xref: /freebsd/sys/dev/ath/ath_hal/ar9001/ar9160_attach.c (revision 884a2a699669ec61e2366e3e358342dbc94be24a)
1 /*
2  * Copyright (c) 2008 Sam Leffler, Errno Consulting
3  * Copyright (c) 2008 Atheros Communications, Inc.
4  *
5  * Permission to use, copy, modify, and/or distribute this software for any
6  * purpose with or without fee is hereby granted, provided that the above
7  * copyright notice and this permission notice appear in all copies.
8  *
9  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
10  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
11  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
12  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
13  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
14  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
15  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
16  *
17  * $FreeBSD$
18  */
19 #include "opt_ah.h"
20 
21 #include "ah.h"
22 #include "ah_internal.h"
23 #include "ah_devid.h"
24 
25 #include "ar5416/ar5416.h"
26 #include "ar5416/ar5416reg.h"
27 #include "ar5416/ar5416phy.h"
28 
29 #include "ar9001/ar9160.ini"
30 
31 static const HAL_PERCAL_DATA ar9160_iq_cal = {		/* multi sample */
32 	.calName = "IQ", .calType = IQ_MISMATCH_CAL,
33 	.calNumSamples	= MAX_CAL_SAMPLES,
34 	.calCountMax	= PER_MIN_LOG_COUNT,
35 	.calCollect	= ar5416IQCalCollect,
36 	.calPostProc	= ar5416IQCalibration
37 };
38 static const HAL_PERCAL_DATA ar9160_adc_gain_cal = {	/* multi sample */
39 	.calName = "ADC Gain", .calType = ADC_GAIN_CAL,
40 	.calNumSamples	= MAX_CAL_SAMPLES,
41 	.calCountMax	= PER_MIN_LOG_COUNT,
42 	.calCollect	= ar5416AdcGainCalCollect,
43 	.calPostProc	= ar5416AdcGainCalibration
44 };
45 static const HAL_PERCAL_DATA ar9160_adc_dc_cal = {	/* multi sample */
46 	.calName = "ADC DC", .calType = ADC_DC_CAL,
47 	.calNumSamples	= MAX_CAL_SAMPLES,
48 	.calCountMax	= PER_MIN_LOG_COUNT,
49 	.calCollect	= ar5416AdcDcCalCollect,
50 	.calPostProc	= ar5416AdcDcCalibration
51 };
52 static const HAL_PERCAL_DATA ar9160_adc_init_dc_cal = {
53 	.calName = "ADC Init DC", .calType = ADC_DC_INIT_CAL,
54 	.calNumSamples	= MIN_CAL_SAMPLES,
55 	.calCountMax	= INIT_LOG_COUNT,
56 	.calCollect	= ar5416AdcDcCalCollect,
57 	.calPostProc	= ar5416AdcDcCalibration
58 };
59 
60 static HAL_BOOL ar9160FillCapabilityInfo(struct ath_hal *ah);
61 
62 static void
63 ar9160AniSetup(struct ath_hal *ah)
64 {
65 	static const struct ar5212AniParams aniparams = {
66 		.maxNoiseImmunityLevel	= 4,	/* levels 0..4 */
67 		.totalSizeDesired	= { -55, -55, -55, -55, -62 },
68 		.coarseHigh		= { -14, -14, -14, -14, -12 },
69 		.coarseLow		= { -64, -64, -64, -64, -70 },
70 		.firpwr			= { -78, -78, -78, -78, -80 },
71 		.maxSpurImmunityLevel	= 2,
72 		.cycPwrThr1		= { 2, 4, 6 },
73 		.maxFirstepLevel	= 2,	/* levels 0..2 */
74 		.firstep		= { 0, 4, 8 },
75 		.ofdmTrigHigh		= 500,
76 		.ofdmTrigLow		= 200,
77 		.cckTrigHigh		= 200,
78 		.cckTrigLow		= 100,
79 		.rssiThrHigh		= 40,
80 		.rssiThrLow		= 7,
81 		.period			= 100,
82 	};
83 
84 	/* NB: disable ANI noise immmunity for reliable RIFS rx */
85 	AH5416(ah)->ah_ani_function &= ~(1 << HAL_ANI_NOISE_IMMUNITY_LEVEL);
86 	ar5416AniAttach(ah, &aniparams, &aniparams, AH_TRUE);
87 }
88 
89 /*
90  * Attach for an AR9160 part.
