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Ports TG Components
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# Datum Component System (DCS)
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## Concept
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Loosely adapted from /vg/. This is an entity component system for adding behaviours to datums when inheritance doesn't quite cut it. By using signals and events instead of direct inheritance, you can inject behaviours without hacky overloads. It requires a different method of thinking, but is not hard to use correctly. If a behaviour can have application across more than one thing. Make it generic, make it a component. Atom/mob/obj event? Give it a signal, and forward it's arguments with a `SendSignal()` call. Now every component that want's to can also know about this happening.
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### In the code
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#### Slippery things
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At the time of this writing, every object that is slippery overrides atom/Crossed does some checks, then slips the mob. Instead of all those Crossed overrides they could add a slippery component to all these objects. And have the checks in one proc that is run by the Crossed event
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#### Powercells
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A lot of objects have powercells. The `get_cell()` proc was added to give generic access to the cell var if it had one. This is just a specific use case of `GetComponent()`
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#### Radios
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The radio object as it is should not exist, given that more things use the _concept_ of radios rather than the object itself. The actual function of the radio can exist in a component which all the things that use it (Request consoles, actual radios, the SM shard) can add to themselves.
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#### Standos
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Stands have a lot of procs which mimic mob procs. Rather than inserting hooks for all these procs in overrides, the same can be accomplished with signals
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## API
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### Defines
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1. `COMPONENT_INCOMPATIBLE` Return this from `/datum/component/Initialize` or `datum/component/OnTransfer` to have the component be deleted if it's applied to an incorrect type. `parent` must not be modified if this is to be returned.
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### Vars
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1. `/datum/var/list/datum_components` (private)
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* Lazy associated list of type -> component/list of components.
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1. `/datum/component/var/enabled` (protected, boolean)
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* If the component is enabled. If not, it will not react to signals
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* `FALSE` by default, set to `TRUE` when a signal is registered
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1. `/datum/component/var/dupe_mode` (protected, enum)
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* How duplicate component types are handled when added to the datum.
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* `COMPONENT_DUPE_HIGHLANDER` (default): Old component will be deleted, new component will first have `/datum/component/proc/InheritComponent(datum/component/old, FALSE)` on it
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* `COMPONENT_DUPE_ALLOWED`: The components will be treated as separate, `GetComponent()` will return the first added
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* `COMPONENT_DUPE_UNIQUE`: New component will be deleted, old component will first have `/datum/component/proc/InheritComponent(datum/component/new, TRUE)` on it
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* `COMPONENT_DUPE_UNIQUE_PASSARGS`: New component will never exist and instead its initialization arguments will be passed on to the old component.
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1. `/datum/component/var/dupe_type` (protected, type)
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* Definition of a duplicate component type
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* `null` means exact match on `type` (default)
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* Any other type means that and all subtypes
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1. `/datum/component/var/list/signal_procs` (private)
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* Associated lazy list of signals -> `/datum/callback`s that will be run when the parent datum recieves that signal
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1. `/datum/component/var/datum/parent` (protected, read-only)
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* The datum this component belongs to
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* Never `null` in child procs
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### Procs
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1. `/datum/proc/GetComponent(component_type(type)) -> datum/component?` (public, final)
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* Returns a reference to a component of component_type if it exists in the datum, null otherwise
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1. `/datum/proc/GetComponents(component_type(type)) -> list` (public, final)
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* Returns a list of references to all components of component_type that exist in the datum
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1. `/datum/proc/GetExactComponent(component_type(type)) -> datum/component?` (public, final)
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* Returns a reference to a component whose type MATCHES component_type if that component exists in the datum, null otherwise
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1. `GET_COMPONENT(varname, component_type)` OR `GET_COMPONENT_FROM(varname, component_type, src)`
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* Shorthand for `var/component_type/varname = src.GetComponent(component_type)`
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1. `/datum/proc/AddComponent(component_type(type), ...) -> datum/component` (public, final)
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* Creates an instance of `component_type` in the datum and passes `...` to its `Initialize()` call
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* Sends the `COMSIG_COMPONENT_ADDED` signal to the datum
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* All components a datum owns are deleted with the datum
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* Returns the component that was created. Or the old component in a dupe situation where `COMPONENT_DUPE_UNIQUE` was set
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* If this tries to add an component to an incompatible type, the component will be deleted and the result will be `null`. This is very unperformant, try not to do it
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* Properly handles duplicate situations based on the `dupe_mode` var
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1. `/datum/proc/LoadComponent(component_type(type), ...) -> datum/component` (public, final)
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* Equivalent to calling `GetComponent(component_type)` where, if the result would be `null`, returns `AddComponent(component_type, ...)` instead
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1. `/datum/proc/ComponentActivated(datum/component/C)` (abstract, async)
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* Called on a component's `parent` after a signal recieved causes it to activate. `src` is the parameter
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* Will only be called if a component's callback returns `TRUE`
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1. `/datum/proc/TakeComponent(datum/component/C)` (public, final)
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* Properly transfers ownership of a component from one datum to another
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* Signals `COMSIG_COMPONENT_REMOVING` on the parent
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* Called on the datum you want to own the component with another datum's component
