1 /****************************************************************************** 2 * 3 * Copyright(c) 2007 - 2017 Realtek Corporation. 4 * 5 * This program is free software; you can redistribute it and/or modify it 6 * under the terms of version 2 of the GNU General Public License as 7 * published by the Free Software Foundation. 8 * 9 * This program is distributed in the hope that it will be useful, but WITHOUT 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for 12 * more details. 13 * 14 *****************************************************************************/ 15 #ifndef _RTW_MP_H_ 16 #define _RTW_MP_H_ 17 18 #define RTWPRIV_VER_INFO 1 19 20 #define MAX_MP_XMITBUF_SZ 2048 21 #define NR_MP_XMITFRAME 8 22 #define MP_READ_REG_MAX_OFFSET 0x4FFF 23 24 struct mp_xmit_frame { 25 _list list; 26 27 struct pkt_attrib attrib; 28 29 _pkt *pkt; 30 31 int frame_tag; 32 33 _adapter *padapter; 34 35 #ifdef CONFIG_USB_HCI 36 37 /* insert urb, irp, and irpcnt info below... */ 38 /* max frag_cnt = 8 */ 39 u8 *mem_addr; 40 u32 sz[8]; 41 u8 bpending[8]; 42 sint ac_tag[8]; 43 sint last[8]; 44 uint irpcnt; 45 uint fragcnt; 46 #endif /* CONFIG_USB_HCI */ 47 48 uint mem[(MAX_MP_XMITBUF_SZ >> 2)]; 49 }; 50 51 struct mp_wiparam { 52 u32 bcompleted; 53 u32 act_type; 54 u32 io_offset; 55 u32 io_value; 56 }; 57 58 typedef void(*wi_act_func)(void *padapter); 59 60 struct mp_tx { 61 u8 stop; 62 u32 count, sended; 63 u8 payload; 64 struct pkt_attrib attrib; 65 /* struct tx_desc desc; */ 66 /* u8 resvdtx[7]; */ 67 u8 desc[TXDESC_SIZE]; 68 u8 *pallocated_buf; 69 u8 *buf; 70 u32 buf_size, write_size; 71 _thread_hdl_ PktTxThread; 72 }; 73 74 #define MP_MAX_LINES 1000 75 #define MP_MAX_LINES_BYTES 256 76 77 78 typedef struct _RT_PMAC_PKT_INFO { 79 u8 MCS; 80 u8 Nss; 81 u8 Nsts; 82 u32 N_sym; 83 u8 SIGA2B3; 84 } RT_PMAC_PKT_INFO, *PRT_PMAC_PKT_INFO; 85 86 typedef struct _RT_PMAC_TX_INFO { 87 u8 bEnPMacTx:1; /* 0: Disable PMac 1: Enable PMac */ 88 u8 Mode:3; /* 0: Packet TX 3:Continuous TX */ 89 u8 Ntx:4; /* 0-7 */ 90 u8 TX_RATE; /* MPT_RATE_E */ 91 u8 TX_RATE_HEX; 92 u8 TX_SC; 93 u8 bSGI:1; 94 u8 bSPreamble:1; 95 u8 bSTBC:1; 96 u8 bLDPC:1; 97 u8 NDP_sound:1; 98 u8 BandWidth:3; /* 0: 20 1:40 2:80Mhz */ 99 u8 m_STBC; /* bSTBC + 1 */ 100 u16 PacketPeriod; 101 u32 PacketCount; 102 u32 PacketLength; 103 u8 PacketPattern; 104 u16 SFD; 105 u8 SignalField; 106 u8 ServiceField; 107 u16 LENGTH; 108 u8 CRC16[2]; 109 u8 LSIG[3]; 110 u8 HT_SIG[6]; 111 u8 VHT_SIG_A[6]; 112 u8 VHT_SIG_B[4]; 113 u8 VHT_SIG_B_CRC; 114 u8 VHT_Delimiter[4]; 115 u8 MacAddress[6]; 116 } RT_PMAC_TX_INFO, *PRT_PMAC_TX_INFO; 117 118 119 typedef void (*MPT_WORK_ITEM_HANDLER)(void *Adapter); 120 typedef struct _MPT_CONTEXT { 121 /* Indicate if we have started Mass Production Test. */ 122 BOOLEAN bMassProdTest; 123 124 /* Indicate if the driver is unloading or unloaded. */ 125 BOOLEAN bMptDrvUnload; 126 127 _sema MPh2c_Sema; 128 _timer MPh2c_timeout_timer; 129 /* Event used to sync H2c for BT control */ 130 131 BOOLEAN MptH2cRspEvent; 132 BOOLEAN MptBtC2hEvent; 133 BOOLEAN bMPh2c_timeout; 134 135 /* 8190 PCI does not support NDIS_WORK_ITEM. */ 136 /* Work Item for Mass Production Test. */ 137 /* NDIS_WORK_ITEM MptWorkItem; 138 * RT_WORK_ITEM MptWorkItem; */ 139 /* Event used to sync the case unloading driver and MptWorkItem is still in progress. 140 * NDIS_EVENT MptWorkItemEvent; */ 141 /* To protect the following variables. 