1 /******************************************************************************
3 * This file is provided under a dual BSD/GPLv2 license. When using or
4 * redistributing this file, you may do so under either license.
8 * Copyright(c) 2007 - 2014 Intel Corporation. All rights reserved.
9 * Copyright(c) 2016 Intel Deutschland GmbH
11 * This program is free software; you can redistribute it and/or modify
12 * it under the terms of version 2 of the GNU General Public License as
13 * published by the Free Software Foundation.
15 * This program is distributed in the hope that it will be useful, but
16 * WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
18 * General Public License for more details.
20 * You should have received a copy of the GNU General Public License
21 * along with this program; if not, write to the Free Software
22 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110,
25 * The full GNU General Public License is included in this distribution
26 * in the file called COPYING.
28 * Contact Information:
29 * Intel Linux Wireless <linuxwifi@intel.com>
30 * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
34 * Copyright(c) 2005 - 2014 Intel Corporation. All rights reserved.
35 * All rights reserved.
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38 * modification, are permitted provided that the following conditions
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49 * from this software without specific prior written permission.
51 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
52 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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61 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
63 *****************************************************************************/
65 #include <linux/slab.h>
66 #include <linux/string.h>
67 #include <linux/export.h>
70 #include "iwl-phy-db.h"
71 #include "iwl-debug.h"
72 #include "iwl-op-mode.h"
73 #include "iwl-trans.h"
75 #define CHANNEL_NUM_SIZE 4 /* num of channels in calib_ch size */
77 struct iwl_phy_db_entry
{
83 * struct iwl_phy_db - stores phy configuration and calibration data.
85 * @cfg: phy configuration.
86 * @calib_nch: non channel specific calibration data.
87 * @calib_ch: channel specific calibration data.
88 * @n_group_papd: number of entries in papd channel group.
89 * @calib_ch_group_papd: calibration data related to papd channel group.
90 * @n_group_txp: number of entries in tx power channel group.
91 * @calib_ch_group_txp: calibration data related to tx power chanel group.
94 struct iwl_phy_db_entry cfg
;
95 struct iwl_phy_db_entry calib_nch
;
97 struct iwl_phy_db_entry
*calib_ch_group_papd
;
99 struct iwl_phy_db_entry
*calib_ch_group_txp
;
101 struct iwl_trans
*trans
;
104 enum iwl_phy_db_section_type
{
106 IWL_PHY_DB_CALIB_NCH
,
108 IWL_PHY_DB_CALIB_CHG_PAPD
,
109 IWL_PHY_DB_CALIB_CHG_TXP
,
113 #define PHY_DB_CMD 0x6c /* TEMP API - The actual is 0x8c */
116 * phy db - configure operational ucode
118 struct iwl_phy_db_cmd
{
124 /* for parsing of tx power channel group data that comes from the firmware*/
125 struct iwl_phy_db_chg_txp
{
127 __le16 max_channel_idx
;
131 * phy db - Receive phy db chunk after calibrations
133 struct iwl_calib_res_notif_phy_db
{
139 struct iwl_phy_db
*iwl_phy_db_init(struct iwl_trans
*trans
)
141 struct iwl_phy_db
*phy_db
= kzalloc(sizeof(struct iwl_phy_db
),
147 phy_db
->trans
= trans
;
149 phy_db
->n_group_txp
= -1;
150 phy_db
->n_group_papd
= -1;
152 /* TODO: add default values of the phy db. */
155 IWL_EXPORT_SYMBOL(iwl_phy_db_init
);
158 * get phy db section: returns a pointer to a phy db section specified by
159 * type and channel group id.
