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259 lines
13 KiB
259 lines
13 KiB
#include "wifi_hal.h" |
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#ifndef __WIFI_HAL_STATS_H |
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#define __WIFI_HAL_STATS_H |
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#ifdef __cplusplus |
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extern "C" |
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{ |
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#endif /* __cplusplus */ |
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#define STATS_MAJOR_VERSION 1 |
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#define STATS_MINOR_VERSION 0 |
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#define STATS_MICRO_VERSION 0 |
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typedef enum { |
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WIFI_DISCONNECTED = 0, |
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WIFI_AUTHENTICATING = 1, |
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WIFI_ASSOCIATING = 2, |
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WIFI_ASSOCIATED = 3, |
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WIFI_EAPOL_STARTED = 4, // if done by firmware/driver |
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WIFI_EAPOL_COMPLETED = 5, // if done by firmware/driver |
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} wifi_connection_state; |
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typedef enum { |
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WIFI_ROAMING_IDLE = 0, |
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WIFI_ROAMING_ACTIVE = 1, |
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} wifi_roam_state; |
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typedef enum { |
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WIFI_INTERFACE_STA = 0, |
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WIFI_INTERFACE_SOFTAP = 1, |
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WIFI_INTERFACE_IBSS = 2, |
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WIFI_INTERFACE_P2P_CLIENT = 3, |
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WIFI_INTERFACE_P2P_GO = 4, |
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WIFI_INTERFACE_NAN = 5, |
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WIFI_INTERFACE_MESH = 6, |
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WIFI_INTERFACE_UNKNOWN = -1 |
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} wifi_interface_mode; |
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#define WIFI_CAPABILITY_QOS 0x00000001 // set for QOS association |
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#define WIFI_CAPABILITY_PROTECTED 0x00000002 // set for protected association (802.11 beacon frame control protected bit set) |
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#define WIFI_CAPABILITY_INTERWORKING 0x00000004 // set if 802.11 Extended Capabilities element interworking bit is set |
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#define WIFI_CAPABILITY_HS20 0x00000008 // set for HS20 association |
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#define WIFI_CAPABILITY_SSID_UTF8 0x00000010 // set is 802.11 Extended Capabilities element UTF-8 SSID bit is set |
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#define WIFI_CAPABILITY_COUNTRY 0x00000020 // set is 802.11 Country Element is present |
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typedef struct { |
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wifi_interface_mode mode; // interface mode |
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u8 mac_addr[6]; // interface mac address (self) |
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wifi_connection_state state; // connection state (valid for STA, CLI only) |
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wifi_roam_state roaming; // roaming state |
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u32 capabilities; // WIFI_CAPABILITY_XXX (self) |
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u8 ssid[33]; // null terminated SSID |
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u8 bssid[6]; // bssid |
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u8 ap_country_str[3]; // country string advertised by AP |
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u8 country_str[3]; // country string for this association |
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} wifi_interface_link_layer_info; |
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/* channel information */ |
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typedef struct { |
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wifi_channel_width width; // channel width (20, 40, 80, 80+80, 160) |
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wifi_channel center_freq; // primary 20 MHz channel |
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wifi_channel center_freq0; // center frequency (MHz) first segment |
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wifi_channel center_freq1; // center frequency (MHz) second segment |
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} wifi_channel_info; |
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/* wifi rate */ |
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typedef struct { |
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u32 preamble :3; // 0: OFDM, 1:CCK, 2:HT 3:VHT 4..7 reserved |
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u32 nss :2; // 0:1x1, 1:2x2, 3:3x3, 4:4x4 |
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u32 bw :3; // 0:20MHz, 1:40Mhz, 2:80Mhz, 3:160Mhz |
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u32 rateMcsIdx :8; // OFDM/CCK rate code would be as per ieee std in the units of 0.5mbps |
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// HT/VHT it would be mcs index |
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u32 reserved :16; // reserved |
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u32 bitrate; // units of 100 Kbps |
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} wifi_rate; |
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/* channel statistics */ |
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typedef struct { |
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wifi_channel_info channel; // channel |
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u32 on_time; // msecs the radio is awake (32 bits number accruing over time) |
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u32 cca_busy_time; // msecs the CCA register is busy (32 bits number accruing over time) |
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} wifi_channel_stat; |
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// Max number of tx power levels. The actual number vary per device and is specified by |num_tx_levels| |
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#define RADIO_STAT_MAX_TX_LEVELS 256 |
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/* radio statistics */ |
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typedef struct { |
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wifi_radio radio; // wifi radio (if multiple radio supported) |
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u32 on_time; // msecs the radio is awake (32 bits number accruing over time) |
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u32 tx_time; // msecs the radio is transmitting (32 bits number accruing over time) |
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u32 num_tx_levels; // number of radio transmit power levels |
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u32 *tx_time_per_levels; // pointer to an array of radio transmit per power levels in |
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// msecs accured over time |
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u32 rx_time; // msecs the radio is in active receive (32 bits number accruing over time) |
