1 1.1 alc /* 2 1.1 alc * Copyright (c) 2008 Sam Leffler, Errno Consulting 3 1.1 alc * Copyright (c) 2008 Atheros Communications, Inc. 4 1.1 alc * 5 1.1 alc * Permission to use, copy, modify, and/or distribute this software for any 6 1.1 alc * purpose with or without fee is hereby granted, provided that the above 7 1.1 alc * copyright notice and this permission notice appear in all copies. 8 1.1 alc * 9 1.1 alc * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES 10 1.1 alc * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF 11 1.1 alc * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR 12 1.1 alc * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES 13 1.1 alc * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN 14 1.1 alc * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF 15 1.1 alc * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. 16 1.1 alc * 17 1.5 mrg * $Id: ah_eeprom_v1.c,v 1.5 2021/04/13 03:27:13 mrg Exp $ 18 1.1 alc */ 19 1.1 alc #include "opt_ah.h" 20 1.1 alc 21 1.1 alc #include "ah.h" 22 1.1 alc #include "ah_internal.h" 23 1.1 alc #include "ah_eeprom_v1.h" 24 1.1 alc 25 1.1 alc static HAL_STATUS 26 1.1 alc v1EepromGet(struct ath_hal *ah, int param, void *val) 27 1.1 alc { 28 1.1 alc HAL_EEPROM_v1 *ee = AH_PRIVATE(ah)->ah_eeprom; 29 1.1 alc uint32_t sum; 30 1.1 alc uint16_t eeval; 31 1.1 alc uint8_t *macaddr; 32 1.1 alc int i; 33 1.1 alc 34 1.1 alc switch (param) { 35 1.1 alc case AR_EEP_MACADDR: /* Get MAC Address */ 36 1.1 alc sum = 0; 37 1.1 alc macaddr = val; 38 1.1 alc for (i = 0; i < 3; i++) { 39 1.1 alc if (!ath_hal_eepromRead(ah, AR_EEPROM_MAC(i), &eeval)) { 40 1.1 alc HALDEBUG(ah, HAL_DEBUG_ANY, 41 1.1 alc "%s: cannot read EEPROM location %u\n", 42 1.1 alc __func__, i); 43 1.1 alc return HAL_EEREAD; 44 1.1 alc } 45 1.1 alc sum += eeval; 46 1.1 alc macaddr[2*i + 0] = eeval >> 8; 47 1.1 alc macaddr[2*i + 1] = eeval & 0xff; 48 1.1 alc } 49 1.1 alc if (sum == 0 || sum == 0xffff*3) { 50 1.1 alc HALDEBUG(ah, HAL_DEBUG_ANY, "%s: bad mac address %s\n", 51 1.1 alc __func__, ath_hal_ether_sprintf(macaddr)); 52 1.1 alc return HAL_EEBADMAC; 53 1.1 alc } 54 1.1 alc return HAL_OK; 55 1.1 alc case AR_EEP_REGDMN_0: 56 1.1 alc *(uint16_t *) val = ee->ee_regDomain[0]; 57 1.1 alc return HAL_OK; 58 1.1 alc case AR_EEP_RFKILL: 59 1.1 alc HALASSERT(val == AH_NULL); 60 1.1 alc return ee->ee_rfKill ? HAL_OK : HAL_EIO; 61 1.1 alc case AR_EEP_WRITEPROTECT: 62 1.1 alc HALASSERT(val == AH_NULL); 63 1.1 alc return (ee->ee_protect & AR_EEPROM_PROTOTECT_WP_128_191) ? 