| name | modern-go |
| description | Modernize Go code by applying version-appropriate idioms and APIs (gofix-style transformations). Scans go.mod for the Go version, then transforms Go source files to use modern patterns—from Go 1.0 through 1.26+. Use when the user says "现代化","现代Go语言", "地道的", "idiomatic", "modernize", "modern-go", "update Go code", "gofix", or wants to upgrade Go idioms. |
modern-go
Modernize Go source code by applying version-appropriate idioms, APIs, and language features. Works like go fix plus additional transformations curated from the Go team's modernize analysis passes and community best practices.
Usage
Invoke this skill when the user asks to modernize Go code. By default, modernize the entire project; the user may specify a file or directory instead.
When invoked:
- Detect the project's Go version from
go.mod (the go directive).
- Find all
.go files in the target scope (excluding vendor/, .git/, testdata/).
- For each file, apply all transformations for versions ≤ the project's Go version, starting from the oldest to the newest.
- After all transformations, print a summary of what was changed and what was skipped.
If the user specifies a file or directory, limit the scope to that path.
Transformation Catalog
Each transformation includes a Go version gate—only apply when the project's go.mod version ≥ that version. Never apply a transformation that requires a version higher than the project declares.
Go 1.0+ — time.Since
| Before | After |
|---|
time.Now().Sub(start) | time.Since(start) |
elapsed := time.Now().Sub(start)
elapsed := time.Since(start)
Go 1.8+ — time.Until
| Before | After |
|---|
deadline.Sub(time.Now()) | time.Until(deadline) |
remaining := deadline.Sub(time.Now())
remaining := time.Until(deadline)
Go 1.10+ — strings.Builder (loop concatenation)
| Before | After |
|---|
s += item in a loop | var b strings.Builder; b.WriteString(item) |
s := ""
for _, item := range items {
s += item
}
var b strings.Builder
for _, item := range items {
b.WriteString(item)
}
s := b.String()
Only when += concatenation happens inside a loop.
Go 1.13+ — errors.Is
| Before | After |
|---|
err == io.EOF | errors.Is(err, io.EOF) |
if err == io.EOF {
return
}
if errors.Is(err, io.EOF) {
return
}
Go 1.17+ — //go:build constraints (plusbuild)
| Before | After |
|---|
// +build linux + //go:build linux (both present) | keep only //go:build linux |
package foo
package foo
The plusbuild modernizer removes obsolete // +build constraint lines once the equivalent //go:build line is present (the //go:build syntax landed in Go 1.17). Only strip the old line when a matching //go:build already exists — never drop the sole constraint.
Go 1.17+ — unsafe.Add / unsafe.Slice (unsafefuncs)
| Before | After |
|---|
unsafe.Pointer(uintptr(ptr) + uintptr(n)) | unsafe.Add(ptr, n) |
(*[n]T)(unsafe.Pointer(p))[:] slice construction | unsafe.Slice(p, n) |
p2 := unsafe.Pointer(uintptr(ptr) + uintptr(offset))
p2 := unsafe.Add(ptr, offset)
s := (*[1 << 30]byte)(unsafe.Pointer(p))[:n:n]
s := unsafe.Slice(p, n)
The unsafefuncs modernizer (gopls v0.22.0) rewrites error-prone uintptr pointer math into unsafe.Add / unsafe.Slice, which the compiler and go vet understand as GC-safe.
Go 1.18+ — any
| Before | After |
|---|
interface{} | any |
func decode(v interface{}) error { ... }
func decode(v any) error { ... }
Go 1.18+ — strings.Cut
| Before | After |
|---|
i := strings.Index(s, sep); ... s[:i], s[i+len(sep):] | key, val, found := strings.Cut(s, sep) |
if i := strings.Index(s, "="); i >= 0 {
key, val := s[:i], s[i+1:]
}
if key, val, found := strings.Cut(s, "="); found {
...
