ar5416_cal.c revision 211330
1/*
2 * Copyright (c) 2002-2009 Sam Leffler, Errno Consulting
3 * Copyright (c) 2002-2008 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: head/sys/dev/ath/ath_hal/ar5416/ar5416_cal.c 211330 2010-08-15 11:40:53Z adrian $
18 */
19#include "opt_ah.h"
20
21#include "ah.h"
22#include "ah_internal.h"
23#include "ah_devid.h"
24
25#include "ah_eeprom_v14.h"
26
27#include "ar5212/ar5212.h"	/* for NF cal related declarations */
28
29#include "ar5416/ar5416.h"
30#include "ar5416/ar5416reg.h"
31#include "ar5416/ar5416phy.h"
32
33/* Owl specific stuff */
34#define NUM_NOISEFLOOR_READINGS 6       /* 3 chains * (ctl + ext) */
35
36static void ar5416StartNFCal(struct ath_hal *ah);
37static void ar5416LoadNF(struct ath_hal *ah, const struct ieee80211_channel *);
38static int16_t ar5416GetNf(struct ath_hal *, struct ieee80211_channel *);
39
40/*
41 * Determine if calibration is supported by device and channel flags
42 */
43static OS_INLINE HAL_BOOL
44ar5416IsCalSupp(struct ath_hal *ah, const struct ieee80211_channel *chan,
45	HAL_CAL_TYPE calType)
46{
47	struct ar5416PerCal *cal = &AH5416(ah)->ah_cal;
48
49	switch (calType & cal->suppCals) {
50	case IQ_MISMATCH_CAL:
51		/* Run IQ Mismatch for non-CCK only */
52		return !IEEE80211_IS_CHAN_B(chan);
53	case ADC_GAIN_CAL:
54	case ADC_DC_CAL:
55		/* Run ADC Gain Cal for non-CCK & non 2GHz-HT20 only */
56		return !IEEE80211_IS_CHAN_B(chan) &&
57		    !(IEEE80211_IS_CHAN_2GHZ(chan) && IEEE80211_IS_CHAN_HT20(chan));
58	}
59	return AH_FALSE;
60}
61
62/*
63 * Setup HW to collect samples used for current cal
64 */
65static void
66ar5416SetupMeasurement(struct ath_hal *ah, HAL_CAL_LIST *currCal)
67{
68	/* Start calibration w/ 2^(INIT_IQCAL_LOG_COUNT_MAX+1) samples */
69	OS_REG_RMW_FIELD(ah, AR_PHY_TIMING_CTRL4,
70	    AR_PHY_TIMING_CTRL4_IQCAL_LOG_COUNT_MAX,
71	    currCal->calData->calCountMax);
72
73	/* Select calibration to run */
74	switch (currCal->calData->calType) {
75	case IQ_MISMATCH_CAL:
76		OS_REG_WRITE(ah, AR_PHY_CALMODE, AR_PHY_CALMODE_IQ);
77		HALDEBUG(ah, HAL_DEBUG_PERCAL,
78		    "%s: start IQ Mismatch calibration\n", __func__);
79		break;
80	case ADC_GAIN_CAL:
81		OS_REG_WRITE(ah, AR_PHY_CALMODE, AR_PHY_CALMODE_ADC_GAIN);
82		HALDEBUG(ah, HAL_DEBUG_PERCAL,
83		    "%s: start ADC Gain calibration\n", __func__);
84		break;
85	case ADC_DC_CAL:
86		OS_REG_WRITE(ah, AR_PHY_CALMODE, AR_PHY_CALMODE_ADC_DC_PER);
87		HALDEBUG(ah, HAL_DEBUG_PERCAL,
88		    "%s: start ADC DC calibration\n", __func__);
89		break;
90	case ADC_DC_INIT_CAL:
91		OS_REG_WRITE(ah, AR_PHY_CALMODE, AR_PHY_CALMODE_ADC_DC_INIT);
92		HALDEBUG(ah, HAL_DEBUG_PERCAL,
93		    "%s: start Init ADC DC calibration\n", __func__);
94		break;
95	}
96	/* Kick-off cal */
97	OS_REG_SET_BIT(ah, AR_PHY_TIMING_CTRL4, AR_PHY_TIMING_CTRL4_DO_CAL);
98}
99
100/*
101 * Initialize shared data structures and prepare a cal to be run.
