21 Commits

Author SHA1 Message Date
fad30a89f1 .
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2026-02-19 10:10:16 +07:00
3e8efdd0ef update components 2026-02-19 08:17:46 +07:00
2c33670ba5 .
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8026a4f5a5 wip
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2026-02-17 13:23:43 +07:00
1d8e3724a8 wip
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2026-02-17 07:54:46 +07:00
d25080f5e7 wip
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2026-02-16 16:53:06 +07:00
452253bece wip
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2026-02-15 16:52:35 +07:00
a1aaa30a48 wip
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2026-02-14 16:43:28 +07:00
e327178161 chore: fix some performance issues (#6)
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Reviewed-on: #6
2026-02-14 02:01:49 +00:00
ecd7f6aa9b Continue redesign for the v1 stable release (#5)
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Reviewed-on: #5
2026-02-12 08:32:17 +00:00
32201554ec Redesign for the v1 stable release (#3)
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Rust / build (ubuntu-latest, stable) (push) Failing after 1m26s
Only half done. Will continue in another PR.

Reviewed-on: #3
2026-02-04 01:43:21 +00:00
014757cfc9 chore: update gpui 2026-01-14 15:00:52 +07:00
ac9afb1790 chore: refactor app settings (#2)
# Changelog

### Added

- [x] Add `Auth Mode` setting.
- [x] Add `Room Config` setting.

### Changed

- [x] Rename `media server` setting to `file server`

### Removed

- [x] Remove `proxy` setting. Coop is no longer depend on any 3rd party services.
- [x] Remove `contact bypass` settings. All chat requests from known contacts will be bypass by default.

**Note:**
- The Settings UI has been removed. It will be re-added in a separate PR.

Reviewed-on: #2
2026-01-14 09:48:15 +08:00
75c3783522 feat: rewrite the nip-4e implementation (#1)
Make NIP-4e a core feature, not an optional feature.

Note:
- The UI is broken and needs to be updated in a separate PR.

Reviewed-on: #1
2026-01-13 16:00:08 +08:00
reya
bb455871e5 remove i18n crate (#213) 2025-12-31 09:23:59 +07:00
0507fa7ac5 chore: update deps 2025-12-26 08:25:22 +07:00
af115321b4 Merge branch 'master' of github.com:lumehq/coop 2025-12-26 08:23:57 +07:00
reya
34e026751b feat: add support for multi-themes (#210)
* chore: update deps

* wip

* add themes

* add matrix theme

* add flexoki and spaceduck themes

* .

* simple theme change function

* .

* respect shadow and radius settings

* add rose pine themes

* toggle theme
2025-12-26 08:20:18 +07:00
e9e662dccc chore: update deps 2025-12-23 10:10:50 +07:00
5b7780ec9b chore: update deps 2025-12-17 08:10:02 +07:00
782efd7498 chore: update deps 2025-12-13 10:06:09 +07:00
230 changed files with 17331 additions and 18733 deletions

View File

@@ -13,7 +13,7 @@ jobs:
build:
strategy:
matrix:
os: [ubuntu-latest, macos-latest, windows-latest]
os: [ubuntu-latest]
rustup: [stable]
runs-on: ${{ matrix.os }}

2590
Cargo.lock generated

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@@ -8,13 +8,7 @@ version = "0.3.0"
edition = "2021"
publish = false
[workspace.metadata.i18n]
available-locales = ["en"]
default-locale = "en"
load-path = "locales"
[workspace.dependencies]
i18n = { path = "crates/i18n" }
# GPUI
gpui = { git = "https://github.com/zed-industries/zed" }
@@ -22,9 +16,11 @@ gpui_tokio = { git = "https://github.com/zed-industries/zed" }
reqwest_client = { git = "https://github.com/zed-industries/zed" }
# Nostr
nostr = { git = "https://github.com/rust-nostr/nostr", features = [ "nip96", "nip59", "nip49", "nip44" ] }
nostr-sdk = { git = "https://github.com/rust-nostr/nostr" }
nostr-lmdb = { git = "https://github.com/rust-nostr/nostr" }
nostr-connect = { git = "https://github.com/rust-nostr/nostr" }
nostr-sdk = { git = "https://github.com/rust-nostr/nostr", features = [ "nip96", "nip59", "nip49", "nip44" ] }
nostr-gossip-memory = { git = "https://github.com/rust-nostr/nostr" }
# Others
anyhow = "1.0.44"
@@ -36,9 +32,9 @@ oneshot = "0.1.10"
reqwest = { version = "0.12", features = ["multipart", "stream", "json"] }
flume = { version = "0.11.1", default-features = false, features = ["async", "select"] }
rust-embed = "8.5.0"
rust-i18n = "3"
serde = { version = "1.0", features = ["derive"] }
serde_json = "1.0"
schemars = "1"
smallvec = "1.14.0"
smol = "2"
tracing = "0.1.40"

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@@ -1,92 +0,0 @@
Copyright © 2017 IBM Corp. with Reserved Font Name "Plex"
This Font Software is licensed under the SIL Open Font License, Version 1.1.
This license is copied below, and is also available with a FAQ at:
http://scripts.sil.org/OFL
-----------------------------------------------------------
SIL OPEN FONT LICENSE Version 1.1 - 26 February 2007
-----------------------------------------------------------
PREAMBLE
The goals of the Open Font License (OFL) are to stimulate worldwide
development of collaborative font projects, to support the font creation
efforts of academic and linguistic communities, and to provide a free and
open framework in which fonts may be shared and improved in partnership
with others.
The OFL allows the licensed fonts to be used, studied, modified and
redistributed freely as long as they are not sold by themselves. The
fonts, including any derivative works, can be bundled, embedded,
redistributed and/or sold with any software provided that any reserved
names are not used by derivative works. The fonts and derivatives,
however, cannot be released under any other type of license. The
requirement for fonts to remain under this license does not apply
to any document created using the fonts or their derivatives.
DEFINITIONS
"Font Software" refers to the set of files released by the Copyright
Holder(s) under this license and clearly marked as such. This may
include source files, build scripts and documentation.
"Reserved Font Name" refers to any names specified as such after the
copyright statement(s).
"Original Version" refers to the collection of Font Software components as
distributed by the Copyright Holder(s).
"Modified Version" refers to any derivative made by adding to, deleting,
or substituting -- in part or in whole -- any of the components of the
Original Version, by changing formats or by porting the Font Software to a
new environment.
"Author" refers to any designer, engineer, programmer, technical
writer or other person who contributed to the Font Software.
PERMISSION & CONDITIONS
Permission is hereby granted, free of charge, to any person obtaining
a copy of the Font Software, to use, study, copy, merge, embed, modify,
redistribute, and sell modified and unmodified copies of the Font
Software, subject to the following conditions:
1) Neither the Font Software nor any of its individual components,
in Original or Modified Versions, may be sold by itself.
2) Original or Modified Versions of the Font Software may be bundled,
redistributed and/or sold with any software, provided that each copy
contains the above copyright notice and this license. These can be
included either as stand-alone text files, human-readable headers or
in the appropriate machine-readable metadata fields within text or
binary files as long as those fields can be easily viewed by the user.
3) No Modified Version of the Font Software may use the Reserved Font
Name(s) unless explicit written permission is granted by the corresponding
Copyright Holder. This restriction only applies to the primary font name as
presented to the users.
4) The name(s) of the Copyright Holder(s) or the Author(s) of the Font
Software shall not be used to promote, endorse or advertise any
Modified Version, except to acknowledge the contribution(s) of the
Copyright Holder(s) and the Author(s) or with their explicit written
permission.
5) The Font Software, modified or unmodified, in part or in whole,
must be distributed entirely under this license, and must not be
distributed under any other license. The requirement for fonts to
remain under this license does not apply to any document created
using the Font Software.
TERMINATION
This license becomes null and void if any of the above conditions are
not met.
DISCLAIMER
THE FONT SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO ANY WARRANTIES OF
MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT
OF COPYRIGHT, PATENT, TRADEMARK, OR OTHER RIGHT. IN NO EVENT SHALL THE
COPYRIGHT HOLDER BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
INCLUDING ANY GENERAL, SPECIAL, INDIRECT, INCIDENTAL, OR CONSEQUENTIAL
DAMAGES, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
FROM, OUT OF THE USE OR INABILITY TO USE THE FONT SOFTWARE OR FROM
OTHER DEALINGS IN THE FONT SOFTWARE.

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@@ -1,92 +0,0 @@
Copyright © 2017 IBM Corp. with Reserved Font Name "Plex"
This Font Software is licensed under the SIL Open Font License, Version 1.1.
This license is copied below, and is also available with a FAQ at:
http://scripts.sil.org/OFL
-----------------------------------------------------------
SIL OPEN FONT LICENSE Version 1.1 - 26 February 2007
-----------------------------------------------------------
PREAMBLE
The goals of the Open Font License (OFL) are to stimulate worldwide
development of collaborative font projects, to support the font creation
efforts of academic and linguistic communities, and to provide a free and
open framework in which fonts may be shared and improved in partnership
with others.
The OFL allows the licensed fonts to be used, studied, modified and
redistributed freely as long as they are not sold by themselves. The
fonts, including any derivative works, can be bundled, embedded,
redistributed and/or sold with any software provided that any reserved
names are not used by derivative works. The fonts and derivatives,
however, cannot be released under any other type of license. The
requirement for fonts to remain under this license does not apply
to any document created using the fonts or their derivatives.
DEFINITIONS
"Font Software" refers to the set of files released by the Copyright
Holder(s) under this license and clearly marked as such. This may
include source files, build scripts and documentation.
"Reserved Font Name" refers to any names specified as such after the
copyright statement(s).
"Original Version" refers to the collection of Font Software components as
distributed by the Copyright Holder(s).
"Modified Version" refers to any derivative made by adding to, deleting,
or substituting -- in part or in whole -- any of the components of the
Original Version, by changing formats or by porting the Font Software to a
new environment.
"Author" refers to any designer, engineer, programmer, technical
writer or other person who contributed to the Font Software.
PERMISSION & CONDITIONS
Permission is hereby granted, free of charge, to any person obtaining
a copy of the Font Software, to use, study, copy, merge, embed, modify,
redistribute, and sell modified and unmodified copies of the Font
Software, subject to the following conditions:
1) Neither the Font Software nor any of its individual components,
in Original or Modified Versions, may be sold by itself.
2) Original or Modified Versions of the Font Software may be bundled,
redistributed and/or sold with any software, provided that each copy
contains the above copyright notice and this license. These can be
included either as stand-alone text files, human-readable headers or
in the appropriate machine-readable metadata fields within text or
binary files as long as those fields can be easily viewed by the user.
3) No Modified Version of the Font Software may use the Reserved Font
Name(s) unless explicit written permission is granted by the corresponding
Copyright Holder. This restriction only applies to the primary font name as
presented to the users.
4) The name(s) of the Copyright Holder(s) or the Author(s) of the Font
Software shall not be used to promote, endorse or advertise any
Modified Version, except to acknowledge the contribution(s) of the
Copyright Holder(s) and the Author(s) or with their explicit written
permission.
5) The Font Software, modified or unmodified, in part or in whole,
must be distributed entirely under this license, and must not be
distributed under any other license. The requirement for fonts to
remain under this license does not apply to any document created
using the Font Software.
TERMINATION
This license becomes null and void if any of the above conditions are
not met.
DISCLAIMER
THE FONT SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO ANY WARRANTIES OF
MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT
OF COPYRIGHT, PATENT, TRADEMARK, OR OTHER RIGHT. IN NO EVENT SHALL THE
COPYRIGHT HOLDER BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
INCLUDING ANY GENERAL, SPECIAL, INDIRECT, INCIDENTAL, OR CONSEQUENTIAL
DAMAGES, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
FROM, OUT OF THE USE OR INABILITY TO USE THE FONT SOFTWARE OR FROM
OTHER DEALINGS IN THE FONT SOFTWARE.

