uint8_t typeLenMask = 0x3F;
643 constexpr uint8_t endOfFields = 0xC1;
644 if (fruFieldTypeLenValue == endOfFields)
645 {
646 return -1;
647 }
Ed Tanous07d467b2021-02-23 14:48:37 -0800648 return fruFieldTypeLenValue & typeLenMask;
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530649}
650
651bool validateHeader(const std::array<uint8_t, I2C_SMBUS_BLOCK_MAX>& blockData)
652{
653 // ipmi spec format version number is currently at 1, verify it
654 if (blockData[0] != fruVersion)
655 {
Alexander Hansenc3db2c32024-08-20 15:01:38 +0200656 lg2::debug(
657 "FRU spec version {VERSION} not supported. Supported version is {SUPPORTED_VERSION}",
658 "VERSION", lg2::hex, blockData[0], "SUPPORTED_VERSION", lg2::hex,
659 fruVersion);
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530660 return false;
661 }
662
663 // verify pad is set to 0
664 if (blockData[6] != 0x0)
665 {
Alexander Hansenc3db2c32024-08-20 15:01:38 +0200666 lg2::debug("Pad value in header is non zero, value is {VALUE}", "VALUE",
667 lg2::hex, blockData[6]);
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530668 return false;
669 }
670
671 // verify offsets are 0, or don't point to another offset
672 std::set<uint8_t> foundOffsets;
673 for (int ii = 1; ii < 6; ii++)
674 {
675 if (blockData[ii] == 0)
676 {
677 continue;
678 }
679 auto inserted = foundOffsets.insert(blockData[ii]);
680 if (!inserted.second)
681 {
682 return false;
683 }
684 }
685
686 // validate checksum
687 size_t sum = 0;
688 for (int jj = 0; jj < 7; jj++)
689 {
690 sum += blockData[jj];
691 }
692 sum = (256 - sum) & 0xFF;
693
694 if (sum != blockData[7])
695 {
Alexander Hansenc3db2c32024-08-20 15:01:38 +0200696 lg2::debug(
697 "Checksum {CHECKSUM} is invalid. calculated checksum is {CALCULATED_CHECKSUM}",
698 "CHECKSUM", lg2::hex, blockData[7], "CALCULATED_CHECKSUM", lg2::hex,
699 sum);
Kumar Thangavelc8dc4af2021-01-12 10:36:38 +0530700 return false;
701 }
702 return true;
703}
704
Zev Weiss309c0b12022-02-25 01:44:12 +0000705bool findFRUHeader(FRUReader& reader, const std::string& errorHelp,
Oskar Senftbd4075f2021-10-05 23:42:43 -0400706 std::array<uint8_t, I2C_SMBUS_BLOCK_MAX>& blockData,
Zev Weiss1525e852022-03-22 22:27:43 +0000707 off_t& baseOffset)
Oskar Senftbd4075f2021-10-05 23:42:43 -0400708{
Zev Weiss309c0b12022-02-25 01:44:12 +0000709 if (reader.read(baseOffset, 0x8, blockData.data()) < 0)
Oskar Senftbd4075f2021-10-05 23:42:43 -0400710 {
711 std::cerr << "failed to read " << errorHelp << " base offset "
Andrew Jefferyf8ae2ba2022-03-25 15:13:55 +1030712 << baseOffset << "\n";
Oskar Senftbd4075f2021-10-05 23:42:43 -0400713 return false;
714 }
715
716 // check the header checksum
717 if (validateHeader(blockData))
718 {
719 return true;
720 }
721
722 // only continue the search if we just looked at 0x0.
