blob: fe7579b234aac756d6def0f11148dc76c1f60d5d [file] [log] [blame]
Gabriel Birenf3262f92022-07-15 23:25:39 +00001/*
2 * Copyright (C) 2022 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include <android-base/logging.h>
18#include <utils/SystemClock.h>
19
20#include "aidl_struct_util.h"
21
22namespace aidl {
23namespace android {
24namespace hardware {
25namespace wifi {
26namespace aidl_struct_util {
27
28WifiChannelWidthInMhz convertLegacyWifiChannelWidthToAidl(legacy_hal::wifi_channel_width type);
29
30std::string safeConvertChar(const char* str, size_t max_len) {
31 const char* c = str;
32 size_t size = 0;
33 while (*c && (unsigned char)*c < 128 && size < max_len) {
34 ++size;
35 ++c;
36 }
37 return std::string(str, size);
38}
39
40inline std::vector<int32_t> uintToIntVec(const std::vector<uint32_t>& in) {
41 return std::vector<int32_t>(in.begin(), in.end());
42}
43
44IWifiChip::ChipCapabilityMask convertLegacyLoggerFeatureToAidlChipCapability(uint32_t feature) {
45 switch (feature) {
46 case legacy_hal::WIFI_LOGGER_MEMORY_DUMP_SUPPORTED:
47 return IWifiChip::ChipCapabilityMask::DEBUG_MEMORY_FIRMWARE_DUMP;
48 case legacy_hal::WIFI_LOGGER_DRIVER_DUMP_SUPPORTED:
49 return IWifiChip::ChipCapabilityMask::DEBUG_MEMORY_DRIVER_DUMP;
50 case legacy_hal::WIFI_LOGGER_CONNECT_EVENT_SUPPORTED:
51 return IWifiChip::ChipCapabilityMask::DEBUG_RING_BUFFER_CONNECT_EVENT;
52 case legacy_hal::WIFI_LOGGER_POWER_EVENT_SUPPORTED:
53 return IWifiChip::ChipCapabilityMask::DEBUG_RING_BUFFER_POWER_EVENT;
54 case legacy_hal::WIFI_LOGGER_WAKE_LOCK_SUPPORTED:
55 return IWifiChip::ChipCapabilityMask::DEBUG_RING_BUFFER_WAKELOCK_EVENT;
56 };
57 CHECK(false) << "Unknown legacy feature: " << feature;
58 return {};
59}
60
61IWifiStaIface::StaIfaceCapabilityMask convertLegacyLoggerFeatureToAidlStaIfaceCapability(
62 uint32_t feature) {
63 switch (feature) {
64 case legacy_hal::WIFI_LOGGER_PACKET_FATE_SUPPORTED:
65 return IWifiStaIface::StaIfaceCapabilityMask::DEBUG_PACKET_FATE;
66 };
67 CHECK(false) << "Unknown legacy feature: " << feature;
68 return {};
69}
70
71IWifiChip::ChipCapabilityMask convertLegacyFeatureToAidlChipCapability(uint64_t feature) {
72 switch (feature) {
73 case WIFI_FEATURE_SET_TX_POWER_LIMIT:
74 return IWifiChip::ChipCapabilityMask::SET_TX_POWER_LIMIT;
75 case WIFI_FEATURE_USE_BODY_HEAD_SAR:
76 return IWifiChip::ChipCapabilityMask::USE_BODY_HEAD_SAR;
77 case WIFI_FEATURE_D2D_RTT:
78 return IWifiChip::ChipCapabilityMask::D2D_RTT;
79 case WIFI_FEATURE_D2AP_RTT:
80 return IWifiChip::ChipCapabilityMask::D2AP_RTT;
81 case WIFI_FEATURE_INFRA_60G:
82 return IWifiChip::ChipCapabilityMask::WIGIG;
83 case WIFI_FEATURE_SET_LATENCY_MODE:
84 return IWifiChip::ChipCapabilityMask::SET_LATENCY_MODE;
85 case WIFI_FEATURE_P2P_RAND_MAC:
86 return IWifiChip::ChipCapabilityMask::P2P_RAND_MAC;
87 };
88 CHECK(false) << "Unknown legacy feature: " << feature;
89 return {};
90}
91
92IWifiStaIface::StaIfaceCapabilityMask convertLegacyFeatureToAidlStaIfaceCapability(
93 uint64_t feature) {
94 switch (feature) {
95 case WIFI_FEATURE_GSCAN:
96 return IWifiStaIface::StaIfaceCapabilityMask::BACKGROUND_SCAN;
97 case WIFI_FEATURE_LINK_LAYER_STATS:
98 return IWifiStaIface::StaIfaceCapabilityMask::LINK_LAYER_STATS;
99 case WIFI_FEATURE_RSSI_MONITOR:
100 return IWifiStaIface::StaIfaceCapabilityMask::RSSI_MONITOR;
101 case WIFI_FEATURE_CONTROL_ROAMING:
102 return IWifiStaIface::StaIfaceCapabilityMask::CONTROL_ROAMING;
103 case WIFI_FEATURE_IE_WHITELIST:
104 return IWifiStaIface::StaIfaceCapabilityMask::PROBE_IE_ALLOWLIST;
105 case WIFI_FEATURE_SCAN_RAND:
106 return IWifiStaIface::StaIfaceCapabilityMask::SCAN_RAND;
107 case WIFI_FEATURE_INFRA_5G:
108 return IWifiStaIface::StaIfaceCapabilityMask::STA_5G;
109 case WIFI_FEATURE_HOTSPOT:
110 return IWifiStaIface::StaIfaceCapabilityMask::HOTSPOT;
111 case WIFI_FEATURE_PNO:
112 return IWifiStaIface::StaIfaceCapabilityMask::PNO;
113 case WIFI_FEATURE_TDLS:
114 return IWifiStaIface::StaIfaceCapabilityMask::TDLS;
115 case WIFI_FEATURE_TDLS_OFFCHANNEL:
116 return IWifiStaIface::StaIfaceCapabilityMask::TDLS_OFFCHANNEL;
117 case WIFI_FEATURE_CONFIG_NDO:
118 return IWifiStaIface::StaIfaceCapabilityMask::ND_OFFLOAD;
119 case WIFI_FEATURE_MKEEP_ALIVE:
120 return IWifiStaIface::StaIfaceCapabilityMask::KEEP_ALIVE;
121 };
122 CHECK(false) << "Unknown legacy feature: " << feature;
123 return {};
124}
125
126bool convertLegacyFeaturesToAidlChipCapabilities(uint64_t legacy_feature_set,
127 uint32_t legacy_logger_feature_set,
128 uint32_t* aidl_caps) {
129 if (!aidl_caps) {
130 return false;
131 }
132 *aidl_caps = {};
133 for (const auto feature : {legacy_hal::WIFI_LOGGER_MEMORY_DUMP_SUPPORTED,
134 legacy_hal::WIFI_LOGGER_DRIVER_DUMP_SUPPORTED,
135 legacy_hal::WIFI_LOGGER_CONNECT_EVENT_SUPPORTED,
136 legacy_hal::WIFI_LOGGER_POWER_EVENT_SUPPORTED,
137 legacy_hal::WIFI_LOGGER_WAKE_LOCK_SUPPORTED}) {
138 if (feature & legacy_logger_feature_set) {
139 *aidl_caps |=
140 static_cast<uint32_t>(convertLegacyLoggerFeatureToAidlChipCapability(feature));
141 }
142 }
143 std::vector<uint64_t> features = {WIFI_FEATURE_SET_TX_POWER_LIMIT,
144 WIFI_FEATURE_USE_BODY_HEAD_SAR,
145 WIFI_FEATURE_D2D_RTT,
146 WIFI_FEATURE_D2AP_RTT,
147 WIFI_FEATURE_INFRA_60G,
148 WIFI_FEATURE_SET_LATENCY_MODE,
149 WIFI_FEATURE_P2P_RAND_MAC};
150 for (const auto feature : features) {
151 if (feature & legacy_feature_set) {
152 *aidl_caps |= static_cast<uint32_t>(convertLegacyFeatureToAidlChipCapability(feature));
153 }
154 }
155
156 // There are no flags for these 3 in the legacy feature set. Adding them to
157 // the set because all the current devices support it.
158 *aidl_caps |=
159 static_cast<uint32_t>(IWifiChip::ChipCapabilityMask::DEBUG_RING_BUFFER_VENDOR_DATA);
160 *aidl_caps |=
161 static_cast<uint32_t>(IWifiChip::ChipCapabilityMask::DEBUG_HOST_WAKE_REASON_STATS);
162 *aidl_caps |= static_cast<uint32_t>(IWifiChip::ChipCapabilityMask::DEBUG_ERROR_ALERTS);
163 return true;
164}
165
166WifiDebugRingBufferFlags convertLegacyDebugRingBufferFlagsToAidl(uint32_t flag) {
167 switch (flag) {
168 case WIFI_RING_BUFFER_FLAG_HAS_BINARY_ENTRIES:
169 return WifiDebugRingBufferFlags::HAS_BINARY_ENTRIES;
170 case WIFI_RING_BUFFER_FLAG_HAS_ASCII_ENTRIES:
171 return WifiDebugRingBufferFlags::HAS_ASCII_ENTRIES;
172 };
173 CHECK(false) << "Unknown legacy flag: " << flag;
174 return {};
175}
176
177bool convertLegacyDebugRingBufferStatusToAidl(
178 const legacy_hal::wifi_ring_buffer_status& legacy_status,
179 WifiDebugRingBufferStatus* aidl_status) {
180 if (!aidl_status) {
181 return false;
182 }
183 *aidl_status = {};
184 aidl_status->ringName = safeConvertChar(reinterpret_cast<const char*>(legacy_status.name),
185 sizeof(legacy_status.name));
186 aidl_status->flags = 0;
187 for (const auto flag :
188 {WIFI_RING_BUFFER_FLAG_HAS_BINARY_ENTRIES, WIFI_RING_BUFFER_FLAG_HAS_ASCII_ENTRIES}) {
189 if (flag & legacy_status.flags) {
190 aidl_status->flags |= static_cast<std::underlying_type<WifiDebugRingBufferFlags>::type>(
191 convertLegacyDebugRingBufferFlagsToAidl(flag));
192 }
193 }
194 aidl_status->ringId = legacy_status.ring_id;
195 aidl_status->sizeInBytes = legacy_status.ring_buffer_byte_size;
196 // Calculate free size of the ring the buffer. We don't need to send the
197 // exact read/write pointers that were there in the legacy HAL interface.
198 if (legacy_status.written_bytes >= legacy_status.read_bytes) {
199 aidl_status->freeSizeInBytes = legacy_status.ring_buffer_byte_size -
200 (legacy_status.written_bytes - legacy_status.read_bytes);
201 } else {
202 aidl_status->freeSizeInBytes = legacy_status.read_bytes - legacy_status.written_bytes;
203 }
204 aidl_status->verboseLevel = legacy_status.verbose_level;
205 return true;
206}
207
208bool convertLegacyVectorOfDebugRingBufferStatusToAidl(
209 const std::vector<legacy_hal::wifi_ring_buffer_status>& legacy_status_vec,
210 std::vector<WifiDebugRingBufferStatus>* aidl_status_vec) {
211 if (!aidl_status_vec) {
212 return false;
213 }
214 *aidl_status_vec = {};
215 for (const auto& legacy_status : legacy_status_vec) {
216 WifiDebugRingBufferStatus aidl_status;
217 if (!convertLegacyDebugRingBufferStatusToAidl(legacy_status, &aidl_status)) {
218 return false;
219 }
220 aidl_status_vec->push_back(aidl_status);
221 }
222 return true;
223}
224
225bool convertLegacyWakeReasonStatsToAidl(const legacy_hal::WakeReasonStats& legacy_stats,
226 WifiDebugHostWakeReasonStats* aidl_stats) {
227 if (!aidl_stats) {
228 return false;
229 }
230 *aidl_stats = {};
231 aidl_stats->totalCmdEventWakeCnt = legacy_stats.wake_reason_cnt.total_cmd_event_wake;
232 aidl_stats->cmdEventWakeCntPerType = uintToIntVec(legacy_stats.cmd_event_wake_cnt);
233 aidl_stats->totalDriverFwLocalWakeCnt = legacy_stats.wake_reason_cnt.total_driver_fw_local_wake;
234 aidl_stats->driverFwLocalWakeCntPerType = uintToIntVec(legacy_stats.driver_fw_local_wake_cnt);
235 aidl_stats->totalRxPacketWakeCnt = legacy_stats.wake_reason_cnt.total_rx_data_wake;
236 aidl_stats->rxPktWakeDetails.rxUnicastCnt =
237 legacy_stats.wake_reason_cnt.rx_wake_details.rx_unicast_cnt;
238 aidl_stats->rxPktWakeDetails.rxMulticastCnt =
239 legacy_stats.wake_reason_cnt.rx_wake_details.rx_multicast_cnt;
240 aidl_stats->rxPktWakeDetails.rxBroadcastCnt =
241 legacy_stats.wake_reason_cnt.rx_wake_details.rx_broadcast_cnt;
242 aidl_stats->rxMulticastPkWakeDetails.ipv4RxMulticastAddrCnt =
243 legacy_stats.wake_reason_cnt.rx_multicast_wake_pkt_info.ipv4_rx_multicast_addr_cnt;
244 aidl_stats->rxMulticastPkWakeDetails.ipv6RxMulticastAddrCnt =
245 legacy_stats.wake_reason_cnt.rx_multicast_wake_pkt_info.ipv6_rx_multicast_addr_cnt;
246 aidl_stats->rxMulticastPkWakeDetails.otherRxMulticastAddrCnt =
247 legacy_stats.wake_reason_cnt.rx_multicast_wake_pkt_info.other_rx_multicast_addr_cnt;
248 aidl_stats->rxIcmpPkWakeDetails.icmpPkt =
249 legacy_stats.wake_reason_cnt.rx_wake_pkt_classification_info.icmp_pkt;
250 aidl_stats->rxIcmpPkWakeDetails.icmp6Pkt =
251 legacy_stats.wake_reason_cnt.rx_wake_pkt_classification_info.icmp6_pkt;
252 aidl_stats->rxIcmpPkWakeDetails.icmp6Ra =
253 legacy_stats.wake_reason_cnt.rx_wake_pkt_classification_info.icmp6_ra;
254 aidl_stats->rxIcmpPkWakeDetails.icmp6Na =
255 legacy_stats.wake_reason_cnt.rx_wake_pkt_classification_info.icmp6_na;
256 aidl_stats->rxIcmpPkWakeDetails.icmp6Ns =
257 legacy_stats.wake_reason_cnt.rx_wake_pkt_classification_info.icmp6_ns;
258 return true;
259}
260
261legacy_hal::wifi_power_scenario convertAidlTxPowerScenarioToLegacy(
262 IWifiChip::TxPowerScenario aidl_scenario) {
263 switch (aidl_scenario) {
264 case IWifiChip::TxPowerScenario::VOICE_CALL:
265 return legacy_hal::WIFI_POWER_SCENARIO_VOICE_CALL;
266 case IWifiChip::TxPowerScenario::ON_HEAD_CELL_OFF:
267 return legacy_hal::WIFI_POWER_SCENARIO_ON_HEAD_CELL_OFF;
268 case IWifiChip::TxPowerScenario::ON_HEAD_CELL_ON:
269 return legacy_hal::WIFI_POWER_SCENARIO_ON_HEAD_CELL_ON;
270 case IWifiChip::TxPowerScenario::ON_BODY_CELL_OFF:
271 return legacy_hal::WIFI_POWER_SCENARIO_ON_BODY_CELL_OFF;
272 case IWifiChip::TxPowerScenario::ON_BODY_CELL_ON:
273 return legacy_hal::WIFI_POWER_SCENARIO_ON_BODY_CELL_ON;
274 };
275 CHECK(false);
276}
277
278legacy_hal::wifi_latency_mode convertAidlLatencyModeToLegacy(
279 IWifiChip::LatencyMode aidl_latency_mode) {
280 switch (aidl_latency_mode) {
281 case IWifiChip::LatencyMode::NORMAL:
282 return legacy_hal::WIFI_LATENCY_MODE_NORMAL;
283 case IWifiChip::LatencyMode::LOW:
284 return legacy_hal::WIFI_LATENCY_MODE_LOW;
285 }
286 CHECK(false);
287}
288
289bool convertLegacyWifiMacInfoToAidl(const legacy_hal::WifiMacInfo& legacy_mac_info,
290 IWifiChipEventCallback::RadioModeInfo* aidl_radio_mode_info) {
291 if (!aidl_radio_mode_info) {
292 return false;
293 }
294 *aidl_radio_mode_info = {};
295
296 aidl_radio_mode_info->radioId = legacy_mac_info.wlan_mac_id;
297 // Convert from bitmask of bands in the legacy HAL to enum value in
298 // the AIDL interface.
