blob: 25c18bc33246b6ab365ac4da083a7c3cc3af9465 [file] [log] [blame]
Andrew Jeffery7992eb82023-04-06 16:13:53 +09301#include "msgbuf/platform.h"
Manojkiran Eda9a8e4972022-11-28 16:38:21 +05302#include "base.h"
Andrew Jeffery7992eb82023-04-06 16:13:53 +09303#include "msgbuf.h"
4#include "platform.h"
Manojkiran Eda9a8e4972022-11-28 16:38:21 +05305#include "pldm_types.h"
Andrew Jeffery9c766792022-08-10 23:12:49 +09306#include <endian.h>
Manojkiran Eda9a8e4972022-11-28 16:38:21 +05307#include <stdint.h>
Andrew Jeffery9c766792022-08-10 23:12:49 +09308#include <string.h>
9
Andrew Jeffery7992eb82023-04-06 16:13:53 +093010static int pldm_platform_pdr_hdr_validate(struct pldm_value_pdr_hdr *ctx,
11 size_t lower, size_t upper)
12{
13 if (ctx->length + sizeof(*ctx) < lower) {
14 return PLDM_ERROR_INVALID_LENGTH;
15 }
16
17 if (ctx->length > upper) {
18 return PLDM_ERROR_INVALID_LENGTH;
19 }
20
21 return PLDM_SUCCESS;
22}
Andrew Jeffery9c766792022-08-10 23:12:49 +093023
24int encode_state_effecter_pdr(
25 struct pldm_state_effecter_pdr *const effecter,
26 const size_t allocation_size,
27 const struct state_effecter_possible_states *const possible_states,
28 const size_t possible_states_size, size_t *const actual_size)
29{
30 // Encode possible states
31
32 size_t calculated_possible_states_size = 0;
33
34 {
35 char *states_ptr = (char *)possible_states;
36 char *const begin_states_ptr = states_ptr;
37
38 for (int i = 0; i < effecter->composite_effecter_count; ++i) {
39 struct state_effecter_possible_states *states =
40 (struct state_effecter_possible_states *)states_ptr;
41
42 HTOLE16(states->state_set_id);
43
44 states_ptr +=
45 (sizeof(*states) - sizeof(states->states) +
46 states->possible_states_size);
47 }
48
49 calculated_possible_states_size = states_ptr - begin_states_ptr;
50 }
51
52 // Check lengths
53
54 if (possible_states_size != calculated_possible_states_size) {
55 *actual_size = 0;
56 return PLDM_ERROR;
57 }
58
59 *actual_size =
60 (sizeof(struct pldm_state_effecter_pdr) + possible_states_size -
61 sizeof(effecter->possible_states));
62
63 if (allocation_size < *actual_size) {
64 *actual_size = 0;
65 return PLDM_ERROR_INVALID_LENGTH;
66 }
67
68 // Encode rest of PDR
69
70 effecter->hdr.version = 1;
71 effecter->hdr.type = PLDM_STATE_EFFECTER_PDR;
72 effecter->hdr.length = *actual_size - sizeof(struct pldm_pdr_hdr);
73
74 memcpy(effecter->possible_states, possible_states,
75 possible_states_size);
76
77 // Convert effecter PDR body
78 HTOLE16(effecter->terminus_handle);
79 HTOLE16(effecter->effecter_id);
80 HTOLE16(effecter->entity_type);
81 HTOLE16(effecter->entity_instance);
82 HTOLE16(effecter->container_id);
83 HTOLE16(effecter->effecter_semantic_id);
84
85 // Convert header
86 HTOLE32(effecter->hdr.record_handle);
87 HTOLE16(effecter->hdr.record_change_num);
88 HTOLE16(effecter->hdr.length);
89
90 return PLDM_SUCCESS;
91}
92
93int encode_state_sensor_pdr(
94 struct pldm_state_sensor_pdr *const sensor, const size_t allocation_size,
95 const struct state_sensor_possible_states *const possible_states,
96 const size_t possible_states_size, size_t *const actual_size)
97{
98 // Encode possible states
99
100 size_t calculated_possible_states_size = 0;
101
102 {
Andrew Jefferyfbe61d72023-04-05 20:28:23 +0930103 char *states_ptr = (char *)possible_states;
104 char *const begin_states_ptr = states_ptr;
Andrew Jeffery9c766792022-08-10 23:12:49 +0930105
106 for (int i = 0; i < sensor->composite_sensor_count; ++i) {
107 struct state_sensor_possible_states *states =
108 (struct state_sensor_possible_states *)states_ptr;
109
110 HTOLE16(states->state_set_id);
111
112 states_ptr +=
113 (sizeof(*states) - sizeof(states->states) +
114 states->possible_states_size);
115 }
116
117 calculated_possible_states_size = states_ptr - begin_states_ptr;
118 }
119
120 // Check lengths
121
122 if (possible_states_size != calculated_possible_states_size) {
123 *actual_size = 0;
124 return PLDM_ERROR;
125 }
126
127 *actual_size = (sizeof(struct pldm_state_sensor_pdr) +
128 possible_states_size - sizeof(sensor->possible_states));
129
130 if (allocation_size < *actual_size) {
131 *actual_size = 0;
132 return PLDM_ERROR_INVALID_LENGTH;
133 }
134
135 // Encode rest of PDR
136
137 sensor->hdr.version = 1;
138 sensor->hdr.type = PLDM_STATE_SENSOR_PDR;
139 sensor->hdr.length = *actual_size - sizeof(struct pldm_pdr_hdr);
140
141 memcpy(sensor->possible_states, possible_states, possible_states_size);
142
143 // Convert sensor PDR body
144 HTOLE16(sensor->terminus_handle);
145 HTOLE16(sensor->sensor_id);
146 HTOLE16(sensor->entity_type);
147 HTOLE16(sensor->entity_instance);
148 HTOLE16(sensor->container_id);
149
150 // Convert header
151 HTOLE32(sensor->hdr.record_handle);
152 HTOLE16(sensor->hdr.record_change_num);
153 HTOLE16(sensor->hdr.length);
154
155 return PLDM_SUCCESS;
156}
157
158int encode_set_state_effecter_states_resp(uint8_t instance_id,
159 uint8_t completion_code,
160 struct pldm_msg *msg)
161{
162 if (msg == NULL) {
163 return PLDM_ERROR_INVALID_DATA;
164 }
165
166 struct pldm_header_info header = {0};
167 header.msg_type = PLDM_RESPONSE;
168 header.instance = instance_id;
169 header.pldm_type = PLDM_PLATFORM;
170 header.command = PLDM_SET_STATE_EFFECTER_STATES;
171
172 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
173 if (rc != PLDM_SUCCESS) {
174 return rc;
175 }
176
177 msg->payload[0] = completion_code;
178
179 return PLDM_SUCCESS;
180}
181
182int encode_set_state_effecter_states_req(uint8_t instance_id,
183 uint16_t effecter_id,
184 uint8_t comp_effecter_count,
185 set_effecter_state_field *field,
186 struct pldm_msg *msg)
187{
188 if (msg == NULL) {
189 return PLDM_ERROR_INVALID_DATA;
190 }
191
192 if (comp_effecter_count < 0x1 || comp_effecter_count > 0x8 ||
193 field == NULL) {
194 return PLDM_ERROR_INVALID_DATA;
195 }
196
197 struct pldm_header_info header = {0};
198 header.msg_type = PLDM_REQUEST;
199 header.instance = instance_id;
200 header.pldm_type = PLDM_PLATFORM;
201 header.command = PLDM_SET_STATE_EFFECTER_STATES;
202
203 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
204 if (rc != PLDM_SUCCESS) {
205 return rc;
206 }
207
208 struct pldm_set_state_effecter_states_req *request =
209 (struct pldm_set_state_effecter_states_req *)msg->payload;
210 effecter_id = htole16(effecter_id);
211 request->effecter_id = effecter_id;
212 request->comp_effecter_count = comp_effecter_count;
213 memcpy(request->field, field,
214 (sizeof(set_effecter_state_field) * comp_effecter_count));
215
216 return PLDM_SUCCESS;
217}
218
219int decode_set_state_effecter_states_resp(const struct pldm_msg *msg,
220 size_t payload_length,
221 uint8_t *completion_code)
222{
223 if (msg == NULL || completion_code == NULL) {
224 return PLDM_ERROR_INVALID_DATA;
225 }
226
227 *completion_code = msg->payload[0];
228 if (PLDM_SUCCESS != *completion_code) {
229 return PLDM_SUCCESS;
230 }
231
232 if (payload_length > PLDM_SET_STATE_EFFECTER_STATES_RESP_BYTES) {
233 return PLDM_ERROR_INVALID_LENGTH;
234 }
235
236 return PLDM_SUCCESS;
237}
238
Andrew Jeffery5d773b32023-04-04 10:52:57 +0930239#define PLDM_SET_STATE_EFFECTER_STATES_MIN_SIZE 3
Andrew Jeffery9c766792022-08-10 23:12:49 +0930240int decode_set_state_effecter_states_req(const struct pldm_msg *msg,
241 size_t payload_length,
242 uint16_t *effecter_id,
243 uint8_t *comp_effecter_count,
244 set_effecter_state_field *field)
245{
Andrew Jeffery5d773b32023-04-04 10:52:57 +0930246 struct pldm_msgbuf _buf;
247 struct pldm_msgbuf *buf = &_buf;
248 int rc;
249 int i;
250
Andrew Jeffery9c766792022-08-10 23:12:49 +0930251 if (msg == NULL || effecter_id == NULL || comp_effecter_count == NULL ||
252 field == NULL) {
253 return PLDM_ERROR_INVALID_DATA;
254 }
255
256 if (payload_length > PLDM_SET_STATE_EFFECTER_STATES_REQ_BYTES) {
257 return PLDM_ERROR_INVALID_LENGTH;
258 }
259
Andrew Jeffery5d773b32023-04-04 10:52:57 +0930260 rc = pldm_msgbuf_init(buf, PLDM_SET_STATE_EFFECTER_STATES_MIN_SIZE,
261 msg->payload, payload_length);
262 if (rc) {
263 return rc;
264 }
Andrew Jeffery9c766792022-08-10 23:12:49 +0930265
Andrew Jeffery5d773b32023-04-04 10:52:57 +0930266 pldm_msgbuf_extract(buf, effecter_id);
267 pldm_msgbuf_extract(buf, comp_effecter_count);
Andrew Jeffery9c766792022-08-10 23:12:49 +0930268
Andrew Jeffery5d773b32023-04-04 10:52:57 +0930269 if (*comp_effecter_count > 8) {
270 return PLDM_ERROR_INVALID_DATA;
271 }
272
273 for (i = 0; i < *comp_effecter_count; i++) {
274 pldm_msgbuf_extract(buf, &field[i].set_request);
275 pldm_msgbuf_extract(buf, &field[i].effecter_state);
276 }
277
278 return pldm_msgbuf_destroy(buf);
Andrew Jeffery9c766792022-08-10 23:12:49 +0930279}
280
281int decode_get_pdr_req(const struct pldm_msg *msg, size_t payload_length,