Andrew Jefferyf8ae2ba2022-03-25 15:13:55 +1030723 if (baseOffset != 0)
724 {
Oskar Senftbd4075f2021-10-05 23:42:43 -0400725 return false;
726 }
727
728 // now check for special cases where the IPMI data is at an offset
729
730 // check if blockData starts with tyanHeader
731 const std::vector<uint8_t> tyanHeader = {'$', 'T', 'Y', 'A', 'N', '$'};
732 if (blockData.size() >= tyanHeader.size() &&
733 std::equal(tyanHeader.begin(), tyanHeader.end(), blockData.begin()))
734 {
735 // look for the FRU header at offset 0x6000
736 baseOffset = 0x6000;
Zev Weiss309c0b12022-02-25 01:44:12 +0000737 return findFRUHeader(reader, errorHelp, blockData, baseOffset);
Oskar Senftbd4075f2021-10-05 23:42:43 -0400738 }
739
Alexander Hansenc3db2c32024-08-20 15:01:38 +0200740 lg2::debug("Illegal header {HEADER} base offset {OFFSET}", "HEADER",
741 errorHelp, "OFFSET", baseOffset);
Oskar Senftbd4075f2021-10-05 23:42:43 -0400742
743 return false;
744}
745
Patrick Williams5a807032025-03-03 11:20:39 -0500746std::pair<std::vector<uint8_t>, bool> readFRUContents(
747 FRUReader& reader, const std::string& errorHelp)
Patrick Ventureab296412020-12-30 13:39:37 -0800748{
Ed Tanous3013fb42022-07-09 08:27:06 -0700749 std::array<uint8_t, I2C_SMBUS_BLOCK_MAX> blockData{};
Zev Weiss1525e852022-03-22 22:27:43 +0000750 off_t baseOffset = 0x0;
Patrick Ventureab296412020-12-30 13:39:37 -0800751
Zev Weiss309c0b12022-02-25 01:44:12 +0000752 if (!findFRUHeader(reader, errorHelp, blockData, baseOffset))
Andrew Jefferyf8ae2ba2022-03-25 15:13:55 +1030753 {
Marvin Drees2b3ed302023-04-14 16:35:14 +0200754 return {{}, false};
Patrick Ventureab296412020-12-30 13:39:37 -0800755 }
756
757 std::vector<uint8_t> device;
758 device.insert(device.end(), blockData.begin(), blockData.begin() + 8);
759
760 bool hasMultiRecords = false;
761 size_t fruLength = fruBlockSize; // At least FRU header is present
Vijay Khemka7792e392021-01-25 13:03:56 -0800762 unsigned int prevOffset = 0;
Patrick Ventureab296412020-12-30 13:39:37 -0800763 for (fruAreas area = fruAreas::fruAreaInternal;
764 area <= fruAreas::fruAreaMultirecord; ++area)
765 {
766 // Offset value can be 255.
767 unsigned int areaOffset = device[getHeaderAreaFieldOffset(area)];
768 if (areaOffset == 0)
769 {
770 continue;
771 }
772
Vijay Khemka7792e392021-01-25 13:03:56 -0800773 /* Check for offset order, as per Section 17 of FRU specification, FRU
774 * information areas are required to be in order in FRU data layout
775 * which means all offset value should be in increasing order or can be
776 * 0 if that area is not present
777 */
778 if (areaOffset <= prevOffset)
779 {
780 std::cerr << "Fru area offsets are not in required order as per "
781 "Section 17 of Fru specification\n";
Marvin Drees2b3ed302023-04-14 16:35:14 +0200782 return {{}, true};
Vijay Khemka7792e392021-01-25 13:03:56 -0800783 }
784 prevOffset = areaOffset;
785
Patrick Ventureab296412020-12-30 13:39:37 -0800786 // MultiRecords are different. area is not tracking section, it's
787 // walking the common header.
