1 // SPDX-License-Identifier: (GPL-2.0+ OR BSD-3-Clause) 2 /* Copyright 2013-2016 Freescale Semiconductor Inc. 3 * Copyright 2016 NXP 4 */ 5 #include <linux/kernel.h> 6 #include <linux/errno.h> 7 #include <linux/fsl/mc.h> 8 #include "dpni.h" 9 #include "dpni-cmd.h" 10 11 /** 12 * dpni_prepare_key_cfg() - function prepare extract parameters 13 * @cfg: defining a full Key Generation profile (rule) 14 * @key_cfg_buf: Zeroed 256 bytes of memory before mapping it to DMA 15 * 16 * This function has to be called before the following functions: 17 * - dpni_set_rx_tc_dist() 18 * - dpni_set_qos_table() 19 */ 20 int dpni_prepare_key_cfg(const struct dpkg_profile_cfg *cfg, u8 *key_cfg_buf) 21 { 22 int i, j; 23 struct dpni_ext_set_rx_tc_dist *dpni_ext; 24 struct dpni_dist_extract *extr; 25 26 if (cfg->num_extracts > DPKG_MAX_NUM_OF_EXTRACTS) 27 return -EINVAL; 28 29 dpni_ext = (struct dpni_ext_set_rx_tc_dist *)key_cfg_buf; 30 dpni_ext->num_extracts = cfg->num_extracts; 31 32 for (i = 0; i < cfg->num_extracts; i++) { 33 extr = &dpni_ext->extracts[i]; 34 35 switch (cfg->extracts[i].type) { 36 case DPKG_EXTRACT_FROM_HDR: 37 extr->prot = cfg->extracts[i].extract.from_hdr.prot; 38 dpni_set_field(extr->efh_type, EFH_TYPE, 39 cfg->extracts[i].extract.from_hdr.type); 40 extr->size = cfg->extracts[i].extract.from_hdr.size; 41 extr->offset = cfg->extracts[i].extract.from_hdr.offset; 42 extr->field = cpu_to_le32( 43 cfg->extracts[i].extract.from_hdr.field); 44 extr->hdr_index = 45 cfg->extracts[i].extract.from_hdr.hdr_index; 46 break; 47 case DPKG_EXTRACT_FROM_DATA: 48 extr->size = cfg->extracts[i].extract.from_data.size; 49 extr->offset = 50 cfg->extracts[i].extract.from_data.offset; 51 break; 52 case DPKG_EXTRACT_FROM_PARSE: 53 extr->size = cfg->extracts[i].extract.from_parse.size; 54 extr->offset = 55 cfg->extracts[i].extract.from_parse.offset; 56 break; 57 default: 58 return -EINVAL; 59 } 60 61 extr->num_of_byte_masks = cfg->extracts[i].num_of_byte_masks; 62 dpni_set_field(extr->extract_type, EXTRACT_TYPE, 63 cfg->extracts[i].type); 64 65 for (j = 0; j < DPKG_NUM_OF_MASKS; j++) { 66 extr->masks[j].mask = cfg->extracts[i].masks[j].mask; 67 extr->masks[j].offset = 68 cfg->extracts[i].masks[j].offset; 69 } 70 } 71 72 return 0; 73 } 74 75 /** 76 * dpni_open() - Open a control session for the specified object 77 * @mc_io: Pointer to MC portal's I/O object 78 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 79 * @dpni_id: DPNI unique ID 80 * @token: Returned token; use in subsequent API calls 81 * 82 * This function can be used to open a control session for an 83 * already created object; an object may have been declared in 84 * the DPL or by calling the dpni_create() function. 85 * This function returns a unique authentication token, 86 * associated with the specific object ID and the specific MC 87 * portal; this token must be used in all subsequent commands for 88 * this specific object. 89 * 90 * Return: '0' on Success; Error code otherwise. 91 */ 92 int dpni_open(struct fsl_mc_io *mc_io, 93 u32 cmd_flags, 94 int dpni_id, 95 u16 *token) 96 { 97 struct fsl_mc_command cmd = { 0 }; 98 struct dpni_cmd_open *cmd_params; 99 100 int err; 101 102 /* prepare command */ 103 cmd.header = mc_encode_cmd_header(DPNI_CMDID_OPEN, 104 cmd_flags, 105 0); 106 cmd_params = (struct dpni_cmd_open *)cmd.params; 107 cmd_params->dpni_id = cpu_to_le32(dpni_id); 108 109 /* send command to mc*/ 110 err = mc_send_command(mc_io, &cmd); 111 if (err) 112 return err; 113 114 /* retrieve response parameters */ 115 *token = mc_cmd_hdr_read_token(&cmd); 116 117 return 0; 118 } 119 120 /** 121 * dpni_close() - Close the control session of the object 122 * @mc_io: Pointer to MC portal's I/O object 123 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 124 * @token: Token of DPNI object 125 * 126 * After this function is called, no further operations are 127 * allowed on the object without opening a new control session. 128 * 129 * Return: '0' on Success; Error code otherwise. 130 */ 131 int dpni_close(struct fsl_mc_io *mc_io, 132 u32 cmd_flags, 133 u16 token) 134 { 135 struct fsl_mc_command cmd = { 0 }; 136 137 /* prepare command */ 138 cmd.header = mc_encode_cmd_header(DPNI_CMDID_CLOSE, 139 cmd_flags, 140 token); 141 142 /* send command to mc*/ 143 return mc_send_command(mc_io, &cmd); 144 } 145 146 /** 147 * dpni_set_pools() - Set buffer pools configuration 148 * @mc_io: Pointer to MC portal's I/O object 149 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 150 * @token: Token of DPNI object 151 * @cfg: Buffer pools configuration 152 * 153 * mandatory for DPNI operation 154 * warning:Allowed only when DPNI is disabled 155 * 156 * Return: '0' on Success; Error code otherwise. 157 */ 158 int dpni_set_pools(struct fsl_mc_io *mc_io, 159 u32 cmd_flags, 160 u16 token, 161 const struct dpni_pools_cfg *cfg) 162 { 163 struct fsl_mc_command cmd = { 0 }; 164 struct dpni_cmd_set_pools *cmd_params; 165 int i; 166 167 /* prepare command */ 168 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_POOLS, 169 cmd_flags, 170 token); 171 cmd_params = (struct dpni_cmd_set_pools *)cmd.params; 172 cmd_params->num_dpbp = cfg->num_dpbp; 173 for (i = 0; i < DPNI_MAX_DPBP; i++) { 174 cmd_params->dpbp_id[i] = cpu_to_le32(cfg->pools[i].dpbp_id); 175 cmd_params->buffer_size[i] = 176 cpu_to_le16(cfg->pools[i].buffer_size); 177 cmd_params->backup_pool_mask |= 178 DPNI_BACKUP_POOL(cfg->pools[i].backup_pool, i); 179 } 180 181 /* send command to mc*/ 182 return mc_send_command(mc_io, &cmd); 183 } 184 185 /** 186 * dpni_enable() - Enable the DPNI, allow sending and receiving frames. 187 * @mc_io: Pointer to MC portal's I/O object 188 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 189 * @token: Token of DPNI object 190 * 191 * Return: '0' on Success; Error code otherwise. 192 */ 193 int dpni_enable(struct fsl_mc_io *mc_io, 194 u32 cmd_flags, 195 u16 token) 196 { 197 struct fsl_mc_command cmd = { 0 }; 198 199 /* prepare command */ 200 cmd.header = mc_encode_cmd_header(DPNI_CMDID_ENABLE, 201 cmd_flags, 202 token); 203 204 /* send command to mc*/ 205 return mc_send_command(mc_io, &cmd); 206 } 207 208 /** 209 * dpni_disable() - Disable the DPNI, stop sending and receiving frames. 210 * @mc_io: Pointer to MC portal's I/O object 211 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 212 * @token: Token of DPNI object 213 * 214 * Return: '0' on Success; Error code otherwise. 215 */ 216 int dpni_disable(struct fsl_mc_io *mc_io, 217 u32 cmd_flags, 218 u16 token) 219 { 220 struct fsl_mc_command cmd = { 0 }; 221 222 /* prepare command */ 223 cmd.header = mc_encode_cmd_header(DPNI_CMDID_DISABLE, 224 cmd_flags, 225 token); 226 227 /* send command to mc*/ 228 return mc_send_command(mc_io, &cmd); 229 } 230 231 /** 232 * dpni_is_enabled() - Check if the DPNI is enabled. 233 * @mc_io: Pointer to MC portal's I/O object 234 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 235 * @token: Token of DPNI object 236 * @en: Returns '1' if object is enabled; '0' otherwise 237 * 238 * Return: '0' on Success; Error code otherwise. 