# 5 轴数控系统 Web 仿真编写过程接续文档 生成时间:2026-06-20 CST ## 1. 当前结论 已确定: - Web 前端界面可实现; - 首选界面风格为 `gmoccapy_5_axis.png`; - 前端不使用 React/Vue 等框架,采用原生 HTML/CSS + TypeScript/JavaScript ES modules; - 3D 使用 Three.js; - LinuxCNC Python GUI 只做界面参考; - LinuxCNC C/C++/WASM/source-derived boundary 才能作为 CNC 语义和五轴运动学依据。 当前准备文档已完成: ```text README.md docs/implementation-plan.md docs/technical-roadmap.md docs/program-implementation-guide.md docs/development-continuation.md docs/traceability-matrix.md docs/linuxcnc-python-gui-reference.md docs/linuxcnc-gui-reference-gallery.md ``` ## 2. 下一轮直接开工任务 下一轮不再继续扩展方案,直接进入实现。 第一批任务: ```text M1-web-shell-gmoccapy ``` 状态: ```text completed_with_build_gate ``` 目标: - 创建 `app/`; - 创建原生 HTML/CSS/TS 项目; - 实现 gmoccapy 风格静态 shell; - 复制必要的参考图路径到 docs; - 加 browser smoke 验证页面区域存在。 已补齐 M1 工程化验收: - `app/tsconfig.json` 已创建; - `npm run build` 已可输出静态产物; - build 产物目录 `app/dist/` 已加入 `.gitignore`; - browser smoke 已检查无 React/Vue/Angular/Svelte 依赖和 DOM 标记。 ## 3. M1 任务拆分 ### M1.1 初始化 app 创建: ```text app/index.html app/package.json app/tsconfig.json app/src/main.ts app/src/styles/gmoccapy.css ``` 要求: - 不安装 React/Vue; - 可使用 Vite; - `npm run dev` 能启动; - `npm run build` 能输出静态产物。 ### M1.2 静态 shell 创建: ```text app/src/ui/gmoccapy-shell.ts ``` 渲染区域: ```text titlebar preview dro gcode status-sidebar info-tabs override spindle-coolant bottom-controls ``` ### M1.3 CSS layout 目标: - 视觉接近 `gmoccapy_5_axis.png`; - 黑底 preview; - 绿色 DRO; - 灰色面板; - 橙色 override; - 右侧竖向大按钮; - 底部大按钮栏。 ### M1.4 smoke 创建: ```text tests/browser/gmoccapy_shell_smoke.html tests/browser/verify_gmoccapy_shell_browser.sh ``` 检查: - 页面加载; - 关键 `data-region` 存在; - DRO 文本非空; - G-code rows 存在; - preview 容器非空; - 无 React/Vue 依赖标记。 当前 gate: ```text gmoccapy_static_build=ok gmoccapy_shell_smoke=ok ``` ## 4. M2 任务 ```text M2-state-and-controls ``` 状态: ```text completed_with_rtcp_frame_and_control_wiring ``` 目标: - 实现 store; - 实现 Run/Stop/Pause/Step action; - G-code active line; - DRO state update; - Node smoke。 本轮追加 RTCP 最小可验证链路: - 新增 `xyzac-trt` profile source reference; - 新增 `web-rtcp-5axis-motion-frame`; - store 输出 `axisPose`、`jointPose`、`tcpPose`、`toolAxisVector`、`rtcpFrame`; - 右侧 TCP/IDENTITY 按钮可切换 `rtcpState=on/off`; - DRO 和 info tabs 显示 TCP pose、tool axis vector、RTCP frame readiness; - browser smoke 验证 RTCP DOM 和状态同步; - node smoke 验证 frame/store 行为。 本轮继续补齐 M2 控件接线: - preview X/Y/Z/Fit/Clear 按钮接入 store; - Rapid Override / Feed Rate 加减按钮接入 store; - Spindle override 加减按钮接入 store; - Flood / Mist 冷却按钮接入 store; - Reload / Home / Full 底部按钮接入 store; - `operatorMessage` 记录最近一次仿真操作; - Node smoke 和 browser smoke 覆盖上述控制链路。 边界说明: ```text sourceMode=fixture-ui-only semanticBoundary=fixture_frame_ui_plumbing_not_linuxcnc_kinematics_proof linuxCncKinematicsReady=false promotionAllowed=false ``` 也就是说,Web 仿真界面现在已经具备 RTCP 状态链路和显示链路,但尚未把 LinuxCNC/source-derived 五轴运动学 WASM 接入为最终语义源。 ## 5. M3 任务 ```text M3-threejs-preview ``` 状态: ```text completed_with_canvas_smoke ``` 目标: - Three.js canvas; - 基础五轴机床; - tool marker; - simple path; - canvas nonblank browser smoke。 M3 需要消费 M2 的 `rtcpFrame`: - Three.js tool marker 使用 `tcpPose`; - 刀轴显示使用 `toolAxisVector`; - RTCP on/off 需要在预览中产生可见姿态差异; - canvas smoke 需要检查 frame 与预览数据同步。 已完成: - 新增 `app/src/vendor/three/three.module.js` 和 `three.core.js`; - 新增 `app/src/visualization/five-axis-scene.js`; - gmoccapy preview 区域由真实 WebGL canvas 渲染; - 预览显示基础五轴工作区、工作台、刀具/TCP marker、刀轴和刀路; - Three.js canvas 消费 `tcpPose`、`toolAxisVector`、`rtcpState`、`rtcpFrame`; - browser smoke 验证 canvas nonblank、scene objects、path points、RTCP on/off 同步和 STEP 后 TCP pose 更新。 当前 gate: ```text gmoccapy_static_build=ok rtcp_store_smoke=ok gmoccapy_shell_smoke=ok ``` ## 6. M4 任务 ```text M4-profile-and-linuxcnc-boundary ``` 状态: ```text completed_with_profile_boundary_smoke ``` 目标: - `xyzac-trt` profile; - source reference map; - PyVCP/HAL panel schema; - LinuxCNC adapter 接入点; - traceability update。 已完成: - 扩展 `app/src/profiles/xyzac-trt.js`,记录 INI、PyVCP XML、postgui HAL、generated HAL、tool table、remap、switchkins type、HAL pins、offsets、sample programs; - 进一步按 LinuxCNC `xyzac-trt.ini`/`xyzac-trt_cmds.hal`/`*.tbl`/`428-430remap.ngc` 整理 machine name、DISPLAY/RS274NGC/TRAJ、axis/joint limits、HALCMD nets、HALUI MDI commands、tool table 条目; - 新增 `app/src/profiles/source-reference-map.js`,建立 `xyzac-trt` source/config/reference map; - 新增 `app/src/panel-schema/xyzac-trt-pyvcp.js`,把 `xyzac-trt.xml` 与 `switchkins_postgui.hal` 的 SWITCHKINS 控件整理为 Web panel schema; - 新增 `app/src/runtime/linuxcnc-boundary-adapter.js`,作为后续 LinuxCNC interpreter/kinematics WASM 的接入点; - store 输出 `linuxCncBoundaryAdapter` 和 `linuxCncBoundaryReadiness`; - info tabs 显示 adapter、panel schema、source map 和 boundary readiness; - 新增 `tests/node/verify_profile_boundary.mjs`,并接入 `npm run smoke:node`; - browser smoke 验证 LinuxCNC boundary adapter/schema/readiness DOM 状态。 