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chapter-organizer/Tests/Parsers/EventOccurrenceParser_Tests.cs
T
poprhythm 2eae3f205c Enhance event occurrence parsing to correctly skip high school events
This commit updates the EventOccurrenceParser to ensure that high school (HS) events are not incorrectly associated with middle school (MS) events during parsing. The logic now gracefully skips HS section headers, preventing any fuzzy matching from leading to incorrect associations. Additionally, a new unit test has been added to verify that HS occurrences are correctly excluded from MS event occurrences, ensuring the integrity of the parsing process.
2026-01-09 08:32:41 -05:00

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C#
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using Core.Entities;
using Core.Models;
using Core.Parsers;
namespace Tests.Parsers;
/// <summary>
/// Integration tests for EventOccurrenceParser using real test data files.
/// </summary>
public class EventOccurrenceParser_Tests
{
#region Helper Methods
/// <summary>
/// Checks if a line contains a High School event marker.
/// </summary>
private static bool IsHighSchoolEvent(string line)
{
return line.Contains(" HS", StringComparison.OrdinalIgnoreCase) ||
line.Contains(" - HS", StringComparison.OrdinalIgnoreCase) ||
line.Contains("- HS", StringComparison.OrdinalIgnoreCase);
}
/// <summary>
/// Checks if a line contains a Middle School event marker.
/// </summary>
private static bool IsMiddleSchoolEvent(string line)
{
return line.Contains(" MS", StringComparison.OrdinalIgnoreCase) ||
line.Contains(" - MS", StringComparison.OrdinalIgnoreCase) ||
line.Contains("- MS", StringComparison.OrdinalIgnoreCase);
}
/// <summary>
/// Determines if an issue is expected (HS-related) or fixable.
/// </summary>
private static bool IsExpectedIssue(ParsingIssue issue, List<string> fileLines, int currentLineIndex)
{
// Check if the issue line itself is an HS event header
if (IsHighSchoolEvent(issue.LineContent))
return true;
// For MissingEventDefinition issues, check if we're in an HS section
if (issue.IssueType == ParsingIssueType.MissingEventDefinition)
{
// Look backwards to find the most recent section header
for (int i = currentLineIndex - 1; i >= 0 && i >= currentLineIndex - 20; i--)
{
if (i < fileLines.Count)
{
var line = fileLines[i].Trim();
if (IsHighSchoolEvent(line))
return true;
if (IsMiddleSchoolEvent(line))
return false; // Found MS section, so this is fixable
}
}
}
return false;
}
/// <summary>
/// Categorizes issues into expected (HS-related) and fixable.
/// </summary>
private static (List<ParsingIssue> Expected, List<ParsingIssue> Fixable) CategorizeIssues(
List<ParsingIssue> issues, List<string> fileLines)
{
var expected = new List<ParsingIssue>();
var fixable = new List<ParsingIssue>();
foreach (var issue in issues)
{
var lineIndex = issue.LineNumber - 1; // Convert to 0-based index
if (IsExpectedIssue(issue, fileLines, lineIndex))
{
expected.Add(issue);
}
else
{
fixable.Add(issue);
}
}
return (expected, fixable);
}
/// <summary>
/// Gets sample lines for a list of issues.
/// </summary>
private static List<string> GetSampleLines(List<ParsingIssue> issues, int count = 5)
{
return issues
.Take(count)
.Select(i => $" Line {i.LineNumber}: {i.LineContent}")
.ToList();
}
/// <summary>
/// Counts HS vs MS event sections in the file.