64 1.1 alc HAL_OK : HAL_EIO; 65 1.1 alc default: 66 1.1 alc HALASSERT(0); 67 1.1 alc return HAL_EINVAL; 68 1.1 alc } 69 1.1 alc } 70 1.1 alc 71 1.1 alc static HAL_BOOL 72 1.1 alc v1EepromSet(struct ath_hal *ah, int param, int v) 73 1.1 alc { 74 1.5 mrg return AH_FALSE; 75 1.1 alc } 76 1.1 alc 77 1.1 alc static HAL_BOOL 78 1.1 alc v1EepromDiag(struct ath_hal *ah, int request, 79 1.1 alc const void *args, uint32_t argsize, void **result, uint32_t *resultsize) 80 1.1 alc { 81 1.1 alc HAL_EEPROM_v1 *ee = AH_PRIVATE(ah)->ah_eeprom; 82 1.1 alc 83 1.1 alc switch (request) { 84 1.1 alc case HAL_DIAG_EEPROM: 85 1.1 alc *result = ee; 86 1.1 alc *resultsize = sizeof(*ee); 87 1.1 alc return AH_TRUE; 88 1.1 alc } 89 1.1 alc return AH_FALSE; 90 1.1 alc } 91 1.1 alc 92 1.1 alc static uint16_t 93 1.1 alc v1EepromGetSpurChan(struct ath_hal *ah, int ix, HAL_BOOL is2GHz) 94 1.1 alc { 95 1.1 alc return AR_NO_SPUR; 96 1.1 alc } 97 1.1 alc 98 1.1 alc /* 99 1.1 alc * Reclaim any EEPROM-related storage. 100 1.1 alc */ 101 1.1 alc static void 102 1.1 alc v1EepromDetach(struct ath_hal *ah) 103 1.1 alc { 104 1.1 alc HAL_EEPROM_v1 *ee = AH_PRIVATE(ah)->ah_eeprom; 105 1.1 alc 106 1.1 alc ath_hal_free(ee); 107 1.1 alc AH_PRIVATE(ah)->ah_eeprom = AH_NULL; 108 1.1 alc } 109 1.1 alc 110 1.1 alc HAL_STATUS 111 1.1 alc ath_hal_v1EepromAttach(struct ath_hal *ah) 112 1.1 alc { 113 1.1 alc HAL_EEPROM_v1 *ee = AH_PRIVATE(ah)->ah_eeprom; 114 1.1 alc uint16_t athvals[AR_EEPROM_ATHEROS_MAX]; /* XXX off stack */ 115 1.2 alc uint16_t protect, eeprom_version, eeval; 116 1.1 alc uint32_t sum; 117 1.1 alc int i, loc; 118 1.1 alc 119 1.1 alc HALASSERT(ee == AH_NULL); 120 1.1 alc 121 1.1 alc if (!ath_hal_eepromRead(ah, AR_EEPROM_MAGIC, &eeval)) { 122 1.1 alc HALDEBUG(ah, HAL_DEBUG_ANY, 123 1.1 alc "%s: cannot read EEPROM magic number\n", __func__); 124 1.1 alc return HAL_EEREAD; 125 1.1 alc } 126 1.1 alc if (eeval != 0x5aa5) { 127 1.1 alc HALDEBUG(ah, HAL_DEBUG_ANY, 128 1.1 alc "%s: invalid EEPROM magic number 0x%x\n", __func__, eeval); 129 1.1 alc return HAL_EEMAGIC; 130 1.1 alc } 131 1.1 alc 132 1.1 alc if (!ath_hal_eepromRead(ah, AR_EEPROM_PROTECT, &protect)) { 133 1.1 alc HALDEBUG(ah, HAL_DEBUG_ANY, 134 1.1 alc "%s: cannot read EEPROM protection bits; read locked?\n", 135 1.1 alc __func__); 136 1.1 alc return HAL_EEREAD; 137 1.1 alc } 138 1.1 alc HALDEBUG(ah, HAL_DEBUG_ATTACH, "EEPROM protect 0x%x\n", protect); 139 1.1 alc /* XXX check proper access before continuing */ 140 1.1 alc 141 1.2 alc if (!ath_hal_eepromRead(ah, AR_EEPROM_VERSION, &eeprom_version)) { 142 1.1 alc HALDEBUG(ah, HAL_DEBUG_ANY, 143 1.1 alc "%s: unable to read EEPROM version\n", __func__); 144 1.1 alc return HAL_EEREAD; 145 1.1 alc } 146 1.2 alc if (((eeprom_version>>12) & 0xf) != 1) { 147 1.1 alc /* 148 1.1 alc * This code only groks the version 1 EEPROM layout. 