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use derive_more::derive::Display;
use derive_setters::Setters;
use forge_json_repair::coerce_to_schema;
use serde::{Deserialize, Serialize};
use strum::IntoEnumIterator;
use super::response::{ExtraContent, FunctionCall, ToolCall};
use super::tool_choice::{FunctionType, ToolChoice};
use crate::domain::{
Context, ContextMessage, ModelId, ToolCallFull, ToolCallId, ToolCatalog, ToolDefinition,
ToolName, ToolResult, ToolValue,
};
use crate::dto::openai::ReasoningDetail;
#[derive(Debug, Deserialize, Serialize, Clone, PartialEq)]
pub struct ImageUrl {
pub url: String,
#[serde(skip_serializing_if = "Option::is_none")]
pub detail: Option<String>,
}
#[derive(Debug, Deserialize, Serialize, Clone)]
pub struct Message {
pub role: Role,
#[serde(skip_serializing_if = "Option::is_none")]
pub content: Option<MessageContent>,
#[serde(skip_serializing_if = "Option::is_none")]
pub name: Option<ToolName>,
#[serde(skip_serializing_if = "Option::is_none")]
pub tool_call_id: Option<ToolCallId>,
#[serde(skip_serializing_if = "Option::is_none")]
pub tool_calls: Option<Vec<ToolCall>>,
#[serde(skip_serializing_if = "Option::is_none")]
pub reasoning_details: Option<Vec<ReasoningDetail>>,
// GitHub Copilot format (flat fields instead of array)
#[serde(skip_serializing_if = "Option::is_none")]
pub reasoning_text: Option<String>,
#[serde(skip_serializing_if = "Option::is_none")]
pub reasoning_opaque: Option<String>,
// kimi_k2 uses reasoning_content as flat string (similar to reasoning_text but aliased)
#[serde(skip_serializing_if = "Option::is_none", rename = "reasoning_content")]
pub reasoning_content: Option<String>,
#[serde(skip_serializing_if = "Option::is_none")]
pub extra_content: Option<ExtraContent>,
}
#[derive(Debug, Deserialize, Serialize, Clone, PartialEq)]
#[serde(untagged)]
pub enum MessageContent {
Text(String),
Parts(Vec<ContentPart>),
}
impl MessageContent {
pub fn cached(self, enable_cache: bool) -> Self {
let cache_control =
enable_cache.then_some(CacheControl { type_: CacheControlType::Ephemeral });
match self {
MessageContent::Text(text) => {
if let Some(cc) = cache_control {
MessageContent::Parts(vec![ContentPart::Text { text, cache_control: Some(cc) }])
} else {
MessageContent::Text(text)
}
}
MessageContent::Parts(mut parts) => {
parts.iter_mut().for_each(ContentPart::reset_cache);
match cache_control {
Some(_) => {
// cache the last part of the message
if let Some(part) = parts.last_mut() {
part.cached(enable_cache)
}
MessageContent::Parts(parts)
}
None => MessageContent::Parts(parts),
}
}
}
}
pub fn is_cached(&self) -> bool {
match self {
MessageContent::Text(_) => false,
MessageContent::Parts(parts) => parts.iter().any(|part| {
if let ContentPart::Text { cache_control, .. } = part {
cache_control.is_some()
} else {
false
}
}),
}
}
}
#[derive(Debug, Serialize, Deserialize, Clone, PartialEq)]
#[serde(tag = "type", rename_all = "snake_case")]
pub enum ContentPart {
Text {
text: String,
#[serde(skip_serializing_if = "Option::is_none")]
cache_control: Option<CacheControl>,
},
ImageUrl {
image_url: ImageUrl,
#[serde(skip_serializing_if = "Option::is_none")]
cache_control: Option<CacheControl>,
},
}
impl ContentPart {
pub fn reset_cache(&mut self) {
match self {
ContentPart::Text { cache_control, .. } => {
*cache_control = None;
}
ContentPart::ImageUrl { cache_control, .. } => {
*cache_control = None;
}
}
}
pub fn cached(&mut self, enable_cache: bool) {
let src_cache_control =
enable_cache.then_some(CacheControl { type_: CacheControlType::Ephemeral });
match self {
ContentPart::Text { cache_control, .. } => {
*cache_control = src_cache_control;
}
ContentPart::ImageUrl { cache_control, .. } => {
*cache_control = src_cache_control;
}
}
}
}
#[derive(Debug, Serialize, Deserialize, Clone, PartialEq)]
pub struct CacheControl {
#[serde(rename = "type")]
pub type_: CacheControlType,
}
#[derive(Debug, Serialize, Deserialize, Clone, PartialEq)]
#[serde(rename_all = "snake_case")]
pub enum CacheControlType {