/// </summary>
private static (int HighSchool, int MiddleSchool) CountEventSections(List<string> fileLines)
{
int hsCount = 0;
int msCount = 0;
foreach (var line in fileLines)
{
var trimmed = line.Trim();
if (IsHighSchoolEvent(trimmed))
hsCount++;
else if (IsMiddleSchoolEvent(trimmed))
msCount++;
}
return (hsCount, msCount);
}
#endregion
[Test]
public void ParseNationalsTest()
{
var events = TestEntityHandler.GetEvents();
var parser = new EventOccurrenceParser(TestEntityHandler.GetEventOccurrenceNationalsFileInfo(), events);
var result = parser.Parse();
var dictionary = result.Occurrences;
Console.WriteLine($"Occurrence, Month, Date, Time, Location");
foreach (var @event in events)
{
Console.WriteLine($"{@event.Name}");
if (!dictionary.ContainsKey(@event))
{
Console.WriteLine("!!! eventDefinition not found " + @event.Name);
continue;
}
var eventOccurrences = dictionary[@event];
foreach (var eo in eventOccurrences)
{
Console.WriteLine($"\t{eo.StartTime.DayOfWeek} {eo.Time}, {eo.Name}, {eo.Location}");
}
}
Console.WriteLine("General Schedule");
if (dictionary.ContainsKey(EventDefinition.GeneralSchedule))
{
foreach (var eo in dictionary[EventDefinition.GeneralSchedule].OrderBy(occurrence => occurrence.StartTime))
{
Console.WriteLine($"\t{eo.StartTime.DayOfWeek} {eo.Time}, {eo.Name}, {eo.Location}");
}
}
Console.WriteLine("Meet the Candidates");
if (dictionary.ContainsKey(EventDefinition.MeetTheCandidates))
{
foreach (var eo in dictionary[EventDefinition.MeetTheCandidates])
{
Console.WriteLine($"\t{eo.StartTime.DayOfWeek} {eo.Time}, {eo.Name}, {eo.Location}");
}
}
Console.WriteLine("Chapter Officer Meeting");
if (dictionary.ContainsKey(EventDefinition.ChapterOfficerMeeting))
{
foreach (var eo in dictionary[EventDefinition.ChapterOfficerMeeting])
{
Console.WriteLine($"\t{eo.StartTime.DayOfWeek} {eo.Time}, {eo.Name}, {eo.Location}");
}
}
Console.WriteLine("Voting Delegate Meeting");
if (dictionary.ContainsKey(EventDefinition.VotingDelegateMeeting))
{
foreach (var eo in dictionary[EventDefinition.VotingDelegateMeeting])
{
Console.WriteLine($"\t{eo.StartTime.DayOfWeek} {eo.Time}, {eo.Name}, {eo.Location}");
}
}
Assert.Pass();
}
[Test]
public void ParseStatesTest()
{
var events = TestEntityHandler.GetEvents();
var parser = new EventOccurrenceParser(TestEntityHandler.GetEventOccurrenceStateFileInfo(), events);
var result = parser.Parse();
var dictionary = result.Occurrences;
Console.WriteLine($"Occurrence, Month, Date, Time, Location");
foreach (var @event in events)
{
Console.WriteLine($"{@event.Name}");
if (!dictionary.ContainsKey(@event))
{
Console.WriteLine("!!! eventDefinition not found " + @event.Name);
continue;
}
var eventOccurrences = dictionary[@event];
foreach (var eo in eventOccurrences)
{
Console.WriteLine($"\t{eo.StartTime.DayOfWeek} {eo.Time}, {eo.Name}, {eo.Location}");
}
}
Console.WriteLine("General Schedule");
if (dictionary.ContainsKey(EventDefinition.GeneralSchedule))
{
foreach (var eo in dictionary[EventDefinition.GeneralSchedule].OrderBy(occurrence => occurrence.StartTime))
{
Console.WriteLine($"\t{eo.StartTime.DayOfWeek} {eo.Time}, {eo.Name}, {eo.Location}");
}
}
Console.WriteLine("Meet the Candidates");
if (dictionary.ContainsKey(EventDefinition.MeetTheCandidates))
{
foreach (var eo in dictionary[EventDefinition.MeetTheCandidates])
{
Console.WriteLine($"\t{eo.StartTime.DayOfWeek} {eo.Time}, {eo.Name}, {eo.Location}");
}
}
Console.WriteLine("Chapter Officer Meeting");
if (dictionary.ContainsKey(EventDefinition.ChapterOfficerMeeting))
{
foreach (var eo in dictionary[EventDefinition.ChapterOfficerMeeting])
{
Console.WriteLine($"\t{eo.StartTime.DayOfWeek} {eo.Time}, {eo.Name}, {eo.Location}");