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1. `/datum/proc/SendSignal(signal, ...)` (public, final)
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* Call to send a signal to the components of the target datum
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* Extra arguments are to be specified in the signal definition
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* Returns a bitflag with signal specific information assembled from all activated components
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1. `/datum/component/New(datum/parent, ...)` (private, final)
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* Runs internal setup for the component
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* Extra arguments are passed to `Initialize()`
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1. `/datum/component/Initialize(...)` (abstract, no-sleep)
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* Called by `New()` with the same argments excluding `parent`
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* Component does not exist in `parent`'s `datum_components` list yet, although `parent` is set and may be used
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* Signals will not be recieved while this function is running
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* Component may be deleted after this function completes without being attached
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* Do not call `qdel(src)` from this function
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1. `/datum/component/Destroy(force(bool), silent(bool))` (virtual, no-sleep)
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* Sends the `COMSIG_COMPONENT_REMOVING` signal to the parent datum if the `parent` isn't being qdeleted
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* Properly removes the component from `parent` and cleans up references
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* Setting `force` makes it not check for and remove the component from the parent
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* Setting `silent` deletes the component without sending a `COMSIG_COMPONENT_REMOVING` signal
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1. `/datum/component/proc/InheritComponent(datum/component/C, i_am_original(boolean))` (abstract, no-sleep)
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* Called on a component when a component of the same type was added to the same parent
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* See `/datum/component/var/dupe_mode`
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* `C`'s type will always be the same of the called component
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1. `/datum/component/proc/AfterComponentActivated()` (abstract, async)
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* Called on a component that was activated after it's `parent`'s `ComponentActivated()` is called
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1. `/datum/component/proc/OnTransfer(datum/new_parent)` (abstract, no-sleep)
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* Called before `new_parent` is assigned to `parent` in `TakeComponent()`
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* Allows the component to react to ownership transfers
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1. `/datum/component/proc/_RemoveFromParent()` (private, final)
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* Clears `parent` and removes the component from it's component list
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1. `/datum/component/proc/_JoinParent` (private, final)
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* Tries to add the component to it's `parent`s `datum_components` list
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1. `/datum/component/proc/RegisterSignal(signal(string/list of strings), proc_ref(type), override(boolean))` (protected, final) (Consider removing for performance gainz)
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* If signal is a list it will be as if RegisterSignal was called for each of the entries with the same following arguments
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* Makes a component listen for the specified `signal` on it's `parent` datum.
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* When that signal is recieved `proc_ref` will be called on the component, along with associated arguments
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* Example proc ref: `.proc/OnEvent`
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* If a previous registration is overwritten by the call, a runtime occurs. Setting `override` to TRUE prevents this
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* These callbacks run asyncronously
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* Returning `TRUE` from these callbacks will trigger a `TRUE` return from the `SendSignal()` that initiated it
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### See/Define signals and their arguments in __DEFINES\components.dm
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@@ -0,0 +1,256 @@
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/datum/component
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var/enabled = FALSE
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var/dupe_mode = COMPONENT_DUPE_HIGHLANDER
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var/dupe_type
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var/list/signal_procs
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var/datum/parent
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/datum/component/New(datum/P, ...)
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parent = P
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var/list/arguments = args.Copy(2)
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if(Initialize(arglist(arguments)) == COMPONENT_INCOMPATIBLE)
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qdel(src, TRUE, TRUE)
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CRASH("Incompatible [type] assigned to a [P]!")
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_JoinParent(P)
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/datum/component/proc/_JoinParent()
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var/datum/P = parent
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//lazy init the parent's dc list
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var/list/dc = P.datum_components
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if(!dc)
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P.datum_components = dc = list()
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//set up the typecache
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var/our_type = type
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for(var/I in _GetInverseTypeList(our_type))
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var/test = dc[I]
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if(test) //already another component of this type here
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var/list/components_of_type
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if(!length(test))
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components_of_type = list(test)
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dc[I] = components_of_type
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else
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components_of_type = test
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if(I == our_type) //exact match, take priority
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var/inserted = FALSE
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for(var/J in 1 to components_of_type.len)
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var/datum/component/C = components_of_type[J]
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if(C.type != our_type) //but not over other exact matches
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components_of_type.Insert(J, I)
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inserted = TRUE
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break
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if(!inserted)
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components_of_type += src
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else //indirect match, back of the line with ya
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components_of_type += src
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else //only component of this type, no list
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dc[I] = src
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/datum/component/proc/Initialize(...)