Ephemeral,
}
#[derive(Debug, Deserialize, Serialize, Clone, PartialEq)]
pub struct FunctionDescription {
pub description: Option<String>,
pub name: String,
pub parameters: serde_json::Value,
}
#[derive(Debug, Deserialize, Serialize, Clone, PartialEq)]
pub struct Tool {
// TODO: should be an enum
pub r#type: FunctionType,
pub function: FunctionDescription,
}
/// Response format configuration for OpenAI API
#[derive(Debug, Deserialize, Serialize, Clone, PartialEq)]
#[serde(tag = "type", content = "json_schema")]
pub enum ResponseFormat {
#[serde(rename = "text")]
Text,
#[serde(rename = "json_schema")]
JsonSchema {
name: String,
schema: Box<schemars::Schema>,
},
}
#[derive(Debug, Deserialize, Serialize, Clone, PartialEq)]
pub struct Prediction {
pub r#type: String,
pub content: String,
}
#[derive(Debug, Deserialize, Serialize, Clone, PartialEq)]
pub struct ProviderPreferences {
// Define fields as necessary
}
/// Z.ai-specific thinking type
///
/// Represents the state of thinking for z.ai providers
#[derive(Debug, Deserialize, Serialize, Clone, PartialEq)]
#[serde(rename_all = "lowercase")]
pub enum ThinkingType {
Enabled,
Disabled,
}
/// Z.ai-specific thinking configuration structure
///
/// Z.ai uses a different format than standard OpenAI reasoning configuration.
/// This struct represents z.ai's thinking format: `{"type": "enabled"}` or
/// `{"type": "disabled"}`
#[derive(Debug, Deserialize, Serialize, Clone, PartialEq)]
pub struct ThinkingConfig {
/// Type of thinking configuration - enabled or disabled
#[serde(rename = "type")]
pub r#type: ThinkingType,
}
#[derive(Debug, Deserialize, Serialize, Clone, Setters, Default)]
#[setters(strip_option)]
pub struct Request {
#[serde(skip_serializing_if = "Option::is_none")]
pub messages: Option<Vec<Message>>,
#[serde(skip_serializing_if = "Option::is_none")]
pub prompt: Option<String>,
#[serde(skip_serializing_if = "Option::is_none")]
pub model: Option<ModelId>,
#[serde(skip_serializing_if = "Option::is_none")]
pub response_format: Option<ResponseFormat>,
#[serde(skip_serializing_if = "Option::is_none")]
pub stop: Option<Vec<String>>,
#[serde(skip_serializing_if = "Option::is_none")]
pub stream: Option<bool>,
#[serde(skip_serializing_if = "Option::is_none")]
pub max_tokens: Option<u32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub temperature: Option<f32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub tools: Option<Vec<Tool>>,
#[serde(skip_serializing_if = "Option::is_none")]
pub tool_choice: Option<ToolChoice>,
#[serde(skip_serializing_if = "Option::is_none")]
pub seed: Option<u32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub top_p: Option<f32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub top_k: Option<u32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub frequency_penalty: Option<f32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub presence_penalty: Option<f32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub repetition_penalty: Option<f32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub logit_bias: Option<std::collections::HashMap<u32, f32>>,
#[serde(skip_serializing_if = "Option::is_none")]
pub top_logprobs: Option<u32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub min_p: Option<f32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub top_a: Option<f32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub prediction: Option<Prediction>,
#[serde(skip_serializing_if = "Option::is_none")]
pub transforms: Option<Vec<Transform>>,
#[serde(skip_serializing_if = "Option::is_none")]
pub models: Option<Vec<String>>,
#[serde(skip_serializing_if = "Option::is_none")]
pub route: Option<String>,
#[serde(skip_serializing_if = "Option::is_none")]
pub provider: Option<ProviderPreferences>,
#[serde(skip_serializing_if = "Option::is_none")]
pub parallel_tool_calls: Option<bool>,
#[serde(skip_serializing_if = "Option::is_none")]
pub session_id: Option<String>,
/// Indicates who initiated the conversation: "user" or "agent".
