prompty 2.0.0-beta.3

Prompty is an asset class and format for LLM prompts
Documentation
// <auto-generated by typra-emitter>
// Code generated by Typra emitter; DO NOT EDIT.

#![allow(
    unused_imports,
    dead_code,
    non_camel_case_types,
    unused_variables,
    clippy::all
)]

use super::super::context::{LoadContext, SaveContext};

use super::replay_mismatch::ReplayMismatch;

#[derive(Debug, Clone, Copy, PartialEq, Eq, Hash)]
pub enum ReplayVerificationStatus {
    Passed,
    Failed,
}

impl Default for ReplayVerificationStatus {
    fn default() -> Self {
        Self::Passed
    }
}

impl std::fmt::Display for ReplayVerificationStatus {
    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
        match self {
            Self::Passed => write!(f, "passed"),
            Self::Failed => write!(f, "failed"),
        }
    }
}

impl ReplayVerificationStatus {
    pub fn from_str_opt(s: &str) -> Option<Self> {
        match s {
            "passed" => Some(Self::Passed),
            "failed" => Some(Self::Failed),
            _ => None,
        }
    }

    pub fn as_str(&self) -> &str {
        match self {
            Self::Passed => "passed",
            Self::Failed => "failed",
        }
    }
}

/// Result returned by a replay verifier implementation.
#[derive(Debug, Clone, Default)]
pub struct ReplayVerificationResult {
    /// Replay verification status
    pub status: ReplayVerificationStatus,
    /// Record mismatches, empty when verification passed
    pub mismatches: Vec<ReplayMismatch>,
    /// Number of expected records
    pub expected_count: i32,
    /// Number of actual records
    pub actual_count: i32,
}

impl ReplayVerificationResult {
    /// Create a new ReplayVerificationResult with default values.
    pub fn new() -> Self {
        Self::default()
    }

    /// Load ReplayVerificationResult from a JSON string.
    pub fn from_json(json: &str, ctx: &LoadContext) -> Result<Self, serde_json::Error> {
        let value: serde_json::Value = serde_json::from_str(json)?;
        Ok(Self::load_from_value(&value, ctx))
    }

    /// Load ReplayVerificationResult from a YAML string.
    pub fn from_yaml(yaml: &str, ctx: &LoadContext) -> Result<Self, serde_yaml::Error> {
        let value: serde_json::Value = serde_yaml::from_str(yaml)?;
        Ok(Self::load_from_value(&value, ctx))
    }

    /// Load ReplayVerificationResult from a `serde_json::Value`.
    ///
    /// Calls `ctx.process_input` before field extraction.
    pub fn load_from_value(value: &serde_json::Value, ctx: &LoadContext) -> Self {
        let value = ctx.process_input(value.clone());
        Self {
            status: value
                .get("status")
                .and_then(|v| v.as_str())
                .and_then(|s| ReplayVerificationStatus::from_str_opt(s))
                .unwrap_or(ReplayVerificationStatus::Passed),
            mismatches: value
                .get("mismatches")
                .map(|v| Self::load_mismatches(v, ctx))
                .unwrap_or_default(),
            expected_count: value
                .get("expectedCount")
                .and_then(|v| v.as_i64())
                .unwrap_or(0) as i32,
            actual_count: value
                .get("actualCount")
                .and_then(|v| v.as_i64())
                .unwrap_or(0) as i32,
        }
    }

    /// Serialize ReplayVerificationResult to a `serde_json::Value`.
    ///
    /// Calls `ctx.process_dict` after serialization.
    pub fn to_value(&self, ctx: &SaveContext) -> serde_json::Value {
        let mut result = serde_json::Map::new();
        // Write base fields
        result.insert(
            "status".to_string(),
            serde_json::Value::String(self.status.to_string()),
        );
        if !self.mismatches.is_empty() {
            result.insert(
                "mismatches".to_string(),
                Self::save_mismatches(&self.mismatches, ctx),
            );
        }
        if self.expected_count != 0 {
            result.insert(
                "expectedCount".to_string(),
                serde_json::Value::Number(serde_json::Number::from(self.expected_count)),
            );
        }
        if self.actual_count != 0 {
            result.insert(
                "actualCount".to_string(),
                serde_json::Value::Number(serde_json::Number::from(self.actual_count)),
            );
        }
        ctx.process_dict(serde_json::Value::Object(result))
    }

    /// Serialize ReplayVerificationResult to a JSON string.
    pub fn to_json(&self, ctx: &SaveContext) -> Result<String, serde_json::Error> {
        serde_json::to_string_pretty(&self.to_value(ctx))
    }

    /// Serialize ReplayVerificationResult to a YAML string.
    pub fn to_yaml(&self, ctx: &SaveContext) -> Result<String, serde_yaml::Error> {
        serde_yaml::to_string(&self.to_value(ctx))
    }

    /// Load a collection of ReplayMismatch from a JSON value.
    /// Handles both array format `[{...}]`.
    fn load_mismatches(data: &serde_json::Value, ctx: &LoadContext) -> Vec<ReplayMismatch> {
        match data {
            serde_json::Value::Array(arr) => arr
                .iter()
                .map(|v| ReplayMismatch::load_from_value(v, ctx))
                .collect(),

            _ => Vec::new(),
        }
    }

    /// Save a collection of ReplayMismatch to a JSON value.
    fn save_mismatches(items: &[ReplayMismatch], ctx: &SaveContext) -> serde_json::Value {
        serde_json::Value::Array(
            items
                .iter()
                .map(|item| item.to_value(ctx))
                .collect::<Vec<_>>(),
        )
    }
}