// Kimi specific reasoning parser. // This parser uses Unicode tokens and starts with in_reasoning=false. use crate::reasoning_parser::parsers::BaseReasoningParser; use crate::reasoning_parser::traits::{ParseError, ParserConfig, ParserResult, ReasoningParser}; /// Kimi reasoning parser. /// /// This parser uses Unicode tokens (◁think▷ and ◁/think▷) and requires /// explicit start tokens to enter reasoning mode. pub struct KimiParser { base: BaseReasoningParser, } impl KimiParser { /// Create a new Kimi parser. pub fn new() -> Self { let config = ParserConfig { think_start_token: "◁think▷".to_string(), think_end_token: "◁/think▷".to_string(), stream_reasoning: true, max_buffer_size: 65536, initial_in_reasoning: false, // Requires explicit start token }; Self { base: BaseReasoningParser::new(config).with_model_type("kimi".to_string()), } } } impl Default for KimiParser { fn default() -> Self { Self::new() } } impl ReasoningParser for KimiParser { fn detect_and_parse_reasoning(&mut self, text: &str) -> Result { self.base.detect_and_parse_reasoning(text) } fn parse_reasoning_streaming_incremental( &mut self, text: &str, ) -> Result { self.base.parse_reasoning_streaming_incremental(text) } fn reset(&mut self) { self.base.reset() } fn model_type(&self) -> &str { self.base.model_type() } fn is_in_reasoning(&self) -> bool { self.base.is_in_reasoning() } } #[cfg(test)] mod tests { use super::*; #[test] fn test_kimi_initial_state() { let mut parser = KimiParser::new(); // Should NOT treat text as reasoning without start token let result = parser .detect_and_parse_reasoning("This is normal content") .unwrap(); assert_eq!(result.normal_text, "This is normal content"); assert_eq!(result.reasoning_text, ""); } #[test] fn test_kimi_with_unicode_tokens() { let mut parser = KimiParser::new(); // Should extract reasoning with Unicode tokens let result = parser .detect_and_parse_reasoning("◁think▷reasoning content◁/think▷answer") .unwrap(); assert_eq!(result.normal_text, "answer"); assert_eq!(result.reasoning_text, "reasoning content"); } #[test] fn test_kimi_partial_unicode() { let mut parser = KimiParser::new(); let result1 = parser .parse_reasoning_streaming_incremental("◁thi") .unwrap(); assert_eq!(result1.normal_text, ""); assert_eq!(result1.reasoning_text, ""); // Complete the token let result2 = parser .parse_reasoning_streaming_incremental("nk▷reasoning") .unwrap(); assert_eq!(result2.normal_text, ""); assert_eq!(result2.reasoning_text, "reasoning"); } #[test] fn test_kimi_streaming() { let mut parser = KimiParser::new(); // Normal text first let result1 = parser .parse_reasoning_streaming_incremental("normal ") .unwrap(); assert_eq!(result1.normal_text, "normal "); assert_eq!(result1.reasoning_text, ""); // Enter reasoning with Unicode token let result2 = parser .parse_reasoning_streaming_incremental("◁think▷thinking") .unwrap(); assert_eq!(result2.normal_text, ""); assert_eq!(result2.reasoning_text, "thinking"); // Exit reasoning let result3 = parser .parse_reasoning_streaming_incremental("◁/think▷answer") .unwrap(); assert_eq!(result3.normal_text, "answer"); assert_eq!(result3.reasoning_text, ""); // Already returned in stream mode } #[test] fn test_model_type() { let parser = KimiParser::new(); assert_eq!(parser.model_type(), "kimi"); } }