222 lines
4.6 KiB
Java
222 lines
4.6 KiB
Java
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<h2>Comments</h2>
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<pre><code># This is a comment</code></pre>
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<h2>Strings</h2>
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<pre><code>"This is a string."
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"This is a string with \"quotes\" in it."
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"""This is
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a "multi-line"
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string."""
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""""A long string within quotes.""""
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R"This is a raw string."
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r"Some ""quotes"" inside a raw string."
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r"""Raw strings
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can also be multi-line."""
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foo"This is a generalized raw string literal."
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bar"""This is also
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a generalized raw string literal."""</code></pre>
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<h2>Characters</h2>
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<pre><code>'a'
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'\''
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'\t'
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'\15'
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'\xFC'</code></pre>
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<h2>Numbers</h2>
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<pre><code>42
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0xaf
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0xf_2_c
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0o07
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0b1111_0000
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0B0_10001110100_0000101001000111101011101111111011000101001101001001'f64
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9_000'u
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32.
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32.1f32
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32.e-5
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32.2e+2
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2'i16
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2i16
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0xfe'f32</code></pre>
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<h2>Full example</h2>
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<pre><code># Example from http://nim-by-example.github.io/oop_macro/
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import macros
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macro class*(head: expr, body: stmt): stmt {.immediate.} =
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# The macro is immediate so that it doesn't
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# resolve identifiers passed to it
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var typeName, baseName: NimNode
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if head.kind == nnkIdent:
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# `head` is expression `typeName`
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# echo head.treeRepr
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# --------------------
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# Ident !"Animal"
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typeName = head
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elif head.kind == nnkInfix and $head[0] == "of":
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# `head` is expression `typeName of baseClass`
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# echo head.treeRepr
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# --------------------
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# Infix
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# Ident !"of"
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# Ident !"Animal"
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# Ident !"RootObj"
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typeName = head[1]
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baseName = head[2]
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else:
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quit "Invalid node: " & head.lispRepr
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# echo treeRepr(body)
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# --------------------
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# StmtList
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# VarSection
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# IdentDefs
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# Ident !"name"
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# Ident !"string"
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# Empty
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# IdentDefs
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# Ident !"age"
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# Ident !"int"
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# Empty
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# MethodDef
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# Ident !"vocalize"
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# Empty
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# Empty
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# FormalParams
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# Ident !"string"
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# Empty
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# Empty
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# StmtList
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# StrLit ...
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# MethodDef
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# Ident !"age_human_yrs"
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# Empty
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# Empty
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# FormalParams
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# Ident !"int"
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# Empty
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# Empty
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# StmtList
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# DotExpr
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# Ident !"this"
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# Ident !"age"
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# create a new stmtList for the result
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result = newStmtList()
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# var declarations will be turned into object fields
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var recList = newNimNode(nnkRecList)
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# Iterate over the statements, adding `this: T`
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# to the parameters of functions
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for node in body.children:
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case node.kind:
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of nnkMethodDef, nnkProcDef:
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# inject `this: T` into the arguments
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let p = copyNimTree(node.params)
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p.insert(1, newIdentDefs(ident"this", typeName))
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node.params = p
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result.add(node)
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of nnkVarSection:
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# variables get turned into fields of the type.
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for n in node.children:
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recList.add(n)
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else:
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result.add(node)
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# The following prints out the AST structure:
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#
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# import macros
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# dumptree:
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# type X = ref object of Y
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# z: int
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# --------------------
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# TypeSection
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# TypeDef
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# Ident !"X"
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# Empty
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# RefTy
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# ObjectTy
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# Empty
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# OfInherit
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# Ident !"Y"
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# RecList
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# IdentDefs
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# Ident !"z"
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# Ident !"int"
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# Empty
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result.insert(0,
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if baseName == nil:
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quote do:
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type `typeName` = ref object of RootObj
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else:
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quote do:
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type `typeName` = ref object of `baseName`
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)
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# Inspect the tree structure:
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#
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# echo result.treeRepr
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# --------------------
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# StmtList
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# StmtList
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# TypeSection
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# TypeDef
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# Ident !"Animal"
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# Empty
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# RefTy
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# ObjectTy
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# Empty
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# OfInherit
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# Ident !"RootObj"
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# Empty <= We want to replace this
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# MethodDef
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# ...
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result[0][0][0][2][0][2] = recList
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# Lets inspect the human-readable version of the output
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# echo repr(result)
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# Output:
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# type
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# Animal = ref object of RootObj
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# name: string
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# age: int
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#
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# method vocalize(this: Animal): string =
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# "..."
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#
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# method age_human_yrs(this: Animal): int =
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# this.age
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# ---
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class Animal of RootObj:
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var name: string
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var age: int
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method vocalize: string = "..."
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method age_human_yrs: int = this.age # `this` is injected
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class Dog of Animal:
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method vocalize: string = "woof"
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method age_human_yrs: int = this.age * 7
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class Cat of Animal:
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method vocalize: string = "meow"
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# ---
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var animals: seq[Animal] = @[]
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animals.add(Dog(name: "Sparky", age: 10))
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animals.add(Cat(name: "Mitten", age: 10))
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for a in animals:
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echo a.vocalize()
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echo a.age_human_yrs()</code></pre>
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