239 */ 240 int dpni_is_enabled(struct fsl_mc_io *mc_io, 241 u32 cmd_flags, 242 u16 token, 243 int *en) 244 { 245 struct fsl_mc_command cmd = { 0 }; 246 struct dpni_rsp_is_enabled *rsp_params; 247 int err; 248 249 /* prepare command */ 250 cmd.header = mc_encode_cmd_header(DPNI_CMDID_IS_ENABLED, 251 cmd_flags, 252 token); 253 254 /* send command to mc*/ 255 err = mc_send_command(mc_io, &cmd); 256 if (err) 257 return err; 258 259 /* retrieve response parameters */ 260 rsp_params = (struct dpni_rsp_is_enabled *)cmd.params; 261 *en = dpni_get_field(rsp_params->enabled, ENABLE); 262 263 return 0; 264 } 265 266 /** 267 * dpni_reset() - Reset the DPNI, returns the object to initial state. 268 * @mc_io: Pointer to MC portal's I/O object 269 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 270 * @token: Token of DPNI object 271 * 272 * Return: '0' on Success; Error code otherwise. 273 */ 274 int dpni_reset(struct fsl_mc_io *mc_io, 275 u32 cmd_flags, 276 u16 token) 277 { 278 struct fsl_mc_command cmd = { 0 }; 279 280 /* prepare command */ 281 cmd.header = mc_encode_cmd_header(DPNI_CMDID_RESET, 282 cmd_flags, 283 token); 284 285 /* send command to mc*/ 286 return mc_send_command(mc_io, &cmd); 287 } 288 289 /** 290 * dpni_set_irq_enable() - Set overall interrupt state. 291 * @mc_io: Pointer to MC portal's I/O object 292 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 293 * @token: Token of DPNI object 294 * @irq_index: The interrupt index to configure 295 * @en: Interrupt state: - enable = 1, disable = 0 296 * 297 * Allows GPP software to control when interrupts are generated. 298 * Each interrupt can have up to 32 causes. The enable/disable control's the 299 * overall interrupt state. if the interrupt is disabled no causes will cause 300 * an interrupt. 301 * 302 * Return: '0' on Success; Error code otherwise. 303 */ 304 int dpni_set_irq_enable(struct fsl_mc_io *mc_io, 305 u32 cmd_flags, 306 u16 token, 307 u8 irq_index, 308 u8 en) 309 { 310 struct fsl_mc_command cmd = { 0 }; 311 struct dpni_cmd_set_irq_enable *cmd_params; 312 313 /* prepare command */ 314 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_IRQ_ENABLE, 315 cmd_flags, 316 token); 317 cmd_params = (struct dpni_cmd_set_irq_enable *)cmd.params; 318 dpni_set_field(cmd_params->enable, ENABLE, en); 319 cmd_params->irq_index = irq_index; 320 321 /* send command to mc*/ 322 return mc_send_command(mc_io, &cmd); 323 } 324 325 /** 326 * dpni_get_irq_enable() - Get overall interrupt state 327 * @mc_io: Pointer to MC portal's I/O object 328 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 329 * @token: Token of DPNI object 330 * @irq_index: The interrupt index to configure 331 * @en: Returned interrupt state - enable = 1, disable = 0 332 * 333 * Return: '0' on Success; Error code otherwise. 334 */ 335 int dpni_get_irq_enable(struct fsl_mc_io *mc_io, 336 u32 cmd_flags, 337 u16 token, 338 u8 irq_index, 339 u8 *en) 340 { 341 struct fsl_mc_command cmd = { 0 }; 342 struct dpni_cmd_get_irq_enable *cmd_params; 343 struct dpni_rsp_get_irq_enable *rsp_params; 344 345 int err; 346 347 /* prepare command */ 348 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_IRQ_ENABLE, 349 cmd_flags, 350 token); 351 cmd_params = (struct dpni_cmd_get_irq_enable *)cmd.params; 352 cmd_params->irq_index = irq_index; 353 354 /* send command to mc*/ 355 err = mc_send_command(mc_io, &cmd); 356 if (err) 357 return err; 358 359 /* retrieve response parameters */ 360 rsp_params = (struct dpni_rsp_get_irq_enable *)cmd.params; 361 *en = dpni_get_field(rsp_params->enabled, ENABLE); 362 363 return 0; 364 } 365 366 /** 367 * dpni_set_irq_mask() - Set interrupt mask. 368 * @mc_io: Pointer to MC portal's I/O object 369 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 370 * @token: Token of DPNI object 371 * @irq_index: The interrupt index to configure 372 * @mask: event mask to trigger interrupt; 373 * each bit: 374 * 0 = ignore event 375 * 1 = consider event for asserting IRQ 376 * 377 * Every interrupt can have up to 32 causes and the interrupt model supports 378 * masking/unmasking each cause independently 379 * 380 * Return: '0' on Success; Error code otherwise. 381 */ 382 int dpni_set_irq_mask(struct fsl_mc_io *mc_io, 383 u32 cmd_flags, 384 u16 token, 385 u8 irq_index, 386 u32 mask) 387 { 388 struct fsl_mc_command cmd = { 0 }; 389 struct dpni_cmd_set_irq_mask *cmd_params; 390 391 /* prepare command */ 392 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_IRQ_MASK, 393 cmd_flags, 394 token); 395 cmd_params = (struct dpni_cmd_set_irq_mask *)cmd.params; 396 cmd_params->mask = cpu_to_le32(mask); 397 cmd_params->irq_index = irq_index; 398 399 /* send command to mc*/ 400 return mc_send_command(mc_io, &cmd); 401 } 402 403 /** 404 * dpni_get_irq_mask() - Get interrupt mask. 405 * @mc_io: Pointer to MC portal's I/O object 406 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 407 * @token: Token of DPNI object 408 * @irq_index: The interrupt index to configure 409 * @mask: Returned event mask to trigger interrupt 410 * 411 * Every interrupt can have up to 32 causes and the interrupt model supports 412 * masking/unmasking each cause independently 413 * 414 * Return: '0' on Success; Error code otherwise. 415 */ 416 int dpni_get_irq_mask(struct fsl_mc_io *mc_io, 417 u32 cmd_flags, 418 u16 token, 419 u8 irq_index, 420 u32 *mask) 421 { 422 struct fsl_mc_command cmd = { 0 }; 423 struct dpni_cmd_get_irq_mask *cmd_params; 424 struct dpni_rsp_get_irq_mask *rsp_params; 425 int err; 426 427 /* prepare command */ 428 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_IRQ_MASK, 429 cmd_flags, 430 token); 431 cmd_params = (struct dpni_cmd_get_irq_mask *)cmd.params; 432 cmd_params->irq_index = irq_index; 433 434 /* send command to mc*/ 435 err = mc_send_command(mc_io, &cmd); 436 if (err) 437 return err; 438 439 /* retrieve response parameters */ 440 rsp_params = (struct dpni_rsp_get_irq_mask *)cmd.params; 441 *mask = le32_to_cpu(rsp_params->mask); 442 443 return 0; 444 } 445 446 /** 447 * dpni_get_irq_status() - Get the current status of any pending interrupts. 448 * @mc_io: Pointer to MC portal's I/O object 449 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 450 * @token: Token of DPNI object 451 * @irq_index: The interrupt index to configure 452 * @status: Returned interrupts status - one bit per cause: 453 * 0 = no interrupt pending 454 * 1 = interrupt pending 455 * 456 * Return: '0' on Success; Error code otherwise. 