mirror of https://github.com/ArduPilot/ardupilot
185 lines
6.2 KiB
C++
185 lines
6.2 KiB
C++
/*
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AP_Logger logging - MAVLink variant
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- transfers blocks of the open log file to a client using MAVLink
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*/
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#pragma once
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#define LOGGER_MAVLINK_SUPPORT 1
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#if LOGGER_MAVLINK_SUPPORT
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#include <AP_HAL/AP_HAL.h>
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#include "AP_Logger_Backend.h"
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extern const AP_HAL::HAL& hal;
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#define DF_MAVLINK_DISABLE_INTERRUPTS 0
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class AP_Logger_MAVLink : public AP_Logger_Backend
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{
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public:
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// constructor
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AP_Logger_MAVLink(AP_Logger &front, LoggerMessageWriter_DFLogStart *writer) :
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AP_Logger_Backend(front, writer),
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_max_blocks_per_send_blocks(8)
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,_perf_packing(hal.util->perf_alloc(AP_HAL::Util::PC_ELAPSED, "DM_packing"))
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{
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_blockcount = 1024*((uint8_t)_front._params.mav_bufsize) / sizeof(struct dm_block);
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// ::fprintf(stderr, "DM: Using %u blocks\n", _blockcount);
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}
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// initialisation
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void Init() override;
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// in actual fact, we throw away everything until a client connects.
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// This stops calls to start_new_log from the vehicles
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bool logging_started() const override { return _initialised; }
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void stop_logging() override;
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/* Write a block of data at current offset */
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bool _WritePrioritisedBlock(const void *pBuffer, uint16_t size,
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bool is_critical) override;
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// initialisation
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bool CardInserted(void) const override { return true; }
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// erase handling
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void EraseAll() override {}
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bool NeedPrep() override { return false; }
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void Prep() override { }
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// high level interface
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uint16_t find_last_log(void) override { return 0; }
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void get_log_boundaries(uint16_t log_num, uint32_t & start_page, uint32_t & end_page) override {}
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void get_log_info(uint16_t log_num, uint32_t &size, uint32_t &time_utc) override {}
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int16_t get_log_data(uint16_t log_num, uint16_t page, uint32_t offset, uint16_t len, uint8_t *data) override { return 0; }
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uint16_t get_num_logs(void) override { return 0; }
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void push_log_blocks() override;
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void remote_log_block_status_msg(const mavlink_channel_t chan, const mavlink_message_t& msg) override;
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protected:
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bool WritesOK() const override;
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private:
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struct dm_block {
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uint32_t seqno;
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uint8_t buf[MAVLINK_MSG_REMOTE_LOG_DATA_BLOCK_FIELD_DATA_LEN];
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uint32_t last_sent;
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struct dm_block *next;
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};
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bool send_log_block(struct dm_block &block);
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void handle_ack(const mavlink_channel_t chan, const mavlink_message_t &msg, uint32_t seqno);
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void handle_retry(uint32_t block_num);
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void do_resends(uint32_t now);
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void free_all_blocks();
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// a stack for free blocks, queues for pending, sent, retries and sent
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struct dm_block_queue {
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uint32_t sent_count;
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struct dm_block *oldest;
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struct dm_block *youngest;
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};
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typedef struct dm_block_queue dm_block_queue_t ;
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void enqueue_block(dm_block_queue_t &queue, struct dm_block *block);
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bool queue_has_block(dm_block_queue_t &queue, struct dm_block *block);
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struct dm_block *dequeue_seqno(dm_block_queue_t &queue, uint32_t seqno);
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bool free_seqno_from_queue(uint32_t seqno, dm_block_queue_t &queue);
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bool send_log_blocks_from_queue(dm_block_queue_t &queue);
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uint8_t stack_size(struct dm_block *stack);
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uint8_t queue_size(dm_block_queue_t queue);
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struct dm_block *_blocks_free;
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dm_block_queue_t _blocks_sent;
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dm_block_queue_t _blocks_pending;
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dm_block_queue_t _blocks_retry;
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struct _stats {
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// the following are reset any time we log stats (see "reset_stats")
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uint32_t resends;
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uint8_t collection_count;
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uint16_t state_free; // cumulative across collection period
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uint8_t state_free_min;
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uint8_t state_free_max;
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uint16_t state_pending; // cumulative across collection period
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uint8_t state_pending_min;
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uint8_t state_pending_max;
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uint16_t state_retry; // cumulative across collection period
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uint8_t state_retry_min;
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uint8_t state_retry_max;
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uint16_t state_sent; // cumulative across collection period
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uint8_t state_sent_min;
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uint8_t state_sent_max;
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} stats;
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// this method is used when reporting system status over mavlink
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bool logging_enabled() const override { return true; }
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bool logging_failed() const override;
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mavlink_channel_t _chan;
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uint8_t _target_system_id;
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uint8_t _target_component_id;
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// this controls the maximum number of blocks we will push from
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// the pending and send queues in any call to push_log_blocks.
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// push_log_blocks is called by periodic_tasks. Each block is 200
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// bytes. In Plane, at 50Hz, a _max_blocks_per_send_blocks of 2
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// means we will push at most 2*50*200 == 20KB of logs per second
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// _max_blocks_per_send_blocks has to be high enough to push all
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// of the logs, but low enough that we don't spend way too much
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// time packing messages in any one loop
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const uint8_t _max_blocks_per_send_blocks;
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uint32_t _next_seq_num;
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uint16_t _latest_block_len;
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uint32_t _last_response_time;
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uint32_t _last_send_time;
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uint8_t _next_block_number_to_resend;
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bool _sending_to_client;
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void Write_logger_MAV(AP_Logger_MAVLink &logger);
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uint32_t bufferspace_available() override; // in bytes
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uint8_t remaining_space_in_current_block();
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// write buffer
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uint8_t _blockcount_free;
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uint8_t _blockcount;
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struct dm_block *_blocks;
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struct dm_block *_current_block;
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struct dm_block *next_block();
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void periodic_10Hz(uint32_t now) override;
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void periodic_1Hz() override;
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void periodic_fullrate() override;
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void stats_init();
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void stats_reset();
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void stats_collect();
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void stats_log();
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uint32_t _stats_last_collected_time;
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uint32_t _stats_last_logged_time;
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uint8_t mavlink_seq;
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/* we currently ignore requests to start a new log. Notionally we
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* could close the currently logging session and hope the client
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* re-opens one */
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void start_new_log(void) override {
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return;
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}
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// performance counters
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AP_HAL::Util::perf_counter_t _perf_errors;
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AP_HAL::Util::perf_counter_t _perf_packing;
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AP_HAL::Util::perf_counter_t _perf_overruns;
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HAL_Semaphore semaphore;
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};
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#endif // LOGGER_MAVLINK_SUPPORT
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