142 * NDIS_SPIN_LOCK MptWorkItemSpinLock; */ 143 /* Indicate a MptWorkItem is scheduled and not yet finished. */ 144 BOOLEAN bMptWorkItemInProgress; 145 /* An instance which implements function and context of MptWorkItem. */ 146 MPT_WORK_ITEM_HANDLER CurrMptAct; 147 148 /* 1=Start, 0=Stop from UI. */ 149 u32 MptTestStart; 150 /* _TEST_MODE, defined in MPT_Req2.h */ 151 u32 MptTestItem; 152 /* Variable needed in each implementation of CurrMptAct. */ 153 u32 MptActType; /* Type of action performed in CurrMptAct. */ 154 /* The Offset of IO operation is depend of MptActType. */ 155 u32 MptIoOffset; 156 /* The Value of IO operation is depend of MptActType. */ 157 u32 MptIoValue; 158 /* The RfPath of IO operation is depend of MptActType. */ 159 160 u32 mpt_rf_path; 161 162 163 WIRELESS_MODE MptWirelessModeToSw; /* Wireless mode to switch. */ 164 u8 MptChannelToSw; /* Channel to switch. */ 165 u8 MptInitGainToSet; /* Initial gain to set. */ 166 /* u32 bMptAntennaA; */ /* TRUE if we want to use antenna A. */ 167 u32 MptBandWidth; /* bandwidth to switch. */ 168 169 u32 mpt_rate_index;/* rate index. */ 170 171 /* Register value kept for Single Carrier Tx test. */ 172 u8 btMpCckTxPower; 173 /* Register value kept for Single Carrier Tx test. */ 174 u8 btMpOfdmTxPower; 175 /* For MP Tx Power index */ 176 u8 TxPwrLevel[4]; /* rf-A, rf-B*/ 177 u32 RegTxPwrLimit; 178 /* Content of RCR Regsiter for Mass Production Test. */ 179 u32 MptRCR; 180 /* TRUE if we only receive packets with specific pattern. */ 181 BOOLEAN bMptFilterPattern; 182 /* Rx OK count, statistics used in Mass Production Test. */ 183 u32 MptRxOkCnt; 184 /* Rx CRC32 error count, statistics used in Mass Production Test. */ 185 u32 MptRxCrcErrCnt; 186 187 BOOLEAN bCckContTx; /* TRUE if we are in CCK Continuous Tx test. */ 188 BOOLEAN bOfdmContTx; /* TRUE if we are in OFDM Continuous Tx test. */ 189 /* TRUE if we have start Continuous Tx test. */ 190 BOOLEAN is_start_cont_tx; 191 192 /* TRUE if we are in Single Carrier Tx test. */ 193 BOOLEAN bSingleCarrier; 194 /* TRUE if we are in Carrier Suppression Tx Test. */ 195 196 BOOLEAN is_carrier_suppression; 197 198 /* TRUE if we are in Single Tone Tx test. */ 199 200 BOOLEAN is_single_tone; 201 202 203 /* ACK counter asked by K.Y.. */ 204 BOOLEAN bMptEnableAckCounter; 205 u32 MptAckCounter; 206 207 /* SD3 Willis For 8192S to save 1T/2T RF table for ACUT Only fro ACUT delete later ~~~! */ 208 /* s8 BufOfLines[2][MAX_LINES_HWCONFIG_TXT][MAX_BYTES_LINE_HWCONFIG_TXT]; */ 209 /* s8 BufOfLines[2][MP_MAX_LINES][MP_MAX_LINES_BYTES]; */ 210 /* s32 RfReadLine[2]; */ 211 212 u8 APK_bound[2]; /* for APK path A/path B */ 213 BOOLEAN bMptIndexEven; 214 215 u8 backup0xc50; 216 u8 backup0xc58; 217 u8 backup0xc30; 218 u8 backup0x52_RF_A; 219 u8 backup0x52_RF_B; 220 221 u32 backup0x58_RF_A; 222 u32 backup0x58_RF_B; 223 224 u8 h2cReqNum; 225 u8 c2hBuf[32]; 226 227 u8 btInBuf[100]; 228 u32 mptOutLen; 229 u8 mptOutBuf[100]; 230 RT_PMAC_TX_INFO PMacTxInfo; 231 RT_PMAC_PKT_INFO PMacPktInfo; 232 u8 HWTxmode; 233 234 BOOLEAN bldpc; 235 BOOLEAN bstbc; 236 } MPT_CONTEXT, *PMPT_CONTEXT; 237 /* #endif */ 238 239 240 /* #define RTPRIV_IOCTL_MP ( SIOCIWFIRSTPRIV + 0x17) */ 241 enum { 242 WRITE_REG = 1, 243 READ_REG, 244 WRITE_RF, 245 READ_RF, 246 MP_START, 247 MP_STOP, 248 MP_RATE, 249 MP_CHANNEL, 250 MP_CHL_OFFSET, 251 MP_BANDWIDTH, 252 MP_TXPOWER, 253 MP_ANT_TX, 254 MP_ANT_RX, 255 MP_CTX, 256 MP_QUERY, 257 MP_ARX, 258 MP_PSD, 259 MP_PWRTRK, 260 MP_THER, 261 MP_IOCTL, 262 EFUSE_GET, 263 EFUSE_SET, 264 MP_RESET_STATS, 265 MP_DUMP, 266 MP_PHYPARA, 267 MP_SetRFPathSwh, 268 MP_QueryDrvStats, 269 CTA_TEST, 270 MP_DISABLE_BT_COEXIST, 271 