mirror of https://github.com/ArduPilot/ardupilot
383 lines
13 KiB
C++
383 lines
13 KiB
C++
#include "MissionItemProtocol.h"
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#include "GCS.h"
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void MissionItemProtocol::init_send_requests(GCS_MAVLINK &_link,
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const mavlink_message_t &msg,
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const int16_t _request_first,
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const int16_t _request_last)
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{
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// set variables to help handle the expected receiving of commands from the GCS
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timelast_receive_ms = AP_HAL::millis(); // set time we last received commands to now
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receiving = true; // record that we expect to receive commands
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request_i = _request_first; // reset the next expected command number to zero
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request_last = _request_last; // record how many commands we expect to receive
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dest_sysid = msg.sysid; // record system id of GCS who wants to upload the mission
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dest_compid = msg.compid; // record component id of GCS who wants to upload the mission
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link = &_link;
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timelast_request_ms = AP_HAL::millis();
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link->send_message(next_item_ap_message_id());
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mission_item_warning_sent = false;
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mission_request_warning_sent = false;
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}
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void MissionItemProtocol::handle_mission_clear_all(const GCS_MAVLINK &_link,
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const mavlink_message_t &msg)
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{
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bool success = true;
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success = success && !receiving;
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success = success && clear_all_items();
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send_mission_ack(_link, msg, success ? MAV_MISSION_ACCEPTED : MAV_MISSION_ERROR);
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}
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bool MissionItemProtocol::mavlink2_requirement_met(const GCS_MAVLINK &_link, const mavlink_message_t &msg) const
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{
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// need mavlink2 to do mission types other than mission:
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if (mission_type() == MAV_MISSION_TYPE_MISSION) {
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return true;
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}
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if (!_link.sending_mavlink1()) {
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return true;
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}
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gcs().send_text(MAV_SEVERITY_WARNING, "Need mavlink2 for item transfer");
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send_mission_ack(_link, msg, MAV_MISSION_UNSUPPORTED);
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return false;
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}
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void MissionItemProtocol::handle_mission_count(
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GCS_MAVLINK &_link,
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const mavlink_mission_count_t &packet,
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const mavlink_message_t &msg)
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{
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if (!mavlink2_requirement_met(_link, msg)) {
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return;
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}
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if (receiving) {
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// someone is already uploading a mission. If we are
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// receiving from someone then we will allow them to restart -
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// otherwise we deny.
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if (msg.sysid != dest_sysid || msg.compid != dest_compid) {
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// reject another upload until
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send_mission_ack(_link, msg, MAV_MISSION_DENIED);
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return;
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}
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// the upload count may have changed; free resources and
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// allocate them again:
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free_upload_resources();
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}
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if (packet.count > max_items()) {
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// FIXME: different items take up different storage space!
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send_mission_ack(_link, msg, MAV_MISSION_NO_SPACE);
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GCS_SEND_TEXT(MAV_SEVERITY_WARNING, "Only %u items are supported", (unsigned)max_items());
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return;
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}
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MAV_MISSION_RESULT ret_alloc = allocate_receive_resources(packet.count);
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if (ret_alloc != MAV_MISSION_ACCEPTED) {
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send_mission_ack(_link, msg, ret_alloc);
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return;
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}
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truncate(packet);
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if (packet.count == 0) {
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// no requests to send...
