acp_thread.rs

   1mod connection;
   2mod diff;
   3mod mention;
   4mod terminal;
   5
   6use agent_settings::AgentSettings;
   7use collections::HashSet;
   8pub use connection::*;
   9pub use diff::*;
  10use futures::future::Shared;
  11use language::language_settings::FormatOnSave;
  12pub use mention::*;
  13use project::lsp_store::{FormatTrigger, LspFormatTarget};
  14use serde::{Deserialize, Serialize};
  15use settings::Settings as _;
  16pub use terminal::*;
  17
  18use action_log::ActionLog;
  19use agent_client_protocol::{self as acp};
  20use anyhow::{Context as _, Result, anyhow};
  21use editor::Bias;
  22use futures::{FutureExt, channel::oneshot, future::BoxFuture};
  23use gpui::{AppContext, AsyncApp, Context, Entity, EventEmitter, SharedString, Task, WeakEntity};
  24use itertools::Itertools;
  25use language::{Anchor, Buffer, BufferSnapshot, LanguageRegistry, Point, ToPoint, text_diff};
  26use markdown::Markdown;
  27use project::{AgentLocation, Project, git_store::GitStoreCheckpoint};
  28use std::collections::HashMap;
  29use std::error::Error;
  30use std::fmt::{Formatter, Write};
  31use std::ops::Range;
  32use std::process::ExitStatus;
  33use std::rc::Rc;
  34use std::time::{Duration, Instant};
  35use std::{fmt::Display, mem, path::PathBuf, sync::Arc};
  36use ui::App;
  37use util::{ResultExt, get_system_shell};
  38use uuid::Uuid;
  39
  40#[derive(Debug)]
  41pub struct UserMessage {
  42    pub id: Option<UserMessageId>,
  43    pub content: ContentBlock,
  44    pub chunks: Vec<acp::ContentBlock>,
  45    pub checkpoint: Option<Checkpoint>,
  46}
  47
  48#[derive(Debug)]
  49pub struct Checkpoint {
  50    git_checkpoint: GitStoreCheckpoint,
  51    pub show: bool,
  52}
  53
  54impl UserMessage {
  55    fn to_markdown(&self, cx: &App) -> String {
  56        let mut markdown = String::new();
  57        if self
  58            .checkpoint
  59            .as_ref()
  60            .is_some_and(|checkpoint| checkpoint.show)
  61        {
  62            writeln!(markdown, "## User (checkpoint)").unwrap();
  63        } else {
  64            writeln!(markdown, "## User").unwrap();
  65        }
  66        writeln!(markdown).unwrap();
  67        writeln!(markdown, "{}", self.content.to_markdown(cx)).unwrap();
  68        writeln!(markdown).unwrap();
  69        markdown
  70    }
  71}
  72
  73#[derive(Debug, PartialEq)]
  74pub struct AssistantMessage {
  75    pub chunks: Vec<AssistantMessageChunk>,
  76}
  77
  78impl AssistantMessage {
  79    pub fn to_markdown(&self, cx: &App) -> String {
  80        format!(
  81            "## Assistant\n\n{}\n\n",
  82            self.chunks
  83                .iter()
  84                .map(|chunk| chunk.to_markdown(cx))
  85                .join("\n\n")
  86        )
  87    }
  88}
  89
  90#[derive(Debug, PartialEq)]
  91pub enum AssistantMessageChunk {
  92    Message { block: ContentBlock },
  93    Thought { block: ContentBlock },
  94}
  95
  96impl AssistantMessageChunk {
  97    pub fn from_str(chunk: &str, language_registry: &Arc<LanguageRegistry>, cx: &mut App) -> Self {
  98        Self::Message {
  99            block: ContentBlock::new(chunk.into(), language_registry, cx),
 100        }
 101    }
 102
 103    fn to_markdown(&self, cx: &App) -> String {
 104        match self {
 105            Self::Message { block } => block.to_markdown(cx).to_string(),
 106            Self::Thought { block } => {
 107                format!("<thinking>\n{}\n</thinking>", block.to_markdown(cx))
 108            }
 109        }
 110    }
 111}
 112
 113#[derive(Debug)]
 114pub enum AgentThreadEntry {
 115    UserMessage(UserMessage),
 116    AssistantMessage(AssistantMessage),
 117    ToolCall(ToolCall),
 118}
 119
 120impl AgentThreadEntry {
 121    pub fn to_markdown(&self, cx: &App) -> String {
 122        match self {
 123            Self::UserMessage(message) => message.to_markdown(cx),
 124            Self::AssistantMessage(message) => message.to_markdown(cx),
 125            Self::ToolCall(tool_call) => tool_call.to_markdown(cx),
 126        }
 127    }
 128
 129    pub fn user_message(&self) -> Option<&UserMessage> {
 130        if let AgentThreadEntry::UserMessage(message) = self {
 131            Some(message)
 132        } else {
 133            None
 134        }
 135    }
 136
 137    pub fn diffs(&self) -> impl Iterator<Item = &Entity<Diff>> {
 138        if let AgentThreadEntry::ToolCall(call) = self {
 139            itertools::Either::Left(call.diffs())
 140        } else {
 141            itertools::Either::Right(std::iter::empty())
 142        }
 143    }
 144
 145    pub fn terminals(&self) -> impl Iterator<Item = &Entity<Terminal>> {
 146        if let AgentThreadEntry::ToolCall(call) = self {
 147            itertools::Either::Left(call.terminals())
 148        } else {
 149            itertools::Either::Right(std::iter::empty())
 150        }
 151    }
 152
 153    pub fn location(&self, ix: usize) -> Option<(acp::ToolCallLocation, AgentLocation)> {
 154        if let AgentThreadEntry::ToolCall(ToolCall {
 155            locations,
 156            resolved_locations,
 157            ..
 158        }) = self
 159        {
 160            Some((
 161                locations.get(ix)?.clone(),
 162                resolved_locations.get(ix)?.clone()?,
 163            ))
 164        } else {
 165            None
 166        }
 167    }
 168}
 169
 170#[derive(Debug)]
 171pub struct ToolCall {
 172    pub id: acp::ToolCallId,
 173    pub label: Entity<Markdown>,
 174    pub kind: acp::ToolKind,
 175    pub content: Vec<ToolCallContent>,
 176    pub status: ToolCallStatus,
 177    pub locations: Vec<acp::ToolCallLocation>,
 178    pub resolved_locations: Vec<Option<AgentLocation>>,
 179    pub raw_input: Option<serde_json::Value>,
 180    pub raw_output: Option<serde_json::Value>,
 181}
 182
 183impl ToolCall {
 184    fn from_acp(
 185        tool_call: acp::ToolCall,
 186        status: ToolCallStatus,
 187        language_registry: Arc<LanguageRegistry>,
 188        terminals: &HashMap<acp::TerminalId, Entity<Terminal>>,
 189        cx: &mut App,
 190    ) -> Result<Self> {
 191        let title = if let Some((first_line, _)) = tool_call.title.split_once("\n") {
 192            first_line.to_owned() + ""
 193        } else {
 194            tool_call.title
 195        };
 196        let mut content = Vec::with_capacity(tool_call.content.len());
 197        for item in tool_call.content {
 198            content.push(ToolCallContent::from_acp(
 199                item,
 200                language_registry.clone(),
 201                terminals,
 202                cx,
 203            )?);
 204        }
 205
 206        let result = Self {
 207            id: tool_call.id,
 208            label: cx
 209                .new(|cx| Markdown::new(title.into(), Some(language_registry.clone()), None, cx)),
 210            kind: tool_call.kind,
 211            content,
 212            locations: tool_call.locations,
 213            resolved_locations: Vec::default(),
 214            status,
 215            raw_input: tool_call.raw_input,
 216            raw_output: tool_call.raw_output,
 217        };
 218        Ok(result)
 219    }
 220
 221    fn update_fields(
 222        &mut self,
 223        fields: acp::ToolCallUpdateFields,
 224        language_registry: Arc<LanguageRegistry>,
 225        terminals: &HashMap<acp::TerminalId, Entity<Terminal>>,
 226        cx: &mut App,
 227    ) -> Result<()> {
 228        let acp::ToolCallUpdateFields {
 229            kind,
 230            status,
 231            title,
 232            content,
 233            locations,
 234            raw_input,
 235            raw_output,
 236        } = fields;
 237
 238        if let Some(kind) = kind {
 239            self.kind = kind;
 240        }
 241
 242        if let Some(status) = status {
 243            self.status = status.into();
 244        }
 245
 246        if let Some(title) = title {
 247            self.label.update(cx, |label, cx| {
 248                if let Some((first_line, _)) = title.split_once("\n") {
 249                    label.replace(first_line.to_owned() + "", cx)
 250                } else {
 251                    label.replace(title, cx);
 252                }
 253            });
 254        }
 255
 256        if let Some(content) = content {
 257            let new_content_len = content.len();
 258            let mut content = content.into_iter();
 259
 260            // Reuse existing content if we can
 261            for (old, new) in self.content.iter_mut().zip(content.by_ref()) {
 262                old.update_from_acp(new, language_registry.clone(), terminals, cx)?;
 263            }
 264            for new in content {
 265                self.content.push(ToolCallContent::from_acp(
 266                    new,
 267                    language_registry.clone(),
 268                    terminals,
 269                    cx,
 270                )?)
 271            }
 272            self.content.truncate(new_content_len);
 273        }
 274
 275        if let Some(locations) = locations {
 276            self.locations = locations;
 277        }
 278
 279        if let Some(raw_input) = raw_input {
 280            self.raw_input = Some(raw_input);
 281        }
 282
 283        if let Some(raw_output) = raw_output {
 284            if self.content.is_empty()
 285                && let Some(markdown) = markdown_for_raw_output(&raw_output, &language_registry, cx)
 286            {
 287                self.content
 288                    .push(ToolCallContent::ContentBlock(ContentBlock::Markdown {
 289                        markdown,
 290                    }));
 291            }
 292            self.raw_output = Some(raw_output);
 293        }
 294        Ok(())
 295    }
 296
 297    pub fn diffs(&self) -> impl Iterator<Item = &Entity<Diff>> {
 298        self.content.iter().filter_map(|content| match content {
 299            ToolCallContent::Diff(diff) => Some(diff),
 300            ToolCallContent::ContentBlock(_) => None,
 301            ToolCallContent::Terminal(_) => None,
 302        })
 303    }
 304
 305    pub fn terminals(&self) -> impl Iterator<Item = &Entity<Terminal>> {
 306        self.content.iter().filter_map(|content| match content {
 307            ToolCallContent::Terminal(terminal) => Some(terminal),
 308            ToolCallContent::ContentBlock(_) => None,
 309            ToolCallContent::Diff(_) => None,
 310        })
 311    }
 312
 313    fn to_markdown(&self, cx: &App) -> String {
 314        let mut markdown = format!(
 315            "**Tool Call: {}**\nStatus: {}\n\n",
 316            self.label.read(cx).source(),
 317            self.status
 318        );
 319        for content in &self.content {
 320            markdown.push_str(content.to_markdown(cx).as_str());
 321            markdown.push_str("\n\n");
 322        }
 323        markdown
 324    }
 325
 326    async fn resolve_location(
 327        location: acp::ToolCallLocation,
 328        project: WeakEntity<Project>,
 329        cx: &mut AsyncApp,
 330    ) -> Option<AgentLocation> {
 331        let buffer = project
 332            .update(cx, |project, cx| {
 333                project
 334                    .project_path_for_absolute_path(&location.path, cx)
 335                    .map(|path| project.open_buffer(path, cx))
 336            })
 337            .ok()??;
 338        let buffer = buffer.await.log_err()?;
 339        let position = buffer
 340            .update(cx, |buffer, _| {
 341                if let Some(row) = location.line {
 342                    let snapshot = buffer.snapshot();
 343                    let column = snapshot.indent_size_for_line(row).len;
 344                    let point = snapshot.clip_point(Point::new(row, column), Bias::Left);
 345                    snapshot.anchor_before(point)
 346                } else {
 347                    Anchor::MIN
 348                }
 349            })
 350            .ok()?;
 351
 352        Some(AgentLocation {
 353            buffer: buffer.downgrade(),
 354            position,
 355        })
 356    }
 357
 358    fn resolve_locations(
 359        &self,
 360        project: Entity<Project>,
 361        cx: &mut App,
 362    ) -> Task<Vec<Option<AgentLocation>>> {
 363        let locations = self.locations.clone();
 364        project.update(cx, |_, cx| {
 365            cx.spawn(async move |project, cx| {
 366                let mut new_locations = Vec::new();
 367                for location in locations {
 368                    new_locations.push(Self::resolve_location(location, project.clone(), cx).await);
 369                }
 370                new_locations
 371            })
 372        })
 373    }
 374}
 375
 376#[derive(Debug)]
 377pub enum ToolCallStatus {
 378    /// The tool call hasn't started running yet, but we start showing it to
 379    /// the user.
 380    Pending,
 381    /// The tool call is waiting for confirmation from the user.
 382    WaitingForConfirmation {
 383        options: Vec<acp::PermissionOption>,
 384        respond_tx: oneshot::Sender<acp::PermissionOptionId>,
 385    },
 386    /// The tool call is currently running.
 387    InProgress,
 388    /// The tool call completed successfully.
 389    Completed,
 390    /// The tool call failed.
 391    Failed,
 392    /// The user rejected the tool call.
 393    Rejected,
 394    /// The user canceled generation so the tool call was canceled.
