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Utkarsh Saxena971a03c2017-01-22 22:04:13 +05301/* Copyright (c) 2012-2017, The Linux Foundation. All rights reserved.
Amir Levy9659e592016-10-27 18:08:27 +03002 *
3 * This program is free software; you can redistribute it and/or modify
4 * it under the terms of the GNU General Public License version 2 and
5 * only version 2 as published by the Free Software Foundation.
6 *
7 * This program is distributed in the hope that it will be useful,
8 * but WITHOUT ANY WARRANTY; without even the implied warranty of
9 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
10 * GNU General Public License for more details.
11 */
12
13#ifndef _IPA_H_
14#define _IPA_H_
15
16#include <linux/msm_ipa.h>
17#include <linux/skbuff.h>
18#include <linux/types.h>
19#include <linux/msm-sps.h>
20#include <linux/if_ether.h>
21#include "linux/msm_gsi.h"
22
23#define IPA_APPS_MAX_BW_IN_MBPS 700
24/**
25 * enum ipa_transport_type
26 * transport type: either GSI or SPS
27 */
28enum ipa_transport_type {
29 IPA_TRANSPORT_TYPE_SPS,
30 IPA_TRANSPORT_TYPE_GSI
31};
32
33/**
34 * enum ipa_nat_en_type - NAT setting type in IPA end-point
35 */
36enum ipa_nat_en_type {
37 IPA_BYPASS_NAT,
38 IPA_SRC_NAT,
39 IPA_DST_NAT,
40};
41
42/**
Amir Levydc65f4c2017-07-06 09:49:50 +030043* enum ipa_ipv6ct_en_type - IPv6CT setting type in IPA end-point
44*/
45enum ipa_ipv6ct_en_type {
46 IPA_BYPASS_IPV6CT,
47 IPA_ENABLE_IPV6CT,
48};
49
50/**
Amir Levy9659e592016-10-27 18:08:27 +030051 * enum ipa_mode_type - mode setting type in IPA end-point
52 * @BASIC: basic mode
53 * @ENABLE_FRAMING_HDLC: not currently supported
54 * @ENABLE_DEFRAMING_HDLC: not currently supported
55 * @DMA: all data arriving IPA will not go through IPA logic blocks, this
56 * allows IPA to work as DMA for specific pipes.
57 */
58enum ipa_mode_type {
59 IPA_BASIC,
60 IPA_ENABLE_FRAMING_HDLC,
61 IPA_ENABLE_DEFRAMING_HDLC,
62 IPA_DMA,
63};
64
65/**
66 * enum ipa_aggr_en_type - aggregation setting type in IPA
67 * end-point
68 */
69enum ipa_aggr_en_type {
70 IPA_BYPASS_AGGR,
71 IPA_ENABLE_AGGR,
72 IPA_ENABLE_DEAGGR,
73};
74
75/**
76 * enum ipa_aggr_type - type of aggregation in IPA end-point
77 */
78enum ipa_aggr_type {
79 IPA_MBIM_16 = 0,
80 IPA_HDLC = 1,
81 IPA_TLP = 2,
82 IPA_RNDIS = 3,
83 IPA_GENERIC = 4,
84 IPA_QCMAP = 6,
85};
86
87/**
88 * enum ipa_aggr_mode - global aggregation mode
89 */
90enum ipa_aggr_mode {
91 IPA_MBIM_AGGR,
92 IPA_QCNCM_AGGR,
93};
94
95/**
96 * enum ipa_dp_evt_type - type of event client callback is
97 * invoked for on data path
98 * @IPA_RECEIVE: data is struct sk_buff
99 * @IPA_WRITE_DONE: data is struct sk_buff
100 */
101enum ipa_dp_evt_type {
102 IPA_RECEIVE,
103 IPA_WRITE_DONE,
104 IPA_CLIENT_START_POLL,
105 IPA_CLIENT_COMP_NAPI,
106};
107
108/**
Skylar Changfcf36c22016-10-04 14:15:25 -0700109 * enum hdr_total_len_or_pad_type - type of value held by TOTAL_LEN_OR_PAD
Amir Levy9659e592016-10-27 18:08:27 +0300110 * field in header configuration register.
111 * @IPA_HDR_PAD: field is used as padding length
112 * @IPA_HDR_TOTAL_LEN: field is used as total length
113 */
114enum hdr_total_len_or_pad_type {
115 IPA_HDR_PAD = 0,
116 IPA_HDR_TOTAL_LEN = 1,
117};
118
119/**
120 * struct ipa_ep_cfg_nat - NAT configuration in IPA end-point
121 * @nat_en: This defines the default NAT mode for the pipe: in case of
122 * filter miss - the default NAT mode defines the NATing operation
123 * on the packet. Valid for Input Pipes only (IPA consumer)
124 */
125struct ipa_ep_cfg_nat {
126 enum ipa_nat_en_type nat_en;
127};
128
129/**
Amir Levydc65f4c2017-07-06 09:49:50 +0300130 * struct ipa_ep_cfg_conn_track - IPv6 Connection tracking configuration in
131 * IPA end-point
132 * @conn_track_en: Defines speculative conn_track action, means if specific
133 * pipe needs to have UL/DL IPv6 Connection Tracking or Bybass
134 * IPv6 Connection Tracking. 0: Bypass IPv6 Connection Tracking
135 * 1: IPv6 UL/DL Connection Tracking.
136 * Valid for Input Pipes only (IPA consumer)
137 */
138struct ipa_ep_cfg_conn_track {
139 enum ipa_ipv6ct_en_type conn_track_en;
140};
141
142/**
Amir Levy9659e592016-10-27 18:08:27 +0300143 * struct ipa_ep_cfg_hdr - header configuration in IPA end-point
144 *
145 * @hdr_len:Header length in bytes to be added/removed. Assuming
146 * header len is constant per endpoint. Valid for
147 * both Input and Output Pipes
148 * @hdr_ofst_metadata_valid: 0: Metadata_Ofst value is invalid, i.e., no
149 * metadata within header.
150 * 1: Metadata_Ofst value is valid, i.e., metadata
151 * within header is in offset Metadata_Ofst Valid
152 * for Input Pipes only (IPA Consumer) (for output
153 * pipes, metadata already set within the header)
154 * @hdr_ofst_metadata: Offset within header in which metadata resides
155 * Size of metadata - 4bytes
156 * Example - Stream ID/SSID/mux ID.
157 * Valid for Input Pipes only (IPA Consumer) (for output
158 * pipes, metadata already set within the header)
159 * @hdr_additional_const_len: Defines the constant length that should be added
160 * to the payload length in order for IPA to update
161 * correctly the length field within the header
162 * (valid only in case Hdr_Ofst_Pkt_Size_Valid=1)
163 * Valid for Output Pipes (IPA Producer)
164 * @hdr_ofst_pkt_size_valid: 0: Hdr_Ofst_Pkt_Size value is invalid, i.e., no
165 * length field within the inserted header
166 * 1: Hdr_Ofst_Pkt_Size value is valid, i.e., a
167 * packet length field resides within the header
168 * Valid for Output Pipes (IPA Producer)
169 * @hdr_ofst_pkt_size: Offset within header in which packet size reside. Upon
170 * Header Insertion, IPA will update this field within the
171 * header with the packet length . Assumption is that
172 * header length field size is constant and is 2Bytes
173 * Valid for Output Pipes (IPA Producer)
174 * @hdr_a5_mux: Determines whether A5 Mux header should be added to the packet.
175 * This bit is valid only when Hdr_En=01(Header Insertion)
176 * SW should set this bit for IPA-to-A5 pipes.
177 * 0: Do not insert A5 Mux Header
178 * 1: Insert A5 Mux Header
179 * Valid for Output Pipes (IPA Producer)
180 * @hdr_remove_additional: bool switch, remove more of the header
181 * based on the aggregation configuration (register
182 * HDR_LEN_INC_DEAGG_HDR)
183 * @hdr_metadata_reg_valid: bool switch, metadata from
184 * register INIT_HDR_METADATA_n is valid.
185 * (relevant only for IPA Consumer pipes)
186 */
187struct ipa_ep_cfg_hdr {
188 u32 hdr_len;
189 u32 hdr_ofst_metadata_valid;
190 u32 hdr_ofst_metadata;
191 u32 hdr_additional_const_len;
192 u32 hdr_ofst_pkt_size_valid;
193 u32 hdr_ofst_pkt_size;
194 u32 hdr_a5_mux;
195 u32 hdr_remove_additional;
196 u32 hdr_metadata_reg_valid;
197};
198
199/**
200 * struct ipa_ep_cfg_hdr_ext - extended header configuration in IPA end-point
201 * @hdr_pad_to_alignment: Pad packet to specified alignment
202 * (2^pad to alignment value), i.e. value of 3 means pad to 2^3 = 8 bytes
203 * alignment. Alignment is to 0,2 up to 32 bytes (IPAv2 does not support 64
204 * byte alignment). Valid for Output Pipes only (IPA Producer).
205 * @hdr_total_len_or_pad_offset: Offset to length field containing either
206 * total length or pad length, per hdr_total_len_or_pad config
207 * @hdr_payload_len_inc_padding: 0-IPA_ENDP_INIT_HDR_n's
208 * HDR_OFST_PKT_SIZE does
209 * not includes padding bytes size, payload_len = packet length,
210 * 1-IPA_ENDP_INIT_HDR_n's HDR_OFST_PKT_SIZE includes
211 * padding bytes size, payload_len = packet length + padding
212 * @hdr_total_len_or_pad: field is used as PAD length ot as Total length
213 * (header + packet + padding)
214 * @hdr_total_len_or_pad_valid: 0-Ignore TOTAL_LEN_OR_PAD field, 1-Process
215 * TOTAL_LEN_OR_PAD field
216 * @hdr_little_endian: 0-Big Endian, 1-Little Endian
217 */
218struct ipa_ep_cfg_hdr_ext {
219 u32 hdr_pad_to_alignment;
220 u32 hdr_total_len_or_pad_offset;
221 bool hdr_payload_len_inc_padding;
222 enum hdr_total_len_or_pad_type hdr_total_len_or_pad;
223 bool hdr_total_len_or_pad_valid;
224 bool hdr_little_endian;
225};
226
227/**
228 * struct ipa_ep_cfg_mode - mode configuration in IPA end-point
229 * @mode: Valid for Input Pipes only (IPA Consumer)
230 * @dst: This parameter specifies the output pipe to which the packets
231 * will be routed to.
232 * This parameter is valid for Mode=DMA and not valid for
233 * Mode=Basic
234 * Valid for Input Pipes only (IPA Consumer)
235 */
236struct ipa_ep_cfg_mode {
237 enum ipa_mode_type mode;
238 enum ipa_client_type dst;
239};
240
241/**
242 * struct ipa_ep_cfg_aggr - aggregation configuration in IPA end-point
243 *
244 * @aggr_en: Valid for both Input and Output Pipes
245 * @aggr: aggregation type (Valid for both Input and Output Pipes)
246 * @aggr_byte_limit: Limit of aggregated packet size in KB (<=32KB) When set
247 * to 0, there is no size limitation on the aggregation.
