1 #include <endian.h> 2 #include <libpldm/base.h> 3 #include <libpldm/entity.h> 4 #include <libpldm/platform.h> 5 #include <libpldm/pldm_types.h> 6 7 #include <array> 8 #include <cerrno> 9 #include <cstdint> 10 #include <cstring> 11 #include <vector> 12 13 #include "msgbuf.h" 14 15 #include <gtest/gtest.h> 16 17 constexpr auto hdrSize = sizeof(pldm_msg_hdr); 18 19 TEST(SetStateEffecterStates, testEncodeResponse) 20 { 21 std::array<uint8_t, 22 sizeof(pldm_msg_hdr) + PLDM_SET_STATE_EFFECTER_STATES_RESP_BYTES> 23 responseMsg{}; 24 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 25 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 26 uint8_t completionCode = 0; 27 28 auto rc = encode_set_state_effecter_states_resp(0, PLDM_SUCCESS, response); 29 30 EXPECT_EQ(rc, PLDM_SUCCESS); 31 EXPECT_EQ(completionCode, response->payload[0]); 32 } 33 34 TEST(SetStateEffecterStates, testEncodeRequest) 35 { 36 std::array<uint8_t, 37 sizeof(pldm_msg_hdr) + PLDM_SET_STATE_EFFECTER_STATES_REQ_BYTES> 38 requestMsg{}; 39 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 40 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 41 42 uint16_t effecterId = 0x0a; 43 uint8_t compEffecterCnt = 0x2; 44 std::array<set_effecter_state_field, 8> stateField{}; 45 stateField[0] = {PLDM_REQUEST_SET, 2}; 46 stateField[1] = {PLDM_REQUEST_SET, 3}; 47 48 auto rc = encode_set_state_effecter_states_req( 49 0, effecterId, compEffecterCnt, stateField.data(), request); 50 51 EXPECT_EQ(rc, PLDM_SUCCESS); 52 EXPECT_EQ(effecterId, request->payload[0]); 53 EXPECT_EQ(compEffecterCnt, request->payload[sizeof(effecterId)]); 54 EXPECT_EQ(stateField[0].set_request, 55 request->payload[sizeof(effecterId) + sizeof(compEffecterCnt)]); 56 EXPECT_EQ(stateField[0].effecter_state, 57 request->payload[sizeof(effecterId) + sizeof(compEffecterCnt) + 58 sizeof(stateField[0].set_request)]); 59 EXPECT_EQ(stateField[1].set_request, 60 request->payload[sizeof(effecterId) + sizeof(compEffecterCnt) + 61 sizeof(stateField[0])]); 62 EXPECT_EQ(stateField[1].effecter_state, 63 request->payload[sizeof(effecterId) + sizeof(compEffecterCnt) + 64 sizeof(stateField[0]) + 65 sizeof(stateField[1].set_request)]); 66 } 67 68 TEST(SetStateEffecterStates, testGoodDecodeResponse) 69 { 70 std::array<uint8_t, hdrSize + PLDM_SET_STATE_EFFECTER_STATES_RESP_BYTES> 71 responseMsg{}; 72 73 uint8_t retcompletion_code = 0; 74 75 responseMsg[hdrSize] = PLDM_SUCCESS; 76 77 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 78 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 79 80 auto rc = decode_set_state_effecter_states_resp( 81 response, responseMsg.size() - hdrSize, &retcompletion_code); 82 83 EXPECT_EQ(rc, PLDM_SUCCESS); 84 EXPECT_EQ(PLDM_SUCCESS, retcompletion_code); 85 } 86 87 TEST(SetStateEffecterStates, testGoodDecodeRequest) 88 { 89 std::array<uint8_t, hdrSize + PLDM_SET_STATE_EFFECTER_STATES_REQ_BYTES> 90 requestMsg{}; 91 92 uint16_t effecterId = 0x32; 93 uint16_t effecterIdLE = htole16(effecterId); 94 uint8_t compEffecterCnt = 0x2; 95 96 std::array<set_effecter_state_field, 8> stateField{}; 97 stateField[0] = {PLDM_REQUEST_SET, 3}; 98 stateField[1] = {PLDM_REQUEST_SET, 4}; 99 100 uint16_t retEffecterId = 0; 101 uint8_t retCompEffecterCnt = 0; 102 103 std::array<set_effecter_state_field, 8> retStateField{}; 104 105 memcpy(requestMsg.data() + hdrSize, &effecterIdLE, sizeof(effecterIdLE)); 106 memcpy(requestMsg.data() + sizeof(effecterIdLE) + hdrSize, &compEffecterCnt, 107 sizeof(compEffecterCnt)); 108 memcpy(requestMsg.data() + sizeof(effecterIdLE) + sizeof(compEffecterCnt) + 109 hdrSize, 110 &stateField, sizeof(stateField)); 111 112 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 113 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 114 115 auto rc = decode_set_state_effecter_states_req( 116 request, requestMsg.size() - hdrSize, &retEffecterId, 117 &retCompEffecterCnt, retStateField.data()); 118 119 EXPECT_EQ(rc, PLDM_SUCCESS); 120 EXPECT_EQ(effecterId, retEffecterId); 121 EXPECT_EQ(retCompEffecterCnt, compEffecterCnt); 122 EXPECT_EQ(retStateField[0].set_request, stateField[0].set_request); 123 EXPECT_EQ(retStateField[0].effecter_state, stateField[0].effecter_state); 124 EXPECT_EQ(retStateField[1].set_request, stateField[1].set_request); 125 EXPECT_EQ(retStateField[1].effecter_state, stateField[1].effecter_state); 126 } 127 128 TEST(SetStateEffecterStates, testBadDecodeRequest) 129 { 130 const struct pldm_msg* msg = NULL; 131 132 auto rc = decode_set_state_effecter_states_req(msg, sizeof(*msg), NULL, 133 NULL, NULL); 134 135 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 136 } 137 138 TEST(SetStateEffecterStates, testBadDecodeResponse) 139 { 140 std::array<uint8_t, PLDM_SET_STATE_EFFECTER_STATES_RESP_BYTES> 141 responseMsg{}; 142 143 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 144 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 145 146 auto rc = decode_set_state_effecter_states_resp(response, 147 responseMsg.size(), NULL); 148 149 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 150 } 151 152 TEST(GetPDR, testGoodEncodeResponse) 153 { 154 uint8_t completionCode = 0; 155 uint32_t nextRecordHndl = 0x12; 156 uint32_t nextDataTransferHndl = 0x13; 157 uint8_t transferFlag = PLDM_END; 158 uint16_t respCnt = 0x5; 159 std::vector<uint8_t> recordData{1, 2, 3, 4, 5}; 160 uint8_t transferCRC = 6; 161 162 // + size of record data and transfer CRC 163 std::vector<uint8_t> responseMsg(hdrSize + PLDM_GET_PDR_MIN_RESP_BYTES + 164 recordData.size() + 1); 165 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 166 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 167 168 auto rc = encode_get_pdr_resp(0, PLDM_SUCCESS, nextRecordHndl, 169 nextDataTransferHndl, transferFlag, respCnt, 170 recordData.data(), transferCRC, response); 171 172 EXPECT_EQ(rc, PLDM_SUCCESS); 173 struct pldm_get_pdr_resp* resp = 174 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 175 reinterpret_cast<struct pldm_get_pdr_resp*>(response->payload); 176 177 EXPECT_EQ(completionCode, resp->completion_code); 178 EXPECT_EQ(nextRecordHndl, le32toh(resp->next_record_handle)); 179 EXPECT_EQ(nextDataTransferHndl, le32toh(resp->next_data_transfer_handle)); 180 EXPECT_EQ(transferFlag, resp->transfer_flag); 181 EXPECT_EQ(respCnt, le16toh(resp->response_count)); 182 EXPECT_EQ(0, 183 memcmp(recordData.data(), resp->record_data, recordData.size())); 184 EXPECT_EQ(*(response->payload + sizeof(pldm_get_pdr_resp) - 1 + 185 recordData.size()), 186 transferCRC); 187 188 transferFlag = PLDM_START_AND_END; // No CRC in this case 189 responseMsg.resize(responseMsg.size() - sizeof(transferCRC)); 190 rc = encode_get_pdr_resp(0, PLDM_SUCCESS, nextRecordHndl, 191 nextDataTransferHndl, transferFlag, respCnt, 192 recordData.data(), transferCRC, response); 193 EXPECT_EQ(rc, PLDM_SUCCESS); 194 } 195 196 TEST(GetPDR, testBadEncodeResponse) 197 { 198 uint32_t nextRecordHndl = 0x12; 199 uint32_t nextDataTransferHndl = 0x13; 200 uint8_t transferFlag = PLDM_START_AND_END; 201 uint16_t respCnt = 0x5; 202 std::vector<uint8_t> recordData{1, 2, 3, 4, 5}; 203 uint8_t transferCRC = 0; 204 205 auto rc = encode_get_pdr_resp(0, PLDM_SUCCESS, nextRecordHndl, 206 nextDataTransferHndl, transferFlag, respCnt, 207 recordData.data(), transferCRC, nullptr); 208 209 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 210 } 211 212 TEST(GetPDR, testGoodDecodeRequest) 213 { 214 std::array<uint8_t, hdrSize + PLDM_GET_PDR_REQ_BYTES> requestMsg{}; 215 216 uint32_t recordHndl = 0x32; 217 uint32_t dataTransferHndl = 0x11; 218 uint8_t transferOpFlag = PLDM_GET_FIRSTPART; 219 uint16_t requestCnt = 0x5; 220 uint16_t recordChangeNum = 0x01; 221 222 uint32_t retRecordHndl = 0; 223 uint32_t retDataTransferHndl = 0; 224 uint8_t retTransferOpFlag = 0; 225 uint16_t retRequestCnt = 0; 226 uint16_t retRecordChangeNum = 0; 227 228 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 229 auto req = reinterpret_cast<pldm_msg*>(requestMsg.data()); 230 struct pldm_get_pdr_req* request = 231 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 232 reinterpret_cast<struct pldm_get_pdr_req*>(req->payload); 233 234 request->record_handle = htole32(recordHndl); 235 request->data_transfer_handle = htole32(dataTransferHndl); 236 request->transfer_op_flag = transferOpFlag; 237 request->request_count = htole16(requestCnt); 238 request->record_change_number = htole16(recordChangeNum); 239 240 auto rc = decode_get_pdr_req( 241 req, requestMsg.size() - hdrSize, &retRecordHndl, &retDataTransferHndl, 242 &retTransferOpFlag, &retRequestCnt, &retRecordChangeNum); 243 244 EXPECT_EQ(rc, PLDM_SUCCESS); 245 EXPECT_EQ(retRecordHndl, recordHndl); 246 EXPECT_EQ(retDataTransferHndl, dataTransferHndl); 247 EXPECT_EQ(retTransferOpFlag, transferOpFlag); 248 EXPECT_EQ(retRequestCnt, requestCnt); 249 EXPECT_EQ(retRecordChangeNum, recordChangeNum); 250 } 251 252 TEST(GetPDR, testBadDecodeRequest) 253 { 254 std::array<uint8_t, PLDM_GET_PDR_REQ_BYTES> requestMsg{}; 255 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 256 auto req = reinterpret_cast<pldm_msg*>(requestMsg.data()); 257 258 auto rc = decode_get_pdr_req(req, requestMsg.size(), NULL, NULL, NULL, NULL, 259 NULL); 260 261 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 262 } 263 264 TEST(GetPDR, testGoodEncodeRequest) 265 { 266 uint32_t record_hndl = 0; 267 uint32_t data_transfer_hndl = 0; 268 uint8_t transfer_op_flag = PLDM_GET_FIRSTPART; 269 uint16_t request_cnt = 20; 270 uint16_t record_chg_num = 0; 271 272 std::vector<uint8_t> requestMsg(hdrSize + PLDM_GET_PDR_REQ_BYTES); 273 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 274 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 275 276 auto rc = encode_get_pdr_req(0, record_hndl, data_transfer_hndl, 277 transfer_op_flag, request_cnt, record_chg_num, 278 request, PLDM_GET_PDR_REQ_BYTES); 279 EXPECT_EQ(rc, PLDM_SUCCESS); 280 struct pldm_get_pdr_req* req = 281 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 282 reinterpret_cast<struct pldm_get_pdr_req*>(request->payload); 283 EXPECT_EQ(record_hndl, le32toh(req->record_handle)); 284 EXPECT_EQ(data_transfer_hndl, le32toh(req->data_transfer_handle)); 285 EXPECT_EQ(transfer_op_flag, req->transfer_op_flag); 286 EXPECT_EQ(request_cnt, le16toh(req->request_count)); 287 EXPECT_EQ(record_chg_num, le16toh(req->record_change_number)); 288 } 289 290 TEST(GetPDR, testBadEncodeRequest) 291 { 292 uint32_t record_hndl = 0; 293 uint32_t data_transfer_hndl = 0; 294 uint8_t transfer_op_flag = PLDM_GET_FIRSTPART; 295 uint16_t request_cnt = 32; 296 uint16_t record_chg_num = 0; 297 298 std::vector<uint8_t> requestMsg(hdrSize + PLDM_GET_PDR_REQ_BYTES); 299 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 300 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 301 302 auto rc = encode_get_pdr_req(0, record_hndl, data_transfer_hndl, 303 transfer_op_flag, request_cnt, record_chg_num, 304 nullptr, PLDM_GET_PDR_REQ_BYTES); 305 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 306 307 rc = encode_get_pdr_req(0, record_hndl, data_transfer_hndl, 308 transfer_op_flag, request_cnt, record_chg_num, 309 request, PLDM_GET_PDR_REQ_BYTES + 1); 310 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 311 } 312 313 TEST(GetPDR, testGoodDecodeResponse) 314 { 315 const char* recordData = "123456789"; 316 uint8_t completionCode = PLDM_SUCCESS; 317 uint32_t nextRecordHndl = 0; 318 uint32_t nextDataTransferHndl = 0; 319 uint8_t transferFlag = PLDM_END; 320 constexpr uint16_t respCnt = 9; 321 uint8_t transferCRC = 96; 322 size_t recordDataLength = 32; 323 std::array<uint8_t, hdrSize + PLDM_GET_PDR_MIN_RESP_BYTES + respCnt + 324 sizeof(transferCRC)> 325 responseMsg{}; 326 327 uint8_t retCompletionCode = 0; 328 uint8_t retRecordData[32] = {0}; 329 uint32_t retNextRecordHndl = 0; 330 uint32_t retNextDataTransferHndl = 0; 331 uint8_t retTransferFlag = 0; 332 uint16_t retRespCnt = 0; 333 uint8_t retTransferCRC = 0; 334 335 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 336 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 337 struct pldm_get_pdr_resp* resp = 338 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 339 reinterpret_cast<struct pldm_get_pdr_resp*>(response->payload); 340 resp->completion_code = completionCode; 341 resp->next_record_handle = htole32(nextRecordHndl); 342 resp->next_data_transfer_handle = htole32(nextDataTransferHndl); 343 resp->transfer_flag = transferFlag; 344 resp->response_count = htole16(respCnt); 345 memcpy(resp->record_data, recordData, respCnt); 346 response->payload[PLDM_GET_PDR_MIN_RESP_BYTES + respCnt] = transferCRC; 347 348 auto rc = decode_get_pdr_resp( 349 response, responseMsg.size() - hdrSize, &retCompletionCode, 350 &retNextRecordHndl, &retNextDataTransferHndl, &retTransferFlag, 351 &retRespCnt, retRecordData, recordDataLength, &retTransferCRC); 352 EXPECT_EQ(rc, PLDM_SUCCESS); 353 EXPECT_EQ(retCompletionCode, completionCode); 354 EXPECT_EQ(retNextRecordHndl, nextRecordHndl); 355 EXPECT_EQ(retNextDataTransferHndl, nextDataTransferHndl); 356 EXPECT_EQ(retTransferFlag, transferFlag); 357 EXPECT_EQ(retRespCnt, respCnt); 358 EXPECT_EQ(retTransferCRC, transferCRC); 359 EXPECT_EQ(0, memcmp(recordData, resp->record_data, respCnt)); 360 } 361 362 TEST(GetPDR, testBadDecodeResponse) 363 { 364 const char* recordData = "123456789"; 365 uint8_t completionCode = PLDM_SUCCESS; 366 uint32_t nextRecordHndl = 0; 367 uint32_t nextDataTransferHndl = 0; 368 uint8_t transferFlag = PLDM_END; 369 constexpr uint16_t respCnt = 9; 370 uint8_t transferCRC = 96; 371 size_t recordDataLength = respCnt - 1; 372 std::array<uint8_t, hdrSize + PLDM_GET_PDR_MIN_RESP_BYTES + respCnt + 373 sizeof(transferCRC)> 374 responseMsg{}; 375 376 uint8_t retCompletionCode = 0; 377 uint8_t retRecordData[32] = {0}; 378 uint32_t retNextRecordHndl = 0; 379 uint32_t retNextDataTransferHndl = 0; 380 uint8_t retTransferFlag = 0; 381 uint16_t retRespCnt = 0; 382 uint8_t retTransferCRC = 0; 383 384 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 385 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 386 struct pldm_get_pdr_resp* resp = 387 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 388 reinterpret_cast<struct pldm_get_pdr_resp*>(response->payload); 389 resp->completion_code = completionCode; 390 resp->next_record_handle = htole32(nextRecordHndl); 391 resp->next_data_transfer_handle = htole32(nextDataTransferHndl); 392 resp->transfer_flag = transferFlag; 393 resp->response_count = htole16(respCnt); 394 memcpy(resp->record_data, recordData, respCnt); 395 response->payload[PLDM_GET_PDR_MIN_RESP_BYTES + respCnt] = transferCRC; 396 397 auto rc = decode_get_pdr_resp(response, responseMsg.size() - hdrSize, NULL, 398 NULL, NULL, NULL, NULL, NULL, 0, NULL); 399 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 400 401 rc = decode_get_pdr_resp( 402 response, responseMsg.size() - hdrSize - 1, &retCompletionCode, 403 &retNextRecordHndl, &retNextDataTransferHndl, &retTransferFlag, 404 &retRespCnt, retRecordData, recordDataLength, &retTransferCRC); 405 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 406 } 407 408 #ifdef LIBPLDM_API_TESTING 409 TEST(GetPDR, testGoodDecodeResponseSafe) 410 { 411 static const char recordData[] = "123456789"; 412 413 alignas(pldm_msg) unsigned char data[sizeof(pldm_msg_hdr) + 414 PLDM_GET_PDR_MIN_RESP_BYTES + 415 sizeof(recordData) - 1 + 1]; 416 struct pldm_msgbuf _buf; 417 struct pldm_msgbuf* buf = &_buf; 418 int rc; 419 420 pldm_msg* msg = new (data) pldm_msg; 421 422 rc = pldm_msgbuf_init_errno(buf, PLDM_GET_PDR_MIN_RESP_BYTES, msg->payload, 423 sizeof(data) - sizeof(msg->hdr)); 424 ASSERT_EQ(rc, 0); 425 426 pldm_msgbuf_insert_uint8(buf, PLDM_SUCCESS); 427 pldm_msgbuf_insert_uint32(buf, 0); 428 pldm_msgbuf_insert_uint32(buf, 0); 429 pldm_msgbuf_insert_uint8(buf, PLDM_END); 430 pldm_msgbuf_insert_uint16(buf, sizeof(recordData) - 1); 431 rc = pldm_msgbuf_insert_array_char(buf, sizeof(recordData) - 1, recordData, 432 sizeof(recordData) - 1); 433 ASSERT_EQ(rc, 0); 434 pldm_msgbuf_insert_uint8(buf, 96); 435 ASSERT_EQ(pldm_msgbuf_destroy_consumed(buf), 0); 436 437 alignas(pldm_get_pdr_resp) unsigned char 438 resp_data[sizeof(pldm_get_pdr_resp) + sizeof(recordData) - 1]; 439 pldm_get_pdr_resp* resp = new (resp_data) pldm_get_pdr_resp; 440 uint8_t crc; 441 rc = decode_get_pdr_resp_safe(msg, sizeof(data) - sizeof(msg->hdr), resp, 442 sizeof(resp_data) - sizeof(*resp), &crc); 443 ASSERT_EQ(rc, 0); 444 EXPECT_EQ(resp->completion_code, PLDM_SUCCESS); 445 EXPECT_EQ(resp->next_record_handle, 0); 446 EXPECT_EQ(resp->next_data_transfer_handle, 0); 447 EXPECT_EQ(resp->transfer_flag, PLDM_END); 448 ASSERT_EQ(resp->response_count, sizeof(recordData) - 1); 449 EXPECT_EQ(crc, 96); 450 EXPECT_EQ(0, memcmp(recordData, resp->record_data, resp->response_count)); 451 } 452 #endif 453 454 #ifdef LIBPLDM_API_TESTING 455 TEST(GetPDR, testBadDecodeResponseSafeTrivial) 456 { 457 pldm_get_pdr_resp resp; 458 uint8_t crc; 459 int rc; 460 461 rc = decode_get_pdr_resp_safe(nullptr, PLDM_GET_PDR_MIN_RESP_BYTES, &resp, 462 sizeof(resp), &crc); 463 EXPECT_EQ(rc, -EINVAL); 464 465 alignas(pldm_msg) unsigned char 466 msg_data[sizeof(pldm_msg_hdr) + PLDM_GET_PDR_MIN_RESP_BYTES]; 467 pldm_msg* msg = new (msg_data) pldm_msg; 468 rc = decode_get_pdr_resp_safe(msg, PLDM_GET_PDR_MIN_RESP_BYTES, nullptr, 469 sizeof(resp), &crc); 470 EXPECT_EQ(rc, -EINVAL); 471 472 rc = decode_get_pdr_resp_safe(msg, PLDM_GET_PDR_MIN_RESP_BYTES, &resp, 473 sizeof(resp), nullptr); 474 EXPECT_EQ(rc, -EINVAL); 475 476 msg->payload[0] = PLDM_ERROR_INVALID_DATA; 477 rc = decode_get_pdr_resp_safe(msg, 1, &resp, sizeof(resp), &crc); 478 EXPECT_EQ(rc, 0); 479 EXPECT_EQ(resp.completion_code, PLDM_ERROR_INVALID_DATA); 480 } 481 #endif 482 483 TEST(GetPDRRepositoryInfo, testGoodEncodeResponse) 484 { 485 uint8_t completionCode = 0; 486 uint8_t repositoryState = PLDM_AVAILABLE; 487 uint8_t updateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 488 uint8_t oemUpdateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 489 uint32_t recordCount = 100; 490 uint32_t repositorySize = 100; 491 uint32_t largestRecordSize = UINT32_MAX; 492 uint8_t dataTransferHandleTimeout = PLDM_NO_TIMEOUT; 493 494 std::vector<uint8_t> responseMsg(hdrSize + 495 PLDM_GET_PDR_REPOSITORY_INFO_RESP_BYTES); 496 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 497 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 498 499 auto rc = encode_get_pdr_repository_info_resp( 500 0, PLDM_SUCCESS, repositoryState, updateTime, oemUpdateTime, 501 recordCount, repositorySize, largestRecordSize, 502 dataTransferHandleTimeout, response); 503 504 EXPECT_EQ(rc, PLDM_SUCCESS); 505 struct pldm_pdr_repository_info_resp* resp = 506 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 507 reinterpret_cast<struct pldm_pdr_repository_info_resp*>( 508 response->payload); 509 510 EXPECT_EQ(completionCode, resp->completion_code); 511 EXPECT_EQ(repositoryState, resp->repository_state); 512 EXPECT_EQ(0, memcmp(updateTime, resp->update_time, PLDM_TIMESTAMP104_SIZE)); 513 EXPECT_EQ(0, memcmp(oemUpdateTime, resp->oem_update_time, 514 PLDM_TIMESTAMP104_SIZE)); 515 EXPECT_EQ(recordCount, le32toh(resp->record_count)); 516 EXPECT_EQ(repositorySize, le32toh(resp->repository_size)); 517 EXPECT_EQ(largestRecordSize, le32toh(resp->largest_record_size)); 518 EXPECT_EQ(dataTransferHandleTimeout, resp->data_transfer_handle_timeout); 519 } 520 521 TEST(GetPDRRepositoryInfo, testBadEncodeResponse) 522 { 523 uint8_t repositoryState = PLDM_AVAILABLE; 524 uint8_t updateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 525 uint8_t oemUpdateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 526 uint32_t recordCount = 100; 527 uint32_t repositorySize = 100; 528 uint32_t largestRecordSize = UINT32_MAX; 529 uint8_t dataTransferHandleTimeout = PLDM_NO_TIMEOUT; 530 531 auto rc = encode_get_pdr_repository_info_resp( 532 0, PLDM_SUCCESS, repositoryState, updateTime, oemUpdateTime, 533 recordCount, repositorySize, largestRecordSize, 534 dataTransferHandleTimeout, nullptr); 535 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 536 } 537 538 TEST(GetPDRRepositoryInfo, testGoodDecodeResponse) 539 { 540 uint8_t completionCode = PLDM_SUCCESS; 541 uint8_t repositoryState = PLDM_AVAILABLE; 542 uint8_t updateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 543 uint8_t oemUpdateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 544 uint32_t recordCount = 100; 545 uint32_t repositorySize = 100; 546 uint32_t largestRecordSize = UINT32_MAX; 547 uint8_t dataTransferHandleTimeout = PLDM_NO_TIMEOUT; 548 549 std::array<uint8_t, hdrSize + PLDM_GET_PDR_REPOSITORY_INFO_RESP_BYTES> 550 responseMsg{}; 551 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 552 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 553 struct pldm_pdr_repository_info_resp* resp = 554 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 555 reinterpret_cast<struct pldm_pdr_repository_info_resp*>( 556 response->payload); 557 resp->completion_code = completionCode; 558 resp->repository_state = repositoryState; 559 memcpy(resp->update_time, updateTime, PLDM_TIMESTAMP104_SIZE); 560 memcpy(resp->oem_update_time, oemUpdateTime, PLDM_TIMESTAMP104_SIZE); 561 resp->record_count = htole32(recordCount); 562 resp->repository_size = htole32(repositorySize); 563 resp->largest_record_size = htole32(largestRecordSize); 564 resp->data_transfer_handle_timeout = dataTransferHandleTimeout; 565 566 uint8_t retCompletionCode = 0; 567 uint8_t retRepositoryState = 0; 568 uint8_t retUpdateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 569 uint8_t retOemUpdateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 570 uint32_t retRecordCount = 0; 571 uint32_t retRepositorySize = 0; 572 uint32_t retLargestRecordSize = 0; 573 uint8_t retDataTransferHandleTimeout = 0; 574 575 auto rc = decode_get_pdr_repository_info_resp( 576 response, responseMsg.size() - hdrSize, &retCompletionCode, 577 &retRepositoryState, retUpdateTime, retOemUpdateTime, &retRecordCount, 578 &retRepositorySize, &retLargestRecordSize, 579 &retDataTransferHandleTimeout); 580 581 EXPECT_EQ(rc, PLDM_SUCCESS); 582 EXPECT_EQ(completionCode, retCompletionCode); 583 EXPECT_EQ(repositoryState, retRepositoryState); 584 EXPECT_EQ(0, memcmp(updateTime, retUpdateTime, PLDM_TIMESTAMP104_SIZE)); 585 EXPECT_EQ(0, 586 memcmp(oemUpdateTime, retOemUpdateTime, PLDM_TIMESTAMP104_SIZE)); 587 EXPECT_EQ(recordCount, recordCount); 588 EXPECT_EQ(repositorySize, repositorySize); 589 EXPECT_EQ(largestRecordSize, largestRecordSize); 590 EXPECT_EQ(dataTransferHandleTimeout, dataTransferHandleTimeout); 591 } 592 593 TEST(GetPDRRepositoryInfo, testBadDecodeResponse) 594 { 595 uint8_t completionCode = PLDM_SUCCESS; 596 uint8_t repositoryState = PLDM_AVAILABLE; 597 uint8_t updateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 598 uint8_t oemUpdateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 599 uint32_t recordCount = htole32(100); 600 uint32_t repositorySize = htole32(100); 601 uint32_t largestRecordSize = htole32(UINT32_MAX); 602 uint8_t dataTransferHandleTimeout = PLDM_NO_TIMEOUT; 603 604 std::array<uint8_t, hdrSize + PLDM_GET_PDR_REPOSITORY_INFO_RESP_BYTES> 605 responseMsg{}; 606 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 607 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 608 struct pldm_pdr_repository_info_resp* resp = 609 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 610 reinterpret_cast<struct pldm_pdr_repository_info_resp*>( 611 response->payload); 612 resp->completion_code = completionCode; 613 resp->repository_state = repositoryState; 614 memcpy(resp->update_time, updateTime, PLDM_TIMESTAMP104_SIZE); 615 memcpy(resp->oem_update_time, oemUpdateTime, PLDM_TIMESTAMP104_SIZE); 616 resp->record_count = recordCount; 617 resp->repository_size = repositorySize; 618 resp->largest_record_size = largestRecordSize; 619 resp->data_transfer_handle_timeout = dataTransferHandleTimeout; 620 621 uint8_t retCompletionCode = 0; 622 uint8_t retRepositoryState = 0; 623 uint8_t retUpdateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 624 uint8_t retOemUpdateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 625 uint32_t retRecordCount = 0; 626 uint32_t retRepositorySize = 0; 627 uint32_t retLargestRecordSize = 0; 628 uint8_t retDataTransferHandleTimeout = 0; 629 630 auto rc = decode_get_pdr_repository_info_resp( 631 response, responseMsg.size() - hdrSize, NULL, NULL, NULL, NULL, NULL, 632 NULL, NULL, NULL); 633 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 634 635 rc = decode_get_pdr_repository_info_resp( 636 response, responseMsg.size() - hdrSize - 1, &retCompletionCode, 637 &retRepositoryState, retUpdateTime, retOemUpdateTime, &retRecordCount, 638 &retRepositorySize, &retLargestRecordSize, 639 &retDataTransferHandleTimeout); 640 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 641 642 resp->repository_state = PLDM_FAILED + 1; 643 rc = decode_get_pdr_repository_info_resp( 644 response, responseMsg.size() - hdrSize, &retCompletionCode, 645 &retRepositoryState, retUpdateTime, retOemUpdateTime, &retRecordCount, 646 &retRepositorySize, &retLargestRecordSize, 647 &retDataTransferHandleTimeout); 648 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 649 } 650 651 #ifdef LIBPLDM_API_TESTING 652 TEST(GetPDRRepositoryInfo, testGoodDecodeResponseSafe) 653 { 654 alignas(pldm_msg) unsigned char 655 data[sizeof(pldm_msg_hdr) + PLDM_GET_PDR_REPOSITORY_INFO_RESP_BYTES]; 656 uint8_t updateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 657 uint8_t oemUpdateTime[PLDM_TIMESTAMP104_SIZE] = {0}; 658 struct pldm_msgbuf _buf; 659 struct pldm_msgbuf* buf = &_buf; 660 int rc; 661 662 pldm_msg* msg = new (data) pldm_msg; 663 664 rc = pldm_msgbuf_init_errno(buf, PLDM_GET_PDR_REPOSITORY_INFO_RESP_BYTES, 665 msg->payload, sizeof(data) - sizeof(msg->hdr)); 666 ASSERT_EQ(rc, 0); 667 pldm_msgbuf_insert_uint8(buf, PLDM_SUCCESS); 668 pldm_msgbuf_insert_uint8(buf, PLDM_AVAILABLE); 669 rc = pldm_msgbuf_insert_array_uint8(buf, PLDM_TIMESTAMP104_SIZE, updateTime, 670 sizeof(updateTime)); 671 ASSERT_EQ(rc, 0); 672 rc = pldm_msgbuf_insert_array_uint8(buf, PLDM_TIMESTAMP104_SIZE, 673 oemUpdateTime, sizeof(oemUpdateTime)); 674 ASSERT_EQ(rc, 0); 675 pldm_msgbuf_insert_uint32(buf, 100); 676 pldm_msgbuf_insert_uint32(buf, 100); 677 pldm_msgbuf_insert_uint32(buf, UINT32_MAX); 678 pldm_msgbuf_insert_uint8(buf, PLDM_NO_TIMEOUT); 679 ASSERT_EQ(pldm_msgbuf_destroy_consumed(buf), 0); 680 681 struct pldm_pdr_repository_info_resp resp; 682 rc = decode_get_pdr_repository_info_resp_safe( 683 msg, sizeof(data) - sizeof(msg->hdr), &resp); 684 685 EXPECT_EQ(rc, 0); 686 EXPECT_EQ(PLDM_SUCCESS, resp.completion_code); 687 EXPECT_EQ(PLDM_AVAILABLE, resp.repository_state); 688 EXPECT_EQ(0, 689 memcmp(updateTime, resp.update_time, sizeof(resp.update_time))); 690 EXPECT_EQ(0, memcmp(oemUpdateTime, resp.oem_update_time, 691 sizeof(resp.oem_update_time))); 692 EXPECT_EQ(100, resp.record_count); 693 EXPECT_EQ(100, resp.repository_size); 694 EXPECT_EQ(UINT32_MAX, resp.largest_record_size); 695 EXPECT_EQ(PLDM_NO_TIMEOUT, resp.data_transfer_handle_timeout); 696 } 697 #endif 698 699 #ifdef LIBPLDM_API_TESTING 700 TEST(GetPDRRepositoryInfo, testBadDecodeResponseSafeTrivial) 701 { 702 struct pldm_pdr_repository_info_resp resp; 703 int rc; 704 705 rc = decode_get_pdr_repository_info_resp_safe( 706 nullptr, PLDM_GET_PDR_REPOSITORY_INFO_RESP_BYTES, &resp); 707 EXPECT_EQ(rc, -EINVAL); 708 709 alignas(pldm_msg) unsigned char 710 msg_data[sizeof(pldm_msg) - 1 + 711 PLDM_GET_PDR_REPOSITORY_INFO_RESP_BYTES]; 712 pldm_msg* msg = new (msg_data) pldm_msg; 713 rc = decode_get_pdr_repository_info_resp_safe(msg, 0, &resp); 714 EXPECT_EQ(rc, -EOVERFLOW); 715 716 rc = decode_get_pdr_repository_info_resp_safe( 717 msg, PLDM_GET_PDR_REPOSITORY_INFO_RESP_BYTES, nullptr); 718 EXPECT_EQ(rc, -EINVAL); 719 720 msg->payload[0] = PLDM_ERROR_INVALID_DATA; 721 rc = decode_get_pdr_repository_info_resp_safe(msg, 1, &resp); 722 EXPECT_EQ(rc, 0); 723 EXPECT_EQ(resp.completion_code, PLDM_ERROR_INVALID_DATA); 724 } 725 #endif 726 727 TEST(SetNumericEffecterValue, testGoodDecodeRequest) 728 { 729 std::array<uint8_t, 730 hdrSize + PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES + 3> 731 requestMsg{}; 732 733 uint16_t effecter_id = 32768; 734 uint8_t effecter_data_size = PLDM_EFFECTER_DATA_SIZE_UINT32; 735 uint32_t effecter_value = 123456789; 736 737 uint16_t reteffecter_id; 738 uint8_t reteffecter_data_size; 739 uint8_t reteffecter_value[4]; 740 741 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 742 auto req = reinterpret_cast<pldm_msg*>(requestMsg.data()); 743 struct pldm_set_numeric_effecter_value_req* request = 744 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 745 reinterpret_cast<struct pldm_set_numeric_effecter_value_req*>( 746 req->payload); 747 748 request->effecter_id = htole16(effecter_id); 749 request->effecter_data_size = effecter_data_size; 750 uint32_t effecter_value_le = htole32(effecter_value); 751 memcpy(request->effecter_value, &effecter_value_le, 752 sizeof(effecter_value_le)); 753 754 auto rc = decode_set_numeric_effecter_value_req( 755 req, requestMsg.size() - hdrSize, &reteffecter_id, 756 &reteffecter_data_size, reteffecter_value); 757 758 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 759 uint32_t value = *(reinterpret_cast<uint32_t*>(reteffecter_value)); 760 EXPECT_EQ(rc, PLDM_SUCCESS); 761 EXPECT_EQ(reteffecter_id, effecter_id); 762 EXPECT_EQ(reteffecter_data_size, effecter_data_size); 763 EXPECT_EQ(value, effecter_value); 764 } 765 766 TEST(SetNumericEffecterValue, testBadDecodeRequest) 767 { 768 std::array<uint8_t, hdrSize + PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES> 769 requestMsg{}; 770 771 auto rc = decode_set_numeric_effecter_value_req( 772 NULL, requestMsg.size() - hdrSize, NULL, NULL, NULL); 773 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 774 775 uint16_t effecter_id = 0x10; 776 uint8_t effecter_data_size = PLDM_EFFECTER_DATA_SIZE_UINT8; 777 uint8_t effecter_value = 1; 778 779 uint16_t reteffecter_id; 780 uint8_t reteffecter_data_size; 781 uint8_t reteffecter_value[4]; 782 783 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 784 auto req = reinterpret_cast<pldm_msg*>(requestMsg.data()); 785 struct pldm_set_numeric_effecter_value_req* request = 786 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 787 reinterpret_cast<struct pldm_set_numeric_effecter_value_req*>( 788 req->payload); 789 790 request->effecter_id = effecter_id; 791 request->effecter_data_size = effecter_data_size; 792 memcpy(request->effecter_value, &effecter_value, sizeof(effecter_value)); 793 794 rc = decode_set_numeric_effecter_value_req( 795 req, requestMsg.size() - hdrSize - 1, &reteffecter_id, 796 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 797 &reteffecter_data_size, reinterpret_cast<uint8_t*>(&reteffecter_value)); 798 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 799 } 800 801 TEST(SetNumericEffecterValue, testGoodEncodeRequest) 802 { 803 uint16_t effecter_id = 0; 804 uint8_t effecter_data_size = PLDM_EFFECTER_DATA_SIZE_UINT16; 805 uint16_t effecter_value = 65534; 806 807 std::vector<uint8_t> requestMsg( 808 hdrSize + PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES + 1); 809 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 810 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 811 812 auto rc = encode_set_numeric_effecter_value_req( 813 0, effecter_id, effecter_data_size, 814 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 815 reinterpret_cast<uint8_t*>(&effecter_value), request, 816 PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES + 1); 817 EXPECT_EQ(rc, PLDM_SUCCESS); 818 819 struct pldm_set_numeric_effecter_value_req* req = 820 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 821 reinterpret_cast<struct pldm_set_numeric_effecter_value_req*>( 822 request->payload); 823 EXPECT_EQ(effecter_id, req->effecter_id); 824 EXPECT_EQ(effecter_data_size, req->effecter_data_size); 825 uint16_t* val = (uint16_t*)req->effecter_value; 826 *val = le16toh(*val); 827 EXPECT_EQ(effecter_value, *val); 828 } 829 830 TEST(SetNumericEffecterValue, testBadEncodeRequest) 831 { 832 std::vector<uint8_t> requestMsg( 833 hdrSize + PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES); 834 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 835 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 836 837 auto rc = encode_set_numeric_effecter_value_req( 838 0, 0, 0, NULL, NULL, PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES); 839 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 840 841 uint16_t effecter_value; 842 rc = encode_set_numeric_effecter_value_req( 843 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 844 0, 0, 6, reinterpret_cast<uint8_t*>(&effecter_value), request, 845 PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES); 846 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 847 } 848 849 TEST(SetNumericEffecterValue, testGoodDecodeResponse) 850 { 851 std::array<uint8_t, hdrSize + PLDM_SET_NUMERIC_EFFECTER_VALUE_RESP_BYTES> 852 responseMsg{}; 853 854 uint8_t completion_code = 0xa0; 855 856 uint8_t retcompletion_code; 857 858 memcpy(responseMsg.data() + hdrSize, &completion_code, 859 sizeof(completion_code)); 860 861 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 862 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 863 864 auto rc = decode_set_numeric_effecter_value_resp( 865 response, responseMsg.size() - hdrSize, &retcompletion_code); 866 867 EXPECT_EQ(rc, PLDM_SUCCESS); 868 EXPECT_EQ(completion_code, retcompletion_code); 869 } 870 871 TEST(SetNumericEffecterValue, testBadDecodeResponse) 872 { 873 std::array<uint8_t, PLDM_SET_NUMERIC_EFFECTER_VALUE_RESP_BYTES> 874 responseMsg{}; 875 876 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 877 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 878 879 auto rc = decode_set_numeric_effecter_value_resp(response, 880 responseMsg.size(), NULL); 881 882 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 883 } 884 885 TEST(SetNumericEffecterValue, testGoodEncodeResponse) 886 { 887 std::array<uint8_t, sizeof(pldm_msg_hdr) + 888 PLDM_SET_NUMERIC_EFFECTER_VALUE_RESP_BYTES> 889 responseMsg{}; 890 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 891 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 892 uint8_t completionCode = 0; 893 894 auto rc = encode_set_numeric_effecter_value_resp( 895 0, PLDM_SUCCESS, response, PLDM_SET_NUMERIC_EFFECTER_VALUE_RESP_BYTES); 896 897 EXPECT_EQ(rc, PLDM_SUCCESS); 898 EXPECT_EQ(completionCode, response->payload[0]); 899 } 900 901 TEST(SetNumericEffecterValue, testBadEncodeResponse) 902 { 903 auto rc = encode_set_numeric_effecter_value_resp( 904 0, PLDM_SUCCESS, NULL, PLDM_SET_NUMERIC_EFFECTER_VALUE_RESP_BYTES); 905 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 906 } 907 908 TEST(GetStateSensorReadings, testGoodEncodeResponse) 909 { 910 std::array<uint8_t, hdrSize + 911 PLDM_GET_STATE_SENSOR_READINGS_MIN_RESP_BYTES + 912 sizeof(get_sensor_state_field) * 2> 913 responseMsg{}; 914 915 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 916 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 917 uint8_t completionCode = 0; 918 uint8_t comp_sensorCnt = 0x2; 919 920 std::array<get_sensor_state_field, 2> stateField{}; 921 stateField[0] = {PLDM_SENSOR_ENABLED, PLDM_SENSOR_NORMAL, 922 PLDM_SENSOR_WARNING, PLDM_SENSOR_UNKNOWN}; 923 stateField[1] = {PLDM_SENSOR_FAILED, PLDM_SENSOR_UPPERFATAL, 924 PLDM_SENSOR_UPPERCRITICAL, PLDM_SENSOR_FATAL}; 925 926 auto rc = encode_get_state_sensor_readings_resp( 927 0, PLDM_SUCCESS, comp_sensorCnt, stateField.data(), response); 928 929 struct pldm_get_state_sensor_readings_resp* resp = 930 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 931 reinterpret_cast<struct pldm_get_state_sensor_readings_resp*>( 932 response->payload); 933 934 EXPECT_EQ(rc, PLDM_SUCCESS); 935 EXPECT_EQ(completionCode, resp->completion_code); 936 EXPECT_EQ(comp_sensorCnt, resp->comp_sensor_count); 937 EXPECT_EQ(stateField[0].sensor_op_state, resp->field->sensor_op_state); 938 EXPECT_EQ(stateField[0].present_state, resp->field->present_state); 939 EXPECT_EQ(stateField[0].previous_state, resp->field->previous_state); 940 EXPECT_EQ(stateField[0].event_state, resp->field->event_state); 941 EXPECT_EQ(stateField[1].sensor_op_state, resp->field[1].sensor_op_state); 942 EXPECT_EQ(stateField[1].present_state, resp->field[1].present_state); 943 EXPECT_EQ(stateField[1].previous_state, resp->field[1].previous_state); 944 EXPECT_EQ(stateField[1].event_state, resp->field[1].event_state); 945 } 946 947 TEST(GetStateSensorReadings, testBadEncodeResponse) 948 { 949 auto rc = encode_get_state_sensor_readings_resp(0, PLDM_SUCCESS, 0, nullptr, 950 nullptr); 951 952 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 953 } 954 955 TEST(GetStateSensorReadings, testGoodDecodeResponse) 956 { 957 std::array<uint8_t, hdrSize + 958 PLDM_GET_STATE_SENSOR_READINGS_MIN_RESP_BYTES + 959 sizeof(get_sensor_state_field) * 2> 960 responseMsg{}; 961 962 uint8_t completionCode = 0; 963 uint8_t comp_sensorCnt = 2; 964 965 std::array<get_sensor_state_field, 2> stateField{}; 966 stateField[0] = {PLDM_SENSOR_DISABLED, PLDM_SENSOR_UNKNOWN, 967 PLDM_SENSOR_UNKNOWN, PLDM_SENSOR_UNKNOWN}; 968 stateField[1] = {PLDM_SENSOR_ENABLED, PLDM_SENSOR_LOWERFATAL, 969 PLDM_SENSOR_LOWERCRITICAL, PLDM_SENSOR_WARNING}; 970 971 uint8_t retcompletion_code = 0; 972 uint8_t retcomp_sensorCnt = 0; 973 std::array<get_sensor_state_field, 2> retstateField{}; 974 975 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 976 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 977 struct pldm_get_state_sensor_readings_resp* resp = 978 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 979 reinterpret_cast<struct pldm_get_state_sensor_readings_resp*>( 980 response->payload); 981 982 resp->completion_code = completionCode; 983 resp->comp_sensor_count = comp_sensorCnt; 984 memcpy(resp->field, &stateField, 985 (sizeof(get_sensor_state_field) * comp_sensorCnt)); 986 987 auto rc = decode_get_state_sensor_readings_resp( 988 response, responseMsg.size() - hdrSize, &retcompletion_code, 989 &retcomp_sensorCnt, retstateField.data()); 990 991 EXPECT_EQ(rc, PLDM_SUCCESS); 992 EXPECT_EQ(completionCode, retcompletion_code); 993 EXPECT_EQ(comp_sensorCnt, retcomp_sensorCnt); 994 EXPECT_EQ(stateField[0].sensor_op_state, retstateField[0].sensor_op_state); 995 EXPECT_EQ(stateField[0].present_state, retstateField[0].present_state); 996 EXPECT_EQ(stateField[0].previous_state, retstateField[0].previous_state); 997 EXPECT_EQ(stateField[0].event_state, retstateField[0].event_state); 998 EXPECT_EQ(stateField[1].sensor_op_state, retstateField[1].sensor_op_state); 999 EXPECT_EQ(stateField[1].present_state, retstateField[1].present_state); 1000 EXPECT_EQ(stateField[1].previous_state, retstateField[1].previous_state); 1001 EXPECT_EQ(stateField[1].event_state, retstateField[1].event_state); 1002 } 1003 1004 TEST(GetStateSensorReadings, testBadDecodeResponse) 1005 { 1006 std::array<uint8_t, hdrSize + 1007 PLDM_GET_STATE_SENSOR_READINGS_MIN_RESP_BYTES + 1008 sizeof(get_sensor_state_field) * 2> 1009 responseMsg{}; 1010 1011 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1012 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 1013 1014 auto rc = decode_get_state_sensor_readings_resp( 1015 response, responseMsg.size() - hdrSize, nullptr, nullptr, nullptr); 1016 1017 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1018 1019 uint8_t completionCode = 0; 1020 uint8_t comp_sensorCnt = 1; 1021 1022 std::array<get_sensor_state_field, 1> stateField{}; 1023 stateField[0] = {PLDM_SENSOR_ENABLED, PLDM_SENSOR_UPPERFATAL, 1024 PLDM_SENSOR_UPPERCRITICAL, PLDM_SENSOR_WARNING}; 1025 1026 uint8_t retcompletion_code = 0; 1027 uint8_t retcomp_sensorCnt = 0; 1028 std::array<get_sensor_state_field, 1> retstateField{}; 1029 1030 struct pldm_get_state_sensor_readings_resp* resp = 1031 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1032 reinterpret_cast<struct pldm_get_state_sensor_readings_resp*>( 1033 response->payload); 1034 1035 resp->completion_code = completionCode; 1036 resp->comp_sensor_count = comp_sensorCnt; 1037 memcpy(resp->field, &stateField, 1038 (sizeof(get_sensor_state_field) * comp_sensorCnt)); 1039 1040 rc = decode_get_state_sensor_readings_resp( 1041 response, responseMsg.size() - hdrSize, &retcompletion_code, 1042 &retcomp_sensorCnt, retstateField.data()); 1043 1044 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 1045 } 1046 1047 TEST(GetStateSensorReadings, testGoodEncodeRequest) 1048 { 1049 std::array<uint8_t, hdrSize + PLDM_GET_STATE_SENSOR_READINGS_REQ_BYTES> 1050 requestMsg{}; 1051 1052 uint16_t sensorId = 0xab; 1053 bitfield8_t sensorRearm; 1054 sensorRearm.byte = 0x03; 1055 1056 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1057 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 1058 auto rc = encode_get_state_sensor_readings_req(0, sensorId, sensorRearm, 0, 1059 request); 1060 1061 struct pldm_get_state_sensor_readings_req* req = 1062 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1063 reinterpret_cast<struct pldm_get_state_sensor_readings_req*>( 1064 request->payload); 1065 1066 EXPECT_EQ(rc, PLDM_SUCCESS); 1067 EXPECT_EQ(sensorId, le16toh(req->sensor_id)); 1068 EXPECT_EQ(sensorRearm.byte, req->sensor_rearm.byte); 1069 } 1070 1071 TEST(GetStateSensorReadings, testBadEncodeRequest) 1072 { 1073 bitfield8_t sensorRearm; 1074 sensorRearm.byte = 0x0; 1075 1076 auto rc = 1077 encode_get_state_sensor_readings_req(0, 0, sensorRearm, 0, nullptr); 1078 1079 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1080 } 1081 1082 TEST(GetStateSensorReadings, testGoodDecodeRequest) 1083 { 1084 std::array<uint8_t, hdrSize + PLDM_GET_STATE_SENSOR_READINGS_REQ_BYTES> 1085 requestMsg{}; 1086 1087 uint16_t sensorId = 0xcd; 1088 bitfield8_t sensorRearm; 1089 sensorRearm.byte = 0x10; 1090 1091 uint16_t retsensorId; 1092 bitfield8_t retsensorRearm; 1093 uint8_t retreserved; 1094 1095 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1096 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 1097 1098 struct pldm_get_state_sensor_readings_req* req = 1099 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1100 reinterpret_cast<struct pldm_get_state_sensor_readings_req*>( 1101 request->payload); 1102 1103 req->sensor_id = htole16(sensorId); 1104 req->sensor_rearm.byte = sensorRearm.byte; 1105 1106 auto rc = decode_get_state_sensor_readings_req( 1107 request, requestMsg.size() - hdrSize, &retsensorId, &retsensorRearm, 1108 &retreserved); 1109 1110 EXPECT_EQ(rc, PLDM_SUCCESS); 1111 EXPECT_EQ(sensorId, retsensorId); 1112 EXPECT_EQ(sensorRearm.byte, retsensorRearm.byte); 1113 EXPECT_EQ(0, retreserved); 1114 } 1115 1116 TEST(GetStateSensorReadings, testBadDecodeRequest) 1117 { 1118 std::array<uint8_t, hdrSize + PLDM_GET_STATE_SENSOR_READINGS_REQ_BYTES> 1119 requestMsg{}; 1120 1121 auto rc = decode_get_state_sensor_readings_req( 1122 nullptr, requestMsg.size() - hdrSize, nullptr, nullptr, nullptr); 1123 1124 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1125 uint16_t sensorId = 0x11; 1126 bitfield8_t sensorRearm; 1127 sensorRearm.byte = 0x04; 1128 1129 uint16_t retsensorId; 1130 bitfield8_t retsensorRearm; 1131 uint8_t retreserved; 1132 1133 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1134 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 1135 1136 struct pldm_get_state_sensor_readings_req* req = 1137 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1138 reinterpret_cast<struct pldm_get_state_sensor_readings_req*>( 1139 request->payload); 1140 1141 req->sensor_id = htole16(sensorId); 1142 req->sensor_rearm.byte = sensorRearm.byte; 1143 1144 rc = decode_get_state_sensor_readings_req( 1145 request, requestMsg.size() - hdrSize - 1, &retsensorId, &retsensorRearm, 1146 &retreserved); 1147 1148 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 1149 } 1150 1151 TEST(EventMessageBufferSize, testGoodEventMessageBufferSizeRequest) 1152 { 1153 uint8_t eventBufferSize = 32; 1154 1155 std::array<uint8_t, hdrSize + PLDM_EVENT_MESSAGE_BUFFER_SIZE_REQ_BYTES> 1156 requestMsg{}; 1157 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1158 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 1159 1160 auto rc = encode_event_message_buffer_size_req(0, eventBufferSize, request); 1161 1162 EXPECT_EQ(rc, PLDM_SUCCESS); 1163 } 1164 1165 TEST(EventMessageBufferSize, testGoodEventMessageBufferSizeResponse) 1166 { 1167 uint8_t completionCode = PLDM_SUCCESS; 1168 uint16_t terminusMaxBufferSize = 256; 1169 1170 std::array<uint8_t, hdrSize + PLDM_EVENT_MESSAGE_BUFFER_SIZE_RESP_BYTES> 1171 responseMsg{}; 1172 1173 uint8_t retCompletionCode; 1174 uint16_t retMaxBufferSize = 0; 1175 1176 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1177 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 1178 struct pldm_event_message_buffer_size_resp* resp = 1179 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1180 reinterpret_cast<struct pldm_event_message_buffer_size_resp*>( 1181 response->payload); 1182 1183 resp->completion_code = completionCode; 1184 resp->terminus_max_buffer_size = terminusMaxBufferSize; 1185 1186 auto rc = decode_event_message_buffer_size_resp( 1187 response, responseMsg.size() - hdrSize, &retCompletionCode, 1188 &retMaxBufferSize); 1189 1190 EXPECT_EQ(rc, PLDM_SUCCESS); 1191 EXPECT_EQ(retCompletionCode, completionCode); 1192 EXPECT_EQ(terminusMaxBufferSize, retMaxBufferSize); 1193 } 1194 1195 TEST(EventMessageBufferSize, testBadEventMessageBufferSizeResponse) 1196 { 1197 uint8_t completionCode = PLDM_SUCCESS; 1198 uint16_t terminusMaxBufferSize = 256; 1199 1200 std::array<uint8_t, hdrSize + PLDM_EVENT_MESSAGE_BUFFER_SIZE_RESP_BYTES> 1201 responseMsg{}; 1202 1203 uint8_t retCompletionCode; 1204 uint16_t retMaxBufferSize = 0; 1205 1206 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1207 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 1208 struct pldm_event_message_buffer_size_resp* resp = 1209 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1210 reinterpret_cast<struct pldm_event_message_buffer_size_resp*>( 1211 response->payload); 1212 resp->completion_code = completionCode; 1213 resp->terminus_max_buffer_size = terminusMaxBufferSize; 1214 1215 auto rc = 1216 decode_event_message_buffer_size_resp(response, 0, nullptr, nullptr); 1217 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1218 1219 rc = decode_event_message_buffer_size_resp( 1220 response, responseMsg.size(), &retCompletionCode, &retMaxBufferSize); 1221 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 1222 } 1223 1224 TEST(PlatformEventMessageSupported, testGoodEncodeRequest) 1225 { 1226 uint8_t formatVersion = 0x01; 1227 1228 std::array<uint8_t, hdrSize + PLDM_EVENT_MESSAGE_SUPPORTED_REQ_BYTES> 1229 requestMsg{}; 1230 1231 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1232 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 1233 1234 auto rc = encode_event_message_supported_req(0, formatVersion, request); 1235 1236 struct pldm_event_message_supported_req* req = 1237 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1238 reinterpret_cast<struct pldm_event_message_supported_req*>( 1239 request->payload); 1240 1241 EXPECT_EQ(rc, PLDM_SUCCESS); 1242 EXPECT_EQ(formatVersion, req->format_version); 1243 } 1244 1245 TEST(PlatformEventMessageSupported, testBadEncodeRequest) 1246 { 1247 uint8_t eventData = 34; 1248 uint8_t formatVersion = 0x0; 1249 1250 std::array<uint8_t, hdrSize + PLDM_EVENT_MESSAGE_SUPPORTED_REQ_BYTES + 1251 sizeof(eventData)> 1252 requestMsg{}; 1253 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1254 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 1255 1256 auto rc = encode_event_message_supported_req(0, formatVersion, request); 1257 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1258 1259 rc = encode_event_message_supported_req(0, formatVersion, nullptr); 1260 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1261 } 1262 1263 TEST(PlatformEventMessageSupported, testGoodDecodeRespond) 1264 { 1265 uint8_t completionCode = PLDM_SUCCESS; 1266 uint8_t synchConfiguration = PLDM_MESSAGE_TYPE_SYNCHRONOUS; 1267 bitfield8_t synchConfigSupported; 1268 synchConfigSupported.byte = 0xe; 1269 uint8_t numberEventClassReturned = 0x3; 1270 std::vector<uint8_t> eventClass{0x0, 0x5, 0xfa}; 1271 constexpr uint8_t eventClassCount = 3; 1272 1273 std::array<uint8_t, hdrSize + PLDM_EVENT_MESSAGE_SUPPORTED_MIN_RESP_BYTES + 1274 eventClassCount> 1275 responseMsg{}; 1276 1277 uint8_t retCompletionCode; 1278 uint8_t retSynchConfig = 0; 1279 uint8_t retNumberEventClass = 0; 1280 bitfield8_t retSynchConfigSupport; 1281 uint8_t retEventClass[eventClassCount] = {0}; 1282 1283 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1284 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 1285 struct pldm_event_message_supported_resp* resp = 1286 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1287 reinterpret_cast<struct pldm_event_message_supported_resp*>( 1288 response->payload); 1289 1290 resp->completion_code = completionCode; 1291 resp->synchrony_configuration = synchConfiguration; 1292 resp->synchrony_configuration_supported.byte = synchConfigSupported.byte; 1293 resp->number_event_class_returned = numberEventClassReturned; 1294 memcpy(resp->event_class, eventClass.data(), numberEventClassReturned); 1295 1296 auto rc = decode_event_message_supported_resp( 1297 response, responseMsg.size() - hdrSize, &retCompletionCode, 1298 &retSynchConfig, &retSynchConfigSupport, &retNumberEventClass, 1299 retEventClass, eventClassCount); 1300 1301 EXPECT_EQ(rc, PLDM_SUCCESS); 1302 EXPECT_EQ(retCompletionCode, completionCode); 1303 EXPECT_EQ(retSynchConfig, synchConfiguration); 1304 EXPECT_EQ(retNumberEventClass, numberEventClassReturned); 1305 EXPECT_EQ(retSynchConfigSupport.byte, synchConfigSupported.byte); 1306 EXPECT_EQ(0, memcmp(eventClass.data(), resp->event_class, 1307 numberEventClassReturned)); 1308 } 1309 1310 TEST(PlatformEventMessageSupported, testBadSynchConfiguration) 1311 { 1312 uint8_t completionCode = PLDM_SUCCESS; 1313 uint8_t synchConfiguration = 0x4; 1314 bitfield8_t synchConfigSupported; 1315 synchConfigSupported.byte = 0xe; 1316 uint8_t numberEventClassReturned = 0x3; 1317 std::vector<uint8_t> eventClass{0x0, 0x5, 0xfa}; 1318 constexpr uint8_t eventClassCount = 3; 1319 1320 std::array<uint8_t, hdrSize + PLDM_EVENT_MESSAGE_SUPPORTED_MIN_RESP_BYTES + 1321 eventClassCount> 1322 responseMsg{}; 1323 1324 uint8_t retCompletionCode; 1325 uint8_t retSynchConfig = 0; 1326 uint8_t retNumberEventClass = 0; 1327 bitfield8_t retSynchConfigSupport; 1328 uint8_t retEventClass[eventClassCount] = {0}; 1329 1330 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1331 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 1332 struct pldm_event_message_supported_resp* resp = 1333 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1334 reinterpret_cast<struct pldm_event_message_supported_resp*>( 1335 response->payload); 1336 1337 resp->completion_code = completionCode; 1338 resp->synchrony_configuration = synchConfiguration; 1339 resp->synchrony_configuration_supported.byte = synchConfigSupported.byte; 1340 resp->number_event_class_returned = numberEventClassReturned; 1341 memcpy(resp->event_class, eventClass.data(), numberEventClassReturned); 1342 1343 auto rc = decode_event_message_supported_resp( 1344 response, responseMsg.size() - hdrSize, &retCompletionCode, 1345 &retSynchConfig, &retSynchConfigSupport, &retNumberEventClass, 1346 retEventClass, eventClassCount); 1347 1348 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1349 } 1350 1351 TEST(PlatformEventMessageSupported, testBadDecodeRespond) 1352 { 1353 uint8_t completionCode = PLDM_SUCCESS; 1354 uint8_t synchConfiguration = PLDM_MESSAGE_TYPE_SYNCHRONOUS; 1355 bitfield8_t synchConfigSupported; 1356 synchConfigSupported.byte = 0xe; 1357 uint8_t numberEventClassReturned = 0x3; 1358 std::vector<uint8_t> eventClass{0x0, 0x5, 0xfa}; 1359 constexpr uint8_t eventClassCount = 3; 1360 1361 std::array<uint8_t, hdrSize + PLDM_EVENT_MESSAGE_SUPPORTED_MIN_RESP_BYTES + 1362 eventClassCount> 1363 responseMsg{}; 1364 1365 uint8_t retCompletionCode; 1366 uint8_t retSynchConfig = 0; 1367 uint8_t retNumberEventClass = 0; 1368 bitfield8_t retSynchConfigSupport; 1369 uint8_t retEventClass[eventClassCount] = {0}; 1370 1371 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1372 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 1373 struct pldm_event_message_supported_resp* resp = 1374 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1375 reinterpret_cast<struct pldm_event_message_supported_resp*>( 1376 response->payload); 1377 resp->completion_code = completionCode; 1378 resp->synchrony_configuration = synchConfiguration; 1379 resp->synchrony_configuration_supported.byte = synchConfigSupported.byte; 1380 resp->number_event_class_returned = numberEventClassReturned; 1381 memcpy(resp->event_class, eventClass.data(), numberEventClassReturned); 1382 1383 auto rc = decode_event_message_supported_resp(response, 0, nullptr, nullptr, 1384 nullptr, nullptr, nullptr, 0); 1385 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1386 1387 rc = decode_event_message_supported_resp( 1388 response, PLDM_EVENT_MESSAGE_SUPPORTED_MIN_RESP_BYTES - 1, 1389 &retCompletionCode, &retSynchConfig, &retSynchConfigSupport, 1390 &retNumberEventClass, retEventClass, eventClassCount); 1391 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 1392 1393 rc = decode_event_message_supported_resp( 1394 response, responseMsg.size() - hdrSize, &retCompletionCode, 1395 &retSynchConfig, &retSynchConfigSupport, &retNumberEventClass, 1396 retEventClass, 1); 1397 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 1398 } 1399 1400 TEST(PollForPlatformEventMessage, testGoodEncodeRequestFirstPart) 1401 { 1402 uint8_t formatVersion = 0x01; 1403 uint8_t transferOperationFlag = PLDM_GET_FIRSTPART; 1404 uint32_t dataTransferHandle = 0xaabbccdd; 1405 uint16_t eventIdToAcknowledge = PLDM_PLATFORM_EVENT_ID_NULL; 1406 1407 PLDM_MSG_DEFINE_P(request, PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1408 1409 auto rc = encode_poll_for_platform_event_message_req( 1410 0, formatVersion, transferOperationFlag, dataTransferHandle, 1411 eventIdToAcknowledge, request, 1412 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1413 EXPECT_EQ(rc, PLDM_SUCCESS); 1414 1415 struct pldm_msgbuf _buf; 1416 struct pldm_msgbuf* buf = &_buf; 1417 rc = pldm_msgbuf_init_errno( 1418 buf, PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES, request->payload, 1419 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1420 EXPECT_EQ(rc, 0); 1421 1422 uint8_t retFormatVersion; 1423 uint8_t retTransferOperationFlag; 1424 uint32_t retDataTransferHandle; 1425 uint16_t retEventIdToAcknowledge; 1426 1427 pldm_msgbuf_extract_uint8(buf, retFormatVersion); 1428 pldm_msgbuf_extract_uint8(buf, retTransferOperationFlag); 1429 pldm_msgbuf_extract_uint32(buf, retDataTransferHandle); 1430 pldm_msgbuf_extract_uint16(buf, retEventIdToAcknowledge); 1431 ASSERT_EQ(pldm_msgbuf_destroy_consumed(buf), 0); 1432 1433 EXPECT_EQ(retFormatVersion, formatVersion); 1434 EXPECT_EQ(retTransferOperationFlag, transferOperationFlag); 1435 EXPECT_EQ(retDataTransferHandle, dataTransferHandle); 1436 EXPECT_EQ(retEventIdToAcknowledge, eventIdToAcknowledge); 1437 } 1438 1439 TEST(PollForPlatformEventMessage, testGoodEncodeRequestNextPart) 1440 { 1441 uint8_t formatVersion = 0x01; 1442 uint8_t transferOperationFlag = PLDM_GET_NEXTPART; 1443 uint32_t dataTransferHandle = 0xaabbccdd; 1444 uint16_t eventIdToAcknowledge = PLDM_PLATFORM_EVENT_ID_FRAGMENT; 1445 1446 PLDM_MSG_DEFINE_P(request, PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1447 1448 auto rc = encode_poll_for_platform_event_message_req( 1449 0, formatVersion, transferOperationFlag, dataTransferHandle, 1450 eventIdToAcknowledge, request, 1451 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1452 EXPECT_EQ(rc, PLDM_SUCCESS); 1453 1454 struct pldm_msgbuf _buf; 1455 struct pldm_msgbuf* buf = &_buf; 1456 rc = pldm_msgbuf_init_errno( 1457 buf, PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES, request->payload, 1458 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1459 EXPECT_EQ(rc, 0); 1460 1461 uint8_t retFormatVersion; 1462 uint8_t retTransferOperationFlag; 1463 uint32_t retDataTransferHandle; 1464 uint16_t retEventIdToAcknowledge; 1465 1466 pldm_msgbuf_extract_uint8(buf, retFormatVersion); 1467 pldm_msgbuf_extract_uint8(buf, retTransferOperationFlag); 1468 pldm_msgbuf_extract_uint32(buf, retDataTransferHandle); 1469 pldm_msgbuf_extract_uint16(buf, retEventIdToAcknowledge); 1470 ASSERT_EQ(pldm_msgbuf_destroy_consumed(buf), 0); 1471 1472 EXPECT_EQ(retFormatVersion, formatVersion); 1473 EXPECT_EQ(retTransferOperationFlag, transferOperationFlag); 1474 EXPECT_EQ(retDataTransferHandle, dataTransferHandle); 1475 EXPECT_EQ(retEventIdToAcknowledge, eventIdToAcknowledge); 1476 } 1477 1478 TEST(PollForPlatformEventMessage, testGoodEncodeRequestAckOnly) 1479 { 1480 uint8_t formatVersion = 0x01; 1481 uint8_t transferOperationFlag = PLDM_ACKNOWLEDGEMENT_ONLY; 1482 uint32_t dataTransferHandle = 0xaabbccdd; 1483 uint16_t eventIdToAcknowledge = PLDM_PLATFORM_EVENT_ID_FRAGMENT; 1484 1485 PLDM_MSG_DEFINE_P(request, PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1486 1487 auto rc = encode_poll_for_platform_event_message_req( 1488 0, formatVersion, transferOperationFlag, dataTransferHandle, 1489 eventIdToAcknowledge, request, 1490 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1491 EXPECT_EQ(rc, PLDM_SUCCESS); 1492 1493 struct pldm_msgbuf _buf; 1494 struct pldm_msgbuf* buf = &_buf; 1495 rc = pldm_msgbuf_init_errno( 1496 buf, PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES, request->payload, 1497 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1498 EXPECT_EQ(rc, 0); 1499 1500 uint8_t retFormatVersion; 1501 uint8_t retTransferOperationFlag; 1502 uint32_t retDataTransferHandle; 1503 uint16_t retEventIdToAcknowledge; 1504 1505 pldm_msgbuf_extract_uint8(buf, retFormatVersion); 1506 pldm_msgbuf_extract_uint8(buf, retTransferOperationFlag); 1507 pldm_msgbuf_extract_uint32(buf, retDataTransferHandle); 1508 pldm_msgbuf_extract_uint16(buf, retEventIdToAcknowledge); 1509 ASSERT_EQ(pldm_msgbuf_destroy_consumed(buf), 0); 1510 1511 EXPECT_EQ(retFormatVersion, formatVersion); 1512 EXPECT_EQ(retTransferOperationFlag, transferOperationFlag); 1513 EXPECT_EQ(retDataTransferHandle, dataTransferHandle); 1514 EXPECT_EQ(retEventIdToAcknowledge, eventIdToAcknowledge); 1515 } 1516 1517 TEST(PollForPlatformEventMessage, testBadEncodeRequest) 1518 { 1519 uint8_t formatVersion = 0x01; 1520 uint8_t transferOperationFlag = PLDM_GET_FIRSTPART; 1521 uint32_t dataTransferHandle = 0xaabbccdd; 1522 uint16_t eventIdToAcknowledge = 0x1234; 1523 1524 PLDM_MSG_DEFINE_P(request, PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1525 1526 auto rc = encode_poll_for_platform_event_message_req( 1527 0, formatVersion, transferOperationFlag, dataTransferHandle, 1528 eventIdToAcknowledge, nullptr, 1529 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1530 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1531 1532 transferOperationFlag = PLDM_GET_FIRSTPART; 1533 eventIdToAcknowledge = PLDM_PLATFORM_EVENT_ID_FRAGMENT; 1534 rc = encode_poll_for_platform_event_message_req( 1535 0, formatVersion, transferOperationFlag, dataTransferHandle, 1536 eventIdToAcknowledge, request, 1537 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1538 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1539 1540 transferOperationFlag = PLDM_GET_NEXTPART; 1541 eventIdToAcknowledge = 0x1234; 1542 rc = encode_poll_for_platform_event_message_req( 1543 0, formatVersion, transferOperationFlag, dataTransferHandle, 1544 eventIdToAcknowledge, request, 1545 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1546 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1547 1548 transferOperationFlag = PLDM_GET_NEXTPART; 1549 eventIdToAcknowledge = PLDM_PLATFORM_EVENT_ID_NULL; 1550 rc = encode_poll_for_platform_event_message_req( 1551 0, formatVersion, transferOperationFlag, dataTransferHandle, 1552 eventIdToAcknowledge, request, 1553 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1554 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1555 1556 transferOperationFlag = PLDM_ACKNOWLEDGEMENT_ONLY; 1557 eventIdToAcknowledge = 0x1234; 1558 rc = encode_poll_for_platform_event_message_req( 1559 0, formatVersion, transferOperationFlag, dataTransferHandle, 1560 eventIdToAcknowledge, request, 1561 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1562 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1563 1564 transferOperationFlag = PLDM_ACKNOWLEDGEMENT_ONLY; 1565 eventIdToAcknowledge = PLDM_PLATFORM_EVENT_ID_NULL; 1566 rc = encode_poll_for_platform_event_message_req( 1567 0, formatVersion, transferOperationFlag, dataTransferHandle, 1568 eventIdToAcknowledge, request, 1569 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1570 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1571 1572 transferOperationFlag = PLDM_ACKNOWLEDGEMENT_ONLY + 1; 1573 eventIdToAcknowledge = PLDM_PLATFORM_EVENT_ID_FRAGMENT; 1574 rc = encode_poll_for_platform_event_message_req( 1575 0, formatVersion, transferOperationFlag, dataTransferHandle, 1576 eventIdToAcknowledge, request, 1577 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_REQ_BYTES); 1578 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1579 } 1580 1581 TEST(PollForPlatformEventMessage, testGoodDecodeRespond) 1582 { 1583 uint8_t completionCode = PLDM_SUCCESS; 1584 uint8_t tId = 0x9; 1585 uint16_t eventId = 159; 1586 uint32_t nextDataTransferHandle = 0x11223344; 1587 uint8_t transferFlag = PLDM_START_AND_END; 1588 uint8_t eventClass = 0x5; 1589 uint8_t eventData[5] = {0x55, 0x44, 0x33, 0x22, 0x11}; 1590 constexpr uint32_t eventDataSize = 0x00000005; 1591 uint32_t eventDataIntegrityChecksum = 0x66778899; 1592 1593 std::vector<uint8_t> responseMsg{ 1594 0x1, 1595 0x0, 1596 0x0, 1597 PLDM_SUCCESS, 1598 0x9, // tid 1599 159, 1600 0x0, // event id 1601 0x44, 1602 0x33, 1603 0x22, 1604 0x11, // next_data_transfer_handle 1605 PLDM_START_AND_END, // transfer_flag 1606 0x05, // event class 1607 0x05, 1608 0x00, 1609 0x00, 1610 0x00, // event_data_size 1611 0x55, 1612 0x44, 1613 0x33, 1614 0x22, 1615 0x11, // event_data[5] 1616 0x99, 1617 0x88, 1618 0x77, 1619 0x66 // event_data_integrity_checksum 1620 }; 1621 const uint32_t respMsgLen = 23; 1622 1623 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1624 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 1625 1626 uint8_t retCompletionCode; 1627 uint8_t retTid = 0; 1628 uint16_t retEventId = 0; 1629 uint32_t retNextDataTransferHandle = 0; 1630 uint8_t retTransferFlag = 0; 1631 uint8_t retEventClass = 0; 1632 uint32_t retEventDataSize = 0; 1633 uint8_t* retEventData = nullptr; 1634 uint32_t retEventDataIntegrityChecksum = 0; 1635 1636 auto rc = decode_poll_for_platform_event_message_resp( 1637 response, respMsgLen, &retCompletionCode, &retTid, &retEventId, 1638 &retNextDataTransferHandle, &retTransferFlag, &retEventClass, 1639 &retEventDataSize, (void**)&retEventData, 1640 &retEventDataIntegrityChecksum); 1641 1642 EXPECT_EQ(rc, PLDM_SUCCESS); 1643 EXPECT_EQ(retCompletionCode, completionCode); 1644 EXPECT_EQ(retTid, tId); 1645 EXPECT_EQ(retEventId, eventId); 1646 EXPECT_EQ(retNextDataTransferHandle, nextDataTransferHandle); 1647 EXPECT_EQ(retTransferFlag, transferFlag); 1648 EXPECT_EQ(retEventClass, eventClass); 1649 EXPECT_EQ(retEventDataSize, eventDataSize); 1650 EXPECT_EQ(retEventDataIntegrityChecksum, eventDataIntegrityChecksum); 1651 EXPECT_EQ(0, memcmp(eventData, retEventData, eventDataSize)); 1652 } 1653 1654 TEST(PollForPlatformEventMessage, testGoodDecodeAckOnlyRespond) 1655 { 1656 uint8_t completionCode = PLDM_SUCCESS; 1657 uint8_t tId = 0x9; 1658 uint16_t eventId = 0xffff; 1659 1660 std::vector<uint8_t> responseMsg{ 1661 0x1, 0x0, 0x0, PLDM_SUCCESS, 1662 0x9, // tid 1663 0xff, 1664 0xff // event id 1665 }; 1666 const uint32_t respMsgLen = 4; 1667 1668 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1669 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 1670 1671 uint8_t retCompletionCode; 1672 uint8_t retTid = 0; 1673 uint16_t retEventId = 0; 1674 uint32_t retNextDataTransferHandle = 0; 1675 uint8_t retTransferFlag = 0; 1676 uint8_t retEventClass = 0; 1677 uint32_t retEventDataSize = 0; 1678 uint8_t* retEventData = nullptr; 1679 uint32_t retEventDataIntegrityChecksum = 0; 1680 1681 auto rc = decode_poll_for_platform_event_message_resp( 1682 response, respMsgLen, &retCompletionCode, &retTid, &retEventId, 1683 &retNextDataTransferHandle, &retTransferFlag, &retEventClass, 1684 &retEventDataSize, (void**)&retEventData, 1685 &retEventDataIntegrityChecksum); 1686 1687 EXPECT_EQ(rc, PLDM_SUCCESS); 1688 EXPECT_EQ(retCompletionCode, completionCode); 1689 EXPECT_EQ(retTid, tId); 1690 EXPECT_EQ(retEventId, eventId); 1691 1692 eventId = 0x0000; 1693 responseMsg[5] = 0x00; 1694 responseMsg[6] = 0x00; 1695 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1696 response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 1697 1698 rc = decode_poll_for_platform_event_message_resp( 1699 response, respMsgLen, &retCompletionCode, &retTid, &retEventId, 1700 &retNextDataTransferHandle, &retTransferFlag, &retEventClass, 1701 &retEventDataSize, (void**)&retEventData, 1702 &retEventDataIntegrityChecksum); 1703 1704 EXPECT_EQ(rc, PLDM_SUCCESS); 1705 EXPECT_EQ(retCompletionCode, completionCode); 1706 EXPECT_EQ(retTid, tId); 1707 EXPECT_EQ(retEventId, eventId); 1708 } 1709 1710 TEST(PollForPlatformEventMessage, testBadDecodeRespond) 1711 { 1712 std::vector<uint8_t> responseMsg{ 1713 0x1, 1714 0x0, 1715 0x0, 1716 PLDM_SUCCESS, 1717 0x9, // tid 1718 159, 1719 0x0, // event id 1720 0x44, 1721 0x33, 1722 0x22, 1723 0x11, // next_data_transfer_handle 1724 PLDM_START_AND_END, // transfer_flag 1725 0x05, // event class 1726 0x05, 1727 0x00, 1728 0x00, 1729 0x00, // event_data_size 1730 0x55, 1731 0x44, 1732 0x33, 1733 0x22, 1734 0x11, // event_data[5] 1735 0x99, 1736 0x88, 1737 0x77, 1738 0x66 // event_data_integrity_checksum 1739 }; 1740 // const uint32_t respMsgLen = 23; 1741 1742 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1743 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 1744 1745 auto rc = decode_poll_for_platform_event_message_resp( 1746 nullptr, 0, nullptr, nullptr, nullptr, nullptr, nullptr, nullptr, 1747 nullptr, nullptr, nullptr); 1748 1749 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1750 1751 uint8_t retCompletionCode; 1752 uint8_t retTid = 0; 1753 uint16_t retEventId = 0; 1754 uint32_t retNextDataTransferHandle = 0; 1755 uint8_t retTransferFlag = 0; 1756 uint8_t retEventClass = 0; 1757 uint32_t retEventDataSize = 0; 1758 uint8_t* retEventData = nullptr; 1759 uint32_t retEventDataIntegrityChecksum = 0; 1760 1761 rc = decode_poll_for_platform_event_message_resp( 1762 response, PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_MIN_RESP_BYTES - 1, 1763 &retCompletionCode, &retTid, &retEventId, &retNextDataTransferHandle, 1764 &retTransferFlag, &retEventClass, &retEventDataSize, 1765 (void**)&retEventData, &retEventDataIntegrityChecksum); 1766 1767 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 1768 } 1769 1770 TEST(PollForPlatformEventMessage, testGoodDecodeRequestFirstPart) 1771 { 1772 uint8_t formatVersion = 0x1; 1773 uint8_t transferOperationFlag = PLDM_GET_FIRSTPART; 1774 uint32_t dataTransferHandle = 0x11223344; 1775 uint16_t eventIdToAcknowledge = PLDM_PLATFORM_EVENT_ID_NULL; 1776 std::vector<uint8_t> requestMsg{0x1, 0x0, 0x0, 0x1, PLDM_GET_FIRSTPART, 1777 0x44, 0x33, 0x22, 0x11, 0x00, 1778 0x00}; 1779 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1780 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 1781 1782 uint8_t retFormatVersion; 1783 uint8_t retTransferOperationFlag; 1784 uint32_t retDataTransferHandle; 1785 uint16_t retEventIdToAcknowledge; 1786 1787 auto rc = decode_poll_for_platform_event_message_req( 1788 request, requestMsg.size() - hdrSize, &retFormatVersion, 1789 &retTransferOperationFlag, &retDataTransferHandle, 1790 &retEventIdToAcknowledge); 1791 1792 EXPECT_EQ(rc, PLDM_SUCCESS); 1793 EXPECT_EQ(retFormatVersion, formatVersion); 1794 EXPECT_EQ(retTransferOperationFlag, transferOperationFlag); 1795 EXPECT_EQ(retDataTransferHandle, dataTransferHandle); 1796 EXPECT_EQ(retEventIdToAcknowledge, eventIdToAcknowledge); 1797 } 1798 1799 TEST(PollForPlatformEventMessage, testGoodDecodeRequestNextPart) 1800 { 1801 uint8_t formatVersion = 0x1; 1802 uint8_t transferOperationFlag = PLDM_GET_NEXTPART; 1803 uint32_t dataTransferHandle = 0x11223344; 1804 uint16_t eventIdToAcknowledge = PLDM_PLATFORM_EVENT_ID_FRAGMENT; 1805 std::vector<uint8_t> requestMsg{0x1, 0x0, 0x0, 0x1, PLDM_GET_NEXTPART, 1806 0x44, 0x33, 0x22, 0x11, 0xff, 1807 0xff}; 1808 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1809 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 1810 1811 uint8_t retFormatVersion; 1812 uint8_t retTransferOperationFlag; 1813 uint32_t retDataTransferHandle; 1814 uint16_t retEventIdToAcknowledge; 1815 1816 auto rc = decode_poll_for_platform_event_message_req( 1817 request, requestMsg.size() - hdrSize, &retFormatVersion, 1818 &retTransferOperationFlag, &retDataTransferHandle, 1819 &retEventIdToAcknowledge); 1820 1821 EXPECT_EQ(rc, PLDM_SUCCESS); 1822 EXPECT_EQ(retFormatVersion, formatVersion); 1823 EXPECT_EQ(retTransferOperationFlag, transferOperationFlag); 1824 EXPECT_EQ(retDataTransferHandle, dataTransferHandle); 1825 EXPECT_EQ(retEventIdToAcknowledge, eventIdToAcknowledge); 1826 } 1827 1828 TEST(PollForPlatformEventMessage, testGoodDecodeRequestAck) 1829 { 1830 uint8_t formatVersion = 0x1; 1831 uint8_t transferOperationFlag = PLDM_ACKNOWLEDGEMENT_ONLY; 1832 uint32_t dataTransferHandle = 0x11223344; 1833 uint16_t eventIdToAcknowledge = PLDM_PLATFORM_EVENT_ID_FRAGMENT; 1834 std::vector<uint8_t> requestMsg{ 1835 0x1, 0x0, 0x0, 0x1, PLDM_ACKNOWLEDGEMENT_ONLY, 0x44, 0x33, 1836 0x22, 0x11, 0xff, 0xff}; 1837 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1838 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 1839 1840 uint8_t retFormatVersion; 1841 uint8_t retTransferOperationFlag; 1842 uint32_t retDataTransferHandle; 1843 uint16_t retEventIdToAcknowledge; 1844 1845 auto rc = decode_poll_for_platform_event_message_req( 1846 request, requestMsg.size() - hdrSize, &retFormatVersion, 1847 &retTransferOperationFlag, &retDataTransferHandle, 1848 &retEventIdToAcknowledge); 1849 1850 EXPECT_EQ(rc, PLDM_SUCCESS); 1851 EXPECT_EQ(retFormatVersion, formatVersion); 1852 EXPECT_EQ(retTransferOperationFlag, transferOperationFlag); 1853 EXPECT_EQ(retDataTransferHandle, dataTransferHandle); 1854 EXPECT_EQ(retEventIdToAcknowledge, eventIdToAcknowledge); 1855 } 1856 1857 TEST(PollForPlatformEventMessage, testBadDecodeRequest) 1858 { 1859 /* 1860 * transfer_operation_flag is PLDM_GET_FIRSTPART and 1861 * event_id_to_acknowledge is not PLDM_PLATFORM_EVENT_ID_NULL 1862 */ 1863 std::vector<uint8_t> requestMsg{0x1, 0x0, 0x0, 0x1, PLDM_GET_FIRSTPART, 1864 0x44, 0x33, 0x22, 0x11, 0x66, 1865 0x55}; 1866 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1867 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 1868 1869 uint8_t retFormatVersion; 1870 uint8_t retTransferOperationFlag; 1871 uint32_t retDataTransferHandle; 1872 uint16_t retEventIdToAcknowledge; 1873 1874 auto rc = decode_poll_for_platform_event_message_req( 1875 NULL, requestMsg.size() - hdrSize, &retFormatVersion, 1876 &retTransferOperationFlag, &retDataTransferHandle, 1877 &retEventIdToAcknowledge); 1878 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1879 1880 /* 1881 * transfer_operation_flag is not PLDM_GET_FIRSTPART or PLDM_GET_NEXTPART or 1882 * PLDM_ACKNOWLEDGEMENT_ONLY 1883 */ 1884 1885 requestMsg[4] = PLDM_ACKNOWLEDGEMENT_ONLY + 1; 1886 1887 rc = decode_poll_for_platform_event_message_req( 1888 request, requestMsg.size() - hdrSize, &retFormatVersion, 1889 &retTransferOperationFlag, &retDataTransferHandle, 1890 &retEventIdToAcknowledge); 1891 1892 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1893 1894 /* 1895 * transfer_operation_flag is PLDM_GET_NEXTPART and 1896 * event_id_to_acknowledge is not PLDM_PLATFORM_EVENT_ID_FRAGMENT 1897 */ 1898 requestMsg[4] = PLDM_GET_NEXTPART; 1899 requestMsg[9] = 0x11; 1900 requestMsg[10] = 0x22; 1901 1902 rc = decode_poll_for_platform_event_message_req( 1903 request, requestMsg.size() - hdrSize, &retFormatVersion, 1904 &retTransferOperationFlag, &retDataTransferHandle, 1905 &retEventIdToAcknowledge); 1906 1907 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1908 1909 /* 1910 * transfer_operation_flag is PLDM_ACKNOWLEDGEMENT_ONLY and 1911 * event_id_to_acknowledge is not PLDM_PLATFORM_EVENT_ID_FRAGMENT 1912 */ 1913 requestMsg[4] = PLDM_ACKNOWLEDGEMENT_ONLY; 1914 requestMsg[9] = 0x11; 1915 requestMsg[10] = 0x22; 1916 1917 rc = decode_poll_for_platform_event_message_req( 1918 request, requestMsg.size() - hdrSize, &retFormatVersion, 1919 &retTransferOperationFlag, &retDataTransferHandle, 1920 &retEventIdToAcknowledge); 1921 1922 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 1923 } 1924 1925 TEST(PollForPlatformEventMessage, testGoodEncodeResposeP1) 1926 { 1927 uint8_t completionCode = PLDM_SUCCESS; 1928 uint8_t instance_id = 0; 1929 uint8_t tId = 0x9; 1930 uint16_t eventId = 0x1; 1931 uint32_t nextDataTransferHandle = 0xffff; 1932 uint8_t transferFlag = PLDM_END; 1933 uint8_t eventClass = 0x5; 1934 constexpr uint32_t eventDataSize = 9; 1935 uint8_t pEventData[eventDataSize] = {0x31, 0x32, 0x33, 0x34, 0x35, 1936 0x36, 0x37, 0x38, 0x39}; 1937 uint32_t eventDataIntegrityChecksum = 0x11223344; 1938 constexpr size_t payloadLength = 1939 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_RESP_BYTES + eventDataSize + 4; 1940 1941 std::array<uint8_t, hdrSize + payloadLength> responseMsg{}; 1942 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 1943 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 1944 1945 auto rc = encode_poll_for_platform_event_message_resp( 1946 instance_id, completionCode, tId, eventId, nextDataTransferHandle, 1947 transferFlag, eventClass, eventDataSize, pEventData, 1948 eventDataIntegrityChecksum, response, payloadLength); 1949 EXPECT_EQ(rc, PLDM_SUCCESS); 1950 1951 struct pldm_msgbuf _buf; 1952 struct pldm_msgbuf* buf = &_buf; 1953 rc = pldm_msgbuf_init_cc( 1954 buf, PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_MIN_RESP_BYTES, 1955 response->payload, payloadLength); 1956 EXPECT_EQ(rc, PLDM_SUCCESS); 1957 1958 uint8_t retCompletionCode; 1959 uint8_t retTid = 0; 1960 uint16_t retEventId = 0; 1961 uint32_t retNextDataTransferHandle = 0; 1962 uint8_t retTransferFlag = 0; 1963 uint8_t retEventClass = 0; 1964 uint32_t retEventDataSize = 0; 1965 uint8_t retEventData[payloadLength] = {0}; 1966 uint32_t retEventDataIntegrityChecksum = 0; 1967 1968 pldm_msgbuf_extract_uint8(buf, retCompletionCode); 1969 pldm_msgbuf_extract_uint8(buf, retTid); 1970 pldm_msgbuf_extract_uint16(buf, retEventId); 1971 pldm_msgbuf_extract_uint32(buf, retNextDataTransferHandle); 1972 pldm_msgbuf_extract_uint8(buf, retTransferFlag); 1973 pldm_msgbuf_extract_uint8(buf, retEventClass); 1974 pldm_msgbuf_extract_uint32(buf, retEventDataSize); 1975 rc = pldm_msgbuf_extract_array_uint8(buf, retEventDataSize, retEventData, 1976 sizeof(retEventData)); 1977 ASSERT_EQ(rc, 0); 1978 pldm_msgbuf_extract_uint32(buf, retEventDataIntegrityChecksum); 1979 1980 EXPECT_EQ(rc, PLDM_SUCCESS); 1981 EXPECT_EQ(retCompletionCode, completionCode); 1982 EXPECT_EQ(retTid, tId); 1983 EXPECT_EQ(retEventId, eventId); 1984 EXPECT_EQ(retNextDataTransferHandle, nextDataTransferHandle); 1985 EXPECT_EQ(retTransferFlag, transferFlag); 1986 EXPECT_EQ(retEventClass, eventClass); 1987 EXPECT_EQ(retEventDataSize, eventDataSize); 1988 EXPECT_EQ(retEventDataIntegrityChecksum, eventDataIntegrityChecksum); 1989 EXPECT_EQ(0, memcmp(pEventData, retEventData, eventDataSize)); 1990 1991 EXPECT_EQ(pldm_msgbuf_destroy(buf), PLDM_SUCCESS); 1992 } 1993 1994 TEST(PollForPlatformEventMessage, testGoodEncodeResposeP2) 1995 { 1996 uint8_t completionCode = PLDM_SUCCESS; 1997 uint8_t instance_id = 0; 1998 uint8_t tId = 0x9; 1999 uint16_t eventId = 0x0000; 2000 constexpr size_t payloadLength = 2001 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_MIN_RESP_BYTES; 2002 2003 std::array<uint8_t, hdrSize + payloadLength> responseMsg{}; 2004 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2005 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 2006 2007 auto rc = encode_poll_for_platform_event_message_resp( 2008 instance_id, completionCode, tId, eventId, 0, 0, 0, 0, NULL, 0, 2009 response, payloadLength); 2010 EXPECT_EQ(rc, PLDM_SUCCESS); 2011 2012 struct pldm_msgbuf _buf; 2013 struct pldm_msgbuf* buf = &_buf; 2014 rc = pldm_msgbuf_init_cc( 2015 buf, PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_MIN_RESP_BYTES, 