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transfer_is_complete(_link, msg);
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return;
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}
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// start waypoint receiving
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init_send_requests(_link, msg, 0, packet.count-1);
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}
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void MissionItemProtocol::handle_mission_request_list(
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const GCS_MAVLINK &_link,
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const mavlink_mission_request_list_t &packet,
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const mavlink_message_t &msg)
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{
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if (!mavlink2_requirement_met(_link, msg)) {
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return;
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}
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if (receiving) {
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// someone is uploading a mission; reject fetching of points
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// until done or timeout
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send_mission_ack(_link, msg, MAV_MISSION_DENIED);
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return;
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}
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// reply with number of commands in the mission. The GCS will
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// then request each command separately
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CHECK_PAYLOAD_SIZE2_VOID(_link.get_chan(), MISSION_COUNT);
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mavlink_msg_mission_count_send(_link.get_chan(),
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msg.sysid,
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msg.compid,
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item_count(),
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mission_type());
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}
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void MissionItemProtocol::handle_mission_request_int(GCS_MAVLINK &_link,
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const mavlink_mission_request_int_t &packet,
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const mavlink_message_t &msg)
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{
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if (!mavlink2_requirement_met(_link, msg)) {
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return;
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}
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if (receiving) {
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// someone is uploading a mission; reject fetching of points
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// until done or timeout
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send_mission_ack(_link, msg, MAV_MISSION_DENIED);
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return;
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}
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mavlink_mission_item_int_t ret_packet{};
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ret_packet.target_system = msg.sysid;
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ret_packet.target_component = msg.compid;
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ret_packet.seq = packet.seq;
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ret_packet.mission_type = packet.mission_type;
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const MAV_MISSION_RESULT result_code = get_item(_link, msg, packet, ret_packet);
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if (result_code != MAV_MISSION_ACCEPTED) {
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// send failure message
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send_mission_ack(_link, msg, result_code);
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return;
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}
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_link.send_message(MAVLINK_MSG_ID_MISSION_ITEM_INT, (const char*)&ret_packet);
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}
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void MissionItemProtocol::handle_mission_request(GCS_MAVLINK &_link,
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const mavlink_mission_request_t &packet,
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const mavlink_message_t &msg
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)
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{
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if (!mavlink2_requirement_met(_link, msg)) {
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return;
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}
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// convert into a MISSION_REQUEST_INT and reuse its handling code
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mavlink_mission_request_int_t request_int;
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request_int.target_system = packet.target_system;
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request_int.target_component = packet.target_component;
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request_int.seq = packet.seq;
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request_int.mission_type = packet.mission_type;
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mavlink_mission_item_int_t item_int{};
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item_int.target_system = msg.sysid;
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item_int.target_component = msg.compid;
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item_int.mission_type = packet.mission_type;
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item_int.seq = packet.seq;
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MAV_MISSION_RESULT ret = get_item(_link, msg, request_int, item_int);
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if (ret != MAV_MISSION_ACCEPTED) {
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send_mission_ack(_link, msg, ret);
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return;
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}
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mavlink_mission_item_t ret_packet{};
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ret = AP_Mission::convert_MISSION_ITEM_INT_to_MISSION_ITEM(item_int, ret_packet);
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if (ret != MAV_MISSION_ACCEPTED) {
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send_mission_ack(_link, msg, ret);
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return;
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}
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if (!mission_request_warning_sent) {
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mission_request_warning_sent = true;
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gcs().send_text(MAV_SEVERITY_WARNING, "got MISSION_REQUEST; use MISSION_REQUEST_INT!");
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}
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// buffer space is checked by send_message
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_link.send_message(MAVLINK_MSG_ID_MISSION_ITEM, (const char*)&ret_packet);
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}
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void MissionItemProtocol::send_mission_item_warning()
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{
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if (mission_item_warning_sent) {
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return;
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}
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mission_item_warning_sent = true;
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gcs().send_text(MAV_SEVERITY_WARNING, "got MISSION_ITEM; GCS should send MISSION_ITEM_INT");
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}
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void MissionItemProtocol::handle_mission_write_partial_list(GCS_MAVLINK &_link,
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const mavlink_message_t &msg,
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const mavlink_mission_write_partial_list_t &packet)
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{
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// start waypoint receiving
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if ((unsigned)packet.start_index > item_count() ||
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(unsigned)packet.end_index > item_count() ||
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packet.end_index < packet.start_index) {
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gcs().send_text(MAV_SEVERITY_WARNING,"Flight plan update rejected"); // FIXME: Remove this anytime after 2020-01-22
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send_mission_ack(_link, msg, MAV_MISSION_ERROR);
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return;
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}
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MAV_MISSION_RESULT ret_alloc = allocate_update_resources();
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if (ret_alloc != MAV_MISSION_ACCEPTED) {
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send_mission_ack(_link, msg, ret_alloc);
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return;
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}
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init_send_requests(_link, msg, packet.start_index, packet.end_index);
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}
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void MissionItemProtocol::handle_mission_item(const mavlink_message_t &msg, const mavlink_mission_item_int_t &cmd)
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{
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if (link == nullptr) {
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INTERNAL_ERROR(AP_InternalError::error_t::gcs_bad_missionprotocol_link);
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return;
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}
