2020-12-20 15:57:43 -04:00
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--[[
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This example adds a new passthrough packet type for waypoints.
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Waypoint data is packet into 32bits and sent down the frsky bus with a DIY appid of 0x5009.
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- 10 bits for current waypoint index, max 1023
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- 12 bits for the distance in meters encoded with AP_Frsky_SPort::prep_number(distance, 3, 2) max is 102.3Km
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- 6 bits for xtrack error (5 bits + sign) encoded with prep_5bits
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- 3 bits for bearing from COG with a 45° resolution
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We'll be responding to an unused sensor ID
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This is a list of IDs we can't use:
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- serial protocol 4 uses IDs 0,2,3 and 6
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- serial protocol 10 uses ID 7,13,20,27
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- serial protocol 23, no IDs used
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For this test we'll use sensor ID 17 (0x71),
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Note: 17 is the index, 0x71 is the actual ID
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--]]
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2023-02-13 22:45:19 -04:00
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-- luacheck: only 0
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2024-05-03 15:22:25 -03:00
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---@diagnostic disable: param-type-mismatch
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2020-12-20 15:57:43 -04:00
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local loop_time = 1000 -- number of ms between runs
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local WP_OFFSET_DISTANCE = 10
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local WP_OFFSET_BEARING = 29
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local WP_OFFSET_XTRACK = 22
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local WP_LIMIT_COUNT = 0x3FF -- 1023
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local WP_LIMIT_XTRACK = 0x7F -- 127m
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local WP_LIMIT_DISTANCE = 0x18F9C -- 102.3Km
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local WP_ARROW_COUNT = 8 -- 8 possible directions
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local wp_bearing = 0
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local wp_index = 0
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local wp_distance = 0
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local wp_xtrack = 0
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function wrap_360(angle)
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local res = angle % 360
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if res < 0 then
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res = res + 360
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end
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return res
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end
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function prep_5bits(num)
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local res = 0
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local abs_num = math.floor(math.abs(num) + 0.5)
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if abs_num < 10 then
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res = abs_num << 1
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elseif abs_num < 150 then
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res = ( math.floor((abs_num * 0.1)+0.5) << 1) | 0x1
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else
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res = 0x1F
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end
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if num < 0 then
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res = res | 0x1 << 5
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end
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return res
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end
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function wp_pack(index, distance, bearing, xtrack)
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local wp_dword = uint32_t()
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wp_dword = math.min(index,WP_LIMIT_COUNT)
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wp_dword = wp_dword | frsky_sport:prep_number(math.min(math.floor(distance+0.5),WP_LIMIT_DISTANCE),3,2) << WP_OFFSET_DISTANCE
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wp_dword = wp_dword | prep_5bits(math.min(xtrack,WP_LIMIT_XTRACK)) << WP_OFFSET_XTRACK
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if gps:status(0) >= gps.GPS_OK_FIX_2D then
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local cog = gps:ground_course(0) -- deg
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local angle = wrap_360(bearing - cog) -- deg
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local interval = 360 / WP_ARROW_COUNT -- 45 deg
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-- hint from OSD code to avoid unreliable bearing at small distances
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if distance < 2 then
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angle = 0
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end
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-- bearing expressed as offset from cog as multiple of 45° ( 8 sectors) encoded as 3bits
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wp_dword = wp_dword | ((math.floor(((angle + interval/2) / interval)) % WP_ARROW_COUNT) & 0x7) << WP_OFFSET_BEARING
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end
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return wp_dword & 0xFFFFFFFF
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end
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function update_wp_info()
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local index = mission:get_current_nav_index()
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local distance = vehicle:get_wp_distance_m()
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local bearing = vehicle:get_wp_bearing_deg()
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local xtrack = vehicle:get_wp_crosstrack_error_m()
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if index ~= nil and distance ~= nil and bearing ~= nil and xtrack ~= nil then
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wp_index = index
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wp_bearing = bearing
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wp_distance = distance
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wp_xtrack = xtrack
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return true
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end
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return false
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end
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function update()
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local gps_status = gps.status(0,0)
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if not update_wp_info() then
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return update, loop_time
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end
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local sensor_id = 0x71
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local wp_dword = uint32_t()
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wp_dword = wp_pack(wp_index, wp_distance, wp_bearing, wp_xtrack)
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frsky_sport:sport_telemetry_push(sensor_id, 0x10, 0x5009, wp_dword)
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return update, loop_time
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end
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return update() , 1000
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