299 if (legacy_mac_info.mac_band & legacy_hal::WLAN_MAC_6_0_BAND &&
300 legacy_mac_info.mac_band & legacy_hal::WLAN_MAC_5_0_BAND &&
301 legacy_mac_info.mac_band & legacy_hal::WLAN_MAC_2_4_BAND) {
302 aidl_radio_mode_info->bandInfo = WifiBand::BAND_24GHZ_5GHZ_6GHZ;
303 } else if (legacy_mac_info.mac_band & legacy_hal::WLAN_MAC_6_0_BAND &&
304 legacy_mac_info.mac_band & legacy_hal::WLAN_MAC_5_0_BAND) {
305 aidl_radio_mode_info->bandInfo = WifiBand::BAND_5GHZ_6GHZ;
306 } else if (legacy_mac_info.mac_band & legacy_hal::WLAN_MAC_6_0_BAND) {
307 aidl_radio_mode_info->bandInfo = WifiBand::BAND_6GHZ;
308 } else if (legacy_mac_info.mac_band & legacy_hal::WLAN_MAC_2_4_BAND &&
309 legacy_mac_info.mac_band & legacy_hal::WLAN_MAC_5_0_BAND) {
310 aidl_radio_mode_info->bandInfo = WifiBand::BAND_24GHZ_5GHZ;
311 } else if (legacy_mac_info.mac_band & legacy_hal::WLAN_MAC_2_4_BAND) {
312 aidl_radio_mode_info->bandInfo = WifiBand::BAND_24GHZ;
313 } else if (legacy_mac_info.mac_band & legacy_hal::WLAN_MAC_5_0_BAND) {
314 aidl_radio_mode_info->bandInfo = WifiBand::BAND_5GHZ;
315 } else {
316 aidl_radio_mode_info->bandInfo = WifiBand::BAND_UNSPECIFIED;
317 }
318 std::vector<IWifiChipEventCallback::IfaceInfo> iface_info_vec;
319 for (const auto& legacy_iface_info : legacy_mac_info.iface_infos) {
320 IWifiChipEventCallback::IfaceInfo iface_info;
321 iface_info.name = legacy_iface_info.name;
322 iface_info.channel = legacy_iface_info.channel;
323 iface_info_vec.push_back(iface_info);
324 }
325 aidl_radio_mode_info->ifaceInfos = iface_info_vec;
326 return true;
327}
328
329uint32_t convertAidlWifiBandToLegacyMacBand(WifiBand aidl_band) {
330 switch (aidl_band) {
331 case WifiBand::BAND_24GHZ:
332 return legacy_hal::WLAN_MAC_2_4_BAND;
333 case WifiBand::BAND_5GHZ:
334 case WifiBand::BAND_5GHZ_DFS:
335 case WifiBand::BAND_5GHZ_WITH_DFS:
336 return legacy_hal::WLAN_MAC_5_0_BAND;
337 case WifiBand::BAND_24GHZ_5GHZ:
338 case WifiBand::BAND_24GHZ_5GHZ_WITH_DFS:
339 return (legacy_hal::WLAN_MAC_2_4_BAND | legacy_hal::WLAN_MAC_5_0_BAND);
340 case WifiBand::BAND_6GHZ:
341 return legacy_hal::WLAN_MAC_6_0_BAND;
342 case WifiBand::BAND_5GHZ_6GHZ:
343 return (legacy_hal::WLAN_MAC_5_0_BAND | legacy_hal::WLAN_MAC_6_0_BAND);
344 case WifiBand::BAND_24GHZ_5GHZ_6GHZ:
345 case WifiBand::BAND_24GHZ_5GHZ_WITH_DFS_6GHZ:
346 return (legacy_hal::WLAN_MAC_2_4_BAND | legacy_hal::WLAN_MAC_5_0_BAND |
347 legacy_hal::WLAN_MAC_6_0_BAND);
348 case WifiBand::BAND_60GHZ:
349 return legacy_hal::WLAN_MAC_60_0_BAND;
350 default:
351 return (legacy_hal::WLAN_MAC_2_4_BAND | legacy_hal::WLAN_MAC_5_0_BAND |
352 legacy_hal::WLAN_MAC_6_0_BAND | legacy_hal::WLAN_MAC_60_0_BAND);
353 }
354}
355
356WifiBand convertLegacyMacBandToAidlWifiBand(uint32_t band) {
357 switch (band) {
358 case legacy_hal::WLAN_MAC_2_4_BAND:
359 return WifiBand::BAND_24GHZ;
360 case legacy_hal::WLAN_MAC_5_0_BAND:
361 return WifiBand::BAND_5GHZ;
362 case legacy_hal::WLAN_MAC_6_0_BAND:
363 return WifiBand::BAND_6GHZ;
364 case legacy_hal::WLAN_MAC_60_0_BAND:
365 return WifiBand::BAND_60GHZ;
366 default:
367 return WifiBand::BAND_UNSPECIFIED;
368 }
369}
370
371uint32_t convertAidlWifiIfaceModeToLegacy(uint32_t aidl_iface_mask) {
372 uint32_t legacy_iface_mask = 0;
373 if (aidl_iface_mask & static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_STA)) {
374 legacy_iface_mask |= (1 << legacy_hal::WIFI_INTERFACE_STA);
375 }
376 if (aidl_iface_mask & static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_SOFTAP)) {
377 legacy_iface_mask |= (1 << legacy_hal::WIFI_INTERFACE_SOFTAP);
378 }
379 if (aidl_iface_mask & static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_P2P_CLIENT)) {
380 legacy_iface_mask |= (1 << legacy_hal::WIFI_INTERFACE_P2P_CLIENT);
381 }
382 if (aidl_iface_mask & static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_P2P_GO)) {
383 legacy_iface_mask |= (1 << legacy_hal::WIFI_INTERFACE_P2P_GO);
384 }
385 if (aidl_iface_mask & static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_NAN)) {
386 legacy_iface_mask |= (1 << legacy_hal::WIFI_INTERFACE_NAN);
387 }
388 if (aidl_iface_mask & static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_TDLS)) {
389 legacy_iface_mask |= (1 << legacy_hal::WIFI_INTERFACE_TDLS);
390 }
391 if (aidl_iface_mask & static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_MESH)) {
392 legacy_iface_mask |= (1 << legacy_hal::WIFI_INTERFACE_MESH);
393 }
394 if (aidl_iface_mask & static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_IBSS)) {
395 legacy_iface_mask |= (1 << legacy_hal::WIFI_INTERFACE_IBSS);
396 }
397 return legacy_iface_mask;
398}
399
400uint32_t convertLegacyWifiInterfaceModeToAidl(uint32_t legacy_iface_mask) {
401 uint32_t aidl_iface_mask = 0;
402 if (legacy_iface_mask & (1 << legacy_hal::WIFI_INTERFACE_STA)) {
403 aidl_iface_mask |= static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_STA);
404 }
405 if (legacy_iface_mask & (1 << legacy_hal::WIFI_INTERFACE_SOFTAP)) {
406 aidl_iface_mask |= static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_SOFTAP);
407 }
408 if (legacy_iface_mask & (1 << legacy_hal::WIFI_INTERFACE_P2P_CLIENT)) {
409 aidl_iface_mask |= static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_P2P_CLIENT);
410 }
411 if (legacy_iface_mask & (1 << legacy_hal::WIFI_INTERFACE_P2P_GO)) {
412 aidl_iface_mask |= static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_P2P_GO);
413 }
414 if (legacy_iface_mask & (1 << legacy_hal::WIFI_INTERFACE_NAN)) {
415 aidl_iface_mask |= static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_NAN);
416 }
417 if (legacy_iface_mask & (1 << legacy_hal::WIFI_INTERFACE_TDLS)) {
418 aidl_iface_mask |= static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_TDLS);
419 }
420 if (legacy_iface_mask & (1 << legacy_hal::WIFI_INTERFACE_MESH)) {
421 aidl_iface_mask |= static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_MESH);
422 }
423 if (legacy_iface_mask & (1 << legacy_hal::WIFI_INTERFACE_IBSS)) {
424 aidl_iface_mask |= static_cast<int32_t>(WifiIfaceMode::IFACE_MODE_IBSS);
425 }
426 return aidl_iface_mask;
427}
428
429uint32_t convertAidlUsableChannelFilterToLegacy(uint32_t aidl_filter_mask) {
430 uint32_t legacy_filter_mask = 0;
431 if (aidl_filter_mask &
432 static_cast<int32_t>(IWifiChip::UsableChannelFilter::CELLULAR_COEXISTENCE)) {
433 legacy_filter_mask |= legacy_hal::WIFI_USABLE_CHANNEL_FILTER_CELLULAR_COEXISTENCE;
434 }
435 if (aidl_filter_mask & static_cast<int32_t>(IWifiChip::UsableChannelFilter::CONCURRENCY)) {
436 legacy_filter_mask |= legacy_hal::WIFI_USABLE_CHANNEL_FILTER_CONCURRENCY;
437 }
438 if (aidl_filter_mask & static_cast<int32_t>(IWifiChip::UsableChannelFilter::NAN_INSTANT_MODE)) {
439 legacy_filter_mask |= WIFI_USABLE_CHANNEL_FILTER_NAN_INSTANT_MODE;
440 }
441 return legacy_filter_mask;
442}
443
444bool convertLegacyWifiUsableChannelToAidl(
445 const legacy_hal::wifi_usable_channel& legacy_usable_channel,
446 WifiUsableChannel* aidl_usable_channel) {
447 if (!aidl_usable_channel) {
448 return false;
449 }
450 *aidl_usable_channel = {};
451 aidl_usable_channel->channel = legacy_usable_channel.freq;
452 aidl_usable_channel->channelBandwidth =
453 convertLegacyWifiChannelWidthToAidl(legacy_usable_channel.width);
454 aidl_usable_channel->ifaceModeMask = static_cast<WifiIfaceMode>(
455 convertLegacyWifiInterfaceModeToAidl(legacy_usable_channel.iface_mode_mask));
456
457 return true;
458}
459
460bool convertLegacyWifiUsableChannelsToAidl(
461 const std::vector<legacy_hal::wifi_usable_channel>& legacy_usable_channels,
462 std::vector<WifiUsableChannel>* aidl_usable_channels) {
463 if (!aidl_usable_channels) {
464 return false;
465 }
466 *aidl_usable_channels = {};
467 for (const auto& legacy_usable_channel : legacy_usable_channels) {
468 WifiUsableChannel aidl_usable_channel;
469 if (!convertLegacyWifiUsableChannelToAidl(legacy_usable_channel, &aidl_usable_channel)) {
470 return false;
471 }
472 aidl_usable_channels->push_back(aidl_usable_channel);
473 }
474 return true;
475}
476
477bool convertLegacyWifiMacInfosToAidl(
478 const std::vector<legacy_hal::WifiMacInfo>& legacy_mac_infos,
479 std::vector<IWifiChipEventCallback::RadioModeInfo>* aidl_radio_mode_infos) {
480 if (!aidl_radio_mode_infos) {
481 return false;
482 }
483 *aidl_radio_mode_infos = {};
484
485 for (const auto& legacy_mac_info : legacy_mac_infos) {
486 IWifiChipEventCallback::RadioModeInfo aidl_radio_mode_info;
487 if (!convertLegacyWifiMacInfoToAidl(legacy_mac_info, &aidl_radio_mode_info)) {
488 return false;
489 }
490 aidl_radio_mode_infos->push_back(aidl_radio_mode_info);
491 }
492 return true;
493}
494
495bool convertLegacyFeaturesToAidlStaCapabilities(uint64_t legacy_feature_set,
496 uint32_t legacy_logger_feature_set,
497 uint32_t* aidl_caps) {
498 if (!aidl_caps) {
499 return false;
500 }
501 *aidl_caps = {};
502 for (const auto feature : {legacy_hal::WIFI_LOGGER_PACKET_FATE_SUPPORTED}) {
503 if (feature & legacy_logger_feature_set) {
504 *aidl_caps |= static_cast<uint32_t>(
505 convertLegacyLoggerFeatureToAidlStaIfaceCapability(feature));
506 }
507 }
508 for (const auto feature :
509 {WIFI_FEATURE_GSCAN, WIFI_FEATURE_LINK_LAYER_STATS, WIFI_FEATURE_RSSI_MONITOR,
510 WIFI_FEATURE_CONTROL_ROAMING, WIFI_FEATURE_IE_WHITELIST, WIFI_FEATURE_SCAN_RAND,
511 WIFI_FEATURE_INFRA_5G, WIFI_FEATURE_HOTSPOT, WIFI_FEATURE_PNO, WIFI_FEATURE_TDLS,
512 WIFI_FEATURE_TDLS_OFFCHANNEL, WIFI_FEATURE_CONFIG_NDO, WIFI_FEATURE_MKEEP_ALIVE}) {
513 if (feature & legacy_feature_set) {
514 *aidl_caps |=
515 static_cast<uint32_t>(convertLegacyFeatureToAidlStaIfaceCapability(feature));
516 }
517 }
518 // There is no flag for this one in the legacy feature set. Adding it to the
519 // set because all the current devices support it.
520 *aidl_caps |= static_cast<uint32_t>(IWifiStaIface::StaIfaceCapabilityMask::APF);
521 return true;
522}
523
524bool convertLegacyApfCapabilitiesToAidl(const legacy_hal::PacketFilterCapabilities& legacy_caps,
525 StaApfPacketFilterCapabilities* aidl_caps) {
526 if (!aidl_caps) {
527 return false;
528 }
529 *aidl_caps = {};
530 aidl_caps->version = legacy_caps.version;
531 aidl_caps->maxLength = legacy_caps.max_len;
532 return true;
533}
534
535uint8_t convertAidlGscanReportEventFlagToLegacy(
536 StaBackgroundScanBucketEventReportSchemeMask aidl_flag) {
537 using AidlFlag = StaBackgroundScanBucketEventReportSchemeMask;
538 switch (aidl_flag) {
539 case AidlFlag::EACH_SCAN:
540 return REPORT_EVENTS_EACH_SCAN;
541 case AidlFlag::FULL_RESULTS:
542 return REPORT_EVENTS_FULL_RESULTS;
543 case AidlFlag::NO_BATCH:
544 return REPORT_EVENTS_NO_BATCH;
545 };
546 CHECK(false);
547}
548
549StaScanDataFlagMask convertLegacyGscanDataFlagToAidl(uint8_t legacy_flag) {
550 switch (legacy_flag) {
551 case legacy_hal::WIFI_SCAN_FLAG_INTERRUPTED:
552 return StaScanDataFlagMask::INTERRUPTED;
553 };
554 CHECK(false) << "Unknown legacy flag: " << legacy_flag;
555 // To silence the compiler warning about reaching the end of non-void
556 // function.
557 return {};
558}
559
560bool convertLegacyGscanCapabilitiesToAidl(const legacy_hal::wifi_gscan_capabilities& legacy_caps,
561 StaBackgroundScanCapabilities* aidl_caps) {
562 if (!aidl_caps) {
563 return false;
564 }
565 *aidl_caps = {};
566 aidl_caps->maxCacheSize = legacy_caps.max_scan_cache_size;
567 aidl_caps->maxBuckets = legacy_caps.max_scan_buckets;
568 aidl_caps->maxApCachePerScan = legacy_caps.max_ap_cache_per_scan;
569 aidl_caps->maxReportingThreshold = legacy_caps.max_scan_reporting_threshold;
570 return true;
571}
572
573legacy_hal::wifi_band convertAidlWifiBandToLegacy(WifiBand band) {
574 switch (band) {
575 case WifiBand::BAND_UNSPECIFIED:
576 return legacy_hal::WIFI_BAND_UNSPECIFIED;
577 case WifiBand::BAND_24GHZ:
578 return legacy_hal::WIFI_BAND_BG;
579 case WifiBand::BAND_5GHZ:
580 return legacy_hal::WIFI_BAND_A;
581 case WifiBand::BAND_5GHZ_DFS:
582 return legacy_hal::WIFI_BAND_A_DFS;
583 case WifiBand::BAND_5GHZ_WITH_DFS:
584 return legacy_hal::WIFI_BAND_A_WITH_DFS;
585 case WifiBand::BAND_24GHZ_5GHZ:
586 return legacy_hal::WIFI_BAND_ABG;
587 case WifiBand::BAND_24GHZ_5GHZ_WITH_DFS:
588 return legacy_hal::WIFI_BAND_ABG_WITH_DFS;
589 default:
590 CHECK(false);
591 return {};
592 };
593}
594
595bool convertAidlGscanParamsToLegacy(const StaBackgroundScanParameters& aidl_scan_params,
596 legacy_hal::wifi_scan_cmd_params* legacy_scan_params) {
597 if (!legacy_scan_params) {
598 return false;
599 }
600 *legacy_scan_params = {};
601 legacy_scan_params->base_period = aidl_scan_params.basePeriodInMs;
602 legacy_scan_params->max_ap_per_scan = aidl_scan_params.maxApPerScan;
603 legacy_scan_params->report_threshold_percent = aidl_scan_params.reportThresholdPercent;
604 legacy_scan_params->report_threshold_num_scans = aidl_scan_params.reportThresholdNumScans;
605 if (aidl_scan_params.buckets.size() > MAX_BUCKETS) {
606 return false;
607 }
608 legacy_scan_params->num_buckets = aidl_scan_params.buckets.size();
609 for (uint32_t bucket_idx = 0; bucket_idx < aidl_scan_params.buckets.size(); bucket_idx++) {
610 const StaBackgroundScanBucketParameters& aidl_bucket_spec =
611 aidl_scan_params.buckets[bucket_idx];
612 legacy_hal::wifi_scan_bucket_spec& legacy_bucket_spec =
613 legacy_scan_params->buckets[bucket_idx];
614 if (aidl_bucket_spec.bucketIdx >= MAX_BUCKETS) {
615 return false;
616 }
617 legacy_bucket_spec.bucket = aidl_bucket_spec.bucketIdx;
618 legacy_bucket_spec.band = convertAidlWifiBandToLegacy(aidl_bucket_spec.band);
619 legacy_bucket_spec.period = aidl_bucket_spec.periodInMs;
620 legacy_bucket_spec.max_period = aidl_bucket_spec.exponentialMaxPeriodInMs;
621 legacy_bucket_spec.base = aidl_bucket_spec.exponentialBase;
622 legacy_bucket_spec.step_count = aidl_bucket_spec.exponentialStepCount;
623 legacy_bucket_spec.report_events = 0;
624 using AidlFlag = StaBackgroundScanBucketEventReportSchemeMask;
625 for (const auto flag : {AidlFlag::EACH_SCAN, AidlFlag::FULL_RESULTS, AidlFlag::NO_BATCH}) {
626 if (static_cast<int32_t>(aidl_bucket_spec.eventReportScheme) &
627 static_cast<std::underlying_type<AidlFlag>::type>(flag)) {
628 legacy_bucket_spec.report_events |= convertAidlGscanReportEventFlagToLegacy(flag);
629 }
630 }
631 if (aidl_bucket_spec.frequencies.size() > MAX_CHANNELS) {
632 return false;
633 }
634 legacy_bucket_spec.num_channels = aidl_bucket_spec.frequencies.size();
635 for (uint32_t freq_idx = 0; freq_idx < aidl_bucket_spec.frequencies.size(); freq_idx++) {
636 legacy_bucket_spec.channels[freq_idx].channel = aidl_bucket_spec.frequencies[freq_idx];
637 }
638 }
639 return true;
640}
641
642bool convertLegacyIeToAidl(const legacy_hal::wifi_information_element& legacy_ie,
643 WifiInformationElement* aidl_ie) {
644 if (!aidl_ie) {
645 return false;
646 }
647 *aidl_ie = {};
648 aidl_ie->id = legacy_ie.id;
649 aidl_ie->data = std::vector<uint8_t>(legacy_ie.data, legacy_ie.data + legacy_ie.len);
650 return true;
651}
652
653bool convertLegacyIeBlobToAidl(const uint8_t* ie_blob, uint32_t ie_blob_len,
654 std::vector<WifiInformationElement>* aidl_ies) {
655 if (!ie_blob || !aidl_ies) {
656 return false;
657 }
658 *aidl_ies = {};
659 const uint8_t* ies_begin = ie_blob;
660 const uint8_t* ies_end = ie_blob + ie_blob_len;
661 const uint8_t* next_ie = ies_begin;
662 using wifi_ie = legacy_hal::wifi_information_element;
663 constexpr size_t kIeHeaderLen = sizeof(wifi_ie);
664 // Each IE should at least have the header (i.e |id| & |len| fields).
665 while (next_ie + kIeHeaderLen <= ies_end) {
666 const wifi_ie& legacy_ie = (*reinterpret_cast<const wifi_ie*>(next_ie));
667 uint32_t curr_ie_len = kIeHeaderLen + legacy_ie.len;
668 if (next_ie + curr_ie_len > ies_end) {
669 LOG(ERROR) << "Error parsing IE blob. Next IE: " << (void*)next_ie
670 << ", Curr IE len: " << curr_ie_len << ", IEs End: " << (void*)ies_end;
671 break;
672 }
673 WifiInformationElement aidl_ie;
674 if (!convertLegacyIeToAidl(legacy_ie, &aidl_ie)) {
675 LOG(ERROR) << "Error converting IE. Id: " << legacy_ie.id << ", len: " << legacy_ie.len;
676 break;
677 }
678 aidl_ies->push_back(std::move(aidl_ie));
679 next_ie += curr_ie_len;
680 }
681 // Check if the blob has been fully consumed.