边界说明: ```text sourceMapBoundary=profile_source_map_only_not_runtime_proof panelSchemaBoundary=pyvcp_hal_schema_reference_only adapterBoundary=adapter_entrypoint_only_runtime_not_connected linuxCncKinematicsReady=false promotionAllowed=false ``` 说明: ```text M4 现在可视为在 profile/source-map/panel-schema/adapter 层面完全满足; 但这不等于 LinuxCNC interpreter/kinematics runtime 已接入。 ``` ## 7. M5 任务 ```text M5-operator-program-workflow ``` 状态: ```text completed_with_operator_program_smoke ``` 目标: - 上电、急停、自动、手动、JOG、MDI、复位等操作; - 加载 G-code 文件; - 刀具预览; - 执行程序并显示执行的当前行。 已完成: - store 新增 `machine.powerOn`、`machine.estopActive`、`machine.mode`、JOG/MDI/reset 状态; - 右侧按钮栏新增 POWER、E-STOP、RESET、AUTO、MANUAL、JOG、MDI; - 底部控制栏新增本地 G-code 文件输入、JOG X/Y、MDI run; - `LOAD_PROGRAM` 可从浏览器 FileReader 或 public dispatch 加载 operator G-code 文本; - G-code 面板显示程序来源、当前执行行,并按当前行高亮; - Three.js 预览区域新增刀具预览卡,显示 T 号、直径、长度和 holder; - RUN/STEP 会在上电且非急停状态下推进当前行,未上电时明确 blocked; - node/browser smoke 覆盖上电、加载程序、运行、高亮当前行、JOG、MDI、复位和急停。 边界说明: ```text operatorWorkflowBoundary=browser_ui_runtime_fixture gcodeLoadBoundary=file_text_staging_only programExecutionBoundary=fixture_line_playback_not_linuxcnc_interpreter linuxCncKinematicsReady=false promotionAllowed=false ``` ## 8. 每批完成后必须更新 每批完成后更新: - 本文件的“当前状态”; - `docs/traceability-matrix.md`; - 如果新增 UI 或 runtime 约束,更新 `docs/program-implementation-guide.md`; - 如果新增参考来源,更新 `docs/linuxcnc-python-gui-reference.md` 或 `docs/linuxcnc-gui-reference-gallery.md`。 ## 9. 当前状态 ```text status=M24_xyzbc_trt_kinematics_parity_complete active_style=gmoccapy_5_axis frontend_framework=none ui_stack=html_css_typescript_es_modules preview_stack=threejs semantic_boundary=linuxcnc_owned latest_batch=M24-xyzbc-trt-kinematics-parity latest_gate=xyzac_trt_kinematics_runtime=ok,xyzbc_trt_kinematics_runtime=ok,xyzbc_b_axis_tcp_pose_preserved=1,tool_db_web_simulation_smoke=ok,staged_tool_tbl_loaded=1,tool_db_query_edit_save=1,tool_db_t_m6_g43_state=1,tool_db_memory_fallback_save=1,host_tool_db_process=0,tool_db_user_m_simulation_smoke=ok,tool_db_process_ready_web_simulation_only=1,external_user_m_process_ready_web_simulation_only=1,arbitrary_user_m_blocked=1,host_process_execution=0,host_native_boundary_ui=ok,hardware_drive_false_visible=1,host_realtime_false_visible=1,host_external_user_m_false_visible=1,host_tool_db_false_visible=1,threejs_program_preview_mode=program-preview-and-tool-execution,threejs_preview_source=linuxcnc-interpreter-wasm_or_linuxcnc-machine-file-remap-wasm,threejs_toolpath_preview_source=linuxcnc_interpreter_canonical_motion,threejs_tool_execution_trace_source=linuxcnc_tp_samples_or_task_motion_hal_feedback,threejs_path_fit_bounds=ok,threejs_current_segment_highlight=ok,threejs_rapid_feed_visual_distinction=ok,threejs_no_gcode_semantics_generation=ok,threejs_canvas_nonblank_desktop=ok,threejs_canvas_nonblank_mobile=ok,opfs_unavailable_detected=1,opfs_fallback_current_page_lifecycle_only=1,non_opfs_workflows_still_pass=1,public_http_smoke_no_uncaught_exception=1,real_linuxcnc_5axis_program_cases_smoke=ok,native_task_hal_source_artifact_audit=ok,task_hal_web_simulation_boundary_consistent=1,full_execution_boundary_smoke=ok,linuxcnc_kinematics_runtime_smoke=ok,linuxcnc_interpreter_runtime_smoke=ok,linuxcnc_ini_runtime_smoke=ok,full_linuxcnc_5axis_source_node_smoke=ok,machine_file_staging_smoke=ok,five_axis_session_smoke=ok,profile_boundary_smoke=ok,rtcp_store_smoke=ok,gmoccapy_shell_smoke=ok,gmoccapy_dist_smoke=ok rtcp_ui_state=implemented_browser_worker_and_node_kinematics_wasm_frame_with_fixture_fallback control_wiring=power_estop_reset_auto_manual_jog_mdi_run_stop_pause_step_overrides_coolant_spindle_preview_home_reload_full gcode_loading=implemented_browser_file_text_staging_with_linuxcnc_interpreter_execution linuxcnc_5axis_gcode_sources=implemented_and_guarded_to_linuxcnc_source_manifest_trt_demos_only linuxcnc_source_program_case_coverage=implemented_boat_xyzac_boat_xyzbc_impeller_xyzac_switchkins_xyzbc_switchkins_guarded_cases program_current_line=implemented_linuxcnc_canonical_motion_highlight_with_fixture_fallback tool_preview=implemented_tool_card_and_threejs_marker threejs_preview=implemented_program_preview_and_tool_execution_with_fit_bounds_current_segment_and_rapid_feed_arc_layers profile_source_map=implemented_xyzac_trt_and_xyzbc_trt profile_switching=implemented_xyzac_trt_and_xyzbc_trt_with_runtime_reload pyvcp_hal_schema=implemented_xyzac_trt_switchkins linuxcnc_boundary_adapter=kinematics_and_interpreter_runtime_connected_remap_planner_missing full_execution_boundary=implemented_machine_file_remap_ready_with_planner_task_hal_blockers host_native_boundary_visibility=implemented_ui_and_browser_smoke_guard_for_hardware_realtime_external_user_m_tool_db_false linuxcnc_kinematics_wasm=browser_and_node_proof_ready_xyzac_trt_and_node_direct_xyzbc_trt_b_axis_tcp_pose browser_kinematics_wasm=worker_connected_source_and_dist_xyzac_trt linuxcnc_interpreter_wasm=browser_worker_and_node_direct_canonical_program_execution_ready_with_switchkins_mcode_preservation