rustyfit 0.10.0

The #![no_std] Rust implementation of The Flexible and Interoperable Data Transfer (FIT) Protocol for decoding and encoding Garmin FIT files, supporting FIT Protocol V2.
Documentation
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// Code generated by fitgen/main.go. DO NOT EDIT.

// Copyright 2025 The RustyFIT Authors. All rights reserved.
// Use of this source code is governed by a BSD-style
// license that can be found in the LICENSE file.

use crate::profile::typedef::{self, FitBaseType};
use crate::proto::*;
use alloc::vec::Vec;
#[cfg(feature = "serde")]
use serde::{Deserialize, Serialize, Serializer, ser::SerializeStruct};

/// Hrv Status Summary message.
#[cfg_attr(feature = "serde", derive(Deserialize), serde(from = "De"))]
#[derive(Debug, Clone)]
pub struct HrvStatusSummary {
    pub timestamp: typedef::DateTime,
    /// Scale: 128; Units: ms; 7 day RMSSD average over sleep
    pub weekly_average: u16,
    /// Scale: 128; Units: ms; Last night RMSSD average over sleep
    pub last_night_average: u16,
    /// Scale: 128; Units: ms; 5 minute high RMSSD value over sleep
    pub last_night_5_min_high: u16,
    /// Scale: 128; Units: ms; 3 week baseline, upper boundary of low HRV status
    pub baseline_low_upper: u16,
    /// Scale: 128; Units: ms; 3 week baseline, lower boundary of balanced HRV status
    pub baseline_balanced_lower: u16,
    /// Scale: 128; Units: ms; 3 week baseline, upper boundary of balanced HRV status
    pub baseline_balanced_upper: u16,
    pub status: typedef::HrvStatus,
    /// unknown_fields are fields that are exist but they are not defined in Profile.xlsx
    pub unknown_fields: Vec<Field>,
    /// developer_fields are custom data fields (Added since protocol version 2.0)
    pub developer_fields: Vec<DeveloperField>,
}

impl HrvStatusSummary {
    /// Value's type: `u32`; FitBaseType::UINT32; ProfileType::DateTime
    pub const TIMESTAMP: u8 = 253;
    /// Value's type: `u16`; FitBaseType::UINT16; ProfileType::Uint16; Scale: `128`; Units: `ms`
    pub const WEEKLY_AVERAGE: u8 = 0;
    /// Value's type: `u16`; FitBaseType::UINT16; ProfileType::Uint16; Scale: `128`; Units: `ms`
    pub const LAST_NIGHT_AVERAGE: u8 = 1;
    /// Value's type: `u16`; FitBaseType::UINT16; ProfileType::Uint16; Scale: `128`; Units: `ms`
    pub const LAST_NIGHT_5_MIN_HIGH: u8 = 2;
    /// Value's type: `u16`; FitBaseType::UINT16; ProfileType::Uint16; Scale: `128`; Units: `ms`
    pub const BASELINE_LOW_UPPER: u8 = 3;
    /// Value's type: `u16`; FitBaseType::UINT16; ProfileType::Uint16; Scale: `128`; Units: `ms`
    pub const BASELINE_BALANCED_LOWER: u8 = 4;
    /// Value's type: `u16`; FitBaseType::UINT16; ProfileType::Uint16; Scale: `128`; Units: `ms`
    pub const BASELINE_BALANCED_UPPER: u8 = 5;
    /// Value's type: `u8`; FitBaseType::ENUM; ProfileType::HrvStatus
    pub const STATUS: u8 = 6;

    /// Create new HrvStatusSummary with all fields being set to its corresponding invalid value.
    pub const fn new() -> Self {
        Self {
            timestamp: typedef::DateTime(u32::MAX),
            weekly_average: u16::MAX,
            last_night_average: u16::MAX,
            last_night_5_min_high: u16::MAX,
            baseline_low_upper: u16::MAX,
            baseline_balanced_lower: u16::MAX,
            baseline_balanced_upper: u16::MAX,
            status: typedef::HrvStatus(u8::MAX),
            unknown_fields: Vec::new(),
            developer_fields: Vec::new(),
        }
    }