682 if (next_ie != ies_end) {
683 LOG(ERROR) << "Failed to fully parse IE blob. Next IE: " << (void*)next_ie
684 << ", IEs End: " << (void*)ies_end;
685 }
686 return true;
687}
688
689bool convertLegacyGscanResultToAidl(const legacy_hal::wifi_scan_result& legacy_scan_result,
690 bool has_ie_data, StaScanResult* aidl_scan_result) {
691 if (!aidl_scan_result) {
692 return false;
693 }
694 *aidl_scan_result = {};
695 aidl_scan_result->timeStampInUs = legacy_scan_result.ts;
696 aidl_scan_result->ssid = std::vector<uint8_t>(
697 legacy_scan_result.ssid,
698 legacy_scan_result.ssid +
699 strnlen(legacy_scan_result.ssid, sizeof(legacy_scan_result.ssid) - 1));
700 aidl_scan_result->bssid = std::array<uint8_t, 6>();
701 std::copy(legacy_scan_result.bssid, legacy_scan_result.bssid + 6,
702 std::begin(aidl_scan_result->bssid));
703 aidl_scan_result->frequency = legacy_scan_result.channel;
704 aidl_scan_result->rssi = legacy_scan_result.rssi;
705 aidl_scan_result->beaconPeriodInMs = legacy_scan_result.beacon_period;
706 aidl_scan_result->capability = legacy_scan_result.capability;
707 if (has_ie_data) {
708 std::vector<WifiInformationElement> ies;
709 if (!convertLegacyIeBlobToAidl(reinterpret_cast<const uint8_t*>(legacy_scan_result.ie_data),
710 legacy_scan_result.ie_length, &ies)) {
711 return false;
712 }
713 aidl_scan_result->informationElements = std::move(ies);
714 }
715 return true;
716}
717
718bool convertLegacyCachedGscanResultsToAidl(
719 const legacy_hal::wifi_cached_scan_results& legacy_cached_scan_result,
720 StaScanData* aidl_scan_data) {
721 if (!aidl_scan_data) {
722 return false;
723 }
724 *aidl_scan_data = {};
725 int32_t flags = 0;
726 for (const auto flag : {legacy_hal::WIFI_SCAN_FLAG_INTERRUPTED}) {
727 if (legacy_cached_scan_result.flags & flag) {
728 flags |= static_cast<std::underlying_type<StaScanDataFlagMask>::type>(
729 convertLegacyGscanDataFlagToAidl(flag));
730 }
731 }
732 aidl_scan_data->flags = static_cast<StaScanDataFlagMask>(flags);
733 aidl_scan_data->bucketsScanned = legacy_cached_scan_result.buckets_scanned;
734
735 CHECK(legacy_cached_scan_result.num_results >= 0 &&
736 legacy_cached_scan_result.num_results <= MAX_AP_CACHE_PER_SCAN);
737 std::vector<StaScanResult> aidl_scan_results;
738 for (int32_t result_idx = 0; result_idx < legacy_cached_scan_result.num_results; result_idx++) {
739 StaScanResult aidl_scan_result;
740 if (!convertLegacyGscanResultToAidl(legacy_cached_scan_result.results[result_idx], false,
741 &aidl_scan_result)) {
742 return false;
743 }
744 aidl_scan_results.push_back(aidl_scan_result);
745 }
746 aidl_scan_data->results = std::move(aidl_scan_results);
747 return true;
748}
749
750bool convertLegacyVectorOfCachedGscanResultsToAidl(
751 const std::vector<legacy_hal::wifi_cached_scan_results>& legacy_cached_scan_results,
752 std::vector<StaScanData>* aidl_scan_datas) {
753 if (!aidl_scan_datas) {
754 return false;
755 }
756 *aidl_scan_datas = {};
757 for (const auto& legacy_cached_scan_result : legacy_cached_scan_results) {
758 StaScanData aidl_scan_data;
759 if (!convertLegacyCachedGscanResultsToAidl(legacy_cached_scan_result, &aidl_scan_data)) {
760 return false;
761 }
762 aidl_scan_datas->push_back(aidl_scan_data);
763 }
764 return true;
765}
766
767WifiDebugTxPacketFate convertLegacyDebugTxPacketFateToAidl(legacy_hal::wifi_tx_packet_fate fate) {
768 switch (fate) {
769 case legacy_hal::TX_PKT_FATE_ACKED:
770 return WifiDebugTxPacketFate::ACKED;
771 case legacy_hal::TX_PKT_FATE_SENT:
772 return WifiDebugTxPacketFate::SENT;
773 case legacy_hal::TX_PKT_FATE_FW_QUEUED:
774 return WifiDebugTxPacketFate::FW_QUEUED;
775 case legacy_hal::TX_PKT_FATE_FW_DROP_INVALID:
776 return WifiDebugTxPacketFate::FW_DROP_INVALID;
777 case legacy_hal::TX_PKT_FATE_FW_DROP_NOBUFS:
778 return WifiDebugTxPacketFate::FW_DROP_NOBUFS;
779 case legacy_hal::TX_PKT_FATE_FW_DROP_OTHER:
780 return WifiDebugTxPacketFate::FW_DROP_OTHER;
781 case legacy_hal::TX_PKT_FATE_DRV_QUEUED:
782 return WifiDebugTxPacketFate::DRV_QUEUED;
783 case legacy_hal::TX_PKT_FATE_DRV_DROP_INVALID:
784 return WifiDebugTxPacketFate::DRV_DROP_INVALID;
785 case legacy_hal::TX_PKT_FATE_DRV_DROP_NOBUFS:
786 return WifiDebugTxPacketFate::DRV_DROP_NOBUFS;
787 case legacy_hal::TX_PKT_FATE_DRV_DROP_OTHER:
788 return WifiDebugTxPacketFate::DRV_DROP_OTHER;
789 };
790 CHECK(false) << "Unknown legacy fate type: " << fate;
791}
792
793WifiDebugRxPacketFate convertLegacyDebugRxPacketFateToAidl(legacy_hal::wifi_rx_packet_fate fate) {
794 switch (fate) {
795 case legacy_hal::RX_PKT_FATE_SUCCESS:
796 return WifiDebugRxPacketFate::SUCCESS;
797 case legacy_hal::RX_PKT_FATE_FW_QUEUED:
798 return WifiDebugRxPacketFate::FW_QUEUED;
799 case legacy_hal::RX_PKT_FATE_FW_DROP_FILTER:
800 return WifiDebugRxPacketFate::FW_DROP_FILTER;
801 case legacy_hal::RX_PKT_FATE_FW_DROP_INVALID:
802 return WifiDebugRxPacketFate::FW_DROP_INVALID;
803 case legacy_hal::RX_PKT_FATE_FW_DROP_NOBUFS:
804 return WifiDebugRxPacketFate::FW_DROP_NOBUFS;
805 case legacy_hal::RX_PKT_FATE_FW_DROP_OTHER:
806 return WifiDebugRxPacketFate::FW_DROP_OTHER;
807 case legacy_hal::RX_PKT_FATE_DRV_QUEUED:
808 return WifiDebugRxPacketFate::DRV_QUEUED;
809 case legacy_hal::RX_PKT_FATE_DRV_DROP_FILTER:
810 return WifiDebugRxPacketFate::DRV_DROP_FILTER;
811 case legacy_hal::RX_PKT_FATE_DRV_DROP_INVALID:
812 return WifiDebugRxPacketFate::DRV_DROP_INVALID;
813 case legacy_hal::RX_PKT_FATE_DRV_DROP_NOBUFS:
814 return WifiDebugRxPacketFate::DRV_DROP_NOBUFS;
815 case legacy_hal::RX_PKT_FATE_DRV_DROP_OTHER:
816 return WifiDebugRxPacketFate::DRV_DROP_OTHER;
817 };
818 CHECK(false) << "Unknown legacy fate type: " << fate;
819}
820
821WifiDebugPacketFateFrameType convertLegacyDebugPacketFateFrameTypeToAidl(
822 legacy_hal::frame_type type) {
823 switch (type) {
824 case legacy_hal::FRAME_TYPE_UNKNOWN:
825 return WifiDebugPacketFateFrameType::UNKNOWN;
826 case legacy_hal::FRAME_TYPE_ETHERNET_II:
827 return WifiDebugPacketFateFrameType::ETHERNET_II;
828 case legacy_hal::FRAME_TYPE_80211_MGMT:
829 return WifiDebugPacketFateFrameType::MGMT_80211;
830 };
831 CHECK(false) << "Unknown legacy frame type: " << type;
832}
833
834bool convertLegacyDebugPacketFateFrameToAidl(const legacy_hal::frame_info& legacy_frame,
835 WifiDebugPacketFateFrameInfo* aidl_frame) {
836 if (!aidl_frame) {
837 return false;
838 }
839 *aidl_frame = {};
840 aidl_frame->frameType = convertLegacyDebugPacketFateFrameTypeToAidl(legacy_frame.payload_type);
841 aidl_frame->frameLen = legacy_frame.frame_len;
842 aidl_frame->driverTimestampUsec = legacy_frame.driver_timestamp_usec;
843 aidl_frame->firmwareTimestampUsec = legacy_frame.firmware_timestamp_usec;
844 const uint8_t* frame_begin =
845 reinterpret_cast<const uint8_t*>(legacy_frame.frame_content.ethernet_ii_bytes);
846 aidl_frame->frameContent =
847 std::vector<uint8_t>(frame_begin, frame_begin + legacy_frame.frame_len);
848 return true;
849}
850
851bool convertLegacyDebugTxPacketFateToAidl(const legacy_hal::wifi_tx_report& legacy_fate,
852 WifiDebugTxPacketFateReport* aidl_fate) {
853 if (!aidl_fate) {
854 return false;
855 }
856 *aidl_fate = {};
857 aidl_fate->fate = convertLegacyDebugTxPacketFateToAidl(legacy_fate.fate);
858 return convertLegacyDebugPacketFateFrameToAidl(legacy_fate.frame_inf, &aidl_fate->frameInfo);
859}
860
861bool convertLegacyVectorOfDebugTxPacketFateToAidl(
862 const std::vector<legacy_hal::wifi_tx_report>& legacy_fates,
863 std::vector<WifiDebugTxPacketFateReport>* aidl_fates) {
864 if (!aidl_fates) {
865 return false;
866 }
867 *aidl_fates = {};
868 for (const auto& legacy_fate : legacy_fates) {
869 WifiDebugTxPacketFateReport aidl_fate;
870 if (!convertLegacyDebugTxPacketFateToAidl(legacy_fate, &aidl_fate)) {
871 return false;
872 }
873 aidl_fates->push_back(aidl_fate);
874 }
875 return true;
876}
877
878bool convertLegacyDebugRxPacketFateToAidl(const legacy_hal::wifi_rx_report& legacy_fate,
879 WifiDebugRxPacketFateReport* aidl_fate) {
880 if (!aidl_fate) {
881 return false;
882 }
883 *aidl_fate = {};
884 aidl_fate->fate = convertLegacyDebugRxPacketFateToAidl(legacy_fate.fate);
885 return convertLegacyDebugPacketFateFrameToAidl(legacy_fate.frame_inf, &aidl_fate->frameInfo);
886}
887
888bool convertLegacyVectorOfDebugRxPacketFateToAidl(
889 const std::vector<legacy_hal::wifi_rx_report>& legacy_fates,
890 std::vector<WifiDebugRxPacketFateReport>* aidl_fates) {
891 if (!aidl_fates) {
892 return false;
893 }
894 *aidl_fates = {};
895 for (const auto& legacy_fate : legacy_fates) {
896 WifiDebugRxPacketFateReport aidl_fate;
897 if (!convertLegacyDebugRxPacketFateToAidl(legacy_fate, &aidl_fate)) {
898 return false;
899 }
900 aidl_fates->push_back(aidl_fate);
901 }
902 return true;
903}
904
905bool convertLegacyLinkLayerRadioStatsToAidl(
906 const legacy_hal::LinkLayerRadioStats& legacy_radio_stat,
907 StaLinkLayerRadioStats* aidl_radio_stat) {
908 if (!aidl_radio_stat) {
909 return false;
910 }
911 *aidl_radio_stat = {};
912
913 aidl_radio_stat->radioId = legacy_radio_stat.stats.radio;
914 aidl_radio_stat->onTimeInMs = legacy_radio_stat.stats.on_time;
915 aidl_radio_stat->txTimeInMs = legacy_radio_stat.stats.tx_time;
916 aidl_radio_stat->rxTimeInMs = legacy_radio_stat.stats.rx_time;
917 aidl_radio_stat->onTimeInMsForScan = legacy_radio_stat.stats.on_time_scan;
918 aidl_radio_stat->txTimeInMsPerLevel = uintToIntVec(legacy_radio_stat.tx_time_per_levels);
919 aidl_radio_stat->onTimeInMsForNanScan = legacy_radio_stat.stats.on_time_nbd;
920 aidl_radio_stat->onTimeInMsForBgScan = legacy_radio_stat.stats.on_time_gscan;
921 aidl_radio_stat->onTimeInMsForRoamScan = legacy_radio_stat.stats.on_time_roam_scan;
922 aidl_radio_stat->onTimeInMsForPnoScan = legacy_radio_stat.stats.on_time_pno_scan;
923 aidl_radio_stat->onTimeInMsForHs20Scan = legacy_radio_stat.stats.on_time_hs20;
924
925 std::vector<WifiChannelStats> aidl_channel_stats;
926
927 for (const auto& channel_stat : legacy_radio_stat.channel_stats) {
928 WifiChannelStats aidl_channel_stat;
929 aidl_channel_stat.onTimeInMs = channel_stat.on_time;
930 aidl_channel_stat.ccaBusyTimeInMs = channel_stat.cca_busy_time;
931 aidl_channel_stat.channel.width = WifiChannelWidthInMhz::WIDTH_20;
932 aidl_channel_stat.channel.centerFreq = channel_stat.channel.center_freq;
933 aidl_channel_stat.channel.centerFreq0 = channel_stat.channel.center_freq0;
934 aidl_channel_stat.channel.centerFreq1 = channel_stat.channel.center_freq1;
935 aidl_channel_stats.push_back(aidl_channel_stat);
936 }
937
938 aidl_radio_stat->channelStats = aidl_channel_stats;
939
940 return true;
941}
942
Mahesh KKV5f30d332022-10-26 14:07:44 -0700943bool convertLegacyLinkLayerMlStatsToAidl(const legacy_hal::LinkLayerMlStats& legacy_ml_stats,
944 StaLinkLayerStats* aidl_stats) {
945 if (!aidl_stats) {
946 return false;
947 }
948 *aidl_stats = {};
949 std::vector<StaLinkLayerLinkStats> links;
950 // Iterate over each links
951 for (const auto& link : legacy_ml_stats.links) {
952 StaLinkLayerLinkStats linkStats = {};
953 linkStats.linkId = link.stat.link_id;
954 linkStats.beaconRx = link.stat.beacon_rx;
955 linkStats.avgRssiMgmt = link.stat.rssi_mgmt;
956 linkStats.wmeBePktStats.rxMpdu = link.stat.ac[legacy_hal::WIFI_AC_BE].rx_mpdu;
957 linkStats.wmeBePktStats.txMpdu = link.stat.ac[legacy_hal::WIFI_AC_BE].tx_mpdu;
958 linkStats.wmeBePktStats.lostMpdu = link.stat.ac[legacy_hal::WIFI_AC_BE].mpdu_lost;
959 linkStats.wmeBePktStats.retries = link.stat.ac[legacy_hal::WIFI_AC_BE].retries;
960 linkStats.wmeBeContentionTimeStats.contentionTimeMinInUsec =
961 link.stat.ac[legacy_hal::WIFI_AC_BE].contention_time_min;
962 linkStats.wmeBeContentionTimeStats.contentionTimeMaxInUsec =
963 link.stat.ac[legacy_hal::WIFI_AC_BE].contention_time_max;
964 linkStats.wmeBeContentionTimeStats.contentionTimeAvgInUsec =
965 link.stat.ac[legacy_hal::WIFI_AC_BE].contention_time_avg;
966 linkStats.wmeBeContentionTimeStats.contentionNumSamples =
967 link.stat.ac[legacy_hal::WIFI_AC_BE].contention_num_samples;
968 linkStats.wmeBkPktStats.rxMpdu = link.stat.ac[legacy_hal::WIFI_AC_BK].rx_mpdu;
969 linkStats.wmeBkPktStats.txMpdu = link.stat.ac[legacy_hal::WIFI_AC_BK].tx_mpdu;
970 linkStats.wmeBkPktStats.lostMpdu = link.stat.ac[legacy_hal::WIFI_AC_BK].mpdu_lost;
971 linkStats.wmeBkPktStats.retries = link.stat.ac[legacy_hal::WIFI_AC_BK].retries;
972 linkStats.wmeBkContentionTimeStats.contentionTimeMinInUsec =
973 link.stat.ac[legacy_hal::WIFI_AC_BK].contention_time_min;
974 linkStats.wmeBkContentionTimeStats.contentionTimeMaxInUsec =
975 link.stat.ac[legacy_hal::WIFI_AC_BK].contention_time_max;
976 linkStats.wmeBkContentionTimeStats.contentionTimeAvgInUsec =
977 link.stat.ac[legacy_hal::WIFI_AC_BK].contention_time_avg;
978 linkStats.wmeBkContentionTimeStats.contentionNumSamples =
979 link.stat.ac[legacy_hal::WIFI_AC_BK].contention_num_samples;
980 linkStats.wmeViPktStats.rxMpdu = link.stat.ac[legacy_hal::WIFI_AC_VI].rx_mpdu;
981 linkStats.wmeViPktStats.txMpdu = link.stat.ac[legacy_hal::WIFI_AC_VI].tx_mpdu;
982 linkStats.wmeViPktStats.lostMpdu = link.stat.ac[legacy_hal::WIFI_AC_VI].mpdu_lost;
983 linkStats.wmeViPktStats.retries = link.stat.ac[legacy_hal::WIFI_AC_VI].retries;
984 linkStats.wmeViContentionTimeStats.contentionTimeMinInUsec =
985 link.stat.ac[legacy_hal::WIFI_AC_VI].contention_time_min;
986 linkStats.wmeViContentionTimeStats.contentionTimeMaxInUsec =
987 link.stat.ac[legacy_hal::WIFI_AC_VI].contention_time_max;
988 linkStats.wmeViContentionTimeStats.contentionTimeAvgInUsec =
989 link.stat.ac[legacy_hal::WIFI_AC_VI].contention_time_avg;
990 linkStats.wmeViContentionTimeStats.contentionNumSamples =
991 link.stat.ac[legacy_hal::WIFI_AC_VI].contention_num_samples;
992 linkStats.wmeVoPktStats.rxMpdu = link.stat.ac[legacy_hal::WIFI_AC_VO].rx_mpdu;
993 linkStats.wmeVoPktStats.txMpdu = link.stat.ac[legacy_hal::WIFI_AC_VO].tx_mpdu;
994 linkStats.wmeVoPktStats.lostMpdu = link.stat.ac[legacy_hal::WIFI_AC_VO].mpdu_lost;
995 linkStats.wmeVoPktStats.retries = link.stat.ac[legacy_hal::WIFI_AC_VO].retries;
996 linkStats.wmeVoContentionTimeStats.contentionTimeMinInUsec =
997 link.stat.ac[legacy_hal::WIFI_AC_VO].contention_time_min;
998 linkStats.wmeVoContentionTimeStats.contentionTimeMaxInUsec =
999 link.stat.ac[legacy_hal::WIFI_AC_VO].contention_time_max;
1000 linkStats.wmeVoContentionTimeStats.contentionTimeAvgInUsec =
1001 link.stat.ac[legacy_hal::WIFI_AC_VO].contention_time_avg;
1002 linkStats.wmeVoContentionTimeStats.contentionNumSamples =
1003 link.stat.ac[legacy_hal::WIFI_AC_VO].contention_num_samples;
1004 linkStats.timeSliceDutyCycleInPercent = link.stat.time_slicing_duty_cycle_percent;
1005 // peer info legacy_stats conversion.
1006 std::vector<StaPeerInfo> aidl_peers_info_stats;
1007 for (const auto& legacy_peer_info_stats : link.peers) {
1008 StaPeerInfo aidl_peer_info_stats;
1009 if (!convertLegacyPeerInfoStatsToAidl(legacy_peer_info_stats, &aidl_peer_info_stats)) {
1010 return false;
1011 }
1012 aidl_peers_info_stats.push_back(aidl_peer_info_stats);
1013 }
1014 linkStats.peers = aidl_peers_info_stats;
1015 // Push link stats to aidl stats.
1016 links.push_back(linkStats);
1017 }
1018 aidl_stats->iface.links = links;
1019 // radio legacy_stats conversion.
1020 std::vector<StaLinkLayerRadioStats> aidl_radios_stats;
1021 for (const auto& legacy_radio_stats : legacy_ml_stats.radios) {
1022 StaLinkLayerRadioStats aidl_radio_stats;
1023 if (!convertLegacyLinkLayerRadioStatsToAidl(legacy_radio_stats, &aidl_radio_stats)) {
1024 return false;
1025 }
1026 aidl_radios_stats.push_back(aidl_radio_stats);
1027 }
1028 aidl_stats->radios = aidl_radios_stats;
1029 aidl_stats->timeStampInMs = ::android::uptimeMillis();
1030
1031 return true;
1032}
1033
Gabriel Birenf3262f92022-07-15 23:25:39 +00001034bool convertLegacyLinkLayerStatsToAidl(const legacy_hal::LinkLayerStats& legacy_stats,
1035 StaLinkLayerStats* aidl_stats) {
1036 if (!aidl_stats) {
1037 return false;
1038 }
1039 *aidl_stats = {};
Mahesh KKV5f30d332022-10-26 14:07:44 -07001040 std::vector<StaLinkLayerLinkStats> links;
1041 StaLinkLayerLinkStats linkStats = {};
Gabriel Birenf3262f92022-07-15 23:25:39 +00001042 // iface legacy_stats conversion.
Mahesh KKV5f30d332022-10-26 14:07:44 -07001043 linkStats.linkId = 0;
1044 linkStats.beaconRx = legacy_stats.iface.beacon_rx;
1045 linkStats.avgRssiMgmt = legacy_stats.iface.rssi_mgmt;
1046 linkStats.wmeBePktStats.rxMpdu = legacy_stats.iface.ac[legacy_hal::WIFI_AC_BE].rx_mpdu;
1047 linkStats.wmeBePktStats.txMpdu = legacy_stats.iface.ac[legacy_hal::WIFI_AC_BE].tx_mpdu;
1048 linkStats.wmeBePktStats.lostMpdu = legacy_stats.iface.ac[legacy_hal::WIFI_AC_BE].mpdu_lost;
1049 linkStats.wmeBePktStats.retries = legacy_stats.iface.ac[legacy_hal::WIFI_AC_BE].retries;
1050 linkStats.wmeBeContentionTimeStats.contentionTimeMinInUsec =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001051 legacy_stats.iface.ac[legacy_hal::WIFI_AC_BE].contention_time_min;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001052 linkStats.wmeBeContentionTimeStats.contentionTimeMaxInUsec =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001053 legacy_stats.iface.ac[legacy_hal::WIFI_AC_BE].contention_time_max;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001054 linkStats.wmeBeContentionTimeStats.contentionTimeAvgInUsec =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001055 legacy_stats.iface.ac[legacy_hal::WIFI_AC_BE].contention_time_avg;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001056 linkStats.wmeBeContentionTimeStats.contentionNumSamples =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001057 legacy_stats.iface.ac[legacy_hal::WIFI_AC_BE].contention_num_samples;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001058 linkStats.wmeBkPktStats.rxMpdu = legacy_stats.iface.ac[legacy_hal::WIFI_AC_BK].rx_mpdu;
1059 linkStats.wmeBkPktStats.txMpdu = legacy_stats.iface.ac[legacy_hal::WIFI_AC_BK].tx_mpdu;
1060 linkStats.wmeBkPktStats.lostMpdu = legacy_stats.iface.ac[legacy_hal::WIFI_AC_BK].mpdu_lost;
1061 linkStats.wmeBkPktStats.retries = legacy_stats.iface.ac[legacy_hal::WIFI_AC_BK].retries;
1062 linkStats.wmeBkContentionTimeStats.contentionTimeMinInUsec =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001063 legacy_stats.iface.ac[legacy_hal::WIFI_AC_BK].contention_time_min;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001064 linkStats.wmeBkContentionTimeStats.contentionTimeMaxInUsec =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001065 legacy_stats.iface.ac[legacy_hal::WIFI_AC_BK].contention_time_max;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001066 linkStats.wmeBkContentionTimeStats.contentionTimeAvgInUsec =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001067 legacy_stats.iface.ac[legacy_hal::WIFI_AC_BK].contention_time_avg;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001068 linkStats.wmeBkContentionTimeStats.contentionNumSamples =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001069 legacy_stats.iface.ac[legacy_hal::WIFI_AC_BK].contention_num_samples;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001070 linkStats.wmeViPktStats.rxMpdu = legacy_stats.iface.ac[legacy_hal::WIFI_AC_VI].rx_mpdu;
1071 linkStats.wmeViPktStats.txMpdu = legacy_stats.iface.ac[legacy_hal::WIFI_AC_VI].tx_mpdu;
1072 linkStats.wmeViPktStats.lostMpdu = legacy_stats.iface.ac[legacy_hal::WIFI_AC_VI].mpdu_lost;
1073 linkStats.wmeViPktStats.retries = legacy_stats.iface.ac[legacy_hal::WIFI_AC_VI].retries;
1074 linkStats.wmeViContentionTimeStats.contentionTimeMinInUsec =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001075 legacy_stats.iface.ac[legacy_hal::WIFI_AC_VI].contention_time_min;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001076 linkStats.wmeViContentionTimeStats.contentionTimeMaxInUsec =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001077 legacy_stats.iface.ac[legacy_hal::WIFI_AC_VI].contention_time_max;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001078 linkStats.wmeViContentionTimeStats.contentionTimeAvgInUsec =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001079 legacy_stats.iface.ac[legacy_hal::WIFI_AC_VI].contention_time_avg;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001080 linkStats.wmeViContentionTimeStats.contentionNumSamples =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001081 legacy_stats.iface.ac[legacy_hal::WIFI_AC_VI].contention_num_samples;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001082 linkStats.wmeVoPktStats.rxMpdu = legacy_stats.iface.ac[legacy_hal::WIFI_AC_VO].rx_mpdu;
1083 linkStats.wmeVoPktStats.txMpdu = legacy_stats.iface.ac[legacy_hal::WIFI_AC_VO].tx_mpdu;
1084 linkStats.wmeVoPktStats.lostMpdu = legacy_stats.iface.ac[legacy_hal::WIFI_AC_VO].mpdu_lost;
1085 linkStats.wmeVoPktStats.retries = legacy_stats.iface.ac[legacy_hal::WIFI_AC_VO].retries;
1086 linkStats.wmeVoContentionTimeStats.contentionTimeMinInUsec =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001087 legacy_stats.iface.ac[legacy_hal::WIFI_AC_VO].contention_time_min;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001088 linkStats.wmeVoContentionTimeStats.contentionTimeMaxInUsec =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001089 legacy_stats.iface.ac[legacy_hal::WIFI_AC_VO].contention_time_max;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001090 linkStats.wmeVoContentionTimeStats.contentionTimeAvgInUsec =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001091 legacy_stats.iface.ac[legacy_hal::WIFI_AC_VO].contention_time_avg;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001092 linkStats.wmeVoContentionTimeStats.contentionNumSamples =
Gabriel Birenf3262f92022-07-15 23:25:39 +00001093 legacy_stats.iface.ac[legacy_hal::WIFI_AC_VO].contention_num_samples;
Mahesh KKV5f30d332022-10-26 14:07:44 -07001094 linkStats.timeSliceDutyCycleInPercent = legacy_stats.iface.info.time_slicing_duty_cycle_percent;
Gabriel Birenf3262f92022-07-15 23:25:39 +00001095 // peer info legacy_stats conversion.