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return
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/datum/component/Destroy(force=FALSE, silent=FALSE)
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enabled = FALSE
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var/datum/P = parent
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if(!force)
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_RemoveFromParent()
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if(!silent)
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P.SendSignal(COMSIG_COMPONENT_REMOVING, src)
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parent = null
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LAZYCLEARLIST(signal_procs)
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return ..()
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/datum/component/proc/_RemoveFromParent()
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var/datum/P = parent
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var/list/dc = P.datum_components
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for(var/I in _GetInverseTypeList())
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var/list/components_of_type = dc[I]
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if(length(components_of_type)) //
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var/list/subtracted = components_of_type - src
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if(subtracted.len == 1) //only 1 guy left
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dc[I] = subtracted[1] //make him special
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else
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dc[I] = subtracted
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else //just us
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dc -= I
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if(!dc.len)
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P.datum_components = null
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/datum/component/proc/RegisterSignal(sig_type_or_types, proc_or_callback, override = FALSE)
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if(QDELETED(src))
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return
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var/list/procs = signal_procs
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if(!procs)
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procs = list()
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signal_procs = procs
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var/list/sig_types = islist(sig_type_or_types) ? sig_type_or_types : list(sig_type_or_types)
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for(var/sig_type in sig_types)
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if(!override)
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. = procs[sig_type]
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if(.)
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stack_trace("[sig_type] overridden. Use override = TRUE to suppress this warning")
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if(!istype(proc_or_callback, /datum/callback)) //if it wasnt a callback before, it is now
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proc_or_callback = CALLBACK(src, proc_or_callback)
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procs[sig_type] = proc_or_callback
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enabled = TRUE
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/datum/component/proc/InheritComponent(datum/component/C, i_am_original)
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return
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/datum/component/proc/OnTransfer(datum/new_parent)
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return
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/datum/component/proc/_GetInverseTypeList(our_type = type)
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//we can do this one simple trick
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var/current_type = parent_type
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. = list(our_type, current_type)
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//and since most components are root level + 1, this won't even have to run
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while (current_type != /datum/component)
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current_type = type2parent(current_type)
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. += current_type
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/datum/proc/SendSignal(sigtype, ...)
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var/list/comps = datum_components
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if(!comps)
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return NONE
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var/list/arguments = args.Copy(2)
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var/target = comps[/datum/component]
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if(!length(target))
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var/datum/component/C = target
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if(!C.enabled)
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return NONE
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var/datum/callback/CB = C.signal_procs[sigtype]
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if(!CB)
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return NONE
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return CB.InvokeAsync(arglist(arguments))
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. = NONE
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for(var/I in target)
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var/datum/component/C = I
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if(!C.enabled)
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continue
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var/datum/callback/CB = C.signal_procs[sigtype]
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if(!CB)
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continue
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. |= CB.InvokeAsync(arglist(arguments))
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/datum/proc/GetComponent(c_type)
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var/list/dc = datum_components
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if(!dc)
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return null
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. = dc[c_type]
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if(length(.))
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return .[1]
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/datum/proc/GetExactComponent(c_type)
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var/list/dc = datum_components
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if(!dc)
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return null
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var/datum/component/C = dc[c_type]
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if(C)
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if(length(C))
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C = C[1]
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if(C.type == c_type)
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return C
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return null
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/datum/proc/GetComponents(c_type)
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var/list/dc = datum_components
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if(!dc)
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return null
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. = dc[c_type]
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if(!length(.))
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return list(.)
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/datum/proc/AddComponent(new_type, ...)
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var/datum/component/nt = new_type
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var/dm = initial(nt.dupe_mode)
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var/dt = initial(nt.dupe_type)
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var/datum/component/old_comp
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var/datum/component/new_comp
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if(ispath(nt))
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if(nt == /datum/component)
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CRASH("[nt] attempted instantiation!")
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if(!isnum(dm))
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CRASH("[nt]: Invalid dupe_mode ([dm])!")
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if(dt && !ispath(dt))
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CRASH("[nt]: Invalid dupe_type ([dt])!")
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else
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new_comp = nt
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args[1] = src
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if(dm != COMPONENT_DUPE_ALLOWED)
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if(!dt)
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old_comp = GetExactComponent(nt)
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else
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old_comp = GetComponent(dt)
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if(old_comp)
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switch(dm)
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if(COMPONENT_DUPE_UNIQUE)
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if(!new_comp)
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new_comp = new nt(arglist(args))
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if(!QDELETED(new_comp))
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old_comp.InheritComponent(new_comp, TRUE)
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QDEL_NULL(new_comp)
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if(COMPONENT_DUPE_HIGHLANDER)
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if(!new_comp)
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new_comp = new nt(arglist(args))
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if(!QDELETED(new_comp))
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new_comp.InheritComponent(old_comp, FALSE)
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QDEL_NULL(old_comp)
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if(COMPONENT_DUPE_UNIQUE_PASSARGS)
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if(!new_comp)
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var/list/arguments = args.Copy(2)
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old_comp.InheritComponent(null, TRUE, arguments)
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else
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old_comp.InheritComponent(new_comp, TRUE)
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else if(!new_comp)
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new_comp = new nt(arglist(args)) // There's a valid dupe mode but there's no old component, act like normal
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else if(!new_comp)
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new_comp = new nt(arglist(args)) // Dupes are allowed, act like normal
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if(!old_comp && !QDELETED(new_comp)) // Nothing related to duplicate components happened and the new component is healthy
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SendSignal(COMSIG_COMPONENT_ADDED, new_comp)
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return new_comp
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return old_comp
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/datum/proc/LoadComponent(component_type, ...)
