Protocol method declarations now declare their receiver explicitly as the first parameter — 'self: *Self' (or 'self: Self') — matching the impl method signature, instead of the old implicit-receiver form where the listed params were only the extra args. That asymmetry repeatedly caused confusion over whether the first param was the receiver or an argument. The parser validates the first param is 'self' typed Self/*Self, then strips it, so all downstream lowering and the dispatch ABI are unchanged (impl blocks and call sites are unaffected). A protocol method missing the receiver is now a parse error. Migrated all 129 protocol method signatures across library + examples (+ one inline-sx test in sema.zig) to the explicit form. Updated specs.md + readme.md. New: examples/0418-protocols-explicit-receiver.sx (feature), examples/1190-diagnostics-protocol-missing-receiver.sx (negative/diagnostic).
33 lines
1.1 KiB
Plaintext
33 lines
1.1 KiB
Plaintext
// `xx <pack>` materializes a comptime pack into a runtime slice (issue 0053):
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// the explicit pack→slice bridge. With a `[]Any` target each element is boxed
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// to `Any`; with a `[]P` target each is `xx`-erased to the protocol `P`. This is
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// how you forward a pack to a runtime (`[]Any` / `[]P`) helper.
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#import "modules/std.sx";
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Show :: protocol { show :: (self: *Self) -> string; }
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A :: struct {}
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B :: struct { s: string; }
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impl Show for A { show :: (self: *A) -> string => "A"; }
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impl Show for B { show :: (self: *B) -> string => "B"; }
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count_any :: (items: []Any) -> i64 { return items.len; }
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show_all :: (items: []Show) -> i64 {
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i := 0;
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while i < items.len { print("{}\n", items[i].show()); i = i + 1; }
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return items.len;
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}
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// `..$args` pack → []Any via `xx`.
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fwd_any :: (..$args) -> i64 { return count_any(xx args); }
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// `..xs: Show` pack → []Show via `xx`.
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fwd_show :: (..xs: Show) -> i64 { return show_all(xx xs); }
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main :: () -> i32 {
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print("any={}\n", fwd_any(1, "hi", 2.5)); // 3
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print("show={}\n", fwd_show(A.{}, B.{ s = "x" }, A.{})); // A B A, 3
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0
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}
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