/// Used for GitHub Copilot billing optimization. Not serialized to API.
#[serde(skip_serializing)]
pub initiator: Option<String>,
#[serde(skip_serializing_if = "Option::is_none")]
pub stream_options: Option<StreamOptions>,
#[serde(skip_serializing_if = "Option::is_none")]
pub reasoning: Option<forge_domain::ReasoningConfig>,
#[serde(skip_serializing_if = "Option::is_none")]
pub reasoning_effort: Option<String>,
#[serde(skip_serializing_if = "Option::is_none")]
pub max_completion_tokens: Option<u32>,
#[serde(skip_serializing_if = "Option::is_none")]
pub thinking: Option<ThinkingConfig>,
}
#[derive(Debug, Deserialize, Serialize, Clone, Default)]
pub struct StreamOptions {
pub include_usage: Option<bool>,
}
impl Request {
pub fn message_count(&self) -> usize {
self.messages
.as_ref()
.map(|messages| messages.len())
.unwrap_or(0)
}
pub fn message_cache_count(&self) -> usize {
self.messages
.iter()
.flatten()
.flat_map(|a| a.content.as_ref())
.enumerate()
.map(|(i, _)| i)
.max()
.unwrap_or(0)
}
}
/// ref: https://openrouter.ai/docs/transforms
#[derive(Default, Debug, Clone, Serialize, Deserialize, PartialEq)]
pub enum Transform {
#[default]
#[serde(rename = "middle-out")]
MiddleOut,
}
impl From<ToolDefinition> for Tool {
fn from(value: ToolDefinition) -> Self {
Tool {
r#type: FunctionType,
function: FunctionDescription {
description: Some(value.description),
name: value.name.to_string(),
parameters: {
let mut params = serde_json::to_value(value.input_schema).unwrap();
// Ensure OpenAI compatibility by adding properties field if missing
if let Some(obj) = params.as_object_mut()
&& obj.get("type") == Some(&serde_json::Value::String("object".to_string()))
&& !obj.contains_key("properties")
{
obj.insert(
"properties".to_string(),
serde_json::Value::Object(serde_json::Map::new()),
);
}
params
},
},
}
}
}
impl From<Context> for Request {
fn from(context: Context) -> Self {
Request {
messages: {
let messages = context
.messages
.into_iter()
.map(|msg| Message::from(msg.message))
.collect::<Vec<_>>();
Some(messages)
},
tools: {
let tools = context
.tools
.into_iter()
.map(Tool::from)
.collect::<Vec<_>>();
if tools.is_empty() { None } else { Some(tools) }
},
model: None,
prompt: Default::default(),
response_format: context.response_format.map(|rf| match rf {
forge_domain::ResponseFormat::Text => ResponseFormat::Text,
forge_domain::ResponseFormat::JsonSchema(schema) => {
// Extract name from schema title
let name = schema
.as_value()
.as_object()
.and_then(|obj| obj.get("title"))
.and_then(|t| t.as_str())
.map(String::from)
.expect("Schema must have a title");
ResponseFormat::JsonSchema { name, schema }
}
}),
stop: Default::default(),
stream: Some(context.stream.unwrap_or(true)),
max_tokens: context.max_tokens.map(|t| t as u32),
temperature: context.temperature.map(|t| t.value()),
tool_choice: context.tool_choice.map(|tc| tc.into()),
seed: Default::default(),
top_p: context.top_p.map(|t| t.value()),
top_k: context.top_k.map(|t| t.value()),
frequency_penalty: Default::default(),
presence_penalty: Default::default(),
repetition_penalty: Default::default(),
logit_bias: Default::default(),
top_logprobs: Default::default(),
min_p: Default::default(),
top_a: Default::default(),
prediction: Default::default(),
// Since compaction is support on the client we don't need middle-out transforms any
// more
transforms: Default::default(),
models: Default::default(),
route: Default::default(),
provider: Default::default(),
parallel_tool_calls: Some(true), /* Default to true, transformers will adjust based
* on model capabilities */
stream_options: Some(StreamOptions { include_usage: Some(true) }),
