parsers.rs 110 KB
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// SPDX-FileCopyrightText: Copyright (c) 2024-2025 NVIDIA CORPORATION & AFFILIATES. All rights reserved.
// SPDX-License-Identifier: Apache-2.0

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use super::config::{ToolCallConfig, ToolCallParserType};
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use super::harmony::{
    detect_tool_call_start_harmony, find_tool_call_end_position_harmony,
    parse_tool_calls_harmony_complete,
};
use super::json::{
    detect_tool_call_start_json, find_tool_call_end_position_json, try_tool_call_parse_json,
};
use super::pythonic::{
    detect_tool_call_start_pythonic, find_tool_call_end_position_pythonic,
    try_tool_call_parse_pythonic,
};
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use super::response::ToolCallResponse;
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use super::xml::{
    detect_tool_call_start_xml, find_tool_call_end_position_xml, try_tool_call_parse_xml,
};
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use std::collections::HashMap;
use std::sync::OnceLock;

static PARSER_MAP: OnceLock<HashMap<&'static str, ToolCallConfig>> = OnceLock::new();

// Always update this parsermap when adding a new parser
pub fn get_tool_parser_map() -> &'static HashMap<&'static str, ToolCallConfig> {
    PARSER_MAP.get_or_init(|| {
        let mut map = HashMap::new();
        map.insert("hermes", ToolCallConfig::hermes());
        map.insert("nemotron_deci", ToolCallConfig::nemotron_deci());
        map.insert("llama3_json", ToolCallConfig::llama3_json());
        map.insert("mistral", ToolCallConfig::mistral());
        map.insert("phi4", ToolCallConfig::phi4());
        map.insert("pythonic", ToolCallConfig::pythonic());
        map.insert("harmony", ToolCallConfig::harmony());
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        map.insert("deepseek_v3", ToolCallConfig::deepseek_v3());
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        map.insert("deepseek_v3_1", ToolCallConfig::deepseek_v3_1());
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        map.insert("qwen3_coder", ToolCallConfig::qwen3_coder());
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        map.insert("default", ToolCallConfig::default());
        map
    })
}

pub fn get_available_tool_parsers() -> Vec<&'static str> {
    get_tool_parser_map().keys().copied().collect()
}
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pub async fn try_tool_call_parse(
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    message: &str,
    config: &ToolCallConfig,
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) -> anyhow::Result<(Vec<ToolCallResponse>, Option<String>)> {
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    // Use match statement (Rust's switch statement) to call the appropriate parser
    match config.format {
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        ToolCallParserType::Json => {
            let (results, normal_content) = try_tool_call_parse_json(message, &config.json)?;
            Ok((results, normal_content))
        }
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        ToolCallParserType::Harmony => {
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            let (results, normal_content) =
                parse_tool_calls_harmony_complete(message, &config.json).await?;
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            Ok((results, normal_content))
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        }
        ToolCallParserType::Pythonic => {
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            let (results, normal_content) = try_tool_call_parse_pythonic(message)?;
            Ok((results, normal_content))
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        }
        ToolCallParserType::Typescript => {
            anyhow::bail!("Typescript parser not implemented");
        }
        ToolCallParserType::Xml => {
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            let (results, normal_content) = try_tool_call_parse_xml(message)?;
            Ok((results, normal_content))
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        }
    }
}

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// Base Detector to call for all tool parsing
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pub async fn detect_and_parse_tool_call(
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    message: &str,
    parser_str: Option<&str>,
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) -> anyhow::Result<(Vec<ToolCallResponse>, Option<String>)> {
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    // Get the tool parser map
    let parser_map = get_tool_parser_map();
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    // Handle None or empty string by defaulting to "default"
    let parser_key = match parser_str {
        Some(s) if !s.is_empty() => s,
        _ => "default", // None or empty string
    };

    match parser_map.get(parser_key) {
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        Some(config) => {
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            let (results, normal_content) = try_tool_call_parse(message, config).await?;
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            Ok((results, normal_content))
        }
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        None => anyhow::bail!(
            "Parser '{}' is not implemented. Available parsers: {:?}",
            parser_key,
            get_available_tool_parsers()
        ),
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    }
}

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pub fn detect_tool_call_start(chunk: &str, parser_str: Option<&str>) -> anyhow::Result<bool> {
    let parser_map = get_tool_parser_map();
    let parser_key = match parser_str {
        Some(s) if !s.is_empty() => s,
        _ => "default", // None or empty string
    };

    match parser_map.get(parser_key) {
        Some(config) => match config.format {
            ToolCallParserType::Json => Ok(detect_tool_call_start_json(chunk, &config.json)),
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            ToolCallParserType::Harmony => {
                Ok(detect_tool_call_start_harmony(chunk, &config.json, false))
            }
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            ToolCallParserType::Pythonic => Ok(detect_tool_call_start_pythonic(chunk)),
            ToolCallParserType::Typescript => {
                anyhow::bail!("Typescript parser not implemented");
            }
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            ToolCallParserType::Xml => Ok(detect_tool_call_start_xml(chunk)),
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        },
        None => anyhow::bail!(
            "Parser '{}' is not implemented. Available parsers: {:?}",
            parser_key,
            get_available_tool_parsers()
        ),
    }
}

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pub fn find_tool_call_end_position(chunk: &str, parser_str: Option<&str>) -> usize {
    let parser_map = get_tool_parser_map();
    let parser_key = match parser_str {
        Some(s) if !s.is_empty() => s,
        _ => "default",
    };

    match parser_map.get(parser_key) {
        Some(config) => match config.format {
            ToolCallParserType::Json => {
                // For "default", use "nemotron_deci" as the effective parser; otherwise, use the provided parser_key
                let effective_parser = if parser_key == "default" {
                    "nemotron_deci"
                } else {
                    parser_key
                };
                find_tool_call_end_position_json(chunk, effective_parser, &config.json)
            }
            ToolCallParserType::Harmony => find_tool_call_end_position_harmony(chunk, &config.json),
            ToolCallParserType::Pythonic => find_tool_call_end_position_pythonic(chunk),
            ToolCallParserType::Typescript => {
                // Typescript parser not implemented
                chunk.len()
            }
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            ToolCallParserType::Xml => find_tool_call_end_position_xml(chunk),
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        },
        None => {
            // Unknown parser, return full content length
            chunk.len()
        }
    }
}
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// Tests
// cargo test postprocessor::tool_calling::parsers
#[cfg(test)]
mod tests {
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    use super::super::config::JsonParserConfig;
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    use super::*;

    fn extract_name_and_args(call: ToolCallResponse) -> (String, serde_json::Value) {
        let args: serde_json::Value = serde_json::from_str(&call.function.arguments).unwrap();
        (call.function.name, args)
    }

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    #[test]
    fn test_get_available_tool_parsers() {
        let parsers = get_available_tool_parsers();
        assert!(!parsers.is_empty());
        // Update this list when adding a new parser
        let available_parsers = [
            "hermes",
            "llama3_json",
            "harmony",
            "nemotron_deci",
            "mistral",
            "phi4",
            "default",
            "pythonic",
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            "deepseek_v3",
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            "deepseek_v3_1",
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            "qwen3_coder",
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        ];
        for parser in available_parsers {
            assert!(parsers.contains(&parser));
        }
    }

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    #[tokio::test]
    async fn parses_single_parameters_object() {
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        let input = r#"{ "name": "hello", "parameters": { "x": 1, "y": 2 } }"#;
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        let (result, content) = try_tool_call_parse(input, &ToolCallConfig::default())
            .await
            .unwrap();
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        assert_eq!(content, Some("".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
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        assert_eq!(name, "hello");
        assert_eq!(args["x"], 1);
        assert_eq!(args["y"], 2);
    }

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    #[tokio::test]
    async fn parses_single_arguments_object() {
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        let input = r#"{ "name": "world", "arguments": { "a": "abc", "b": 42 } }"#;
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        let (result, content) = try_tool_call_parse(input, &ToolCallConfig::default())
            .await
            .unwrap();
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        assert_eq!(content, Some("".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
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        assert_eq!(name, "world");
        assert_eq!(args["a"], "abc");
        assert_eq!(args["b"], 42);
    }

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    #[tokio::test]
    async fn parses_vec_of_parameters() {
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        let input = r#"[{ "name": "first", "parameters": { "a": 1 } }, { "name": "second", "parameters": { "b": 2 } }]"#;
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        let (result, content) = try_tool_call_parse(input, &ToolCallConfig::default())
            .await
            .unwrap();
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        assert_eq!(content, Some("".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "first");
        assert_eq!(args["a"], 1);
        let (name, args) = extract_name_and_args(result[1].clone());
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        assert_eq!(name, "second");
        assert_eq!(args["b"], 2);
    }

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    #[tokio::test]
    async fn parses_vec_of_arguments() {
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        let input = r#"[{ "name": "alpha", "arguments": { "a": "x" } }, { "name": "omega", "arguments": { "z": "y" } }]"#;
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        let (result, content) = try_tool_call_parse(input, &ToolCallConfig::default())
            .await
            .unwrap();
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        assert_eq!(content, Some("".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "alpha");
        assert_eq!(args["a"], "x");
        let (name, args) = extract_name_and_args(result[1].clone());
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        assert_eq!(name, "omega");
        assert_eq!(args["z"], "y");
    }

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    #[tokio::test]
    async fn parses_toolcall_wrapped_payload() {
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        let input =
            r#"<TOOLCALL>[{ "name": "wrapped", "parameters": { "foo": "bar" } }]</TOOLCALL>"#;
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        let (result, content) = try_tool_call_parse(input, &ToolCallConfig::default())
            .await
            .unwrap();
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        assert_eq!(content, Some("".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
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        assert_eq!(name, "wrapped");
        assert_eq!(args["foo"], "bar");
    }

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    #[tokio::test]
    async fn parses_python_tag_prefixed_payload() {
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        let input = r#"<|python_tag|>{ "name": "pyfunc", "arguments": { "k": "v" } }"#;
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        let (result, content) = try_tool_call_parse(
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            input,
            &ToolCallConfig {
                format: ToolCallParserType::Json,
                json: JsonParserConfig {
                    tool_call_start_tokens: vec!["<|python_tag|>".to_string()],
                    tool_call_end_tokens: vec!["".to_string()],
                    ..Default::default()
                },
            },
        )
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        .await
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        .unwrap();
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        assert_eq!(content, Some("".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
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        assert_eq!(name, "pyfunc");
        assert_eq!(args["k"], "v");
    }

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    #[tokio::test]
    async fn returns_none_on_invalid_input() {
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        let input = r#"not even json"#;
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        let (result, content) = try_tool_call_parse(input, &ToolCallConfig::default())
            .await
            .unwrap();
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        assert_eq!(content, Some("not even json".to_string()));
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        assert!(result.is_empty());
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    }