}
Go 1.18+ — bytes.Cut
| Before | After |
|---|
i := bytes.Index(b, sep); ... b[:i], b[i+len(sep):] | before, after, found := bytes.Cut(b, sep) |
if i := bytes.Index(b, sep); i >= 0 {
before, after := b[:i], b[i+len(sep):]
}
before, after, found := bytes.Cut(b, sep)
Go 1.19+ — fmt.Appendf
| Before | After |
|---|
buf = append(buf, fmt.Sprintf(...)...) | buf = fmt.Appendf(buf, ...) |
buf = append(buf, fmt.Sprintf("x=%d", x)...)
buf = fmt.Appendf(buf, "x=%d", x)
Go 1.19+ — Type-safe atomics (atomictypes)
| Before | After |
|---|
atomic.StoreInt32(&v, 1) / atomic.LoadInt32(&v) | var v atomic.Int32; v.Store(1); v.Load() |
atomic.AddInt64(&v, 1) | var v atomic.Int64; v.Add(1) |
atomic.Value + type assertion | atomic.Pointer[T] |
var ready int32
atomic.StoreInt32(&ready, 1)
if atomic.LoadInt32(&ready) == 1 { ... }
var ready atomic.Int32
ready.Store(1)
if ready.Load() == 1 { ... }
var cache atomic.Value
cache.Store(&Config{})
cfg := cache.Load().(*Config)
var cache atomic.Pointer[Config]
cache.Store(&Config{})
cfg := cache.Load()
The atomictypes modernizer (gopls v0.22.0, AtomicTypesAnalyzer) rewrites both the variable declaration and every call site. Typed wrappers (atomic.Int32/Int64/Uint32/Uint64/Bool/Pointer[T]) have identical performance but prevent accidental non-atomic access and fix 64-bit alignment crashes on 32-bit architectures.
Go 1.20+ — strings.Clone
| Before | After |
|---|
string([]byte(s)) | strings.Clone(s) |
s2 := string([]byte(s))
s2 := strings.Clone(s)
Go 1.20+ — bytes.Clone
| Before | After |
|---|
make([]byte, len(src)); copy(dst, src) | bytes.Clone(src) |
dst := make([]byte, len(src))
copy(dst, src)
dst := bytes.Clone(src)
Go 1.20+ — strings.CutPrefix / strings.CutSuffix
| Before | After |
|---|
if strings.HasPrefix(s, p) { s = s[len(p):] } | if rest, ok := strings.CutPrefix(s, p); ok { s = rest } |
if strings.HasSuffix(s, sf) { s = s[:len(s)-len(sf)] } | if rest, ok := strings.CutSuffix(s, sf); ok { s = rest } |
if strings.HasPrefix(s, "pre_") {
s = s[len("pre_"):]
}
if rest, ok := strings.CutPrefix(s, "pre_"); ok {
s = rest
}
if strings.HasSuffix(s, ".txt") {
s = s[:len(s)-len(".txt")]
}
if rest, ok := strings.CutSuffix(s, ".txt"); ok {
s = rest
}
Go 1.20+ — errors.Join
| Before | After |
|---|
fmt.Errorf("...: %w: %w", err1, err2) | errors.Join(err1, err2) |
return fmt.Errorf("load config: %w: %w", err1, err2)
return errors.Join(fmt.Errorf("load config"), err1, err2)
Go 1.20+ — context.WithCancelCause
| Before | After |
|---|
ctx, cancel := context.WithCancel(parent) + bare cancel() | ctx, cancel := context.WithCancelCause(parent) + cancel(err) |
ctx, cancel := context.WithCancel(parent)
cancel()
ctx, cancel := context.WithCancelCause(parent)
cancel(ErrShutdown)
Go 1.21+ — min / max
| Before | After |
|---|
if a < b { v = a } else { v = b } | v = min(a, b) |
if a > b { v = a } else { v = b } | v = max(a, b) |
if x < lo { x = lo }; if x > hi { x = hi } | x = min(max(x, lo), hi) |
lo := a
if b < lo {
lo = b
}
lo := min(a, b)
if x < 0 {
x = 0
}
if x > 100 {
x = 100
}
x = min(max(x, 0), 100)
Go 1.21+ — clear
| Before | After |
|---|
for k := range m { delete(m, k) } | clear(m) |
for i := range s { s[i] = zero } | clear(s) |
for k := range m {
