#![allow(clippy::manual_range_patterns)]
use crate::profile::typedef::{self, FitBaseType};
use crate::proto::*;
use crate::semconv;
use alloc::borrow::ToOwned;
use alloc::string::String;
use alloc::vec::Vec;
#[cfg(feature = "serde")]
use serde::{Deserialize, Serialize, Serializer, ser::SerializeStruct};
fn is_expanded(state: &[u8], num: u8) -> bool {
match num {
91 | 92 | 93 => (state[num as usize >> 3] >> (num & 7)) & 1 == 1,
_ => false,
}
}
#[cfg_attr(feature = "serde", derive(Deserialize), serde(from = "De"))]
#[derive(Debug, Clone)]
pub struct SegmentLap {
pub message_index: typedef::MessageIndex,
pub timestamp: typedef::DateTime,
pub event: typedef::Event,
pub event_type: typedef::EventType,
pub start_time: typedef::DateTime,
pub start_position_lat: i32,
pub start_position_long: i32,
pub end_position_lat: i32,
pub end_position_long: i32,
pub total_elapsed_time: u32,
pub total_timer_time: u32,
pub total_distance: u32,
pub total_cycles: u32,
pub total_calories: u16,
pub total_fat_calories: u16,
pub avg_speed: u16,
pub max_speed: u16,
pub avg_heart_rate: u8,
pub max_heart_rate: u8,
pub avg_cadence: u8,
pub max_cadence: u8,
pub avg_power: u16,
pub max_power: u16,
pub total_ascent: u16,
pub total_descent: u16,
pub sport: typedef::Sport,
pub event_group: u8,
pub nec_lat: i32,
pub nec_long: i32,
pub swc_lat: i32,
pub swc_long: i32,
pub name: String,
pub normalized_power: u16,
pub left_right_balance: typedef::LeftRightBalance100,
pub sub_sport: typedef::SubSport,
pub total_work: u32,
pub avg_altitude: u16,
pub max_altitude: u16,
pub gps_accuracy: u8,
pub avg_grade: i16,
pub avg_pos_grade: i16,
pub avg_neg_grade: i16,
pub max_pos_grade: i16,
pub max_neg_grade: i16,
pub avg_temperature: i8,
pub max_temperature: i8,
pub total_moving_time: u32,
pub avg_pos_vertical_speed: i16,
pub avg_neg_vertical_speed: i16,
pub max_pos_vertical_speed: i16,
pub max_neg_vertical_speed: i16,
pub time_in_hr_zone: Vec<u32>,
pub time_in_speed_zone: Vec<u32>,
pub time_in_cadence_zone: Vec<u32>,
pub time_in_power_zone: Vec<u32>,
pub repetition_num: u16,
pub min_altitude: u16,
pub min_heart_rate: u8,
pub active_time: u32,
pub wkt_step_index: typedef::MessageIndex,
pub sport_event: typedef::SportEvent,
pub avg_left_torque_effectiveness: u8,
pub avg_right_torque_effectiveness: u8,
pub avg_left_pedal_smoothness: u8,
pub avg_right_pedal_smoothness: u8,
pub avg_combined_pedal_smoothness: u8,
pub status: typedef::SegmentLapStatus,
pub uuid: String,
pub avg_fractional_cadence: u8,
pub max_fractional_cadence: u8,
pub total_fractional_cycles: u8,
pub front_gear_shift_count: u16,
pub rear_gear_shift_count: u16,
pub time_standing: u32,
pub stand_count: u16,
pub avg_left_pco: i8,
pub avg_right_pco: i8,
pub avg_left_power_phase: Vec<u8>,
pub avg_left_power_phase_peak: Vec<u8>,
pub avg_right_power_phase: Vec<u8>,
pub avg_right_power_phase_peak: Vec<u8>,
pub avg_power_position: Vec<u16>,
pub max_power_position: Vec<u16>,
pub avg_cadence_position: Vec<u8>,
pub max_cadence_position: Vec<u8>,
pub manufacturer: typedef::Manufacturer,
pub total_grit: f32,
pub total_flow: f32,
pub avg_grit: f32,
pub avg_flow: f32,
pub total_fractional_ascent: u8,
pub total_fractional_descent: u8,
pub enhanced_avg_altitude: u32,
pub enhanced_max_altitude: u32,
pub enhanced_min_altitude: u32,
state: [u8; 12], pub unknown_fields: Vec<Field>,
pub developer_fields: Vec<DeveloperField>,
}
impl SegmentLap {
pub const MESSAGE_INDEX: u8 = 254;
pub const TIMESTAMP: u8 = 253;
pub const EVENT: u8 = 0;
pub const EVENT_TYPE: u8 = 1;
pub const START_TIME: u8 = 2;
pub const START_POSITION_LAT: u8 = 3;
pub const START_POSITION_LONG: u8 = 4;
pub const END_POSITION_LAT: u8 = 5;
pub const END_POSITION_LONG: u8 = 6;
pub const TOTAL_ELAPSED_TIME: u8 = 7;
pub const TOTAL_TIMER_TIME: u8 = 8;
pub const TOTAL_DISTANCE: u8 = 9;
pub const TOTAL_CYCLES: u8 = 10;
pub const TOTAL_CALORIES: u8 = 11;
pub const TOTAL_FAT_CALORIES: u8 = 12;
pub const AVG_SPEED: u8 = 13;
pub const MAX_SPEED: u8 = 14;
pub const AVG_HEART_RATE: u8 = 15;
pub const MAX_HEART_RATE: u8 = 16;
pub const AVG_CADENCE: u8 = 17;
pub const MAX_CADENCE: u8 = 18;
pub const AVG_POWER: u8 = 19;
pub const MAX_POWER: u8 = 20;
pub const TOTAL_ASCENT: u8 = 21;
pub const TOTAL_DESCENT: u8 = 22;
pub const SPORT: u8 = 23;
pub const EVENT_GROUP: u8 = 24;
pub const NEC_LAT: u8 = 25;
pub const NEC_LONG: u8 = 26;
pub const SWC_LAT: u8 = 27;
pub const SWC_LONG: u8 = 28;
pub const NAME: u8 = 29;
pub const NORMALIZED_POWER: u8 = 30;
pub const LEFT_RIGHT_BALANCE: u8 = 31;
pub const SUB_SPORT: u8 = 32;
pub const TOTAL_WORK: u8 = 33;
pub const AVG_ALTITUDE: u8 = 34;
pub const MAX_ALTITUDE: u8 = 35;
pub const GPS_ACCURACY: u8 = 36;
pub const AVG_GRADE: u8 = 37;
pub const AVG_POS_GRADE: u8 = 38;
pub const AVG_NEG_GRADE: u8 = 39;
pub const MAX_POS_GRADE: u8 = 40;
pub const MAX_NEG_GRADE: u8 = 41;
pub const AVG_TEMPERATURE: u8 = 42;
pub const MAX_TEMPERATURE: u8 = 43;
pub const TOTAL_MOVING_TIME: u8 = 44;
pub const AVG_POS_VERTICAL_SPEED: u8 = 45;
pub const AVG_NEG_VERTICAL_SPEED: u8 = 46;
pub const MAX_POS_VERTICAL_SPEED: u8 = 47;
pub const MAX_NEG_VERTICAL_SPEED: u8 = 48;
pub const TIME_IN_HR_ZONE: u8 = 49;
pub const TIME_IN_SPEED_ZONE: u8 = 50;
pub const TIME_IN_CADENCE_ZONE: u8 = 51;
pub const TIME_IN_POWER_ZONE: u8 = 52;
pub const REPETITION_NUM: u8 = 53;
pub const MIN_ALTITUDE: u8 = 54;
pub const MIN_HEART_RATE: u8 = 55;
pub const ACTIVE_TIME: u8 = 56;
pub const WKT_STEP_INDEX: u8 = 57;
pub const SPORT_EVENT: u8 = 58;
pub const AVG_LEFT_TORQUE_EFFECTIVENESS: u8 = 59;
pub const AVG_RIGHT_TORQUE_EFFECTIVENESS: u8 = 60;
pub const AVG_LEFT_PEDAL_SMOOTHNESS: u8 = 61;
pub const AVG_RIGHT_PEDAL_SMOOTHNESS: u8 = 62;
pub const AVG_COMBINED_PEDAL_SMOOTHNESS: u8 = 63;
pub const STATUS: u8 = 64;
pub const UUID: u8 = 65;
pub const AVG_FRACTIONAL_CADENCE: u8 = 66;
pub const MAX_FRACTIONAL_CADENCE: u8 = 67;
pub const TOTAL_FRACTIONAL_CYCLES: u8 = 68;
pub const FRONT_GEAR_SHIFT_COUNT: u8 = 69;
pub const REAR_GEAR_SHIFT_COUNT: u8 = 70;
pub const TIME_STANDING: u8 = 71;
pub const STAND_COUNT: u8 = 72;
pub const AVG_LEFT_PCO: u8 = 73;
pub const AVG_RIGHT_PCO: u8 = 74;
pub const AVG_LEFT_POWER_PHASE: u8 = 75;
pub const AVG_LEFT_POWER_PHASE_PEAK: u8 = 76;
pub const AVG_RIGHT_POWER_PHASE: u8 = 77;
pub const AVG_RIGHT_POWER_PHASE_PEAK: u8 = 78;
pub const AVG_POWER_POSITION: u8 = 79;
pub const MAX_POWER_POSITION: u8 = 80;
pub const AVG_CADENCE_POSITION: u8 = 81;
pub const MAX_CADENCE_POSITION: u8 = 82;
pub const MANUFACTURER: u8 = 83;
pub const TOTAL_GRIT: u8 = 84;
pub const TOTAL_FLOW: u8 = 85;
pub const AVG_GRIT: u8 = 86;
pub const AVG_FLOW: u8 = 87;
pub const TOTAL_FRACTIONAL_ASCENT: u8 = 89;
pub const TOTAL_FRACTIONAL_DESCENT: u8 = 90;
pub const ENHANCED_AVG_ALTITUDE: u8 = 91;
pub const ENHANCED_MAX_ALTITUDE: u8 = 92;
pub const ENHANCED_MIN_ALTITUDE: u8 = 93;
pub const fn new() -> Self {
Self {
message_index: typedef::MessageIndex(u16::MAX),
timestamp: typedef::DateTime(u32::MAX),
event: typedef::Event(u8::MAX),
event_type: typedef::EventType(u8::MAX),
start_time: typedef::DateTime(u32::MAX),
start_position_lat: i32::MAX,
start_position_long: i32::MAX,
end_position_lat: i32::MAX,
end_position_long: i32::MAX,
total_elapsed_time: u32::MAX,
total_timer_time: u32::MAX,
total_distance: u32::MAX,
total_cycles: u32::MAX,
total_calories: u16::MAX,
total_fat_calories: u16::MAX,
avg_speed: u16::MAX,
max_speed: u16::MAX,
avg_heart_rate: u8::MAX,
max_heart_rate: u8::MAX,
avg_cadence: u8::MAX,
max_cadence: u8::MAX,
avg_power: u16::MAX,
max_power: u16::MAX,
total_ascent: u16::MAX,
total_descent: u16::MAX,
sport: typedef::Sport(u8::MAX),
event_group: u8::MAX,
nec_lat: i32::MAX,
nec_long: i32::MAX,
swc_lat: i32::MAX,
swc_long: i32::MAX,
name: String::new(),
normalized_power: u16::MAX,
left_right_balance: typedef::LeftRightBalance100(u16::MAX),
sub_sport: typedef::SubSport(u8::MAX),
total_work: u32::MAX,
avg_altitude: u16::MAX,
max_altitude: u16::MAX,
gps_accuracy: u8::MAX,
avg_grade: i16::MAX,
avg_pos_grade: i16::MAX,
avg_neg_grade: i16::MAX,
max_pos_grade: i16::MAX,
max_neg_grade: i16::MAX,
avg_temperature: i8::MAX,
max_temperature: i8::MAX,
total_moving_time: u32::MAX,
avg_pos_vertical_speed: i16::MAX,
avg_neg_vertical_speed: i16::MAX,
max_pos_vertical_speed: i16::MAX,
max_neg_vertical_speed: i16::MAX,
time_in_hr_zone: Vec::new(),
time_in_speed_zone: Vec::new(),
time_in_cadence_zone: Vec::new(),
time_in_power_zone: Vec::new(),
repetition_num: u16::MAX,
min_altitude: u16::MAX,
min_heart_rate: u8::MAX,
active_time: u32::MAX,
wkt_step_index: typedef::MessageIndex(u16::MAX),
sport_event: typedef::SportEvent(u8::MAX),
avg_left_torque_effectiveness: u8::MAX,
avg_right_torque_effectiveness: u8::MAX,
avg_left_pedal_smoothness: u8::MAX,
avg_right_pedal_smoothness: u8::MAX,
avg_combined_pedal_smoothness: u8::MAX,
status: typedef::SegmentLapStatus(u8::MAX),
uuid: String::new(),
avg_fractional_cadence: u8::MAX,
max_fractional_cadence: u8::MAX,
total_fractional_cycles: u8::MAX,
front_gear_shift_count: u16::MAX,
rear_gear_shift_count: u16::MAX,
time_standing: u32::MAX,
stand_count: u16::MAX,
avg_left_pco: i8::MAX,
avg_right_pco: i8::MAX,
avg_left_power_phase: Vec::new(),
avg_left_power_phase_peak: Vec::new(),
avg_right_power_phase: Vec::new(),
avg_right_power_phase_peak: Vec::new(),
avg_power_position: Vec::new(),
max_power_position: Vec::new(),
avg_cadence_position: Vec::new(),
max_cadence_position: Vec::new(),
manufacturer: typedef::Manufacturer(u16::MAX),
total_grit: f32::from_bits(u32::MAX),
total_flow: f32::from_bits(u32::MAX),
avg_grit: f32::from_bits(u32::MAX),
avg_flow: f32::from_bits(u32::MAX),
total_fractional_ascent: u8::MAX,
total_fractional_descent: u8::MAX,
enhanced_avg_altitude: u32::MAX,
enhanced_max_altitude: u32::MAX,
enhanced_min_altitude: u32::MAX,
state: [0u8; 12],
unknown_fields: Vec::new(),
developer_fields: Vec::new(),
}
}
pub fn start_position_lat_degrees(&self) -> Option<f64> {
semconv::to_degrees(self.start_position_lat)
}
pub fn set_start_position_lat_degrees(&mut self, v: f64) -> &mut Self {
self.start_position_lat = semconv::to_semicircles(v).unwrap_or(i32::MAX);
self
}
pub fn start_position_long_degrees(&self) -> Option<f64> {
semconv::to_degrees(self.start_position_long)
}
pub fn set_start_position_long_degrees(&mut self, v: f64) -> &mut Self {