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u32 on_time_scan; // msecs the radio is awake due to all scan (32 bits number accruing over time) |
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u32 on_time_nbd; // msecs the radio is awake due to NAN (32 bits number accruing over time) |
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u32 on_time_gscan; // msecs the radio is awake due to G?scan (32 bits number accruing over time) |
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u32 on_time_roam_scan; // msecs the radio is awake due to roam?scan (32 bits number accruing over time) |
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u32 on_time_pno_scan; // msecs the radio is awake due to PNO scan (32 bits number accruing over time) |
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u32 on_time_hs20; // msecs the radio is awake due to HS2.0 scans and GAS exchange (32 bits number accruing over time) |
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u32 num_channels; // number of channels |
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wifi_channel_stat channels[]; // channel statistics |
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} wifi_radio_stat; |
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/** |
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* Packet statistics reporting by firmware is performed on MPDU basi (i.e. counters increase by 1 for each MPDU) |
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* As well, "data packet" in associated comments, shall be interpreted as 802.11 data packet, |
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* that is, 802.11 frame control subtype == 2 and excluding management and control frames. |
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* |
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* As an example, in the case of transmission of an MSDU fragmented in 16 MPDUs which are transmitted |
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* OTA in a 16 units long a-mpdu, for which a block ack is received with 5 bits set: |
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* tx_mpdu : shall increase by 5 |
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* retries : shall increase by 16 |
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* tx_ampdu : shall increase by 1 |
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* data packet counters shall not increase regardless of the number of BAR potentially sent by device for this a-mpdu |
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* data packet counters shall not increase regardless of the number of BA received by device for this a-mpdu |
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* |
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* For each subsequent retransmission of the 11 remaining non ACK'ed mpdus |
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* (regardless of the fact that they are transmitted in a-mpdu or not) |
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* retries : shall increase by 1 |
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* |
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* If no subsequent BA or ACK are received from AP, until packet lifetime expires for those 11 packet that were not ACK'ed |
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* mpdu_lost : shall increase by 11 |
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*/ |
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/* per rate statistics */ |
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typedef struct { |
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wifi_rate rate; // rate information |
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u32 tx_mpdu; // number of successfully transmitted data pkts (ACK rcvd) |
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u32 rx_mpdu; // number of received data pkts |
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u32 mpdu_lost; // number of data packet losses (no ACK) |
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u32 retries; // total number of data pkt retries |
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u32 retries_short; // number of short data pkt retries |
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u32 retries_long; // number of long data pkt retries |
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} wifi_rate_stat; |
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/* access categories */ |
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typedef enum { |
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WIFI_AC_VO = 0, |
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WIFI_AC_VI = 1, |
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WIFI_AC_BE = 2, |
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WIFI_AC_BK = 3, |
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WIFI_AC_MAX = 4, |
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} wifi_traffic_ac; |
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/* wifi peer type */ |
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typedef enum |
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{ |
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WIFI_PEER_STA, |
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WIFI_PEER_AP, |
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WIFI_PEER_P2P_GO, |
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WIFI_PEER_P2P_CLIENT, |
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WIFI_PEER_NAN, |
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WIFI_PEER_TDLS, |
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WIFI_PEER_INVALID, |
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} wifi_peer_type; |
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/* per peer statistics */ |
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typedef struct { |
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wifi_peer_type type; // peer type (AP, TDLS, GO etc.) |
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u8 peer_mac_address[6]; // mac address |
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u32 capabilities; // peer WIFI_CAPABILITY_XXX |
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u32 num_rate; // number of rates |
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wifi_rate_stat rate_stats[]; // per rate statistics, number of entries = num_rate |
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} wifi_peer_info; |
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/* Per access category statistics */ |
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typedef struct { |
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wifi_traffic_ac ac; // access category (VI, VO, BE, BK) |
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u32 tx_mpdu; // number of successfully transmitted unicast data pkts (ACK rcvd) |
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u32 rx_mpdu; // number of received unicast data packets |
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u32 tx_mcast; // number of succesfully transmitted multicast data packets |
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// STA case: implies ACK received from AP for the unicast packet in which mcast pkt was sent |
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u32 rx_mcast; // number of received multicast data packets |
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u32 rx_ampdu; // number of received unicast a-mpdus; support of this counter is optional |
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u32 tx_ampdu; // number of transmitted unicast a-mpdus; support of this counter is optional |
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u32 mpdu_lost; // number of data pkt losses (no ACK) |
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u32 retries; // total number of data pkt retries |
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u32 retries_short; // number of short data pkt retries |