delete(m, k)
}
clear(m)
for i := range s {
s[i] = 0
}
clear(s)
Go 1.21+ — slices package
| Before | After |
|---|
| Manual loop to find element | slices.Contains(items, target) |
| Loop returning index or -1 | slices.Index(items, target) |
sort.Slice(items, func(i,j int) bool { return items[i] < items[j] }) | slices.SortFunc(items, cmp.Compare) |
| Max/min finding loop | slices.Max(items) / slices.Min(items) |
| Reverse swap loop | slices.Reverse(s) |
| Remove consecutive duplicates loop | slices.Compact(s) |
s[:len(s):len(s)] | slices.Clip(s) |
make([]T, len(src)); copy(dst, src) | slices.Clone(src) |
found := false
for _, x := range items {
if x == target {
found = true
break
}
}
for i, x := range items {
if x == target {
return i
}
}
return -1
sort.Slice(items, func(i, j int) bool { return items[i] < items[j] })
max := items[0]
for _, v := range items[1:] {
if v > max {
max = v
}
}
for i, j := 0, len(s)-1; i < j; i, j = i+1, j-1 {
s[i], s[j] = s[j], s[i]
}
i := 0
for j := 1; j < len(s); j++ {
if s[j] != s[i] {
i++
s[i] = s[j]
}
}
s = s[:i+1]
s = s[:len(s):len(s)]
dst := make([]T, len(src))
copy(dst, src)
Requires importing "slices" and "cmp" (for SortFunc).
Go 1.21+ — slices.Delete / slices.Insert
| Before | After |
|---|
append(s[:i], s[i+1:]...) | slices.Delete(s, i, i+1) |
append(s[:i:i], append([]T{x}, s[i:]...)...) | slices.Insert(s, i, x) |
s = append(s[:i], s[i+1:]...)
s = slices.Delete(s, i, i+1)
s = append(s[:i], append([]T{v}, s[i:]...)...)
s = slices.Insert(s, i, v)
slices.Delete zeroes the tail elements to avoid retaining pointers (the manual append form leaks). Requires importing "slices".
Go 1.21+ — slices.Equal / maps.Equal
| Before | After |
|---|
reflect.DeepEqual(a, b) for comparable slices | slices.Equal(a, b) |
reflect.DeepEqual(m1, m2) for comparable maps | maps.Equal(m1, m2) |
if reflect.DeepEqual(got, want) { ... }
if slices.Equal(got, want) { ... }
Faster and type-safe, with no reflection. Only for element types that are directly comparable (use slices.EqualFunc / maps.EqualFunc otherwise). Requires importing "slices" or "maps".
Go 1.21+ — maps package
| Before | After |
|---|
| Manual loop to copy a map | maps.Clone(m) |
for k, v := range src { dst[k] = v } | maps.Copy(dst, src) |
| Loop + conditional delete | maps.DeleteFunc(m, predicate) |
dst := make(map[K]V)
for k, v := range src {
dst[k] = v
}
for k, v := range src {
dst[k] = v
}
for k, v := range m {
if v == 0 {
delete(m, k)
}
}
Requires importing "maps".
Go 1.22+ — slices.Concat (appendclipped)
| Before | After |
|---|
append(append([]T(nil), s1...), s2...) | slices.Concat(s1, s2) |
append(slices.Clip(s1), s2...) for a fresh result | slices.Concat(s1, s2) |
all := append(append([]int(nil), a...), b...)
all := slices.Concat(a, b)
merged := append(append(append([]string(nil), x...), y...), z...)
merged := slices.Concat(x, y, z)
The appendclipped modernizer replaces nested append concatenation of multiple slices with slices.Concat, which allocates a fresh, correctly-sized result. slices.Concat was added in Go 1.22. Requires importing "slices". Only apply when the pattern builds a new slice (starts from []T(nil) or a clipped base) — not when it appends in place to an existing slice.