MP_PwrCtlDM, 272 MP_GETVER, 273 MP_MON, 274 EFUSE_BT_MASK, 275 EFUSE_MASK, 276 EFUSE_FILE, 277 MP_TX, 278 MP_RX, 279 MP_IQK, 280 MP_LCK, 281 MP_HW_TX_MODE, 282 MP_GET_TXPOWER_INX, 283 MP_CUSTOMER_STR, 284 MP_PWRLMT, 285 MP_PWRBYRATE, 286 BT_EFUSE_FILE, 287 MP_SetBT, 288 MP_SWRFPath, 289 MP_LINK, 290 MP_DPK_TRK, 291 MP_DPK, 292 MP_NULL, 293 #ifdef CONFIG_APPEND_VENDOR_IE_ENABLE 294 VENDOR_IE_SET , 295 VENDOR_IE_GET , 296 #endif 297 #ifdef CONFIG_WOWLAN 298 MP_WOW_ENABLE, 299 MP_WOW_SET_PATTERN, 300 #endif 301 #ifdef CONFIG_AP_WOWLAN 302 MP_AP_WOW_ENABLE, 303 #endif 304 MP_SD_IREAD, 305 MP_SD_IWRITE, 306 }; 307 308 struct mp_priv { 309 _adapter *papdater; 310 311 /* Testing Flag */ 312 u32 mode;/* 0 for normal type packet, 1 for loopback packet (16bytes TXCMD) */ 313 314 u32 prev_fw_state; 315 316 /* OID cmd handler */ 317 struct mp_wiparam workparam; 318 /* u8 act_in_progress; */ 319 320 /* Tx Section */ 321 u8 TID; 322 u32 tx_pktcount; 323 u32 pktInterval; 324 u32 pktLength; 325 struct mp_tx tx; 326 327 /* Rx Section */ 328 u32 rx_bssidpktcount; 329 u32 rx_pktcount; 330 u32 rx_pktcount_filter_out; 331 u32 rx_crcerrpktcount; 332 u32 rx_pktloss; 333 BOOLEAN rx_bindicatePkt; 334 struct recv_stat rxstat; 335 BOOLEAN brx_filter_beacon; 336 337 /* RF/BB relative */ 338 u8 channel; 339 u8 bandwidth; 340 u8 prime_channel_offset; 341 u8 txpoweridx; 342 u8 rateidx; 343 u32 preamble; 344 /* u8 modem; */ 345 u32 CrystalCap; 346 /* u32 curr_crystalcap; */ 347 348 u16 antenna_tx; 349 u16 antenna_rx; 350 /* u8 curr_rfpath; */ 351 352 u8 check_mp_pkt; 353 354 u8 bSetTxPower; 355 /* uint ForcedDataRate; */ 356 u8 mp_dm; 357 u8 mac_filter[ETH_ALEN]; 358 u8 bmac_filter; 359 360 /* RF PATH Setting for WLG WLA BTG BT */ 361 u8 rf_path_cfg; 362 363 struct wlan_network mp_network; 364 NDIS_802_11_MAC_ADDRESS network_macaddr; 365 366 u8 *pallocated_mp_xmitframe_buf; 367 u8 *pmp_xmtframe_buf; 368 _queue free_mp_xmitqueue; 369 u32 free_mp_xmitframe_cnt; 370 BOOLEAN bSetRxBssid; 371 BOOLEAN bTxBufCkFail; 372 BOOLEAN bRTWSmbCfg; 373 BOOLEAN bloopback; 374 BOOLEAN bloadefusemap; 375 BOOLEAN bloadBTefusemap; 376 BOOLEAN bprocess_mp_mode; 377 378 MPT_CONTEXT mpt_ctx; 379 380 u8 *TXradomBuffer; 381 u8 CureFuseBTCoex; 382 u8 mplink_buf[2048]; 383 u32 mplink_rx_len; 384 BOOLEAN mplink_brx; 385 BOOLEAN mplink_btx; 386 387 bool tssitrk_on; 388 }; 389 390 typedef struct _IOCMD_STRUCT_ { 391 u8 cmdclass; 392 u16 value; 393 u8 index; 394 } IOCMD_STRUCT; 395 396 struct rf_reg_param { 397 u32 path; 398 u32 offset; 399 u32 value; 400 }; 401 402 struct bb_reg_param { 403 u32 offset; 404 u32 value; 405 }; 406 407 typedef struct _MP_FIRMWARE { 408 FIRMWARE_SOURCE eFWSource; 409 #ifdef CONFIG_EMBEDDED_FWIMG 410 u8 *szFwBuffer; 411 #else 412 u8 szFwBuffer[0x8000]; 413 #endif 414 u32 ulFwLength; 415 } RT_MP_FIRMWARE, *PRT_MP_FIRMWARE; 416 417 418 419 420 /* *********************************************************************** */ 421 422 #define LOWER _TRUE 423 #define RAISE _FALSE 424 425 /* Hardware Registers */ 426 #if 0 427 #if 0 428 #define IOCMD_CTRL_REG 0x102502C0 429 #define IOCMD_DATA_REG 0x102502C4 430 #else 431 #define IOCMD_CTRL_REG 0x10250370 432 #define IOCMD_DATA_REG 0x10250374 433 #endif 434 435 #define IOCMD_GET_THERMAL_METER 0xFD000028 436 437 #define IOCMD_CLASS_BB_RF 0xF0 438 #define IOCMD_BB_READ_IDX 0x00 439 #define IOCMD_BB_WRITE_IDX 0x01 440 #define IOCMD_RF_READ_IDX 0x02 441 #define IOCMD_RF_WRIT_IDX 0x03 442 #endif 443 #define BB_REG_BASE_ADDR 0x800 444 445 /* MP variables */ 446 #if 0 447 #define _2MAC_MODE_ 0 448 #define _LOOPBOOK_MODE_ 1 449 #endif 450 typedef enum _MP_MODE_ { 451 MP_OFF, 452 MP_ON, 453 MP_ERR, 454 MP_CONTINUOUS_TX, 455 MP_SINGLE_CARRIER_TX, 456 MP_CARRIER_SUPPRISSION_TX, 457 MP_SINGLE_TONE_TX, 458 MP_PACKET_TX, 459 MP_PACKET_RX 460 } MP_MODE; 461 462 typedef enum _TEST_MODE { 463 TEST_NONE , 464 PACKETS_TX , 465 PACKETS_RX , 466 CONTINUOUS_TX , 467 OFDM_Single_Tone_TX , 468 CCK_Carrier_Suppression_TX 469 } TEST_MODE; 470 471 472 typedef enum _MPT_BANDWIDTH { 473 MPT_BW_20MHZ = 0, 474 MPT_BW_40MHZ_DUPLICATE = 1, 475 MPT_BW_40MHZ_ABOVE = 2, 476 MPT_BW_40MHZ_BELOW = 3, 477 MPT_BW_40MHZ = 4, 478 MPT_BW_80MHZ = 5, 479 MPT_BW_80MHZ_20_ABOVE = 6, 480 MPT_BW_80MHZ_20_BELOW = 7, 481 MPT_BW_80MHZ_20_BOTTOM = 8, 482 MPT_BW_80MHZ_20_TOP = 9, 483 MPT_BW_80MHZ_40_ABOVE = 10, 484 MPT_BW_80MHZ_40_BELOW = 11, 485 } MPT_BANDWIDTHE, *PMPT_BANDWIDTH; 486 487 #define MAX_RF_PATH_NUMS RF_PATH_MAX 488 489 490 extern u8 mpdatarate[NumRates]; 491 492 /* MP set force data rate base on the definition. */ 493 typedef enum _MPT_RATE_INDEX { 494 /* CCK rate. */ 495 MPT_RATE_1M = 1 , /* 0 */ 496 MPT_RATE_2M, 497 MPT_RATE_55M, 498 MPT_RATE_11M, /* 3 */ 499 500 /* OFDM rate. */ 501 MPT_RATE_6M, /* 4 */ 502 MPT_RATE_9M, 503 MPT_RATE_12M, 504 MPT_RATE_18M, 505 MPT_RATE_24M, 506 MPT_RATE_36M, 507 MPT_RATE_48M, 508 MPT_RATE_54M, /* 11 */ 509 510 /* HT rate. */ 511 MPT_RATE_MCS0, /* 12 */ 512 MPT_RATE_MCS1, 513 MPT_RATE_MCS2, 514 MPT_RATE_MCS3, 515 MPT_RATE_MCS4, 516 MPT_RATE_MCS5, 517 MPT_RATE_MCS6, 518 MPT_RATE_MCS7, /* 19 */ 519 MPT_RATE_MCS8, 520 MPT_RATE_MCS9, 521 MPT_RATE_MCS10, 522 MPT_RATE_MCS11, 523 MPT_RATE_MCS12, 524 MPT_RATE_MCS13, 525 MPT_RATE_MCS14, 526 MPT_RATE_MCS15, /* 27 */ 527 MPT_RATE_MCS16, 528 MPT_RATE_MCS17, /* #29 */ 529 MPT_RATE_MCS18, 530 MPT_RATE_MCS19, 531 MPT_RATE_MCS20, 532 MPT_RATE_MCS21, 533 MPT_RATE_MCS22, /* #34 */ 534 MPT_RATE_MCS23, 535 MPT_RATE_MCS24, 536 MPT_RATE_MCS25, 537 MPT_RATE_MCS26, 538 MPT_RATE_MCS27, /* #39 */ 539 MPT_RATE_MCS28, /* #40 */ 540 MPT_RATE_MCS29, /* #41 */ 541 MPT_RATE_MCS30, /* #42 */ 542 MPT_RATE_MCS31, /* #43 */ 543 /* VHT rate. Total: 20*/ 544 MPT_RATE_VHT1SS_MCS0 = 100,/* #44*/ 545 MPT_RATE_VHT1SS_MCS1, /* # */ 546 MPT_RATE_VHT1SS_MCS2, 547 MPT_RATE_VHT1SS_MCS3, 548 MPT_RATE_VHT1SS_MCS4, 549 MPT_RATE_VHT1SS_MCS5, 550 MPT_RATE_VHT1SS_MCS6, /* # */ 551 MPT_RATE_VHT1SS_MCS7, 552 MPT_RATE_VHT1SS_MCS8, 553 MPT_RATE_VHT1SS_MCS9, /* #53 */ 554 MPT_RATE_VHT2SS_MCS0, /* #54 */ 555 MPT_RATE_VHT2SS_MCS1, 556 MPT_RATE_VHT2SS_MCS2, 557 MPT_RATE_VHT2SS_MCS3, 558 MPT_RATE_VHT2SS_MCS4, 559 MPT_RATE_VHT2SS_MCS5, 560 MPT_RATE_VHT2SS_MCS6, 561 MPT_RATE_VHT2SS_MCS7, 562 MPT_RATE_VHT2SS_MCS8, 563 MPT_RATE_VHT2SS_MCS9, /* #63 */ 564 MPT_RATE_VHT3SS_MCS0, 565 MPT_RATE_VHT3SS_MCS1, 566 MPT_RATE_VHT3SS_MCS2, 567 MPT_RATE_VHT3SS_MCS3, 568 MPT_RATE_VHT3SS_MCS4, 569 MPT_RATE_VHT3SS_MCS5, 570 MPT_RATE_VHT3SS_MCS6, /* #126 */ 571 MPT_RATE_VHT3SS_MCS7, 572 MPT_RATE_VHT3SS_MCS8, 573 MPT_RATE_VHT3SS_MCS9, 574 MPT_RATE_VHT4SS_MCS0, 575 MPT_RATE_VHT4SS_MCS1, /* #131 */ 576 MPT_RATE_VHT4SS_MCS2, 577 MPT_RATE_VHT4SS_MCS3, 578 MPT_RATE_VHT4SS_MCS4, 579 MPT_RATE_VHT4SS_MCS5, 580 MPT_RATE_VHT4SS_MCS6, /* #136 */ 581 MPT_RATE_VHT4SS_MCS7, 582 MPT_RATE_VHT4SS_MCS8, 583 MPT_RATE_VHT4SS_MCS9, 584 MPT_RATE_LAST 585 } MPT_RATE_E, *PMPT_RATE_E; 586 587 #define MAX_TX_PWR_INDEX_N_MODE 64 /* 0x3F */ 588 589 #define MPT_IS_CCK_RATE(_value) (MPT_RATE_1M <= _value && _value <= MPT_RATE_11M) 590 #define MPT_IS_OFDM_RATE(_value) (MPT_RATE_6M <= _value && _value <= MPT_RATE_54M) 