2016 response->payload, payloadLength); 2017 EXPECT_EQ(rc, PLDM_SUCCESS); 2018 2019 uint8_t retCompletionCode; 2020 uint8_t retTid = 0; 2021 uint16_t retEventId = 0; 2022 2023 pldm_msgbuf_extract_uint8(buf, retCompletionCode); 2024 pldm_msgbuf_extract_uint8(buf, retTid); 2025 pldm_msgbuf_extract_uint16(buf, retEventId); 2026 2027 EXPECT_EQ(rc, PLDM_SUCCESS); 2028 EXPECT_EQ(retCompletionCode, completionCode); 2029 EXPECT_EQ(retTid, tId); 2030 EXPECT_EQ(retEventId, eventId); 2031 EXPECT_EQ(pldm_msgbuf_destroy(buf), PLDM_SUCCESS); 2032 } 2033 2034 TEST(PollForPlatformEventMessage, testGoodEncodeResposeP3) 2035 { 2036 uint8_t completionCode = PLDM_SUCCESS; 2037 uint8_t instance_id = 0; 2038 uint8_t tId = 0x9; 2039 uint16_t eventId = 0xffff; 2040 constexpr size_t payloadLength = 2041 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_MIN_RESP_BYTES; 2042 2043 std::array<uint8_t, hdrSize + payloadLength> responseMsg{}; 2044 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2045 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 2046 2047 auto rc = encode_poll_for_platform_event_message_resp( 2048 instance_id, completionCode, tId, eventId, 0, 0, 0, 0, NULL, 0, 2049 response, payloadLength); 2050 EXPECT_EQ(rc, PLDM_SUCCESS); 2051 2052 struct pldm_msgbuf _buf; 2053 struct pldm_msgbuf* buf = &_buf; 2054 rc = pldm_msgbuf_init_cc( 2055 buf, PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_MIN_RESP_BYTES, 2056 response->payload, payloadLength); 2057 EXPECT_EQ(rc, PLDM_SUCCESS); 2058 2059 uint8_t retCompletionCode; 2060 uint8_t retTid = 0; 2061 uint16_t retEventId = 0; 2062 2063 pldm_msgbuf_extract_uint8(buf, retCompletionCode); 2064 pldm_msgbuf_extract_uint8(buf, retTid); 2065 pldm_msgbuf_extract_uint16(buf, retEventId); 2066 2067 EXPECT_EQ(rc, PLDM_SUCCESS); 2068 EXPECT_EQ(retCompletionCode, completionCode); 2069 EXPECT_EQ(retTid, tId); 2070 EXPECT_EQ(retEventId, eventId); 2071 EXPECT_EQ(pldm_msgbuf_destroy(buf), PLDM_SUCCESS); 2072 } 2073 2074 TEST(PollForPlatformEventMessage, testGoodEncodeResposeP4) 2075 { 2076 uint8_t completionCode = PLDM_SUCCESS; 2077 uint8_t instance_id = 0; 2078 uint8_t tId = 0x9; 2079 uint16_t eventId = 0x1; 2080 uint32_t nextDataTransferHandle = 0xffff; 2081 uint8_t transferFlag = PLDM_END; 2082 uint8_t eventClass = 0x5; 2083 constexpr uint32_t eventDataSize = 0; 2084 uint32_t eventDataIntegrityChecksum = 0x11223344; 2085 size_t payloadLength = 2086 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_RESP_BYTES + eventDataSize + 4; 2087 2088 std::array<uint8_t, hdrSize + 2089 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_RESP_BYTES + 2090 eventDataSize + 4> 2091 responseMsg{}; 2092 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2093 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 2094 2095 auto rc = encode_poll_for_platform_event_message_resp( 2096 instance_id, completionCode, tId, eventId, nextDataTransferHandle, 2097 transferFlag, eventClass, eventDataSize, NULL, 2098 eventDataIntegrityChecksum, response, payloadLength); 2099 EXPECT_EQ(rc, PLDM_SUCCESS); 2100 2101 struct pldm_msgbuf _buf; 2102 struct pldm_msgbuf* buf = &_buf; 2103 rc = pldm_msgbuf_init_cc( 2104 buf, PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_MIN_RESP_BYTES, 2105 response->payload, payloadLength); 2106 EXPECT_EQ(rc, PLDM_SUCCESS); 2107 2108 uint8_t retCompletionCode; 2109 uint8_t retTid = 0; 2110 uint16_t retEventId = 0; 2111 uint32_t retNextDataTransferHandle = 0; 2112 uint8_t retTransferFlag = 0; 2113 uint8_t retEventClass = 0; 2114 uint32_t retEventDataSize = 0; 2115 uint32_t retEventDataIntegrityChecksum = 0; 2116 2117 pldm_msgbuf_extract_uint8(buf, retCompletionCode); 2118 pldm_msgbuf_extract_uint8(buf, retTid); 2119 pldm_msgbuf_extract_uint16(buf, retEventId); 2120 pldm_msgbuf_extract_uint32(buf, retNextDataTransferHandle); 2121 pldm_msgbuf_extract_uint8(buf, retTransferFlag); 2122 pldm_msgbuf_extract_uint8(buf, retEventClass); 2123 pldm_msgbuf_extract_uint32(buf, retEventDataSize); 2124 pldm_msgbuf_extract_uint32(buf, retEventDataIntegrityChecksum); 2125 2126 EXPECT_EQ(rc, PLDM_SUCCESS); 2127 EXPECT_EQ(retCompletionCode, completionCode); 2128 EXPECT_EQ(retTid, tId); 2129 EXPECT_EQ(retEventId, eventId); 2130 EXPECT_EQ(retNextDataTransferHandle, nextDataTransferHandle); 2131 EXPECT_EQ(retTransferFlag, transferFlag); 2132 EXPECT_EQ(retEventClass, eventClass); 2133 EXPECT_EQ(retEventDataSize, eventDataSize); 2134 EXPECT_EQ(retEventDataIntegrityChecksum, eventDataIntegrityChecksum); 2135 2136 EXPECT_EQ(pldm_msgbuf_destroy(buf), PLDM_SUCCESS); 2137 } 2138 2139 TEST(PollForPlatformEventMessage, testBadEncodeResponse) 2140 { 2141 uint8_t completionCode = PLDM_SUCCESS; 2142 uint8_t instance_id = 0; 2143 uint8_t tId = 0x9; 2144 uint16_t eventId = 0x1; 2145 uint32_t nextDataTransferHandle = 0xffff; 2146 uint8_t transferFlag = 0x0; 2147 uint8_t eventClass = 0x5; 2148 const uint32_t eventDataSize = 0; 2149 uint32_t eventDataIntegrityChecksum = 0x11223344; 2150 constexpr size_t payloadLength = 2151 PLDM_POLL_FOR_PLATFORM_EVENT_MESSAGE_RESP_BYTES + eventDataSize + 4; 2152 2153 std::array<uint8_t, hdrSize + payloadLength> responseMsg{}; 2154 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2155 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 2156 2157 auto rc = encode_poll_for_platform_event_message_resp( 2158 instance_id, completionCode, tId, eventId, nextDataTransferHandle, 2159 transferFlag, eventClass, eventDataSize, NULL, 2160 eventDataIntegrityChecksum, NULL, payloadLength); 2161 2162 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2163 2164 rc = encode_poll_for_platform_event_message_resp( 2165 instance_id, completionCode, tId, eventId, nextDataTransferHandle, 2166 transferFlag, eventClass, 1, NULL, eventDataIntegrityChecksum, response, 2167 payloadLength); 2168 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2169 } 2170 2171 TEST(PlatformEventMessage, testGoodStateSensorDecodeRequest) 2172 { 2173 std::array<uint8_t, 2174 hdrSize + PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES + 2175 PLDM_PLATFORM_EVENT_MESSAGE_STATE_SENSOR_STATE_REQ_BYTES> 2176 requestMsg{}; 2177 2178 uint8_t retFormatVersion = 0; 2179 uint8_t retTid = 0; 2180 uint8_t retEventClass = 0; 2181 size_t retEventDataOffset = 0; 2182 2183 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2184 auto req = reinterpret_cast<pldm_msg*>(requestMsg.data()); 2185 struct pldm_platform_event_message_req* request = 2186 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2187 reinterpret_cast<struct pldm_platform_event_message_req*>(req->payload); 2188 2189 uint8_t formatVersion = 0x01; 2190 uint8_t tid = 0x02; 2191 // Sensor Event 2192 uint8_t eventClass = 0x00; 2193 2194 request->format_version = formatVersion; 2195 request->tid = tid; 2196 request->event_class = eventClass; 2197 size_t eventDataOffset = 2198 sizeof(formatVersion) + sizeof(tid) + sizeof(eventClass); 2199 2200 auto rc = decode_platform_event_message_req( 2201 req, requestMsg.size() - hdrSize, &retFormatVersion, &retTid, 2202 &retEventClass, &retEventDataOffset); 2203 2204 EXPECT_EQ(rc, PLDM_SUCCESS); 2205 EXPECT_EQ(retFormatVersion, formatVersion); 2206 EXPECT_EQ(retTid, tid); 2207 EXPECT_EQ(retEventClass, eventClass); 2208 EXPECT_EQ(retEventDataOffset, eventDataOffset); 2209 } 2210 2211 TEST(PlatformEventMessage, testBadDecodeRequest) 2212 { 2213 const struct pldm_msg* msg = NULL; 2214 std::array<uint8_t, 2215 hdrSize + PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES + 2216 PLDM_PLATFORM_EVENT_MESSAGE_STATE_SENSOR_STATE_REQ_BYTES - 1> 2217 requestMsg{}; 2218 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2219 auto req = reinterpret_cast<pldm_msg*>(requestMsg.data()); 2220 uint8_t retFormatVersion; 2221 uint8_t retTid = 0; 2222 uint8_t retEventClass = 0; 2223 size_t retEventDataOffset; 2224 2225 auto rc = decode_platform_event_message_req(msg, sizeof(*msg), NULL, NULL, 2226 NULL, NULL); 2227 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2228 2229 rc = decode_platform_event_message_req( 2230 req, 2231 requestMsg.size() - hdrSize - 2232 PLDM_PLATFORM_EVENT_MESSAGE_STATE_SENSOR_STATE_REQ_BYTES, 2233 &retFormatVersion, &retTid, &retEventClass, &retEventDataOffset); 2234 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 2235 } 2236 2237 TEST(PlatformEventMessage, testGoodEncodeResponse) 2238 { 2239 std::array<uint8_t, 2240 hdrSize + PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES + 2241 PLDM_PLATFORM_EVENT_MESSAGE_STATE_SENSOR_STATE_REQ_BYTES - 1> 2242 responseMsg{}; 2243 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2244 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 2245 uint8_t completionCode = 0; 2246 uint8_t instanceId = 0x01; 2247 uint8_t platformEventStatus = 0x01; 2248 2249 auto rc = encode_platform_event_message_resp(instanceId, PLDM_SUCCESS, 2250 platformEventStatus, response); 2251 2252 EXPECT_EQ(rc, PLDM_SUCCESS); 2253 EXPECT_EQ(completionCode, response->payload[0]); 2254 EXPECT_EQ(platformEventStatus, response->payload[1]); 2255 } 2256 2257 TEST(PlatformEventMessage, testBadEncodeResponse) 2258 { 2259 auto rc = encode_platform_event_message_resp(0, PLDM_SUCCESS, 1, NULL); 2260 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2261 } 2262 2263 TEST(PlatformEventMessage, testGoodEncodeRequest) 2264 { 2265 static constexpr const uint8_t formatVersion = 0x01; 2266 static constexpr const uint8_t eventClass = 0x00; 2267 static constexpr const uint8_t eventData = 34; 2268 static constexpr const uint8_t Tid = 0x03; 2269 struct pldm_platform_event_message_req req; 2270 struct pldm_msgbuf _buf; 2271 struct pldm_msgbuf* buf = &_buf; 2272 size_t len; 2273 void* data; 2274 2275 PLDM_MSG_DEFINE_P(request, PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES + 2276 sizeof(eventData)); 2277 2278 /* Test with the minimum event type value */ 2279 auto rc = encode_platform_event_message_req( 2280 0, formatVersion, Tid, eventClass, &eventData, sizeof(eventData), 2281 request, sizeof(eventData) + PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES); 2282 ASSERT_EQ(rc, PLDM_SUCCESS); 2283 2284 rc = pldm_msgbuf_init_errno( 2285 buf, PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES, request->payload, 2286 PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES + sizeof(eventData)); 2287 ASSERT_EQ(rc, 0); 2288 2289 pldm_msgbuf_extract_uint8(buf, req.format_version); 2290 pldm_msgbuf_extract_uint8(buf, req.tid); 2291 pldm_msgbuf_extract_uint8(buf, req.event_class); 2292 data = nullptr; 2293 pldm_msgbuf_span_remaining(buf, &data, &len); 2294 ASSERT_EQ(pldm_msgbuf_destroy_consumed(buf), 0); 2295 2296 EXPECT_EQ(formatVersion, req.format_version); 2297 EXPECT_EQ(Tid, req.tid); 2298 EXPECT_EQ(eventClass, req.event_class); 2299 ASSERT_EQ(sizeof(eventData), len); 2300 EXPECT_EQ(0, memcmp(&eventData, data, len)); 2301 2302 /* Test with the maximum event type value */ 2303 rc = encode_platform_event_message_req( 2304 0, formatVersion, Tid, PLDM_CPER_EVENT, &eventData, sizeof(eventData), 2305 request, sizeof(eventData) + PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES); 2306 ASSERT_EQ(rc, PLDM_SUCCESS); 2307 2308 rc = pldm_msgbuf_init_errno( 2309 buf, PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES, request->payload, 2310 PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES + sizeof(eventData)); 2311 ASSERT_EQ(rc, 0); 2312 2313 pldm_msgbuf_extract_uint8(buf, req.format_version); 2314 pldm_msgbuf_extract_uint8(buf, req.tid); 2315 pldm_msgbuf_extract_uint8(buf, req.event_class); 2316 2317 data = nullptr; 2318 pldm_msgbuf_span_remaining(buf, &data, &len); 2319 ASSERT_EQ(pldm_msgbuf_destroy_consumed(buf), 0); 2320 2321 EXPECT_EQ(formatVersion, req.format_version); 2322 EXPECT_EQ(Tid, req.tid); 2323 EXPECT_EQ(PLDM_CPER_EVENT, req.event_class); 2324 ASSERT_EQ(sizeof(eventData), len); 2325 EXPECT_EQ(0, memcmp(&eventData, data, len)); 2326 } 2327 2328 TEST(PlatformEventMessage, testBadEncodeRequest) 2329 { 2330 uint8_t Tid = 0x03; 2331 uint8_t eventClass = 0x00; 2332 uint8_t eventData = 34; 2333 uint8_t formatVersion = 0x01; 2334 static constexpr const size_t payloadLen = 2335 PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES + sizeof(eventData); 2336 2337 PLDM_MSG_DEFINE_P(request, payloadLen); 2338 2339 auto rc = encode_platform_event_message_req( 2340 0, formatVersion, Tid, eventClass, &eventData, sizeof(eventData), 2341 nullptr, payloadLen); 2342 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2343 2344 rc = encode_platform_event_message_req(0, 0, Tid, eventClass, &eventData, 2345 sizeof(eventData), request, 2346 payloadLen); 2347 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2348 2349 rc = encode_platform_event_message_req(0, formatVersion, Tid, eventClass, 2350 nullptr, 0, request, payloadLen); 2351 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2352 2353 rc = encode_platform_event_message_req(0, formatVersion, Tid, eventClass, 2354 &eventData, sizeof(eventData), 2355 request, 0); 2356 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 2357 2358 rc = encode_platform_event_message_req( 2359 0, formatVersion, Tid, PLDM_CPER_EVENT + 1, &eventData, 2360 sizeof(eventData), request, payloadLen); 2361 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2362 } 2363 2364 TEST(PlatformEventMessage, testGoodDecodeResponse) 2365 { 2366 std::array<uint8_t, hdrSize + PLDM_PLATFORM_EVENT_MESSAGE_RESP_BYTES> 2367 responseMsg{}; 2368 2369 uint8_t completionCode = PLDM_SUCCESS; 2370 uint8_t platformEventStatus = 0x01; 2371 2372 uint8_t retcompletionCode; 2373 uint8_t retplatformEventStatus; 2374 2375 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2376 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 2377 struct pldm_platform_event_message_resp* resp = 2378 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2379 reinterpret_cast<struct pldm_platform_event_message_resp*>( 2380 response->payload); 2381 2382 resp->completion_code = completionCode; 2383 resp->platform_event_status = platformEventStatus; 2384 2385 auto rc = decode_platform_event_message_resp( 2386 response, responseMsg.size() - hdrSize, &retcompletionCode, 2387 &retplatformEventStatus); 2388 2389 EXPECT_EQ(rc, PLDM_SUCCESS); 2390 EXPECT_EQ(completionCode, retcompletionCode); 2391 EXPECT_EQ(platformEventStatus, retplatformEventStatus); 2392 } 2393 2394 TEST(PlatformEventMessage, testBadDecodeResponse) 2395 { 2396 std::array<uint8_t, hdrSize + PLDM_PLATFORM_EVENT_MESSAGE_RESP_BYTES> 2397 responseMsg{}; 2398 2399 uint8_t completionCode = PLDM_SUCCESS; 2400 uint8_t platformEventStatus = 0x01; 2401 2402 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2403 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 2404 struct pldm_platform_event_message_resp* resp = 2405 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2406 reinterpret_cast<struct pldm_platform_event_message_resp*>( 2407 response->payload); 2408 resp->completion_code = completionCode; 2409 resp->platform_event_status = platformEventStatus; 2410 2411 auto rc = decode_platform_event_message_resp( 2412 nullptr, responseMsg.size() - hdrSize, nullptr, nullptr); 2413 2414 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2415 2416 rc = decode_platform_event_message_resp( 2417 response, responseMsg.size() - hdrSize - 1, &completionCode, 2418 &platformEventStatus); 2419 2420 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 2421 } 2422 2423 TEST(PlatformEventMessage, testGoodSensorEventDataDecodeRequest) 2424 { 2425 std::array<uint8_t, PLDM_SENSOR_EVENT_SENSOR_OP_STATE_DATA_LENGTH + 2426 PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES> 2427 eventDataArr{}; 2428 uint16_t sensorId = 0x1234; 2429 uint8_t sensorEventClassType = PLDM_SENSOR_OP_STATE; 2430 2431 struct pldm_sensor_event_data* eventData = 2432 (struct pldm_sensor_event_data*)eventDataArr.data(); 2433 eventData->sensor_id = sensorId; 2434 eventData->sensor_event_class_type = sensorEventClassType; 2435 2436 size_t retSensorOpDataOffset; 2437 uint16_t retSensorId = 0; 2438 uint8_t retSensorEventClassType; 2439 size_t sensorOpDataOffset = sizeof(sensorId) + sizeof(sensorEventClassType); 2440 auto rc = decode_sensor_event_data( 2441 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2442 reinterpret_cast<uint8_t*>(eventData), eventDataArr.size(), 2443 &retSensorId, &retSensorEventClassType, &retSensorOpDataOffset); 2444 EXPECT_EQ(rc, PLDM_SUCCESS); 2445 EXPECT_EQ(retSensorId, sensorId); 2446 EXPECT_EQ(retSensorEventClassType, sensorEventClassType); 2447 EXPECT_EQ(retSensorOpDataOffset, sensorOpDataOffset); 2448 } 2449 2450 TEST(PlatformEventMessage, testBadSensorEventDataDecodeRequest) 2451 { 2452 2453 std::array<uint8_t, PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_MAX_DATA_LENGTH + 2454 PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES> 2455 eventDataArr{}; 2456 2457 struct pldm_sensor_event_data* eventData = 2458 (struct pldm_sensor_event_data*)eventDataArr.data(); 2459 2460 size_t retSensorOpDataOffset; 2461 uint16_t retSensorId = 0; 2462 uint8_t retSensorEventClassType; 2463 auto rc = decode_sensor_event_data(NULL, eventDataArr.size(), &retSensorId, 2464 &retSensorEventClassType, 2465 &retSensorOpDataOffset); 2466 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2467 2468 rc = decode_sensor_event_data( 2469 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2470 reinterpret_cast<uint8_t*>(eventDataArr.data()), 2471 eventDataArr.size() - 2472 PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_MAX_DATA_LENGTH, 2473 &retSensorId, &retSensorEventClassType, &retSensorOpDataOffset); 2474 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 2475 2476 eventData->sensor_event_class_type = PLDM_SENSOR_OP_STATE; 2477 2478 rc = decode_sensor_event_data( 2479 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2480 reinterpret_cast<uint8_t*>(eventDataArr.data()), eventDataArr.size(), 2481 &retSensorId, &retSensorEventClassType, &retSensorOpDataOffset); 2482 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 2483 2484 eventData->sensor_event_class_type = PLDM_STATE_SENSOR_STATE; 2485 rc = decode_sensor_event_data( 2486 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2487 reinterpret_cast<uint8_t*>(eventDataArr.data()), eventDataArr.size(), 2488 &retSensorId, &retSensorEventClassType, &retSensorOpDataOffset); 2489 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 2490 2491 eventData->sensor_event_class_type = PLDM_NUMERIC_SENSOR_STATE; 2492 rc = decode_sensor_event_data( 2493 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2494 reinterpret_cast<uint8_t*>(eventDataArr.data()), 2495 eventDataArr.size() + 1, &retSensorId, &retSensorEventClassType, 2496 &retSensorOpDataOffset); 2497 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 2498 } 2499 2500 TEST(PlatformEventMessage, testGoodPldmMsgPollEventDataDecodeRequest) 2501 { 2502 std::array<uint8_t, PLDM_PLATFORM_EVENT_MESSAGE_FORMAT_VERSION + 2503 PLDM_PLATFORM_EVENT_MESSAGE_EVENT_ID + 2504 PLDM_PLATFORM_EVENT_MESSAGE_TRANFER_HANDLE> 2505 eventData{ 2506 0x1, // version 2507 0x88, 0x77, // Event Id 2508 0x44, 0x33, 0x22, 0x11 // Transfer Handle 2509 }; 2510 2511 uint8_t formatVersion = 0x01; 2512 uint16_t eventID = 0x7788; 2513 uint32_t dataTransferHandle = 0x11223344; 2514 2515 struct pldm_message_poll_event poll_event = {}; 2516 2517 auto rc = decode_pldm_message_poll_event_data( 2518 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2519 reinterpret_cast<uint8_t*>(eventData.data()), eventData.size(), 2520 &poll_event); 2521 2522 EXPECT_EQ(rc, PLDM_SUCCESS); 2523 EXPECT_EQ(poll_event.format_version, formatVersion); 2524 EXPECT_EQ(poll_event.event_id, eventID); 2525 EXPECT_EQ(poll_event.data_transfer_handle, dataTransferHandle); 2526 } 2527 2528 TEST(PlatformEventMessage, testBadPldmMsgPollEventDataDecodeRequest) 2529 { 2530 2531 std::array<uint8_t, PLDM_PLATFORM_EVENT_MESSAGE_FORMAT_VERSION + 2532 PLDM_PLATFORM_EVENT_MESSAGE_EVENT_ID + 2533 PLDM_PLATFORM_EVENT_MESSAGE_TRANFER_HANDLE> 2534 eventData{ 2535 0x1, // version 2536 0x88, 0x77, // Event Id 2537 0x44, 0x33, 0x22, 0x11 // Transfer Handle 2538 }; 2539 2540 struct pldm_message_poll_event poll_event = {}; 2541 2542 auto rc = decode_pldm_message_poll_event_data(NULL, eventData.size(), 2543 &poll_event); 2544 EXPECT_EQ(rc, -EINVAL); 2545 2546 rc = decode_pldm_message_poll_event_data( 2547 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2548 reinterpret_cast<uint8_t*>(eventData.data()), eventData.size(), NULL); 2549 EXPECT_EQ(rc, -EINVAL); 2550 2551 rc = decode_pldm_message_poll_event_data( 2552 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2553 reinterpret_cast<uint8_t*>(eventData.data()), eventData.size() - 1, 2554 &poll_event); 2555 EXPECT_EQ(rc, -EOVERFLOW); 2556 2557 // Event id is 0x0000 2558 eventData[1] = 0x00; 2559 eventData[2] = 0x00; 2560 rc = decode_pldm_message_poll_event_data( 2561 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2562 reinterpret_cast<uint8_t*>(eventData.data()), eventData.size(), 2563 &poll_event); 2564 2565 EXPECT_EQ(rc, -EPROTO); 2566 2567 // Event id is 0xffff 2568 eventData[1] = 0xff; 2569 eventData[2] = 0xff; 2570 rc = decode_pldm_message_poll_event_data( 2571 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2572 reinterpret_cast<uint8_t*>(eventData.data()), eventData.size(), 2573 &poll_event); 2574 2575 EXPECT_EQ(rc, -EPROTO); 2576 } 2577 2578 #ifdef LIBPLDM_API_TESTING 2579 TEST(PlatformEventMessage, testGoodPldmMsgPollEventDataEncode) 2580 { 2581 std::array<uint8_t, PLDM_PLATFORM_EVENT_MESSAGE_FORMAT_VERSION + 2582 PLDM_PLATFORM_EVENT_MESSAGE_EVENT_ID + 2583 PLDM_PLATFORM_EVENT_MESSAGE_TRANFER_HANDLE> 2584 eventData{}; 2585 2586 struct pldm_message_poll_event poll_event = {}; 2587 poll_event.format_version = 0x01; 2588 poll_event.event_id = 0x7788; 2589 poll_event.data_transfer_handle = 0x11223344; 2590 2591 int rc = encode_pldm_message_poll_event_data( 2592 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2593 &poll_event, reinterpret_cast<uint8_t*>(eventData.data()), 2594 eventData.size()); 2595 2596 EXPECT_EQ(rc, PLDM_SUCCESS); 2597 2598 struct pldm_msgbuf _buf; 2599 struct pldm_msgbuf* buf = &_buf; 2600 2601 rc = pldm_msgbuf_init_cc( 2602 buf, PLDM_MSG_POLL_EVENT_LENGTH, 2603 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2604 reinterpret_cast<uint8_t*>(eventData.data()), eventData.size()); 2605 EXPECT_EQ(rc, PLDM_SUCCESS); 2606 2607 uint8_t retFormatVersion; 2608 uint16_t reteventID; 2609 uint32_t retDataTransferHandle; 2610 2611 EXPECT_EQ(pldm_msgbuf_extract_uint8(buf, retFormatVersion), PLDM_SUCCESS); 2612 EXPECT_EQ(pldm_msgbuf_extract_uint16(buf, reteventID), PLDM_SUCCESS); 2613 EXPECT_EQ(pldm_msgbuf_extract_uint32(buf, retDataTransferHandle), 2614 PLDM_SUCCESS); 2615 EXPECT_EQ(retFormatVersion, poll_event.format_version); 2616 EXPECT_EQ(reteventID, poll_event.event_id); 2617 EXPECT_EQ(retDataTransferHandle, poll_event.data_transfer_handle); 2618 EXPECT_EQ(pldm_msgbuf_destroy_consumed(buf), PLDM_SUCCESS); 2619 } 2620 #endif 2621 2622 #ifdef LIBPLDM_API_TESTING 2623 TEST(PlatformEventMessage, testBadPldmMsgPollEventDataEncode) 2624 { 2625 std::array<uint8_t, PLDM_PLATFORM_EVENT_MESSAGE_FORMAT_VERSION + 2626 PLDM_PLATFORM_EVENT_MESSAGE_EVENT_ID + 2627 PLDM_PLATFORM_EVENT_MESSAGE_TRANFER_HANDLE> 2628 eventData{}; 2629 2630 struct pldm_message_poll_event poll_event = {}; 2631 poll_event.format_version = 0x01; 2632 poll_event.event_id = 0x7788; 2633 poll_event.data_transfer_handle = 0x11223344; 2634 2635 int rc = encode_pldm_message_poll_event_data(&poll_event, NULL, 2636 eventData.size()); 2637 EXPECT_EQ(rc, -EINVAL); 2638 2639 poll_event.event_id = 0x0000; 2640 rc = encode_pldm_message_poll_event_data( 2641 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2642 &poll_event, reinterpret_cast<uint8_t*>(eventData.data()), 2643 eventData.size()); 2644 EXPECT_EQ(rc, -EPROTO); 2645 2646 poll_event.event_id = 0xffff; 2647 rc = encode_pldm_message_poll_event_data( 2648 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2649 &poll_event, reinterpret_cast<uint8_t*>(eventData.data()), 2650 eventData.size()); 2651 EXPECT_EQ(rc, -EPROTO); 2652 } 2653 #endif 2654 2655 TEST(PlatformEventMessage, testGoodSensorOpEventDataDecodeRequest) 2656 { 2657 std::array<uint8_t, PLDM_SENSOR_EVENT_SENSOR_OP_STATE_DATA_LENGTH> 2658 eventDataArr{}; 2659 2660 struct pldm_sensor_event_sensor_op_state* sensorData = 2661 (struct pldm_sensor_event_sensor_op_state*)eventDataArr.data(); 2662 uint8_t presentState = PLDM_SENSOR_ENABLED; 2663 uint8_t previousState = PLDM_SENSOR_INITIALIZING; 2664 sensorData->present_op_state = presentState; 2665 sensorData->previous_op_state = previousState; 2666 2667 uint8_t retPresentState; 2668 uint8_t retPreviousState; 2669 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2670 auto rc = decode_sensor_op_data(reinterpret_cast<uint8_t*>(sensorData), 2671 eventDataArr.size(), &retPresentState, 2672 &retPreviousState); 2673 EXPECT_EQ(rc, PLDM_SUCCESS); 2674 EXPECT_EQ(retPresentState, presentState); 2675 EXPECT_EQ(retPreviousState, previousState); 2676 } 2677 2678 TEST(PlatformEventMessage, testBadSensorOpEventDataDecodeRequest) 2679 { 2680 uint8_t presentOpState; 2681 uint8_t previousOpState; 2682 size_t sensorDataLength = PLDM_SENSOR_EVENT_SENSOR_OP_STATE_DATA_LENGTH; 2683 auto rc = decode_sensor_op_data(NULL, sensorDataLength, &presentOpState, 2684 &previousOpState); 2685 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2686 2687 std::array<uint8_t, PLDM_SENSOR_EVENT_SENSOR_OP_STATE_DATA_LENGTH> 2688 sensorData{}; 2689 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2690 rc = decode_sensor_op_data(reinterpret_cast<uint8_t*>(sensorData.data()), 2691 