Implements the canonical implementation directory layout adopted by
DEC-022 (register v0.9.5). Closes the scaffolding phase; no PoC code
has been promoted in yet (per proof-of-concept-plan.md §4 a PoC is
not product code unless explicitly promoted).
Rust workspace
==============
Top-level Cargo.toml declares seven workspace members:
core/chanora_core top-level Rust API + orchestration
crates/chanora_protocol tsclientlib isolation (SAD-067, SysDes-011/029)
crates/chanora_state state sync, reducers, deltas
crates/chanora_audio capture, DSP, Opus, jitter, mixer, playback
crates/chanora_storage non-secret DB + platform secure store
crates/chanora_diagnostics logs, redaction, export
crates/chanora_bridge typed Flutter/Rust DTOs
Workspace-wide pins:
license = "MIT OR Apache-2.0" (DEC-020)
rust-version = "1.95"
edition = "2021"
The Flutter app (apps/chanora_flutter) is NOT a Cargo workspace
member; it is owned by the Flutter / Gradle toolchain and is in the
workspace exclude array along with every poc/* spike.
Each crate ships:
* a Cargo.toml referring to workspace.dependencies pins;
* a lib.rs with #![forbid(unsafe_code)] + #![warn(missing_docs)],
a typed Error enum, and the public types relevant to the
subsystem's role per SAD §7.2;
* minimal unit tests so
running 1 test
test tests::defaults_match_decisions ... ok
test result: ok. 1 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
running 1 test
test tests::it_compiles ... ok
test result: ok. 1 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
running 1 test
test tests::session_can_be_constructed ... ok
test result: ok. 1 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
running 1 test
test tests::marker_matches_poc ... ok
test result: ok. 1 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
running 1 test
test tests::it_compiles ... ok
test result: ok. 1 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
running 1 test
test tests::state_transitions_compile ... ok
test result: ok. 1 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
running 1 test
test tests::it_compiles ... ok
test result: ok. 1 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
running 0 tests
test result: ok. 0 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
running 0 tests
test result: ok. 0 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
running 0 tests
test result: ok. 0 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
running 0 tests
test result: ok. 0 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
running 0 tests
test result: ok. 0 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
running 0 tests
test result: ok. 0 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s
running 0 tests
test result: ok. 0 passed; 0 failed; 0 ignored; 0 measured; 0 filtered out; finished in 0.00s is non-empty.
chanora_core's CoreError type-wraps every subsystem error via
#[from] so callers can match on origin without parsing strings.
chanora_audio's AudioEffects struct defaults all four effects to
true, matching DEC-007 (AEC), DEC-008 (AGC), DEC-009 (NS),
DEC-010 (HPF). A unit test pins this so a future regression that
flips a default fails immediately.
chanora_diagnostics exports REDACTION_MARKER = "[REDACTED]",
identical to the PoC's marker so audit grep patterns survive the
promotion.
chanora_bridge's BridgeError is Serialize + Deserialize so it can
flow across the FRB 2.x boundary (DEC-014).
Empirical verification: cargo check --workspace clean, cargo test
--workspace clean (7 unit tests + 7 doc-test runners, all passing)
against Rust 1.95.0 stable.
Flutter app
===========
apps/chanora_flutter created with .
DEC-004 applied: minSdk overridden to 28 in
android/app/build.gradle.kts with a comment that points back at the
decision register and forbids lowering it without re-opening DEC-004.
DEC-015 applied: shipped English + Simplified Chinese at MVP.
- pubspec.yaml gains flutter_localizations + intl + generate:true.
- l10n.yaml emits lib/l10n/generated/AppL10n (no synthetic package
— that was removed in Flutter 3.41+).
- lib/l10n/app_en.arb is the source of truth; lib/l10n/app_zh.arb
mirrors the key set in zh-Hans. ARB metadata explicitly
reaffirms ADR-008: server-provided content (channel names,
nicknames, welcome banners) is preserved verbatim and never
translated.
lib/main.dart and test/widget_test.dart were rewritten from the
template counter into a minimal localized scaffold that proves
both locales render correctly.
Empirical verification: reports no issues;
runs the two locale smoke tests and both pass.
149 lines
5.3 KiB
C++
149 lines
5.3 KiB
C++
#include "my_application.h"
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#include <flutter_linux/flutter_linux.h>
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#ifdef GDK_WINDOWING_X11
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#include <gdk/gdkx.h>
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#endif
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#include "flutter/generated_plugin_registrant.h"
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struct _MyApplication {
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GtkApplication parent_instance;
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char** dart_entrypoint_arguments;
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};
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G_DEFINE_TYPE(MyApplication, my_application, GTK_TYPE_APPLICATION)
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// Called when first Flutter frame received.
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static void first_frame_cb(MyApplication* self, FlView* view) {
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gtk_widget_show(gtk_widget_get_toplevel(GTK_WIDGET(view)));
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}
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// Implements GApplication::activate.
