Files
sanderling/internal/replay/runs_decode.go
T

206 lines
5.7 KiB
Go

package replay
import (
"bufio"
"encoding/json"
"errors"
"fmt"
"io/fs"
"os"
"path/filepath"
"time"
"github.com/priyanshujain/sanderling/internal/trace"
)
func readMeta(runDirectory string) (trace.Meta, error) {
body, err := os.ReadFile(filepath.Join(runDirectory, "meta.json"))
if err != nil {
return trace.Meta{}, fmt.Errorf("read meta: %w", err)
}
var meta trace.Meta
if err := json.Unmarshal(body, &meta); err != nil {
return trace.Meta{}, fmt.Errorf("decode meta: %w", err)
}
return meta, nil
}
func tallyTrace(tracePath string) (steps, violations int, err error) {
file, err := os.Open(tracePath)
if err != nil {
if errors.Is(err, fs.ErrNotExist) {
return 0, 0, nil
}
return 0, 0, fmt.Errorf("open trace: %w", err)
}
defer file.Close()
scanner := bufio.NewScanner(file)
scanner.Buffer(make([]byte, 64*1024), maxScanTokenSize)
for scanner.Scan() {
line := scanner.Bytes()
if len(line) == 0 {
continue
}
var partial struct {
Violations []string `json:"violations,omitempty"`
}
if err := json.Unmarshal(line, &partial); err != nil {
return 0, 0, fmt.Errorf("decode step: %w", err)
}
steps++
violations += len(partial.Violations)
}
if err := scanner.Err(); err != nil {
return 0, 0, fmt.Errorf("scan trace: %w", err)
}
return steps, violations, nil
}
// violationAttribution maps one recorded violation to the step the marker
// belongs on: the causing step its witness names, falling back to the step
// whose trace line carries it (the detection step) for witnesses written
// before the step field existed.
type violationAttribution struct {
attributedStep int
detectedStep int
}
func decodeStepSummary(line []byte) (StepSummary, []violationAttribution, error) {
var partial struct {
Index int `json:"step"`
Timestamp time.Time `json:"timestamp"`
Screen string `json:"screen,omitempty"`
NextAction *struct {
Kind string `json:"kind"`
X int `json:"x,omitempty"`
Y int `json:"y,omitempty"`
FromX int `json:"from_x,omitempty"`
FromY int `json:"from_y,omitempty"`
ToX int `json:"to_x,omitempty"`
ToY int `json:"to_y,omitempty"`
Key string `json:"key,omitempty"`
Text string `json:"text,omitempty"`
Selector string `json:"selector,omitempty"`
DurationMillis int `json:"duration_millis,omitempty"`
} `json:"next_action,omitempty"`
Exceptions []json.RawMessage `json:"exceptions,omitempty"`
Violations []string `json:"violations,omitempty"`
Witnesses map[string]struct {
Step int `json:"step"`
} `json:"witnesses,omitempty"`
}
if err := json.Unmarshal(line, &partial); err != nil {
return StepSummary{}, nil, fmt.Errorf("decode step: %w", err)
}
var attributions []violationAttribution
for _, name := range partial.Violations {
attribution := violationAttribution{
attributedStep: partial.Index,
detectedStep: partial.Index,
}
if witness, ok := partial.Witnesses[name]; ok && witness.Step > 0 {
attribution.attributedStep = witness.Step
}
attributions = append(attributions, attribution)
}
summary := StepSummary{
Index: partial.Index,
Timestamp: partial.Timestamp,
Screen: partial.Screen,
HasExceptions: len(partial.Exceptions) > 0,
}
if partial.NextAction != nil {
summary.ActionKind = partial.NextAction.Kind
switch partial.NextAction.Kind {
case "Tap", "DoubleTap":
if partial.NextAction.Selector != "" {
summary.ActionLabel = partial.NextAction.Selector
} else if partial.NextAction.Text != "" {
summary.ActionLabel = partial.NextAction.Text
} else if partial.NextAction.X != 0 || partial.NextAction.Y != 0 {
summary.ActionLabel = fmt.Sprintf("(%d,%d)", partial.NextAction.X, partial.NextAction.Y)
}
case "InputText":
summary.ActionLabel = fmt.Sprintf("%q", partial.NextAction.Text)
case "Swipe":
summary.ActionLabel = swipeDirectionLabel(
partial.NextAction.FromX, partial.NextAction.FromY,
partial.NextAction.ToX, partial.NextAction.ToY,
)
case "PressKey":
summary.ActionLabel = partial.NextAction.Key
case "Wait":
if partial.NextAction.DurationMillis > 0 {
summary.ActionLabel = fmt.Sprintf("%dms", partial.NextAction.DurationMillis)
}
}
}
return summary, attributions, nil
}
// markViolations sets HasViolations on the step each attribution points at.
// The marker goes on the causing step; when that index is missing from the
// trace the detection step keeps it. Duplicate indices (a finalize line echoes
// the last step's index) resolve to the first occurrence, the real step.
func markViolations(steps []StepSummary, attributions []violationAttribution) {
if len(attributions) == 0 {
return
}
positionOf := make(map[int]int, len(steps))
for position, step := range steps {
if _, ok := positionOf[step.Index]; !ok {
positionOf[step.Index] = position
}
}
for _, attribution := range attributions {
position, ok := positionOf[attribution.attributedStep]
if !ok {
position, ok = positionOf[attribution.detectedStep]
if !ok {
continue
}
}
steps[position].HasViolations = true
}
}
func swipeDirectionLabel(fromX, fromY, toX, toY int) string {
dx := toX - fromX
dy := toY - fromY
absX := dx
if absX < 0 {
absX = -absX
}
absY := dy
if absY < 0 {
absY = -absY
}
if absY >= absX {
if dy < 0 {
return "up"
}
return "down"
}
if dx < 0 {
return "left"
}
return "right"
}
func validRunID(id string) bool {
if id == "" || id == "." || id == ".." {
return false
}
for _, r := range id {
switch {
case r >= 'a' && r <= 'z':
case r >= 'A' && r <= 'Z':
case r >= '0' && r <= '9':
case r == '-' || r == '_' || r == '.':
default:
return false
}
}
return true
}