sensorDataLength + 1, &presentOpState, 2692 &previousOpState); 2693 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 2694 2695 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2696 rc = decode_sensor_op_data(reinterpret_cast<uint8_t*>(sensorData.data()), 2697 sensorDataLength, nullptr, &previousOpState); 2698 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2699 } 2700 2701 TEST(PlatformEventMessage, testGoodSensorStateEventDataDecodeRequest) 2702 { 2703 std::array<uint8_t, PLDM_SENSOR_EVENT_STATE_SENSOR_STATE_DATA_LENGTH> 2704 eventDataArr{}; 2705 2706 struct pldm_sensor_event_state_sensor_state* sensorData = 2707 (struct pldm_sensor_event_state_sensor_state*)eventDataArr.data(); 2708 uint8_t sensorOffset = 0x02; 2709 uint8_t eventState = PLDM_SENSOR_SHUTTINGDOWN; 2710 uint8_t previousEventState = PLDM_SENSOR_INTEST; 2711 sensorData->sensor_offset = sensorOffset; 2712 sensorData->event_state = eventState; 2713 sensorData->previous_event_state = previousEventState; 2714 2715 uint8_t retSensorOffset; 2716 uint8_t retEventState; 2717 uint8_t retPreviousState; 2718 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2719 auto rc = decode_state_sensor_data(reinterpret_cast<uint8_t*>(sensorData), 2720 eventDataArr.size(), &retSensorOffset, 2721 &retEventState, &retPreviousState); 2722 EXPECT_EQ(rc, PLDM_SUCCESS); 2723 EXPECT_EQ(retSensorOffset, sensorOffset); 2724 EXPECT_EQ(retEventState, eventState); 2725 EXPECT_EQ(retPreviousState, previousEventState); 2726 } 2727 2728 TEST(PlatformEventMessage, testBadStateSensorEventDataDecodeRequest) 2729 { 2730 uint8_t sensorOffset; 2731 uint8_t eventState; 2732 uint8_t previousEventState; 2733 size_t sensorDataLength = PLDM_SENSOR_EVENT_STATE_SENSOR_STATE_DATA_LENGTH; 2734 auto rc = decode_state_sensor_data(NULL, sensorDataLength, &sensorOffset, 2735 &eventState, &previousEventState); 2736 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2737 2738 std::array<uint8_t, PLDM_SENSOR_EVENT_STATE_SENSOR_STATE_DATA_LENGTH> 2739 sensorData{}; 2740 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2741 rc = decode_state_sensor_data(reinterpret_cast<uint8_t*>(sensorData.data()), 2742 sensorDataLength - 1, &sensorOffset, 2743 &eventState, &previousEventState); 2744 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 2745 2746 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2747 rc = decode_state_sensor_data(reinterpret_cast<uint8_t*>(sensorData.data()), 2748 sensorDataLength, &sensorOffset, nullptr, 2749 &previousEventState); 2750 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2751 } 2752 2753 TEST(PlatformEventMessage, testGoodNumericSensorEventDataDecodeRequest) 2754 { 2755 std::array<uint8_t, PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_MAX_DATA_LENGTH> 2756 eventDataArr{}; 2757 struct pldm_sensor_event_numeric_sensor_state* sensorData = 2758 (struct pldm_sensor_event_numeric_sensor_state*)eventDataArr.data(); 2759 2760 size_t sensorDataLength = 2761 PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_32BIT_DATA_LENGTH; 2762 uint8_t eventState = PLDM_SENSOR_SHUTTINGDOWN; 2763 uint8_t previousEventState = PLDM_SENSOR_INTEST; 2764 uint8_t sensorDataSize = PLDM_SENSOR_DATA_SIZE_UINT32; 2765 uint32_t presentReading = 305441741; 2766 sensorData->event_state = eventState; 2767 sensorData->previous_event_state = previousEventState; 2768 sensorData->sensor_data_size = sensorDataSize; 2769 { 2770 uint32_t presentReadingLE = htole32(presentReading); 2771 memcpy(&sensorData->present_reading, &presentReadingLE, 2772 sizeof(presentReadingLE)); 2773 } 2774 2775 uint8_t retEventState; 2776 uint8_t retPreviousEventState; 2777 uint8_t retSensorDataSize; 2778 uint32_t retPresentReading; 2779 2780 auto rc = decode_numeric_sensor_data( 2781 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2782 reinterpret_cast<uint8_t*>(sensorData), sensorDataLength, 2783 &retEventState, &retPreviousEventState, &retSensorDataSize, 2784 &retPresentReading); 2785 EXPECT_EQ(rc, PLDM_SUCCESS); 2786 EXPECT_EQ(retEventState, eventState); 2787 EXPECT_EQ(retPreviousEventState, previousEventState); 2788 EXPECT_EQ(retSensorDataSize, sensorDataSize); 2789 EXPECT_EQ(retPresentReading, presentReading); 2790 2791 int16_t presentReadingNew = -31432; 2792 { 2793 int16_t presentReadingNewLE = htole16(presentReadingNew); 2794 memcpy(&sensorData->present_reading, &presentReadingNewLE, 2795 sizeof(presentReadingNewLE)); 2796 } 2797 sensorDataSize = PLDM_SENSOR_DATA_SIZE_SINT16; 2798 sensorData->sensor_data_size = sensorDataSize; 2799 sensorDataLength = PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_16BIT_DATA_LENGTH; 2800 2801 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2802 rc = decode_numeric_sensor_data(reinterpret_cast<uint8_t*>(sensorData), 2803 sensorDataLength, &retEventState, 2804 &retPreviousEventState, &retSensorDataSize, 2805 &retPresentReading); 2806 EXPECT_EQ(rc, PLDM_SUCCESS); 2807 EXPECT_EQ(retEventState, eventState); 2808 EXPECT_EQ(retPreviousEventState, previousEventState); 2809 EXPECT_EQ(retSensorDataSize, sensorDataSize); 2810 EXPECT_EQ(static_cast<int16_t>(retPresentReading), presentReadingNew); 2811 } 2812 2813 TEST(PlatformEventMessage, testBadNumericSensorEventDataDecodeRequest) 2814 { 2815 uint8_t eventState; 2816 uint8_t previousEventState; 2817 uint8_t sensorDataSize; 2818 uint32_t presentReading; 2819 size_t sensorDataLength = 2820 PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_MAX_DATA_LENGTH; 2821 auto rc = decode_numeric_sensor_data(NULL, sensorDataLength, &eventState, 2822 &previousEventState, &sensorDataSize, 2823 &presentReading); 2824 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2825 2826 std::array<uint8_t, PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_MAX_DATA_LENGTH> 2827 sensorData{}; 2828 rc = decode_numeric_sensor_data( 2829 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2830 reinterpret_cast<uint8_t*>(sensorData.data()), sensorDataLength - 1, 2831 &eventState, &previousEventState, &sensorDataSize, &presentReading); 2832 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 2833 2834 struct pldm_sensor_event_numeric_sensor_state* numericSensorData = 2835 (struct pldm_sensor_event_numeric_sensor_state*)sensorData.data(); 2836 numericSensorData->sensor_data_size = PLDM_SENSOR_DATA_SIZE_UINT8; 2837 rc = decode_numeric_sensor_data( 2838 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2839 reinterpret_cast<uint8_t*>(sensorData.data()), sensorDataLength, 2840 &eventState, &previousEventState, &sensorDataSize, &presentReading); 2841 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 2842 2843 numericSensorData->sensor_data_size = PLDM_SENSOR_DATA_SIZE_UINT16; 2844 rc = decode_numeric_sensor_data( 2845 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2846 reinterpret_cast<uint8_t*>(sensorData.data()), sensorDataLength, 2847 &eventState, &previousEventState, &sensorDataSize, &presentReading); 2848 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 2849 } 2850 2851 TEST(GetNumericEffecterValue, testGoodEncodeRequest) 2852 { 2853 std::vector<uint8_t> requestMsg(hdrSize + 2854 PLDM_GET_NUMERIC_EFFECTER_VALUE_REQ_BYTES); 2855 2856 uint16_t effecter_id = 0xab01; 2857 2858 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2859 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 2860 2861 auto rc = encode_get_numeric_effecter_value_req(0, effecter_id, request); 2862 2863 struct pldm_get_numeric_effecter_value_req* req = 2864 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2865 reinterpret_cast<struct pldm_get_numeric_effecter_value_req*>( 2866 request->payload); 2867 2868 EXPECT_EQ(rc, PLDM_SUCCESS); 2869 EXPECT_EQ(effecter_id, le16toh(req->effecter_id)); 2870 } 2871 2872 TEST(GetNumericEffecterValue, testBadEncodeRequest) 2873 { 2874 std::vector<uint8_t> requestMsg( 2875 hdrSize + PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES); 2876 2877 auto rc = encode_get_numeric_effecter_value_req(0, 0, nullptr); 2878 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2879 } 2880 2881 TEST(GetNumericEffecterValue, testGoodDecodeRequest) 2882 { 2883 std::array<uint8_t, hdrSize + PLDM_GET_NUMERIC_EFFECTER_VALUE_REQ_BYTES> 2884 requestMsg{}; 2885 2886 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2887 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 2888 struct pldm_get_numeric_effecter_value_req* req = 2889 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2890 reinterpret_cast<struct pldm_get_numeric_effecter_value_req*>( 2891 request->payload); 2892 2893 uint16_t effecter_id = 0x12ab; 2894 req->effecter_id = htole16(effecter_id); 2895 2896 uint16_t reteffecter_id; 2897 2898 auto rc = decode_get_numeric_effecter_value_req( 2899 request, requestMsg.size() - hdrSize, &reteffecter_id); 2900 2901 EXPECT_EQ(rc, PLDM_SUCCESS); 2902 EXPECT_EQ(effecter_id, reteffecter_id); 2903 } 2904 2905 TEST(GetNumericEffecterValue, testBadDecodeRequest) 2906 { 2907 std::array<uint8_t, hdrSize + PLDM_GET_NUMERIC_EFFECTER_VALUE_REQ_BYTES> 2908 requestMsg{}; 2909 2910 auto rc = decode_get_numeric_effecter_value_req( 2911 nullptr, requestMsg.size() - hdrSize, nullptr); 2912 2913 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2914 2915 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2916 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 2917 struct pldm_set_numeric_effecter_value_req* req = 2918 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2919 reinterpret_cast<struct pldm_set_numeric_effecter_value_req*>( 2920 request->payload); 2921 2922 uint16_t effecter_id = 0x1a; 2923 req->effecter_id = htole16(effecter_id); 2924 uint16_t reteffecter_id; 2925 2926 rc = decode_get_numeric_effecter_value_req( 2927 request, requestMsg.size() - hdrSize - 1, &reteffecter_id); 2928 2929 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 2930 } 2931 2932 TEST(GetNumericEffecterValue, testGoodEncodeResponse) 2933 { 2934 uint8_t completionCode = 0; 2935 uint8_t effecter_dataSize = PLDM_EFFECTER_DATA_SIZE_UINT32; 2936 uint8_t effecter_operState = EFFECTER_OPER_STATE_ENABLED_NOUPDATEPENDING; 2937 uint32_t pendingValue = 0x12345678; 2938 uint32_t presentValue = 0xabcdef11; 2939 uint32_t val_pending; 2940 uint32_t val_present; 2941 2942 std::array<uint8_t, 2943 hdrSize + PLDM_GET_NUMERIC_EFFECTER_VALUE_MIN_RESP_BYTES + 6> 2944 responseMsg{}; 2945 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2946 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 2947 2948 auto rc = encode_get_numeric_effecter_value_resp( 2949 0, completionCode, effecter_dataSize, effecter_operState, 2950 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2951 reinterpret_cast<uint8_t*>(&pendingValue), 2952 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2953 reinterpret_cast<uint8_t*>(&presentValue), response, 2954 responseMsg.size() - hdrSize); 2955 2956 struct pldm_get_numeric_effecter_value_resp* resp = 2957 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2958 reinterpret_cast<struct pldm_get_numeric_effecter_value_resp*>( 2959 response->payload); 2960 2961 memcpy(&val_pending, &resp->pending_and_present_values[0], 2962 sizeof(val_pending)); 2963 val_pending = le32toh(val_pending); 2964 memcpy(&val_present, &resp->pending_and_present_values[4], 2965 sizeof(val_present)); 2966 val_present = le32toh(val_present); 2967 2968 EXPECT_EQ(rc, PLDM_SUCCESS); 2969 EXPECT_EQ(effecter_dataSize, resp->effecter_data_size); 2970 EXPECT_EQ(effecter_operState, resp->effecter_oper_state); 2971 EXPECT_EQ(pendingValue, val_pending); 2972 EXPECT_EQ(presentValue, val_present); 2973 } 2974 2975 TEST(GetNumericEffecterValue, testBadEncodeResponse) 2976 { 2977 std::array<uint8_t, 2978 hdrSize + PLDM_GET_NUMERIC_EFFECTER_VALUE_MIN_RESP_BYTES + 2> 2979 responseMsg{}; 2980 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2981 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 2982 2983 uint8_t pendingValue = 0x01; 2984 uint8_t presentValue = 0x02; 2985 2986 auto rc = encode_get_numeric_effecter_value_resp( 2987 0, PLDM_SUCCESS, 0, 0, nullptr, nullptr, nullptr, 2988 responseMsg.size() - hdrSize); 2989 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2990 2991 rc = encode_get_numeric_effecter_value_resp( 2992 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2993 0, PLDM_SUCCESS, 6, 9, reinterpret_cast<uint8_t*>(&pendingValue), 2994 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 2995 reinterpret_cast<uint8_t*>(&presentValue), response, 2996 responseMsg.size() - hdrSize); 2997 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 2998 2999 uint8_t effecter_dataSize = PLDM_EFFECTER_DATA_SIZE_UINT8; 3000 uint8_t effecter_operState = EFFECTER_OPER_STATE_FAILED; 3001 3002 rc = encode_get_numeric_effecter_value_resp( 3003 0, PLDM_SUCCESS, effecter_dataSize, effecter_operState, 3004 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3005 reinterpret_cast<uint8_t*>(&pendingValue), 3006 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3007 reinterpret_cast<uint8_t*>(&presentValue), response, 3008 responseMsg.size() - hdrSize); 3009 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 3010 } 3011 3012 TEST(GetNumericEffecterValue, testGoodDecodeResponse) 3013 { 3014 std::array<uint8_t, 3015 hdrSize + PLDM_GET_NUMERIC_EFFECTER_VALUE_MIN_RESP_BYTES + 2> 3016 responseMsg{}; 3017 3018 uint8_t completionCode = 0; 3019 uint8_t effecter_dataSize = PLDM_EFFECTER_DATA_SIZE_UINT16; 3020 uint8_t effecter_operState = EFFECTER_OPER_STATE_ENABLED_NOUPDATEPENDING; 3021 uint16_t pendingValue = 0x4321; 3022 uint16_t presentValue = 0xdcba; 3023 3024 uint8_t retcompletionCode; 3025 uint8_t reteffecter_dataSize; 3026 uint8_t reteffecter_operState; 3027 uint8_t retpendingValue[2]; 3028 uint8_t retpresentValue[2]; 3029 3030 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3031 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 3032 struct pldm_get_numeric_effecter_value_resp* resp = 3033 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3034 reinterpret_cast<struct pldm_get_numeric_effecter_value_resp*>( 3035 response->payload); 3036 3037 resp->completion_code = completionCode; 3038 resp->effecter_data_size = effecter_dataSize; 3039 resp->effecter_oper_state = effecter_operState; 3040 3041 uint16_t pendingValue_le = htole16(pendingValue); 3042 memcpy(resp->pending_and_present_values, &pendingValue_le, 3043 sizeof(pendingValue_le)); 3044 uint16_t presentValue_le = htole16(presentValue); 3045 memcpy(&resp->pending_and_present_values[2], &presentValue_le, 3046 sizeof(presentValue_le)); 3047 3048 auto rc = decode_get_numeric_effecter_value_resp( 3049 response, responseMsg.size() - hdrSize, &retcompletionCode, 3050 &reteffecter_dataSize, &reteffecter_operState, retpendingValue, 3051 retpresentValue); 3052 3053 EXPECT_EQ(rc, PLDM_SUCCESS); 3054 EXPECT_EQ(completionCode, retcompletionCode); 3055 EXPECT_EQ(effecter_dataSize, reteffecter_dataSize); 3056 EXPECT_EQ(effecter_operState, reteffecter_operState); 3057 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3058 EXPECT_EQ(pendingValue, *(reinterpret_cast<uint16_t*>(retpendingValue))); 3059 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3060 EXPECT_EQ(presentValue, *(reinterpret_cast<uint16_t*>(retpresentValue))); 3061 } 3062 3063 TEST(GetNumericEffecterValue, testBadDecodeResponse) 3064 { 3065 std::array<uint8_t, 3066 hdrSize + PLDM_GET_NUMERIC_EFFECTER_VALUE_MIN_RESP_BYTES + 6> 3067 responseMsg{}; 3068 3069 auto rc = decode_get_numeric_effecter_value_resp( 3070 nullptr, responseMsg.size() - hdrSize, nullptr, nullptr, nullptr, 3071 nullptr, nullptr); 3072 3073 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 3074 3075 uint8_t completionCode = 0; 3076 uint8_t effecter_dataSize = PLDM_EFFECTER_DATA_SIZE_SINT16; 3077 uint8_t effecter_operState = EFFECTER_OPER_STATE_DISABLED; 3078 uint16_t pendingValue = 0x5678; 3079 uint16_t presentValue = 0xcdef; 3080 3081 uint8_t retcompletionCode; 3082 uint8_t reteffecter_dataSize; 3083 uint8_t reteffecter_operState; 3084 uint8_t retpendingValue[2]; 3085 uint8_t retpresentValue[2]; 3086 3087 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3088 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 3089 struct pldm_get_numeric_effecter_value_resp* resp = 3090 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3091 reinterpret_cast<struct pldm_get_numeric_effecter_value_resp*>( 3092 response->payload); 3093 3094 resp->completion_code = completionCode; 3095 resp->effecter_data_size = effecter_dataSize; 3096 resp->effecter_oper_state = effecter_operState; 3097 3098 uint16_t pendingValue_le = htole16(pendingValue); 3099 memcpy(resp->pending_and_present_values, &pendingValue_le, 3100 sizeof(pendingValue_le)); 3101 uint16_t presentValue_le = htole16(presentValue); 3102 memcpy(&resp->pending_and_present_values[2], &presentValue_le, 3103 sizeof(presentValue_le)); 3104 3105 rc = decode_get_numeric_effecter_value_resp( 3106 response, responseMsg.size() - hdrSize, &retcompletionCode, 3107 &reteffecter_dataSize, &reteffecter_operState, retpendingValue, 3108 retpresentValue); 3109 3110 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 3111 } 3112 3113 TEST(PldmPDRRepositoryChgEventEvent, testGoodDecodeRequest) 3114 { 3115 const uint8_t eventDataFormat = FORMAT_IS_PDR_HANDLES; 3116 const uint8_t numberOfChangeRecords = 2; 3117 uint8_t eventDataOperation1 = PLDM_RECORDS_DELETED; 3118 const uint8_t numberOfChangeEntries1 = 2; 3119 std::array<uint32_t, numberOfChangeEntries1> changeRecordArr1{ 3120 {0x00000000, 0x12345678}}; 3121 uint8_t eventDataOperation2 = PLDM_RECORDS_ADDED; 3122 const uint8_t numberOfChangeEntries2 = 5; 3123 std::array<uint32_t, numberOfChangeEntries2> changeRecordArr2{ 3124 {0x01234567, 0x11223344, 0x45678901, 0x21222324, 0x98765432}}; 3125 std::array<uint8_t, PLDM_PDR_REPOSITORY_CHG_EVENT_MIN_LENGTH + 3126 PLDM_PDR_REPOSITORY_CHANGE_RECORD_MIN_LENGTH * 3127 numberOfChangeRecords + 3128 (numberOfChangeEntries1 + numberOfChangeEntries2) * 3129 sizeof(uint32_t)> 3130 eventDataArr{}; 3131 3132 struct pldm_pdr_repository_chg_event_data* eventData = 3133 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3134 reinterpret_cast<struct pldm_pdr_repository_chg_event_data*>( 3135 eventDataArr.data()); 3136 eventData->event_data_format = eventDataFormat; 3137 eventData->number_of_change_records = numberOfChangeRecords; 3138 struct pldm_pdr_repository_change_record_data* changeRecord1 = 3139 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3140 reinterpret_cast<struct pldm_pdr_repository_change_record_data*>( 3141 eventData->change_records); 3142 changeRecord1->event_data_operation = eventDataOperation1; 3143 changeRecord1->number_of_change_entries = numberOfChangeEntries1; 3144 memcpy(changeRecord1->change_entry, &changeRecordArr1[0], 3145 changeRecordArr1.size() * sizeof(uint32_t)); 3146 struct pldm_pdr_repository_change_record_data* changeRecord2 = 3147 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3148 reinterpret_cast<struct pldm_pdr_repository_change_record_data*>( 3149 eventData->change_records + 3150 PLDM_PDR_REPOSITORY_CHANGE_RECORD_MIN_LENGTH + 3151 (changeRecordArr1.size() * sizeof(uint32_t))); 3152 changeRecord2->event_data_operation = eventDataOperation2; 3153 changeRecord2->number_of_change_entries = numberOfChangeEntries2; 3154 memcpy(changeRecord2->change_entry, &changeRecordArr2[0], 3155 changeRecordArr2.size() * sizeof(uint32_t)); 3156 3157 uint8_t retEventDataFormat{}; 3158 uint8_t retNumberOfChangeRecords{}; 3159 size_t retChangeRecordDataOffset{0}; 3160 auto rc = decode_pldm_pdr_repository_chg_event_data( 3161 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3162 reinterpret_cast<const uint8_t*>(eventData), eventDataArr.size(), 3163 &retEventDataFormat, &retNumberOfChangeRecords, 3164 &retChangeRecordDataOffset); 3165 EXPECT_EQ(rc, PLDM_SUCCESS); 3166 EXPECT_EQ(retEventDataFormat, FORMAT_IS_PDR_HANDLES); 3167 EXPECT_EQ(retNumberOfChangeRecords, numberOfChangeRecords); 3168 3169 const uint8_t* changeRecordData = 3170 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3171 reinterpret_cast<const uint8_t*>(changeRecord1); 3172 size_t changeRecordDataSize = 3173 eventDataArr.size() - PLDM_PDR_REPOSITORY_CHG_EVENT_MIN_LENGTH; 3174 uint8_t retEventDataOperation; 3175 uint8_t retNumberOfChangeEntries; 3176 size_t retChangeEntryDataOffset; 3177 3178 rc = decode_pldm_pdr_repository_change_record_data( 3179 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3180 reinterpret_cast<const uint8_t*>(changeRecordData), 3181 changeRecordDataSize, &retEventDataOperation, &retNumberOfChangeEntries, 3182 &retChangeEntryDataOffset); 3183 EXPECT_EQ(rc, PLDM_SUCCESS); 3184 EXPECT_EQ(retEventDataOperation, eventDataOperation1); 3185 EXPECT_EQ(retNumberOfChangeEntries, numberOfChangeEntries1); 3186 changeRecordData += retChangeEntryDataOffset; 3187 EXPECT_EQ(0, memcmp(changeRecordData, &changeRecordArr1[0], 3188 sizeof(uint32_t) * retNumberOfChangeEntries)); 3189 3190 changeRecordData += sizeof(uint32_t) * retNumberOfChangeEntries; 3191 changeRecordDataSize -= sizeof(uint32_t) * retNumberOfChangeEntries - 3192 PLDM_PDR_REPOSITORY_CHANGE_RECORD_MIN_LENGTH; 3193 rc = decode_pldm_pdr_repository_change_record_data( 3194 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3195 reinterpret_cast<const uint8_t*>(changeRecordData), 3196 changeRecordDataSize, &retEventDataOperation, &retNumberOfChangeEntries, 3197 &retChangeEntryDataOffset); 3198 EXPECT_EQ(rc, PLDM_SUCCESS); 3199 EXPECT_EQ(retEventDataOperation, eventDataOperation2); 3200 EXPECT_EQ(retNumberOfChangeEntries, numberOfChangeEntries2); 3201 changeRecordData += retChangeEntryDataOffset; 3202 EXPECT_EQ(0, memcmp(changeRecordData, &changeRecordArr2[0], 3203 sizeof(uint32_t) * retNumberOfChangeEntries)); 3204 } 3205 3206 TEST(PldmPDRRepositoryChgEventEvent, testBadDecodeRequest) 3207 { 3208 uint8_t eventDataFormat{}; 3209 uint8_t numberOfChangeRecords{}; 3210 size_t changeRecordDataOffset{}; 3211 auto rc = decode_pldm_pdr_repository_chg_event_data( 3212 NULL, 0, &eventDataFormat, &numberOfChangeRecords, 3213 &changeRecordDataOffset); 3214 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 3215 3216 std::array<uint8_t, 2> eventData{}; 3217 rc = decode_pldm_pdr_repository_chg_event_data( 3218 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3219 reinterpret_cast<const uint8_t*>(eventData.data()), 0, &eventDataFormat, 3220 &numberOfChangeRecords, &changeRecordDataOffset); 3221 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 3222 3223 uint8_t eventDataOperation{}; 3224 uint8_t numberOfChangeEntries{}; 3225 size_t changeEntryDataOffset{}; 3226 rc = decode_pldm_pdr_repository_change_record_data( 3227 NULL, 0, &eventDataOperation, &numberOfChangeEntries, 3228 &changeEntryDataOffset); 3229 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 3230 3231 std::array<uint8_t, 2> changeRecord{}; 3232 rc = decode_pldm_pdr_repository_change_record_data( 3233 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3234 reinterpret_cast<const uint8_t*>(changeRecord.data()), 0, 3235 &eventDataOperation, &numberOfChangeEntries, &changeEntryDataOffset); 3236 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 3237 } 3238 3239 TEST(GetSensorReading, testGoodEncodeRequest) 3240 { 3241 std::array<uint8_t, hdrSize + PLDM_GET_SENSOR_READING_REQ_BYTES> 3242 requestMsg{}; 3243 3244 uint16_t sensorId = 0x1234; 3245 bool8_t rearmEventState = 0x01; 3246 3247 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3248 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 3249 auto rc = 3250 encode_get_sensor_reading_req(0, sensorId, rearmEventState, request); 3251 3252 struct pldm_get_sensor_reading_req* req = 3253 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3254 reinterpret_cast<struct pldm_get_sensor_reading_req*>(request->payload); 3255 3256 EXPECT_EQ(rc, PLDM_SUCCESS); 3257 EXPECT_EQ(sensorId, le16toh(req->sensor_id)); 3258 EXPECT_EQ(rearmEventState, req->rearm_event_state); 3259 } 3260 3261 TEST(GetSensorReading, testBadEncodeRequest) 3262 { 3263 auto rc = encode_get_sensor_reading_req(0, 0, 0, nullptr); 3264 3265 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 3266 } 3267 3268 TEST(GetSensorReading, testGoodDecodeRequest) 3269 { 3270 std::array<uint8_t, hdrSize + PLDM_GET_SENSOR_READING_REQ_BYTES> 3271 requestMsg{}; 3272 3273 uint16_t sensorId = 0xabcd; 3274 bool8_t rearmEventState = 0xa; 3275 3276 uint16_t retsensorId; 3277 bool8_t retrearmEventState; 3278 3279 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3280 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 3281 3282 struct pldm_get_sensor_reading_req* req = 3283 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3284 reinterpret_cast<struct pldm_get_sensor_reading_req*>(request->payload); 3285 3286 req->sensor_id = htole16(sensorId); 3287 req->rearm_event_state = rearmEventState; 3288 3289 auto rc = 3290 decode_get_sensor_reading_req(request, requestMsg.size() - hdrSize, 3291 &retsensorId, &retrearmEventState); 3292 3293 EXPECT_EQ(rc, PLDM_SUCCESS); 3294 EXPECT_EQ(sensorId, retsensorId); 3295 EXPECT_EQ(rearmEventState, retrearmEventState); 3296 } 3297 3298 TEST(GetSensorReading, testBadDecodeRequest) 3299 { 3300 std::array<uint8_t, hdrSize + PLDM_GET_SENSOR_READING_REQ_BYTES> 3301 requestMsg{}; 3302 3303 auto rc = decode_get_sensor_reading_req( 3304 nullptr, requestMsg.size() - hdrSize, nullptr, nullptr); 3305 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 3306 3307 uint16_t sensorId = 0xabcd; 3308 bool8_t rearmEventState = 0xa; 3309 3310 uint16_t retsensorId; 3311 bool8_t retrearmEventState; 3312 3313 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3314 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 3315 3316 struct