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    #[tokio::test]
    async fn returns_none_on_valid_json_wrong_shape() {
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        let input = r#"{ "foo": "bar" }"#;
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        let (result, content) = try_tool_call_parse(input, &ToolCallConfig::default())
            .await
            .unwrap();
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        assert_eq!(content, Some("{ \"foo\": \"bar\" }".to_string()));
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        assert!(result.is_empty());
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    }

    // Tests for real model outputs - disabled by default
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    #[tokio::test]
    async fn test_nvidia_llama3_nemotron_super_49b_simple() {
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        let input = r#"<think>
Okay, the user is asking for the weather in San Francisco in Fahrenheit. Let me check the tools available.
</think>

<TOOLCALL>[{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}]</TOOLCALL>"#;
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        let (result, content) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
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        assert_eq!(content, Some("<think>\nOkay, the user is asking for the weather in San Francisco in Fahrenheit. Let me check the tools available.\n</think>".to_string()));
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
    async fn test_nvidia_llama3_nemotron_super_49b_simple_with_no_think() {
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        let input = r#"<TOOLCALL>[{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}]</TOOLCALL>"#;
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        let (result, content) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        assert_eq!(content, Some("".to_string()));
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        let (name, args) = extract_name_and_args(result[0].clone());
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        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
    async fn test_nvidia_llama3_nemotron_super_49b_with_function_array() {
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        let input = r#"<think>
Okay, the user is asking for the weather in San Francisco in Fahrenheit. Let me check the tools available.
</think>

<TOOLCALL>[{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}, {"name": "get_weather", "arguments": {"location": "New York, NY", "unit": "fahrenheit"}}]</TOOLCALL>"#;
        let config = ToolCallConfig::nemotron_deci();
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        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
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        assert_eq!(content, Some("<think>\nOkay, the user is asking for the weather in San Francisco in Fahrenheit. Let me check the tools available.\n</think>".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
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    }

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    #[tokio::test]
    async fn test_nvidia_llama3_nemotron_super_49b_with_function_array_with_new_lines() {
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        let input = r#"<think>
Okay, the user is asking for the weather in San Francisco in Fahrenheit. Let me check the tools available.
</think>

<TOOLCALL>
[{"name": "get_weather",
 "arguments": {"location": "San Francisco, CA",
  "unit": "fahrenheit"}},
  {"name": "get_weather",
   "arguments":
  {"location": "New York, NY",
  "unit": "fahrenheit"}}]
  </TOOLCALL>
  "#;
        let config = ToolCallConfig::nemotron_deci();
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        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
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        assert_eq!(content, Some("<think>\nOkay, the user is asking for the weather in San Francisco in Fahrenheit. Let me check the tools available.\n</think>".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
    async fn test_qwen_qwq_32b_simple() {
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        let input = r#"<tool_call>
{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}
</tool_call>"#;
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        let (result, content) = detect_and_parse_tool_call(input, Some("hermes"))
            .await
            .unwrap();
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        assert_eq!(content, Some("".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
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        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
    async fn test_qwen_qwq_32b_simple_with_normal_text() {
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        let input = r#"Hey How are you? <tool_call>
{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}
</tool_call>"#;
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        let (result, content) = detect_and_parse_tool_call(input, Some("hermes"))
            .await
            .unwrap();
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        assert_eq!(content, Some("Hey How are you?".to_string()));
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
    }

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    #[tokio::test]
    async fn test_nousresearch_hermes3_llama31_8b_simple() {
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        let input = r#"<tool_call>
{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}
</tool_call>"#;
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        let (result, content) = detect_and_parse_tool_call(input, Some("hermes"))
            .await
            .unwrap();
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        assert_eq!(content, Some("".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
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        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
    async fn test_qwen_qwq_32b_multiple_tool_calls() {
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        let input = r#"<tool_call>
{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}
</tool_call>
<tool_call>
{"name": "get_weather", "arguments": {"location": "New York, NY", "unit": "fahrenheit"}}
</tool_call>
"#;
        let config = ToolCallConfig::hermes();
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        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
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        assert_eq!(content, Some("".to_string()));
        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
    async fn test_qwen_qwq_32b_multiple_tool_calls_with_normal_text() {
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        let input = r#"Hey How are you? <tool_call>
{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}
</tool_call>
<tool_call>
{"name": "get_weather", "arguments": {"location": "New York, NY", "unit": "fahrenheit"}}
</tool_call>
"#;
        let config = ToolCallConfig::hermes();
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        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
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        assert_eq!(content, Some("Hey How are you?".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
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    }

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    #[tokio::test]
    async fn test_qwen_qwq_32b_multiple_tool_calls_with_new_lines() {
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        let input = r#"<tool_call>
{"name": "get_weather",
"arguments": {"location": "San Francisco, CA",
"unit": "fahrenheit"}}
</tool_call>
<tool_call>
{"name": "get_weather", "arguments":
{"location": "New York, NY", "unit":
"fahrenheit"}}
</tool_call>
"#;
        let config = ToolCallConfig::hermes();
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        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
519
        assert_eq!(content, Some("".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
    }

532
    #[tokio::test]
533
    #[ignore]
534
    async fn test_ibm_granite_40_tiny_preview_simple() {
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        let input = r#"[{"arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}, "name": "get_weather"}]"#;
        let config = ToolCallConfig {
            format: ToolCallParserType::Json,
            json: JsonParserConfig {
                tool_call_start_tokens: vec![],
                tool_call_end_tokens: vec![],
                arguments_keys: vec!["arguments".to_string()],
                ..Default::default()
            },
        };
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        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
546
        assert_eq!(content, Some("".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
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        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
    async fn test_mistralai_mistral_7b_instruct_v03_simple() {
557
        let input = r#" [{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}]"#;
558
        let config = ToolCallConfig::mistral();
559
        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
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        assert_eq!(content, Some("".to_string()));
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
    async fn test_mistralai_mistral_7b_instruct_v03_simple_with_normal_text() {
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        let input = r#"Hey How are you? [{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}]"#;
        let config = ToolCallConfig::mistral();
573
        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
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        assert_eq!(content, Some("Hey How are you?".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
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        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
    async fn test_mistralai_mistral_7b_instruct_v03_simple_with_new_lines() {
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        let input = r#"
        [{"name": "get_weather",
        "arguments": {"location":
        "San Francisco, CA",
        "unit": "fahrenheit"}}]
        "#;
591
        let config = ToolCallConfig::mistral();
592
        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
593
        assert_eq!(content, Some("".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
    async fn test_mistralai_mistral_7b_instruct_v03_multiple() {
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        let input = r#" [{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}, {"name": "get_weather", "arguments": {"location": "New York, NY", "unit": "fahrenheit"}}]"#;
        let config = ToolCallConfig::mistral();
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        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
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        assert_eq!(content, Some("".to_string()));
        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
    async fn test_mistralai_mistral_7b_instruct_v03_multiple_with_normal_text() {
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        let input = r#"Hey How are you? [{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}, {"name": "get_weather", "arguments": {"location": "New York, NY", "unit": "fahrenheit"}}]"#;
        let config = ToolCallConfig::mistral();
624
        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
625
        assert_eq!(content, Some("Hey How are you?".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
    async fn test_mistralai_mistral_7b_instruct_v03_multiple_with_new_lines() {
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        let input = r#"
        [{"name": "get_weather",
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        "arguments": {"location":
        "San Francisco, CA",
        "unit": "fahrenheit"}},
        {"name": "get_weather", "arguments":
        {"location": "New York, NY", "unit":
        "fahrenheit"}}]
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        "#;
        let config = ToolCallConfig::mistral();
650
        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
651
        assert_eq!(content, Some("".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
    }

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665
    #[tokio::test]
    async fn test_mistralai_mistral_7b_instruct_v03_single_with_start_token() {
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        let input = r#"[TOOL_CALLS] [{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}]"#;
        let config = ToolCallConfig::mistral();
668
        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
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        assert_eq!(content, Some("".to_string()));
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

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679
    #[tokio::test]
    async fn test_mistralai_mistral_7b_instruct_v03_single_with_start_token_with_normal_text() {
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        let input = r#"Hey How are you? [TOOL_CALLS] [{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}]"#;
        let config = ToolCallConfig::mistral();
682
        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
683
        assert_eq!(content, Some("Hey How are you?".to_string()));
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        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
    async fn test_mistralai_mistral_7b_instruct_v03_single_with_start_tokenwith_new_lines() {
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        let input = r#"
        [TOOL_CALLS]
        [{"name": "get_weather",
        "arguments": {"location":
        "San Francisco, CA",
        "unit": "fahrenheit"}}]
        "#;
        let config = ToolCallConfig::mistral();
702
        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
703
        assert_eq!(content, Some("".to_string()));
704
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706
707
708
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710
711
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

712
713
    #[tokio::test]
    async fn test_mistralai_mistral_7b_instruct_v03_single_with_start_token_multiple() {
714
715
        let input = r#"[TOOL_CALLS] [{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}, {"name": "get_weather", "arguments": {"location": "New York, NY", "unit": "fahrenheit"}}]"#;
        let config = ToolCallConfig::mistral();
716
        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
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        assert_eq!(content, Some("".to_string()));
        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
    }

730
731
732
    #[tokio::test]
    async fn test_mistralai_mistral_7b_instruct_v03_single_with_start_token_multiple_with_normal_text()
     {
733
734
        let input = r#"Hey How are you? [TOOL_CALLS] [{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}, {"name": "get_weather", "arguments": {"location": "New York, NY", "unit": "fahrenheit"}}]"#;
        let config = ToolCallConfig::mistral();
735
        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
736
        assert_eq!(content, Some("Hey How are you?".to_string()));
737
738
739
740
741
742
743
744
745
746
747
748
        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
    }

749
750
751
    #[tokio::test]
    async fn test_mistralai_mistral_7b_instruct_v03_single_with_start_token_multiple_with_new_lines()
     {
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754
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756
757
758
759
760
761
762
        let input = r#"
        [TOOL_CALLS]
        [{"name": "get_weather",
        "arguments": {"location":
        "San Francisco, CA",
        "unit": "fahrenheit"}},
        {"name": "get_weather", "arguments":
        {"location": "New York, NY", "unit":
        "fahrenheit"}}]
        "#;
        let config = ToolCallConfig::mistral();
763
        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
764
        assert_eq!(content, Some("".to_string()));
765
766
767
768
769
770
771
772
773
774
775
776
        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
    }

777
778
    #[tokio::test]
    async fn test_meta_llama_llama31_8b_instruct_simple() {
779
        let input = r#"{"name": "get_weather", "parameters": {"location": "San Francisco, CA", "unit": "fahrenheit"}}"#;
780
781
782
        let (result, content) = try_tool_call_parse(input, &ToolCallConfig::mistral())
            .await
            .unwrap();
783
784
785
786
787
788
789
790
791
        assert_eq!(content, Some("".to_string()));
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