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@@ -0,0 +1,58 @@
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d="M4.75 9.25V4.75H9.25"
stroke="currentColor"
stroke-width="1.5"
stroke-linecap="round"
stroke-linejoin="round"
/>
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d="M19.25 9.25V4.75H14.75"
stroke="currentColor"
stroke-width="1.5"
stroke-linecap="round"
stroke-linejoin="round"
/>
<path
d="M19.25 14.75V19.25H14.75"
stroke="currentColor"
stroke-width="1.5"
stroke-linecap="round"
stroke-linejoin="round"
/>
<path
d="M4.75 14.75V19.25H9.25"
stroke="currentColor"
stroke-width="1.5"
stroke-linecap="round"
stroke-linejoin="round"
/>
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d="M5 5L9.5 9.5"
stroke="currentColor"
stroke-width="1.5"
stroke-linecap="round"
stroke-linejoin="round"
/>
<path
d="M19 5L14.5 9.5"
stroke="currentColor"
stroke-width="1.5"
stroke-linecap="round"
stroke-linejoin="round"
/>
<path
d="M19 19L14.5 14.5"
stroke="currentColor"
stroke-width="1.5"
stroke-linecap="round"
stroke-linejoin="round"
/>
<path
d="M5 19L9.5 14.5"
stroke="currentColor"
stroke-width="1.5"
stroke-linecap="round"
stroke-linejoin="round"
/>
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@@ -1,22 +0,0 @@
[package]
name = "account"
version.workspace = true
edition.workspace = true
publish.workspace = true
[dependencies]
state = { path = "../state" }
settings = { path = "../settings" }
common = { path = "../common" }
theme = { path = "../theme" }
ui = { path = "../ui" }
gpui.workspace = true
nostr-sdk.workspace = true
anyhow.workspace = true
smallvec.workspace = true
smol.workspace = true
log.workspace = true
serde.workspace = true
serde_json.workspace = true

View File

@@ -1,208 +0,0 @@
use std::time::Duration;
use anyhow::Error;
use common::BOOTSTRAP_RELAYS;
use gpui::{App, AppContext, Context, Entity, Global, Task};
use nostr_sdk::prelude::*;
use smallvec::{smallvec, SmallVec};
use state::NostrRegistry;
pub fn init(cx: &mut App) {
Account::set_global(cx.new(Account::new), cx);
}
struct GlobalAccount(Entity<Account>);
impl Global for GlobalAccount {}
pub struct Account {
/// The public key of the account
public_key: Option<PublicKey>,
/// Status of the current user NIP-65 relays
pub nip65_status: Entity<RelayStatus>,
/// Status of the current user NIP-17 relays
pub nip17_status: Entity<RelayStatus>,
/// Tasks for asynchronous operations
_tasks: SmallVec<[Task<()>; 2]>,
}
#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
pub enum RelayStatus {
#[default]
Initial,
NotSet,
Set,
}
impl Account {
/// Retrieve the global account state
pub fn global(cx: &App) -> Entity<Self> {
cx.global::<GlobalAccount>().0.clone()
}
/// Check if the global account state exists
pub fn has_global(cx: &App) -> bool {
cx.has_global::<GlobalAccount>()
}
/// Remove the global account state
pub fn remove_global(cx: &mut App) {
cx.remove_global::<GlobalAccount>();
}
/// Set the global account instance
fn set_global(state: Entity<Self>, cx: &mut App) {
cx.set_global(GlobalAccount(state));
}
/// Create a new account instance
fn new(cx: &mut Context<Self>) -> Self {
let nostr = NostrRegistry::global(cx);
let client = nostr.read(cx).client();
let nip65_status = cx.new(|_| RelayStatus::default());
let nip17_status = cx.new(|_| RelayStatus::default());
let mut tasks = smallvec![];
tasks.push(
// Observe the nostr signer and set the public key when it sets
cx.spawn(async move |this, cx| {
let result = cx
.background_spawn(async move { Self::observe_signer(&client).await })
.await;
if let Some(public_key) = result {
this.update(cx, |this, cx| {
this.set_account(public_key, cx);
})
.expect("Entity has been released")
}
}),
);
Self {
public_key: None,
nip65_status,
nip17_status,
_tasks: tasks,
}
}
/// Observe the signer and return the public key when it sets
async fn observe_signer(client: &Client) -> Option<PublicKey> {
let loop_duration = Duration::from_millis(800);
loop {
if let Ok(signer) = client.signer().await {
if let Ok(public_key) = signer.get_public_key().await {
// Get current user's gossip relays
Self::get_gossip_relays(client, public_key).await.ok()?;
return Some(public_key);
}
}
smol::Timer::after(loop_duration).await;
}
}
/// Get gossip relays for a given public key
async fn get_gossip_relays(client: &Client, public_key: PublicKey) -> Result<(), Error> {
let opts = SubscribeAutoCloseOptions::default().exit_policy(ReqExitPolicy::ExitOnEOSE);
let filter = Filter::new()
.kind(Kind::RelayList)
.author(public_key)
.limit(1);
// Subscribe to events from the bootstrapping relays
client
.subscribe_to(BOOTSTRAP_RELAYS, filter, Some(opts))
.await?;
Ok(())
}
/// Ensure the user has NIP-65 relays
async fn ensure_nip65_relays(client: &Client, public_key: PublicKey) -> Result<bool, Error> {
let filter = Filter::new()
.kind(Kind::RelayList)
.author(public_key)
.limit(1);
// Count the number of nip65 relays event in the database
let total = client.database().count(filter).await.unwrap_or(0);
Ok(total > 0)
}
/// Ensure the user has NIP-17 relays
async fn ensure_nip17_relays(client: &Client, public_key: PublicKey) -> Result<bool, Error> {
let filter = Filter::new()
.kind(Kind::InboxRelays)
.author(public_key)
.limit(1);
// Count the number of nip17 relays event in the database
let total = client.database().count(filter).await.unwrap_or(0);
Ok(total > 0)
}
/// Set the public key of the account
pub fn set_account(&mut self, public_key: PublicKey, cx: &mut Context<Self>) {
let nostr = NostrRegistry::global(cx);
let client = nostr.read(cx).client();
// Update account's public key
self.public_key = Some(public_key);
// Add background task
self._tasks.push(
// Verify user's nip65 and nip17 relays
cx.spawn(async move |this, cx| {
cx.background_executor().timer(Duration::from_secs(5)).await;
// Fetch the NIP-65 relays event in the local database
let ensure_nip65 = Self::ensure_nip65_relays(&client, public_key).await;
// Fetch the NIP-17 relays event in the local database
let ensure_nip17 = Self::ensure_nip17_relays(&client, public_key).await;
this.update(cx, |this, cx| {
this.nip65_status.update(cx, |this, cx| {
*this = match ensure_nip65 {
Ok(true) => RelayStatus::Set,
_ => RelayStatus::NotSet,
};
cx.notify();
});
this.nip17_status.update(cx, |this, cx| {
*this = match ensure_nip17 {
Ok(true) => RelayStatus::Set,
_ => RelayStatus::NotSet,
};
cx.notify();
});
})
.expect("Entity has been released")
}),
);
cx.notify();
}
/// Check if the account entity has a public key
pub fn has_account(&self) -> bool {
self.public_key.is_some()
}
/// Get the public key of the account
pub fn public_key(&self) -> PublicKey {
// This method is only called when user is logged in, so unwrap safely
self.public_key.unwrap()
}
}

View File

@@ -7,6 +7,7 @@ use rust_embed::RustEmbed;
#[include = "fonts/**/*"]
#[include = "brand/**/*"]
#[include = "icons/**/*"]
#[include = "themes/**/*"]
#[exclude = "*.DS_Store"]
pub struct Assets;
@@ -47,13 +48,4 @@ impl Assets {
cx.text_system().add_fonts(embedded_fonts)
}
pub fn load_test_fonts(&self, cx: &App) {
cx.text_system()
.add_fonts(vec![self
.load("fonts/plex-mono/ZedPlexMono-Regular.ttf")
.unwrap()
.unwrap()])
.unwrap()
}
}

View File

@@ -4,7 +4,6 @@ use std::sync::Arc;
use std::time::Duration;
use anyhow::{anyhow, Context as AnyhowContext, Error};
use common::BOOTSTRAP_RELAYS;
use gpui::http_client::{AsyncBody, HttpClient};
use gpui::{
App, AppContext, AsyncApp, BackgroundExecutor, Context, Entity, Global, Subscription, Task,
@@ -232,36 +231,29 @@ impl AutoUpdater {
fn subscribe_to_updates(cx: &App) -> Task<()> {
let nostr = NostrRegistry::global(cx);
let client = nostr.read(cx).client();
let _client = nostr.read(cx).client();
cx.background_spawn(async move {
let opts = SubscribeAutoCloseOptions::default().exit_policy(ReqExitPolicy::ExitOnEOSE);
let _opts = SubscribeAutoCloseOptions::default().exit_policy(ReqExitPolicy::ExitOnEOSE);
let app_pubkey = PublicKey::parse(APP_PUBKEY).unwrap();
let filter = Filter::new()
let _filter = Filter::new()
.kind(Kind::ReleaseArtifactSet)
.author(app_pubkey)
.limit(1);
if let Err(e) = client
.subscribe_to(BOOTSTRAP_RELAYS, filter, Some(opts))
.await
{
log::error!("Failed to subscribe to updates: {e}");
};
// TODO
})
}
fn check_for_updates(version: Version, cx: &AsyncApp) -> Task<Result<Vec<EventId>, Error>> {
let Ok(client) = cx.update(|cx| {
let client = cx.update(|cx| {
let nostr = NostrRegistry::global(cx);
nostr.read(cx).client()
}) else {
return Task::ready(Err(anyhow!("Entity has been released")));
};
});
cx.background_spawn(async move {
let opts = SubscribeAutoCloseOptions::default().exit_policy(ReqExitPolicy::ExitOnEOSE);
let _opts = SubscribeAutoCloseOptions::default().exit_policy(ReqExitPolicy::ExitOnEOSE);
let app_pubkey = PublicKey::parse(APP_PUBKEY).unwrap();
let filter = Filter::new()
@@ -282,15 +274,12 @@ impl AutoUpdater {
// Get all file metadata event ids
let ids: Vec<EventId> = event.tags.event_ids().copied().collect();
let filter = Filter::new()
let _filter = Filter::new()
.kind(Kind::FileMetadata)
.author(app_pubkey)
.ids(ids.clone());
// Get all files for this release
client
.subscribe_to(BOOTSTRAP_RELAYS, filter, Some(opts))
.await?;
// TODO
Ok(ids)
} else {
@@ -416,7 +405,7 @@ async fn install_release_macos(
downloaded_dmg: PathBuf,
cx: &AsyncApp,
) -> Result<(), Error> {
let running_app_path = cx.update(|cx| cx.app_path())??;
let running_app_path = cx.update(|cx| cx.app_path())?;
let running_app_filename = running_app_path
.file_name()
.with_context(|| format!("invalid running app path {running_app_path:?}"))?;