 395    Canceled,
 396}
 397
 398impl From<acp::ToolCallStatus> for ToolCallStatus {
 399    fn from(status: acp::ToolCallStatus) -> Self {
 400        match status {
 401            acp::ToolCallStatus::Pending => Self::Pending,
 402            acp::ToolCallStatus::InProgress => Self::InProgress,
 403            acp::ToolCallStatus::Completed => Self::Completed,
 404            acp::ToolCallStatus::Failed => Self::Failed,
 405        }
 406    }
 407}
 408
 409impl Display for ToolCallStatus {
 410    fn fmt(&self, f: &mut Formatter<'_>) -> std::fmt::Result {
 411        write!(
 412            f,
 413            "{}",
 414            match self {
 415                ToolCallStatus::Pending => "Pending",
 416                ToolCallStatus::WaitingForConfirmation { .. } => "Waiting for confirmation",
 417                ToolCallStatus::InProgress => "In Progress",
 418                ToolCallStatus::Completed => "Completed",
 419                ToolCallStatus::Failed => "Failed",
 420                ToolCallStatus::Rejected => "Rejected",
 421                ToolCallStatus::Canceled => "Canceled",
 422            }
 423        )
 424    }
 425}
 426
 427#[derive(Debug, PartialEq, Clone)]
 428pub enum ContentBlock {
 429    Empty,
 430    Markdown { markdown: Entity<Markdown> },
 431    ResourceLink { resource_link: acp::ResourceLink },
 432}
 433
 434impl ContentBlock {
 435    pub fn new(
 436        block: acp::ContentBlock,
 437        language_registry: &Arc<LanguageRegistry>,
 438        cx: &mut App,
 439    ) -> Self {
 440        let mut this = Self::Empty;
 441        this.append(block, language_registry, cx);
 442        this
 443    }
 444
 445    pub fn new_combined(
 446        blocks: impl IntoIterator<Item = acp::ContentBlock>,
 447        language_registry: Arc<LanguageRegistry>,
 448        cx: &mut App,
 449    ) -> Self {
 450        let mut this = Self::Empty;
 451        for block in blocks {
 452            this.append(block, &language_registry, cx);
 453        }
 454        this
 455    }
 456
 457    pub fn append(
 458        &mut self,
 459        block: acp::ContentBlock,
 460        language_registry: &Arc<LanguageRegistry>,
 461        cx: &mut App,
 462    ) {
 463        if matches!(self, ContentBlock::Empty)
 464            && let acp::ContentBlock::ResourceLink(resource_link) = block
 465        {
 466            *self = ContentBlock::ResourceLink { resource_link };
 467            return;
 468        }
 469
 470        let new_content = self.block_string_contents(block);
 471
 472        match self {
 473            ContentBlock::Empty => {
 474                *self = Self::create_markdown_block(new_content, language_registry, cx);
 475            }
 476            ContentBlock::Markdown { markdown } => {
 477                markdown.update(cx, |markdown, cx| markdown.append(&new_content, cx));
 478            }
 479            ContentBlock::ResourceLink { resource_link } => {
 480                let existing_content = Self::resource_link_md(&resource_link.uri);
 481                let combined = format!("{}\n{}", existing_content, new_content);
 482
 483                *self = Self::create_markdown_block(combined, language_registry, cx);
 484            }
 485        }
 486    }
 487
 488    fn create_markdown_block(
 489        content: String,
 490        language_registry: &Arc<LanguageRegistry>,
 491        cx: &mut App,
 492    ) -> ContentBlock {
 493        ContentBlock::Markdown {
 494            markdown: cx
 495                .new(|cx| Markdown::new(content.into(), Some(language_registry.clone()), None, cx)),
 496        }
 497    }
 498
 499    fn block_string_contents(&self, block: acp::ContentBlock) -> String {
 500        match block {
 501            acp::ContentBlock::Text(text_content) => text_content.text,
 502            acp::ContentBlock::ResourceLink(resource_link) => {
 503                Self::resource_link_md(&resource_link.uri)
 504            }
 505            acp::ContentBlock::Resource(acp::EmbeddedResource {
 506                resource:
 507                    acp::EmbeddedResourceResource::TextResourceContents(acp::TextResourceContents {
 508                        uri,
 509                        ..
 510                    }),
 511                ..
 512            }) => Self::resource_link_md(&uri),
 513            acp::ContentBlock::Image(image) => Self::image_md(&image),
 514            acp::ContentBlock::Audio(_) | acp::ContentBlock::Resource(_) => String::new(),
 515        }
 516    }
 517
 518    fn resource_link_md(uri: &str) -> String {
 519        if let Some(uri) = MentionUri::parse(uri).log_err() {
 520            uri.as_link().to_string()
 521        } else {
 522            uri.to_string()
 523        }
 524    }
 525
 526    fn image_md(_image: &acp::ImageContent) -> String {
 527        "`Image`".into()
 528    }
 529
 530    pub fn to_markdown<'a>(&'a self, cx: &'a App) -> &'a str {
 531        match self {
 532            ContentBlock::Empty => "",
 533            ContentBlock::Markdown { markdown } => markdown.read(cx).source(),
 534            ContentBlock::ResourceLink { resource_link } => &resource_link.uri,
 535        }
 536    }
 537
 538    pub fn markdown(&self) -> Option<&Entity<Markdown>> {
 539        match self {
 540            ContentBlock::Empty => None,
 541            ContentBlock::Markdown { markdown } => Some(markdown),
 542            ContentBlock::ResourceLink { .. } => None,
 543        }
 544    }
 545
 546    pub fn resource_link(&self) -> Option<&acp::ResourceLink> {
 547        match self {
 548            ContentBlock::ResourceLink { resource_link } => Some(resource_link),
 549            _ => None,
 550        }
 551    }
 552}
 553
 554#[derive(Debug)]
 555pub enum ToolCallContent {
 556    ContentBlock(ContentBlock),
 557    Diff(Entity<Diff>),
 558    Terminal(Entity<Terminal>),
 559}
 560
 561impl ToolCallContent {
 562    pub fn from_acp(
 563        content: acp::ToolCallContent,
 564        language_registry: Arc<LanguageRegistry>,
 565        terminals: &HashMap<acp::TerminalId, Entity<Terminal>>,
 566        cx: &mut App,
 567    ) -> Result<Self> {
 568        match content {
 569            acp::ToolCallContent::Content { content } => Ok(Self::ContentBlock(ContentBlock::new(
 570                content,
 571                &language_registry,
 572                cx,
 573            ))),
 574            acp::ToolCallContent::Diff { diff } => Ok(Self::Diff(cx.new(|cx| {
 575                Diff::finalized(
 576                    diff.path,
 577                    diff.old_text,
 578                    diff.new_text,
 579                    language_registry,
 580                    cx,
 581                )
 582            }))),
 583            acp::ToolCallContent::Terminal { terminal_id } => terminals
 584                .get(&terminal_id)
 585                .cloned()
 586                .map(Self::Terminal)
 587                .ok_or_else(|| anyhow::anyhow!("Terminal with id `{}` not found", terminal_id)),
 588        }
 589    }
 590
 591    pub fn update_from_acp(
 592        &mut self,
 593        new: acp::ToolCallContent,
 594        language_registry: Arc<LanguageRegistry>,
 595        terminals: &HashMap<acp::TerminalId, Entity<Terminal>>,
 596        cx: &mut App,
 597    ) -> Result<()> {
 598        let needs_update = match (&self, &new) {
 599            (Self::Diff(old_diff), acp::ToolCallContent::Diff { diff: new_diff }) => {
 600                old_diff.read(cx).needs_update(
 601                    new_diff.old_text.as_deref().unwrap_or(""),
 602                    &new_diff.new_text,
 603                    cx,
 604                )
 605            }
 606            _ => true,
 607        };
 608
 609        if needs_update {
 610            *self = Self::from_acp(new, language_registry, terminals, cx)?;
 611        }
 612        Ok(())
 613    }
 614
 615    pub fn to_markdown(&self, cx: &App) -> String {
 616        match self {
 617            Self::ContentBlock(content) => content.to_markdown(cx).to_string(),
 618            Self::Diff(diff) => diff.read(cx).to_markdown(cx),
 619            Self::Terminal(terminal) => terminal.read(cx).to_markdown(cx),
 620        }
 621    }
 622}
 623
 624#[derive(Debug, PartialEq)]
 625pub enum ToolCallUpdate {
 626    UpdateFields(acp::ToolCallUpdate),
 627    UpdateDiff(ToolCallUpdateDiff),
 628    UpdateTerminal(ToolCallUpdateTerminal),
 629}
 630
 631impl ToolCallUpdate {
 632    fn id(&self) -> &acp::ToolCallId {
 633        match self {
 634            Self::UpdateFields(update) => &update.id,
 635            Self::UpdateDiff(diff) => &diff.id,
 636            Self::UpdateTerminal(terminal) => &terminal.id,
 637        }
 638    }
 639}
 640
 641impl From<acp::ToolCallUpdate> for ToolCallUpdate {
 642    fn from(update: acp::ToolCallUpdate) -> Self {
 643        Self::UpdateFields(update)
 644    }
 645}
 646
 647impl From<ToolCallUpdateDiff> for ToolCallUpdate {
 648    fn from(diff: ToolCallUpdateDiff) -> Self {
 649        Self::UpdateDiff(diff)
 650    }
 651}
 652
 653#[derive(Debug, PartialEq)]
 654pub struct ToolCallUpdateDiff {
 655    pub id: acp::ToolCallId,
 656    pub diff: Entity<Diff>,
 657}
 658
 659impl From<ToolCallUpdateTerminal> for ToolCallUpdate {
 660    fn from(terminal: ToolCallUpdateTerminal) -> Self {
 661        Self::UpdateTerminal(terminal)
 662    }
 663}
 664
 665#[derive(Debug, PartialEq)]
 666pub struct ToolCallUpdateTerminal {
 667    pub id: acp::ToolCallId,
 668    pub terminal: Entity<Terminal>,
 669}
 670
 671#[derive(Debug, Default)]
 672pub struct Plan {
 673    pub entries: Vec<PlanEntry>,
 674}
 675
 676#[derive(Debug)]
 677pub struct PlanStats<'a> {
 678    pub in_progress_entry: Option<&'a PlanEntry>,
 679    pub pending: u32,
 680    pub completed: u32,
 681}
 682
 683impl Plan {
 684    pub fn is_empty(&self) -> bool {
 685        self.entries.is_empty()
 686    }
 687
 688    pub fn stats(&self) -> PlanStats<'_> {
 689        let mut stats = PlanStats {
 690            in_progress_entry: None,
 691            pending: 0,
 692            completed: 0,
 693        };
 694
 695        for entry in &self.entries {
 696            match &entry.status {
 697                acp::PlanEntryStatus::Pending => {
 698                    stats.pending += 1;
 699                }
 700                acp::PlanEntryStatus::InProgress => {
 701                    stats.in_progress_entry = stats.in_progress_entry.or(Some(entry));
 702                }
 703                acp::PlanEntryStatus::Completed => {
 704                    stats.completed += 1;
 705                }
 706            }
 707        }
 708
 709        stats
 710    }
 711}
 712
 713#[derive(Debug)]
 714pub struct PlanEntry {
 715    pub content: Entity<Markdown>,
 716    pub priority: acp::PlanEntryPriority,
 717    pub status: acp::PlanEntryStatus,
 718}
 719
 720impl PlanEntry {
 721    pub fn from_acp(entry: acp::PlanEntry, cx: &mut App) -> Self {
 722        Self {
 723            content: cx.new(|cx| Markdown::new(entry.content.into(), None, None, cx)),
 724            priority: entry.priority,
 725            status: entry.status,
 726        }
 727    }
 728}
 729
 730#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
 731pub struct TokenUsage {
 732    pub max_tokens: u64,
 733    pub used_tokens: u64,
 734}
 735
 736impl TokenUsage {
 737    pub fn ratio(&self) -> TokenUsageRatio {
 738        #[cfg(debug_assertions)]
 739        let warning_threshold: f32 = std::env::var("ZED_THREAD_WARNING_THRESHOLD")
 740            .unwrap_or("0.8".to_string())
 741            .parse()
 742            .unwrap();
 743        #[cfg(not(debug_assertions))]
 744        let warning_threshold: f32 = 0.8;
 745
 746        // When the maximum is unknown because there is no selected model,
 747        // avoid showing the token limit warning.