591 #define MPT_IS_HT_RATE(_value) (MPT_RATE_MCS0 <= _value && _value <= MPT_RATE_MCS31) 592 #define MPT_IS_HT_1S_RATE(_value) (MPT_RATE_MCS0 <= _value && _value <= MPT_RATE_MCS7) 593 #define MPT_IS_HT_2S_RATE(_value) (MPT_RATE_MCS8 <= _value && _value <= MPT_RATE_MCS15) 594 #define MPT_IS_HT_3S_RATE(_value) (MPT_RATE_MCS16 <= _value && _value <= MPT_RATE_MCS23) 595 #define MPT_IS_HT_4S_RATE(_value) (MPT_RATE_MCS24 <= _value && _value <= MPT_RATE_MCS31) 596 597 #define MPT_IS_VHT_RATE(_value) (MPT_RATE_VHT1SS_MCS0 <= _value && _value <= MPT_RATE_VHT4SS_MCS9) 598 #define MPT_IS_VHT_1S_RATE(_value) (MPT_RATE_VHT1SS_MCS0 <= _value && _value <= MPT_RATE_VHT1SS_MCS9) 599 #define MPT_IS_VHT_2S_RATE(_value) (MPT_RATE_VHT2SS_MCS0 <= _value && _value <= MPT_RATE_VHT2SS_MCS9) 600 #define MPT_IS_VHT_3S_RATE(_value) (MPT_RATE_VHT3SS_MCS0 <= _value && _value <= MPT_RATE_VHT3SS_MCS9) 601 #define MPT_IS_VHT_4S_RATE(_value) (MPT_RATE_VHT4SS_MCS0 <= _value && _value <= MPT_RATE_VHT4SS_MCS9) 602 603 #define MPT_IS_2SS_RATE(_rate) ((MPT_RATE_MCS8 <= _rate && _rate <= MPT_RATE_MCS15) || \ 604 (MPT_RATE_VHT2SS_MCS0 <= _rate && _rate <= MPT_RATE_VHT2SS_MCS9)) 605 #define MPT_IS_3SS_RATE(_rate) ((MPT_RATE_MCS16 <= _rate && _rate <= MPT_RATE_MCS23) || \ 606 (MPT_RATE_VHT3SS_MCS0 <= _rate && _rate <= MPT_RATE_VHT3SS_MCS9)) 607 #define MPT_IS_4SS_RATE(_rate) ((MPT_RATE_MCS24 <= _rate && _rate <= MPT_RATE_MCS31) || \ 608 (MPT_RATE_VHT4SS_MCS0 <= _rate && _rate <= MPT_RATE_VHT4SS_MCS9)) 609 610 typedef enum _POWER_MODE_ { 611 POWER_LOW = 0, 612 POWER_NORMAL 613 } POWER_MODE; 614 615 /* The following enumeration is used to define the value of Reg0xD00[30:28] or JaguarReg0x914[18:16]. */ 616 typedef enum _OFDM_TX_MODE { 617 OFDM_ALL_OFF = 0, 618 OFDM_ContinuousTx = 1, 619 OFDM_SingleCarrier = 2, 620 OFDM_SingleTone = 4, 621 } OFDM_TX_MODE; 622 623 624 #define RX_PKT_BROADCAST 1 625 #define RX_PKT_DEST_ADDR 2 626 #define RX_PKT_PHY_MATCH 3 627 628 typedef enum _ENCRY_CTRL_STATE_ { 629 HW_CONTROL, /* hw encryption& decryption */ 630 SW_CONTROL, /* sw encryption& decryption */ 631 HW_ENCRY_SW_DECRY, /* hw encryption & sw decryption */ 632 SW_ENCRY_HW_DECRY /* sw encryption & hw decryption */ 633 } ENCRY_CTRL_STATE; 634 635 typedef enum _MPT_TXPWR_DEF { 636 MPT_CCK, 637 MPT_OFDM, /* L and HT OFDM */ 638 MPT_OFDM_AND_HT, 639 MPT_HT, 640 MPT_VHT 641 } MPT_TXPWR_DEF; 642 643 644 #define IS_MPT_HT_RATE(_rate) (_rate >= MPT_RATE_MCS0 && _rate <= MPT_RATE_MCS31) 645 #define IS_MPT_VHT_RATE(_rate) (_rate >= MPT_RATE_VHT1SS_MCS0 && _rate <= MPT_RATE_VHT4SS_MCS9) 646 #define IS_MPT_CCK_RATE(_rate) (_rate >= MPT_RATE_1M && _rate <= MPT_RATE_11M) 647 #define IS_MPT_OFDM_RATE(_rate) (_rate >= MPT_RATE_6M && _rate <= MPT_RATE_54M) 648 649 typedef enum _mp_tx_pkt_payload{ 650 MP_TX_Payload_00 = 0, 651 MP_TX_Payload_a5, 652 MP_TX_Payload_5a, 653 MP_TX_Payload_ff, 654 MP_TX_Payload_prbs9, 655 MP_TX_Payload_default_random 656 } mp_tx_pkt_payload; 657 658 /*************************************************************************/ 659 #if 0 660 extern struct mp_xmit_frame *alloc_mp_xmitframe(struct mp_priv *pmp_priv); 661 extern int free_mp_xmitframe(struct xmit_priv *pxmitpriv, struct mp_xmit_frame *pmp_xmitframe); 662 #endif 663 664 extern s32 init_mp_priv(PADAPTER padapter); 665 extern void free_mp_priv(struct mp_priv *pmp_priv); 666 extern s32 MPT_InitializeAdapter(PADAPTER padapter, u8 Channel); 667 extern void MPT_DeInitAdapter(PADAPTER padapter); 668 extern s32 mp_start_test(PADAPTER padapter); 669 extern void