View File

@@ -7,8 +7,7 @@ publish.workspace = true
[dependencies]
common = { path = "../common" }
state = { path = "../state" }
account = { path = "../account" }
encryption = { path = "../encryption" }
device = { path = "../device" }
person = { path = "../person" }
settings = { path = "../settings" }

View File

@@ -5,63 +5,65 @@ use std::sync::atomic::{AtomicBool, Ordering};
use std::sync::Arc;
use std::time::Duration;
use account::Account;
use anyhow::{anyhow, Context as AnyhowContext, Error};
use common::{EventUtils, BOOTSTRAP_RELAYS, METADATA_BATCH_LIMIT};
use encryption::Encryption;
use flume::Sender;
use common::EventUtils;
use fuzzy_matcher::skim::SkimMatcherV2;
use fuzzy_matcher::FuzzyMatcher;
use gpui::{App, AppContext, Context, Entity, EventEmitter, Global, Subscription, Task};
pub use message::*;
use gpui::{
App, AppContext, Context, Entity, EventEmitter, Global, Subscription, Task, WeakEntity, Window,
};
use nostr_sdk::prelude::*;
pub use room::*;
use settings::AppSettings;
use smallvec::{smallvec, SmallVec};
use state::{initialized_at, NostrRegistry, GIFTWRAP_SUBSCRIPTION};
use state::{NostrRegistry, DEVICE_GIFTWRAP, USER_GIFTWRAP};
mod message;
mod room;
pub fn init(cx: &mut App) {
ChatRegistry::set_global(cx.new(ChatRegistry::new), cx);
pub use message::*;
pub use room::*;
pub fn init(window: &mut Window, cx: &mut App) {
ChatRegistry::set_global(cx.new(|cx| ChatRegistry::new(window, cx)), cx);
}
struct GlobalChatRegistry(Entity<ChatRegistry>);
impl Global for GlobalChatRegistry {}
/// Chat event.
#[derive(Debug, Clone, PartialEq, Eq, PartialOrd, Ord)]
pub enum ChatEvent {
/// An event to open a room by its ID
OpenRoom(u64),
/// An event to close a room by its ID
CloseRoom(u64),
/// An event to notify UI about a new chat request
Ping,
}
/// Channel signal.
#[derive(Debug, Clone, PartialEq, Eq, PartialOrd, Ord)]
enum Signal {
/// Message received from relay pool
Message(NewMessage),
/// Eose received from relay pool
Eose,
}
/// Chat Registry
#[derive(Debug)]
pub struct ChatRegistry {
/// Collection of all chat rooms
pub rooms: Vec<Entity<Room>>,
rooms: Vec<Entity<Room>>,
/// Loading status of the registry
pub loading: bool,
/// Tracking the status of unwrapping gift wrap events.
tracking_flag: Arc<AtomicBool>,
/// Async task for handling notifications
handle_notifications: Task<()>,
/// Async tasks
tasks: SmallVec<[Task<Result<(), Error>>; 2]>,
/// Event subscriptions
/// Subscriptions
_subscriptions: SmallVec<[Subscription; 1]>,
/// Tasks for asynchronous operations
_tasks: SmallVec<[Task<()>; 4]>,
}
#[derive(Debug, Clone, PartialEq, Eq, PartialOrd, Ord)]
pub enum ChatEvent {
OpenRoom(u64),
CloseRoom(u64),
NewChatRequest(RoomKind),
}
#[derive(Debug, Clone, PartialEq, Eq, PartialOrd, Ord)]
pub enum Signal {
Loading(bool),
Message(NewMessage),
Eose,
}
impl EventEmitter<ChatEvent> for ChatRegistry {}
@@ -78,114 +80,63 @@ impl ChatRegistry {
}
/// Create a new chat registry instance
fn new(cx: &mut Context<Self>) -> Self {
let encryption = Encryption::global(cx);
let encryption_key = encryption.read(cx).encryption.clone();
fn new(window: &mut Window, cx: &mut Context<Self>) -> Self {
let nostr = NostrRegistry::global(cx);
let client = nostr.read(cx).client();
let status = Arc::new(AtomicBool::new(true));
let (tx, rx) = flume::bounded::<Signal>(2048);
let handle_notifications = cx.background_spawn({
let client = nostr.read(cx).client();
let status = Arc::clone(&status);
let tx = tx.clone();
let signer: Option<Arc<dyn NostrSigner>> = None;
async move { Self::handle_notifications(&client, &signer, &tx, &status).await }
});
let nip65 = nostr.read(cx).nip65_state();
let nip17 = nostr.read(cx).nip17_state();
let mut subscriptions = smallvec![];
let mut tasks = smallvec![];
subscriptions.push(
// Observe the encryption global state
cx.observe(&encryption_key, {
let status = Arc::clone(&status);
let tx = tx.clone();
move |this, state, cx| {
if let Some(signer) = state.read(cx).clone() {
this.handle_notifications = cx.background_spawn({
let client = nostr.read(cx).client();
let status = Arc::clone(&status);
let tx = tx.clone();
let signer = Some(signer);
async move {
Self::handle_notifications(&client, &signer, &tx, &status).await
// Observe the nip65 state and load chat rooms on every state change
cx.observe(&nip65, |this, state, cx| {
if state.read(cx).idle() {
this.reset(cx);
}
}),
);
subscriptions.push(
// Observe the nip17 state and load chat rooms on every state change
cx.observe(&nip17, |this, _state, cx| {
this.get_rooms(cx);
}),
);
cx.defer_in(window, |this, _window, cx| {
this.handle_notifications(cx);
this.tracking(cx);
});
cx.notify();
}
}
}),
);
tasks.push(
// Handle unwrapping status
cx.background_spawn(
async move { Self::handle_unwrapping(&client, &status, &tx).await },
),
);
tasks.push(
// Handle new messages
cx.spawn(async move |this, cx| {
while let Ok(message) = rx.recv_async().await {
match message {
Signal::Message(message) => {
this.update(cx, |this, cx| {
this.new_message(message, cx);
})
.expect("Entity has been released");
}
Signal::Eose => {
this.update(cx, |this, cx| {
this.get_rooms(cx);
})
.expect("Entity has been released");
}
Signal::Loading(status) => {
this.update(cx, |this, cx| {
this.set_loading(status, cx);
this.get_rooms(cx);
})
.expect("Entity has been released");
}
};
}
}),
);
Self {
rooms: vec![],
loading: true,
handle_notifications,
tracking_flag: Arc::new(AtomicBool::new(false)),
tasks: smallvec![],
_subscriptions: subscriptions,
_tasks: tasks,
}
}
async fn handle_notifications<T>(
client: &Client,
signer: &Option<T>,
tx: &Sender<Signal>,
status: &Arc<AtomicBool>,
) where
T: NostrSigner,
{
let initialized_at = initialized_at();
let subscription_id = SubscriptionId::new(GIFTWRAP_SUBSCRIPTION);
/// Handle nostr notifications
fn handle_notifications(&mut self, cx: &mut Context<Self>) {
let nostr = NostrRegistry::global(cx);
let client = nostr.read(cx).client();
let signer = nostr.read(cx).signer();
let status = self.tracking_flag.clone();
let initialized_at = Timestamp::now();
let sub_id1 = SubscriptionId::new(DEVICE_GIFTWRAP);
let sub_id2 = SubscriptionId::new(USER_GIFTWRAP);
// Channel for communication between nostr and gpui
let (tx, rx) = flume::bounded::<Signal>(1024);
self.tasks.push(cx.background_spawn(async move {
let device_signer = signer.get_encryption_signer().await;
let mut notifications = client.notifications();
let mut public_keys = HashSet::new();
let mut processed_events = HashSet::new();
while let Ok(notification) = notifications.recv().await {
let RelayPoolNotification::Message { message, .. } = notification else {
while let Some(notification) = notifications.next().await {
let ClientNotification::Message { message, .. } = notification else {
// Skip non-message notifications
continue;
};
@@ -202,126 +153,141 @@ impl ChatRegistry {
continue;
}
log::info!("Received gift wrap event: {:?}", event);
// Extract the rumor from the gift wrap event
match Self::extract_rumor(client, signer, event.as_ref()).await {
Ok(rumor) => {
// Get all public keys
public_keys.extend(rumor.all_pubkeys());
let limit_reached = public_keys.len() >= METADATA_BATCH_LIMIT;
let done = !status.load(Ordering::Acquire) && !public_keys.is_empty();
// Get metadata for all public keys if the limit is reached
if limit_reached || done {
let public_keys = std::mem::take(&mut public_keys);
// Get metadata for the public keys
Self::get_metadata(client, public_keys).await.ok();
}
match &rumor.created_at >= initialized_at {
match Self::extract_rumor(&client, &device_signer, event.as_ref()).await {
Ok(rumor) => match rumor.created_at >= initialized_at {
true => {
let new_message = NewMessage::new(event.id, rumor);
let signal = Signal::Message(new_message);
if let Err(e) = tx.send_async(signal).await {
log::error!("Failed to send signal: {}", e);
}
tx.send_async(signal).await?;
}
false => {
status.store(true, Ordering::Release);
}
}
}
},
Err(e) => {
log::warn!("Failed to unwrap gift wrap event: {}", e);
log::warn!("Failed to unwrap the gift wrap event: {e}");
}
}
}
RelayMessage::EndOfStoredEvents(id) => {
if id.as_ref() == &subscription_id {
if let Err(e) = tx.send_async(Signal::Eose).await {
log::error!("Failed to send signal: {}", e);
}
if id.as_ref() == &sub_id1 || id.as_ref() == &sub_id2 {
tx.send_async(Signal::Eose).await?;
}
}
_ => {}
}
}
Ok(())
}));
self.tasks.push(cx.spawn(async move |this, cx| {
while let Ok(message) = rx.recv_async().await {
match message {
Signal::Message(message) => {
this.update(cx, |this, cx| {
this.new_message(message, cx);
})?;
}
Signal::Eose => {
this.update(cx, |this, cx| {
this.get_rooms(cx);
})?;
}
};
}
async fn handle_unwrapping(client: &Client, status: &Arc<AtomicBool>, tx: &Sender<Signal>) {
let loop_duration = Duration::from_secs(20);
let mut is_start_processing = false;
let mut total_loops = 0;
Ok(())
}));
}
/// Tracking the status of unwrapping gift wrap events.
fn tracking(&mut self, cx: &mut Context<Self>) {
let status = self.tracking_flag.clone();
self.tasks.push(cx.background_spawn(async move {
let loop_duration = Duration::from_secs(10);
loop {
if client.has_signer().await {
total_loops += 1;
if status.load(Ordering::Acquire) {
is_start_processing = true;
// Reset gift wrap processing flag
_ = status.compare_exchange(true, false, Ordering::Release, Ordering::Relaxed);
// Send loading signal
if let Err(e) = tx.send_async(Signal::Loading(true)).await {
log::error!("Failed to send signal: {}", e);
}
} else {
// Only run further if we are already processing
// Wait until after 2 loops to prevent exiting early while events are still being processed
if is_start_processing && total_loops >= 2 {
// Send loading signal
if let Err(e) = tx.send_async(Signal::Loading(false)).await {
log::error!("Failed to send signal: {}", e);
}
// Reset the counter
is_start_processing = false;
total_loops = 0;
}
}
}
smol::Timer::after(loop_duration).await;
}
}));
}
/// Set the loading status of the chat registry
pub fn set_loading(&mut self, loading: bool, cx: &mut Context<Self>) {
self.loading = loading;
cx.notify();
/// Get the loading status of the chat registry
pub fn loading(&self) -> bool {
self.tracking_flag.load(Ordering::Acquire)
}
/// Get a room by its ID.
pub fn room(&self, id: &u64, cx: &App) -> Option<Entity<Room>> {
/// Get a weak reference to a room by its ID.
pub fn room(&self, id: &u64, cx: &App) -> Option<WeakEntity<Room>> {
self.rooms
.iter()
.find(|model| model.read(cx).id == *id)
.cloned()
.find(|this| &this.read(cx).id == id)
.map(|this| this.downgrade())
}
/// Get all ongoing rooms.
pub fn ongoing_rooms(&self, cx: &App) -> Vec<Entity<Room>> {
/// Get all rooms based on the filter.
pub fn rooms(&self, filter: &RoomKind, cx: &App) -> Vec<Entity<Room>> {
self.rooms
.iter()
.filter(|room| room.read(cx).kind == RoomKind::Ongoing)
.filter(|room| &room.read(cx).kind == filter)
.cloned()
.collect()
}
/// Get all request rooms.
pub fn request_rooms(&self, cx: &App) -> Vec<Entity<Room>> {
/// Count the number of rooms based on the filter.
pub fn count(&self, filter: &RoomKind, cx: &App) -> usize {
self.rooms
.iter()
.filter(|room| room.read(cx).kind != RoomKind::Ongoing)
.cloned()
.collect()
.filter(|room| &room.read(cx).kind == filter)
.count()
}
/// Add a new room to the start of list.