}
}
Console.WriteLine("Voting Delegate Meeting");
if (dictionary.ContainsKey(EventDefinition.VotingDelegateMeeting))
{
foreach (var eo in dictionary[EventDefinition.VotingDelegateMeeting])
{
Console.WriteLine($"\t{eo.StartTime.DayOfWeek} {eo.Time}, {eo.Name}, {eo.Location}");
}
}
Assert.Pass();
}
[Test]
public void Analyze_2025Nationals_ParsingResults()
{
// Arrange
var events = TestEntityHandler.GetEvents();
var fileInfo = TestEntityHandler.GetEventOccurrenceNationalsFileInfo();
var parser = new EventOccurrenceParser(fileInfo, events);
// Act
var result = parser.Parse();
// Assert - Should parse without exceptions
Assert.That(result, Is.Not.Null, "Parser should return a result");
// Load file lines for analysis
var fileLines = File.ReadAllLines(fileInfo.FullName).ToList();
var totalLines = fileLines.Count;
var totalParsed = result.Occurrences.Values.Sum(list => list.Count);
// Categorize issues
var (expectedIssues, fixableIssues) = CategorizeIssues(result.Issues, fileLines);
// Count event sections
var (hsSections, msSections) = CountEventSections(fileLines);
// Group issues by type
var issuesByType = result.Issues.GroupBy(i => i.IssueType).ToDictionary(g => g.Key, g => g.ToList());
var expectedByType = expectedIssues.GroupBy(i => i.IssueType).ToDictionary(g => g.Key, g => g.Count());
var fixableByType = fixableIssues.GroupBy(i => i.IssueType).ToDictionary(g => g.Key, g => g.Count());
// Output analysis
Console.WriteLine($"\n=== 2025 TSA Nationals Competition Event Times Analysis ===");
Console.WriteLine($"\n--- Summary Statistics ---");
Console.WriteLine($"Total lines in file: {totalLines}");
Console.WriteLine($"Total occurrences parsed: {totalParsed}");
Console.WriteLine($"Total issues found: {result.Issues.Count}");
Console.WriteLine($" Expected issues (HS-related): {expectedIssues.Count} ({100.0 * expectedIssues.Count / Math.Max(1, result.Issues.Count):F1}%)");
Console.WriteLine($" Fixable issues: {fixableIssues.Count} ({100.0 * fixableIssues.Count / Math.Max(1, result.Issues.Count):F1}%)");
Console.WriteLine($"Event sections: HS={hsSections}, MS={msSections}");
Console.WriteLine($"Events with occurrences: {result.Occurrences.Count}");
Console.WriteLine($"\n--- Special Events Found ---");
if (result.Occurrences.ContainsKey(EventDefinition.GeneralSchedule))
Console.WriteLine($" GeneralSchedule: {result.Occurrences[EventDefinition.GeneralSchedule].Count} occurrences");
if (result.Occurrences.ContainsKey(EventDefinition.MeetTheCandidates))
Console.WriteLine($" MeetTheCandidates: {result.Occurrences[EventDefinition.MeetTheCandidates].Count} occurrences");
if (result.Occurrences.ContainsKey(EventDefinition.ChapterOfficerMeeting))
Console.WriteLine($" ChapterOfficerMeeting: {result.Occurrences[EventDefinition.ChapterOfficerMeeting].Count} occurrences");
if (result.Occurrences.ContainsKey(EventDefinition.VotingDelegateMeeting))
Console.WriteLine($" VotingDelegateMeeting: {result.Occurrences[EventDefinition.VotingDelegateMeeting].Count} occurrences");
Console.WriteLine($"\n--- Issue Breakdown by Type ---");
foreach (var kvp in issuesByType.OrderByDescending(x => x.Value.Count))
{
var issueType = kvp.Key;
var allIssues = kvp.Value;
expectedByType.TryGetValue(issueType, out var expectedCount);
fixableByType.TryGetValue(issueType, out var fixableCount);
Console.WriteLine($"\n{issueType}:");
Console.WriteLine($" Total: {allIssues.Count} (Expected: {expectedCount}, Fixable: {fixableCount})");
if (fixableCount > 0)
{
var fixableOfType = fixableIssues.Where(i => i.IssueType == issueType).ToList();
var samples = GetSampleLines(fixableOfType, 5);