mp_stop_test(PADAPTER padapter); 670 671 extern u32 _read_rfreg(PADAPTER padapter, u8 rfpath, u32 addr, u32 bitmask); 672 extern void _write_rfreg(PADAPTER padapter, u8 rfpath, u32 addr, u32 bitmask, u32 val); 673 674 extern u32 read_macreg(_adapter *padapter, u32 addr, u32 sz); 675 extern void write_macreg(_adapter *padapter, u32 addr, u32 val, u32 sz); 676 extern u32 read_bbreg(_adapter *padapter, u32 addr, u32 bitmask); 677 extern void write_bbreg(_adapter *padapter, u32 addr, u32 bitmask, u32 val); 678 extern u32 read_rfreg(PADAPTER padapter, u8 rfpath, u32 addr); 679 extern void write_rfreg(PADAPTER padapter, u8 rfpath, u32 addr, u32 val); 680 #ifdef CONFIG_ANTENNA_DIVERSITY 681 u8 rtw_mp_set_antdiv(PADAPTER padapter, BOOLEAN bMain); 682 #endif 683 void SetChannel(PADAPTER pAdapter); 684 void SetBandwidth(PADAPTER pAdapter); 685 int SetTxPower(PADAPTER pAdapter); 686 void SetAntenna(PADAPTER pAdapter); 687 void SetDataRate(PADAPTER pAdapter); 688 void SetAntenna(PADAPTER pAdapter); 689 s32 SetThermalMeter(PADAPTER pAdapter, u8 target_ther); 690 void GetThermalMeter(PADAPTER pAdapter, u8 rfpath ,u8 *value); 691 void SetContinuousTx(PADAPTER pAdapter, u8 bStart); 692 void SetSingleCarrierTx(PADAPTER pAdapter, u8 bStart); 693 void SetSingleToneTx(PADAPTER pAdapter, u8 bStart); 694 void SetCarrierSuppressionTx(PADAPTER pAdapter, u8 bStart); 695 void PhySetTxPowerLevel(PADAPTER pAdapter); 696 void fill_txdesc_for_mp(PADAPTER padapter, u8 *ptxdesc); 697 void SetPacketTx(PADAPTER padapter); 698 void SetPacketRx(PADAPTER pAdapter, u8 bStartRx, u8 bAB); 699 void ResetPhyRxPktCount(PADAPTER pAdapter); 700 u32 GetPhyRxPktReceived(PADAPTER pAdapter); 701 u32 GetPhyRxPktCRC32Error(PADAPTER pAdapter); 702 s32 SetPowerTracking(PADAPTER padapter, u8 enable); 703 void GetPowerTracking(PADAPTER padapter, u8 *enable); 704 u32 mp_query_psd(PADAPTER pAdapter, u8 *data); 705 void rtw_mp_trigger_iqk(PADAPTER padapter); 706 void rtw_mp_trigger_lck(PADAPTER padapter); 707 void rtw_mp_trigger_dpk(PADAPTER padapter); 708 u8 rtw_mp_mode_check(PADAPTER padapter); 709 bool rtw_is_mp_tssitrk_on(_adapter *adapter); 710 711 void hal_mpt_SwitchRfSetting(PADAPTER pAdapter); 712 s32 hal_mpt_SetPowerTracking(PADAPTER padapter, u8 enable); 713 void hal_mpt_GetPowerTracking(PADAPTER padapter, u8 *enable); 714 void hal_mpt_CCKTxPowerAdjust(PADAPTER Adapter, BOOLEAN bInCH14); 715 void hal_mpt_SetChannel(PADAPTER pAdapter); 716 void hal_mpt_SetBandwidth(PADAPTER pAdapter); 717 void hal_mpt_SetTxPower(PADAPTER pAdapter); 718 void hal_mpt_SetDataRate(PADAPTER pAdapter); 719 void hal_mpt_SetAntenna(PADAPTER pAdapter); 720 s32 hal_mpt_SetThermalMeter(PADAPTER pAdapter, u8 target_ther); 721 void hal_mpt_TriggerRFThermalMeter(PADAPTER pAdapter); 722 u8 hal_mpt_ReadRFThermalMeter(PADAPTER pAdapter, u8 rf_path); 723 void hal_mpt_GetThermalMeter(PADAPTER pAdapter, u8 rfpath, u8 *value); 724 void hal_mpt_SetContinuousTx(PADAPTER pAdapter, u8 bStart); 725 void hal_mpt_SetSingleCarrierTx(PADAPTER pAdapter, u8 bStart); 726 void hal_mpt_SetSingleToneTx(PADAPTER pAdapter, u8 bStart); 727 void hal_mpt_SetCarrierSuppressionTx(PADAPTER pAdapter, u8 bStart); 728 void mpt_ProSetPMacTx(PADAPTER Adapter); 729 void MP_PHY_SetRFPathSwitch(PADAPTER pAdapter , BOOLEAN bMain); 730 void mp_phy_switch_rf_path_set(PADAPTER pAdapter , u8 *pstate); 731 u8 MP_PHY_QueryRFPathSwitch(PADAPTER pAdapter); 732 u32 mpt_ProQueryCalTxPower(PADAPTER pAdapter, u8 RfPath); 733 void MPT_PwrCtlDM(PADAPTER padapter, u32 bstart); 734 u8 mpt_to_mgnt_rate(u32 MptRateIdx); 