pub fn add_room(&mut self, room: Entity<Room>, cx: &mut Context<Self>) {
self.rooms.insert(0, room);
pub fn add_room<I>(&mut self, room: I, cx: &mut Context<Self>)
where
I: Into<Room> + 'static,
{
let nostr = NostrRegistry::global(cx);
let client = nostr.read(cx).client();
cx.spawn(async move |this, cx| {
let signer = client.signer()?;
let public_key = signer.get_public_key().await.ok()?;
let room: Room = room.into().organize(&public_key);
this.update(cx, |this, cx| {
this.rooms.insert(0, cx.new(|_| room));
cx.emit(ChatEvent::Ping);
cx.notify();
})
.ok()
})
.detach();
}
/// Emit an open room event.
///
/// If the room is new, add it to the registry.
pub fn emit_room(&mut self, room: &Entity<Room>, cx: &mut Context<Self>) {
// Get the room's ID.
let id = room.read(cx).id;
// If the room is new, add it to the registry.
if !self.rooms.iter().any(|r| r.read(cx).id == id) {
self.rooms.insert(0, room.to_owned());
}
// Emit the open room event.
cx.emit(ChatEvent::OpenRoom(id));
}
/// Close a room.
@@ -337,10 +303,17 @@ impl ChatRegistry {
cx.notify();
}
/// Search rooms by their name.
pub fn search(&self, query: &str, cx: &App) -> Vec<Entity<Room>> {
/// Finding rooms based on a query.
pub fn find(&self, query: &str, cx: &App) -> Vec<Entity<Room>> {
let matcher = SkimMatcherV2::default();
if let Ok(public_key) = PublicKey::parse(query) {
self.rooms
.iter()
.filter(|room| room.read(cx).members.contains(&public_key))
.cloned()
.collect()
} else {
self.rooms
.iter()
.filter(|room| {
@@ -351,14 +324,6 @@ impl ChatRegistry {
.cloned()
.collect()
}
/// Search rooms by public keys.
pub fn search_by_public_key(&self, public_key: PublicKey, cx: &App) -> Vec<Entity<Room>> {
self.rooms
.iter()
.filter(|room| room.read(cx).members.contains(&public_key))
.cloned()
.collect()
}
/// Reset the registry.
@@ -367,17 +332,6 @@ impl ChatRegistry {
cx.notify();
}
/// Push a new room to the chat registry
pub fn push_room(&mut self, room: Entity<Room>, cx: &mut Context<Self>) {
let id = room.read(cx).id;
if !self.rooms.iter().any(|r| r.read(cx).id == id) {
self.add_room(room, cx);
}
cx.emit(ChatEvent::OpenRoom(id));
}
/// Extend the registry with new rooms.
fn extend_rooms(&mut self, rooms: HashSet<Room>, cx: &mut Context<Self>) {
let mut room_map: HashMap<u64, usize> = self
@@ -408,40 +362,33 @@ impl ChatRegistry {
/// Load all rooms from the database.
pub fn get_rooms(&mut self, cx: &mut Context<Self>) {
let task = self.create_get_rooms_task(cx);
let task = self.get_rooms_from_database(cx);
self._tasks.push(
// Run and finished in the background
cx.spawn(async move |this, cx| {
match task.await {
Ok(rooms) => {
let rooms = task.await.ok()?;
this.update(cx, move |this, cx| {
this.extend_rooms(rooms, cx);
this.sort(cx);
})
.expect("Entity has been released");
}
Err(e) => {
log::error!("Failed to load rooms: {e}")
}
};
}),
);
.ok()
})
.detach();
}
/// Create a task to load rooms from the database
fn create_get_rooms_task(&self, cx: &App) -> Task<Result<HashSet<Room>, Error>> {
fn get_rooms_from_database(&self, cx: &App) -> Task<Result<HashSet<Room>, Error>> {
let nostr = NostrRegistry::global(cx);
let client = nostr.read(cx).client();
// Get the contact bypass setting
let bypass_setting = AppSettings::get_contact_bypass(cx);
cx.background_spawn(async move {
let signer = client.signer().await?;
let signer = client.signer().context("Signer not found")?;
let public_key = signer.get_public_key().await?;
// Get contacts
let contacts = client.database().contacts_public_keys(public_key).await?;
// Construct authored filter
let authored_filter = Filter::new()
.kind(Kind::ApplicationSpecificData)
.custom_tag(SingleLetterTag::lowercase(Alphabet::A), public_key);
@@ -449,6 +396,7 @@ impl ChatRegistry {
// Get all authored events
let authored = client.database().query(authored_filter).await?;
// Construct addressed filter
let addressed_filter = Filter::new()
.kind(Kind::ApplicationSpecificData)
.custom_tag(SingleLetterTag::lowercase(Alphabet::P), public_key);
@@ -459,6 +407,7 @@ impl ChatRegistry {
// Merge authored and addressed events
let events = authored.merge(addressed);
// Collect results
let mut rooms: HashSet<Room> = HashSet::new();
let mut grouped: HashMap<u64, Vec<UnsignedEvent>> = HashMap::new();
@@ -474,32 +423,24 @@ impl ChatRegistry {
for (_id, mut messages) in grouped.into_iter() {
messages.sort_by_key(|m| Reverse(m.created_at));
// Always use the latest message
let Some(latest) = messages.first() else {
continue;
};
let mut room = Room::from(latest);
if rooms.iter().any(|r| r.id == room.id) {
continue;
}
let mut public_keys = room.members();
public_keys.retain(|pk| pk != &public_key);
// Construct the room from the latest message.
//
// Call `.organize` to ensure the current user is at the end of the list.
let mut room = Room::from(latest).organize(&public_key);
// Check if the user has responded to the room
let user_sent = messages.iter().any(|m| m.pubkey == public_key);
// Determine if the room is ongoing or not
let mut bypassed = false;
// Check if public keys are from the user's contacts
if bypass_setting {
bypassed = public_keys.iter().any(|k| contacts.contains(k));
}
let is_contact = room.members.iter().any(|k| contacts.contains(k));
// Set the room's kind based on status
if user_sent || bypassed {
if user_sent || is_contact {
room = room.kind(RoomKind::Ongoing);
}
@@ -510,6 +451,24 @@ impl ChatRegistry {
})
}
/// Parse a nostr event into a message and push it to the belonging room
///
/// If the room doesn't exist, it will be created.
/// Updates room ordering based on the most recent messages.
pub fn new_message(&mut self, message: NewMessage, cx: &mut Context<Self>) {
match self.rooms.iter().find(|e| e.read(cx).id == message.room) {
Some(room) => {
room.update(cx, |this, cx| {
this.push_message(message, cx);
});
}
None => {
// Push the new room to the front of the list
self.add_room(message.rumor, cx);
}
}
}
/// Trigger a refresh of the opened chat rooms by their IDs
pub fn refresh_rooms(&mut self, ids: Option<Vec<u64>>, cx: &mut Context<Self>) {
if let Some(ids) = ids {
@@ -523,64 +482,19 @@ impl ChatRegistry {
}
}
/// Parse a Nostr event into a Coop Message and push it to the belonging room
///
/// If the room doesn't exist, it will be created.
/// Updates room ordering based on the most recent messages.
pub fn new_message(&mut self, message: NewMessage, cx: &mut Context<Self>) {
let id = message.rumor.uniq_id();
let author = message.rumor.pubkey;
let account = Account::global(cx);
if let Some(room) = self.rooms.iter().find(|room| room.read(cx).id == id) {
let is_new_event = message.rumor.created_at > room.read(cx).created_at;
let created_at = message.rumor.created_at;
let event_for_emit = message.rumor.clone();
// Update room
room.update(cx, |this, cx| {
if is_new_event {
this.set_created_at(created_at, cx);
}
// Set this room is ongoing if the new message is from current user
if author == account.read(cx).public_key() {
this.set_ongoing(cx);
}
// Emit the new message to the room
this.emit_message(message.gift_wrap, event_for_emit.clone(), cx);
});
// Resort all rooms in the registry by their created at (after updated)
if is_new_event {
self.sort(cx);
}
} else {
// Push the new room to the front of the list
self.add_room(cx.new(|_| Room::from(&message.rumor)), cx);
// Notify the UI about the new room
cx.emit(ChatEvent::NewChatRequest(RoomKind::default()));
}
}
// Unwraps a gift-wrapped event and processes its contents.
async fn extract_rumor<T>(
/// Unwraps a gift-wrapped event and processes its contents.
async fn extract_rumor(
client: &Client,
signer: &Option<T>,
device_signer: &Option<Arc<dyn NostrSigner>>,
gift_wrap: &Event,
) -> Result<UnsignedEvent, Error>
where
T: NostrSigner,
{
) -> Result<UnsignedEvent, Error> {
// Try to get cached rumor first
if let Ok(event) = Self::get_rumor(client, gift_wrap.id).await {
return Ok(event);
}
// Try to unwrap with the available signer
let unwrapped = Self::try_unwrap(client, signer, gift_wrap).await?;
let unwrapped = Self::try_unwrap(client, device_signer, gift_wrap).await?;
let mut rumor_unsigned = unwrapped.rumor;
// Generate event id for the rumor if it doesn't have one
@@ -592,46 +506,50 @@ impl ChatRegistry {
Ok(rumor_unsigned)
}
// Helper method to try unwrapping with different signers
async fn try_unwrap<T>(
/// Helper method to try unwrapping with different signers
async fn try_unwrap(
client: &Client,
signer: &Option<T>,
device_signer: &Option<Arc<dyn NostrSigner>>,
gift_wrap: &Event,
) -> Result<UnwrappedGift, Error>
where
T: NostrSigner,
{
if let Some(custom_signer) = signer.as_ref() {
if let Ok(seal) = custom_signer
.nip44_decrypt(&gift_wrap.pubkey, &gift_wrap.content)
.await
{
let seal: Event = Event::from_json(seal)?;
seal.verify_with_ctx(SECP256K1)?;
) -> Result<UnwrappedGift, Error> {
// Try with the device signer first
if let Some(signer) = device_signer {
if let Ok(unwrapped) = Self::try_unwrap_with(gift_wrap, signer).await {
return Ok(unwrapped);
};
};
// Decrypt the rumor
// TODO: verify the sender
let rumor = custom_signer
.nip44_decrypt(&seal.pubkey, &seal.content)
.await?;
// Construct the unsigned event
let rumor = UnsignedEvent::from_json(rumor)?;
// Return the unwrapped gift
return Ok(UnwrappedGift {
sender: rumor.pubkey,
rumor,
});
}
}
let signer = client.signer().await?;
let unwrapped = UnwrappedGift::from_gift_wrap(&signer, gift_wrap).await?;
// Try with the user's signer
let user_signer = client.signer().context("Signer not found")?;
let unwrapped = UnwrappedGift::from_gift_wrap(user_signer, gift_wrap).await?;
Ok(unwrapped)
}
/// Attempts to unwrap a gift wrap event with a given signer.
async fn try_unwrap_with(
gift_wrap: &Event,
signer: &Arc<dyn NostrSigner>,
) -> Result<UnwrappedGift, Error> {
// Get the sealed event
let seal = signer
.nip44_decrypt(&gift_wrap.pubkey, &gift_wrap.content)
.await?;
// Verify the sealed event
let seal: Event = Event::from_json(seal)?;
seal.verify_with_ctx(&SECP256K1)?;
// Get the rumor event
let rumor = signer.nip44_decrypt(&seal.pubkey, &seal.content).await?;
let rumor = UnsignedEvent::from_json(rumor)?;
Ok(UnwrappedGift {
sender: seal.pubkey,
rumor,
})
}
/// Stores an unwrapped event in local database with reference to original
async fn set_rumor(client: &Client, id: EventId, rumor: &UnsignedEvent) -> Result<(), Error> {
let rumor_id = rumor.id.context("Rumor is missing an event id")?;
@@ -695,33 +613,6 @@ impl ChatRegistry {
}
}
/// Get metadata for a list of public keys
async fn get_metadata<I>(client: &Client, public_keys: I) -> Result<(), Error>
where
I: IntoIterator<Item = PublicKey>,
{
let authors: Vec<PublicKey> = public_keys.into_iter().collect();
let opts = SubscribeAutoCloseOptions::default().exit_policy(ReqExitPolicy::ExitOnEOSE);
let kinds = vec![Kind::Metadata, Kind::ContactList];
// Return if the list is empty
if authors.is_empty() {
return Err(anyhow!("You need at least one public key".to_string(),));
}
let filter = Filter::new()
.limit(authors.len() * kinds.len())
.authors(authors)
.kinds(kinds);
// Subscribe to filters to the bootstrap relays
client
.subscribe_to(BOOTSTRAP_RELAYS, filter, Some(opts))
.await?;
Ok(())
}
/// Get the conversation ID for a given rumor (message).
fn conversation_id(rumor: &UnsignedEvent) -> u64 {
let mut hasher = DefaultHasher::new();