161 static struct iwl_phy_db_entry
*
162 iwl_phy_db_get_section(struct iwl_phy_db
*phy_db
,
163 enum iwl_phy_db_section_type type
,
166 if (!phy_db
|| type
>= IWL_PHY_DB_MAX
)
172 case IWL_PHY_DB_CALIB_NCH
:
173 return &phy_db
->calib_nch
;
174 case IWL_PHY_DB_CALIB_CHG_PAPD
:
175 if (chg_id
>= phy_db
->n_group_papd
)
177 return &phy_db
->calib_ch_group_papd
[chg_id
];
178 case IWL_PHY_DB_CALIB_CHG_TXP
:
179 if (chg_id
>= phy_db
->n_group_txp
)
181 return &phy_db
->calib_ch_group_txp
[chg_id
];
188 static void iwl_phy_db_free_section(struct iwl_phy_db
*phy_db
,
189 enum iwl_phy_db_section_type type
,
192 struct iwl_phy_db_entry
*entry
=
193 iwl_phy_db_get_section(phy_db
, type
, chg_id
);
202 void iwl_phy_db_free(struct iwl_phy_db
*phy_db
)
209 iwl_phy_db_free_section(phy_db
, IWL_PHY_DB_CFG
, 0);
210 iwl_phy_db_free_section(phy_db
, IWL_PHY_DB_CALIB_NCH
, 0);
212 for (i
= 0; i
< phy_db
->n_group_papd
; i
++)
213 iwl_phy_db_free_section(phy_db
, IWL_PHY_DB_CALIB_CHG_PAPD
, i
);
214 kfree(phy_db
->calib_ch_group_papd
);
216 for (i
= 0; i
< phy_db
->n_group_txp
; i
++)
217 iwl_phy_db_free_section(phy_db
, IWL_PHY_DB_CALIB_CHG_TXP
, i
);
218 kfree(phy_db
->calib_ch_group_txp
);
222 IWL_EXPORT_SYMBOL(iwl_phy_db_free
);
224 int iwl_phy_db_set_section(struct iwl_phy_db
*phy_db
,
225 struct iwl_rx_packet
*pkt
)
227 struct iwl_calib_res_notif_phy_db
*phy_db_notif
=
228 (struct iwl_calib_res_notif_phy_db
*)pkt
->data
;
229 enum iwl_phy_db_section_type type
= le16_to_cpu(phy_db_notif
->type
);
230 u16 size
= le16_to_cpu(phy_db_notif
->length
);
231 struct iwl_phy_db_entry
*entry
;
237 if (type
== IWL_PHY_DB_CALIB_CHG_PAPD
) {
238 chg_id
= le16_to_cpup((__le16
*)phy_db_notif
->data
);
239 if (phy_db
&& !phy_db
->calib_ch_group_papd
) {
241 * Firmware sends the largest index first, so we can use
242 * it to know how much we should allocate.
244 phy_db
->calib_ch_group_papd
= kcalloc(chg_id
+ 1,
245 sizeof(struct iwl_phy_db_entry
),
247 if (!phy_db
->calib_ch_group_papd
)
249 phy_db
->n_group_papd
= chg_id
+ 1;
251 } else if (type
== IWL_PHY_DB_CALIB_CHG_TXP
) {
252 chg_id
= le16_to_cpup((__le16
*)phy_db_notif
->data
);
253 if (phy_db
&& !phy_db
->calib_ch_group_txp
) {
255 * Firmware sends the largest index first, so we can use
256 * it to know how much we should allocate.
258 phy_db
->calib_ch_group_txp
= kcalloc(chg_id
+ 1,
259 sizeof(struct iwl_phy_db_entry
),
261 if (!phy_db
->calib_ch_group_txp
)
263 phy_db
->n_group_txp
= chg_id
+ 1;
267 entry
= iwl_phy_db_get_section(phy_db
, type
, chg_id
);
272 entry
->data
= kmemdup(phy_db_notif
->data
, size
, GFP_ATOMIC
);
280 IWL_DEBUG_INFO(phy_db
->trans
,
281 "%s(%d): [PHYDB]SET: Type %d , Size: %d\n",
282 __func__
, __LINE__
, type
, size
);
286 IWL_EXPORT_SYMBOL(iwl_phy_db_set_section
);
288 static int is_valid_channel(u16 ch_id
)
291 (36 <= ch_id
&& ch_id
<= 64 && ch_id
% 4 == 0) ||
292 (100 <= ch_id
&& ch_id
<= 140 && ch_id
% 4 == 0) ||
293 (145 <= ch_id
&& ch_id
<= 165 && ch_id
% 4 == 1))
298 static u8
ch_id_to_ch_index(u16 ch_id
)
300 if (WARN_ON(!is_valid_channel(ch_id
)))
306 return (ch_id
+ 20) / 4;
308 return (ch_id
- 12) / 4;
309 return (ch_id
- 13) / 4;
313 static u16
channel_id_to_papd(u16 ch_id
)
315 if (WARN_ON(!is_valid_channel(ch_id
)))
318 if (1 <= ch_id
&& ch_id
<= 14)
320 if (36 <= ch_id
&& ch_id
<= 64)
322 if (100 <= ch_id
&& ch_id
<= 140)
327 static u16
channel_id_to_txp(struct iwl_phy_db
*phy_db
, u16 ch_id
)
329 struct iwl_phy_db_chg_txp
*txp_chg
;
331 u8 ch_index
= ch_id_to_ch_index(ch_id
);
332 if (ch_index
== 0xff)
335 for (i
= 0; i
< phy_db
->n_group_txp
; i
++) {
336 txp_chg
= (void *)phy_db
->calib_ch_group_txp
[i
].data
;
340 * Looking for the first channel group that its max channel is
341 * higher then wanted channel.