self.start_position_long = semconv::to_semicircles(v).unwrap_or(i32::MAX);
self
}
pub fn end_position_lat_degrees(&self) -> Option<f64> {
semconv::to_degrees(self.end_position_lat)
}
pub fn set_end_position_lat_degrees(&mut self, v: f64) -> &mut Self {
self.end_position_lat = semconv::to_semicircles(v).unwrap_or(i32::MAX);
self
}
pub fn end_position_long_degrees(&self) -> Option<f64> {
semconv::to_degrees(self.end_position_long)
}
pub fn set_end_position_long_degrees(&mut self, v: f64) -> &mut Self {
self.end_position_long = semconv::to_semicircles(v).unwrap_or(i32::MAX);
self
}
pub fn nec_lat_degrees(&self) -> Option<f64> {
semconv::to_degrees(self.nec_lat)
}
pub fn set_nec_lat_degrees(&mut self, v: f64) -> &mut Self {
self.nec_lat = semconv::to_semicircles(v).unwrap_or(i32::MAX);
self
}
pub fn nec_long_degrees(&self) -> Option<f64> {
semconv::to_degrees(self.nec_long)
}
pub fn set_nec_long_degrees(&mut self, v: f64) -> &mut Self {
self.nec_long = semconv::to_semicircles(v).unwrap_or(i32::MAX);
self
}
pub fn swc_lat_degrees(&self) -> Option<f64> {
semconv::to_degrees(self.swc_lat)
}
pub fn set_swc_lat_degrees(&mut self, v: f64) -> &mut Self {
self.swc_lat = semconv::to_semicircles(v).unwrap_or(i32::MAX);
self
}
pub fn swc_long_degrees(&self) -> Option<f64> {
semconv::to_degrees(self.swc_long)
}
pub fn set_swc_long_degrees(&mut self, v: f64) -> &mut Self {
self.swc_long = semconv::to_semicircles(v).unwrap_or(i32::MAX);
self
}
pub fn total_elapsed_time_scaled(&self) -> Option<f64> {
if self.total_elapsed_time == u32::MAX {
return None;
}
Some(self.total_elapsed_time as f64 / 1000.0 - 0.0)
}
pub fn set_total_elapsed_time_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
self.total_elapsed_time = u32::MAX;
return self;
}
self.total_elapsed_time = unscaled as u32;
self
}
pub fn total_timer_time_scaled(&self) -> Option<f64> {
if self.total_timer_time == u32::MAX {
return None;
}
Some(self.total_timer_time as f64 / 1000.0 - 0.0)
}
pub fn set_total_timer_time_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
self.total_timer_time = u32::MAX;
return self;
}
self.total_timer_time = unscaled as u32;
self
}
pub fn total_distance_scaled(&self) -> Option<f64> {
if self.total_distance == u32::MAX {
return None;
}
Some(self.total_distance as f64 / 100.0 - 0.0)
}
pub fn set_total_distance_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
self.total_distance = u32::MAX;
return self;
}
self.total_distance = unscaled as u32;
self
}
pub fn avg_speed_scaled(&self) -> Option<f64> {
if self.avg_speed == u16::MAX {
return None;
}
Some(self.avg_speed as f64 / 1000.0 - 0.0)
}
pub fn set_avg_speed_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
self.avg_speed = u16::MAX;
return self;
}
self.avg_speed = unscaled as u16;
self
}
pub fn max_speed_scaled(&self) -> Option<f64> {
if self.max_speed == u16::MAX {
return None;
}
Some(self.max_speed as f64 / 1000.0 - 0.0)
}
pub fn set_max_speed_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
self.max_speed = u16::MAX;
return self;
}
self.max_speed = unscaled as u16;
self
}
pub fn avg_altitude_scaled(&self) -> Option<f64> {
if self.avg_altitude == u16::MAX {
return None;
}
Some(self.avg_altitude as f64 / 5.0 - 500.0)
}
pub fn set_avg_altitude_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 500.0) * 5.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
self.avg_altitude = u16::MAX;
return self;
}
self.avg_altitude = unscaled as u16;
self
}
pub fn max_altitude_scaled(&self) -> Option<f64> {
if self.max_altitude == u16::MAX {
return None;
}
Some(self.max_altitude as f64 / 5.0 - 500.0)
}
pub fn set_max_altitude_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 500.0) * 5.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
self.max_altitude = u16::MAX;
return self;
}
self.max_altitude = unscaled as u16;
self
}
pub fn avg_grade_scaled(&self) -> Option<f64> {
if self.avg_grade == i16::MAX {
return None;
}
Some(self.avg_grade as f64 / 100.0 - 0.0)
}
pub fn set_avg_grade_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
self.avg_grade = i16::MAX;
return self;
}
self.avg_grade = unscaled as i16;
self
}
pub fn avg_pos_grade_scaled(&self) -> Option<f64> {
if self.avg_pos_grade == i16::MAX {
return None;
}
Some(self.avg_pos_grade as f64 / 100.0 - 0.0)
}
pub fn set_avg_pos_grade_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
self.avg_pos_grade = i16::MAX;
return self;
}
self.avg_pos_grade = unscaled as i16;
self
}
pub fn avg_neg_grade_scaled(&self) -> Option<f64> {
if self.avg_neg_grade == i16::MAX {
return None;
}
Some(self.avg_neg_grade as f64 / 100.0 - 0.0)
}
pub fn set_avg_neg_grade_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
self.avg_neg_grade = i16::MAX;
return self;
}
self.avg_neg_grade = unscaled as i16;
self
}
pub fn max_pos_grade_scaled(&self) -> Option<f64> {
if self.max_pos_grade == i16::MAX {
return None;
}
Some(self.max_pos_grade as f64 / 100.0 - 0.0)
}
pub fn set_max_pos_grade_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
self.max_pos_grade = i16::MAX;
return self;
}
self.max_pos_grade = unscaled as i16;
self
}
pub fn max_neg_grade_scaled(&self) -> Option<f64> {
if self.max_neg_grade == i16::MAX {
return None;
}
Some(self.max_neg_grade as f64 / 100.0 - 0.0)
}
pub fn set_max_neg_grade_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
self.max_neg_grade = i16::MAX;
return self;
}
self.max_neg_grade = unscaled as i16;
self
}
pub fn total_moving_time_scaled(&self) -> Option<f64> {
if self.total_moving_time == u32::MAX {
return None;
}
Some(self.total_moving_time as f64 / 1000.0 - 0.0)
}
pub fn set_total_moving_time_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
self.total_moving_time = u32::MAX;
return self;
}
self.total_moving_time = unscaled as u32;
self
}
pub fn avg_pos_vertical_speed_scaled(&self) -> Option<f64> {
if self.avg_pos_vertical_speed == i16::MAX {
return None;
}
Some(self.avg_pos_vertical_speed as f64 / 1000.0 - 0.0)
}
pub fn set_avg_pos_vertical_speed_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
self.avg_pos_vertical_speed = i16::MAX;
return self;
}
self.avg_pos_vertical_speed = unscaled as i16;
self
}
pub fn avg_neg_vertical_speed_scaled(&self) -> Option<f64> {
if self.avg_neg_vertical_speed == i16::MAX {
return None;
}
Some(self.avg_neg_vertical_speed as f64 / 1000.0 - 0.0)
}
pub fn set_avg_neg_vertical_speed_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
self.avg_neg_vertical_speed = i16::MAX;
return self;
}
self.avg_neg_vertical_speed = unscaled as i16;
self
}
pub fn max_pos_vertical_speed_scaled(&self) -> Option<f64> {
if self.max_pos_vertical_speed == i16::MAX {
return None;
}
Some(self.max_pos_vertical_speed as f64 / 1000.0 - 0.0)
}
pub fn set_max_pos_vertical_speed_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
self.max_pos_vertical_speed = i16::MAX;
return self;
}
self.max_pos_vertical_speed = unscaled as i16;
self
}
pub fn max_neg_vertical_speed_scaled(&self) -> Option<f64> {
if self.max_neg_vertical_speed == i16::MAX {
return None;
}
Some(self.max_neg_vertical_speed as f64 / 1000.0 - 0.0)
}
pub fn set_max_neg_vertical_speed_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
self.max_neg_vertical_speed = i16::MAX;
return self;
}
self.max_neg_vertical_speed = unscaled as i16;
self
}
pub fn time_in_hr_zone_scaled(&self) -> Option<Vec<f64>> {
if self.time_in_hr_zone.is_empty() {
return None;
}
let mut v = Vec::with_capacity(self.time_in_hr_zone.len());
for &x in &self.time_in_hr_zone {
v.push(x as f64 / 1000.0 - 0.0)
}
Some(v)
}
pub fn set_time_in_hr_zone_scaled(&mut self, v: &[f64]) -> &mut Self {
self.time_in_hr_zone = Vec::with_capacity(v.len());
if v.is_empty() {
return self;
}
for &x in v {
let unscaled = (x + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
self.time_in_hr_zone.push(u32::MAX);
continue;
}
self.time_in_hr_zone.push(unscaled as u32);
}
self
}
pub fn time_in_speed_zone_scaled(&self) -> Option<Vec<f64>> {
if self.time_in_speed_zone.is_empty() {
return None;
}
let mut v = Vec::with_capacity(self.time_in_speed_zone.len());
for &x in &self.time_in_speed_zone {
v.push(x as f64 / 1000.0 - 0.0)
}
Some(v)
}
pub fn set_time_in_speed_zone_scaled(&mut self, v: &[f64]) -> &mut Self {
self.time_in_speed_zone = Vec::with_capacity(v.len());
if v.is_empty() {
return self;
}
for &x in v {
let unscaled = (x + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
self.time_in_speed_zone.push(u32::MAX);
continue;
}
self.time_in_speed_zone.push(unscaled as u32);
}
self
}
pub fn time_in_cadence_zone_scaled(&self) -> Option<Vec<f64>> {
if self.time_in_cadence_zone.is_empty() {
return None;
}
let mut v = Vec::with_capacity(self.time_in_cadence_zone.len());
for &x in &self.time_in_cadence_zone {
v.push(x as f64 / 1000.0 - 0.0)
}
Some(v)
}
pub fn set_time_in_cadence_zone_scaled(&mut self, v: &[f64]) -> &mut Self {
self.time_in_cadence_zone = Vec::with_capacity(v.len());
if v.is_empty() {
return self;
}
for &x in v {
let unscaled = (x + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
self.time_in_cadence_zone.push(u32::MAX);
continue;
}
self.time_in_cadence_zone.push(unscaled as u32);
}
self
}
pub fn time_in_power_zone_scaled(&self) -> Option<Vec<f64>> {
if self.time_in_power_zone.is_empty() {
return None;
}
let mut v = Vec::with_capacity(self.time_in_power_zone.len());
for &x in &self.time_in_power_zone {
v.push(x as f64 / 1000.0 - 0.0)
}
Some(v)
}
pub fn set_time_in_power_zone_scaled(&mut self, v: &[f64]) -> &mut Self {
self.time_in_power_zone = Vec::with_capacity(v.len());
if v.is_empty() {
return self;
}
for &x in v {
let unscaled = (x + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
self.time_in_power_zone.push(u32::MAX);
continue;
}
self.time_in_power_zone.push(unscaled as u32);
}
self
}
pub fn min_altitude_scaled(&self) -> Option<f64> {
if self.min_altitude == u16::MAX {
return None;
}
Some(self.min_altitude as f64 / 5.0 - 500.0)
}
pub fn set_min_altitude_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 500.0) * 5.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
self.min_altitude = u16::MAX;
return self;
}
self.min_altitude = unscaled as u16;
self
}
pub fn active_time_scaled(&self) -> Option<f64> {
if self.active_time == u32::MAX {
return None;
}
Some(self.active_time as f64 / 1000.0 - 0.0)
}
pub fn set_active_time_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