149 1.1 alc */ 150 1.1 alc HALDEBUG(ah, HAL_DEBUG_ANY, 151 1.4 alc "%s: unsupported EEPROM version 0x%x found\n", 152 1.4 alc __func__, eeprom_version); 153 1.1 alc return HAL_EEVERSION; 154 1.1 alc } 155 1.1 alc 156 1.1 alc /* 157 1.1 alc * Read the Atheros EEPROM entries and calculate the checksum. 158 1.1 alc */ 159 1.1 alc sum = 0; 160 1.1 alc for (i = 0; i < AR_EEPROM_ATHEROS_MAX; i++) { 161 1.1 alc if (!ath_hal_eepromRead(ah, AR_EEPROM_ATHEROS(i), &athvals[i])) 162 1.1 alc return HAL_EEREAD; 163 1.1 alc sum ^= athvals[i]; 164 1.1 alc } 165 1.1 alc if (sum != 0xffff) { 166 1.1 alc HALDEBUG(ah, HAL_DEBUG_ANY, "%s: bad EEPROM checksum 0x%x\n", 167 1.1 alc __func__, sum); 168 1.1 alc return HAL_EEBADSUM; 169 1.1 alc } 170 1.1 alc 171 1.1 alc /* 172 1.1 alc * Valid checksum, fetch the regulatory domain and save values. 173 1.1 alc */ 174 1.1 alc if (!ath_hal_eepromRead(ah, AR_EEPROM_REG_DOMAIN, &eeval)) { 175 1.1 alc HALDEBUG(ah, HAL_DEBUG_ANY, 176 1.1 alc "%s: cannot read regdomain from EEPROM\n", __func__); 177 1.1 alc return HAL_EEREAD; 178 1.1 alc } 179 1.1 alc 180 1.1 alc ee = ath_hal_malloc(sizeof(HAL_EEPROM_v1)); 181 1.1 alc if (ee == AH_NULL) { 182 1.1 alc /* XXX message */ 183 1.1 alc return HAL_ENOMEM; 184 1.1 alc } 185 1.1 alc 186 1.2 alc ee->ee_version = eeprom_version; 187 1.1 alc ee->ee_protect = protect; 188 1.1 alc ee->ee_antenna = athvals[2]; 189 1.1 alc ee->ee_biasCurrents = athvals[3]; 190 1.1 alc ee->ee_thresh62 = athvals[4] & 0xff; 191 1.1 alc ee->ee_xlnaOn = (athvals[4] >> 8) & 0xff; 192 1.1 alc ee->ee_xpaOn = athvals[5] & 0xff; 193 1.1 alc ee->ee_xpaOff = (athvals[5] >> 8) & 0xff; 194 1.1 alc ee->ee_regDomain[0] = (athvals[6] >> 8) & 0xff; 195 1.1 alc ee->ee_regDomain[1] = athvals[6] & 0xff; 196 1.1 alc ee->ee_regDomain[2] = (athvals[7] >> 8) & 0xff; 197 1.1 alc ee->ee_regDomain[3] = athvals[7] & 0xff; 198 1.1 alc ee->ee_rfKill = athvals[8] & 0x1; 199 1.1 alc ee->ee_devType = (athvals[8] >> 1) & 0x7; 200 1.1 alc 201 1.1 alc for (i = 0, loc = AR_EEPROM_ATHEROS_TP_SETTINGS; i < AR_CHANNELS_MAX; i++, loc += AR_TP_SETTINGS_SIZE) { 202 1.1 alc struct tpcMap *chan = &ee->ee_tpc[i]; 203 1.1 alc 204 1.1 alc /* Copy pcdac and gain_f values from EEPROM */ 205 1.1 alc chan->pcdac[0] = (athvals[loc] >> 