102 */
103static void
104ar5416ResetMeasurement(struct ath_hal *ah, HAL_CAL_LIST *currCal)
105{
106	struct ar5416PerCal *cal = &AH5416(ah)->ah_cal;
107
108	/* Reset data structures shared between different calibrations */
109	OS_MEMZERO(cal->caldata, sizeof(cal->caldata));
110	cal->calSamples = 0;
111
112	/* Setup HW for new calibration */
113	ar5416SetupMeasurement(ah, currCal);
114
115	/* Change SW state to RUNNING for this calibration */
116	currCal->calState = CAL_RUNNING;
117}
118
119#if 0
120/*
121 * Run non-periodic calibrations.
122 */
123static HAL_BOOL
124ar5416RunInitCals(struct ath_hal *ah, int init_cal_count)
125{
126	struct ath_hal_5416 *ahp = AH5416(ah);
127	struct ar5416PerCal *cal = &AH5416(ah)->ah_cal;
128	HAL_CHANNEL_INTERNAL ichan;	/* XXX bogus */
129	HAL_CAL_LIST *curCal = ahp->ah_cal_curr;
130	HAL_BOOL isCalDone;
131	int i;
132
133	if (curCal == AH_NULL)
134		return AH_FALSE;
135
136	ichan.calValid = 0;
137	for (i = 0; i < init_cal_count; i++) {
138		/* Reset this Cal */
139		ar5416ResetMeasurement(ah, curCal);
140		/* Poll for offset calibration complete */
141		if (!ath_hal_wait(ah, AR_PHY_TIMING_CTRL4, AR_PHY_TIMING_CTRL4_DO_CAL, 0)) {
142			HALDEBUG(ah, HAL_DEBUG_ANY,
143			    "%s: Cal %d failed to finish in 100ms.\n",
144			    __func__, curCal->calData->calType);
145			/* Re-initialize list pointers for periodic cals */
146			cal->cal_list = cal->cal_last = cal->cal_curr = AH_NULL;
147			return AH_FALSE;
148		}
149		/* Run this cal */
150		ar5416DoCalibration(ah, &ichan, ahp->ah_rxchainmask,
151		    curCal, &isCalDone);
152		if (!isCalDone)
153			HALDEBUG(ah, HAL_DEBUG_ANY,
154			    "%s: init cal %d did not complete.\n",
155			    __func__, curCal->calData->calType);
156		if (curCal->calNext != AH_NULL)
157			curCal = curCal->calNext;
158	}
159
160	/* Re-initialize list pointers for periodic cals */
161	cal->cal_list = cal->cal_last = cal->cal_curr = AH_NULL;
162	return AH_TRUE;
163}
164#endif
165
166/*
167 * Initialize Calibration infrastructure.
168 */
169HAL_BOOL
170ar5416InitCal(struct ath_hal *ah, const struct ieee80211_channel *chan)
171{
172	struct ar5416PerCal *cal = &AH5416(ah)->ah_cal;
173	HAL_CHANNEL_INTERNAL *ichan;
174
175	ichan = ath_hal_checkchannel(ah, chan);
176	HALASSERT(ichan != AH_NULL);
177
178	if (AR_SREV_MERLIN_10_OR_LATER(ah)) {
179		/* Enable Rx Filter Cal */
180		OS_REG_CLR_BIT(ah, AR_PHY_ADC_CTL, AR_PHY_ADC_CTL_OFF_PWDADC);
181		OS_REG_SET_BIT(ah, AR_PHY_AGC_CONTROL,
182		    AR_PHY_AGC_CONTROL_FLTR_CAL);
183
184		/* Clear the carrier leak cal bit */
185		OS_REG_CLR_BIT(ah, AR_PHY_CL_CAL_CTL, AR_PHY_CL_CAL_ENABLE);
186
187		/* kick off the cal */
188		OS_REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_CAL);
189
190		/* Poll for offset calibration complete */
191		if (!ath_hal_wait(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_CAL, 0)) {
192			HALDEBUG(ah, HAL_DEBUG_ANY,
193			    "%s: offset calibration failed to complete in 1ms; "
194			    "noisy environment?\n", __func__);
195			return AH_FALSE;
196		}
197
198		/* Set the cl cal bit and rerun the cal a 2nd time */
199		/* Enable Rx Filter Cal */
200		OS_REG_CLR_BIT(ah, AR_PHY_ADC_CTL, AR_PHY_ADC_CTL_OFF_PWDADC);