 748        if self.max_tokens == 0 {
 749            TokenUsageRatio::Normal
 750        } else if self.used_tokens >= self.max_tokens {
 751            TokenUsageRatio::Exceeded
 752        } else if self.used_tokens as f32 / self.max_tokens as f32 >= warning_threshold {
 753            TokenUsageRatio::Warning
 754        } else {
 755            TokenUsageRatio::Normal
 756        }
 757    }
 758}
 759
 760#[derive(Debug, Clone, PartialEq, Eq)]
 761pub enum TokenUsageRatio {
 762    Normal,
 763    Warning,
 764    Exceeded,
 765}
 766
 767#[derive(Debug, Clone)]
 768pub struct RetryStatus {
 769    pub last_error: SharedString,
 770    pub attempt: usize,
 771    pub max_attempts: usize,
 772    pub started_at: Instant,
 773    pub duration: Duration,
 774}
 775
 776pub struct AcpThread {
 777    title: SharedString,
 778    entries: Vec<AgentThreadEntry>,
 779    plan: Plan,
 780    project: Entity<Project>,
 781    action_log: Entity<ActionLog>,
 782    shared_buffers: HashMap<Entity<Buffer>, BufferSnapshot>,
 783    send_task: Option<Task<()>>,
 784    connection: Rc<dyn AgentConnection>,
 785    session_id: acp::SessionId,
 786    token_usage: Option<TokenUsage>,
 787    prompt_capabilities: acp::PromptCapabilities,
 788    _observe_prompt_capabilities: Task<anyhow::Result<()>>,
 789    determine_shell: Shared<Task<String>>,
 790    terminals: HashMap<acp::TerminalId, Entity<Terminal>>,
 791}
 792
 793#[derive(Debug)]
 794pub enum AcpThreadEvent {
 795    NewEntry,
 796    TitleUpdated,
 797    TokenUsageUpdated,
 798    EntryUpdated(usize),
 799    EntriesRemoved(Range<usize>),
 800    ToolAuthorizationRequired,
 801    Retry(RetryStatus),
 802    Stopped,
 803    Error,
 804    LoadError(LoadError),
 805    PromptCapabilitiesUpdated,
 806    Refusal,
 807    AvailableCommandsUpdated(Vec<acp::AvailableCommand>),
 808    ModeUpdated(acp::SessionModeId),
 809}
 810
 811impl EventEmitter<AcpThreadEvent> for AcpThread {}
 812
 813#[derive(PartialEq, Eq, Debug)]
 814pub enum ThreadStatus {
 815    Idle,
 816    Generating,
 817}
 818
 819#[derive(Debug, Clone)]
 820pub enum LoadError {
 821    Unsupported {
 822        command: SharedString,
 823        current_version: SharedString,
 824        minimum_version: SharedString,
 825    },
 826    FailedToInstall(SharedString),
 827    Exited {
 828        status: ExitStatus,
 829    },
 830    Other(SharedString),
 831}
 832
 833impl Display for LoadError {
 834    fn fmt(&self, f: &mut Formatter<'_>) -> std::fmt::Result {
 835        match self {
 836            LoadError::Unsupported {
 837                command: path,
 838                current_version,
 839                minimum_version,
 840            } => {
 841                write!(
 842                    f,
 843                    "version {current_version} from {path} is not supported (need at least {minimum_version})"
 844                )
 845            }
 846            LoadError::FailedToInstall(msg) => write!(f, "Failed to install: {msg}"),
 847            LoadError::Exited { status } => write!(f, "Server exited with status {status}"),
 848            LoadError::Other(msg) => write!(f, "{msg}"),
 849        }
 850    }
 851}
 852
 853impl Error for LoadError {}
 854
 855impl AcpThread {
 856    pub fn new(
 857        title: impl Into<SharedString>,
 858        connection: Rc<dyn AgentConnection>,
 859        project: Entity<Project>,
 860        action_log: Entity<ActionLog>,
 861        session_id: acp::SessionId,
 862        mut prompt_capabilities_rx: watch::Receiver<acp::PromptCapabilities>,
 863        cx: &mut Context<Self>,
 864    ) -> Self {
 865        let prompt_capabilities = prompt_capabilities_rx.borrow().clone();
 866        let task = cx.spawn::<_, anyhow::Result<()>>(async move |this, cx| {
 867            loop {
 868                let caps = prompt_capabilities_rx.recv().await?;
 869                this.update(cx, |this, cx| {
 870                    this.prompt_capabilities = caps;
 871                    cx.emit(AcpThreadEvent::PromptCapabilitiesUpdated);
 872                })?;
 873            }
 874        });
 875
 876        let determine_shell = cx
 877            .background_spawn(async move {
 878                if cfg!(windows) {
 879                    return get_system_shell();
 880                }
 881
 882                if which::which("bash").is_ok() {
 883                    "bash".into()
 884                } else {
 885                    get_system_shell()
 886                }
 887            })
 888            .shared();
 889
 890        Self {
 891            action_log,
 892            shared_buffers: Default::default(),
 893            entries: Default::default(),
 894            plan: Default::default(),
 895            title: title.into(),
 896            project,
 897            send_task: None,
 898            connection,
 899            session_id,
 900            token_usage: None,
 901            prompt_capabilities,
 902            _observe_prompt_capabilities: task,
 903            terminals: HashMap::default(),
 904            determine_shell,
 905        }
 906    }
 907
 908    pub fn prompt_capabilities(&self) -> acp::PromptCapabilities {
 909        self.prompt_capabilities.clone()
 910    }
 911
 912    pub fn connection(&self) -> &Rc<dyn AgentConnection> {
 913        &self.connection
 914    }
 915
 916    pub fn action_log(&self) -> &Entity<ActionLog> {
 917        &self.action_log
 918    }
 919
 920    pub fn project(&self) -> &Entity<Project> {
 921        &self.project
 922    }
 923
 924    pub fn title(&self) -> SharedString {
 925        self.title.clone()
 926    }
 927
 928    pub fn entries(&self) -> &[AgentThreadEntry] {
 929        &self.entries
 930    }
 931
 932    pub fn session_id(&self) -> &acp::SessionId {
 933        &self.session_id
 934    }
 935
 936    pub fn status(&self) -> ThreadStatus {
 937        if self.send_task.is_some() {
 938            ThreadStatus::Generating
 939        } else {
 940            ThreadStatus::Idle
 941        }
 942    }
 943
 944    pub fn token_usage(&self) -> Option<&TokenUsage> {
 945        self.token_usage.as_ref()
 946    }
 947
 948    pub fn has_pending_edit_tool_calls(&self) -> bool {
 949        for entry in self.entries.iter().rev() {
 950            match entry {
 951                AgentThreadEntry::UserMessage(_) => return false,
 952                AgentThreadEntry::ToolCall(
 953                    call @ ToolCall {
 954                        status: ToolCallStatus::InProgress | ToolCallStatus::Pending,
 955                        ..
 956                    },
 957                ) if call.diffs().next().is_some() => {
 958                    return true;
 959                }
 960                AgentThreadEntry::ToolCall(_) | AgentThreadEntry::AssistantMessage(_) => {}
 961            }
 962        }
 963
 964        false
 965    }
 966
 967    pub fn used_tools_since_last_user_message(&self) -> bool {
 968        for entry in self.entries.iter().rev() {
 969            match entry {
 970                AgentThreadEntry::UserMessage(..) => return false,
 971                AgentThreadEntry::AssistantMessage(..) => continue,
 972                AgentThreadEntry::ToolCall(..) => return true,
 973            }
 974        }
 975
 976        false
 977    }
 978
 979    pub fn handle_session_update(
 980        &mut self,
 981        update: acp::SessionUpdate,
 982        cx: &mut Context<Self>,
 983    ) -> Result<(), acp::Error> {
 984        match update {
 985            acp::SessionUpdate::UserMessageChunk { content } => {
 986                self.push_user_content_block(None, content, cx);
 987            }
 988            acp::SessionUpdate::AgentMessageChunk { content } => {
 989                self.push_assistant_content_block(content, false, cx);
 990            }
 991            acp::SessionUpdate::AgentThoughtChunk { content } => {
 992                self.push_assistant_content_block(content, true, cx);
 993            }
 994            acp::SessionUpdate::ToolCall(tool_call) => {
 995                self.upsert_tool_call(tool_call, cx)?;
 996            }
 997            acp::SessionUpdate::ToolCallUpdate(tool_call_update) => {
 998                self.update_tool_call(tool_call_update, cx)?;
 999            }
1000            acp::SessionUpdate::Plan(plan) => {
1001                self.update_plan(plan, cx);
1002            }
1003            acp::SessionUpdate::AvailableCommandsUpdate { available_commands } => {
1004                cx.emit(AcpThreadEvent::AvailableCommandsUpdated(available_commands))
1005            }
1006            acp::SessionUpdate::CurrentModeUpdate { current_mode_id } => {
1007                cx.emit(AcpThreadEvent::ModeUpdated(current_mode_id))
1008            }
1009        }
1010        Ok(())
1011    }
1012
1013    pub fn push_user_content_block(
1014        &mut self,
1015        message_id: Option<UserMessageId>,
1016        chunk: acp::ContentBlock,
1017        cx: &mut Context<Self>,
1018    ) {
1019        let language_registry = self.project.read(cx).languages().clone();
1020        let entries_len = self.entries.len();
1021
1022        if let Some(last_entry) = self.entries.last_mut()
1023            && let AgentThreadEntry::UserMessage(UserMessage {
1024                id,
1025                content,
1026                chunks,
1027                ..
1028            }) = last_entry
1029        {
1030            *id = message_id.or(id.take());
1031            content.append(chunk.clone(), &language_registry, cx);
1032            chunks.push(chunk);
1033            let idx = entries_len - 1;
1034            cx.emit(AcpThreadEvent::EntryUpdated(idx));
1035        } else {
1036            let content = ContentBlock::new(chunk.clone(), &language_registry, cx);
1037            self.push_entry(
1038                AgentThreadEntry::UserMessage(UserMessage {
1039                    id: message_id,
1040                    content,
1041                    chunks: vec![chunk],
1042                    checkpoint: None,
1043                }),
1044                cx,
1045            );
1046        }
1047    }
1048
1049    pub fn push_assistant_content_block(
1050        &mut self,
1051        chunk: acp::ContentBlock,
1052        is_thought: bool,
1053        cx: &mut Context<Self>,
1054    ) {
1055        let language_registry = self.project.read(cx).languages().clone();
1056        let entries_len = self.entries.len();
1057        if let Some(last_entry) = self.entries.last_mut()
1058            && let AgentThreadEntry::AssistantMessage(AssistantMessage { chunks }) = last_entry
1059        {
1060            let idx = entries_len - 1;
1061            cx.emit(AcpThreadEvent::EntryUpdated(idx));
1062            match (chunks.last_mut(), is_thought) {
1063                (Some(AssistantMessageChunk::Message { block }), false)
1064                | (Some(AssistantMessageChunk::Thought { block }), true) => {
1065                    block.append(chunk, &language_registry, cx)
1066                }
1067                _ => {
1068                    let block = ContentBlock::new(chunk, &language_registry, cx);
1069                    if is_thought {
1070                        chunks.push(AssistantMessageChunk::Thought { block })
1071                    } else {
1072                        chunks.push(AssistantMessageChunk::Message { block })
1073                    }
1074                }
1075            }
1076        } else {
1077            let block = ContentBlock::new(chunk, &language_registry, cx);
1078            let chunk = if is_thought {
1079                AssistantMessageChunk::Thought { block }
1080            } else {
1081                AssistantMessageChunk::Message { block }
1082            };
1083
1084            self.push_entry(
1085                AgentThreadEntry::AssistantMessage(AssistantMessage {
1086                    chunks: vec![chunk],
1087                }),
1088                cx,
1089            );
1090        }
1091    }
1092
1093    fn push_entry(&mut self, entry: AgentThreadEntry, cx: &mut Context<Self>) {
1094        self.entries.push(entry);
1095        cx.emit(AcpThreadEvent::NewEntry);
1096    }
1097
1098    pub fn can_set_title(&mut self, cx: &mut Context<Self>) -> bool {
1099        self.connection.set_title(&self.session_id, cx).is_some()
1100    }
1101
1102    pub fn set_title(&mut self, title: SharedString, cx: &mut Context<Self>) -> Task<Result<()>> {
1103        if title != self.title {
1104            self.title = title.clone();
1105            cx.emit(AcpThreadEvent::TitleUpdated);
1106            if let Some(set_title) = self.connection.set_title(&self.session_id, cx) {
1107                return set_title.run(title, cx);
1108            }
1109        }
1110        Task::ready(Ok(()))
1111    }
1112
1113    pub fn update_token_usage(&mut self, usage: Option<TokenUsage>, cx: &mut Context<Self>) {
1114        self.token_usage = usage;
1115        cx.emit(AcpThreadEvent::TokenUsageUpdated);
1116    }
1117
1118    pub fn update_retry_status(&mut self, status: RetryStatus, cx: &mut Context<Self>) {
1119        cx.emit(AcpThreadEvent::Retry(status));
1120    }
1121
1122    pub fn update_tool_call(
1123        &mut self,
1124        update: impl Into<ToolCallUpdate>,
1125        cx: &mut Context<Self>,
1126    ) -> Result<()> {
1127        let update = update.into();
1128        let languages = self.project.read(cx).languages().clone();
1129
1130        let ix = self
1131            .index_for_tool_call(update.id())
1132            .context("Tool call not found")?;
1133        let AgentThreadEntry::ToolCall(call) = &mut self.entries[ix] else {
1134            unreachable!()
1135        };
1136
1137        match update {
1138            ToolCallUpdate::UpdateFields(update) => {
1139                let location_updated = update.fields.locations.is_some();
1140                call.update_fields(update.fields, languages, &self.terminals, cx)?;
1141                if location_updated {
1142                    self.resolve_locations(update.id, cx);
1143                }
1144            }
1145            ToolCallUpdate::UpdateDiff(update) => {
1146                call.content.clear();
1147                call.content.push(ToolCallContent::Diff(update.diff));
1148            }
1149            ToolCallUpdate::UpdateTerminal(update) => {
1150                call.content.clear();
1151                call.content
1152                    .push(ToolCallContent::Terminal(update.terminal));
1153            }
1154        }
1155
1156        cx.emit(AcpThreadEvent::EntryUpdated(ix));
1157
1158        Ok(())
1159    }
1160
1161    /// Updates a tool call if id matches an existing entry, otherwise inserts a new one.
1162    pub fn upsert_tool_call(
1163        &mut self,
1164        tool_call: acp::ToolCall,
1165        cx: &mut Context<Self>,
1166    ) -> Result<(), acp::Error> {
1167        let status = tool_call.status.into();
1168        self.upsert_tool_call_inner(tool_call.into(), status, cx)
1169    }
1170
1171    /// Fails if id does not match an existing entry.