457 */ 458 int dpni_get_irq_status(struct fsl_mc_io *mc_io, 459 u32 cmd_flags, 460 u16 token, 461 u8 irq_index, 462 u32 *status) 463 { 464 struct fsl_mc_command cmd = { 0 }; 465 struct dpni_cmd_get_irq_status *cmd_params; 466 struct dpni_rsp_get_irq_status *rsp_params; 467 int err; 468 469 /* prepare command */ 470 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_IRQ_STATUS, 471 cmd_flags, 472 token); 473 cmd_params = (struct dpni_cmd_get_irq_status *)cmd.params; 474 cmd_params->status = cpu_to_le32(*status); 475 cmd_params->irq_index = irq_index; 476 477 /* send command to mc*/ 478 err = mc_send_command(mc_io, &cmd); 479 if (err) 480 return err; 481 482 /* retrieve response parameters */ 483 rsp_params = (struct dpni_rsp_get_irq_status *)cmd.params; 484 *status = le32_to_cpu(rsp_params->status); 485 486 return 0; 487 } 488 489 /** 490 * dpni_clear_irq_status() - Clear a pending interrupt's status 491 * @mc_io: Pointer to MC portal's I/O object 492 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 493 * @token: Token of DPNI object 494 * @irq_index: The interrupt index to configure 495 * @status: bits to clear (W1C) - one bit per cause: 496 * 0 = don't change 497 * 1 = clear status bit 498 * 499 * Return: '0' on Success; Error code otherwise. 500 */ 501 int dpni_clear_irq_status(struct fsl_mc_io *mc_io, 502 u32 cmd_flags, 503 u16 token, 504 u8 irq_index, 505 u32 status) 506 { 507 struct fsl_mc_command cmd = { 0 }; 508 struct dpni_cmd_clear_irq_status *cmd_params; 509 510 /* prepare command */ 511 cmd.header = mc_encode_cmd_header(DPNI_CMDID_CLEAR_IRQ_STATUS, 512 cmd_flags, 513 token); 514 cmd_params = (struct dpni_cmd_clear_irq_status *)cmd.params; 515 cmd_params->irq_index = irq_index; 516 cmd_params->status = cpu_to_le32(status); 517 518 /* send command to mc*/ 519 return mc_send_command(mc_io, &cmd); 520 } 521 522 /** 523 * dpni_get_attributes() - Retrieve DPNI attributes. 524 * @mc_io: Pointer to MC portal's I/O object 525 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 526 * @token: Token of DPNI object 527 * @attr: Object's attributes 528 * 529 * Return: '0' on Success; Error code otherwise. 530 */ 531 int dpni_get_attributes(struct fsl_mc_io *mc_io, 532 u32 cmd_flags, 533 u16 token, 534 struct dpni_attr *attr) 535 { 536 struct fsl_mc_command cmd = { 0 }; 537 struct dpni_rsp_get_attr *rsp_params; 538 539 int err; 540 541 /* prepare command */ 542 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_ATTR, 543 cmd_flags, 544 token); 545 546 /* send command to mc*/ 547 err = mc_send_command(mc_io, &cmd); 548 if (err) 549 return err; 550 551 /* retrieve response parameters */ 552 rsp_params = (struct dpni_rsp_get_attr *)cmd.params; 553 attr->options = le32_to_cpu(rsp_params->options); 554 attr->num_queues = rsp_params->num_queues; 555 attr->num_tcs = rsp_params->num_tcs; 556 attr->mac_filter_entries = rsp_params->mac_filter_entries; 557 attr->vlan_filter_entries = rsp_params->vlan_filter_entries; 558 attr->qos_entries = rsp_params->qos_entries; 559 attr->fs_entries = le16_to_cpu(rsp_params->fs_entries); 560 attr->qos_key_size = rsp_params->qos_key_size; 561 attr->fs_key_size = rsp_params->fs_key_size; 562 attr->wriop_version = le16_to_cpu(rsp_params->wriop_version); 563 564 return 0; 565 } 566 567 /** 568 * dpni_set_errors_behavior() - Set errors behavior 569 * @mc_io: Pointer to MC portal's I/O object 570 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 571 * @token: Token of DPNI object 572 * @cfg: Errors configuration 573 * 574 * this function may be called numerous times with different 575 * error masks 576 * 577 * Return: '0' on Success; Error code otherwise. 578 */ 579 int dpni_set_errors_behavior(struct fsl_mc_io *mc_io, 580 u32 cmd_flags, 581 u16 token, 582 struct dpni_error_cfg *cfg) 583 { 584 struct fsl_mc_command cmd = { 0 }; 585 struct dpni_cmd_set_errors_behavior *cmd_params; 586 587 /* prepare command */ 588 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_ERRORS_BEHAVIOR, 589 cmd_flags, 590 token); 591 cmd_params = (struct dpni_cmd_set_errors_behavior *)cmd.params; 592 cmd_params->errors = cpu_to_le32(cfg->errors); 593 dpni_set_field(cmd_params->flags, ERROR_ACTION, cfg->error_action); 594 dpni_set_field(cmd_params->flags, FRAME_ANN, cfg->set_frame_annotation); 595 596 /* send command to mc*/ 597 return mc_send_command(mc_io, &cmd); 598 } 599 600 /** 601 * dpni_get_buffer_layout() - Retrieve buffer layout attributes. 602 * @mc_io: Pointer to MC portal's I/O object 603 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 604 * @token: Token of DPNI object 605 * @qtype: Type of queue to retrieve configuration for 606 * @layout: Returns buffer layout attributes 607 * 608 * Return: '0' on Success; Error code otherwise. 609 */ 610 int dpni_get_buffer_layout(struct fsl_mc_io *mc_io, 611 u32 cmd_flags, 612 u16 token, 613 enum dpni_queue_type qtype, 614 struct dpni_buffer_layout *layout) 615 { 616 struct fsl_mc_command cmd = { 0 }; 617 struct dpni_cmd_get_buffer_layout *cmd_params; 618 struct dpni_rsp_get_buffer_layout *rsp_params; 619 int err; 620 621 /* prepare command */ 622 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_BUFFER_LAYOUT, 623 cmd_flags, 624 token); 625 cmd_params = (struct dpni_cmd_get_buffer_layout *)cmd.params; 626 cmd_params->qtype = qtype; 627 628 /* send command to mc*/ 629 err = mc_send_command(mc_io, &cmd); 630 if (err) 631 return err; 632 633 /* retrieve response parameters */ 634 rsp_params = (struct dpni_rsp_get_buffer_layout *)cmd.params; 635 layout->pass_timestamp = dpni_get_field(rsp_params->flags, PASS_TS); 636 layout->pass_parser_result = dpni_get_field(rsp_params->flags, PASS_PR); 637 layout->pass_frame_status = dpni_get_field(rsp_params->flags, PASS_FS); 638 layout->private_data_size = le16_to_cpu(rsp_params->private_data_size); 639 layout->data_align = le16_to_cpu(rsp_params->data_align); 640 layout->data_head_room = le16_to_cpu(rsp_params->head_room); 641 layout->data_tail_room = le16_to_cpu(rsp_params->tail_room); 642 643 return 0; 644 } 645 646 /** 647 * dpni_set_buffer_layout() - Set buffer layout configuration. 648 * @mc_io: Pointer to MC portal's I/O object 649 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 650 * @token: Token of DPNI object 651 * @qtype: Type of queue this configuration applies to 652 * @layout: Buffer layout configuration 653 * 654 * Return: '0' on Success; Error code otherwise. 655 * 656 * @warning Allowed only when DPNI is disabled 657 */ 658 int dpni_set_buffer_layout(struct fsl_mc_io *mc_io, 659 u32 cmd_flags, 660 u16 token, 661 enum dpni_queue_type qtype, 662 const struct dpni_buffer_layout *layout) 663 { 664 struct fsl_mc_command cmd = { 0 }; 665 struct dpni_cmd_set_buffer_layout *cmd_params; 666 667 /* prepare command */ 668 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_BUFFER_LAYOUT, 669 cmd_flags, 670 token); 671 cmd_params = (struct dpni_cmd_set_buffer_layout *)cmd.params; 672 cmd_params->qtype = qtype; 673 cmd_params->options = cpu_to_le16(layout->options); 674 dpni_set_field(cmd_params->flags, PASS_TS, layout->pass_timestamp); 675 dpni_set_field(cmd_params->flags, PASS_PR, layout->pass_parser_result); 676 dpni_set_field(cmd_params->flags, PASS_FS, layout->pass_frame_status); 677 cmd_params->private_data_size = cpu_to_le16(layout->private_data_size); 678 cmd_params->data_align = cpu_to_le16(layout->data_align); 679 cmd_params->head_room = cpu_to_le16(layout->data_head_room); 680 cmd_params->tail_room = cpu_to_le16(layout->data_tail_room); 681 682 /* send command to mc*/ 683 return mc_send_command(mc_io, &cmd); 684 } 685 686 /** 687 * dpni_set_offload() - Set DPNI offload configuration. 