282 uint32_t *record_hndl, uint32_t *data_transfer_hndl,
283 uint8_t *transfer_op_flag, uint16_t *request_cnt,
284 uint16_t *record_chg_num)
285{
Andrew Jeffery891781e2023-04-04 11:04:18 +0930286 struct pldm_msgbuf _buf;
287 struct pldm_msgbuf *buf = &_buf;
288 int rc;
289
Andrew Jeffery9c766792022-08-10 23:12:49 +0930290 if (msg == NULL || record_hndl == NULL || data_transfer_hndl == NULL ||
291 transfer_op_flag == NULL || request_cnt == NULL ||
292 record_chg_num == NULL) {
293 return PLDM_ERROR_INVALID_DATA;
294 }
Andrew Jeffery891781e2023-04-04 11:04:18 +0930295
Andrew Jeffery9c766792022-08-10 23:12:49 +0930296 if (payload_length != PLDM_GET_PDR_REQ_BYTES) {
297 return PLDM_ERROR_INVALID_LENGTH;
298 }
299
Andrew Jeffery891781e2023-04-04 11:04:18 +0930300 rc = pldm_msgbuf_init(buf, PLDM_GET_PDR_REQ_BYTES, msg->payload,
301 payload_length);
302 if (rc) {
303 return rc;
304 }
Andrew Jeffery9c766792022-08-10 23:12:49 +0930305
Andrew Jeffery891781e2023-04-04 11:04:18 +0930306 pldm_msgbuf_extract(buf, record_hndl);
307 pldm_msgbuf_extract(buf, data_transfer_hndl);
308 pldm_msgbuf_extract(buf, transfer_op_flag);
309 pldm_msgbuf_extract(buf, request_cnt);
310 pldm_msgbuf_extract(buf, record_chg_num);
311
312 return pldm_msgbuf_destroy(buf);
Andrew Jeffery9c766792022-08-10 23:12:49 +0930313}
314
315int encode_get_pdr_resp(uint8_t instance_id, uint8_t completion_code,
316 uint32_t next_record_hndl,
317 uint32_t next_data_transfer_hndl, uint8_t transfer_flag,
318 uint16_t resp_cnt, const uint8_t *record_data,
319 uint8_t transfer_crc, struct pldm_msg *msg)
320{
321 if (msg == NULL) {
322 return PLDM_ERROR_INVALID_DATA;
323 }
324
325 struct pldm_header_info header = {0};
326 header.msg_type = PLDM_RESPONSE;
327 header.instance = instance_id;
328 header.pldm_type = PLDM_PLATFORM;
329 header.command = PLDM_GET_PDR;
330
331 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
332 if (rc != PLDM_SUCCESS) {
333 return rc;
334 }
335
336 struct pldm_get_pdr_resp *response =
337 (struct pldm_get_pdr_resp *)msg->payload;
338 response->completion_code = completion_code;
339
340 if (response->completion_code == PLDM_SUCCESS) {
341 response->next_record_handle = htole32(next_record_hndl);
342 response->next_data_transfer_handle =
343 htole32(next_data_transfer_hndl);
344 response->transfer_flag = transfer_flag;
345 response->response_count = htole16(resp_cnt);
346 if (record_data != NULL && resp_cnt > 0) {
347 memcpy(response->record_data, record_data, resp_cnt);
348 }
349 if (transfer_flag == PLDM_END) {
350 uint8_t *dst = msg->payload;
351 dst +=
352 (sizeof(struct pldm_get_pdr_resp) - 1) + resp_cnt;
353 *dst = transfer_crc;
354 }
355 }
356
357 return PLDM_SUCCESS;
358}
359
360int encode_get_pdr_repository_info_resp(
361 uint8_t instance_id, uint8_t completion_code, uint8_t repository_state,
362 const uint8_t *update_time, const uint8_t *oem_update_time,
363 uint32_t record_count, uint32_t repository_size,
364 uint32_t largest_record_size, uint8_t data_transfer_handle_timeout,
365 struct pldm_msg *msg)
366{
367 if (msg == NULL) {
368 return PLDM_ERROR_INVALID_DATA;
369 }
370
371 struct pldm_header_info header = {0};
372 header.msg_type = PLDM_RESPONSE;
373 header.instance = instance_id;
374 header.pldm_type = PLDM_PLATFORM;
375 header.command = PLDM_GET_PDR_REPOSITORY_INFO;
376
377 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
378 if (rc != PLDM_SUCCESS) {
379 return rc;
380 }
381
382 struct pldm_pdr_repository_info_resp *response =
383 (struct pldm_pdr_repository_info_resp *)msg->payload;
384 response->completion_code = completion_code;
385
386 if (response->completion_code == PLDM_SUCCESS) {
387 response->repository_state = repository_state;
388 if (update_time != NULL) {
389 memcpy(response->update_time, update_time,
390 PLDM_TIMESTAMP104_SIZE);
391 }
392 if (oem_update_time != NULL) {
393 memcpy(response->oem_update_time, oem_update_time,
394 PLDM_TIMESTAMP104_SIZE);
395 }
396 response->record_count = htole32(record_count);
397 response->repository_size = htole32(repository_size);
398 response->largest_record_size = htole32(largest_record_size);
399 response->data_transfer_handle_timeout =
400 data_transfer_handle_timeout;
401 }
402
403 return PLDM_SUCCESS;
404}
405
Gilbert Chenb7c73e52022-11-10 11:29:52 +0800406int decode_get_pdr_repository_info_resp(
407 const struct pldm_msg *msg, size_t payload_length, uint8_t *completion_code,
408 uint8_t *repository_state, uint8_t *update_time, uint8_t *oem_update_time,
409 uint32_t *record_count, uint32_t *repository_size,
410 uint32_t *largest_record_size, uint8_t *data_transfer_handle_timeout)
411{
Andrew Jeffery5c651b82023-04-04 11:37:56 +0930412 struct pldm_msgbuf _buf;
413 struct pldm_msgbuf *buf = &_buf;
414 int rc;
415
Gilbert Chenb7c73e52022-11-10 11:29:52 +0800416 if (msg == NULL || completion_code == NULL ||
417 repository_state == NULL || update_time == NULL ||
418 oem_update_time == NULL || record_count == NULL ||
419 repository_size == NULL || largest_record_size == NULL ||
420 data_transfer_handle_timeout == NULL) {
421 return PLDM_ERROR_INVALID_DATA;
422 }
423
Andrew Jeffery5c651b82023-04-04 11:37:56 +0930424 rc = pldm_msgbuf_init(buf, PLDM_GET_PDR_REPOSITORY_INFO_RESP_BYTES,
425 msg->payload, payload_length);
426 if (rc) {
427 return rc;
428 }
429
430 pldm_msgbuf_extract(buf, completion_code);
Gilbert Chenb7c73e52022-11-10 11:29:52 +0800431 if (PLDM_SUCCESS != *completion_code) {
432 return PLDM_SUCCESS;
433 }
434
Andrew Jeffery5c651b82023-04-04 11:37:56 +0930435 pldm_msgbuf_extract(buf, repository_state);
Gilbert Chenb7c73e52022-11-10 11:29:52 +0800436 if (*repository_state > PLDM_FAILED) {
437 return PLDM_ERROR_INVALID_DATA;
438 }
439
Andrew Jeffery5c651b82023-04-04 11:37:56 +0930440 pldm_msgbuf_extract_array(buf, update_time, PLDM_TIMESTAMP104_SIZE);
441 pldm_msgbuf_extract_array(buf, oem_update_time, PLDM_TIMESTAMP104_SIZE);
442 pldm_msgbuf_extract(buf, record_count);
443 pldm_msgbuf_extract(buf, repository_size);
444 pldm_msgbuf_extract(buf, largest_record_size);
445 pldm_msgbuf_extract(buf, data_transfer_handle_timeout);
Gilbert Chenb7c73e52022-11-10 11:29:52 +0800446
Andrew Jeffery5c651b82023-04-04 11:37:56 +0930447 return pldm_msgbuf_destroy(buf);
Gilbert Chenb7c73e52022-11-10 11:29:52 +0800448}
449
Andrew Jeffery9c766792022-08-10 23:12:49 +0930450int encode_get_pdr_req(uint8_t instance_id, uint32_t record_hndl,
451 uint32_t data_transfer_hndl, uint8_t transfer_op_flag,
452 uint16_t request_cnt, uint16_t record_chg_num,
453 struct pldm_msg *msg, size_t payload_length)
454{
455 if (msg == NULL) {
456 return PLDM_ERROR_INVALID_DATA;
457 }
458
459 if (payload_length != PLDM_GET_PDR_REQ_BYTES) {
460 return PLDM_ERROR_INVALID_LENGTH;
461 }
462
463 struct pldm_header_info header = {0};
464 header.msg_type = PLDM_REQUEST;
465 header.instance = instance_id;
466 header.pldm_type = PLDM_PLATFORM;
467 header.command = PLDM_GET_PDR;
468
469 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
470 if (rc != PLDM_SUCCESS) {
471 return rc;
472 }
473
474 struct pldm_get_pdr_req *request =
475 (struct pldm_get_pdr_req *)msg->payload;
476 request->record_handle = htole32(record_hndl);
477 request->data_transfer_handle = htole32(data_transfer_hndl);
478 request->transfer_op_flag = transfer_op_flag;
479 request->request_count = htole16(request_cnt);
480 request->record_change_number = htole16(record_chg_num);
481
482 return PLDM_SUCCESS;
483}
484
485int decode_get_pdr_resp(const struct pldm_msg *msg, size_t payload_length,
486 uint8_t *completion_code, uint32_t *next_record_hndl,
487 uint32_t *next_data_transfer_hndl,
488 uint8_t *transfer_flag, uint16_t *resp_cnt,
489 uint8_t *record_data, size_t record_data_length,
490 uint8_t *transfer_crc)
491{
Andrew Jeffery4e5e8a22023-04-04 11:58:45 +0930492 struct pldm_msgbuf _buf;
493 struct pldm_msgbuf *buf = &_buf;
494 int rc;
495
Andrew Jeffery9c766792022-08-10 23:12:49 +0930496 if (msg == NULL || completion_code == NULL ||
497 next_record_hndl == NULL || next_data_transfer_hndl == NULL ||
498 transfer_flag == NULL || resp_cnt == NULL || transfer_crc == NULL) {
499 return PLDM_ERROR_INVALID_DATA;
500 }
501
Andrew Jeffery4e5e8a22023-04-04 11:58:45 +0930502 rc = pldm_msgbuf_init(buf, PLDM_GET_PDR_MIN_RESP_BYTES, msg->payload,
503 payload_length);
504 if (rc) {
505 return rc;
506 }
507
508 pldm_msgbuf_extract(buf, completion_code);
Andrew Jeffery9c766792022-08-10 23:12:49 +0930509 if (PLDM_SUCCESS != *completion_code) {
510 return PLDM_SUCCESS;
511 }
512
Andrew Jeffery4e5e8a22023-04-04 11:58:45 +0930513 pldm_msgbuf_extract(buf, next_record_hndl);
514 pldm_msgbuf_extract(buf, next_data_transfer_hndl);
515 pldm_msgbuf_extract(buf, transfer_flag);