1172    pub fn upsert_tool_call_inner(
1173        &mut self,
1174        update: acp::ToolCallUpdate,
1175        status: ToolCallStatus,
1176        cx: &mut Context<Self>,
1177    ) -> Result<(), acp::Error> {
1178        let language_registry = self.project.read(cx).languages().clone();
1179        let id = update.id.clone();
1180
1181        if let Some(ix) = self.index_for_tool_call(&id) {
1182            let AgentThreadEntry::ToolCall(call) = &mut self.entries[ix] else {
1183                unreachable!()
1184            };
1185
1186            call.update_fields(update.fields, language_registry, &self.terminals, cx)?;
1187            call.status = status;
1188
1189            cx.emit(AcpThreadEvent::EntryUpdated(ix));
1190        } else {
1191            let call = ToolCall::from_acp(
1192                update.try_into()?,
1193                status,
1194                language_registry,
1195                &self.terminals,
1196                cx,
1197            )?;
1198            self.push_entry(AgentThreadEntry::ToolCall(call), cx);
1199        };
1200
1201        self.resolve_locations(id, cx);
1202        Ok(())
1203    }
1204
1205    fn index_for_tool_call(&self, id: &acp::ToolCallId) -> Option<usize> {
1206        self.entries
1207            .iter()
1208            .enumerate()
1209            .rev()
1210            .find_map(|(index, entry)| {
1211                if let AgentThreadEntry::ToolCall(tool_call) = entry
1212                    && &tool_call.id == id
1213                {
1214                    Some(index)
1215                } else {
1216                    None
1217                }
1218            })
1219    }
1220
1221    fn tool_call_mut(&mut self, id: &acp::ToolCallId) -> Option<(usize, &mut ToolCall)> {
1222        // The tool call we are looking for is typically the last one, or very close to the end.
1223        // At the moment, it doesn't seem like a hashmap would be a good fit for this use case.
1224        self.entries
1225            .iter_mut()
1226            .enumerate()
1227            .rev()
1228            .find_map(|(index, tool_call)| {
1229                if let AgentThreadEntry::ToolCall(tool_call) = tool_call
1230                    && &tool_call.id == id
1231                {
1232                    Some((index, tool_call))
1233                } else {
1234                    None
1235                }
1236            })
1237    }
1238
1239    pub fn tool_call(&mut self, id: &acp::ToolCallId) -> Option<(usize, &ToolCall)> {
1240        self.entries
1241            .iter()
1242            .enumerate()
1243            .rev()
1244            .find_map(|(index, tool_call)| {
1245                if let AgentThreadEntry::ToolCall(tool_call) = tool_call
1246                    && &tool_call.id == id
1247                {
1248                    Some((index, tool_call))
1249                } else {
1250                    None
1251                }
1252            })
1253    }
1254
1255    pub fn resolve_locations(&mut self, id: acp::ToolCallId, cx: &mut Context<Self>) {
1256        let project = self.project.clone();
1257        let Some((_, tool_call)) = self.tool_call_mut(&id) else {
1258            return;
1259        };
1260        let task = tool_call.resolve_locations(project, cx);
1261        cx.spawn(async move |this, cx| {
1262            let resolved_locations = task.await;
1263            this.update(cx, |this, cx| {
1264                let project = this.project.clone();
1265                let Some((ix, tool_call)) = this.tool_call_mut(&id) else {
1266                    return;
1267                };
1268                if let Some(Some(location)) = resolved_locations.last() {
1269                    project.update(cx, |project, cx| {
1270                        if let Some(agent_location) = project.agent_location() {
1271                            let should_ignore = agent_location.buffer == location.buffer
1272                                && location
1273                                    .buffer
1274                                    .update(cx, |buffer, _| {
1275                                        let snapshot = buffer.snapshot();
1276                                        let old_position =
1277                                            agent_location.position.to_point(&snapshot);
1278                                        let new_position = location.position.to_point(&snapshot);
1279                                        // ignore this so that when we get updates from the edit tool
1280                                        // the position doesn't reset to the startof line
1281                                        old_position.row == new_position.row
1282                                            && old_position.column > new_position.column
1283                                    })
1284                                    .ok()
1285                                    .unwrap_or_default();
1286                            if !should_ignore {
1287                                project.set_agent_location(Some(location.clone()), cx);
1288                            }
1289                        }
1290                    });
1291                }
1292                if tool_call.resolved_locations != resolved_locations {
1293                    tool_call.resolved_locations = resolved_locations;
1294                    cx.emit(AcpThreadEvent::EntryUpdated(ix));
1295                }
1296            })
1297        })
1298        .detach();
1299    }
1300
1301    pub fn request_tool_call_authorization(
1302        &mut self,
1303        tool_call: acp::ToolCallUpdate,
1304        options: Vec<acp::PermissionOption>,
1305        respect_always_allow_setting: bool,
1306        cx: &mut Context<Self>,
1307    ) -> Result<BoxFuture<'static, acp::RequestPermissionOutcome>> {
1308        let (tx, rx) = oneshot::channel();
1309
1310        if respect_always_allow_setting && AgentSettings::get_global(cx).always_allow_tool_actions {
1311            // Don't use AllowAlways, because then if you were to turn off always_allow_tool_actions,
1312            // some tools would (incorrectly) continue to auto-accept.
1313            if let Some(allow_once_option) = options.iter().find_map(|option| {
1314                if matches!(option.kind, acp::PermissionOptionKind::AllowOnce) {
1315                    Some(option.id.clone())
1316                } else {
1317                    None
1318                }
1319            }) {
1320                self.upsert_tool_call_inner(tool_call, ToolCallStatus::Pending, cx)?;
1321                return Ok(async {
1322                    acp::RequestPermissionOutcome::Selected {
1323                        option_id: allow_once_option,
1324                    }
1325                }
1326                .boxed());
1327            }
1328        }
1329
1330        let status = ToolCallStatus::WaitingForConfirmation {
1331            options,
1332            respond_tx: tx,
1333        };
1334
1335        self.upsert_tool_call_inner(tool_call, status, cx)?;
1336        cx.emit(AcpThreadEvent::ToolAuthorizationRequired);
1337
1338        let fut = async {
1339            match rx.await {
1340                Ok(option) => acp::RequestPermissionOutcome::Selected { option_id: option },
1341                Err(oneshot::Canceled) => acp::RequestPermissionOutcome::Cancelled,
1342            }
1343        }
1344        .boxed();
1345
1346        Ok(fut)
1347    }
1348
1349    pub fn authorize_tool_call(
1350        &mut self,
1351        id: acp::ToolCallId,
1352        option_id: acp::PermissionOptionId,
1353        option_kind: acp::PermissionOptionKind,
1354        cx: &mut Context<Self>,
1355    ) {
1356        let Some((ix, call)) = self.tool_call_mut(&id) else {
1357            return;
1358        };
1359
1360        let new_status = match option_kind {
1361            acp::PermissionOptionKind::RejectOnce | acp::PermissionOptionKind::RejectAlways => {
1362                ToolCallStatus::Rejected
1363            }
1364            acp::PermissionOptionKind::AllowOnce | acp::PermissionOptionKind::AllowAlways => {
1365                ToolCallStatus::InProgress
1366            }
1367        };
1368
1369        let curr_status = mem::replace(&mut call.status, new_status);
1370
1371        if let ToolCallStatus::WaitingForConfirmation { respond_tx, .. } = curr_status {
1372            respond_tx.send(option_id).log_err();
1373        } else if cfg!(debug_assertions) {
1374            panic!("tried to authorize an already authorized tool call");
1375        }
1376
1377        cx.emit(AcpThreadEvent::EntryUpdated(ix));
1378    }
1379
1380    pub fn first_tool_awaiting_confirmation(&self) -> Option<&ToolCall> {
1381        let mut first_tool_call = None;
1382
1383        for entry in self.entries.iter().rev() {
1384            match &entry {
1385                AgentThreadEntry::ToolCall(call) => {
1386                    if let ToolCallStatus::WaitingForConfirmation { .. } = call.status {
1387                        first_tool_call = Some(call);
1388                    } else {
1389                        continue;
1390                    }
1391                }
1392                AgentThreadEntry::UserMessage(_) | AgentThreadEntry::AssistantMessage(_) => {
1393                    // Reached the beginning of the turn.
1394                    // If we had pending permission requests in the previous turn, they have been cancelled.
1395                    break;
1396                }
1397            }
1398        }
1399
1400        first_tool_call
1401    }
1402
1403    pub fn plan(&self) -> &Plan {
1404        &self.plan
1405    }
1406
1407    pub fn update_plan(&mut self, request: acp::Plan, cx: &mut Context<Self>) {
1408        let new_entries_len = request.entries.len();
1409        let mut new_entries = request.entries.into_iter();
1410
1411        // Reuse existing markdown to prevent flickering
1412        for (old, new) in self.plan.entries.iter_mut().zip(new_entries.by_ref()) {
1413            let PlanEntry {
1414                content,
1415                priority,
1416                status,
1417            } = old;
1418            content.update(cx, |old, cx| {
1419                old.replace(new.content, cx);
1420            });
1421            *priority = new.priority;
1422            *status = new.status;
1423        }
1424        for new in new_entries {
1425            self.plan.entries.push(PlanEntry::from_acp(new, cx))
1426        }
1427        self.plan.entries.truncate(new_entries_len);
1428
1429        cx.notify();
1430    }
1431
1432    fn clear_completed_plan_entries(&mut self, cx: &mut Context<Self>) {
1433        self.plan
1434            .entries
1435            .retain(|entry| !matches!(entry.status, acp::PlanEntryStatus::Completed));
1436        cx.notify();
1437    }
1438
1439    #[cfg(any(test, feature = "test-support"))]
1440    pub fn send_raw(
1441        &mut self,
1442        message: &str,
1443        cx: &mut Context<Self>,
1444    ) -> BoxFuture<'static, Result<()>> {
1445        self.send(
1446            vec![acp::ContentBlock::Text(acp::TextContent {
1447                text: message.to_string(),
1448                annotations: None,
1449                meta: None,
1450            })],
1451            cx,
1452        )
1453    }
1454
1455    pub fn send(
1456        &mut self,
1457        message: Vec<acp::ContentBlock>,
1458        cx: &mut Context<Self>,
1459    ) -> BoxFuture<'static, Result<()>> {
1460        let block = ContentBlock::new_combined(
1461            message.clone(),
1462            self.project.read(cx).languages().clone(),
1463            cx,
1464        );
1465        let request = acp::PromptRequest {
1466            prompt: message.clone(),
1467            session_id: self.session_id.clone(),
1468            meta: None,
1469        };
1470        let git_store = self.project.read(cx).git_store().clone();
1471
1472        let message_id = if self.connection.truncate(&self.session_id, cx).is_some() {
1473            Some(UserMessageId::new())
1474        } else {
1475            None
1476        };
1477
1478        self.run_turn(cx, async move |this, cx| {
1479            this.update(cx, |this, cx| {
1480                this.push_entry(
1481                    AgentThreadEntry::UserMessage(UserMessage {
1482                        id: message_id.clone(),
1483                        content: block,
1484                        chunks: message,
1485                        checkpoint: None,
1486                    }),
1487                    cx,
1488                );
1489            })
1490            .ok();
1491
1492            let old_checkpoint = git_store
1493                .update(cx, |git, cx| git.checkpoint(cx))?
1494                .await
1495                .context("failed to get old checkpoint")
1496                .log_err();
1497            this.update(cx, |this, cx| {
1498                if let Some((_ix, message)) = this.last_user_message() {
1499                    message.checkpoint = old_checkpoint.map(|git_checkpoint| Checkpoint {
1500                        git_checkpoint,
1501                        show: false,
1502                    });
1503                }
1504                this.connection.prompt(message_id, request, cx)
1505            })?
1506            .await
1507        })
1508    }
1509
1510    pub fn can_resume(&self, cx: &App) -> bool {
1511        self.connection.resume(&self.session_id, cx).is_some()
1512    }
1513
1514    pub fn resume(&mut self, cx: &mut Context<Self>) -> BoxFuture<'static, Result<()>> {
1515        self.run_turn(cx, async move |this, cx| {
1516            this.update(cx, |this, cx| {
1517                this.connection
1518                    .resume(&this.session_id, cx)
1519                    .map(|resume| resume.run(cx))
1520            })?
1521            .context("resuming a session is not supported")?
1522            .await
1523        })
1524    }
1525
1526    fn run_turn(
1527        &mut self,
1528        cx: &mut Context<Self>,
1529        f: impl 'static + AsyncFnOnce(WeakEntity<Self>, &mut AsyncApp) -> Result<acp::PromptResponse>,
1530    ) -> BoxFuture<'static, Result<()>> {
1531        self.clear_completed_plan_entries(cx);
1532
1533        let (tx, rx) = oneshot::channel();
1534        let cancel_task = self.cancel(cx);
1535
1536        self.send_task = Some(cx.spawn(async move |this, cx| {
1537            cancel_task.await;
1538            tx.send(f(this, cx).await).ok();
1539        }));
1540
1541        cx.spawn(async move |this, cx| {
1542            let response = rx.await;
1543
1544            this.update(cx, |this, cx| this.update_last_checkpoint(cx))?
1545                .await?;
1546
1547            this.update(cx, |this, cx| {
1548                this.project
1549                    .update(cx, |project, cx| project.set_agent_location(None, cx));
1550                match response {
1551                    Ok(Err(e)) => {
1552                        this.send_task.take();
1553                        cx.emit(AcpThreadEvent::Error);
1554                        Err(e)
1555                    }
1556                    result => {
1557                        let canceled = matches!(
1558                            result,
1559                            Ok(Ok(acp::PromptResponse {
1560                                stop_reason: acp::StopReason::Cancelled,
1561                                meta: None,
1562                            }))
1563                        );
1564
1565                        // We only take the task if the current prompt wasn't canceled.