688 * @mc_io: Pointer to MC portal's I/O object 689 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 690 * @token: Token of DPNI object 691 * @type: Type of DPNI offload 692 * @config: Offload configuration. 693 * For checksum offloads, non-zero value enables the offload 694 * 695 * Return: '0' on Success; Error code otherwise. 696 * 697 * @warning Allowed only when DPNI is disabled 698 */ 699 700 int dpni_set_offload(struct fsl_mc_io *mc_io, 701 u32 cmd_flags, 702 u16 token, 703 enum dpni_offload type, 704 u32 config) 705 { 706 struct fsl_mc_command cmd = { 0 }; 707 struct dpni_cmd_set_offload *cmd_params; 708 709 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_OFFLOAD, 710 cmd_flags, 711 token); 712 cmd_params = (struct dpni_cmd_set_offload *)cmd.params; 713 cmd_params->dpni_offload = type; 714 cmd_params->config = cpu_to_le32(config); 715 716 return mc_send_command(mc_io, &cmd); 717 } 718 719 int dpni_get_offload(struct fsl_mc_io *mc_io, 720 u32 cmd_flags, 721 u16 token, 722 enum dpni_offload type, 723 u32 *config) 724 { 725 struct fsl_mc_command cmd = { 0 }; 726 struct dpni_cmd_get_offload *cmd_params; 727 struct dpni_rsp_get_offload *rsp_params; 728 int err; 729 730 /* prepare command */ 731 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_OFFLOAD, 732 cmd_flags, 733 token); 734 cmd_params = (struct dpni_cmd_get_offload *)cmd.params; 735 cmd_params->dpni_offload = type; 736 737 /* send command to mc*/ 738 err = mc_send_command(mc_io, &cmd); 739 if (err) 740 return err; 741 742 /* retrieve response parameters */ 743 rsp_params = (struct dpni_rsp_get_offload *)cmd.params; 744 *config = le32_to_cpu(rsp_params->config); 745 746 return 0; 747 } 748 749 /** 750 * dpni_get_qdid() - Get the Queuing Destination ID (QDID) that should be used 751 * for enqueue operations 752 * @mc_io: Pointer to MC portal's I/O object 753 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 754 * @token: Token of DPNI object 755 * @qtype: Type of queue to receive QDID for 756 * @qdid: Returned virtual QDID value that should be used as an argument 757 * in all enqueue operations 758 * 759 * Return: '0' on Success; Error code otherwise. 760 */ 761 int dpni_get_qdid(struct fsl_mc_io *mc_io, 762 u32 cmd_flags, 763 u16 token, 764 enum dpni_queue_type qtype, 765 u16 *qdid) 766 { 767 struct fsl_mc_command cmd = { 0 }; 768 struct dpni_cmd_get_qdid *cmd_params; 769 struct dpni_rsp_get_qdid *rsp_params; 770 int err; 771 772 /* prepare command */ 773 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_QDID, 774 cmd_flags, 775 token); 776 cmd_params = (struct dpni_cmd_get_qdid *)cmd.params; 777 cmd_params->qtype = qtype; 778 779 /* send command to mc*/ 780 err = mc_send_command(mc_io, &cmd); 781 if (err) 782 return err; 783 784 /* retrieve response parameters */ 785 rsp_params = (struct dpni_rsp_get_qdid *)cmd.params; 786 *qdid = le16_to_cpu(rsp_params->qdid); 787 788 return 0; 789 } 790 791 /** 792 * dpni_get_tx_data_offset() - Get the Tx data offset (from start of buffer) 793 * @mc_io: Pointer to MC portal's I/O object 794 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 795 * @token: Token of DPNI object 796 * @data_offset: Tx data offset (from start of buffer) 797 * 798 * Return: '0' on Success; Error code otherwise. 799 */ 800 int dpni_get_tx_data_offset(struct fsl_mc_io *mc_io, 801 u32 cmd_flags, 802 u16 token, 803 u16 *data_offset) 804 { 805 struct fsl_mc_command cmd = { 0 }; 806 struct dpni_rsp_get_tx_data_offset *rsp_params; 807 int err; 808 809 /* prepare command */ 810 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_TX_DATA_OFFSET, 811 cmd_flags, 812 token); 813 814 /* send command to mc*/ 815 err = mc_send_command(mc_io, &cmd); 816 if (err) 817 return err; 818 819 /* retrieve response parameters */ 820 rsp_params = (struct dpni_rsp_get_tx_data_offset *)cmd.params; 821 *data_offset = le16_to_cpu(rsp_params->data_offset); 822 823 return 0; 824 } 825 826 /** 827 * dpni_set_link_cfg() - set the link configuration. 828 * @mc_io: Pointer to MC portal's I/O object 829 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 830 * @token: Token of DPNI object 831 * @cfg: Link configuration 832 * 833 * Return: '0' on Success; Error code otherwise. 834 */ 835 int dpni_set_link_cfg(struct fsl_mc_io *mc_io, 836 u32 cmd_flags, 837 u16 token, 838 const struct dpni_link_cfg *cfg) 839 { 840 struct fsl_mc_command cmd = { 0 }; 841 struct dpni_cmd_set_link_cfg *cmd_params; 842 843 /* prepare command */ 844 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_LINK_CFG, 845 cmd_flags, 846 token); 847 cmd_params = (struct dpni_cmd_set_link_cfg *)cmd.params; 848 cmd_params->rate = cpu_to_le32(cfg->rate); 849 cmd_params->options = cpu_to_le64(cfg->options); 850 851 /* send command to mc*/ 852 return mc_send_command(mc_io, &cmd); 853 } 854 855 /** 856 * dpni_get_link_state() - Return the link state (either up or down) 857 * @mc_io: Pointer to MC portal's I/O object 858 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 859 * @token: Token of DPNI object 860 * @state: Returned link state; 861 * 862 * Return: '0' on Success; Error code otherwise. 863 */ 864 int dpni_get_link_state(struct fsl_mc_io *mc_io, 865 u32 cmd_flags, 866 u16 token, 867 struct dpni_link_state *state) 868 { 869 struct fsl_mc_command cmd = { 0 }; 870 struct dpni_rsp_get_link_state *rsp_params; 871 int err; 872 873 /* prepare command */ 874 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_LINK_STATE, 875 cmd_flags, 876 token); 877 878 /* send command to mc*/ 879 err = mc_send_command(mc_io, &cmd); 880 if (err) 881 return err; 882 883 /* retrieve response parameters */ 884 rsp_params = (struct dpni_rsp_get_link_state *)cmd.params; 885 state->up = dpni_get_field(rsp_params->flags, LINK_STATE); 886 state->rate = le32_to_cpu(rsp_params->rate); 887 state->options = le64_to_cpu(rsp_params->options); 888 889 return 0; 890 } 891 892 /** 893 * dpni_set_max_frame_length() - Set the maximum received frame length. 894 * @mc_io: Pointer to MC portal's I/O object 895 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 896 * @token: Token of DPNI object 897 * @max_frame_length: Maximum received frame length (in 898 * bytes); frame is discarded if its 899 * length exceeds this value 900 * 901 * Return: '0' on Success; Error code otherwise. 902 */ 903 int dpni_set_max_frame_length(struct fsl_mc_io *mc_io, 904 u32 cmd_flags, 905 u16 token, 906 u16 max_frame_length) 907 { 908 struct fsl_mc_command cmd = { 0 }; 909 struct dpni_cmd_set_max_frame_length *cmd_params; 910 911 /* prepare command */ 912 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_MAX_FRAME_LENGTH, 913 cmd_flags, 914 token); 915 cmd_params = (struct dpni_cmd_set_max_frame_length *)cmd.params; 916 cmd_params->max_frame_length = cpu_to_le16(max_frame_length); 917 918 /* send command to mc*/ 919 return mc_send_command(mc_io, &cmd); 920 } 921 922 /** 923 * dpni_get_max_frame_length() - Get the maximum received frame length. 