201		OS_REG_SET_BIT(ah, AR_PHY_AGC_CONTROL,
202		    AR_PHY_AGC_CONTROL_FLTR_CAL);
203
204		OS_REG_SET_BIT(ah, AR_PHY_CL_CAL_CTL, AR_PHY_CL_CAL_ENABLE);
205	}
206
207	/* Calibrate the AGC */
208	OS_REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_CAL);
209
210	/* Poll for offset calibration complete */
211	if (!ath_hal_wait(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_CAL, 0)) {
212		HALDEBUG(ah, HAL_DEBUG_ANY,
213		    "%s: offset calibration did not complete in 1ms; "
214		    "noisy environment?\n", __func__);
215		return AH_FALSE;
216	}
217
218	/*
219	 * Do NF calibration after DC offset and other CALs.
220	 * Per system engineers, noise floor value can sometimes be 20 dB
221	 * higher than normal value if DC offset and noise floor cal are
222	 * triggered at the same time.
223	 */
224	/* XXX this actually kicks off a NF calibration -adrian */
225	OS_REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_NF);
226	/*
227	 * Try to make sure the above NF cal completes, just so
228	 * it doesn't clash with subsequent percals -adrian
229	 */
230	if (! ar5212WaitNFCalComplete(ah, 10000)) {
231		HALDEBUG(ah, HAL_DEBUG_ANY, "%s: initial NF calibration did "
232		    "not complete in time; noisy environment?\n", __func__);
233		return AH_FALSE;
234	}
235
236	/* Initialize list pointers */
237	cal->cal_list = cal->cal_last = cal->cal_curr = AH_NULL;
238
239	/*
240	 * Enable IQ, ADC Gain, ADC DC Offset Cals
241	 */
242	if (AR_SREV_SOWL_10_OR_LATER(ah)) {
243		/* Setup all non-periodic, init time only calibrations */
244		/* XXX: Init DC Offset not working yet */
245#if 0
246		if (ar5416IsCalSupp(ah, chan, ADC_DC_INIT_CAL)) {
247			INIT_CAL(&cal->adcDcCalInitData);
248			INSERT_CAL(cal, &cal->adcDcCalInitData);
249		}
250		/* Initialize current pointer to first element in list */
251		cal->cal_curr = cal->cal_list;
252
253		if (cal->ah_cal_curr != AH_NULL && !ar5416RunInitCals(ah, 0))
254			return AH_FALSE;
255#endif
256	}
257
258	/* If Cals are supported, add them to list via INIT/INSERT_CAL */
259	if (ar5416IsCalSupp(ah, chan, ADC_GAIN_CAL)) {
260		INIT_CAL(&cal->adcGainCalData);
261		INSERT_CAL(cal, &cal->adcGainCalData);
262		HALDEBUG(ah, HAL_DEBUG_PERCAL,
263		    "%s: enable ADC Gain Calibration.\n", __func__);
264	}
265	if (ar5416IsCalSupp(ah, chan, ADC_DC_CAL)) {
266		INIT_CAL(&cal->adcDcCalData);
267		INSERT_CAL(cal, &cal->adcDcCalData);
268		HALDEBUG(ah, HAL_DEBUG_PERCAL,
269		    "%s: enable ADC DC Calibration.\n", __func__);
270	}
271	if (ar5416IsCalSupp(ah, chan, IQ_MISMATCH_CAL)) {
272		INIT_CAL(&cal->iqCalData);
273		INSERT_CAL(cal, &cal->iqCalData);
274		HALDEBUG(ah, HAL_DEBUG_PERCAL,
275		    "%s: enable IQ Calibration.\n", __func__);
276	}
277	/* Initialize current pointer to first element in list */
278	cal->cal_curr = cal->cal_list;
279
280	/* Kick off measurements for the first cal */
281	if (cal->cal_curr != AH_NULL)
282		ar5416ResetMeasurement(ah, cal->cal_curr);
283
284	/* Mark all calibrations on this channel as being invalid */
285	ichan->calValid = 0;
286
287	return AH_TRUE;
288}
289
290/*
291 * Entry point for upper layers to restart current cal.