1566                        //
1567                        // This prompt may have been canceled because another one was sent
1568                        // while it was still generating. In these cases, dropping `send_task`
1569                        // would cause the next generation to be canceled.
1570                        if !canceled {
1571                            this.send_task.take();
1572                        }
1573
1574                        // Handle refusal - distinguish between user prompt and tool call refusals
1575                        if let Ok(Ok(acp::PromptResponse {
1576                            stop_reason: acp::StopReason::Refusal,
1577                            meta: _,
1578                        })) = result
1579                        {
1580                            if let Some((user_msg_ix, _)) = this.last_user_message() {
1581                                // Check if there's a completed tool call with results after the last user message
1582                                // This indicates the refusal is in response to tool output, not the user's prompt
1583                                let has_completed_tool_call_after_user_msg =
1584                                    this.entries.iter().skip(user_msg_ix + 1).any(|entry| {
1585                                        if let AgentThreadEntry::ToolCall(tool_call) = entry {
1586                                            // Check if the tool call has completed and has output
1587                                            matches!(tool_call.status, ToolCallStatus::Completed)
1588                                                && tool_call.raw_output.is_some()
1589                                        } else {
1590                                            false
1591                                        }
1592                                    });
1593
1594                                if has_completed_tool_call_after_user_msg {
1595                                    // Refusal is due to tool output - don't truncate, just notify
1596                                    // The model refused based on what the tool returned
1597                                    cx.emit(AcpThreadEvent::Refusal);
1598                                } else {
1599                                    // User prompt was refused - truncate back to before the user message
1600                                    let range = user_msg_ix..this.entries.len();
1601                                    if range.start < range.end {
1602                                        this.entries.truncate(user_msg_ix);
1603                                        cx.emit(AcpThreadEvent::EntriesRemoved(range));
1604                                    }
1605                                    cx.emit(AcpThreadEvent::Refusal);
1606                                }
1607                            } else {
1608                                // No user message found, treat as general refusal
1609                                cx.emit(AcpThreadEvent::Refusal);
1610                            }
1611                        }
1612
1613                        cx.emit(AcpThreadEvent::Stopped);
1614                        Ok(())
1615                    }
1616                }
1617            })?
1618        })
1619        .boxed()
1620    }
1621
1622    pub fn cancel(&mut self, cx: &mut Context<Self>) -> Task<()> {
1623        let Some(send_task) = self.send_task.take() else {
1624            return Task::ready(());
1625        };
1626
1627        for entry in self.entries.iter_mut() {
1628            if let AgentThreadEntry::ToolCall(call) = entry {
1629                let cancel = matches!(
1630                    call.status,
1631                    ToolCallStatus::Pending
1632                        | ToolCallStatus::WaitingForConfirmation { .. }
1633                        | ToolCallStatus::InProgress
1634                );
1635
1636                if cancel {
1637                    call.status = ToolCallStatus::Canceled;
1638                }
1639            }
1640        }
1641
1642        self.connection.cancel(&self.session_id, cx);
1643
1644        // Wait for the send task to complete
1645        cx.foreground_executor().spawn(send_task)
1646    }
1647
1648    /// Restores the git working tree to the state at the given checkpoint (if one exists)
1649    pub fn restore_checkpoint(
1650        &mut self,
1651        id: UserMessageId,
1652        cx: &mut Context<Self>,
1653    ) -> Task<Result<()>> {
1654        let Some((_, message)) = self.user_message_mut(&id) else {
1655            return Task::ready(Err(anyhow!("message not found")));
1656        };
1657
1658        let checkpoint = message
1659            .checkpoint
1660            .as_ref()
1661            .map(|c| c.git_checkpoint.clone());
1662        let rewind = self.rewind(id.clone(), cx);
1663        let git_store = self.project.read(cx).git_store().clone();
1664
1665        cx.spawn(async move |_, cx| {
1666            rewind.await?;
1667            if let Some(checkpoint) = checkpoint {
1668                git_store
1669                    .update(cx, |git, cx| git.restore_checkpoint(checkpoint, cx))?
1670                    .await?;
1671            }
1672
1673            Ok(())
1674        })
1675    }
1676
1677    /// Rewinds this thread to before the entry at `index`, removing it and all
1678    /// subsequent entries while rejecting any action_log changes made from that point.
1679    /// Unlike `restore_checkpoint`, this method does not restore from git.
1680    pub fn rewind(&mut self, id: UserMessageId, cx: &mut Context<Self>) -> Task<Result<()>> {
1681        let Some(truncate) = self.connection.truncate(&self.session_id, cx) else {
1682            return Task::ready(Err(anyhow!("not supported")));
1683        };
1684
1685        cx.spawn(async move |this, cx| {
1686            cx.update(|cx| truncate.run(id.clone(), cx))?.await?;
1687            this.update(cx, |this, cx| {
1688                if let Some((ix, _)) = this.user_message_mut(&id) {
1689                    let range = ix..this.entries.len();
1690                    this.entries.truncate(ix);
1691                    cx.emit(AcpThreadEvent::EntriesRemoved(range));
1692                }
1693                this.action_log()
1694                    .update(cx, |action_log, cx| action_log.reject_all_edits(cx))
1695            })?
1696            .await;
1697            Ok(())
1698        })
1699    }
1700
1701    fn update_last_checkpoint(&mut self, cx: &mut Context<Self>) -> Task<Result<()>> {
1702        let git_store = self.project.read(cx).git_store().clone();
1703
1704        let old_checkpoint = if let Some((_, message)) = self.last_user_message() {
1705            if let Some(checkpoint) = message.checkpoint.as_ref() {
1706                checkpoint.git_checkpoint.clone()
1707            } else {
1708                return Task::ready(Ok(()));
1709            }
1710        } else {
1711            return Task::ready(Ok(()));
1712        };
1713
1714        let new_checkpoint = git_store.update(cx, |git, cx| git.checkpoint(cx));
1715        cx.spawn(async move |this, cx| {
1716            let new_checkpoint = new_checkpoint
1717                .await
1718                .context("failed to get new checkpoint")
1719                .log_err();
1720            if let Some(new_checkpoint) = new_checkpoint {
1721                let equal = git_store
1722                    .update(cx, |git, cx| {
1723                        git.compare_checkpoints(old_checkpoint.clone(), new_checkpoint, cx)
1724                    })?
1725                    .await
1726                    .unwrap_or(true);
1727                this.update(cx, |this, cx| {
1728                    let (ix, message) = this.last_user_message().context("no user message")?;
1729                    let checkpoint = message.checkpoint.as_mut().context("no checkpoint")?;
1730                    checkpoint.show = !equal;
1731                    cx.emit(AcpThreadEvent::EntryUpdated(ix));
1732                    anyhow::Ok(())
1733                })??;
1734            }
1735
1736            Ok(())
1737        })
1738    }
1739
1740    fn last_user_message(&mut self) -> Option<(usize, &mut UserMessage)> {
1741        self.entries
1742            .iter_mut()
1743            .enumerate()
1744            .rev()
1745            .find_map(|(ix, entry)| {
1746                if let AgentThreadEntry::UserMessage(message) = entry {
1747                    Some((ix, message))
1748                } else {
1749                    None
1750                }
1751            })
1752    }
1753
1754    fn user_message_mut(&mut self, id: &UserMessageId) -> Option<(usize, &mut UserMessage)> {
1755        self.entries.iter_mut().enumerate().find_map(|(ix, entry)| {
1756            if let AgentThreadEntry::UserMessage(message) = entry {
1757                if message.id.as_ref() == Some(id) {
1758                    Some((ix, message))
1759                } else {
1760                    None
1761                }
1762            } else {
1763                None
1764            }
1765        })
1766    }
1767
1768    pub fn read_text_file(
1769        &self,
1770        path: PathBuf,
1771        line: Option<u32>,
1772        limit: Option<u32>,
1773        reuse_shared_snapshot: bool,
1774        cx: &mut Context<Self>,
1775    ) -> Task<Result<String>> {
1776        let project = self.project.clone();
1777        let action_log = self.action_log.clone();
1778        cx.spawn(async move |this, cx| {
1779            let load = project.update(cx, |project, cx| {
1780                let path = project
1781                    .project_path_for_absolute_path(&path, cx)
1782                    .context("invalid path")?;
1783                anyhow::Ok(project.open_buffer(path, cx))
1784            });
1785            let buffer = load??.await?;
1786
1787            let snapshot = if reuse_shared_snapshot {
1788                this.read_with(cx, |this, _| {
1789                    this.shared_buffers.get(&buffer.clone()).cloned()
1790                })
1791                .log_err()
1792                .flatten()
1793            } else {
1794                None
1795            };
1796
1797            let snapshot = if let Some(snapshot) = snapshot {
1798                snapshot
1799            } else {
1800                action_log.update(cx, |action_log, cx| {
1801                    action_log.buffer_read(buffer.clone(), cx);
1802                })?;
1803                project.update(cx, |project, cx| {
1804                    let position = buffer
1805                        .read(cx)
1806                        .snapshot()
1807                        .anchor_before(Point::new(line.unwrap_or_default(), 0));
1808                    project.set_agent_location(
1809                        Some(AgentLocation {
1810                            buffer: buffer.downgrade(),
1811                            position,
1812                        }),
1813                        cx,
1814                    );
1815                })?;
1816
1817                buffer.update(cx, |buffer, _| buffer.snapshot())?
1818            };
1819
1820            this.update(cx, |this, _| {
1821                let text = snapshot.text();
1822                this.shared_buffers.insert(buffer.clone(), snapshot);
1823                if line.is_none() && limit.is_none() {
1824                    return Ok(text);
1825                }
1826                let limit = limit.unwrap_or(u32::MAX) as usize;
1827                let Some(line) = line else {
1828                    return Ok(text.lines().take(limit).collect::<String>());
1829                };
1830
1831                let count = text.lines().count();
1832                if count < line as usize {
1833                    anyhow::bail!("There are only {} lines", count);
1834                }
1835                Ok(text
1836                    .lines()
1837                    .skip(line as usize + 1)
1838                    .take(limit)
1839                    .collect::<String>())
1840            })?
1841        })
1842    }
1843
1844    pub fn write_text_file(
1845        &self,
1846        path: PathBuf,
1847        content: String,
1848        cx: &mut Context<Self>,
1849    ) -> Task<Result<()>> {
1850        let project = self.project.clone();
1851        let action_log = self.action_log.clone();
1852        cx.spawn(async move |this, cx| {
1853            let load = project.update(cx, |project, cx| {
1854                let path = project
1855                    .project_path_for_absolute_path(&path, cx)
1856                    .context("invalid path")?;
1857                anyhow::Ok(project.open_buffer(path, cx))
1858            });
1859            let buffer = load??.await?;
1860            let snapshot = this.update(cx, |this, cx| {
1861                this.shared_buffers
1862                    .get(&buffer)
1863                    .cloned()
1864                    .unwrap_or_else(|| buffer.read(cx).snapshot())
1865            })?;
1866            let edits = cx
1867                .background_executor()
1868                .spawn(async move {
1869                    let old_text = snapshot.text();
1870                    text_diff(old_text.as_str(), &content)
1871                        .into_iter()
1872                        .map(|(range, replacement)| {
1873                            (
1874                                snapshot.anchor_after(range.start)
1875                                    ..snapshot.anchor_before(range.end),
1876                                replacement,
1877                            )
1878                        })
1879                        .collect::<Vec<_>>()
1880                })
1881                .await;
1882
1883            project.update(cx, |project, cx| {
1884                project.set_agent_location(
1885                    Some(AgentLocation {
1886                        buffer: buffer.downgrade(),
1887                        position: edits
1888                            .last()
1889                            .map(|(range, _)| range.end)
1890                            .unwrap_or(Anchor::MIN),
1891                    }),
1892                    cx,
1893                );
1894            })?;
1895
1896            let format_on_save = cx.update(|cx| {
1897                action_log.update(cx, |action_log, cx| {
1898                    action_log.buffer_read(buffer.clone(), cx);
1899                });
1900
1901                let format_on_save = buffer.update(cx, |buffer, cx| {
1902                    buffer.edit(edits, None, cx);
1903
1904                    let settings = language::language_settings::language_settings(
1905                        buffer.language().map(|l| l.name()),
1906                        buffer.file(),
1907                        cx,
1908                    );
1909
1910                    settings.format_on_save != FormatOnSave::Off
1911                });
1912                action_log.update(cx, |action_log, cx| {
1913                    action_log.buffer_edited(buffer.clone(), cx);
1914                });
1915                format_on_save
1916            })?;
1917
1918            if format_on_save {
1919                let format_task = project.update(cx, |project, cx| {
1920                    project.format(
1921                        HashSet::from_iter([buffer.clone()]),
1922                        LspFormatTarget::Buffers,
1923                        false,
1924                        FormatTrigger::Save,
1925                        cx,
1926                    )
1927                })?;
1928                format_task.await.log_err();
1929
1930                action_log.update(cx, |action_log, cx| {
1931                    action_log.buffer_edited(buffer.clone(), cx);
1932                })?;
1933            }
1934
1935            project
1936                .update(cx, |project, cx| project.save_buffer(buffer, cx))?