pldm_get_sensor_reading_req* req = 3317 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3318 reinterpret_cast<struct pldm_get_sensor_reading_req*>(request->payload); 3319 3320 req->sensor_id = htole16(sensorId); 3321 req->rearm_event_state = rearmEventState; 3322 3323 rc = decode_get_sensor_reading_req(request, requestMsg.size() - hdrSize - 1, 3324 &retsensorId, &retrearmEventState); 3325 3326 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 3327 } 3328 3329 TEST(GetSensorReading, testGoodEncodeResponse) 3330 { 3331 std::array<uint8_t, hdrSize + PLDM_GET_SENSOR_READING_MIN_RESP_BYTES> 3332 responseMsg{}; 3333 3334 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3335 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 3336 3337 uint8_t completionCode = 0; 3338 uint8_t sensor_dataSize = PLDM_EFFECTER_DATA_SIZE_UINT8; 3339 uint8_t sensor_operationalState = PLDM_SENSOR_ENABLED; 3340 uint8_t sensor_event_messageEnable = PLDM_NO_EVENT_GENERATION; 3341 uint8_t presentState = PLDM_SENSOR_NORMAL; 3342 uint8_t previousState = PLDM_SENSOR_WARNING; 3343 uint8_t eventState = PLDM_SENSOR_UPPERWARNING; 3344 uint8_t presentReading = 0x21; 3345 3346 auto rc = encode_get_sensor_reading_resp( 3347 0, completionCode, sensor_dataSize, sensor_operationalState, 3348 sensor_event_messageEnable, presentState, previousState, eventState, 3349 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3350 reinterpret_cast<uint8_t*>(&presentReading), response, 3351 responseMsg.size() - hdrSize); 3352 3353 struct pldm_get_sensor_reading_resp* resp = 3354 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3355 reinterpret_cast<struct pldm_get_sensor_reading_resp*>( 3356 response->payload); 3357 3358 EXPECT_EQ(rc, PLDM_SUCCESS); 3359 EXPECT_EQ(completionCode, resp->completion_code); 3360 EXPECT_EQ(sensor_dataSize, resp->sensor_data_size); 3361 EXPECT_EQ(sensor_operationalState, resp->sensor_operational_state); 3362 EXPECT_EQ(sensor_event_messageEnable, resp->sensor_event_message_enable); 3363 EXPECT_EQ(presentState, resp->present_state); 3364 EXPECT_EQ(previousState, resp->previous_state); 3365 EXPECT_EQ(eventState, resp->event_state); 3366 EXPECT_EQ(presentReading, 3367 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3368 *(reinterpret_cast<uint8_t*>(&resp->present_reading[0]))); 3369 } 3370 3371 TEST(GetSensorReading, testBadEncodeResponse) 3372 { 3373 std::array<uint8_t, hdrSize + PLDM_GET_SENSOR_READING_MIN_RESP_BYTES + 3> 3374 responseMsg{}; 3375 3376 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3377 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 3378 3379 uint8_t presentReading = 0x1; 3380 3381 auto rc = encode_get_sensor_reading_resp(0, PLDM_SUCCESS, 0, 0, 0, 0, 0, 0, 3382 nullptr, nullptr, 3383 responseMsg.size() - hdrSize); 3384 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 3385 3386 rc = encode_get_sensor_reading_resp( 3387 0, PLDM_SUCCESS, 6, 1, 1, 1, 1, 1, 3388 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3389 reinterpret_cast<uint8_t*>(&presentReading), response, 3390 responseMsg.size() - hdrSize); 3391 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 3392 3393 uint8_t sensor_dataSize = PLDM_EFFECTER_DATA_SIZE_UINT8; 3394 3395 rc = encode_get_sensor_reading_resp( 3396 0, PLDM_SUCCESS, sensor_dataSize, 1, 1, 1, 1, 1, 3397 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3398 reinterpret_cast<uint8_t*>(&presentReading), response, 3399 responseMsg.size() - hdrSize); 3400 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 3401 } 3402 3403 TEST(GetSensorReading, testGoodDecodeResponse) 3404 { 3405 std::array<uint8_t, hdrSize + PLDM_GET_SENSOR_READING_MIN_RESP_BYTES + 3> 3406 responseMsg{}; 3407 3408 uint8_t completionCode = 0; 3409 uint8_t sensor_dataSize = PLDM_EFFECTER_DATA_SIZE_UINT32; 3410 uint8_t sensor_operationalState = PLDM_SENSOR_STATUSUNKOWN; 3411 uint8_t sensor_event_messageEnable = PLDM_EVENTS_ENABLED; 3412 uint8_t presentState = PLDM_SENSOR_CRITICAL; 3413 uint8_t previousState = PLDM_SENSOR_UPPERCRITICAL; 3414 uint8_t eventState = PLDM_SENSOR_WARNING; 3415 uint32_t presentReading = 0xabcdef11; 3416 3417 uint8_t retcompletionCode; 3418 uint8_t retsensor_dataSize = PLDM_SENSOR_DATA_SIZE_UINT32; 3419 uint8_t retsensor_operationalState; 3420 uint8_t retsensor_event_messageEnable; 3421 uint8_t retpresentState; 3422 uint8_t retpreviousState; 3423 uint8_t reteventState; 3424 uint8_t retpresentReading[4]; 3425 3426 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3427 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 3428 struct pldm_get_sensor_reading_resp* resp = 3429 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3430 reinterpret_cast<struct pldm_get_sensor_reading_resp*>( 3431 response->payload); 3432 3433 resp->completion_code = completionCode; 3434 resp->sensor_data_size = sensor_dataSize; 3435 resp->sensor_operational_state = sensor_operationalState; 3436 resp->sensor_event_message_enable = sensor_event_messageEnable; 3437 resp->present_state = presentState; 3438 resp->previous_state = previousState; 3439 resp->event_state = eventState; 3440 3441 uint32_t presentReading_le = htole32(presentReading); 3442 memcpy(resp->present_reading, &presentReading_le, 3443 sizeof(presentReading_le)); 3444 3445 auto rc = decode_get_sensor_reading_resp( 3446 response, responseMsg.size() - hdrSize, &retcompletionCode, 3447 &retsensor_dataSize, &retsensor_operationalState, 3448 &retsensor_event_messageEnable, &retpresentState, &retpreviousState, 3449 &reteventState, retpresentReading); 3450 3451 EXPECT_EQ(rc, PLDM_SUCCESS); 3452 EXPECT_EQ(completionCode, retcompletionCode); 3453 EXPECT_EQ(sensor_dataSize, retsensor_dataSize); 3454 EXPECT_EQ(sensor_operationalState, retsensor_operationalState); 3455 EXPECT_EQ(sensor_event_messageEnable, retsensor_event_messageEnable); 3456 EXPECT_EQ(presentState, retpresentState); 3457 EXPECT_EQ(previousState, retpreviousState); 3458 EXPECT_EQ(eventState, reteventState); 3459 EXPECT_EQ(presentReading, 3460 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3461 *(reinterpret_cast<uint32_t*>(retpresentReading))); 3462 } 3463 3464 TEST(GetSensorReading, testBadDecodeResponse) 3465 { 3466 std::array<uint8_t, hdrSize + PLDM_GET_SENSOR_READING_MIN_RESP_BYTES + 1> 3467 responseMsg{}; 3468 3469 auto rc = decode_get_sensor_reading_resp( 3470 nullptr, responseMsg.size() - hdrSize, nullptr, nullptr, nullptr, 3471 nullptr, nullptr, nullptr, nullptr, nullptr); 3472 3473 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 3474 3475 uint8_t completionCode = 0; 3476 uint8_t sensor_dataSize = PLDM_EFFECTER_DATA_SIZE_UINT8; 3477 uint8_t sensor_operationalState = PLDM_SENSOR_INTEST; 3478 uint8_t sensor_event_messageEnable = PLDM_EVENTS_DISABLED; 3479 uint8_t presentState = PLDM_SENSOR_FATAL; 3480 uint8_t previousState = PLDM_SENSOR_UPPERFATAL; 3481 uint8_t eventState = PLDM_SENSOR_WARNING; 3482 uint8_t presentReading = 0xa; 3483 3484 uint8_t retcompletionCode; 3485 uint8_t retsensor_dataSize = PLDM_SENSOR_DATA_SIZE_SINT16; 3486 uint8_t retsensor_operationalState; 3487 uint8_t retsensor_event_messageEnable; 3488 uint8_t retpresent_state; 3489 uint8_t retprevious_state; 3490 uint8_t retevent_state; 3491 uint8_t retpresentReading; 3492 3493 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3494 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 3495 struct pldm_get_sensor_reading_resp* resp = 3496 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3497 reinterpret_cast<struct pldm_get_sensor_reading_resp*>( 3498 response->payload); 3499 3500 resp->completion_code = completionCode; 3501 resp->sensor_data_size = sensor_dataSize; 3502 resp->sensor_operational_state = sensor_operationalState; 3503 resp->sensor_event_message_enable = sensor_event_messageEnable; 3504 resp->present_state = presentState; 3505 resp->previous_state = previousState; 3506 resp->event_state = eventState; 3507 resp->present_reading[0] = presentReading; 3508 3509 rc = decode_get_sensor_reading_resp( 3510 response, responseMsg.size() - hdrSize, &retcompletionCode, 3511 &retsensor_dataSize, &retsensor_operationalState, 3512 &retsensor_event_messageEnable, &retpresent_state, &retprevious_state, 3513 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3514 &retevent_state, reinterpret_cast<uint8_t*>(&retpresentReading)); 3515 3516 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 3517 } 3518 3519 TEST(SetEventReceiver, testGoodEncodeRequest) 3520 { 3521 uint8_t eventMessageGlobalEnable = 3522 PLDM_EVENT_MESSAGE_GLOBAL_ENABLE_ASYNC_KEEP_ALIVE; 3523 uint8_t transportProtocolType = PLDM_TRANSPORT_PROTOCOL_TYPE_MCTP; 3524 uint8_t eventReceiverAddressInfo = 0x08; 3525 uint16_t heartbeatTimer = 0x78; 3526 3527 std::vector<uint8_t> requestMsg(hdrSize + 3528 PLDM_SET_EVENT_RECEIVER_REQ_BYTES); 3529 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3530 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 3531 3532 auto rc = encode_set_event_receiver_req( 3533 0, eventMessageGlobalEnable, transportProtocolType, 3534 eventReceiverAddressInfo, heartbeatTimer, request); 3535 3536 EXPECT_EQ(rc, PLDM_SUCCESS); 3537 struct pldm_set_event_receiver_req* req = 3538 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3539 reinterpret_cast<struct pldm_set_event_receiver_req*>(request->payload); 3540 EXPECT_EQ(eventMessageGlobalEnable, req->event_message_global_enable); 3541 EXPECT_EQ(transportProtocolType, req->transport_protocol_type); 3542 EXPECT_EQ(eventReceiverAddressInfo, req->event_receiver_address_info); 3543 EXPECT_EQ(heartbeatTimer, le16toh(req->heartbeat_timer)); 3544 } 3545 3546 TEST(SetEventReceiver, testBadEncodeRequest) 3547 { 3548 uint8_t eventMessageGlobalEnable = 3549 PLDM_EVENT_MESSAGE_GLOBAL_ENABLE_ASYNC_KEEP_ALIVE; 3550 uint8_t transportProtocolType = PLDM_TRANSPORT_PROTOCOL_TYPE_MCTP; 3551 uint8_t eventReceiverAddressInfo = 0x08; 3552 uint16_t heartbeatTimer = 0; 3553 3554 std::vector<uint8_t> requestMsg(hdrSize + 3555 PLDM_SET_EVENT_RECEIVER_REQ_BYTES); 3556 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3557 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 3558 3559 auto rc = encode_set_event_receiver_req( 3560 0, eventMessageGlobalEnable, transportProtocolType, 3561 eventReceiverAddressInfo, heartbeatTimer, request); 3562 3563 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 3564 } 3565 3566 TEST(SetEventReceiver, testGoodDecodeResponse) 3567 { 3568 std::array<uint8_t, hdrSize + PLDM_SET_EVENT_RECEIVER_RESP_BYTES> 3569 responseMsg{}; 3570 3571 uint8_t retcompletion_code = 0; 3572 responseMsg[hdrSize] = PLDM_SUCCESS; 3573 3574 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3575 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 3576 auto rc = decode_set_event_receiver_resp( 3577 response, responseMsg.size() - sizeof(pldm_msg_hdr), 3578 &retcompletion_code); 3579 3580 EXPECT_EQ(rc, PLDM_SUCCESS); 3581 EXPECT_EQ(PLDM_SUCCESS, retcompletion_code); 3582 } 3583 3584 TEST(SetEventReceiver, testBadDecodeResponse) 3585 { 3586 std::array<uint8_t, hdrSize + PLDM_SET_EVENT_RECEIVER_RESP_BYTES> 3587 responseMsg{}; 3588 uint8_t retcompletion_code = 0; 3589 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3590 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 3591 3592 auto rc = decode_set_event_receiver_resp( 3593 response, responseMsg.size() - sizeof(pldm_msg_hdr), NULL); 3594 3595 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 3596 3597 rc = decode_set_event_receiver_resp( 3598 nullptr, responseMsg.size() - sizeof(pldm_msg_hdr), 3599 &retcompletion_code); 3600 3601 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 3602 } 3603 3604 TEST(SetEventReceiver, testGoodEncodeResponse) 3605 { 3606 std::array<uint8_t, 3607 sizeof(pldm_msg_hdr) + PLDM_SET_EVENT_RECEIVER_RESP_BYTES> 3608 responseMsg{}; 3609 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3610 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 3611 uint8_t completionCode = 0; 3612 3613 auto rc = encode_set_event_receiver_resp(0, PLDM_SUCCESS, response); 3614 3615 EXPECT_EQ(rc, PLDM_SUCCESS); 3616 EXPECT_EQ(completionCode, response->payload[0]); 3617 } 3618 3619 TEST(SetEventReceiver, testBadEncodeResponse) 3620 { 3621 auto rc = encode_set_event_receiver_resp(0, PLDM_SUCCESS, NULL); 3622 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 3623 } 3624 3625 TEST(SetEventReceiver, testGoodDecodeRequest) 3626 { 3627 3628 std::array<uint8_t, hdrSize + PLDM_SET_EVENT_RECEIVER_REQ_BYTES> 3629 requestMsg{}; 3630 3631 uint8_t eventMessageGlobalEnable = 3632 PLDM_EVENT_MESSAGE_GLOBAL_ENABLE_ASYNC_KEEP_ALIVE; 3633 uint8_t transportProtocolType = PLDM_TRANSPORT_PROTOCOL_TYPE_MCTP; 3634 uint8_t eventReceiverAddressInfo = 0x08; 3635 uint16_t heartbeatTimer = 0x78; 3636 3637 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3638 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 3639 struct pldm_set_event_receiver_req* req = 3640 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3641 reinterpret_cast<struct pldm_set_event_receiver_req*>(request->payload); 3642 3643 req->event_message_global_enable = eventMessageGlobalEnable; 3644 req->transport_protocol_type = transportProtocolType; 3645 req->event_receiver_address_info = eventReceiverAddressInfo; 3646 req->heartbeat_timer = htole16(heartbeatTimer); 3647 3648 uint8_t reteventMessageGlobalEnable; 3649 uint8_t rettransportProtocolType; 3650 uint8_t reteventReceiverAddressInfo; 3651 uint16_t retheartbeatTimer; 3652 auto rc = decode_set_event_receiver_req( 3653 request, requestMsg.size() - hdrSize, &reteventMessageGlobalEnable, 3654 &rettransportProtocolType, &reteventReceiverAddressInfo, 3655 &retheartbeatTimer); 3656 3657 EXPECT_EQ(rc, PLDM_SUCCESS); 3658 EXPECT_EQ(eventMessageGlobalEnable, reteventMessageGlobalEnable); 3659 EXPECT_EQ(transportProtocolType, rettransportProtocolType); 3660 EXPECT_EQ(eventReceiverAddressInfo, reteventReceiverAddressInfo); 3661 EXPECT_EQ(heartbeatTimer, retheartbeatTimer); 3662 } 3663 3664 TEST(SetEventReceiver, testBadDecodeRequest) 3665 { 3666 std::array<uint8_t, hdrSize + PLDM_SET_EVENT_RECEIVER_REQ_BYTES> 3667 requestMsg{}; 3668 3669 auto rc = decode_set_event_receiver_req(NULL, requestMsg.size() - hdrSize, 3670 NULL, NULL, NULL, NULL); 3671 EXPECT_EQ(rc, PLDM_ERROR_INVALID_DATA); 3672 3673 uint8_t eventMessageGlobalEnable = 3674 PLDM_EVENT_MESSAGE_GLOBAL_ENABLE_ASYNC_KEEP_ALIVE; 3675 uint8_t transportProtocolType = PLDM_TRANSPORT_PROTOCOL_TYPE_MCTP; 3676 uint8_t eventReceiverAddressInfo = 0x08; 3677 uint16_t heartbeatTimer = 0x78; 3678 3679 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3680 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 3681 struct pldm_set_event_receiver_req* req = 3682 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 3683 reinterpret_cast<struct pldm_set_event_receiver_req*>(request->payload); 3684 3685 req->event_message_global_enable = eventMessageGlobalEnable; 3686 req->transport_protocol_type = transportProtocolType; 3687 req->event_receiver_address_info = eventReceiverAddressInfo; 3688 req->heartbeat_timer = htole16(heartbeatTimer); 3689 3690 uint8_t reteventMessageGlobalEnable; 3691 uint8_t rettransportProtocolType; 3692 uint8_t reteventReceiverAddressInfo; 3693 uint16_t retheartbeatTimer; 3694 rc = decode_set_event_receiver_req( 3695 request, requestMsg.size() - hdrSize - 1, &reteventMessageGlobalEnable, 3696 &rettransportProtocolType, &reteventReceiverAddressInfo, 3697 &retheartbeatTimer); 3698 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 3699 } 3700 3701 TEST(decodeNumericSensorPdrData, Uint8Test) 3702 { 3703 std::vector<uint8_t> pdr1{ 3704 0x1, 3705 0x0, 3706 0x0, 3707 0x0, // record handle 3708 0x1, // PDRHeaderVersion 3709 PLDM_NUMERIC_SENSOR_PDR, // PDRType 3710 0x0, 3711 0x0, // recordChangeNumber 3712 PLDM_PDR_NUMERIC_SENSOR_PDR_MIN_LENGTH, 3713 0, // dataLength 3714 0, 3715 0, // PLDMTerminusHandle 3716 0x1, 3717 0x0, // sensorID=1 3718 PLDM_ENTITY_POWER_SUPPLY, 3719 0, // entityType=Power Supply(120) 3720 1, 3721 0, // entityInstanceNumber 3722 1, 3723 0, // containerID=1 3724 PLDM_NO_INIT, // sensorInit 3725 false, // sensorAuxiliaryNamesPDR 3726 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 3727 0, // unitModifier 3728 0, // rateUnit 3729 0, // baseOEMUnitHandle 3730 0, // auxUnit 3731 0, // auxUnitModifier 3732 0, // auxRateUnit 3733 0, // rel 3734 0, // auxOEMUnitHandle 3735 true, // isLinear 3736 PLDM_SENSOR_DATA_SIZE_UINT8, // sensorDataSize 3737 0, 3738 0, 3739 0xc0, 3740 0x3f, // resolution=1.5 3741 0, 3742 0, 3743 0x80, 3744 0x3f, // offset=1.0 3745 0, 3746 0, // accuracy 3747 0, // plusTolerance 3748 0, // minusTolerance 3749 3, // hysteresis = 3 3750 0, // supportedThresholds 3751 0, // thresholdAndHysteresisVolatility 3752 0, 3753 0, 3754 0x80, 3755 0x3f, // stateTransistionInterval=1.0 3756 0, 3757 0, 3758 0x80, 3759 0x3f, // updateInverval=1.0 3760 255, // maxReadable 3761 0, // minReadable 3762 PLDM_RANGE_FIELD_FORMAT_UINT8, // rangeFieldFormat 3763 0, // rangeFieldsupport 3764 50, // nominalValue = 50 3765 60, // normalMax = 60 3766 40, // normalMin = 40 3767 70, // warningHigh = 70 3768 30, // warningLow = 30 3769 80, // criticalHigh = 80 3770 20, // criticalLow = 20 3771 90, // fatalHigh = 90 3772 10 // fatalLow = 10 3773 }; 3774 3775 struct pldm_numeric_sensor_value_pdr decodedPdr; 3776 auto rc = 3777 decode_numeric_sensor_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 3778 EXPECT_EQ(PLDM_SUCCESS, rc); 3779 EXPECT_EQ(1, decodedPdr.hdr.record_handle); 3780 EXPECT_EQ(1, decodedPdr.hdr.version); 3781 EXPECT_EQ(PLDM_NUMERIC_SENSOR_PDR, decodedPdr.hdr.type); 3782 EXPECT_EQ(0, decodedPdr.hdr.record_change_num); 3783 EXPECT_EQ(PLDM_PDR_NUMERIC_SENSOR_PDR_MIN_LENGTH, decodedPdr.hdr.length); 3784 EXPECT_EQ(1, decodedPdr.sensor_id); 3785 EXPECT_EQ(PLDM_ENTITY_POWER_SUPPLY, decodedPdr.entity_type); 3786 EXPECT_EQ(1, decodedPdr.entity_instance_num); 3787 EXPECT_EQ(1, decodedPdr.container_id); 3788 EXPECT_EQ(PLDM_NO_INIT, decodedPdr.sensor_init); 3789 EXPECT_EQ(false, decodedPdr.sensor_auxiliary_names_pdr); 3790 EXPECT_EQ(PLDM_SENSOR_UNIT_DEGRESS_C, decodedPdr.base_unit); 3791 EXPECT_EQ(0, decodedPdr.unit_modifier); 3792 EXPECT_EQ(0, decodedPdr.rate_unit); 3793 EXPECT_EQ(0, decodedPdr.base_oem_unit_handle); 3794 EXPECT_EQ(0, decodedPdr.aux_unit); 3795 EXPECT_EQ(0, decodedPdr.aux_unit_modifier); 3796 EXPECT_EQ(0, decodedPdr.aux_rate_unit); 3797 EXPECT_EQ(0, decodedPdr.rel); 3798 EXPECT_EQ(0, decodedPdr.aux_oem_unit_handle); 3799 EXPECT_EQ(true, decodedPdr.is_linear); 3800 EXPECT_EQ(PLDM_SENSOR_DATA_SIZE_UINT8, decodedPdr.sensor_data_size); 3801 EXPECT_FLOAT_EQ(1.5f, decodedPdr.resolution); 3802 EXPECT_FLOAT_EQ(1.0f, decodedPdr.offset); 3803 EXPECT_EQ(0, decodedPdr.accuracy); 3804 EXPECT_EQ(0, decodedPdr.plus_tolerance); 3805 EXPECT_EQ(0, decodedPdr.minus_tolerance); 3806 EXPECT_EQ(3, decodedPdr.hysteresis.value_u8); 3807 EXPECT_EQ(0, decodedPdr.supported_thresholds.byte); 3808 EXPECT_EQ(0, decodedPdr.threshold_and_hysteresis_volatility.byte); 3809 EXPECT_FLOAT_EQ(1.0f, decodedPdr.state_transition_interval); 3810 EXPECT_FLOAT_EQ(1.0f, decodedPdr.update_interval); 3811 EXPECT_EQ(255, decodedPdr.max_readable.value_u8); 3812 EXPECT_EQ(0, decodedPdr.min_readable.value_u8); 3813 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_UINT8, decodedPdr.range_field_format); 3814 EXPECT_EQ(0, decodedPdr.range_field_support.byte); 3815 EXPECT_EQ(50, decodedPdr.nominal_value.value_u8); 3816 EXPECT_EQ(60, decodedPdr.normal_max.value_u8); 3817 EXPECT_EQ(40, decodedPdr.normal_min.value_u8); 3818 EXPECT_EQ(70, decodedPdr.warning_high.value_u8); 3819 EXPECT_EQ(30, decodedPdr.warning_low.value_u8); 3820 EXPECT_EQ(80, decodedPdr.critical_high.value_u8); 3821 EXPECT_EQ(20, decodedPdr.critical_low.value_u8); 3822 EXPECT_EQ(90, decodedPdr.fatal_high.value_u8); 3823 EXPECT_EQ(10, decodedPdr.fatal_low.value_u8); 3824 } 3825 3826 TEST(decodeNumericSensorPdrData, Sint8Test) 3827 { 3828 std::vector<uint8_t> pdr1{ 3829 0x1, 3830 0x0, 3831 0x0, 3832 0x0, // record handle 3833 0x1, // PDRHeaderVersion 3834 PLDM_NUMERIC_SENSOR_PDR, // PDRType 3835 0x0, 3836 0x0, // recordChangeNumber 3837 PLDM_PDR_NUMERIC_SENSOR_PDR_FIXED_LENGTH + 3838 PLDM_PDR_NUMERIC_SENSOR_PDR_VARIED_SENSOR_DATA_SIZE_MIN_LENGTH + 3839 PLDM_PDR_NUMERIC_SENSOR_PDR_VARIED_RANGE_FIELD_MIN_LENGTH, 3840 0, // dataLength 3841 0, 3842 0, // PLDMTerminusHandle 3843 0x1, 3844 0x0, // sensorID=1 3845 PLDM_ENTITY_POWER_SUPPLY, 3846 0, // entityType=Power Supply(120) 3847 1, 3848 0, // entityInstanceNumber 3849 0x1, 3850 0x0, // containerID=1 3851 PLDM_NO_INIT, // sensorInit 3852 false, // sensorAuxiliaryNamesPDR 3853 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 3854 0, // unitModifier 3855 0, // rateUnit 3856 0, // baseOEMUnitHandle 3857 0, // auxUnit 3858 0, // auxUnitModifier 3859 0, // auxRateUnit 3860 0, // rel 3861 0, // auxOEMUnitHandle 3862 true, // isLinear 3863 PLDM_RANGE_FIELD_FORMAT_SINT8, // sensorDataSize 3864 0, 3865 0, 3866 0, 3867 0, // resolution 3868 0, 3869 0, 3870 0, 3871 0, // offset 3872 0, 3873 0, // accuracy 3874 0, // plusTolerance 3875 0, // minusTolerance 3876 3, // hysteresis = 3 3877 0, // supportedThresholds 3878 0, // thresholdAndHysteresisVolatility 3879 0, 3880 0, 3881 0x80, 3882 0x3f, // stateTransistionInterval=1.0 3883 0, 3884 0, 3885 0x80, 3886 0x3f, // updateInverval=1.0 3887 0x64, // maxReadable = 100 3888 0x9c, // minReadable = -100 3889 PLDM_RANGE_FIELD_FORMAT_SINT8, // rangeFieldFormat 3890 0, // rangeFieldsupport 3891 0, // nominalValue = 0 3892 5, // normalMax = 5 3893 0xfb, // normalMin = -5 3894 10, // warningHigh = 10 3895 0xf6, // warningLow = -10 3896 20, // criticalHigh = 20 3897 0xec, // criticalLow = -20 3898 30, // fatalHigh = 30 3899 0xe2 // fatalLow = -30 3900 }; 3901 3902 struct pldm_numeric_sensor_value_pdr decodedPdr; 3903 auto rc = 3904 decode_numeric_sensor_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 3905 EXPECT_EQ(PLDM_SUCCESS, rc); 3906 3907 EXPECT_EQ(PLDM_SENSOR_DATA_SIZE_SINT8, decodedPdr.sensor_data_size); 3908 EXPECT_EQ(100, decodedPdr.max_readable.value_s8); 3909 EXPECT_EQ(-100, decodedPdr.min_readable.value_s8); 3910 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_SINT8, decodedPdr.range_field_format); 3911 EXPECT_EQ(0, decodedPdr.nominal_value.value_s8); 3912 EXPECT_EQ(5, decodedPdr.normal_max.value_s8); 3913 EXPECT_EQ(-5, decodedPdr.normal_min.value_s8); 3914 EXPECT_EQ(10, decodedPdr.warning_high.value_s8); 3915 EXPECT_EQ(-10, decodedPdr.warning_low.value_s8); 3916 EXPECT_EQ(20, decodedPdr.critical_high.value_s8); 3917 EXPECT_EQ(-20, decodedPdr.critical_low.value_s8); 3918 EXPECT_EQ(30, decodedPdr.fatal_high.value_s8); 3919 EXPECT_EQ(-30, decodedPdr.fatal_low.value_s8); 3920 } 3921 3922 TEST(decodeNumericSensorPdrData, Uint16Test) 3923 { 3924 std::vector<uint8_t> pdr1{ 3925 0x1, 3926 0x0, 3927 0x0, 3928 0x0, // record handle 3929 0x1, // PDRHeaderVersion 3930 PLDM_NUMERIC_SENSOR_PDR, // PDRType 3931 0x0, 3932 0x0, // recordChangeNumber 3933 PLDM_PDR_NUMERIC_SENSOR_PDR_FIXED_LENGTH + 3934 PLDM_PDR_NUMERIC_SENSOR_PDR_VARIED_SENSOR_DATA_SIZE_MIN_LENGTH * 2 + 3935 PLDM_PDR_NUMERIC_SENSOR_PDR_VARIED_RANGE_FIELD_MIN_LENGTH * 2, 3936 0, // dataLength 3937 0, 3938 0, // PLDMTerminusHandle 3939 0x1, 3940 0x0, // sensorID=1 3941 PLDM_ENTITY_POWER_SUPPLY, 3942 0, // entityType=Power Supply(120) 3943 1, 3944 0, // entityInstanceNumber 3945 0x1, 3946 0x0, // containerID=1 3947 PLDM_NO_INIT, // sensorInit 3948 false, // sensorAuxiliaryNamesPDR 3949 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 3950 0, // unitModifier 3951 0, // rateUnit 3952 0, // baseOEMUnitHandle 3953 0, // auxUnit 3954 0, // auxUnitModifier 3955 0, // auxRateUnit 3956 0, // rel 3957 0, // auxOEMUnitHandle 3958 true, // isLinear 3959 PLDM_SENSOR_DATA_SIZE_UINT16, // sensorDataSize 3960 0, 3961 0, 3962 0, 3963 0, // resolution 3964 0, 3965 0, 3966 0, 3967 0, // offset 3968 0, 3969 0, // accuracy 3970 0, // plusTolerance 3971 0, // minusTolerance 3972 3, 3973 0, // hysteresis = 3 3974 0, // supportedThresholds 3975 0, // thresholdAndHysteresisVolatility 3976 0, 3977 0, 3978 0x80, 3979 0x3f, // stateTransistionInterval=1.0 3980 0, 3981 0, 3982 0x80, 3983 0x3f, // updateInverval=1.0 3984 0, 3985 0x10, // maxReadable = 4096 3986 0, 3987 0, // minReadable = 0 3988 PLDM_RANGE_FIELD_FORMAT_UINT16, // rangeFieldFormat 3989 0, // rangeFieldsupport 3990 0x88, 3991 0x13, // nominalValue = 5,000 3992 0x70, 3993 0x17, // normalMax = 6,000 3994 0xa0, 3995 0x0f, // normalMin = 4,000 3996 0x58, 3997 0x1b, // warningHigh = 7,000 3998 0xb8, 3999 0x0b, // warningLow = 3,000 4000 0x40, 4001 0x1f, // criticalHigh = 8,000 4002 0xd0, 4003 0x07, // criticalLow = 2,000 4004 0x28, 4005 0x23, // fatalHigh = 9,000 4006 0xe8, 4007 0x03 // fatalLow = 1,000 4008 }; 4009 4010 struct pldm_numeric_sensor_value_pdr decodedPdr; 4011 auto rc = 4012 decode_numeric_sensor_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 4013 EXPECT_EQ(PLDM_SUCCESS, rc); 4014 4015 EXPECT_EQ(PLDM_SENSOR_DATA_SIZE_UINT16, decodedPdr.sensor_data_size); 4016 EXPECT_EQ(4096, decodedPdr.max_readable.value_u16); 4017 EXPECT_EQ(0, decodedPdr.min_readable.value_u16); 4018 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_UINT16, decodedPdr.range_field_format); 4019 EXPECT_EQ(5000, decodedPdr.nominal_value.value_u16); 4020 EXPECT_EQ(6000, decodedPdr.normal_max.value_u16); 4021 EXPECT_EQ(4000, decodedPdr.normal_min.value_u16); 4022 EXPECT_EQ(7000, decodedPdr.warning_high.value_u16); 4023 EXPECT_EQ(3000, decodedPdr.warning_low.value_u16); 4024 EXPECT_EQ(8000, decodedPdr.critical_high.value_u16); 4025 EXPECT_EQ(2000, decodedPdr.critical_low.value_u16); 4026 EXPECT_EQ(9000, decodedPdr.fatal_high.value_u16); 4027 