924 * @mc_io: Pointer to MC portal's I/O object 925 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 926 * @token: Token of DPNI object 927 * @max_frame_length: Maximum received frame length (in 928 * bytes); frame is discarded if its 929 * length exceeds this value 930 * 931 * Return: '0' on Success; Error code otherwise. 932 */ 933 int dpni_get_max_frame_length(struct fsl_mc_io *mc_io, 934 u32 cmd_flags, 935 u16 token, 936 u16 *max_frame_length) 937 { 938 struct fsl_mc_command cmd = { 0 }; 939 struct dpni_rsp_get_max_frame_length *rsp_params; 940 int err; 941 942 /* prepare command */ 943 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_MAX_FRAME_LENGTH, 944 cmd_flags, 945 token); 946 947 /* send command to mc*/ 948 err = mc_send_command(mc_io, &cmd); 949 if (err) 950 return err; 951 952 /* retrieve response parameters */ 953 rsp_params = (struct dpni_rsp_get_max_frame_length *)cmd.params; 954 *max_frame_length = le16_to_cpu(rsp_params->max_frame_length); 955 956 return 0; 957 } 958 959 /** 960 * dpni_set_multicast_promisc() - Enable/disable multicast promiscuous mode 961 * @mc_io: Pointer to MC portal's I/O object 962 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 963 * @token: Token of DPNI object 964 * @en: Set to '1' to enable; '0' to disable 965 * 966 * Return: '0' on Success; Error code otherwise. 967 */ 968 int dpni_set_multicast_promisc(struct fsl_mc_io *mc_io, 969 u32 cmd_flags, 970 u16 token, 971 int en) 972 { 973 struct fsl_mc_command cmd = { 0 }; 974 struct dpni_cmd_set_multicast_promisc *cmd_params; 975 976 /* prepare command */ 977 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_MCAST_PROMISC, 978 cmd_flags, 979 token); 980 cmd_params = (struct dpni_cmd_set_multicast_promisc *)cmd.params; 981 dpni_set_field(cmd_params->enable, ENABLE, en); 982 983 /* send command to mc*/ 984 return mc_send_command(mc_io, &cmd); 985 } 986 987 /** 988 * dpni_get_multicast_promisc() - Get multicast promiscuous mode 989 * @mc_io: Pointer to MC portal's I/O object 990 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 991 * @token: Token of DPNI object 992 * @en: Returns '1' if enabled; '0' otherwise 993 * 994 * Return: '0' on Success; Error code otherwise. 995 */ 996 int dpni_get_multicast_promisc(struct fsl_mc_io *mc_io, 997 u32 cmd_flags, 998 u16 token, 999 int *en) 1000 { 1001 struct fsl_mc_command cmd = { 0 }; 1002 struct dpni_rsp_get_multicast_promisc *rsp_params; 1003 int err; 1004 1005 /* prepare command */ 1006 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_MCAST_PROMISC, 1007 cmd_flags, 1008 token); 1009 1010 /* send command to mc*/ 1011 err = mc_send_command(mc_io, &cmd); 1012 if (err) 1013 return err; 1014 1015 /* retrieve response parameters */ 1016 rsp_params = (struct dpni_rsp_get_multicast_promisc *)cmd.params; 1017 *en = dpni_get_field(rsp_params->enabled, ENABLE); 1018 1019 return 0; 1020 } 1021 1022 /** 1023 * dpni_set_unicast_promisc() - Enable/disable unicast promiscuous mode 1024 * @mc_io: Pointer to MC portal's I/O object 1025 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1026 * @token: Token of DPNI object 1027 * @en: Set to '1' to enable; '0' to disable 1028 * 1029 * Return: '0' on Success; Error code otherwise. 1030 */ 1031 int dpni_set_unicast_promisc(struct fsl_mc_io *mc_io, 1032 u32 cmd_flags, 1033 u16 token, 1034 int en) 1035 { 1036 struct fsl_mc_command cmd = { 0 }; 1037 struct dpni_cmd_set_unicast_promisc *cmd_params; 1038 1039 /* prepare command */ 1040 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_UNICAST_PROMISC, 1041 cmd_flags, 1042 token); 1043 cmd_params = (struct dpni_cmd_set_unicast_promisc *)cmd.params; 1044 dpni_set_field(cmd_params->enable, ENABLE, en); 1045 1046 /* send command to mc*/ 1047 return mc_send_command(mc_io, &cmd); 1048 } 1049 1050 /** 1051 * dpni_get_unicast_promisc() - Get unicast promiscuous mode 1052 * @mc_io: Pointer to MC portal's I/O object 1053 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1054 * @token: Token of DPNI object 1055 * @en: Returns '1' if enabled; '0' otherwise 1056 * 1057 * Return: '0' on Success; Error code otherwise. 1058 */ 1059 int dpni_get_unicast_promisc(struct fsl_mc_io *mc_io, 1060 u32 cmd_flags, 1061 u16 token, 1062 int *en) 1063 { 1064 struct fsl_mc_command cmd = { 0 }; 1065 struct dpni_rsp_get_unicast_promisc *rsp_params; 1066 int err; 1067 1068 /* prepare command */ 1069 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_UNICAST_PROMISC, 1070 cmd_flags, 1071 token); 1072 1073 /* send command to mc*/ 1074 err = mc_send_command(mc_io, &cmd); 1075 if (err) 1076 return err; 1077 1078 /* retrieve response parameters */ 1079 rsp_params = (struct dpni_rsp_get_unicast_promisc *)cmd.params; 1080 *en = dpni_get_field(rsp_params->enabled, ENABLE); 1081 1082 return 0; 1083 } 1084 1085 /** 1086 * dpni_set_primary_mac_addr() - Set the primary MAC address 1087 * @mc_io: Pointer to MC portal's I/O object 1088 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1089 * @token: Token of DPNI object 1090 * @mac_addr: MAC address to set as primary address 1091 * 1092 * Return: '0' on Success; Error code otherwise. 1093 */ 1094 int dpni_set_primary_mac_addr(struct fsl_mc_io *mc_io, 1095 u32 cmd_flags, 1096 u16 token, 1097 const u8 mac_addr[6]) 1098 { 1099 struct fsl_mc_command cmd = { 0 }; 1100 struct dpni_cmd_set_primary_mac_addr *cmd_params; 1101 int i; 1102 1103 /* prepare command */ 1104 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_PRIM_MAC, 1105 cmd_flags, 1106 token); 1107 cmd_params = (struct dpni_cmd_set_primary_mac_addr *)cmd.params; 1108 for (i = 0; i < 6; i++) 1109 cmd_params->mac_addr[i] = mac_addr[5 - i]; 1110 1111 /* send command to mc*/ 1112 return mc_send_command(mc_io, &cmd); 1113 } 1114 1115 /** 1116 * dpni_get_primary_mac_addr() - Get the primary MAC address 1117 * @mc_io: Pointer to MC portal's I/O object 1118 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1119 * @token: Token of DPNI object 1120 * @mac_addr: Returned MAC address 1121 * 1122 * Return: '0' on Success; Error code otherwise. 1123 */ 1124 int dpni_get_primary_mac_addr(struct fsl_mc_io *mc_io, 1125 u32 cmd_flags, 1126 u16 token, 1127 u8 mac_addr[6]) 1128 { 1129 struct fsl_mc_command cmd = { 0 }; 1130 struct dpni_rsp_get_primary_mac_addr *rsp_params; 1131 int i, err; 1132 1133 /* prepare command */ 1134 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_PRIM_MAC, 1135 cmd_flags, 1136 token); 1137 1138 /* send command to mc*/ 1139 err = mc_send_command(mc_io, &cmd); 1140 if (err) 1141 return err; 1142 1143 /* retrieve response parameters */ 1144 rsp_params = (struct dpni_rsp_get_primary_mac_addr *)cmd.params; 1145 for (i = 0; i < 6; i++) 1146 mac_addr[5 - i] = rsp_params->mac_addr[i]; 1147 1148 return 0; 1149 } 1150 1151 /** 1152 * dpni_get_port_mac_addr() - Retrieve MAC address associated to the physical 1153 * port the DPNI is attached to 1154 * @mc_io: Pointer to MC portal's I/O object 1155 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1156 * @token: Token of DPNI object 1157 * @mac_addr: MAC address of the physical port, if any, otherwise 0 1158 * 1159 * The primary MAC address is not cleared by this operation. 