248 * When both, Aggr_Byte_Limit and Aggr_Time_Limit are set
249 * to 0, there is no aggregation, every packet is sent
250 * independently according to the aggregation structure
251 * Valid for Output Pipes only (IPA Producer )
252 * @aggr_time_limit: Timer to close aggregated packet (<=32ms) When set to 0,
253 * there is no time limitation on the aggregation. When
254 * both, Aggr_Byte_Limit and Aggr_Time_Limit are set to 0,
255 * there is no aggregation, every packet is sent
256 * independently according to the aggregation structure
257 * Valid for Output Pipes only (IPA Producer)
258 * @aggr_pkt_limit: Defines if EOF close aggregation or not. if set to false
259 * HW closes aggregation (sends EOT) only based on its
260 * aggregation config (byte/time limit, etc). if set to
261 * true EOF closes aggregation in addition to HW based
262 * aggregation closure. Valid for Output Pipes only (IPA
263 * Producer). EOF affects only Pipes configured for
264 * generic aggregation.
265 * @aggr_hard_byte_limit_en: If set to 1, byte-limit aggregation for this
266 * pipe will apply a hard-limit behavior which will not
267 * allow frames to be closed with more than byte-limit
268 * bytes. If set to 0, previous byte-limit behavior
269 * will apply - frames close once a packet causes the
270 * accumulated byte-count to cross the byte-limit
271 * threshold (closed frame will contain that packet).
272 * @aggr_sw_eof_active: 0: EOF does not close aggregation. HW closes aggregation
273 * (sends EOT) only based on its aggregation config
274 * (byte/time limit, etc).
275 * 1: EOF closes aggregation in addition to HW based
276 * aggregation closure. Valid for Output Pipes only (IPA
277 * Producer). EOF affects only Pipes configured for generic
278 * aggregation.
279 */
280struct ipa_ep_cfg_aggr {
281 enum ipa_aggr_en_type aggr_en;
282 enum ipa_aggr_type aggr;
283 u32 aggr_byte_limit;
284 u32 aggr_time_limit;
285 u32 aggr_pkt_limit;
286 u32 aggr_hard_byte_limit_en;
287 bool aggr_sw_eof_active;
288};
289
290/**
291 * struct ipa_ep_cfg_route - route configuration in IPA end-point
292 * @rt_tbl_hdl: Defines the default routing table index to be used in case there
293 * is no filter rule matching, valid for Input Pipes only (IPA
294 * Consumer). Clients should set this to 0 which will cause default
295 * v4 and v6 routes setup internally by IPA driver to be used for
296 * this end-point
297 */
298struct ipa_ep_cfg_route {
299 u32 rt_tbl_hdl;
300};
301
302/**
303 * struct ipa_ep_cfg_holb - head of line blocking configuration in IPA end-point
304 * @en: enable(1 => ok to drop pkt)/disable(0 => never drop pkt)
305 * @tmr_val: duration in units of 128 IPA clk clock cyles [0,511], 1 clk=1.28us
306 * IPAv2.5 support 32 bit HOLB timeout value, previous versions
307 * supports 16 bit
308 */
309struct ipa_ep_cfg_holb {
310 u16 en;
311 u32 tmr_val;
312};
313
314/**
315 * struct ipa_ep_cfg_deaggr - deaggregation configuration in IPA end-point
316 * @deaggr_hdr_len: Deaggregation Header length in bytes. Valid only for Input
317 * Pipes, which are configured for 'Generic' deaggregation.
318 * @packet_offset_valid: - 0: PACKET_OFFSET is not used, 1: PACKET_OFFSET is
319 * used.
320 * @packet_offset_location: Location of packet offset field, which specifies
321 * the offset to the packet from the start of the packet offset field.
322 * @max_packet_len: DEAGGR Max Packet Length in Bytes. A Packet with higher
323 * size wil be treated as an error. 0 - Packet Length is not Bound,
324 * IPA should not check for a Max Packet Length.
325 */
326struct ipa_ep_cfg_deaggr {
327 u32 deaggr_hdr_len;
328 bool packet_offset_valid;
329 u32 packet_offset_location;
330 u32 max_packet_len;
331};
332
333/**
334 * enum ipa_cs_offload - checksum offload setting
335 */
336enum ipa_cs_offload {
337 IPA_DISABLE_CS_OFFLOAD,
338 IPA_ENABLE_CS_OFFLOAD_UL,
339 IPA_ENABLE_CS_OFFLOAD_DL,
340 IPA_CS_RSVD
341};
342
343/**
344 * struct ipa_ep_cfg_cfg - IPA ENDP_INIT Configuration register
345 * @frag_offload_en: - 0 - IP packet fragment handling is disabled. IP packet
346 * fragments should be sent to SW. SW is responsible for
347 * configuring filter rules, and IP packet filter exception should be
348 * used to send all fragments to SW. 1 - IP packet fragment
349 * handling is enabled. IPA checks for fragments and uses frag
350 * rules table for processing fragments. Valid only for Input Pipes
351 * (IPA Consumer)
352 * @cs_offload_en: Checksum offload enable: 00: Disable checksum offload, 01:
353 * Enable checksum calculation offload (UL) - For output pipe
354 * (IPA producer) specifies that checksum trailer is to be added.
355 * For input pipe (IPA consumer) specifies presence of checksum
356 * header and IPA checksum calculation accordingly. 10: Enable
357 * checksum calculation offload (DL) - For output pipe (IPA
358 * producer) specifies that checksum trailer is to be added. For
359 * input pipe (IPA consumer) specifies IPA checksum calculation.
360 * 11: Reserved
361 * @cs_metadata_hdr_offset: Offset in Words (4 bytes) within header in which
362 * checksum meta info header (4 bytes) starts (UL). Values are 0-15, which
363 * mean 0 - 60 byte checksum header offset. Valid for input
364 * pipes only (IPA consumer)
365 * @gen_qmb_master_sel: Select bit for ENDP GEN-QMB master. This is used to
366 * separate DDR & PCIe transactions in-order to limit them as
367 * a group (using MAX_WRITES/READS limiation). Valid for input and
368 * output pipes (IPA consumer+producer)
369 */
370struct ipa_ep_cfg_cfg {
371 bool frag_offload_en;
372 enum ipa_cs_offload cs_offload_en;
373 u8 cs_metadata_hdr_offset;
374 u8 gen_qmb_master_sel;
375};
376
377/**
378 * struct ipa_ep_cfg_metadata_mask - Endpoint initialization hdr metadata mask
379 * @metadata_mask: Mask specifying which metadata bits to write to
380 * IPA_ENDP_INIT_HDR_n.s HDR_OFST_METADATA. Only
381 * masked metadata bits (set to 1) will be written. Valid for Output
382 * Pipes only (IPA Producer)
383 */
384struct ipa_ep_cfg_metadata_mask {
385 u32 metadata_mask;
386};
387
388/**
389 * struct ipa_ep_cfg_metadata - Meta Data configuration in IPA end-point
390 * @md: This defines the meta data from tx data descriptor
391 * @qmap_id: qmap id
392 */
393struct ipa_ep_cfg_metadata {
394 u32 qmap_id;
395};
396
397/**
398 * struct ipa_ep_cfg_seq - HPS/DPS sequencer type configuration in IPA end-point
399 * @set_dynamic: 0 - HPS/DPS seq type is configured statically,
400 * 1 - HPS/DPS seq type is set to seq_type
401 * @seq_type: HPS/DPS sequencer type configuration
402 */
403struct ipa_ep_cfg_seq {
404 bool set_dynamic;
405 int seq_type;
406};
407
408/**
409 * struct ipa_ep_cfg - configuration of IPA end-point
410 * @nat: NAT parmeters
Amir Levydc65f4c2017-07-06 09:49:50 +0300411 * @conn_track: IPv6CT parmeters
Amir Levy9659e592016-10-27 18:08:27 +0300412 * @hdr: Header parameters
413 * @hdr_ext: Extended header parameters
414 * @mode: Mode parameters
415 * @aggr: Aggregation parameters
416 * @deaggr: Deaggregation params
417 * @route: Routing parameters
418 * @cfg: Configuration register data
419 * @metadata_mask: Hdr metadata mask
420 * @meta: Meta Data
421 * @seq: HPS/DPS sequencers configuration
422 */
423struct ipa_ep_cfg {
424 struct ipa_ep_cfg_nat nat;
Amir Levydc65f4c2017-07-06 09:49:50 +0300425 struct ipa_ep_cfg_conn_track conn_track;
Amir Levy9659e592016-10-27 18:08:27 +0300426 struct ipa_ep_cfg_hdr hdr;
427 struct ipa_ep_cfg_hdr_ext hdr_ext;
428 struct ipa_ep_cfg_mode mode;
429 struct ipa_ep_cfg_aggr aggr;
430 struct ipa_ep_cfg_deaggr deaggr;
431 struct ipa_ep_cfg_route route;
432 struct ipa_ep_cfg_cfg cfg;
433 struct ipa_ep_cfg_metadata_mask metadata_mask;
434 struct ipa_ep_cfg_metadata meta;
435 struct ipa_ep_cfg_seq seq;
436};
437
438/**
439 * struct ipa_ep_cfg_ctrl - Control configuration in IPA end-point
440 * @ipa_ep_suspend: 0 - ENDP is enabled, 1 - ENDP is suspended (disabled).
441 * Valid for PROD Endpoints
442 * @ipa_ep_delay: 0 - ENDP is free-running, 1 - ENDP is delayed.
443 * SW controls the data flow of an endpoint usind this bit.
444 * Valid for CONS Endpoints
445 */
446struct ipa_ep_cfg_ctrl {
447 bool ipa_ep_suspend;
448 bool ipa_ep_delay;
449};
450
451/**
452 * x should be in bytes
453 */
454#define IPA_NUM_OF_FIFO_DESC(x) (x/sizeof(struct sps_iovec))
455typedef void (*ipa_notify_cb)(void *priv, enum ipa_dp_evt_type evt,
456 unsigned long data);
457
458/**
Skylar Changfcf36c22016-10-04 14:15:25 -0700459 * enum ipa_wdi_meter_evt_type - type of event client callback is
460 * for AP+STA mode metering
461 * @IPA_GET_WDI_SAP_STATS: get IPA_stats betwen SAP and STA -
462 * use ipa_get_wdi_sap_stats structure
463 * @IPA_SET_WIFI_QUOTA: set quota limit on STA -
464 * use ipa_set_wifi_quota structure
465 */
466enum ipa_wdi_meter_evt_type {
467 IPA_GET_WDI_SAP_STATS,
468 IPA_SET_WIFI_QUOTA,
469};
470
471struct ipa_get_wdi_sap_stats {
472 /* indicate to reset stats after query */
473 uint8_t reset_stats;
474 /* indicate valid stats from wlan-fw */
475 uint8_t stats_valid;
476 /* Tx: SAP->STA */
477 uint64_t ipv4_tx_packets;
478 uint64_t ipv4_tx_bytes;
479 /* Rx: STA->SAP */
480 uint64_t ipv4_rx_packets;
481 uint64_t ipv4_rx_bytes;
482 uint64_t ipv6_tx_packets;
483 uint64_t ipv6_tx_bytes;
484 uint64_t ipv6_rx_packets;
485 uint64_t ipv6_rx_bytes;
486};
487
488/**
489 * struct ipa_set_wifi_quota - structure used for
490 * IPA_SET_WIFI_QUOTA.
