use crate::config::HarnessConfig;
use crate::model::{ModelMessage, ModelProvider, ModelRequest, ModelRole, ThinkingConfig};
use anyhow::Result;
use std::collections::HashSet;
use std::time::{SystemTime, UNIX_EPOCH};
const READ_ONLY_TOOLS: &[&str] = &[
"read_file",
"read",
"search",
"fs_browser",
"grep",
"list_dir",
"glob",
"tool_search",
"code",
"ast_search",
"symbol_goto",
"symbol_references",
"repo_explore",
"current_time",
"get_context_remaining",
"view_image",
"question",
"plan",
];
pub fn micro_compact(messages: &mut [ModelMessage], gap_threshold_minutes: u64) -> usize {
let now = current_unix_millis();
let gap_threshold_ms = gap_threshold_minutes * 60 * 1000;
let last_assistant_ts = messages
.iter()
.rev()
.find(|m| m.role == ModelRole::Assistant)
.and_then(|m| m.created_at);
let Some(last_ts) = last_assistant_ts else {
return 0;
};
if now.saturating_sub(last_ts) < gap_threshold_ms {
return 0;
}
let mut cleared = 0;
for msg in messages.iter_mut() {
if msg.role == ModelRole::Tool
&& let Some(ref tool_name) = msg.tool_name
&& READ_ONLY_TOOLS.contains(&tool_name.as_str())
&& !msg.content.contains("[Old tool result content cleared]")
{
msg.content = "[Old tool result content cleared]".to_string();
msg.content_parts.clear();
cleared += 1;
}
}
cleared
}
pub const AUTOCOMPACT_BUFFER_TOKENS: u64 = 13_000;
pub const WARNING_THRESHOLD_BUFFER_TOKENS: u64 = 20_000;
pub const ERROR_THRESHOLD_BUFFER_TOKENS: u64 = 20_000;
pub const MAX_OUTPUT_TOKENS_FOR_SUMMARY: u64 = 20_000;
pub const MAX_CONSECUTIVE_FAILURES: u32 = 3;
pub const AUTO_COMPACT_THRESHOLD_PERCENT: u8 = 85;
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub enum CompactThreshold {
Normal,
Warning,
Error,
CircuitOpen,
}
impl std::fmt::Display for CompactThreshold {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
match self {
CompactThreshold::Normal => write!(f, "ok"),
CompactThreshold::Warning => write!(f, "warning"),
CompactThreshold::Error => write!(f, "error"),
CompactThreshold::CircuitOpen => write!(f, "circuit-open"),
}
}
}
#[derive(Debug, Clone)]
pub struct CompactState {
pub last_input_tokens: Option<u64>,
pub last_output_tokens: Option<u64>,
pub estimated_unsent_bytes: usize,
pub context_window: u64,
pub total_tokens_before_compaction: u64,
pub compaction_count: u32,
pub auto_compact_threshold_percent: u8,
pub consecutive_failures: u32,
pub summary: Option<String>,
pub summary_message_count: usize,
pub rebuild_context: Option<String>,
pub crossed_thresholds: Vec<f64>,
pub history_synced_message_keys: HashSet<u64>,
}
impl Default for CompactState {
fn default() -> Self {
Self {
last_input_tokens: None,
last_output_tokens: None,
estimated_unsent_bytes: 0,
context_window: 0,
total_tokens_before_compaction: 0,
compaction_count: 0,
auto_compact_threshold_percent: AUTO_COMPACT_THRESHOLD_PERCENT,
consecutive_failures: 0,
summary: None,
summary_message_count: 0,
rebuild_context: None,
crossed_thresholds: Vec::new(),
history_synced_message_keys: HashSet::new(),
}
}
}
fn format_token_short(t: u64) -> String {
if t >= 1_000_000 {
let m = t as f64 / 1_000_000.0;
if (m - m.round()).abs() < 0.05 {
format!("{}M", m.round() as u64)
} else {
format!("{:.1}M", m)
}
} else if t >= 10_000 {
format!("{}k", t / 1_000)
} else if t >= 1_000 {
let k = t as f64 / 1_000.0;
if (k - k.floor()).abs() < 0.05 {
format!("{}k", k.floor() as u64)
} else {
format!("{:.1}k", k)
}
} else {
t.to_string()
}
}
pub fn context_tokens_for_meter(
input_tokens: Option<u64>,
cache_creation_tokens: u64,
cache_read_tokens: u64,
) -> Option<u64> {
let input = input_tokens.unwrap_or(0);
if input == 0 && cache_creation_tokens == 0 && cache_read_tokens == 0 {
return None;
}
if cache_read_tokens > 0 && input >= cache_read_tokens {
return Some(input.saturating_add(cache_creation_tokens));
}
Some(
input
.saturating_add(cache_creation_tokens)
.saturating_add(cache_read_tokens),
)
}
impl CompactState {
pub fn new(context_window: u64) -> Self {
Self {
context_window,
..Default::default()
}
}
pub fn add_unsent_bytes(&mut self, bytes: usize) {
self.estimated_unsent_bytes += bytes;
}