516 rc = pldm_msgbuf_extract(buf, resp_cnt);
517 if (rc) {
518 return rc;
Andrew Jeffery9c766792022-08-10 23:12:49 +0930519 }
520
521 if (*resp_cnt > 0 && record_data != NULL) {
522 if (record_data_length < *resp_cnt) {
523 return PLDM_ERROR_INVALID_LENGTH;
524 }
Andrew Jeffery4e5e8a22023-04-04 11:58:45 +0930525 pldm_msgbuf_extract_array(buf, record_data, *resp_cnt);
Andrew Jeffery9c766792022-08-10 23:12:49 +0930526 }
527
528 if (*transfer_flag == PLDM_END) {
Andrew Jeffery4e5e8a22023-04-04 11:58:45 +0930529 pldm_msgbuf_extract(buf, transfer_crc);
Andrew Jeffery9c766792022-08-10 23:12:49 +0930530 }
531
Andrew Jeffery4e5e8a22023-04-04 11:58:45 +0930532 return pldm_msgbuf_destroy(buf);
Andrew Jeffery9c766792022-08-10 23:12:49 +0930533}
534
535int decode_set_numeric_effecter_value_req(const struct pldm_msg *msg,
536 size_t payload_length,
537 uint16_t *effecter_id,
538 uint8_t *effecter_data_size,
539 uint8_t *effecter_value)
540{
541 if (msg == NULL || effecter_id == NULL || effecter_data_size == NULL ||
542 effecter_value == NULL) {
543 return PLDM_ERROR_INVALID_DATA;
544 }
545
546 if (payload_length < PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES) {
547 return PLDM_ERROR_INVALID_LENGTH;
548 }
549
550 struct pldm_set_numeric_effecter_value_req *request =
551 (struct pldm_set_numeric_effecter_value_req *)msg->payload;
552 *effecter_id = le16toh(request->effecter_id);
553 *effecter_data_size = request->effecter_data_size;
554
555 if (*effecter_data_size > PLDM_EFFECTER_DATA_SIZE_SINT32) {
556 return PLDM_ERROR_INVALID_DATA;
557 }
558
559 if (*effecter_data_size == PLDM_EFFECTER_DATA_SIZE_UINT8 ||
560 *effecter_data_size == PLDM_EFFECTER_DATA_SIZE_SINT8) {
561
562 if (payload_length !=
563 PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES) {
564 return PLDM_ERROR_INVALID_LENGTH;
565 }
566
567 *effecter_value = request->effecter_value[0];
568 }
569
570 if (*effecter_data_size == PLDM_EFFECTER_DATA_SIZE_UINT16 ||
571 *effecter_data_size == PLDM_EFFECTER_DATA_SIZE_SINT16) {
572
573 if (payload_length !=
574 PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES + 1) {
575 return PLDM_ERROR_INVALID_LENGTH;
576 }
577
578 memcpy(effecter_value, request->effecter_value, 2);
579 uint16_t *val = (uint16_t *)(effecter_value);
580 *val = le16toh(*val);
581 }
582
583 if (*effecter_data_size == PLDM_EFFECTER_DATA_SIZE_UINT32 ||
584 *effecter_data_size == PLDM_EFFECTER_DATA_SIZE_SINT32) {
585
586 if (payload_length !=
587 PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES + 3) {
588 return PLDM_ERROR_INVALID_LENGTH;
589 }
590
591 memcpy(effecter_value, request->effecter_value, 4);
592 uint32_t *val = (uint32_t *)(effecter_value);
593 *val = le32toh(*val);
594 }
595
596 return PLDM_SUCCESS;
597}
598
599int encode_set_numeric_effecter_value_resp(uint8_t instance_id,
600 uint8_t completion_code,
601 struct pldm_msg *msg,
602 size_t payload_length)
603{
604 if (msg == NULL) {
605 return PLDM_ERROR_INVALID_DATA;
606 }
607
608 if (payload_length != PLDM_SET_NUMERIC_EFFECTER_VALUE_RESP_BYTES) {
609 return PLDM_ERROR_INVALID_LENGTH;
610 }
611
612 struct pldm_header_info header = {0};
613 header.msg_type = PLDM_RESPONSE;
614 header.instance = instance_id;
615 header.pldm_type = PLDM_PLATFORM;
616 header.command = PLDM_SET_NUMERIC_EFFECTER_VALUE;
617
618 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
619 if (rc != PLDM_SUCCESS) {
620 return rc;
621 }
622
623 msg->payload[0] = completion_code;
624
625 return rc;
626}
627
628int encode_set_numeric_effecter_value_req(
629 uint8_t instance_id, uint16_t effecter_id, uint8_t effecter_data_size,
Andrew Jefferydebe6b32023-04-05 20:30:46 +0930630 const uint8_t *effecter_value, struct pldm_msg *msg, size_t payload_length)
Andrew Jeffery9c766792022-08-10 23:12:49 +0930631{
632 if (msg == NULL || effecter_value == NULL) {
633 return PLDM_ERROR_INVALID_DATA;
634 }
635
636 if (effecter_data_size > PLDM_EFFECTER_DATA_SIZE_SINT32) {
637 return PLDM_ERROR_INVALID_DATA;
638 }
639
640 struct pldm_header_info header = {0};
641 header.msg_type = PLDM_REQUEST;
642 header.instance = instance_id;
643 header.pldm_type = PLDM_PLATFORM;
644 header.command = PLDM_SET_NUMERIC_EFFECTER_VALUE;
645
646 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
647 if (rc != PLDM_SUCCESS) {
648 return rc;
649 }
650
651 struct pldm_set_numeric_effecter_value_req *request =
652 (struct pldm_set_numeric_effecter_value_req *)msg->payload;
653 if (effecter_data_size == PLDM_EFFECTER_DATA_SIZE_UINT8 ||
654 effecter_data_size == PLDM_EFFECTER_DATA_SIZE_SINT8) {
655 if (payload_length !=
656 PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES) {
657 return PLDM_ERROR_INVALID_LENGTH;
658 }
659 request->effecter_value[0] = *effecter_value;
660 } else if (effecter_data_size == PLDM_EFFECTER_DATA_SIZE_UINT16 ||
661 effecter_data_size == PLDM_EFFECTER_DATA_SIZE_SINT16) {
662 if (payload_length !=
663 PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES + 1) {
664 return PLDM_ERROR_INVALID_LENGTH;
665 }
666
667 uint16_t val = *(uint16_t *)(effecter_value);
668 val = htole16(val);
669 memcpy(request->effecter_value, &val, sizeof(uint16_t));
670
671 } else if (effecter_data_size == PLDM_EFFECTER_DATA_SIZE_UINT32 ||
672 effecter_data_size == PLDM_EFFECTER_DATA_SIZE_SINT32) {
673 if (payload_length !=
674 PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES + 3) {
675 return PLDM_ERROR_INVALID_LENGTH;
676 }
677
678 uint32_t val = *(uint32_t *)(effecter_value);
679 val = htole32(val);
680 memcpy(request->effecter_value, &val, sizeof(uint32_t));
681 }
682
683 request->effecter_id = htole16(effecter_id);
684 request->effecter_data_size = effecter_data_size;
685
686 return PLDM_SUCCESS;
687}
688
689int decode_set_numeric_effecter_value_resp(const struct pldm_msg *msg,
690 size_t payload_length,
691 uint8_t *completion_code)
692{
693 if (msg == NULL || completion_code == NULL) {
694 return PLDM_ERROR_INVALID_DATA;
695 }
696
697 if (payload_length != PLDM_SET_NUMERIC_EFFECTER_VALUE_RESP_BYTES) {
698 return PLDM_ERROR_INVALID_LENGTH;
699 }
700
701 *completion_code = msg->payload[0];
702
703 return PLDM_SUCCESS;
704}
705
706int encode_get_state_sensor_readings_resp(uint8_t instance_id,
707 uint8_t completion_code,
708 uint8_t comp_sensor_count,
709 get_sensor_state_field *field,
710 struct pldm_msg *msg)
711{
712 if (msg == NULL) {
713 return PLDM_ERROR_INVALID_DATA;
714 }
715
716 if (comp_sensor_count < 0x1 || comp_sensor_count > 0x8) {
717 return PLDM_ERROR_INVALID_DATA;
718 }
719
720 struct pldm_header_info header = {0};
721 header.msg_type = PLDM_RESPONSE;
722 header.instance = instance_id;
723 header.pldm_type = PLDM_PLATFORM;
724 header.command = PLDM_GET_STATE_SENSOR_READINGS;
725
726 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
727 if (rc != PLDM_SUCCESS) {
728 return rc;
729 }
730
731 struct pldm_get_state_sensor_readings_resp *response =
732 (struct pldm_get_state_sensor_readings_resp *)msg->payload;
733
734 response->completion_code = completion_code;
735 response->comp_sensor_count = comp_sensor_count;
736 memcpy(response->field, field,
737 (sizeof(get_sensor_state_field) * comp_sensor_count));
738
739 return PLDM_SUCCESS;
740}
741
742int encode_get_state_sensor_readings_req(uint8_t instance_id,
743 uint16_t sensor_id,
744 bitfield8_t sensor_rearm,
745 uint8_t reserved, struct pldm_msg *msg)
746{
747 if (msg == NULL) {
748 return PLDM_ERROR_INVALID_DATA;
749 }
750
751 struct pldm_header_info header = {0};
752 header.msg_type = PLDM_REQUEST;
753 header.instance = instance_id;
754 header.pldm_type = PLDM_PLATFORM;
755 header.command = PLDM_GET_STATE_SENSOR_READINGS;
756
757 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
758 if (rc != PLDM_SUCCESS) {
759 return rc;
760 }
761
762 struct pldm_get_state_sensor_readings_req *request =
763 (struct pldm_get_state_sensor_readings_req *)msg->payload;
764
765 request->sensor_id = htole16(sensor_id);
766 request->reserved = reserved;
767 request->sensor_rearm = sensor_rearm;
768
769 return PLDM_SUCCESS;
770}
771
772int decode_get_state_sensor_readings_resp(const struct pldm_msg *msg,
773 size_t payload_length,
774 uint8_t *completion_code,
775 uint8_t *comp_sensor_count,
776 get_sensor_state_field *field)
777{
778 if (msg == NULL || completion_code == NULL ||
779 comp_sensor_count == NULL || field == NULL) {
780 return PLDM_ERROR_INVALID_DATA;
781 }
782
783 *completion_code = msg->payload[0];
784 if (PLDM_SUCCESS != *completion_code) {
785 return PLDM_SUCCESS;
786 }
787
788 struct pldm_get_state_sensor_readings_resp *response =
789 (struct pldm_get_state_sensor_readings_resp *)msg->payload;
790
791 if (response->comp_sensor_count < 0x1 ||
792 response->comp_sensor_count > 0x8) {