session_id: context.conversation_id.map(|id| id.to_string()),
initiator: context.initiator,
reasoning: context.reasoning,
reasoning_effort: Default::default(),
max_completion_tokens: Default::default(),
thinking: Default::default(),
}
}
}
fn serialize_tool_call_arguments(tool_call: &ToolCallFull) -> String {
let serialized_arguments = || serde_json::to_string(&tool_call.arguments).unwrap();
let Ok(parsed_arguments) = tool_call.arguments.parse() else {
return serialized_arguments();
};
let normalized_arguments = ToolCatalog::iter()
.find(|tool| tool.definition().name == tool_call.name)
.map(|tool| coerce_to_schema(parsed_arguments.clone(), &tool.definition().input_schema))
.unwrap_or(parsed_arguments);
serde_json::to_string(&normalized_arguments).unwrap_or_else(|_| serialized_arguments())
}
impl From<ToolCallFull> for ToolCall {
fn from(value: ToolCallFull) -> Self {
let arguments = serialize_tool_call_arguments(&value);
let extra_content = value.thought_signature.map(ExtraContent::from);
Self {
id: value.call_id,
r#type: FunctionType,
function: FunctionCall { arguments, name: Some(value.name) },
extra_content,
}
}
}
impl From<ContextMessage> for Message {
fn from(value: ContextMessage) -> Self {
match value {
ContextMessage::Text(chat_message) => Message {
role: chat_message.role.into(),
content: Some(MessageContent::Text(chat_message.content)),
name: None,
tool_call_id: None,
tool_calls: chat_message
.tool_calls
.map(|tool_calls| tool_calls.into_iter().map(ToolCall::from).collect()),
reasoning_details: chat_message.reasoning_details.map(|details| {
details
.into_iter()
.map(|detail| ReasoningDetail {
r#type: detail
.type_of
.unwrap_or_else(|| "reasoning.text".to_string()),
text: detail.text,
signature: detail.signature,
data: detail.data,
id: detail.id,
format: detail.format,
index: detail.index,
})
.collect::<Vec<ReasoningDetail>>()
}),
reasoning_text: None,
reasoning_opaque: None,
reasoning_content: None,
extra_content: chat_message.thought_signature.map(ExtraContent::from),
},
ContextMessage::Tool(tool_result) => Message {
role: Role::Tool,
tool_call_id: tool_result.call_id.clone(),
name: Some(tool_result.name.clone()),
content: Some(tool_result.into()),
tool_calls: None,
reasoning_details: None,
reasoning_text: None,
reasoning_opaque: None,
reasoning_content: None,
extra_content: None,
},
ContextMessage::Image(img) => {
let content = vec![ContentPart::ImageUrl {
image_url: ImageUrl { url: img.url().clone(), detail: None },
cache_control: None,
}];
Message {
role: Role::User,
content: Some(MessageContent::Parts(content)),
name: None,
tool_call_id: None,
tool_calls: None,
reasoning_details: None,
reasoning_text: None,
reasoning_opaque: None,
reasoning_content: None,
extra_content: None,
}
}
}
}
}
impl From<ToolResult> for MessageContent {
fn from(result: ToolResult) -> Self {
if result.output.values.len() == 1
&& let Some(text) = result.output.as_str()
{
return MessageContent::Text(text.to_string());
}
let mut parts = Vec::new();
for value in result.output.values.into_iter() {
match value {
ToolValue::Text(text) => {
parts.push(ContentPart::Text { text, cache_control: None });
}
ToolValue::Image(img) => {
let content = ContentPart::ImageUrl {
image_url: ImageUrl { url: img.url().clone(), detail: None },
cache_control: None,
};
parts.push(content);
}
ToolValue::Empty => {
// Handle empty case if needed
}
ToolValue::AI { value, .. } => {
parts.push(ContentPart::Text { text: value, cache_control: None })
}
}
}
MessageContent::Parts(parts)
}
}
impl From<forge_domain::Role> for Role {
fn from(role: forge_domain::Role) -> Self {