491 *
492 * @quota_bytes: Quota (in bytes) for the STA interface.
493 * @set_quota: Indicate whether to set the quota (use 1) or
494 * unset the quota.
495 *
496 */
497struct ipa_set_wifi_quota {
498 uint64_t quota_bytes;
499 uint8_t set_quota;
500 /* indicate valid quota set from wlan-fw */
501 uint8_t set_valid;
502};
503
504typedef void (*ipa_wdi_meter_notifier_cb)(enum ipa_wdi_meter_evt_type evt,
505 void *data);
506
507/**
Amir Levy9659e592016-10-27 18:08:27 +0300508 * struct ipa_connect_params - low-level client connect input parameters. Either
509 * client allocates the data and desc FIFO and specifies that in data+desc OR
510 * specifies sizes and pipe_mem pref and IPA does the allocation.
511 *
512 * @ipa_ep_cfg: IPA EP configuration
513 * @client: type of "client"
514 * @client_bam_hdl: client SPS handle
515 * @client_ep_idx: client PER EP index
516 * @priv: callback cookie
517 * @notify: callback
518 * priv - callback cookie evt - type of event data - data relevant
519 * to event. May not be valid. See event_type enum for valid
520 * cases.
521 * @desc_fifo_sz: size of desc FIFO
522 * @data_fifo_sz: size of data FIFO
523 * @pipe_mem_preferred: if true, try to alloc the FIFOs in pipe mem, fallback
524 * to sys mem if pipe mem alloc fails
525 * @desc: desc FIFO meta-data when client has allocated it
526 * @data: data FIFO meta-data when client has allocated it
527 * @skip_ep_cfg: boolean field that determines if EP should be configured
528 * by IPA driver
529 * @keep_ipa_awake: when true, IPA will not be clock gated
530 */
531struct ipa_connect_params {
532 struct ipa_ep_cfg ipa_ep_cfg;
533 enum ipa_client_type client;
534 unsigned long client_bam_hdl;
535 u32 client_ep_idx;
536 void *priv;
537 ipa_notify_cb notify;
538 u32 desc_fifo_sz;
539 u32 data_fifo_sz;
540 bool pipe_mem_preferred;
541 struct sps_mem_buffer desc;
542 struct sps_mem_buffer data;
543 bool skip_ep_cfg;
544 bool keep_ipa_awake;
545};
546
547/**
548 * struct ipa_sps_params - SPS related output parameters resulting from
549 * low/high level client connect
550 * @ipa_bam_hdl: IPA SPS handle
551 * @ipa_ep_idx: IPA PER EP index
552 * @desc: desc FIFO meta-data
553 * @data: data FIFO meta-data
554 */
555struct ipa_sps_params {
556 unsigned long ipa_bam_hdl;
557 u32 ipa_ep_idx;
558 struct sps_mem_buffer desc;
559 struct sps_mem_buffer data;
560};
561
562/**
563 * struct ipa_tx_intf - interface tx properties
564 * @num_props: number of tx properties
565 * @prop: the tx properties array
566 */
567struct ipa_tx_intf {
568 u32 num_props;
569 struct ipa_ioc_tx_intf_prop *prop;
570};
571
572/**
573 * struct ipa_rx_intf - interface rx properties
574 * @num_props: number of rx properties
575 * @prop: the rx properties array
576 */
577struct ipa_rx_intf {
578 u32 num_props;
579 struct ipa_ioc_rx_intf_prop *prop;
580};
581
582/**
583 * struct ipa_ext_intf - interface ext properties
584 * @excp_pipe_valid: is next field valid?
585 * @excp_pipe: exception packets should be routed to this pipe
586 * @num_props: number of ext properties
587 * @prop: the ext properties array
588 */
589struct ipa_ext_intf {
590 bool excp_pipe_valid;
591 enum ipa_client_type excp_pipe;
592 u32 num_props;
593 struct ipa_ioc_ext_intf_prop *prop;
594};
595
596/**
597 * struct ipa_sys_connect_params - information needed to setup an IPA end-point
598 * in system-BAM mode
599 * @ipa_ep_cfg: IPA EP configuration
600 * @client: the type of client who "owns" the EP
601 * @desc_fifo_sz: size of desc FIFO. This number is used to allocate the desc
602 * fifo for BAM. For GSI, this size is used by IPA driver as a
603 * baseline to calculate the GSI ring size in the following way:
604 * For PROD pipes, GSI ring is 4 * desc_fifo_sz.
605 For PROD pipes, GSI ring is 2 * desc_fifo_sz.
606 * @priv: callback cookie
607 * @notify: callback
608 * priv - callback cookie
609 * evt - type of event
610 * data - data relevant to event. May not be valid. See event_type
611 * enum for valid cases.
612 * @skip_ep_cfg: boolean field that determines if EP should be configured
613 * by IPA driver
614 * @keep_ipa_awake: when true, IPA will not be clock gated
615 * @napi_enabled: when true, IPA call client callback to start polling
616 */
617struct ipa_sys_connect_params {
618 struct ipa_ep_cfg ipa_ep_cfg;
619 enum ipa_client_type client;
620 u32 desc_fifo_sz;
621 void *priv;
622 ipa_notify_cb notify;
623 bool skip_ep_cfg;
624 bool keep_ipa_awake;
625 bool napi_enabled;
Gidon Studinski3021a6f2016-11-10 12:48:48 +0200626 bool recycle_enabled;
Amir Levy9659e592016-10-27 18:08:27 +0300627};
628
629/**
630 * struct ipa_tx_meta - meta-data for the TX packet
631 * @dma_address: dma mapped address of TX packet
632 * @dma_address_valid: is above field valid?
633 */
634struct ipa_tx_meta {
635 u8 pkt_init_dst_ep;
636 bool pkt_init_dst_ep_valid;
637 bool pkt_init_dst_ep_remote;
638 dma_addr_t dma_address;
639 bool dma_address_valid;
640};
641
642/**
643 * typedef ipa_msg_free_fn - callback function
644 * @param buff - [in] the message payload to free
645 * @param len - [in] size of message payload
646 * @param type - [in] the message type
647 *
648 * Message callback registered by kernel client with IPA driver to
649 * free message payload after IPA driver processing is complete
650 *
651 * No return value
652 */
653typedef void (*ipa_msg_free_fn)(void *buff, u32 len, u32 type);
654
655/**
656 * typedef ipa_msg_pull_fn - callback function
657 * @param buff - [in] where to copy message payload
658 * @param len - [in] size of buffer to copy payload into
659 * @param type - [in] the message type
660 *
661 * Message callback registered by kernel client with IPA driver for
662 * IPA driver to pull messages from the kernel client upon demand from
663 * user-space
664 *
665 * Returns how many bytes were copied into the buffer.
666 */
667typedef int (*ipa_msg_pull_fn)(void *buff, u32 len, u32 type);
668
669/**
670 * enum ipa_voltage_level - IPA Voltage levels
671 */
672enum ipa_voltage_level {
673 IPA_VOLTAGE_UNSPECIFIED,
674 IPA_VOLTAGE_SVS = IPA_VOLTAGE_UNSPECIFIED,
675 IPA_VOLTAGE_NOMINAL,
676 IPA_VOLTAGE_TURBO,
677 IPA_VOLTAGE_MAX,
678};
679
680/**
681 * enum ipa_rm_event - IPA RM events
682 *
683 * Indicate the resource state change
684 */
685enum ipa_rm_event {
686 IPA_RM_RESOURCE_GRANTED,
687 IPA_RM_RESOURCE_RELEASED
688};
689
690typedef void (*ipa_rm_notify_cb)(void *user_data,
691 enum ipa_rm_event event,
692 unsigned long data);
693/**
694 * struct ipa_rm_register_params - information needed to
695 * register IPA RM client with IPA RM
696 *
697 * @user_data: IPA RM client provided information
698 * to be passed to notify_cb callback below
699 * @notify_cb: callback which is called by resource
700 * to notify the IPA RM client about its state
701 * change IPA RM client is expected to perform non
702 * blocking operations only in notify_cb and
703 * release notification context as soon as
704 * possible.
705 */
706struct ipa_rm_register_params {
707 void *user_data;
708 ipa_rm_notify_cb notify_cb;
709};
710
711/**
712 * struct ipa_rm_create_params - information needed to initialize
713 * the resource
714 * @name: resource name
715 * @floor_voltage: floor voltage needed for client to operate in maximum
716 * bandwidth.
717 * @reg_params: register parameters, contains are ignored
718 * for consumer resource NULL should be provided
719 * for consumer resource
720 * @request_resource: function which should be called to request resource,
721 * NULL should be provided for producer resource
722 * @release_resource: function which should be called to release resource,
723 * NULL should be provided for producer resource
724 *
725 * IPA RM client is expected to perform non blocking operations only
726 * in request_resource and release_resource functions and
727 * release notification context as soon as possible.
728 */
729struct ipa_rm_create_params {
730 enum ipa_rm_resource_name name;
731 enum ipa_voltage_level floor_voltage;
732 struct ipa_rm_register_params reg_params;
733 int (*request_resource)(void);
734 int (*release_resource)(void);
735};
736
737/**
738 * struct ipa_rm_perf_profile - information regarding IPA RM client performance
739 * profile
740 *
741 * @max_bandwidth_mbps: maximum bandwidth need of the client in Mbps
742 */
743struct ipa_rm_perf_profile {
744 u32 max_supported_bandwidth_mbps;
745};
746
747#define A2_MUX_HDR_NAME_V4_PREF "dmux_hdr_v4_"
748#define A2_MUX_HDR_NAME_V6_PREF "dmux_hdr_v6_"
749
750/**
751 * enum teth_tethering_mode - Tethering mode (Rmnet / MBIM)
752 */
753enum teth_tethering_mode {
754 TETH_TETHERING_MODE_RMNET,
755 TETH_TETHERING_MODE_MBIM,
756 TETH_TETHERING_MODE_MAX,
757};
758
759/**
760 * teth_bridge_init_params - Parameters used for in/out USB API
761 * @usb_notify_cb: Callback function which should be used by the caller.
762 * Output parameter.
763 * @private_data: Data for the callback function. Should be used by the
764 * caller. Output parameter.
765 * @skip_ep_cfg: boolean field that determines if Apps-processor
766 * should or should not confiugre this end-point.