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u32 retries_long; // number of long data pkt retries |
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u32 contention_time_min; // data pkt min contention time (usecs) |
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u32 contention_time_max; // data pkt max contention time (usecs) |
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u32 contention_time_avg; // data pkt avg contention time (usecs) |
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u32 contention_num_samples; // num of data pkts used for contention statistics |
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} wifi_wmm_ac_stat; |
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/* interface statistics */ |
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typedef struct { |
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wifi_interface_handle iface; // wifi interface |
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wifi_interface_link_layer_info info; // current state of the interface |
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u32 beacon_rx; // access point beacon received count from connected AP |
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u64 average_tsf_offset; // average beacon offset encountered (beacon_TSF - TBTT) |
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// The average_tsf_offset field is used so as to calculate the |
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// typical beacon contention time on the channel as well may be |
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// used to debug beacon synchronization and related power consumption issue |
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u32 leaky_ap_detected; // indicate that this AP typically leaks packets beyond the driver guard time. |
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u32 leaky_ap_avg_num_frames_leaked; // average number of frame leaked by AP after frame with PM bit set was ACK'ed by AP |
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u32 leaky_ap_guard_time; // guard time currently in force (when implementing IEEE power management based on |
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// frame control PM bit), How long driver waits before shutting down the radio and |
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// after receiving an ACK for a data frame with PM bit set) |
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u32 mgmt_rx; // access point mgmt frames received count from connected AP (including Beacon) |
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u32 mgmt_action_rx; // action frames received count |
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u32 mgmt_action_tx; // action frames transmit count |
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wifi_rssi rssi_mgmt; // access Point Beacon and Management frames RSSI (averaged) |
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wifi_rssi rssi_data; // access Point Data Frames RSSI (averaged) from connected AP |
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wifi_rssi rssi_ack; // access Point ACK RSSI (averaged) from connected AP |
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wifi_wmm_ac_stat ac[WIFI_AC_MAX]; // per ac data packet statistics |
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u32 num_peers; // number of peers |
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wifi_peer_info peer_info[]; // per peer statistics |
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} wifi_iface_stat; |
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/* configuration params */ |
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typedef struct { |
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u32 mpdu_size_threshold; // threshold to classify the pkts as short or long |
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// packet size < mpdu_size_threshold => short |
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u32 aggressive_statistics_gathering; // set for field debug mode. Driver should collect all statistics regardless of performance impact. |
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} wifi_link_layer_params; |
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/* API to trigger the link layer statistics collection. |
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Unless his API is invoked - link layer statistics will not be collected. |
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Radio statistics (once started) do not stop or get reset unless wifi_clear_link_stats is invoked |
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Interface statistics (once started) reset and start afresh after each connection */ |
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wifi_error wifi_set_link_stats(wifi_interface_handle iface, wifi_link_layer_params params); |
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/* callback for reporting link layer stats */ |
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typedef struct { |
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void (*on_link_stats_results) (wifi_request_id id, wifi_iface_stat *iface_stat, |
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int num_radios, wifi_radio_stat *radio_stat); |
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} wifi_stats_result_handler; |
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/* api to collect the link layer statistics for a given iface and all the radio stats */ |
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wifi_error wifi_get_link_stats(wifi_request_id id, |
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wifi_interface_handle iface, wifi_stats_result_handler handler); |
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/* wifi statistics bitmap */ |
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#define WIFI_STATS_RADIO 0x00000001 // all radio statistics |
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#define WIFI_STATS_RADIO_CCA 0x00000002 // cca_busy_time (within radio statistics) |
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#define WIFI_STATS_RADIO_CHANNELS 0x00000004 // all channel statistics (within radio statistics) |
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#define WIFI_STATS_RADIO_SCAN 0x00000008 // all scan statistics (within radio statistics) |
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#define WIFI_STATS_IFACE 0x00000010 // all interface statistics |
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#define WIFI_STATS_IFACE_TXRATE 0x00000020 // all tx rate statistics (within interface statistics) |
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#define WIFI_STATS_IFACE_AC 0x00000040 // all ac statistics (within interface statistics) |
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#define WIFI_STATS_IFACE_CONTENTION 0x00000080 // all contention (min, max, avg) statistics (within ac statisctics) |
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/* clear api to reset statistics, stats_clear_rsp_mask identifies what stats have been cleared |
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stop_req = 1 will imply whether to stop the statistics collection. |
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stop_rsp = 1 will imply that stop_req was honored and statistics collection was stopped. |
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*/ |
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wifi_error wifi_clear_link_stats(wifi_interface_handle iface, |
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u32 stats_clear_req_mask, u32 *stats_clear_rsp_mask, u8 stop_req, u8 *stop_rsp); |
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#ifdef __cplusplus |
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} |
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#endif /* __cplusplus */ |
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#endif /*__WIFI_HAL_STATS_ */ |
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