792
793
    #[tokio::test]
    async fn test_meta_llama_llama31_8b_instruct_simple_with_normal_text() {
794
        let input = r#"Hey How are you? {"name": "get_weather", "parameters": {"location": "San Francisco, CA", "unit": "fahrenheit"}}"#;
795
796
797
        let (result, content) = try_tool_call_parse(input, &ToolCallConfig::mistral())
            .await
            .unwrap();
798
        assert_eq!(content, Some("Hey How are you?".to_string()));
799
800
801
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
802
803
804
805
806
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

807
808
    #[tokio::test]
    async fn test_meta_llama_llama31_8b_instruct_with_new_lines() {
809
810
811
812
        let input = r#"
        {"name": "get_weather",
        "parameters": {"location": "San Francisco, CA", "unit": "fahrenheit"}}
        "#;
813
814
815
        let (result, content) = detect_and_parse_tool_call(input, Some("llama3_json"))
            .await
            .unwrap();
816
        assert_eq!(content, Some("".to_string()));
817
818
819
820
821
822
823
824
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

825
826
    #[tokio::test]
    async fn test_meta_llama_llama31_8b_instruct_with_python_tag() {
827
        let input = r#"<|python_tag|>{ "name": "get_weather", "parameters": {"location": "San Francisco, CA", "unit": "fahrenheit" } }"#;
828
829
830
        let (result, content) = detect_and_parse_tool_call(input, Some("llama3_json"))
            .await
            .unwrap();
831
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833
834
835
836
837
838
839
        assert_eq!(content, Some("".to_string()));
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

840
841
    #[tokio::test]
    async fn test_meta_llama_llama31_8b_instruct_with_python_tag_with_normal_text() {
842
        let input = r#"Hey How are you? <|python_tag|>{ "name": "get_weather", "parameters": {"location": "San Francisco, CA", "unit": "fahrenheit" } }"#;
843
844
845
        let (result, content) = detect_and_parse_tool_call(input, Some("llama3_json"))
            .await
            .unwrap();
846
        assert_eq!(content, Some("Hey How are you?".to_string()));
847
848
849
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
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852
853
854
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

855
856
    #[tokio::test]
    async fn test_meta_llama_llama31_8b_instruct_with_python_tag_with_new_lines() {
857
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859
860
        let input = r#"
        <|python_tag|>
        {"name": "get_weather", "parameters": {"location": "San Francisco, CA", "unit": "fahrenheit"}}
        "#;
861
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863
        let (result, content) = detect_and_parse_tool_call(input, Some("llama3_json"))
            .await
            .unwrap();
864
        assert_eq!(content, Some("".to_string()));
865
866
867
868
869
870
871
872
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

873
874
    #[tokio::test]
    async fn test_meta_llama_llama31_8b_instruct_with_python_tag_multiple_with_new_lines() {
875
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877
878
879
880
        let input = r#"
        <|python_tag|>
        {"name": "get_weather", "parameters": {"location": "San Francisco, CA", "unit": "fahrenheit" }}
        <|python_tag|>
        {"name": "get_weather", "parameters": {"location": "New York, NY", "unit": "fahrenheit" }}
        "#;
881
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883
        let (result, content) = detect_and_parse_tool_call(input, Some("llama3_json"))
            .await
            .unwrap();
884
        assert_eq!(content, Some("".to_string()));
885
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887
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889
890
891
892
893
894
895
896
        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
    }

897
898
    #[tokio::test]
    async fn test_detect_and_parse_tool_call_error_handling() {
899
900
        // Unknown parser string should return an error
        let input = r#"{"name": "get_weather", "arguments": {"location": "San Francisco, CA"}}"#;
901
        let result = detect_and_parse_tool_call(input, Some("unknown_parser")).await;
902
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904
905
906
907
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909
910
911
        assert!(result.is_err());
        let err = result.unwrap_err().to_string();
        assert!(
            err.contains("is not implemented"),
            "Unexpected error message: {}",
            err
        );

        // Known parser, but invalid input (not JSON) should return Ok(None)
        let input = "not a json";
912
913
914
        let (result, content) = detect_and_parse_tool_call(input, Some("hermes"))
            .await
            .unwrap();
915
916
        assert_eq!(content, Some("not a json".to_string()));
        assert!(result.is_empty());
917
918
919

        // Known parser, but valid JSON with wrong shape should return Ok(None)
        let input = r#"{"foo": "bar"}"#;
920
921
922
        let (result, content) = detect_and_parse_tool_call(input, Some("hermes"))
            .await
            .unwrap();
923
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        assert_eq!(content, Some(r#"{"foo": "bar"}"#.to_string()));
        assert!(result.is_empty());
925
926
    }

927
    #[tokio::test]
928
    #[ignore]
929
    async fn test_internlm_internlm2_5_7b_chat_simple() {
930
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        let input = r#"San Francisco's weather is known for its mild climate with plenty of fog, especially along the coast. Here's an overview of the weather in Fahrenheit:

- **Summer (June to August)**: Average highs range from the mid-60s to low 70s Fahrenheit, with cooler mornings and evenings. Coastal areas may be cooler than inland spots.

Remember, San Francisco weather can be quite unpredictable, particularly with its famous fog, which can significantly lower temperatures. Always check a local weather forecast for the most accurate and up-to-date information."#;
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        let (result, content) = try_tool_call_parse(input, &ToolCallConfig::default())
            .await
            .unwrap();
938
        assert_eq!(content, Some(input.to_string()));
939
        assert!(result.is_empty()); // This model doesn't produce tool calls
940
941
    }

942
    #[tokio::test]
943
    #[ignore]
944
    async fn test_ai21labs_ai21_jamba_15_mini_simple() {
945
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        let input = r#" [
    {"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}
]"#;
        let config = ToolCallConfig {
            format: ToolCallParserType::Json,
            json: JsonParserConfig {
                tool_call_start_tokens: vec![],
                tool_call_end_tokens: vec![],
                arguments_keys: vec!["arguments".to_string()],
                ..Default::default()
            },
        };
957
        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
958
        assert_eq!(content, Some("".to_string()));
959
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961
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
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        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

967
    #[tokio::test]
968
    #[ignore]
969
    async fn test_salesforce_llama_xlam_2_8b_fc_r_simple() {
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        let input = r#"[{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}]"#;
        let config = ToolCallConfig {
            format: ToolCallParserType::Json,
            json: JsonParserConfig {
                tool_call_start_tokens: vec![],
                tool_call_end_tokens: vec![],
                arguments_keys: vec!["arguments".to_string()],
                ..Default::default()
            },
        };
980
        let (result, content) = try_tool_call_parse(input, &config).await.unwrap();
981
        assert_eq!(content, Some("".to_string()));
982
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984
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
985
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        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }
989

990
991
    #[tokio::test]
    async fn test_detect_and_parse_tool_call_default_parser_nemotron_deci() {
992
        let input = r#"<TOOLCALL>[{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}]</TOOLCALL>"#;
993
        let (result, content) = detect_and_parse_tool_call(input, None).await.unwrap();
994
        assert_eq!(content, Some("".to_string()));
995
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997
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
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1002
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

1003
1004
    #[tokio::test]
    async fn test_detect_and_parse_tool_call_default_parser_nemotron_deci_multiple() {
1005
        let input = r#"<TOOLCALL>[{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}, {"name": "get_weather", "arguments": {"location": "New York, NY", "unit": "fahrenheit"}}]</TOOLCALL>"#;
1006
        let (result, content) = detect_and_parse_tool_call(input, None).await.unwrap();
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        assert_eq!(content, Some("".to_string()));
        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
    }

1020
1021
1022
    #[tokio::test]
    async fn test_detect_and_parse_tool_call_default_parser_nemotron_deci_multiple_with_normal_text()
     {
1023
        let input = r#"Hey How are you? <TOOLCALL>[{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit"}}, {"name": "get_weather", "arguments": {"location": "New York, NY", "unit": "fahrenheit"}}]</TOOLCALL>"#;
1024
        let (result, content) = detect_and_parse_tool_call(input, None).await.unwrap();
1025
        assert_eq!(content, Some("Hey How are you?".to_string()));
1026
1027
1028
1029
1030
1031
1032
1033
1034
1035
1036
1037
        assert!(!result.is_empty());
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York, NY");
        assert_eq!(args["unit"], "fahrenheit");
    }

1038
1039
    #[tokio::test]
    async fn test_detect_and_parse_tool_call_default_parser_llama3_json_with_python_tag() {
1040
        let input = r#"<|python_tag|>{ "name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit" } }"#;
1041
        let (result, content) = detect_and_parse_tool_call(input, None).await.unwrap();
1042
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1044
1045
1046
1047
1048
1049
1050
        assert_eq!(content, Some("".to_string()));
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

1051
1052
1053
    #[tokio::test]
    async fn test_detect_and_parse_tool_call_default_parser_llama3_json_with_python_tag_with_normal_text()
     {
1054
        let input = r#"Hey How are you? <|python_tag|>{ "name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit" } }"#;
1055
        let (result, content) = detect_and_parse_tool_call(input, None).await.unwrap();
1056
        assert_eq!(content, Some("Hey How are you?".to_string()));
1057
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1059
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
1060
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1062
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1064
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

1065
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1067
    #[tokio::test]
    async fn test_detect_and_parse_tool_call_default_parser_llama3_json_with_python_tag_with_new_lines()
     {
1068
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1071
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1073
1074
1075
        let input = r#"
        <|python_tag|>
        {"name":
        "get_weather",
         "arguments":
          {"location": "San Francisco, CA",
          "unit": "fahrenheit" }}
        "#;
1076
        let (result, content) = detect_and_parse_tool_call(input, None).await.unwrap();
1077
        assert_eq!(content, Some("".to_string()));
1078
1079
1080
1081
1082
1083
1084
1085
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

1086
1087
    #[tokio::test]
    async fn test_detect_and_parse_tool_call_default_parser_llama3_json_without_python_tag_multiple_with_new_lines()
1088
     {
1089
1090
1091
1092
1093
        let input = r#"
        {"name": "get_weather", "arguments":
         {"location": "San Francisco, CA",
          "unit": "fahrenheit" }}
        "#;
1094
        let (result, content) = detect_and_parse_tool_call(input, None).await.unwrap();
1095
        assert_eq!(content, Some("".to_string()));
1096
1097
1098
1099
1100
1101
1102
1103
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

1104
1105
    #[tokio::test]
    async fn test_detect_and_parse_tool_call_default_parser_llama3_json_without_python_tag() {
1106
        let input = r#"{ "name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit" } }"#;
1107
1108
1109
        let (result, content) = try_tool_call_parse(input, &ToolCallConfig::mistral())
            .await
            .unwrap();
1110
1111
1112
1113
1114
1115
1116
1117
1118
        assert_eq!(content, Some("".to_string()));
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }

1119
1120
    #[tokio::test]
    async fn test_detect_and_parse_tool_call_default_parser_llama3_json_without_python_tag_with_normal_text()
1121
1122
     {
        let input = r#"Hey How are you? { "name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "fahrenheit" } }"#;
1123
1124
1125
        let (result, content) = try_tool_call_parse(input, &ToolCallConfig::mistral())
            .await
            .unwrap();
1126
        assert_eq!(content, Some("Hey How are you?".to_string()));
1127
1128
1129
        assert!(!result.is_empty());
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
1130
1131
1132
1133
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "fahrenheit");
    }
1134

1135
1136
    #[tokio::test]
    async fn test_phi4_single_function_call() {
1137
1138
        let input =
            r#"functools[{"name": "get_country_capital", "arguments": {"country": "Poland"}}]"#;
1139
1140
1141
        let (result, content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
1142
1143
1144
1145
1146
1147
1148
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_country_capital");
        assert_eq!(args["country"], "Poland");
    }

1149
1150
    #[tokio::test]
    async fn test_phi4_single_function_call_with_normal_text() {
1151
        let input = r#"Hey How are you? functools[{"name": "get_country_capital", "arguments": {"country": "Poland"}}]"#;
1152
1153
1154
        let (result, content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
1155
        assert_eq!(content, Some("Hey How are you?".to_string()));
1156
1157
1158
1159
1160
1161
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_country_capital");
        assert_eq!(args["country"], "Poland");
    }

1162
1163
    #[tokio::test]
    async fn test_phi4_multiple_function_calls_simple_arguments() {
1164
1165
1166
1167
        let input = r#"functools[
  {"name": "get_country_capital", "arguments": {"country": "Poland"}},
  {"name": "get_population", "arguments": {"city": "Warsaw"}}
]"#;
1168
1169
1170
        let (result, content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
1171
1172
1173
1174
1175
1176
1177
1178
1179
1180
1181
1182
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 2);

        let (name1, args1) = extract_name_and_args(result[0].clone());
        assert_eq!(name1, "get_country_capital");
        assert_eq!(args1["country"], "Poland");

        let (name2, args2) = extract_name_and_args(result[1].clone());
        assert_eq!(name2, "get_population");
        assert_eq!(args2["city"], "Warsaw");
    }

1183
1184
    #[tokio::test]
    async fn test_phi4_multiple_function_calls_simple_arguments_with_normal_text() {
1185
1186
1187
1188
        let input = r#"Hey How are you? functools[
  {"name": "get_country_capital", "arguments": {"country": "Poland"}},
  {"name": "get_population", "arguments": {"city": "Warsaw"}}
]"#;
1189
1190
1191
        let (result, content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
1192
        assert_eq!(content, Some("Hey How are you?".to_string()));
1193
1194
1195
1196
1197
1198
1199
1200
1201
1202
1203
        assert_eq!(result.len(), 2);

        let (name1, args1) = extract_name_and_args(result[0].clone());
        assert_eq!(name1, "get_country_capital");
        assert_eq!(args1["country"], "Poland");

        let (name2, args2) = extract_name_and_args(result[1].clone());
        assert_eq!(name2, "get_population");
        assert_eq!(args2["city"], "Warsaw");
    }

1204
1205
    #[tokio::test]
    async fn test_phi4_single_function_call_nested_json_arguments() {
1206
1207
1208
        let input = r#"functools[{"name": "get_weather_forecast", "arguments":
        {"location": {"city": "San Francisco",
        "state": "CA"}, "date": "2023-10-05"}}]"#;
1209
1210
1211
        let (result, content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
1212
1213
1214
1215
1216
1217
1218
1219
1220
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather_forecast");
        assert_eq!(args["date"], "2023-10-05");
        assert_eq!(args["location"]["city"], "San Francisco");
        assert_eq!(args["location"]["state"], "CA");
    }

1221
1222
    #[tokio::test]
    async fn test_phi4_single_function_call_nested_json_arguments_with_normal_text() {
1223
1224
1225
        let input = r#"Hey How are you? functools[{"name": "get_weather_forecast", "arguments":
        {"location": {"city": "San Francisco",
        "state": "CA"}, "date": "2023-10-05"}}]"#;
1226
1227
1228
        let (result, content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
1229
        assert_eq!(content, Some("Hey How are you?".to_string()));
1230
1231
1232
1233
1234
1235
1236
1237
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather_forecast");
        assert_eq!(args["date"], "2023-10-05");
        assert_eq!(args["location"]["city"], "San Francisco");
        assert_eq!(args["location"]["state"], "CA");
    }

1238
1239
    #[tokio::test]
    async fn test_phi4_function_call_with_parameters_instead_of_arguments() {
1240
1241
        let input = r#"functools[{"name": "calculate_distance",
         "parameters": {"from": "New York", "to": "Los Angeles"}}]"#;
1242
1243
1244
        let (result, content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
1245
1246
1247
1248
1249
1250
1251
1252
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "calculate_distance");
        assert_eq!(args["from"], "New York");
        assert_eq!(args["to"], "Los Angeles");
    }

1253
1254
    #[tokio::test]
    async fn test_phi4_function_call_with_parameters_instead_of_arguments_with_normal_text() {
1255
1256
        let input = r#"Hey How are you? functools[{"name": "calculate_distance",
         "parameters": {"from": "New York", "to": "Los Angeles"}}]"#;
1257
1258
1259
        let (result, content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
1260
        assert_eq!(content, Some("Hey How are you?".to_string()));
1261
1262
1263
1264
1265
1266
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "calculate_distance");
        assert_eq!(args["from"], "New York");
        assert_eq!(args["to"], "Los Angeles");
    }
1267

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1447
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1450
1451
1452
1453
1454
1455
1456
1457
1458
    #[tokio::test]
    async fn test_phi4_token_leak_reproduction() {
        // Reproduce the issue where "functools" appears in content field
        // This might happen when there's malformed JSON or parsing issues
        let input = r#"functools{"name": "get_weather","arguments":{"location":"San Francisco"}}"#;
        let (result, content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
        // Content should be empty, not contain "functools"
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco");
    }

    #[tokio::test]
    async fn test_phi4_token_leak_edge_case() {
        // Test the case where only the token appears without JSON
        // This case is less critical but shouldn't leak the full token
        let input = r#"functools"#;
        let (result, _content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
        // Content may contain the token if no valid JSON follows, but shouldn't crash
        // The important thing is that no tool calls are returned
        assert_eq!(result.len(), 0); // No tool calls found
        // Content behavior is less critical for this edge case
    }

    #[tokio::test]
    async fn test_phi4_token_with_invalid_json() {
        // Test the case where token is followed by invalid JSON
        let input = r#"functools{invalid json}"#;
        let (result, content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
        // Content should be empty, not contain "functools" or leak the token
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 0); // No tool calls found due to invalid JSON
    }

    #[tokio::test]
    async fn test_phi4_streaming_partial_tokens() {
        // Test that our fix handles the actual streaming scenario described by the user
        // Where "fun", "ct", "ools" arrive as separate chunks

        // Test that "fun" is detected as a potential tool call start (for streaming jailing)
        let config = super::get_tool_parser_map().get("phi4").unwrap();

        // Test detection of partial tokens
        use super::super::json::detect_tool_call_start_json;
        assert!(
            detect_tool_call_start_json("fun", &config.json),
            "'fun' should be detected as potential start"
        );
        assert!(
            detect_tool_call_start_json("f", &config.json),
            "'f' should be detected as potential start"
        );
        assert!(
            detect_tool_call_start_json("func", &config.json),
            "'func' should be detected as potential start"
        );
        assert!(
            detect_tool_call_start_json("functo", &config.json),
            "'functo' should be detected as potential start"
        );

        // Test that unrelated text is not detected
        assert!(
            !detect_tool_call_start_json("hello", &config.json),
            "'hello' should not be detected"
        );
        assert!(
            !detect_tool_call_start_json("xyz", &config.json),
            "'xyz' should not be detected"
        );
    }

    #[tokio::test]
    async fn test_phi4_false_positive_words() {
        // Test that words like "funk" or text starting with "func" but not "functools"
        // are correctly treated as normal content, not tool calls

        let input = r#"funk music is great"#;
        let (result, content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
        // Should be treated as normal content, not tool call
        assert_eq!(
            result.len(),
            0,
            "No tool calls should be found in 'funk music is great'"
        );
        assert_eq!(
            content,
            Some("funk music is great".to_string()),
            "Content should contain the original text"
        );
    }

    #[tokio::test]
    async fn test_phi4_partial_but_complete_words() {
        // Test words that start with "func" but are not "functools"

        let input = r#"The function works well"#;
        let (result, content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
        assert_eq!(
            result.len(),
            0,
            "No tool calls should be found in 'The function works well'"
        );
        assert_eq!(content, Some("The function works well".to_string()));

        let input = r#"functional programming"#;
        let (result, content) = detect_and_parse_tool_call(input, Some("phi4"))
            .await
            .unwrap();
        assert_eq!(
            result.len(),
            0,
            "No tool calls should be found in 'functional programming'"
        );
        assert_eq!(content, Some("functional programming".to_string()));
    }

    #[tokio::test]
    async fn test_phi4_funk_variations() {
        // Test various "funk" related words to ensure they're not treated as tool calls

        let test_cases = vec![
            "funk",
            "funky",
            "funktion", // German word for function
            "funked",
            "I love funk music",
            "This is funky stuff",
        ];

        for test_input in test_cases {
            let (result, content) = detect_and_parse_tool_call(test_input, Some("phi4"))
                .await
                .unwrap();
            assert_eq!(
                result.len(),
                0,
                "No tool calls should be found in '{}'",
                test_input
            );
            assert_eq!(
                content,
                Some(test_input.to_string()),
                "Content should match input for '{}'",
                test_input
            );
        }
    }

    #[tokio::test]
    async fn test_phi4_func_but_not_functools() {
        // Test words starting with "func" that are complete words, not partial "functools"

        let test_cases = vec![
            "func()",  // Programming syntax
            "funcdef", // Python keyword variant
            "functions are useful",
            "functionally speaking",
        ];

        for test_input in test_cases {
            let (result, content) = detect_and_parse_tool_call(test_input, Some("phi4"))
                .await
                .unwrap();
            assert_eq!(
                result.len(),
                0,
                "No tool calls should be found in '{}'",
                test_input
            );
            assert_eq!(
                content,
                Some(test_input.to_string()),
                "Content should match input for '{}'",
                test_input
            );
        }
    }

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    #[tokio::test]
    async fn test_pythonic_parser_basic_with_constants() {
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        let input = r#"[get_weather(location="San Francisco", unit="fahrenheit"), get_weather(location="New York", unit="fahrenheit")]"#;
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        let (result, content) = detect_and_parse_tool_call(input, Some("pythonic"))
            .await
            .unwrap();
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        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York");
        assert_eq!(args["unit"], "fahrenheit");
    }

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    #[tokio::test]
1478
    #[ignore]
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    async fn test_pythonic_parser_with_constants_and_normal_text() {
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        let input = r#"Hey How are you? [get_weather(location="San Francisco", unit="fahrenheit"), get_weather(location="New York", unit="fahrenheit")]"#;
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        let (result, content) = detect_and_parse_tool_call(input, Some("pythonic"))
            .await
            .unwrap();
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        assert_eq!(content, Some("Hey How are you?".to_string()));
        assert_eq!(result.len(), 2);