735 u8 rtw_mpRateParseFunc(PADAPTER pAdapter, u8 *targetStr); 736 u32 mp_join(PADAPTER padapter, u8 mode); 737 u32 hal_mpt_query_phytxok(PADAPTER pAdapter); 738 u32 mpt_get_tx_power_finalabs_val(PADAPTER padapter, u8 rf_path); 739 740 void 741 PMAC_Get_Pkt_Param( 742 PRT_PMAC_TX_INFO pPMacTxInfo, 743 PRT_PMAC_PKT_INFO pPMacPktInfo 744 ); 745 void 746 CCK_generator( 747 PRT_PMAC_TX_INFO pPMacTxInfo, 748 PRT_PMAC_PKT_INFO pPMacPktInfo 749 ); 750 void 751 PMAC_Nsym_generator( 752 PRT_PMAC_TX_INFO pPMacTxInfo, 753 PRT_PMAC_PKT_INFO pPMacPktInfo 754 ); 755 void 756 L_SIG_generator( 757 u32 N_SYM, /* Max: 750*/ 758 PRT_PMAC_TX_INFO pPMacTxInfo, 759 PRT_PMAC_PKT_INFO pPMacPktInfo 760 ); 761 762 void HT_SIG_generator( 763 PRT_PMAC_TX_INFO pPMacTxInfo, 764 PRT_PMAC_PKT_INFO pPMacPktInfo); 765 766 void VHT_SIG_A_generator( 767 PRT_PMAC_TX_INFO pPMacTxInfo, 768 PRT_PMAC_PKT_INFO pPMacPktInfo); 769 770 void VHT_SIG_B_generator( 771 PRT_PMAC_TX_INFO pPMacTxInfo); 772 773 void VHT_Delimiter_generator( 774 PRT_PMAC_TX_INFO pPMacTxInfo); 775 776 777 int rtw_mp_write_reg(struct net_device *dev, 778 struct iw_request_info *info, 779 struct iw_point *wrqu, char *extra); 780 int rtw_mp_read_reg(struct net_device *dev, 781 struct iw_request_info *info, 782 struct iw_point *wrqu, char *extra); 783 int rtw_mp_write_rf(struct net_device *dev, 784 struct iw_request_info *info, 785 struct iw_point *wrqu, char *extra); 786 int rtw_mp_read_rf(struct net_device *dev, 787 struct iw_request_info *info, 788 struct iw_point *wrqu, char *extra); 789 int rtw_mp_start(struct net_device *dev, 790 struct iw_request_info *info, 791 struct iw_point *wrqu, char *extra); 792 int rtw_mp_stop(struct net_device *dev, 793 struct iw_request_info *info, 794 struct iw_point *wrqu, char *extra); 795 int rtw_mp_rate(struct net_device *dev, 796 struct iw_request_info *info, 797 struct iw_point *wrqu, char *extra); 798 int rtw_mp_channel(struct net_device *dev, 799 struct iw_request_info *info, 800 struct iw_point *wrqu, char *extra); 801 int rtw_mp_ch_offset(struct net_device *dev, 802 struct iw_request_info *info, 803 struct iw_point *wrqu, char *extra); 804 int rtw_mp_bandwidth(struct net_device *dev, 805 struct iw_request_info *info, 806 struct iw_point *wrqu, char *extra); 807 int rtw_mp_txpower_index(struct net_device *dev, 808 struct iw_request_info *info, 809 struct iw_point *wrqu, char *extra); 810 int rtw_mp_txpower(struct net_device *dev, 811 struct iw_request_info *info, 812 struct iw_point *wrqu, char *extra); 813 int rtw_mp_txpower(struct net_device *dev, 814 struct iw_request_info *info, 815 struct iw_point *wrqu, char *extra); 816 int rtw_mp_ant_tx(struct net_device *dev, 817 struct iw_request_info *info, 818 struct iw_point *wrqu, char *extra); 819 int rtw_mp_ant_rx(struct net_device *dev, 820 struct iw_request_info *info, 821 struct iw_point *wrqu, char *extra); 822 int rtw_set_ctx_destAddr(struct net_device *dev, 823 struct iw_request_info *info, 824 struct iw_point *wrqu, char *extra); 825 int rtw_mp_ctx(struct net_device *dev, 826 struct iw_request_info *info, 827 struct iw_point *wrqu, char *extra); 828 int rtw_mp_disable_bt_coexist(struct net_device *dev, 829 struct iw_request_info *info, 830 union iwreq_data *wrqu, char *extra); 831 int rtw_mp_disable_bt_coexist(struct net_device *dev, 832 struct iw_request_info *info, 833 union iwreq_data *wrqu, char *extra); 834 int rtw_mp_arx(struct net_device *dev, 835 struct iw_request_info *info, 836 struct iw_point *wrqu, char *extra); 837 int rtw_mp_trx_query(struct