self.active_time = u32::MAX;
return self;
}
self.active_time = unscaled as u32;
self
}
pub fn avg_left_torque_effectiveness_scaled(&self) -> Option<f64> {
if self.avg_left_torque_effectiveness == u8::MAX {
return None;
}
Some(self.avg_left_torque_effectiveness as f64 / 2.0 - 0.0)
}
pub fn set_avg_left_torque_effectiveness_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 2.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.avg_left_torque_effectiveness = u8::MAX;
return self;
}
self.avg_left_torque_effectiveness = unscaled as u8;
self
}
pub fn avg_right_torque_effectiveness_scaled(&self) -> Option<f64> {
if self.avg_right_torque_effectiveness == u8::MAX {
return None;
}
Some(self.avg_right_torque_effectiveness as f64 / 2.0 - 0.0)
}
pub fn set_avg_right_torque_effectiveness_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 2.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.avg_right_torque_effectiveness = u8::MAX;
return self;
}
self.avg_right_torque_effectiveness = unscaled as u8;
self
}
pub fn avg_left_pedal_smoothness_scaled(&self) -> Option<f64> {
if self.avg_left_pedal_smoothness == u8::MAX {
return None;
}
Some(self.avg_left_pedal_smoothness as f64 / 2.0 - 0.0)
}
pub fn set_avg_left_pedal_smoothness_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 2.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.avg_left_pedal_smoothness = u8::MAX;
return self;
}
self.avg_left_pedal_smoothness = unscaled as u8;
self
}
pub fn avg_right_pedal_smoothness_scaled(&self) -> Option<f64> {
if self.avg_right_pedal_smoothness == u8::MAX {
return None;
}
Some(self.avg_right_pedal_smoothness as f64 / 2.0 - 0.0)
}
pub fn set_avg_right_pedal_smoothness_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 2.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.avg_right_pedal_smoothness = u8::MAX;
return self;
}
self.avg_right_pedal_smoothness = unscaled as u8;
self
}
pub fn avg_combined_pedal_smoothness_scaled(&self) -> Option<f64> {
if self.avg_combined_pedal_smoothness == u8::MAX {
return None;
}
Some(self.avg_combined_pedal_smoothness as f64 / 2.0 - 0.0)
}
pub fn set_avg_combined_pedal_smoothness_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 2.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.avg_combined_pedal_smoothness = u8::MAX;
return self;
}
self.avg_combined_pedal_smoothness = unscaled as u8;
self
}
pub fn avg_fractional_cadence_scaled(&self) -> Option<f64> {
if self.avg_fractional_cadence == u8::MAX {
return None;
}
Some(self.avg_fractional_cadence as f64 / 128.0 - 0.0)
}
pub fn set_avg_fractional_cadence_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 128.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.avg_fractional_cadence = u8::MAX;
return self;
}
self.avg_fractional_cadence = unscaled as u8;
self
}
pub fn max_fractional_cadence_scaled(&self) -> Option<f64> {
if self.max_fractional_cadence == u8::MAX {
return None;
}
Some(self.max_fractional_cadence as f64 / 128.0 - 0.0)
}
pub fn set_max_fractional_cadence_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 128.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.max_fractional_cadence = u8::MAX;
return self;
}
self.max_fractional_cadence = unscaled as u8;
self
}
pub fn total_fractional_cycles_scaled(&self) -> Option<f64> {
if self.total_fractional_cycles == u8::MAX {
return None;
}
Some(self.total_fractional_cycles as f64 / 128.0 - 0.0)
}
pub fn set_total_fractional_cycles_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 128.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.total_fractional_cycles = u8::MAX;
return self;
}
self.total_fractional_cycles = unscaled as u8;
self
}
pub fn time_standing_scaled(&self) -> Option<f64> {
if self.time_standing == u32::MAX {
return None;
}
Some(self.time_standing as f64 / 1000.0 - 0.0)
}
pub fn set_time_standing_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
self.time_standing = u32::MAX;
return self;
}
self.time_standing = unscaled as u32;
self
}
pub fn avg_left_power_phase_scaled(&self) -> Option<Vec<f64>> {
if self.avg_left_power_phase.is_empty() {
return None;
}
let mut v = Vec::with_capacity(self.avg_left_power_phase.len());
for &x in &self.avg_left_power_phase {
v.push(x as f64 / 0.7111111 - 0.0)
}
Some(v)
}
pub fn set_avg_left_power_phase_scaled(&mut self, v: &[f64]) -> &mut Self {
self.avg_left_power_phase = Vec::with_capacity(v.len());
if v.is_empty() {
return self;
}
for &x in v {
let unscaled = (x + 0.0) * 0.7111111;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.avg_left_power_phase.push(u8::MAX);
continue;
}
self.avg_left_power_phase.push(unscaled as u8);
}
self
}
pub fn avg_left_power_phase_peak_scaled(&self) -> Option<Vec<f64>> {
if self.avg_left_power_phase_peak.is_empty() {
return None;
}
let mut v = Vec::with_capacity(self.avg_left_power_phase_peak.len());
for &x in &self.avg_left_power_phase_peak {
v.push(x as f64 / 0.7111111 - 0.0)
}
Some(v)
}
pub fn set_avg_left_power_phase_peak_scaled(&mut self, v: &[f64]) -> &mut Self {
self.avg_left_power_phase_peak = Vec::with_capacity(v.len());
if v.is_empty() {
return self;
}
for &x in v {
let unscaled = (x + 0.0) * 0.7111111;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.avg_left_power_phase_peak.push(u8::MAX);
continue;
}
self.avg_left_power_phase_peak.push(unscaled as u8);
}
self
}
pub fn avg_right_power_phase_scaled(&self) -> Option<Vec<f64>> {
if self.avg_right_power_phase.is_empty() {
return None;
}
let mut v = Vec::with_capacity(self.avg_right_power_phase.len());
for &x in &self.avg_right_power_phase {
v.push(x as f64 / 0.7111111 - 0.0)
}
Some(v)
}
pub fn set_avg_right_power_phase_scaled(&mut self, v: &[f64]) -> &mut Self {
self.avg_right_power_phase = Vec::with_capacity(v.len());
if v.is_empty() {
return self;
}
for &x in v {
let unscaled = (x + 0.0) * 0.7111111;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.avg_right_power_phase.push(u8::MAX);
continue;
}
self.avg_right_power_phase.push(unscaled as u8);
}
self
}
pub fn avg_right_power_phase_peak_scaled(&self) -> Option<Vec<f64>> {
if self.avg_right_power_phase_peak.is_empty() {
return None;
}
let mut v = Vec::with_capacity(self.avg_right_power_phase_peak.len());
for &x in &self.avg_right_power_phase_peak {
v.push(x as f64 / 0.7111111 - 0.0)
}
Some(v)
}
pub fn set_avg_right_power_phase_peak_scaled(&mut self, v: &[f64]) -> &mut Self {
self.avg_right_power_phase_peak = Vec::with_capacity(v.len());
if v.is_empty() {
return self;
}
for &x in v {
let unscaled = (x + 0.0) * 0.7111111;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.avg_right_power_phase_peak.push(u8::MAX);
continue;
}
self.avg_right_power_phase_peak.push(unscaled as u8);
}
self
}
pub fn total_fractional_ascent_scaled(&self) -> Option<f64> {
if self.total_fractional_ascent == u8::MAX {
return None;
}
Some(self.total_fractional_ascent as f64 / 100.0 - 0.0)
}
pub fn set_total_fractional_ascent_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.total_fractional_ascent = u8::MAX;
return self;
}
self.total_fractional_ascent = unscaled as u8;
self
}
pub fn total_fractional_descent_scaled(&self) -> Option<f64> {
if self.total_fractional_descent == u8::MAX {
return None;
}
Some(self.total_fractional_descent as f64 / 100.0 - 0.0)
}
pub fn set_total_fractional_descent_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
self.total_fractional_descent = u8::MAX;
return self;
}
self.total_fractional_descent = unscaled as u8;
self
}
pub fn enhanced_avg_altitude_scaled(&self) -> Option<f64> {
if self.enhanced_avg_altitude == u32::MAX {
return None;
}
Some(self.enhanced_avg_altitude as f64 / 5.0 - 500.0)
}
pub fn set_enhanced_avg_altitude_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 500.0) * 5.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
self.enhanced_avg_altitude = u32::MAX;
return self;
}
self.enhanced_avg_altitude = unscaled as u32;
self
}
pub fn enhanced_max_altitude_scaled(&self) -> Option<f64> {
if self.enhanced_max_altitude == u32::MAX {
return None;
}
Some(self.enhanced_max_altitude as f64 / 5.0 - 500.0)
}
pub fn set_enhanced_max_altitude_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 500.0) * 5.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
self.enhanced_max_altitude = u32::MAX;
return self;
}
self.enhanced_max_altitude = unscaled as u32;
self
}
pub fn enhanced_min_altitude_scaled(&self) -> Option<f64> {
if self.enhanced_min_altitude == u32::MAX {
return None;
}
Some(self.enhanced_min_altitude as f64 / 5.0 - 500.0)
}
pub fn set_enhanced_min_altitude_scaled(&mut self, v: f64) -> &mut Self {
let unscaled = (v + 500.0) * 5.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
self.enhanced_min_altitude = u32::MAX;
return self;
}
self.enhanced_min_altitude = unscaled as u32;
self
}
pub fn mark_as_expanded(&mut self, num: u8, flag: bool) -> bool {
match num {
91 | 92 | 93 => {
if flag {
self.state[num as usize >> 3] |= 1 << (num & 7)
} else {
self.state[num as usize >> 3] &= !(1 << (num & 7))
}
true
}
_ => false,
}
}
pub fn is_expanded(&self, num: u8) -> bool {
is_expanded(&self.state, num)
}
fn count_valid_fields(&self) -> usize {
(self.message_index.0 != u16::MAX) as usize
+ (self.timestamp.0 != u32::MAX) as usize
+ (self.event.0 != u8::MAX) as usize
+ (self.event_type.0 != u8::MAX) as usize
+ (self.start_time.0 != u32::MAX) as usize
+ (self.start_position_lat != i32::MAX) as usize
+ (self.start_position_long != i32::MAX) as usize
+ (self.end_position_lat != i32::MAX) as usize
+ (self.end_position_long != i32::MAX) as usize
+ (self.total_elapsed_time != u32::MAX) as usize
+ (self.total_timer_time != u32::MAX) as usize
+ (self.total_distance != u32::MAX) as usize
+ (self.total_cycles != u32::MAX) as usize
+ (self.total_calories != u16::MAX) as usize
+ (self.total_fat_calories != u16::MAX) as usize
+ (self.avg_speed != u16::MAX) as usize
+ (self.max_speed != u16::MAX) as usize
+ (self.avg_heart_rate != u8::MAX) as usize
+ (self.max_heart_rate != u8::MAX) as usize
+ (self.avg_cadence != u8::MAX) as usize
+ (self.max_cadence != u8::MAX) as usize
+ (self.avg_power != u16::MAX) as usize
+ (self.max_power != u16::MAX) as usize
+ (self.total_ascent != u16::MAX) as usize
+ (self.total_descent != u16::MAX) as usize
+ (self.sport.0 != u8::MAX) as usize
+ (self.event_group != u8::MAX) as usize
+ (self.nec_lat != i32::MAX) as usize