1160 * 1161 * Return: '0' on Success; Error code otherwise. 1162 */ 1163 int dpni_get_port_mac_addr(struct fsl_mc_io *mc_io, 1164 u32 cmd_flags, 1165 u16 token, 1166 u8 mac_addr[6]) 1167 { 1168 struct fsl_mc_command cmd = { 0 }; 1169 struct dpni_rsp_get_port_mac_addr *rsp_params; 1170 int i, err; 1171 1172 /* prepare command */ 1173 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_PORT_MAC_ADDR, 1174 cmd_flags, 1175 token); 1176 1177 /* send command to mc*/ 1178 err = mc_send_command(mc_io, &cmd); 1179 if (err) 1180 return err; 1181 1182 /* retrieve response parameters */ 1183 rsp_params = (struct dpni_rsp_get_port_mac_addr *)cmd.params; 1184 for (i = 0; i < 6; i++) 1185 mac_addr[5 - i] = rsp_params->mac_addr[i]; 1186 1187 return 0; 1188 } 1189 1190 /** 1191 * dpni_add_mac_addr() - Add MAC address filter 1192 * @mc_io: Pointer to MC portal's I/O object 1193 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1194 * @token: Token of DPNI object 1195 * @mac_addr: MAC address to add 1196 * 1197 * Return: '0' on Success; Error code otherwise. 1198 */ 1199 int dpni_add_mac_addr(struct fsl_mc_io *mc_io, 1200 u32 cmd_flags, 1201 u16 token, 1202 const u8 mac_addr[6]) 1203 { 1204 struct fsl_mc_command cmd = { 0 }; 1205 struct dpni_cmd_add_mac_addr *cmd_params; 1206 int i; 1207 1208 /* prepare command */ 1209 cmd.header = mc_encode_cmd_header(DPNI_CMDID_ADD_MAC_ADDR, 1210 cmd_flags, 1211 token); 1212 cmd_params = (struct dpni_cmd_add_mac_addr *)cmd.params; 1213 for (i = 0; i < 6; i++) 1214 cmd_params->mac_addr[i] = mac_addr[5 - i]; 1215 1216 /* send command to mc*/ 1217 return mc_send_command(mc_io, &cmd); 1218 } 1219 1220 /** 1221 * dpni_remove_mac_addr() - Remove MAC address filter 1222 * @mc_io: Pointer to MC portal's I/O object 1223 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1224 * @token: Token of DPNI object 1225 * @mac_addr: MAC address to remove 1226 * 1227 * Return: '0' on Success; Error code otherwise. 1228 */ 1229 int dpni_remove_mac_addr(struct fsl_mc_io *mc_io, 1230 u32 cmd_flags, 1231 u16 token, 1232 const u8 mac_addr[6]) 1233 { 1234 struct fsl_mc_command cmd = { 0 }; 1235 struct dpni_cmd_remove_mac_addr *cmd_params; 1236 int i; 1237 1238 /* prepare command */ 1239 cmd.header = mc_encode_cmd_header(DPNI_CMDID_REMOVE_MAC_ADDR, 1240 cmd_flags, 1241 token); 1242 cmd_params = (struct dpni_cmd_remove_mac_addr *)cmd.params; 1243 for (i = 0; i < 6; i++) 1244 cmd_params->mac_addr[i] = mac_addr[5 - i]; 1245 1246 /* send command to mc*/ 1247 return mc_send_command(mc_io, &cmd); 1248 } 1249 1250 /** 1251 * dpni_clear_mac_filters() - Clear all unicast and/or multicast MAC filters 1252 * @mc_io: Pointer to MC portal's I/O object 1253 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1254 * @token: Token of DPNI object 1255 * @unicast: Set to '1' to clear unicast addresses 1256 * @multicast: Set to '1' to clear multicast addresses 1257 * 1258 * The primary MAC address is not cleared by this operation. 1259 * 1260 * Return: '0' on Success; Error code otherwise. 1261 */ 1262 int dpni_clear_mac_filters(struct fsl_mc_io *mc_io, 1263 u32 cmd_flags, 1264 u16 token, 1265 int unicast, 1266 int multicast) 1267 { 1268 struct fsl_mc_command cmd = { 0 }; 1269 struct dpni_cmd_clear_mac_filters *cmd_params; 1270 1271 /* prepare command */ 1272 cmd.header = mc_encode_cmd_header(DPNI_CMDID_CLR_MAC_FILTERS, 1273 cmd_flags, 1274 token); 1275 cmd_params = (struct dpni_cmd_clear_mac_filters *)cmd.params; 1276 dpni_set_field(cmd_params->flags, UNICAST_FILTERS, unicast); 1277 dpni_set_field(cmd_params->flags, MULTICAST_FILTERS, multicast); 1278 1279 /* send command to mc*/ 1280 return mc_send_command(mc_io, &cmd); 1281 } 1282 1283 /** 1284 * dpni_set_rx_tc_dist() - Set Rx traffic class distribution configuration 1285 * @mc_io: Pointer to MC portal's I/O object 1286 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1287 * @token: Token of DPNI object 1288 * @tc_id: Traffic class selection (0-7) 1289 * @cfg: Traffic class distribution configuration 1290 * 1291 * warning: if 'dist_mode != DPNI_DIST_MODE_NONE', call dpni_prepare_key_cfg() 1292 * first to prepare the key_cfg_iova parameter 1293 * 1294 * Return: '0' on Success; error code otherwise. 1295 */ 1296 int dpni_set_rx_tc_dist(struct fsl_mc_io *mc_io, 1297 u32 cmd_flags, 1298 u16 token, 1299 u8 tc_id, 1300 const struct dpni_rx_tc_dist_cfg *cfg) 1301 { 1302 struct fsl_mc_command cmd = { 0 }; 1303 struct dpni_cmd_set_rx_tc_dist *cmd_params; 1304 1305 /* prepare command */ 1306 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_RX_TC_DIST, 1307 cmd_flags, 1308 token); 1309 cmd_params = (struct dpni_cmd_set_rx_tc_dist *)cmd.params; 1310 cmd_params->dist_size = cpu_to_le16(cfg->dist_size); 1311 cmd_params->tc_id = tc_id; 1312 dpni_set_field(cmd_params->flags, DIST_MODE, cfg->dist_mode); 1313 dpni_set_field(cmd_params->flags, MISS_ACTION, cfg->fs_cfg.miss_action); 1314 cmd_params->default_flow_id = cpu_to_le16(cfg->fs_cfg.default_flow_id); 1315 cmd_params->key_cfg_iova = cpu_to_le64(cfg->key_cfg_iova); 1316 1317 /* send command to mc*/ 1318 return mc_send_command(mc_io, &cmd); 1319 } 1320 1321 /** 1322 * dpni_set_queue() - Set queue parameters 1323 * @mc_io: Pointer to MC portal's I/O object 1324 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1325 * @token: Token of DPNI object 1326 * @qtype: Type of queue - all queue types are supported, although 1327 * the command is ignored for Tx 1328 * @tc: Traffic class, in range 0 to NUM_TCS - 1 1329 * @index: Selects the specific queue out of the set allocated for the 1330 * same TC. Value must be in range 0 to NUM_QUEUES - 1 1331 * @options: A combination of DPNI_QUEUE_OPT_ values that control what 1332 * configuration options are set on the queue 1333 * @queue: Queue structure 1334 * 1335 * Return: '0' on Success; Error code otherwise. 