767 */
768struct teth_bridge_init_params {
769 ipa_notify_cb usb_notify_cb;
770 void *private_data;
771 enum ipa_client_type client;
772 bool skip_ep_cfg;
773};
774
775/**
776 * struct teth_bridge_connect_params - Parameters used in teth_bridge_connect()
777 * @ipa_usb_pipe_hdl: IPA to USB pipe handle, returned from ipa_connect()
778 * @usb_ipa_pipe_hdl: USB to IPA pipe handle, returned from ipa_connect()
779 * @tethering_mode: Rmnet or MBIM
780 * @ipa_client_type: IPA "client" name (IPA_CLIENT_USB#_PROD)
781 */
782struct teth_bridge_connect_params {
783 u32 ipa_usb_pipe_hdl;
784 u32 usb_ipa_pipe_hdl;
785 enum teth_tethering_mode tethering_mode;
786 enum ipa_client_type client_type;
787};
788
789/**
790 * struct ipa_tx_data_desc - information needed
791 * to send data packet to HW link: link to data descriptors
792 * priv: client specific private data
793 * @pyld_buffer: pointer to the data buffer that holds frame
794 * @pyld_len: length of the data packet
795 */
796struct ipa_tx_data_desc {
797 struct list_head link;
798 void *priv;
799 void *pyld_buffer;
800 u16 pyld_len;
801};
802
803/**
804 * struct ipa_rx_data - information needed
805 * to send to wlan driver on receiving data from ipa hw
806 * @skb: skb
807 * @dma_addr: DMA address of this Rx packet
808 */
809struct ipa_rx_data {
810 struct sk_buff *skb;
811 dma_addr_t dma_addr;
812};
813
814/**
815 * enum ipa_irq_type - IPA Interrupt Type
816 * Used to register handlers for IPA interrupts
817 *
818 * Below enum is a logical mapping and not the actual interrupt bit in HW
819 */
820enum ipa_irq_type {
821 IPA_BAD_SNOC_ACCESS_IRQ,
822 IPA_EOT_COAL_IRQ,
823 IPA_UC_IRQ_0,
824 IPA_UC_IRQ_1,
825 IPA_UC_IRQ_2,
826 IPA_UC_IRQ_3,
827 IPA_UC_IN_Q_NOT_EMPTY_IRQ,
828 IPA_UC_RX_CMD_Q_NOT_FULL_IRQ,
829 IPA_UC_TX_CMD_Q_NOT_FULL_IRQ,
830 IPA_UC_TO_PROC_ACK_Q_NOT_FULL_IRQ,
831 IPA_PROC_TO_UC_ACK_Q_NOT_EMPTY_IRQ,
832 IPA_RX_ERR_IRQ,
833 IPA_DEAGGR_ERR_IRQ,
834 IPA_TX_ERR_IRQ,
835 IPA_STEP_MODE_IRQ,
836 IPA_PROC_ERR_IRQ,
837 IPA_TX_SUSPEND_IRQ,
838 IPA_TX_HOLB_DROP_IRQ,
839 IPA_BAM_IDLE_IRQ,
Amir Levya59ed3f2017-03-05 17:30:55 +0200840 IPA_GSI_IDLE_IRQ = IPA_BAM_IDLE_IRQ,
Amir Levy9659e592016-10-27 18:08:27 +0300841 IPA_IRQ_MAX
842};
843
844/**
845 * struct ipa_tx_suspend_irq_data - interrupt data for IPA_TX_SUSPEND_IRQ
846 * @endpoints: bitmask of endpoints which case IPA_TX_SUSPEND_IRQ interrupt
847 * @dma_addr: DMA address of this Rx packet
848 */
849struct ipa_tx_suspend_irq_data {
850 u32 endpoints;
851};
852
853
854/**
855 * typedef ipa_irq_handler_t - irq handler/callback type
856 * @param ipa_irq_type - [in] interrupt type
857 * @param private_data - [in, out] the client private data
858 * @param interrupt_data - [out] interrupt information data
859 *
860 * callback registered by ipa_add_interrupt_handler function to
861 * handle a specific interrupt type
862 *
863 * No return value
864 */
865typedef void (*ipa_irq_handler_t)(enum ipa_irq_type interrupt,
866 void *private_data,
867 void *interrupt_data);
868
869/**
870 * struct IpaHwBamStats_t - Strucuture holding the BAM statistics
871 *
872 * @bamFifoFull : Number of times Bam Fifo got full - For In Ch: Good,
873 * For Out Ch: Bad
874 * @bamFifoEmpty : Number of times Bam Fifo got empty - For In Ch: Bad,
875 * For Out Ch: Good
876 * @bamFifoUsageHigh : Number of times Bam fifo usage went above 75% -
877 * For In Ch: Good, For Out Ch: Bad
878 * @bamFifoUsageLow : Number of times Bam fifo usage went below 25% -
879 * For In Ch: Bad, For Out Ch: Good
880*/
881struct IpaHwBamStats_t {
882 u32 bamFifoFull;
883 u32 bamFifoEmpty;
884 u32 bamFifoUsageHigh;
885 u32 bamFifoUsageLow;
886 u32 bamUtilCount;
887} __packed;
888
889/**
890 * struct IpaHwRingStats_t - Strucuture holding the Ring statistics
891 *
892 * @ringFull : Number of times Transfer Ring got full - For In Ch: Good,
893 * For Out Ch: Bad
894 * @ringEmpty : Number of times Transfer Ring got empty - For In Ch: Bad,
895 * For Out Ch: Good
896 * @ringUsageHigh : Number of times Transfer Ring usage went above 75% -
897 * For In Ch: Good, For Out Ch: Bad
898 * @ringUsageLow : Number of times Transfer Ring usage went below 25% -
899 * For In Ch: Bad, For Out Ch: Good
900*/
901struct IpaHwRingStats_t {
902 u32 ringFull;
903 u32 ringEmpty;
904 u32 ringUsageHigh;
905 u32 ringUsageLow;
906 u32 RingUtilCount;
907} __packed;
908
909/**
910 * struct IpaHwStatsWDIRxInfoData_t - Structure holding the WDI Rx channel
911 * structures
912 *
913 * @max_outstanding_pkts : Number of outstanding packets in Rx Ring
914 * @num_pkts_processed : Number of packets processed - cumulative
915 * @rx_ring_rp_value : Read pointer last advertized to the WLAN FW
916 * @rx_ind_ring_stats : Ring info
917 * @bam_stats : BAM info
918 * @num_bam_int_handled : Number of Bam Interrupts handled by FW
919 * @num_db : Number of times the doorbell was rung
920 * @num_unexpected_db : Number of unexpected doorbells
921 * @num_pkts_in_dis_uninit_state : number of completions we
922 * received in disabled or uninitialized state
923 * @num_ic_inj_vdev_change : Number of times the Imm Cmd is
924 * injected due to vdev_id change
925 * @num_ic_inj_fw_desc_change : Number of times the Imm Cmd is
926 * injected due to fw_desc change
Utkarsh Saxena971a03c2017-01-22 22:04:13 +0530927 * @num_qmb_int_handled : Number of QMB interrupts handled
Amir Levy9659e592016-10-27 18:08:27 +0300928*/
929struct IpaHwStatsWDIRxInfoData_t {
930 u32 max_outstanding_pkts;
931 u32 num_pkts_processed;
932 u32 rx_ring_rp_value;
933 struct IpaHwRingStats_t rx_ind_ring_stats;
934 struct IpaHwBamStats_t bam_stats;
935 u32 num_bam_int_handled;
936 u32 num_db;
937 u32 num_unexpected_db;
938 u32 num_pkts_in_dis_uninit_state;
939 u32 num_ic_inj_vdev_change;
940 u32 num_ic_inj_fw_desc_change;
Utkarsh Saxena971a03c2017-01-22 22:04:13 +0530941 u32 num_qmb_int_handled;
Amir Levy9659e592016-10-27 18:08:27 +0300942 u32 reserved1;
943 u32 reserved2;
944} __packed;
945
946/**
947 * struct IpaHwStatsWDITxInfoData_t - Structure holding the WDI Tx channel
948 * structures
949 *
950 * @num_pkts_processed : Number of packets processed - cumulative
951 * @copy_engine_doorbell_value : latest value of doorbell written to copy engine
952 * @num_db_fired : Number of DB from uC FW to Copy engine
953 * @tx_comp_ring_stats : ring info
954 * @bam_stats : BAM info
955 * @num_db : Number of times the doorbell was rung
956 * @num_unexpected_db : Number of unexpected doorbells
957 * @num_bam_int_handled : Number of Bam Interrupts handled by FW
958 * @num_bam_int_in_non_running_state : Number of Bam interrupts while not in
959 * Running state
960 * @num_qmb_int_handled : Number of QMB interrupts handled
961*/
962struct IpaHwStatsWDITxInfoData_t {
963 u32 num_pkts_processed;
964 u32 copy_engine_doorbell_value;
965 u32 num_db_fired;
966 struct IpaHwRingStats_t tx_comp_ring_stats;
967 struct IpaHwBamStats_t bam_stats;
968 u32 num_db;
969 u32 num_unexpected_db;
970 u32 num_bam_int_handled;
971 u32 num_bam_int_in_non_running_state;
972 u32 num_qmb_int_handled;
973 u32 num_bam_int_handled_while_wait_for_bam;
974} __packed;
975
976/**
977 * struct IpaHwStatsWDIInfoData_t - Structure holding the WDI channel structures
978 *
979 * @rx_ch_stats : RX stats
980 * @tx_ch_stats : TX stats
981*/
982struct IpaHwStatsWDIInfoData_t {
983 struct IpaHwStatsWDIRxInfoData_t rx_ch_stats;
984 struct IpaHwStatsWDITxInfoData_t tx_ch_stats;
985} __packed;
986
987
988/**
989 * struct ipa_wdi_ul_params - WDI_RX configuration
990 * @rdy_ring_base_pa: physical address of the base of the Rx ring (containing
991 * Rx buffers)
992 * @rdy_ring_size: size of the Rx ring in bytes
993 * @rdy_ring_rp_pa: physical address of the location through which IPA uc is
994 * reading (WDI-1.0)
995 * @rdy_comp_ring_base_pa: physical address of the base of the Rx completion
996 * ring (WDI-2.0)
997 * @rdy_comp_ring_wp_pa: physical address of the location through which IPA
998 * uc is writing (WDI-2.0)
999 * @rdy_comp_ring_size: size of the Rx_completion ring in bytes
1000 * expected to communicate about the Read pointer into the Rx Ring
1001 */
1002struct ipa_wdi_ul_params {