793 return PLDM_ERROR_INVALID_DATA;
794 }
795
796 if (payload_length >
797 PLDM_GET_STATE_SENSOR_READINGS_MIN_RESP_BYTES +
798 sizeof(get_sensor_state_field) * response->comp_sensor_count) {
799 return PLDM_ERROR_INVALID_LENGTH;
800 }
801
802 *comp_sensor_count = response->comp_sensor_count;
803
804 memcpy(field, response->field,
805 (sizeof(get_sensor_state_field) * (*comp_sensor_count)));
806
807 return PLDM_SUCCESS;
808}
809
810int decode_get_state_sensor_readings_req(const struct pldm_msg *msg,
811 size_t payload_length,
812 uint16_t *sensor_id,
813 bitfield8_t *sensor_rearm,
814 uint8_t *reserved)
815{
816 if (msg == NULL || sensor_id == NULL || sensor_rearm == NULL) {
817 return PLDM_ERROR_INVALID_DATA;
818 }
819
820 if (payload_length != PLDM_GET_STATE_SENSOR_READINGS_REQ_BYTES) {
821 return PLDM_ERROR_INVALID_LENGTH;
822 }
823
824 struct pldm_get_state_sensor_readings_req *request =
825 (struct pldm_get_state_sensor_readings_req *)msg->payload;
826
827 *sensor_id = le16toh(request->sensor_id);
828 *reserved = request->reserved;
829 memcpy(&(sensor_rearm->byte), &(request->sensor_rearm.byte),
830 sizeof(request->sensor_rearm.byte));
831
832 return PLDM_SUCCESS;
833}
834
835int encode_sensor_event_data(
836 struct pldm_sensor_event_data *const event_data,
837 const size_t event_data_size, const uint16_t sensor_id,
838 const enum sensor_event_class_states sensor_event_class,
839 const uint8_t sensor_offset, const uint8_t event_state,
840 const uint8_t previous_event_state, size_t *const actual_event_data_size)
841{
842 *actual_event_data_size =
843 (sizeof(*event_data) - sizeof(event_data->event_class) +
844 sizeof(struct pldm_sensor_event_state_sensor_state));
845
846 if (!event_data) {
847 return PLDM_SUCCESS;
848 }
849
850 if (event_data_size < *actual_event_data_size) {
851 *actual_event_data_size = 0;
852 return PLDM_ERROR_INVALID_LENGTH;
853 }
854
855 event_data->sensor_id = htole16(sensor_id);
856 event_data->sensor_event_class_type = sensor_event_class;
857
858 struct pldm_sensor_event_state_sensor_state *const state_data =
859 (struct pldm_sensor_event_state_sensor_state *)
860 event_data->event_class;
861
862 state_data->sensor_offset = sensor_offset;
863 state_data->event_state = event_state;
864 state_data->previous_event_state = previous_event_state;
865
866 return PLDM_SUCCESS;
867}
868
869int decode_platform_event_message_req(const struct pldm_msg *msg,
870 size_t payload_length,
871 uint8_t *format_version, uint8_t *tid,
872 uint8_t *event_class,
873 size_t *event_data_offset)
874{
875
876 if (msg == NULL || format_version == NULL || tid == NULL ||
877 event_class == NULL || event_data_offset == NULL) {
878 return PLDM_ERROR_INVALID_DATA;
879 }
880
881 if (payload_length <= PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES) {
882 return PLDM_ERROR_INVALID_LENGTH;
883 }
884 struct pldm_platform_event_message_req *response =
885 (struct pldm_platform_event_message_req *)msg->payload;
886
887 *format_version = response->format_version;
888 *tid = response->tid;
889 *event_class = response->event_class;
890 *event_data_offset =
891 sizeof(*format_version) + sizeof(*tid) + sizeof(*event_class);
892
893 return PLDM_SUCCESS;
894}
895
896int encode_platform_event_message_resp(uint8_t instance_id,
897 uint8_t completion_code,
898 uint8_t platform_event_status,
899 struct pldm_msg *msg)
900{
901 if (msg == NULL) {
902 return PLDM_ERROR_INVALID_DATA;
903 }
904
905 if (platform_event_status > PLDM_EVENT_LOGGING_REJECTED) {
906 return PLDM_ERROR_INVALID_DATA;
907 }
908
909 struct pldm_header_info header = {0};
910 header.msg_type = PLDM_RESPONSE;
911 header.instance = instance_id;
912 header.pldm_type = PLDM_PLATFORM;
913 header.command = PLDM_PLATFORM_EVENT_MESSAGE;
914
915 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
916 if (rc != PLDM_SUCCESS) {
917 return rc;
918 }
919
920 struct pldm_platform_event_message_resp *response =
921 (struct pldm_platform_event_message_resp *)msg->payload;
922 response->completion_code = completion_code;
923 response->platform_event_status = platform_event_status;
924
925 return PLDM_SUCCESS;
926}
927
928int encode_platform_event_message_req(
929 uint8_t instance_id, uint8_t format_version, uint8_t tid,
930 uint8_t event_class, const uint8_t *event_data, size_t event_data_length,
931 struct pldm_msg *msg, size_t payload_length)
932
933{
934 if (format_version != 1) {
935 return PLDM_ERROR_INVALID_DATA;
936 }
937
938 if (msg == NULL || event_data == NULL) {
939 return PLDM_ERROR_INVALID_DATA;
940 }
941
942 if (event_data_length == 0) {
943 return PLDM_ERROR_INVALID_DATA;
944 }
945
946 if (payload_length !=
947 PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES + event_data_length) {
948 return PLDM_ERROR_INVALID_LENGTH;
949 }
950
951 if (event_class > PLDM_HEARTBEAT_TIMER_ELAPSED_EVENT &&
952 !(event_class >= 0xF0 && event_class <= 0xFE)) {
953 return PLDM_ERROR_INVALID_DATA;
954 }
955
956 struct pldm_header_info header = {0};
957 header.msg_type = PLDM_REQUEST;
958 header.instance = instance_id;
959 header.pldm_type = PLDM_PLATFORM;
960 header.command = PLDM_PLATFORM_EVENT_MESSAGE;
961
962 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
963 if (rc != PLDM_SUCCESS) {
964 return rc;
965 }
966
967 struct pldm_platform_event_message_req *request =
968 (struct pldm_platform_event_message_req *)msg->payload;
969 request->format_version = format_version;
970 request->tid = tid;
971 request->event_class = event_class;
972 memcpy(request->event_data, event_data, event_data_length);
973
974 return PLDM_SUCCESS;
975}
976
977int decode_platform_event_message_resp(const struct pldm_msg *msg,
978 size_t payload_length,
979 uint8_t *completion_code,
980 uint8_t *platform_event_status)
981{
982 if (msg == NULL || completion_code == NULL ||
983 platform_event_status == NULL) {
984 return PLDM_ERROR_INVALID_DATA;
985 }
986
987 *completion_code = msg->payload[0];
988 if (PLDM_SUCCESS != *completion_code) {
989 return PLDM_SUCCESS;
990 }
991 if (payload_length != PLDM_PLATFORM_EVENT_MESSAGE_RESP_BYTES) {
992 return PLDM_ERROR_INVALID_LENGTH;
993 }
994
995 struct pldm_platform_event_message_resp *response =
996 (struct pldm_platform_event_message_resp *)msg->payload;
997 *platform_event_status = response->platform_event_status;
998
999 if (*platform_event_status > PLDM_EVENT_LOGGING_REJECTED) {
1000 return PLDM_ERROR_INVALID_DATA;
1001 }
1002
1003 return PLDM_SUCCESS;
1004}
1005
Dung Caod6ae8982022-11-02 10:00:10 +07001006int encode_event_message_buffer_size_req(
1007 uint8_t instance_id, uint16_t event_receiver_max_buffer_size,
1008 struct pldm_msg *msg)
1009{
1010 struct pldm_header_info header = {0};
1011 header.msg_type = PLDM_REQUEST;
1012 header.instance = instance_id;
1013 header.pldm_type = PLDM_PLATFORM;
1014 header.command = PLDM_EVENT_MESSAGE_BUFFER_SIZE;
1015
1016 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
1017 if (rc != PLDM_SUCCESS) {
1018 return rc;
1019 }
1020
1021 struct pldm_event_message_buffer_size_req *request =
1022 (struct pldm_event_message_buffer_size_req *)msg->payload;
1023 request->event_receiver_max_buffer_size =
1024 event_receiver_max_buffer_size;
1025
1026 return PLDM_SUCCESS;
1027}
1028
1029int decode_event_message_buffer_size_resp(const struct pldm_msg *msg,
1030 size_t payload_length,
1031 uint8_t *completion_code,
1032 uint16_t *terminus_max_buffer_size)
1033{
1034 if (msg == NULL || completion_code == NULL ||
1035 terminus_max_buffer_size == NULL) {
1036 return PLDM_ERROR_INVALID_DATA;
1037 }
1038
1039 *completion_code = msg->payload[0];
1040 if (PLDM_SUCCESS != *completion_code) {
1041 return PLDM_SUCCESS;
1042 }
1043 if (payload_length != PLDM_EVENT_MESSAGE_BUFFER_SIZE_RESP_BYTES) {
1044 return PLDM_ERROR_INVALID_LENGTH;
1045 }
1046
1047 struct pldm_event_message_buffer_size_resp *response =
1048 (struct pldm_event_message_buffer_size_resp *)msg->payload;
1049
1050 *terminus_max_buffer_size = response->terminus_max_buffer_size;
1051
1052 return PLDM_SUCCESS;
1053}
1054
Dung Cao1bf8c872022-11-29 05:32:58 +07001055int encode_event_message_supported_req(uint8_t instance_id,
1056 uint8_t format_version,
1057 struct pldm_msg *msg)
1058{
1059 if (format_version != 1) {
1060 return PLDM_ERROR_INVALID_DATA;
1061 }
1062
1063 if (msg == NULL) {
1064 return PLDM_ERROR_INVALID_DATA;
1065 }
1066
1067 struct pldm_header_info header = {0};
1068 header.msg_type = PLDM_REQUEST;
1069 header.instance = instance_id;
1070 header.pldm_type = PLDM_PLATFORM;
1071 header.command = PLDM_EVENT_MESSAGE_SUPPORTED;
1072
1073 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
1074 if (rc != PLDM_SUCCESS) {
1075 return rc;
1076 }
1077