292 * Reset the calibration valid bit in channel.
293 */
294HAL_BOOL
295ar5416ResetCalValid(struct ath_hal *ah, const struct ieee80211_channel *chan)
296{
297	struct ar5416PerCal *cal = &AH5416(ah)->ah_cal;
298	HAL_CHANNEL_INTERNAL *ichan = ath_hal_checkchannel(ah, chan);
299	HAL_CAL_LIST *currCal = cal->cal_curr;
300
301	if (!AR_SREV_SOWL_10_OR_LATER(ah))
302		return AH_FALSE;
303	if (currCal == AH_NULL)
304		return AH_FALSE;
305	if (ichan == AH_NULL) {
306		HALDEBUG(ah, HAL_DEBUG_ANY,
307		    "%s: invalid channel %u/0x%x; no mapping\n",
308		    __func__, chan->ic_freq, chan->ic_flags);
309		return AH_FALSE;
310	}
311	/*
312	 * Expected that this calibration has run before, post-reset.
313	 * Current state should be done
314	 */
315	if (currCal->calState != CAL_DONE) {
316		HALDEBUG(ah, HAL_DEBUG_ANY,
317		    "%s: Calibration state incorrect, %d\n",
318		    __func__, currCal->calState);
319		return AH_FALSE;
320	}
321
322	/* Verify Cal is supported on this channel */
323	if (!ar5416IsCalSupp(ah, chan, currCal->calData->calType))
324		return AH_FALSE;
325
326	HALDEBUG(ah, HAL_DEBUG_PERCAL,
327	    "%s: Resetting Cal %d state for channel %u/0x%x\n",
328	    __func__, currCal->calData->calType, chan->ic_freq,
329	    chan->ic_flags);
330
331	/* Disable cal validity in channel */
332	ichan->calValid &= ~currCal->calData->calType;
333	currCal->calState = CAL_WAITING;
334
335	return AH_TRUE;
336}
337
338/*
339 * Recalibrate the lower PHY chips to account for temperature/environment
340 * changes.
341 */
342static void
343ar5416DoCalibration(struct ath_hal *ah,  HAL_CHANNEL_INTERNAL *ichan,
344	uint8_t rxchainmask, HAL_CAL_LIST *currCal, HAL_BOOL *isCalDone)
345{
346	struct ar5416PerCal *cal = &AH5416(ah)->ah_cal;
347
348	/* Cal is assumed not done until explicitly set below */
349	*isCalDone = AH_FALSE;
350
351	HALDEBUG(ah, HAL_DEBUG_PERCAL,
352	    "%s: %s Calibration, state %d, calValid 0x%x\n",
353	    __func__, currCal->calData->calName, currCal->calState,
354	    ichan->calValid);
355
356	/* Calibration in progress. */
357	if (currCal->calState == CAL_RUNNING) {
358		/* Check to see if it has finished. */
359		if (!(OS_REG_READ(ah, AR_PHY_TIMING_CTRL4) & AR_PHY_TIMING_CTRL4_DO_CAL)) {
360			HALDEBUG(ah, HAL_DEBUG_PERCAL,
361			    "%s: sample %d of %d finished\n",
362			    __func__, cal->calSamples,
363			    currCal->calData->calNumSamples);
364			/*
365			 * Collect measurements for active chains.
366			 */
367			currCal->calData->calCollect(ah);
368			if (++cal->calSamples >= currCal->calData->calNumSamples) {
369				int i, numChains = 0;
370				for (i = 0; i < AR5416_MAX_CHAINS; i++) {
371					if (rxchainmask & (1 << i))
372						numChains++;
373				}
374				/*
375				 * Process accumulated data
376				 */
377				currCal->calData->calPostProc(ah, numChains);
378
379				/* Calibration has finished. */
380				ichan->calValid |= currCal->calData->calType;
381				currCal->calState = CAL_DONE;
382				*isCalDone = AH_TRUE;
383			} else {
384				/*
385				 * Set-up to collect of another sub-sample.