pub fn clear_unsent_bytes(&mut self) {
self.estimated_unsent_bytes = 0;
}
pub fn context_tokens_used(&self, pending_input_bytes: usize) -> u64 {
self.total_estimated_tokens(pending_input_bytes)
}
pub fn context_window_tokens(&self) -> u64 {
self.context_window
}
pub fn context_window_usage(&self, pending_input_bytes: usize) -> u8 {
self.context_percentage(pending_input_bytes)
}
pub fn total_estimated_tokens(&self, pending_input_bytes: usize) -> u64 {
let server_tokens = self.last_input_tokens.unwrap_or(0);
let client_bytes = self.estimated_unsent_bytes + pending_input_bytes;
let client_tokens = (client_bytes.saturating_add(3) / 4) as u64;
server_tokens + client_tokens
}
pub fn threshold_level(&self, pending_input_bytes: usize) -> CompactThreshold {
if self.consecutive_failures >= MAX_CONSECUTIVE_FAILURES {
return CompactThreshold::CircuitOpen;
}
let total_tokens = self.total_estimated_tokens(pending_input_bytes);
if total_tokens == 0 {
return CompactThreshold::Normal;
}
let remaining = self.context_window.saturating_sub(total_tokens);
if remaining <= ERROR_THRESHOLD_BUFFER_TOKENS {
CompactThreshold::Error
} else if remaining <= WARNING_THRESHOLD_BUFFER_TOKENS + AUTOCOMPACT_BUFFER_TOKENS {
CompactThreshold::Warning
} else {
CompactThreshold::Normal
}
}
pub fn should_autocompact(&self, buffer_tokens: u64) -> bool {
if self.consecutive_failures >= MAX_CONSECUTIVE_FAILURES {
return false;
}
if self.context_window == 0 {
return false;
}
let used = self.total_estimated_tokens(0);
let pct = (used as f64 / self.context_window as f64) * 100.0;
if pct >= f64::from(self.auto_compact_threshold_percent) {
return true;
}
let Some(input_tokens) = self.last_input_tokens else {
return false;
};
input_tokens.saturating_add(buffer_tokens) >= self.context_window
}
pub fn context_percentage(&self, pending_input_bytes: usize) -> u8 {
if self.context_window == 0 {
return 0;
}
let total_tokens = self.total_estimated_tokens(pending_input_bytes);
let percentage = (total_tokens as f64 / self.context_window as f64) * 100.0;
percentage.clamp(0.0, 100.0) as u8
}
pub fn usage_label(&self, pending_input_bytes: usize) -> String {
self.usage_label_compact(pending_input_bytes)
}
pub fn usage_label_compact(&self, pending_input_bytes: usize) -> String {
let total_tokens = self.total_estimated_tokens(pending_input_bytes);
format!(
"{} / {}",
format_token_short(total_tokens),
format_token_short(self.context_window),
)
}
pub fn usage_label_with_percent(&self, pending_input_bytes: usize) -> String {
let pct = self.context_percentage(pending_input_bytes);
format!(
"{} ({}%)",
self.usage_label_compact(pending_input_bytes),
pct
)
}
pub fn update_usage(&mut self, input_tokens: u64) {
self.update_usage_full(input_tokens, 0);
}
pub fn update_usage_full(&mut self, input_tokens: u64, output_tokens: u64) {
self.last_input_tokens = Some(input_tokens);
self.last_output_tokens = Some(output_tokens);
self.total_tokens_before_compaction = self
.total_tokens_before_compaction
.saturating_add(input_tokens);
self.clear_unsent_bytes();
}
pub fn turn_usage_label(&self) -> Option<String> {
let input = self.last_input_tokens?;
let output = self.last_output_tokens.unwrap_or(0);
Some(format!(
"{}→{}",
format_token_short(input),
format_token_short(output)
))
}
pub async fn auto_compact(
&mut self,
messages: &mut Vec<ModelMessage>,
model_provider: &dyn ModelProvider,
model_name: &str,
harness_config: &HarnessConfig,
) -> Result<Option<u64>> {
if !self.should_autocompact(harness_config.autocompact_buffer_tokens) {
return Ok(None);
}
let system_msgs: Vec<ModelMessage> = messages
.iter()
.filter(|m| m.role == ModelRole::System || m.role == ModelRole::Developer)
.cloned()
.collect();
let conversation_msgs: Vec<ModelMessage> = messages
.iter()
.filter(|m| m.role != ModelRole::System && m.role != ModelRole::Developer)
.cloned()
.collect();
if conversation_msgs.is_empty() {
return Ok(None);
}
let keep_ratio = harness_config.autocompact_keep_ratio.clamp(0.0, 0.9);
let total = conversation_msgs.len();
let keep_count = (total as f64 * keep_ratio).round() as usize;