    /// Returns `weekly_average` in its scaled value. It returns `None` when value is invalid.
    ///
    /// Units: ms
    pub fn weekly_average_scaled(&self) -> Option<f64> {
        if self.weekly_average == u16::MAX {
            return None;
        }
        Some(self.weekly_average as f64 / 128.0 - 0.0)
    }

    /// Set `weekly_average` with scaled value, it will automatically be converted to its corresponding integer value.
    pub fn set_weekly_average_scaled(&mut self, v: f64) -> &mut Self {
        let unscaled = (v + 0.0) * 128.0;
        if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
            self.weekly_average = u16::MAX;
            return self;
        }
        self.weekly_average = unscaled as u16;
        self
    }

    /// Returns `last_night_average` in its scaled value. It returns `None` when value is invalid.
    ///
    /// Units: ms
    pub fn last_night_average_scaled(&self) -> Option<f64> {
        if self.last_night_average == u16::MAX {
            return None;
        }
        Some(self.last_night_average as f64 / 128.0 - 0.0)
    }

    /// Set `last_night_average` with scaled value, it will automatically be converted to its corresponding integer value.
    pub fn set_last_night_average_scaled(&mut self, v: f64) -> &mut Self {
        let unscaled = (v + 0.0) * 128.0;
        if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
            self.last_night_average = u16::MAX;
            return self;
        }
        self.last_night_average = unscaled as u16;
        self
    }

    /// Returns `last_night_5_min_high` in its scaled value. It returns `None` when value is invalid.
    ///
    /// Units: ms
    pub fn last_night_5_min_high_scaled(&self) -> Option<f64> {
        if self.last_night_5_min_high == u16::MAX {
            return None;
        }
        Some(self.last_night_5_min_high as f64 / 128.0 - 0.0)
    }

    /// Set `last_night_5_min_high` with scaled value, it will automatically be converted to its corresponding integer value.
    pub fn set_last_night_5_min_high_scaled(&mut self, v: f64) -> &mut Self {
        let unscaled = (v + 0.0) * 128.0;
        if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
            self.last_night_5_min_high = u16::MAX;
            return self;
        }
        self.last_night_5_min_high = unscaled as u16;
        self
    }

    /// Returns `baseline_low_upper` in its scaled value. It returns `None` when value is invalid.
    ///
    /// Units: ms
    pub fn baseline_low_upper_scaled(&self) -> Option<f64> {
        if self.baseline_low_upper == u16::MAX {
            return None;
        }
        Some(self.baseline_low_upper as f64 / 128.0 - 0.0)
    }

    /// Set `baseline_low_upper` with scaled value, it will automatically be converted to its corresponding integer value.
    pub fn set_baseline_low_upper_scaled(&mut self, v: f64) -> &mut Self {
        let unscaled = (v + 0.0) * 128.0;
        if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
            self.baseline_low_upper = u16::MAX;
            return self;
        }
        self.baseline_low_upper = unscaled as u16;
        self
    }

    /// Returns `baseline_balanced_lower` in its scaled value. It returns `None` when value is invalid.
    ///
    /// Units: ms
    pub fn baseline_balanced_lower_scaled(&self) -> Option<f64> {
        if self.baseline_balanced_lower == u16::MAX {
            return None;
        }
        Some(self.baseline_balanced_lower as f64 / 128.0 - 0.0)
    }

    /// Set `baseline_balanced_lower` with scaled value, it will automatically be converted to its corresponding integer value.
    pub fn set_baseline_balanced_lower_scaled(&mut self, v: f64) -> &mut Self {
        let unscaled = (v + 0.0) * 128.0;
        if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
            self.baseline_balanced_lower = u16::MAX;
            return self;
        }
        self.baseline_balanced_lower = unscaled as u16;
        self
    }

    /// Returns `baseline_balanced_upper` in its scaled value. It returns `None` when value is invalid.
    ///
    /// Units: ms
    pub fn baseline_balanced_upper_scaled(&self) -> Option<f64> {
        if self.baseline_balanced_upper == u16::MAX {
            return None;
        }
        Some(self.baseline_balanced_upper as f64 / 128.0 - 0.0)
    }

