fdb49e3d2b
Main changes are - 1. max_bssid_history_entries in wifi_gscan_capabilities 2. A new callback to report extra status of scan 3. Channel hint for hotlist APs 4. More details on significant change event Change-Id: I665cb28df99cf152e6b95c8050ea246c5fce81e9
187 lines
8.1 KiB
C
187 lines
8.1 KiB
C
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#include "wifi_hal.h"
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#ifndef __WIFI_HAL_GSCAN_H__
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#define __WIFI_HAL_GSCAN_H__
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/* AP Scans */
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typedef enum {
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WIFI_BAND_UNSPECIFIED,
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WIFI_BAND_BG = 1, // 2.4 GHz
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WIFI_BAND_A = 2, // 5 GHz without DFS
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WIFI_BAND_A_DFS = 4, // 5 GHz DFS only
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WIFI_BAND_A_WITH_DFS = 6, // 5 GHz with DFS
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WIFI_BAND_ABG = 3, // 2.4 GHz + 5 GHz; no DFS
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WIFI_BAND_ABG_WITH_DFS = 7, // 2.4 GHz + 5 GHz with DFS
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} wifi_band;
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const unsigned MAX_CHANNELS = 16;
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const unsigned MAX_BUCKETS = 16;
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const unsigned MAX_HOTLIST_APS = 128;
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const unsigned MAX_SIGNIFICANT_CHANGE_APS = 64;
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wifi_error wifi_get_valid_channels(wifi_interface_handle handle,
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int band, int max_channels, wifi_channel *channels, int *num_channels);
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typedef struct {
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int max_scan_cache_size; // total space allocated for scan (in bytes)
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int max_scan_buckets; // maximum number of channel buckets
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int max_ap_cache_per_scan; // maximum number of APs that can be stored per scan
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int max_rssi_sample_size; // number of RSSI samples used for averaging RSSI
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int max_scan_reporting_threshold; // max possible report_threshold as described
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// in wifi_scan_cmd_params
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int max_hotlist_aps; // maximum number of entries for hotlist APs
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int max_significant_wifi_change_aps; // maximum number of entries for
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// significant wifi change APs
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int max_bssid_history_entries; // number of BSSID/RSSI entries that device can hold
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} wifi_gscan_capabilities;
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wifi_error wifi_get_gscan_capabilities(wifi_interface_handle handle,
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wifi_gscan_capabilities *capabilities);
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typedef enum {
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WIFI_SCAN_BUFFER_FULL,
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WIFI_SCAN_COMPLETE,
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} wifi_scan_event;
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/* Format of information elements found in the beacon */
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typedef struct {
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byte id; // element identifier
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byte len; // number of bytes to follow
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byte data[];
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} wifi_information_element;
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typedef struct {
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wifi_timestamp ts; // time since boot (in microsecond) when the result was
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// retrieved
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char ssid[32+1]; // null terminated
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mac_addr bssid;
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wifi_channel channel; // channel frequency in MHz
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wifi_rssi rssi; // in db
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wifi_timespan rtt; // in nanoseconds
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wifi_timespan rtt_sd; // standard deviation in rtt
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unsigned short beacon_period; // period advertised in the beacon
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unsigned short capability; // capabilities advertised in the beacon
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unsigned int ie_length; // size of the ie_data blob
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char ie_data[1]; // blob of all the information elements found in the
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// beacon; this data should be a packed list of
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// wifi_information_element objects, one after the other.