1078 struct pldm_event_message_supported_req *request =
1079 (struct pldm_event_message_supported_req *)msg->payload;
1080 request->format_version = format_version;
1081
1082 return PLDM_SUCCESS;
1083}
1084
1085int decode_event_message_supported_resp(
1086 const struct pldm_msg *msg, size_t payload_length, uint8_t *completion_code,
1087 uint8_t *synchrony_config, bitfield8_t *synchrony_config_support,
1088 uint8_t *number_event_class_returned, uint8_t *event_class,
1089 uint8_t event_class_count)
1090{
1091 if (msg == NULL || completion_code == NULL ||
1092 synchrony_config == NULL || synchrony_config_support == NULL ||
1093 number_event_class_returned == NULL || event_class == NULL) {
1094 return PLDM_ERROR_INVALID_DATA;
1095 }
1096
1097 *completion_code = msg->payload[0];
1098 if (PLDM_SUCCESS != *completion_code) {
1099 return PLDM_SUCCESS;
1100 }
1101 if (payload_length < PLDM_EVENT_MESSAGE_SUPPORTED_MIN_RESP_BYTES) {
1102 return PLDM_ERROR_INVALID_LENGTH;
1103 }
1104
1105 struct pldm_event_message_supported_resp *response =
1106 (struct pldm_event_message_supported_resp *)msg->payload;
1107
1108 *synchrony_config = response->synchrony_configuration;
1109 if (*synchrony_config > PLDM_MESSAGE_TYPE_ASYNCHRONOUS_WITH_HEARTBEAT) {
1110 return PLDM_ERROR_INVALID_DATA;
1111 }
1112
1113 *synchrony_config_support = response->synchrony_configuration_supported;
1114 *number_event_class_returned = response->number_event_class_returned;
1115
1116 if (*number_event_class_returned > 0) {
1117 if (event_class_count < *number_event_class_returned) {
1118 return PLDM_ERROR_INVALID_LENGTH;
1119 }
1120 memcpy(event_class, response->event_class,
1121 *number_event_class_returned);
1122 }
1123
1124 return PLDM_SUCCESS;
1125}
1126
Andrew Jeffery9c766792022-08-10 23:12:49 +09301127int decode_sensor_event_data(const uint8_t *event_data,
1128 size_t event_data_length, uint16_t *sensor_id,
1129 uint8_t *sensor_event_class_type,
1130 size_t *event_class_data_offset)
1131{
1132 if (event_data == NULL) {
1133 return PLDM_ERROR_INVALID_DATA;
1134 }
1135 if (event_data_length < PLDM_SENSOR_EVENT_DATA_MIN_LENGTH) {
1136 return PLDM_ERROR_INVALID_LENGTH;
1137 }
1138
1139 size_t event_class_data_length =
1140 event_data_length - PLDM_PLATFORM_EVENT_MESSAGE_MIN_REQ_BYTES;
1141
1142 struct pldm_sensor_event_data *sensor_event_data =
1143 (struct pldm_sensor_event_data *)event_data;
1144 *sensor_id = sensor_event_data->sensor_id;
1145 *sensor_event_class_type = sensor_event_data->sensor_event_class_type;
1146 if (sensor_event_data->sensor_event_class_type ==
1147 PLDM_SENSOR_OP_STATE) {
1148 if (event_class_data_length !=
1149 PLDM_SENSOR_EVENT_SENSOR_OP_STATE_DATA_LENGTH) {
1150 return PLDM_ERROR_INVALID_LENGTH;
1151 }
1152 } else if (sensor_event_data->sensor_event_class_type ==
1153 PLDM_STATE_SENSOR_STATE) {
1154 if (event_class_data_length !=
1155 PLDM_SENSOR_EVENT_STATE_SENSOR_STATE_DATA_LENGTH) {
1156 return PLDM_ERROR_INVALID_LENGTH;
1157 }
1158 } else if (sensor_event_data->sensor_event_class_type ==
1159 PLDM_NUMERIC_SENSOR_STATE) {
1160 if (event_class_data_length <
1161 PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_MIN_DATA_LENGTH ||
1162 event_class_data_length >
1163 PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_MAX_DATA_LENGTH) {
1164 return PLDM_ERROR_INVALID_LENGTH;
1165 }
1166 } else {
1167 return PLDM_ERROR_INVALID_DATA;
1168 }
1169 *event_class_data_offset =
1170 sizeof(*sensor_id) + sizeof(*sensor_event_class_type);
1171 return PLDM_SUCCESS;
1172}
1173
1174int decode_sensor_op_data(const uint8_t *sensor_data, size_t sensor_data_length,
1175 uint8_t *present_op_state, uint8_t *previous_op_state)
1176{
1177 if (sensor_data == NULL || present_op_state == NULL ||
1178 previous_op_state == NULL) {
1179 return PLDM_ERROR_INVALID_DATA;
1180 }
1181 if (sensor_data_length !=
1182 PLDM_SENSOR_EVENT_SENSOR_OP_STATE_DATA_LENGTH) {
1183 return PLDM_ERROR_INVALID_LENGTH;
1184 }
1185
1186 struct pldm_sensor_event_sensor_op_state *sensor_op_data =
1187 (struct pldm_sensor_event_sensor_op_state *)sensor_data;
1188 *present_op_state = sensor_op_data->present_op_state;
1189 *previous_op_state = sensor_op_data->previous_op_state;
1190 return PLDM_SUCCESS;
1191}
1192
1193int decode_state_sensor_data(const uint8_t *sensor_data,
1194 size_t sensor_data_length, uint8_t *sensor_offset,
1195 uint8_t *event_state,
1196 uint8_t *previous_event_state)
1197{
1198 if (sensor_data == NULL || sensor_offset == NULL ||
1199 event_state == NULL || previous_event_state == NULL) {
1200 return PLDM_ERROR_INVALID_DATA;
1201 }
1202 if (sensor_data_length !=
1203 PLDM_SENSOR_EVENT_STATE_SENSOR_STATE_DATA_LENGTH) {
1204 return PLDM_ERROR_INVALID_LENGTH;
1205 }
1206
1207 struct pldm_sensor_event_state_sensor_state *sensor_state_data =
1208 (struct pldm_sensor_event_state_sensor_state *)sensor_data;
1209 *sensor_offset = sensor_state_data->sensor_offset;
1210 *event_state = sensor_state_data->event_state;
1211 *previous_event_state = sensor_state_data->previous_event_state;
1212 return PLDM_SUCCESS;
1213}
1214
1215int decode_numeric_sensor_data(const uint8_t *sensor_data,
1216 size_t sensor_data_length, uint8_t *event_state,
1217 uint8_t *previous_event_state,
1218 uint8_t *sensor_data_size,
1219 uint32_t *present_reading)
1220{
1221 if (sensor_data == NULL || sensor_data_size == NULL ||
1222 event_state == NULL || previous_event_state == NULL ||
1223 present_reading == NULL) {
1224 return PLDM_ERROR_INVALID_DATA;
1225 }
1226 if (sensor_data_length <
1227 PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_MIN_DATA_LENGTH ||
1228 sensor_data_length >
1229 PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_MAX_DATA_LENGTH) {
1230 return PLDM_ERROR_INVALID_LENGTH;
1231 }
1232 struct pldm_sensor_event_numeric_sensor_state *numeric_sensor_data =
1233 (struct pldm_sensor_event_numeric_sensor_state *)sensor_data;
1234 *event_state = numeric_sensor_data->event_state;
1235 *previous_event_state = numeric_sensor_data->previous_event_state;
1236 *sensor_data_size = numeric_sensor_data->sensor_data_size;
1237 uint8_t *present_reading_ptr = numeric_sensor_data->present_reading;
1238
1239 switch (*sensor_data_size) {
1240 case PLDM_SENSOR_DATA_SIZE_UINT8:
Andrew Jeffery9c766792022-08-10 23:12:49 +09301241 if (sensor_data_length !=
1242 PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_8BIT_DATA_LENGTH) {
1243 return PLDM_ERROR_INVALID_LENGTH;
1244 }
1245 *present_reading = present_reading_ptr[0];
1246 break;
Andrew Jeffery92f6c3c2023-04-13 15:50:10 +09301247 case PLDM_SENSOR_DATA_SIZE_SINT8:
1248 if (sensor_data_length !=
1249 PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_8BIT_DATA_LENGTH) {
1250 return PLDM_ERROR_INVALID_LENGTH;
1251 }
1252 *present_reading = (uint32_t)(int32_t)present_reading_ptr[0];
1253 break;
1254 case PLDM_SENSOR_DATA_SIZE_UINT16: {
1255 uint16_t val_le;
1256
Andrew Jeffery9c766792022-08-10 23:12:49 +09301257 if (sensor_data_length !=
1258 PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_16BIT_DATA_LENGTH) {
1259 return PLDM_ERROR_INVALID_LENGTH;
1260 }
Andrew Jeffery92f6c3c2023-04-13 15:50:10 +09301261
1262 memcpy(&val_le, present_reading_ptr, sizeof(val_le));
1263 *present_reading = (uint32_t)(le16toh(val_le));
Andrew Jeffery9c766792022-08-10 23:12:49 +09301264 break;
Andrew Jeffery92f6c3c2023-04-13 15:50:10 +09301265 }
1266 case PLDM_SENSOR_DATA_SIZE_SINT16: {
1267 uint16_t val_le;
1268
1269 if (sensor_data_length !=
1270 PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_16BIT_DATA_LENGTH) {
1271 return PLDM_ERROR_INVALID_LENGTH;
1272 }
1273
1274 memcpy(&val_le, present_reading_ptr, sizeof(val_le));
1275 *present_reading = (uint32_t)(int32_t)(le16toh(val_le));
1276 break;
1277 }
Andrew Jeffery9c766792022-08-10 23:12:49 +09301278 case PLDM_SENSOR_DATA_SIZE_UINT32:
Andrew Jeffery92f6c3c2023-04-13 15:50:10 +09301279 case PLDM_SENSOR_DATA_SIZE_SINT32: {
1280 uint32_t val_le;
1281
Andrew Jeffery9c766792022-08-10 23:12:49 +09301282 if (sensor_data_length !=
1283 PLDM_SENSOR_EVENT_NUMERIC_SENSOR_STATE_32BIT_DATA_LENGTH) {
1284 return PLDM_ERROR_INVALID_LENGTH;
1285 }
Andrew Jeffery92f6c3c2023-04-13 15:50:10 +09301286
1287 memcpy(&val_le, present_reading_ptr, sizeof(val_le));
1288 *present_reading = le32toh(val_le);
Andrew Jeffery9c766792022-08-10 23:12:49 +09301289 break;
Andrew Jeffery92f6c3c2023-04-13 15:50:10 +09301290 }
Andrew Jeffery9c766792022-08-10 23:12:49 +09301291 default:
1292 return PLDM_ERROR_INVALID_DATA;
1293 }
1294 return PLDM_SUCCESS;
1295}
1296
Andrew Jeffery7992eb82023-04-06 16:13:53 +09301297#define PLDM_NUMERIC_SENSOR_VALUE_PDR_MIN_SIZE 69
1298int decode_numeric_sensor_pdr_data(
1299 const void *pdr_data, size_t pdr_data_length,