1096 std::vector<StaPeerInfo> aidl_peers_info_stats;
1097 for (const auto& legacy_peer_info_stats : legacy_stats.peers) {
1098 StaPeerInfo aidl_peer_info_stats;
1099 if (!convertLegacyPeerInfoStatsToAidl(legacy_peer_info_stats, &aidl_peer_info_stats)) {
1100 return false;
1101 }
1102 aidl_peers_info_stats.push_back(aidl_peer_info_stats);
1103 }
Mahesh KKV5f30d332022-10-26 14:07:44 -07001104 linkStats.peers = aidl_peers_info_stats;
1105 links.push_back(linkStats);
1106 aidl_stats->iface.links = links;
Gabriel Birenf3262f92022-07-15 23:25:39 +00001107 // radio legacy_stats conversion.
1108 std::vector<StaLinkLayerRadioStats> aidl_radios_stats;
1109 for (const auto& legacy_radio_stats : legacy_stats.radios) {
1110 StaLinkLayerRadioStats aidl_radio_stats;
1111 if (!convertLegacyLinkLayerRadioStatsToAidl(legacy_radio_stats, &aidl_radio_stats)) {
1112 return false;
1113 }
1114 aidl_radios_stats.push_back(aidl_radio_stats);
1115 }
1116 aidl_stats->radios = aidl_radios_stats;
1117 aidl_stats->timeStampInMs = ::android::uptimeMillis();
1118 return true;
1119}
1120
1121bool convertLegacyPeerInfoStatsToAidl(const legacy_hal::WifiPeerInfo& legacy_peer_info_stats,
1122 StaPeerInfo* aidl_peer_info_stats) {
1123 if (!aidl_peer_info_stats) {
1124 return false;
1125 }
1126 *aidl_peer_info_stats = {};
1127 aidl_peer_info_stats->staCount = legacy_peer_info_stats.peer_info.bssload.sta_count;
1128 aidl_peer_info_stats->chanUtil = legacy_peer_info_stats.peer_info.bssload.chan_util;
1129
1130 std::vector<StaRateStat> aidlRateStats;
1131 for (const auto& legacy_rate_stats : legacy_peer_info_stats.rate_stats) {
1132 StaRateStat rateStat;
1133 if (!convertLegacyWifiRateInfoToAidl(legacy_rate_stats.rate, &rateStat.rateInfo)) {
1134 return false;
1135 }
1136 rateStat.txMpdu = legacy_rate_stats.tx_mpdu;
1137 rateStat.rxMpdu = legacy_rate_stats.rx_mpdu;
1138 rateStat.mpduLost = legacy_rate_stats.mpdu_lost;
1139 rateStat.retries = legacy_rate_stats.retries;
1140 aidlRateStats.push_back(rateStat);
1141 }
1142 aidl_peer_info_stats->rateStats = aidlRateStats;
1143 return true;
1144}
1145
1146bool convertLegacyRoamingCapabilitiesToAidl(
1147 const legacy_hal::wifi_roaming_capabilities& legacy_caps,
1148 StaRoamingCapabilities* aidl_caps) {
1149 if (!aidl_caps) {
1150 return false;
1151 }
1152 *aidl_caps = {};
1153 aidl_caps->maxBlocklistSize = legacy_caps.max_blacklist_size;
1154 aidl_caps->maxAllowlistSize = legacy_caps.max_whitelist_size;
1155 return true;
1156}
1157
1158bool convertAidlRoamingConfigToLegacy(const StaRoamingConfig& aidl_config,
1159 legacy_hal::wifi_roaming_config* legacy_config) {
1160 if (!legacy_config) {
1161 return false;
1162 }
1163 *legacy_config = {};
1164 if (aidl_config.bssidBlocklist.size() > MAX_BLACKLIST_BSSID ||
1165 aidl_config.ssidAllowlist.size() > MAX_WHITELIST_SSID) {
1166 return false;
1167 }
1168 legacy_config->num_blacklist_bssid = aidl_config.bssidBlocklist.size();
1169 uint32_t i = 0;
1170 for (const auto& bssid : aidl_config.bssidBlocklist) {
1171 CHECK(bssid.data.size() == sizeof(legacy_hal::mac_addr));
1172 memcpy(legacy_config->blacklist_bssid[i++], bssid.data.data(), bssid.data.size());
1173 }
1174 legacy_config->num_whitelist_ssid = aidl_config.ssidAllowlist.size();
1175 i = 0;
1176 for (const auto& ssid : aidl_config.ssidAllowlist) {
1177 CHECK(ssid.data.size() <= sizeof(legacy_hal::ssid_t::ssid_str));
1178 legacy_config->whitelist_ssid[i].length = ssid.data.size();
1179 memcpy(legacy_config->whitelist_ssid[i].ssid_str, ssid.data.data(), ssid.data.size());
1180 i++;
1181 }
1182 return true;
1183}
1184
1185legacy_hal::fw_roaming_state_t convertAidlRoamingStateToLegacy(StaRoamingState state) {
1186 switch (state) {
1187 case StaRoamingState::ENABLED:
1188 return legacy_hal::ROAMING_ENABLE;
1189 case StaRoamingState::DISABLED:
1190 return legacy_hal::ROAMING_DISABLE;
1191 };
1192 CHECK(false);
1193}
1194
1195legacy_hal::NanMatchAlg convertAidlNanMatchAlgToLegacy(NanMatchAlg type) {
1196 switch (type) {
1197 case NanMatchAlg::MATCH_ONCE:
1198 return legacy_hal::NAN_MATCH_ALG_MATCH_ONCE;
1199 case NanMatchAlg::MATCH_CONTINUOUS:
1200 return legacy_hal::NAN_MATCH_ALG_MATCH_CONTINUOUS;
1201 case NanMatchAlg::MATCH_NEVER:
1202 return legacy_hal::NAN_MATCH_ALG_MATCH_NEVER;
1203 }
1204 CHECK(false);
1205}
1206
1207legacy_hal::NanPublishType convertAidlNanPublishTypeToLegacy(NanPublishType type) {
1208 switch (type) {
1209 case NanPublishType::UNSOLICITED:
1210 return legacy_hal::NAN_PUBLISH_TYPE_UNSOLICITED;
1211 case NanPublishType::SOLICITED:
1212 return legacy_hal::NAN_PUBLISH_TYPE_SOLICITED;
1213 case NanPublishType::UNSOLICITED_SOLICITED:
1214 return legacy_hal::NAN_PUBLISH_TYPE_UNSOLICITED_SOLICITED;
1215 }
1216 CHECK(false);
1217}
1218
1219legacy_hal::NanTxType convertAidlNanTxTypeToLegacy(NanTxType type) {
1220 switch (type) {
1221 case NanTxType::BROADCAST:
1222 return legacy_hal::NAN_TX_TYPE_BROADCAST;
1223 case NanTxType::UNICAST:
1224 return legacy_hal::NAN_TX_TYPE_UNICAST;
1225 }
1226 CHECK(false);
1227}
1228
1229legacy_hal::NanSubscribeType convertAidlNanSubscribeTypeToLegacy(NanSubscribeType type) {
1230 switch (type) {
1231 case NanSubscribeType::PASSIVE:
1232 return legacy_hal::NAN_SUBSCRIBE_TYPE_PASSIVE;
1233 case NanSubscribeType::ACTIVE:
1234 return legacy_hal::NAN_SUBSCRIBE_TYPE_ACTIVE;
1235 }
1236 CHECK(false);
1237}
1238
1239legacy_hal::NanSRFType convertAidlNanSrfTypeToLegacy(NanSrfType type) {
1240 switch (type) {
1241 case NanSrfType::BLOOM_FILTER:
1242 return legacy_hal::NAN_SRF_ATTR_BLOOM_FILTER;
1243 case NanSrfType::PARTIAL_MAC_ADDR:
1244 return legacy_hal::NAN_SRF_ATTR_PARTIAL_MAC_ADDR;
1245 }
1246 CHECK(false);
1247}
1248
1249legacy_hal::NanDataPathChannelCfg convertAidlNanDataPathChannelCfgToLegacy(
1250 NanDataPathChannelCfg type) {
1251 switch (type) {
1252 case NanDataPathChannelCfg::CHANNEL_NOT_REQUESTED:
1253 return legacy_hal::NAN_DP_CHANNEL_NOT_REQUESTED;
1254 case NanDataPathChannelCfg::REQUEST_CHANNEL_SETUP:
1255 return legacy_hal::NAN_DP_REQUEST_CHANNEL_SETUP;
1256 case NanDataPathChannelCfg::FORCE_CHANNEL_SETUP:
1257 return legacy_hal::NAN_DP_FORCE_CHANNEL_SETUP;
1258 }
1259 CHECK(false);
1260}
1261
1262NanStatusCode convertLegacyNanStatusTypeToAidl(legacy_hal::NanStatusType type) {
1263 switch (type) {
1264 case legacy_hal::NAN_STATUS_SUCCESS:
1265 return NanStatusCode::SUCCESS;
1266 case legacy_hal::NAN_STATUS_INTERNAL_FAILURE:
1267 return NanStatusCode::INTERNAL_FAILURE;
1268 case legacy_hal::NAN_STATUS_PROTOCOL_FAILURE:
1269 return NanStatusCode::PROTOCOL_FAILURE;
1270 case legacy_hal::NAN_STATUS_INVALID_PUBLISH_SUBSCRIBE_ID:
1271 return NanStatusCode::INVALID_SESSION_ID;
1272 case legacy_hal::NAN_STATUS_NO_RESOURCE_AVAILABLE:
1273 return NanStatusCode::NO_RESOURCES_AVAILABLE;
1274 case legacy_hal::NAN_STATUS_INVALID_PARAM:
1275 return NanStatusCode::INVALID_ARGS;
1276 case legacy_hal::NAN_STATUS_INVALID_REQUESTOR_INSTANCE_ID:
1277 return NanStatusCode::INVALID_PEER_ID;
1278 case legacy_hal::NAN_STATUS_INVALID_NDP_ID:
1279 return NanStatusCode::INVALID_NDP_ID;
1280 case legacy_hal::NAN_STATUS_NAN_NOT_ALLOWED:
1281 return NanStatusCode::NAN_NOT_ALLOWED;
1282 case legacy_hal::NAN_STATUS_NO_OTA_ACK:
1283 return NanStatusCode::NO_OTA_ACK;
1284 case legacy_hal::NAN_STATUS_ALREADY_ENABLED:
1285 return NanStatusCode::ALREADY_ENABLED;
1286 case legacy_hal::NAN_STATUS_FOLLOWUP_QUEUE_FULL:
1287 return NanStatusCode::FOLLOWUP_TX_QUEUE_FULL;
1288 case legacy_hal::NAN_STATUS_UNSUPPORTED_CONCURRENCY_NAN_DISABLED:
1289 return NanStatusCode::UNSUPPORTED_CONCURRENCY_NAN_DISABLED;
1290 }
1291 CHECK(false);
1292}
1293
1294void convertToNanStatus(legacy_hal::NanStatusType type, const char* str, size_t max_len,
1295 NanStatus* nanStatus) {
1296 nanStatus->status = convertLegacyNanStatusTypeToAidl(type);
1297 nanStatus->description = safeConvertChar(str, max_len);
1298}
1299
1300bool convertAidlNanEnableRequestToLegacy(const NanEnableRequest& aidl_request1,
1301 const NanConfigRequestSupplemental& aidl_request2,
1302 legacy_hal::NanEnableRequest* legacy_request) {
1303 if (!legacy_request) {
1304 LOG(ERROR) << "convertAidlNanEnableRequestToLegacy: null legacy_request";
1305 return false;
1306 }
1307 *legacy_request = {};
1308
1309 legacy_request->config_2dot4g_support = 1;
1310 legacy_request->support_2dot4g_val =
1311 aidl_request1.operateInBand[(size_t)NanBandIndex::NAN_BAND_24GHZ];
1312 legacy_request->config_support_5g = 1;
1313 legacy_request->support_5g_val =
1314 aidl_request1.operateInBand[(size_t)NanBandIndex::NAN_BAND_5GHZ];
1315 legacy_request->config_hop_count_limit = 1;
1316 legacy_request->hop_count_limit_val = aidl_request1.hopCountMax;
1317 legacy_request->master_pref = aidl_request1.configParams.masterPref;
1318 legacy_request->discovery_indication_cfg = 0;
1319 legacy_request->discovery_indication_cfg |=
1320 aidl_request1.configParams.disableDiscoveryAddressChangeIndication ? 0x1 : 0x0;
1321 legacy_request->discovery_indication_cfg |=
1322 aidl_request1.configParams.disableStartedClusterIndication ? 0x2 : 0x0;
1323 legacy_request->discovery_indication_cfg |=
1324 aidl_request1.configParams.disableJoinedClusterIndication ? 0x4 : 0x0;
1325 legacy_request->config_sid_beacon = 1;
1326 if (aidl_request1.configParams.numberOfPublishServiceIdsInBeacon < 0) {
1327 LOG(ERROR) << "convertAidlNanEnableRequestToLegacy: "
1328 "numberOfPublishServiceIdsInBeacon < 0";
1329 return false;
1330 }
1331 legacy_request->sid_beacon_val =
1332 (aidl_request1.configParams.includePublishServiceIdsInBeacon ? 0x1 : 0x0) |
1333 (aidl_request1.configParams.numberOfPublishServiceIdsInBeacon << 1);
1334 legacy_request->config_subscribe_sid_beacon = 1;
1335 if (aidl_request1.configParams.numberOfSubscribeServiceIdsInBeacon < 0) {
1336 LOG(ERROR) << "convertAidlNanEnableRequestToLegacy: "
1337 "numberOfSubscribeServiceIdsInBeacon < 0";
1338 return false;
1339 }
1340 legacy_request->subscribe_sid_beacon_val =
1341 (aidl_request1.configParams.includeSubscribeServiceIdsInBeacon ? 0x1 : 0x0) |
1342 (aidl_request1.configParams.numberOfSubscribeServiceIdsInBeacon << 1);
1343 legacy_request->config_rssi_window_size = 1;
1344 legacy_request->rssi_window_size_val = aidl_request1.configParams.rssiWindowSize;
1345 legacy_request->config_disc_mac_addr_randomization = 1;
1346 legacy_request->disc_mac_addr_rand_interval_sec =
1347 aidl_request1.configParams.macAddressRandomizationIntervalSec;
1348 legacy_request->config_2dot4g_rssi_close = 1;
1349 if (aidl_request1.configParams.bandSpecificConfig.size() != 3) {
1350 LOG(ERROR) << "convertAidlNanEnableRequestToLegacy: "
1351 "bandSpecificConfig.size() != 3";
1352 return false;
1353 }
1354 legacy_request->rssi_close_2dot4g_val =
1355 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_24GHZ]
1356 .rssiClose;
1357 legacy_request->config_2dot4g_rssi_middle = 1;
1358 legacy_request->rssi_middle_2dot4g_val =
1359 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_24GHZ]
1360 .rssiMiddle;
1361 legacy_request->config_2dot4g_rssi_proximity = 1;
1362 legacy_request->rssi_proximity_2dot4g_val =
1363 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_24GHZ]
1364 .rssiCloseProximity;
1365 legacy_request->config_scan_params = 1;
1366 legacy_request->scan_params_val.dwell_time[legacy_hal::NAN_CHANNEL_24G_BAND] =
1367 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_24GHZ]
1368 .dwellTimeMs;
1369 legacy_request->scan_params_val.scan_period[legacy_hal::NAN_CHANNEL_24G_BAND] =
1370 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_24GHZ]
1371 .scanPeriodSec;
1372 legacy_request->config_dw.config_2dot4g_dw_band =
1373 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_24GHZ]
1374 .validDiscoveryWindowIntervalVal;
1375 legacy_request->config_dw.dw_2dot4g_interval_val =
1376 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_24GHZ]
1377 .discoveryWindowIntervalVal;
1378 legacy_request->config_5g_rssi_close = 1;
1379 legacy_request->rssi_close_5g_val =
1380 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ]
1381 .rssiClose;
1382 legacy_request->config_5g_rssi_middle = 1;
1383 legacy_request->rssi_middle_5g_val =
1384 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ]
1385 .rssiMiddle;
1386 legacy_request->config_5g_rssi_close_proximity = 1;
1387 legacy_request->rssi_close_proximity_5g_val =
1388 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ]
1389 .rssiCloseProximity;
1390 legacy_request->scan_params_val.dwell_time[legacy_hal::NAN_CHANNEL_5G_BAND_LOW] =
1391 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ]
1392 .dwellTimeMs;
1393 legacy_request->scan_params_val.scan_period[legacy_hal::NAN_CHANNEL_5G_BAND_LOW] =
1394 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ]
1395 .scanPeriodSec;
1396 legacy_request->scan_params_val.dwell_time[legacy_hal::NAN_CHANNEL_5G_BAND_HIGH] =
1397 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ]
1398 .dwellTimeMs;
1399 legacy_request->scan_params_val.scan_period[legacy_hal::NAN_CHANNEL_5G_BAND_HIGH] =
1400 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ]
1401 .scanPeriodSec;
1402 legacy_request->config_dw.config_5g_dw_band =
1403 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ]
1404 .validDiscoveryWindowIntervalVal;
1405 legacy_request->config_dw.dw_5g_interval_val =
1406 aidl_request1.configParams.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ]
1407 .discoveryWindowIntervalVal;
1408 if (aidl_request1.debugConfigs.validClusterIdVals) {
1409 legacy_request->cluster_low = aidl_request1.debugConfigs.clusterIdBottomRangeVal;
1410 legacy_request->cluster_high = aidl_request1.debugConfigs.clusterIdTopRangeVal;
1411 } else { // need 'else' since not configurable in legacy HAL
1412 legacy_request->cluster_low = 0x0000;
1413 legacy_request->cluster_high = 0xFFFF;
1414 }
1415 legacy_request->config_intf_addr = aidl_request1.debugConfigs.validIntfAddrVal;
1416 memcpy(legacy_request->intf_addr_val, aidl_request1.debugConfigs.intfAddrVal.data(), 6);
1417 legacy_request->config_oui = aidl_request1.debugConfigs.validOuiVal;
1418 legacy_request->oui_val = aidl_request1.debugConfigs.ouiVal;
1419 legacy_request->config_random_factor_force =
1420 aidl_request1.debugConfigs.validRandomFactorForceVal;
1421 legacy_request->random_factor_force_val = aidl_request1.debugConfigs.randomFactorForceVal;
1422 legacy_request->config_hop_count_force = aidl_request1.debugConfigs.validHopCountForceVal;
1423 legacy_request->hop_count_force_val = aidl_request1.debugConfigs.hopCountForceVal;
1424 legacy_request->config_24g_channel = aidl_request1.debugConfigs.validDiscoveryChannelVal;
1425 legacy_request->channel_24g_val =
1426 aidl_request1.debugConfigs.discoveryChannelMhzVal[(size_t)NanBandIndex::NAN_BAND_24GHZ];
1427 legacy_request->config_5g_channel = aidl_request1.debugConfigs.validDiscoveryChannelVal;
1428 legacy_request->channel_5g_val =
1429 aidl_request1.debugConfigs.discoveryChannelMhzVal[(size_t)NanBandIndex::NAN_BAND_5GHZ];
1430 legacy_request->config_2dot4g_beacons = aidl_request1.debugConfigs.validUseBeaconsInBandVal;
1431 legacy_request->beacon_2dot4g_val =
1432 aidl_request1.debugConfigs.useBeaconsInBandVal[(size_t)NanBandIndex::NAN_BAND_24GHZ];
1433 legacy_request->config_5g_beacons = aidl_request1.debugConfigs.validUseBeaconsInBandVal;
1434 legacy_request->beacon_5g_val =
1435 aidl_request1.debugConfigs.useBeaconsInBandVal[(size_t)NanBandIndex::NAN_BAND_5GHZ];
1436 legacy_request->config_2dot4g_sdf = aidl_request1.debugConfigs.validUseSdfInBandVal;
1437 legacy_request->sdf_2dot4g_val =
1438 aidl_request1.debugConfigs.useSdfInBandVal[(size_t)NanBandIndex::NAN_BAND_24GHZ];
1439 legacy_request->config_5g_sdf = aidl_request1.debugConfigs.validUseSdfInBandVal;
1440 legacy_request->sdf_5g_val =
1441 aidl_request1.debugConfigs.useSdfInBandVal[(size_t)NanBandIndex::NAN_BAND_5GHZ];
1442
1443 legacy_request->config_discovery_beacon_int = 1;
1444 legacy_request->discovery_beacon_interval = aidl_request2.discoveryBeaconIntervalMs;
1445 legacy_request->config_nss = 1;