Go 1.21+ — sync.OnceFunc / sync.OnceValue
| Before | After |
|---|
var once sync.Once; once.Do(func() { ... }) | f := sync.OnceFunc(func() { ... }); f() |
sync.Once + stored result variable | sync.OnceValue(func() T { return val }) |
var once sync.Once
func init() { once.Do(func() { setup() }) }
var initOnce = sync.OnceFunc(func() { setup() })
var once sync.Once
var cfg *Config
func getConfig() *Config {
once.Do(func() { cfg = loadConfig() })
return cfg
}
var getConfig = sync.OnceValue(func() *Config { return loadConfig() })
Go 1.21+ — context.AfterFunc
| Before | After |
|---|
go func() { <-ctx.Done(); cleanup() }() | stop := context.AfterFunc(ctx, cleanup) |
go func() {
<-ctx.Done()
conn.Close()
}()
stop := context.AfterFunc(ctx, func() { conn.Close() })
Go 1.21+ — context.WithTimeoutCause / WithDeadlineCause
| Before | After |
|---|
context.WithTimeout(parent, d) | context.WithTimeoutCause(parent, d, err) |
ctx, cancel := context.WithTimeout(parent, 5*time.Second)
ctx, cancel := context.WithTimeoutCause(parent, 5*time.Second, ErrTimeout)
Only apply when a meaningful cause error is available.
Go 1.22+ — Range over integer
| Before | After |
|---|
for i := 0; i < n; i++ { ... } | for i := range n { ... } |
for i := 0; i < n; i++ { ... } (i unused) | for range n { ... } |
for i := 0; i < len(items); i++ {
process(i, items[i])
}
for i := range len(items) {
process(i, items[i])
}
for i := 0; i < n; i++ {
doWork()
}
for range n {
doWork()
}
Go 1.22+ — Loop variable shadowing removal
| Before | After |
|---|
for _, x := range items { x := x; ... } | for _, x := range items { ... } |
for _, x := range items {
x := x
go func() { use(x) }()
}
for _, x := range items {
go func() { use(x) }()
}
The x := x capture idiom is redundant since Go 1.22.
Go 1.22+ — cmp.Or
| Before | After |
|---|
Chain of if v == "" { v = fallback } | v := cmp.Or(val, fallback1, fallback2, ...) |
name := os.Getenv("NAME")
if name == "" {
name = os.Getenv("USER")
}
if name == "" {
name = "anonymous"
}
name := cmp.Or(os.Getenv("NAME"), os.Getenv("USER"), "anonymous")
Requires importing "cmp".
Go 1.22+ — reflect.TypeFor
| Before | After |
|---|
reflect.TypeOf((*T)(nil)).Elem() | reflect.TypeFor[T]() |
t := reflect.TypeOf((*MyType)(nil)).Elem()
t := reflect.TypeFor[MyType]()
Go 1.22+ — Enhanced http.ServeMux
| Before | After |
|---|
mux.HandleFunc("/api/", h) + manual path parsing | mux.HandleFunc("GET /api/{id}", h) + r.PathValue("id") |
mux.HandleFunc("/api/", func(w http.ResponseWriter, r *http.Request) {
id := strings.TrimPrefix(r.URL.Path, "/api/")
...
})
mux.HandleFunc("GET /api/{id}", func(w http.ResponseWriter, r *http.Request) {
id := r.PathValue("id")
...