1937                .await
1938        })
1939    }
1940
1941    pub fn create_terminal(
1942        &self,
1943        mut command: String,
1944        args: Vec<String>,
1945        extra_env: Vec<acp::EnvVariable>,
1946        cwd: Option<PathBuf>,
1947        output_byte_limit: Option<u64>,
1948        cx: &mut Context<Self>,
1949    ) -> Task<Result<Entity<Terminal>>> {
1950        for arg in args {
1951            command.push(' ');
1952            command.push_str(&arg);
1953        }
1954
1955        let shell_command = if cfg!(windows) {
1956            format!("$null | & {{{}}}", command.replace("\"", "'"))
1957        } else if let Some(cwd) = cwd.as_ref().and_then(|cwd| cwd.as_os_str().to_str()) {
1958            // Make sure once we're *inside* the shell, we cd into `cwd`
1959            format!("(cd {cwd}; {}) </dev/null", command)
1960        } else {
1961            format!("({}) </dev/null", command)
1962        };
1963        let args = vec!["-c".into(), shell_command];
1964
1965        let env = match &cwd {
1966            Some(dir) => self.project.update(cx, |project, cx| {
1967                project.directory_environment(dir.as_path().into(), cx)
1968            }),
1969            None => Task::ready(None).shared(),
1970        };
1971
1972        let env = cx.spawn(async move |_, _| {
1973            let mut env = env.await.unwrap_or_default();
1974            if cfg!(unix) {
1975                env.insert("PAGER".into(), "cat".into());
1976            }
1977            for var in extra_env {
1978                env.insert(var.name, var.value);
1979            }
1980            env
1981        });
1982
1983        let project = self.project.clone();
1984        let language_registry = project.read(cx).languages().clone();
1985        let determine_shell = self.determine_shell.clone();
1986
1987        let terminal_id = acp::TerminalId(Uuid::new_v4().to_string().into());
1988        let terminal_task = cx.spawn({
1989            let terminal_id = terminal_id.clone();
1990            async move |_this, cx| {
1991                let program = determine_shell.await;
1992                let env = env.await;
1993                let terminal = project
1994                    .update(cx, |project, cx| {
1995                        project.create_terminal_task(
1996                            task::SpawnInTerminal {
1997                                command: Some(program),
1998                                args,
1999                                cwd: cwd.clone(),
2000                                env,
2001                                ..Default::default()
2002                            },
2003                            cx,
2004                        )
2005                    })?
2006                    .await?;
2007
2008                cx.new(|cx| {
2009                    Terminal::new(
2010                        terminal_id,
2011                        command,
2012                        cwd,
2013                        output_byte_limit.map(|l| l as usize),
2014                        terminal,
2015                        language_registry,
2016                        cx,
2017                    )
2018                })
2019            }
2020        });
2021
2022        cx.spawn(async move |this, cx| {
2023            let terminal = terminal_task.await?;
2024            this.update(cx, |this, _cx| {
2025                this.terminals.insert(terminal_id, terminal.clone());
2026                terminal
2027            })
2028        })
2029    }
2030
2031    pub fn kill_terminal(
2032        &mut self,
2033        terminal_id: acp::TerminalId,
2034        cx: &mut Context<Self>,
2035    ) -> Result<()> {
2036        self.terminals
2037            .get(&terminal_id)
2038            .context("Terminal not found")?
2039            .update(cx, |terminal, cx| {
2040                terminal.kill(cx);
2041            });
2042
2043        Ok(())
2044    }
2045
2046    pub fn release_terminal(
2047        &mut self,
2048        terminal_id: acp::TerminalId,
2049        cx: &mut Context<Self>,
2050    ) -> Result<()> {
2051        self.terminals
2052            .remove(&terminal_id)
2053            .context("Terminal not found")?
2054            .update(cx, |terminal, cx| {
2055                terminal.kill(cx);
2056            });
2057
2058        Ok(())
2059    }
2060
2061    pub fn terminal(&self, terminal_id: acp::TerminalId) -> Result<Entity<Terminal>> {
2062        self.terminals
2063            .get(&terminal_id)
2064            .context("Terminal not found")
2065            .cloned()
2066    }
2067
2068    pub fn to_markdown(&self, cx: &App) -> String {
2069        self.entries.iter().map(|e| e.to_markdown(cx)).collect()
2070    }
2071
2072    pub fn emit_load_error(&mut self, error: LoadError, cx: &mut Context<Self>) {
2073        cx.emit(AcpThreadEvent::LoadError(error));
2074    }
2075}
2076
2077fn markdown_for_raw_output(
2078    raw_output: &serde_json::Value,
2079    language_registry: &Arc<LanguageRegistry>,
2080    cx: &mut App,
2081) -> Option<Entity<Markdown>> {
2082    match raw_output {
2083        serde_json::Value::Null => None,
2084        serde_json::Value::Bool(value) => Some(cx.new(|cx| {
2085            Markdown::new(
2086                value.to_string().into(),
2087                Some(language_registry.clone()),
2088                None,
2089                cx,
2090            )
2091        })),
2092        serde_json::Value::Number(value) => Some(cx.new(|cx| {
2093            Markdown::new(
2094                value.to_string().into(),
2095                Some(language_registry.clone()),
2096                None,
2097                cx,
2098            )
2099        })),
2100        serde_json::Value::String(value) => Some(cx.new(|cx| {
2101            Markdown::new(
2102                value.clone().into(),
2103                Some(language_registry.clone()),
2104                None,
2105                cx,
2106            )
2107        })),
2108        value => Some(cx.new(|cx| {
2109            Markdown::new(
2110                format!("```json\n{}\n```", value).into(),
2111                Some(language_registry.clone()),
2112                None,
2113                cx,
2114            )
2115        })),
2116    }
2117}
2118
2119#[cfg(test)]
2120mod tests {
2121    use super::*;
2122    use anyhow::anyhow;
2123    use futures::{channel::mpsc, future::LocalBoxFuture, select};
2124    use gpui::{App, AsyncApp, TestAppContext, WeakEntity};
2125    use indoc::indoc;
2126    use project::{FakeFs, Fs};
2127    use rand::{distr, prelude::*};
2128    use serde_json::json;
2129    use settings::SettingsStore;
2130    use smol::stream::StreamExt as _;
2131    use std::{
2132        any::Any,
2133        cell::RefCell,
2134        path::Path,
2135        rc::Rc,
2136        sync::atomic::{AtomicBool, AtomicUsize, Ordering::SeqCst},
2137        time::Duration,
2138    };
2139    use util::path;
2140
2141    fn init_test(cx: &mut TestAppContext) {
2142        env_logger::try_init().ok();
2143        cx.update(|cx| {
2144            let settings_store = SettingsStore::test(cx);
2145            cx.set_global(settings_store);
2146            Project::init_settings(cx);
2147            language::init(cx);
2148        });
2149    }
2150
2151    #[gpui::test]
2152    async fn test_push_user_content_block(cx: &mut gpui::TestAppContext) {
2153        init_test(cx);
2154
2155        let fs = FakeFs::new(cx.executor());
2156        let project = Project::test(fs, [], cx).await;
2157        let connection = Rc::new(FakeAgentConnection::new());
2158        let thread = cx
2159            .update(|cx| connection.new_thread(project, Path::new(path!("/test")), cx))
2160            .await
2161            .unwrap();
2162
2163        // Test creating a new user message
2164        thread.update(cx, |thread, cx| {
2165            thread.push_user_content_block(
2166                None,
2167                acp::ContentBlock::Text(acp::TextContent {
2168                    annotations: None,
2169                    text: "Hello, ".to_string(),
2170                    meta: None,
2171                }),
2172                cx,
2173            );
2174        });
2175
2176        thread.update(cx, |thread, cx| {
2177            assert_eq!(thread.entries.len(), 1);
2178            if let AgentThreadEntry::UserMessage(user_msg) = &thread.entries[0] {
2179                assert_eq!(user_msg.id, None);
2180                assert_eq!(user_msg.content.to_markdown(cx), "Hello, ");
2181            } else {
2182                panic!("Expected UserMessage");
2183            }
2184        });
2185
2186        // Test appending to existing user message
2187        let message_1_id = UserMessageId::new();
2188        thread.update(cx, |thread, cx| {
2189            thread.push_user_content_block(
2190                Some(message_1_id.clone()),
2191                acp::ContentBlock::Text(acp::TextContent {
2192                    annotations: None,
2193                    text: "world!".to_string(),
2194                    meta: None,
2195                }),
2196                cx,
2197            );
2198        });
2199
2200        thread.update(cx, |thread, cx| {
2201            assert_eq!(thread.entries.len(), 1);
2202            if let AgentThreadEntry::UserMessage(user_msg) = &thread.entries[0] {
2203                assert_eq!(user_msg.id, Some(message_1_id));
2204                assert_eq!(user_msg.content.to_markdown(cx), "Hello, world!");
2205            } else {
2206                panic!("Expected UserMessage");
2207            }
2208        });
2209
2210        // Test creating new user message after assistant message
2211        thread.update(cx, |thread, cx| {
2212            thread.push_assistant_content_block(
2213                acp::ContentBlock::Text(acp::TextContent {
2214                    annotations: None,
2215                    text: "Assistant response".to_string(),
2216                    meta: None,
2217                }),
2218                false,
2219                cx,
2220            );
2221        });
2222
2223        let message_2_id = UserMessageId::new();
2224        thread.update(cx, |thread, cx| {
2225            thread.push_user_content_block(
2226                Some(message_2_id.clone()),
2227                acp::ContentBlock::Text(acp::TextContent {
2228                    annotations: None,
2229                    text: "New user message".to_string(),
2230                    meta: None,
2231                }),
2232                cx,
2233            );
2234        });
2235
2236        thread.update(cx, |thread, cx| {
2237            assert_eq!(thread.entries.len(), 3);
2238            if let AgentThreadEntry::UserMessage(user_msg) = &thread.entries[2] {
2239                assert_eq!(user_msg.id, Some(message_2_id));
2240                assert_eq!(user_msg.content.to_markdown(cx), "New user message");
2241            } else {
2242                panic!("Expected UserMessage at index 2");
2243            }
2244        });
2245    }
2246
2247    #[gpui::test]
2248    async fn test_thinking_concatenation(cx: &mut gpui::TestAppContext) {
2249        init_test(cx);
2250
2251        let fs = FakeFs::new(cx.executor());
2252        let project = Project::test(fs, [], cx).await;
2253        let connection = Rc::new(FakeAgentConnection::new().on_user_message(
2254            |_, thread, mut cx| {
2255                async move {
2256                    thread.update(&mut cx, |thread, cx| {
2257                        thread
2258                            .handle_session_update(
2259                                acp::SessionUpdate::AgentThoughtChunk {
2260                                    content: "Thinking ".into(),
2261                                },
2262                                cx,
2263                            )
2264                            .unwrap();
2265                        thread
2266                            .handle_session_update(
2267                                acp::SessionUpdate::AgentThoughtChunk {
2268                                    content: "hard!".into(),
2269                                },
2270                                cx,
2271                            )
2272                            .unwrap();
2273                    })?;
2274                    Ok(acp::PromptResponse {
2275                        stop_reason: acp::StopReason::EndTurn,
2276                        meta: None,
2277                    })
2278                }
2279                .boxed_local()
2280            },
2281        ));
2282
2283        let thread = cx
2284            .update(|cx| connection.new_thread(project, Path::new(path!("/test")), cx))
2285            .await
2286            .unwrap();
2287
2288        thread
2289            .update(cx, |thread, cx| thread.send_raw("Hello from Zed!", cx))
2290            .await
2291            .unwrap();
2292
2293        let output = thread.read_with(cx, |thread, cx| thread.to_markdown(cx));
2294        assert_eq!(
2295            output,
2296            indoc! {r#"