1446 legacy_request->nss = aidl_request2.numberOfSpatialStreamsInDiscovery;
1447 legacy_request->config_dw_early_termination = 1;
1448 legacy_request->enable_dw_termination = aidl_request2.enableDiscoveryWindowEarlyTermination;
1449 legacy_request->config_enable_ranging = 1;
1450 legacy_request->enable_ranging = aidl_request2.enableRanging;
1451
1452 legacy_request->config_enable_instant_mode = 1;
1453 legacy_request->enable_instant_mode = aidl_request2.enableInstantCommunicationMode;
1454 legacy_request->config_instant_mode_channel = 1;
1455 legacy_request->instant_mode_channel = aidl_request2.instantModeChannel;
1456
1457 return true;
1458}
1459
1460bool convertAidlNanConfigRequestToLegacy(const NanConfigRequest& aidl_request1,
1461 const NanConfigRequestSupplemental& aidl_request2,
1462 legacy_hal::NanConfigRequest* legacy_request) {
1463 if (!legacy_request) {
1464 LOG(ERROR) << "convertAidlNanConfigRequestToLegacy: null legacy_request";
1465 return false;
1466 }
1467 *legacy_request = {};
1468
1469 legacy_request->master_pref = aidl_request1.masterPref;
1470 legacy_request->discovery_indication_cfg = 0;
1471 legacy_request->discovery_indication_cfg |=
1472 aidl_request1.disableDiscoveryAddressChangeIndication ? 0x1 : 0x0;
1473 legacy_request->discovery_indication_cfg |=
1474 aidl_request1.disableStartedClusterIndication ? 0x2 : 0x0;
1475 legacy_request->discovery_indication_cfg |=
1476 aidl_request1.disableJoinedClusterIndication ? 0x4 : 0x0;
1477 legacy_request->config_sid_beacon = 1;
1478 if (aidl_request1.numberOfPublishServiceIdsInBeacon < 0) {
1479 LOG(ERROR) << "convertAidlNanConfigRequestToLegacy: "
1480 "numberOfPublishServiceIdsInBeacon < 0";
1481 return false;
1482 }
1483 legacy_request->sid_beacon = (aidl_request1.includePublishServiceIdsInBeacon ? 0x1 : 0x0) |
1484 (aidl_request1.numberOfPublishServiceIdsInBeacon << 1);
1485 legacy_request->config_subscribe_sid_beacon = 1;
1486 if (aidl_request1.numberOfSubscribeServiceIdsInBeacon < 0) {
1487 LOG(ERROR) << "convertAidlNanConfigRequestToLegacy: "
1488 "numberOfSubscribeServiceIdsInBeacon < 0";
1489 return false;
1490 }
1491 legacy_request->subscribe_sid_beacon_val =
1492 (aidl_request1.includeSubscribeServiceIdsInBeacon ? 0x1 : 0x0) |
1493 (aidl_request1.numberOfSubscribeServiceIdsInBeacon << 1);
1494 legacy_request->config_rssi_window_size = 1;
1495 legacy_request->rssi_window_size_val = aidl_request1.rssiWindowSize;
1496 legacy_request->config_disc_mac_addr_randomization = 1;
1497 legacy_request->disc_mac_addr_rand_interval_sec =
1498 aidl_request1.macAddressRandomizationIntervalSec;
1499
1500 legacy_request->config_scan_params = 1;
1501 legacy_request->scan_params_val.dwell_time[legacy_hal::NAN_CHANNEL_24G_BAND] =
1502 aidl_request1.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_24GHZ].dwellTimeMs;
1503 legacy_request->scan_params_val.scan_period[legacy_hal::NAN_CHANNEL_24G_BAND] =
1504 aidl_request1.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_24GHZ].scanPeriodSec;
1505 legacy_request->config_dw.config_2dot4g_dw_band =
1506 aidl_request1.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_24GHZ]
1507 .validDiscoveryWindowIntervalVal;
1508 legacy_request->config_dw.dw_2dot4g_interval_val =
1509 aidl_request1.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_24GHZ]
1510 .discoveryWindowIntervalVal;
1511
1512 legacy_request->config_5g_rssi_close_proximity = 1;
1513 legacy_request->rssi_close_proximity_5g_val =
1514 aidl_request1.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ]
1515 .rssiCloseProximity;
1516 legacy_request->scan_params_val.dwell_time[legacy_hal::NAN_CHANNEL_5G_BAND_LOW] =
1517 aidl_request1.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ].dwellTimeMs;
1518 legacy_request->scan_params_val.scan_period[legacy_hal::NAN_CHANNEL_5G_BAND_LOW] =
1519 aidl_request1.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ].scanPeriodSec;
1520 legacy_request->scan_params_val.dwell_time[legacy_hal::NAN_CHANNEL_5G_BAND_HIGH] =
1521 aidl_request1.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ].dwellTimeMs;
1522 legacy_request->scan_params_val.scan_period[legacy_hal::NAN_CHANNEL_5G_BAND_HIGH] =
1523 aidl_request1.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ].scanPeriodSec;
1524 legacy_request->config_dw.config_5g_dw_band =
1525 aidl_request1.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ]
1526 .validDiscoveryWindowIntervalVal;
1527 legacy_request->config_dw.dw_5g_interval_val =
1528 aidl_request1.bandSpecificConfig[(size_t)NanBandIndex::NAN_BAND_5GHZ]
1529 .discoveryWindowIntervalVal;
1530
1531 legacy_request->config_discovery_beacon_int = 1;
1532 legacy_request->discovery_beacon_interval = aidl_request2.discoveryBeaconIntervalMs;
1533 legacy_request->config_nss = 1;
1534 legacy_request->nss = aidl_request2.numberOfSpatialStreamsInDiscovery;
1535 legacy_request->config_dw_early_termination = 1;
1536 legacy_request->enable_dw_termination = aidl_request2.enableDiscoveryWindowEarlyTermination;
1537 legacy_request->config_enable_ranging = 1;
1538 legacy_request->enable_ranging = aidl_request2.enableRanging;
1539
1540 legacy_request->config_enable_instant_mode = 1;
1541 legacy_request->enable_instant_mode = aidl_request2.enableInstantCommunicationMode;
1542 legacy_request->config_instant_mode_channel = 1;
1543 legacy_request->instant_mode_channel = aidl_request2.instantModeChannel;
1544
1545 return true;
1546}
1547
1548bool convertAidlNanPublishRequestToLegacy(const NanPublishRequest& aidl_request,
1549 legacy_hal::NanPublishRequest* legacy_request) {
1550 if (!legacy_request) {
1551 LOG(ERROR) << "convertAidlNanPublishRequestToLegacy: null legacy_request";
1552 return false;
1553 }
1554 *legacy_request = {};
1555
1556 legacy_request->publish_id = aidl_request.baseConfigs.sessionId;
1557 legacy_request->ttl = aidl_request.baseConfigs.ttlSec;
1558 legacy_request->period = aidl_request.baseConfigs.discoveryWindowPeriod;
1559 legacy_request->publish_count = aidl_request.baseConfigs.discoveryCount;
1560 legacy_request->service_name_len = aidl_request.baseConfigs.serviceName.size();
1561 if (legacy_request->service_name_len > NAN_MAX_SERVICE_NAME_LEN) {
1562 LOG(ERROR) << "convertAidlNanPublishRequestToLegacy: service_name_len "
1563 "too large";
1564 return false;
1565 }
1566 memcpy(legacy_request->service_name, aidl_request.baseConfigs.serviceName.data(),
1567 legacy_request->service_name_len);
1568 legacy_request->publish_match_indicator =
1569 convertAidlNanMatchAlgToLegacy(aidl_request.baseConfigs.discoveryMatchIndicator);
1570 legacy_request->service_specific_info_len = aidl_request.baseConfigs.serviceSpecificInfo.size();
1571 if (legacy_request->service_specific_info_len > NAN_MAX_SERVICE_SPECIFIC_INFO_LEN) {
1572 LOG(ERROR) << "convertAidlNanPublishRequestToLegacy: "
1573 "service_specific_info_len too large";
1574 return false;
1575 }
1576 memcpy(legacy_request->service_specific_info,
1577 aidl_request.baseConfigs.serviceSpecificInfo.data(),
1578 legacy_request->service_specific_info_len);
1579 legacy_request->sdea_service_specific_info_len =
1580 aidl_request.baseConfigs.extendedServiceSpecificInfo.size();
1581 if (legacy_request->sdea_service_specific_info_len > NAN_MAX_SDEA_SERVICE_SPECIFIC_INFO_LEN) {
1582 LOG(ERROR) << "convertAidlNanPublishRequestToLegacy: "
1583 "sdea_service_specific_info_len too large";
1584 return false;
1585 }
1586 memcpy(legacy_request->sdea_service_specific_info,
1587 aidl_request.baseConfigs.extendedServiceSpecificInfo.data(),
1588 legacy_request->sdea_service_specific_info_len);
1589 legacy_request->rx_match_filter_len = aidl_request.baseConfigs.rxMatchFilter.size();
1590 if (legacy_request->rx_match_filter_len > NAN_MAX_MATCH_FILTER_LEN) {
1591 LOG(ERROR) << "convertAidlNanPublishRequestToLegacy: "
1592 "rx_match_filter_len too large";
1593 return false;
1594 }
1595 memcpy(legacy_request->rx_match_filter, aidl_request.baseConfigs.rxMatchFilter.data(),
1596 legacy_request->rx_match_filter_len);
1597 legacy_request->tx_match_filter_len = aidl_request.baseConfigs.txMatchFilter.size();
1598 if (legacy_request->tx_match_filter_len > NAN_MAX_MATCH_FILTER_LEN) {
1599 LOG(ERROR) << "convertAidlNanPublishRequestToLegacy: "
1600 "tx_match_filter_len too large";
1601 return false;
1602 }
1603 memcpy(legacy_request->tx_match_filter, aidl_request.baseConfigs.txMatchFilter.data(),
1604 legacy_request->tx_match_filter_len);
1605 legacy_request->rssi_threshold_flag = aidl_request.baseConfigs.useRssiThreshold;
1606 legacy_request->recv_indication_cfg = 0;
1607 legacy_request->recv_indication_cfg |=
1608 aidl_request.baseConfigs.disableDiscoveryTerminationIndication ? 0x1 : 0x0;
1609 legacy_request->recv_indication_cfg |=
1610 aidl_request.baseConfigs.disableMatchExpirationIndication ? 0x2 : 0x0;
1611 legacy_request->recv_indication_cfg |=
1612 aidl_request.baseConfigs.disableFollowupReceivedIndication ? 0x4 : 0x0;
1613 legacy_request->recv_indication_cfg |= 0x8;
1614 legacy_request->cipher_type = (unsigned int)aidl_request.baseConfigs.securityConfig.cipherType;
1615
1616 legacy_request->scid_len = aidl_request.baseConfigs.securityConfig.scid.size();
1617 if (legacy_request->scid_len > NAN_MAX_SCID_BUF_LEN) {
1618 LOG(ERROR) << "convertAidlNanPublishRequestToLegacy: scid_len too large";
1619 return false;
1620 }
1621 memcpy(legacy_request->scid, aidl_request.baseConfigs.securityConfig.scid.data(),
1622 legacy_request->scid_len);
1623
1624 if (aidl_request.baseConfigs.securityConfig.securityType == NanDataPathSecurityType::PMK) {
1625 legacy_request->key_info.key_type = legacy_hal::NAN_SECURITY_KEY_INPUT_PMK;
1626 legacy_request->key_info.body.pmk_info.pmk_len =
1627 aidl_request.baseConfigs.securityConfig.pmk.size();
1628 if (legacy_request->key_info.body.pmk_info.pmk_len != NAN_PMK_INFO_LEN) {
1629 LOG(ERROR) << "convertAidlNanPublishRequestToLegacy: invalid pmk_len";
1630 return false;
1631 }
1632 memcpy(legacy_request->key_info.body.pmk_info.pmk,
1633 aidl_request.baseConfigs.securityConfig.pmk.data(),
1634 legacy_request->key_info.body.pmk_info.pmk_len);
1635 }
1636 if (aidl_request.baseConfigs.securityConfig.securityType ==
1637 NanDataPathSecurityType::PASSPHRASE) {
1638 legacy_request->key_info.key_type = legacy_hal::NAN_SECURITY_KEY_INPUT_PASSPHRASE;
1639 legacy_request->key_info.body.passphrase_info.passphrase_len =
1640 aidl_request.baseConfigs.securityConfig.passphrase.size();
1641 if (legacy_request->key_info.body.passphrase_info.passphrase_len <
1642 NAN_SECURITY_MIN_PASSPHRASE_LEN) {
1643 LOG(ERROR) << "convertAidlNanPublishRequestToLegacy: "
1644 "passphrase_len too small";
1645 return false;
1646 }
1647 if (legacy_request->key_info.body.passphrase_info.passphrase_len >
1648 NAN_SECURITY_MAX_PASSPHRASE_LEN) {
1649 LOG(ERROR) << "convertAidlNanPublishRequestToLegacy: "
1650 "passphrase_len too large";
1651 return false;
1652 }
1653 memcpy(legacy_request->key_info.body.passphrase_info.passphrase,
1654 aidl_request.baseConfigs.securityConfig.passphrase.data(),
1655 legacy_request->key_info.body.passphrase_info.passphrase_len);
1656 }
1657 legacy_request->sdea_params.security_cfg =
1658 (aidl_request.baseConfigs.securityConfig.securityType != NanDataPathSecurityType::OPEN)
1659 ? legacy_hal::NAN_DP_CONFIG_SECURITY
1660 : legacy_hal::NAN_DP_CONFIG_NO_SECURITY;
1661
1662 legacy_request->sdea_params.ranging_state = aidl_request.baseConfigs.rangingRequired
1663 ? legacy_hal::NAN_RANGING_ENABLE
1664 : legacy_hal::NAN_RANGING_DISABLE;
1665 legacy_request->ranging_cfg.ranging_interval_msec = aidl_request.baseConfigs.rangingIntervalMs;
1666 legacy_request->ranging_cfg.config_ranging_indications =
1667 static_cast<uint32_t>(aidl_request.baseConfigs.configRangingIndications);
1668 legacy_request->ranging_cfg.distance_ingress_mm =
1669 aidl_request.baseConfigs.distanceIngressCm * 10;
1670 legacy_request->ranging_cfg.distance_egress_mm = aidl_request.baseConfigs.distanceEgressCm * 10;
1671 legacy_request->ranging_auto_response = aidl_request.baseConfigs.rangingRequired
1672 ? legacy_hal::NAN_RANGING_AUTO_RESPONSE_ENABLE
1673 : legacy_hal::NAN_RANGING_AUTO_RESPONSE_DISABLE;
1674 legacy_request->sdea_params.range_report = legacy_hal::NAN_DISABLE_RANGE_REPORT;
1675 legacy_request->publish_type = convertAidlNanPublishTypeToLegacy(aidl_request.publishType);
1676 legacy_request->tx_type = convertAidlNanTxTypeToLegacy(aidl_request.txType);
1677 legacy_request->service_responder_policy = aidl_request.autoAcceptDataPathRequests
1678 ? legacy_hal::NAN_SERVICE_ACCEPT_POLICY_ALL
1679 : legacy_hal::NAN_SERVICE_ACCEPT_POLICY_NONE;
1680
1681 return true;
1682}
1683
1684bool convertAidlNanSubscribeRequestToLegacy(const NanSubscribeRequest& aidl_request,
1685 legacy_hal::NanSubscribeRequest* legacy_request) {
1686 if (!legacy_request) {
1687 LOG(ERROR) << "convertAidlNanSubscribeRequestToLegacy: legacy_request is null";
1688 return false;
1689 }
1690 *legacy_request = {};
1691
1692 legacy_request->subscribe_id = aidl_request.baseConfigs.sessionId;
1693 legacy_request->ttl = aidl_request.baseConfigs.ttlSec;
1694 legacy_request->period = aidl_request.baseConfigs.discoveryWindowPeriod;
1695 legacy_request->subscribe_count = aidl_request.baseConfigs.discoveryCount;
1696 legacy_request->service_name_len = aidl_request.baseConfigs.serviceName.size();
1697 if (legacy_request->service_name_len > NAN_MAX_SERVICE_NAME_LEN) {
1698 LOG(ERROR) << "convertAidlNanSubscribeRequestToLegacy: "
1699 "service_name_len too large";
1700 return false;
1701 }
1702 memcpy(legacy_request->service_name, aidl_request.baseConfigs.serviceName.data(),
1703 legacy_request->service_name_len);
1704 legacy_request->subscribe_match_indicator =
1705 convertAidlNanMatchAlgToLegacy(aidl_request.baseConfigs.discoveryMatchIndicator);
1706 legacy_request->service_specific_info_len = aidl_request.baseConfigs.serviceSpecificInfo.size();
1707 if (legacy_request->service_specific_info_len > NAN_MAX_SERVICE_SPECIFIC_INFO_LEN) {
1708 LOG(ERROR) << "convertAidlNanSubscribeRequestToLegacy: "
1709 "service_specific_info_len too large";
1710 return false;
1711 }
1712 memcpy(legacy_request->service_specific_info,
1713 aidl_request.baseConfigs.serviceSpecificInfo.data(),
1714 legacy_request->service_specific_info_len);
1715 legacy_request->sdea_service_specific_info_len =
1716 aidl_request.baseConfigs.extendedServiceSpecificInfo.size();
1717 if (legacy_request->sdea_service_specific_info_len > NAN_MAX_SDEA_SERVICE_SPECIFIC_INFO_LEN) {
1718 LOG(ERROR) << "convertAidlNanSubscribeRequestToLegacy: "
1719 "sdea_service_specific_info_len too large";
1720 return false;
1721 }
1722 memcpy(legacy_request->sdea_service_specific_info,
1723 aidl_request.baseConfigs.extendedServiceSpecificInfo.data(),
1724 legacy_request->sdea_service_specific_info_len);
1725 legacy_request->rx_match_filter_len = aidl_request.baseConfigs.rxMatchFilter.size();
1726 if (legacy_request->rx_match_filter_len > NAN_MAX_MATCH_FILTER_LEN) {
1727 LOG(ERROR) << "convertAidlNanSubscribeRequestToLegacy: "
1728 "rx_match_filter_len too large";
1729 return false;
1730 }
1731 memcpy(legacy_request->rx_match_filter, aidl_request.baseConfigs.rxMatchFilter.data(),
1732 legacy_request->rx_match_filter_len);
1733 legacy_request->tx_match_filter_len = aidl_request.baseConfigs.txMatchFilter.size();
1734 if (legacy_request->tx_match_filter_len > NAN_MAX_MATCH_FILTER_LEN) {
1735 LOG(ERROR) << "convertAidlNanSubscribeRequestToLegacy: "
1736 "tx_match_filter_len too large";
1737 return false;
1738 }
1739 memcpy(legacy_request->tx_match_filter, aidl_request.baseConfigs.txMatchFilter.data(),
1740 legacy_request->tx_match_filter_len);
1741 legacy_request->rssi_threshold_flag = aidl_request.baseConfigs.useRssiThreshold;
1742 legacy_request->recv_indication_cfg = 0;
1743 legacy_request->recv_indication_cfg |=
1744 aidl_request.baseConfigs.disableDiscoveryTerminationIndication ? 0x1 : 0x0;
1745 legacy_request->recv_indication_cfg |=
1746 aidl_request.baseConfigs.disableMatchExpirationIndication ? 0x2 : 0x0;
1747 legacy_request->recv_indication_cfg |=