        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco");
        assert_eq!(args["unit"], "fahrenheit");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "New York");
        assert_eq!(args["unit"], "fahrenheit");
    }
1496

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    #[tokio::test]
    async fn test_harmony_parser_basic() {
1499
        let input = r#"
1500
        <|channel|>analysis<|message|>Need to use function get_current_weather.<|end|><|start|>assistant<|channel|>commentary to=functions.get_current_weather <|constrain|>json<|message|>{"location":"San Francisco", "unit":"fahrenheit"}"#;
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        let (result, content) = detect_and_parse_tool_call(input, Some("harmony"))
            .await
            .unwrap();
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        assert_eq!(
            content,
            Some("Need to use function get_current_weather.".to_string())
        );
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_current_weather");
        assert_eq!(args["location"], "San Francisco");
        assert_eq!(args["unit"], "fahrenheit");
    }
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    #[tokio::test]
    async fn test_deepseek_v3_parser_basic() {
        let input = r#"<|tool▁calls▁begin|><|tool▁call▁begin|>function<|tool▁sep|>get_current_weather
```json
{"location": "Tokyo"}
```<|tool▁call▁end|><|tool▁call▁begin|>function<|tool▁sep|>get_current_weather
```json
{"location": "Paris"}
```<|tool▁call▁end|><|tool▁calls▁end|><|end▁of▁sentence|>"#;
        let (result, content) = detect_and_parse_tool_call(input, Some("deepseek_v3"))
            .await
            .unwrap();
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_current_weather");
        assert_eq!(args["location"], "Tokyo");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_current_weather");
        assert_eq!(args["location"], "Paris");
    }

1537
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    #[tokio::test]
    async fn test_deepseek_v3_1_parser_basic() {
1539
        let input = r#"<|tool▁calls▁begin|><|tool▁call▁begin|>get_current_weather<|tool▁sep|>{"location": "Tokyo"}<|tool▁call▁end|><|tool▁call▁begin|>get_current_weather<|tool▁sep|>{"location": "Paris"}<|tool▁call▁end|><|tool▁calls▁end|><|end▁of▁sentence|>"#;
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        let (result, content) = detect_and_parse_tool_call(input, Some("deepseek_v3_1"))
            .await
            .unwrap();
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        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 2);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_current_weather");
        assert_eq!(args["location"], "Tokyo");
        let (name, args) = extract_name_and_args(result[1].clone());
        assert_eq!(name, "get_current_weather");
        assert_eq!(args["location"], "Paris");
    }
1552

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    #[tokio::test]
    async fn test_hermes_parser_without_new_line() {
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        let input = r#"<tool_call>{"name": "get_weather", "arguments": {"location": "San Francisco, CA", "unit": "celsius"}}</tool_call>"
        "#;
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        let (result, content) = detect_and_parse_tool_call(input, Some("hermes"))
            .await
            .unwrap();
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        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_weather");
        assert_eq!(args["location"], "San Francisco, CA");
        assert_eq!(args["unit"], "celsius");
    }
1567
}
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// Comprehensive parallel tool calling tests based on the examples provided
#[cfg(test)]
mod parallel_tool_calling_tests {
    use super::*;

    fn extract_name_and_args(call: ToolCallResponse) -> (String, serde_json::Value) {
        let args: serde_json::Value = serde_json::from_str(&call.function.arguments).unwrap();
        (call.function.name, args)
    }

    /// Helper function to validate parallel tool call results for weather queries
    fn validate_weather_tool_calls(result: &[ToolCallResponse], expected_cities: &[(&str, &str)]) {
        assert_eq!(
            result.len(),
            expected_cities.len(),
            "Expected {} tool calls, got {}",
            expected_cities.len(),
            result.len()
        );

        for (i, (expected_city, expected_state)) in expected_cities.iter().enumerate() {
            let (name, args) = extract_name_and_args(result[i].clone());
            assert_eq!(
                name, "get_current_weather",
                "Tool call {} should be get_current_weather",
                i
            );
            assert_eq!(
                args["city"], *expected_city,
                "Tool call {} city should be {}",
                i, expected_city
            );
            assert_eq!(
                args["state"], *expected_state,
                "Tool call {} state should be {}",
                i, expected_state
            );
            assert_eq!(
                args["unit"], "fahrenheit",
                "Tool call {} unit should be fahrenheit",
                i
            );

            // Validate tool call ID format (should be at least 9 characters)
            assert!(
                result[i].id.len() >= 9,
                "Tool call {} ID should be at least 9 characters",
                i
            );

            // Validate tool call type
            assert_eq!(
                result[i].tp,
                crate::tool_calling::response::ToolCallType::Function,
                "Tool call {} type should be 'function'",
                i
            );
        }
    }

    // =============================================================================
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    // 1. NEMOTRON/DECI TOOL PARSER FORMAT (JSON Array in XML tags)
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    // =============================================================================

    #[tokio::test]
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    async fn test_parallel_nemotron_format_two_cities() {
        let input = r#" <TOOLCALL>[
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    {"name": "get_current_weather", "arguments": {"city": "Dallas", "state": "TX", "unit": "fahrenheit"}},
    {"name": "get_current_weather", "arguments": {"city": "Orlando", "state": "FL", "unit": "fahrenheit"}}
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]</TOOLCALL>"#;
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        let (result, content) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(content, Some("".to_string()));
        validate_weather_tool_calls(&result, &[("Dallas", "TX"), ("Orlando", "FL")]);
    }

    #[tokio::test]
1649
    async fn test_parallel_nemotron_format_three_cities() {
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        let input = r#"<TOOLCALL>[
    {"name": "get_current_weather", "arguments": {"city": "Dallas", "state": "TX", "unit": "fahrenheit"}},
    {"name": "get_current_weather", "arguments": {"city": "Orlando", "state": "FL", "unit": "fahrenheit"}},
    {"name": "get_current_weather", "arguments": {"city": "Seattle", "state": "WA", "unit": "fahrenheit"}}
]</TOOLCALL>"#;

        let (result, content) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(content, Some("".to_string()));
        validate_weather_tool_calls(
            &result,
            &[("Dallas", "TX"), ("Orlando", "FL"), ("Seattle", "WA")],
        );
    }

    #[tokio::test]
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    async fn test_parallel_nemotron_format_with_normal_text() {
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        let input = r#"I'll help you get the weather for both cities. <TOOLCALL>[
    {"name": "get_current_weather", "arguments": {"city": "Dallas", "state": "TX", "unit": "fahrenheit"}},
    {"name": "get_current_weather", "arguments": {"city": "Orlando", "state": "FL", "unit": "fahrenheit"}}
]</TOOLCALL>"#;

        let (result, content) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(
            content,
            Some("I'll help you get the weather for both cities.".to_string())
        );
        validate_weather_tool_calls(&result, &[("Dallas", "TX"), ("Orlando", "FL")]);
    }

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    // =================================================
    // 2. QWEN3CODER TOOL PARSER FORMAT (XML-style tags)
    // =================================================
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    #[tokio::test]
    async fn test_parallel_qwen3coder_format_two_cities() {
1691
        let input = r#"<tool_call>
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<function=get_current_weather>
<parameter=city>
Dallas
</parameter>
<parameter=state>
TX
</parameter>
<parameter=unit>
fahrenheit
</parameter>
</function>
</tool_call>
<tool_call>
<function=get_current_weather>
<parameter=city>
Orlando
</parameter>
<parameter=state>
FL
</parameter>
<parameter=unit>
fahrenheit
</parameter>
</function>
</tool_call>"#;

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        let (result, content) = detect_and_parse_tool_call(input, Some("qwen3_coder"))
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            .await
            .unwrap();

        assert_eq!(content, Some("".to_string()));
        validate_weather_tool_calls(&result, &[("Dallas", "TX"), ("Orlando", "FL")]);
    }

    // =============================================================================
    // 3. xLAM TOOL PARSER FORMAT (Pure JSON Array) - Testing via mistral parser
    // =============================================================================

    #[tokio::test]
    async fn test_parallel_xlam_format_pure_json() {
        let input = r#"[{"name": "get_current_weather", "arguments": {"city": "Dallas", "state": "TX", "unit": "fahrenheit"}}, {"name": "get_current_weather", "arguments": {"city": "Orlando", "state": "FL", "unit": "fahrenheit"}}]"#;

        let (result, content) = detect_and_parse_tool_call(input, Some("mistral"))
            .await
            .unwrap();

        assert_eq!(content, Some("".to_string()));
        validate_weather_tool_calls(&result, &[("Dallas", "TX"), ("Orlando", "FL")]);
    }

    #[tokio::test]
    async fn test_parallel_xlam_format_with_whitespace() {
        let input = r#"[
    {"name": "get_current_weather", "arguments": {"city": "Dallas", "state": "TX", "unit": "fahrenheit"}},
    {"name": "get_current_weather", "arguments": {"city": "Orlando", "state": "FL", "unit": "fahrenheit"}}
]"#;

        let (result, content) = detect_and_parse_tool_call(input, Some("mistral"))
            .await
            .unwrap();

        assert_eq!(content, Some("".to_string()));
        validate_weather_tool_calls(&result, &[("Dallas", "TX"), ("Orlando", "FL")]);
    }

    // =============================================================================
    // 4. MINIMAX TOOL PARSER FORMAT (Multi-line JSON in XML tags)
    // =============================================================================

    #[tokio::test]
    async fn test_parallel_minimax_format() {
        let _input = r#"<tool_calls>
{"name": "get_current_weather", "arguments": {"city": "Dallas", "state": "TX", "unit": "fahrenheit"}}
{"name": "get_current_weather", "arguments": {"city": "Orlando", "state": "FL", "unit": "fahrenheit"}}
</tool_calls>"#;

        // This would need a specialized parser, but we can test with a modified hermes approach
        // For now, test with nemotron_deci which handles similar XML wrapping
        let input_nemotron_format = r#"<TOOLCALL>[
{"name": "get_current_weather", "arguments": {"city": "Dallas", "state": "TX", "unit": "fahrenheit"}},
{"name": "get_current_weather", "arguments": {"city": "Orlando", "state": "FL", "unit": "fahrenheit"}}
]</TOOLCALL>"#;

        let (result, content) =
            detect_and_parse_tool_call(input_nemotron_format, Some("nemotron_deci"))
                .await
                .unwrap();

        assert_eq!(content, Some("".to_string()));
        validate_weather_tool_calls(&result, &[("Dallas", "TX"), ("Orlando", "FL")]);
    }

    // =============================================================================
    // 5. HARMONY TOOL PARSER FORMAT (Multiple Tool Calls with Harmony Encoding)
    // =============================================================================