1336 */ 1337 int dpni_set_queue(struct fsl_mc_io *mc_io, 1338 u32 cmd_flags, 1339 u16 token, 1340 enum dpni_queue_type qtype, 1341 u8 tc, 1342 u8 index, 1343 u8 options, 1344 const struct dpni_queue *queue) 1345 { 1346 struct fsl_mc_command cmd = { 0 }; 1347 struct dpni_cmd_set_queue *cmd_params; 1348 1349 /* prepare command */ 1350 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_QUEUE, 1351 cmd_flags, 1352 token); 1353 cmd_params = (struct dpni_cmd_set_queue *)cmd.params; 1354 cmd_params->qtype = qtype; 1355 cmd_params->tc = tc; 1356 cmd_params->index = index; 1357 cmd_params->options = options; 1358 cmd_params->dest_id = cpu_to_le32(queue->destination.id); 1359 cmd_params->dest_prio = queue->destination.priority; 1360 dpni_set_field(cmd_params->flags, DEST_TYPE, queue->destination.type); 1361 dpni_set_field(cmd_params->flags, STASH_CTRL, queue->flc.stash_control); 1362 dpni_set_field(cmd_params->flags, HOLD_ACTIVE, 1363 queue->destination.hold_active); 1364 cmd_params->flc = cpu_to_le64(queue->flc.value); 1365 cmd_params->user_context = cpu_to_le64(queue->user_context); 1366 1367 /* send command to mc */ 1368 return mc_send_command(mc_io, &cmd); 1369 } 1370 1371 /** 1372 * dpni_get_queue() - Get queue parameters 1373 * @mc_io: Pointer to MC portal's I/O object 1374 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1375 * @token: Token of DPNI object 1376 * @qtype: Type of queue - all queue types are supported 1377 * @tc: Traffic class, in range 0 to NUM_TCS - 1 1378 * @index: Selects the specific queue out of the set allocated for the 1379 * same TC. Value must be in range 0 to NUM_QUEUES - 1 1380 * @queue: Queue configuration structure 1381 * @qid: Queue identification 1382 * 1383 * Return: '0' on Success; Error code otherwise. 1384 */ 1385 int dpni_get_queue(struct fsl_mc_io *mc_io, 1386 u32 cmd_flags, 1387 u16 token, 1388 enum dpni_queue_type qtype, 1389 u8 tc, 1390 u8 index, 1391 struct dpni_queue *queue, 1392 struct dpni_queue_id *qid) 1393 { 1394 struct fsl_mc_command cmd = { 0 }; 1395 struct dpni_cmd_get_queue *cmd_params; 1396 struct dpni_rsp_get_queue *rsp_params; 1397 int err; 1398 1399 /* prepare command */ 1400 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_QUEUE, 1401 cmd_flags, 1402 token); 1403 cmd_params = (struct dpni_cmd_get_queue *)cmd.params; 1404 cmd_params->qtype = qtype; 1405 cmd_params->tc = tc; 1406 cmd_params->index = index; 1407 1408 /* send command to mc */ 1409 err = mc_send_command(mc_io, &cmd); 1410 if (err) 1411 return err; 1412 1413 /* retrieve response parameters */ 1414 rsp_params = (struct dpni_rsp_get_queue *)cmd.params; 1415 queue->destination.id = le32_to_cpu(rsp_params->dest_id); 1416 queue->destination.priority = rsp_params->dest_prio; 1417 queue->destination.type = dpni_get_field(rsp_params->flags, 1418 DEST_TYPE); 1419 queue->flc.stash_control = dpni_get_field(rsp_params->flags, 1420 STASH_CTRL); 1421 queue->destination.hold_active = dpni_get_field(rsp_params->flags, 1422 HOLD_ACTIVE); 1423 queue->flc.value = le64_to_cpu(rsp_params->flc); 1424 queue->user_context = le64_to_cpu(rsp_params->user_context); 1425 qid->fqid = le32_to_cpu(rsp_params->fqid); 1426 qid->qdbin = le16_to_cpu(rsp_params->qdbin); 1427 1428 return 0; 1429 } 1430 1431 /** 1432 * dpni_get_statistics() - Get DPNI statistics 1433 * @mc_io: Pointer to MC portal's I/O object 1434 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1435 * @token: Token of DPNI object 1436 * @page: Selects the statistics page to retrieve, see 1437 * DPNI_GET_STATISTICS output. Pages are numbered 0 to 2. 1438 * @stat: Structure containing the statistics 1439 * 1440 * Return: '0' on Success; Error code otherwise. 1441 */ 1442 int dpni_get_statistics(struct fsl_mc_io *mc_io, 1443 u32 cmd_flags, 1444 u16 token, 1445 u8 page, 1446 union dpni_statistics *stat) 1447 { 1448 struct fsl_mc_command cmd = { 0 }; 1449 struct dpni_cmd_get_statistics *cmd_params; 1450 struct dpni_rsp_get_statistics *rsp_params; 1451 int i, err; 1452 1453 /* prepare command */ 1454 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_STATISTICS, 1455 cmd_flags, 1456 token); 1457 cmd_params = (struct dpni_cmd_get_statistics *)cmd.params; 1458 cmd_params->page_number = page; 1459 1460 /* send command to mc */ 1461 err = mc_send_command(mc_io, &cmd); 1462 if (err) 1463 return err; 1464 1465 /* retrieve response parameters */ 1466 rsp_params = (struct dpni_rsp_get_statistics *)cmd.params; 1467 for (i = 0; i < DPNI_STATISTICS_CNT; i++) 1468 stat->raw.counter[i] = le64_to_cpu(rsp_params->counter[i]); 1469 1470 return 0; 1471 } 1472 1473 /** 1474 * dpni_set_taildrop() - Set taildrop per queue or TC 1475 * @mc_io: Pointer to MC portal's I/O object 1476 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1477 * @token: Token of DPNI object 1478 * @cg_point: Congestion point 1479 * @q_type: Queue type on which the taildrop is configured. 1480 * Only Rx queues are supported for now 1481 * @tc: Traffic class to apply this taildrop to 1482 * @q_index: Index of the queue if the DPNI supports multiple queues for 1483 * traffic distribution. Ignored if CONGESTION_POINT is not 0. 1484 * @taildrop: Taildrop structure 1485 * 1486 * Return: '0' on Success; Error code otherwise. 1487 */ 1488 int dpni_set_taildrop(struct fsl_mc_io *mc_io, 1489 u32 cmd_flags, 1490 u16 token, 1491 enum dpni_congestion_point cg_point, 1492 enum dpni_queue_type qtype, 1493 u8 tc, 1494 u8 index, 1495 struct dpni_taildrop *taildrop) 1496 { 1497 struct fsl_mc_command cmd = { 0 }; 1498 struct dpni_cmd_set_taildrop *cmd_params; 1499 1500 /* prepare command */ 1501 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_TAILDROP, 1502 cmd_flags, 1503 token); 1504 cmd_params = (struct dpni_cmd_set_taildrop *)cmd.params; 1505 cmd_params->congestion_point = cg_point; 1506 cmd_params->qtype = qtype; 1507 cmd_params->tc = tc; 1508 cmd_params->index = index; 1509 dpni_set_field(cmd_params->enable, ENABLE, taildrop->enable); 1510 cmd_params->units = taildrop->units; 1511 cmd_params->threshold = cpu_to_le32(taildrop->threshold); 1512 1513 /* send command to mc */ 1514 return mc_send_command(mc_io, &cmd); 1515 } 1516 1517 /** 1518 * dpni_get_taildrop() - Get taildrop information 1519 * @mc_io: Pointer to MC portal's I/O object 1520 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1521 * @token: Token of DPNI object 1522 * @cg_point: Congestion point 1523 * @q_type: Queue type on which the taildrop is configured. 1524 * Only Rx queues are supported for now 1525 * @tc: Traffic class to apply this taildrop to 1526 * @q_index: Index of the queue if the DPNI supports multiple queues for 1527 * traffic distribution. Ignored if CONGESTION_POINT is not 0. 1528 * @taildrop: Taildrop structure 1529 * 1530 * Return: '0' on Success; Error code otherwise. 1531 */ 1532 int dpni_get_taildrop(struct fsl_mc_io *mc_io, 1533 u32 cmd_flags, 1534 u16 token, 1535 enum dpni_congestion_point cg_point, 1536 enum dpni_queue_type qtype, 1537 u8 tc, 1538 u8 index, 1539 struct dpni_taildrop *taildrop) 1540 { 1541 struct fsl_mc_command cmd = { 0 }; 1542 struct dpni_cmd_get_taildrop *cmd_params; 1543 struct dpni_rsp_get_taildrop *rsp_params; 1544 int err; 1545 1546 /* prepare command */ 1547 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_TAILDROP, 1548 cmd_flags, 1549 token); 1550 cmd_params = (struct dpni_cmd_get_taildrop *)cmd.params; 1551 cmd_params->congestion_point = cg_point; 1552 cmd_params->qtype = qtype; 1553 cmd_params->tc = tc; 1554 cmd_params->index = index; 1555 1556 /* send command to mc */ 1557 err = mc_send_command(mc_io, &cmd); 1558 if (err) 1559 return err; 1560 1561 /* retrieve response parameters */ 1562 rsp_params = (struct dpni_rsp_get_taildrop *)cmd.params; 1563 taildrop->enable = dpni_get_field(rsp_params->enable, ENABLE); 1564 taildrop->units = rsp_params->units; 1565 taildrop->threshold = le32_to_cpu(rsp_params->threshold); 1566 1567 return 0; 1568 } 1569 1570 /** 1571 * dpni_get_api_version() - Get Data Path Network Interface API version 1572 * @mc_io: Pointer to MC portal's I/O object 1573 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1574 * @major_ver: Major version of data path network interface API 1575 * @minor_ver: Minor version of data path network interface API 1576 * 1577 * Return: '0' on Success; Error code otherwise. 