TypeScript/tests/baselines/reference/extension.symbols
Wesley Wigham 5353475fce Always collect type and symbol baselines (#18621)
* Always generate type & symbol baselines

* Accept changed shadowed baselines

* Accept brand new type and symbol baselines

* Allow `getTypeAtLocation` to return undefined in the type writer

* Accept baselines which had missing type information

* Bind container for dynamically names enum members so they may be printed

* Accept type/symbol baselines for enums with computed members

* First pass at reducing typeWriter memory overhead

* Use generators to allow for type and symbol baselines with no cache

* Accept new baselines for tests whose output was fixed by better newline splitting

* Hard cap on number of declarations printed, cache declaration print text

* handle differing newlines better still to handle RWC newlines

* Lower abridging count, accept abridged baselines

* Limit max RWC error output size, limit RWC type and symbol baseline input size

* Move skip logic into type and symbol baseliner to streamline error handling

* Accept removal of empty baselines

* Canonicalize path earlier to handle odd paths in input files

* Do canonicalization earlier still, also ensure parallel perf profiles for different targets do not trample one another

* No need to pathify again
2017-09-22 15:52:04 -07:00

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=== tests/cases/compiler/extension.ts ===
interface I {
>I : Symbol(I, Decl(extension.ts, 0, 0), Decl(extension.ts, 2, 1))
x;
>x : Symbol(I.x, Decl(extension.ts, 0, 13))
}
interface I {
>I : Symbol(I, Decl(extension.ts, 0, 0), Decl(extension.ts, 2, 1))
y;
>y : Symbol(I.y, Decl(extension.ts, 4, 13))
}
declare module M {
>M : Symbol(M, Decl(extension.ts, 6, 1), Decl(extension.ts, 12, 1))
export class C {
>C : Symbol(C, Decl(extension.ts, 8, 18))
public p:number;
>p : Symbol(C.p, Decl(extension.ts, 9, 20))
}
}
declare module M {
>M : Symbol(M, Decl(extension.ts, 6, 1), Decl(extension.ts, 12, 1))
export extension class C {
>C : Symbol(M.C, Decl(extension.ts, 15, 20))
public pe:string;
>pe : Symbol(M.C.pe, Decl(extension.ts, 15, 30))
}
}
var c=new M.C();
>c : Symbol(c, Decl(extension.ts, 20, 3))
>M.C : Symbol(M.C, Decl(extension.ts, 8, 18))
>M : Symbol(M, Decl(extension.ts, 6, 1), Decl(extension.ts, 12, 1))
>C : Symbol(M.C, Decl(extension.ts, 8, 18))
c.pe;
>c : Symbol(c, Decl(extension.ts, 20, 3))
c.p;
>c.p : Symbol(M.C.p, Decl(extension.ts, 9, 20))
>c : Symbol(c, Decl(extension.ts, 20, 3))
>p : Symbol(M.C.p, Decl(extension.ts, 9, 20))
var i:I;
>i : Symbol(i, Decl(extension.ts, 23, 3))
>I : Symbol(I, Decl(extension.ts, 0, 0), Decl(extension.ts, 2, 1))
i.x;
>i.x : Symbol(I.x, Decl(extension.ts, 0, 13))
>i : Symbol(i, Decl(extension.ts, 23, 3))
>x : Symbol(I.x, Decl(extension.ts, 0, 13))
i.y;
>i.y : Symbol(I.y, Decl(extension.ts, 4, 13))
>i : Symbol(i, Decl(extension.ts, 23, 3))
>y : Symbol(I.y, Decl(extension.ts, 4, 13))