788 if (area == fruAreas::fruAreaMultirecord)
789 {
790 hasMultiRecords = true;
791 break;
792 }
793
794 areaOffset *= fruBlockSize;
795
Zev Weiss309c0b12022-02-25 01:44:12 +0000796 if (reader.read(baseOffset + areaOffset, 0x2, blockData.data()) < 0)
Patrick Ventureab296412020-12-30 13:39:37 -0800797 {
Oskar Senftbd4075f2021-10-05 23:42:43 -0400798 std::cerr << "failed to read " << errorHelp << " base offset "
Andrew Jefferyf8ae2ba2022-03-25 15:13:55 +1030799 << baseOffset << "\n";
Marvin Drees2b3ed302023-04-14 16:35:14 +0200800 return {{}, true};
Patrick Ventureab296412020-12-30 13:39:37 -0800801 }
802
803 // Ignore data type (blockData is already unsigned).
804 size_t length = blockData[1] * fruBlockSize;
805 areaOffset += length;
806 fruLength = (areaOffset > fruLength) ? areaOffset : fruLength;
807 }
808
809 if (hasMultiRecords)
810 {
811 // device[area count] is the index to the last area because the 0th
812 // entry is not an offset in the common header.
813 unsigned int areaOffset =
814 device[getHeaderAreaFieldOffset(fruAreas::fruAreaMultirecord)];
815 areaOffset *= fruBlockSize;
816
817 // the multi-area record header is 5 bytes long.
818 constexpr size_t multiRecordHeaderSize = 5;
819 constexpr uint8_t multiRecordEndOfListMask = 0x80;
820
821 // Sanity hard-limit to 64KB.
822 while (areaOffset < std::numeric_limits<uint16_t>::max())
823 {
824 // In multi-area, the area offset points to the 0th record, each
825 // record has 3 bytes of the header we care about.
Zev Weiss309c0b12022-02-25 01:44:12 +0000826 if (reader.read(baseOffset + areaOffset, 0x3, blockData.data()) < 0)
Patrick Ventureab296412020-12-30 13:39:37 -0800827 {
Oskar Senftbd4075f2021-10-05 23:42:43 -0400828 std::cerr << "failed to read " << errorHelp << " base offset "
Andrew Jefferyf8ae2ba2022-03-25 15:13:55 +1030829 << baseOffset << "\n";
Marvin Drees2b3ed302023-04-14 16:35:14 +0200830 return {{}, true};
Patrick Ventureab296412020-12-30 13:39:37 -0800831 }
832
833 // Ok, let's check the record length, which is in bytes (unsigned,
834 // up to 255, so blockData should hold uint8_t not char)
835 size_t recordLength = blockData[2];
836 areaOffset += (recordLength + multiRecordHeaderSize);
837 fruLength = (areaOffset > fruLength) ? areaOffset : fruLength;
838
839 // If this is the end of the list bail.
Ed Tanous3013fb42022-07-09 08:27:06 -0700840 if ((blockData[1] & multiRecordEndOfListMask) != 0)
Patrick Ventureab296412020-12-30 13:39:37 -0800841 {
842 break;
843 }
844 }
845 }
846
847 // You already copied these first 8 bytes (the ipmi fru header size)
848 fruLength -= std::min(fruBlockSize, fruLength);
849
850 int readOffset = fruBlockSize;
851
852 while (fruLength > 0)
853 {
854 size_t requestLength =
855 std::min(static_cast<size_t>(I2C_SMBUS_BLOCK_MAX), fruLength);
856
Zev Weiss309c0b12022-02-25 01:44:12 +0000857 if (reader.read(baseOffset + readOffset, requestLength,
858 blockData.data()) < 0)
Patrick Ventureab296412020-12-30 13:39:37 -0800859 {
Oskar Senftbd4075f2021-10-05 23:42:43 -0400860 std::cerr << "failed to read " << errorHelp << " base offset "
Andrew Jefferyf8ae2ba2022-03-25 15:13:55 +1030861 << baseOffset << "\n";
Marvin Drees2b3ed302023-04-14 16:35:14 +0200862 return {{}, true};