Console.WriteLine($" Sample fixable issues:");
foreach (var sample in samples)
{
Console.WriteLine(sample);
}
}
}
// Pattern Analysis - LocationParseFailure issues are no longer created (pattern matching removed)
var unmatchedLines = fixableIssues.Where(i => i.IssueType == ParsingIssueType.UnmatchedLine).ToList();
if (unmatchedLines.Any())
{
Console.WriteLine($"\n--- Unmatched Line Analysis ---");
var unmatchedPatterns = unmatchedLines
.GroupBy(i => i.LineContent.Trim())
.OrderByDescending(g => g.Count())
.Take(10);
Console.WriteLine($"Top unmatched line formats:");
foreach (var pattern in unmatchedPatterns)
{
Console.WriteLine($" \"{pattern.Key}\" (appears {pattern.Count()} times)");
}
}
// Test passes if no exceptions were thrown
Assert.Pass($"Successfully parsed {totalParsed} occurrences with {result.Issues.Count} issues ({fixableIssues.Count} fixable)");
}
[Test]
public void Analyze_2025State_ParsingResults()
{
// Arrange
var events = TestEntityHandler.GetEvents();
var fileInfo = TestEntityHandler.GetEventOccurrenceStateFileInfo();
var parser = new EventOccurrenceParser(fileInfo, events);
// Act
var result = parser.Parse();
// Assert - Should parse without exceptions
Assert.That(result, Is.Not.Null, "Parser should return a result");
// Load file lines for analysis
var fileLines = File.ReadAllLines(fileInfo.FullName).ToList();
var totalLines = fileLines.Count;
var totalParsed = result.Occurrences.Values.Sum(list => list.Count);
// Categorize issues
var (expectedIssues, fixableIssues) = CategorizeIssues(result.Issues, fileLines);
// Count event sections
var (hsSections, msSections) = CountEventSections(fileLines);
// Group issues by type
var issuesByType = result.Issues.GroupBy(i => i.IssueType).ToDictionary(g => g.Key, g => g.ToList());
var expectedByType = expectedIssues.GroupBy(i => i.IssueType).ToDictionary(g => g.Key, g => g.Count());
var fixableByType = fixableIssues.GroupBy(i => i.IssueType).ToDictionary(g => g.Key, g => g.Count());
// Output analysis
Console.WriteLine($"\n=== 2025 TN TSA State Competition Event Times Analysis ===");
Console.WriteLine($"\n--- Summary Statistics ---");
Console.WriteLine($"Total lines in file: {totalLines}");
Console.WriteLine($"Total occurrences parsed: {totalParsed}");
Console.WriteLine($"Total issues found: {result.Issues.Count}");
Console.WriteLine($" Expected issues (HS-related): {expectedIssues.Count} ({100.0 * expectedIssues.Count / Math.Max(1, result.Issues.Count):F1}%)");
Console.WriteLine($" Fixable issues: {fixableIssues.Count} ({100.0 * fixableIssues.Count / Math.Max(1, result.Issues.Count):F1}%)");
Console.WriteLine($"Event sections: HS={hsSections}, MS={msSections}");
Console.WriteLine($"Events with occurrences: {result.Occurrences.Count}");
Console.WriteLine($"\n--- Special Events Found ---");
if (result.Occurrences.ContainsKey(EventDefinition.GeneralSchedule))
Console.WriteLine($" GeneralSchedule: {result.Occurrences[EventDefinition.GeneralSchedule].Count} occurrences");
if (result.Occurrences.ContainsKey(EventDefinition.MeetTheCandidates))
Console.WriteLine($" MeetTheCandidates: {result.Occurrences[EventDefinition.MeetTheCandidates].Count} occurrences");
if (result.Occurrences.ContainsKey(EventDefinition.ChapterOfficerMeeting))
Console.WriteLine($" ChapterOfficerMeeting: {result.Occurrences[EventDefinition.ChapterOfficerMeeting].Count} occurrences");
if (result.Occurrences.ContainsKey(EventDefinition.VotingDelegateMeeting))
Console.WriteLine($" VotingDelegateMeeting: {result.Occurrences[EventDefinition.VotingDelegateMeeting].Count} occurrences");
Console.WriteLine($"\n--- Issue Breakdown by Type ---");