match role {
forge_domain::Role::System => Role::System,
forge_domain::Role::User => Role::User,
forge_domain::Role::Assistant => Role::Assistant,
}
}
}
#[derive(Debug, Deserialize, Display, Serialize, Clone, PartialEq, Eq)]
#[serde(rename_all = "snake_case")]
pub enum Role {
System,
User,
Assistant,
Tool,
}
#[cfg(test)]
mod tests {
use pretty_assertions::assert_eq;
use super::*;
#[test]
fn test_cached_text_true() {
let fixture = MessageContent::Text("hello".to_string());
let actual = fixture.cached(true);
let expected = MessageContent::Parts(vec![ContentPart::Text {
text: "hello".to_string(),
cache_control: Some(CacheControl { type_: CacheControlType::Ephemeral }),
}]);
assert_eq!(actual, expected);
}
#[test]
fn test_cached_text_false() {
let fixture = MessageContent::Text("hello".to_string());
let actual = fixture.cached(false);
let expected = MessageContent::Text("hello".to_string());
assert_eq!(actual, expected);
}
#[test]
fn test_cached_parts_true() {
let fixture = MessageContent::Parts(vec![
ContentPart::Text { text: "a".to_string(), cache_control: None },
ContentPart::ImageUrl {
image_url: ImageUrl { url: "http://example.com/a.png".to_string(), detail: None },
cache_control: Some(CacheControl { type_: CacheControlType::Ephemeral }),
},
]);
let actual = fixture.cached(true);
let expected = MessageContent::Parts(vec![
ContentPart::Text { text: "a".to_string(), cache_control: None },
ContentPart::ImageUrl {
image_url: ImageUrl { url: "http://example.com/a.png".to_string(), detail: None },
cache_control: Some(CacheControl { type_: CacheControlType::Ephemeral }),
},
]);
assert_eq!(actual, expected);
}
#[test]
fn test_cached_parts_multi_false() {
let fixture = MessageContent::Parts(vec![
ContentPart::Text {
text: "a".to_string(),
cache_control: Some(CacheControl { type_: CacheControlType::Ephemeral }),
},
ContentPart::Text {
text: "b".to_string(),
cache_control: Some(CacheControl { type_: CacheControlType::Ephemeral }),
},
ContentPart::ImageUrl {
image_url: ImageUrl { url: "http://example.com/a.png".to_string(), detail: None },
cache_control: Some(CacheControl { type_: CacheControlType::Ephemeral }),
},
]);
let actual = fixture.cached(false);
let expected = MessageContent::Parts(vec![
ContentPart::Text { text: "a".to_string(), cache_control: None },
ContentPart::Text { text: "b".to_string(), cache_control: None },
ContentPart::ImageUrl {
image_url: ImageUrl { url: "http://example.com/a.png".to_string(), detail: None },
cache_control: None,
},
]);
assert_eq!(actual, expected);
}
#[test]
fn test_cached_parts_already_true() {
let fixture = MessageContent::Parts(vec![
ContentPart::Text {
text: "a".to_string(),
cache_control: Some(CacheControl { type_: CacheControlType::Ephemeral }),
},
ContentPart::Text { text: "b".to_string(), cache_control: None },
ContentPart::ImageUrl {
image_url: ImageUrl { url: "http://example.com/a.png".to_string(), detail: None },
cache_control: None,
},
]);
let actual = fixture.cached(true);
let expected = MessageContent::Parts(vec![
ContentPart::Text { text: "a".to_string(), cache_control: None },
ContentPart::Text { text: "b".to_string(), cache_control: None },
ContentPart::ImageUrl {
image_url: ImageUrl { url: "http://example.com/a.png".to_string(), detail: None },
cache_control: Some(CacheControl { type_: CacheControlType::Ephemeral }),
},
]);
assert_eq!(actual, expected);
}
#[test]
fn test_cached_parts_multi_true() {
let fixture = MessageContent::Parts(vec![
ContentPart::Text { text: "a".to_string(), cache_control: None },
ContentPart::Text { text: "b".to_string(), cache_control: None },
ContentPart::ImageUrl {