386				 */
387				ar5416SetupMeasurement(ah, currCal);
388			}
389		}
390	} else if (!(ichan->calValid & currCal->calData->calType)) {
391		/* If current cal is marked invalid in channel, kick it off */
392		ar5416ResetMeasurement(ah, currCal);
393	}
394}
395
396/*
397 * Internal interface to schedule periodic calibration work.
398 */
399HAL_BOOL
400ar5416PerCalibrationN(struct ath_hal *ah, struct ieee80211_channel *chan,
401	u_int rxchainmask, HAL_BOOL longcal, HAL_BOOL *isCalDone)
402{
403	struct ar5416PerCal *cal = &AH5416(ah)->ah_cal;
404	HAL_CAL_LIST *currCal = cal->cal_curr;
405	HAL_CHANNEL_INTERNAL *ichan;
406
407	OS_MARK(ah, AH_MARK_PERCAL, chan->ic_freq);
408
409	*isCalDone = AH_TRUE;
410
411	/*
412	 * Since ath_hal calls the PerCal method with rxchainmask=0x1;
413	 * override it with the current chainmask. The upper levels currently
414	 * doesn't know about the chainmask.
415	 */
416	rxchainmask = AH5416(ah)->ah_rx_chainmask;
417
418	/* Invalid channel check */
419	ichan = ath_hal_checkchannel(ah, chan);
420	if (ichan == AH_NULL) {
421		HALDEBUG(ah, HAL_DEBUG_ANY,
422		    "%s: invalid channel %u/0x%x; no mapping\n",
423		    __func__, chan->ic_freq, chan->ic_flags);
424		return AH_FALSE;
425	}
426
427	/*
428	 * For given calibration:
429	 * 1. Call generic cal routine
430	 * 2. When this cal is done (isCalDone) if we have more cals waiting
431	 *    (eg after reset), mask this to upper layers by not propagating
432	 *    isCalDone if it is set to TRUE.
433	 *    Instead, change isCalDone to FALSE and setup the waiting cal(s)
434	 *    to be run.
435	 */
436	if (currCal != AH_NULL &&
437	    (currCal->calState == CAL_RUNNING ||
438	     currCal->calState == CAL_WAITING)) {
439		ar5416DoCalibration(ah, ichan, rxchainmask, currCal, isCalDone);
440		if (*isCalDone == AH_TRUE) {
441			cal->cal_curr = currCal = currCal->calNext;
442			if (currCal->calState == CAL_WAITING) {
443				*isCalDone = AH_FALSE;
444				ar5416ResetMeasurement(ah, currCal);
445			}
446		}
447	}
448
449	/* Do NF cal only at longer intervals */
450	if (longcal) {
451		/*
452		 * Get the value from the previous NF cal
453		 * and update the history buffer.
454		 */
455		ar5416GetNf(ah, chan);
456
457		/*
458		 * Load the NF from history buffer of the current channel.
459		 * NF is slow time-variant, so it is OK to use a
460		 * historical value.
461		 */
462		ar5416LoadNF(ah, AH_PRIVATE(ah)->ah_curchan);
463
464		/* start NF calibration, without updating BB NF register*/
465		ar5416StartNFCal(ah);
466	}
467	return AH_TRUE;
468}
469
470/*
471 * Recalibrate the lower PHY chips to account for temperature/environment
472 * changes.