    #[tokio::test]
    async fn test_parallel_harmony_format_multiple_tools() {
        // Test with harmony parser for multiple tool calls
1791
        let input = r#"<|channel|>commentary to=functions.get_current_weather <|constrain|>json<|message|>{"city": "Dallas", "state": "TX", "unit": "fahrenheit"}<|call|><|start|>assistant<|channel|>commentary to=functions.get_current_weather <|constrain|>json<|message|>{"city": "Orlando", "state": "FL", "unit": "fahrenheit"}<|call|>"#;
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        let (result, _content) = detect_and_parse_tool_call(input, Some("harmony"))
            .await
            .unwrap();

        // Harmony parser might handle this differently, so we check for at least one tool call
        assert!(!result.is_empty(), "Should parse at least one tool call");

        // Validate first tool call
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_current_weather");
        assert!(args.get("city").is_some() || args.get("location").is_some());
    }

    // =============================================================================
    // 6. MIXED TOOL TYPES PARALLEL CALLING
    // =============================================================================

    #[tokio::test]
    async fn test_parallel_mixed_tool_types() {
        let input = r#"<TOOLCALL>[
    {"name": "get_current_weather", "arguments": {"city": "Dallas", "state": "TX", "unit": "fahrenheit"}},
    {"name": "web_search", "arguments": {"query": "Orlando Florida attractions", "max_results": 5}}
]</TOOLCALL>"#;

        let (result, content) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 2);

        // Validate first tool call (weather)
        let (name1, args1) = extract_name_and_args(result[0].clone());
        assert_eq!(name1, "get_current_weather");
        assert_eq!(args1["city"], "Dallas");
        assert_eq!(args1["state"], "TX");
        assert_eq!(args1["unit"], "fahrenheit");

        // Validate second tool call (web search)
        let (name2, args2) = extract_name_and_args(result[1].clone());
        assert_eq!(name2, "web_search");
        assert_eq!(args2["query"], "Orlando Florida attractions");
        assert_eq!(args2["max_results"], 5);
    }

    // =============================================================================
    // 7. EDGE CASES AND ERROR HANDLING
    // =============================================================================

    #[tokio::test]
    async fn test_parallel_malformed_second_call() {
        let input = r#"<TOOLCALL>[
    {"name": "get_current_weather", "arguments": {"city": "Dallas", "state": "TX", "unit": "fahrenheit"}},
    {"name": "get_current_weather", "arguments": {"city": "Orlando", "invalid_field": 123}}
]</TOOLCALL>"#;

        let (result, _content) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        // Should still parse the valid first call
        assert!(
            !result.is_empty(),
            "Should parse at least the valid tool call"
        );

        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_current_weather");
        assert_eq!(args["city"], "Dallas");
    }

    #[tokio::test]
    async fn test_parallel_empty_array() {
        let input = r#"<TOOLCALL>[]</TOOLCALL>"#;

        let (result, content) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(
            result.len(),
            0,
            "Empty array should result in no tool calls"
        );
        assert_eq!(content, Some("".to_string()));
    }

    #[tokio::test]
    async fn test_parallel_single_call_in_array() {
        let input = r#"<TOOLCALL>[
    {"name": "get_current_weather", "arguments": {"city": "Dallas", "state": "TX", "unit": "fahrenheit"}}
]</TOOLCALL>"#;

        let (result, content) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 1);
        validate_weather_tool_calls(&result, &[("Dallas", "TX")]);
    }

    // =============================================================================
    // 8. LARGE SCALE PARALLEL CALLS
    // =============================================================================

    #[tokio::test]
    async fn test_parallel_five_cities() {
        let input = r#"<TOOLCALL>[
    {"name": "get_current_weather", "arguments": {"city": "Dallas", "state": "TX", "unit": "fahrenheit"}},
    {"name": "get_current_weather", "arguments": {"city": "Orlando", "state": "FL", "unit": "fahrenheit"}},
    {"name": "get_current_weather", "arguments": {"city": "Seattle", "state": "WA", "unit": "fahrenheit"}},
    {"name": "get_current_weather", "arguments": {"city": "Denver", "state": "CO", "unit": "fahrenheit"}},
    {"name": "get_current_weather", "arguments": {"city": "Miami", "state": "FL", "unit": "fahrenheit"}}
]</TOOLCALL>"#;

        let (result, content) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(content, Some("".to_string()));
        validate_weather_tool_calls(
            &result,
            &[
                ("Dallas", "TX"),
                ("Orlando", "FL"),
                ("Seattle", "WA"),
                ("Denver", "CO"),
                ("Miami", "FL"),
            ],
        );
    }

    // =============================================================================
    // 9. COMPLEX ARGUMENTS PARALLEL CALLS
    // =============================================================================

    #[tokio::test]
    async fn test_parallel_complex_arguments() {
        let input = r#"<TOOLCALL>[
    {
        "name": "get_weather_forecast",
        "arguments": {
            "location": {"city": "Dallas", "state": "TX", "country": "USA"},
            "days": 7,
            "units": "fahrenheit",
            "include_hourly": true,
            "alerts": ["severe_weather", "temperature_extreme"]
        }
    },
    {
        "name": "get_air_quality",
        "arguments": {
            "coordinates": {"lat": 32.7767, "lon": -96.7970},
            "metrics": ["pm2.5", "pm10", "ozone", "no2"],
            "radius_km": 50
        }
    }
]</TOOLCALL>"#;

        let (result, content) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 2);

        // Validate first tool call (weather forecast)
        let (name1, args1) = extract_name_and_args(result[0].clone());
        assert_eq!(name1, "get_weather_forecast");
        assert_eq!(args1["location"]["city"], "Dallas");
        assert_eq!(args1["days"], 7);
        assert_eq!(args1["include_hourly"], true);

        // Validate second tool call (air quality)
        let (name2, args2) = extract_name_and_args(result[1].clone());
        assert_eq!(name2, "get_air_quality");
        assert_eq!(args2["coordinates"]["lat"], 32.7767);
        assert_eq!(args2["radius_km"], 50);
    }

    // =============================================================================
    // 10. VALIDATION HELPERS AND UTILITIES
    // =============================================================================

    /// Helper function to validate tool call IDs are unique and properly formatted
    fn validate_tool_call_ids(result: &[ToolCallResponse]) {
        let mut ids = std::collections::HashSet::new();
        for (i, tool_call) in result.iter().enumerate() {
            assert!(
                tool_call.id.len() >= 9,
                "Tool call {} ID '{}' should be at least 9 characters",
                i,
                tool_call.id
            );

            assert!(
                ids.insert(&tool_call.id),
                "Tool call {} ID '{}' is not unique",
                i,
                tool_call.id
            );
        }
    }

    /// Helper function to validate tool call structure and OpenAI compatibility
    fn validate_openai_compatibility(result: &[ToolCallResponse]) {
        for (i, tool_call) in result.iter().enumerate() {
            // Validate type is "function"
            assert_eq!(
                tool_call.tp,
                crate::tool_calling::response::ToolCallType::Function,
                "Tool call {} type should be 'function', got '{:?}'",
                i,
                tool_call.tp
            );

            // Validate function name is not empty
            assert!(
                !tool_call.function.name.is_empty(),
                "Tool call {} function name should not be empty",
                i
            );

            // Validate arguments are valid JSON
            let _: serde_json::Value = serde_json::from_str(&tool_call.function.arguments)
                .unwrap_or_else(|_| panic!("Tool call {} arguments should be valid JSON", i));
        }
    }

    #[tokio::test]
    async fn test_parallel_tool_call_id_uniqueness() {
        let input = r#"<TOOLCALL>[
    {"name": "get_current_weather", "arguments": {"city": "Dallas", "state": "TX", "unit": "fahrenheit"}},
    {"name": "get_current_weather", "arguments": {"city": "Orlando", "state": "FL", "unit": "fahrenheit"}},
    {"name": "web_search", "arguments": {"query": "weather forecast", "max_results": 3}}
]</TOOLCALL>"#;

        let (result, _) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(result.len(), 3);
        validate_tool_call_ids(&result);
        validate_openai_compatibility(&result);
    }

    #[tokio::test]
    async fn test_parallel_openai_compatibility_validation() {
        let input = r#"[TOOL_CALLS][
    {"name": "function_one", "arguments": {"param1": "value1", "param2": 42}},
    {"name": "function_two", "arguments": {"param3": true, "param4": [1, 2, 3]}},
    {"name": "function_three", "arguments": {"param5": {"nested": "object"}}}
][/TOOL_CALLS]"#;

        let (result, _) = detect_and_parse_tool_call(input, Some("mistral"))
            .await
            .unwrap();

        assert_eq!(result.len(), 3);
        validate_openai_compatibility(&result);

        // Verify all functions have different names
        let names: std::collections::HashSet<_> =
            result.iter().map(|tc| &tc.function.name).collect();
        assert_eq!(names.len(), 3, "All function names should be unique");
    }

    // =============================================================================
    // 11. PERFORMANCE AND STRESS TESTS
    // =============================================================================

    #[tokio::test]
    async fn test_parallel_performance_many_small_calls() {
        let mut tool_calls = Vec::new();
        for i in 0..20 {
            tool_calls.push(format!(
                r#"{{"name": "get_data_{}", "arguments": {{"id": {}, "type": "test"}}}}"#,
                i, i
            ));
        }

        let input = format!("<TOOLCALL>[{}]</TOOLCALL>", tool_calls.join(","));

        let start = std::time::Instant::now();
        let (result, _) = detect_and_parse_tool_call(&input, Some("nemotron_deci"))
            .await
            .unwrap();
        let duration = start.elapsed();

        assert_eq!(result.len(), 20);
        assert!(
            duration < std::time::Duration::from_millis(100),
            "Parsing 20 tool calls should take less than 100ms, took {:?}",
            duration
        );

        validate_tool_call_ids(&result);
        validate_openai_compatibility(&result);
    }

    #[tokio::test]
    async fn test_parallel_large_arguments() {
        let large_data = "x".repeat(1000); // 1KB of data
        let input = format!(
            r#"<TOOLCALL>[
    {{"name": "process_large_data", "arguments": {{"data": "{}", "size": 1000}}}},
    {{"name": "backup_data", "arguments": {{"backup_data": "{}", "timestamp": "2024-01-01T00:00:00Z"}}}}
]</TOOLCALL>"#,
            large_data, large_data
        );

        let (result, _) = detect_and_parse_tool_call(&input, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(result.len(), 2);

        // Validate large arguments are preserved
        for tool_call in &result {
            let args: serde_json::Value =
                serde_json::from_str(&tool_call.function.arguments).unwrap();
            if tool_call.function.name == "process_large_data" {
                assert_eq!(args["data"].as_str().unwrap().len(), 1000);
                assert_eq!(args["size"], 1000);
            }
        }
    }

    // =============================================================================
    // 12. ADDITIONAL EDGE CASES AND ERROR SCENARIOS
    // =============================================================================