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// check if this is the requested waypoint
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if (cmd.seq != request_i) {
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send_mission_ack(msg, MAV_MISSION_INVALID_SEQUENCE);
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return;
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}
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// make sure the item is coming from the system that initiated the upload
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if (msg.sysid != dest_sysid) {
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send_mission_ack(msg, MAV_MISSION_DENIED);
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return;
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}
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if (msg.compid != dest_compid) {
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send_mission_ack(msg, MAV_MISSION_DENIED);
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return;
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}
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const uint16_t _item_count = item_count();
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MAV_MISSION_RESULT result;
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if (cmd.seq < _item_count) {
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// command index is within the existing list, replace the command
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result = replace_item(cmd);
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} else if (cmd.seq == _item_count) {
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// command is at the end of command list, add the command
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result = append_item(cmd);
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} else {
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// beyond the end of the command list, return an error
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result = MAV_MISSION_ERROR;
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}
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if (result != MAV_MISSION_ACCEPTED) {
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send_mission_ack(msg, result);
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receiving = false;
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link = nullptr;
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free_upload_resources();
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return;
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}
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// update waypoint receiving state machine
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timelast_receive_ms = AP_HAL::millis();
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request_i++;
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if (request_i > request_last) {
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transfer_is_complete(*link, msg);
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return;
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}
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// if we have enough space, then send the next WP request immediately
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if (HAVE_PAYLOAD_SPACE(link->get_chan(), MISSION_REQUEST)) {
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queued_request_send();
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} else {
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link->send_message(next_item_ap_message_id());
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}
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}
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void MissionItemProtocol::transfer_is_complete(const GCS_MAVLINK &_link, const mavlink_message_t &msg)
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{
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const MAV_MISSION_RESULT result = complete(_link);
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send_mission_ack(_link, msg, result);
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free_upload_resources();
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receiving = false;
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link = nullptr;
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}
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void MissionItemProtocol::send_mission_ack(const mavlink_message_t &msg,
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MAV_MISSION_RESULT result) const
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{
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if (link == nullptr) {
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INTERNAL_ERROR(AP_InternalError::error_t::gcs_bad_missionprotocol_link);
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return;
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}
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send_mission_ack(*link, msg, result);
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}
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void MissionItemProtocol::send_mission_ack(const GCS_MAVLINK &_link,
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const mavlink_message_t &msg,
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MAV_MISSION_RESULT result) const
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{
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CHECK_PAYLOAD_SIZE2_VOID(_link.get_chan(), MISSION_ACK);
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mavlink_msg_mission_ack_send(_link.get_chan(),
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msg.sysid,
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msg.compid,
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result,
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mission_type());
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}
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/**
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* @brief Send the next pending waypoint, called from deferred message
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* handling code
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*/
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void MissionItemProtocol::queued_request_send()
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{
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if (!receiving) {
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return;
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}
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if (request_i > request_last) {
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return;
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}
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if (link == nullptr) {
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INTERNAL_ERROR(AP_InternalError::error_t::gcs_bad_missionprotocol_link);
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return;
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}
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CHECK_PAYLOAD_SIZE2_VOID(link->get_chan(), MISSION_REQUEST);
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mavlink_msg_mission_request_send(
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link->get_chan(),
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dest_sysid,
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dest_compid,
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request_i,
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mission_type());
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timelast_request_ms = AP_HAL::millis();
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}
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void MissionItemProtocol::update()
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{
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if (!receiving) {
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// we don't need to do anything unless we're sending requests
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return;
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}
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if (link == nullptr) {
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INTERNAL_ERROR(AP_InternalError::error_t::gcs_bad_missionprotocol_link);
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return;
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}
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// stop waypoint receiving if timeout
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const uint32_t tnow = AP_HAL::millis();
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if (tnow - timelast_receive_ms > upload_timeout_ms) {
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receiving = false;
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timeout();
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const mavlink_channel_t chan = link->get_chan();
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if (HAVE_PAYLOAD_SPACE(chan, MISSION_ACK)) {
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mavlink_msg_mission_ack_send(chan,
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dest_sysid,
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dest_compid,
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MAV_MISSION_OPERATION_CANCELLED,
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mission_type());
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}
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link = nullptr;
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free_upload_resources();
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return;
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}
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// resend request if we haven't gotten one:
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const uint32_t wp_recv_timeout_ms = 1000U + link->get_stream_slowdown_ms();
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if (tnow - timelast_request_ms > wp_recv_timeout_ms) {
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timelast_request_ms = tnow;
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link->send_message(next_item_ap_message_id());
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}
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}
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