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. = GetComponent(component_type)
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if(!.)
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return AddComponent(arglist(args))
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/datum/proc/TakeComponent(datum/component/C)
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if(!C)
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return
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var/datum/helicopter = C.parent
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if(helicopter == src)
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//if we're taking to the same thing no need for anything
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return
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if(C.OnTransfer(src) == COMPONENT_INCOMPATIBLE)
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qdel(C)
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return
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C._RemoveFromParent()
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helicopter.SendSignal(COMSIG_COMPONENT_REMOVING, C)
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C.parent = src
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if(C == AddComponent(C))
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C._JoinParent()
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/datum/proc/TransferComponents(datum/target)
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var/list/dc = datum_components
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if(!dc)
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return
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var/comps = dc[/datum/component]
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if(islist(comps))
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for(var/I in comps)
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target.TakeComponent(I)
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else
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target.TakeComponent(comps)
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/datum/component/nano_host()
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return parent
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@@ -0,0 +1,389 @@
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/*
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This datum should be used for handling mineral contents of machines and whatever else is supposed to hold minerals and make use of them.
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Variables:
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amount - raw amount of the mineral this container is holding, calculated by the defined value MINERAL_MATERIAL_AMOUNT=2000.
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max_amount - max raw amount of mineral this container can hold.
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sheet_type - type of the mineral sheet the container handles, used for output.
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parent - object that this container is being used by, used for output.
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MAX_STACK_SIZE - size of a stack of mineral sheets. Constant.
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*/
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/datum/component/material_container
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var/total_amount = 0
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var/max_amount
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var/sheet_type
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var/list/materials
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var/show_on_examine
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var/list/allowed_typecache
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var/last_inserted_id
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var/precise_insertion = FALSE
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var/datum/callback/precondition
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var/datum/callback/after_insert
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|
||||
/datum/component/material_container/Initialize(list/mat_list, max_amt = 0, _show_on_examine = FALSE, list/allowed_types, datum/callback/_precondition, datum/callback/_after_insert)