EXPECT_EQ(1000, decodedPdr.fatal_low.value_u16); 4028 } 4029 4030 TEST(decodeNumericSensorPdrData, Sint16Test) 4031 { 4032 std::vector<uint8_t> pdr1{ 4033 0x1, 4034 0x0, 4035 0x0, 4036 0x0, // record handle 4037 0x1, // PDRHeaderVersion 4038 PLDM_NUMERIC_SENSOR_PDR, // PDRType 4039 0x0, 4040 0x0, // recordChangeNumber 4041 PLDM_PDR_NUMERIC_SENSOR_PDR_FIXED_LENGTH + 4042 PLDM_PDR_NUMERIC_SENSOR_PDR_VARIED_SENSOR_DATA_SIZE_MIN_LENGTH * 2 + 4043 PLDM_PDR_NUMERIC_SENSOR_PDR_VARIED_RANGE_FIELD_MIN_LENGTH * 2, 4044 0, // dataLength 4045 0, 4046 0, // PLDMTerminusHandle 4047 0x1, 4048 0x0, // sensorID=1 4049 PLDM_ENTITY_POWER_SUPPLY, 4050 0, // entityType=Power Supply(120) 4051 1, 4052 0, // entityInstanceNumber 4053 0x1, 4054 0x0, // containerID=1 4055 PLDM_NO_INIT, // sensorInit 4056 false, // sensorAuxiliaryNamesPDR 4057 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 4058 0, // unitModifier 4059 0, // rateUnit 4060 0, // baseOEMUnitHandle 4061 0, // auxUnit 4062 0, // auxUnitModifier 4063 0, // auxRateUnit 4064 0, // rel 4065 0, // auxOEMUnitHandle 4066 true, // isLinear 4067 PLDM_SENSOR_DATA_SIZE_SINT16, // sensorDataSize 4068 0, 4069 0, 4070 0, 4071 0, // resolution 4072 0, 4073 0, 4074 0, 4075 0, // offset 4076 0, 4077 0, // accuracy 4078 0, // plusTolerance 4079 0, // minusTolerance 4080 3, 4081 0, // hysteresis 4082 0, // supportedThresholds 4083 0, // thresholdAndHysteresisVolatility 4084 0, 4085 0, 4086 0x80, 4087 0x3f, // stateTransistionInterval=1.0 4088 0, 4089 0, 4090 0x80, 4091 0x3f, // updateInverval=1.0 4092 0xe8, 4093 0x03, // maxReadable = 1000 4094 0x18, 4095 0xfc, // minReadable = -1000 4096 PLDM_RANGE_FIELD_FORMAT_SINT16, // rangeFieldFormat 4097 0, // rangeFieldsupport 4098 0, 4099 0, // nominalValue = 0 4100 0xf4, 4101 0x01, // normalMax = 500 4102 0x0c, 4103 0xfe, // normalMin = -500 4104 0xe8, 4105 0x03, // warningHigh = 1,000 4106 0x18, 4107 0xfc, // warningLow = -1,000 4108 0xd0, 4109 0x07, // criticalHigh = 2,000 4110 0x30, 4111 0xf8, // criticalLow = -2,000 4112 0xb8, 4113 0x0b, // fatalHigh = 3,000 4114 0x48, 4115 0xf4 // fatalLow = -3,000 4116 }; 4117 4118 struct pldm_numeric_sensor_value_pdr decodedPdr; 4119 auto rc = 4120 decode_numeric_sensor_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 4121 EXPECT_EQ(PLDM_SUCCESS, rc); 4122 4123 EXPECT_EQ(PLDM_SENSOR_DATA_SIZE_SINT16, decodedPdr.sensor_data_size); 4124 EXPECT_EQ(1000, decodedPdr.max_readable.value_s16); 4125 EXPECT_EQ(-1000, decodedPdr.min_readable.value_s16); 4126 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_SINT16, decodedPdr.range_field_format); 4127 EXPECT_EQ(0, decodedPdr.nominal_value.value_s16); 4128 EXPECT_EQ(500, decodedPdr.normal_max.value_s16); 4129 EXPECT_EQ(-500, decodedPdr.normal_min.value_s16); 4130 EXPECT_EQ(1000, decodedPdr.warning_high.value_s16); 4131 EXPECT_EQ(-1000, decodedPdr.warning_low.value_s16); 4132 EXPECT_EQ(2000, decodedPdr.critical_high.value_s16); 4133 EXPECT_EQ(-2000, decodedPdr.critical_low.value_s16); 4134 EXPECT_EQ(3000, decodedPdr.fatal_high.value_s16); 4135 EXPECT_EQ(-3000, decodedPdr.fatal_low.value_s16); 4136 } 4137 4138 TEST(decodeNumericSensorPdrData, Uint32Test) 4139 { 4140 std::vector<uint8_t> pdr1{ 4141 0x1, 4142 0x0, 4143 0x0, 4144 0x0, // record handle 4145 0x1, // PDRHeaderVersion 4146 PLDM_NUMERIC_SENSOR_PDR, // PDRType 4147 0x0, 4148 0x0, // recordChangeNumber 4149 PLDM_PDR_NUMERIC_SENSOR_PDR_FIXED_LENGTH + 4150 PLDM_PDR_NUMERIC_SENSOR_PDR_VARIED_SENSOR_DATA_SIZE_MIN_LENGTH * 4 + 4151 PLDM_PDR_NUMERIC_SENSOR_PDR_VARIED_RANGE_FIELD_MIN_LENGTH * 4, 4152 0, // dataLength 4153 0, 4154 0, // PLDMTerminusHandle 4155 0x1, 4156 0x0, // sensorID=1 4157 PLDM_ENTITY_POWER_SUPPLY, 4158 0, // entityType=Power Supply(120) 4159 1, 4160 0, // entityInstanceNumber 4161 0x1, 4162 0x0, // containerID=1 4163 PLDM_NO_INIT, // sensorInit 4164 false, // sensorAuxiliaryNamesPDR 4165 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 4166 0, // unitModifier 4167 0, // rateUnit 4168 0, // baseOEMUnitHandle 4169 0, // auxUnit 4170 0, // auxUnitModifier 4171 0, // auxRateUnit 4172 0, // rel 4173 0, // auxOEMUnitHandle 4174 true, // isLinear 4175 PLDM_SENSOR_DATA_SIZE_UINT32, // sensorDataSize 4176 0, 4177 0, 4178 0, 4179 0, // resolution 4180 0, 4181 0, 4182 0, 4183 0, // offset 4184 0, 4185 0, // accuracy 4186 0, // plusTolerance 4187 0, // minusTolerance 4188 3, 4189 0, 4190 0, 4191 0, // hysteresis 4192 0, // supportedThresholds 4193 0, // thresholdAndHysteresisVolatility 4194 0, 4195 0, 4196 0x80, 4197 0x3f, // stateTransistionInterval=1.0 4198 0, 4199 0, 4200 0x80, 4201 0x3f, // updateInverval=1.0 4202 0, 4203 0x10, 4204 0, 4205 0, // maxReadable = 4096 4206 0, 4207 0, 4208 0, 4209 0, // minReadable = 0 4210 PLDM_RANGE_FIELD_FORMAT_UINT32, // rangeFieldFormat 4211 0, // rangeFieldsupport 4212 0x40, 4213 0x4b, 4214 0x4c, 4215 0x00, // nominalValue = 5,000,000 4216 0x80, 4217 0x8d, 4218 0x5b, 4219 0x00, // normalMax = 6,000,000 4220 0x00, 4221 0x09, 4222 0x3d, 4223 0x00, // normalMin = 4,000,000 4224 0xc0, 4225 0xcf, 4226 0x6a, 4227 0x00, // warningHigh = 7,000,000 4228 0xc0, 4229 0xc6, 4230 0x2d, 4231 0x00, // warningLow = 3,000,000 4232 0x00, 4233 0x12, 4234 0x7a, 4235 0x00, // criticalHigh = 8,000,000 4236 0x80, 4237 0x84, 4238 0x1e, 4239 0x00, // criticalLow = 2,000,000 4240 0x40, 4241 0x54, 4242 0x89, 4243 0x00, // fatalHigh = 9,000,000 4244 0x40, 4245 0x42, 4246 0x0f, 4247 0x00 // fatalLow = 1,000,000 4248 }; 4249 4250 struct pldm_numeric_sensor_value_pdr decodedPdr; 4251 auto rc = 4252 decode_numeric_sensor_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 4253 EXPECT_EQ(PLDM_SUCCESS, rc); 4254 4255 EXPECT_EQ(PLDM_SENSOR_DATA_SIZE_UINT32, decodedPdr.sensor_data_size); 4256 EXPECT_EQ(4096, decodedPdr.max_readable.value_u32); 4257 EXPECT_EQ(0, decodedPdr.min_readable.value_u32); 4258 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_UINT32, decodedPdr.range_field_format); 4259 EXPECT_EQ(5000000, decodedPdr.nominal_value.value_u32); 4260 EXPECT_EQ(6000000, decodedPdr.normal_max.value_u32); 4261 EXPECT_EQ(4000000, decodedPdr.normal_min.value_u32); 4262 EXPECT_EQ(7000000, decodedPdr.warning_high.value_u32); 4263 EXPECT_EQ(3000000, decodedPdr.warning_low.value_u32); 4264 EXPECT_EQ(8000000, decodedPdr.critical_high.value_u32); 4265 EXPECT_EQ(2000000, decodedPdr.critical_low.value_u32); 4266 EXPECT_EQ(9000000, decodedPdr.fatal_high.value_u32); 4267 EXPECT_EQ(1000000, decodedPdr.fatal_low.value_u32); 4268 } 4269 4270 TEST(decodeNumericSensorPdrData, Sint32Test) 4271 { 4272 std::vector<uint8_t> pdr1{ 4273 0x1, 4274 0x0, 4275 0x0, 4276 0x0, // record handle 4277 0x1, // PDRHeaderVersion 4278 PLDM_NUMERIC_SENSOR_PDR, // PDRType 4279 0x0, 4280 0x0, // recordChangeNumber 4281 PLDM_PDR_NUMERIC_SENSOR_PDR_FIXED_LENGTH + 4282 PLDM_PDR_NUMERIC_SENSOR_PDR_VARIED_SENSOR_DATA_SIZE_MIN_LENGTH * 4 + 4283 PLDM_PDR_NUMERIC_SENSOR_PDR_VARIED_RANGE_FIELD_MIN_LENGTH * 4, 4284 0, // dataLength 4285 0, 4286 0, // PLDMTerminusHandle 4287 0x1, 4288 0x0, // sensorID=1 4289 PLDM_ENTITY_POWER_SUPPLY, 4290 0, // entityType=Power Supply(120) 4291 1, 4292 0, // entityInstanceNumber 4293 0x1, 4294 0x0, // containerID=1 4295 PLDM_NO_INIT, // sensorInit 4296 false, // sensorAuxiliaryNamesPDR 4297 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 4298 0, // unitModifier 4299 0, // rateUnit 4300 0, // baseOEMUnitHandle 4301 0, // auxUnit 4302 0, // auxUnitModifier 4303 0, // auxRateUnit 4304 0, // rel 4305 0, // auxOEMUnitHandle 4306 true, // isLinear 4307 PLDM_SENSOR_DATA_SIZE_SINT32, // sensorDataSize 4308 0, 4309 0, 4310 0, 4311 0, // resolution 4312 0, 4313 0, 4314 0, 4315 0, // offset 4316 0, 4317 0, // accuracy 4318 0, // plusTolerance 4319 0, // minusTolerance 4320 3, 4321 0, 4322 0, 4323 0, // hysteresis 4324 0, // supportedThresholds 4325 0, // thresholdAndHysteresisVolatility 4326 0, 4327 0, 4328 0x80, 4329 0x3f, // stateTransistionInterval=1.0 4330 0, 4331 0, 4332 0x80, 4333 0x3f, // updateInverval=1.0 4334 0xa0, 4335 0x86, 4336 0x01, 4337 0x00, // maxReadable = 100000 4338 0x60, 4339 0x79, 4340 0xfe, 4341 0xff, // minReadable = -10000 4342 PLDM_RANGE_FIELD_FORMAT_SINT32, // rangeFieldFormat 4343 0, // rangeFieldsupport 4344 0, 4345 0, 4346 0, 4347 0, // nominalValue = 0 4348 0x20, 4349 0xa1, 4350 0x07, 4351 0x00, // normalMax = 500,000 4352 0xe0, 4353 0x5e, 4354 0xf8, 4355 0xff, // normalMin = -500,000 4356 0x40, 4357 0x42, 4358 0x0f, 4359 0x00, // warningHigh = 1,000,000 4360 0xc0, 4361 0xbd, 4362 0xf0, 4363 0xff, // warningLow = -1,000,000 4364 0x80, 4365 0x84, 4366 0x1e, 4367 0x00, // criticalHigh = 2,000,000 4368 0x80, 4369 0x7b, 4370 0xe1, 4371 0xff, // criticalLow = -2,000,000 4372 0xc0, 4373 0xc6, 4374 0x2d, 4375 0x00, // fatalHigh = 3,000,000 4376 0x40, 4377 0x39, 4378 0xd2, 4379 0xff // fatalLow = -3,000,000 4380 }; 4381 4382 struct pldm_numeric_sensor_value_pdr decodedPdr; 4383 auto rc = 4384 decode_numeric_sensor_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 4385 EXPECT_EQ(PLDM_SUCCESS, rc); 4386 4387 EXPECT_EQ(PLDM_SENSOR_DATA_SIZE_SINT32, decodedPdr.sensor_data_size); 4388 EXPECT_EQ(100000, decodedPdr.max_readable.value_s32); 4389 EXPECT_EQ(-100000, decodedPdr.min_readable.value_s32); 4390 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_SINT32, decodedPdr.range_field_format); 4391 EXPECT_EQ(0, decodedPdr.nominal_value.value_s32); 4392 EXPECT_EQ(500000, decodedPdr.normal_max.value_s32); 4393 EXPECT_EQ(-500000, decodedPdr.normal_min.value_s32); 4394 EXPECT_EQ(1000000, decodedPdr.warning_high.value_s32); 4395 EXPECT_EQ(-1000000, decodedPdr.warning_low.value_s32); 4396 EXPECT_EQ(2000000, decodedPdr.critical_high.value_s32); 4397 EXPECT_EQ(-2000000, decodedPdr.critical_low.value_s32); 4398 EXPECT_EQ(3000000, decodedPdr.fatal_high.value_s32); 4399 EXPECT_EQ(-3000000, decodedPdr.fatal_low.value_s32); 4400 } 4401 4402 TEST(decodeNumericSensorPdrData, Real32Test) 4403 { 4404 std::vector<uint8_t> pdr1{ 4405 0x1, 4406 0x0, 4407 0x0, 4408 0x0, // record handle 4409 0x1, // PDRHeaderVersion 4410 PLDM_NUMERIC_SENSOR_PDR, // PDRType 4411 0x0, 4412 0x0, // recordChangeNumber 4413 PLDM_PDR_NUMERIC_SENSOR_PDR_FIXED_LENGTH + 4414 PLDM_PDR_NUMERIC_SENSOR_PDR_VARIED_SENSOR_DATA_SIZE_MIN_LENGTH * 4 + 4415 PLDM_PDR_NUMERIC_SENSOR_PDR_VARIED_RANGE_FIELD_MIN_LENGTH * 4, 4416 0, // dataLength 4417 0, 4418 0, // PLDMTerminusHandle 4419 0x1, 4420 0x0, // sensorID=1 4421 PLDM_ENTITY_POWER_SUPPLY, 4422 0, // entityType=Power Supply(120) 4423 1, 4424 0, // entityInstanceNumber 4425 0x1, 4426 0x0, // containerID=1 4427 PLDM_NO_INIT, // sensorInit 4428 false, // sensorAuxiliaryNamesPDR 4429 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 4430 0, // unitModifier 4431 0, // rateUnit 4432 0, // baseOEMUnitHandle 4433 0, // auxUnit 4434 0, // auxUnitModifier 4435 0, // auxRateUnit 4436 0, // rel 4437 0, // auxOEMUnitHandle 4438 true, // isLinear 4439 PLDM_SENSOR_DATA_SIZE_SINT32, // sensorDataSize 4440 0, 4441 0, 4442 0, 4443 0, // resolution 4444 0, 4445 0, 4446 0, 4447 0, // offset 4448 0, 4449 0, // accuracy 4450 0, // plusTolerance 4451 0, // minusTolerance 4452 3, 4453 0, 4454 0, 4455 0, // hysteresis 4456 0, // supportedThresholds 4457 0, // thresholdAndHysteresisVolatility 4458 0, 4459 0, 4460 0x80, 4461 0x3f, // stateTransistionInterval=1.0 4462 0, 4463 0, 4464 0x80, 4465 0x3f, // updateInverval=1.0 4466 0xa0, 4467 0x86, 4468 0x01, 4469 0x00, // maxReadable = 100000 4470 0x60, 4471 0x79, 4472 0xfe, 4473 0xff, // minReadable = -10000 4474 PLDM_RANGE_FIELD_FORMAT_REAL32, // rangeFieldFormat 4475 0, // rangeFieldsupport 4476 0, 4477 0, 4478 0, 4479 0, // nominalValue = 0.0 4480 0x33, 4481 0x33, 4482 0x48, 4483 0x42, // normalMax = 50.05 4484 0x33, 4485 0x33, 4486 0x48, 4487 0xc2, // normalMin = -50.05 4488 0x83, 4489 0x00, 4490 0xc8, 4491 0x42, // warningHigh = 100.001 4492 0x83, 4493 0x00, 4494 0xc8, 4495 0xc2, // warningLow = -100.001 4496 0x83, 4497 0x00, 4498 0x48, 4499 0x43, // criticalHigh = 200.002 4500 0x83, 4501 0x00, 4502 0x48, 4503 0xc3, // criticalLow = -200.002 4504 0x62, 4505 0x00, 4506 0x96, 4507 0x43, // fatalHigh = 300.003 4508 0x62, 4509 0x00, 4510 0x96, 4511 0xc3 // fatalLow = -300.003 4512 }; 4513 4514 struct pldm_numeric_sensor_value_pdr decodedPdr; 4515 auto rc = 4516 decode_numeric_sensor_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 4517 EXPECT_EQ(PLDM_SUCCESS, rc); 4518 4519 EXPECT_EQ(PLDM_SENSOR_DATA_SIZE_SINT32, decodedPdr.sensor_data_size); 4520 EXPECT_EQ(100000, decodedPdr.max_readable.value_s32); 4521 EXPECT_EQ(-100000, decodedPdr.min_readable.value_s32); 4522 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_REAL32, decodedPdr.range_field_format); 4523 EXPECT_FLOAT_EQ(0, decodedPdr.nominal_value.value_f32); 4524 EXPECT_FLOAT_EQ(50.05f, decodedPdr.normal_max.value_f32); 4525 EXPECT_FLOAT_EQ(-50.05f, decodedPdr.normal_min.value_f32); 4526 EXPECT_FLOAT_EQ(100.001f, decodedPdr.warning_high.value_f32); 4527 EXPECT_FLOAT_EQ(-100.001f, decodedPdr.warning_low.value_f32); 4528 EXPECT_FLOAT_EQ(200.002f, decodedPdr.critical_high.value_f32); 4529 EXPECT_FLOAT_EQ(-200.002f, decodedPdr.critical_low.value_f32); 4530 EXPECT_FLOAT_EQ(300.003f, decodedPdr.fatal_high.value_f32); 4531 EXPECT_FLOAT_EQ(-300.003f, decodedPdr.fatal_low.value_f32); 4532 } 4533 4534 TEST(decodeNumericSensorPdrDataDeathTest, InvalidSizeTest) 4535 { 4536 // A corrupted PDR. The data after plusTolerance missed. 4537 std::vector<uint8_t> pdr1{ 4538 0x1, 4539 0x0, 4540 0x0, 4541 0x0, // record handle 4542 0x1, // PDRHeaderVersion 4543 PLDM_NUMERIC_SENSOR_PDR, // PDRType 4544 0x0, 4545 0x0, // recordChangeNumber 4546 PLDM_PDR_NUMERIC_SENSOR_PDR_FIXED_LENGTH, 4547 0, // dataLength 4548 0, 4549 0, // PLDMTerminusHandle 4550 0x1, 4551 0x0, // sensorID=1 4552 PLDM_ENTITY_POWER_SUPPLY, 4553 0, // entityType=Power Supply(120) 4554 1, 4555 0, // entityInstanceNumber 4556 0x1, 4557 0x0, // containerID=1 4558 PLDM_NO_INIT, // sensorInit 4559 false, // sensorAuxiliaryNamesPDR 4560 2, // baseUint(2)=degrees C 4561 0, // unitModifier 4562 0, // rateUnit 4563 0, // baseOEMUnitHandle 4564 0, // auxUnit 4565 0, // auxUnitModifier 4566 0, // auxRateUnit 4567 0, // rel 4568 0, // auxOEMUnitHandle 4569 true, // isLinear 4570 PLDM_SENSOR_DATA_SIZE_UINT8, // sensorDataSize 4571 0, 4572 0, 4573 0, 4574 0, // resolution 4575 0, 4576 0, 4577 0, 4578 0, // offset 4579 0, 4580 0, // accuracy 4581 0 // plusTolerance 4582 }; 4583 4584 struct pldm_numeric_sensor_value_pdr decodedPdr; 4585 int rc = 4586 decode_numeric_sensor_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 4587 EXPECT_EQ(rc, PLDM_ERROR_INVALID_LENGTH); 4588 } 4589 4590 #ifdef LIBPLDM_API_TESTING 4591 TEST(decodeNumericEffecterPdrData, Uint8Test) 4592 { 4593 std::vector<uint8_t> pdr1{ 4594 0x1, 4595 0x0, 4596 0x0, 4597 0x0, // record handle 4598 0x1, // PDRHeaderVersion 4599 PLDM_NUMERIC_EFFECTER_PDR, // PDRType 4600 0x0, 4601 0x0, // recordChangeNumber 4602 PLDM_PDR_NUMERIC_EFFECTER_PDR_MIN_LENGTH, 4603 0, // dataLength 4604 0, 4605 0, // PLDMTerminusHandle 4606 0x1, 4607 0x0, // effecterID=1 4608 PLDM_ENTITY_POWER_SUPPLY, 4609 0, // entityType=Power Supply(120) 4610 1, 4611 0, // entityInstanceNumber 4612 1, 4613 0, // containerID=1 4614 0x2, 4615 0x0, // effecter_semantic_id=2 4616 PLDM_NO_INIT, // effecterInit 4617 false, // effecterAuxiliaryNames 4618 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 4619 0, // unitModifier 4620 0, // rateUnit 4621 0, // baseOEMUnitHandle 4622 0, // auxUnit 4623 0, // auxUnitModifier 4624 4, // auxRateUnit 4625 0, // auxOEMUnitHandle 4626 true, // isLinear 4627 PLDM_EFFECTER_DATA_SIZE_UINT8, // effecterDataSize 4628 0, 4629 0, 4630 0xc0, 4631 0x3f, // resolution=1.5 4632 0, 4633 0, 4634 0x80, 4635 0x3f, // offset=1.0 4636 0, 4637 0, // accuracy 4638 0, // plusTolerance 4639 0, // minusTolerance 4640 0, 4641 0, 4642 0x80, 4643 0x3f, // stateTransistionInterval=1.0 4644 0, 4645 0, 4646 0x80, 4647 0x3f, // transition_interval=1.0 4648 255, // maxSetdable 4649 0, // minSetable 4650 PLDM_RANGE_FIELD_FORMAT_UINT8, // rangeFieldFormat 4651 0x1f, // rangeFieldsupport 4652 50, // nominalValue = 50 4653 60, // normalMax = 60 4654 40, // normalMin = 40 4655 90, // rated_max = 90 4656 10 // rated_min = 10 4657 }; 4658 4659 struct pldm_numeric_effecter_value_pdr decodedPdr; 4660 auto rc = 4661 decode_numeric_effecter_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 4662 EXPECT_EQ(PLDM_SUCCESS, rc); 4663 EXPECT_EQ(1, decodedPdr.hdr.record_handle); 4664 EXPECT_EQ(1, decodedPdr.hdr.version); 4665 EXPECT_EQ(PLDM_NUMERIC_EFFECTER_PDR, decodedPdr.hdr.type); 4666 EXPECT_EQ(0, decodedPdr.hdr.record_change_num); 4667 EXPECT_EQ(PLDM_PDR_NUMERIC_EFFECTER_PDR_MIN_LENGTH, decodedPdr.hdr.length); 4668 EXPECT_EQ(1, decodedPdr.effecter_id); 4669 EXPECT_EQ(PLDM_ENTITY_POWER_SUPPLY, decodedPdr.entity_type); 4670 EXPECT_EQ(1, decodedPdr.entity_instance); 4671 EXPECT_EQ(1, decodedPdr.container_id); 4672 EXPECT_EQ(2, decodedPdr.effecter_semantic_id); 4673 EXPECT_EQ(PLDM_NO_INIT, decodedPdr.effecter_init); 4674 EXPECT_EQ(false, decodedPdr.effecter_auxiliary_names); 4675 EXPECT_EQ(PLDM_SENSOR_UNIT_DEGRESS_C, decodedPdr.base_unit); 4676 EXPECT_EQ(0, decodedPdr.unit_modifier); 4677 EXPECT_EQ(0, decodedPdr.rate_unit); 4678 EXPECT_EQ(0, decodedPdr.base_oem_unit_handle); 4679 EXPECT_EQ(0, decodedPdr.aux_unit); 4680 EXPECT_EQ(0, decodedPdr.aux_unit_modifier); 4681 EXPECT_EQ(4, decodedPdr.aux_rate_unit); 4682 EXPECT_EQ(0, decodedPdr.aux_oem_unit_handle); 4683 EXPECT_EQ(true, decodedPdr.is_linear); 4684 EXPECT_EQ(PLDM_EFFECTER_DATA_SIZE_UINT8, decodedPdr.effecter_data_size); 4685 EXPECT_FLOAT_EQ(1.5f, decodedPdr.resolution); 4686 EXPECT_FLOAT_EQ(1.0f, decodedPdr.offset); 4687 EXPECT_EQ(0, decodedPdr.accuracy); 4688 EXPECT_EQ(0, decodedPdr.plus_tolerance); 4689 EXPECT_EQ(0, decodedPdr.minus_tolerance); 4690 EXPECT_FLOAT_EQ(1.0f, decodedPdr.state_transition_interval); 4691 EXPECT_FLOAT_EQ(1.0f, decodedPdr.transition_interval); 4692 EXPECT_EQ(255, decodedPdr.max_settable.value_u8); 4693 EXPECT_EQ(0, decodedPdr.min_settable.value_u8); 4694 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_UINT8, decodedPdr.range_field_format); 4695 EXPECT_EQ(0x1f, decodedPdr.range_field_support.byte); 4696 EXPECT_EQ(50, decodedPdr.nominal_value.value_u8); 4697 EXPECT_EQ(60, decodedPdr.normal_max.value_u8); 4698 EXPECT_EQ(40, decodedPdr.normal_min.value_u8); 4699 EXPECT_EQ(90, decodedPdr.rated_max.value_u8); 4700 EXPECT_EQ(10, decodedPdr.rated_min.value_u8); 4701 } 4702 #endif 4703 4704 #ifdef LIBPLDM_API_TESTING 4705 TEST(decodeNumericEffecterPdrData, Sint8Test) 4706 { 4707 std::vector<uint8_t> pdr1{ 4708 0x1, 4709 0x0, 4710 0x0, 4711 0x0, // record handle 4712 0x1, // PDRHeaderVersion 4713 PLDM_NUMERIC_EFFECTER_PDR, // PDRType 4714 0x0, 4715 0x0, // recordChangeNumber 4716 PLDM_PDR_NUMERIC_EFFECTER_PDR_FIXED_LENGTH + 4717 PLDM_PDR_NUMERIC_EFFECTER_PDR_VARIED_EFFECTER_DATA_SIZE_MIN_LENGTH + 4718 PLDM_PDR_NUMERIC_EFFECTER_PDR_VARIED_RANGE_FIELD_MIN_LENGTH, 4719 0, // dataLength 4720 0, 4721 0, // PLDMTerminusHandle 4722 0x1, 4723 0x0, // effecterID=1 4724 PLDM_ENTITY_POWER_SUPPLY, 4725 0, // entityType=Power Supply(120) 4726 1, 4727 0, // entityInstanceNumber 4728 0x1, 4729 0x0, // containerID=1 4730 0x2, 4731 0x0, // effecter_semantic_id=2 4732 PLDM_NO_INIT, // effecterInit 4733 false, // effecterAuxiliaryNames 4734 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 4735 0, // unitModifier 4736 0, // rateUnit 4737 0, // baseOEMUnitHandle 4738 0, // auxUnit 4739 0, // auxUnitModifier 4740 0, // auxRateUnit 4741 0, // auxOEMUnitHandle 4742 true, // isLinear 4743 PLDM_RANGE_FIELD_FORMAT_SINT8, // effecterDataSize 4744 0, 4745 0, 4746 0, 4747 0, // resolution 4748 0, 4749 0, 4750 0, 4751 0, // offset 4752 0, 4753 0, // accuracy 4754 0, // plusTolerance 4755 0, // minusTolerance 4756 0, 4757 0, 4758 0x80, 4759 0x3f, // stateTransistionInterval=1.0 4760 0, 4761 0, 4762 0x80, 4763 0x3f, // transition_interval=1.0 4764 0x64, // maxSetdable = 100 4765 0x9c, // minSetable = -100 4766 PLDM_RANGE_FIELD_FORMAT_SINT8, // rangeFieldFormat 4767 0x1f, // rangeFieldsupport 4768 0, // nominalValue = 0 4769 5, // normalMax = 5 4770 0xfb, // normalMin = -5 4771 30, // rated_max = 30 4772 0xe2 // rated_min = -30 4773 }; 4774 4775 struct pldm_numeric_effecter_value_pdr decodedPdr; 4776 auto rc = 4777 decode_numeric_effecter_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 4778 EXPECT_EQ(PLDM_SUCCESS, rc); 4779 4780 EXPECT_EQ(PLDM_EFFECTER_DATA_SIZE_SINT8, decodedPdr.effecter_data_size); 4781 EXPECT_EQ(100, decodedPdr.max_settable.value_s8); 4782 EXPECT_EQ(-100, decodedPdr.min_settable.value_s8); 4783 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_SINT8, decodedPdr.range_field_format); 4784 EXPECT_EQ(0x1f, decodedPdr.range_field_support.byte); 4785 EXPECT_EQ(0, decodedPdr.nominal_value.value_s8); 4786 EXPECT_EQ(5, decodedPdr.normal_max.value_s8); 4787 EXPECT_EQ(-5, decodedPdr.normal_min.value_s8); 4788 EXPECT_EQ(30, decodedPdr.rated_max.value_s8); 4789 EXPECT_EQ(-30, decodedPdr.rated_min.value_s8); 4790 } 4791 #endif 4792 4793 #ifdef LIBPLDM_API_TESTING 4794 TEST(decodeNumericEffecterPdrData, Uint16Test) 4795 { 4796 std::vector<uint8_t> pdr1{ 4797 0x1, 4798 0x0, 4799 0x0, 4800 0x0, // record handle 4801 0x1, // PDRHeaderVersion 4802 PLDM_NUMERIC_EFFECTER_PDR, // PDRType 4803 0x0, 4804 0x0, // recordChangeNumber 4805 PLDM_PDR_NUMERIC_EFFECTER_PDR_FIXED_LENGTH + 4806 PLDM_PDR_NUMERIC_EFFECTER_PDR_VARIED_EFFECTER_DATA_SIZE_MIN_LENGTH * 4807 2 + 4808 PLDM_PDR_NUMERIC_EFFECTER_PDR_VARIED_RANGE_FIELD_MIN_LENGTH * 2, 4809 0, // dataLength 4810 0, 4811 0, // PLDMTerminusHandle 4812 0x1, 4813 0x0, // effecterID=1 4814 PLDM_ENTITY_POWER_SUPPLY, 4815 0, // entityType=Power Supply(120) 4816 1, 4817 0, // entityInstanceNumber 4818 0x1, 4819 0x0, // containerID=1 4820 0x2, 4821 0x0, // effecter_semantic_id=2 4822 PLDM_NO_INIT, // effecterInit 4823 false, // effecterAuxiliaryNames 4824 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 4825 0, // unitModifier 4826 0, // rateUnit 4827 0, // baseOEMUnitHandle 4828 0, // auxUnit 4829 0, // auxUnitModifier 4830 0, // auxRateUnit 4831 0, // auxOEMUnitHandle 4832 true, // isLinear 4833 PLDM_EFFECTER_DATA_SIZE_UINT16, // effecterDataSize 4834 0, 4835 0, 4836 0, 4837 0, // resolution 4838 0, 4839 0, 4840 0, 4841 0, // offset 4842 0, 4843 0, // accuracy 4844 0, // plusTolerance 4845 0, // minusTolerance 4846 0, 4847 0, 4848 0x80, 4849 0x3f, // stateTransistionInterval=1.0 4850 0, 4851 0, 4852 0x80, 4853 0x3f, // transition_interval=1.0 4854 0, 4855 0x10, // maxSetdable = 4096 4856 0, 4857 0, // minSetable = 0 4858 PLDM_RANGE_FIELD_FORMAT_UINT16, // rangeFieldFormat 4859 0x1f, // rangeFieldsupport 4860 0x88, 4861 0x13, // nominalValue = 5,000 4862 0x70, 4863 0x17, // normalMax = 6,000 4864 0xa0, 4865 0x0f, // normalMin = 4,000 4866 0x28, 4867 0x23, // rated_max = 9,000 4868 0xe8, 4869 0x03 // rated_min = 1,000 4870 }; 4871 4872 struct pldm_numeric_effecter_value_pdr decodedPdr; 4873 auto rc = 4874 decode_numeric_effecter_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 4875 EXPECT_EQ(PLDM_SUCCESS, rc); 4876 4877 EXPECT_EQ(PLDM_EFFECTER_DATA_SIZE_UINT16, decodedPdr.effecter_data_size); 4878 EXPECT_EQ(4096, decodedPdr.max_settable.value_u16); 4879 EXPECT_EQ(0, decodedPdr.min_settable.value_u16); 4880 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_UINT16, decodedPdr.range_field_format); 4881 EXPECT_EQ(0x1f, decodedPdr.range_field_support.byte); 4882 EXPECT_EQ(5000, decodedPdr.nominal_value.value_u16); 4883 EXPECT_EQ(6000, decodedPdr.normal_max.value_u16); 4884 EXPECT_EQ(4000, decodedPdr.normal_min.value_u16); 4885 EXPECT_EQ(9000, decodedPdr.rated_max.value_u16); 4886 EXPECT_EQ(1000, decodedPdr.rated_min.value_u16); 4887 } 4888 #endif 4889 4890 #ifdef LIBPLDM_API_TESTING 4891 TEST(decodeNumericEffecterPdrData, Sint16Test) 4892 { 4893 std::vector<uint8_t> pdr1{ 4894 0x1, 4895 0x0, 4896 0x0, 4897 0x0, // record handle 4898 0x1, // PDRHeaderVersion 4899 PLDM_NUMERIC_EFFECTER_PDR, // PDRType 4900 0x0, 4901 0x0, // recordChangeNumber 4902 PLDM_PDR_NUMERIC_EFFECTER_PDR_FIXED_LENGTH + 4903 PLDM_PDR_NUMERIC_EFFECTER_PDR_VARIED_EFFECTER_DATA_SIZE_MIN_LENGTH * 4904 2 + 4905 PLDM_PDR_NUMERIC_EFFECTER_PDR_VARIED_RANGE_FIELD_MIN_LENGTH * 2, 4906 0, // dataLength 4907 0, 4908 0, // PLDMTerminusHandle 4909 0x1, 4910 0x0, // effecterID=1 4911 PLDM_ENTITY_POWER_SUPPLY, 4912 0, // entityType=Power Supply(120) 4913 1, 4914 0, // entityInstanceNumber 4915 0x1, 4916 0x0, // containerID=1 4917 0x2, 4918 0x0, // effecter_semantic_id=2 4919 PLDM_NO_INIT, // effecterInit 4920 false, // effecterAuxiliaryNames 4921 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 4922 0, // unitModifier 4923 0, // rateUnit 4924 0, // baseOEMUnitHandle 4925 0, // auxUnit 4926 0, // auxUnitModifier 4927 0, // auxRateUnit 4928 0, // auxOEMUnitHandle 4929 true, // isLinear 4930 PLDM_EFFECTER_DATA_SIZE_SINT16, // effecterDataSize 4931 0, 4932 0, 4933 0, 4934 0, // resolution 4935 0, 4936 0, 4937 0, 4938 0, // offset 4939 0, 4940 0, // accuracy 4941 0, // plusTolerance 4942 0, // minusTolerance 4943 0, 4944 0, 4945 0x80, 4946 0x3f, // stateTransistionInterval=1.0 4947 0, 4948 0, 4949 0x80, 4950 0x3f, // transition_interval=1.0 4951 0xe8, 4952 0x03, // maxSetdable = 1000 4953 0x18, 4954 0xfc, // minSetable = -1000 4955 PLDM_RANGE_FIELD_FORMAT_SINT16, // rangeFieldFormat 4956 0x1f, // rangeFieldsupport 4957 0, 4958 0, // nominalValue = 0 4959 0xf4, 4960 0x01, // normalMax = 500 4961 0x0c, 4962 0xfe, // normalMin = -500 4963 0xb8, 4964 0x0b, // rated_max = 3,000 4965 0x48, 4966 0xf4 // rated_min = -3,000 4967 }; 4968 4969 struct pldm_numeric_effecter_value_pdr decodedPdr; 4970 auto rc = 4971 