let keep_count = keep_count.clamp(2.min(total), total.saturating_sub(2).max(2.min(total)));
let split_at = total.saturating_sub(keep_count);
let (old_msgs, recent_msgs) = conversation_msgs.split_at(split_at);
let old_text = build_conversation_text(old_msgs);
if old_text.trim().is_empty() {
return Ok(None);
}
let prompt = if let Some(ref prev_summary) = self.summary {
PARTIAL_COMPACT_PROMPT
.replace("{previous_summary}", prev_summary)
.replace("{new_conversation}", &old_text)
} else {
format!(
"{}\n\nConversation to summarize:\n{}",
COMPACT_PROMPT, old_text
)
};
let request = ModelRequest {
model: model_name.to_string(),
instructions: None,
messages: vec![
ModelMessage::system("You are a precise conversation summarizer."),
ModelMessage::user(prompt),
],
thinking: ThinkingConfig::Off,
tools: vec![],
session_id: None,
};
match model_provider.complete(request).await {
Ok(response) => {
let summary = response.text;
let previous_tokens = self.last_input_tokens.unwrap_or(0);
messages.clear();
messages.extend(system_msgs);
messages.push(ModelMessage::user(format!(
"Here is a summary of the conversation so far:\n\n{}",
summary
)));
messages.extend(recent_msgs.iter().cloned());
self.summary = Some(summary);
self.summary_message_count = messages.len();
self.consecutive_failures = 0;
self.last_input_tokens = None;
self.last_output_tokens = None;
self.compaction_count = self.compaction_count.saturating_add(1);
let tokens_saved =
previous_tokens.saturating_sub(harness_config.autocompact_max_output_tokens);
tracing::info!(
tokens_saved,
old_turns = old_msgs.len(),
kept_turns = recent_msgs.len(),
"auto-compact completed"
);
Ok(Some(tokens_saved))
}
Err(e) => {
self.consecutive_failures += 1;
tracing::warn!(
failures = self.consecutive_failures,
error = %e,
"auto-compact failed"
);
Err(e)
}
}
}
pub fn apply_manual_summary(
&mut self,
messages: &mut Vec<ModelMessage>,
summary: String,
) -> u64 {
let system_msgs: Vec<ModelMessage> = messages
.iter()
.filter(|m| m.role == ModelRole::System)
.cloned()
.collect();
let estimated_previous_tokens = self.last_input_tokens.unwrap_or_else(|| {
messages
.iter()
.map(|message| message.content.len() as u64)
.sum::<u64>()
.saturating_add(3)
/ 4
});
messages.clear();
messages.extend(system_msgs);
messages.push(ModelMessage::user(format!(
"Here is a summary of the conversation so far:\n\n{}",
summary
)));
self.summary = Some(summary);
self.summary_message_count = messages.len();
self.consecutive_failures = 0;
self.last_input_tokens = None;
self.last_output_tokens = None;
self.compaction_count = self.compaction_count.saturating_add(1);
self.clear_unsent_bytes();
estimated_previous_tokens
}
}
fn build_conversation_text(messages: &[ModelMessage]) -> String {
let mut text = String::new();
for msg in messages {
let role_label = match msg.role {
ModelRole::User => "User",
ModelRole::Assistant => "Assistant",
ModelRole::Tool => "Tool",
ModelRole::System | ModelRole::Developer => continue,
};
if msg.role == ModelRole::Tool {
if let Some(ref tool_name) = msg.tool_name {
text.push_str(&format!("[Tool({})]: {}\n", tool_name, msg.content));
} else {
text.push_str(&format!("[Tool]: {}\n", msg.content));
}
} else {
let image_note = if msg.content_parts.iter().any(|p| p.is_image()) {
let count = msg.content_parts.iter().filter(|p| p.is_image()).count();
format!(" [{} image(s) attached]", count)
} else {
String::new()
};
text.push_str(&format!(
"[{}]: {}{}\n",
role_label, msg.content, image_note
));
}
}
text
}
pub const COMPACT_PROMPT: &str = r#"You are summarizing a conversation between a user and an AI coding assistant (NAVI). Create a detailed summary with these exact sections:
## 1. Primary Request and Intent
## 2. Key Technical Concepts
## 3. Files and Code Snippets
## 4. Errors and Fixes
## 5. Problem Resolution
## 6. All User Messages
## 7. Pending Tasks
## 8. Current Work
## 9. Active Work Plan
If the conversation has an active plan (via the plan tool) or an in-progress Plan-mode proposal, include:
- Plan ID and title (if any)
- All steps with completion status
- Which step to work on next
If there is no active plan, skip this section.
