This lets us get the more correct lowercase versions of type kinds in error messages. (These match what the user would type.)
79 lines
1.7 KiB
Plaintext
79 lines
1.7 KiB
Plaintext
-- main.mcl --
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# This code should fail during type-checking.
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#
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# $id1 and $id2 are both polymorphic functions, which can be specialized to a
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# different monomorphic type at every use site. In simple code, this
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# specialization happens when the polymorphic function is called, but in more
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# complex code, the specialization happens earlier, when the polymorphic
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# function is passed as an argument to higher-order functions such as $generate
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# and iter.map.
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#
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# In:
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#
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# $id1 = func($x str) { # definition site
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# $x
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# }
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# $id2 = func($x str) {
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# $x + $x
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# }
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#
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# $generate = func($idn) {
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# $idn("foo") # 1 call site, 2 calls
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# }
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#
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# $foo = iter.map([$id1, $id2,], $generate)
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#
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# $generate is specialized to `func(func(str) str) str`, and $id1 and $id2 are
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# specialized to `func(str) str`.
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#
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# In:
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#
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# $id1 = func($x) { # definition site
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# $x
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# }
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# $id2 = func($x) {
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# $x + $x
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# }
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#
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# $generate = func($idn) {
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# fmt.printf("%s %d",
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# $idn("foo"), # 1 call site, 2 calls
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# $idn(42)
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# )
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# }
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#
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# $foo = iter.map([$id1, $id2,], $generate)
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#
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# $idn cannot be given a monomorphic type, since it is used both as a
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# `func(str) str` and as a `func(int) int`. Therefore, $generate cannot be
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# given a monomorphic type either, and neither can the call to iter.map.
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import "fmt"
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import "iter"
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# function expression
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$id1 = func($x) { # definition site
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$x
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}
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$id2 = func($x) {
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$x + $x
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}
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#$str = $id1("foo")
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#$int = $id1(42)
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$generate = func($idn) {
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fmt.printf("%s %d",
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$idn("foo"), # 1 call site, 2 calls
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$idn(42)
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)
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}
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# this code should be rejected during type unification
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$foo = iter.map([$id1, $id2,], $generate)
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$name = $foo[0] || "fail"
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test "${name}" {}
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-- OUTPUT --
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# err: errUnify: unify error with: param(idn): type error: str != int
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