|
||||
materials = list()
|
||||
max_amount = max(0, max_amt)
|
||||
show_on_examine = _show_on_examine
|
||||
if(allowed_types)
|
||||
allowed_typecache = typecacheof(allowed_types)
|
||||
precondition = _precondition
|
||||
after_insert = _after_insert
|
||||
|
||||
RegisterSignal(COMSIG_PARENT_ATTACKBY, .proc/OnAttackBy)
|
||||
RegisterSignal(COMSIG_PARENT_EXAMINE, .proc/OnExamine)
|
||||
|
||||
var/list/possible_mats = list()
|
||||
for(var/mat_type in subtypesof(/datum/material))
|
||||
var/datum/material/MT = mat_type
|
||||
possible_mats[initial(MT.id)] = mat_type
|
||||
for(var/id in mat_list)
|
||||
if(possible_mats[id])
|
||||
var/mat_path = possible_mats[id]
|
||||
materials[id] = new mat_path()
|
||||
|
||||
/datum/component/material_container/proc/OnExamine(mob/user)
|
||||
for(var/I in materials)
|
||||
var/datum/material/M = materials[I]
|
||||
var/amt = amount(M.id)
|
||||
if(amt)
|
||||
to_chat(user, "<span class='notice'>It has [amt] units of [lowertext(M.name)] stored.</span>")
|
||||
|
||||
/datum/component/material_container/proc/OnAttackBy(obj/item/I, mob/living/user)
|
||||
var/list/tc = allowed_typecache
|
||||
if(user.a_intent != INTENT_HELP)
|
||||
return
|
||||
if((I.flags_2 & (HOLOGRAM_2 | NO_MAT_REDEMPTION_2)) || (tc && !is_type_in_typecache(I, tc)))
|
||||
to_chat(user, "<span class='warning'>[parent] won't accept [I]!</span>")
|
||||
return
|
||||
. = COMPONENT_NO_AFTERATTACK
|
||||
var/datum/callback/pc = precondition
|
||||
if(pc && !pc.Invoke(user))
|
||||
return
|
||||
var/material_amount = get_item_material_amount(I)
|
||||
if(!material_amount)
|
||||
to_chat(user, "<span class='warning'>[I] does not contain sufficient amounts of metal or glass to be accepted by [parent].</span>")
|
||||
return
|
||||
if(!has_space(material_amount))
|
||||
to_chat(user, "<span class='warning'>[parent] is full. Please remove metal or glass from [parent] in order to insert more.</span>")
|
||||
return
|
||||
user_insert(I, user)
|
||||
|
||||
/datum/component/material_container/proc/user_insert(obj/item/I, mob/living/user)
|
||||
set waitfor = FALSE
|
||||
var/requested_amount
|
||||
if(istype(I, /obj/item/stack) && precise_insertion)
|
||||
var/atom/current_parent = parent
|
||||
var/obj/item/stack/S = I
|
||||
requested_amount = input(user, "How much do you want to insert?", "Inserting [S.singular_name]s") as num|null
|
||||
if(isnull(requested_amount) || (requested_amount <= 0))
|
||||
return
|
||||
if(QDELETED(I) || QDELETED(user) || QDELETED(src) || parent != current_parent || user.incapacitated() || !in_range(current_parent, user) || user.l_hand != I && user.r_hand != I)
|
||||
return
|
||||
if(!user.drop_item())
|
||||
to_chat(user, "<span class='warning'>[I] is stuck to you and cannot be placed into [parent].</span>")
|
||||
return
|
||||
var/inserted = insert_item(I, stack_amt = requested_amount)
|
||||
if(inserted)
|
||||
if(istype(I, /obj/item/stack))
|
||||
var/obj/item/stack/S = I
|
||||
to_chat(user, "<span class='notice'>You insert [inserted] [S.singular_name][inserted>1 ? "s" : ""] into [parent].</span>")
|
||||
if(!QDELETED(I))
|
||||
if(!user.put_in_hands(I))
|
||||
stack_trace("Warning: User could not put object back in hand during material container insertion, line [__LINE__]! This can lead to issues.")
|
||||
I.forceMove(user.loc)
|
||||
else
|
||||
to_chat(user, "<span class='notice'>You insert a material total of [inserted] into [parent].</span>")
|
||||
qdel(I)
|
||||
if(after_insert)
|
||||
after_insert.Invoke(I.type, last_inserted_id, inserted)
|
||||
else
|
||||
user.put_in_active_hand(I)
|
||||
|
||||
//For inserting an amount of material
|
||||
/datum/component/material_container/proc/insert_amount(amt, id = null)
|
||||
if(amt > 0 && has_space(amt))
|
||||
var/total_amount_saved = total_amount
|
||||
if(id)
|
||||
var/datum/material/M = materials[id]
|
||||
if(M)
|
||||
M.amount += amt
|
||||
total_amount += amt
|
||||
else
|
||||
for(var/i in materials)
|
||||
var/datum/material/M = materials[i]
|
||||
M.amount += amt
|
||||
total_amount += amt
|
||||
return (total_amount - total_amount_saved)
|
||||
return FALSE
|
||||
|
||||
/datum/component/material_container/proc/insert_stack(obj/item/stack/S, amt, multiplier = 1)
|
||||
if(isnull(amt))
|
||||
amt = S.amount
|
||||
|
||||
if(amt <= 0)
|
||||
return FALSE
|
||||
|
||||
if(amt > S.amount)
|
||||
amt = S.amount
|
||||
|
||||
var/material_amt = get_item_material_amount(S)
|
||||