91  */
92 static struct ath_hal *
93 ar9160Attach(uint16_t devid, HAL_SOFTC sc,
94 	HAL_BUS_TAG st, HAL_BUS_HANDLE sh, uint16_t *eepromdata,
95 	HAL_STATUS *status)
96 {
97 	struct ath_hal_5416 *ahp5416;
98 	struct ath_hal_5212 *ahp;
99 	struct ath_hal *ah;
100 	uint32_t val;
101 	HAL_STATUS ecode;
102 	HAL_BOOL rfStatus;
103 
104 	HALDEBUG(AH_NULL, HAL_DEBUG_ATTACH, "%s: sc %p st %p sh %p\n",
105 	    __func__, sc, (void*) st, (void*) sh);
106 
107 	/* NB: memory is returned zero'd */
108 	ahp5416 = ath_hal_malloc(sizeof (struct ath_hal_5416));
109 	if (ahp5416 == AH_NULL) {
110 		HALDEBUG(AH_NULL, HAL_DEBUG_ANY,
111 		    "%s: cannot allocate memory for state block\n", __func__);
112 		*status = HAL_ENOMEM;
113 		return AH_NULL;
114 	}
115 	ar5416InitState(ahp5416, devid, sc, st, sh, status);
116 	ahp = &ahp5416->ah_5212;
117 	ah = &ahp->ah_priv.h;
118 
119 	/* XXX override with 9160 specific state */
120 	/* override 5416 methods for our needs */
121 
122 	AH5416(ah)->ah_cal.iqCalData.calData = &ar9160_iq_cal;
123 	AH5416(ah)->ah_cal.adcGainCalData.calData = &ar9160_adc_gain_cal;
124 	AH5416(ah)->ah_cal.adcDcCalData.calData = &ar9160_adc_dc_cal;
125 	AH5416(ah)->ah_cal.adcDcCalInitData.calData = &ar9160_adc_init_dc_cal;
126 	AH5416(ah)->ah_cal.suppCals = ADC_GAIN_CAL | ADC_DC_CAL | IQ_MISMATCH_CAL;
127 
128 	if (!ar5416SetResetReg(ah, HAL_RESET_POWER_ON)) {
129 		/* reset chip */
130 		HALDEBUG(ah, HAL_DEBUG_ANY, "%s: couldn't reset chip\n",
131 		    __func__);
132 		ecode = HAL_EIO;
133 		goto bad;
134 	}
135 
136 	if (!ar5416SetPowerMode(ah, HAL_PM_AWAKE, AH_TRUE)) {
137 		HALDEBUG(ah, HAL_DEBUG_ANY, "%s: couldn't wakeup chip\n",
138 		    __func__);
139 		ecode = HAL_EIO;
140 		goto bad;
141 	}
142 	/* Read Revisions from Chips before taking out of reset */
143 	val = OS_REG_READ(ah, AR_SREV);
144 	HALDEBUG(ah, HAL_DEBUG_ATTACH,
145 	    "%s: ID 0x%x VERSION 0x%x TYPE 0x%x REVISION 0x%x\n",
146 	    __func__, MS(val, AR_XSREV_ID), MS(val, AR_XSREV_VERSION),
147 	    MS(val, AR_XSREV_TYPE), MS(val, AR_XSREV_REVISION));
148 	/* NB: include chip type to differentiate from pre-Sowl versions */
149 	AH_PRIVATE(ah)->ah_macVersion =
150 	    (val & AR_XSREV_VERSION) >> AR_XSREV_TYPE_S;
151 	AH_PRIVATE(ah)->ah_macRev = MS(val, AR_XSREV_REVISION);
152 	AH_PRIVATE(ah)->ah_ispcie = (val & AR_XSREV_TYPE_HOST_MODE) == 0;
153 
154 	/* setup common ini data; rf backends handle remainder */
155 	HAL_INI_INIT(&ahp->ah_ini_modes, ar9160Modes, 6);
