Files
go-caatsm/internal/parsers/aviation_parser.go
T
windyboy bfba859630 refactor: Improve clean function in aviation_parser.go
The code changes in aviation_parser.go refactor the clean function to improve its functionality. The changes include updating variable names for clarity and handling the case where the bodyOnly match is empty. This refactor enhances the cleanliness and readability of the code.
2024-07-22 08:49:21 +08:00

271 lines
8.0 KiB
Go

package parsers
import (
"caatsm/internal/config"
"caatsm/internal/domain"
"caatsm/pkg/utils"
"fmt"
"regexp"
"strings"
"time"
)
const (
StartIndicatorPrefix = "ZCZC"
EndHeaderMarker = "."
BeginPartMarker = "BEGIN PART"
)
var (
categoryRegex = regexp.MustCompile(`\(([A-Z]{3})(.*)\)`)
emptyLineRemove = regexp.MustCompile(`(?m)^\s*$`)
bodyOnly = regexp.MustCompile(`^(ZCZC(.|\n)*)NNNN$`)
)
type BodyParser struct {
bodyPatterns map[string]config.BodyConfig
}
// NewBodyParser initializes a BodyParser with the default body patterns.
func NewBodyParser() *BodyParser {
return &BodyParser{bodyPatterns: config.GetBodyPatterns()}
}
// GetBodyPatterns returns the body patterns used by the parser.
func (bp *BodyParser) GetBodyPatterns() map[string]config.BodyConfig {
return bp.bodyPatterns
}
// SetBodyPatterns sets the body patterns for the parser.
func (bp *BodyParser) SetBodyPatterns(patterns map[string]config.BodyConfig) {
bp.bodyPatterns = patterns
}
// Parse attempts to parse the body text using the configured patterns.
func (bp *BodyParser) Parse(body string) (interface{}, error) {
log := utils.Logger
body = strings.TrimSpace(body)
log.Info("Parsing body text", body)
category := findCategory(body)
if category == "" {
log.Error("No category found in body text")
return nil, fmt.Errorf("no category found in body text")
}
patters := bp.GetBodyPatterns()
log.Infof("body config [%s] %v\n", category, patters[category])
if patterConfig := patters[category]; patterConfig.Patterns != nil {
for _, p := range patterConfig.Patterns {
log.Infof("Trying pattern %s\n%s\n", p.Comments, p.Pattern)
re := p.Expression
match := re.FindStringSubmatch(body)
log.Info("Match: ", match)
if match != nil {
log.Infof("Matched: %v\n", match)
data := extractData(match, re)
return createBodyData(data)
}
log.Infof("No match for pattern %s\n", p.Comments)
}
}
return nil, fmt.Errorf(" no matching pattern found for body: %s", body)
}
func findCategory(body string) string {
match := categoryRegex.FindStringSubmatch(body)
utils.Logger.Infof("Match: %v\n", match)
if match != nil {
return match[1]
}
return ""
}
// extractData extracts named groups from the regex match.
func extractData(match []string, re *regexp.Regexp) map[string]string {
data := make(map[string]string)
for i, name := range re.SubexpNames() {
if i != 0 && name != "" {
data[name] = match[i]
}
}
return data
}
// createBodyData creates the appropriate domain object based on the type of message.
func createBodyData(data map[string]string) (interface{}, error) {
switch data["category"] {
case "ARR":
return &domain.ARR{
Category: data["category"],
AircraftID: data["number"],
SSRModeAndCode: data["ssr"],
DepartureAirport: data["departure"],
ArrivalAirport: data["arrival"],
ArrivalTime: data["time"],
}, nil
case "DEP":
return &domain.DEP{
Category: data["category"],
AircraftID: data["number"],
SSRModeAndCode: data["ssr"],
DepartureAirport: data["departure"],
DepartureTime: data["departure_time"],
Destination: data["arrival"],
}, nil
case "FPL":
return &domain.FPL{
Category: data["category"],
FlightNumber: data["number"],
ReferenceData: data["reference_data"],
AircraftID: data["aircraft"],
SSRModeAndCode: data["surve"],
FlightRulesAndType: data["indicator"],
CruisingSpeedAndLevel: data["speed"] + data["level"],
DepartureAirport: data["departure"],
DepartureTime: data["departure_time"],
Route: data["route"],
DestinationAndTotalTime: data["destination"] + data["estt"],
AlternateAirport: data["alter"],
OtherInfo: fmt.Sprintf("%s %s REG/%s EET/%s SEL/%s PER/%s RIF/%s",
data["pbn"], data["nav"], data["reg"], data["eet"], data["sel"], data["performance"], data["rif"]),
SupplementaryInfo: "RMK/" + data["remark"],
EstimatedArrivalTime: data["estimated_arrival_time"],
PBN: data["pbn"],
NavigationEquipment: data["nav"],
EstimatedElapsedTime: data["eet"],
SELCALCode: data["sel"],
PerformanceCategory: data["performance"],
RerouteInformation: data["rif"],
Remarks: data["remark"],
}, nil
default:
return nil, fmt.Errorf("invalid message type: %s", data["category"])
}
}
// Parse parses the raw text message and returns a ParsedMessage.