foreach (var kvp in issuesByType.OrderByDescending(x => x.Value.Count))
{
var issueType = kvp.Key;
var allIssues = kvp.Value;
expectedByType.TryGetValue(issueType, out var expectedCount);
fixableByType.TryGetValue(issueType, out var fixableCount);
Console.WriteLine($"\n{issueType}:");
Console.WriteLine($" Total: {allIssues.Count} (Expected: {expectedCount}, Fixable: {fixableCount})");
if (fixableCount > 0)
{
var fixableOfType = fixableIssues.Where(i => i.IssueType == issueType).ToList();
var samples = GetSampleLines(fixableOfType, 5);
Console.WriteLine($" Sample fixable issues:");
foreach (var sample in samples)
{
Console.WriteLine(sample);
}
}
}
// Pattern Analysis - LocationParseFailure issues are no longer created (pattern matching removed)
var unmatchedLines = fixableIssues.Where(i => i.IssueType == ParsingIssueType.UnmatchedLine).ToList();
if (unmatchedLines.Any())
{
Console.WriteLine($"\n--- Unmatched Line Analysis ---");
var unmatchedPatterns = unmatchedLines
.GroupBy(i => i.LineContent.Trim())
.OrderByDescending(g => g.Count())
.Take(10);
Console.WriteLine($"Top unmatched line formats:");
foreach (var pattern in unmatchedPatterns)
{
Console.WriteLine($" \"{pattern.Key}\" (appears {pattern.Count()} times)");
}
}
// Test passes if no exceptions were thrown
Assert.Pass($"Successfully parsed {totalParsed} occurrences with {result.Issues.Count} issues ({fixableIssues.Count} fixable)");
}
[Test]
public void Analyze_2024State_ParsingResults()
{
// Arrange
var events = TestEntityHandler.GetEvents();
var fileInfo = TestEntityHandler.GetEventOccurrenceState2024FileInfo();
var parser = new EventOccurrenceParser(fileInfo, events);
// Act
var result = parser.Parse();
// Assert - Should parse without exceptions
Assert.That(result, Is.Not.Null, "Parser should return a result");
// Load file lines for analysis
var fileLines = File.ReadAllLines(fileInfo.FullName).ToList();
var totalLines = fileLines.Count;
var totalParsed = result.Occurrences.Values.Sum(list => list.Count);
// Categorize issues
var (expectedIssues, fixableIssues) = CategorizeIssues(result.Issues, fileLines);
// Count event sections
var (hsSections, msSections) = CountEventSections(fileLines);
// Group issues by type
var issuesByType = result.Issues.GroupBy(i => i.IssueType).ToDictionary(g => g.Key, g => g.ToList());
var expectedByType = expectedIssues.GroupBy(i => i.IssueType).ToDictionary(g => g.Key, g => g.Count());
var fixableByType = fixableIssues.GroupBy(i => i.IssueType).ToDictionary(g => g.Key, g => g.Count());
// Output analysis
Console.WriteLine($"\n=== 2024 TN TSA State Competition Event Times Analysis ===");
Console.WriteLine($"\n--- Summary Statistics ---");
Console.WriteLine($"Total lines in file: {totalLines}");
Console.WriteLine($"Total occurrences parsed: {totalParsed}");
Console.WriteLine($"Total issues found: {result.Issues.Count}");
Console.WriteLine($" Expected issues (HS-related): {expectedIssues.Count} ({100.0 * expectedIssues.Count / Math.Max(1, result.Issues.Count):F1}%)");
Console.WriteLine($" Fixable issues: {fixableIssues.Count} ({100.0 * fixableIssues.Count / Math.Max(1, result.Issues.Count):F1}%)");
Console.WriteLine($"Event sections: HS={hsSections}, MS={msSections}");
Console.WriteLine($"Events with occurrences: {result.Occurrences.Count}");
Console.WriteLine($"\n--- Special Events Found ---");
if (result.Occurrences.ContainsKey(EventDefinition.GeneralSchedule))
Console.WriteLine($" GeneralSchedule: {result.Occurrences[EventDefinition.GeneralSchedule].Count} occurrences");
if (result.Occurrences.ContainsKey(EventDefinition.MeetTheCandidates))
Console.WriteLine($" MeetTheCandidates: {result.Occurrences[EventDefinition.MeetTheCandidates].Count} occurrences");