1300 struct pldm_numeric_sensor_value_pdr *pdr_value)
1301{
1302 struct pldm_msgbuf _buf;
1303 struct pldm_msgbuf *buf = &_buf;
1304 int rc;
1305
1306 rc = pldm_msgbuf_init(buf, PLDM_NUMERIC_SENSOR_VALUE_PDR_MIN_SIZE,
1307 pdr_data, pdr_data_length);
1308 if (rc) {
1309 return rc;
1310 }
1311
1312 rc = pldm_msgbuf_extract_value_pdr_hdr(buf, &pdr_value->hdr);
1313 if (rc) {
1314 return rc;
1315 }
1316
1317 rc = pldm_platform_pdr_hdr_validate(
1318 &pdr_value->hdr, PLDM_NUMERIC_SENSOR_VALUE_PDR_MIN_SIZE,
1319 pdr_data_length);
1320 if (rc) {
1321 return rc;
1322 }
1323
1324 pldm_msgbuf_extract(buf, &pdr_value->terminus_handle);
1325 pldm_msgbuf_extract(buf, &pdr_value->sensor_id);
1326 pldm_msgbuf_extract(buf, &pdr_value->entity_type);
1327 pldm_msgbuf_extract(buf, &pdr_value->entity_instance_num);
1328 pldm_msgbuf_extract(buf, &pdr_value->container_id);
1329 pldm_msgbuf_extract(buf, &pdr_value->sensor_init);
1330 pldm_msgbuf_extract(buf, &pdr_value->sensor_auxiliary_names_pdr);
1331 pldm_msgbuf_extract(buf, &pdr_value->base_unit);
1332 pldm_msgbuf_extract(buf, &pdr_value->unit_modifier);
1333 pldm_msgbuf_extract(buf, &pdr_value->rate_unit);
1334 pldm_msgbuf_extract(buf, &pdr_value->base_oem_unit_handle);
1335 pldm_msgbuf_extract(buf, &pdr_value->aux_unit);
1336 pldm_msgbuf_extract(buf, &pdr_value->aux_unit_modifier);
1337 pldm_msgbuf_extract(buf, &pdr_value->aux_rate_unit);
1338 pldm_msgbuf_extract(buf, &pdr_value->rel);
1339 pldm_msgbuf_extract(buf, &pdr_value->aux_oem_unit_handle);
1340 pldm_msgbuf_extract(buf, &pdr_value->is_linear);
1341
1342 rc = pldm_msgbuf_extract(buf, &pdr_value->sensor_data_size);
1343 if (rc) {
1344 return rc;
1345 }
1346 if (pdr_value->sensor_data_size > PLDM_SENSOR_DATA_SIZE_MAX) {
1347 return PLDM_ERROR_INVALID_DATA;
1348 }
1349
1350 pldm_msgbuf_extract(buf, &pdr_value->resolution);
1351 pldm_msgbuf_extract(buf, &pdr_value->offset);
1352 pldm_msgbuf_extract(buf, &pdr_value->accuracy);
1353 pldm_msgbuf_extract(buf, &pdr_value->plus_tolerance);
1354 pldm_msgbuf_extract(buf, &pdr_value->minus_tolerance);
1355 pldm_msgbuf_extract_sensor_data(buf, pdr_value->sensor_data_size,
1356 &pdr_value->hysteresis);
1357 pldm_msgbuf_extract(buf, &pdr_value->supported_thresholds.byte);
1358 pldm_msgbuf_extract(
1359 buf, &pdr_value->threshold_and_hysteresis_volatility.byte);
1360 pldm_msgbuf_extract(buf, &pdr_value->state_transition_interval);
1361 pldm_msgbuf_extract(buf, &pdr_value->update_interval);
1362 pldm_msgbuf_extract_sensor_data(buf, pdr_value->sensor_data_size,
1363 &pdr_value->max_readable);
1364 pldm_msgbuf_extract_sensor_data(buf, pdr_value->sensor_data_size,
1365 &pdr_value->min_readable);
1366
1367 rc = pldm_msgbuf_extract(buf, &pdr_value->range_field_format);
1368 if (rc) {
1369 return rc;
1370 }
1371 if (pdr_value->range_field_format > PLDM_RANGE_FIELD_FORMAT_MAX) {
1372 return PLDM_ERROR_INVALID_DATA;
1373 }
1374
1375 pldm_msgbuf_extract(buf, &pdr_value->range_field_support.byte);
1376 pldm_msgbuf_extract_range_field_format(
1377 buf, pdr_value->range_field_format, &pdr_value->nominal_value);
1378 pldm_msgbuf_extract_range_field_format(
1379 buf, pdr_value->range_field_format, &pdr_value->normal_max);
1380 pldm_msgbuf_extract_range_field_format(
1381 buf, pdr_value->range_field_format, &pdr_value->normal_min);
1382 pldm_msgbuf_extract_range_field_format(
1383 buf, pdr_value->range_field_format, &pdr_value->warning_high);
1384 pldm_msgbuf_extract_range_field_format(
1385 buf, pdr_value->range_field_format, &pdr_value->warning_low);
1386 pldm_msgbuf_extract_range_field_format(
1387 buf, pdr_value->range_field_format, &pdr_value->critical_high);
1388 pldm_msgbuf_extract_range_field_format(
1389 buf, pdr_value->range_field_format, &pdr_value->critical_low);
1390 pldm_msgbuf_extract_range_field_format(
1391 buf, pdr_value->range_field_format, &pdr_value->fatal_high);
1392 pldm_msgbuf_extract_range_field_format(
1393 buf, pdr_value->range_field_format, &pdr_value->fatal_low);
1394
1395 return pldm_msgbuf_destroy(buf);
1396}
1397
Andrew Jeffery9c766792022-08-10 23:12:49 +09301398int encode_get_numeric_effecter_value_req(uint8_t instance_id,
1399 uint16_t effecter_id,
1400 struct pldm_msg *msg)
1401{
1402 if (msg == NULL) {
1403 return PLDM_ERROR_INVALID_DATA;
1404 }
1405
1406 struct pldm_header_info header = {0};
1407 header.msg_type = PLDM_REQUEST;
1408 header.instance = instance_id;
1409 header.pldm_type = PLDM_PLATFORM;
1410 header.command = PLDM_GET_NUMERIC_EFFECTER_VALUE;
1411
1412 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
1413 if (rc != PLDM_SUCCESS) {
1414 return rc;
1415 }
1416
1417 struct pldm_get_numeric_effecter_value_req *request =
1418 (struct pldm_get_numeric_effecter_value_req *)msg->payload;
1419 request->effecter_id = htole16(effecter_id);
1420
1421 return PLDM_SUCCESS;
1422}
1423
1424int encode_get_numeric_effecter_value_resp(
1425 uint8_t instance_id, uint8_t completion_code, uint8_t effecter_data_size,
Andrew Jefferydebe6b32023-04-05 20:30:46 +09301426 uint8_t effecter_oper_state, const uint8_t *pending_value,
1427 const uint8_t *present_value, struct pldm_msg *msg, size_t payload_length)
Andrew Jeffery9c766792022-08-10 23:12:49 +09301428{
1429 if (msg == NULL || pending_value == NULL || present_value == NULL) {
1430 return PLDM_ERROR_INVALID_DATA;
1431 }
1432
1433 if (effecter_data_size > PLDM_EFFECTER_DATA_SIZE_SINT32) {
1434 return PLDM_ERROR_INVALID_DATA;
1435 }
1436
1437 if (effecter_oper_state > EFFECTER_OPER_STATE_INTEST) {
1438 return PLDM_ERROR_INVALID_DATA;
1439 }
1440
1441 struct pldm_header_info header = {0};
1442 header.msg_type = PLDM_RESPONSE;
1443 header.instance = instance_id;
1444 header.pldm_type = PLDM_PLATFORM;
1445 header.command = PLDM_GET_NUMERIC_EFFECTER_VALUE;
1446
1447 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
1448 if (rc != PLDM_SUCCESS) {
1449 return rc;
1450 }
1451
1452 struct pldm_get_numeric_effecter_value_resp *response =
1453 (struct pldm_get_numeric_effecter_value_resp *)msg->payload;
1454
1455 response->completion_code = completion_code;
1456 response->effecter_data_size = effecter_data_size;
1457 response->effecter_oper_state = effecter_oper_state;
1458
1459 if (effecter_data_size == PLDM_EFFECTER_DATA_SIZE_UINT8 ||
1460 effecter_data_size == PLDM_EFFECTER_DATA_SIZE_SINT8) {
1461 if (payload_length !=
1462 PLDM_GET_NUMERIC_EFFECTER_VALUE_MIN_RESP_BYTES) {
1463 return PLDM_ERROR_INVALID_LENGTH;
1464 }
1465 response->pending_and_present_values[0] = *pending_value;
1466 response->pending_and_present_values[1] = *present_value;
1467
1468 } else if (effecter_data_size == PLDM_EFFECTER_DATA_SIZE_UINT16 ||
1469 effecter_data_size == PLDM_EFFECTER_DATA_SIZE_SINT16) {
1470 if (payload_length !=
1471 PLDM_GET_NUMERIC_EFFECTER_VALUE_MIN_RESP_BYTES + 2) {
1472 return PLDM_ERROR_INVALID_LENGTH;
1473 }
1474 uint16_t val_pending = *(uint16_t *)pending_value;
1475 val_pending = htole16(val_pending);
1476 memcpy(response->pending_and_present_values, &val_pending,
1477 sizeof(uint16_t));
1478 uint16_t val_present = *(uint16_t *)present_value;
1479 val_present = htole16(val_present);
1480 memcpy(
1481 (response->pending_and_present_values + sizeof(uint16_t)),
1482 &val_present, sizeof(uint16_t));
1483
1484 } else if (effecter_data_size == PLDM_EFFECTER_DATA_SIZE_UINT32 ||
1485 effecter_data_size == PLDM_EFFECTER_DATA_SIZE_SINT32) {
1486 if (payload_length !=
1487 PLDM_GET_NUMERIC_EFFECTER_VALUE_MIN_RESP_BYTES + 6) {
1488 return PLDM_ERROR_INVALID_LENGTH;
1489 }
1490 uint32_t val_pending = *(uint32_t *)pending_value;
1491 val_pending = htole32(val_pending);
1492 memcpy(response->pending_and_present_values, &val_pending,
1493 sizeof(uint32_t));
1494 uint32_t val_present = *(uint32_t *)present_value;
1495 val_present = htole32(val_present);
1496 memcpy(
1497 (response->pending_and_present_values + sizeof(uint32_t)),
1498 &val_present, sizeof(uint32_t));
1499 }
1500 return PLDM_SUCCESS;
1501}
1502
1503int decode_get_numeric_effecter_value_req(const struct pldm_msg *msg,
1504 size_t payload_length,
1505 uint16_t *effecter_id)
1506{
1507 if (msg == NULL || effecter_id == NULL) {
1508 return PLDM_ERROR_INVALID_DATA;
1509 }
1510
1511 if (payload_length != PLDM_GET_NUMERIC_EFFECTER_VALUE_REQ_BYTES) {
1512 return PLDM_ERROR_INVALID_LENGTH;
1513 }
1514
1515 struct pldm_get_numeric_effecter_value_req *request =
1516 (struct pldm_get_numeric_effecter_value_req *)msg->payload;
1517
1518 *effecter_id = le16toh(request->effecter_id);
1519
1520 return PLDM_SUCCESS;
1521}
1522
1523int decode_get_numeric_effecter_value_resp(
1524 const struct pldm_msg *msg, size_t payload_length, uint8_t *completion_code,
1525 uint8_t *effecter_data_size, uint8_t *effecter_oper_state,
1526 uint8_t *pending_value, uint8_t *present_value)