Also note any active thread goal (set_goal) separately if present — do not conflate plan and goal.
## 10. Next Step (Optional)
List the next step you would take on the current task.
Be thorough and specific. The summary must contain enough detail to continue the conversation seamlessly.
IMPORTANT: If there is an active plan that is not completed or abandoned, continue it after reading this summary UNLESS the user clearly redirected to a different task — in that case, note the redirect in section 8/10 and do not restart the old plan. Do not create a new plan unless the prior plan is completed, abandoned, or the user asked for a new one."#;
pub const PARTIAL_COMPACT_PROMPT: &str = r#"You are extending an existing conversation summary with new content. Preserve the existing summary sections and update them with new information. Add any new user messages to section 6. Update sections 8 and 9 based on the most recent work.
Existing summary:
{previous_summary}
New conversation to summarize:
{new_conversation}
Return the complete updated summary with all 10 sections (including Active Work Plan if applicable).
IMPORTANT: If there is an active plan, preserve plan details and step completion status. Continue that plan only if the user has not redirected; note any redirect instead of forcing the old plan."#;
fn current_unix_millis() -> u64 {
SystemTime::now()
.duration_since(UNIX_EPOCH)
.unwrap_or_default()
.as_millis() as u64
}
#[cfg(test)]
mod tests {
use super::*;
use crate::model::ModelMessage;
#[test]
fn micro_compact_clears_read_only_tools_after_gap() {
let now = current_unix_millis();
let gap_ms: u64 = 61 * 60 * 1000;
let mut messages = vec![
ModelMessage::system("system"),
ModelMessage::user("task"),
{
let mut m = ModelMessage::assistant("response");
m.created_at = Some(now.saturating_sub(gap_ms));
m
},
ModelMessage::tool_result("call-1", "read_file", "file content here".to_string()),
ModelMessage::tool_result("call-2", "write_file", "written content".to_string()),
ModelMessage::tool_result("call-3", "grep", "match results".to_string()),
ModelMessage::tool_result("call-5", "bash", "command output".to_string()),
];
let cleared = micro_compact(&mut messages, 60);
assert_eq!(cleared, 2);
assert!(
messages[3]
.content
.contains("[Old tool result content cleared]")
);
assert_eq!(messages[4].content, "written content");
assert!(
messages[5]
.content
.contains("[Old tool result content cleared]")
);
assert_eq!(messages[6].content, "command output");
}
#[test]
fn micro_compact_no_gap_returns_zero() {
let mut messages = vec![
ModelMessage::system("system"),
ModelMessage::user("task"),
ModelMessage::assistant("response"),
ModelMessage::tool_result("call-1", "read_file", "content".to_string()),
];
let cleared = micro_compact(&mut messages, 60);
assert_eq!(cleared, 0);
}
#[test]
fn micro_compact_no_double_clear() {
let now = current_unix_millis();
let gap_ms: u64 = 61 * 60 * 1000;
let mut messages = vec![
ModelMessage::system("system"),
{
let mut m = ModelMessage::assistant("response");
m.created_at = Some(now.saturating_sub(gap_ms));
m
},
ModelMessage::tool_result(
"call-1",
"read_file",
"[Old tool result content cleared]".to_string(),
),
];
let cleared = micro_compact(&mut messages, 60);
assert_eq!(cleared, 0);
}
#[test]
fn compact_state_threshold_normal() {
let state = CompactState {
last_input_tokens: Some(50_000),
context_window: 200_000,
..Default::default()
};
assert_eq!(state.threshold_level(0), CompactThreshold::Normal);
}
#[test]
fn compact_state_threshold_warning() {
let state = CompactState {
last_input_tokens: Some(170_000),
context_window: 200_000,
..Default::default()
};
assert_eq!(state.threshold_level(0), CompactThreshold::Warning);
}
#[test]