1578 */ 1579 int dpni_get_api_version(struct fsl_mc_io *mc_io, 1580 u32 cmd_flags, 1581 u16 *major_ver, 1582 u16 *minor_ver) 1583 { 1584 struct dpni_rsp_get_api_version *rsp_params; 1585 struct fsl_mc_command cmd = { 0 }; 1586 int err; 1587 1588 cmd.header = mc_encode_cmd_header(DPNI_CMDID_GET_API_VERSION, 1589 cmd_flags, 0); 1590 1591 err = mc_send_command(mc_io, &cmd); 1592 if (err) 1593 return err; 1594 1595 rsp_params = (struct dpni_rsp_get_api_version *)cmd.params; 1596 *major_ver = le16_to_cpu(rsp_params->major); 1597 *minor_ver = le16_to_cpu(rsp_params->minor); 1598 1599 return 0; 1600 } 1601 1602 /** 1603 * dpni_set_rx_fs_dist() - Set Rx flow steering distribution 1604 * @mc_io: Pointer to MC portal's I/O object 1605 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1606 * @token: Token of DPNI object 1607 * @cfg: Distribution configuration 1608 * 1609 * If the FS is already enabled with a previous call the classification 1610 * key will be changed but all the table rules are kept. If the 1611 * existing rules do not match the key the results will not be 1612 * predictable. It is the user responsibility to keep key integrity. 1613 * If cfg.enable is set to 1 the command will create a flow steering table 1614 * and will classify packets according to this table. The packets that 1615 * miss all the table rules will be classified according to settings 1616 * made in dpni_set_rx_hash_dist() 1617 * If cfg.enable is set to 0 the command will clear flow steering table. 1618 * The packets will be classified according to settings made in 1619 * dpni_set_rx_hash_dist() 1620 */ 1621 int dpni_set_rx_fs_dist(struct fsl_mc_io *mc_io, 1622 u32 cmd_flags, 1623 u16 token, 1624 const struct dpni_rx_dist_cfg *cfg) 1625 { 1626 struct dpni_cmd_set_rx_fs_dist *cmd_params; 1627 struct fsl_mc_command cmd = { 0 }; 1628 1629 /* prepare command */ 1630 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_RX_FS_DIST, 1631 cmd_flags, 1632 token); 1633 cmd_params = (struct dpni_cmd_set_rx_fs_dist *)cmd.params; 1634 cmd_params->dist_size = cpu_to_le16(cfg->dist_size); 1635 dpni_set_field(cmd_params->enable, RX_FS_DIST_ENABLE, cfg->enable); 1636 cmd_params->tc = cfg->tc; 1637 cmd_params->miss_flow_id = cpu_to_le16(cfg->fs_miss_flow_id); 1638 cmd_params->key_cfg_iova = cpu_to_le64(cfg->key_cfg_iova); 1639 1640 /* send command to mc*/ 1641 return mc_send_command(mc_io, &cmd); 1642 } 1643 1644 /** 1645 * dpni_set_rx_hash_dist() - Set Rx hash distribution 1646 * @mc_io: Pointer to MC portal's I/O object 1647 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1648 * @token: Token of DPNI object 1649 * @cfg: Distribution configuration 1650 * If cfg.enable is set to 1 the packets will be classified using a hash 1651 * function based on the key received in cfg.key_cfg_iova parameter. 1652 * If cfg.enable is set to 0 the packets will be sent to the default queue 1653 */ 1654 int dpni_set_rx_hash_dist(struct fsl_mc_io *mc_io, 1655 u32 cmd_flags, 1656 u16 token, 1657 const struct dpni_rx_dist_cfg *cfg) 1658 { 1659 struct dpni_cmd_set_rx_hash_dist *cmd_params; 1660 struct fsl_mc_command cmd = { 0 }; 1661 1662 /* prepare command */ 1663 cmd.header = mc_encode_cmd_header(DPNI_CMDID_SET_RX_HASH_DIST, 1664 cmd_flags, 1665 token); 1666 cmd_params = (struct dpni_cmd_set_rx_hash_dist *)cmd.params; 1667 cmd_params->dist_size = cpu_to_le16(cfg->dist_size); 1668 dpni_set_field(cmd_params->enable, RX_HASH_DIST_ENABLE, cfg->enable); 1669 cmd_params->tc = cfg->tc; 1670 cmd_params->key_cfg_iova = cpu_to_le64(cfg->key_cfg_iova); 1671 1672 /* send command to mc*/ 1673 return mc_send_command(mc_io, &cmd); 1674 } 1675 1676 /** 1677 * dpni_add_fs_entry() - Add Flow Steering entry for a specific traffic class 1678 * (to select a flow ID) 1679 * @mc_io: Pointer to MC portal's I/O object 1680 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1681 * @token: Token of DPNI object 1682 * @tc_id: Traffic class selection (0-7) 1683 * @index: Location in the FS table where to insert the entry. 1684 * Only relevant if MASKING is enabled for FS 1685 * classification on this DPNI, it is ignored for exact match. 1686 * @cfg: Flow steering rule to add 1687 * @action: Action to be taken as result of a classification hit 1688 * 1689 * Return: '0' on Success; Error code otherwise. 1690 */ 1691 int dpni_add_fs_entry(struct fsl_mc_io *mc_io, 1692 u32 cmd_flags, 1693 u16 token, 1694 u8 tc_id, 1695 u16 index, 1696 const struct dpni_rule_cfg *cfg, 1697 const struct dpni_fs_action_cfg *action) 1698 { 1699 struct dpni_cmd_add_fs_entry *cmd_params; 1700 struct fsl_mc_command cmd = { 0 }; 1701 1702 /* prepare command */ 1703 cmd.header = mc_encode_cmd_header(DPNI_CMDID_ADD_FS_ENT, 1704 cmd_flags, 1705 token); 1706 cmd_params = (struct dpni_cmd_add_fs_entry *)cmd.params; 1707 cmd_params->tc_id = tc_id; 1708 cmd_params->key_size = cfg->key_size; 1709 cmd_params->index = cpu_to_le16(index); 1710 cmd_params->key_iova = cpu_to_le64(cfg->key_iova); 1711 cmd_params->mask_iova = cpu_to_le64(cfg->mask_iova); 1712 cmd_params->options = cpu_to_le16(action->options); 1713 cmd_params->flow_id = cpu_to_le16(action->flow_id); 1714 cmd_params->flc = cpu_to_le64(action->flc); 1715 1716 /* send command to mc*/ 1717 return mc_send_command(mc_io, &cmd); 1718 } 1719 1720 /** 1721 * dpni_remove_fs_entry() - Remove Flow Steering entry from a specific 1722 * traffic class 1723 * @mc_io: Pointer to MC portal's I/O object 1724 * @cmd_flags: Command flags; one or more of 'MC_CMD_FLAG_' 1725 * @token: Token of DPNI object 1726 * @tc_id: Traffic class selection (0-7) 1727 * @cfg: Flow steering rule to remove 1728 * 1729 * Return: '0' on Success; Error code otherwise. 1730 */ 1731 int dpni_remove_fs_entry(struct fsl_mc_io *mc_io, 1732 u32 cmd_flags, 1733 u16 token, 1734 u8 tc_id, 1735 const struct dpni_rule_cfg *cfg) 1736 { 1737 struct dpni_cmd_remove_fs_entry *cmd_params; 1738 struct fsl_mc_command cmd = { 0 }; 1739 1740 /* prepare command */ 1741 cmd.header = mc_encode_cmd_header(DPNI_CMDID_REMOVE_FS_ENT, 1742 cmd_flags, 1743 token); 1744 cmd_params = (struct dpni_cmd_remove_fs_entry *)cmd.params; 1745 cmd_params->tc_id = tc_id; 1746 cmd_params->key_size = cfg->key_size; 1747 cmd_params->key_iova = cpu_to_le64(cfg->key_iova); 1748 cmd_params->mask_iova = cpu_to_le64(cfg->mask_iova); 1749 1750 /* send command to mc*/ 1751 return mc_send_command(mc_io, &cmd); 1752 } 1753