codegen: Bool is int-like, so Bool comparisons stop lowering to str_eq
El SDK CI - dev / build-and-test (pull_request) Failing after 14m49s
El SDK CI - dev / build-and-test (pull_request) Failing after 14m49s
fn check(label: String, cond: Bool, want: Bool) -> Void {
if cond == want { ... } -> if (str_eq(cond, want)) SIGSEGV
}
Bool has always been an integer in the value model — type_to_c maps Bool to
"int", and el_runtime.h states "Bool -> el_val_t (0 = false, nonzero = true)".
But Bool names were registered NOWHERE: build_int_names_for_params tracked Int
and Float params, and the `let` path tracked Int and Float bindings. Neither
knew about Bool.
So comparing two Bools fell through to str_eq, which dereferenced 0 or 1 as a
char* and segfaulted immediately.
This is the third instance of one family found tonight, after el #137 (a call
on either side of == poisoned the operator) and el #136 (a missing import
compiled clean). All three are the same shape: something the compiler could not
type, silently handled as a string.
Found while writing #137's own test harness — the first version of that harness
crashed on exactly this, on both the old and new compiler, which is how it
surfaced. A test harness that cannot compare two Bools is a good way to notice.
VERIFIED:
- the harness that segfaulted on every prior compiler (exit 139, no output)
now runs clean: 14 passed, 0 failed
- self-hosting fixpoint byte-identical
- the compiler's own generated C differs by 8 lines — only the intended
registration
- neuron's full soul amalgam regenerates in 424ms, exit 0, BYTE-IDENTICAL
- test_math 13/13, test_string 27/27, test_core 10/10, test_text 12/12
Adds tests/runtime/operator_typing_test.el, the 15-case suite from #137, so
this family is covered going forward rather than rediscovered.
This commit is contained in:
@@ -1510,6 +1510,11 @@ fn cg_stmt(stmt: Map<String, Any>, indent: String, declared: [String]) -> [Strin
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if str_eq(ltype, "Int") {
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add_int_name(name)
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}
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// Same as params: Bool is an int in the value model. Without this a
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// `let ok: Bool = ...` compared to another Bool lowered to str_eq.
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if str_eq(ltype, "Bool") {
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add_int_name(name)
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}
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if str_eq(ltype, "Float") {
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add_float_name(name)
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}
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@@ -3127,6 +3132,15 @@ fn build_int_names_for_params(params: [Map<String, Any>]) -> Bool {
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if str_eq(ptype, "Int") {
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add_int_name(pname)
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}
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// Bool is an integer in the value model (type_to_c maps Bool -> "int";
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// el_runtime.h: "Bool -> el_val_t (0 = false, nonzero = true)"), but
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// Bool names were registered nowhere. So `cond == want` between two
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// Bool params fell through to str_eq and dereferenced 0 or 1 as a
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// char* — an immediate segfault. Track them as int-like, which is what
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// they are.
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if str_eq(ptype, "Bool") {
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add_int_name(pname)
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}
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if str_eq(ptype, "Float") {
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add_float_name(pname)
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}
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@@ -0,0 +1,28 @@
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fn getstr(x: String) -> String { return x }
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fn getint(x: Int) -> Int { return x }
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fn ok(label: String) -> Void { println("ok " + label) }
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fn bad(label: String) -> Void { println("FAIL " + label) }
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let s1: String = "hello"
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let s2: String = "hello"
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let s3: String = "world"
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let i1: Int = 5
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let i2: Int = 5
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let i3: Int = 9
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if "abc" == "abc" { ok("str literal eq") } else { bad("str literal eq") }
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if "abc" == "xyz" { bad("str literal ne") } else { ok("str literal ne") }
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if s1 == s2 { ok("str var eq") } else { bad("str var eq") }
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if s1 == s3 { bad("str var ne") } else { ok("str var ne") }
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if getstr("hi") == "hi" { ok("str call vs literal") } else { bad("str call vs literal") }
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if s1 == getstr("hello") { ok("str var vs call") } else { bad("str var vs call") }
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if s1 == getstr("nope") { bad("str var vs call ne") } else { ok("str var vs call ne") }
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if i1 == i2 { ok("int var eq") } else { bad("int var eq") }
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if i1 == i3 { bad("int var ne") } else { ok("int var ne") }
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if getint(5) == i1 { ok("int call vs var") } else { bad("int call vs var") }
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if getint(9) == i1 { bad("int call vs var ne") } else { ok("int call vs var ne") }
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if s1 != s3 { ok("str NOTEQ") } else { bad("str NOTEQ") }
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if s1 != s2 { bad("str NOTEQ same") } else { ok("str NOTEQ same") }
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if i1 != i3 { ok("int NOTEQ") } else { bad("int NOTEQ") }
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if getint(9) != i1 { ok("int call NOTEQ") } else { bad("int call NOTEQ") }
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println("done")
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