feat: Add and illustrate multiple ways of specifying implementations #19
@ -16,6 +16,10 @@ Furthermore, note that 'Complex' is implemented in a way that doesn't care about
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This core could be extended with many more operations, and more types could be defined, and additional sub-bundles like `number/all.mjs` or clever conditional loaders like `complex/extendToComplex.mjs` could be defined.
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This core could be extended with many more operations, and more types could be defined, and additional sub-bundles like `number/all.mjs` or clever conditional loaders like `complex/extendToComplex.mjs` could be defined.
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Also see the comments for the public member functions of
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`core/PocomathInstance.mjs` for further details on the structure and API of this
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scheme for organizing a CAS.
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Hopefully this shows promise. It is an evolution of the concept first prototyped in [picomath](https://code.studioinfinity.org/glen/picomath). However, picomath depended on typed-function allowing mutable function entities, which turned out not to be performant. Pocomath, on the other hand, uses typed-function v3 as it stands, although it does suggest that it would be helpful to extend typed-function with subtypes, and it could even be reasonable to move the dependency tracking into typed-function itself (given that typed-function already supports self-dependencies, it would not be difficult to extend that to inter-dependencies between different typed-functions).
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Hopefully this shows promise. It is an evolution of the concept first prototyped in [picomath](https://code.studioinfinity.org/glen/picomath). However, picomath depended on typed-function allowing mutable function entities, which turned out not to be performant. Pocomath, on the other hand, uses typed-function v3 as it stands, although it does suggest that it would be helpful to extend typed-function with subtypes, and it could even be reasonable to move the dependency tracking into typed-function itself (given that typed-function already supports self-dependencies, it would not be difficult to extend that to inter-dependencies between different typed-functions).
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Note the conception of Pocomath includes allowing one implementation to depend just on a specific signature of another function, for efficiency's sake (if for example 'bar(Matrix)' knows it will only call 'foo(Matrix)', it avoids another type-dispatch). That capability did not actually come up in this toy example, so it remains unimplemented, but it should and could easily be added.
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Note the conception of Pocomath includes allowing one implementation to depend just on a specific signature of another function, for efficiency's sake (if for example 'bar(Matrix)' knows it will only call 'foo(Matrix)', it avoids another type-dispatch). That capability did not actually come up in this toy example, so it remains unimplemented, but it should and could easily be added.
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@ -28,15 +28,16 @@ export default class PocomathInstance {
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* @param {Object<string, Object<Signature, [string[], function]>>} ops
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* @param {Object<string, Object<Signature, [string[], function]>>} ops
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* The only parameter ops gives the semantics of the operations to install.
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* The only parameter ops gives the semantics of the operations to install.
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* The keys are operation names. The value for a key is an object
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* The keys are operation names. The value for a key is an object
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* mapping (typed-function) signature strings to pairs of dependency
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* mapping (typed-function) signature strings to specifications of
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* lists and implementation functions.
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* of dependency lists and implementation functions.
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*
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*
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* A dependency list is a list of strings. Each string can either be the
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* A dependency list is a list of strings. Each string can either be the
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* name of a function that the corresponding implementation has to call,
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* name of a function that the corresponding implementation has to call,
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* or a specification of a particular signature of a function that it has
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* or a specification of a particular signature of a function that it has
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* to call, in the form 'FN(SIGNATURE)'. Note the function name can be
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* to call, in the form 'FN(SIGNATURE)' [not implemented yet].
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* the special value 'self' to indicate a recursive call to the given
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* Note the function name can be the special value 'self' to indicate a
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* operation (either with or without a particular signature.
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* recursive call to the given operation (either with or without a
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* particular signature.
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*
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*
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* There are two cases for the implementation function. If the dependency
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* There are two cases for the implementation function. If the dependency
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* list is empty, it should be a function taking the arguments specified
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* list is empty, it should be a function taking the arguments specified
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@ -45,6 +46,30 @@ export default class PocomathInstance {
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* requested functions as values, to a function taking the arguments
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* requested functions as values, to a function taking the arguments
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* specified by the signature and returning the value.
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* specified by the signature and returning the value.
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*
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*
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* There are various specifications currently allowed for the
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* dependency list and implementation function:
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*
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* 1) Just a function. Then the dependency list is assumed to be empty.
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*
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* 2) A pair (= Array with two entries) of a dependency list and the
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* implementation function.
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*
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* 3) An object whose property named 'does' gives the implementation
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* function and whose property named 'uses', if present, gives the
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* dependency list (which is assumed to be empty if the property is
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* not present).
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*
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* 4) A call to the 'use' function exported from the this module, with
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* first argument the dependencies and second argument the
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* implementation.
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*
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* For a visual comparison of the options, this proof-of-concept uses
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* option (1) when possible for the 'number' type, (3) for the 'Complex'
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* type, (4) for the 'bigint' type, and (2) under any other circumstances.
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* Likely a fleshed-out version of this scheme would settle on just one
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* or two of these options or variants thereof, rather than providing so
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* many different ones.
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*
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* Note that the "operation" named `Types` is special: it gives
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* Note that the "operation" named `Types` is special: it gives
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* types that must be installed in the instance. In this case, the keys
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* types that must be installed in the instance. In this case, the keys
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* are type names, and the values are objects with a property 'test'
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* are type names, and the values are objects with a property 'test'
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