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gasm-sdk/format/expansion_test.go
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// Copyright (c) 2026 Petr Balvín <opensource@petrbalvin.org> (https://petrbalvin.org)
// SPDX-License-Identifier: BSD-3-Clause
package format
import (
"slices"
"strings"
"testing"
"sourcedock.dev/petrbalvin/gasm-sdk/parser"
)
// TestFormatPreservesMacroAdjacency pins the distinction the macro language
// draws from the source's layout: a '(' glued to a #define name makes the
// macro parameterised, while one separated by a space leaves it an object
// macro whose body happens to open with a parenthesis. Both spellings are
// valid input and each must format to itself, because swapping one for the
// other changes what every use of the macro expands to.
func TestFormatPreservesMacroAdjacency(t *testing.T) {
for _, in := range []string{
"#define A(x) x+1\n",
"#define A (x) x+1\n",
"#define A(x) y x y\n",
"#define A ()\n",
} {
if got := Source(in); got != in {
t.Errorf("formatting %q:\n got %q", in, got)
}
}
}
// TestFormatPreservesExpansionSemantics proves the formatter's contract on
// the assembly path: a file the expander reads cleanly must expand to exactly
// the same statements after formatting. Each case is a macro shape whose
// meaning lives in the source's layout, where a formatter that only counts
// tokens cannot see the difference it destroys.
func TestFormatPreservesExpansionSemantics(t *testing.T) {
cases := []struct {
name string
src string
}{
{
// An object macro whose body opens with a parenthesis: gluing the
// '(' to the name would turn it into a parameterised one, and the
// bare use would stop expanding at all.
name: "object macro with parenthesised body",
src: "#define M (BX)\n" +
"TEXT ·f(SB), $0\n" +
"\tMOVL M, AX\n" +
"\tRET\n",
},
{
// A zero-argument macro invoked on a line whose mnemonic padding
// opens a gap before the '(': the invocation must still expand,
// because the parentheses are tokens however far apart.
name: "zero-argument macro with alignment padding",
src: "#define A() ADD $1, R0\n" +
"TEXT ·f(SB), $0\n" +
"\tA()\n" +
"\tRET\n",
},
{
// The arm64 style: a macro body written across continuations
// without ';' separators. The expansion splits the body at the
// line boundaries, so flattening the continuations would fuse two
// instructions into one operand list.
name: "continuation body without semicolons",
src: "#define M() \\\n" +
"\tADD $1, R0 \\\n" +
"\tSUB $2, R1\n" +
"TEXT ·f(SB), $0\n" +
"\tM()\n" +
"\tRET\n",
},
{
// The mixed style of the runtime sources: continuations that also
// carry ';' separators inside some of their lines.
name: "continuation body with semicolons",
src: "#define PAIR(v) \\\n" +
"\tADD $v, R0; \\\n" +
"\tSUB $v, R1\n" +
"TEXT ·f(SB), $0\n" +
"\tPAIR(3)\n" +
"\tRET\n",
},
{
// A parameterised macro whose formal list itself spans a
// continuation: the body opens on the next line, and the formal
// list must stay glued to the name.
name: "continuation after the formal list",
src: "#define M(a, b) \\\n" +
"\tADD $a, b\n" +
"TEXT ·f(SB), $0\n" +
"\tM(1, R0)\n" +
"\tRET\n",
},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
out := Source(tc.src)
if again := Source(out); again != out {
t.Fatalf("not idempotent:\n%s", again)
}
assertSameExpansion(t, tc.src, out)
})
}
}
// assertSameExpansion expands src and formatted with the macro machinery and
// compares the statement sequences they produce.
func assertSameExpansion(t *testing.T, src, formatted string) {
t.Helper()
before, errs := parser.ParseWithOptions("in.s", src, parser.Options{Expand: true})
if len(errs) > 0 {
t.Fatalf("source does not expand: %v", errs)
}
after, errs := parser.ParseWithOptions("out.s", formatted, parser.Options{Expand: true})
if len(errs) > 0 {
t.Fatalf("formatted source does not expand: %v\n%s", errs, formatted)
}
want, got := stmtSignature(before), stmtSignature(after)
if !slices.Equal(got, want) {
t.Fatalf("expansion changed:\n--- before ---\n%q\n--- after ---\n%q\n%s", want, got, formatted)
}
}
// TestContinuationBodyNotFlattened pins the rendered spelling of a
// continuation body directly: the backslash boundaries the input carried are
// the canonical form, not a flattened single line.
func TestContinuationBodyNotFlattened(t *testing.T) {
in := "#define M() \\\n\tADD $1, R0 \\\n\tSUB $2, R1\n"
if got := Source(in); got != in {
t.Fatalf("continuation body must render to itself:\n got %q\nwant %q", got, in)
}
if strings.Contains(strings.ReplaceAll(Source(in), "\\\n", ""), "ADD $1, R0 SUB") {
t.Fatal("continuation body was flattened into one physical line")
}
}