Files
oak-editor/crates/oakengine.bk/Cargo.toml
T
Mike-Solar cf459d7e4c feat(app): multicam panel with live angle grid, switching, timeline enable
- New MulticamPanel: rows/cols angle grid with the current angle
  highlighted, click-to-switch, 1-9 switch-and-split and cmd-1-9
  switch-only shortcuts (focused-panel routed), deferred switch queue
  during playback.
- src/oakui/multicam.rs: clip->connected-sequence resolution, multicam
  state detection (selection then playhead fallbacks), per-angle frame
  requests rendered through the process backend into an LRU cache.
- Timeline clip context menu Multi-Cam checkable item wired to
  oaktimeline::multicam enable/disable with undo.
- Engine trait extended (real + mock); mock drives the real command
  path with synthesized angle frames.
2026-08-18 21:40:00 +08:00

71 lines
3.1 KiB
TOML

[package]
name = "oakengine"
version = "0.1.0"
edition = "2021"
description = "Oak Video Editor plugin/external-C-ABI layer: the frozen oakengine_* C ABI as a pure cdylib over the module crates' direct Rust APIs"
license = "GPL-3.0-or-later"
# Pure cdylib (M14 R4): the only consumers are OFX plugins and external
# C-ABI embedders. No Rust crate depends on this crate, so no rlib/staticlib
# artifact is produced and it stays out of the workspace default-members.
[lib]
crate-type = ["cdylib"]
[dependencies]
# Error derive (Display + std::error::Error) for the crate error enum
# (src/error.rs). Same major version the other modules use (oakotio, ...).
thiserror = "2"
# Worker/IPC wire protocol (src/worker.rs, src/ipc.rs): serde for the
# NDJSON control-plane messages and serde_json for the wire encoding.
serde = { version = "1", features = ["derive"] }
serde_json = "1"
# POSIX shm_open/ftruncate/mmap/munmap/shm_unlink for the shared-memory
# frame-slot transport (src/ipc.rs).
libc = "0.2"
# Single-lib unification: every module call is a compile-time Rust call
# into the module crate's direct API (no module C ABI). The engine keeps
# the frozen oakengine_* C ABI upward; downward it rewires through
# src/stubs.rs (direct Rust shims for oakcommon/oakcodec/oakrender/
# oakaudio/oakplugin, and clearly marked STUBs for the handle-based
# oaknode/oaktimeline paths).
#
# The `oakcore_audioparams_*` accessors the audio paths read through are
# implemented inside the dylib too (src/stubs.rs, module `audio`, M12 P5):
# they used to be C++ liboakcore host-provided symbols left as runtime
# lookups, which blocked Windows DLL linking.
#
# src/linkage.rs anchors every crate (and oakcore-rs) so the linker pulls
# their object files into the cdylib.
oakcore-rs = { path = "../oakcore" }
oakundo = { path = "../oakundo" }
oakcommon = { path = "../oakcommon" }
oaktimeline = { path = "../oaktimeline" }
oakcodec = { path = "../oakcodec" }
oakrender = { path = "../oakrender" }
oaktask = { path = "../oaktask" }
oaknode = { path = "../oaknode" }
oakaudio = { path = "../oakaudio" }
oakplugin = { path = "../oakplugin" }
# Live write-through to the project library (plan M13 D2): the facade's
# storage session manager (src/storage.rs) drives the oakstorage database
# backend (DatabaseBackend::save/snapshot) straight from the undo path.
oakstorage = { path = "../oakstorage" }
[dev-dependencies]
parking_lot = "0.12"
# The facade is cdylib-only, so the former tests/*.rs integration tests
# now run as unit tests inside the crate (src/test_support/, pulled in
# from src/lib.rs); the module crates are reachable through the normal
# [dependencies] above. oakcommon stays here for the direct dev-only
# imports in the test support files.
oakcommon = { path = "../oakcommon" }
# The write-through tests (src/test_support/it_storage.rs) inspect the
# journal/snapshot rows of the temp libraries directly; sea-orm + tokio
# unify with oakstorage's own versions (same features), so the entities
# and the current-thread runtime pattern match the oakstorage tests.
sea-orm = { version = "2", features = ["sqlx-postgres", "sqlx-sqlite", "runtime-tokio"] }
tokio = { version = "1", features = ["rt", "macros"] }