Patrick Ventureab296412020-12-30 13:39:37 -0800863 }
864
865 device.insert(device.end(), blockData.begin(),
866 blockData.begin() + requestLength);
867
868 readOffset += requestLength;
869 fruLength -= std::min(requestLength, fruLength);
870 }
871
Marvin Drees2b3ed302023-04-14 16:35:14 +0200872 return {device, true};
Patrick Ventureab296412020-12-30 13:39:37 -0800873}
874
875unsigned int getHeaderAreaFieldOffset(fruAreas area)
876{
877 return static_cast<unsigned int>(area) + 1;
878}
Kumar Thangavel7135f3d2022-02-04 12:14:24 +0530879
krishnar4213ee212022-11-11 15:39:30 +0530880std::vector<uint8_t>& getFRUInfo(const uint16_t& bus, const uint8_t& address)
Kumar Thangavel7135f3d2022-02-04 12:14:24 +0530881{
882 auto deviceMap = busMap.find(bus);
883 if (deviceMap == busMap.end())
884 {
885 throw std::invalid_argument("Invalid Bus.");
886 }
887 auto device = deviceMap->second->find(address);
888 if (device == deviceMap->second->end())
889 {
890 throw std::invalid_argument("Invalid Address.");
891 }
892 std::vector<uint8_t>& ret = device->second;
893
894 return ret;
895}
Kumar Thangavelbdfc5ec2022-08-29 22:23:00 +0530896
897// Iterate FruArea Names and find start and size of the fru area that contains
898// the propertyName and the field start location for the property. fruAreaParams
899// struct values fruAreaStart, fruAreaSize, fruAreaEnd, fieldLoc values gets
900// updated/returned if successful.
901
902bool findFruAreaLocationAndField(std::vector<uint8_t>& fruData,
903 const std::string& propertyName,
Kumar Thangavel51b557b2022-09-13 13:40:47 +0530904 struct FruArea& fruAreaParams)
Kumar Thangavelbdfc5ec2022-08-29 22:23:00 +0530905{
906 const std::vector<std::string>* fruAreaFieldNames = nullptr;
907
908 uint8_t fruAreaOffsetFieldValue = 0;
909 size_t offset = 0;
910 std::string areaName = propertyName.substr(0, propertyName.find('_'));
911 std::string propertyNamePrefix = areaName + "_";
912 auto it = std::find(fruAreaNames.begin(), fruAreaNames.end(), areaName);
913 if (it == fruAreaNames.end())
914 {
915 std::cerr << "Can't parse area name for property " << propertyName
916 << " \n";
917 return false;
918 }
919 fruAreas fruAreaToUpdate = static_cast<fruAreas>(it - fruAreaNames.begin());
920 fruAreaOffsetFieldValue =
921 fruData[getHeaderAreaFieldOffset(fruAreaToUpdate)];
922 switch (fruAreaToUpdate)
923 {
924 case fruAreas::fruAreaChassis:
925 offset = 3; // chassis part number offset. Skip fixed first 3 bytes
926 fruAreaFieldNames = &chassisFruAreas;
927 break;
928 case fruAreas::fruAreaBoard:
929 offset = 6; // board manufacturer offset. Skip fixed first 6 bytes
930 fruAreaFieldNames = &boardFruAreas;
931 break;
932 case fruAreas::fruAreaProduct:
933 // Manufacturer name offset. Skip fixed first 3 product fru bytes
934 // i.e. version, area length and language code
935 offset = 3;
936 fruAreaFieldNames = &productFruAreas;
937 break;
938 default:
939 std::cerr << "Invalid PropertyName " << propertyName << " \n";
940 return false;
941 }
942 if (fruAreaOffsetFieldValue == 0)
943 {
944 std::cerr << "FRU Area for " << propertyName << " not present \n";
945 return false;
946 }
947
948 fruAreaParams.start = fruAreaOffsetFieldValue * fruBlockSize;