+ (self.nec_long != i32::MAX) as usize
+ (self.swc_lat != i32::MAX) as usize
+ (self.swc_long != i32::MAX) as usize
+ (!self.name.is_empty()) as usize
+ (self.normalized_power != u16::MAX) as usize
+ (self.left_right_balance.0 != u16::MAX) as usize
+ (self.sub_sport.0 != u8::MAX) as usize
+ (self.total_work != u32::MAX) as usize
+ (self.avg_altitude != u16::MAX) as usize
+ (self.max_altitude != u16::MAX) as usize
+ (self.gps_accuracy != u8::MAX) as usize
+ (self.avg_grade != i16::MAX) as usize
+ (self.avg_pos_grade != i16::MAX) as usize
+ (self.avg_neg_grade != i16::MAX) as usize
+ (self.max_pos_grade != i16::MAX) as usize
+ (self.max_neg_grade != i16::MAX) as usize
+ (self.avg_temperature != i8::MAX) as usize
+ (self.max_temperature != i8::MAX) as usize
+ (self.total_moving_time != u32::MAX) as usize
+ (self.avg_pos_vertical_speed != i16::MAX) as usize
+ (self.avg_neg_vertical_speed != i16::MAX) as usize
+ (self.max_pos_vertical_speed != i16::MAX) as usize
+ (self.max_neg_vertical_speed != i16::MAX) as usize
+ (!self.time_in_hr_zone.is_empty()) as usize
+ (!self.time_in_speed_zone.is_empty()) as usize
+ (!self.time_in_cadence_zone.is_empty()) as usize
+ (!self.time_in_power_zone.is_empty()) as usize
+ (self.repetition_num != u16::MAX) as usize
+ (self.min_altitude != u16::MAX) as usize
+ (self.min_heart_rate != u8::MAX) as usize
+ (self.active_time != u32::MAX) as usize
+ (self.wkt_step_index.0 != u16::MAX) as usize
+ (self.sport_event.0 != u8::MAX) as usize
+ (self.avg_left_torque_effectiveness != u8::MAX) as usize
+ (self.avg_right_torque_effectiveness != u8::MAX) as usize
+ (self.avg_left_pedal_smoothness != u8::MAX) as usize
+ (self.avg_right_pedal_smoothness != u8::MAX) as usize
+ (self.avg_combined_pedal_smoothness != u8::MAX) as usize
+ (self.status.0 != u8::MAX) as usize
+ (!self.uuid.is_empty()) as usize
+ (self.avg_fractional_cadence != u8::MAX) as usize
+ (self.max_fractional_cadence != u8::MAX) as usize
+ (self.total_fractional_cycles != u8::MAX) as usize
+ (self.front_gear_shift_count != u16::MAX) as usize
+ (self.rear_gear_shift_count != u16::MAX) as usize
+ (self.time_standing != u32::MAX) as usize
+ (self.stand_count != u16::MAX) as usize
+ (self.avg_left_pco != i8::MAX) as usize
+ (self.avg_right_pco != i8::MAX) as usize
+ (!self.avg_left_power_phase.is_empty()) as usize
+ (!self.avg_left_power_phase_peak.is_empty()) as usize
+ (!self.avg_right_power_phase.is_empty()) as usize
+ (!self.avg_right_power_phase_peak.is_empty()) as usize
+ (!self.avg_power_position.is_empty()) as usize
+ (!self.max_power_position.is_empty()) as usize
+ (!self.avg_cadence_position.is_empty()) as usize
+ (!self.max_cadence_position.is_empty()) as usize
+ (self.manufacturer.0 != u16::MAX) as usize
+ (self.total_grit.to_bits() != u32::MAX) as usize
+ (self.total_flow.to_bits() != u32::MAX) as usize
+ (self.avg_grit.to_bits() != u32::MAX) as usize
+ (self.avg_flow.to_bits() != u32::MAX) as usize
+ (self.total_fractional_ascent != u8::MAX) as usize
+ (self.total_fractional_descent != u8::MAX) as usize
+ (self.enhanced_avg_altitude != u32::MAX) as usize
+ (self.enhanced_max_altitude != u32::MAX) as usize
+ (self.enhanced_min_altitude != u32::MAX) as usize
}
}
impl Default for SegmentLap {
fn default() -> Self {
Self::new()
}
}
impl From<&Message> for SegmentLap {
fn from(mesg: &Message) -> Self {
const KNOWN_NUMS: [u64; 4] = [18446744073709551615, 1056964607, 0, 6917529027641081856];
let mut n = 0u64;
for field in &mesg.fields {
n += (KNOWN_NUMS[field.num as usize >> 6] >> (field.num & 63)) & 1 ^ 1
}
let mut v = Self::new();
v.unknown_fields = Vec::<Field>::with_capacity(n as usize);
v.developer_fields = mesg.developer_fields.clone();
for field in &mesg.fields {
match field.num {
254 => v.message_index = typedef::MessageIndex(field.value.as_u16()),
253 => v.timestamp = typedef::DateTime(field.value.as_u32()),
0 => v.event = typedef::Event(field.value.as_u8()),
1 => v.event_type = typedef::EventType(field.value.as_u8()),
2 => v.start_time = typedef::DateTime(field.value.as_u32()),
3 => v.start_position_lat = field.value.as_i32(),
4 => v.start_position_long = field.value.as_i32(),
5 => v.end_position_lat = field.value.as_i32(),
6 => v.end_position_long = field.value.as_i32(),
7 => v.total_elapsed_time = field.value.as_u32(),
8 => v.total_timer_time = field.value.as_u32(),
9 => v.total_distance = field.value.as_u32(),
10 => v.total_cycles = field.value.as_u32(),
11 => v.total_calories = field.value.as_u16(),
12 => v.total_fat_calories = field.value.as_u16(),
13 => v.avg_speed = field.value.as_u16(),
14 => v.max_speed = field.value.as_u16(),
15 => v.avg_heart_rate = field.value.as_u8(),
16 => v.max_heart_rate = field.value.as_u8(),
17 => v.avg_cadence = field.value.as_u8(),
18 => v.max_cadence = field.value.as_u8(),
19 => v.avg_power = field.value.as_u16(),
20 => v.max_power = field.value.as_u16(),
21 => v.total_ascent = field.value.as_u16(),
22 => v.total_descent = field.value.as_u16(),
23 => v.sport = typedef::Sport(field.value.as_u8()),
24 => v.event_group = field.value.as_u8(),
25 => v.nec_lat = field.value.as_i32(),
26 => v.nec_long = field.value.as_i32(),
27 => v.swc_lat = field.value.as_i32(),
28 => v.swc_long = field.value.as_i32(),
29 => v.name = field.value.as_str().to_owned(),
30 => v.normalized_power = field.value.as_u16(),
31 => v.left_right_balance = typedef::LeftRightBalance100(field.value.as_u16()),
32 => v.sub_sport = typedef::SubSport(field.value.as_u8()),
33 => v.total_work = field.value.as_u32(),
34 => v.avg_altitude = field.value.as_u16(),
35 => v.max_altitude = field.value.as_u16(),
36 => v.gps_accuracy = field.value.as_u8(),
37 => v.avg_grade = field.value.as_i16(),
38 => v.avg_pos_grade = field.value.as_i16(),
39 => v.avg_neg_grade = field.value.as_i16(),
40 => v.max_pos_grade = field.value.as_i16(),
41 => v.max_neg_grade = field.value.as_i16(),
42 => v.avg_temperature = field.value.as_i8(),
43 => v.max_temperature = field.value.as_i8(),
44 => v.total_moving_time = field.value.as_u32(),
45 => v.avg_pos_vertical_speed = field.value.as_i16(),
46 => v.avg_neg_vertical_speed = field.value.as_i16(),
47 => v.max_pos_vertical_speed = field.value.as_i16(),
48 => v.max_neg_vertical_speed = field.value.as_i16(),
49 => v.time_in_hr_zone = field.value.to_vec_u32(),
50 => v.time_in_speed_zone = field.value.to_vec_u32(),
51 => v.time_in_cadence_zone = field.value.to_vec_u32(),
52 => v.time_in_power_zone = field.value.to_vec_u32(),
53 => v.repetition_num = field.value.as_u16(),
54 => v.min_altitude = field.value.as_u16(),
55 => v.min_heart_rate = field.value.as_u8(),
56 => v.active_time = field.value.as_u32(),
57 => v.wkt_step_index = typedef::MessageIndex(field.value.as_u16()),
58 => v.sport_event = typedef::SportEvent(field.value.as_u8()),
59 => v.avg_left_torque_effectiveness = field.value.as_u8(),
60 => v.avg_right_torque_effectiveness = field.value.as_u8(),
61 => v.avg_left_pedal_smoothness = field.value.as_u8(),
62 => v.avg_right_pedal_smoothness = field.value.as_u8(),
63 => v.avg_combined_pedal_smoothness = field.value.as_u8(),
64 => v.status = typedef::SegmentLapStatus(field.value.as_u8()),
65 => v.uuid = field.value.as_str().to_owned(),
66 => v.avg_fractional_cadence = field.value.as_u8(),
67 => v.max_fractional_cadence = field.value.as_u8(),
68 => v.total_fractional_cycles = field.value.as_u8(),
69 => v.front_gear_shift_count = field.value.as_u16(),
70 => v.rear_gear_shift_count = field.value.as_u16(),
71 => v.time_standing = field.value.as_u32(),
72 => v.stand_count = field.value.as_u16(),
73 => v.avg_left_pco = field.value.as_i8(),
74 => v.avg_right_pco = field.value.as_i8(),
75 => v.avg_left_power_phase = field.value.to_vec_u8(),
76 => v.avg_left_power_phase_peak = field.value.to_vec_u8(),
77 => v.avg_right_power_phase = field.value.to_vec_u8(),
78 => v.avg_right_power_phase_peak = field.value.to_vec_u8(),
79 => v.avg_power_position = field.value.to_vec_u16(),
80 => v.max_power_position = field.value.to_vec_u16(),
81 => v.avg_cadence_position = field.value.to_vec_u8(),
82 => v.max_cadence_position = field.value.to_vec_u8(),
83 => v.manufacturer = typedef::Manufacturer(field.value.as_u16()),
84 => v.total_grit = field.value.as_f32(),
85 => v.total_flow = field.value.as_f32(),
86 => v.avg_grit = field.value.as_f32(),
87 => v.avg_flow = field.value.as_f32(),
89 => v.total_fractional_ascent = field.value.as_u8(),
90 => v.total_fractional_descent = field.value.as_u8(),
91 => v.enhanced_avg_altitude = field.value.as_u32(),
92 => v.enhanced_max_altitude = field.value.as_u32(),
93 => v.enhanced_min_altitude = field.value.as_u32(),
_ => {
v.unknown_fields.push(field.clone());
continue;
}
};
if field.is_expanded && field.num < 94 {
v.state[field.num as usize >> 3] |= 1 << (field.num & 7)
}
}
v
}
}
impl From<SegmentLap> for Message {
fn from(m: SegmentLap) -> Self {
let mut fields =
Vec::<Field>::with_capacity(m.count_valid_fields() + m.unknown_fields.len());
if m.message_index.0 != u16::MAX {
fields.push(Field {
num: 254,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.message_index.0),
is_expanded: false,
});
};
if m.timestamp.0 != u32::MAX {
fields.push(Field {
num: 253,
base_type: FitBaseType::UINT32,
value: Value::Uint32(m.timestamp.0),
is_expanded: false,
});
};
if m.event.0 != u8::MAX {
fields.push(Field {
num: 0,
base_type: FitBaseType::ENUM,
value: Value::Uint8(m.event.0),
is_expanded: false,
});
};
if m.event_type.0 != u8::MAX {
fields.push(Field {
num: 1,
base_type: FitBaseType::ENUM,
value: Value::Uint8(m.event_type.0),
is_expanded: false,
});
};
if m.start_time.0 != u32::MAX {
fields.push(Field {
num: 2,
base_type: FitBaseType::UINT32,
value: Value::Uint32(m.start_time.0),
is_expanded: false,
});
};
if m.start_position_lat != i32::MAX {
fields.push(Field {
num: 3,
base_type: FitBaseType::SINT32,
value: Value::Int32(m.start_position_lat),
is_expanded: false,
});
};
if m.start_position_long != i32::MAX {
fields.push(Field {
num: 4,
base_type: FitBaseType::SINT32,
value: Value::Int32(m.start_position_long),
is_expanded: false,
});
};
if m.end_position_lat != i32::MAX {
fields.push(Field {
num: 5,
base_type: FitBaseType::SINT32,
value: Value::Int32(m.end_position_lat),
is_expanded: false,
});
};
if m.end_position_long != i32::MAX {
fields.push(Field {
num: 6,
base_type: FitBaseType::SINT32,