1748 aidl_request.baseConfigs.disableFollowupReceivedIndication ? 0x4 : 0x0;
1749 legacy_request->cipher_type = (unsigned int)aidl_request.baseConfigs.securityConfig.cipherType;
1750 if (aidl_request.baseConfigs.securityConfig.securityType == NanDataPathSecurityType::PMK) {
1751 legacy_request->key_info.key_type = legacy_hal::NAN_SECURITY_KEY_INPUT_PMK;
1752 legacy_request->key_info.body.pmk_info.pmk_len =
1753 aidl_request.baseConfigs.securityConfig.pmk.size();
1754 if (legacy_request->key_info.body.pmk_info.pmk_len != NAN_PMK_INFO_LEN) {
1755 LOG(ERROR) << "convertAidlNanSubscribeRequestToLegacy: invalid pmk_len";
1756 return false;
1757 }
1758 memcpy(legacy_request->key_info.body.pmk_info.pmk,
1759 aidl_request.baseConfigs.securityConfig.pmk.data(),
1760 legacy_request->key_info.body.pmk_info.pmk_len);
1761 }
1762 if (aidl_request.baseConfigs.securityConfig.securityType ==
1763 NanDataPathSecurityType::PASSPHRASE) {
1764 legacy_request->key_info.key_type = legacy_hal::NAN_SECURITY_KEY_INPUT_PASSPHRASE;
1765 legacy_request->key_info.body.passphrase_info.passphrase_len =
1766 aidl_request.baseConfigs.securityConfig.passphrase.size();
1767 if (legacy_request->key_info.body.passphrase_info.passphrase_len <
1768 NAN_SECURITY_MIN_PASSPHRASE_LEN) {
1769 LOG(ERROR) << "convertAidlNanSubscribeRequestToLegacy: "
1770 "passphrase_len too small";
1771 return false;
1772 }
1773 if (legacy_request->key_info.body.passphrase_info.passphrase_len >
1774 NAN_SECURITY_MAX_PASSPHRASE_LEN) {
1775 LOG(ERROR) << "convertAidlNanSubscribeRequestToLegacy: "
1776 "passphrase_len too large";
1777 return false;
1778 }
1779 memcpy(legacy_request->key_info.body.passphrase_info.passphrase,
1780 aidl_request.baseConfigs.securityConfig.passphrase.data(),
1781 legacy_request->key_info.body.passphrase_info.passphrase_len);
1782 }
1783 legacy_request->sdea_params.security_cfg =
1784 (aidl_request.baseConfigs.securityConfig.securityType != NanDataPathSecurityType::OPEN)
1785 ? legacy_hal::NAN_DP_CONFIG_SECURITY
1786 : legacy_hal::NAN_DP_CONFIG_NO_SECURITY;
1787 legacy_request->sdea_params.ranging_state = aidl_request.baseConfigs.rangingRequired
1788 ? legacy_hal::NAN_RANGING_ENABLE
1789 : legacy_hal::NAN_RANGING_DISABLE;
1790 legacy_request->ranging_cfg.ranging_interval_msec = aidl_request.baseConfigs.rangingIntervalMs;
1791 legacy_request->ranging_cfg.config_ranging_indications =
1792 static_cast<uint32_t>(aidl_request.baseConfigs.configRangingIndications);
1793 legacy_request->ranging_cfg.distance_ingress_mm =
1794 aidl_request.baseConfigs.distanceIngressCm * 10;
1795 legacy_request->ranging_cfg.distance_egress_mm = aidl_request.baseConfigs.distanceEgressCm * 10;
1796 legacy_request->ranging_auto_response = aidl_request.baseConfigs.rangingRequired
1797 ? legacy_hal::NAN_RANGING_AUTO_RESPONSE_ENABLE
1798 : legacy_hal::NAN_RANGING_AUTO_RESPONSE_DISABLE;
1799 legacy_request->sdea_params.range_report = legacy_hal::NAN_DISABLE_RANGE_REPORT;
1800 legacy_request->subscribe_type =
1801 convertAidlNanSubscribeTypeToLegacy(aidl_request.subscribeType);
1802 legacy_request->serviceResponseFilter = convertAidlNanSrfTypeToLegacy(aidl_request.srfType);
1803 legacy_request->serviceResponseInclude = aidl_request.srfRespondIfInAddressSet
1804 ? legacy_hal::NAN_SRF_INCLUDE_RESPOND
1805 : legacy_hal::NAN_SRF_INCLUDE_DO_NOT_RESPOND;
1806 legacy_request->useServiceResponseFilter =
1807 aidl_request.shouldUseSrf ? legacy_hal::NAN_USE_SRF : legacy_hal::NAN_DO_NOT_USE_SRF;
1808 legacy_request->ssiRequiredForMatchIndication =
1809 aidl_request.isSsiRequiredForMatch ? legacy_hal::NAN_SSI_REQUIRED_IN_MATCH_IND
1810 : legacy_hal::NAN_SSI_NOT_REQUIRED_IN_MATCH_IND;
1811 legacy_request->num_intf_addr_present = aidl_request.intfAddr.size();
1812 if (legacy_request->num_intf_addr_present > NAN_MAX_SUBSCRIBE_MAX_ADDRESS) {
1813 LOG(ERROR) << "convertAidlNanSubscribeRequestToLegacy: "
1814 "num_intf_addr_present - too many";
1815 return false;
1816 }
1817 for (int i = 0; i < legacy_request->num_intf_addr_present; i++) {
1818 memcpy(legacy_request->intf_addr[i], aidl_request.intfAddr[i].data.data(), 6);
1819 }
1820
1821 return true;
1822}
1823
1824bool convertAidlNanTransmitFollowupRequestToLegacy(
1825 const NanTransmitFollowupRequest& aidl_request,
1826 legacy_hal::NanTransmitFollowupRequest* legacy_request) {
1827 if (!legacy_request) {
1828 LOG(ERROR) << "convertAidlNanTransmitFollowupRequestToLegacy: "
1829 "legacy_request is null";
1830 return false;
1831 }
1832 *legacy_request = {};
1833
1834 legacy_request->publish_subscribe_id = aidl_request.discoverySessionId;
1835 legacy_request->requestor_instance_id = aidl_request.peerId;
1836 memcpy(legacy_request->addr, aidl_request.addr.data(), 6);
1837 legacy_request->priority = aidl_request.isHighPriority ? legacy_hal::NAN_TX_PRIORITY_HIGH
1838 : legacy_hal::NAN_TX_PRIORITY_NORMAL;
1839 legacy_request->dw_or_faw = aidl_request.shouldUseDiscoveryWindow
1840 ? legacy_hal::NAN_TRANSMIT_IN_DW
1841 : legacy_hal::NAN_TRANSMIT_IN_FAW;
1842 legacy_request->service_specific_info_len = aidl_request.serviceSpecificInfo.size();
1843 if (legacy_request->service_specific_info_len > NAN_MAX_SERVICE_SPECIFIC_INFO_LEN) {
1844 LOG(ERROR) << "convertAidlNanTransmitFollowupRequestToLegacy: "
1845 "service_specific_info_len too large";
1846 return false;
1847 }
1848 memcpy(legacy_request->service_specific_info, aidl_request.serviceSpecificInfo.data(),
1849 legacy_request->service_specific_info_len);
1850 legacy_request->sdea_service_specific_info_len =
1851 aidl_request.extendedServiceSpecificInfo.size();
1852 if (legacy_request->sdea_service_specific_info_len > NAN_MAX_SDEA_SERVICE_SPECIFIC_INFO_LEN) {
1853 LOG(ERROR) << "convertAidlNanTransmitFollowupRequestToLegacy: "
1854 "sdea_service_specific_info_len too large";
1855 return false;
1856 }
1857 memcpy(legacy_request->sdea_service_specific_info,
1858 aidl_request.extendedServiceSpecificInfo.data(),
1859 legacy_request->sdea_service_specific_info_len);
1860 legacy_request->recv_indication_cfg = aidl_request.disableFollowupResultIndication ? 0x1 : 0x0;
1861
1862 return true;
1863}
1864
1865bool convertAidlNanDataPathInitiatorRequestToLegacy(
1866 const NanInitiateDataPathRequest& aidl_request,
1867 legacy_hal::NanDataPathInitiatorRequest* legacy_request) {
1868 if (!legacy_request) {
1869 LOG(ERROR) << "convertAidlNanDataPathInitiatorRequestToLegacy: "
1870 "legacy_request is null";
1871 return false;
1872 }
1873 *legacy_request = {};
1874
1875 legacy_request->requestor_instance_id = aidl_request.peerId;
1876 memcpy(legacy_request->peer_disc_mac_addr, aidl_request.peerDiscMacAddr.data(), 6);
1877 legacy_request->channel_request_type =
1878 convertAidlNanDataPathChannelCfgToLegacy(aidl_request.channelRequestType);
1879 legacy_request->channel = aidl_request.channel;
1880 if (strnlen(aidl_request.ifaceName.c_str(), IFNAMSIZ + 1) == IFNAMSIZ + 1) {
1881 LOG(ERROR) << "convertAidlNanDataPathInitiatorRequestToLegacy: "
1882 "ifaceName too long";
1883 return false;
1884 }
1885 strlcpy(legacy_request->ndp_iface, aidl_request.ifaceName.c_str(), IFNAMSIZ + 1);
1886 legacy_request->ndp_cfg.security_cfg =
1887 (aidl_request.securityConfig.securityType != NanDataPathSecurityType::OPEN)
1888 ? legacy_hal::NAN_DP_CONFIG_SECURITY
1889 : legacy_hal::NAN_DP_CONFIG_NO_SECURITY;
1890 legacy_request->app_info.ndp_app_info_len = aidl_request.appInfo.size();
1891 if (legacy_request->app_info.ndp_app_info_len > NAN_DP_MAX_APP_INFO_LEN) {
1892 LOG(ERROR) << "convertAidlNanDataPathInitiatorRequestToLegacy: "
1893 "ndp_app_info_len too large";
1894 return false;
1895 }
1896 memcpy(legacy_request->app_info.ndp_app_info, aidl_request.appInfo.data(),
1897 legacy_request->app_info.ndp_app_info_len);
1898 legacy_request->cipher_type = (unsigned int)aidl_request.securityConfig.cipherType;
1899 if (aidl_request.securityConfig.securityType == NanDataPathSecurityType::PMK) {
1900 legacy_request->key_info.key_type = legacy_hal::NAN_SECURITY_KEY_INPUT_PMK;
1901 legacy_request->key_info.body.pmk_info.pmk_len = aidl_request.securityConfig.pmk.size();
1902 if (legacy_request->key_info.body.pmk_info.pmk_len != NAN_PMK_INFO_LEN) {
1903 LOG(ERROR) << "convertAidlNanDataPathInitiatorRequestToLegacy: "
1904 "invalid pmk_len";
1905 return false;
1906 }
1907 memcpy(legacy_request->key_info.body.pmk_info.pmk, aidl_request.securityConfig.pmk.data(),
1908 legacy_request->key_info.body.pmk_info.pmk_len);
1909 }
1910 if (aidl_request.securityConfig.securityType == NanDataPathSecurityType::PASSPHRASE) {
1911 legacy_request->key_info.key_type = legacy_hal::NAN_SECURITY_KEY_INPUT_PASSPHRASE;
1912 legacy_request->key_info.body.passphrase_info.passphrase_len =
1913 aidl_request.securityConfig.passphrase.size();
1914 if (legacy_request->key_info.body.passphrase_info.passphrase_len <
1915 NAN_SECURITY_MIN_PASSPHRASE_LEN) {
1916 LOG(ERROR) << "convertAidlNanDataPathInitiatorRequestToLegacy: "
1917 "passphrase_len too small";
1918 return false;
1919 }
1920 if (legacy_request->key_info.body.passphrase_info.passphrase_len >
1921 NAN_SECURITY_MAX_PASSPHRASE_LEN) {
1922 LOG(ERROR) << "convertAidlNanDataPathInitiatorRequestToLegacy: "
1923 "passphrase_len too large";
1924 return false;
1925 }
1926 memcpy(legacy_request->key_info.body.passphrase_info.passphrase,
1927 aidl_request.securityConfig.passphrase.data(),
1928 legacy_request->key_info.body.passphrase_info.passphrase_len);
1929 }
1930 legacy_request->service_name_len = aidl_request.serviceNameOutOfBand.size();
1931 if (legacy_request->service_name_len > NAN_MAX_SERVICE_NAME_LEN) {
1932 LOG(ERROR) << "convertAidlNanDataPathInitiatorRequestToLegacy: "
1933 "service_name_len too large";
1934 return false;
1935 }
1936 memcpy(legacy_request->service_name, aidl_request.serviceNameOutOfBand.data(),
1937 legacy_request->service_name_len);
1938 legacy_request->scid_len = aidl_request.securityConfig.scid.size();
1939 if (legacy_request->scid_len > NAN_MAX_SCID_BUF_LEN) {
1940 LOG(ERROR) << "convertAidlNanDataPathInitiatorRequestToLegacy: scid_len too large";
1941 return false;
1942 }
1943 memcpy(legacy_request->scid, aidl_request.securityConfig.scid.data(), legacy_request->scid_len);
1944
1945 return true;
1946}
1947
1948bool convertAidlNanDataPathIndicationResponseToLegacy(
1949 const NanRespondToDataPathIndicationRequest& aidl_request,
1950 legacy_hal::NanDataPathIndicationResponse* legacy_request) {
1951 if (!legacy_request) {
1952 LOG(ERROR) << "convertAidlNanDataPathIndicationResponseToLegacy: "
1953 "legacy_request is null";
1954 return false;
1955 }
1956 *legacy_request = {};
1957
1958 legacy_request->rsp_code = aidl_request.acceptRequest ? legacy_hal::NAN_DP_REQUEST_ACCEPT
1959 : legacy_hal::NAN_DP_REQUEST_REJECT;
1960 legacy_request->ndp_instance_id = aidl_request.ndpInstanceId;
1961 if (strnlen(aidl_request.ifaceName.c_str(), IFNAMSIZ + 1) == IFNAMSIZ + 1) {
1962 LOG(ERROR) << "convertAidlNanDataPathIndicationResponseToLegacy: "
1963 "ifaceName too long";
1964 return false;
1965 }
1966 strlcpy(legacy_request->ndp_iface, aidl_request.ifaceName.c_str(), IFNAMSIZ + 1);
1967 legacy_request->ndp_cfg.security_cfg =
1968 (aidl_request.securityConfig.securityType != NanDataPathSecurityType::OPEN)
1969 ? legacy_hal::NAN_DP_CONFIG_SECURITY
1970 : legacy_hal::NAN_DP_CONFIG_NO_SECURITY;
1971 legacy_request->app_info.ndp_app_info_len = aidl_request.appInfo.size();
1972 if (legacy_request->app_info.ndp_app_info_len > NAN_DP_MAX_APP_INFO_LEN) {
1973 LOG(ERROR) << "convertAidlNanDataPathIndicationResponseToLegacy: "
1974 "ndp_app_info_len too large";
1975 return false;
1976 }
1977 memcpy(legacy_request->app_info.ndp_app_info, aidl_request.appInfo.data(),
1978 legacy_request->app_info.ndp_app_info_len);
1979 legacy_request->cipher_type = (unsigned int)aidl_request.securityConfig.cipherType;
1980 if (aidl_request.securityConfig.securityType == NanDataPathSecurityType::PMK) {
1981 legacy_request->key_info.key_type = legacy_hal::NAN_SECURITY_KEY_INPUT_PMK;
1982 legacy_request->key_info.body.pmk_info.pmk_len = aidl_request.securityConfig.pmk.size();
1983 if (legacy_request->key_info.body.pmk_info.pmk_len != NAN_PMK_INFO_LEN) {
1984 LOG(ERROR) << "convertAidlNanDataPathIndicationResponseToLegacy: "
1985 "invalid pmk_len";
1986 return false;
1987 }
1988 memcpy(legacy_request->key_info.body.pmk_info.pmk, aidl_request.securityConfig.pmk.data(),
1989 legacy_request->key_info.body.pmk_info.pmk_len);
1990 }
1991 if (aidl_request.securityConfig.securityType == NanDataPathSecurityType::PASSPHRASE) {
1992 legacy_request->key_info.key_type = legacy_hal::NAN_SECURITY_KEY_INPUT_PASSPHRASE;
1993 legacy_request->key_info.body.passphrase_info.passphrase_len =
1994 aidl_request.securityConfig.passphrase.size();
1995 if (legacy_request->key_info.body.passphrase_info.passphrase_len <
1996 NAN_SECURITY_MIN_PASSPHRASE_LEN) {
1997 LOG(ERROR) << "convertAidlNanDataPathIndicationResponseToLegacy: "
1998 "passphrase_len too small";
1999 return false;
2000 }
2001 if (legacy_request->key_info.body.passphrase_info.passphrase_len >
2002 NAN_SECURITY_MAX_PASSPHRASE_LEN) {
2003 LOG(ERROR) << "convertAidlNanDataPathIndicationResponseToLegacy: "
2004 "passphrase_len too large";
2005 return false;
2006 }
2007 memcpy(legacy_request->key_info.body.passphrase_info.passphrase,
2008 aidl_request.securityConfig.passphrase.data(),
2009 legacy_request->key_info.body.passphrase_info.passphrase_len);
2010 }
2011 legacy_request->service_name_len = aidl_request.serviceNameOutOfBand.size();
2012 if (legacy_request->service_name_len > NAN_MAX_SERVICE_NAME_LEN) {
2013 LOG(ERROR) << "convertAidlNanDataPathIndicationResponseToLegacy: "
2014 "service_name_len too large";
2015 return false;
2016 }
2017 memcpy(legacy_request->service_name, aidl_request.serviceNameOutOfBand.data(),
2018 legacy_request->service_name_len);
2019 legacy_request->scid_len = aidl_request.securityConfig.scid.size();
2020 if (legacy_request->scid_len > NAN_MAX_SCID_BUF_LEN) {
2021 LOG(ERROR) << "convertAidlNanDataPathIndicationResponseToLegacy: scid_len too large";
2022 return false;
2023 }
2024 memcpy(legacy_request->scid, aidl_request.securityConfig.scid.data(), legacy_request->scid_len);
2025
2026 return true;
2027}
2028
2029bool convertLegacyNanResponseHeaderToAidl(const legacy_hal::NanResponseMsg& legacy_response,
2030 NanStatus* nanStatus) {
2031 if (!nanStatus) {
2032 LOG(ERROR) << "convertLegacyNanResponseHeaderToAidl: nanStatus is null";
2033 return false;
2034 }
2035 *nanStatus = {};
2036
2037 convertToNanStatus(legacy_response.status, legacy_response.nan_error,
2038 sizeof(legacy_response.nan_error), nanStatus);
2039 return true;
2040}
2041
2042bool convertLegacyNanCapabilitiesResponseToAidl(const legacy_hal::NanCapabilities& legacy_response,
2043 NanCapabilities* aidl_response) {
2044 if (!aidl_response) {
2045 LOG(ERROR) << "convertLegacyNanCapabilitiesResponseToAidl: "
2046 "aidl_response is null";
2047 return false;
2048 }
2049 *aidl_response = {};
2050
2051 aidl_response->maxConcurrentClusters = legacy_response.max_concurrent_nan_clusters;
2052 aidl_response->maxPublishes = legacy_response.max_publishes;
2053 aidl_response->maxSubscribes = legacy_response.max_subscribes;
2054 aidl_response->maxServiceNameLen = legacy_response.max_service_name_len;
2055 aidl_response->maxMatchFilterLen = legacy_response.max_match_filter_len;
2056 aidl_response->maxTotalMatchFilterLen = legacy_response.max_total_match_filter_len;
2057 aidl_response->maxServiceSpecificInfoLen = legacy_response.max_service_specific_info_len;
2058 aidl_response->maxExtendedServiceSpecificInfoLen =
2059 legacy_response.max_sdea_service_specific_info_len;
2060 aidl_response->maxNdiInterfaces = legacy_response.max_ndi_interfaces;
2061 aidl_response->maxNdpSessions = legacy_response.max_ndp_sessions;
2062 aidl_response->maxAppInfoLen = legacy_response.max_app_info_len;
2063 aidl_response->maxQueuedTransmitFollowupMsgs =
2064 legacy_response.max_queued_transmit_followup_msgs;