343 if (le16_to_cpu(txp_chg
->max_channel_idx
) >= ch_index
)
349 int iwl_phy_db_get_section_data(struct iwl_phy_db
*phy_db
,
350 u32 type
, u8
**data
, u16
*size
, u16 ch_id
)
352 struct iwl_phy_db_entry
*entry
;
358 /* find wanted channel group */
359 if (type
== IWL_PHY_DB_CALIB_CHG_PAPD
)
360 ch_group_id
= channel_id_to_papd(ch_id
);
361 else if (type
== IWL_PHY_DB_CALIB_CHG_TXP
)
362 ch_group_id
= channel_id_to_txp(phy_db
, ch_id
);
364 entry
= iwl_phy_db_get_section(phy_db
, type
, ch_group_id
);
371 IWL_DEBUG_INFO(phy_db
->trans
,
372 "%s(%d): [PHYDB] GET: Type %d , Size: %d\n",
373 __func__
, __LINE__
, type
, *size
);
378 static int iwl_send_phy_db_cmd(struct iwl_phy_db
*phy_db
, u16 type
,
379 u16 length
, void *data
)
381 struct iwl_phy_db_cmd phy_db_cmd
;
382 struct iwl_host_cmd cmd
= {
386 IWL_DEBUG_INFO(phy_db
->trans
,
387 "Sending PHY-DB hcmd of type %d, of length %d\n",
390 /* Set phy db cmd variables */
391 phy_db_cmd
.type
= cpu_to_le16(type
);
392 phy_db_cmd
.length
= cpu_to_le16(length
);
394 /* Set hcmd variables */
395 cmd
.data
[0] = &phy_db_cmd
;
396 cmd
.len
[0] = sizeof(struct iwl_phy_db_cmd
);
399 cmd
.dataflags
[1] = IWL_HCMD_DFL_NOCOPY
;
401 return iwl_trans_send_cmd(phy_db
->trans
, &cmd
);
404 static int iwl_phy_db_send_all_channel_groups(
405 struct iwl_phy_db
*phy_db
,
406 enum iwl_phy_db_section_type type
,
411 struct iwl_phy_db_entry
*entry
;
413 /* Send all the channel specific groups to operational fw */
414 for (i
= 0; i
< max_ch_groups
; i
++) {
415 entry
= iwl_phy_db_get_section(phy_db
,
424 /* Send the requested PHY DB section */
425 err
= iwl_send_phy_db_cmd(phy_db
,
430 IWL_ERR(phy_db
->trans
,
431 "Can't SEND phy_db section %d (%d), err %d\n",
436 IWL_DEBUG_INFO(phy_db
->trans
,
437 "Sent PHY_DB HCMD, type = %d num = %d\n",
444 int iwl_send_phy_db_data(struct iwl_phy_db
*phy_db
)
450 IWL_DEBUG_INFO(phy_db
->trans
,
451 "Sending phy db data and configuration to runtime image\n");
453 /* Send PHY DB CFG section */
454 err
= iwl_phy_db_get_section_data(phy_db
, IWL_PHY_DB_CFG
,
457 IWL_ERR(phy_db
->trans
, "Cannot get Phy DB cfg section\n");
461 err
= iwl_send_phy_db_cmd(phy_db
, IWL_PHY_DB_CFG
, size
, data
);
463 IWL_ERR(phy_db
->trans
,
464 "Cannot send HCMD of Phy DB cfg section\n");
468 err
= iwl_phy_db_get_section_data(phy_db
, IWL_PHY_DB_CALIB_NCH
,
471 IWL_ERR(phy_db
->trans
,
472 "Cannot get Phy DB non specific channel section\n");
476 err
= iwl_send_phy_db_cmd(phy_db
, IWL_PHY_DB_CALIB_NCH
, size
, data
);
478 IWL_ERR(phy_db
->trans
,
479 "Cannot send HCMD of Phy DB non specific channel section\n");
483 /* Send all the TXP channel specific data */
484 err
= iwl_phy_db_send_all_channel_groups(phy_db
,
485 IWL_PHY_DB_CALIB_CHG_PAPD
,
486 phy_db
->n_group_papd
);
488 IWL_ERR(phy_db
->trans
,
489 "Cannot send channel specific PAPD groups\n");
493 /* Send all the TXP channel specific data */
494 err
= iwl_phy_db_send_all_channel_groups(phy_db
,
495 IWL_PHY_DB_CALIB_CHG_TXP
,
496 phy_db
->n_group_txp
);
498 IWL_ERR(phy_db
->trans
,
499 "Cannot send channel specific TX power groups\n");
503 IWL_DEBUG_INFO(phy_db
->trans
,
504 "Finished sending phy db non channel data\n");
507 IWL_EXPORT_SYMBOL(iwl_send_phy_db_data
);