    #[tokio::test]
    async fn test_parallel_unicode_and_special_characters() {
        let input = r#"<TOOLCALL>[
    {"name": "translate_text", "arguments": {"text": "Hello 世界! 🌍", "from": "en", "to": "zh"}},
    {"name": "analyze_emoji", "arguments": {"emoji": "🚀💫⭐", "context": "space exploration"}},
    {"name": "process_unicode", "arguments": {"data": "café naïve résumé", "encoding": "utf-8"}}
]</TOOLCALL>"#;

        let (result, _) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(result.len(), 3);

        // Validate Unicode characters are preserved
        let (name1, args1) = extract_name_and_args(result[0].clone());
        assert_eq!(name1, "translate_text");
        assert_eq!(args1["text"], "Hello 世界! 🌍");

        let (name2, args2) = extract_name_and_args(result[1].clone());
        assert_eq!(name2, "analyze_emoji");
        assert_eq!(args2["emoji"], "🚀💫⭐");

        let (name3, args3) = extract_name_and_args(result[2].clone());
        assert_eq!(name3, "process_unicode");
        assert_eq!(args3["data"], "café naïve résumé");
    }

    #[tokio::test]
    async fn test_parallel_json_escaping_and_quotes() {
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        // Test that complex JSON with escaping doesn't crash the parser
        // We don't validate the exact escaped content, just that parsing succeeds
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        let input = r#"<TOOLCALL>[
    {"name": "process_json", "arguments": {"json_string": "{\"key\": \"value with \\\"quotes\\\"\"}", "format": "strict"}},
    {"name": "handle_paths", "arguments": {"windows_path": "C:\\Users\\Test\\Documents\\file.txt", "unix_path": "/home/user/file.txt"}},
    {"name": "regex_pattern", "arguments": {"pattern": "\\d{3}-\\d{3}-\\d{4}", "test_string": "Phone: 123-456-7890"}}
]</TOOLCALL>"#;

        let (result, _) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

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        // Just verify parsing succeeds and we get the expected number of tool calls
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        assert_eq!(result.len(), 3);

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        // Verify function names are correct
        let (name1, _args1) = extract_name_and_args(result[0].clone());
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        assert_eq!(name1, "process_json");

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        let (name2, _args2) = extract_name_and_args(result[1].clone());
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        assert_eq!(name2, "handle_paths");

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        let (name3, _args3) = extract_name_and_args(result[2].clone());
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        assert_eq!(name3, "regex_pattern");
    }

    #[tokio::test]
    async fn test_parallel_mixed_argument_types() {
        let input = r#"<TOOLCALL>[
    {"name": "type_test", "arguments": {"string": "text", "number": 42, "float": 2.718281828459045, "boolean": true, "null_value": null}},
    {"name": "array_test", "arguments": {"empty_array": [], "string_array": ["a", "b", "c"], "mixed_array": [1, "two", true, null]}},
    {"name": "object_test", "arguments": {"empty_object": {}, "nested": {"level1": {"level2": {"value": "deep"}}}}}
]</TOOLCALL>"#;

        let (result, _) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(result.len(), 3);

        // Validate different argument types are preserved
        let (name1, args1) = extract_name_and_args(result[0].clone());
        assert_eq!(name1, "type_test");
        assert_eq!(args1["string"], "text");
        assert_eq!(args1["number"], 42);
        assert_eq!(args1["float"], std::f64::consts::E);
        assert_eq!(args1["boolean"], true);
        assert!(args1["null_value"].is_null());

        let (name2, args2) = extract_name_and_args(result[1].clone());
        assert_eq!(name2, "array_test");
        assert!(args2["empty_array"].is_array());
        assert_eq!(args2["empty_array"].as_array().unwrap().len(), 0);
        assert_eq!(args2["string_array"].as_array().unwrap().len(), 3);
        assert_eq!(args2["mixed_array"].as_array().unwrap().len(), 4);

        let (name3, args3) = extract_name_and_args(result[2].clone());
        assert_eq!(name3, "object_test");
        assert!(args3["empty_object"].is_object());
        assert_eq!(args3["nested"]["level1"]["level2"]["value"], "deep");
    }

    #[tokio::test]
    async fn test_parallel_whitespace_variations() {
        // Test with various whitespace patterns
        let input = r#"<TOOLCALL>[
    {
        "name": "spaced_function",
        "arguments": {
            "param1": "value1",
            "param2": "value2"
        }
    },
    {"name":"compact_function","arguments":{"param":"value"}},
    {
      "name"  :  "weird_spacing",
      "arguments"  :  {
        "key"  :  "value"
      }
    }
]</TOOLCALL>"#;

        let (result, _) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(result.len(), 3);
        validate_openai_compatibility(&result);

        // All should parse correctly despite different whitespace
        let names: Vec<_> = result.iter().map(|tc| &tc.function.name).collect();
        assert!(names.contains(&&"spaced_function".to_string()));
        assert!(names.contains(&&"compact_function".to_string()));
        assert!(names.contains(&&"weird_spacing".to_string()));
    }

    #[tokio::test]
    async fn test_parallel_cross_parser_compatibility() {
        // Test the same parallel tool calls across different parsers
        let base_calls = r#"[
    {"name": "get_weather", "arguments": {"city": "Dallas", "unit": "fahrenheit"}},
    {"name": "get_weather", "arguments": {"city": "Orlando", "unit": "fahrenheit"}}
]"#;

        // Test with different parser formats
        let test_cases = vec![
            (
                format!("<TOOLCALL>{}</TOOLCALL>", base_calls),
                "nemotron_deci",
            ),
            (
                format!("[TOOL_CALLS]{}[/TOOL_CALLS]", base_calls),
                "mistral",
            ),
            (base_calls.to_string(), "mistral"), // Raw JSON
        ];

        for (input, parser) in test_cases {
            let (result, _) = detect_and_parse_tool_call(&input, Some(parser))
                .await
                .unwrap_or_else(|e| panic!("Failed to parse with {}: {}", parser, e));
            assert_eq!(
                result.len(),
                2,
                "Parser {} should produce 2 tool calls",
                parser
            );

            for tool_call in &result {
                assert_eq!(tool_call.function.name, "get_weather");
                let args: serde_json::Value =
                    serde_json::from_str(&tool_call.function.arguments).unwrap();
                assert!(args["city"].is_string());
                assert_eq!(args["unit"], "fahrenheit");
            }
        }
    }

    #[tokio::test]
    async fn test_parallel_boundary_conditions() {
        // Test with exactly 1 tool call in array (boundary between single and parallel)
        let input_single = r#"<TOOLCALL>[
    {"name": "single_call", "arguments": {"test": true}}
]</TOOLCALL>"#;

        let (result, _) = detect_and_parse_tool_call(input_single, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(result.len(), 1);
        assert_eq!(result[0].function.name, "single_call");

        // Test with maximum reasonable number of parallel calls
        let mut many_calls = Vec::new();
        for i in 0..50 {
            many_calls.push(format!(
                r#"{{"name": "call_{}", "arguments": {{"index": {}}}}}"#,
                i, i
            ));
        }

        let input_many = format!("<TOOLCALL>[{}]</TOOLCALL>", many_calls.join(","));

        let (result, _) = detect_and_parse_tool_call(&input_many, Some("nemotron_deci"))
            .await
            .unwrap();

        assert_eq!(result.len(), 50);
        validate_tool_call_ids(&result);

        // Verify all calls are present and correctly indexed
        for (i, tool_call) in result.iter().enumerate() {
            assert_eq!(tool_call.function.name, format!("call_{}", i));
            let args: serde_json::Value =
                serde_json::from_str(&tool_call.function.arguments).unwrap();
            assert_eq!(args["index"], i);
        }
    }

    #[tokio::test]
    async fn test_parallel_malformed_recovery() {
        // Test parser's ability to recover from malformed entries
        let input = r#"<TOOLCALL>[
    {"name": "good_call_1", "arguments": {"param": "value1"}},
    {"malformed": "missing_name_and_arguments"},
    {"name": "good_call_2", "arguments": {"param": "value2"}},
    {"name": "missing_args"},
    {"name": "good_call_3", "arguments": {"param": "value3"}},
    "completely_invalid_json",
    {"name": "good_call_4", "arguments": {"param": "value4"}}
]</TOOLCALL>"#;

        let (result, _) = detect_and_parse_tool_call(input, Some("nemotron_deci"))
            .await
            .unwrap();

        // Should recover and parse the valid entries
        assert!(
            !result.is_empty(),
            "Should parse at least some valid tool calls"
        );

        // Count valid tool calls that were successfully parsed
        let valid_calls: Vec<_> = result
            .iter()
            .filter(|tc| tc.function.name.starts_with("good_call"))
            .collect();

        assert!(
            valid_calls.len() >= 2,
            "Should parse at least 2 valid tool calls"
        );

        // Verify the valid ones are correct
        for tool_call in valid_calls {
            assert!(tool_call.function.name.starts_with("good_call"));
            let args: serde_json::Value =
                serde_json::from_str(&tool_call.function.arguments).unwrap();
            assert!(args["param"].is_string());
        }
    }
}

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#[cfg(test)]
// Just e2e tests to test the flow. Detailed tests are covered in the individual parsers
mod detect_parser_tests {
    use super::*;

    #[test]
    fn test_e2e_detect_tool_call_start_harmony() {
        let text = r#"<|start|>assistant<|channel|>commentary to=functions.get_current_weather <|constrain|>json"#;
        let result = detect_tool_call_start(text, Some("harmony")).unwrap();
        assert!(result);
    }

    #[test]
    fn test_e2e_detect_tool_call_start_hermes() {
        let text = r#"{"name": "get_current_weather", "parameters": {"location": "Tokyo"}}"#;
        let result = detect_tool_call_start(text, Some("hermes")).unwrap();
        assert!(result);
    }

    #[test]
    fn test_e2e_detect_tool_call_start_pythonic() {
        let text = r#"foo(a=1, b=2), bar(x=3)]"#;
        let result = detect_tool_call_start(text, Some("pythonic")).unwrap();
        assert!(!result);
    }

    #[test]
    fn test_e2e_detect_tool_call_start_nemotron_deci() {
        let text = r#"<TOOLCALL>[{"name": "get_current_weather", "parameters": {"location": "Tokyo"}}]</TOOLCALL>"#;
        let result = detect_tool_call_start(text, Some("nemotron_deci")).unwrap();
        assert!(result);
    }

    #[test]
    fn test_e2e_detect_tool_call_start_phi4() {
        let text =
            r#"functools{"name": "get_current_weather", "parameters": {"location": "Tokyo"}}"#;
        let result = detect_tool_call_start(text, Some("phi4")).unwrap();
        assert!(result);
    }

    #[test]
    fn test_e2e_detect_tool_call_start_llama3_json() {
        let text = r#"<|python_tag|>{ "name": "get_current_weather", "parameters": {"location": "Tokyo"}}"#;
        let result = detect_tool_call_start(text, Some("llama3_json")).unwrap();
        assert!(result);
    }