2065 aidl_response->maxSubscribeInterfaceAddresses = legacy_response.max_subscribe_address;
2066 aidl_response->supportedCipherSuites =
2067 static_cast<NanCipherSuiteType>(legacy_response.cipher_suites_supported);
2068 aidl_response->instantCommunicationModeSupportFlag = legacy_response.is_instant_mode_supported;
2069
2070 return true;
2071}
2072
2073bool convertLegacyNanMatchIndToAidl(const legacy_hal::NanMatchInd& legacy_ind,
2074 NanMatchInd* aidl_ind) {
2075 if (!aidl_ind) {
2076 LOG(ERROR) << "convertLegacyNanMatchIndToAidl: aidl_ind is null";
2077 return false;
2078 }
2079 *aidl_ind = {};
2080
2081 aidl_ind->discoverySessionId = legacy_ind.publish_subscribe_id;
2082 aidl_ind->peerId = legacy_ind.requestor_instance_id;
2083 aidl_ind->addr = std::array<uint8_t, 6>();
2084 std::copy(legacy_ind.addr, legacy_ind.addr + 6, std::begin(aidl_ind->addr));
2085 aidl_ind->serviceSpecificInfo = std::vector<uint8_t>(
2086 legacy_ind.service_specific_info,
2087 legacy_ind.service_specific_info + legacy_ind.service_specific_info_len);
2088 aidl_ind->extendedServiceSpecificInfo = std::vector<uint8_t>(
2089 legacy_ind.sdea_service_specific_info,
2090 legacy_ind.sdea_service_specific_info + legacy_ind.sdea_service_specific_info_len);
2091 aidl_ind->matchFilter =
2092 std::vector<uint8_t>(legacy_ind.sdf_match_filter,
2093 legacy_ind.sdf_match_filter + legacy_ind.sdf_match_filter_len);
2094 aidl_ind->matchOccurredInBeaconFlag = legacy_ind.match_occured_flag == 1; // NOTYPO
2095 aidl_ind->outOfResourceFlag = legacy_ind.out_of_resource_flag == 1;
2096 aidl_ind->rssiValue = legacy_ind.rssi_value;
2097 aidl_ind->peerCipherType = (NanCipherSuiteType)legacy_ind.peer_cipher_type;
2098 aidl_ind->peerRequiresSecurityEnabledInNdp =
2099 legacy_ind.peer_sdea_params.security_cfg == legacy_hal::NAN_DP_CONFIG_SECURITY;
2100 aidl_ind->peerRequiresRanging =
2101 legacy_ind.peer_sdea_params.ranging_state == legacy_hal::NAN_RANGING_ENABLE;
2102 aidl_ind->rangingMeasurementInMm = legacy_ind.range_info.range_measurement_mm;
2103 aidl_ind->rangingIndicationType =
2104 static_cast<NanRangingIndication>(legacy_ind.range_info.ranging_event_type);
2105 aidl_ind->scid = std::vector<uint8_t>(legacy_ind.scid, legacy_ind.scid + legacy_ind.scid_len);
2106 return true;
2107}
2108
2109bool convertLegacyNanFollowupIndToAidl(const legacy_hal::NanFollowupInd& legacy_ind,
2110 NanFollowupReceivedInd* aidl_ind) {
2111 if (!aidl_ind) {
2112 LOG(ERROR) << "convertLegacyNanFollowupIndToAidl: aidl_ind is null";
2113 return false;
2114 }
2115 *aidl_ind = {};
2116
2117 aidl_ind->discoverySessionId = legacy_ind.publish_subscribe_id;
2118 aidl_ind->peerId = legacy_ind.requestor_instance_id;
2119 aidl_ind->addr = std::array<uint8_t, 6>();
2120 std::copy(legacy_ind.addr, legacy_ind.addr + 6, std::begin(aidl_ind->addr));
2121 aidl_ind->receivedInFaw = legacy_ind.dw_or_faw == 1;
2122 aidl_ind->serviceSpecificInfo = std::vector<uint8_t>(
2123 legacy_ind.service_specific_info,
2124 legacy_ind.service_specific_info + legacy_ind.service_specific_info_len);
2125 aidl_ind->extendedServiceSpecificInfo = std::vector<uint8_t>(
2126 legacy_ind.sdea_service_specific_info,
2127 legacy_ind.sdea_service_specific_info + legacy_ind.sdea_service_specific_info_len);
2128
2129 return true;
2130}
2131
2132bool convertLegacyNanDataPathRequestIndToAidl(const legacy_hal::NanDataPathRequestInd& legacy_ind,
2133 NanDataPathRequestInd* aidl_ind) {
2134 if (!aidl_ind) {
2135 LOG(ERROR) << "convertLegacyNanDataPathRequestIndToAidl: aidl_ind is null";
2136 return false;
2137 }
2138 *aidl_ind = {};
2139
2140 aidl_ind->discoverySessionId = legacy_ind.service_instance_id;
2141 aidl_ind->peerDiscMacAddr = std::array<uint8_t, 6>();
2142 std::copy(legacy_ind.peer_disc_mac_addr, legacy_ind.peer_disc_mac_addr + 6,
2143 std::begin(aidl_ind->peerDiscMacAddr));
2144 aidl_ind->ndpInstanceId = legacy_ind.ndp_instance_id;
2145 aidl_ind->securityRequired =
2146 legacy_ind.ndp_cfg.security_cfg == legacy_hal::NAN_DP_CONFIG_SECURITY;
2147 aidl_ind->appInfo = std::vector<uint8_t>(
2148 legacy_ind.app_info.ndp_app_info,
2149 legacy_ind.app_info.ndp_app_info + legacy_ind.app_info.ndp_app_info_len);
2150
2151 return true;
2152}
2153
2154bool convertLegacyNdpChannelInfoToAidl(const legacy_hal::NanChannelInfo& legacy_struct,
2155 NanDataPathChannelInfo* aidl_struct) {
2156 if (!aidl_struct) {
2157 LOG(ERROR) << "convertLegacyNdpChannelInfoToAidl: aidl_struct is null";
2158 return false;
2159 }
2160 *aidl_struct = {};
2161
2162 aidl_struct->channelFreq = legacy_struct.channel;
2163 aidl_struct->channelBandwidth = convertLegacyWifiChannelWidthToAidl(
2164 (legacy_hal::wifi_channel_width)legacy_struct.bandwidth);
2165 aidl_struct->numSpatialStreams = legacy_struct.nss;
2166
2167 return true;
2168}
2169
2170bool convertLegacyNanDataPathConfirmIndToAidl(const legacy_hal::NanDataPathConfirmInd& legacy_ind,
2171 NanDataPathConfirmInd* aidl_ind) {
2172 if (!aidl_ind) {
2173 LOG(ERROR) << "convertLegacyNanDataPathConfirmIndToAidl: aidl_ind is null";
2174 return false;
2175 }
2176 *aidl_ind = {};
2177
2178 aidl_ind->ndpInstanceId = legacy_ind.ndp_instance_id;
2179 aidl_ind->dataPathSetupSuccess = legacy_ind.rsp_code == legacy_hal::NAN_DP_REQUEST_ACCEPT;
2180 aidl_ind->peerNdiMacAddr = std::array<uint8_t, 6>();
2181 std::copy(legacy_ind.peer_ndi_mac_addr, legacy_ind.peer_ndi_mac_addr + 6,
2182 std::begin(aidl_ind->peerNdiMacAddr));
2183 aidl_ind->appInfo = std::vector<uint8_t>(
2184 legacy_ind.app_info.ndp_app_info,
2185 legacy_ind.app_info.ndp_app_info + legacy_ind.app_info.ndp_app_info_len);
2186 aidl_ind->status.status = convertLegacyNanStatusTypeToAidl(legacy_ind.reason_code);
2187 aidl_ind->status.description = "";
2188
2189 std::vector<NanDataPathChannelInfo> channelInfo;
2190 for (unsigned int i = 0; i < legacy_ind.num_channels; ++i) {
2191 NanDataPathChannelInfo aidl_struct;
2192 if (!convertLegacyNdpChannelInfoToAidl(legacy_ind.channel_info[i], &aidl_struct)) {
2193 return false;
2194 }
2195 channelInfo.push_back(aidl_struct);
2196 }
2197 aidl_ind->channelInfo = channelInfo;
2198
2199 return true;
2200}
2201
2202bool convertLegacyNanDataPathScheduleUpdateIndToAidl(
2203 const legacy_hal::NanDataPathScheduleUpdateInd& legacy_ind,
2204 NanDataPathScheduleUpdateInd* aidl_ind) {
2205 if (!aidl_ind) {
2206 LOG(ERROR) << "convertLegacyNanDataPathScheduleUpdateIndToAidl: "
2207 "aidl_ind is null";
2208 return false;
2209 }
2210 *aidl_ind = {};
2211
2212 aidl_ind->peerDiscoveryAddress = std::array<uint8_t, 6>();
2213 std::copy(legacy_ind.peer_mac_addr, legacy_ind.peer_mac_addr + 6,
2214 std::begin(aidl_ind->peerDiscoveryAddress));
2215 std::vector<NanDataPathChannelInfo> channelInfo;
2216 for (unsigned int i = 0; i < legacy_ind.num_channels; ++i) {
2217 NanDataPathChannelInfo aidl_struct;
2218 if (!convertLegacyNdpChannelInfoToAidl(legacy_ind.channel_info[i], &aidl_struct)) {
2219 return false;
2220 }
2221 channelInfo.push_back(aidl_struct);
2222 }
2223 aidl_ind->channelInfo = channelInfo;
2224 std::vector<uint32_t> ndpInstanceIds;
2225 for (unsigned int i = 0; i < legacy_ind.num_ndp_instances; ++i) {
2226 ndpInstanceIds.push_back(legacy_ind.ndp_instance_id[i]);
2227 }
2228 aidl_ind->ndpInstanceIds = uintToIntVec(ndpInstanceIds);
2229
2230 return true;
2231}
2232
2233legacy_hal::wifi_rtt_type convertAidlRttTypeToLegacy(RttType type) {
2234 switch (type) {
2235 case RttType::ONE_SIDED:
2236 return legacy_hal::RTT_TYPE_1_SIDED;
2237 case RttType::TWO_SIDED:
2238 return legacy_hal::RTT_TYPE_2_SIDED;
2239 };
2240 CHECK(false);
2241}
2242
2243RttType convertLegacyRttTypeToAidl(legacy_hal::wifi_rtt_type type) {
2244 switch (type) {
2245 case legacy_hal::RTT_TYPE_1_SIDED:
2246 return RttType::ONE_SIDED;
2247 case legacy_hal::RTT_TYPE_2_SIDED:
2248 return RttType::TWO_SIDED;
2249 };
2250 CHECK(false) << "Unknown legacy type: " << type;
2251}
2252
2253legacy_hal::rtt_peer_type convertAidlRttPeerTypeToLegacy(RttPeerType type) {
2254 switch (type) {
2255 case RttPeerType::AP:
2256 return legacy_hal::RTT_PEER_AP;
2257 case RttPeerType::STA:
2258 return legacy_hal::RTT_PEER_STA;
2259 case RttPeerType::P2P_GO:
2260 return legacy_hal::RTT_PEER_P2P_GO;
2261 case RttPeerType::P2P_CLIENT:
2262 return legacy_hal::RTT_PEER_P2P_CLIENT;
2263 case RttPeerType::NAN_TYPE:
2264 return legacy_hal::RTT_PEER_NAN;
2265 };
2266 CHECK(false);
2267}
2268
2269legacy_hal::wifi_channel_width convertAidlWifiChannelWidthToLegacy(WifiChannelWidthInMhz type) {
2270 switch (type) {
2271 case WifiChannelWidthInMhz::WIDTH_20:
2272 return legacy_hal::WIFI_CHAN_WIDTH_20;
2273 case WifiChannelWidthInMhz::WIDTH_40:
2274 return legacy_hal::WIFI_CHAN_WIDTH_40;
2275 case WifiChannelWidthInMhz::WIDTH_80:
2276 return legacy_hal::WIFI_CHAN_WIDTH_80;
2277 case WifiChannelWidthInMhz::WIDTH_160:
2278 return legacy_hal::WIFI_CHAN_WIDTH_160;
2279 case WifiChannelWidthInMhz::WIDTH_80P80:
2280 return legacy_hal::WIFI_CHAN_WIDTH_80P80;
2281 case WifiChannelWidthInMhz::WIDTH_5:
2282 return legacy_hal::WIFI_CHAN_WIDTH_5;
2283 case WifiChannelWidthInMhz::WIDTH_10:
2284 return legacy_hal::WIFI_CHAN_WIDTH_10;
2285 case WifiChannelWidthInMhz::WIDTH_320:
2286 return legacy_hal::WIFI_CHAN_WIDTH_320;
2287 case WifiChannelWidthInMhz::WIDTH_INVALID:
2288 return legacy_hal::WIFI_CHAN_WIDTH_INVALID;
2289 };
2290 CHECK(false);
2291}
2292
2293WifiChannelWidthInMhz convertLegacyWifiChannelWidthToAidl(legacy_hal::wifi_channel_width type) {
2294 switch (type) {
2295 case legacy_hal::WIFI_CHAN_WIDTH_20:
2296 return WifiChannelWidthInMhz::WIDTH_20;
2297 case legacy_hal::WIFI_CHAN_WIDTH_40:
2298 return WifiChannelWidthInMhz::WIDTH_40;
2299 case legacy_hal::WIFI_CHAN_WIDTH_80:
2300 return WifiChannelWidthInMhz::WIDTH_80;
2301 case legacy_hal::WIFI_CHAN_WIDTH_160:
2302 return WifiChannelWidthInMhz::WIDTH_160;
2303 case legacy_hal::WIFI_CHAN_WIDTH_80P80:
2304 return WifiChannelWidthInMhz::WIDTH_80P80;
2305 case legacy_hal::WIFI_CHAN_WIDTH_5:
2306 return WifiChannelWidthInMhz::WIDTH_5;
2307 case legacy_hal::WIFI_CHAN_WIDTH_10:
2308 return WifiChannelWidthInMhz::WIDTH_10;
2309 case legacy_hal::WIFI_CHAN_WIDTH_320:
2310 return WifiChannelWidthInMhz::WIDTH_320;
2311 default:
2312 return WifiChannelWidthInMhz::WIDTH_INVALID;
2313 };
2314}
2315
2316legacy_hal::wifi_rtt_preamble convertAidlRttPreambleToLegacy(RttPreamble type) {
2317 switch (type) {
2318 case RttPreamble::LEGACY:
2319 return legacy_hal::WIFI_RTT_PREAMBLE_LEGACY;
2320 case RttPreamble::HT:
2321 return legacy_hal::WIFI_RTT_PREAMBLE_HT;
2322 case RttPreamble::VHT:
2323 return legacy_hal::WIFI_RTT_PREAMBLE_VHT;
2324 case RttPreamble::HE:
2325 return legacy_hal::WIFI_RTT_PREAMBLE_HE;
2326 case RttPreamble::EHT:
2327 return legacy_hal::WIFI_RTT_PREAMBLE_EHT;
2328 };
2329 CHECK(false);
2330}
2331
2332RttPreamble convertLegacyRttPreambleToAidl(legacy_hal::wifi_rtt_preamble type) {
2333 switch (type) {
2334 case legacy_hal::WIFI_RTT_PREAMBLE_LEGACY:
2335 return RttPreamble::LEGACY;
2336 case legacy_hal::WIFI_RTT_PREAMBLE_HT:
2337 return RttPreamble::HT;
2338 case legacy_hal::WIFI_RTT_PREAMBLE_VHT:
2339 return RttPreamble::VHT;
2340 case legacy_hal::WIFI_RTT_PREAMBLE_HE:
2341 return RttPreamble::HE;
2342 case legacy_hal::WIFI_RTT_PREAMBLE_EHT:
2343 return RttPreamble::EHT;
2344 };
2345 CHECK(false) << "Unknown legacy type: " << type;
2346}
2347
2348legacy_hal::wifi_rtt_bw convertAidlRttBwToLegacy(RttBw type) {
2349 switch (type) {
2350 case RttBw::BW_5MHZ:
2351 return legacy_hal::WIFI_RTT_BW_5;
2352 case RttBw::BW_10MHZ:
2353 return legacy_hal::WIFI_RTT_BW_10;
2354 case RttBw::BW_20MHZ:
2355 return legacy_hal::WIFI_RTT_BW_20;
2356 case RttBw::BW_40MHZ:
2357 return legacy_hal::WIFI_RTT_BW_40;
2358 case RttBw::BW_80MHZ:
2359 return legacy_hal::WIFI_RTT_BW_80;
2360 case RttBw::BW_160MHZ:
2361 return legacy_hal::WIFI_RTT_BW_160;
2362 case RttBw::BW_320MHZ:
2363 return legacy_hal::WIFI_RTT_BW_320;
2364 };
2365 CHECK(false);
2366}
2367
2368RttBw convertLegacyRttBwToAidl(legacy_hal::wifi_rtt_bw type) {
2369 switch (type) {
2370 case legacy_hal::WIFI_RTT_BW_5:
2371 return RttBw::BW_5MHZ;
2372 case legacy_hal::WIFI_RTT_BW_10:
2373 return RttBw::BW_10MHZ;
2374 case legacy_hal::WIFI_RTT_BW_20:
2375 return RttBw::BW_20MHZ;
2376 case legacy_hal::WIFI_RTT_BW_40:
2377 return RttBw::BW_40MHZ;
2378 case legacy_hal::WIFI_RTT_BW_80:
2379 return RttBw::BW_80MHZ;
2380 case legacy_hal::WIFI_RTT_BW_160:
2381 return RttBw::BW_160MHZ;
2382 case legacy_hal::WIFI_RTT_BW_320:
2383 return RttBw::BW_320MHZ;
2384 };
2385 CHECK(false) << "Unknown legacy type: " << type;
2386}
2387
2388legacy_hal::wifi_motion_pattern convertAidlRttMotionPatternToLegacy(RttMotionPattern type) {
2389 switch (type) {
2390 case RttMotionPattern::NOT_EXPECTED:
2391 return legacy_hal::WIFI_MOTION_NOT_EXPECTED;
2392 case RttMotionPattern::EXPECTED:
2393 return legacy_hal::WIFI_MOTION_EXPECTED;
2394 case RttMotionPattern::UNKNOWN:
2395 return legacy_hal::WIFI_MOTION_UNKNOWN;
2396 };
2397 CHECK(false);
2398}
2399
2400WifiRatePreamble convertLegacyWifiRatePreambleToAidl(uint8_t preamble) {
2401 switch (preamble) {
2402 case 0:
2403 return WifiRatePreamble::OFDM;
2404 case 1:
2405 return WifiRatePreamble::CCK;
2406 case 2:
2407 return WifiRatePreamble::HT;
2408 case 3:
2409 return WifiRatePreamble::VHT;
2410 case 4:
2411 return WifiRatePreamble::HE;
2412 case 5:
2413 return WifiRatePreamble::EHT;
2414 default:
2415 return WifiRatePreamble::RESERVED;
2416 };
2417 CHECK(false) << "Unknown legacy preamble: " << preamble;
2418}
2419
2420WifiRateNss convertLegacyWifiRateNssToAidl(uint8_t nss) {
2421 switch (nss) {
2422 case 0:
2423 return WifiRateNss::NSS_1x1;
2424 case 1:
2425 return WifiRateNss::NSS_2x2;
2426 case 2:
2427 return WifiRateNss::NSS_3x3;
2428 case 3:
2429 return WifiRateNss::NSS_4x4;
2430 };
2431 CHECK(false) << "Unknown legacy nss: " << nss;
2432 return {};
2433}
2434
2435RttStatus convertLegacyRttStatusToAidl(legacy_hal::wifi_rtt_status status) {
2436 switch (status) {
2437 case legacy_hal::RTT_STATUS_SUCCESS:
2438 return RttStatus::SUCCESS;
2439 case legacy_hal::RTT_STATUS_FAILURE:
2440 return RttStatus::FAILURE;
2441 case legacy_hal::RTT_STATUS_FAIL_NO_RSP:
2442 return RttStatus::FAIL_NO_RSP;
2443 case legacy_hal::RTT_STATUS_FAIL_REJECTED:
2444 return RttStatus::FAIL_REJECTED;
2445 case legacy_hal::RTT_STATUS_FAIL_NOT_SCHEDULED_YET:
2446 return RttStatus::FAIL_NOT_SCHEDULED_YET;
2447 case legacy_hal::RTT_STATUS_FAIL_TM_TIMEOUT:
2448 return RttStatus::FAIL_TM_TIMEOUT;
2449 case legacy_hal::RTT_STATUS_FAIL_AP_ON_DIFF_CHANNEL:
2450 return RttStatus::FAIL_AP_ON_DIFF_CHANNEL;
2451 case legacy_hal::RTT_STATUS_FAIL_NO_CAPABILITY:
2452 return RttStatus::FAIL_NO_CAPABILITY;
2453 case legacy_hal::RTT_STATUS_ABORTED:
2454 return RttStatus::ABORTED;
2455 case legacy_hal::RTT_STATUS_FAIL_INVALID_TS:
2456 return RttStatus::FAIL_INVALID_TS;
2457 case legacy_hal::RTT_STATUS_FAIL_PROTOCOL:
2458 return RttStatus::FAIL_PROTOCOL;
2459 case legacy_hal::RTT_STATUS_FAIL_SCHEDULE:
2460 return RttStatus::FAIL_SCHEDULE;
2461 case legacy_hal::RTT_STATUS_FAIL_BUSY_TRY_LATER:
2462 return RttStatus::FAIL_BUSY_TRY_LATER;
2463 case legacy_hal::RTT_STATUS_INVALID_REQ:
2464 return RttStatus::INVALID_REQ;
2465 case legacy_hal::RTT_STATUS_NO_WIFI:
2466 return RttStatus::NO_WIFI;
2467 case legacy_hal::RTT_STATUS_FAIL_FTM_PARAM_OVERRIDE:
2468 return RttStatus::FAIL_FTM_PARAM_OVERRIDE;
2469 case legacy_hal::RTT_STATUS_NAN_RANGING_PROTOCOL_FAILURE:
2470 return RttStatus::NAN_RANGING_PROTOCOL_FAILURE;
2471 case legacy_hal::RTT_STATUS_NAN_RANGING_CONCURRENCY_NOT_SUPPORTED:
2472 return RttStatus::NAN_RANGING_CONCURRENCY_NOT_SUPPORTED;
2473 };
2474 CHECK(false) << "Unknown legacy status: " << status;
2475}
2476
2477bool convertAidlWifiChannelInfoToLegacy(const WifiChannelInfo& aidl_info,
2478 legacy_hal::wifi_channel_info* legacy_info) {
2479 if (!legacy_info) {
2480 return false;
2481 }
2482 *legacy_info = {};
2483 legacy_info->width = convertAidlWifiChannelWidthToLegacy(aidl_info.width);
2484 legacy_info->center_freq = aidl_info.centerFreq;
2485 legacy_info->center_freq0 = aidl_info.centerFreq0;