fn compact_state_threshold_error() {
let state = CompactState {
last_input_tokens: Some(181_000),
context_window: 200_000,
..Default::default()
};
assert_eq!(state.threshold_level(0), CompactThreshold::Error);
}
#[test]
fn compact_state_circuit_breaker() {
let state = CompactState {
last_input_tokens: Some(50_000),
context_window: 200_000,
consecutive_failures: 3,
..Default::default()
};
assert_eq!(state.threshold_level(0), CompactThreshold::CircuitOpen);
assert!(!state.should_autocompact(AUTOCOMPACT_BUFFER_TOKENS));
}
#[test]
fn compact_state_should_autocompact() {
let state = CompactState {
last_input_tokens: Some(190_000),
context_window: 200_000,
..Default::default()
};
assert!(state.should_autocompact(AUTOCOMPACT_BUFFER_TOKENS));
}
#[test]
fn compact_state_autocompact_at_eighty_five_percent() {
let state = CompactState {
last_input_tokens: Some(170_000),
context_window: 200_000,
auto_compact_threshold_percent: 85,
..Default::default()
};
assert!(state.should_autocompact(0));
assert_eq!(state.context_window_usage(0), 85);
}
#[test]
fn compact_state_update_usage_full_tracks_cumulative() {
let mut state = CompactState::new(200_000);
state.update_usage_full(10_000, 500);
state.update_usage_full(12_000, 800);
assert_eq!(state.last_input_tokens, Some(12_000));
assert_eq!(state.last_output_tokens, Some(800));
assert_eq!(state.total_tokens_before_compaction, 22_000);
assert_eq!(state.turn_usage_label().as_deref(), Some("12k→800"));
}
#[test]
fn compact_state_manual_summary_compacts_below_threshold() {
let mut state = CompactState {
last_input_tokens: Some(10_000),
context_window: 200_000,
consecutive_failures: 2,
estimated_unsent_bytes: 4096,
..Default::default()
};
assert!(!state.should_autocompact(AUTOCOMPACT_BUFFER_TOKENS));
let mut messages = vec![
ModelMessage::system("system"),
ModelMessage::user("task"),
ModelMessage::assistant("response"),
];
let tokens_saved = state.apply_manual_summary(&mut messages, "Manual summary".to_string());
assert_eq!(tokens_saved, 10_000);
assert_eq!(messages.len(), 2);
assert_eq!(messages[0].role, ModelRole::System);
assert!(messages[1].content.contains("Manual summary"));
assert_eq!(state.summary.as_deref(), Some("Manual summary"));
assert_eq!(state.summary_message_count, 2);
assert_eq!(state.consecutive_failures, 0);
assert_eq!(state.estimated_unsent_bytes, 0);
assert!(state.last_input_tokens.is_none());
}
#[test]
fn compact_state_context_percentage() {
let state = CompactState {
last_input_tokens: Some(100_000),
context_window: 200_000,
..Default::default()
};
assert_eq!(state.context_percentage(0), 50);
}
#[test]
fn compact_state_no_usage_returns_zero_percent() {
let state = CompactState {
last_input_tokens: None,
context_window: 200_000,
..Default::default()
};
assert_eq!(state.context_percentage(0), 0);
}
#[test]
fn compact_state_usage_label_shows_real_context_usage() {
let state = CompactState {
last_input_tokens: Some(2_000),
context_window: 128_000,
..Default::default()
};
assert_eq!(state.usage_label(0), "2k / 128k");
assert_eq!(state.usage_label_with_percent(0), "2k / 128k (1%)");
}
#[test]
fn context_tokens_for_meter_sums_exclusive_cache() {
assert_eq!(context_tokens_for_meter(Some(430), 0, 63_570), Some(64_000));
}
#[test]
fn context_tokens_for_meter_keeps_openai_inclusive() {
assert_eq!(
context_tokens_for_meter(Some(64_000), 0, 63_570),
Some(64_000)
);
}
#[test]
fn format_token_short_million_window() {
assert_eq!(format_token_short(1_048_576), "1M");
assert_eq!(format_token_short(64_000), "64k");
}
#[test]
fn write_tool_preserved_in_micro_compact() {
let now = current_unix_millis();
let gap_ms: u64 = 61 * 60 * 1000;
let mut messages = vec![
ModelMessage::system("system"),
{