156 	HAL_INI_INIT(&ahp->ah_ini_common, ar9160Common, 2);
157 
158 	HAL_INI_INIT(&AH5416(ah)->ah_ini_bb_rfgain, ar9160BB_RfGain, 3);
159 	HAL_INI_INIT(&AH5416(ah)->ah_ini_bank0, ar9160Bank0, 2);
160 	HAL_INI_INIT(&AH5416(ah)->ah_ini_bank1, ar9160Bank1, 2);
161 	HAL_INI_INIT(&AH5416(ah)->ah_ini_bank2, ar9160Bank2, 2);
162 	HAL_INI_INIT(&AH5416(ah)->ah_ini_bank3, ar9160Bank3, 3);
163 	HAL_INI_INIT(&AH5416(ah)->ah_ini_bank6, ar9160Bank6, 3);
164 	HAL_INI_INIT(&AH5416(ah)->ah_ini_bank7, ar9160Bank7, 2);
165 	if (AR_SREV_SOWL_11(ah))
166 		HAL_INI_INIT(&AH5416(ah)->ah_ini_addac, ar9160Addac_1_1, 2);
167 	else
168 		HAL_INI_INIT(&AH5416(ah)->ah_ini_addac, ar9160Addac, 2);
169 
170 	ecode = ath_hal_v14EepromAttach(ah);
171 	if (ecode != HAL_OK)
172 		goto bad;
173 
174 	HAL_INI_INIT(&AH5416(ah)->ah_ini_pcieserdes, ar9160PciePhy, 2);
175 	ar5416AttachPCIE(ah);
176 
177 	if (!ar5416ChipReset(ah, AH_NULL)) {	/* reset chip */
178 		HALDEBUG(ah, HAL_DEBUG_ANY, "%s: chip reset failed\n", __func__);
179 		ecode = HAL_EIO;
180 		goto bad;
181 	}
182 
183 	AH_PRIVATE(ah)->ah_phyRev = OS_REG_READ(ah, AR_PHY_CHIP_ID);
184 
185 	if (!ar5212ChipTest(ah)) {
186 		HALDEBUG(ah, HAL_DEBUG_ANY, "%s: hardware self-test failed\n",
187 		    __func__);
188 		ecode = HAL_ESELFTEST;
189 		goto bad;
190 	}
191 
192 	/*
193 	 * Set correct Baseband to analog shift
194 	 * setting to access analog chips.
195 	 */
196 	OS_REG_WRITE(ah, AR_PHY(0), 0x00000007);
197 
198 	/* Read Radio Chip Rev Extract */
199 	AH_PRIVATE(ah)->ah_analog5GhzRev = ar5416GetRadioRev(ah);
200 	switch (AH_PRIVATE(ah)->ah_analog5GhzRev & AR_RADIO_SREV_MAJOR) {
201         case AR_RAD2133_SREV_MAJOR:	/* Sowl: 2G/3x3 */
202 	case AR_RAD5133_SREV_MAJOR:	/* Sowl: 2+5G/3x3 */
203 		break;
204 	default:
205 		if (AH_PRIVATE(ah)->ah_analog5GhzRev == 0) {
206 			AH_PRIVATE(ah)->ah_analog5GhzRev =
207 				AR_RAD5133_SREV_MAJOR;
208 			break;
209 		}
210 #ifdef AH_DEBUG
211 		HALDEBUG(ah, HAL_DEBUG_ANY,
212 		    "%s: 5G Radio Chip Rev 0x%02X is not supported by "
213 		    "this driver\n", __func__,
214 		    AH_PRIVATE(ah)->ah_analog5GhzRev);
215 		ecode = HAL_ENOTSUPP;
216 		goto bad;
217 #endif
218 	}
219 	rfStatus = ar2133RfAttach(ah, &ecode);
220 	if (!rfStatus) {
221 		HALDEBUG(ah, HAL_DEBUG_ANY, "%s: RF setup failed, status %u\n",
222 		    __func__, ecode);
223 		goto bad;
224 	}
225 
226 	/*
227 	 * Got everything we need now to setup the capabilities.