browser_interpreter_wasm=worker_connected_source_and_dist switchkins_rtcp_program_execution=implemented_m428_m429_program_events_drive_rtcp_and_kinematics_switch full_program_execution=partial_interpreter_canonical_and_switchkins_event_ready_remap_planner_not_promoted session_persistence=implemented_opfs_save_restore_for_5axis_session_with_memory_fallback_when_opfs_unavailable machine_file_staging=implemented_linuxcnc_trt_ini_hal_tool_table_remap_demo_opfs_staging_with_memory_fallback_when_opfs_unavailable machine_file_backed_run=implemented_linuxcnc_fiveaxis_remap_wasm_machine_file_execution planner_task_hal_gap=closed_for_web_simulation_boundary_with_task_motion_hal_wasm_runtime native_task_hal_sync_plan=docs_native_task_hal_sync_implementation_steps_ready native_task_hal_phase0_8=source_manifest_native_probe_hal_runtime_motion_hal_sync_task_shim_sdk_machine_file_store_ui_full_boundary_smokes_ready_and_m18_readiness_artifact_audited native_task_hal_readiness_artifact=web-rtcp-5axis-sim-plan/build/readiness/native-task-hal-readiness.json tool_db_user_m_web_simulation=ready_for_staged_tool_tbl_and_whitelisted_user_m next_batch=none_from_development_continuation ``` 当前 native task/HAL 接续状态: - Phase 0 source manifest gate 已输出 `task_hal_source_manifest_ready=1`; - Phase 1 TRT native probe 已按 opt-in 模式就绪,默认 `ready_disabled_by_default`,不提升; - Phase 2 HAL runtime 已覆盖 pin/signal/param/net/thread scheduler 和 `loadusr` blocked evidence; - Phase 3 minimal motion/HAL C ABI 已覆盖 servo cycle、program-line、switchkins、jog/status HAL 同步; - Phase 4 minimal task/HAL C ABI 已覆盖 `lctask_*` session/stage/open/command/cycle/status/events,RUN/MDI/JOG/PAUSE/RESUME/ABORT 能从 task shim 驱动 motion/HAL runtime,并已补 SDK wrapper; - Phase 5-8 已把 machine-file session、task/HAL runtime adapter、Worker/client 文件、store action mapping、gmoccapy diagnostics 和 full boundary gate 接上; - `nativeTaskReady=true`、`nativeHalSyncReady=true` 当前只表示 Web simulation boundary 内的 task/motion/HAL WASM runtime proof;`toolDbProcessReady=true` 和 `externalUserMProcessReady=true` 也只表示 Web simulation boundary 内的 staged `tool.tbl` 与白名单 user-M 仿真;仍保持 `hardwareDrive=false`、`hostRealtimeKernel=false`、`hostExternalUserMProcessReady=false`、`hostToolDbProcessReady=false`、`arbitraryUserMExecution=false`。 补充实施文档: ```text docs/native-task-hal-sync-implementation-steps.md ``` 该文档给出完成 `nativeTaskReady` 和 `nativeHalSyncReady` 的分阶段实现步骤、程序编写顺序、LinuxCNC 源程序参考清单和验收 gate。当前已完成 Web simulation boundary;不表示真实硬件、host realtime kernel 或外部进程 runtime 已完成。 ## 10. M12 任务 ```text M12-switchkins-rtcp-program-execution ``` 状态: ```text completed_with_program_level_rtcp_switching ``` 已完成: - `linuxcnc-interpreter-runtime` 识别 LinuxCNC TRT 配置中的 `M428/M429/M430` switchkins remap M-code; - 因当前 interpreter WASM 未启用 Python/NGC remap runtime,运行前会从送入 WASM 的程序文本中移除这些高位 M-code,避免 `M-code greater than 199` 阻断普通 canonical motion; - 原始程序的 `M428/M429/M430` 被保留为 `switchkinsEvents`,并打上 `linuxcnc_switchkins_remap_mcode_preserved_web_runtime_applied` 边界; - canonical motion event 继承最近的 switchkins 状态,`RUN/STEP/RUN_FRAME` 按程序自动切换 `identity` / `tcp-xyzac` / `tcp-xyzbc`; - node/browser kinematics runtime 增加 `switchKinematics()`,程序内 `M428/M429` 会同步切换 LinuxCNC kinematics WASM 的 `lckins_switch()`; - gmoccapy diagnostics 显示 program switchkins event count; - smoke 覆盖含 `M428/M429` 的五轴联动 RTCP 程序:加载后进入 TCP,执行 A/C 联动段保持 RTCP on,运行到 `M429` 后回到 identity。 边界说明: ```text switchkinsProgramBoundary=linuxcnc_remap_mcode_preserved_and_web_runtime_applied interpreterBoundary=linuxcnc_interpreter_wasm_canonical_events kinematicsBoundary=linuxcnc_kinematics_wasm_c_abi remapRuntimeReady=false plannerRuntimeReady=false fullLinuxCncProgramExecutionReady=false ``` ## 16. 最新接续基线 生成时间:2026-06-22 CST 本节是下一轮工作的优先入口。旧的 M1-M17 记录保留为历史,不再作为“下一步”的判断依据;后续直接按本节和 `docs/native-task-hal-sync-implementation-steps.md` 执行。 ### 16.1 当前完成情况 ```text ui_shell=ready gmoccapy_layout=ready profile_xyzac_trt=ready profile_xyzbc_trt=ready linuxcnc_kinematics_wasm=ready_browser_worker_and_node linuxcnc_interpreter_wasm=ready_browser_worker_and_node linuxcnc_tp_queue_timing=ready_for_canonical_motion machine_file_staging=ready_opfs_and_memory_storage machine_file_backed_fiveaxis_remap_run=ready_for_staged_linuxcnc_trt_sources task_motion_hal_wasm_simulation_boundary=ready_for_web_simulation threejs_program_preview=ready threejs_tool_execution_display=ready linuxcnc_source_program_case_coverage=ready_node_and_browser_guarded nativeTaskReady=web_simulation_boundary_only nativeHalSyncReady=web_simulation_boundary_only opfs_degradation=ready_memory_fallback_current_page_lifecycle_only toolDbProcessReady=true for web_simulation_only externalUserMProcessReady=true for web_simulation_only hardwareDrive=false hostRealtimeKernel=false hostExternalUserMProcessReady=false hostToolDbProcessReady=false arbitraryUserMExecution=false ``` 已通过的当前 gate: ```text npm --prefix web-rtcp-5axis-sim-plan/app run smoke:node bash web-rtcp-5axis-sim-plan/tests/browser/verify_gmoccapy_shell_browser.sh bash web-rtcp-5axis-sim-plan/tests/browser/verify_gmoccapy_dist_browser.sh ``` ### 16.2 Three.js 当前状态 Three.js 显示区现在不再承担 CNC 语义,只消费 LinuxCNC runtime 输出: - 完整程序预览路径来自 `state.programExecution.motion`,即 LinuxCNC interpreter/WASM canonical motion events; - 已执行路径优先来自 `state.programExecutionTiming.samples`,即 LinuxCNC TP queue runtime timing samples; - 当前刀具/TCP 标记来自 `state.programRuntimeFeedback.axisPose` 或 task/HAL runtime feedback; - 刀轴方向线来自 `state.toolAxisVector`; - `Clear` 同步清空完整路径和已执行路径; - 鼠标/触控旋转、平移、缩放和 `X/Y/Z/Fit` 预设视角已保留。 