value: Value::Int32(m.end_position_long),
is_expanded: false,
});
};
if m.total_elapsed_time != u32::MAX {
fields.push(Field {
num: 7,
base_type: FitBaseType::UINT32,
value: Value::Uint32(m.total_elapsed_time),
is_expanded: false,
});
};
if m.total_timer_time != u32::MAX {
fields.push(Field {
num: 8,
base_type: FitBaseType::UINT32,
value: Value::Uint32(m.total_timer_time),
is_expanded: false,
});
};
if m.total_distance != u32::MAX {
fields.push(Field {
num: 9,
base_type: FitBaseType::UINT32,
value: Value::Uint32(m.total_distance),
is_expanded: false,
});
};
if m.total_cycles != u32::MAX {
fields.push(Field {
num: 10,
base_type: FitBaseType::UINT32,
value: Value::Uint32(m.total_cycles),
is_expanded: false,
});
};
if m.total_calories != u16::MAX {
fields.push(Field {
num: 11,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.total_calories),
is_expanded: false,
});
};
if m.total_fat_calories != u16::MAX {
fields.push(Field {
num: 12,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.total_fat_calories),
is_expanded: false,
});
};
if m.avg_speed != u16::MAX {
fields.push(Field {
num: 13,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.avg_speed),
is_expanded: false,
});
};
if m.max_speed != u16::MAX {
fields.push(Field {
num: 14,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.max_speed),
is_expanded: false,
});
};
if m.avg_heart_rate != u8::MAX {
fields.push(Field {
num: 15,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.avg_heart_rate),
is_expanded: false,
});
};
if m.max_heart_rate != u8::MAX {
fields.push(Field {
num: 16,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.max_heart_rate),
is_expanded: false,
});
};
if m.avg_cadence != u8::MAX {
fields.push(Field {
num: 17,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.avg_cadence),
is_expanded: false,
});
};
if m.max_cadence != u8::MAX {
fields.push(Field {
num: 18,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.max_cadence),
is_expanded: false,
});
};
if m.avg_power != u16::MAX {
fields.push(Field {
num: 19,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.avg_power),
is_expanded: false,
});
};
if m.max_power != u16::MAX {
fields.push(Field {
num: 20,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.max_power),
is_expanded: false,
});
};
if m.total_ascent != u16::MAX {
fields.push(Field {
num: 21,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.total_ascent),
is_expanded: false,
});
};
if m.total_descent != u16::MAX {
fields.push(Field {
num: 22,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.total_descent),
is_expanded: false,
});
};
if m.sport.0 != u8::MAX {
fields.push(Field {
num: 23,
base_type: FitBaseType::ENUM,
value: Value::Uint8(m.sport.0),
is_expanded: false,
});
};
if m.event_group != u8::MAX {
fields.push(Field {
num: 24,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.event_group),
is_expanded: false,
});
};
if m.nec_lat != i32::MAX {
fields.push(Field {
num: 25,
base_type: FitBaseType::SINT32,
value: Value::Int32(m.nec_lat),
is_expanded: false,
});
};
if m.nec_long != i32::MAX {
fields.push(Field {
num: 26,
base_type: FitBaseType::SINT32,
value: Value::Int32(m.nec_long),
is_expanded: false,
});
};
if m.swc_lat != i32::MAX {
fields.push(Field {
num: 27,
base_type: FitBaseType::SINT32,
value: Value::Int32(m.swc_lat),
is_expanded: false,
});
};
if m.swc_long != i32::MAX {
fields.push(Field {
num: 28,
base_type: FitBaseType::SINT32,
value: Value::Int32(m.swc_long),
is_expanded: false,
});
};
if !m.name.is_empty() {
fields.push(Field {
num: 29,
base_type: FitBaseType::STRING,
value: Value::String(m.name),
is_expanded: false,
});
};
if m.normalized_power != u16::MAX {
fields.push(Field {
num: 30,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.normalized_power),
is_expanded: false,
});
};
if m.left_right_balance.0 != u16::MAX {
fields.push(Field {
num: 31,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.left_right_balance.0),
is_expanded: false,
});
};
if m.sub_sport.0 != u8::MAX {
fields.push(Field {
num: 32,
base_type: FitBaseType::ENUM,
value: Value::Uint8(m.sub_sport.0),
is_expanded: false,
});
};
if m.total_work != u32::MAX {
fields.push(Field {
num: 33,
base_type: FitBaseType::UINT32,
value: Value::Uint32(m.total_work),
is_expanded: false,
});
};
if m.avg_altitude != u16::MAX {
fields.push(Field {
num: 34,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.avg_altitude),
is_expanded: false,
});
};
if m.max_altitude != u16::MAX {
fields.push(Field {
num: 35,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.max_altitude),
is_expanded: false,
});
};
if m.gps_accuracy != u8::MAX {
fields.push(Field {
num: 36,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.gps_accuracy),
is_expanded: false,
});
};
if m.avg_grade != i16::MAX {
fields.push(Field {
num: 37,
base_type: FitBaseType::SINT16,
value: Value::Int16(m.avg_grade),
is_expanded: false,
});
};
if m.avg_pos_grade != i16::MAX {
fields.push(Field {
num: 38,
base_type: FitBaseType::SINT16,
value: Value::Int16(m.avg_pos_grade),
is_expanded: false,
});
};
if m.avg_neg_grade != i16::MAX {
fields.push(Field {
num: 39,
base_type: FitBaseType::SINT16,
value: Value::Int16(m.avg_neg_grade),
is_expanded: false,
});
};
if m.max_pos_grade != i16::MAX {
fields.push(Field {
num: 40,
base_type: FitBaseType::SINT16,
value: Value::Int16(m.max_pos_grade),
is_expanded: false,
});
};
if m.max_neg_grade != i16::MAX {
fields.push(Field {
num: 41,
base_type: FitBaseType::SINT16,
value: Value::Int16(m.max_neg_grade),
is_expanded: false,
});
};
if m.avg_temperature != i8::MAX {
fields.push(Field {
num: 42,
base_type: FitBaseType::SINT8,
value: Value::Int8(m.avg_temperature),
is_expanded: false,
});
};
if m.max_temperature != i8::MAX {
fields.push(Field {
num: 43,
base_type: FitBaseType::SINT8,
value: Value::Int8(m.max_temperature),
is_expanded: false,
});
};
if m.total_moving_time != u32::MAX {
fields.push(Field {
num: 44,
base_type: FitBaseType::UINT32,
value: Value::Uint32(m.total_moving_time),
is_expanded: false,
});
};
if m.avg_pos_vertical_speed != i16::MAX {
fields.push(Field {
num: 45,
base_type: FitBaseType::SINT16,
value: Value::Int16(m.avg_pos_vertical_speed),
is_expanded: false,
});
};
if m.avg_neg_vertical_speed != i16::MAX {
fields.push(Field {
num: 46,
base_type: FitBaseType::SINT16,
value: Value::Int16(m.avg_neg_vertical_speed),
is_expanded: false,
});
};
if m.max_pos_vertical_speed != i16::MAX {
fields.push(Field {
num: 47,
base_type: FitBaseType::SINT16,
value: Value::Int16(m.max_pos_vertical_speed),
is_expanded: false,
});
};
if m.max_neg_vertical_speed != i16::MAX {
fields.push(Field {
num: 48,
base_type: FitBaseType::SINT16,
value: Value::Int16(m.max_neg_vertical_speed),
is_expanded: false,
});
};
if !m.time_in_hr_zone.is_empty() {
fields.push(Field {
num: 49,
base_type: FitBaseType::UINT32,
value: Value::VecUint32(m.time_in_hr_zone),
is_expanded: false,
});
};
if !m.time_in_speed_zone.is_empty() {
fields.push(Field {
num: 50,
base_type: FitBaseType::UINT32,
value: Value::VecUint32(m.time_in_speed_zone),
is_expanded: false,
});
};
if !m.time_in_cadence_zone.is_empty() {
fields.push(Field {
num: 51,
base_type: FitBaseType::UINT32,
value: Value::VecUint32(m.time_in_cadence_zone),
is_expanded: false,
});
};
if !m.time_in_power_zone.is_empty() {
fields.push(Field {
num: 52,
base_type: FitBaseType::UINT32,
value: Value::VecUint32(m.time_in_power_zone),
is_expanded: false,
});
};
if m.repetition_num != u16::MAX {
fields.push(Field {
num: 53,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.repetition_num),
is_expanded: false,
});
};
if m.min_altitude != u16::MAX {
fields.push(Field {
num: 54,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.min_altitude),
is_expanded: false,
});
};
if m.min_heart_rate != u8::MAX {
fields.push(Field {
num: 55,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.min_heart_rate),
is_expanded: false,
});
};
if m.active_time != u32::MAX {
fields.push(Field {
num: 56,
base_type: FitBaseType::UINT32,
value: Value::Uint32(m.active_time),
is_expanded: false,
});
};
if m.wkt_step_index.0 != u16::MAX {
fields.push(Field {
num: 57,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.wkt_step_index.0),
is_expanded: false,
});
};
if m.sport_event.0 != u8::MAX {
fields.push(Field {
num: 58,
base_type: FitBaseType::ENUM,
value: Value::Uint8(m.sport_event.0),
is_expanded: false,
});
};
if m.avg_left_torque_effectiveness != u8::MAX {
fields.push(Field {
num: 59,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.avg_left_torque_effectiveness),
is_expanded: false,
});
};
if m.avg_right_torque_effectiveness != u8::MAX {
fields.push(Field {
num: 60,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.avg_right_torque_effectiveness),
is_expanded: false,
});
};
if m.avg_left_pedal_smoothness != u8::MAX {
fields.push(Field {
num: 61,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.avg_left_pedal_smoothness),
is_expanded: false,
});
};
if m.avg_right_pedal_smoothness != u8::MAX {
fields.push(Field {
num: 62,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.avg_right_pedal_smoothness),
is_expanded: false,
});
};
if m.avg_combined_pedal_smoothness != u8::MAX {
fields.push(Field {
num: 63,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.avg_combined_pedal_smoothness),
is_expanded: false,
});
};
if m.status.0 != u8::MAX {
fields.push(Field {
num: 64,
base_type: FitBaseType::ENUM,
value: Value::Uint8(m.status.0),
is_expanded: false,
});
};
if !m.uuid.is_empty() {
fields.push(Field {
num: 65,
base_type: FitBaseType::STRING,
value: Value::String(m.uuid),
is_expanded: false,
});
};
if m.avg_fractional_cadence != u8::MAX {
fields.push(Field {
num: 66,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.avg_fractional_cadence),
is_expanded: false,
});
};
if m.max_fractional_cadence != u8::MAX {
fields.push(Field {
num: 67,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.max_fractional_cadence),
is_expanded: false,
});
};
if m.total_fractional_cycles != u8::MAX {
fields.push(Field {
num: 68,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.total_fractional_cycles),
is_expanded: false,
});
};
if m.front_gear_shift_count != u16::MAX {
fields.push(Field {
num: 69,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.front_gear_shift_count),
is_expanded: false,
});
};