View File

@@ -1,19 +1,29 @@
use std::hash::Hash;
use common::EventUtils;
use nostr_sdk::prelude::*;
/// New message.
#[derive(Debug, Clone, PartialEq, Eq, PartialOrd, Ord)]
pub struct NewMessage {
pub room: u64,
pub gift_wrap: EventId,
pub rumor: UnsignedEvent,
}
impl NewMessage {
pub fn new(gift_wrap: EventId, rumor: UnsignedEvent) -> Self {
Self { gift_wrap, rumor }
let room = rumor.uniq_id();
Self {
room,
gift_wrap,
rumor,
}
}
}
/// Message.
#[derive(Debug, Clone, Hash, PartialEq, Eq)]
pub enum Message {
User(RenderedMessage),
@@ -22,11 +32,17 @@ pub enum Message {
}
impl Message {
pub fn user(user: impl Into<RenderedMessage>) -> Self {
pub fn user<I>(user: I) -> Self
where
I: Into<RenderedMessage>,
{
Self::User(user.into())
}
pub fn warning(content: impl Into<String>) -> Self {
pub fn warning<I>(content: I) -> Self
where
I: Into<String>,
{
Self::Warning(content.into(), Timestamp::now())
}
@@ -43,6 +59,18 @@ impl Message {
}
}
impl From<&NewMessage> for Message {
fn from(val: &NewMessage) -> Self {
Self::User(val.into())
}
}
impl From<&UnsignedEvent> for Message {
fn from(val: &UnsignedEvent) -> Self {
Self::User(val.into())
}
}
impl Ord for Message {
fn cmp(&self, other: &Self) -> std::cmp::Ordering {
match (self, other) {
@@ -63,6 +91,7 @@ impl PartialOrd for Message {
}
}
/// Rendered message.
#[derive(Debug, Clone)]
pub struct RenderedMessage {
pub id: EventId,
@@ -78,48 +107,53 @@ pub struct RenderedMessage {
pub replies_to: Vec<EventId>,
}
impl From<Event> for RenderedMessage {
fn from(inner: Event) -> Self {
let mentions = extract_mentions(&inner.content);
let replies_to = extract_reply_ids(&inner.tags);
impl From<&Event> for RenderedMessage {
fn from(val: &Event) -> Self {
let mentions = extract_mentions(&val.content);
let replies_to = extract_reply_ids(&val.tags);
Self {
id: inner.id,
author: inner.pubkey,
content: inner.content,
created_at: inner.created_at,
id: val.id,
author: val.pubkey,
content: val.content.clone(),
created_at: val.created_at,
mentions,
replies_to,
}
}
}
impl From<UnsignedEvent> for RenderedMessage {
fn from(inner: UnsignedEvent) -> Self {
let mentions = extract_mentions(&inner.content);
let replies_to = extract_reply_ids(&inner.tags);
impl From<&UnsignedEvent> for RenderedMessage {
fn from(val: &UnsignedEvent) -> Self {
let mentions = extract_mentions(&val.content);
let replies_to = extract_reply_ids(&val.tags);
Self {
// Event ID must be known
id: inner.id.unwrap(),
author: inner.pubkey,
content: inner.content,
created_at: inner.created_at,
id: val.id.unwrap(),
author: val.pubkey,
content: val.content.clone(),
created_at: val.created_at,
mentions,
replies_to,
}
}
}
impl From<Box<Event>> for RenderedMessage {
fn from(inner: Box<Event>) -> Self {
(*inner).into()
}
}
impl From<&NewMessage> for RenderedMessage {
fn from(val: &NewMessage) -> Self {
let mentions = extract_mentions(&val.rumor.content);
let replies_to = extract_reply_ids(&val.rumor.tags);
impl From<&Box<Event>> for RenderedMessage {
fn from(inner: &Box<Event>) -> Self {
inner.to_owned().into()
Self {
// Event ID must be known
id: val.rumor.id.unwrap(),
author: val.rumor.pubkey,
content: val.rumor.content.clone(),
created_at: val.rumor.created_at,
mentions,
replies_to,
}
}
}
@@ -149,6 +183,7 @@ impl Hash for RenderedMessage {
}
}
/// Extracts all mentions (public keys) from a content string.
fn extract_mentions(content: &str) -> Vec<PublicKey> {
let parser = NostrParser::new();
let tokens = parser.parse(content);
@@ -165,6 +200,7 @@ fn extract_mentions(content: &str) -> Vec<PublicKey> {
.collect::<Vec<_>>()
}
/// Extracts all reply (ids) from the event tags.
fn extract_reply_ids(inner: &Tags) -> Vec<EventId> {
let mut replies_to = vec![];