可观测 dataset: ```text canvas.dataset.threeSceneMode=program-preview-and-tool-execution canvas.dataset.threeProgramPreviewSource=linuxcnc-interpreter-wasm / linuxcnc-machine-file-remap-wasm / fixture-line-playback canvas.dataset.threeToolpathPreviewSource=linuxcnc_interpreter_canonical_motion canvas.dataset.threeToolExecutionTraceSource=linuxcnc_tp_samples_or_task_motion_hal_feedback canvas.dataset.threePathFitBounds=ok canvas.dataset.threeCurrentSegmentHighlight=ok canvas.dataset.threeRapidFeedVisualDistinction=ok canvas.dataset.threeNoGcodeSemanticsGeneration=ok canvas.dataset.threePathPoints=完整程序预览点数 canvas.dataset.threeExecutedPathPoints=已执行路径点数 canvas.dataset.threeRapidPathPoints=rapid 路径点数 canvas.dataset.threeFeedPathPoints=feed 路径点数 canvas.dataset.threeArcPathPoints=arc 路径点数 canvas.dataset.threeCurrentSegmentPoints=当前 segment 高亮点数 canvas.dataset.threeToolExecutionMarker=true/false canvas.dataset.threeCameraControls=orbit-pan-zoom ``` 边界要求: ```text Three.js 不解析 G-code Three.js 不重写 LinuxCNC 运动语义 Three.js 只显示 interpreter canonical motion、TP samples、task/HAL feedback ``` 刀具路径预览和刀具执行轨迹对标要求: ```text toolpath_preview_source=linuxcnc_source_program_interpreter_canonical_motion tool_execution_trace_source=linuxcnc_tp_samples_or_task_motion_hal_feedback tool_marker_source=linuxcnc_task_hal_or_runtime_feedback_tcp_pose source_program_guard=linuxcnc_vendored_5axis_gcode_source_file threejs_generated_toolpath_semantics=forbidden ``` - 完整刀具路径预览必须来自当前选中的 LinuxCNC 源程序 `.ngc` 经 interpreter/WASM 输出的 canonical motion,不得由 Three.js 或 Web 侧按 G-code 文本自行推导; - 已执行刀具轨迹必须优先来自 LinuxCNC TP queue timing samples 或 task/motion/HAL feedback,不能用 UI 播放进度伪造为 LinuxCNC 执行轨迹; - 刀具/TCP marker、刀轴和当前 segment 高亮必须能追溯到同一个 LinuxCNC runtime snapshot 或 canonical/timing event; - `boat-xyzac.ngc`、`boat-xyzbc.ngc`、`impeller-7bl-xyzac.ngc`、`xyzac_switchkins*.ngc`、`xyzbc_switchkins.ngc` 等案例需要逐个验证预览路径点数、执行轨迹点数、当前 G-code 行、RTCP/switchkins 状态和 source guard; - 如果 runtime fallback 到 fixture-line-playback,UI 可以显示降级预览,但不得把它标记为 LinuxCNC 源程序刀具路径对标通过。 ### 16.3 后续工作总原则 后续工作按 `docs/native-task-hal-sync-implementation-steps.md` 执行,保持以下原则: 1. 不用 Web 侧自定义状态机替代 LinuxCNC task/HAL/motion 语义。 2. 不把 browser simulation boundary 扩大描述为真实硬件 runtime。 3. `nativeTaskReady=true`、`nativeHalSyncReady=true` 只允许在 Web simulation boundary 内成立,除非另有 host-native 对照和 WASM 比对 artifact。 4. `hardwareDrive=false`、`hostRealtimeKernel=false`、`hostExternalUserMProcessReady=false`、`hostToolDbProcessReady=false`、`arbitraryUserMExecution=false` 必须继续明确展示;`externalUserMProcessReady=true`、`toolDbProcessReady=true` 只能附带 `web_simulation_only`。 5. 不修改用户个人备忘文件;本项目接续只写 `docs/development-continuation.md` 和必要工程文档。 ### 16.4 下一批直接执行任务 ```text M18-native-task-hal-source-and-artifact-audit ``` 状态: ```text completed_with_machine_readable_readiness_artifact ``` 目标: - 对照 `docs/native-task-hal-sync-implementation-steps.md` 阶段 0-8,审计当前源码、构建产物、测试和 UI 证据是否一致; - 修正 `docs/development-continuation.md` 中旧段落遗留的 false/partial 状态,避免同一文件同时宣称 task/HAL ready 和 blocked; - 产出机器可读 readiness artifact,明确 Web simulation promoted 与 hardware/native blocked 的区别。 建议检查文件: ```text web-rtcp-5axis-sim-plan/app/src/runtime/linuxcnc-task-hal-runtime.js web-rtcp-5axis-sim-plan/app/src/runtime/linuxcnc-task-hal-worker.js web-rtcp-5axis-sim-plan/app/src/runtime/linuxcnc-task-hal-worker-client.js web-rtcp-5axis-sim-plan/app/src/runtime/full-execution-boundary.js web-rtcp-5axis-sim-plan/app/src/state/store.js web-rtcp-5axis-sim-plan/app/src/ui/gmoccapy-shell.js web-rtcp-5axis-sim-plan/tests/node/verify_linuxcnc_task_hal_runtime.mjs web-rtcp-5axis-sim-plan/tests/browser/gmoccapy_shell_smoke.html wasm-port/tests/wasm/node/verify_task_hal_wasm.sh wasm-port/tests/wasm/node/verify_motion_hal_sync.sh wasm-port/tests/wasm/node/verify_hal_runtime.sh wasm-port/tests/native/probe_trt_task_hal_runtime.sh ``` 验收: ```text task_hal_web_simulation_boundary_consistent=1 native_task_hal_host_probe_status=passed_or_ready_disabled_by_default_or_skipped_missing_host_runtime hardware_drive=0 host_realtime_kernel=0 external_user_m_process_ready=1 tool_db_process_ready=1 host_external_user_m_process_ready=0 host_tool_db_process_ready=0 promotion_scope=web_simulation_only ``` 已完成: - 新增 `app/src/runtime/native-task-hal-audit.js`,汇总 source manifest、native opt-in probe、full execution boundary 和 task/HAL readiness; - 新增 `tests/node/verify_native_task_hal_audit.mjs`,默认运行 `wasm-port/tests/native/verify_task_hal_phase0.sh` 刷新 source/probe 证据; - 生成机器可读 artifact `build/readiness/native-task-hal-readiness.json`; - `npm run smoke:node` 已接入该 gate; - 明确区分 `webSimulation.promoted=true`、`toolUserWebSimulation.externalUserMProcessReady=true`、`toolUserWebSimulation.toolDbProcessReady=true` 与 `nativeHostAndHardware.hardwareDrive=false`、`hostRealtimeKernel=false`、`externalUserMProcessReady=false`、`toolDbProcessReady=false`。 