2297            ## User
2298
2299            Hello from Zed!
2300
2301            ## Assistant
2302
2303            <thinking>
2304            Thinking hard!
2305            </thinking>
2306
2307            "#}
2308        );
2309    }
2310
2311    #[gpui::test]
2312    async fn test_edits_concurrently_to_user(cx: &mut TestAppContext) {
2313        init_test(cx);
2314
2315        let fs = FakeFs::new(cx.executor());
2316        fs.insert_tree(path!("/tmp"), json!({"foo": "one\ntwo\nthree\n"}))
2317            .await;
2318        let project = Project::test(fs.clone(), [], cx).await;
2319        let (read_file_tx, read_file_rx) = oneshot::channel::<()>();
2320        let read_file_tx = Rc::new(RefCell::new(Some(read_file_tx)));
2321        let connection = Rc::new(FakeAgentConnection::new().on_user_message(
2322            move |_, thread, mut cx| {
2323                let read_file_tx = read_file_tx.clone();
2324                async move {
2325                    let content = thread
2326                        .update(&mut cx, |thread, cx| {
2327                            thread.read_text_file(path!("/tmp/foo").into(), None, None, false, cx)
2328                        })
2329                        .unwrap()
2330                        .await
2331                        .unwrap();
2332                    assert_eq!(content, "one\ntwo\nthree\n");
2333                    read_file_tx.take().unwrap().send(()).unwrap();
2334                    thread
2335                        .update(&mut cx, |thread, cx| {
2336                            thread.write_text_file(
2337                                path!("/tmp/foo").into(),
2338                                "one\ntwo\nthree\nfour\nfive\n".to_string(),
2339                                cx,
2340                            )
2341                        })
2342                        .unwrap()
2343                        .await
2344                        .unwrap();
2345                    Ok(acp::PromptResponse {
2346                        stop_reason: acp::StopReason::EndTurn,
2347                        meta: None,
2348                    })
2349                }
2350                .boxed_local()
2351            },
2352        ));
2353
2354        let (worktree, pathbuf) = project
2355            .update(cx, |project, cx| {
2356                project.find_or_create_worktree(path!("/tmp/foo"), true, cx)
2357            })
2358            .await
2359            .unwrap();
2360        let buffer = project
2361            .update(cx, |project, cx| {
2362                project.open_buffer((worktree.read(cx).id(), pathbuf), cx)
2363            })
2364            .await
2365            .unwrap();
2366
2367        let thread = cx
2368            .update(|cx| connection.new_thread(project, Path::new(path!("/tmp")), cx))
2369            .await
2370            .unwrap();
2371
2372        let request = thread.update(cx, |thread, cx| {
2373            thread.send_raw("Extend the count in /tmp/foo", cx)
2374        });
2375        read_file_rx.await.ok();
2376        buffer.update(cx, |buffer, cx| {
2377            buffer.edit([(0..0, "zero\n".to_string())], None, cx);
2378        });
2379        cx.run_until_parked();
2380        assert_eq!(
2381            buffer.read_with(cx, |buffer, _| buffer.text()),
2382            "zero\none\ntwo\nthree\nfour\nfive\n"
2383        );
2384        assert_eq!(
2385            String::from_utf8(fs.read_file_sync(path!("/tmp/foo")).unwrap()).unwrap(),
2386            "zero\none\ntwo\nthree\nfour\nfive\n"
2387        );
2388        request.await.unwrap();
2389    }
2390
2391    #[gpui::test]
2392    async fn test_succeeding_canceled_toolcall(cx: &mut TestAppContext) {
2393        init_test(cx);
2394
2395        let fs = FakeFs::new(cx.executor());
2396        let project = Project::test(fs, [], cx).await;
2397        let id = acp::ToolCallId("test".into());
2398
2399        let connection = Rc::new(FakeAgentConnection::new().on_user_message({
2400            let id = id.clone();
2401            move |_, thread, mut cx| {
2402                let id = id.clone();
2403                async move {
2404                    thread
2405                        .update(&mut cx, |thread, cx| {
2406                            thread.handle_session_update(
2407                                acp::SessionUpdate::ToolCall(acp::ToolCall {
2408                                    id: id.clone(),
2409                                    title: "Label".into(),
2410                                    kind: acp::ToolKind::Fetch,
2411                                    status: acp::ToolCallStatus::InProgress,
2412                                    content: vec![],
2413                                    locations: vec![],
2414                                    raw_input: None,
2415                                    raw_output: None,
2416                                    meta: None,
2417                                }),
2418                                cx,
2419                            )
2420                        })
2421                        .unwrap()
2422                        .unwrap();
2423                    Ok(acp::PromptResponse {
2424                        stop_reason: acp::StopReason::EndTurn,
2425                        meta: None,
2426                    })
2427                }
2428                .boxed_local()
2429            }
2430        }));
2431
2432        let thread = cx
2433            .update(|cx| connection.new_thread(project, Path::new(path!("/test")), cx))
2434            .await
2435            .unwrap();
2436
2437        let request = thread.update(cx, |thread, cx| {
2438            thread.send_raw("Fetch https://example.com", cx)
2439        });
2440
2441        run_until_first_tool_call(&thread, cx).await;
2442
2443        thread.read_with(cx, |thread, _| {
2444            assert!(matches!(
2445                thread.entries[1],
2446                AgentThreadEntry::ToolCall(ToolCall {
2447                    status: ToolCallStatus::InProgress,
2448                    ..
2449                })
2450            ));
2451        });
2452
2453        thread.update(cx, |thread, cx| thread.cancel(cx)).await;
2454
2455        thread.read_with(cx, |thread, _| {
2456            assert!(matches!(
2457                &thread.entries[1],
2458                AgentThreadEntry::ToolCall(ToolCall {
2459                    status: ToolCallStatus::Canceled,
2460                    ..
2461                })
2462            ));
2463        });
2464
2465        thread
2466            .update(cx, |thread, cx| {
2467                thread.handle_session_update(
2468                    acp::SessionUpdate::ToolCallUpdate(acp::ToolCallUpdate {
2469                        id,
2470                        fields: acp::ToolCallUpdateFields {
2471                            status: Some(acp::ToolCallStatus::Completed),
2472                            ..Default::default()
2473                        },
2474                        meta: None,
2475                    }),
2476                    cx,
2477                )
2478            })
2479            .unwrap();
2480
2481        request.await.unwrap();
2482
2483        thread.read_with(cx, |thread, _| {
2484            assert!(matches!(
2485                thread.entries[1],
2486                AgentThreadEntry::ToolCall(ToolCall {
2487                    status: ToolCallStatus::Completed,
2488                    ..
2489                })
2490            ));
2491        });
2492    }
2493
2494    #[gpui::test]
2495    async fn test_no_pending_edits_if_tool_calls_are_completed(cx: &mut TestAppContext) {
2496        init_test(cx);
2497        let fs = FakeFs::new(cx.background_executor.clone());
2498        fs.insert_tree(path!("/test"), json!({})).await;
2499        let project = Project::test(fs, [path!("/test").as_ref()], cx).await;
2500
2501        let connection = Rc::new(FakeAgentConnection::new().on_user_message({
2502            move |_, thread, mut cx| {
2503                async move {
2504                    thread
2505                        .update(&mut cx, |thread, cx| {
2506                            thread.handle_session_update(
2507                                acp::SessionUpdate::ToolCall(acp::ToolCall {
2508                                    id: acp::ToolCallId("test".into()),
2509                                    title: "Label".into(),
2510                                    kind: acp::ToolKind::Edit,
2511                                    status: acp::ToolCallStatus::Completed,
2512                                    content: vec![acp::ToolCallContent::Diff {
2513                                        diff: acp::Diff {
2514                                            path: "/test/test.txt".into(),
2515                                            old_text: None,
2516                                            new_text: "foo".into(),
2517                                            meta: None,
2518                                        },
2519                                    }],
2520                                    locations: vec![],
2521                                    raw_input: None,
2522                                    raw_output: None,
2523                                    meta: None,
2524                                }),
2525                                cx,
2526                            )
2527                        })
2528                        .unwrap()
2529                        .unwrap();
2530                    Ok(acp::PromptResponse {
2531                        stop_reason: acp::StopReason::EndTurn,
2532                        meta: None,
2533                    })
2534                }
2535                .boxed_local()
2536            }
2537        }));
2538
2539        let thread = cx
2540            .update(|cx| connection.new_thread(project, Path::new(path!("/test")), cx))
2541            .await
2542            .unwrap();
2543
2544        cx.update(|cx| thread.update(cx, |thread, cx| thread.send(vec!["Hi".into()], cx)))
2545            .await
2546            .unwrap();
2547
2548        assert!(cx.read(|cx| !thread.read(cx).has_pending_edit_tool_calls()));
2549    }
2550
2551    #[gpui::test(iterations = 10)]
2552    async fn test_checkpoints(cx: &mut TestAppContext) {
2553        init_test(cx);
2554        let fs = FakeFs::new(cx.background_executor.clone());
2555        fs.insert_tree(
2556            path!("/test"),
2557            json!({
2558                ".git": {}
2559            }),
2560        )
2561        .await;
2562        let project = Project::test(fs.clone(), [path!("/test").as_ref()], cx).await;
2563
2564        let simulate_changes = Arc::new(AtomicBool::new(true));
2565        let next_filename = Arc::new(AtomicUsize::new(0));
2566        let connection = Rc::new(FakeAgentConnection::new().on_user_message({
2567            let simulate_changes = simulate_changes.clone();
2568            let next_filename = next_filename.clone();
2569            let fs = fs.clone();
2570            move |request, thread, mut cx| {
2571                let fs = fs.clone();
2572                let simulate_changes = simulate_changes.clone();
2573                let next_filename = next_filename.clone();
2574                async move {
2575                    if simulate_changes.load(SeqCst) {
2576                        let filename = format!("/test/file-{}", next_filename.fetch_add(1, SeqCst));
2577                        fs.write(Path::new(&filename), b"").await?;
2578                    }
2579
2580                    let acp::ContentBlock::Text(content) = &request.prompt[0] else {
2581                        panic!("expected text content block");
2582                    };
2583                    thread.update(&mut cx, |thread, cx| {
2584                        thread
2585                            .handle_session_update(
2586                                acp::SessionUpdate::AgentMessageChunk {
2587                                    content: content.text.to_uppercase().into(),
2588                                },
2589                                cx,
2590                            )
2591                            .unwrap();
2592                    })?;
2593                    Ok(acp::PromptResponse {
2594                        stop_reason: acp::StopReason::EndTurn,
2595                        meta: None,
2596                    })
2597                }
2598                .boxed_local()
2599            }
2600        }));
2601        let thread = cx
2602            .update(|cx| connection.new_thread(project, Path::new(path!("/test")), cx))
2603            .await
2604            .unwrap();
2605
2606        cx.update(|cx| thread.update(cx, |thread, cx| thread.send(vec!["Lorem".into()], cx)))
2607            .await
2608            .unwrap();
2609        thread.read_with(cx, |thread, cx| {
2610            assert_eq!(
2611                thread.to_markdown(cx),
2612                indoc! {"
2613                    ## User (checkpoint)
2614
2615                    Lorem
2616
2617                    ## Assistant
2618
2619                    LOREM
2620
2621                "}
2622            );
2623        });
2624        assert_eq!(fs.files(), vec![Path::new(path!("/test/file-0"))]);
2625
2626        cx.update(|cx| thread.update(cx, |thread, cx| thread.send(vec!["ipsum".into()], cx)))
2627            .await
2628            .unwrap();
2629        thread.read_with(cx, |thread, cx| {
2630            assert_eq!(
2631                thread.to_markdown(cx),
2632                indoc! {"
2633                    ## User (checkpoint)
2634
2635                    Lorem
2636
2637                    ## Assistant
2638
2639                    LOREM
2640
2641                    ## User (checkpoint)
2642
2643                    ipsum
2644
2645                    ## Assistant
2646
2647                    IPSUM
2648
2649                "}
2650            );
2651        });
2652        assert_eq!(
2653            fs.files(),
2654            vec![
2655                Path::new(path!("/test/file-0")),
2656                Path::new(path!("/test/file-1"))
2657            ]
2658        );
2659
2660        // Checkpoint isn't stored when there are no changes.
2661        simulate_changes.store(false, SeqCst);
2662        cx.update(|cx| thread.update(cx, |thread, cx| thread.send(vec!["dolor".into()], cx)))
2663            .await
2664            .unwrap();
2665        thread.read_with(cx, |thread, cx| {
2666            assert_eq!(
2667                thread.to_markdown(cx),
2668                indoc! {"
2669                    ## User (checkpoint)
2670
2671                    Lorem
2672
2673                    ## Assistant
2674
2675                    LOREM
2676
2677                    ## User (checkpoint)
2678
2679                    ipsum
2680
2681                    ## Assistant
2682
2683                    IPSUM
2684
2685                    ## User
2686
2687                    dolor
2688
2689                    ## Assistant
2690
2691                    DOLOR
2692
2693                "}
2694            );
2695        });
2696        assert_eq!(
2697            fs.files(),
2698            vec![
2699                Path::new(path!("/test/file-0")),
2700                Path::new(path!("/test/file-1"))
2701            ]
2702        );
2703
2704        // Rewinding the conversation truncates the history and restores the checkpoint.