1527{
1528 if (msg == NULL || effecter_data_size == NULL ||
1529 effecter_oper_state == NULL || pending_value == NULL ||
1530 present_value == NULL) {
1531 return PLDM_ERROR_INVALID_DATA;
1532 }
1533
1534 *completion_code = msg->payload[0];
1535 if (PLDM_SUCCESS != *completion_code) {
1536 return PLDM_SUCCESS;
1537 }
1538
1539 if (payload_length < PLDM_GET_NUMERIC_EFFECTER_VALUE_MIN_RESP_BYTES) {
1540 return PLDM_ERROR_INVALID_LENGTH;
1541 }
1542
1543 struct pldm_get_numeric_effecter_value_resp *response =
1544 (struct pldm_get_numeric_effecter_value_resp *)msg->payload;
1545
1546 *effecter_data_size = response->effecter_data_size;
1547 *effecter_oper_state = response->effecter_oper_state;
1548
1549 if (*effecter_data_size > PLDM_EFFECTER_DATA_SIZE_SINT32) {
1550 return PLDM_ERROR_INVALID_DATA;
1551 }
1552
1553 if (*effecter_oper_state > EFFECTER_OPER_STATE_INTEST) {
1554 return PLDM_ERROR_INVALID_DATA;
1555 }
1556
1557 if (*effecter_data_size == PLDM_EFFECTER_DATA_SIZE_UINT8 ||
1558 *effecter_data_size == PLDM_EFFECTER_DATA_SIZE_SINT8) {
1559 if (payload_length !=
1560 PLDM_GET_NUMERIC_EFFECTER_VALUE_MIN_RESP_BYTES) {
1561 return PLDM_ERROR_INVALID_LENGTH;
1562 }
1563 memcpy(pending_value, response->pending_and_present_values, 1);
1564 memcpy(present_value, &response->pending_and_present_values[1],
1565 1);
1566
1567 } else if (*effecter_data_size == PLDM_EFFECTER_DATA_SIZE_UINT16 ||
1568 *effecter_data_size == PLDM_EFFECTER_DATA_SIZE_SINT16) {
1569 if (payload_length !=
1570 PLDM_GET_NUMERIC_EFFECTER_VALUE_MIN_RESP_BYTES + 2) {
1571 return PLDM_ERROR_INVALID_LENGTH;
1572 }
1573 memcpy(pending_value, response->pending_and_present_values,
1574 sizeof(uint16_t));
1575 uint16_t *val_pending = (uint16_t *)pending_value;
1576 *val_pending = le16toh(*val_pending);
1577 memcpy(
1578 present_value,
1579 (response->pending_and_present_values + sizeof(uint16_t)),
1580 sizeof(uint16_t));
1581 uint16_t *val_present = (uint16_t *)present_value;
1582 *val_present = le16toh(*val_present);
1583
1584 } else if (*effecter_data_size == PLDM_EFFECTER_DATA_SIZE_UINT32 ||
1585 *effecter_data_size == PLDM_EFFECTER_DATA_SIZE_SINT32) {
1586 if (payload_length !=
1587 PLDM_GET_NUMERIC_EFFECTER_VALUE_MIN_RESP_BYTES + 6) {
1588 return PLDM_ERROR_INVALID_LENGTH;
1589 }
1590 memcpy(pending_value, response->pending_and_present_values,
1591 sizeof(uint32_t));
1592 uint32_t *val_pending = (uint32_t *)pending_value;
1593 *val_pending = le32toh(*val_pending);
1594 memcpy(
1595 present_value,
1596 (response->pending_and_present_values + sizeof(uint32_t)),
1597 sizeof(uint32_t));
1598 uint32_t *val_present = (uint32_t *)present_value;
1599 *val_present = le32toh(*val_present);
1600 }
1601 return PLDM_SUCCESS;
1602}
1603
1604int encode_pldm_pdr_repository_chg_event_data(
1605 uint8_t event_data_format, uint8_t number_of_change_records,
1606 const uint8_t *event_data_operations,
1607 const uint8_t *numbers_of_change_entries,
1608 const uint32_t *const *change_entries,
1609 struct pldm_pdr_repository_chg_event_data *event_data,
1610 size_t *actual_change_records_size, size_t max_change_records_size)
1611{
1612 if (event_data_operations == NULL ||
1613 numbers_of_change_entries == NULL || change_entries == NULL) {
1614 return PLDM_ERROR_INVALID_DATA;
1615 }
1616
1617 size_t expected_size =
1618 sizeof(event_data_format) + sizeof(number_of_change_records);
1619
1620 expected_size +=
1621 sizeof(*event_data_operations) * number_of_change_records;
1622 expected_size +=
1623 sizeof(*numbers_of_change_entries) * number_of_change_records;
1624
1625 for (uint8_t i = 0; i < number_of_change_records; ++i) {
1626 expected_size +=
1627 sizeof(*change_entries[0]) * numbers_of_change_entries[i];
1628 }
1629
1630 *actual_change_records_size = expected_size;
1631
1632 if (event_data == NULL) {
1633 return PLDM_SUCCESS;
1634 }
1635
1636 if (max_change_records_size < expected_size) {
1637 return PLDM_ERROR_INVALID_LENGTH;
1638 }
1639
1640 event_data->event_data_format = event_data_format;
1641 event_data->number_of_change_records = number_of_change_records;
1642
1643 struct pldm_pdr_repository_change_record_data *record_data =
1644 (struct pldm_pdr_repository_change_record_data *)
1645 event_data->change_records;
1646
1647 for (uint8_t i = 0; i < number_of_change_records; ++i) {
1648 record_data->event_data_operation = event_data_operations[i];
1649 record_data->number_of_change_entries =
1650 numbers_of_change_entries[i];
1651
1652 for (uint8_t j = 0; j < record_data->number_of_change_entries;
1653 ++j) {
1654 record_data->change_entry[j] =
1655 htole32(change_entries[i][j]);
1656 }
1657
1658 record_data = (struct pldm_pdr_repository_change_record_data
1659 *)(record_data->change_entry +
1660 record_data->number_of_change_entries);
1661 }
1662
1663 return PLDM_SUCCESS;
1664}
1665
1666int decode_pldm_pdr_repository_chg_event_data(const uint8_t *event_data,
1667 size_t event_data_size,
1668 uint8_t *event_data_format,
1669 uint8_t *number_of_change_records,
1670 size_t *change_record_data_offset)
1671{
1672 if (event_data == NULL || event_data_format == NULL ||
1673 number_of_change_records == NULL ||
1674 change_record_data_offset == NULL) {
1675 return PLDM_ERROR_INVALID_DATA;
1676 }
1677 if (event_data_size < PLDM_PDR_REPOSITORY_CHG_EVENT_MIN_LENGTH) {
1678 return PLDM_ERROR_INVALID_LENGTH;
1679 }
1680
1681 struct pldm_pdr_repository_chg_event_data
1682 *pdr_repository_chg_event_data =
1683 (struct pldm_pdr_repository_chg_event_data *)event_data;
1684
1685 *event_data_format = pdr_repository_chg_event_data->event_data_format;
1686 *number_of_change_records =
1687 pdr_repository_chg_event_data->number_of_change_records;
1688 *change_record_data_offset =
1689 sizeof(*event_data_format) + sizeof(*number_of_change_records);
1690
1691 return PLDM_SUCCESS;
1692}
1693
1694int decode_pldm_pdr_repository_change_record_data(
1695 const uint8_t *change_record_data, size_t change_record_data_size,
1696 uint8_t *event_data_operation, uint8_t *number_of_change_entries,
1697 size_t *change_entry_data_offset)
1698{
1699 if (change_record_data == NULL || event_data_operation == NULL ||
1700 number_of_change_entries == NULL ||
1701 change_entry_data_offset == NULL) {
1702 return PLDM_ERROR_INVALID_DATA;
1703 }
1704 if (change_record_data_size <
1705 PLDM_PDR_REPOSITORY_CHANGE_RECORD_MIN_LENGTH) {
1706 return PLDM_ERROR_INVALID_LENGTH;
1707 }
1708
1709 struct pldm_pdr_repository_change_record_data
1710 *pdr_repository_change_record_data =
1711 (struct pldm_pdr_repository_change_record_data *)
1712 change_record_data;
1713
1714 *event_data_operation =
1715 pdr_repository_change_record_data->event_data_operation;
1716 *number_of_change_entries =
1717 pdr_repository_change_record_data->number_of_change_entries;
1718 *change_entry_data_offset =
1719 sizeof(*event_data_operation) + sizeof(*number_of_change_entries);
1720
1721 return PLDM_SUCCESS;
1722}
1723
1724int encode_get_sensor_reading_req(uint8_t instance_id, uint16_t sensor_id,
1725 uint8_t rearm_event_state,
1726 struct pldm_msg *msg)
1727{
1728 if (msg == NULL) {
1729 return PLDM_ERROR_INVALID_DATA;
1730 }
1731
1732 struct pldm_header_info header = {0};
1733 header.msg_type = PLDM_REQUEST;
1734 header.instance = instance_id;
1735 header.pldm_type = PLDM_PLATFORM;
1736 header.command = PLDM_GET_SENSOR_READING;
1737
1738 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
1739 if (rc != PLDM_SUCCESS) {
1740 return rc;
1741 }
1742
1743 struct pldm_get_sensor_reading_req *request =
1744 (struct pldm_get_sensor_reading_req *)msg->payload;
1745
1746 request->sensor_id = htole16(sensor_id);
1747 request->rearm_event_state = rearm_event_state;
1748
1749 return PLDM_SUCCESS;
1750}
1751
1752int decode_get_sensor_reading_resp(
1753 const struct pldm_msg *msg, size_t payload_length, uint8_t *completion_code,
1754 uint8_t *sensor_data_size, uint8_t *sensor_operational_state,
1755 uint8_t *sensor_event_message_enable, uint8_t *present_state,
1756 uint8_t *previous_state, uint8_t *event_state, uint8_t *present_reading)
1757{
1758 if (msg == NULL || completion_code == NULL ||
1759 sensor_data_size == NULL || sensor_operational_state == NULL ||
1760 sensor_event_message_enable == NULL || present_state == NULL ||
1761 previous_state == NULL || event_state == NULL ||
1762 present_reading == NULL) {
1763 return PLDM_ERROR_INVALID_DATA;
1764 }
1765
1766 *completion_code = msg->payload[0];
1767 if (PLDM_SUCCESS != *completion_code) {
1768 return PLDM_SUCCESS;
1769 }
1770
1771 if (payload_length < PLDM_GET_SENSOR_READING_MIN_RESP_BYTES) {
1772 return PLDM_ERROR_INVALID_LENGTH;
1773 }
1774
1775 struct pldm_get_sensor_reading_resp *response =