当前 M18 gate: ```text native_task_hal_source_artifact_audit=ok task_hal_web_simulation_boundary_consistent=1 native_task_hal_host_probe_status=ready_disabled_by_default hardware_drive=0 host_realtime_kernel=0 external_user_m_process_ready=1 tool_db_process_ready=1 host_external_user_m_process_ready=0 host_tool_db_process_ready=0 promotion_scope=web_simulation_only ``` ### 16.5 M19:真实 LinuxCNC 源程序案例覆盖 ```text M19-linuxcnc-source-program-case-coverage ``` 状态: ```text completed_with_real_linuxcnc_source_program_case_smoke ``` 目标: - 继续以 LinuxCNC 源程序中的 5 轴 TRT demo 为准,不新增自定义 G-code 语义; - 覆盖 `boat-xyzac.ngc`、`boat-xyzbc.ngc`、`impeller-7bl-xyzac.ngc`、`xyzac_switchkins*.ngc`、`xyzbc_switchkins.ngc`; - 每个案例都验证:interpreter canonical motion、TP timing samples、Three.js 完整刀具路径预览、Three.js 已执行刀具轨迹、G-code 当前行、RTCP/switchkins 状态; - 刀具路径预览和刀具执行轨迹必须对标 LinuxCNC 源程序 runtime 输出,不能由 Three.js/Web 自行解析或生成运动语义。 验收: ```text linuxcnc_source_program_case_count>=5 all_cases_program_preview_points>0 all_cases_executed_path_points>0_after_run_or_step all_cases_toolpath_preview_source=linuxcnc_interpreter_canonical_motion all_cases_tool_execution_trace_source=linuxcnc_tp_samples_or_task_motion_hal_feedback all_switchkins_cases_rtcp_state_changes_verified=1 all_cases_source_guard=linuxcnc_vendored_5axis_gcode_source_file fixture_toolpath_fallback_not_promoted=1 ``` 建议新增或扩展: ```text web-rtcp-5axis-sim-plan/tests/node/verify_real_linuxcnc_5axis_program_cases.mjs web-rtcp-5axis-sim-plan/tests/browser/gmoccapy_shell_smoke.html ``` 已完成: - 新增 `tests/node/verify_real_linuxcnc_5axis_program_cases.mjs` 并接入 `npm run smoke:node`; - 覆盖 staged LinuxCNC TRT demo source guard:`boat-xyzac.ngc`、`boat-xyzbc.ngc`、`impeller-7bl-xyzac.ngc`、`xyzac_switchkins.ngc`、`xyzac_switchkins_test_1.ngc`、`xyzac_switchkins_test_2.ngc`、`xyzac_switchkins_test_3.ngc`、`xyzbc_switchkins.ngc`; - 直接 canonical/TP 覆盖 `boat-xyzac.ngc`、`boat-xyzbc.ngc`、`impeller-7bl-xyzac.ngc` 和 `xyzac_switchkins_test_*.ngc`; - 对 `xyzac_switchkins.ngc`、`xyzbc_switchkins.ngc` 这类 `o call` 入口,验证 LinuxCNC machine-file staging/remap run 和 source guard,不把 direct interpreter 无子程序上下文时的 0 motion 标记为失败或通过; - `linuxcnc-interpreter-runtime` 预处理单独一行的 LinuxCNC `%` 程序定界符为注释,保留行号,不新增 G-code 运动语义; - TP WASM timing artifact 容量和大程序 sample stride 已支持 `impeller-7bl-xyzac.ngc` 的 4492 条 canonical motion 与 TP segment 对齐; - browser smoke 在现有 `impeller-7bl-xyzac.ngc` 源程序流程中验证 canonical motion、TP samples、Three.js 完整路径/已执行轨迹和初始 RTCP switchkins 状态。 当前 M19 gate: ```text linuxcnc_source_program_case_count=8 all_cases_program_preview_points=ok all_cases_executed_path_points=ok_after_run_or_step all_cases_toolpath_preview_source=linuxcnc_interpreter_canonical_motion all_cases_tool_execution_trace_source=linuxcnc_tp_samples_or_task_motion_hal_feedback all_switchkins_cases_rtcp_state_changes_verified=1 all_cases_source_guard=linuxcnc_vendored_5axis_gcode_source_file fixture_toolpath_fallback_not_promoted=1 real_linuxcnc_5axis_program_cases_smoke=ok ``` 边界说明: ```text sourceProgramBoundary=linuxcnc_vendored_5axis_gcode_source_file toolpathPreviewBoundary=linuxcnc_interpreter_canonical_motion toolExecutionTraceBoundary=linuxcnc_tp_samples_or_task_motion_hal_feedback threejsGeneratedToolpathSemantics=forbidden fixtureToolpathFallbackPromoted=false hardwareDrive=false ``` ### 16.6 M20:Three.js 执行显示质量提升 ```text M20-threejs-tool-execution-quality ``` 状态: ```text completed_with_tool_execution_quality_smoke ``` 目标: - 保持 Three.js 不解析 G-code,只消费 runtime 输出; - 增加执行进度色带或当前 segment 高亮; - 明确 rapid/feed/arc/switchkins segment 的可视区别; - 增加路径 fit bounds,避免真实 LinuxCNC 大程序被固定 clamp 后压扁; - 增加 desktop/mobile 截图或 canvas pixel smoke,验证刀具路径预览、已执行刀具轨迹和刀具 marker 不重叠、不空白; - 任何可视化质量提升都必须保持路径点、segment 类型、当前刀具位置来源于 LinuxCNC interpreter/TP/task-HAL 输出。 验收: ```text threejs_program_preview_mode=program-preview-and-tool-execution threejs_preview_source=linuxcnc-interpreter-wasm_or_linuxcnc-machine-file-remap-wasm threejs_toolpath_preview_source=linuxcnc_interpreter_canonical_motion threejs_tool_execution_trace_source=linuxcnc_tp_samples_or_task_motion_hal_feedback threejs_path_fit_bounds=ok threejs_current_segment_highlight=ok threejs_rapid_feed_visual_distinction=ok threejs_no_gcode_semantics_generation=ok threejs_canvas_nonblank_desktop=ok threejs_canvas_nonblank_mobile=ok ``` 已完成: - Three.js 增加 rapid/feed/arc 分层路径、已执行路径和当前 segment 高亮; - `Fit` 改为按当前程序预览、执行轨迹、当前 segment、TCP marker 和刀轴点集计算 bounds,避免真实大程序在固定范围内压扁; - dataset 明确输出 toolpath preview source、tool execution trace source、fit bounds、当前 segment、rapid/feed 区分和 no G-code semantics generation; - fallback canvas 同步输出相同的可观测 gate,并绘制当前 segment; - browser smoke 在真实 LinuxCNC `impeller-7bl-xyzac.ngc` 源程序路径中验证 desktop/mobile canvas nonblank、路径来源、rapid/feed 区分和当前 segment。 