228 	 */
229 	if (!ar9160FillCapabilityInfo(ah)) {
230 		ecode = HAL_EEREAD;
231 		goto bad;
232 	}
233 
234 	ecode = ath_hal_eepromGet(ah, AR_EEP_MACADDR, ahp->ah_macaddr);
235 	if (ecode != HAL_OK) {
236 		HALDEBUG(ah, HAL_DEBUG_ANY,
237 		    "%s: error getting mac address from EEPROM\n", __func__);
238 		goto bad;
239         }
240 	/* XXX How about the serial number ? */
241 	/* Read Reg Domain */
242 	AH_PRIVATE(ah)->ah_currentRD =
243 	    ath_hal_eepromGet(ah, AR_EEP_REGDMN_0, AH_NULL);
244 	AH_PRIVATE(ah)->ah_currentRDext =
245 	    ath_hal_eepromGet(ah, AR_EEP_REGDMN_1, AH_NULL);
246 
247 	/*
248 	 * ah_miscMode is populated by ar5416FillCapabilityInfo()
249 	 * starting from griffin. Set here to make sure that
250 	 * AR_MISC_MODE_MIC_NEW_LOC_ENABLE is set before a GTK is
251 	 * placed into hardware.
252 	 */
253 	if (ahp->ah_miscMode != 0)
254 		OS_REG_WRITE(ah, AR_MISC_MODE, OS_REG_READ(ah, AR_MISC_MODE) | ahp->ah_miscMode);
255 
256 	ar9160AniSetup(ah);			/* Anti Noise Immunity */
257 
258 	/* This just uses the AR5416 NF values */
259 	AH5416(ah)->nf_2g.max = AR_PHY_CCA_MAX_GOOD_VAL_5416_2GHZ;
260 	AH5416(ah)->nf_2g.min = AR_PHY_CCA_MIN_GOOD_VAL_5416_2GHZ;
261 	AH5416(ah)->nf_2g.nominal = AR_PHY_CCA_NOM_VAL_5416_2GHZ;
262 	AH5416(ah)->nf_5g.max = AR_PHY_CCA_MAX_GOOD_VAL_5416_5GHZ;
263 	AH5416(ah)->nf_5g.min = AR_PHY_CCA_MIN_GOOD_VAL_5416_5GHZ;
264 	AH5416(ah)->nf_5g.nominal = AR_PHY_CCA_NOM_VAL_5416_5GHZ;
265 
266 	ar5416InitNfHistBuff(AH5416(ah)->ah_cal.nfCalHist);
267 
268 	HALDEBUG(ah, HAL_DEBUG_ATTACH, "%s: return\n", __func__);
269 
270 	return ah;
271 bad:
272 	if (ahp)
273 		ar5416Detach((struct ath_hal *) ahp);
274 	if (status)
275 		*status = ecode;
276 	return AH_NULL;
277 }
278 
279 /*
280  * Fill all software cached or static hardware state information.
281  * Return failure if capabilities are to come from EEPROM and
282  * cannot be read.
283  */
284 static HAL_BOOL
285 ar9160FillCapabilityInfo(struct ath_hal *ah)
286 {
287 	HAL_CAPABILITIES *pCap = &AH_PRIVATE(ah)->ah_caps;
288 
289 	if (!ar5416FillCapabilityInfo(ah))
290 		return AH_FALSE;
291 	pCap->halCSTSupport = AH_TRUE;
292 	pCap->halRifsRxSupport = AH_TRUE;
293 	pCap->halRifsTxSupport = AH_TRUE;
294 	pCap->halRtsAggrLimit = 64*1024;	/* 802.11n max */
295 	pCap->halExtChanDfsSupport = AH_TRUE;
296 	pCap->halUseCombinedRadarRssi = AH_TRUE;
297 	pCap->halAutoSleepSupport = AH_FALSE;	/* XXX? */
298 	pCap->halMbssidAggrSupport = AH_TRUE;
299 	pCap->hal4AddrAggrSupport = AH_TRUE;
300 
301 	/* AR9160 is a 2x2 stream device */
302 	pCap->halTxStreams = 2;
303 	pCap->halRxStreams = 2;
304 
305 	return AH_TRUE;
306 }
307 
308 static const char*
309 ar9160Probe(uint16_t vendorid, uint16_t devid)
310 {
311 	if (vendorid == ATHEROS_VENDOR_ID && devid == AR9160_DEVID_PCI)
312 		return "Atheros 9160";
313 	return AH_NULL;
314 }
315 AH_CHIP(AR9160, ar9160Probe, ar9160Attach);
316