2705        thread
2706            .update(cx, |thread, cx| {
2707                let AgentThreadEntry::UserMessage(message) = &thread.entries[2] else {
2708                    panic!("unexpected entries {:?}", thread.entries)
2709                };
2710                thread.restore_checkpoint(message.id.clone().unwrap(), cx)
2711            })
2712            .await
2713            .unwrap();
2714        thread.read_with(cx, |thread, cx| {
2715            assert_eq!(
2716                thread.to_markdown(cx),
2717                indoc! {"
2718                    ## User (checkpoint)
2719
2720                    Lorem
2721
2722                    ## Assistant
2723
2724                    LOREM
2725
2726                "}
2727            );
2728        });
2729        assert_eq!(fs.files(), vec![Path::new(path!("/test/file-0"))]);
2730    }
2731
2732    #[gpui::test]
2733    async fn test_tool_result_refusal(cx: &mut TestAppContext) {
2734        use std::sync::atomic::AtomicUsize;
2735        init_test(cx);
2736
2737        let fs = FakeFs::new(cx.executor());
2738        let project = Project::test(fs, None, cx).await;
2739
2740        // Create a connection that simulates refusal after tool result
2741        let prompt_count = Arc::new(AtomicUsize::new(0));
2742        let connection = Rc::new(FakeAgentConnection::new().on_user_message({
2743            let prompt_count = prompt_count.clone();
2744            move |_request, thread, mut cx| {
2745                let count = prompt_count.fetch_add(1, SeqCst);
2746                async move {
2747                    if count == 0 {
2748                        // First prompt: Generate a tool call with result
2749                        thread.update(&mut cx, |thread, cx| {
2750                            thread
2751                                .handle_session_update(
2752                                    acp::SessionUpdate::ToolCall(acp::ToolCall {
2753                                        id: acp::ToolCallId("tool1".into()),
2754                                        title: "Test Tool".into(),
2755                                        kind: acp::ToolKind::Fetch,
2756                                        status: acp::ToolCallStatus::Completed,
2757                                        content: vec![],
2758                                        locations: vec![],
2759                                        raw_input: Some(serde_json::json!({"query": "test"})),
2760                                        raw_output: Some(
2761                                            serde_json::json!({"result": "inappropriate content"}),
2762                                        ),
2763                                        meta: None,
2764                                    }),
2765                                    cx,
2766                                )
2767                                .unwrap();
2768                        })?;
2769
2770                        // Now return refusal because of the tool result
2771                        Ok(acp::PromptResponse {
2772                            stop_reason: acp::StopReason::Refusal,
2773                            meta: None,
2774                        })
2775                    } else {
2776                        Ok(acp::PromptResponse {
2777                            stop_reason: acp::StopReason::EndTurn,
2778                            meta: None,
2779                        })
2780                    }
2781                }
2782                .boxed_local()
2783            }
2784        }));
2785
2786        let thread = cx
2787            .update(|cx| connection.new_thread(project, Path::new(path!("/test")), cx))
2788            .await
2789            .unwrap();
2790
2791        // Track if we see a Refusal event
2792        let saw_refusal_event = Arc::new(std::sync::Mutex::new(false));
2793        let saw_refusal_event_captured = saw_refusal_event.clone();
2794        thread.update(cx, |_thread, cx| {
2795            cx.subscribe(
2796                &thread,
2797                move |_thread, _event_thread, event: &AcpThreadEvent, _cx| {
2798                    if matches!(event, AcpThreadEvent::Refusal) {
2799                        *saw_refusal_event_captured.lock().unwrap() = true;
2800                    }
2801                },
2802            )
2803            .detach();
2804        });
2805
2806        // Send a user message - this will trigger tool call and then refusal
2807        let send_task = thread.update(cx, |thread, cx| {
2808            thread.send(
2809                vec![acp::ContentBlock::Text(acp::TextContent {
2810                    text: "Hello".into(),
2811                    annotations: None,
2812                    meta: None,
2813                })],
2814                cx,
2815            )
2816        });
2817        cx.background_executor.spawn(send_task).detach();
2818        cx.run_until_parked();
2819
2820        // Verify that:
2821        // 1. A Refusal event WAS emitted (because it's a tool result refusal, not user prompt)
2822        // 2. The user message was NOT truncated
2823        assert!(
2824            *saw_refusal_event.lock().unwrap(),
2825            "Refusal event should be emitted for tool result refusals"
2826        );
2827
2828        thread.read_with(cx, |thread, _| {
2829            let entries = thread.entries();
2830            assert!(entries.len() >= 2, "Should have user message and tool call");
2831
2832            // Verify user message is still there
2833            assert!(
2834                matches!(entries[0], AgentThreadEntry::UserMessage(_)),
2835                "User message should not be truncated"
2836            );
2837
2838            // Verify tool call is there with result
2839            if let AgentThreadEntry::ToolCall(tool_call) = &entries[1] {
2840                assert!(
2841                    tool_call.raw_output.is_some(),
2842                    "Tool call should have output"
2843                );
2844            } else {
2845                panic!("Expected tool call at index 1");
2846            }
2847        });
2848    }
2849
2850    #[gpui::test]
2851    async fn test_user_prompt_refusal_emits_event(cx: &mut TestAppContext) {
2852        init_test(cx);
2853
2854        let fs = FakeFs::new(cx.executor());
2855        let project = Project::test(fs, None, cx).await;
2856
2857        let refuse_next = Arc::new(AtomicBool::new(false));
2858        let connection = Rc::new(FakeAgentConnection::new().on_user_message({
2859            let refuse_next = refuse_next.clone();
2860            move |_request, _thread, _cx| {
2861                if refuse_next.load(SeqCst) {
2862                    async move {
2863                        Ok(acp::PromptResponse {
2864                            stop_reason: acp::StopReason::Refusal,
2865                            meta: None,
2866                        })
2867                    }
2868                    .boxed_local()
2869                } else {
2870                    async move {
2871                        Ok(acp::PromptResponse {
2872                            stop_reason: acp::StopReason::EndTurn,
2873                            meta: None,
2874                        })
2875                    }
2876                    .boxed_local()
2877                }
2878            }
2879        }));
2880
2881        let thread = cx
2882            .update(|cx| connection.new_thread(project, Path::new(path!("/test")), cx))
2883            .await
2884            .unwrap();
2885
2886        // Track if we see a Refusal event
2887        let saw_refusal_event = Arc::new(std::sync::Mutex::new(false));
2888        let saw_refusal_event_captured = saw_refusal_event.clone();
2889        thread.update(cx, |_thread, cx| {
2890            cx.subscribe(
2891                &thread,
2892                move |_thread, _event_thread, event: &AcpThreadEvent, _cx| {
2893                    if matches!(event, AcpThreadEvent::Refusal) {
2894                        *saw_refusal_event_captured.lock().unwrap() = true;
2895                    }
2896                },
2897            )
2898            .detach();
2899        });
2900
2901        // Send a message that will be refused
2902        refuse_next.store(true, SeqCst);
2903        cx.update(|cx| thread.update(cx, |thread, cx| thread.send(vec!["hello".into()], cx)))
2904            .await
2905            .unwrap();
2906
2907        // Verify that a Refusal event WAS emitted for user prompt refusal
2908        assert!(
2909            *saw_refusal_event.lock().unwrap(),
2910            "Refusal event should be emitted for user prompt refusals"
2911        );
2912
2913        // Verify the message was truncated (user prompt refusal)
2914        thread.read_with(cx, |thread, cx| {
2915            assert_eq!(thread.to_markdown(cx), "");
2916        });
2917    }
2918
2919    #[gpui::test]
2920    async fn test_refusal(cx: &mut TestAppContext) {
2921        init_test(cx);
2922        let fs = FakeFs::new(cx.background_executor.clone());
2923        fs.insert_tree(path!("/"), json!({})).await;
2924        let project = Project::test(fs.clone(), [path!("/").as_ref()], cx).await;
2925
2926        let refuse_next = Arc::new(AtomicBool::new(false));
2927        let connection = Rc::new(FakeAgentConnection::new().on_user_message({
2928            let refuse_next = refuse_next.clone();
2929            move |request, thread, mut cx| {
2930                let refuse_next = refuse_next.clone();
2931                async move {
2932                    if refuse_next.load(SeqCst) {
2933                        return Ok(acp::PromptResponse {
2934                            stop_reason: acp::StopReason::Refusal,
2935                            meta: None,
2936                        });
2937                    }
2938
2939                    let acp::ContentBlock::Text(content) = &request.prompt[0] else {
2940                        panic!("expected text content block");
2941                    };
2942                    thread.update(&mut cx, |thread, cx| {
2943                        thread
2944                            .handle_session_update(
2945                                acp::SessionUpdate::AgentMessageChunk {
2946                                    content: content.text.to_uppercase().into(),
2947                                },
2948                                cx,
2949                            )
2950                            .unwrap();
2951                    })?;
2952                    Ok(acp::PromptResponse {
2953                        stop_reason: acp::StopReason::EndTurn,
2954                        meta: None,
2955                    })
2956                }
2957                .boxed_local()
2958            }
2959        }));
2960        let thread = cx
2961            .update(|cx| connection.new_thread(project, Path::new(path!("/test")), cx))
2962            .await
2963            .unwrap();
2964
2965        cx.update(|cx| thread.update(cx, |thread, cx| thread.send(vec!["hello".into()], cx)))
2966            .await
2967            .unwrap();
2968        thread.read_with(cx, |thread, cx| {
2969            assert_eq!(
2970                thread.to_markdown(cx),
2971                indoc! {"
2972                    ## User
2973
2974                    hello
2975
2976                    ## Assistant
2977
2978                    HELLO
2979
2980                "}
2981            );
2982        });
2983
2984        // Simulate refusing the second message. The message should be truncated
2985        // when a user prompt is refused.
2986        refuse_next.store(true, SeqCst);
2987        cx.update(|cx| thread.update(cx, |thread, cx| thread.send(vec!["world".into()], cx)))
2988            .await
2989            .unwrap();
2990        thread.read_with(cx, |thread, cx| {
2991            assert_eq!(
2992                thread.to_markdown(cx),
2993                indoc! {"
2994                    ## User
2995
2996                    hello
2997
2998                    ## Assistant
2999
3000                    HELLO
3001
3002                "}
3003            );
3004        });
3005    }
3006
3007    async fn run_until_first_tool_call(
3008        thread: &Entity<AcpThread>,
3009        cx: &mut TestAppContext,
3010    ) -> usize {
3011        let (mut tx, mut rx) = mpsc::channel::<usize>(1);
3012
3013        let subscription = cx.update(|cx| {
3014            cx.subscribe(thread, move |thread, _, cx| {
3015                for (ix, entry) in thread.read(cx).entries.iter().enumerate() {
3016                    if matches!(entry, AgentThreadEntry::ToolCall(_)) {
3017                        return tx.try_send(ix).unwrap();
3018                    }
3019                }
3020            })
3021        });
3022
3023        select! {
3024            _ = futures::FutureExt::fuse(smol::Timer::after(Duration::from_secs(10))) => {
3025                panic!("Timeout waiting for tool call")
3026            }
3027            ix = rx.next().fuse() => {
3028                drop(subscription);
3029                ix.unwrap()
3030            }
3031        }
3032    }
3033
3034    #[derive(Clone, Default)]
3035    struct FakeAgentConnection {
3036        auth_methods: Vec<acp::AuthMethod>,
3037        sessions: Arc<parking_lot::Mutex<HashMap<acp::SessionId, WeakEntity<AcpThread>>>>,
3038        on_user_message: Option<
3039            Rc<
3040                dyn Fn(
3041                        acp::PromptRequest,
3042                        WeakEntity<AcpThread>,
3043                        AsyncApp,
3044                    ) -> LocalBoxFuture<'static, Result<acp::PromptResponse>>
3045                    + 'static,
3046            >,
3047        >,
3048    }
3049
3050    impl FakeAgentConnection {
3051        fn new() -> Self {
3052            Self {
3053                auth_methods: Vec::new(),
3054                on_user_message: None,
3055                sessions: Arc::default(),
3056            }
3057        }
3058
3059        #[expect(unused)]
3060        fn with_auth_methods(mut self, auth_methods: Vec<acp::AuthMethod>) -> Self {
3061            self.auth_methods = auth_methods;
3062            self
3063        }
3064
3065        fn on_user_message(
3066            mut self,
3067            handler: impl Fn(
3068                acp::PromptRequest,
3069                WeakEntity<AcpThread>,
3070                AsyncApp,
3071            ) -> LocalBoxFuture<'static, Result<acp::PromptResponse>>
3072            + 'static,
3073        ) -> Self {
3074            self.on_user_message.replace(Rc::new(handler));
3075            self
3076        }
3077    }
3078
3079    impl AgentConnection for FakeAgentConnection {
3080        fn auth_methods(&self) -> &[acp::AuthMethod] {
3081            &self.auth_methods
3082        }
3083
3084        fn new_thread(
3085            self: Rc<Self>,
3086            project: Entity<Project>,
3087            _cwd: &Path,
3088            cx: &mut App,
3089        ) -> Task<gpui::Result<Entity<AcpThread>>> {
3090            let session_id = acp::SessionId(
3091                rand::rng()
3092                    .sample_iter(&distr::Alphanumeric)
3093                    .take(7)
3094                    .map(char::from)
3095                    .collect::<String>()
3096                    .into(),
3097            );
3098            let action_log = cx.new(|_| ActionLog::new(project.clone()));
3099            let thread = cx.new(|cx| {
3100                AcpThread::new(
3101                    "Test",
3102                    self.clone(),
3103                    project,
3104                    action_log,
3105                    session_id.clone(),
3106                    watch::Receiver::constant(acp::PromptCapabilities {
3107                        image: true,
3108                        audio: true,
3109                        embedded_context: true,
3110                        meta: None,
3111                    }),
3112                    cx,
3113                )
3114            });
3115            self.sessions.lock().insert(session_id, thread.downgrade());
3116            Task::ready(Ok(thread))
3117        }
3118
3119        fn authenticate(&self, method: acp::AuthMethodId, _cx: &mut App) -> Task<gpui::Result<()>> {
3120            if self.auth_methods().iter().any(|m| m.id == method) {
3121                Task::ready(Ok(()))
3122            } else {
3123                Task::ready(Err(anyhow!("Invalid Auth Method")))
3124            }
3125        }
3126
3127        fn prompt(
3128            &self,
3129            _id: Option<UserMessageId>,
3130            params: acp::PromptRequest,
3131            cx: &mut App,
3132        ) -> Task<gpui::Result<acp::PromptResponse>> {
3133            let sessions = self.sessions.lock();
3134            let thread = sessions.get(&params.session_id).unwrap();
3135            if let Some(handler) = &self.on_user_message {
3136                let handler = handler.clone();
3137                let thread = thread.clone();
3138                cx.spawn(async move |cx| handler(params, thread, cx.clone()).await)
3139            } else {
3140                Task::ready(Ok(acp::PromptResponse {
3141                    stop_reason: acp::StopReason::EndTurn,
3142                    meta: None,
3143                }))
3144            }
3145        }
3146
3147        fn cancel(&self, session_id: &acp::SessionId, cx: &mut App) {
3148            let sessions = self.sessions.lock();
3149            let thread = sessions.get(session_id).unwrap().clone();
3150
3151            cx.spawn(async move |cx| {
3152                thread
3153                    .update(cx, |thread, cx| thread.cancel(cx))
3154                    .unwrap()
3155                    .await
3156            })
3157            .detach();
3158        }
3159
3160        fn truncate(
3161            &self,
3162            session_id: &acp::SessionId,
3163            _cx: &App,
3164        ) -> Option<Rc<dyn AgentSessionTruncate>> {
3165            Some(Rc::new(FakeAgentSessionEditor {
3166                _session_id: session_id.clone(),
3167            }))
3168        }
3169
3170        fn into_any(self: Rc<Self>) -> Rc<dyn Any> {
3171            self
3172        }
3173    }
3174
3175    struct FakeAgentSessionEditor {
3176        _session_id: acp::SessionId,
3177    }
3178
3179    impl AgentSessionTruncate for FakeAgentSessionEditor {
3180        fn run(&self, _message_id: UserMessageId, _cx: &mut App) -> Task<Result<()>> {
3181            Task::ready(Ok(()))
3182        }
3183    }
3184}