    /// Set `baseline_balanced_upper` with scaled value, it will automatically be converted to its corresponding integer value.
    pub fn set_baseline_balanced_upper_scaled(&mut self, v: f64) -> &mut Self {
        let unscaled = (v + 0.0) * 128.0;
        if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
            self.baseline_balanced_upper = u16::MAX;
            return self;
        }
        self.baseline_balanced_upper = unscaled as u16;
        self
    }

    fn count_valid_fields(&self) -> usize {
        (self.timestamp.0 != u32::MAX) as usize
            + (self.weekly_average != u16::MAX) as usize
            + (self.last_night_average != u16::MAX) as usize
            + (self.last_night_5_min_high != u16::MAX) as usize
            + (self.baseline_low_upper != u16::MAX) as usize
            + (self.baseline_balanced_lower != u16::MAX) as usize
            + (self.baseline_balanced_upper != u16::MAX) as usize
            + (self.status.0 != u8::MAX) as usize
    }
}

impl Default for HrvStatusSummary {
    fn default() -> Self {
        Self::new()
    }
}

impl From<&Message> for HrvStatusSummary {
    /// from creates new HrvStatusSummary struct based on given mesg.
    fn from(mesg: &Message) -> Self {
        const KNOWN_NUMS: [u64; 4] = [127, 0, 0, 2305843009213693952];
        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 {
                253 => v.timestamp = typedef::DateTime(field.value.as_u32()),
                0 => v.weekly_average = field.value.as_u16(),
                1 => v.last_night_average = field.value.as_u16(),
                2 => v.last_night_5_min_high = field.value.as_u16(),
                3 => v.baseline_low_upper = field.value.as_u16(),
                4 => v.baseline_balanced_lower = field.value.as_u16(),
                5 => v.baseline_balanced_upper = field.value.as_u16(),
                6 => v.status = typedef::HrvStatus(field.value.as_u8()),
                _ => v.unknown_fields.push(field.clone()),
            };
        }

        v
    }
}

impl From<HrvStatusSummary> for Message {
    fn from(m: HrvStatusSummary) -> Self {
        let mut fields =
            Vec::<Field>::with_capacity(m.count_valid_fields() + m.unknown_fields.len());

        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.weekly_average != u16::MAX {
            fields.push(Field {
                num: 0,
                base_type: FitBaseType::UINT16,
                value: Value::Uint16(m.weekly_average),
                is_expanded: false,
            });
        };
        if m.last_night_average != u16::MAX {
            fields.push(Field {
                num: 1,
                base_type: FitBaseType::UINT16,
                value: Value::Uint16(m.last_night_average),
                is_expanded: false,
            });
        };
        if m.last_night_5_min_high != u16::MAX {
            fields.push(Field {
                num: 2,
                base_type: FitBaseType::UINT16,
                value: Value::Uint16(m.last_night_5_min_high),
                is_expanded: false,
            });
        };
        if m.baseline_low_upper != u16::MAX {
            fields.push(Field {
                num: 3,
                base_type: FitBaseType::UINT16,
                value: Value::Uint16(m.baseline_low_upper),
                is_expanded: false,
            });
        };
        if m.baseline_balanced_lower != u16::MAX {
            fields.push(Field {
                num: 4,
                base_type: FitBaseType::UINT16,
                value: Value::Uint16(m.baseline_balanced_lower),
                is_expanded: false,
            });
        };
        if m.baseline_balanced_upper != u16::MAX {
            fields.push(Field {
                num: 5,
                base_type: FitBaseType::UINT16,
                value: Value::Uint16(m.baseline_balanced_upper),
                is_expanded: false,
            });
        };
        if m.status.0 != u8::MAX {
            fields.push(Field {
                num: 6,
                base_type: FitBaseType::ENUM,
                value: Value::Uint8(m.status.0),
                is_expanded: false,
            });
        };

        fields.extend_from_slice(&m.unknown_fields);