image_url: ImageUrl { url: "http://example.com/a.png".to_string(), detail: None },
cache_control: None,
},
]);
let actual = fixture.cached(true);
let expected = MessageContent::Parts(vec![
ContentPart::Text { text: "a".to_string(), cache_control: None },
ContentPart::Text { text: "b".to_string(), cache_control: None },
ContentPart::ImageUrl {
image_url: ImageUrl { url: "http://example.com/a.png".to_string(), detail: None },
cache_control: Some(CacheControl { type_: CacheControlType::Ephemeral }),
},
]);
assert_eq!(actual, expected);
}
#[test]
fn test_cached_parts_false() {
let fixture = MessageContent::Parts(vec![
ContentPart::Text { text: "a".to_string(), cache_control: None },
ContentPart::ImageUrl {
image_url: ImageUrl { url: "http://example.com/a.png".to_string(), detail: None },
cache_control: None,
},
]);
let actual = fixture.cached(false);
let expected = MessageContent::Parts(vec![
ContentPart::Text { text: "a".to_string(), cache_control: None },
ContentPart::ImageUrl {
image_url: ImageUrl { url: "http://example.com/a.png".to_string(), detail: None },
cache_control: None,
},
]);
assert_eq!(actual, expected);
}
use forge_domain::{
ContextMessage, Role, TextMessage, ToolCallFull, ToolCallId, ToolCatalog, ToolName,
ToolResult,
};
use insta::assert_json_snapshot;
#[test]
fn test_user_message_conversion() {
let user_message = ContextMessage::Text(
TextMessage::new(Role::User, "Hello").model(ModelId::new("gpt-3.5-turbo")),
);
let router_message = Message::from(user_message);
assert_json_snapshot!(router_message);
}
#[test]
fn test_message_with_special_chars() {
let xml_content = r#"Here's some XML content:
<task>
<id>123</id>
<description>Test <special> characters</description>
<data key="value">
<item>1</item>
<item>2</item>
</data>
</task>"#;
let message = ContextMessage::Text(
TextMessage::new(Role::User, xml_content).model(ModelId::new("gpt-3.5-turbo")),
);
let router_message = Message::from(message);
assert_json_snapshot!(router_message);
}
#[test]
fn test_assistant_message_with_tool_call_conversion() {
let tool_call = ToolCallFull {
call_id: Some(ToolCallId::new("123")),
name: ToolName::new("test_tool"),
arguments: serde_json::json!({"key": "value"}).into(),
thought_signature: None,
};
let assistant_message = ContextMessage::Text(
TextMessage::new(Role::Assistant, "Using tool")
.tool_calls(vec![tool_call])
.model(ModelId::new("gpt-3.5-turbo")),
);
let router_message = Message::from(assistant_message);
assert_json_snapshot!(router_message);
}
#[test]
fn test_assistant_message_with_dump_style_tool_call_arguments_conversion() {
let fixture = ToolCatalog::tool_call_patch(
"/tmp/file.txt",
"new text",
"old text",
false,
)
.arguments(
serde_json::from_str::<forge_domain::ToolCallArguments>(
r#""{\"file_path\":\"/tmp/file.txt\",\"old_string\":\"old text\",\"new_string\":\"new text\",\"replace_all\":false}""#,
)
.unwrap(),
)
.call_id(ToolCallId::new("123"));
let assistant_message = ContextMessage::Text(
TextMessage::new(Role::Assistant, "Using tool")
.tool_calls(vec![fixture])
.model(ModelId::new("gpt-3.5-turbo")),
);
let actual = Message::from(assistant_message);
let actual =
serde_json::to_value(actual.tool_calls.expect("Tool calls should exist")).unwrap();
let expected = serde_json::json!([
{
"id": "123",
"type": "function",
"function": {
"arguments": "{\"file_path\":\"/tmp/file.txt\",\"new_string\":\"new text\",\"old_string\":\"old text\",\"replace_all\":false}",
"name": "patch"
}
}
]);
assert_eq!(actual, expected);
}
#[test]
fn test_tool_message_conversion() {
let tool_result = ToolResult::new(ToolName::new("test_tool"))
.call_id(ToolCallId::new("123"))