1776 (struct pldm_get_sensor_reading_resp *)msg->payload;
1777
1778 if (response->sensor_data_size > PLDM_SENSOR_DATA_SIZE_SINT32) {
1779 return PLDM_ERROR_INVALID_DATA;
1780 }
1781
1782 *sensor_data_size = response->sensor_data_size;
1783 *sensor_operational_state = response->sensor_operational_state;
1784 *sensor_event_message_enable = response->sensor_event_message_enable;
1785 *present_state = response->present_state;
1786 *previous_state = response->previous_state;
1787 *event_state = response->event_state;
1788
1789 if (*sensor_data_size == PLDM_EFFECTER_DATA_SIZE_UINT8 ||
1790 *sensor_data_size == PLDM_EFFECTER_DATA_SIZE_SINT8) {
1791 if (payload_length != PLDM_GET_SENSOR_READING_MIN_RESP_BYTES) {
1792 return PLDM_ERROR_INVALID_LENGTH;
1793 }
1794 *present_reading = response->present_reading[0];
1795
1796 } else if (*sensor_data_size == PLDM_EFFECTER_DATA_SIZE_UINT16 ||
1797 *sensor_data_size == PLDM_EFFECTER_DATA_SIZE_SINT16) {
1798 if (payload_length !=
1799 PLDM_GET_SENSOR_READING_MIN_RESP_BYTES + 1) {
1800 return PLDM_ERROR_INVALID_LENGTH;
1801 }
1802 memcpy(present_reading, response->present_reading, 2);
1803 uint16_t *val = (uint16_t *)(present_reading);
1804 *val = le16toh(*val);
1805
1806 } else if (*sensor_data_size == PLDM_EFFECTER_DATA_SIZE_UINT32 ||
1807 *sensor_data_size == PLDM_EFFECTER_DATA_SIZE_SINT32) {
1808 if (payload_length !=
1809 PLDM_GET_SENSOR_READING_MIN_RESP_BYTES + 3) {
1810 return PLDM_ERROR_INVALID_LENGTH;
1811 }
1812 memcpy(present_reading, response->present_reading, 4);
1813 uint32_t *val = (uint32_t *)(present_reading);
1814 *val = le32toh(*val);
1815 }
1816
1817 return PLDM_SUCCESS;
1818}
1819
1820int encode_get_sensor_reading_resp(
1821 uint8_t instance_id, uint8_t completion_code, uint8_t sensor_data_size,
1822 uint8_t sensor_operational_state, uint8_t sensor_event_message_enable,
1823 uint8_t present_state, uint8_t previous_state, uint8_t event_state,
Andrew Jefferydebe6b32023-04-05 20:30:46 +09301824 const uint8_t *present_reading, struct pldm_msg *msg, size_t payload_length)
Andrew Jeffery9c766792022-08-10 23:12:49 +09301825{
1826 if (msg == NULL || present_reading == NULL) {
1827 return PLDM_ERROR_INVALID_DATA;
1828 }
1829
1830 if (sensor_data_size > PLDM_EFFECTER_DATA_SIZE_SINT32) {
1831 return PLDM_ERROR_INVALID_DATA;
1832 }
1833
1834 struct pldm_header_info header = {0};
1835 header.msg_type = PLDM_RESPONSE;
1836 header.instance = instance_id;
1837 header.pldm_type = PLDM_PLATFORM;
1838 header.command = PLDM_GET_SENSOR_READING;
1839
1840 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
1841 if (rc != PLDM_SUCCESS) {
1842 return rc;
1843 }
1844
1845 struct pldm_get_sensor_reading_resp *response =
1846 (struct pldm_get_sensor_reading_resp *)msg->payload;
1847
1848 response->completion_code = completion_code;
1849 response->sensor_data_size = sensor_data_size;
1850 response->sensor_operational_state = sensor_operational_state;
1851 response->sensor_event_message_enable = sensor_event_message_enable;
1852 response->present_state = present_state;
1853 response->previous_state = previous_state;
1854 response->event_state = event_state;
1855
1856 if (sensor_data_size == PLDM_EFFECTER_DATA_SIZE_UINT8 ||
1857 sensor_data_size == PLDM_EFFECTER_DATA_SIZE_SINT8) {
1858 if (payload_length != PLDM_GET_SENSOR_READING_MIN_RESP_BYTES) {
1859 return PLDM_ERROR_INVALID_LENGTH;
1860 }
1861 response->present_reading[0] = *present_reading;
1862
1863 } else if (sensor_data_size == PLDM_EFFECTER_DATA_SIZE_UINT16 ||
1864 sensor_data_size == PLDM_EFFECTER_DATA_SIZE_SINT16) {
1865 if (payload_length !=
1866 PLDM_GET_SENSOR_READING_MIN_RESP_BYTES + 1) {
1867 return PLDM_ERROR_INVALID_LENGTH;
1868 }
1869 uint16_t val = *(uint16_t *)present_reading;
1870 val = htole16(val);
1871 memcpy(response->present_reading, &val, 2);
1872
1873 } else if (sensor_data_size == PLDM_EFFECTER_DATA_SIZE_UINT32 ||
1874 sensor_data_size == PLDM_EFFECTER_DATA_SIZE_SINT32) {
1875 if (payload_length !=
1876 PLDM_GET_SENSOR_READING_MIN_RESP_BYTES + 3) {
1877 return PLDM_ERROR_INVALID_LENGTH;
1878 }
1879 uint32_t val = *(uint32_t *)present_reading;
1880 val = htole32(val);
1881 memcpy(response->present_reading, &val, 4);
1882 }
1883
1884 return PLDM_SUCCESS;
1885}
1886
1887int decode_get_sensor_reading_req(const struct pldm_msg *msg,
1888 size_t payload_length, uint16_t *sensor_id,
1889 uint8_t *rearm_event_state)
1890{
1891 if (msg == NULL || sensor_id == NULL || rearm_event_state == NULL) {
1892 return PLDM_ERROR_INVALID_DATA;
1893 }
1894
1895 if (payload_length != PLDM_GET_SENSOR_READING_REQ_BYTES) {
1896 return PLDM_ERROR_INVALID_LENGTH;
1897 }
1898
1899 struct pldm_get_sensor_reading_req *request =
1900 (struct pldm_get_sensor_reading_req *)msg->payload;
1901
1902 *sensor_id = le16toh(request->sensor_id);
1903 *rearm_event_state = request->rearm_event_state;
1904
1905 return PLDM_SUCCESS;
1906}
1907
1908int encode_set_event_receiver_req(uint8_t instance_id,
1909 uint8_t event_message_global_enable,
1910 uint8_t transport_protocol_type,
1911 uint8_t event_receiver_address_info,
1912 uint16_t heartbeat_timer,
1913 struct pldm_msg *msg)
1914{
1915 if (msg == NULL) {
1916 return PLDM_ERROR_INVALID_DATA;
1917 }
1918
1919 if (transport_protocol_type != PLDM_TRANSPORT_PROTOCOL_TYPE_MCTP) {
1920 return PLDM_ERROR_INVALID_DATA;
1921 }
1922
1923 struct pldm_header_info header = {0};
1924 header.msg_type = PLDM_REQUEST;
1925 header.instance = instance_id;
1926 header.pldm_type = PLDM_PLATFORM;
1927 header.command = PLDM_SET_EVENT_RECEIVER;
1928
1929 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
1930 if (rc != PLDM_SUCCESS) {
1931 return rc;
1932 }
1933
1934 struct pldm_set_event_receiver_req *request =
1935 (struct pldm_set_event_receiver_req *)msg->payload;
1936 request->event_message_global_enable = event_message_global_enable;
1937
1938 request->transport_protocol_type = transport_protocol_type;
1939 request->event_receiver_address_info = event_receiver_address_info;
1940
1941 if (event_message_global_enable ==
1942 PLDM_EVENT_MESSAGE_GLOBAL_ENABLE_ASYNC_KEEP_ALIVE) {
1943 if (heartbeat_timer == 0) {
1944 return PLDM_ERROR_INVALID_DATA;
1945 }
1946 request->heartbeat_timer = htole16(heartbeat_timer);
1947 }
1948
1949 return PLDM_SUCCESS;
1950}
1951
1952int decode_set_event_receiver_resp(const struct pldm_msg *msg,
1953 size_t payload_length,
1954 uint8_t *completion_code)
1955{
1956 if (msg == NULL || completion_code == NULL) {
1957 return PLDM_ERROR_INVALID_DATA;
1958 }
1959
1960 *completion_code = msg->payload[0];
1961 if (PLDM_SUCCESS != *completion_code) {
1962 return PLDM_SUCCESS;
1963 }
1964
1965 if (payload_length > PLDM_SET_EVENT_RECEIVER_RESP_BYTES) {
1966 return PLDM_ERROR_INVALID_LENGTH;
1967 }
1968
1969 return PLDM_SUCCESS;
1970}
1971
1972int decode_set_event_receiver_req(const struct pldm_msg *msg,
1973 size_t payload_length,
1974 uint8_t *event_message_global_enable,
1975 uint8_t *transport_protocol_type,
1976 uint8_t *event_receiver_address_info,
1977 uint16_t *heartbeat_timer)
1978
1979{
1980 if (msg == NULL || event_message_global_enable == NULL ||
1981 transport_protocol_type == NULL ||
1982 event_receiver_address_info == NULL || heartbeat_timer == NULL) {
1983 return PLDM_ERROR_INVALID_DATA;
1984 }
1985
1986 if (payload_length != PLDM_SET_EVENT_RECEIVER_REQ_BYTES) {
1987 return PLDM_ERROR_INVALID_LENGTH;
1988 }
1989
1990 struct pldm_set_event_receiver_req *request =
1991 (struct pldm_set_event_receiver_req *)msg->payload;
1992
Andrew Jeffery6ef2aa92023-04-14 00:21:27 +09301993 *event_message_global_enable = request->event_message_global_enable,
1994 *transport_protocol_type = request->transport_protocol_type,
1995 *event_receiver_address_info = request->event_receiver_address_info,
1996 *heartbeat_timer = le16toh(request->heartbeat_timer);
1997
Andrew Jeffery9c766792022-08-10 23:12:49 +09301998 if ((*event_message_global_enable ==
1999 PLDM_EVENT_MESSAGE_GLOBAL_ENABLE_ASYNC_KEEP_ALIVE) &&
2000 (*heartbeat_timer == 0)) {
2001 return PLDM_ERROR_INVALID_DATA;
2002 }
2003
Andrew Jeffery9c766792022-08-10 23:12:49 +09302004 return PLDM_SUCCESS;
2005}
2006
2007int encode_set_event_receiver_resp(uint8_t instance_id, uint8_t completion_code,
2008 struct pldm_msg *msg)
2009
2010{
2011 if (msg == NULL) {
2012 return PLDM_ERROR_INVALID_DATA;
2013 }
2014
2015 struct pldm_header_info header = {0};
2016 header.instance = instance_id;
2017 header.msg_type = PLDM_RESPONSE;
2018 header.pldm_type = PLDM_PLATFORM;
2019 header.command = PLDM_SET_EVENT_RECEIVER;
2020
2021 uint8_t rc = pack_pldm_header(&header, &(msg->hdr));
2022 if (rc != PLDM_SUCCESS) {
2023 return rc;
2024 }
2025
2026 msg->payload[0] = completion_code;
2027
2028 return PLDM_SUCCESS;
2029}