net_device *dev, 838 struct iw_request_info *info, 839 struct iw_point *wrqu, char *extra); 840 int rtw_mp_pwrtrk(struct net_device *dev, 841 struct iw_request_info *info, 842 struct iw_point *wrqu, char *extra); 843 int rtw_mp_psd(struct net_device *dev, 844 struct iw_request_info *info, 845 struct iw_point *wrqu, char *extra); 846 int rtw_mp_thermal(struct net_device *dev, 847 struct iw_request_info *info, 848 struct iw_point *wrqu, char *extra); 849 int rtw_mp_reset_stats(struct net_device *dev, 850 struct iw_request_info *info, 851 struct iw_point *wrqu, char *extra); 852 int rtw_mp_dump(struct net_device *dev, 853 struct iw_request_info *info, 854 struct iw_point *wrqu, char *extra); 855 int rtw_mp_phypara(struct net_device *dev, 856 struct iw_request_info *info, 857 struct iw_point *wrqu, char *extra); 858 int rtw_mp_SetRFPath(struct net_device *dev, 859 struct iw_request_info *info, 860 struct iw_point *wrqu, char *extra); 861 int rtw_mp_switch_rf_path(struct net_device *dev, 862 struct iw_request_info *info, 863 struct iw_point *wrqu, char *extra); 864 int rtw_mp_link(struct net_device *dev, 865 struct iw_request_info *info, 866 struct iw_point *wrqu, char *extra); 867 int rtw_mp_QueryDrv(struct net_device *dev, 868 struct iw_request_info *info, 869 union iwreq_data *wrqu, char *extra); 870 int rtw_mp_PwrCtlDM(struct net_device *dev, 871 struct iw_request_info *info, 872 struct iw_point *wrqu, char *extra); 873 int rtw_mp_getver(struct net_device *dev, 874 struct iw_request_info *info, 875 union iwreq_data *wrqu, char *extra); 876 int rtw_mp_mon(struct net_device *dev, 877 struct iw_request_info *info, 878 union iwreq_data *wrqu, char *extra); 879 int rtw_mp_pwrlmt(struct net_device *dev, 880 struct iw_request_info *info, 881 union iwreq_data *wrqu, char *extra); 882 int rtw_mp_pwrbyrate(struct net_device *dev, 883 struct iw_request_info *info, 884 union iwreq_data *wrqu, char *extra); 885 int rtw_mp_dpk_track(struct net_device *dev, 886 struct iw_request_info *info, 887 union iwreq_data *wrqu, char *extra); 888 int rtw_mp_dpk(struct net_device *dev, 889 struct iw_request_info *info, 890 union iwreq_data *wrqu, char *extra); 891 int rtw_efuse_mask_file(struct net_device *dev, 892 struct iw_request_info *info, 893 union iwreq_data *wrqu, char *extra); 894 int rtw_bt_efuse_mask_file(struct net_device *dev, 895 struct iw_request_info *info, 896 union iwreq_data *wrqu, char *extra); 897 int rtw_efuse_file_map(struct net_device *dev, 898 struct iw_request_info *info, 899 union iwreq_data *wrqu, char *extra); 900 int rtw_bt_efuse_file_map(struct net_device *dev, 901 struct iw_request_info *info, 902 union iwreq_data *wrqu, char *extra); 903 int rtw_mp_SetBT(struct net_device *dev, 904 struct iw_request_info *info, 905 union iwreq_data *wrqu, char *extra); 906 int rtw_mp_pretx_proc(PADAPTER padapter, u8 bStartTest, char *extra); 907 int rtw_mp_tx(struct net_device *dev, 908 struct iw_request_info *info, 909 union iwreq_data *wrqu, char *extra); 910 int rtw_mp_rx(struct net_device *dev, 911 struct iw_request_info *info, 912 union iwreq_data *wrqu, char *extra); 913 int rtw_mp_hwtx(struct net_device *dev, 914 struct iw_request_info *info, 915 union iwreq_data *wrqu, char *extra); 916 u8 HwRateToMPTRate(u8 rate); 917 int rtw_mp_iqk(struct net_device *dev, 918 struct iw_request_info *info, 919 struct iw_point *wrqu, char *extra); 920 int rtw_mp_lck(struct net_device *dev, 921 struct iw_request_info *info, 922 struct iw_point *wrqu, char *extra); 923 #endif /* _RTW_MP_H_ */ 924