.success(
r#"{
"user": "John",
"age": 30,
"address": [{"city": "New York"}, {"city": "San Francisco"}]
}"#,
);
let tool_message = ContextMessage::Tool(tool_result);
let router_message = Message::from(tool_message);
assert_json_snapshot!(router_message);
}
#[test]
fn test_tool_message_with_special_chars() {
let tool_result = ToolResult::new(ToolName::new("html_tool"))
.call_id(ToolCallId::new("456"))
.success(
r#"{
"html": "<div class=\"container\"><p>Hello <World></p></div>",
"elements": ["<span>", "<br/>", "<hr>"],
"attributes": {
"style": "color: blue; font-size: 12px;",
"data-test": "<test>&value</test>"
}
}"#,
);
let tool_message = ContextMessage::Tool(tool_result);
let router_message = Message::from(tool_message);
assert_json_snapshot!(router_message);
}
#[test]
fn test_tool_message_typescript_code() {
let tool_result = ToolResult::new(ToolName::new("rust_tool"))
.call_id(ToolCallId::new("456"))
.success(r#"{ "code": "fn main<T>(gt: T) {let b = > }"}"#);
let tool_message = ContextMessage::Tool(tool_result);
let router_message = Message::from(tool_message);
assert_json_snapshot!(router_message);
}
#[test]
fn test_transform_display() {
assert_eq!(
serde_json::to_string(&Transform::MiddleOut).unwrap(),
"\"middle-out\""
);
}
#[test]
fn test_tool_definition_conversion_missing_properties() {
// Test case where input_schema is an object type but missing properties field
let fixture = {
// In schemars 1.0, Schema wraps serde_json::Value, so we create JSON directly
let schema_value = serde_json::json!({
"$schema": "http://json-schema.org/draft-07/schema#",
"title": "Null",
"type": "object",
"properties": {}
});
let schema = schemars::Schema::try_from(schema_value).unwrap();
ToolDefinition::new("test_tool")
.description("Test tool")
.input_schema(schema)
};
let actual = Tool::from(fixture);
let expected = Tool {
r#type: FunctionType,
function: FunctionDescription {
description: Some("Test tool".to_string()),
name: "test_tool".to_string(),
parameters: serde_json::json!({
"$schema": "http://json-schema.org/draft-07/schema#",
"properties": {},
"title": "Null",
"type": "object"
}),
},
};
assert_eq!(actual, expected);
}
#[test]
fn test_context_conversion_stream_defaults_to_true() {
let fixture = forge_domain::Context::default();
let actual = Request::from(fixture);
assert_eq!(actual.stream, Some(true));
}
#[test]
fn test_context_conversion_stream_explicit_true() {
let fixture = forge_domain::Context::default().stream(true);
let actual = Request::from(fixture);
assert_eq!(actual.stream, Some(true));
}
#[test]
fn test_context_conversion_stream_explicit_false() {
let fixture = forge_domain::Context::default().stream(false);
let actual = Request::from(fixture);
assert_eq!(actual.stream, Some(false));
}
#[test]
fn test_response_format_json_schema_serialization() {
use schemars::JsonSchema;
use serde::Deserialize;
#[derive(Deserialize, JsonSchema)]
#[allow(dead_code)]
#[schemars(title = "test_response")]
struct TestResponse {
message: String,
}
let schema = schemars::schema_for!(TestResponse);
let fixture = forge_domain::Context::default()
.response_format(forge_domain::ResponseFormat::JsonSchema(Box::new(schema)));
let actual = Request::from(fixture);
assert!(actual.response_format.is_some());
let rf = actual.response_format.unwrap();
// Serialize to JSON to verify the format
let json = serde_json::to_string(&rf).unwrap();
println!("Serialized response_format: {}", json);
// Should contain type and json_schema fields
assert!(json.contains("\"type\":\"json_schema\""));
assert!(json.contains("\"json_schema\""));
}
}
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