if(!material_amt)
|
||||
return FALSE
|
||||
|
||||
amt = min(amt, round(((max_amount - total_amount) / material_amt)))
|
||||
if(!amt)
|
||||
return FALSE
|
||||
|
||||
last_inserted_id = insert_materials(S,amt * multiplier)
|
||||
S.use(amt)
|
||||
return amt
|
||||
|
||||
/datum/component/material_container/proc/insert_item(obj/item/I, multiplier = 1, stack_amt)
|
||||
if(!I)
|
||||
return FALSE
|
||||
if(istype(I, /obj/item/stack))
|
||||
return insert_stack(I, stack_amt, multiplier)
|
||||
|
||||
var/material_amount = get_item_material_amount(I)
|
||||
if(!material_amount || !has_space(material_amount))
|
||||
return FALSE
|
||||
|
||||
last_inserted_id = insert_materials(I, multiplier)
|
||||
return material_amount
|
||||
|
||||
/datum/component/material_container/proc/insert_materials(obj/item/I, multiplier = 1) //for internal usage only
|
||||
var/datum/material/M
|
||||
var/primary_mat
|
||||
var/max_mat_value = 0
|
||||
for(var/MAT in materials)
|
||||
M = materials[MAT]
|
||||
M.amount += I.materials[MAT] * multiplier
|
||||
total_amount += I.materials[MAT] * multiplier
|
||||
if(I.materials[MAT] > max_mat_value)
|
||||
primary_mat = MAT
|
||||
return primary_mat
|
||||
|
||||
//For consuming material
|
||||
//mats is a list of types of material to use and the corresponding amounts, example: list(MAT_METAL=100, MAT_GLASS=200)
|
||||
/datum/component/material_container/proc/use_amount(list/mats, multiplier=1)
|
||||
if(!mats || !mats.len)
|
||||
return FALSE
|
||||
|
||||
var/datum/material/M
|
||||
for(var/MAT in materials)
|
||||
M = materials[MAT]
|
||||
if(M.amount < (mats[MAT] * multiplier))
|
||||
return FALSE
|
||||
|
||||
var/total_amount_save = total_amount
|
||||
for(var/MAT in materials)
|
||||
M = materials[MAT]
|
||||
M.amount -= mats[MAT] * multiplier
|
||||
total_amount -= mats[MAT] * multiplier
|
||||
|
||||
return total_amount_save - total_amount
|
||||
|
||||
|
||||
/datum/component/material_container/proc/use_amount_type(amt, id)
|
||||
var/datum/material/M = materials[id]
|
||||
if(M)
|
||||
if(M.amount >= amt)
|
||||
M.amount -= amt
|
||||
total_amount -= amt
|
||||
return amt
|
||||
return FALSE
|
||||
|
||||
/datum/component/material_container/proc/transer_amt_to(var/datum/component/material_container/T, amt, id)
|
||||
if((amt==0)||(!T)||(!id))
|
||||
return FALSE
|
||||
if(amt<0)
|
||||
return T.transer_amt_to(src, -amt, id)
|
||||
var/datum/material/M = materials[id]
|
||||
|
||||
if(M)
|
||||
var/tr = min(amt, M.amount,T.can_insert_amount(amt, id))
|
||||
if(tr)
|
||||
use_amount_type(tr, id)
|
||||
T.insert_amount(tr, id)
|
||||
return tr
|
||||
return FALSE
|
||||
|
||||
/datum/component/material_container/proc/can_insert_amount(amt, id)
|
||||
if(amt && id)
|
||||
var/datum/material/M = materials[id]
|
||||
if(M)
|
||||
if((total_amount + amt) <= max_amount)
|
||||
return amt
|
||||
else
|
||||
return (max_amount-total_amount)
|
||||
|
||||
/datum/component/material_container/proc/can_use_amount(amt, id, list/mats)
|
||||
if(amt && id)
|
||||
var/datum/material/M = materials[id]
|
||||
if(M && M.amount >= amt)
|
||||
return TRUE
|
||||
else if(istype(mats))
|
||||
for(var/M in mats)
|
||||
if(materials[M] && (mats[M] <= materials[M]))
|
||||
continue
|
||||
else
|
||||
return FALSE
|
||||
return TRUE
|
||||
return FALSE
|
||||
|
||||
//For spawning mineral sheets; internal use only
|
||||
/datum/component/material_container/proc/retrieve(sheet_amt, datum/material/M, target = null)
|
||||
if(!M.sheet_type)
|
||||
return FALSE
|
||||
if(sheet_amt > 0)
|
||||
if(M.amount < (sheet_amt * MINERAL_MATERIAL_AMOUNT))
|
||||
sheet_amt = round(M.amount / MINERAL_MATERIAL_AMOUNT)
|
||||
var/count = 0
|
||||
while(sheet_amt > MAX_STACK_SIZE)
|
||||
new M.sheet_type(get_turf(parent), MAX_STACK_SIZE)
|
||||
count += MAX_STACK_SIZE
|
||||
use_amount_type(sheet_amt * MINERAL_MATERIAL_AMOUNT, M.id)
|
||||
sheet_amt -= MAX_STACK_SIZE
|
||||
if(round((sheet_amt * MINERAL_MATERIAL_AMOUNT) / MINERAL_MATERIAL_AMOUNT))
|
||||
var/obj/item/stack/sheet/s = new M.sheet_type(get_turf(parent), sheet_amt)
|
||||
if(target)
|
||||
s.forceMove(target)
|
||||
count += sheet_amt
|
||||
use_amount_type(sheet_amt * MINERAL_MATERIAL_AMOUNT, M.id)
|
||||
return count
|
||||
return FALSE
|
||||
|
||||
/datum/component/material_container/proc/retrieve_sheets(sheet_amt, id, target = null)
|
||||
if(materials[id])
|
||||
return retrieve(sheet_amt, materials[id], target)
|
||||
return FALSE
|