1003 phys_addr_t rdy_ring_base_pa;
1004 u32 rdy_ring_size;
1005 phys_addr_t rdy_ring_rp_pa;
1006 phys_addr_t rdy_comp_ring_base_pa;
1007 phys_addr_t rdy_comp_ring_wp_pa;
1008 u32 rdy_comp_ring_size;
1009 u32 *rdy_ring_rp_va;
1010 u32 *rdy_comp_ring_wp_va;
1011};
1012
1013/**
1014 * struct ipa_wdi_ul_params_smmu - WDI_RX configuration (with WLAN SMMU)
1015 * @rdy_ring: SG table describing the Rx ring (containing Rx buffers)
1016 * @rdy_ring_size: size of the Rx ring in bytes
1017 * @rdy_ring_rp_pa: physical address of the location through which IPA uc is
1018 * expected to communicate about the Read pointer into the Rx Ring
1019 */
1020struct ipa_wdi_ul_params_smmu {
1021 struct sg_table rdy_ring;
1022 u32 rdy_ring_size;
1023 phys_addr_t rdy_ring_rp_pa;
1024 struct sg_table rdy_comp_ring;
1025 phys_addr_t rdy_comp_ring_wp_pa;
1026 u32 rdy_comp_ring_size;
1027 u32 *rdy_ring_rp_va;
1028 u32 *rdy_comp_ring_wp_va;
1029};
1030
1031/**
1032 * struct ipa_wdi_dl_params - WDI_TX configuration
1033 * @comp_ring_base_pa: physical address of the base of the Tx completion ring
1034 * @comp_ring_size: size of the Tx completion ring in bytes
1035 * @ce_ring_base_pa: physical address of the base of the Copy Engine Source
1036 * Ring
1037 * @ce_door_bell_pa: physical address of the doorbell that the IPA uC has to
1038 * write into to trigger the copy engine
1039 * @ce_ring_size: Copy Engine Ring size in bytes
1040 * @num_tx_buffers: Number of pkt buffers allocated
1041 */
1042struct ipa_wdi_dl_params {
1043 phys_addr_t comp_ring_base_pa;
1044 u32 comp_ring_size;
1045 phys_addr_t ce_ring_base_pa;
1046 phys_addr_t ce_door_bell_pa;
1047 u32 ce_ring_size;
1048 u32 num_tx_buffers;
1049};
1050
1051/**
1052 * struct ipa_wdi_dl_params_smmu - WDI_TX configuration (with WLAN SMMU)
1053 * @comp_ring: SG table describing the Tx completion ring
1054 * @comp_ring_size: size of the Tx completion ring in bytes
1055 * @ce_ring: SG table describing the Copy Engine Source Ring
1056 * @ce_door_bell_pa: physical address of the doorbell that the IPA uC has to
1057 * write into to trigger the copy engine
1058 * @ce_ring_size: Copy Engine Ring size in bytes
1059 * @num_tx_buffers: Number of pkt buffers allocated
1060 */
1061struct ipa_wdi_dl_params_smmu {
1062 struct sg_table comp_ring;
1063 u32 comp_ring_size;
1064 struct sg_table ce_ring;
1065 phys_addr_t ce_door_bell_pa;
1066 u32 ce_ring_size;
1067 u32 num_tx_buffers;
1068};
1069
1070/**
1071 * struct ipa_wdi_in_params - information provided by WDI client
1072 * @sys: IPA EP configuration info
1073 * @ul: WDI_RX configuration info
1074 * @dl: WDI_TX configuration info
1075 * @ul_smmu: WDI_RX configuration info when WLAN uses SMMU
1076 * @dl_smmu: WDI_TX configuration info when WLAN uses SMMU
1077 * @smmu_enabled: true if WLAN uses SMMU
Skylar Changfcf36c22016-10-04 14:15:25 -07001078 * @ipa_wdi_meter_notifier_cb: Get WDI stats and quato info
Amir Levy9659e592016-10-27 18:08:27 +03001079 */
1080struct ipa_wdi_in_params {
1081 struct ipa_sys_connect_params sys;
1082 union {
1083 struct ipa_wdi_ul_params ul;
1084 struct ipa_wdi_dl_params dl;
1085 struct ipa_wdi_ul_params_smmu ul_smmu;
1086 struct ipa_wdi_dl_params_smmu dl_smmu;
1087 } u;
1088 bool smmu_enabled;
Skylar Changfcf36c22016-10-04 14:15:25 -07001089#ifdef IPA_WAN_MSG_IPv6_ADDR_GW_LEN
1090 ipa_wdi_meter_notifier_cb wdi_notify;
1091#endif
Amir Levy9659e592016-10-27 18:08:27 +03001092};
1093
Skylar Chang6b41f8d2016-11-01 12:50:11 -07001094enum ipa_upstream_type {
1095 IPA_UPSTEAM_MODEM = 1,
1096 IPA_UPSTEAM_WLAN,
1097 IPA_UPSTEAM_MAX
1098};
1099
Amir Levy9659e592016-10-27 18:08:27 +03001100/**
1101 * struct ipa_wdi_out_params - information provided to WDI client
1102 * @uc_door_bell_pa: physical address of IPA uc doorbell
1103 * @clnt_hdl: opaque handle assigned to client
1104 */
1105struct ipa_wdi_out_params {
1106 phys_addr_t uc_door_bell_pa;
1107 u32 clnt_hdl;
1108};
1109
1110/**
1111 * struct ipa_wdi_db_params - information provided to retrieve
1112 * physical address of uC doorbell
1113 * @client: type of "client" (IPA_CLIENT_WLAN#_PROD/CONS)
1114 * @uc_door_bell_pa: physical address of IPA uc doorbell
1115 */
1116struct ipa_wdi_db_params {
1117 enum ipa_client_type client;
1118 phys_addr_t uc_door_bell_pa;
1119};
1120
1121/**
1122 * struct ipa_wdi_uc_ready_params - uC ready CB parameters
1123 * @is_uC_ready: uC loaded or not
1124 * @priv : callback cookie
1125 * @notify: callback
1126 */
1127typedef void (*ipa_uc_ready_cb)(void *priv);
1128struct ipa_wdi_uc_ready_params {
1129 bool is_uC_ready;
1130 void *priv;
1131 ipa_uc_ready_cb notify;
1132};
1133
1134/**
1135 * struct ipa_wdi_buffer_info - address info of a WLAN allocated buffer
1136 * @pa: physical address of the buffer
1137 * @iova: IOVA of the buffer as embedded inside the WDI descriptors
1138 * @size: size in bytes of the buffer
1139 * @result: result of map or unmap operations (out param)
1140 *
1141 * IPA driver will create/release IOMMU mapping in IPA SMMU from iova->pa
1142 */
1143struct ipa_wdi_buffer_info {
1144 phys_addr_t pa;
1145 unsigned long iova;
1146 size_t size;
1147 int result;
1148};
1149
1150/**
1151 * struct ipa_gsi_ep_config - IPA GSI endpoint configurations
1152 *
1153 * @ipa_ep_num: IPA EP pipe number
1154 * @ipa_gsi_chan_num: GSI channel number
1155 * @ipa_if_tlv: number of IPA_IF TLV
1156 * @ipa_if_aos: number of IPA_IF AOS
1157 * @ee: Execution environment
1158 */
1159struct ipa_gsi_ep_config {
1160 int ipa_ep_num;
1161 int ipa_gsi_chan_num;
1162 int ipa_if_tlv;
1163 int ipa_if_aos;
1164 int ee;
1165};
1166
1167#if defined CONFIG_IPA || defined CONFIG_IPA3
1168
1169/*
1170 * Connect / Disconnect
1171 */
1172int ipa_connect(const struct ipa_connect_params *in, struct ipa_sps_params *sps,
1173 u32 *clnt_hdl);
1174int ipa_disconnect(u32 clnt_hdl);
1175
1176/*
1177 * Resume / Suspend
1178 */
1179int ipa_reset_endpoint(u32 clnt_hdl);
1180
1181/*
1182 * Remove ep delay
1183 */
1184int ipa_clear_endpoint_delay(u32 clnt_hdl);
1185
1186/*
1187 * Disable ep
1188 */
1189int ipa_disable_endpoint(u32 clnt_hdl);
1190
1191/*
1192 * Configuration
1193 */
1194int ipa_cfg_ep(u32 clnt_hdl, const struct ipa_ep_cfg *ipa_ep_cfg);
1195
1196int ipa_cfg_ep_nat(u32 clnt_hdl, const struct ipa_ep_cfg_nat *ipa_ep_cfg);
1197
Amir Levydc65f4c2017-07-06 09:49:50 +03001198int ipa_cfg_ep_conn_track(u32 clnt_hdl,
1199 const struct ipa_ep_cfg_conn_track *ep_conn_track);
1200
Amir Levy9659e592016-10-27 18:08:27 +03001201int ipa_cfg_ep_hdr(u32 clnt_hdl, const struct ipa_ep_cfg_hdr *ipa_ep_cfg);
1202
1203int ipa_cfg_ep_hdr_ext(u32 clnt_hdl,
1204 const struct ipa_ep_cfg_hdr_ext *ipa_ep_cfg);
1205
1206int ipa_cfg_ep_mode(u32 clnt_hdl, const struct ipa_ep_cfg_mode *ipa_ep_cfg);
1207
1208int ipa_cfg_ep_aggr(u32 clnt_hdl, const struct ipa_ep_cfg_aggr *ipa_ep_cfg);
1209
1210int ipa_cfg_ep_deaggr(u32 clnt_hdl,
1211 const struct ipa_ep_cfg_deaggr *ipa_ep_cfg);
1212
1213int ipa_cfg_ep_route(u32 clnt_hdl, const struct ipa_ep_cfg_route *ipa_ep_cfg);
1214
1215int ipa_cfg_ep_holb(u32 clnt_hdl, const struct ipa_ep_cfg_holb *ipa_ep_cfg);
1216
1217int ipa_cfg_ep_cfg(u32 clnt_hdl, const struct ipa_ep_cfg_cfg *ipa_ep_cfg);
1218
1219int ipa_cfg_ep_metadata_mask(u32 clnt_hdl, const struct ipa_ep_cfg_metadata_mask
1220 *ipa_ep_cfg);
1221
1222int ipa_cfg_ep_holb_by_client(enum ipa_client_type client,
1223 const struct ipa_ep_cfg_holb *ipa_ep_cfg);
1224
1225int ipa_cfg_ep_ctrl(u32 clnt_hdl, const struct ipa_ep_cfg_ctrl *ep_ctrl);
1226
1227/*
1228 * Header removal / addition
1229 */
1230int ipa_add_hdr(struct ipa_ioc_add_hdr *hdrs);
1231
1232int ipa_del_hdr(struct ipa_ioc_del_hdr *hdls);
1233
1234int ipa_commit_hdr(void);
1235
1236int ipa_reset_hdr(void);
1237
1238int ipa_get_hdr(struct ipa_ioc_get_hdr *lookup);
1239
1240int ipa_put_hdr(u32 hdr_hdl);
1241
1242int ipa_copy_hdr(struct ipa_ioc_copy_hdr *copy);
1243
1244/*
1245 * Header Processing Context
1246 */
1247int ipa_add_hdr_proc_ctx(struct ipa_ioc_add_hdr_proc_ctx *proc_ctxs);
1248
1249int ipa_del_hdr_proc_ctx(struct ipa_ioc_del_hdr_proc_ctx *hdls);
1250
1251/*
1252 * Routing
1253 */