})
Go 1.22+ — math/rand/v2
| Before | After |
|---|
rand.Intn(n) | rand.IntN(n) |
rand.Int63n(n) / rand.Int31n(n) | rand.Int64N(n) / rand.Int32N(n) |
rand.Seed(...) + global funcs | drop Seed; use auto-seeded top-level funcs or rand.N[T] |
import "math/rand"
n := rand.Intn(100)
import "math/rand/v2"
n := rand.IntN(100)
d := time.Duration(rand.Int63n(int64(max)))
d := rand.N(max)
math/rand/v2 (Go 1.22) drops the deprecated global Seed (top-level funcs are auto-seeded) and adds generic rand.N[T]. Semantic migration: the random stream differs from math/rand, so do not apply where reproducibility from a fixed seed matters. Flag as a suggestion, not auto-apply.
Go 1.23+ — Range over function (iterators)
| Before | After |
|---|
Custom func Walk(yield func(T) bool) callback traversal | func Walk() iter.Seq[T] returning an iterator |
func (t *Tree) Each(fn func(v int)) {
for _, v := range t.values {
fn(v)
}
}
func (t *Tree) All() iter.Seq[int] {
return func(yield func(int) bool) {
for _, v := range t.values {
if !yield(v) { return }
}
}
}
Adopt the iter.Seq[T] / iter.Seq2[K,V] protocol (Go 1.23) so custom containers compose with range, slices.Collect, maps.Keys, etc. Requires importing "iter". Flag as a suggestion — it reshapes the API surface.
Go 1.23+ — Iterator helpers
| Before | After |
|---|
var keys []K; for k := range m { keys = append(keys, k) } | slices.Collect(maps.Keys(m)) |
var vals []V; for _, v := range m { vals = append(vals, v) } | slices.Collect(maps.Values(m)) |
var keys []string
for k := range m {
keys = append(keys, k)
}
keys := slices.Collect(maps.Keys(m))
var vals []int
for _, v := range m {
vals = append(vals, v)
}
vals := slices.Collect(maps.Values(m))
Requires importing "slices" and "maps".
Go 1.23+ — strings.SplitSeq / strings.FieldsSeq
| Before | After |
|---|
for _, part := range strings.Split(s, sep) | for part := range strings.SplitSeq(s, sep) |
for _, field := range strings.Fields(s) | for field := range strings.FieldsSeq(s) |
for _, part := range strings.Split(line, ",") {
process(part)
}
for part := range strings.SplitSeq(line, ",") {
process(part)
}
Only when the loop body does not need the index or the full slice.
Go 1.23+ — bytes.SplitSeq / bytes.FieldsSeq
| Before | After |
|---|
for _, part := range bytes.Split(b, sep) | for part := range bytes.SplitSeq(b, sep) |
for _, part := range bytes.Split(data, sep) {
process(part)
}
for part := range bytes.SplitSeq(data, sep) {
process(part)
}
Go 1.23+ — slices.Backward (slicesbackward)
| Before | After |
|---|
for i := len(s) - 1; i >= 0; i-- { use(s[i]) } | for _, v := range slices.Backward(s) { use(v) } |
| reverse loop needing the index too | for i, v := range slices.Backward(s) { ... } |
for i := len(items) - 1; i >= 0; i-- {
process(items[i])
}
for _, v := range slices.Backward(items) {
process(v)
}
for i := len(items) - 1; i >= 0; i-- {
fmt.Println(i, items[i])
}
for i, v := range slices.Backward(items) {
fmt.Println(i, v)
}
The slicesbackward modernizer (gopls v0.22.0) replaces manual descending-index loops with the slices.Backward iterator. Requires importing "slices". Caveat: the rewrite preserves exact semantics in normal cases, but do not apply it when the loop body mutates the slice length or the index is used for out-of-band arithmetic — those edge cases can become unsound.