当前 M20 gate: ```text threejs_program_preview_mode=program-preview-and-tool-execution threejs_preview_source=linuxcnc-interpreter-wasm_or_linuxcnc-machine-file-remap-wasm threejs_toolpath_preview_source=linuxcnc_interpreter_canonical_motion threejs_tool_execution_trace_source=linuxcnc_tp_samples_or_task_motion_hal_feedback threejs_path_fit_bounds=ok threejs_current_segment_highlight=ok threejs_rapid_feed_visual_distinction=ok threejs_no_gcode_semantics_generation=ok threejs_canvas_nonblank_desktop=ok threejs_canvas_nonblank_mobile=ok ``` ### 16.7 M21:公网部署与 OPFS 降级 ```text M21-public-http-opfs-degradation ``` 状态: ```text completed_with_public_http_fallback_smoke ``` 背景: 公网 `http://82.156.24.101:8092` 这类 HTTP/IP 环境不是安全上下文,OPFS 可能不可用。此前测试中 Save Session 已出现 `OPFS is not available in this browser`。 目标: - 检测非安全上下文和 OPFS 不可用状态; - 让 Save Session、Restore Session、Stage Machine Files、Full Boundary Audit 给出明确 UI 状态; - 不让 OPFS 缺失阻断不依赖 OPFS 的预览、运行、Three.js 显示、DRO、G-code 加载; - 可选增加 memory fallback,仅用于当前页面生命周期,不宣称持久化。 验收: ```text opfs_unavailable_detected=1 opfs_dependent_actions_blocked_with_clear_message=1 non_opfs_workflows_still_pass=1 public_http_smoke_no_uncaught_exception=1 ``` 已完成: - `five-axis-session` 和 `linuxcnc-machine-file-staging` 增加 storage capability 检测,识别非安全上下文、缺失 `navigator.storage.getDirectory()` 和测试强制 OPFS unavailable; - OPFS 不可用时 Save Session、Restore Session、Stage Machine Files 使用 memory fallback,只在当前页面生命周期内有效,不声明持久化; - UI diagnostics 显示 `opfs unavailable`、fallback mode 和原因,避免静默失败; - machine-file staging 在 memory fallback 下仍可支持不依赖持久 OPFS 的预览、运行、Three.js、DRO、G-code 加载和 full boundary audit; - browser smoke 强制 OPFS unavailable,验证 source 页面没有 uncaught error,非 OPFS 工作流仍通过。 当前 M21 gate: ```text opfs_unavailable_detected=1 opfs_fallback_current_page_lifecycle_only=1 opfs_dependent_actions_report_clear_fallback_message=1 non_opfs_workflows_still_pass=1 public_http_smoke_no_uncaught_exception=1 ``` ### 16.8 M22:Host/native 边界可见性 ```text M22-host-native-boundary-visibility ``` 状态: ```text completed_with_host_native_boundary_ui_smoke ``` 目标: - 在 Web simulation boundary 已 promoted 时,继续明确展示非浏览器仿真范围; - UI diagnostics 必须显示 `hardwareDrive=false`、`hostRealtimeKernel=false`、`externalUserMProcessReady=true for web_simulation_only`、`toolDbProcessReady=true for web_simulation_only`、`hostExternalUserMProcessReady=false`、`hostToolDbProcessReady=false`、`arbitraryUserMExecution=false`; - browser smoke 同时验证 state 字段和 DOM 文本,避免把 Web simulation promoted 误读为真实硬件、host realtime、外部 user-M 或 tool DB runtime ready。 已完成: - gmoccapy info tabs 新增 `Host/native` 诊断行; - `Host/native` 显示 hardware drive、host realtime、Web tool/user 仿真 only、host external user-M、host tool DB、arbitrary user-M 状态; - browser smoke 在 task/HAL full simulation boundary promoted 后验证 Web tool/user ready 与 host/native false 的 state 和 DOM 可见性。 当前 M22 gate: ```text host_native_boundary_ui=ok hardware_drive_false_visible=1 host_realtime_false_visible=1 external_user_m_web_simulation_only_visible=1 tool_db_web_simulation_only_visible=1 host_external_user_m_false_visible=1 host_tool_db_false_visible=1 arbitrary_user_m_false_visible=1 ``` ### 16.9 M23:受控 tool DB / user-M Web 仿真 ```text M23-controlled-tool-db-user-m-web-simulation ``` 状态: ```text completed_with_linuxcnc_tooldb_index_spindle_semantics ``` 目标: - 对标 LinuxCNC `taskclass.cc`、`tooldata/*`、TRT remap subroutines 和受控 user-M 用法; - 读取 staged `tool.tbl`,在 Web storage 中支持 OPFS/memory fallback 保存; - 支持刀具号、刀长、刀径、刀袋的查询/编辑/保存; - 接入 `Tn/M6/G43/M61` 仿真状态; - 只允许白名单 `M128/M129/M428/M429/M430`,不执行任意系统脚本; - UI 显示 `toolDbProcessReady=true for web_simulation_only` 和 `externalUserMProcessReady=true for web_simulation_only`。 已完成: - 新增 `app/src/runtime/tool-db-simulation.js`; - 新增 `app/src/runtime/controlled-user-m-simulation.js`; - `tool-db-simulation.js` 按 LinuxCNC `CANON_TOOL_TABLE` 字段建模,保留非随机刀库的真实 `pocketno`,同时用内部 `idx=1..n` 表示 tool table 行,`idx=0` 固定为 spindle pocket; - `Tn/M6/G43/M61` 按 `tooldata_find_index_for_tool()`、`Task::load_tool()`、`Task::read_tool_inputs()` 和 `convert_tool_length_offset()` 语义更新 `tool_prep_*`、`toolInSpindle`、`toolFromPocket`、`activeToolOffset` 与 #5400/#5401-#5413 参数; - store 和浏览器入口暴露 `queryToolDb()`、`editToolDb()`、`saveToolDb()`,支持 staged `tool.tbl` 查询、编辑和 OPFS/memory fallback 保存; - store 在 machine-file staging 后自动解析 profile 的 staged `tool.tbl`; - store 在加载 LinuxCNC source program 时扫描 tool commands 和受控 user-M 事件; - full boundary 把 tool DB/user-M 纳入 Web promotion gate,同时保留 host/native false; - gmoccapy info tabs 新增 `Tool/User process` 诊断; - 新增 `tests/node/verify_tool_db_web_simulation.mjs` 与 `tests/node/verify_tool_db_user_m_simulation.mjs` 并接入 `smoke:node`。 