View File

@@ -1,105 +1,65 @@
use std::cmp::Ordering;
use std::collections::{HashMap, HashSet};
use std::hash::{Hash, Hasher};
use std::time::Duration;
use account::Account;
use anyhow::{anyhow, Error};
use common::{EventUtils, RenderedProfile};
use encryption::{Encryption, SignerKind};
use anyhow::{Context as AnyhowContext, Error};
use common::EventUtils;
use gpui::{App, AppContext, Context, EventEmitter, SharedString, Task};
use itertools::Itertools;
use nostr_sdk::prelude::*;
use person::PersonRegistry;
use state::NostrRegistry;
use person::{Person, PersonRegistry};
use settings::{RoomConfig, SignerKind};
use state::{NostrRegistry, TIMEOUT};
const SEND_RETRY: usize = 10;
#[derive(Debug, Clone, Copy, PartialEq, Eq, PartialOrd, Ord)]
pub struct SendOptions {
pub backup: bool,
pub signer_kind: SignerKind,
}
impl SendOptions {
pub fn new() -> Self {
Self {
backup: true,
signer_kind: SignerKind::default(),
}
}
pub fn backup(&self) -> bool {
self.backup
}
}
impl Default for SendOptions {
fn default() -> Self {
Self::new()
}
}
use crate::{ChatRegistry, NewMessage};
#[derive(Debug, Clone)]
pub struct SendReport {
pub receiver: PublicKey,
pub status: Option<Output<EventId>>,
pub gift_wrap_id: Option<EventId>,
pub error: Option<SharedString>,
pub on_hold: Option<Event>,
pub encryption: bool,
pub relays_not_found: bool,
pub device_not_found: bool,
pub output: Option<Output<EventId>>,
}
impl SendReport {
pub fn new(receiver: PublicKey) -> Self {
Self {
receiver,
status: None,
gift_wrap_id: None,
error: None,
on_hold: None,
encryption: false,
relays_not_found: false,
device_not_found: false,
output: None,
}
}
pub fn status(mut self, output: Output<EventId>) -> Self {
self.status = Some(output);
/// Set the gift wrap ID.
pub fn gift_wrap_id(mut self, gift_wrap_id: EventId) -> Self {
self.gift_wrap_id = Some(gift_wrap_id);
self
}
pub fn error(mut self, error: impl Into<SharedString>) -> Self {
/// Set the output.
pub fn output(mut self, output: Output<EventId>) -> Self {
self.output = Some(output);
self
}
/// Set the error message.
pub fn error<T>(mut self, error: T) -> Self
where
T: Into<SharedString>,
{
self.error = Some(error.into());
self
}
pub fn on_hold(mut self, event: Event) -> Self {
self.on_hold = Some(event);
self
/// Returns true if the send is pending.
pub fn pending(&self) -> bool {
self.output.is_none() && self.error.is_none()
}
pub fn encryption(mut self) -> Self {
self.encryption = true;
self
}
pub fn relays_not_found(mut self) -> Self {
self.relays_not_found = true;
self
}
pub fn device_not_found(mut self) -> Self {
self.device_not_found = true;
self
}
pub fn is_relay_error(&self) -> bool {
self.error.is_some() || self.relays_not_found
}
pub fn is_sent_success(&self) -> bool {
if let Some(output) = self.status.as_ref() {
/// Returns true if the send was successful.
pub fn success(&self) -> bool {
if let Some(output) = self.output.as_ref() {
!output.success.is_empty()
} else {
false
@@ -107,31 +67,42 @@ impl SendReport {
}
}
#[derive(Debug, Clone)]
pub enum RoomSignal {
NewMessage((EventId, UnsignedEvent)),
Refresh,
/// Room event.
#[derive(Debug, Clone, PartialEq, Eq, PartialOrd, Ord)]
pub enum RoomEvent {
/// Incoming message.
Incoming(NewMessage),
/// Reloads the current room's messages.
Reload,
}
/// Room kind.
#[derive(Clone, Copy, Hash, Debug, PartialEq, Eq, PartialOrd, Ord, Default)]
pub enum RoomKind {
Ongoing,
#[default]
Request,
Ongoing,
}
#[derive(Debug)]
#[derive(Debug, Clone)]
pub struct Room {
/// Conversation ID
pub id: u64,
/// The timestamp of the last message in the room
pub created_at: Timestamp,
/// Subject of the room
pub subject: Option<SharedString>,
/// All members of the room
pub members: Vec<PublicKey>,
pub(super) members: Vec<PublicKey>,
/// Kind
pub kind: RoomKind,
/// Configuration
config: RoomConfig,
}
impl Ord for Room {
@@ -160,17 +131,13 @@ impl Hash for Room {
impl Eq for Room {}
impl EventEmitter<RoomSignal> for Room {}
impl EventEmitter<RoomEvent> for Room {}
impl From<&UnsignedEvent> for Room {
fn from(val: &UnsignedEvent) -> Self {
let id = val.uniq_id();
let created_at = val.created_at;
// Get the members from the event's tags and event's pubkey
let members = val.all_pubkeys();
// Get subject from tags
let members = val.extract_public_keys();
let subject = val
.tags
.find(TagKind::Subject)
@@ -182,38 +149,50 @@ impl From<&UnsignedEvent> for Room {
subject,
members,
kind: RoomKind::default(),
config: RoomConfig::default(),
}
}
}
impl From<UnsignedEvent> for Room {
fn from(val: UnsignedEvent) -> Self {
Room::from(&val)
}
}
impl Room {
/// Constructs a new room with the given receiver and tags.
pub fn new(subject: Option<String>, author: PublicKey, receivers: Vec<PublicKey>) -> Self {
// Convert receiver's public keys into tags
let mut tags: Tags = Tags::from_list(
receivers
.iter()
.map(|pubkey| Tag::public_key(pubkey.to_owned()))
.collect(),
);
// Add subject if it is present
if let Some(subject) = subject {
tags.push(Tag::from_standardized_without_cell(TagStandard::Subject(
subject,
)));
}
pub fn new<T>(author: PublicKey, receivers: T) -> Self
where
T: IntoIterator<Item = PublicKey>,
{
// Map receiver public keys to tags
let tags = Tags::from_list(receivers.into_iter().map(Tag::public_key).collect());
// Construct an unsigned event for a direct message
//
// WARNING: never sign this event
let mut event = EventBuilder::new(Kind::PrivateDirectMessage, "")
.tags(tags)
.build(author);
// Generate event ID
// Ensure that the ID is set
event.ensure_id();
Room::from(&event)
}
/// Organizes the members of the room by moving the target member to the end.
///
/// Always call this function to ensure the current user is at the end of the list.
pub fn organize(mut self, target: &PublicKey) -> Self {
if let Some(index) = self.members.iter().position(|member| member == target) {
let member = self.members.remove(index);
self.members.push(member);
}
self
}
/// Sets the kind of the room and returns the modified room
pub fn kind(mut self, kind: RoomKind) -> Self {
self.kind = kind;
@@ -263,9 +242,9 @@ impl Room {
}
/// Gets the display image for the room
pub fn display_image(&self, proxy: bool, cx: &App) -> SharedString {
pub fn display_image(&self, cx: &App) -> SharedString {
if !self.is_group() {
self.display_member(cx).avatar(proxy)
self.display_member(cx).avatar()
} else {
SharedString::from("brand/group.png")
}
@@ -274,19 +253,9 @@ impl Room {
/// Get a member to represent the room
///
/// Display member is always different from the current user.
pub fn display_member(&self, cx: &App) -> Profile {
pub fn display_member(&self, cx: &App) -> Person {
let persons = PersonRegistry::global(cx);
let account = Account::global(cx);
let public_key = account.read(cx).public_key();
let target_member = self
.members
.iter()
.find(|&member| member != &public_key)
.or_else(|| self.members.first())
.expect("Room should have at least one member");
persons.read(cx).get_person(target_member, cx)
persons.read(cx).get(&self.members[0], cx)
}
/// Merge the names of the first two members of the room.
@@ -294,10 +263,10 @@ impl Room {
let persons = PersonRegistry::global(cx);
if self.is_group() {
let profiles: Vec<Profile> = self
let profiles: Vec<Person> = self
.members
.iter()
.map(|public_key| persons.read(cx).get_person(public_key, cx))
.map(|public_key| persons.read(cx).get(public_key, cx))
.collect();
let mut name = profiles
@@ -307,47 +276,77 @@ impl Room {
.collect::<Vec<_>>()
.join(", ");
if profiles.len() > 2 {
if profiles.len() > 3 {
name = format!("{}, +{}", name, profiles.len() - 2);
}
SharedString::from(name)
} else {
self.display_member(cx).display_name()
self.display_member(cx).name()
}
}
/// Emits a new message signal to the current room
pub fn emit_message(&self, id: EventId, event: UnsignedEvent, cx: &mut Context<Self>) {
cx.emit(RoomSignal::NewMessage((id, event)));
/// Push a new message to the current room
pub fn push_message(&mut self, message: NewMessage, cx: &mut Context<Self>) {
let created_at = message.rumor.created_at;
let new_message = created_at > self.created_at;
// Emit the incoming message event
cx.emit(RoomEvent::Incoming(message));
if new_message {
self.set_created_at(created_at, cx);
// Sort chats after emitting a new message
ChatRegistry::global(cx).update(cx, |this, cx| {
this.sort(cx);
});
}
}
/// Emits a signal to refresh the current room's messages.
/// Emits a signal to reload the current room's messages.
pub fn emit_refresh(&mut self, cx: &mut Context<Self>) {
cx.emit(RoomSignal::Refresh);
cx.emit(RoomEvent::Reload);
}
/// Get gossip relays for each member
pub fn connect(&self, cx: &App) -> Task<Result<(), Error>> {
pub fn early_connect(&self, cx: &App) -> Task<Result<(), Error>> {
let nostr = NostrRegistry::global(cx);
let client = nostr.read(cx).client();
let members = self.members();
let subscription_id = SubscriptionId::new(format!("room-{}", self.id));
cx.background_spawn(async move {
let signer = client.signer().await?;
let signer = client.signer().context("Signer not found")?;
let public_key = signer.get_public_key().await?;
let opts = SubscribeAutoCloseOptions::default().exit_policy(ReqExitPolicy::ExitOnEOSE);
for member in members.into_iter() {
if member == public_key {
continue;
};
// Construct a filter for gossip relays
let filter = Filter::new().kind(Kind::RelayList).author(member).limit(1);
// Construct a filter for messaging relays
let inbox = Filter::new()
.kind(Kind::InboxRelays)
.author(member)
.limit(1);
// Construct a filter for announcement
let announcement = Filter::new()
.kind(Kind::Custom(10044))
.author(member)
.limit(1);
// Subscribe to get member's gossip relays
client.subscribe(filter, Some(opts)).await?;
client
.subscribe(vec![inbox, announcement])
.with_id(subscription_id.clone())
.close_on(
SubscribeAutoCloseOptions::default()
.timeout(Some(Duration::from_secs(TIMEOUT)))
.exit_policy(ReqExitPolicy::ExitOnEOSE),
)
.await?;
}
Ok(())
@@ -378,31 +377,233 @@ impl Room {
})
}
/// Create a new message event (unsigned)
pub fn create_message(&self, content: &str, replies: &[EventId], cx: &App) -> UnsignedEvent {
// Construct a rumor event for direct message
pub fn rumor<S, I>(&self, content: S, replies: I, cx: &App) -> Option<UnsignedEvent>
where
S: Into<String>,
I: IntoIterator<Item = EventId>,
{
let kind = Kind::PrivateDirectMessage;
let content: String = content.into();
let replies: Vec<EventId> = replies.into_iter().collect();
let persons = PersonRegistry::global(cx);
let nostr = NostrRegistry::global(cx);
let gossip = nostr.read(cx).gossip();
let read_gossip = gossip.read_blocking();
// Get current user
let account = Account::global(cx);
let public_key = account.read(cx).public_key();
// Get current user's public key
let sender = nostr.read(cx).signer().public_key()?;
// Get room's subject
let subject = self.subject.clone();
// Get all members
let members: Vec<Person> = self
.members
.iter()
.filter(|public_key| public_key != &&sender)
.map(|member| persons.read(cx).get(member, cx))
.collect();
// Construct event's tags
let mut tags = vec![];
// Add receivers
//
// NOTE: current user will be removed from the list of receivers
// Add subject tag if present
if let Some(value) = self.subject.as_ref() {
tags.push(Tag::from_standardized_without_cell(TagStandard::Subject(
value.to_string(),
)));
}
// Add all reply tags
for id in replies.into_iter() {
tags.push(Tag::event(id))
}
// Add all receiver tags
for member in members.into_iter() {
// Skip current user
if member.public_key() == sender {
continue;
}
tags.push(Tag::from_standardized_without_cell(
TagStandard::PublicKey {
public_key: member.public_key(),
relay_url: member.messaging_relay_hint(),
alias: None,
uppercase: false,
},
));
}
// Construct a direct message rumor event
// WARNING: never sign and send this event to relays
let mut event = EventBuilder::new(kind, content).tags(tags).build(sender);
// Ensure that the ID is set
event.ensure_id();
Some(event)
}
/// Send rumor event to all members's messaging relays