949 fruAreaParams.size = fruData[fruAreaParams.start + 1] * fruBlockSize;
950 fruAreaParams.end = fruAreaParams.start + fruAreaParams.size;
Kumar Thangavel51b557b2022-09-13 13:40:47 +0530951 size_t fruDataIter = fruAreaParams.start + offset;
Kumar Thangavelbdfc5ec2022-08-29 22:23:00 +0530952 size_t skipToFRUUpdateField = 0;
953 ssize_t fieldLength = 0;
954
955 bool found = false;
956 for (const auto& field : *fruAreaFieldNames)
957 {
958 skipToFRUUpdateField++;
959 if (propertyName == propertyNamePrefix + field)
960 {
961 found = true;
962 break;
963 }
964 }
965 if (!found)
966 {
967 std::size_t pos = propertyName.find(fruCustomFieldName);
968 if (pos == std::string::npos)
969 {
970 std::cerr << "PropertyName doesn't exist in FRU Area Vectors: "
971 << propertyName << "\n";
972 return false;
973 }
974 std::string fieldNumStr =
975 propertyName.substr(pos + fruCustomFieldName.length());
976 size_t fieldNum = std::stoi(fieldNumStr);
977 if (fieldNum == 0)
978 {
979 std::cerr << "PropertyName not recognized: " << propertyName
980 << "\n";
981 return false;
982 }
983 skipToFRUUpdateField += fieldNum;
984 }
985
986 for (size_t i = 1; i < skipToFRUUpdateField; i++)
987 {
988 if (fruDataIter < fruData.size())
989 {
990 fieldLength = getFieldLength(fruData[fruDataIter]);
991
992 if (fieldLength < 0)
993 {
994 break;
995 }
996 fruDataIter += 1 + fieldLength;
997 }
998 }
999 fruAreaParams.updateFieldLoc = fruDataIter;
1000
1001 return true;
1002}
Kumar Thangavel51b557b2022-09-13 13:40:47 +05301003
1004// Copy the FRU Area fields and properties into restFRUAreaFieldsData vector.
1005// Return true for success and false for failure.
1006
1007bool copyRestFRUArea(std::vector<uint8_t>& fruData,
1008 const std::string& propertyName,
1009 struct FruArea& fruAreaParams,
1010 std::vector<uint8_t>& restFRUAreaFieldsData)
1011{
1012 size_t fieldLoc = fruAreaParams.updateFieldLoc;
1013 size_t start = fruAreaParams.start;
1014 size_t fruAreaSize = fruAreaParams.size;
1015
1016 // Push post update fru field bytes to a vector
1017 ssize_t fieldLength = getFieldLength(fruData[fieldLoc]);
1018 if (fieldLength < 0)
1019 {
1020 std::cerr << "Property " << propertyName << " not present \n";
1021 return false;
1022 }
1023
1024 size_t fruDataIter = 0;
1025 fruDataIter = fieldLoc;
1026 fruDataIter += 1 + fieldLength;
1027 size_t restFRUFieldsLoc = fruDataIter;
1028 size_t endOfFieldsLoc = 0;
1029
1030 if (fruDataIter < fruData.size())
1031 {
1032 while ((fieldLength = getFieldLength(fruData[fruDataIter])) >= 0)
1033 {
1034 if (fruDataIter >= (start + fruAreaSize))
1035 {
1036 fruDataIter = start + fruAreaSize;
1037 break;
1038 }
1039 fruDataIter += 1 + fieldLength;
1040 }
1041 endOfFieldsLoc = fruDataIter;
1042 }
1043
1044 std::copy_n(fruData.begin() + restFRUFieldsLoc,
1045 endOfFieldsLoc - restFRUFieldsLoc + 1,
1046 std::back_inserter(restFRUAreaFieldsData));
1047
1048 fruAreaParams.restFieldsLoc = restFRUFieldsLoc;
1049 fruAreaParams.restFieldsEnd = endOfFieldsLoc;
1050
1051 return true;
1052}
Kumar Thangaveld79d0252022-08-24 14:26:01 +05301053
1054// Get all device dbus path and match path with product name using
1055// regular expression and find the device index for all devices.