1254int ipa_add_rt_rule(struct ipa_ioc_add_rt_rule *rules);
1255
1256int ipa_del_rt_rule(struct ipa_ioc_del_rt_rule *hdls);
1257
1258int ipa_commit_rt(enum ipa_ip_type ip);
1259
1260int ipa_reset_rt(enum ipa_ip_type ip);
1261
1262int ipa_get_rt_tbl(struct ipa_ioc_get_rt_tbl *lookup);
1263
1264int ipa_put_rt_tbl(u32 rt_tbl_hdl);
1265
1266int ipa_query_rt_index(struct ipa_ioc_get_rt_tbl_indx *in);
1267
1268int ipa_mdfy_rt_rule(struct ipa_ioc_mdfy_rt_rule *rules);
1269
1270/*
1271 * Filtering
1272 */
1273int ipa_add_flt_rule(struct ipa_ioc_add_flt_rule *rules);
1274
1275int ipa_del_flt_rule(struct ipa_ioc_del_flt_rule *hdls);
1276
1277int ipa_mdfy_flt_rule(struct ipa_ioc_mdfy_flt_rule *rules);
1278
1279int ipa_commit_flt(enum ipa_ip_type ip);
1280
1281int ipa_reset_flt(enum ipa_ip_type ip);
1282
1283/*
1284 * NAT
1285 */
1286int allocate_nat_device(struct ipa_ioc_nat_alloc_mem *mem);
1287
1288int ipa_nat_init_cmd(struct ipa_ioc_v4_nat_init *init);
1289
1290int ipa_nat_dma_cmd(struct ipa_ioc_nat_dma_cmd *dma);
1291
1292int ipa_nat_del_cmd(struct ipa_ioc_v4_nat_del *del);
1293
1294/*
1295 * Messaging
1296 */
1297int ipa_send_msg(struct ipa_msg_meta *meta, void *buff,
1298 ipa_msg_free_fn callback);
1299int ipa_register_pull_msg(struct ipa_msg_meta *meta, ipa_msg_pull_fn callback);
1300int ipa_deregister_pull_msg(struct ipa_msg_meta *meta);
1301
1302/*
1303 * Interface
1304 */
1305int ipa_register_intf(const char *name, const struct ipa_tx_intf *tx,
1306 const struct ipa_rx_intf *rx);
1307int ipa_register_intf_ext(const char *name, const struct ipa_tx_intf *tx,
1308 const struct ipa_rx_intf *rx,
1309 const struct ipa_ext_intf *ext);
1310int ipa_deregister_intf(const char *name);
1311
1312/*
1313 * Aggregation
1314 */
1315int ipa_set_aggr_mode(enum ipa_aggr_mode mode);
1316
1317int ipa_set_qcncm_ndp_sig(char sig[3]);
1318
1319int ipa_set_single_ndp_per_mbim(bool enable);
1320
1321/*
1322 * Data path
1323 */
1324int ipa_tx_dp(enum ipa_client_type dst, struct sk_buff *skb,
1325 struct ipa_tx_meta *metadata);
1326
1327/*
1328 * To transfer multiple data packets
1329 * While passing the data descriptor list, the anchor node
1330 * should be of type struct ipa_tx_data_desc not list_head
1331*/
1332int ipa_tx_dp_mul(enum ipa_client_type dst,
1333 struct ipa_tx_data_desc *data_desc);
1334
1335void ipa_free_skb(struct ipa_rx_data *);
1336int ipa_rx_poll(u32 clnt_hdl, int budget);
1337void ipa_recycle_wan_skb(struct sk_buff *skb);
1338
1339/*
1340 * System pipes
1341 */
1342int ipa_setup_sys_pipe(struct ipa_sys_connect_params *sys_in, u32 *clnt_hdl);
1343
1344int ipa_teardown_sys_pipe(u32 clnt_hdl);
1345
1346int ipa_connect_wdi_pipe(struct ipa_wdi_in_params *in,
1347 struct ipa_wdi_out_params *out);
1348int ipa_disconnect_wdi_pipe(u32 clnt_hdl);
1349int ipa_enable_wdi_pipe(u32 clnt_hdl);
1350int ipa_disable_wdi_pipe(u32 clnt_hdl);
1351int ipa_resume_wdi_pipe(u32 clnt_hdl);
1352int ipa_suspend_wdi_pipe(u32 clnt_hdl);
1353int ipa_get_wdi_stats(struct IpaHwStatsWDIInfoData_t *stats);
1354u16 ipa_get_smem_restr_bytes(void);
Skylar Changfcf36c22016-10-04 14:15:25 -07001355int ipa_broadcast_wdi_quota_reach_ind(uint32_t fid,
1356 uint64_t num_bytes);
1357
Amir Levy9659e592016-10-27 18:08:27 +03001358/*
1359 * To retrieve doorbell physical address of
1360 * wlan pipes
1361 */
1362int ipa_uc_wdi_get_dbpa(struct ipa_wdi_db_params *out);
1363
1364/*
1365 * To register uC ready callback if uC not ready
1366 * and also check uC readiness
1367 * if uC not ready only, register callback
1368 */
1369int ipa_uc_reg_rdyCB(struct ipa_wdi_uc_ready_params *param);
1370/*
1371 * To de-register uC ready callback
1372 */
1373int ipa_uc_dereg_rdyCB(void);
1374
1375int ipa_create_wdi_mapping(u32 num_buffers, struct ipa_wdi_buffer_info *info);
1376int ipa_release_wdi_mapping(u32 num_buffers, struct ipa_wdi_buffer_info *info);
1377
1378/*
1379 * Resource manager
1380 */
1381int ipa_rm_create_resource(struct ipa_rm_create_params *create_params);
1382
1383int ipa_rm_delete_resource(enum ipa_rm_resource_name resource_name);
1384
1385int ipa_rm_register(enum ipa_rm_resource_name resource_name,
1386 struct ipa_rm_register_params *reg_params);
1387
1388int ipa_rm_deregister(enum ipa_rm_resource_name resource_name,
1389 struct ipa_rm_register_params *reg_params);
1390
1391int ipa_rm_set_perf_profile(enum ipa_rm_resource_name resource_name,
1392 struct ipa_rm_perf_profile *profile);
1393
1394int ipa_rm_add_dependency(enum ipa_rm_resource_name resource_name,
1395 enum ipa_rm_resource_name depends_on_name);
1396
1397int ipa_rm_add_dependency_sync(enum ipa_rm_resource_name resource_name,
1398 enum ipa_rm_resource_name depends_on_name);
1399
1400int ipa_rm_delete_dependency(enum ipa_rm_resource_name resource_name,
1401 enum ipa_rm_resource_name depends_on_name);
1402
1403int ipa_rm_request_resource(enum ipa_rm_resource_name resource_name);
1404
1405int ipa_rm_release_resource(enum ipa_rm_resource_name resource_name);
1406
1407int ipa_rm_notify_completion(enum ipa_rm_event event,
1408 enum ipa_rm_resource_name resource_name);
1409
1410int ipa_rm_inactivity_timer_init(enum ipa_rm_resource_name resource_name,
1411 unsigned long msecs);
1412
1413int ipa_rm_inactivity_timer_destroy(enum ipa_rm_resource_name resource_name);
1414
1415int ipa_rm_inactivity_timer_request_resource(
1416 enum ipa_rm_resource_name resource_name);
1417
1418int ipa_rm_inactivity_timer_release_resource(
1419 enum ipa_rm_resource_name resource_name);
1420
1421/*
1422 * Tethering bridge (Rmnet / MBIM)
1423 */
1424int teth_bridge_init(struct teth_bridge_init_params *params);
1425
1426int teth_bridge_disconnect(enum ipa_client_type client);
1427
1428int teth_bridge_connect(struct teth_bridge_connect_params *connect_params);
1429
1430/*
1431 * Tethering client info
1432 */
1433void ipa_set_client(int index, enum ipacm_client_enum client, bool uplink);
1434
1435enum ipacm_client_enum ipa_get_client(int pipe_idx);
1436
1437bool ipa_get_client_uplink(int pipe_idx);
1438
1439/*
1440 * IPADMA
1441 */
1442int ipa_dma_init(void);
1443
1444int ipa_dma_enable(void);
1445
1446int ipa_dma_disable(void);
1447
1448int ipa_dma_sync_memcpy(u64 dest, u64 src, int len);
1449
1450int ipa_dma_async_memcpy(u64 dest, u64 src, int len,
1451 void (*user_cb)(void *user1), void *user_param);
1452
1453int ipa_dma_uc_memcpy(phys_addr_t dest, phys_addr_t src, int len);
1454
1455void ipa_dma_destroy(void);
1456
1457/*
1458 * mux id
1459 */
1460int ipa_write_qmap_id(struct ipa_ioc_write_qmapid *param_in);
1461
1462/*
1463 * interrupts
1464 */
1465int ipa_add_interrupt_handler(enum ipa_irq_type interrupt,
1466 ipa_irq_handler_t handler,
1467 bool deferred_flag,
1468 void *private_data);
1469
1470int ipa_remove_interrupt_handler(enum ipa_irq_type interrupt);
1471
1472int ipa_restore_suspend_handler(void);
1473
1474/*
1475 * Miscellaneous
1476 */
1477void ipa_bam_reg_dump(void);
1478
1479int ipa_get_ep_mapping(enum ipa_client_type client);
1480
1481bool ipa_is_ready(void);
1482
1483void ipa_proxy_clk_vote(void);
1484void ipa_proxy_clk_unvote(void);
1485
1486enum ipa_hw_type ipa_get_hw_type(void);
1487
1488bool ipa_is_client_handle_valid(u32 clnt_hdl);
1489
1490enum ipa_client_type ipa_get_client_mapping(int pipe_idx);
1491
1492enum ipa_rm_resource_name ipa_get_rm_resource_from_ep(int pipe_idx);
1493
1494bool ipa_get_modem_cfg_emb_pipe_flt(void);
1495
1496enum ipa_transport_type ipa_get_transport_type(void);
1497
1498struct device *ipa_get_dma_dev(void);
1499struct iommu_domain *ipa_get_smmu_domain(void);
1500
1501int ipa_disable_apps_wan_cons_deaggr(uint32_t agg_size, uint32_t agg_count);
1502
Amir Levy3be373c2017-03-05 16:31:30 +02001503const struct ipa_gsi_ep_config *ipa_get_gsi_ep_info
1504 (enum ipa_client_type client);
Amir Levy9659e592016-10-27 18:08:27 +03001505
1506int ipa_stop_gsi_channel(u32 clnt_hdl);
1507
1508typedef void (*ipa_ready_cb)(void *user_data);
1509
1510/**
1511* ipa_register_ipa_ready_cb() - register a callback to be invoked
1512* when IPA core driver initialization is complete.
1513*
1514* @ipa_ready_cb: CB to be triggered.
1515* @user_data: Data to be sent to the originator of the CB.