当前 M23 gate: ```text tool_db_web_simulation_smoke=ok staged_tool_tbl_loaded=1 tool_db_query_edit_save=1 tool_db_t_m6_g43_state=1 tool_db_memory_fallback_save=1 host_tool_db_process=0 tool_db_user_m_simulation_smoke=ok tool_db_process_ready_web_simulation_only=1 external_user_m_process_ready_web_simulation_only=1 arbitrary_user_m_blocked=1 host_process_execution=0 ``` 边界: ```text toolDbProcessReady=true for web_simulation_only externalUserMProcessReady=true for web_simulation_only hostToolDbProcessReady=false hostExternalUserMProcessReady=false arbitraryUserMExecution=false ``` ### 16.10 M24:XYZBC TRT kinematics parity proof ```text M24-xyzbc-trt-kinematics-parity ``` 状态: ```text completed_with_b_axis_tcp_pose_preserved ``` 目标: - 对标 LinuxCNC `xyzac-trt-kins.c`、`xyzbc-trt-kins.c`、`trtfuncs.c` 和 `switchkins.c`; - Node direct runtime 同时证明 `linuxcnc_xyzac_trt_kinematics.wasm` 与 `linuxcnc_xyzbc_trt_kinematics.wasm`; - 使用 `switchkinsType=1` 验证 TCP 模式正解/逆解闭环; - `rtcpFrame.tcpPose` 同时保留 `a/b/c`,避免 XYZBC 的 B 轴姿态在 UI 诊断链路中丢失; - Three.js `data-three-tcp-pose` 输出 B 轴,方便浏览器 smoke 和人工检查。 已完成: - `app/src/runtime/rtcp-frame.js` 的 fixture frame 和 LinuxCNC kinematics frame 均输出 `tcpPose.b`; - `app/src/visualization/five-axis-scene.js` 的 rounded TCP pose dataset 输出 `b`; - `tests/node/verify_linuxcnc_kinematics_runtime.mjs` 扩展为 XYZAC/XYZBC 双模块 runtime proof,校验 wasm 文件、switchkins type、forward/inverse rc、关节闭环、A/B/C TCP 姿态与刀轴方向; - `tests/node/verify_rtcp_store.mjs` 增加 XYZBC store 状态对 `tcpPose.b` 的保持校验。 当前 M24 gate: ```text xyzac_trt_kinematics_runtime=ok xyzbc_trt_kinematics_runtime=ok linuxcnc_kinematics_runtime_smoke=ok xyzbc_b_axis_tcp_pose_preserved=1 rtcp_store_smoke=ok ``` 边界: ```text semanticBoundary=linuxcnc_kinematics_wasm_c_abi scope=node_direct_web_runtime_proof hardwareDrive=false hostRealtimeKernel=false ``` ### 16.11 每轮必须执行的回归 常规回归: ```text npm --prefix web-rtcp-5axis-sim-plan/app run smoke:node bash web-rtcp-5axis-sim-plan/tests/browser/verify_gmoccapy_shell_browser.sh bash web-rtcp-5axis-sim-plan/tests/browser/verify_gmoccapy_dist_browser.sh ``` 涉及 WASM core 时追加: ```text bash wasm-port/tests/wasm/node/verify_hal_runtime.sh bash wasm-port/tests/wasm/node/verify_motion_hal_sync.sh bash wasm-port/tests/wasm/node/verify_task_hal_wasm.sh bash wasm-port/tests/wasm/node/verify_task_hal_sdk.sh bash wasm-port/tests/native/probe_trt_task_hal_runtime.sh ``` 涉及部署时追加: ```text npm --prefix web-rtcp-5axis-sim-plan/app run build bash web-rtcp-5axis-sim-plan/tests/browser/verify_gmoccapy_dist_browser.sh ``` ### 16.10 禁止事项 ```text 禁止修改用户个人备忘文件,除非用户明确要求 禁止把 fixture fallback 描述为 LinuxCNC semantic proof 禁止把 Web simulation task/HAL runtime 描述为真实硬件控制 禁止绕过 LinuxCNC interpreter/TP/task/HAL 输出去手写 G-code 运动语义 禁止默认启动 host-native LinuxCNC runtime 或抢占已有 linuxcncsvr/rtapi_app ``` ## 14. M16 任务 ```text M16-linuxcnc-tp-queue-timing-runtime ``` 状态: ```text completed_with_tp_wasm_and_web_node_smoke ``` 已完成: - `wasm-port/runtime/core/linuxcnc_wrap/linuxcnc_tp_wasm.c` 新增 `lctp_run_canonical_motion_timing()`; - TP WASM C ABI 将 LinuxCNC interpreter canonical motion events 入队到 vendored LinuxCNC `src/emc/tp` runtime,并通过 `tpRunCycle()` 生成 segment timing; - canonical 零长度 motion 保留为 0 秒 timing segment,不作为 TP enqueue failure; - 新增 `wasm-port/runtime/sdk/src/linuxcnc-tp.js`; - `linuxcnc-interpreter-runtime` 在 `runProgram()` / `runMachineFileProgram()` 后调用 TP SDK,`programExecution.plannerTiming` 使用 `linuxcnc_tp_queue_runtime_timing_from_canonical_motion` 边界; - store 优先使用 TP planner timing;JS `execution-timing.js` 保留为 fallback/MDI lightweight path; - full execution boundary 可在 TP timing 成功时报告 `plannerRuntimeReady=true`。 - browser source/dist smoke 验证 interpreter Worker readiness 包含 TP planner runtime, 并验证含 `ARC_FEED` 的真实 G-code 程序通过 TP arc timing segment。 边界说明: ```text timingBoundary=linuxcnc_tp_queue_runtime_timing_from_canonical_motion plannerRuntimeReady=true for interpreter canonical motion with TP WASM timing nativeTaskReady=false nativeHalSyncReady=false fullLinuxCncProgramExecutionReady=false hardwareDrive=false ``` 验证: ```text source /home/cnc/emsdk/emsdk_env.sh >/dev/null && bash wasm-port/tools/build_tp_wasm.sh && bash wasm-port/tests/wasm/node/verify_tp_wasm.sh node web-rtcp-5axis-sim-plan/tests/node/verify_linuxcnc_interpreter_runtime.mjs npm --prefix web-rtcp-5axis-sim-plan/app run smoke:node npm --prefix web-rtcp-5axis-sim-plan/app run smoke ``` ## 11. M13 任务 ```text M13-interpreter-worker-runtime ``` 状态: ```text completed_with_browser_worker_smoke ``` 已完成: - 新增 `linuxcnc-interpreter-worker.js` 和 `linuxcnc-interpreter-worker-client.js`; - 浏览器默认优先通过 Web Worker 加载 LinuxCNC interpreter WASM; - store 的 `RUN_INTERPRETER_PROGRAM` 支持 async runtime,避免 worker 结果阻塞 UI 线程; - 增加 `interpreterExecutionPending` 和 sequence guard,防止旧解释器结果覆盖新加载程序; - gmoccapy diagnostics 显示 interpreter execution context; - browser smoke 验证 kinematics 和 interpreter 都在 Worker,并验证 source/dist 两条路径。 