1056
1057std::optional<int> findIndexForFRU(
1058 boost::container::flat_map<
1059 std::pair<size_t, size_t>,
1060 std::shared_ptr<sdbusplus::asio::dbus_interface>>& dbusInterfaceMap,
1061 std::string& productName)
1062{
Kumar Thangaveld79d0252022-08-24 14:26:01 +05301063 int highest = -1;
1064 bool found = false;
1065
Patrick Williamsdf190612023-05-10 07:51:34 -05001066 for (const auto& busIface : dbusInterfaceMap)
Kumar Thangaveld79d0252022-08-24 14:26:01 +05301067 {
1068 std::string path = busIface.second->get_object_path();
1069 if (std::regex_match(path, std::regex(productName + "(_\\d+|)$")))
1070 {
Kumar Thangaveld79d0252022-08-24 14:26:01 +05301071 // Check if the match named has extra information.
1072 found = true;
1073 std::smatch baseMatch;
1074
1075 bool match = std::regex_match(path, baseMatch,
1076 std::regex(productName + "_(\\d+)$"));
1077 if (match)
1078 {
1079 if (baseMatch.size() == 2)
1080 {
1081 std::ssub_match baseSubMatch = baseMatch[1];
1082 std::string base = baseSubMatch.str();
1083
1084 int value = std::stoi(base);
1085 highest = (value > highest) ? value : highest;
1086 }
1087 }
1088 }
1089 } // end searching objects
1090
1091 if (!found)
1092 {
1093 return std::nullopt;
1094 }
1095 return highest;
1096}
Kumar Thangavel9f2162a2022-08-10 18:05:20 +05301097
1098// This function does format fru data as per IPMI format and find the
1099// productName in the formatted fru data, get that productName and return
1100// productName if found or return NULL.
1101
1102std::optional<std::string> getProductName(
1103 std::vector<uint8_t>& device,
1104 boost::container::flat_map<std::string, std::string>& formattedFRU,
1105 uint32_t bus, uint32_t address, size_t& unknownBusObjectCount)
1106{
1107 std::string productName;
1108
1109 resCodes res = formatIPMIFRU(device, formattedFRU);
1110 if (res == resCodes::resErr)
1111 {
1112 std::cerr << "failed to parse FRU for device at bus " << bus
1113 << " address " << address << "\n";
1114 return std::nullopt;
1115 }
1116 if (res == resCodes::resWarn)
1117 {
1118 std::cerr << "Warnings while parsing FRU for device at bus " << bus
1119 << " address " << address << "\n";
1120 }
1121
1122 auto productNameFind = formattedFRU.find("BOARD_PRODUCT_NAME");
1123 // Not found under Board section or an empty string.
1124 if (productNameFind == formattedFRU.end() ||
1125 productNameFind->second.empty())
1126 {
1127 productNameFind = formattedFRU.find("PRODUCT_PRODUCT_NAME");
1128 }
1129 // Found under Product section and not an empty string.
1130 if (productNameFind != formattedFRU.end() &&
1131 !productNameFind->second.empty())
1132 {
1133 productName = productNameFind->second;
1134 std::regex illegalObject("[^A-Za-z0-9_]");
1135 productName = std::regex_replace(productName, illegalObject, "_");
1136 }
1137 else
1138 {
1139 productName = "UNKNOWN" + std::to_string(unknownBusObjectCount);
1140 unknownBusObjectCount++;
1141 }
1142 return productName;
1143}
Kumar Thangavel9d6f5902022-08-26 16:52:14 +05301144
1145bool getFruData(std::vector<uint8_t>& fruData, uint32_t bus, uint32_t address)
1146{
1147 try
1148 {
1149 fruData = getFRUInfo(static_cast<uint16_t>(bus),
1150 static_cast<uint8_t>(address));
1151 }
1152 catch (const std::invalid_argument& e)
1153 {
1154 std::cerr << "Failure getting FRU Info" << e.what() << "\n";
1155 return false;
1156 }
1157
1158 return !fruData.empty();
1159}