2486 legacy_info->center_freq1 = aidl_info.centerFreq1;
2487 return true;
2488}
2489
2490bool convertLegacyWifiChannelInfoToAidl(const legacy_hal::wifi_channel_info& legacy_info,
2491 WifiChannelInfo* aidl_info) {
2492 if (!aidl_info) {
2493 return false;
2494 }
2495 *aidl_info = {};
2496 aidl_info->width = convertLegacyWifiChannelWidthToAidl(legacy_info.width);
2497 aidl_info->centerFreq = legacy_info.center_freq;
2498 aidl_info->centerFreq0 = legacy_info.center_freq0;
2499 aidl_info->centerFreq1 = legacy_info.center_freq1;
2500 return true;
2501}
2502
2503bool convertAidlRttConfigToLegacy(const RttConfig& aidl_config,
2504 legacy_hal::wifi_rtt_config* legacy_config) {
2505 if (!legacy_config) {
2506 return false;
2507 }
2508 *legacy_config = {};
2509 CHECK(aidl_config.addr.size() == sizeof(legacy_config->addr));
2510 memcpy(legacy_config->addr, aidl_config.addr.data(), aidl_config.addr.size());
2511 legacy_config->type = convertAidlRttTypeToLegacy(aidl_config.type);
2512 legacy_config->peer = convertAidlRttPeerTypeToLegacy(aidl_config.peer);
2513 if (!convertAidlWifiChannelInfoToLegacy(aidl_config.channel, &legacy_config->channel)) {
2514 return false;
2515 }
2516 legacy_config->burst_period = aidl_config.burstPeriod;
2517 legacy_config->num_burst = aidl_config.numBurst;
2518 legacy_config->num_frames_per_burst = aidl_config.numFramesPerBurst;
2519 legacy_config->num_retries_per_rtt_frame = aidl_config.numRetriesPerRttFrame;
2520 legacy_config->num_retries_per_ftmr = aidl_config.numRetriesPerFtmr;
2521 legacy_config->LCI_request = aidl_config.mustRequestLci;
2522 legacy_config->LCR_request = aidl_config.mustRequestLcr;
2523 legacy_config->burst_duration = aidl_config.burstDuration;
2524 legacy_config->preamble = convertAidlRttPreambleToLegacy(aidl_config.preamble);
2525 legacy_config->bw = convertAidlRttBwToLegacy(aidl_config.bw);
2526 return true;
2527}
2528
2529bool convertAidlVectorOfRttConfigToLegacy(
2530 const std::vector<RttConfig>& aidl_configs,
2531 std::vector<legacy_hal::wifi_rtt_config>* legacy_configs) {
2532 if (!legacy_configs) {
2533 return false;
2534 }
2535 *legacy_configs = {};
2536 for (const auto& aidl_config : aidl_configs) {
2537 legacy_hal::wifi_rtt_config legacy_config;
2538 if (!convertAidlRttConfigToLegacy(aidl_config, &legacy_config)) {
2539 return false;
2540 }
2541 legacy_configs->push_back(legacy_config);
2542 }
2543 return true;
2544}
2545
2546bool convertAidlRttLciInformationToLegacy(const RttLciInformation& aidl_info,
2547 legacy_hal::wifi_lci_information* legacy_info) {
2548 if (!legacy_info) {
2549 return false;
2550 }
2551 *legacy_info = {};
2552 legacy_info->latitude = aidl_info.latitude;
2553 legacy_info->longitude = aidl_info.longitude;
2554 legacy_info->altitude = aidl_info.altitude;
2555 legacy_info->latitude_unc = aidl_info.latitudeUnc;
2556 legacy_info->longitude_unc = aidl_info.longitudeUnc;
2557 legacy_info->altitude_unc = aidl_info.altitudeUnc;
2558 legacy_info->motion_pattern = convertAidlRttMotionPatternToLegacy(aidl_info.motionPattern);
2559 legacy_info->floor = aidl_info.floor;
2560 legacy_info->height_above_floor = aidl_info.heightAboveFloor;
2561 legacy_info->height_unc = aidl_info.heightUnc;
2562 return true;
2563}
2564
2565bool convertAidlRttLcrInformationToLegacy(const RttLcrInformation& aidl_info,
2566 legacy_hal::wifi_lcr_information* legacy_info) {
2567 if (!legacy_info) {
2568 return false;
2569 }
2570 *legacy_info = {};
2571 CHECK(aidl_info.countryCode.size() == sizeof(legacy_info->country_code));
2572 memcpy(legacy_info->country_code, aidl_info.countryCode.data(), aidl_info.countryCode.size());
2573 if (aidl_info.civicInfo.size() > sizeof(legacy_info->civic_info)) {
2574 return false;
2575 }
2576 legacy_info->length = aidl_info.civicInfo.size();
2577 memcpy(legacy_info->civic_info, aidl_info.civicInfo.c_str(), aidl_info.civicInfo.size());
2578 return true;
2579}
2580
2581bool convertAidlRttResponderToLegacy(const RttResponder& aidl_responder,
2582 legacy_hal::wifi_rtt_responder* legacy_responder) {
2583 if (!legacy_responder) {
2584 return false;
2585 }
2586 *legacy_responder = {};
2587 if (!convertAidlWifiChannelInfoToLegacy(aidl_responder.channel, &legacy_responder->channel)) {
2588 return false;
2589 }
2590 legacy_responder->preamble = convertAidlRttPreambleToLegacy(aidl_responder.preamble);
2591 return true;
2592}
2593
2594bool convertLegacyRttResponderToAidl(const legacy_hal::wifi_rtt_responder& legacy_responder,
2595 RttResponder* aidl_responder) {
2596 if (!aidl_responder) {
2597 return false;
2598 }
2599 *aidl_responder = {};
2600 if (!convertLegacyWifiChannelInfoToAidl(legacy_responder.channel, &aidl_responder->channel)) {
2601 return false;
2602 }
2603 aidl_responder->preamble = convertLegacyRttPreambleToAidl(legacy_responder.preamble);
2604 return true;
2605}
2606
2607bool convertLegacyRttCapabilitiesToAidl(
2608 const legacy_hal::wifi_rtt_capabilities& legacy_capabilities,
2609 RttCapabilities* aidl_capabilities) {
2610 if (!aidl_capabilities) {
2611 return false;
2612 }
2613 *aidl_capabilities = {};
2614 aidl_capabilities->rttOneSidedSupported = legacy_capabilities.rtt_one_sided_supported;
2615 aidl_capabilities->rttFtmSupported = legacy_capabilities.rtt_ftm_supported;
2616 aidl_capabilities->lciSupported = legacy_capabilities.lci_support;
2617 aidl_capabilities->lcrSupported = legacy_capabilities.lcr_support;
2618 aidl_capabilities->responderSupported = legacy_capabilities.responder_supported;
2619 int32_t preambleSupport = 0;
2620 for (const auto flag : {legacy_hal::WIFI_RTT_PREAMBLE_LEGACY, legacy_hal::WIFI_RTT_PREAMBLE_HT,
2621 legacy_hal::WIFI_RTT_PREAMBLE_VHT, legacy_hal::WIFI_RTT_PREAMBLE_HE,
2622 legacy_hal::WIFI_RTT_PREAMBLE_EHT}) {
2623 if (legacy_capabilities.preamble_support & flag) {
2624 preambleSupport |= static_cast<std::underlying_type<RttPreamble>::type>(
2625 convertLegacyRttPreambleToAidl(flag));
2626 }
2627 }
2628 aidl_capabilities->preambleSupport = static_cast<RttPreamble>(preambleSupport);
2629 int32_t bwSupport = 0;
2630 for (const auto flag :
2631 {legacy_hal::WIFI_RTT_BW_5, legacy_hal::WIFI_RTT_BW_10, legacy_hal::WIFI_RTT_BW_20,
2632 legacy_hal::WIFI_RTT_BW_40, legacy_hal::WIFI_RTT_BW_80, legacy_hal::WIFI_RTT_BW_160,
2633 legacy_hal::WIFI_RTT_BW_320}) {
2634 if (legacy_capabilities.bw_support & flag) {
2635 bwSupport |=
2636 static_cast<std::underlying_type<RttBw>::type>(convertLegacyRttBwToAidl(flag));
2637 }
2638 }
2639 aidl_capabilities->bwSupport = static_cast<RttBw>(bwSupport);
2640 aidl_capabilities->mcVersion = legacy_capabilities.mc_version;
2641 return true;
2642}
2643
2644bool convertLegacyWifiRateInfoToAidl(const legacy_hal::wifi_rate& legacy_rate,
2645 WifiRateInfo* aidl_rate) {
2646 if (!aidl_rate) {
2647 return false;
2648 }
2649 *aidl_rate = {};
2650 aidl_rate->preamble = convertLegacyWifiRatePreambleToAidl(legacy_rate.preamble);
2651 aidl_rate->nss = convertLegacyWifiRateNssToAidl(legacy_rate.nss);
2652 aidl_rate->bw = convertLegacyWifiChannelWidthToAidl(
2653 static_cast<legacy_hal::wifi_channel_width>(legacy_rate.bw));
2654 aidl_rate->rateMcsIdx = legacy_rate.rateMcsIdx;
2655 aidl_rate->bitRateInKbps = legacy_rate.bitrate;
2656 return true;
2657}
2658
2659bool convertLegacyRttResultToAidl(const legacy_hal::wifi_rtt_result& legacy_result,
2660 RttResult* aidl_result) {
2661 if (!aidl_result) {
2662 return false;
2663 }
2664 *aidl_result = {};
2665 aidl_result->addr = std::array<uint8_t, 6>();
2666 CHECK(sizeof(legacy_result.addr) == aidl_result->addr.size());
2667 std::copy(legacy_result.addr, legacy_result.addr + 6, std::begin(aidl_result->addr));
2668 aidl_result->burstNum = legacy_result.burst_num;
2669 aidl_result->measurementNumber = legacy_result.measurement_number;
2670 aidl_result->successNumber = legacy_result.success_number;
2671 aidl_result->numberPerBurstPeer = legacy_result.number_per_burst_peer;
2672 aidl_result->status = convertLegacyRttStatusToAidl(legacy_result.status);
2673 aidl_result->retryAfterDuration = legacy_result.retry_after_duration;
2674 aidl_result->type = convertLegacyRttTypeToAidl(legacy_result.type);
2675 aidl_result->rssi = legacy_result.rssi;
2676 aidl_result->rssiSpread = legacy_result.rssi_spread;
2677 if (!convertLegacyWifiRateInfoToAidl(legacy_result.tx_rate, &aidl_result->txRate)) {
2678 return false;
2679 }
2680 if (!convertLegacyWifiRateInfoToAidl(legacy_result.rx_rate, &aidl_result->rxRate)) {
2681 return false;
2682 }
2683 aidl_result->rtt = legacy_result.rtt;
2684 aidl_result->rttSd = legacy_result.rtt_sd;
2685 aidl_result->rttSpread = legacy_result.rtt_spread;
2686 aidl_result->distanceInMm = legacy_result.distance_mm;
2687 aidl_result->distanceSdInMm = legacy_result.distance_sd_mm;
2688 aidl_result->distanceSpreadInMm = legacy_result.distance_spread_mm;
2689 aidl_result->timeStampInUs = legacy_result.ts;
2690 aidl_result->burstDurationInMs = legacy_result.burst_duration;
2691 aidl_result->negotiatedBurstNum = legacy_result.negotiated_burst_num;
2692 if (legacy_result.LCI && !convertLegacyIeToAidl(*legacy_result.LCI, &aidl_result->lci)) {
2693 return false;
2694 }
2695 if (legacy_result.LCR && !convertLegacyIeToAidl(*legacy_result.LCR, &aidl_result->lcr)) {
2696 return false;
2697 }
2698 return true;
2699}
2700
2701bool convertLegacyVectorOfRttResultToAidl(
2702 const std::vector<const legacy_hal::wifi_rtt_result*>& legacy_results,
2703 std::vector<RttResult>* aidl_results) {
2704 if (!aidl_results) {
2705 return false;
2706 }
2707 *aidl_results = {};
2708 for (const auto legacy_result : legacy_results) {
2709 RttResult aidl_result;
2710 if (!convertLegacyRttResultToAidl(*legacy_result, &aidl_result)) {
2711 return false;
2712 }
2713 aidl_results->push_back(aidl_result);
2714 }
2715 return true;
2716}
2717
2718legacy_hal::wifi_interface_type convertAidlIfaceTypeToLegacy(IfaceType aidl_interface_type) {
2719 switch (aidl_interface_type) {
2720 case IfaceType::STA:
2721 return legacy_hal::WIFI_INTERFACE_TYPE_STA;
2722 case IfaceType::AP:
2723 return legacy_hal::WIFI_INTERFACE_TYPE_AP;
2724 case IfaceType::P2P:
2725 return legacy_hal::WIFI_INTERFACE_TYPE_P2P;
2726 case IfaceType::NAN_IFACE:
2727 return legacy_hal::WIFI_INTERFACE_TYPE_NAN;
2728 }
2729 CHECK(false);
2730}
2731
2732legacy_hal::wifi_multi_sta_use_case convertAidlMultiStaUseCaseToLegacy(
2733 IWifiChip::MultiStaUseCase use_case) {
2734 switch (use_case) {
2735 case IWifiChip::MultiStaUseCase::DUAL_STA_TRANSIENT_PREFER_PRIMARY:
2736 return legacy_hal::WIFI_DUAL_STA_TRANSIENT_PREFER_PRIMARY;
2737 case IWifiChip::MultiStaUseCase::DUAL_STA_NON_TRANSIENT_UNBIASED:
2738 return legacy_hal::WIFI_DUAL_STA_NON_TRANSIENT_UNBIASED;
2739 }
2740 CHECK(false);
2741}
2742
2743bool convertAidlCoexUnsafeChannelToLegacy(
2744 const IWifiChip::CoexUnsafeChannel& aidl_unsafe_channel,
2745 legacy_hal::wifi_coex_unsafe_channel* legacy_unsafe_channel) {
2746 if (!legacy_unsafe_channel) {
2747 return false;
2748 }
2749 *legacy_unsafe_channel = {};
2750 switch (aidl_unsafe_channel.band) {
2751 case WifiBand::BAND_24GHZ:
2752 legacy_unsafe_channel->band = legacy_hal::WLAN_MAC_2_4_BAND;
2753 break;
2754 case WifiBand::BAND_5GHZ:
2755 legacy_unsafe_channel->band = legacy_hal::WLAN_MAC_5_0_BAND;
2756 break;
2757 default:
2758 return false;
2759 };
2760 legacy_unsafe_channel->channel = aidl_unsafe_channel.channel;
2761 legacy_unsafe_channel->power_cap_dbm = aidl_unsafe_channel.powerCapDbm;
2762 return true;
2763}
2764
2765bool convertAidlVectorOfCoexUnsafeChannelToLegacy(
2766 const std::vector<IWifiChip::CoexUnsafeChannel>& aidl_unsafe_channels,
2767 std::vector<legacy_hal::wifi_coex_unsafe_channel>* legacy_unsafe_channels) {
2768 if (!legacy_unsafe_channels) {
2769 return false;
2770 }
2771 *legacy_unsafe_channels = {};
2772 for (const auto& aidl_unsafe_channel : aidl_unsafe_channels) {
2773 legacy_hal::wifi_coex_unsafe_channel legacy_unsafe_channel;
2774 if (!aidl_struct_util::convertAidlCoexUnsafeChannelToLegacy(aidl_unsafe_channel,
2775 &legacy_unsafe_channel)) {
2776 return false;
2777 }
2778 legacy_unsafe_channels->push_back(legacy_unsafe_channel);
2779 }
2780 return true;
2781}
2782
2783WifiAntennaMode convertLegacyAntennaConfigurationToAidl(uint32_t antenna_cfg) {
2784 switch (antenna_cfg) {
2785 case legacy_hal::WIFI_ANTENNA_1X1:
2786 return WifiAntennaMode::WIFI_ANTENNA_MODE_1X1;
2787 case legacy_hal::WIFI_ANTENNA_2X2:
2788 return WifiAntennaMode::WIFI_ANTENNA_MODE_2X2;
2789 case legacy_hal::WIFI_ANTENNA_3X3:
2790 return WifiAntennaMode::WIFI_ANTENNA_MODE_3X3;
2791 case legacy_hal::WIFI_ANTENNA_4X4:
2792 return WifiAntennaMode::WIFI_ANTENNA_MODE_4X4;
2793 default:
2794 return WifiAntennaMode::WIFI_ANTENNA_MODE_UNSPECIFIED;
2795 }
2796}
2797
2798bool convertLegacyWifiRadioConfigurationToAidl(
2799 legacy_hal::wifi_radio_configuration* radio_configuration,
2800 WifiRadioConfiguration* aidl_radio_configuration) {
2801 if (!aidl_radio_configuration) {
2802 return false;
2803 }
2804 *aidl_radio_configuration = {};
2805 aidl_radio_configuration->bandInfo =
2806 aidl_struct_util::convertLegacyMacBandToAidlWifiBand(radio_configuration->band);
2807 if (aidl_radio_configuration->bandInfo == WifiBand::BAND_UNSPECIFIED) {
2808 LOG(ERROR) << "Unspecified band";
2809 return false;
2810 }
2811 aidl_radio_configuration->antennaMode =
2812 aidl_struct_util::convertLegacyAntennaConfigurationToAidl(
2813 radio_configuration->antenna_cfg);
2814 return true;
2815}
2816
2817bool convertLegacyRadioCombinationsMatrixToAidl(
2818 legacy_hal::wifi_radio_combination_matrix* legacy_matrix,
2819 WifiRadioCombinationMatrix* aidl_matrix) {
2820 if (!aidl_matrix || !legacy_matrix) {
2821 return false;
2822 }
2823 *aidl_matrix = {};
2824
2825 int num_combinations = legacy_matrix->num_radio_combinations;
2826 std::vector<WifiRadioCombination> radio_combinations_vec;
2827 if (!num_combinations) {
2828 LOG(ERROR) << "zero radio combinations";
2829 return false;
2830 }
2831 wifi_radio_combination* l_radio_combinations_ptr = legacy_matrix->radio_combinations;
2832 for (int i = 0; i < num_combinations; i++) {
2833 int num_configurations = l_radio_combinations_ptr->num_radio_configurations;
2834 WifiRadioCombination radioCombination;
2835 std::vector<WifiRadioConfiguration> radio_configurations_vec;
2836 if (!num_configurations) {
2837 LOG(ERROR) << "zero radio configurations";
2838 return false;
2839 }
2840 for (int j = 0; j < num_configurations; j++) {
2841 WifiRadioConfiguration radioConfiguration;
2842 wifi_radio_configuration* l_radio_configurations_ptr =
2843 &l_radio_combinations_ptr->radio_configurations[j];
2844 if (!aidl_struct_util::convertLegacyWifiRadioConfigurationToAidl(
2845 l_radio_configurations_ptr, &radioConfiguration)) {
2846 LOG(ERROR) << "Error converting wifi radio configuration";
2847 return false;
2848 }
2849 radio_configurations_vec.push_back(radioConfiguration);
2850 }
2851 radioCombination.radioConfigurations = radio_configurations_vec;
2852 radio_combinations_vec.push_back(radioCombination);
2853 l_radio_combinations_ptr =
2854 (wifi_radio_combination*)((u8*)l_radio_combinations_ptr +
2855 sizeof(wifi_radio_combination) +
2856 (sizeof(wifi_radio_configuration) * num_configurations));
2857 }
2858 aidl_matrix->radioCombinations = radio_combinations_vec;
2859 return true;
2860}
2861
Mahesh KKVc84d3772022-12-02 16:53:28 -08002862bool convertLegacyWifiChipCapabilitiesToAidl(
2863 const legacy_hal::wifi_chip_capabilities& legacy_chip_capabilities,
2864 WifiChipCapabilities& aidl_chip_capabilities) {
2865 aidl_chip_capabilities.maxMloLinkCount = legacy_chip_capabilities.max_mlo_link_count;
Sunil Ravi48556212022-12-12 04:17:04 +00002866 aidl_chip_capabilities.maxConcurrentTdlsSessionCount =
2867 legacy_chip_capabilities.max_concurrent_tdls_session_count;
Mahesh KKVc84d3772022-12-02 16:53:28 -08002868 return true;
2869}
2870
Gabriel Birenf3262f92022-07-15 23:25:39 +00002871} // namespace aidl_struct_util
2872} // namespace wifi
2873} // namespace hardware
2874} // namespace android
2875} // namespace aidl