边界说明: ```text browserInterpreterExecutionContext=worker nodeInterpreterExecutionContext=direct interpreterBoundary=linuxcnc_interpreter_wasm_canonical_events remapRuntimeReady=false plannerRuntimeReady=false fullLinuxCncProgramExecutionReady=false ``` ## 14. M16 任务 ```text M16-planner-task-hal-boundary-audit ``` 状态: ```text completed_with_full_execution_boundary_smoke ``` 已完成: - 新增 `full-execution-boundary.js`,统一汇总 kinematics、interpreter canonical、machine-file staging、five-axis remap run、switchkins HAL evidence; - store 新增 `fullExecutionBoundary` 派生状态和 `RUN_FULL_BOUNDARY_AUDIT_REQUEST`; - gmoccapy diagnostics 显示 full boundary、planner/task/HAL blockers 和证据摘要; - 底部新增 `Audit` 按钮,可触发 machine-file staging + machine-file backed five-axis remap run; - interpreter runtime 对 machine-file backed run 的 `remapRuntimeReady` 改为基于 `fiveaxis_ini_open=1`、`fiveaxis_remaps_ready=1`、`fiveaxis_file_reached_exit=1`; - Node/browser smoke 验证 partial remap boundary ready,同时继续禁止 full LinuxCNC program execution promoted。 边界说明: ```text fullExecutionBoundary=linuxcnc_machine_file_remap_ready_planner_task_hal_blocked remapRuntimeReady=true for staged fiveAxisRemap C ABI run halSwitchkinsEvidenceReady=true for fiveaxis_hal_switchkins evidence nativeTaskReady=false nativeHalSyncReady=false plannerRuntimeReady=false fullLinuxCncProgramExecutionReady=false promotionAllowed=false ``` ## 15. M17 任务 ```text M17-linuxcnc-5axis-gcode-source-ingest ``` 状态: ```text completed_with_real_linuxcnc_5axis_source_program_smoke ``` 已完成: - machine-file staging 从 LinuxCNC source manifest 中追加 TRT `demos/*.ngc`,包括 `boat-xyzac.ngc`、`boat-xyzbc.ngc`、`impeller-7bl-xyzac.ngc`、`xyzac_switchkins*.ngc`、`xyzbc_switchkins.ngc`; - `selectMachineFileProgram()` 强制 5 轴 G-code 必须来自当前 profile 对应的 LinuxCNC 源程序目录;axis/vismach 使用 `configs/sim/axis/vismach/5axis/table-rotary-tilting/demos/*.ngc`,gmoccapy TRT 使用 `configs/sim/gmoccapy/non_trivial_kinematics/table-rotary-tilting/examples/*.ngc`; - 新增 `listLinuxCncGcodeSources()` 和 `selectMachineFileProgram()`; - store 新增 `LOAD_LINUXCNC_GCODE_SOURCE`,可把 staged LinuxCNC 真实 5 轴 `.ngc` 源文件加载到 G-code 面板; - gmoccapy G-code 面板新增 LinuxCNC 5-axis source 下拉框和 staging 按钮; - machine-file backed remap run 使用当前选中的 LinuxCNC `.ngc` 源程序路径; - Node/browser smoke 验证选择 `impeller-7bl-xyzac.ngc` 后,UI 加载真实源程序,machine-file run 的 `wasmProgramPath` 指向该源文件。 边界说明: ```text gcodeSourceBoundary=linuxcnc_vendored_5axis_gcode_source_file sourceMode=linuxcnc-vendored-5axis-gcode machineFileBackedRunProgram=selected_staged_linuxcnc_ngc_source sourceDirectoryGuard=profile_specific_linuxcnc_demos_or_gmoccapy_examples_only remapRuntimeReady=true for staged fiveAxisRemap C ABI run plannerRuntimeReady=false nativeTaskReady=false nativeHalSyncReady=false fullLinuxCncProgramExecutionReady=false ``` ## 12. M14 任务 ```text M14-opfs-machine-file-staging ``` 状态: ```text completed_with_node_and_browser_opfs_smoke ``` 已完成: - 新增 `linuxcnc-machine-file-staging.js`; - 复用 `wasm-port/runtime/sdk/src/sim-config-staging.js` 的 `planSimConfigStaging()`,为 `xyzac-trt` / `xyzbc-trt` 生成 LinuxCNC sim-config staging plan; - 将 INI、tool table、HAL、PyVCP XML、`remap_subs/*.ngc`、demo G-code 等 vendored LinuxCNC 文本文件保存到 OPFS 风格路径; - store 增加 `machineFileStaging` 状态和 `stageMachineFiles()` API; - gmoccapy diagnostics 显示 machine-file staging 状态; - build 产物复制 `wasm-port/tools/source-manifest.txt`,保证 dist 页面也能生成 staging plan; - node smoke 使用 memory OPFS 验证文件保存;browser smoke 使用真实 OPFS 验证 source/dist staging。 边界说明: ```text machineFileStagingBoundary=linuxcnc_sim_config_file_staging_plan_plus_opfs_text_persistence stagedFiles=ini,hal,pyvcp,tool_table,remap_ngc,demo_gcode nativeHalTaskSync=false remapRuntimeReady=false plannerRuntimeReady=false fullLinuxCncProgramExecutionReady=false ``` ## 13. M15 任务 ```text M15-machine-file-backed-fiveaxis-remap-run ``` 状态: ```text completed_with_node_and_browser_fiveaxis_remap_run ``` 已完成: - `linuxcnc-interpreter-runtime` 新增 `runMachineFileProgram()`; - interpreter Worker 支持 `runMachineFileProgram` 转发; - store 新增 `RUN_MACHINE_FILE_PROGRAM` action 和 `machineFileExecution` 状态; - 使用 M14 的 machine-file staging plan/files,把 TRT INI、tool table、remap NGC、demo G-code 写入 Emscripten FS; - 调用 LinuxCNC interpreter SDK `runSimConfigProgram({ executionMode: "fiveAxisRemap" })`; - Node/browser smoke 验证 `fiveaxis_ini_open=1`、`fiveaxis_remaps_ready=1`、`fiveaxis_file_reached_exit=1`; - gmoccapy diagnostics 显示 machine-file backed run 状态。 边界说明: ```text machineFileBackedRunBoundary=linuxcnc_fiveaxis_remap_wasm_machine_file_execution sourceMode=linuxcnc-machine-file-remap-wasm remapRuntimeReady=vendored_linuxcnc_fiveaxis_remap_c_abi_for_staged_files nativeTaskHalSync=false plannerRuntimeReady=false fullLinuxCncProgramExecutionReady=false ```