decode_numeric_effecter_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 4972 EXPECT_EQ(PLDM_SUCCESS, rc); 4973 4974 EXPECT_EQ(PLDM_EFFECTER_DATA_SIZE_SINT16, decodedPdr.effecter_data_size); 4975 EXPECT_EQ(1000, decodedPdr.max_settable.value_s16); 4976 EXPECT_EQ(-1000, decodedPdr.min_settable.value_s16); 4977 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_SINT16, decodedPdr.range_field_format); 4978 EXPECT_EQ(0x1f, decodedPdr.range_field_support.byte); 4979 EXPECT_EQ(0, decodedPdr.nominal_value.value_s16); 4980 EXPECT_EQ(500, decodedPdr.normal_max.value_s16); 4981 EXPECT_EQ(-500, decodedPdr.normal_min.value_s16); 4982 EXPECT_EQ(3000, decodedPdr.rated_max.value_s16); 4983 EXPECT_EQ(-3000, decodedPdr.rated_min.value_s16); 4984 } 4985 #endif 4986 4987 #ifdef LIBPLDM_API_TESTING 4988 TEST(decodeNumericEffecterPdrData, Uint32Test) 4989 { 4990 std::vector<uint8_t> pdr1{ 4991 0x1, 4992 0x0, 4993 0x0, 4994 0x0, // record handle 4995 0x1, // PDRHeaderVersion 4996 PLDM_NUMERIC_EFFECTER_PDR, // PDRType 4997 0x0, 4998 0x0, // recordChangeNumber 4999 PLDM_PDR_NUMERIC_EFFECTER_PDR_FIXED_LENGTH + 5000 PLDM_PDR_NUMERIC_EFFECTER_PDR_VARIED_EFFECTER_DATA_SIZE_MIN_LENGTH * 5001 4 + 5002 PLDM_PDR_NUMERIC_EFFECTER_PDR_VARIED_RANGE_FIELD_MIN_LENGTH * 4, 5003 0, // dataLength 5004 0, 5005 0, // PLDMTerminusHandle 5006 0x1, 5007 0x0, // effecterID=1 5008 PLDM_ENTITY_POWER_SUPPLY, 5009 0, // entityType=Power Supply(120) 5010 1, 5011 0, // entityInstanceNumber 5012 0x1, 5013 0x0, // containerID=1 5014 0x2, 5015 0x0, // effecter_semantic_id=2 5016 PLDM_NO_INIT, // effecterInit 5017 false, // effecterAuxiliaryNames 5018 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 5019 0, // unitModifier 5020 0, // rateUnit 5021 0, // baseOEMUnitHandle 5022 0, // auxUnit 5023 0, // auxUnitModifier 5024 0, // auxRateUnit 5025 0, // auxOEMUnitHandle 5026 true, // isLinear 5027 PLDM_EFFECTER_DATA_SIZE_UINT32, // effecterDataSize 5028 0, 5029 0, 5030 0, 5031 0, // resolution 5032 0, 5033 0, 5034 0, 5035 0, // offset 5036 0, 5037 0, // accuracy 5038 0, // plusTolerance 5039 0, // minusTolerance 5040 0, 5041 0, 5042 0x80, 5043 0x3f, // stateTransistionInterval=1.0 5044 0, 5045 0, 5046 0x80, 5047 0x3f, // transition_interval=1.0 5048 0, 5049 0x10, 5050 0, 5051 0, // maxSetdable = 4096 5052 0, 5053 0, 5054 0, 5055 0, // minSetable = 0 5056 PLDM_RANGE_FIELD_FORMAT_UINT32, // rangeFieldFormat 5057 0x1f, // rangeFieldsupport 5058 0x40, 5059 0x4b, 5060 0x4c, 5061 0x00, // nominalValue = 5,000,000 5062 0x80, 5063 0x8d, 5064 0x5b, 5065 0x00, // normalMax = 6,000,000 5066 0x00, 5067 0x09, 5068 0x3d, 5069 0x00, // normalMin = 4,000,000 5070 0x40, 5071 0x54, 5072 0x89, 5073 0x00, // rated_max = 9,000,000 5074 0x40, 5075 0x42, 5076 0x0f, 5077 0x00 // rated_min = 1,000,000 5078 }; 5079 5080 struct pldm_numeric_effecter_value_pdr decodedPdr; 5081 auto rc = 5082 decode_numeric_effecter_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 5083 EXPECT_EQ(PLDM_SUCCESS, rc); 5084 5085 EXPECT_EQ(PLDM_EFFECTER_DATA_SIZE_UINT32, decodedPdr.effecter_data_size); 5086 EXPECT_EQ(4096, decodedPdr.max_settable.value_u32); 5087 EXPECT_EQ(0, decodedPdr.min_settable.value_u32); 5088 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_UINT32, decodedPdr.range_field_format); 5089 EXPECT_EQ(0x1f, decodedPdr.range_field_support.byte); 5090 EXPECT_EQ(5000000, decodedPdr.nominal_value.value_u32); 5091 EXPECT_EQ(6000000, decodedPdr.normal_max.value_u32); 5092 EXPECT_EQ(4000000, decodedPdr.normal_min.value_u32); 5093 EXPECT_EQ(9000000, decodedPdr.rated_max.value_u32); 5094 EXPECT_EQ(1000000, decodedPdr.rated_min.value_u32); 5095 } 5096 #endif 5097 5098 #ifdef LIBPLDM_API_TESTING 5099 TEST(decodeNumericEffecterPdrData, Sint32Test) 5100 { 5101 std::vector<uint8_t> pdr1{ 5102 0x1, 5103 0x0, 5104 0x0, 5105 0x0, // record handle 5106 0x1, // PDRHeaderVersion 5107 PLDM_NUMERIC_EFFECTER_PDR, // PDRType 5108 0x0, 5109 0x0, // recordChangeNumber 5110 PLDM_PDR_NUMERIC_EFFECTER_PDR_FIXED_LENGTH + 5111 PLDM_PDR_NUMERIC_EFFECTER_PDR_VARIED_EFFECTER_DATA_SIZE_MIN_LENGTH * 5112 4 + 5113 PLDM_PDR_NUMERIC_EFFECTER_PDR_VARIED_RANGE_FIELD_MIN_LENGTH * 4, 5114 0, // dataLength 5115 0, 5116 0, // PLDMTerminusHandle 5117 0x1, 5118 0x0, // effecterID=1 5119 PLDM_ENTITY_POWER_SUPPLY, 5120 0, // entityType=Power Supply(120) 5121 1, 5122 0, // entityInstanceNumber 5123 0x1, 5124 0x0, // containerID=1 5125 0x2, 5126 0x0, // effecter_semantic_id=2 5127 PLDM_NO_INIT, // effecterInit 5128 false, // effecterAuxiliaryNames 5129 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 5130 0, // unitModifier 5131 0, // rateUnit 5132 0, // baseOEMUnitHandle 5133 0, // auxUnit 5134 0, // auxUnitModifier 5135 0, // auxRateUnit 5136 0, // auxOEMUnitHandle 5137 true, // isLinear 5138 PLDM_EFFECTER_DATA_SIZE_SINT32, // effecterDataSize 5139 0, 5140 0, 5141 0, 5142 0, // resolution 5143 0, 5144 0, 5145 0, 5146 0, // offset 5147 0, 5148 0, // accuracy 5149 0, // plusTolerance 5150 0, // minusTolerance 5151 0, 5152 0, 5153 0x80, 5154 0x3f, // stateTransistionInterval=1.0 5155 0, 5156 0, 5157 0x80, 5158 0x3f, // transition_interval=1.0 5159 0xa0, 5160 0x86, 5161 0x01, 5162 0x00, // maxSetdable = 100000 5163 0x60, 5164 0x79, 5165 0xfe, 5166 0xff, // minSetable = -10000 5167 PLDM_RANGE_FIELD_FORMAT_SINT32, // rangeFieldFormat 5168 0x1f, // rangeFieldsupport 5169 0, 5170 0, 5171 0, 5172 0, // nominalValue = 0 5173 0x20, 5174 0xa1, 5175 0x07, 5176 0x00, // normalMax = 500,000 5177 0xe0, 5178 0x5e, 5179 0xf8, 5180 0xff, // normalMin = -500,000 5181 0xc0, 5182 0xc6, 5183 0x2d, 5184 0x00, // rated_max = 3,000,000 5185 0x40, 5186 0x39, 5187 0xd2, 5188 0xff // rated_min = -3,000,000 5189 }; 5190 5191 struct pldm_numeric_effecter_value_pdr decodedPdr; 5192 auto rc = 5193 decode_numeric_effecter_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 5194 EXPECT_EQ(PLDM_SUCCESS, rc); 5195 EXPECT_EQ(PLDM_EFFECTER_DATA_SIZE_SINT32, decodedPdr.effecter_data_size); 5196 EXPECT_EQ(100000, decodedPdr.max_settable.value_s32); 5197 EXPECT_EQ(-100000, decodedPdr.min_settable.value_s32); 5198 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_SINT32, decodedPdr.range_field_format); 5199 EXPECT_EQ(0x1f, decodedPdr.range_field_support.byte); 5200 EXPECT_EQ(0, decodedPdr.nominal_value.value_s32); 5201 EXPECT_EQ(500000, decodedPdr.normal_max.value_s32); 5202 EXPECT_EQ(-500000, decodedPdr.normal_min.value_s32); 5203 EXPECT_EQ(3000000, decodedPdr.rated_max.value_s32); 5204 EXPECT_EQ(-3000000, decodedPdr.rated_min.value_s32); 5205 } 5206 #endif 5207 5208 #ifdef LIBPLDM_API_TESTING 5209 TEST(decodeNumericEffecterPdrData, Real32Test) 5210 { 5211 std::vector<uint8_t> pdr1{ 5212 0x1, 5213 0x0, 5214 0x0, 5215 0x0, // record handle 5216 0x1, // PDRHeaderVersion 5217 PLDM_NUMERIC_EFFECTER_PDR, // PDRType 5218 0x0, 5219 0x0, // recordChangeNumber 5220 PLDM_PDR_NUMERIC_EFFECTER_PDR_FIXED_LENGTH + 5221 PLDM_PDR_NUMERIC_EFFECTER_PDR_VARIED_EFFECTER_DATA_SIZE_MIN_LENGTH * 5222 4 + 5223 PLDM_PDR_NUMERIC_EFFECTER_PDR_VARIED_RANGE_FIELD_MIN_LENGTH * 4, 5224 0, // dataLength 5225 0, 5226 5227 0, // PLDMTerminusHandle 5228 0x1, 5229 0x0, // effecterID=1 5230 PLDM_ENTITY_POWER_SUPPLY, 5231 0, // entityType=Power Supply(120) 5232 1, 5233 0, // entityInstanceNumber 5234 0x1, 5235 0x0, // containerID=1 5236 0x2, 5237 0x0, // effecter_semantic_id=2 5238 PLDM_NO_INIT, // effecterInit 5239 false, // effecterAuxiliaryNames 5240 PLDM_SENSOR_UNIT_DEGRESS_C, // baseUint(2)=degrees C 5241 0, // unitModifier 5242 0, // rateUnit 5243 0, // baseOEMUnitHandle 5244 0, // auxUnit 5245 0, // auxUnitModifier 5246 0, // auxRateUnit 5247 0, // auxOEMUnitHandle 5248 true, // isLinear 5249 PLDM_EFFECTER_DATA_SIZE_SINT32, // effecterDataSize 5250 0, 5251 0, 5252 0, 5253 0, // resolution 5254 0, 5255 0, 5256 0, 5257 0, // offset 5258 0, 5259 0, // accuracy 5260 0, // plusTolerance 5261 0, // minusTolerance 5262 0, 5263 0, 5264 0x80, 5265 0x3f, // stateTransistionInterval=1.0 5266 0, 5267 0, 5268 0x80, 5269 0x3f, // transition_interval=1.0 5270 0xa0, 5271 0x86, 5272 0x01, 5273 0x00, // maxSetdable = 100000 5274 0x60, 5275 0x79, 5276 0xfe, 5277 0xff, // minSetable = -10000 5278 PLDM_RANGE_FIELD_FORMAT_REAL32, // rangeFieldFormat 5279 0x1f, // rangeFieldsupport 5280 0, 5281 0, 5282 0, 5283 0, // nominalValue = 0.0 5284 0x33, 5285 0x33, 5286 0x48, 5287 0x42, // normalMax = 50.05 5288 0x33, 5289 0x33, 5290 0x48, 5291 0xc2, // normalMin = -50.05 5292 0x62, 5293 0x00, 5294 0x96, 5295 0x43, // rated_max = 300.003 5296 0x62, 5297 0x00, 5298 0x96, 5299 0xc3 // rated_min = -300.003 5300 }; 5301 5302 struct pldm_numeric_effecter_value_pdr decodedPdr; 5303 auto rc = 5304 decode_numeric_effecter_pdr_data(pdr1.data(), pdr1.size(), &decodedPdr); 5305 EXPECT_EQ(PLDM_SUCCESS, rc); 5306 5307 EXPECT_EQ(PLDM_EFFECTER_DATA_SIZE_SINT32, decodedPdr.effecter_data_size); 5308 EXPECT_FLOAT_EQ(1.0f, decodedPdr.state_transition_interval); 5309 EXPECT_FLOAT_EQ(1.0f, decodedPdr.transition_interval); 5310 EXPECT_EQ(100000, decodedPdr.max_settable.value_s32); 5311 EXPECT_EQ(-100000, decodedPdr.min_settable.value_s32); 5312 EXPECT_EQ(PLDM_RANGE_FIELD_FORMAT_REAL32, decodedPdr.range_field_format); 5313 EXPECT_EQ(0x1f, decodedPdr.range_field_support.byte); 5314 EXPECT_FLOAT_EQ(0, decodedPdr.nominal_value.value_f32); 5315 EXPECT_FLOAT_EQ(50.05f, decodedPdr.normal_max.value_f32); 5316 EXPECT_FLOAT_EQ(-50.05f, decodedPdr.normal_min.value_f32); 5317 EXPECT_FLOAT_EQ(300.003f, decodedPdr.rated_max.value_f32); 5318 EXPECT_FLOAT_EQ(-300.003f, decodedPdr.rated_min.value_f32); 5319 } 5320 #endif 5321 5322 TEST(GetStateEffecterStates, testEncodeAndDecodeRequest) 5323 { 5324 std::array<uint8_t, hdrSize + PLDM_GET_STATE_EFFECTER_STATES_REQ_BYTES> 5325 requestMsg{}; 5326 5327 constexpr std::array<uint8_t, 5328 hdrSize + PLDM_GET_STATE_EFFECTER_STATES_REQ_BYTES> 5329 expectedRequestMsg{ 5330 {0x80, PLDM_PLATFORM, PLDM_GET_STATE_EFFECTER_STATES, 1, 0xab}}; 5331 5332 constexpr uint16_t effecter_id = 0xab01; 5333 5334 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5335 auto request = reinterpret_cast<pldm_msg*>(requestMsg.data()); 5336 5337 auto rc = encode_get_state_effecter_states_req( 5338 0, effecter_id, request, PLDM_GET_STATE_EFFECTER_STATES_REQ_BYTES); 5339 5340 EXPECT_EQ(rc, PLDM_SUCCESS); 5341 EXPECT_EQ(requestMsg, expectedRequestMsg); 5342 5343 uint16_t ret_effecter_id; 5344 5345 rc = decode_get_state_effecter_states_req( 5346 request, requestMsg.size() - hdrSize, &ret_effecter_id); 5347 5348 EXPECT_EQ(rc, PLDM_SUCCESS); 5349 EXPECT_EQ(effecter_id, ret_effecter_id); 5350 5351 // Test invalid length decode request 5352 5353 rc = decode_get_state_effecter_states_req( 5354 request, requestMsg.size() - hdrSize - 1, &ret_effecter_id); 5355 5356 EXPECT_EQ(rc, -EOVERFLOW); 5357 } 5358 5359 TEST(GetStateEffecterStates, testBadEncodeRequest) 5360 { 5361 std::vector<uint8_t> requestMsg(hdrSize + 5362 PLDM_GET_STATE_EFFECTER_STATES_REQ_BYTES); 5363 5364 auto rc = encode_get_state_effecter_states_req( 5365 0, 0, nullptr, PLDM_GET_STATE_EFFECTER_STATES_REQ_BYTES); 5366 EXPECT_EQ(rc, -EINVAL); 5367 } 5368 5369 TEST(GetStateEffecterStates, testBadDecodeRequest) 5370 { 5371 std::array<uint8_t, hdrSize + PLDM_GET_NUMERIC_EFFECTER_VALUE_REQ_BYTES> 5372 requestMsg{}; 5373 5374 auto rc = decode_get_state_effecter_states_req( 5375 nullptr, requestMsg.size() - hdrSize, nullptr); 5376 5377 EXPECT_EQ(rc, -EINVAL); 5378 } 5379 5380 TEST(GetStateEffecterStates, testEncodeAndDecodeResponse) 5381 { 5382 constexpr uint8_t comp_effecterCnt = 0x2; 5383 constexpr uint8_t completionCode = 0; 5384 std::array<uint8_t, 5385 hdrSize + PLDM_GET_STATE_EFFECTER_STATES_MIN_RESP_BYTES + 5386 PLDM_GET_EFFECTER_STATE_FIELD_SIZE * comp_effecterCnt> 5387 expectedResponseMsg{{0, PLDM_PLATFORM, PLDM_GET_STATE_EFFECTER_STATES, 5388 completionCode, comp_effecterCnt, 5389 EFFECTER_OPER_STATE_ENABLED_NOUPDATEPENDING, 2, 2, 5390 EFFECTER_OPER_STATE_ENABLED_UPDATEPENDING, 2, 3}}; 5391 5392 decltype(expectedResponseMsg) responseMsg{}; 5393 5394 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5395 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 5396 5397 std::array<get_effecter_state_field, comp_effecterCnt> stateField{ 5398 {{EFFECTER_OPER_STATE_ENABLED_NOUPDATEPENDING, 2, 2}, 5399 {EFFECTER_OPER_STATE_ENABLED_UPDATEPENDING, 2, 3}}}; 5400 5401 struct pldm_get_state_effecter_states_resp resp_fields 5402 { 5403 PLDM_SUCCESS, comp_effecterCnt, 5404 { 5405 stateField[0], stateField[1] 5406 } 5407 }; 5408 5409 auto rc = encode_get_state_effecter_states_resp( 5410 0, &resp_fields, response, responseMsg.size() - hdrSize); 5411 5412 EXPECT_EQ(rc, PLDM_SUCCESS); 5413 EXPECT_EQ(expectedResponseMsg, responseMsg); 5414 5415 struct pldm_get_state_effecter_states_resp ret_resp_fields; 5416 5417 rc = decode_get_state_effecter_states_resp( 5418 response, responseMsg.size() - hdrSize, &ret_resp_fields); 5419 5420 EXPECT_EQ(rc, PLDM_SUCCESS); 5421 EXPECT_EQ(completionCode, ret_resp_fields.completion_code); 5422 EXPECT_EQ(comp_effecterCnt, ret_resp_fields.comp_effecter_count); 5423 EXPECT_EQ(stateField[0].effecter_op_state, 5424 ret_resp_fields.field[0].effecter_op_state); 5425 EXPECT_EQ(stateField[0].pending_state, 5426 ret_resp_fields.field[0].pending_state); 5427 EXPECT_EQ(stateField[0].present_state, 5428 ret_resp_fields.field[0].present_state); 5429 EXPECT_EQ(stateField[1].effecter_op_state, 5430 ret_resp_fields.field[1].effecter_op_state); 5431 EXPECT_EQ(stateField[1].pending_state, 5432 ret_resp_fields.field[1].pending_state); 5433 EXPECT_EQ(stateField[1].present_state, 5434 ret_resp_fields.field[1].present_state); 5435 5436 // Test invalid length decode 5437 5438 rc = decode_get_state_effecter_states_resp( 5439 response, 5440 responseMsg.size() - hdrSize + PLDM_GET_EFFECTER_STATE_FIELD_SIZE, 5441 &ret_resp_fields); 5442 5443 EXPECT_EQ(rc, -EBADMSG); 5444 } 5445 5446 TEST(GetStateEffecterStates, testBadEncodeResponse) 5447 { 5448 struct pldm_get_state_effecter_states_resp resp 5449 { 5450 PLDM_SUCCESS, 0, 5451 { 5452 } 5453 }; 5454 auto rc = decode_get_state_effecter_states_resp(nullptr, 0, &resp); 5455 5456 EXPECT_EQ(rc, -EINVAL); 5457 } 5458 5459 TEST(GetStateEffecterStates, testBadDecodeResponse) 5460 { 5461 std::array<uint8_t, hdrSize + 5462 PLDM_GET_STATE_EFFECTER_STATES_MIN_RESP_BYTES + 5463 PLDM_GET_EFFECTER_STATE_FIELD_SIZE * 2> 5464 responseMsg{}; 5465 5466 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5467 auto response = reinterpret_cast<pldm_msg*>(responseMsg.data()); 5468 5469 auto rc = decode_get_state_effecter_states_resp( 5470 response, responseMsg.size() - hdrSize, nullptr); 5471 5472 EXPECT_EQ(rc, -EINVAL); 5473 } 5474 5475 [[maybe_unused]] static size_t str16len(char16_t* startptr) 5476 { 5477 char16_t* endptr = startptr; 5478 while (*endptr) 5479 { 5480 endptr++; 5481 } 5482 return endptr - startptr; 5483 } 5484 5485 TEST(decodeEntityAuxNamePdrData, GoodTest) 5486 { 5487 std::vector<uint8_t> pdr1{ 5488 // Common PDR Header 5489 0x1, 0x0, 0x0, 0x0, // record handle 5490 0x1, // PDRHeaderVersion 5491 PLDM_ENTITY_AUXILIARY_NAMES_PDR, // PDRType 5492 0x1, 5493 0x0, // recordChangeNumber 5494 0x27, 5495 0, // dataLength 5496 /* Entity Auxiliary Names PDR Data*/ 5497 3, 5498 0, // entityType system software 5499 0x1, 5500 0x0, // Entity instance number =1 5501 PLDM_PLATFORM_ENTITY_SYSTEM_CONTAINER_ID, 5502 0, // Overal system 5503 0, // shared Name Count one name only 5504 03, // nameStringCount 5505 0x65, 0x6e, 0x00, // Language Tag "en" 5506 0x00, 0x53, 0x00, 0x30, 0x00, 0x53, 0x00, 0x00, // Entity Name "S0S" 5507 0x66, 0x6e, 0x00, // Language Tag "en" 5508 0x00, 0x53, 0x00, 0x31, 0x00, 0x00, // Entity Name "S1" 5509 0x67, 0x6e, 0x00, // Language Tag "en" 5510 0x00, 0x52, 0x00, 0x52, 0x00, 0x33, 0x00, 0x00 // Entity Name "RR3" 5511 }; 5512 5513 const char expectTag0[] = {0x65, 0x6e, 0x00}; 5514 const char expectTag1[] = {0x66, 0x6e, 0x00}; 5515 const char expectTag2[] = {0x67, 0x6e, 0x00}; 5516 const char expectName0[] = {0x00, 0x53, 0x00, 0x30, 0x00, 0x53, 0x00, 0x00}; 5517 const char expectName1[] = {0x00, 0x53, 0x00, 0x31, 0x00, 0x00}; 5518 const char expectName2[] = {0x00, 0x52, 0x00, 0x52, 0x00, 0x33, 0x00, 0x00}; 5519 auto names_offset = sizeof(struct pldm_pdr_hdr) + 5520 PLDM_PDR_ENTITY_AUXILIARY_NAME_PDR_MIN_LENGTH; 5521 auto names_size = pdr1.size() - names_offset; 5522 size_t length = 0; 5523 5524 size_t decodedPdrSize = 5525 sizeof(struct pldm_entity_auxiliary_names_pdr) + names_size; 5526 auto decodedPdr = 5527 (struct pldm_entity_auxiliary_names_pdr*)malloc(decodedPdrSize); 5528 EXPECT_NE(nullptr, decodedPdr); 5529 5530 auto rc = decode_entity_auxiliary_names_pdr(pdr1.data(), pdr1.size(), 5531 decodedPdr, decodedPdrSize); 5532 5533 EXPECT_EQ(0, rc); 5534 EXPECT_EQ(1, decodedPdr->hdr.record_handle); 5535 EXPECT_EQ(1, decodedPdr->hdr.version); 5536 EXPECT_EQ(PLDM_ENTITY_AUXILIARY_NAMES_PDR, decodedPdr->hdr.type); 5537 EXPECT_EQ(1, decodedPdr->hdr.record_change_num); 5538 EXPECT_EQ(pdr1.size() - sizeof(struct pldm_pdr_hdr), 5539 decodedPdr->hdr.length); 5540 EXPECT_EQ(3, decodedPdr->container.entity_type); 5541 EXPECT_EQ(1, decodedPdr->container.entity_instance_num); 5542 EXPECT_EQ(PLDM_PLATFORM_ENTITY_SYSTEM_CONTAINER_ID, 5543 decodedPdr->container.entity_container_id); 5544 EXPECT_EQ(0, decodedPdr->shared_name_count); 5545 EXPECT_EQ(3, decodedPdr->name_string_count); 5546 5547 decodedPdr->names = (struct pldm_entity_auxiliary_name*)calloc( 5548 decodedPdr->name_string_count, 5549 sizeof(struct pldm_entity_auxiliary_name)); 5550 EXPECT_NE(nullptr, decodedPdr->names); 5551 5552 rc = decode_pldm_entity_auxiliary_names_pdr_index(decodedPdr); 5553 EXPECT_EQ(0, rc); 5554 5555 length = strlen(decodedPdr->names[0].tag); 5556 EXPECT_EQ(strlen(expectTag0), length); 5557 EXPECT_EQ(strncmp(expectTag0, decodedPdr->names[0].tag, length + 1), 0); 5558 5559 // NOLINTBEGIN(clang-analyzer-unix.Malloc) 5560 ASSERT_EQ(0, 5561 (uintptr_t)decodedPdr->names[0].name & (alignof(char16_t) - 1)); 5562 // NOLINTEND(clang-analyzer-unix.Malloc) 5563 length = str16len((char16_t*)decodedPdr->names[0].name); 5564 EXPECT_EQ(str16len((char16_t*)expectName0), length); 5565 EXPECT_EQ(3, str16len((char16_t*)expectName0)); 5566 EXPECT_EQ(memcmp(expectName0, decodedPdr->names[0].name, 5567 sizeof(char16_t) * (length + 1)), 5568 0); 5569 5570 length = strlen(decodedPdr->names[1].tag); 5571 EXPECT_EQ(strlen(expectTag1), length); 5572 EXPECT_EQ(strncmp(expectTag1, decodedPdr->names[1].tag, length + 1), 0); 5573 5574 // NOLINTBEGIN(clang-analyzer-unix.Malloc) 5575 ASSERT_EQ(0, 5576 (uintptr_t)decodedPdr->names[1].name & (alignof(char16_t) - 1)); 5577 // NOLINTEND(clang-analyzer-unix.Malloc) 5578 length = str16len((char16_t*)decodedPdr->names[1].name); 5579 EXPECT_EQ(str16len((char16_t*)expectName1), length); 5580 EXPECT_EQ(2, str16len((char16_t*)expectName1)); 5581 EXPECT_EQ(memcmp(expectName1, decodedPdr->names[1].name, 5582 sizeof(char16_t) * (length + 1)), 5583 0); 5584 5585 length = strlen(decodedPdr->names[2].tag); 5586 EXPECT_EQ(strlen(expectTag2), length); 5587 EXPECT_EQ(strncmp(expectTag2, decodedPdr->names[2].tag, length + 1), 0); 5588 5589 // NOLINTBEGIN(clang-analyzer-unix.Malloc) 5590 ASSERT_EQ(0, 5591 (uintptr_t)decodedPdr->names[2].name & (alignof(char16_t) - 1)); 5592 // NOLINTEND(clang-analyzer-unix.Malloc) 5593 length = str16len((char16_t*)decodedPdr->names[2].name); 5594 EXPECT_EQ(str16len((char16_t*)expectName2), length); 5595 EXPECT_EQ(3, str16len((char16_t*)expectName2)); 5596 EXPECT_EQ(memcmp(expectName2, decodedPdr->names[2].name, 5597 sizeof(char16_t) * (length + 1)), 5598 0); 5599 5600 free(decodedPdr->names); 5601 free(decodedPdr); 5602 } 5603 5604 TEST(decodeEntityAuxNamePdrData, BadTest) 5605 { 5606 std::vector<uint8_t> pdr1{ 5607 // Common PDR Header 5608 0x1, 0x0, 0x0, 0x0, // record handle 5609 0x1, // PDRHeaderVersion 5610 PLDM_ENTITY_AUXILIARY_NAMES_PDR, // PDRType 5611 0x1, 5612 0x0, // recordChangeNumber 5613 0x25, // correct size is 0x27, input invalid size 5614 0, // dataLength 5615 /* Entity Auxiliary Names PDR Data*/ 5616 3, 5617 0, // entityType system software 5618 0x1, 5619 0x0, // Entity instance number =1 5620 PLDM_PLATFORM_ENTITY_SYSTEM_CONTAINER_ID, 5621 0, // Overal system 5622 0, // shared Name Count one name only 5623 0, // Invalid nameStringCount 5624 0x65, 0x6e, 0x00, // Language Tag "en" 5625 0x00, 0x53, 0x00, 0x30, 0x00, 0x53, 0x00, 0x00, // Entity Name "S0S" 5626 0x66, 0x6e, 0x00, // Language Tag "en" 5627 0x00, 0x53, 0x00, 0x31, 0x00, 0x00, // Entity Name "S1" 5628 0x67, 0x6e, 0x00, // Language Tag "en" 5629 0x00, 0x52, 0x00, 0x52, 0x00, 0x33, 0x00, 0x00 // Entity Name "RR3" 5630 }; 5631 5632 auto names_offset = sizeof(struct pldm_pdr_hdr) + 5633 PLDM_PDR_ENTITY_AUXILIARY_NAME_PDR_MIN_LENGTH; 5634 auto names_size = pdr1.size() - names_offset; 5635 5636 size_t decodedPdrSize = 5637 sizeof(struct pldm_entity_auxiliary_names_pdr) + names_size; 5638 auto decodedPdr = 5639 (struct pldm_entity_auxiliary_names_pdr*)malloc(decodedPdrSize); 5640 5641 auto rc = decode_entity_auxiliary_names_pdr(pdr1.data(), pdr1.size(), 5642 decodedPdr, decodedPdrSize); 5643 5644 EXPECT_EQ(-EBADMSG, rc); 5645 free(decodedPdr); 5646 } 5647 5648 TEST(PlatformEventMessage, testGoodCperEventDataDecodeRequest) 5649 { 5650 constexpr const size_t eventDataSize = 4; 5651 constexpr const size_t eventSize = 5652 PLDM_PLATFORM_CPER_EVENT_MIN_LENGTH + eventDataSize; 5653 std::array<uint8_t, eventSize> eventData{ 5654 0x1, // format version 5655 0x0, // format type 5656 0x4, 0x0, // event data length 5657 0x44, 0x33, 0x22, 0x11 // data 5658 }; 5659 5660 uint8_t expectedFormatVersion = 1; 5661 uint8_t expectedFormatType = 0; 5662 uint16_t expectedEventDataLength = 4; 5663 uint8_t expectCperEventData[] = {0x44, 0x33, 0x22, 0x11}; 5664 5665 size_t cperEventSize = 5666 sizeof(struct pldm_platform_cper_event) + eventDataSize; 5667 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5668 auto cper_event = reinterpret_cast<struct pldm_platform_cper_event*>( 5669 malloc(cperEventSize)); 5670 5671 auto rc = decode_pldm_platform_cper_event( 5672 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5673 reinterpret_cast<const void*>(eventData.data()), eventData.size(), 5674 cper_event, cperEventSize); 5675 5676 EXPECT_EQ(rc, 0); 5677 EXPECT_EQ(cper_event->format_version, expectedFormatVersion); 5678 EXPECT_EQ(cper_event->format_type, expectedFormatType); 5679 EXPECT_EQ(cper_event->event_data_length, expectedEventDataLength); 5680 5681 auto cperEventData = pldm_platform_cper_event_event_data(cper_event); 5682 EXPECT_NE(cperEventData, nullptr); 5683 if (cperEventData) 5684 { 5685 EXPECT_EQ(0, memcmp(expectCperEventData, cperEventData, 5686 expectedEventDataLength)); 5687 } 5688 5689 free(cper_event); 5690 } 5691 5692 TEST(PlatformEventMessage, testBadCperEventDataDecodeRequest) 5693 { 5694 5695 constexpr const size_t eventDataSize = 4; 5696 constexpr const size_t eventSize = 5697 PLDM_PLATFORM_CPER_EVENT_MIN_LENGTH + eventDataSize; 5698 std::array<uint8_t, eventSize> eventData{ 5699 0x1, // format version 5700 0x0, // format type 5701 0x4, 0x0, // event data length 5702 0x44, 0x33, 0x22, 0x11 // data 5703 }; 5704 5705 size_t cperEventSize = 5706 sizeof(struct pldm_platform_cper_event) + eventDataSize; 5707 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5708 auto cperEvent = reinterpret_cast<struct pldm_platform_cper_event*>( 5709 malloc(cperEventSize)); 5710 5711 auto rc = decode_pldm_platform_cper_event(NULL, eventData.size(), cperEvent, 5712 cperEventSize); 5713 EXPECT_EQ(rc, -EINVAL); 5714 5715 rc = decode_pldm_platform_cper_event( 5716 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5717 reinterpret_cast<const void*>(eventData.data()), eventData.size(), NULL, 5718 cperEventSize); 5719 EXPECT_EQ(rc, -EINVAL); 5720 5721 #ifdef NDEBUG 5722 rc = decode_pldm_platform_cper_event( 5723 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5724 reinterpret_cast<uint8_t*>(eventData.data()), eventData.size() - 1, 5725 cperEvent, cperEventSize); 5726 EXPECT_EQ(rc, -EOVERFLOW); 5727 #else 5728 EXPECT_DEATH( 5729 decode_pldm_platform_cper_event( 5730 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5731 reinterpret_cast<uint8_t*>(eventData.data()), eventData.size() - 1, 5732 cperEvent, cperEventSize), 5733 "ctx->remaining >= 0"); 5734 #endif 5735 5736 rc = decode_pldm_platform_cper_event( 5737 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5738 reinterpret_cast<uint8_t*>(eventData.data()), eventData.size(), 5739 cperEvent, cperEventSize - 1); 5740 EXPECT_EQ(rc, -EOVERFLOW); 5741 5742 rc = decode_pldm_platform_cper_event( 5743 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5744 reinterpret_cast<uint8_t*>(eventData.data()), eventData.size(), 5745 cperEvent, cperEventSize + 1); 5746 EXPECT_EQ(rc, 0); 5747 5748 // Invalid CPER Event Format Type 5749 eventData[1] = 0x2; 5750 rc = decode_pldm_platform_cper_event( 5751 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5752 reinterpret_cast<const void*>(eventData.data()), eventData.size(), 5753 cperEvent, cperEventSize); 5754 5755 EXPECT_EQ(rc, -EPROTO); 5756 5757 // Invalid cper event data size 5758 eventData[1] = 0x1; 5759 eventData[2] = 3; 5760 rc = decode_pldm_platform_cper_event( 5761 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5762 reinterpret_cast<const void*>(eventData.data()), eventData.size(), 5763 cperEvent, cperEventSize); 5764 5765 EXPECT_EQ(rc, -EBADMSG); 5766 5767 eventData[2] = 5; 5768 rc = decode_pldm_platform_cper_event( 5769 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast) 5770 reinterpret_cast<const void*>(eventData.data()), eventData.size(), 5771 cperEvent, cperEventSize); 5772 5773 EXPECT_EQ(rc, -EOVERFLOW); 5774 5775 free(cperEvent); 5776 } 5777