if m.rear_gear_shift_count != u16::MAX {
fields.push(Field {
num: 70,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.rear_gear_shift_count),
is_expanded: false,
});
};
if m.time_standing != u32::MAX {
fields.push(Field {
num: 71,
base_type: FitBaseType::UINT32,
value: Value::Uint32(m.time_standing),
is_expanded: false,
});
};
if m.stand_count != u16::MAX {
fields.push(Field {
num: 72,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.stand_count),
is_expanded: false,
});
};
if m.avg_left_pco != i8::MAX {
fields.push(Field {
num: 73,
base_type: FitBaseType::SINT8,
value: Value::Int8(m.avg_left_pco),
is_expanded: false,
});
};
if m.avg_right_pco != i8::MAX {
fields.push(Field {
num: 74,
base_type: FitBaseType::SINT8,
value: Value::Int8(m.avg_right_pco),
is_expanded: false,
});
};
if !m.avg_left_power_phase.is_empty() {
fields.push(Field {
num: 75,
base_type: FitBaseType::UINT8,
value: Value::VecUint8(m.avg_left_power_phase),
is_expanded: false,
});
};
if !m.avg_left_power_phase_peak.is_empty() {
fields.push(Field {
num: 76,
base_type: FitBaseType::UINT8,
value: Value::VecUint8(m.avg_left_power_phase_peak),
is_expanded: false,
});
};
if !m.avg_right_power_phase.is_empty() {
fields.push(Field {
num: 77,
base_type: FitBaseType::UINT8,
value: Value::VecUint8(m.avg_right_power_phase),
is_expanded: false,
});
};
if !m.avg_right_power_phase_peak.is_empty() {
fields.push(Field {
num: 78,
base_type: FitBaseType::UINT8,
value: Value::VecUint8(m.avg_right_power_phase_peak),
is_expanded: false,
});
};
if !m.avg_power_position.is_empty() {
fields.push(Field {
num: 79,
base_type: FitBaseType::UINT16,
value: Value::VecUint16(m.avg_power_position),
is_expanded: false,
});
};
if !m.max_power_position.is_empty() {
fields.push(Field {
num: 80,
base_type: FitBaseType::UINT16,
value: Value::VecUint16(m.max_power_position),
is_expanded: false,
});
};
if !m.avg_cadence_position.is_empty() {
fields.push(Field {
num: 81,
base_type: FitBaseType::UINT8,
value: Value::VecUint8(m.avg_cadence_position),
is_expanded: false,
});
};
if !m.max_cadence_position.is_empty() {
fields.push(Field {
num: 82,
base_type: FitBaseType::UINT8,
value: Value::VecUint8(m.max_cadence_position),
is_expanded: false,
});
};
if m.manufacturer.0 != u16::MAX {
fields.push(Field {
num: 83,
base_type: FitBaseType::UINT16,
value: Value::Uint16(m.manufacturer.0),
is_expanded: false,
});
};
if m.total_grit.to_bits() != u32::MAX {
fields.push(Field {
num: 84,
base_type: FitBaseType::FLOAT32,
value: Value::Float32(m.total_grit),
is_expanded: false,
});
};
if m.total_flow.to_bits() != u32::MAX {
fields.push(Field {
num: 85,
base_type: FitBaseType::FLOAT32,
value: Value::Float32(m.total_flow),
is_expanded: false,
});
};
if m.avg_grit.to_bits() != u32::MAX {
fields.push(Field {
num: 86,
base_type: FitBaseType::FLOAT32,
value: Value::Float32(m.avg_grit),
is_expanded: false,
});
};
if m.avg_flow.to_bits() != u32::MAX {
fields.push(Field {
num: 87,
base_type: FitBaseType::FLOAT32,
value: Value::Float32(m.avg_flow),
is_expanded: false,
});
};
if m.total_fractional_ascent != u8::MAX {
fields.push(Field {
num: 89,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.total_fractional_ascent),
is_expanded: false,
});
};
if m.total_fractional_descent != u8::MAX {
fields.push(Field {
num: 90,
base_type: FitBaseType::UINT8,
value: Value::Uint8(m.total_fractional_descent),
is_expanded: false,
});
};
if m.enhanced_avg_altitude != u32::MAX {
fields.push(Field {
num: 91,
base_type: FitBaseType::UINT32,
value: Value::Uint32(m.enhanced_avg_altitude),
is_expanded: is_expanded(&m.state, 91),
});
};
if m.enhanced_max_altitude != u32::MAX {
fields.push(Field {
num: 92,
base_type: FitBaseType::UINT32,
value: Value::Uint32(m.enhanced_max_altitude),
is_expanded: is_expanded(&m.state, 92),
});
};
if m.enhanced_min_altitude != u32::MAX {
fields.push(Field {
num: 93,
base_type: FitBaseType::UINT32,
value: Value::Uint32(m.enhanced_min_altitude),
is_expanded: is_expanded(&m.state, 93),
});
};
fields.extend_from_slice(&m.unknown_fields);
Self {
header: 0,
num: typedef::MesgNum::SEGMENT_LAP,
fields,
developer_fields: m.developer_fields,
}
}
}
#[cfg(feature = "serde")]
impl Serialize for SegmentLap {
fn serialize<S>(&self, serializer: S) -> Result<S::Ok, S::Error>
where
S: Serializer,
{
let n = self.count_valid_fields() + 2;
let mut state = serializer.serialize_struct("SegmentLap", n)?;
if self.message_index.0 != u16::MAX {
state.serialize_field("message_index", &self.message_index)?;
}
if let Some(v) = self.timestamp.unix_timestamp() {
state.serialize_field("timestamp", &v)?;
}
if self.event.0 != u8::MAX {
state.serialize_field("event", &self.event)?;
}
if self.event_type.0 != u8::MAX {
state.serialize_field("event_type", &self.event_type)?;
}
if let Some(v) = self.start_time.unix_timestamp() {
state.serialize_field("start_time", &v)?;
}
if let Some(v) = self.start_position_lat_degrees() {
state.serialize_field("start_position_lat", &v)?;
}
if let Some(v) = self.start_position_long_degrees() {
state.serialize_field("start_position_long", &v)?;
}
if let Some(v) = self.end_position_lat_degrees() {
state.serialize_field("end_position_lat", &v)?;
}
if let Some(v) = self.end_position_long_degrees() {
state.serialize_field("end_position_long", &v)?;
}
if let Some(v) = self.total_elapsed_time_scaled() {
state.serialize_field("total_elapsed_time", &v)?;
}
if let Some(v) = self.total_timer_time_scaled() {
state.serialize_field("total_timer_time", &v)?;
}
if let Some(v) = self.total_distance_scaled() {
state.serialize_field("total_distance", &v)?;
}
if self.total_cycles != u32::MAX {
state.serialize_field("total_cycles", &self.total_cycles)?;
}
if self.total_calories != u16::MAX {
state.serialize_field("total_calories", &self.total_calories)?;
}
if self.total_fat_calories != u16::MAX {
state.serialize_field("total_fat_calories", &self.total_fat_calories)?;
}
if let Some(v) = self.avg_speed_scaled() {
state.serialize_field("avg_speed", &v)?;
}
if let Some(v) = self.max_speed_scaled() {
state.serialize_field("max_speed", &v)?;
}
if self.avg_heart_rate != u8::MAX {
state.serialize_field("avg_heart_rate", &self.avg_heart_rate)?;
}
if self.max_heart_rate != u8::MAX {
state.serialize_field("max_heart_rate", &self.max_heart_rate)?;
}
if self.avg_cadence != u8::MAX {
state.serialize_field("avg_cadence", &self.avg_cadence)?;
}
if self.max_cadence != u8::MAX {
state.serialize_field("max_cadence", &self.max_cadence)?;
}
if self.avg_power != u16::MAX {
state.serialize_field("avg_power", &self.avg_power)?;
}
if self.max_power != u16::MAX {
state.serialize_field("max_power", &self.max_power)?;
}
if self.total_ascent != u16::MAX {
state.serialize_field("total_ascent", &self.total_ascent)?;
}
if self.total_descent != u16::MAX {
state.serialize_field("total_descent", &self.total_descent)?;
}
if self.sport.0 != u8::MAX {
state.serialize_field("sport", &self.sport)?;
}
if self.event_group != u8::MAX {
state.serialize_field("event_group", &self.event_group)?;
}
if let Some(v) = self.nec_lat_degrees() {
state.serialize_field("nec_lat", &v)?;
}
if let Some(v) = self.nec_long_degrees() {
state.serialize_field("nec_long", &v)?;
}
if let Some(v) = self.swc_lat_degrees() {
state.serialize_field("swc_lat", &v)?;
}
if let Some(v) = self.swc_long_degrees() {
state.serialize_field("swc_long", &v)?;
}
if !self.name.is_empty() {
state.serialize_field("name", &self.name)?;
}
if self.normalized_power != u16::MAX {
state.serialize_field("normalized_power", &self.normalized_power)?;
}
if self.left_right_balance.0 != u16::MAX {
state.serialize_field("left_right_balance", &self.left_right_balance)?;
}
if self.sub_sport.0 != u8::MAX {
state.serialize_field("sub_sport", &self.sub_sport)?;
}
if self.total_work != u32::MAX {
state.serialize_field("total_work", &self.total_work)?;
}
if let Some(v) = self.avg_altitude_scaled() {
state.serialize_field("avg_altitude", &v)?;
}
if let Some(v) = self.max_altitude_scaled() {
state.serialize_field("max_altitude", &v)?;
}
if self.gps_accuracy != u8::MAX {
state.serialize_field("gps_accuracy", &self.gps_accuracy)?;
}
if let Some(v) = self.avg_grade_scaled() {
state.serialize_field("avg_grade", &v)?;
}
if let Some(v) = self.avg_pos_grade_scaled() {
state.serialize_field("avg_pos_grade", &v)?;
}
if let Some(v) = self.avg_neg_grade_scaled() {
state.serialize_field("avg_neg_grade", &v)?;
}
if let Some(v) = self.max_pos_grade_scaled() {
state.serialize_field("max_pos_grade", &v)?;
}
if let Some(v) = self.max_neg_grade_scaled() {
state.serialize_field("max_neg_grade", &v)?;
}
if self.avg_temperature != i8::MAX {
state.serialize_field("avg_temperature", &self.avg_temperature)?;
}
if self.max_temperature != i8::MAX {
state.serialize_field("max_temperature", &self.max_temperature)?;
}
if let Some(v) = self.total_moving_time_scaled() {
state.serialize_field("total_moving_time", &v)?;
}
if let Some(v) = self.avg_pos_vertical_speed_scaled() {
state.serialize_field("avg_pos_vertical_speed", &v)?;
}
if let Some(v) = self.avg_neg_vertical_speed_scaled() {
state.serialize_field("avg_neg_vertical_speed", &v)?;
}
if let Some(v) = self.max_pos_vertical_speed_scaled() {
state.serialize_field("max_pos_vertical_speed", &v)?;
}
if let Some(v) = self.max_neg_vertical_speed_scaled() {
state.serialize_field("max_neg_vertical_speed", &v)?;
}
if let Some(v) = self.time_in_hr_zone_scaled() {
state.serialize_field("time_in_hr_zone", &v)?;
}
if let Some(v) = self.time_in_speed_zone_scaled() {
state.serialize_field("time_in_speed_zone", &v)?;
}
if let Some(v) = self.time_in_cadence_zone_scaled() {
state.serialize_field("time_in_cadence_zone", &v)?;
}
if let Some(v) = self.time_in_power_zone_scaled() {
state.serialize_field("time_in_power_zone", &v)?;
}
if self.repetition_num != u16::MAX {
state.serialize_field("repetition_num", &self.repetition_num)?;
}
if let Some(v) = self.min_altitude_scaled() {
state.serialize_field("min_altitude", &v)?;
}
if self.min_heart_rate != u8::MAX {
state.serialize_field("min_heart_rate", &self.min_heart_rate)?;
}
if let Some(v) = self.active_time_scaled() {
state.serialize_field("active_time", &v)?;
}
if self.wkt_step_index.0 != u16::MAX {
state.serialize_field("wkt_step_index", &self.wkt_step_index)?;
}
if self.sport_event.0 != u8::MAX {
state.serialize_field("sport_event", &self.sport_event)?;
}