    #[test]
    fn test_e2e_detect_tool_call_start_mistral() {
        let text =
            r#"[TOOL_CALLS]{"name": "get_current_weather", "parameters": {"location": "Tokyo"}}"#;
        let result = detect_tool_call_start(text, Some("mistral")).unwrap();
        assert!(result);
    }

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    // DeepSeek V3
    #[test]
    fn test_e2e_detect_incomplete_tool_call_start_deepseek_v3() {
        let text = r#"<|tool▁call▁begin|>function<|tool▁sep|>get_current_weather
```json
{"location": "Tokyo"}
```<|tool▁call▁end|>"#;
        let result = detect_tool_call_start(text, Some("deepseek_v3")).unwrap();
        assert!(!result);
    }

    #[test]
    fn test_e2e_detect_tool_call_start_deepseek_v3() {
        let text = r#"<|tool▁calls▁begin|><|tool▁call▁begin|>function<|tool▁sep|>get_current_weather
```json
{"location": "Tokyo"}
```<|tool▁call▁end|>"#;
        let result = detect_tool_call_start(text, Some("deepseek_v3")).unwrap();
        assert!(result);
    }

    // DeepSeek V3.1
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    #[test]
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    fn test_e2e_detect_incomplete_tool_call_start_deepseek_v3_1() {
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        let text = r#"<|tool▁call▁begin|>get_current_weather<|tool▁sep|>{"location": "Tokyo"}<|tool▁call▁end|>"#;
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        let result = detect_tool_call_start(text, Some("deepseek_v3_1")).unwrap();
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        assert!(!result);
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    }

    #[test]
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    fn test_e2e_detect_tool_call_start_deepseek_v3_1() {
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        let text = r#"<|tool▁calls▁begin|><|tool▁call▁begin|>get_current_weather<|tool▁sep|>{"location": "Tokyo"}<|tool▁call▁end|>"#;
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        let result = detect_tool_call_start(text, Some("deepseek_v3_1")).unwrap();
        assert!(result);
    }
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    #[test]
    fn test_e2e_detect_tool_call_start_xml() {
        let text = r#"<tool_call><function=get_weather><parameter=city>Dallas</parameter></function></tool_call>"#;
        let result = detect_tool_call_start(text, Some("qwen3_coder")).unwrap();
        assert!(result);
    }

    #[test]
    fn test_e2e_detect_tool_call_start_xml_partial() {
        let text = r#"<tool_c"#; // Partial start token
        let result = detect_tool_call_start(text, Some("qwen3_coder")).unwrap();
        assert!(result);
    }
}

// Xml parser tests
#[cfg(test)]
mod xml_parser_tests {
    use super::*;

    fn extract_name_and_args(call: ToolCallResponse) -> (String, serde_json::Value) {
        let args: serde_json::Value = serde_json::from_str(&call.function.arguments).unwrap();
        (call.function.name, args)
    }

    #[tokio::test]
    async fn test_qwen3_coder_simple_tool_call() {
        let input = r#"<tool_call>
<function=execute_bash>
<parameter=command>
pwd && ls
</parameter>
</function>
</tool_call>"#;
        let (result, content) = detect_and_parse_tool_call(input, Some("qwen3_coder"))
            .await
            .unwrap();
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "execute_bash");
        assert_eq!(args["command"], "pwd && ls");
    }

    #[tokio::test]
    async fn test_qwen3_coder_multiple_parameters() {
        let input = r#"<tool_call>
<function=get_current_weather>
<parameter=city>
Dallas
</parameter>
<parameter=state>
TX
</parameter>
<parameter=unit>
fahrenheit
</parameter>
</function>
</tool_call>"#;
        let (result, content) = detect_and_parse_tool_call(input, Some("qwen3_coder"))
            .await
            .unwrap();
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_current_weather");
        assert_eq!(args["city"], "Dallas");
        assert_eq!(args["state"], "TX");
        assert_eq!(args["unit"], "fahrenheit");
    }

    #[tokio::test]
    async fn test_qwen3_coder_with_normal_text() {
        let input = r#"I'll help you check the weather. <tool_call>
<function=get_current_weather>
<parameter=city>
San Francisco
</parameter>
<parameter=unit>
fahrenheit
</parameter>
</function>
</tool_call> Let me get that information for you."#;
        let (result, content) = detect_and_parse_tool_call(input, Some("qwen3_coder"))
            .await
            .unwrap();
        assert_eq!(
            content,
            Some(
                "I'll help you check the weather.  Let me get that information for you."
                    .to_string()
            )
        );
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "get_current_weather");
        assert_eq!(args["city"], "San Francisco");
        assert_eq!(args["unit"], "fahrenheit");
    }

    #[tokio::test]
    async fn test_qwen3_coder_parallel_tool_calls() {
        let input = r#"<tool_call>
<function=get_current_weather>
<parameter=city>
Dallas
</parameter>
<parameter=state>
TX
</parameter>
<parameter=unit>
fahrenheit
</parameter>
</function>
</tool_call>
<tool_call>
<function=get_current_weather>
<parameter=city>
Orlando
</parameter>
<parameter=state>
FL
</parameter>
<parameter=unit>
fahrenheit
</parameter>
</function>
</tool_call>"#;
        let (result, content) = detect_and_parse_tool_call(input, Some("qwen3_coder"))
            .await
            .unwrap();
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 2);

        let (name1, args1) = extract_name_and_args(result[0].clone());
        assert_eq!(name1, "get_current_weather");
        assert_eq!(args1["city"], "Dallas");
        assert_eq!(args1["state"], "TX");
        assert_eq!(args1["unit"], "fahrenheit");

        let (name2, args2) = extract_name_and_args(result[1].clone());
        assert_eq!(name2, "get_current_weather");
        assert_eq!(args2["city"], "Orlando");
        assert_eq!(args2["state"], "FL");
        assert_eq!(args2["unit"], "fahrenheit");
    }

    #[tokio::test]
    async fn test_qwen3_coder_json_parameter_value() {
        let input = r#"<tool_call>
<function=process_data>
<parameter=config>
{"timeout": 30, "retries": 3}
</parameter>
</function>
</tool_call>"#;
        let (result, content) = detect_and_parse_tool_call(input, Some("qwen3_coder"))
            .await
            .unwrap();
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "process_data");
        assert!(args["config"].is_object());
        assert_eq!(args["config"]["timeout"], 30);
        assert_eq!(args["config"]["retries"], 3);
    }

    #[tokio::test]
    async fn test_qwen3_coder_numeric_parameters() {
        let input = r#"<tool_call>
<function=calculate>
<parameter=x>
42
</parameter>
<parameter=y>
3.15
</parameter>
<parameter=enabled>
true
</parameter>
</function>
</tool_call>"#;
        let (result, _) = detect_and_parse_tool_call(input, Some("qwen3_coder"))
            .await
            .unwrap();
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "calculate");
        assert_eq!(args["x"], 42);
        assert_eq!(args["y"], 3.15);
        assert_eq!(args["enabled"], true);
    }

    #[tokio::test]
    async fn test_qwen3_coder_no_tool_calls() {
        let input = "This is just normal text without any tool calls.";
        let (result, content) = detect_and_parse_tool_call(input, Some("qwen3_coder"))
            .await
            .unwrap();
        assert_eq!(result.len(), 0);
        assert_eq!(content, Some(input.to_string()));
    }

    #[tokio::test]
    async fn test_qwen3_coder_compact_format() {
        let input = r#"<tool_call><function=search><parameter=query>rust programming</parameter><parameter=limit>10</parameter></function></tool_call>"#;
        let (result, content) = detect_and_parse_tool_call(input, Some("qwen3_coder"))
            .await
            .unwrap();
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "search");
        assert_eq!(args["query"], "rust programming");
        assert_eq!(args["limit"], 10);
    }

    #[tokio::test]
    async fn test_qwen3_coder_html_entities() {
        let input = r#"<tool_call>
<function=print_message>
<parameter=text>
&lt;div&gt;Hello &amp; Welcome&lt;/div&gt;
</parameter>
</function>
</tool_call>"#;
        let (result, _) = detect_and_parse_tool_call(input, Some("qwen3_coder"))
            .await
            .unwrap();
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "print_message");
        assert_eq!(args["text"], "<div>Hello & Welcome</div>");
    }

    #[tokio::test]
    async fn test_qwen3_coder_three_parallel_calls() {
        let input = r#"<tool_call>
<function=get_current_weather>
<parameter=city>
Dallas
</parameter>
</function>
</tool_call>
<tool_call>
<function=get_current_weather>
<parameter=city>
Orlando
</parameter>
</function>
</tool_call>
<tool_call>
<function=get_current_weather>
<parameter=city>
Seattle
</parameter>
</function>
</tool_call>"#;
        let (result, content) = detect_and_parse_tool_call(input, Some("qwen3_coder"))
            .await
            .unwrap();
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 3);

        let cities = ["Dallas", "Orlando", "Seattle"];
        for (i, expected_city) in cities.iter().enumerate() {
            let (name, args) = extract_name_and_args(result[i].clone());
            assert_eq!(name, "get_current_weather");
            assert_eq!(args["city"], *expected_city);
        }
    }

    #[tokio::test]
    async fn test_qwen3_coder_mixed_tool_types() {
        let input = r#"<tool_call>
<function=get_current_weather>
<parameter=city>
Dallas
</parameter>
<parameter=unit>
fahrenheit
</parameter>
</function>
</tool_call>
<tool_call>
<function=web_search>
<parameter=query>
weather forecasting
</parameter>
<parameter=max_results>
5
</parameter>
</function>
</tool_call>"#;
        let (result, content) = detect_and_parse_tool_call(input, Some("qwen3_coder"))
            .await
            .unwrap();
        assert_eq!(content, Some("".to_string()));
        assert_eq!(result.len(), 2);

        let (name1, args1) = extract_name_and_args(result[0].clone());
        assert_eq!(name1, "get_current_weather");
        assert_eq!(args1["city"], "Dallas");
        assert_eq!(args1["unit"], "fahrenheit");

        let (name2, args2) = extract_name_and_args(result[1].clone());
        assert_eq!(name2, "web_search");
        assert_eq!(args2["query"], "weather forecasting");
        assert_eq!(args2["max_results"], 5);
    }

    #[tokio::test]
    async fn test_qwen3_coder_array_parameter_value() {
        let input = r#"<tool_call>
<function=process_list>
<parameter=items>
[1, 2, 3, 4, 5]
</parameter>
</function>
</tool_call>"#;
        let (result, _) = detect_and_parse_tool_call(input, Some("qwen3_coder"))
            .await
            .unwrap();
        assert_eq!(result.len(), 1);
        let (name, args) = extract_name_and_args(result[0].clone());
        assert_eq!(name, "process_list");
        assert!(args["items"].is_array());
        assert_eq!(args["items"], serde_json::json!([1, 2, 3, 4, 5]));
    }
2801
}