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// other fields
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} wifi_scan_result;
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typedef struct {
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/* reported when report_threshold is reached in scan cache */
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void (*on_scan_results_available) (wifi_request_id id, unsigned num_results_available);
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/* reported when each probe response is received, if report_events
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* enabled in wifi_scan_cmd_params */
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void (*on_full_scan_result) (wifi_request_id id, wifi_scan_result *result);
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/* optional event - indicates progress of scanning statemachine */
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void (*on_scan_event) (wifi_scan_event event, unsigned status);
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} wifi_scan_result_handler;
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typedef struct {
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wifi_channel channel; // frequency
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int dwellTimeMs; // dwell time hint
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int passive; // 0 => active, 1 => passive scan; ignored for DFS
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/* Add channel class */
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} wifi_scan_channel_spec;
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typedef struct {
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int bucket; // bucket index, 0 based
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wifi_band band; // when UNSPECIFIED, use channel list
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int period; // desired period, in millisecond; if this is too
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// low, the firmware should choose to generate results as
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// fast as it can instead of failing the command
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/* report_events semantics -
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* 0 => report only when scan history is % full
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* 1 => same as 0 + report a scan completion event after scanning this bucket
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* 2 => same as 1 + forward scan results (beacons/probe responses + IEs) in real time to HAL
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* 3 => same as 2 + forward scan results (beacons/probe responses + IEs) in real time to
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supplicant as well (optional) . */
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byte report_events;
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int num_channels;
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wifi_scan_channel_spec channels[MAX_CHANNELS]; // channels to scan; these may include DFS channels
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} wifi_scan_bucket_spec;
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typedef struct {
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int base_period; // base timer period in ms
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int max_ap_per_scan; // number of APs to store in each scan in the
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// BSSID/RSSI history buffer (keep the highest RSSI APs)
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int report_threshold; // in %, when scan buffer is this much full, wake up AP
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int num_buckets;
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wifi_scan_bucket_spec buckets[MAX_BUCKETS];
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} wifi_scan_cmd_params;
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/* Start periodic GSCAN */
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wifi_error wifi_start_gscan(wifi_request_id id, wifi_interface_handle iface,
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wifi_scan_cmd_params params, wifi_scan_result_handler handler);
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/* Stop periodic GSCAN */
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wifi_error wifi_stop_gscan(wifi_request_id id, wifi_interface_handle iface);
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/* Get the GSCAN cached scan results */
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wifi_error wifi_get_cached_gscan_results(wifi_interface_handle iface, byte flush,
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int max, wifi_scan_result *results, int *num);
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/* BSSID Hotlist */
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typedef struct {
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void (*on_hotlist_ap_found)(wifi_request_id id,
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unsigned num_results, wifi_scan_result *results);
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} wifi_hotlist_ap_found_handler;
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typedef struct {
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mac_addr bssid; // AP BSSID
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wifi_rssi low; // low threshold
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wifi_rssi high; // high threshold
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wifi_channel channel; // channel hint
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} ap_threshold_param;
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typedef struct {
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int num_ap; // number of hotlist APs
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ap_threshold_param ap[MAX_HOTLIST_APS]; // hotlist APs
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} wifi_bssid_hotlist_params;
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/* Set the BSSID Hotlist */
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wifi_error wifi_set_bssid_hotlist(wifi_request_id id, wifi_interface_handle iface,
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wifi_bssid_hotlist_params params, wifi_hotlist_ap_found_handler handler);
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/* Clear the BSSID Hotlist */
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wifi_error wifi_reset_bssid_hotlist(wifi_request_id id, wifi_interface_handle iface);
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/* Significant wifi change*/
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typedef struct {
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mac_addr bssid; // BSSID
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wifi_channel channel; // channel frequency in MHz
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int num_rssi; // number of rssi samples
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wifi_rssi rssi[]; // RSSI history in db
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} wifi_significant_change_result;
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typedef struct {
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void (*on_significant_change)(wifi_request_id id,
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unsigned num_results, wifi_significant_change_result **results);
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} wifi_significant_change_handler;
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typedef struct {
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int rssi_sample_size; // number of samples for averaging RSSI
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int lost_ap_sample_size; // number of samples to confirm AP loss
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int min_breaching; // number of APs breaching threshold
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int num_ap; // max 64
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ap_threshold_param ap[MAX_SIGNIFICANT_CHANGE_APS];
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} wifi_significant_change_params;
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/* Set the Signifcant AP change list */
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wifi_error wifi_set_significant_change_handler(wifi_request_id id, wifi_interface_handle iface,
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wifi_significant_change_params params, wifi_significant_change_handler handler);
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/* Clear the Signifcant AP change list */
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wifi_error wifi_reset_significant_change_handler(wifi_request_id id, wifi_interface_handle iface);
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#endif
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