if let Some(v) = self.avg_left_torque_effectiveness_scaled() {
state.serialize_field("avg_left_torque_effectiveness", &v)?;
}
if let Some(v) = self.avg_right_torque_effectiveness_scaled() {
state.serialize_field("avg_right_torque_effectiveness", &v)?;
}
if let Some(v) = self.avg_left_pedal_smoothness_scaled() {
state.serialize_field("avg_left_pedal_smoothness", &v)?;
}
if let Some(v) = self.avg_right_pedal_smoothness_scaled() {
state.serialize_field("avg_right_pedal_smoothness", &v)?;
}
if let Some(v) = self.avg_combined_pedal_smoothness_scaled() {
state.serialize_field("avg_combined_pedal_smoothness", &v)?;
}
if self.status.0 != u8::MAX {
state.serialize_field("status", &self.status)?;
}
if !self.uuid.is_empty() {
state.serialize_field("uuid", &self.uuid)?;
}
if let Some(v) = self.avg_fractional_cadence_scaled() {
state.serialize_field("avg_fractional_cadence", &v)?;
}
if let Some(v) = self.max_fractional_cadence_scaled() {
state.serialize_field("max_fractional_cadence", &v)?;
}
if let Some(v) = self.total_fractional_cycles_scaled() {
state.serialize_field("total_fractional_cycles", &v)?;
}
if self.front_gear_shift_count != u16::MAX {
state.serialize_field("front_gear_shift_count", &self.front_gear_shift_count)?;
}
if self.rear_gear_shift_count != u16::MAX {
state.serialize_field("rear_gear_shift_count", &self.rear_gear_shift_count)?;
}
if let Some(v) = self.time_standing_scaled() {
state.serialize_field("time_standing", &v)?;
}
if self.stand_count != u16::MAX {
state.serialize_field("stand_count", &self.stand_count)?;
}
if self.avg_left_pco != i8::MAX {
state.serialize_field("avg_left_pco", &self.avg_left_pco)?;
}
if self.avg_right_pco != i8::MAX {
state.serialize_field("avg_right_pco", &self.avg_right_pco)?;
}
if let Some(v) = self.avg_left_power_phase_scaled() {
state.serialize_field("avg_left_power_phase", &v)?;
}
if let Some(v) = self.avg_left_power_phase_peak_scaled() {
state.serialize_field("avg_left_power_phase_peak", &v)?;
}
if let Some(v) = self.avg_right_power_phase_scaled() {
state.serialize_field("avg_right_power_phase", &v)?;
}
if let Some(v) = self.avg_right_power_phase_peak_scaled() {
state.serialize_field("avg_right_power_phase_peak", &v)?;
}
if !self.avg_power_position.is_empty() {
state.serialize_field("avg_power_position", &self.avg_power_position)?;
}
if !self.max_power_position.is_empty() {
state.serialize_field("max_power_position", &self.max_power_position)?;
}
if !self.avg_cadence_position.is_empty() {
state.serialize_field("avg_cadence_position", &self.avg_cadence_position)?;
}
if !self.max_cadence_position.is_empty() {
state.serialize_field("max_cadence_position", &self.max_cadence_position)?;
}
if self.manufacturer.0 != u16::MAX {
state.serialize_field("manufacturer", &self.manufacturer)?;
}
if self.total_grit.to_bits() != u32::MAX {
state.serialize_field("total_grit", &self.total_grit)?;
}
if self.total_flow.to_bits() != u32::MAX {
state.serialize_field("total_flow", &self.total_flow)?;
}
if self.avg_grit.to_bits() != u32::MAX {
state.serialize_field("avg_grit", &self.avg_grit)?;
}
if self.avg_flow.to_bits() != u32::MAX {
state.serialize_field("avg_flow", &self.avg_flow)?;
}
if let Some(v) = self.total_fractional_ascent_scaled() {
state.serialize_field("total_fractional_ascent", &v)?;
}
if let Some(v) = self.total_fractional_descent_scaled() {
state.serialize_field("total_fractional_descent", &v)?;
}
if let Some(v) = self.enhanced_avg_altitude_scaled() {
state.serialize_field("enhanced_avg_altitude", &v)?;
}
if let Some(v) = self.enhanced_max_altitude_scaled() {
state.serialize_field("enhanced_max_altitude", &v)?;
}
if let Some(v) = self.enhanced_min_altitude_scaled() {
state.serialize_field("enhanced_min_altitude", &v)?;
}
if !self.unknown_fields.is_empty() {
state.serialize_field("unknown_fields", &self.unknown_fields)?;
}
if !self.developer_fields.is_empty() {
state.serialize_field("developer_fields", &self.developer_fields)?;
}
state.end()
}
}
#[cfg(feature = "serde")]
#[cfg_attr(feature = "serde", derive(Deserialize), serde(default))]
struct De {
message_index: typedef::MessageIndex,
timestamp: Option<i64>,
event: typedef::Event,
event_type: typedef::EventType,
start_time: Option<i64>,
start_position_lat: f64,
start_position_long: f64,
end_position_lat: f64,
end_position_long: f64,
total_elapsed_time: f64,
total_timer_time: f64,
total_distance: f64,
total_cycles: u32,
total_calories: u16,
total_fat_calories: u16,
avg_speed: f64,
max_speed: f64,
avg_heart_rate: u8,
max_heart_rate: u8,
avg_cadence: u8,
max_cadence: u8,
avg_power: u16,
max_power: u16,
total_ascent: u16,
total_descent: u16,
sport: typedef::Sport,
event_group: u8,
nec_lat: f64,
nec_long: f64,
swc_lat: f64,
swc_long: f64,
name: String,
normalized_power: u16,
left_right_balance: typedef::LeftRightBalance100,
sub_sport: typedef::SubSport,
total_work: u32,
avg_altitude: f64,
max_altitude: f64,
gps_accuracy: u8,
avg_grade: f64,
avg_pos_grade: f64,
avg_neg_grade: f64,
max_pos_grade: f64,
max_neg_grade: f64,
avg_temperature: i8,
max_temperature: i8,
total_moving_time: f64,
avg_pos_vertical_speed: f64,
avg_neg_vertical_speed: f64,
max_pos_vertical_speed: f64,
max_neg_vertical_speed: f64,
time_in_hr_zone: Vec<f64>,
time_in_speed_zone: Vec<f64>,
time_in_cadence_zone: Vec<f64>,
time_in_power_zone: Vec<f64>,
repetition_num: u16,
min_altitude: f64,
min_heart_rate: u8,
active_time: f64,
wkt_step_index: typedef::MessageIndex,
sport_event: typedef::SportEvent,
avg_left_torque_effectiveness: f64,
avg_right_torque_effectiveness: f64,
avg_left_pedal_smoothness: f64,
avg_right_pedal_smoothness: f64,
avg_combined_pedal_smoothness: f64,
status: typedef::SegmentLapStatus,
uuid: String,
avg_fractional_cadence: f64,
max_fractional_cadence: f64,
total_fractional_cycles: f64,
front_gear_shift_count: u16,
rear_gear_shift_count: u16,
time_standing: f64,
stand_count: u16,
avg_left_pco: i8,
avg_right_pco: i8,
avg_left_power_phase: Vec<f64>,
avg_left_power_phase_peak: Vec<f64>,
avg_right_power_phase: Vec<f64>,
avg_right_power_phase_peak: Vec<f64>,
avg_power_position: Vec<u16>,
max_power_position: Vec<u16>,
avg_cadence_position: Vec<u8>,
max_cadence_position: Vec<u8>,
manufacturer: typedef::Manufacturer,
total_grit: f32,
total_flow: f32,
avg_grit: f32,
avg_flow: f32,
total_fractional_ascent: f64,
total_fractional_descent: f64,
enhanced_avg_altitude: f64,
enhanced_max_altitude: f64,
enhanced_min_altitude: f64,
unknown_fields: Vec<Field>,
developer_fields: Vec<DeveloperField>,
}
#[cfg(feature = "serde")]
impl From<De> for SegmentLap {
fn from(m: De) -> Self {
Self {
message_index: m.message_index,
timestamp: m.timestamp.map_or_else(
|| typedef::DateTime(u32::MAX),
typedef::DateTime::from_unix_timestamp,
),
event: m.event,
event_type: m.event_type,
start_time: m.start_time.map_or_else(
|| typedef::DateTime(u32::MAX),
typedef::DateTime::from_unix_timestamp,
),
start_position_lat: semconv::to_semicircles(m.start_position_lat).unwrap_or(i32::MAX),
start_position_long: semconv::to_semicircles(m.start_position_long).unwrap_or(i32::MAX),
end_position_lat: semconv::to_semicircles(m.end_position_lat).unwrap_or(i32::MAX),
end_position_long: semconv::to_semicircles(m.end_position_long).unwrap_or(i32::MAX),
total_elapsed_time: {
let unscaled = (m.total_elapsed_time + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
u32::MAX
} else {
unscaled as u32
}
},
total_timer_time: {
let unscaled = (m.total_timer_time + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
u32::MAX
} else {
unscaled as u32
}
},
total_distance: {
let unscaled = (m.total_distance + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
u32::MAX
} else {
unscaled as u32
}
},
total_cycles: m.total_cycles,
total_calories: m.total_calories,
total_fat_calories: m.total_fat_calories,
avg_speed: {
let unscaled = (m.avg_speed + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
u16::MAX
} else {
unscaled as u16
}
},
max_speed: {
let unscaled = (m.max_speed + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
u16::MAX
} else {
unscaled as u16
}
},
avg_heart_rate: m.avg_heart_rate,
max_heart_rate: m.max_heart_rate,
avg_cadence: m.avg_cadence,
max_cadence: m.max_cadence,
avg_power: m.avg_power,
max_power: m.max_power,
total_ascent: m.total_ascent,
total_descent: m.total_descent,
sport: m.sport,
event_group: m.event_group,
nec_lat: semconv::to_semicircles(m.nec_lat).unwrap_or(i32::MAX),
nec_long: semconv::to_semicircles(m.nec_long).unwrap_or(i32::MAX),
swc_lat: semconv::to_semicircles(m.swc_lat).unwrap_or(i32::MAX),
swc_long: semconv::to_semicircles(m.swc_long).unwrap_or(i32::MAX),
name: m.name,
normalized_power: m.normalized_power,
left_right_balance: m.left_right_balance,
sub_sport: m.sub_sport,
total_work: m.total_work,
avg_altitude: {
let unscaled = (m.avg_altitude + 500.0) * 5.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
u16::MAX
} else {
unscaled as u16
}
},
max_altitude: {
let unscaled = (m.max_altitude + 500.0) * 5.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
u16::MAX
} else {
unscaled as u16
}
},
gps_accuracy: m.gps_accuracy,
avg_grade: {
let unscaled = (m.avg_grade + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
i16::MAX
} else {
unscaled as i16
}
},
avg_pos_grade: {
let unscaled = (m.avg_pos_grade + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
i16::MAX
} else {
unscaled as i16
}
},
avg_neg_grade: {
let unscaled = (m.avg_neg_grade + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
i16::MAX
} else {
unscaled as i16
}
},
max_pos_grade: {
let unscaled = (m.max_pos_grade + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
i16::MAX
} else {
unscaled as i16
}
},
max_neg_grade: {
let unscaled = (m.max_neg_grade + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
i16::MAX
} else {
unscaled as i16
}
},
avg_temperature: m.avg_temperature,
max_temperature: m.max_temperature,
total_moving_time: {
let unscaled = (m.total_moving_time + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
u32::MAX
} else {
unscaled as u32
}
},
avg_pos_vertical_speed: {
let unscaled = (m.avg_pos_vertical_speed + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
i16::MAX
} else {
unscaled as i16
}
},
avg_neg_vertical_speed: {
let unscaled = (m.avg_neg_vertical_speed + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
i16::MAX
} else {
unscaled as i16
}
},