||||
|
||||
/datum/component/material_container/proc/retrieve_amount(amt, id, target)
|
||||
return retrieve_sheets(amount2sheet(amt), id, target)
|
||||
|
||||
/datum/component/material_container/proc/retrieve_all(target = null)
|
||||
var/result = 0
|
||||
var/datum/material/M
|
||||
for(var/MAT in materials)
|
||||
M = materials[MAT]
|
||||
result += retrieve_sheets(amount2sheet(M.amount), MAT, target)
|
||||
return result
|
||||
|
||||
/datum/component/material_container/proc/has_space(amt = 0)
|
||||
return (total_amount + amt) <= max_amount
|
||||
|
||||
/datum/component/material_container/proc/has_materials(list/mats, multiplier=1)
|
||||
if(!mats || !mats.len)
|
||||
return FALSE
|
||||
|
||||
var/datum/material/M
|
||||
for(var/MAT in mats)
|
||||
M = materials[MAT]
|
||||
if(M.amount < (mats[MAT] * multiplier))
|
||||
return FALSE
|
||||
return TRUE
|
||||
|
||||
/datum/component/material_container/proc/amount2sheet(amt)
|
||||
if(amt >= MINERAL_MATERIAL_AMOUNT)
|
||||
return round(amt / MINERAL_MATERIAL_AMOUNT)
|
||||
return FALSE
|
||||
|
||||
/datum/component/material_container/proc/sheet2amount(sheet_amt)
|
||||
if(sheet_amt > 0)
|
||||
return sheet_amt * MINERAL_MATERIAL_AMOUNT
|
||||
return FALSE
|
||||
|
||||
/datum/component/material_container/proc/amount(id)
|
||||
var/datum/material/M = materials[id]
|
||||
return M ? M.amount : 0
|
||||
|
||||
//returns the amount of material relevant to this container;
|
||||
//if this container does not support glass, any glass in 'I' will not be taken into account
|
||||
/datum/component/material_container/proc/get_item_material_amount(obj/item/I)
|
||||
if(!istype(I))
|
||||
return FALSE
|
||||
var/material_amount = 0
|
||||
for(var/MAT in materials)
|
||||
material_amount += I.materials[MAT]
|
||||
return material_amount
|
||||
|
||||
|
||||
/datum/material
|
||||
var/name
|
||||
var/amount = 0
|
||||
var/id = null
|
||||
var/sheet_type = null
|
||||
var/coin_type = null
|
||||
|
||||
/datum/material/metal
|
||||
name = "Metal"
|
||||
id = MAT_METAL
|
||||
sheet_type = /obj/item/stack/sheet/metal
|
||||
coin_type = /obj/item/coin/iron
|
||||
|
||||
/datum/material/glass
|
||||
name = "Glass"
|
||||
id = MAT_GLASS
|
||||
sheet_type = /obj/item/stack/sheet/glass
|
||||
|
||||
/datum/material/silver
|
||||
name = "Silver"
|
||||
id = MAT_SILVER
|
||||
sheet_type = /obj/item/stack/sheet/mineral/silver
|
||||
coin_type = /obj/item/coin/silver
|
||||
|
||||
/datum/material/gold
|
||||
name = "Gold"
|
||||
id = MAT_GOLD
|
||||
sheet_type = /obj/item/stack/sheet/mineral/gold
|
||||
coin_type = /obj/item/coin/gold
|
||||
|
||||
/datum/material/diamond
|
||||
name = "Diamond"
|
||||
id = MAT_DIAMOND
|
||||
sheet_type = /obj/item/stack/sheet/mineral/diamond
|
||||
coin_type = /obj/item/coin/diamond
|
||||
|
||||
/datum/material/uranium
|
||||
name = "Uranium"
|
||||
id = MAT_URANIUM
|
||||
sheet_type = /obj/item/stack/sheet/mineral/uranium
|
||||
coin_type = /obj/item/coin/uranium
|
||||
|
||||
/datum/material/plasma
|
||||
name = "Solid Plasma"
|
||||
id = MAT_PLASMA
|
||||
sheet_type = /obj/item/stack/sheet/mineral/plasma
|
||||
coin_type = /obj/item/coin/plasma
|
||||
|
||||
/datum/material/bluespace
|
||||
name = "Bluespace Mesh"
|
||||
id = MAT_BLUESPACE
|
||||
sheet_type = /obj/item/stack/sheet/bluespace_crystal
|
||||
|
||||
/datum/material/bananium
|
||||
name = "Bananium"
|
||||
id = MAT_BANANIUM
|
||||
sheet_type = /obj/item/stack/sheet/mineral/bananium
|
||||
coin_type = /obj/item/coin/clown
|
||||
|
||||
/datum/material/tranquillite
|
||||
name = "Tranquillite"
|
||||
id = MAT_TRANQUILLITE
|
||||
sheet_type = /obj/item/stack/sheet/mineral/tranquillite
|
||||
coin_type = /obj/item/coin/mime
|
||||
|
||||
/datum/material/titanium
|
||||
name = "Titanium"
|
||||
id = MAT_TITANIUM
|
||||
sheet_type = /obj/item/stack/sheet/mineral/titanium
|
||||
|
||||
/datum/material/biomass
|
||||
name = "Biomass"
|
||||
id = MAT_BIOMASS
|
||||
|
||||
/datum/material/plastic
|
||||
name = "Plastic"
|
||||
id = MAT_PLASTIC
|
||||
sheet_type = /obj/item/stack/sheet/plastic
|
||||
+14
-1
@@ -1,6 +1,6 @@
|
||||
/datum
|
||||
var/gc_destroyed //Time when this object was destroyed.
|
||||
|
||||
var/list/datum_components //for /datum/components
|
||||
var/var_edited = FALSE //Warranty void if seal is broken
|
||||
|
||||
var/tmp/unique_datum_id = null
|
||||
@@ -15,4 +15,17 @@
|
||||
// Return the appropriate QDEL_HINT; in most cases this is QDEL_HINT_QUEUE.