pub fn send(&self, rumor: UnsignedEvent, cx: &App) -> Option<Task<Vec<SendReport>>> {
let persons = PersonRegistry::global(cx);
let nostr = NostrRegistry::global(cx);
let client = nostr.read(cx).client();
let signer = nostr.read(cx).signer();
// Get room's config
let config = self.config.clone();
// Get current user's public key
let sender = nostr.read(cx).signer().public_key()?;
// Get all members (excluding sender)
let members: Vec<Person> = self
.members
.iter()
.filter(|public_key| public_key != &&sender)
.map(|member| persons.read(cx).get(member, cx))
.collect();
Some(cx.background_spawn(async move {
let signer_kind = config.signer_kind();
let user_signer = signer.get().await;
let encryption_signer = signer.get_encryption_signer().await;
let mut reports = Vec::new();
for member in members {
let relays = member.messaging_relays();
let announcement = member.announcement();
// Skip if member has no messaging relays
if relays.is_empty() {
reports.push(SendReport::new(member.public_key()).error("No messaging relays"));
continue;
}
// Ensure relay connections
for url in relays.iter() {
client
.add_relay(url)
.and_connect()
.capabilities(RelayCapabilities::GOSSIP)
.await
.ok();
}
// When forced to use encryption signer, skip if receiver has no announcement
if signer_kind.encryption() && announcement.is_none() {
reports
.push(SendReport::new(member.public_key()).error("Encryption not found"));
continue;
}
// Determine receiver and signer based on signer kind
let (receiver, signer_to_use) = match signer_kind {
SignerKind::Auto => {
if let Some(announcement) = announcement {
if let Some(enc_signer) = encryption_signer.as_ref() {
(announcement.public_key(), enc_signer.clone())
} else {
(member.public_key(), user_signer.clone())
}
} else {
(member.public_key(), user_signer.clone())
}
}
SignerKind::Encryption => {
let Some(encryption_signer) = encryption_signer.as_ref() else {
reports.push(
SendReport::new(member.public_key()).error("Encryption not found"),
);
continue;
};
let Some(announcement) = announcement else {
reports.push(
SendReport::new(member.public_key())
.error("Announcement not found"),
);
continue;
};
(announcement.public_key(), encryption_signer.clone())
}
SignerKind::User => (member.public_key(), user_signer.clone()),
};
// Create and send gift-wrapped event
match EventBuilder::gift_wrap(&signer_to_use, &receiver, rumor.clone(), []).await {
Ok(event) => {
match client
.send_event(&event)
.to(relays)
.ack_policy(AckPolicy::none())
.await
{
Ok(output) => {
reports.push(
SendReport::new(member.public_key())
.gift_wrap_id(event.id)
.output(output),
);
}
Err(e) => {
reports.push(
SendReport::new(member.public_key()).error(e.to_string()),
);
}
}
}
Err(e) => {
reports.push(SendReport::new(member.public_key()).error(e.to_string()));
}
}
}
reports
}))
}
/*
* /// Create a new unsigned message event
pub fn create_message(
&self,
content: &str,
replies: Vec<EventId>,
cx: &App,
) -> Task<Result<UnsignedEvent, Error>> {
let nostr = NostrRegistry::global(cx);
let client = nostr.read(cx).client();
let subject = self.subject.clone();
let content = content.to_string();
let mut member_and_relay_hints = HashMap::new();
// Populate the hashmap with member and relay hint tasks
for member in self.members.iter() {
let hint = nostr.read(cx).relay_hint(member, cx);
member_and_relay_hints.insert(member.to_owned(), hint);
}
cx.background_spawn(async move {
let signer = client.signer().context("Signer not found")?;
let public_key = signer.get_public_key().await?;
// List of event tags for each receiver
let mut tags = vec![];
for (member, task) in member_and_relay_hints.into_iter() {
// Skip current user
if member == public_key {
continue;
}
// Get relay hint if available
let relay_url = read_gossip.messaging_relays(member).first().cloned();
let relay_url = task.await;
// Construct a public key tag with relay hint
let tag = TagStandard::PublicKey {
public_key: member.to_owned(),
public_key: member,
relay_url,
alias: None,
uppercase: false,
@@ -411,25 +612,16 @@ impl Room {
tags.push(Tag::from_standardized_without_cell(tag));
}
// Add subject tag if it's present
// Add subject tag if present
if let Some(value) = subject {
tags.push(Tag::from_standardized_without_cell(TagStandard::Subject(
value.to_string(),
)));
}
// Add reply/quote tag
if replies.len() == 1 {
tags.push(Tag::event(replies[0]))
} else {
// Add all reply tags
for id in replies {
let tag = TagStandard::Quote {
event_id: id.to_owned(),
relay_url: None,
public_key: None,
};
tags.push(Tag::from_standardized_without_cell(tag))
}
tags.push(Tag::event(id))
}
// Construct a direct message event
@@ -439,108 +631,57 @@ impl Room {
.tags(tags)
.build(public_key);
// Ensure the event id has been generated
// Ensure the event ID has been generated
event.ensure_id();
event
Ok(event)
})
}
/// Create a task to send a message to all room members
pub fn send_message(
&self,
rumor: &UnsignedEvent,
opts: &SendOptions,
cx: &App,
) -> Task<Result<Vec<SendReport>, Error>> {
let encryption = Encryption::global(cx);
let encryption_key = encryption.read(cx).encryption_key(cx);
let nostr = NostrRegistry::global(cx);
let client = nostr.read(cx).client();
let gossip = nostr.read(cx).gossip();
let tracker = nostr.read(cx).tracker();
let rumor = rumor.to_owned();
let opts = opts.to_owned();
// Get all members
let mut members = self.members();
let rumor = rumor.to_owned();
cx.background_spawn(async move {
let signer_kind = opts.signer_kind;
let gossip = gossip.read().await;
// Get current user's signer and public key
let user_signer = client.signer().await?;
let user_pubkey = user_signer.get_public_key().await?;
// Get the encryption public key
let encryption_pubkey = if let Some(signer) = encryption_key.as_ref() {
signer.get_public_key().await.ok()
} else {
None
};
let signer = client.signer().context("Signer not found")?;
let current_user = signer.get_public_key().await?;
// Remove the current user's public key from the list of receivers
// the current user will be handled separately
members.retain(|&pk| pk != user_pubkey);
// Determine the signer will be used based on the provided options
let signer = Self::select_signer(&opts.signer_kind, user_signer, encryption_key)?;
members.retain(|this| this != &current_user);
// Collect the send reports
let mut reports: Vec<SendReport> = vec![];
for member in members.into_iter() {
// Get user's messaging relays
let urls = gossip.messaging_relays(&member);
// Get user's encryption public key if available
let encryption = gossip.announcement(&member).map(|a| a.public_key());
// Check if there are any relays to send the message to
if urls.is_empty() {
reports.push(SendReport::new(member).relays_not_found());
continue;
}
// Skip sending if using encryption signer but receiver's encryption keys not found
if encryption.is_none() && matches!(signer_kind, SignerKind::Encryption) {
reports.push(SendReport::new(member).device_not_found());
continue;
}
// Ensure connections to the relays
gossip.ensure_connections(&client, &urls).await;
// Determine the receiver based on the signer kind
let receiver = Self::select_receiver(&signer_kind, member, encryption)?;
for receiver in members.into_iter() {
// Construct the gift wrap event
let event = EventBuilder::gift_wrap(
&signer,
&receiver,
rumor.clone(),
vec![Tag::public_key(member)],
)
.await?;
let event =
EventBuilder::gift_wrap(signer, &receiver, rumor.clone(), vec![]).await?;
// Send the gift wrap event to the messaging relays
match client.send_event_to(urls, &event).await {
match client.send_event(&event).to_nip17().await {
Ok(output) => {
let id = output.id().to_owned();
let auth = output.failed.iter().any(|(_, s)| s.starts_with("auth-"));
let report = SendReport::new(receiver).status(output);
let tracker = tracker().read().await;
if auth {
// Wait for authenticated and resent event successfully
for attempt in 0..=SEND_RETRY {
let tracker = tracker.read().await;
let ids = tracker.resent_ids();
// Check if event was successfully resent
if let Some(output) = ids.iter().find(|e| e.id() == &id).cloned() {
let output = SendReport::new(receiver).status(output);
reports.push(output);
if tracker.is_sent_by_coop(&id) {
let output = Output::new(id);
let report = SendReport::new(receiver).status(output);
reports.push(report);
break;
}
@@ -562,55 +703,23 @@ impl Room {
}
}
// Return early if the user disabled backup.
//
// Coop will not send a gift wrap event to the current user.
if !opts.backup() {
return Ok(reports);
}
// Skip sending if using encryption signer but receiver's encryption keys not found
if encryption_pubkey.is_none() && matches!(signer_kind, SignerKind::Encryption) {
reports.push(SendReport::new(user_pubkey).device_not_found());
return Ok(reports);
}
// Determine the receiver based on the signer kind
let receiver = Self::select_receiver(&signer_kind, user_pubkey, encryption_pubkey)?;
// Construct the gift-wrapped event
let event = EventBuilder::gift_wrap(
&signer,
&receiver,
rumor.clone(),
vec![Tag::public_key(user_pubkey)],
)
.await?;
let event =
EventBuilder::gift_wrap(signer, &current_user, rumor.clone(), vec![]).await?;
// Only send a backup message to current user if sent successfully to others
if reports.iter().all(|r| r.is_sent_success()) {
let urls = gossip.messaging_relays(&user_pubkey);
// Check if there are any relays to send the event to
if urls.is_empty() {
reports.push(SendReport::new(user_pubkey).relays_not_found());
return Ok(reports);
}
// Ensure connections to the relays
gossip.ensure_connections(&client, &urls).await;
// Send the event to the messaging relays
match client.send_event_to(urls, &event).await {
match client.send_event(&event).to_nip17().await {
Ok(output) => {
reports.push(SendReport::new(user_pubkey).status(output));
reports.push(SendReport::new(current_user).status(output));
}
Err(e) => {
reports.push(SendReport::new(user_pubkey).error(e.to_string()));
reports.push(SendReport::new(current_user).error(e.to_string()));
}
}
} else {
reports.push(SendReport::new(user_pubkey).on_hold(event));
reports.push(SendReport::new(current_user).on_hold(event));
}
Ok(reports)
@@ -625,10 +734,8 @@ impl Room {
) -> Task<Result<Vec<SendReport>, Error>> {
let nostr = NostrRegistry::global(cx);
let client = nostr.read(cx).client();
let gossip = nostr.read(cx).gossip();
cx.background_spawn(async move {
let gossip = gossip.read().await;
let mut resend_reports = vec![];
for report in reports.into_iter() {
@@ -641,7 +748,7 @@ impl Room {
if let Some(event) = client.database().event_by_id(id).await? {
for url in urls.into_iter() {
let relay = client.pool().relay(url).await?;
let relay = client.relay(url).await?.context("Relay not found")?;
let id = relay.send_event(&event).await?;
let resent: Output<EventId> = Output {
@@ -657,17 +764,8 @@ impl Room {
// Process the on hold event if it exists
if let Some(event) = report.on_hold {
let urls = gossip.messaging_relays(&receiver);
// Check if there are any relays to send the event to
if urls.is_empty() {
resend_reports.push(SendReport::new(receiver).relays_not_found());
} else {
// Ensure connections to the relays
gossip.ensure_connections(&client, &urls).await;
// Send the event to the messaging relays
match client.send_event_to(urls, &event).await {
match client.send_event(&event).await {
Ok(output) => {
resend_reports.push(SendReport::new(receiver).status(output));
}
@@ -677,36 +775,9 @@ impl Room {
}
}
}
}
Ok(resend_reports)
})
}
fn select_signer<T>(kind: &SignerKind, user: T, encryption: Option<T>) -> Result<T, Error>
where
T: NostrSigner,
{
match kind {
SignerKind::Encryption => {
Ok(encryption.ok_or_else(|| anyhow!("No encryption key found"))?)
}
SignerKind::User => Ok(user),
SignerKind::Auto => Ok(encryption.unwrap_or(user)),
}
}
fn select_receiver(
kind: &SignerKind,
member: PublicKey,
encryption: Option<PublicKey>,
) -> Result<PublicKey, Error> {
match kind {
SignerKind::Encryption => {
Ok(encryption.ok_or_else(|| anyhow!("Receiver's encryption key not found"))?)
}
SignerKind::User => Ok(member),
SignerKind::Auto => Ok(encryption.unwrap_or(member)),
}
}
*/
}