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static void my_application_activate(GApplication* application) {
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MyApplication* self = MY_APPLICATION(application);
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GtkWindow* window =
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GTK_WINDOW(gtk_application_window_new(GTK_APPLICATION(application)));
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// Use a header bar when running in GNOME as this is the common style used
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// by applications and is the setup most users will be using (e.g. Ubuntu
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// desktop).
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// If running on X and not using GNOME then just use a traditional title bar
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// in case the window manager does more exotic layout, e.g. tiling.
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// If running on Wayland assume the header bar will work (may need changing
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// if future cases occur).
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gboolean use_header_bar = TRUE;
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#ifdef GDK_WINDOWING_X11
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GdkScreen* screen = gtk_window_get_screen(window);
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if (GDK_IS_X11_SCREEN(screen)) {
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const gchar* wm_name = gdk_x11_screen_get_window_manager_name(screen);
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if (g_strcmp0(wm_name, "GNOME Shell") != 0) {
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use_header_bar = FALSE;
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}
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}
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#endif
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if (use_header_bar) {
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GtkHeaderBar* header_bar = GTK_HEADER_BAR(gtk_header_bar_new());
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gtk_widget_show(GTK_WIDGET(header_bar));
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gtk_header_bar_set_title(header_bar, "chanora_flutter");
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gtk_header_bar_set_show_close_button(header_bar, TRUE);
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gtk_window_set_titlebar(window, GTK_WIDGET(header_bar));
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} else {
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gtk_window_set_title(window, "chanora_flutter");
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}
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gtk_window_set_default_size(window, 1280, 720);
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g_autoptr(FlDartProject) project = fl_dart_project_new();
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fl_dart_project_set_dart_entrypoint_arguments(
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project, self->dart_entrypoint_arguments);
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FlView* view = fl_view_new(project);
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GdkRGBA background_color;
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// Background defaults to black, override it here if necessary, e.g. #00000000
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// for transparent.
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gdk_rgba_parse(&background_color, "#000000");
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fl_view_set_background_color(view, &background_color);
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gtk_widget_show(GTK_WIDGET(view));
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gtk_container_add(GTK_CONTAINER(window), GTK_WIDGET(view));
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// Show the window when Flutter renders.
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// Requires the view to be realized so we can start rendering.
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g_signal_connect_swapped(view, "first-frame", G_CALLBACK(first_frame_cb),
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self);
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gtk_widget_realize(GTK_WIDGET(view));
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fl_register_plugins(FL_PLUGIN_REGISTRY(view));
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gtk_widget_grab_focus(GTK_WIDGET(view));
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}
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// Implements GApplication::local_command_line.
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static gboolean my_application_local_command_line(GApplication* application,
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gchar*** arguments,
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int* exit_status) {
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MyApplication* self = MY_APPLICATION(application);
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// Strip out the first argument as it is the binary name.
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self->dart_entrypoint_arguments = g_strdupv(*arguments + 1);
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g_autoptr(GError) error = nullptr;
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if (!g_application_register(application, nullptr, &error)) {
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g_warning("Failed to register: %s", error->message);
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*exit_status = 1;
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return TRUE;
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}
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g_application_activate(application);
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*exit_status = 0;
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return TRUE;
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}
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// Implements GApplication::startup.
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static void my_application_startup(GApplication* application) {
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// MyApplication* self = MY_APPLICATION(object);
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// Perform any actions required at application startup.
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G_APPLICATION_CLASS(my_application_parent_class)->startup(application);
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}
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// Implements GApplication::shutdown.
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static void my_application_shutdown(GApplication* application) {
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// MyApplication* self = MY_APPLICATION(object);
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// Perform any actions required at application shutdown.
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G_APPLICATION_CLASS(my_application_parent_class)->shutdown(application);
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}
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// Implements GObject::dispose.
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static void my_application_dispose(GObject* object) {
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MyApplication* self = MY_APPLICATION(object);
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g_clear_pointer(&self->dart_entrypoint_arguments, g_strfreev);
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G_OBJECT_CLASS(my_application_parent_class)->dispose(object);
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}
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static void my_application_class_init(MyApplicationClass* klass) {
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G_APPLICATION_CLASS(klass)->activate = my_application_activate;
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G_APPLICATION_CLASS(klass)->local_command_line =
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my_application_local_command_line;
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G_APPLICATION_CLASS(klass)->startup = my_application_startup;
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G_APPLICATION_CLASS(klass)->shutdown = my_application_shutdown;
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G_OBJECT_CLASS(klass)->dispose = my_application_dispose;
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}
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static void my_application_init(MyApplication* self) {}
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MyApplication* my_application_new() {
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// Set the program name to the application ID, which helps various systems
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// like GTK and desktop environments map this running application to its
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// corresponding .desktop file. This ensures better integration by allowing
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// the application to be recognized beyond its binary name.
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g_set_prgname(APPLICATION_ID);
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return MY_APPLICATION(g_object_new(my_application_get_type(),
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"application-id", APPLICATION_ID, "flags",
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G_APPLICATION_NON_UNIQUE, nullptr));
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}
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