let mut m = ModelMessage::assistant("response");
m.created_at = Some(now.saturating_sub(gap_ms));
m
},
ModelMessage::tool_result("call-1", "write_file", "content written".to_string()),
ModelMessage::tool_result("call-2", "apply_patch", "patch applied".to_string()),
];
let cleared = micro_compact(&mut messages, 60);
assert_eq!(cleared, 0);
assert_eq!(messages[2].content, "content written");
assert_eq!(messages[3].content, "patch applied");
}
#[test]
fn regression_micro_compact_no_assistant_messages_returns_zero() {
let mut messages = vec![
ModelMessage::system("system"),
ModelMessage::user("hello"),
ModelMessage::tool_result("c1", "read_file", "content"),
];
let cleared = micro_compact(&mut messages, 60);
assert_eq!(cleared, 0);
}
#[test]
fn regression_micro_compact_preserves_non_readonly_tools() {
let now = current_unix_millis();
let gap_ms: u64 = 61 * 60 * 1000;
let mut messages = vec![
ModelMessage::system("system"),
{
let mut m = ModelMessage::assistant("response");
m.created_at = Some(now.saturating_sub(gap_ms));
m
},
ModelMessage::tool_result("c1", "write_file", "file written"),
ModelMessage::tool_result("c2", "package_manager", "deps ok"),
ModelMessage::tool_result("c3", "apply_patch", "patch applied"),
ModelMessage::tool_result("c4", "bash", "command ok"),
];
let cleared = micro_compact(&mut messages, 60);
assert_eq!(cleared, 0, "non-read-only tools must not be cleared");
assert_eq!(messages[2].content, "file written");
assert_eq!(messages[3].content, "deps ok");
assert_eq!(messages[4].content, "patch applied");
assert_eq!(messages[5].content, "command ok");
}
#[test]
fn regression_compact_state_percentage_clamps_to_100() {
let mut state = CompactState::new(1000);
state.last_input_tokens = Some(2000);
let pct = state.context_percentage(0);
assert!(pct <= 100, "percentage must clamp to 100, got {pct}");
}
#[test]
fn regression_compact_state_usage_label_formats_millions() {
let state = CompactState {
last_input_tokens: Some(1_500_000),
context_window: 2_000_000,
..Default::default()
};
let label = state.usage_label(0);
assert!(label.contains("M"), "should use M format for millions");
}
#[test]
fn regression_build_conversation_text_excludes_system() {
let messages = vec![
ModelMessage::system("you are a helpful assistant"),
ModelMessage::user("hello"),
ModelMessage::assistant("hi there"),
];
let text = build_conversation_text(&messages);
assert!(
!text.contains("you are a helpful assistant"),
"system message must be excluded"
);
assert!(text.contains("hello"));
assert!(text.contains("hi there"));
}
#[test]
fn regression_build_conversation_text_includes_tool_name() {
let messages = vec![
ModelMessage::user("read file"),
ModelMessage::tool_result("c1", "read_file", "file content"),
];
let text = build_conversation_text(&messages);
assert!(
text.contains("read_file"),
"tool name must be included in conversation text"
);
}
#[test]
fn keep_ratio_clamps_valid_range() {
let config = HarnessConfig {
autocompact_keep_ratio: 0.25,
..Default::default()
};
assert_eq!(config.autocompact_keep_ratio, 0.25);
}
#[test]
fn keep_ratio_default_is_25_percent() {
let config = HarnessConfig::default();
assert_eq!(config.autocompact_keep_ratio, 0.25);
}
#[test]
fn build_conversation_text_preserves_order() {
let messages = vec![
ModelMessage::user("first"),
ModelMessage::assistant("second"),
ModelMessage::user("third"),
ModelMessage::assistant("fourth"),
];
let text = build_conversation_text(&messages);
let first_pos = text.find("first").unwrap();
let second_pos = text.find("second").unwrap();
let third_pos = text.find("third").unwrap();
let fourth_pos = text.find("fourth").unwrap();
assert!(first_pos < second_pos);
assert!(second_pos < third_pos);
assert!(third_pos < fourth_pos);
}
}