View File

@@ -7,10 +7,9 @@ publish.workspace = true
[dependencies]
state = { path = "../state" }
ui = { path = "../ui" }
dock = { path = "../dock" }
theme = { path = "../theme" }
common = { path = "../common" }
account = { path = "../account" }
encryption = { path = "../encryption" }
person = { path = "../person" }
chat = { path = "../chat" }
settings = { path = "../settings" }
@@ -23,11 +22,10 @@ anyhow.workspace = true
itertools.workspace = true
smallvec.workspace = true
smol.workspace = true
flume.workspace = true
log.workspace = true
serde.workspace = true
serde_json.workspace = true
indexset = "0.12.3"
emojis = "0.6.4"
once_cell = "1.19.0"
regex = "1"

View File

@@ -1,15 +1,17 @@
use encryption::SignerKind;
use gpui::Action;
use nostr_sdk::prelude::*;
use serde::Deserialize;
#[derive(Action, Clone, PartialEq, Eq, Deserialize)]
#[action(namespace = chat, no_json)]
pub struct SeenOn(pub EventId);
pub enum Command {
Insert(&'static str),
ChangeSubject(&'static str),
}
#[derive(Action, Clone, PartialEq, Eq, Deserialize)]
#[action(namespace = chat, no_json)]
pub struct SetSigner(pub SignerKind);
pub struct SeenOn(pub EventId);
/// Define a open public key action
#[derive(Action, Clone, PartialEq, Eq, Deserialize, Debug)]

View File

@@ -1,139 +0,0 @@
use std::sync::OnceLock;
use gpui::prelude::FluentBuilder;
use gpui::{
div, px, App, AppContext, Corner, Element, InteractiveElement, IntoElement, ParentElement,
RenderOnce, SharedString, StatefulInteractiveElement, Styled, WeakEntity, Window,
};
use theme::ActiveTheme;
use ui::button::{Button, ButtonVariants};
use ui::input::InputState;
use ui::popover::{Popover, PopoverContent};
use ui::{Icon, Sizable, Size};
static EMOJIS: OnceLock<Vec<SharedString>> = OnceLock::new();
fn get_emojis() -> &'static Vec<SharedString> {
EMOJIS.get_or_init(|| {
let mut emojis: Vec<SharedString> = vec![];
emojis.extend(
emojis::Group::SmileysAndEmotion
.emojis()
.map(|e| SharedString::from(e.as_str()))
.collect::<Vec<SharedString>>(),
);
emojis
})
}
#[derive(IntoElement)]
pub struct EmojiPicker {
target: Option<WeakEntity<InputState>>,
icon: Option<Icon>,
anchor: Option<Corner>,
size: Size,
}
impl EmojiPicker {
pub fn new() -> Self {
Self {
size: Size::default(),
target: None,
anchor: None,
icon: None,
}
}
pub fn target(mut self, target: WeakEntity<InputState>) -> Self {
self.target = Some(target);
self
}
pub fn icon(mut self, icon: impl Into<Icon>) -> Self {
self.icon = Some(icon.into());
self
}
#[allow(dead_code)]
pub fn anchor(mut self, corner: Corner) -> Self {
self.anchor = Some(corner);
self
}
}
impl Sizable for EmojiPicker {
fn with_size(mut self, size: impl Into<Size>) -> Self {
self.size = size.into();
self
}
}
impl RenderOnce for EmojiPicker {
fn render(self, _window: &mut Window, _cx: &mut App) -> impl IntoElement {
Popover::new("emojis")
.map(|this| {
if let Some(corner) = self.anchor {
this.anchor(corner)
} else {
this.anchor(gpui::Corner::BottomLeft)
}
})
.trigger(
Button::new("emojis-trigger")
.when_some(self.icon, |this, icon| this.icon(icon))
.ghost()
.with_size(self.size),
)
.content(move |window, cx| {
let input = self.target.clone();
cx.new(|cx| {
PopoverContent::new(window, cx, move |_window, cx| {
div()
.flex()
.flex_wrap()
.items_center()
.gap_2()
.children(get_emojis().iter().map(|e| {
div()
.id(e.clone())
.flex_auto()
.size_10()
.flex()
.items_center()
.justify_center()
.rounded(cx.theme().radius)
.child(e.clone())
.hover(|this| this.bg(cx.theme().ghost_element_hover))
.on_click({
let item = e.clone();
let input = input.clone();
move |_, window, cx| {
if let Some(input) = input.as_ref() {
_ = input.update(cx, |this, cx| {
let value = this.value();
let new_text = if value.is_empty() {
format!("{item}")
} else if value.ends_with(" ") {
format!("{value}{item}")
} else {
format!("{value} {item}")
};
this.set_value(new_text, window, cx);
});
}
}
})
}))
.into_any()
})
.scrollable()
.max_h(px(300.))
.max_w(px(300.))
})
})
}
}

File diff suppressed because it is too large Load Diff

View File

@@ -1,7 +1,6 @@
use std::ops::Range;
use std::sync::Arc;
use common::RenderedProfile;
use gpui::{
AnyElement, App, ElementId, HighlightStyle, InteractiveText, IntoElement, SharedString,
StyledText, UnderlineStyle, Window,
@@ -254,8 +253,8 @@ fn render_pubkey(
cx: &App,
) {
let persons = PersonRegistry::global(cx);
let profile = persons.read(cx).get_person(&public_key, cx);
let display_name = format!("@{}", profile.display_name());
let profile = persons.read(cx).get(&public_key, cx);
let display_name = format!("@{}", profile.name());
text.replace_range(range.clone(), &display_name);

View File

@@ -6,6 +6,7 @@ publish.workspace = true
[dependencies]
gpui.workspace = true
nostr.workspace = true
nostr-sdk.workspace = true
anyhow.workspace = true
@@ -19,5 +20,3 @@ log.workspace = true
dirs = "5.0"
qrcode = "0.14.1"
whoami = "1.6.1"
nostr = { git = "https://github.com/rust-nostr/nostr" }

View File

@@ -1,39 +0,0 @@
pub const CLIENT_NAME: &str = "Coop";
pub const APP_ID: &str = "su.reya.coop";
/// Bootstrap Relays.
pub const BOOTSTRAP_RELAYS: [&str; 5] = [
"wss://relay.damus.io",
"wss://relay.primal.net",
"wss://relay.nos.social",
"wss://user.kindpag.es",
"wss://purplepag.es",
];
/// Search Relays.
pub const SEARCH_RELAYS: [&str; 3] = [
"wss://relay.nostr.band",
"wss://search.nos.today",
"wss://relay.noswhere.com",
];
/// Default relay for Nostr Connect
pub const NOSTR_CONNECT_RELAY: &str = "wss://relay.nsec.app";
/// Default retry count for fetching NIP-17 relays
pub const RELAY_RETRY: u64 = 2;
/// Default retry count for sending messages
pub const SEND_RETRY: u64 = 10;
/// Default timeout (in seconds) for Nostr Connect
pub const NOSTR_CONNECT_TIMEOUT: u64 = 200;
/// Default timeout (in seconds) for Nostr Connect (Bunker)
pub const BUNKER_TIMEOUT: u64 = 30;
/// Total metadata requests will be grouped.
pub const METADATA_BATCH_LIMIT: usize = 20;
/// Default width of the sidebar.
pub const DEFAULT_SIDEBAR_WIDTH: f32 = 240.;

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