max_pos_vertical_speed: {
let unscaled = (m.max_pos_vertical_speed + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
i16::MAX
} else {
unscaled as i16
}
},
max_neg_vertical_speed: {
let unscaled = (m.max_neg_vertical_speed + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > i16::MAX as f64 {
i16::MAX
} else {
unscaled as i16
}
},
time_in_hr_zone: {
if m.time_in_hr_zone.is_empty() {
Vec::new()
} else {
let mut vals = Vec::with_capacity(m.time_in_hr_zone.len());
for &x in m.time_in_hr_zone.iter() {
let unscaled = (x + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64
{
vals.push(u32::MAX);
continue;
}
vals.push(unscaled as u32);
}
vals
}
},
time_in_speed_zone: {
if m.time_in_speed_zone.is_empty() {
Vec::new()
} else {
let mut vals = Vec::with_capacity(m.time_in_speed_zone.len());
for &x in m.time_in_speed_zone.iter() {
let unscaled = (x + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64
{
vals.push(u32::MAX);
continue;
}
vals.push(unscaled as u32);
}
vals
}
},
time_in_cadence_zone: {
if m.time_in_cadence_zone.is_empty() {
Vec::new()
} else {
let mut vals = Vec::with_capacity(m.time_in_cadence_zone.len());
for &x in m.time_in_cadence_zone.iter() {
let unscaled = (x + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64
{
vals.push(u32::MAX);
continue;
}
vals.push(unscaled as u32);
}
vals
}
},
time_in_power_zone: {
if m.time_in_power_zone.is_empty() {
Vec::new()
} else {
let mut vals = Vec::with_capacity(m.time_in_power_zone.len());
for &x in m.time_in_power_zone.iter() {
let unscaled = (x + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64
{
vals.push(u32::MAX);
continue;
}
vals.push(unscaled as u32);
}
vals
}
},
repetition_num: m.repetition_num,
min_altitude: {
let unscaled = (m.min_altitude + 500.0) * 5.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
u16::MAX
} else {
unscaled as u16
}
},
min_heart_rate: m.min_heart_rate,
active_time: {
let unscaled = (m.active_time + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
u32::MAX
} else {
unscaled as u32
}
},
wkt_step_index: m.wkt_step_index,
sport_event: m.sport_event,
avg_left_torque_effectiveness: {
let unscaled = (m.avg_left_torque_effectiveness + 0.0) * 2.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
u8::MAX
} else {
unscaled as u8
}
},
avg_right_torque_effectiveness: {
let unscaled = (m.avg_right_torque_effectiveness + 0.0) * 2.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
u8::MAX
} else {
unscaled as u8
}
},
avg_left_pedal_smoothness: {
let unscaled = (m.avg_left_pedal_smoothness + 0.0) * 2.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
u8::MAX
} else {
unscaled as u8
}
},
avg_right_pedal_smoothness: {
let unscaled = (m.avg_right_pedal_smoothness + 0.0) * 2.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
u8::MAX
} else {
unscaled as u8
}
},
avg_combined_pedal_smoothness: {
let unscaled = (m.avg_combined_pedal_smoothness + 0.0) * 2.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
u8::MAX
} else {
unscaled as u8
}
},
status: m.status,
uuid: m.uuid,
avg_fractional_cadence: {
let unscaled = (m.avg_fractional_cadence + 0.0) * 128.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
u8::MAX
} else {
unscaled as u8
}
},
max_fractional_cadence: {
let unscaled = (m.max_fractional_cadence + 0.0) * 128.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
u8::MAX
} else {
unscaled as u8
}
},
total_fractional_cycles: {
let unscaled = (m.total_fractional_cycles + 0.0) * 128.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
u8::MAX
} else {
unscaled as u8
}
},
front_gear_shift_count: m.front_gear_shift_count,
rear_gear_shift_count: m.rear_gear_shift_count,
time_standing: {
let unscaled = (m.time_standing + 0.0) * 1000.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
u32::MAX
} else {
unscaled as u32
}
},
stand_count: m.stand_count,
avg_left_pco: m.avg_left_pco,
avg_right_pco: m.avg_right_pco,
avg_left_power_phase: {
if m.avg_left_power_phase.is_empty() {
Vec::new()
} else {
let mut vals = Vec::with_capacity(m.avg_left_power_phase.len());
for &x in m.avg_left_power_phase.iter() {
let unscaled = (x + 0.0) * 0.7111111;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64
{
vals.push(u8::MAX);
continue;
}
vals.push(unscaled as u8);
}
vals
}
},
avg_left_power_phase_peak: {
if m.avg_left_power_phase_peak.is_empty() {
Vec::new()
} else {
let mut vals = Vec::with_capacity(m.avg_left_power_phase_peak.len());
for &x in m.avg_left_power_phase_peak.iter() {
let unscaled = (x + 0.0) * 0.7111111;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64
{
vals.push(u8::MAX);
continue;
}
vals.push(unscaled as u8);
}
vals
}
},
avg_right_power_phase: {
if m.avg_right_power_phase.is_empty() {
Vec::new()
} else {
let mut vals = Vec::with_capacity(m.avg_right_power_phase.len());
for &x in m.avg_right_power_phase.iter() {
let unscaled = (x + 0.0) * 0.7111111;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64
{
vals.push(u8::MAX);
continue;
}
vals.push(unscaled as u8);
}
vals
}
},
avg_right_power_phase_peak: {
if m.avg_right_power_phase_peak.is_empty() {
Vec::new()
} else {
let mut vals = Vec::with_capacity(m.avg_right_power_phase_peak.len());
for &x in m.avg_right_power_phase_peak.iter() {
let unscaled = (x + 0.0) * 0.7111111;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64
{
vals.push(u8::MAX);
continue;
}
vals.push(unscaled as u8);
}
vals
}
},
avg_power_position: m.avg_power_position,
max_power_position: m.max_power_position,
avg_cadence_position: m.avg_cadence_position,
max_cadence_position: m.max_cadence_position,
manufacturer: m.manufacturer,
total_grit: m.total_grit,
total_flow: m.total_flow,
avg_grit: m.avg_grit,
avg_flow: m.avg_flow,
total_fractional_ascent: {
let unscaled = (m.total_fractional_ascent + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
u8::MAX
} else {
unscaled as u8
}
},
total_fractional_descent: {
let unscaled = (m.total_fractional_descent + 0.0) * 100.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u8::MAX as f64 {
u8::MAX
} else {
unscaled as u8
}
},
enhanced_avg_altitude: {
let unscaled = (m.enhanced_avg_altitude + 500.0) * 5.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
u32::MAX
} else {
unscaled as u32
}
},
enhanced_max_altitude: {
let unscaled = (m.enhanced_max_altitude + 500.0) * 5.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
u32::MAX
} else {
unscaled as u32
}
},
enhanced_min_altitude: {
let unscaled = (m.enhanced_min_altitude + 500.0) * 5.0;
if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u32::MAX as f64 {
u32::MAX
} else {
unscaled as u32
}
},
state: [0u8; 12],
unknown_fields: m.unknown_fields,
developer_fields: m.developer_fields,
}
}
}
#[cfg(feature = "serde")]
impl Default for De {
fn default() -> Self {
Self {
message_index: typedef::MessageIndex(u16::MAX),
timestamp: None,
event: typedef::Event(u8::MAX),
event_type: typedef::EventType(u8::MAX),
start_time: None,
start_position_lat: f64::from_bits(u64::MAX),
start_position_long: f64::from_bits(u64::MAX),
end_position_lat: f64::from_bits(u64::MAX),
end_position_long: f64::from_bits(u64::MAX),
total_elapsed_time: f64::from_bits(u64::MAX),
total_timer_time: f64::from_bits(u64::MAX),
total_distance: f64::from_bits(u64::MAX),
total_cycles: u32::MAX,
total_calories: u16::MAX,
total_fat_calories: u16::MAX,
avg_speed: f64::from_bits(u64::MAX),
max_speed: f64::from_bits(u64::MAX),
avg_heart_rate: u8::MAX,
max_heart_rate: u8::MAX,
avg_cadence: u8::MAX,
max_cadence: u8::MAX,
avg_power: u16::MAX,
max_power: u16::MAX,
total_ascent: u16::MAX,
total_descent: u16::MAX,
sport: typedef::Sport(u8::MAX),
event_group: u8::MAX,
nec_lat: f64::from_bits(u64::MAX),
nec_long: f64::from_bits(u64::MAX),
swc_lat: f64::from_bits(u64::MAX),
swc_long: f64::from_bits(u64::MAX),
name: String::new(),
normalized_power: u16::MAX,
left_right_balance: typedef::LeftRightBalance100(u16::MAX),
sub_sport: typedef::SubSport(u8::MAX),
total_work: u32::MAX,
avg_altitude: f64::from_bits(u64::MAX),
max_altitude: f64::from_bits(u64::MAX),
gps_accuracy: u8::MAX,
avg_grade: f64::from_bits(u64::MAX),
avg_pos_grade: f64::from_bits(u64::MAX),
avg_neg_grade: f64::from_bits(u64::MAX),
max_pos_grade: f64::from_bits(u64::MAX),
max_neg_grade: f64::from_bits(u64::MAX),
avg_temperature: i8::MAX,
max_temperature: i8::MAX,
total_moving_time: f64::from_bits(u64::MAX),
avg_pos_vertical_speed: f64::from_bits(u64::MAX),
avg_neg_vertical_speed: f64::from_bits(u64::MAX),
max_pos_vertical_speed: f64::from_bits(u64::MAX),
max_neg_vertical_speed: f64::from_bits(u64::MAX),
time_in_hr_zone: Vec::new(),
time_in_speed_zone: Vec::new(),
time_in_cadence_zone: Vec::new(),
time_in_power_zone: Vec::new(),
repetition_num: u16::MAX,
min_altitude: f64::from_bits(u64::MAX),
min_heart_rate: u8::MAX,
active_time: f64::from_bits(u64::MAX),
wkt_step_index: typedef::MessageIndex(u16::MAX),
sport_event: typedef::SportEvent(u8::MAX),
avg_left_torque_effectiveness: f64::from_bits(u64::MAX),
avg_right_torque_effectiveness: f64::from_bits(u64::MAX),
avg_left_pedal_smoothness: f64::from_bits(u64::MAX),
avg_right_pedal_smoothness: f64::from_bits(u64::MAX),
avg_combined_pedal_smoothness: f64::from_bits(u64::MAX),
status: typedef::SegmentLapStatus(u8::MAX),
uuid: String::new(),
avg_fractional_cadence: f64::from_bits(u64::MAX),
max_fractional_cadence: f64::from_bits(u64::MAX),
total_fractional_cycles: f64::from_bits(u64::MAX),
front_gear_shift_count: u16::MAX,
rear_gear_shift_count: u16::MAX,
time_standing: f64::from_bits(u64::MAX),
stand_count: u16::MAX,
avg_left_pco: i8::MAX,
avg_right_pco: i8::MAX,
avg_left_power_phase: Vec::new(),
avg_left_power_phase_peak: Vec::new(),
avg_right_power_phase: Vec::new(),
avg_right_power_phase_peak: Vec::new(),
avg_power_position: Vec::new(),
max_power_position: Vec::new(),
avg_cadence_position: Vec::new(),
max_cadence_position: Vec::new(),
manufacturer: typedef::Manufacturer(u16::MAX),
total_grit: f32::from_bits(u32::MAX),
total_flow: f32::from_bits(u32::MAX),
avg_grit: f32::from_bits(u32::MAX),
avg_flow: f32::from_bits(u32::MAX),
total_fractional_ascent: f64::from_bits(u64::MAX),
total_fractional_descent: f64::from_bits(u64::MAX),
enhanced_avg_altitude: f64::from_bits(u64::MAX),
enhanced_max_altitude: f64::from_bits(u64::MAX),
enhanced_min_altitude: f64::from_bits(u64::MAX),
unknown_fields: Vec::new(),
developer_fields: Vec::new(),
}
}
}