# Place custom user options here, e.g.: [OptionsClassName] Property1 = "text value" Property2 = 3.14 Property3 = true Property4 = [ 1, 2, 3 ] Property5.SubProperty = "something" # [McuManager.Heaters.powderChamber3] # IsEnabled = false # >>> Inova.ApiPlugin (managed by install.sh) >>> # Keys must be quoted because they contain dots — unquoted dotted keys # in TOML are interpreted as nested tables, not literal single-key names. [Application.PluginAssemblies] "Inova.ApiPlugin" = "/home/ppak/SLS4All/Plugins/Inova.ApiPlugin/Inova.ApiPlugin.dll" [Application.PluginServices."Inova.ApiPlugin"] Implementation = "Inova.ApiPlugin.InovaApiPlugin, Inova.ApiPlugin" Registration = "AsImplementationAndInterfaces" Lifetime = "Singleton" # Substitute the firmware's closed-source ImageCodePlotter with our # LoggingCodePlotter decorator. The decorator forwards every ICodePlotter call # to the original (constructed reflectively at startup) and additionally tees # Process(CodeCommand) into a fan-out + per-layer ring buffer, exposed via the # /plotter/commands/stream WS and /plotter/layer/{n}/commands GET. # See CompactServiceCollectionExtensions.cs:115 for how this is applied. [Application.PluginReplacements."Inova.LoggingCodePlotter"] Original = "SLS4All.Compact.Slicing.ImageCodePlotter, SLS4All.Compact.Processing" Replacement = "Inova.ApiPlugin.LoggingCodePlotter, Inova.ApiPlugin" # Subclass McuMovementClient to intercept MoveXY/SetLaser. This is where # per-vector galvo data is actually visible — the slicer goes through # IMovementClient for hardware MCU access, but bypasses the DI ICodePlotter # for per-command writes. The intercepted frames flow into LoggingCodePlotter's # fan-out (so the same /plotter/commands/stream WS receives them). [Application.PluginReplacements."Inova.LoggingMovementClient"] Original = "SLS4All.Compact.Movement.McuMovementClient, SLS4All.Compact.McuClient" Replacement = "Inova.ApiPlugin.LoggingMovementClient, Inova.ApiPlugin" # <<< Inova.ApiPlugin (managed by install.sh) <<<