Go 1.24+ — t.Context() in tests
| Before | After |
|---|
ctx, cancel := context.WithCancel(context.Background()); defer cancel() | ctx := t.Context() |
func TestFetch(t *testing.T) {
ctx, cancel := context.WithCancel(context.Background())
defer cancel()
result := fetch(ctx)
}
func TestFetch(t *testing.T) {
result := fetch(t.Context())
}
Go 1.24+ — strings.Lines / bytes.Lines
| Before | After |
|---|
bufio.Scanner line loop over a string/buffer | for line := range strings.Lines(s) |
sc := bufio.NewScanner(strings.NewReader(s))
for sc.Scan() {
process(sc.Text())
}
for line := range strings.Lines(s) {
process(strings.TrimSuffix(line, "\n"))
}
strings.Lines / bytes.Lines (Go 1.24) return line iterators — no Scanner setup, no default 64KB token-size limit. Note the yielded line retains its trailing \n, unlike Scanner.Text(); trim it if the old code relied on stripped lines. Only apply for in-memory strings/buffers, not streaming io.Readers.
Go 1.24+ — os.Root (directory-scoped filesystem access)
| Before | After |
|---|
manual filepath.Clean + prefix check to block traversal | root, _ := os.OpenRoot(dir); root.Open(name) |
p := filepath.Join(base, name)
if !strings.HasPrefix(filepath.Clean(p), filepath.Clean(base)+string(os.PathSeparator)) {
return errUnsafePath
}
f, err := os.Open(p)
root, err := os.OpenRoot(base)
if err != nil { return err }
defer root.Close()
f, err := root.Open(name)
os.Root (Go 1.24) confines all operations to a directory tree, rejecting .. and symlink escapes at the syscall layer — far more robust than string prefix checks. Security hardening: flag as a strong suggestion wherever user-controlled paths are joined to a base directory.
Go 1.24+ — omitzero struct tag
| Before | After |
|---|
json:"field,omitempty" (for time.Time, time.Duration, structs, slices, maps) | json:"field,omitzero" |
type Config struct {
Timeout time.Duration `json:"timeout,omitempty"`
Labels []string `json:"labels,omitempty"`
}
type Config struct {
Timeout time.Duration `json:"timeout,omitzero"`
Labels []string `json:"labels,omitzero"`
}
Only for types where omitempty fails: time.Time, time.Duration, structs, slices, maps. Flag as suggestion, not auto-apply.
Go 1.24+ — b.Loop() in benchmarks
| Before | After |
|---|
for i := 0; i < b.N; i++ { ... } | for b.Loop() { ... } |
func BenchmarkHash(b *testing.B) {
for i := 0; i < b.N; i++ {
hash(input)
}
}
func BenchmarkHash(b *testing.B) {
for b.Loop() {
hash(input)
}
}
Go 1.25+ — sync.WaitGroup.Go
| Before | After |
|---|
wg.Add(1); go func() { defer wg.Done(); fn() }() | wg.Go(fn) |
var wg sync.WaitGroup
for _, item := range items {
wg.Add(1)
go func(item Item) {
defer wg.Done()
process(item)
}(item)
}
wg.Wait()
var wg sync.WaitGroup
for _, item := range items {
wg.Go(func() { process(item) })
}
wg.Wait()
Go 1.26+ — new with expressions
| Before | After |
|---|
v := val; &v | new(val) |
Helper func ptr[T any](v T) *T { return &v } | new(val) directly |
timeout := 30
debug := true
cfg := Config{
Timeout: &timeout,
Debug: &debug,
}
cfg := Config{
Timeout: new(30),
Debug: new(true),
}
func ptr[T any](v T) *T { return &v }
cfg := Config{Count: ptr(10)}
cfg := Config{Count: new(10)}
Go 1.26+ — errors.AsType
| Before | After |
|---|
var t *T; errors.As(err, &t) | t, ok := errors.AsType[*T](err) |
var pathErr *os.PathError
if errors.As(err, &pathErr) {
log.Println(pathErr.Path)
}
if pathErr, ok := errors.AsType[*os.PathError](err); ok {
log.Println(pathErr.Path)
}
Go 1.27+ — Embedded field literals (embedlit)
| Before | After |
|---|
T{U: U{x: 1}} (redundant embedded-type specifier) | T{x: 1} |
type Base struct {
ID int
Name string
}
type User struct {
Base
Age int
}
u := User{
Base: Base{ID: 1, Name: "alice"},
Age: 30,
}
u := User{
ID: 1,
Name: "alice",
Age: 30,
}
The embedlit modernizer (gopls v0.22.0, EmbedLitAnalyzer) strips redundant embedded-struct field-type specifiers from composite literals. Go 1.27 lets you initialize promoted fields directly without the nested literal. Only apply when the promoted field names don't collide with the outer struct's own fields.