|
||||
/datum/proc/Destroy(force = FALSE, ...)
|
||||
tag = null
|
||||
|
||||
var/list/dc = datum_components
|
||||
if(dc)
|
||||
var/all_components = dc[/datum/component]
|
||||
if(length(all_components))
|
||||
for(var/I in all_components)
|
||||
var/datum/component/C = I
|
||||
qdel(C, FALSE, TRUE)
|
||||
else
|
||||
var/datum/component/C = all_components
|
||||
qdel(C, FALSE, TRUE)
|
||||
dc.Cut()
|
||||
|
||||
return QDEL_HINT_QUEUE
|
||||
@@ -145,13 +145,13 @@
|
||||
while(sheet_amt > MAX_STACK_SIZE)
|
||||
new M.sheet_type(get_turf(owner), MAX_STACK_SIZE)
|
||||
count += MAX_STACK_SIZE
|
||||
use_amount_type(sheet_amt * MINERAL_MATERIAL_AMOUNT, M.material_type)
|
||||
use_amount_type(sheet_amt * MINERAL_MATERIAL_AMOUNT, M.id)
|
||||
sheet_amt -= MAX_STACK_SIZE
|
||||
|
||||
if(round(M.amount / MINERAL_MATERIAL_AMOUNT))
|
||||
new M.sheet_type(get_turf(owner), sheet_amt)
|
||||
count += sheet_amt
|
||||
use_amount_type(sheet_amt * MINERAL_MATERIAL_AMOUNT, M.material_type)
|
||||
use_amount_type(sheet_amt * MINERAL_MATERIAL_AMOUNT, M.id)
|
||||
return count
|
||||
return 0
|
||||
|
||||
@@ -207,86 +207,4 @@
|
||||
var/material_amount = 0
|
||||
for(var/MAT in materials)
|
||||
material_amount += I.materials[MAT]
|
||||
return material_amount
|
||||
|
||||
|
||||
/datum/material
|
||||
var/amount = 0
|
||||
var/material_type = null
|
||||
var/sheet_type = null
|
||||
|
||||
/datum/material/metal
|
||||
|
||||
/datum/material/metal/New()
|
||||
..()
|
||||
material_type = MAT_METAL
|
||||
sheet_type = /obj/item/stack/sheet/metal
|
||||
|
||||
/datum/material/glass
|
||||
|
||||
/datum/material/glass/New()
|
||||
..()
|
||||
material_type = MAT_GLASS
|
||||
sheet_type = /obj/item/stack/sheet/glass
|
||||
|
||||
/datum/material/silver
|
||||
|
||||
/datum/material/silver/New()
|
||||
..()
|
||||
material_type = MAT_SILVER
|
||||
sheet_type = /obj/item/stack/sheet/mineral/silver
|
||||
|
||||
/datum/material/gold
|
||||
|
||||
/datum/material/gold/New()
|
||||
..()
|
||||
material_type = MAT_GOLD
|
||||
sheet_type = /obj/item/stack/sheet/mineral/gold
|
||||
|
||||
/datum/material/diamond
|
||||
|
||||
/datum/material/diamond/New()
|
||||
..()
|
||||
material_type = MAT_DIAMOND
|
||||
sheet_type = /obj/item/stack/sheet/mineral/diamond
|
||||
|
||||
/datum/material/uranium
|
||||
|
||||
/datum/material/uranium/New()
|
||||
..()
|
||||
material_type = MAT_URANIUM
|
||||
sheet_type = /obj/item/stack/sheet/mineral/uranium
|
||||
|
||||
/datum/material/plasma
|
||||
|
||||
/datum/material/plasma/New()
|
||||
..()
|
||||
material_type = MAT_PLASMA
|
||||
sheet_type = /obj/item/stack/sheet/mineral/plasma
|
||||
|
||||
/datum/material/bananium
|
||||
|
||||
/datum/material/bananium/New()
|
||||
..()
|
||||
material_type = MAT_BANANIUM
|
||||
sheet_type = /obj/item/stack/sheet/mineral/bananium
|
||||
|
||||
/datum/material/tranquillite
|
||||
|
||||
/datum/material/tranquillite/New()
|
||||
..()
|
||||
material_type = MAT_TRANQUILLITE
|
||||
sheet_type = /obj/item/stack/sheet/mineral/tranquillite
|
||||
|
||||
/datum/material/titanium
|
||||
|
||||
/datum/material/titanium/New()
|
||||
..()
|
||||
material_type = MAT_TITANIUM
|
||||
sheet_type = /obj/item/stack/sheet/mineral/titanium
|
||||
|
||||
/datum/material/biomass
|
||||
|
||||
/datum/material/biomass/New()
|
||||
..()
|
||||
material_type = MAT_BIOMASS
|
||||
return material_amount
|
||||
Reference in New Issue
Block a user