10) & 0x3F; 206 1.1 alc chan->gainF[0] = (athvals[loc] >> 4) & 0x3F; 207 1.1 alc chan->pcdac[1] = ((athvals[loc] << 2) & 0x3C) 208 1.1 alc | ((athvals[loc+1] >> 14) & 0x03); 209 1.1 alc chan->gainF[1] = (athvals[loc+1] >> 8) & 0x3F; 210 1.1 alc chan->pcdac[2] = (athvals[loc+1] >> 2) & 0x3F; 211 1.1 alc chan->gainF[2] = ((athvals[loc+1] << 4) & 0x30) 212 1.1 alc | ((athvals[loc+2] >> 12) & 0x0F); 213 1.1 alc chan->pcdac[3] = (athvals[loc+2] >> 6) & 0x3F; 214 1.1 alc chan->gainF[3] = athvals[loc+2] & 0x3F; 215 1.1 alc chan->pcdac[4] = (athvals[loc+3] >> 10) & 0x3F; 216 1.1 alc chan->gainF[4] = (athvals[loc+3] >> 4) & 0x3F; 217 1.1 alc chan->pcdac[5] = ((athvals[loc+3] << 2) & 0x3C) 218 1.1 alc | ((athvals[loc+4] >> 14) & 0x03); 219 1.1 alc chan->gainF[5] = (athvals[loc+4] >> 8) & 0x3F; 220 1.1 alc chan->pcdac[6] = (athvals[loc+4] >> 2) & 0x3F; 221 1.1 alc chan->gainF[6] = ((athvals[loc+4] << 4) & 0x30) 222 1.1 alc | ((athvals[loc+5] >> 12) & 0x0F); 223 1.1 alc chan->pcdac[7] = (athvals[loc+5] >> 6) & 0x3F; 224 1.1 alc chan->gainF[7] = athvals[loc+5] & 0x3F; 225 1.1 alc chan->pcdac[8] = (athvals[loc+6] >> 10) & 0x3F; 226 1.1 alc chan->gainF[8] = (athvals[loc+6] >> 4) & 0x3F; 227 1.1 alc chan->pcdac[9] = ((athvals[loc+6] << 2) & 0x3C) 228 1.1 alc | ((athvals[loc+7] >> 14) & 0x03); 229 1.1 alc chan->gainF[9] = (athvals[loc+7] >> 8) & 0x3F; 230 1.1 alc chan->pcdac[10] = (athvals[loc+7] >> 2) & 0x3F; 231 1.1 alc chan->gainF[10] = ((athvals[loc+7] << 4) & 0x30) 232 1.1 alc | ((athvals[loc+8] >> 12) & 0x0F); 233 1.1 alc 234 1.1 alc /* Copy Regulatory Domain and Rate Information from EEPROM */ 235 1.1 alc chan->rate36 = (athvals[loc+8] >> 6) & 0x3F; 236 1.1 alc chan->rate48 = athvals[loc+8] & 0x3F; 237 1.1 alc chan->rate54 = (athvals[loc+9] >> 10) & 0x3F; 238 1.1 alc chan->regdmn[0] = (athvals[loc+9] >> 4) & 0x3F; 239 1.1 alc chan->regdmn[1] = ((athvals[loc+9] << 2) & 0x3C) 240 1.1 alc | ((athvals[loc+10] >> 14) & 0x03); 241 1.1 alc chan->regdmn[2] = (athvals[loc+10] >> 8) & 0x3F; 242 1.1 alc chan->regdmn[3] = (athvals[loc+10] >> 2) & 0x3F; 243 1.1 alc } 244 1.1 alc 245 1.1 alc AH_PRIVATE(ah)->ah_eeprom = ee; 246 1.2 alc AH_PRIVATE(ah)->ah_eeversion = eeprom_version; 247 1.1 alc AH_PRIVATE(ah)->ah_eepromDetach = v1EepromDetach; 248 1.1 alc AH_PRIVATE(ah)->ah_eepromGet = v1EepromGet; 249 1.1 alc AH_PRIVATE(ah)->ah_eepromSet = v1EepromSet; 250 1.1 alc AH_PRIVATE(ah)->ah_getSpurChan = v1EepromGetSpurChan; 251 1.1 alc AH_PRIVATE(ah)->ah_eepromDiag = v1EepromDiag; 252 1.1 alc return HAL_OK; 253 1.1 alc } 254