        Self {
            header: 0,
            num: typedef::MesgNum::HRV_STATUS_SUMMARY,
            fields,
            developer_fields: m.developer_fields,
        }
    }
}

#[cfg(feature = "serde")]
impl Serialize for HrvStatusSummary {
    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("HrvStatusSummary", n)?;
        if let Some(v) = self.timestamp.unix_timestamp() {
            state.serialize_field("timestamp", &v)?;
        }
        if let Some(v) = self.weekly_average_scaled() {
            state.serialize_field("weekly_average", &v)?;
        }
        if let Some(v) = self.last_night_average_scaled() {
            state.serialize_field("last_night_average", &v)?;
        }
        if let Some(v) = self.last_night_5_min_high_scaled() {
            state.serialize_field("last_night_5_min_high", &v)?;
        }
        if let Some(v) = self.baseline_low_upper_scaled() {
            state.serialize_field("baseline_low_upper", &v)?;
        }
        if let Some(v) = self.baseline_balanced_lower_scaled() {
            state.serialize_field("baseline_balanced_lower", &v)?;
        }
        if let Some(v) = self.baseline_balanced_upper_scaled() {
            state.serialize_field("baseline_balanced_upper", &v)?;
        }
        if self.status.0 != u8::MAX {
            state.serialize_field("status", &self.status)?;
        }
        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 {
    timestamp: Option<i64>,
    weekly_average: f64,
    last_night_average: f64,
    last_night_5_min_high: f64,
    baseline_low_upper: f64,
    baseline_balanced_lower: f64,
    baseline_balanced_upper: f64,
    status: typedef::HrvStatus,
    unknown_fields: Vec<Field>,
    developer_fields: Vec<DeveloperField>,
}

#[cfg(feature = "serde")]
impl From<De> for HrvStatusSummary {
    fn from(m: De) -> Self {
        Self {
            timestamp: m.timestamp.map_or_else(
                || typedef::DateTime(u32::MAX),
                typedef::DateTime::from_unix_timestamp,
            ),
            weekly_average: {
                let unscaled = (m.weekly_average + 0.0) * 128.0;
                if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
                    u16::MAX
                } else {
                    unscaled as u16
                }
            },
            last_night_average: {
                let unscaled = (m.last_night_average + 0.0) * 128.0;
                if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
                    u16::MAX
                } else {
                    unscaled as u16
                }
            },
            last_night_5_min_high: {
                let unscaled = (m.last_night_5_min_high + 0.0) * 128.0;
                if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
                    u16::MAX
                } else {
                    unscaled as u16
                }
            },
            baseline_low_upper: {
                let unscaled = (m.baseline_low_upper + 0.0) * 128.0;
                if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
                    u16::MAX
                } else {
                    unscaled as u16
                }
            },
            baseline_balanced_lower: {
                let unscaled = (m.baseline_balanced_lower + 0.0) * 128.0;
                if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
                    u16::MAX
                } else {
                    unscaled as u16
                }
            },
            baseline_balanced_upper: {
                let unscaled = (m.baseline_balanced_upper + 0.0) * 128.0;
                if unscaled.is_nan() || unscaled.is_infinite() || unscaled > u16::MAX as f64 {
                    u16::MAX
                } else {
                    unscaled as u16
                }
            },
            status: m.status,
            unknown_fields: m.unknown_fields,
            developer_fields: m.developer_fields,
        }
    }
}

#[cfg(feature = "serde")]
impl Default for De {
    fn default() -> Self {
        Self {
            timestamp: None,
            weekly_average: f64::from_bits(u64::MAX),
            last_night_average: f64::from_bits(u64::MAX),
            last_night_5_min_high: f64::from_bits(u64::MAX),
            baseline_low_upper: f64::from_bits(u64::MAX),
            baseline_balanced_lower: f64::from_bits(u64::MAX),
            baseline_balanced_upper: f64::from_bits(u64::MAX),
            status: typedef::HrvStatus(u8::MAX),
            unknown_fields: Vec::new(),
            developer_fields: Vec::new(),
        }
    }
}