473 */
474HAL_BOOL
475ar5416PerCalibration(struct ath_hal *ah, struct ieee80211_channel *chan,
476	HAL_BOOL *isIQdone)
477{
478	struct ath_hal_5416 *ahp = AH5416(ah);
479	struct ar5416PerCal *cal = &AH5416(ah)->ah_cal;
480	HAL_CAL_LIST *curCal = cal->cal_curr;
481
482	if (curCal != AH_NULL && curCal->calData->calType == IQ_MISMATCH_CAL) {
483		return ar5416PerCalibrationN(ah, chan, ahp->ah_rx_chainmask,
484		    AH_TRUE, isIQdone);
485	} else {
486		HAL_BOOL isCalDone;
487
488		*isIQdone = AH_FALSE;
489		return ar5416PerCalibrationN(ah, chan, ahp->ah_rx_chainmask,
490		    AH_TRUE, &isCalDone);
491	}
492}
493
494static HAL_BOOL
495ar5416GetEepromNoiseFloorThresh(struct ath_hal *ah,
496	const struct ieee80211_channel *chan, int16_t *nft)
497{
498	if (IEEE80211_IS_CHAN_5GHZ(chan)) {
499		ath_hal_eepromGet(ah, AR_EEP_NFTHRESH_5, nft);
500		return AH_TRUE;
501	}
502	if (IEEE80211_IS_CHAN_2GHZ(chan)) {
503		ath_hal_eepromGet(ah, AR_EEP_NFTHRESH_2, nft);
504		return AH_TRUE;
505	}
506	HALDEBUG(ah, HAL_DEBUG_ANY, "%s: invalid channel flags 0x%x\n",
507	    __func__, chan->ic_flags);
508	return AH_FALSE;
509}
510
511static void
512ar5416StartNFCal(struct ath_hal *ah)
513{
514	OS_REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_ENABLE_NF);
515	OS_REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_NO_UPDATE_NF);
516	OS_REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_NF);
517}
518
519static void
520ar5416LoadNF(struct ath_hal *ah, const struct ieee80211_channel *chan)
521{
522	static const uint32_t ar5416_cca_regs[] = {
523		AR_PHY_CCA,
524		AR_PHY_CH1_CCA,
525		AR_PHY_CH2_CCA,
526		AR_PHY_EXT_CCA,
527		AR_PHY_CH1_EXT_CCA,
528		AR_PHY_CH2_EXT_CCA
529	};
530	struct ar5212NfCalHist *h;
531	int i;
532	int32_t val;
533	uint8_t chainmask;
534
535	/*
536	 * Force NF calibration for all chains.
537	 */
538	if (AR_SREV_KITE(ah)) {
539		/* Kite has only one chain */
540		chainmask = 0x9;
541	} else if (AR_SREV_MERLIN(ah)) {
542		/* Merlin has only two chains */
543		chainmask = 0x1B;
544	} else {
545		chainmask = 0x3F;
546	}
547
548	/*
549	 * Write filtered NF values into maxCCApwr register parameter
550	 * so we can load below.
551	 */
552	h = AH5416(ah)->ah_cal.nfCalHist;
553	for (i = 0; i < AR5416_NUM_NF_READINGS; i ++)
554		if (chainmask & (1 << i)) {
555			val = OS_REG_READ(ah, ar5416_cca_regs[i]);
556			val &= 0xFFFFFE00;
557			val |= (((uint32_t)(h[i].privNF) << 1) & 0x1ff);
558			OS_REG_WRITE(ah, ar5416_cca_regs[i], val);
559		}
560
561	/* Load software filtered NF value into baseband internal minCCApwr variable. */
562	OS_REG_CLR_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_ENABLE_NF);
563	OS_REG_CLR_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_NO_UPDATE_NF);
564	OS_REG_SET_BIT(ah, AR_PHY_AGC_CONTROL, AR_PHY_AGC_CONTROL_NF);
565
566	/* Wait for load to complete, should be fast, a few 10s of us. */
567	if (! ar5212WaitNFCalComplete(ah, 1000)) {
568		/*
569		 * We timed out waiting for the noisefloor to load, probably due to an
570		 * in-progress rx. Simply return here and allow the load plenty of time
571		 * to complete before the next calibration interval.  We need to avoid
572		 * trying to load -50 (which happens below) while the previous load is
573		 * still in progress as this can cause rx deafness. Instead by returning
574		 * here, the baseband nf cal will just be capped by our present
575		 * noisefloor until the next calibration timer.
576		 */
577		HALDEBUG(ah, HAL_DEBUG_ANY, "Timeout while waiting for nf "
578		    "to load: AR_PHY_AGC_CONTROL=0x%x\n",
579		    OS_REG_READ(ah, AR_PHY_AGC_CONTROL));
580		return;
581	}
582
583	/*
584	 * Restore maxCCAPower register parameter again so that we're not capped
585	 * by the median we just loaded.  This will be initial (and max) value
586	 * of next noise floor calibration the baseband does.