1516*
1517* Note: This function is expected to be utilized when ipa_is_ready
1518* function returns false.
1519* An IPA client may also use this function directly rather than
1520* calling ipa_is_ready beforehand, as if this API returns -EEXIST,
1521* this means IPA initialization is complete (and no callback will
1522* be triggered).
1523* When the callback is triggered, the client MUST perform his
1524* operations in a different context.
1525*
1526* The function will return 0 on success, -ENOMEM on memory issues and
1527* -EEXIST if IPA initialization is complete already.
1528*/
1529int ipa_register_ipa_ready_cb(void (*ipa_ready_cb)(void *user_data),
1530 void *user_data);
1531
1532#else /* (CONFIG_IPA || CONFIG_IPA3) */
1533
1534/*
1535 * Connect / Disconnect
1536 */
1537static inline int ipa_connect(const struct ipa_connect_params *in,
1538 struct ipa_sps_params *sps, u32 *clnt_hdl)
1539{
1540 return -EPERM;
1541}
1542
1543static inline int ipa_disconnect(u32 clnt_hdl)
1544{
1545 return -EPERM;
1546}
1547
1548/*
1549 * Resume / Suspend
1550 */
1551static inline int ipa_reset_endpoint(u32 clnt_hdl)
1552{
1553 return -EPERM;
1554}
1555
1556/*
1557 * Remove ep delay
1558 */
1559static inline int ipa_clear_endpoint_delay(u32 clnt_hdl)
1560{
1561 return -EPERM;
1562}
1563
1564/*
1565 * Disable ep
1566 */
1567static inline int ipa_disable_endpoint(u32 clnt_hdl)
1568{
1569 return -EPERM;
1570}
1571
1572/*
1573 * Configuration
1574 */
1575static inline int ipa_cfg_ep(u32 clnt_hdl,
1576 const struct ipa_ep_cfg *ipa_ep_cfg)
1577{
1578 return -EPERM;
1579}
1580
1581static inline int ipa_cfg_ep_nat(u32 clnt_hdl,
1582 const struct ipa_ep_cfg_nat *ipa_ep_cfg)
1583{
1584 return -EPERM;
1585}
1586
Amir Levydc65f4c2017-07-06 09:49:50 +03001587static inline int ipa_cfg_ep_conn_track(u32 clnt_hdl,
1588 const struct ipa_ep_cfg_conn_track *ep_conn_track)
1589{
1590 return -EPERM
1591}
1592
Amir Levy9659e592016-10-27 18:08:27 +03001593static inline int ipa_cfg_ep_hdr(u32 clnt_hdl,
1594 const struct ipa_ep_cfg_hdr *ipa_ep_cfg)
1595{
1596 return -EPERM;
1597}
1598
1599static inline int ipa_cfg_ep_hdr_ext(u32 clnt_hdl,
1600 const struct ipa_ep_cfg_hdr_ext *ipa_ep_cfg)
1601{
1602 return -EPERM;
1603}
1604
1605static inline int ipa_cfg_ep_mode(u32 clnt_hdl,
1606 const struct ipa_ep_cfg_mode *ipa_ep_cfg)
1607{
1608 return -EPERM;
1609}
1610
1611static inline int ipa_cfg_ep_aggr(u32 clnt_hdl,
1612 const struct ipa_ep_cfg_aggr *ipa_ep_cfg)
1613{
1614 return -EPERM;
1615}
1616
1617static inline int ipa_cfg_ep_deaggr(u32 clnt_hdl,
1618 const struct ipa_ep_cfg_deaggr *ipa_ep_cfg)
1619{
1620 return -EPERM;
1621}
1622
1623static inline int ipa_cfg_ep_route(u32 clnt_hdl,
1624 const struct ipa_ep_cfg_route *ipa_ep_cfg)
1625{
1626 return -EPERM;
1627}
1628
1629static inline int ipa_cfg_ep_holb(u32 clnt_hdl,
1630 const struct ipa_ep_cfg_holb *ipa_ep_cfg)
1631{
1632 return -EPERM;
1633}
1634
1635static inline int ipa_cfg_ep_cfg(u32 clnt_hdl,
1636 const struct ipa_ep_cfg_cfg *ipa_ep_cfg)
1637{
1638 return -EPERM;
1639}
1640
1641static inline int ipa_cfg_ep_metadata_mask(u32 clnt_hdl,
1642 const struct ipa_ep_cfg_metadata_mask *ipa_ep_cfg)
1643{
1644 return -EPERM;
1645}
1646
1647static inline int ipa_cfg_ep_ctrl(u32 clnt_hdl,
1648 const struct ipa_ep_cfg_ctrl *ep_ctrl)
1649{
1650 return -EPERM;
1651}
1652
1653/*
1654 * Header removal / addition
1655 */
1656static inline int ipa_add_hdr(struct ipa_ioc_add_hdr *hdrs)
1657{
1658 return -EPERM;
1659}
1660
1661static inline int ipa_del_hdr(struct ipa_ioc_del_hdr *hdls)
1662{
1663 return -EPERM;
1664}
1665
1666static inline int ipa_commit_hdr(void)
1667{
1668 return -EPERM;
1669}
1670
1671static inline int ipa_reset_hdr(void)
1672{
1673 return -EPERM;
1674}
1675
1676static inline int ipa_get_hdr(struct ipa_ioc_get_hdr *lookup)
1677{
1678 return -EPERM;
1679}
1680
1681static inline int ipa_put_hdr(u32 hdr_hdl)
1682{
1683 return -EPERM;
1684}
1685
1686static inline int ipa_copy_hdr(struct ipa_ioc_copy_hdr *copy)
1687{
1688 return -EPERM;
1689}
1690
1691/*
1692 * Header Processing Context
1693 */
1694static inline int ipa_add_hdr_proc_ctx(
1695 struct ipa_ioc_add_hdr_proc_ctx *proc_ctxs)
1696{
1697 return -EPERM;
1698}
1699
1700static inline int ipa_del_hdr_proc_ctx(struct ipa_ioc_del_hdr_proc_ctx *hdls)
1701{
1702 return -EPERM;
1703}
1704/*
1705 * Routing
1706 */
1707static inline int ipa_add_rt_rule(struct ipa_ioc_add_rt_rule *rules)
1708{
1709 return -EPERM;
1710}
1711
1712static inline int ipa_del_rt_rule(struct ipa_ioc_del_rt_rule *hdls)
1713{
1714 return -EPERM;
1715}
1716
1717static inline int ipa_commit_rt(enum ipa_ip_type ip)
1718{
1719 return -EPERM;
1720}
1721
1722static inline int ipa_reset_rt(enum ipa_ip_type ip)
1723{
1724 return -EPERM;
1725}
1726
1727static inline int ipa_get_rt_tbl(struct ipa_ioc_get_rt_tbl *lookup)
1728{
1729 return -EPERM;
1730}
1731
1732static inline int ipa_put_rt_tbl(u32 rt_tbl_hdl)
1733{
1734 return -EPERM;
1735}
1736
1737static inline int ipa_query_rt_index(struct ipa_ioc_get_rt_tbl_indx *in)
1738{
1739 return -EPERM;
1740}
1741
1742static inline int ipa_mdfy_rt_rule(struct ipa_ioc_mdfy_rt_rule *rules)
1743{
1744 return -EPERM;
1745}
1746
1747/*
1748 * Filtering
1749 */
1750static inline int ipa_add_flt_rule(struct ipa_ioc_add_flt_rule *rules)
1751{
1752 return -EPERM;
1753}
1754
1755static inline int ipa_del_flt_rule(struct ipa_ioc_del_flt_rule *hdls)
1756{
1757 return -EPERM;
1758}
1759
1760static inline int ipa_mdfy_flt_rule(struct ipa_ioc_mdfy_flt_rule *rules)
1761{
1762 return -EPERM;
1763}
1764
1765static inline int ipa_commit_flt(enum ipa_ip_type ip)
1766{
1767 return -EPERM;
1768}
1769
1770static inline int ipa_reset_flt(enum ipa_ip_type ip)
1771{
1772 return -EPERM;
1773}
1774
1775/*
1776 * NAT
1777 */
1778static inline int allocate_nat_device(struct ipa_ioc_nat_alloc_mem *mem)
1779{
1780 return -EPERM;
1781}
1782
1783
1784static inline int ipa_nat_init_cmd(struct ipa_ioc_v4_nat_init *init)
1785{
1786 return -EPERM;
1787}
1788
1789
1790static inline int ipa_nat_dma_cmd(struct ipa_ioc_nat_dma_cmd *dma)
1791{
1792 return -EPERM;
1793}
1794
1795
1796static inline int ipa_nat_del_cmd(struct ipa_ioc_v4_nat_del *del)
1797{
1798 return -EPERM;
1799}
1800
1801/*
1802 * Messaging
1803 */
1804static inline int ipa_send_msg(struct ipa_msg_meta *meta, void *buff,
1805 ipa_msg_free_fn callback)
1806{
1807 return -EPERM;
1808}
1809
1810static inline int ipa_register_pull_msg(struct ipa_msg_meta *meta,
1811 ipa_msg_pull_fn callback)
1812{
1813 return -EPERM;
1814}
1815
1816static inline int ipa_deregister_pull_msg(struct ipa_msg_meta *meta)
1817{
1818 return -EPERM;
1819}
1820
1821/*
1822 * Interface
1823 */
1824static inline int ipa_register_intf(const char *name,
1825 const struct ipa_tx_intf *tx,
1826 const struct ipa_rx_intf *rx)
1827{
1828 return -EPERM;
1829}
1830
1831static inline int ipa_register_intf_ext(const char *name,
1832 const struct ipa_tx_intf *tx,
1833 const struct ipa_rx_intf *rx,
1834 const struct ipa_ext_intf *ext)
1835{
1836 return -EPERM;
1837}
1838
1839static inline int ipa_deregister_intf(const char *name)
1840{
1841 return -EPERM;
1842}
1843
1844/*
1845 * Aggregation
1846 */
1847static inline int ipa_set_aggr_mode(enum ipa_aggr_mode mode)
1848{
1849 return -EPERM;
1850}
1851
1852static inline int ipa_set_qcncm_ndp_sig(char sig[3])
1853{
1854 return -EPERM;
1855}
1856
1857static inline int ipa_set_single_ndp_per_mbim(bool enable)
1858{
1859 return -EPERM;
1860}
1861
1862/*
1863 * Data path
1864 */
1865static inline int ipa_tx_dp(enum ipa_client_type dst, struct sk_buff *skb,
1866 struct ipa_tx_meta *metadata)
1867{
1868 return -EPERM;
1869}
1870
1871/*
1872 * To transfer multiple data packets
1873 */
1874static inline int ipa_tx_dp_mul(
1875 enum ipa_client_type dst,
1876 struct ipa_tx_data_desc *data_desc)
1877{
1878 return -EPERM;
1879}
1880
1881static inline void ipa_free_skb(struct ipa_rx_data *rx_in)
1882{
1883}
1884
1885static inline int ipa_rx_poll(u32 clnt_hdl, int budget)
1886{
1887 return -EPERM;
1888}
1889
1890static inline void ipa_recycle_wan_skb(struct sk_buff *skb)
1891{
1892}
1893
1894/*
1895 * System pipes
1896 */
1897static inline u16 ipa_get_smem_restr_bytes(void)
