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// Package cover implements AWK code coverage and reporting.
package cover
import (
"fmt"
"os"
"path/filepath"
"strconv"
"github.com/benhoyt/goawk/internal/ast"
"github.com/benhoyt/goawk/internal/parseutil"
"github.com/benhoyt/goawk/lexer"
)
const ArrayName = "__COVER"
type Mode int
const (
ModeUnspecified Mode = iota
ModeSet
ModeCount
)
func (m Mode) String() string {
switch m {
case ModeSet:
return "set"
case ModeCount:
return "count"
default:
return fmt.Sprintf("<unknown mode %d>", m)
}
}
type Cover struct {
mode Mode
append bool
fileReader *parseutil.FileReader
trackedBlocks []trackedBlock
}
type trackedBlock struct {
start lexer.Position
end lexer.Position
path string
numStmts int
}
func New(mode Mode, append bool, fileReader *parseutil.FileReader) *Cover {
return &Cover{
mode: mode,
append: append,
fileReader: fileReader,
}
}
// Annotate annotates the program with coverage tracking code.
func (cover *Cover) Annotate(prog *ast.Program) {
prog.Begin = cover.annotateStmtsList(prog.Begin)
prog.Actions = cover.annotateActions(prog.Actions)
prog.End = cover.annotateStmtsList(prog.End)
prog.Functions = cover.annotateFunctions(prog.Functions)
}
// WriteProfile writes coverage data to a file at the given path.
func (cover *Cover) WriteProfile(path string, data map[string]interface{}) error {
// 1a. If file doesn't exist - create and write cover mode line
// 1b. If file exists and coverappend=true - open it for writing in append mode
// 1c. If file exists and coverappend=false - truncate it and follow 1a.
// 2. Write all cover data lines
dataInts, err := dataToInts(data)
if err != nil {
return err
}
isNewFile := true
var f *os.File
if _, err := os.Stat(path); os.IsNotExist(err) {
f, err = os.OpenFile(path, os.O_CREATE|os.O_WRONLY|os.O_APPEND, 0644)
if err != nil {
return err
}
} else if err == nil {
// file exists
fileOpt := os.O_TRUNC
if cover.append {
isNewFile = false
fileOpt = os.O_APPEND
}
f, err = os.OpenFile(path, os.O_WRONLY|fileOpt, 0644)
if err != nil {
return err
}
} else {
return err
}
if isNewFile {
_, err := fmt.Fprintf(f, "mode: %s\n", cover.mode)
if err != nil {
return err
}
}
for i, block := range cover.trackedBlocks {
_, err := fmt.Fprintf(f, "%s:%d.%d,%d.%d %d %d\n",
toAbsolutePath(block.path),
block.start.Line, block.start.Column,
block.end.Line, block.end.Column,
block.numStmts, dataInts[i+1],
)
if err != nil {
return err
}
}
return nil
}
func dataToInts(data map[string]interface{}) (map[int]int, error) {
res := make(map[int]int)
for k, v := range data {
ki, err := strconv.Atoi(k)
if err != nil {
return nil, fmt.Errorf("non-int index in data: %s", k)
}
vf, ok := v.(float64)
if !ok {
return nil, fmt.Errorf("non-float64 value in data: %v", v)
}
res[ki] = int(vf)
}
return res, nil
}
func (cover *Cover) annotateActions(actions []*ast.Action) []*ast.Action {
if actions == nil {
return nil
}
res := make([]*ast.Action, 0, len(actions))
for _, action := range actions {
action.Stmts = cover.annotateStmts(action.Stmts)
res = append(res, action)
}
return res
}
func (cover *Cover) annotateFunctions(functions []*ast.Function) []*ast.Function {
if functions == nil {
return nil
}
res := make([]*ast.Function, 0, len(functions))
for _, function := range functions {
function.Body = cover.annotateStmts(function.Body)
res = append(res, function)
}
return res
}
func (cover *Cover) annotateStmtsList(stmtsList []ast.Stmts) []ast.Stmts {
if stmtsList == nil {
return nil
}
res := make([]ast.Stmts, 0, len(stmtsList))
for _, stmts := range stmtsList {
res = append(res, cover.annotateStmts(stmts))
}
return res
}
// annotateStmts takes a list of statements and adds counters to the beginning of
// each basic block at the top level of that list. For instance, given
//
// S1
// if cond {
// S2
// }
// S3
//
// counters will be added before S1,S2,S3.
func (cover *Cover) annotateStmts(stmts ast.Stmts) ast.Stmts {
var res ast.Stmts
var trackedBlockStmts []ast.Stmt
for _, stmt := range stmts {
blockEnds := true
switch s := stmt.(type) {
case *ast.IfStmt:
s.Body = cover.annotateStmts(s.Body)
s.Else = cover.annotateStmts(s.Else)
case *ast.ForStmt:
s.Body = cover.annotateStmts(s.Body)
case *ast.ForInStmt:
s.Body = cover.annotateStmts(s.Body)
case *ast.WhileStmt:
s.Body = cover.annotateStmts(s.Body)
case *ast.DoWhileStmt:
s.Body = cover.annotateStmts(s.Body)
case *ast.BlockStmt:
s.Body = cover.annotateStmts(s.Body)
default:
blockEnds = false
}
trackedBlockStmts = append(trackedBlockStmts, stmt)
if blockEnds {
res = append(res, cover.trackStatement(trackedBlockStmts))
res = append(res, trackedBlockStmts...)
trackedBlockStmts = []ast.Stmt{}
}
}
if len(trackedBlockStmts) > 0 {
res = append(res, cover.trackStatement(trackedBlockStmts))
res = append(res, trackedBlockStmts...)
}
return res
}
func endPos(stmt ast.Stmt) lexer.Position {
switch s := stmt.(type) {
case *ast.IfStmt:
return s.BodyStart
case *ast.ForStmt:
return s.BodyStart
case *ast.ForInStmt:
return s.BodyStart
case *ast.WhileStmt:
return s.BodyStart
default:
return s.EndPos()
}
}
func (cover *Cover) trackStatement(stmts []ast.Stmt) ast.Stmt {
start1 := stmts[0].StartPos()
end2 := endPos(stmts[len(stmts)-1])
path, startLine := cover.fileReader.FileLine(start1.Line)
_, endLine := cover.fileReader.FileLine(end2.Line)
cover.trackedBlocks = append(cover.trackedBlocks, trackedBlock{
start: lexer.Position{startLine, start1.Column},
end: lexer.Position{endLine, end2.Column},
path: path,
numStmts: len(stmts),
})
left := &ast.IndexExpr{
Array: ast.ArrayRef(ArrayName, lexer.Position{}),
Index: []ast.Expr{&ast.StrExpr{Value: strconv.Itoa(len(cover.trackedBlocks))}},
}
if cover.mode == ModeCount {
// AST for __COVER[index]++
return &ast.ExprStmt{Expr: &ast.IncrExpr{Expr: left, Op: lexer.INCR}}
}
// AST for __COVER[index] = 1
return &ast.ExprStmt{Expr: &ast.AssignExpr{Left: left, Right: &ast.NumExpr{Value: 1}}}
}
func toAbsolutePath(path string) string {
absPath, err := filepath.Abs(path)
if err != nil {
return path
}
return absPath
}