587	 */
588	for (i = 0; i < AR5416_NUM_NF_READINGS; i ++)
589		if (chainmask & (1 << i)) {
590			val = OS_REG_READ(ah, ar5416_cca_regs[i]);
591			val &= 0xFFFFFE00;
592			val |= (((uint32_t)(-50) << 1) & 0x1ff);
593			OS_REG_WRITE(ah, ar5416_cca_regs[i], val);
594		}
595}
596
597void
598ar5416InitNfHistBuff(struct ar5212NfCalHist *h)
599{
600	int i, j;
601
602	for (i = 0; i < AR5416_NUM_NF_READINGS; i ++) {
603		h[i].currIndex = 0;
604		h[i].privNF = AR5416_CCA_MAX_GOOD_VALUE;
605		h[i].invalidNFcount = AR512_NF_CAL_HIST_MAX;
606		for (j = 0; j < AR512_NF_CAL_HIST_MAX; j ++)
607			h[i].nfCalBuffer[j] = AR5416_CCA_MAX_GOOD_VALUE;
608	}
609}
610
611/*
612 * Update the noise floor buffer as a ring buffer
613 */
614static void
615ar5416UpdateNFHistBuff(struct ar5212NfCalHist *h, int16_t *nfarray)
616{
617	int i;
618
619	for (i = 0; i < AR5416_NUM_NF_READINGS; i ++) {
620		h[i].nfCalBuffer[h[i].currIndex] = nfarray[i];
621
622		if (++h[i].currIndex >= AR512_NF_CAL_HIST_MAX)
623			h[i].currIndex = 0;
624		if (h[i].invalidNFcount > 0) {
625			if (nfarray[i] < AR5416_CCA_MIN_BAD_VALUE ||
626			    nfarray[i] > AR5416_CCA_MAX_HIGH_VALUE) {
627				h[i].invalidNFcount = AR512_NF_CAL_HIST_MAX;
628			} else {
629				h[i].invalidNFcount--;
630				h[i].privNF = nfarray[i];
631			}
632		} else {
633			h[i].privNF = ar5212GetNfHistMid(h[i].nfCalBuffer);
634		}
635	}
636}
637
638/*
639 * Read the NF and check it against the noise floor threshhold
640 */
641static int16_t
642ar5416GetNf(struct ath_hal *ah, struct ieee80211_channel *chan)
643{
644	int16_t nf, nfThresh;
645
646	if (ar5212IsNFCalInProgress(ah)) {
647		HALDEBUG(ah, HAL_DEBUG_ANY,
648		    "%s: NF didn't complete in calibration window\n", __func__);
649		nf = 0;
650	} else {
651		/* Finished NF cal, check against threshold */
652		int16_t nfarray[NUM_NOISEFLOOR_READINGS] = { 0 };
653		HAL_CHANNEL_INTERNAL *ichan = ath_hal_checkchannel(ah, chan);
654
655		/* TODO - enhance for multiple chains and ext ch */
656		ath_hal_getNoiseFloor(ah, nfarray);
657		nf = nfarray[0];
658		if (ar5416GetEepromNoiseFloorThresh(ah, chan, &nfThresh)) {
659			if (nf > nfThresh) {
660				HALDEBUG(ah, HAL_DEBUG_ANY,
661				    "%s: noise floor failed detected; "
662				    "detected %d, threshold %d\n", __func__,
663				    nf, nfThresh);
664				/*
665				 * NB: Don't discriminate 2.4 vs 5Ghz, if this
666				 *     happens it indicates a problem regardless
667				 *     of the band.
668				 */
669				chan->ic_state |= IEEE80211_CHANSTATE_CWINT;
670				nf = 0;
671			}
672		} else {
673			nf = 0;
674		}
675		ar5416UpdateNFHistBuff(AH5416(ah)->ah_cal.nfCalHist, nfarray);
676		ichan->rawNoiseFloor = nf;
677	}
678	return nf;
679}
680