1898{
1899 return -EPERM;
1900}
1901
1902static inline int ipa_setup_sys_pipe(struct ipa_sys_connect_params *sys_in,
1903 u32 *clnt_hdl)
1904{
1905 return -EPERM;
1906}
1907
1908static inline int ipa_teardown_sys_pipe(u32 clnt_hdl)
1909{
1910 return -EPERM;
1911}
1912
1913static inline int ipa_connect_wdi_pipe(struct ipa_wdi_in_params *in,
1914 struct ipa_wdi_out_params *out)
1915{
1916 return -EPERM;
1917}
1918
1919static inline int ipa_disconnect_wdi_pipe(u32 clnt_hdl)
1920{
1921 return -EPERM;
1922}
1923
1924static inline int ipa_enable_wdi_pipe(u32 clnt_hdl)
1925{
1926 return -EPERM;
1927}
1928
1929static inline int ipa_disable_wdi_pipe(u32 clnt_hdl)
1930{
1931 return -EPERM;
1932}
1933
1934static inline int ipa_resume_wdi_pipe(u32 clnt_hdl)
1935{
1936 return -EPERM;
1937}
1938
1939static inline int ipa_suspend_wdi_pipe(u32 clnt_hdl)
1940{
1941 return -EPERM;
1942}
1943
Skylar Changfcf36c22016-10-04 14:15:25 -07001944static inline int ipa_broadcast_wdi_quota_reach_ind(uint32_t fid,
1945 uint64_t num_bytes)
1946{
1947 return -EPERM;
1948}
1949
Amir Levy9659e592016-10-27 18:08:27 +03001950static inline int ipa_uc_wdi_get_dbpa(
1951 struct ipa_wdi_db_params *out)
1952{
1953 return -EPERM;
1954}
1955
1956static inline int ipa_uc_reg_rdyCB(
1957 struct ipa_wdi_uc_ready_params *param)
1958{
1959 return -EPERM;
1960}
1961
1962static inline int ipa_uc_dereg_rdyCB(void)
1963{
1964 return -EPERM;
1965}
1966
1967
1968/*
1969 * Resource manager
1970 */
1971static inline int ipa_rm_create_resource(
1972 struct ipa_rm_create_params *create_params)
1973{
1974 return -EPERM;
1975}
1976
1977static inline int ipa_rm_delete_resource(
1978 enum ipa_rm_resource_name resource_name)
1979{
1980 return -EPERM;
1981}
1982
1983static inline int ipa_rm_register(enum ipa_rm_resource_name resource_name,
1984 struct ipa_rm_register_params *reg_params)
1985{
1986 return -EPERM;
1987}
1988
1989static inline int ipa_rm_set_perf_profile(
1990 enum ipa_rm_resource_name resource_name,
1991 struct ipa_rm_perf_profile *profile)
1992{
1993 return -EPERM;
1994}
1995
1996static inline int ipa_rm_deregister(enum ipa_rm_resource_name resource_name,
1997 struct ipa_rm_register_params *reg_params)
1998{
1999 return -EPERM;
2000}
2001
2002static inline int ipa_rm_add_dependency(
2003 enum ipa_rm_resource_name resource_name,
2004 enum ipa_rm_resource_name depends_on_name)
2005{
2006 return -EPERM;
2007}
2008
2009static inline int ipa_rm_add_dependency_sync(
2010 enum ipa_rm_resource_name resource_name,
2011 enum ipa_rm_resource_name depends_on_name)
2012{
2013 return -EPERM;
2014}
2015
2016static inline int ipa_rm_delete_dependency(
2017 enum ipa_rm_resource_name resource_name,
2018 enum ipa_rm_resource_name depends_on_name)
2019{
2020 return -EPERM;
2021}
2022
2023static inline int ipa_rm_request_resource(
2024 enum ipa_rm_resource_name resource_name)
2025{
2026 return -EPERM;
2027}
2028
2029static inline int ipa_rm_release_resource(
2030 enum ipa_rm_resource_name resource_name)
2031{
2032 return -EPERM;
2033}
2034
2035static inline int ipa_rm_notify_completion(enum ipa_rm_event event,
2036 enum ipa_rm_resource_name resource_name)
2037{
2038 return -EPERM;
2039}
2040
2041static inline int ipa_rm_inactivity_timer_init(
2042 enum ipa_rm_resource_name resource_name,
2043 unsigned long msecs)
2044{
2045 return -EPERM;
2046}
2047
2048static inline int ipa_rm_inactivity_timer_destroy(
2049 enum ipa_rm_resource_name resource_name)
2050{
2051 return -EPERM;
2052}
2053
2054static inline int ipa_rm_inactivity_timer_request_resource(
2055 enum ipa_rm_resource_name resource_name)
2056{
2057 return -EPERM;
2058}
2059
2060static inline int ipa_rm_inactivity_timer_release_resource(
2061 enum ipa_rm_resource_name resource_name)
2062{
2063 return -EPERM;
2064}
2065
2066/*
2067 * Tethering bridge (Rmnet / MBIM)
2068 */
2069static inline int teth_bridge_init(struct teth_bridge_init_params *params)
2070{
2071 return -EPERM;
2072}
2073
2074static inline int teth_bridge_disconnect(enum ipa_client_type client)
2075{
2076 return -EPERM;
2077}
2078
2079static inline int teth_bridge_connect(struct teth_bridge_connect_params
2080 *connect_params)
2081{
2082 return -EPERM;
2083}
2084
2085/*
2086 * Tethering client info
2087 */
2088static inline void ipa_set_client(int index, enum ipacm_client_enum client,
2089 bool uplink)
2090{
2091}
2092
2093static inline enum ipacm_client_enum ipa_get_client(int pipe_idx)
2094{
2095 return -EPERM;
2096}
2097
2098static inline bool ipa_get_client_uplink(int pipe_idx)
2099{
2100 return -EPERM;
2101}
2102
2103/*
2104 * IPADMA
2105 */
2106static inline int ipa_dma_init(void)
2107{
2108 return -EPERM;
2109}
2110
2111static inline int ipa_dma_enable(void)
2112{
2113 return -EPERM;
2114}
2115
2116static inline int ipa_dma_disable(void)
2117{
2118 return -EPERM;
2119}
2120
2121static inline int ipa_dma_sync_memcpy(phys_addr_t dest, phys_addr_t src
2122 , int len)
2123{
2124 return -EPERM;
2125}
2126
2127static inline int ipa_dma_async_memcpy(phys_addr_t dest, phys_addr_t src
2128 , int len, void (*user_cb)(void *user1),
2129 void *user_param)
2130{
2131 return -EPERM;
2132}
2133
2134static inline int ipa_dma_uc_memcpy(phys_addr_t dest, phys_addr_t src, int len)
2135{
2136 return -EPERM;
2137}
2138
2139static inline void ipa_dma_destroy(void)
2140{
2141}
2142
2143/*
2144 * mux id
2145 */
2146static inline int ipa_write_qmap_id(struct ipa_ioc_write_qmapid *param_in)
2147{
2148 return -EPERM;
2149}
2150
2151/*
2152 * interrupts
2153 */
2154static inline int ipa_add_interrupt_handler(enum ipa_irq_type interrupt,
2155 ipa_irq_handler_t handler,
2156 bool deferred_flag,
2157 void *private_data)
2158{
2159 return -EPERM;
2160}
2161
2162static inline int ipa_remove_interrupt_handler(enum ipa_irq_type interrupt)
2163{
2164 return -EPERM;
2165}
2166
2167static inline int ipa_restore_suspend_handler(void)
2168{
2169 return -EPERM;
2170}
2171
2172/*
2173 * Miscellaneous
2174 */
2175static inline void ipa_bam_reg_dump(void)
2176{
2177}
2178
2179static inline int ipa_get_wdi_stats(struct IpaHwStatsWDIInfoData_t *stats)
2180{
2181 return -EPERM;
2182}
2183
2184static inline int ipa_get_ep_mapping(enum ipa_client_type client)
2185{
2186 return -EPERM;
2187}
2188
2189static inline bool ipa_is_ready(void)
2190{
2191 return false;
2192}
2193
2194static inline void ipa_proxy_clk_vote(void)
2195{
2196}
2197
2198static inline void ipa_proxy_clk_unvote(void)
2199{
2200}
2201
2202static inline enum ipa_hw_type ipa_get_hw_type(void)
2203{
2204 return IPA_HW_None;
2205}
2206
2207static inline bool ipa_is_client_handle_valid(u32 clnt_hdl)
2208{
2209 return -EINVAL;
2210}
2211
2212static inline enum ipa_client_type ipa_get_client_mapping(int pipe_idx)
2213{
2214 return -EINVAL;
2215}
2216
2217static inline enum ipa_rm_resource_name ipa_get_rm_resource_from_ep(
2218 int pipe_idx)
2219{
2220 return -EFAULT;
2221}
2222
2223static inline bool ipa_get_modem_cfg_emb_pipe_flt(void)
2224{
2225 return -EINVAL;
2226}
2227
2228static inline enum ipa_transport_type ipa_get_transport_type(void)
2229{
2230 return -EFAULT;
2231}
2232
2233static inline struct device *ipa_get_dma_dev(void)
2234{
2235 return NULL;
2236}
2237
2238static inline struct iommu_domain *ipa_get_smmu_domain(void)
2239{
2240 return NULL;
2241}
2242
2243static inline int ipa_create_wdi_mapping(u32 num_buffers,
2244 struct ipa_wdi_buffer_info *info)
2245{
2246 return -EINVAL;
2247}
2248
2249static inline int ipa_release_wdi_mapping(u32 num_buffers,
2250 struct ipa_wdi_buffer_info *info)
2251{
2252 return -EINVAL;
2253}
2254
2255static inline int ipa_disable_apps_wan_cons_deaggr(void)
2256{
2257 return -EINVAL;
2258}
2259
Amir Levy3be373c2017-03-05 16:31:30 +02002260static inline const struct ipa_gsi_ep_config *ipa_get_gsi_ep_info
2261 (enum ipa_client_type client)
Amir Levy9659e592016-10-27 18:08:27 +03002262{
2263 return NULL;
2264}
2265
2266static inline int ipa_stop_gsi_channel(u32 clnt_hdl)
2267{
2268 return -EPERM;
2269}
2270
2271static inline int ipa_register_ipa_ready_cb(
2272 void (*ipa_ready_cb)(void *user_data),
2273 void *user_data)
2274{
2275 return -EPERM;
2276}
2277
2278#endif /* (CONFIG_IPA || CONFIG_IPA3) */
2279
2280#endif /* _IPA_H_ */