func Parse(rawText string) (*domain.ParsedMessage, error) {
message, err := ParseHeader(rawText)
if err != nil {
return nil, err
}
bodyParser := NewBodyParser()
bodyData, err := bodyParser.Parse(message.BodyAndFooter)
if err != nil {
return nil, err
}
message.ParsedAt = time.Now()
message.BodyData = bodyData
return &message, nil
}
// removeEmptyLines removes empty lines from a given text.
func clean(text string) string {
cleanedText := emptyLineRemove.ReplaceAllString(text, "")
cleanText := strings.ReplaceAll(cleanedText, "\n\n", "\n")
if bodyOnly != nil {
match := bodyOnly.FindStringSubmatch(cleanText)
if len(match) > 1 {
bodyOnly := match[1]
if bodyOnly[len(bodyOnly)-1] == '\n' {
return bodyOnly[:len(bodyOnly)-1]
}
return bodyOnly
}
}
return ""
}
// parseHeader parses the header of the message and returns a ParsedMessage struct.
func ParseHeader(fullMessage string) (domain.ParsedMessage, error) {
fullMessage = clean(fullMessage)
// fullMessage = strings.TrimSpace(fullMessage)
lines := strings.Split(fullMessage, "\n")
startIndicator, messageID, dateTime, err := parseStartIndicator(lines[0])
if err != nil {
return domain.ParsedMessage{}, err
}
// priorityIndicator, primaryAddress, err := parsePriorityAndPrimary(lines[1])
// if err != nil {
// return domain.ParsedMessage{}, err
// }
priorityIndicator, primaryAddress := parsePriorityAndPrimary(lines[1])
secondaryAddresses, originator, originatorDateTime, bodyAndFooter := parseRemainingLines(lines[2:])
return domain.ParsedMessage{
StartIndicator: startIndicator,
MessageID: messageID,
DateTime: dateTime,
PriorityIndicator: priorityIndicator,
PrimaryAddress: primaryAddress,
SecondaryAddresses: secondaryAddresses,
Originator: originator,
OriginatorDateTime: originatorDateTime,
BodyAndFooter: bodyAndFooter,
ReceivedAt: time.Now(),
}, nil
}
// parseStartIndicator parses the start indicator line.
func parseStartIndicator(line string) (string, string, string, error) {
parts := strings.Fields(line)
if len(parts) >= 3 && strings.HasPrefix(parts[0], StartIndicatorPrefix) {
return parts[0], parts[1], parts[2], nil
}
return "", "", "", fmt.Errorf("invalid start indicator line format: %s", line)
}
// parsePriorityAndPrimary parses the priority indicator and primary address line.
func parsePriorityAndPrimary(line string) (string, string) {
parts := strings.Fields(line)
if len(parts) >= 2 {
return parts[0], parts[1]
}
return "", ""
}
// parseRemainingLines parses the remaining lines of the message.
func parseRemainingLines(lines []string) ([]string, string, string, string) {
var (
secondaryAddresses []string
originator string
originatorDateTime string
bodyAndFooter strings.Builder
headerEnded bool
)
for _, line := range lines {
line = strings.TrimSpace(line)
if headerEnded {
bodyAndFooter.WriteString(line + "\n")
} else {
switch {
case line == EndHeaderMarker:
// End header marker, do nothing
case strings.HasPrefix(line, "."):
originatorInfo := strings.Fields(line[1:])
if len(originatorInfo) >= 2 {
originator = originatorInfo[0]
originatorDateTime = originatorInfo[1]
}
headerEnded = true
case strings.HasPrefix(line, BeginPartMarker) || strings.HasPrefix(line, "("):
headerEnded = true
if strings.Index(line, "NNNN") > 0 {
break
}
bodyAndFooter.WriteString(line + "\n")
default:
secondaryAddresses = append(secondaryAddresses, line)
}
}
}
return secondaryAddresses, originator, originatorDateTime, bodyAndFooter.String()
}