Operation Phases
Phase 1: Detect
Read go.mod to extract the Go version (go 1.xx line). If no go.mod is found, default to go 1.21.
Phase 2: Gather files
Find all .go files in the target scope (project root, or user-specified file/directory). Exclude vendor/, .git/, and testdata/ directories.
Phase 3: Apply transformations
For each .go file, apply all transformations for versions ≤ the detected Go version. Process files sequentially. For each file:
- Read the file content.
- Identify applicable transformations by scanning for the "Before" patterns.
- Apply each transformation using the Edit tool.
- Run
goimports -w (or gofmt -w) on the file after all edits.
Never apply a transformation that requires a version higher than the project's Go version.
Phase 4: Report
Print a summary table showing:
- File: path relative to project root
- Transformations applied: list of transformation names per file
- Total files modified and total transformations applied
- Skipped transformations (available but not applicable due to version constraints) and their required Go version
Example Summary Output
## Modernization Summary
| File | Transformations |
|---|---|
| main.go | any, strings.Cut, min/max (2 occurrences) |
| pkg/handler.go | range over int (3), slices.Contains, t.Context() |
| pkg/util.go | new(expr) (1), errors.AsType → errors.Is |
**3 files modified, 10 transformations applied**
Skipped (requires higher Go version):
- new(expr): requires go 1.26 (project is go 1.24)
- WaitGroup.Go: requires go 1.25 (project is go 1.24)
Safety Rules
- Never apply transformations that change semantics in edge cases without the user's awareness.
- Do not apply
omitzero blindly—it changes JSON serialization behavior; flag it as a suggestion instead.
- Treat semantic migrations as suggestions, not auto-applies:
math/rand/v2 (changes the random stream), iter.Seq iterators (reshapes the API), os.Root (behavior/error-path change). Point them out and let the user opt in.
- When replacing a
bufio.Scanner loop with strings.Lines/bytes.Lines, remember the yielded line keeps its trailing \n; add a TrimSuffix if the old code relied on Scanner.Text() semantics.
- Do not apply
strings.SplitSeq or bytes.SplitSeq when the loop body references the index or the full slice elsewhere.
- Do not apply
strings.Builder if the concatenation happens outside a loop (single += is fine).
- When a transformation requires a new import, ensure the import is added to the file.
- After all edits, run
goimports -w on each modified file to clean up imports.
- If
goimports is not available, fall back to gofmt -w.
- If the project has no
go.mod, ask the user for the target Go version before proceeding.
Automated tooling (Go 1.27+)
Many of these transformations are now shipped as official modernizers in gopls/go fix. On Go 1.27+ the whole set can be applied across a module with:
go fix ./...
gopls v0.22.0 added four notable passes covered above:
| Modernizer | Min Go | Transformation |
|---|
unsafefuncs | 1.17 | uintptr pointer math → unsafe.Add / unsafe.Slice |
atomictypes | 1.19 | primitive atomic.* funcs → typed atomic.Int32/Pointer[T] wrappers |
slicesbackward | 1.23 | descending-index loops → slices.Backward iterator |
embedlit | 1.27 | redundant embedded-field literals → promoted-field init |
Other modernizers in the same suite that this catalog covers: minmax, efaceany, fmtappendf, stringscut, stringsseq, sortslice/slicescontains, mapsloop, stditerators, forvar, rangeint, testingcontext, bloop, waitgroup, newexpr, errorsastype, appendclipped (→ slices.Concat), and plusbuild (→ drop obsolete // +build).
To disable an over-eager pass (e.g. slicesbackward rewriting loops that mutate the slice), scope the run with -fixes or exclude that analyzer in your editor's gopls settings.