if (result.Occurrences.ContainsKey(EventDefinition.ChapterOfficerMeeting))
Console.WriteLine($" ChapterOfficerMeeting: {result.Occurrences[EventDefinition.ChapterOfficerMeeting].Count} occurrences");
if (result.Occurrences.ContainsKey(EventDefinition.VotingDelegateMeeting))
Console.WriteLine($" VotingDelegateMeeting: {result.Occurrences[EventDefinition.VotingDelegateMeeting].Count} occurrences");
Console.WriteLine($"\n--- Issue Breakdown by Type ---");
foreach (var kvp in issuesByType.OrderByDescending(x => x.Value.Count))
{
var issueType = kvp.Key;
var allIssues = kvp.Value;
expectedByType.TryGetValue(issueType, out var expectedCount);
fixableByType.TryGetValue(issueType, out var fixableCount);
Console.WriteLine($"\n{issueType}:");
Console.WriteLine($" Total: {allIssues.Count} (Expected: {expectedCount}, Fixable: {fixableCount})");
if (fixableCount > 0)
{
var fixableOfType = fixableIssues.Where(i => i.IssueType == issueType).ToList();
var samples = GetSampleLines(fixableOfType, 5);
Console.WriteLine($" Sample fixable issues:");
foreach (var sample in samples)
{
Console.WriteLine(sample);
}
}
}
// Pattern Analysis - LocationParseFailure issues are no longer created (pattern matching removed)
var unmatchedLines = fixableIssues.Where(i => i.IssueType == ParsingIssueType.UnmatchedLine).ToList();
if (unmatchedLines.Any())
{
Console.WriteLine($"\n--- Unmatched Line Analysis ---");
var unmatchedPatterns = unmatchedLines
.GroupBy(i => i.LineContent.Trim())
.OrderByDescending(g => g.Count())
.Take(10);
Console.WriteLine($"Top unmatched line formats:");
foreach (var pattern in unmatchedPatterns)
{
Console.WriteLine($" \"{pattern.Key}\" (appears {pattern.Count()} times)");
}
}
// Test passes if no exceptions were thrown
Assert.Pass($"Successfully parsed {totalParsed} occurrences with {result.Issues.Count} issues ({fixableIssues.Count} fixable)");
}
[Test]
public void Parse_Section_Lines64To92_ChildrensStoriesToConstructionChallenge()
{
// Arrange
// Extract lines 64-92 from the test file - contains MS and HS events with various formats
var allLines = File.ReadAllLines(TestEntityHandler.GetEventOccurrenceStateFileInfo().FullName);
var sectionLines = allLines.Skip(63).Take(29).ToArray(); // Lines 64-92 (0-indexed: 63-91)
var sectionContent = string.Join("\n", sectionLines);
var tempFile = EventOccurrenceParserTestHelpers.CreateTempFile(sectionContent);
var events = TestEntityHandler.GetEvents();
var parser = new EventOccurrenceParser(tempFile, events);
try
{
// Act
var result = parser.Parse();
// Assert - Should parse without exceptions
Assert.That(result, Is.Not.Null, "Parser should return a result");
// Count occurrences by event type
var totalOccurrences = result.Occurrences.Values.Sum(list => list.Count);
// Verify MS events are parsed
var childrensStories = events.FirstOrDefault(e => e.Name.Contains("Children's Stories", StringComparison.OrdinalIgnoreCase));
var coding = events.FirstOrDefault(e => e.Name == "Coding");
var communityServiceVideo = events.FirstOrDefault(e => e.Name.Contains("Community Service Video", StringComparison.OrdinalIgnoreCase));
var constructionChallenge = events.FirstOrDefault(e => e.Name.Contains("Construction Challenge", StringComparison.OrdinalIgnoreCase));
// Count expected MS occurrences:
// Children's Stories MS: 5 occurrences (lines 65-69)
// Coding MS: 2 occurrences (lines 76-77)
// Community Service Video MS: 4 occurrences (lines 79-82)
// Construction Challenge MS: 5 occurrences (lines 88-92)
// Total expected MS occurrences: 16
var msEventCount = 0;
if (childrensStories != null && result.Occurrences.ContainsKey(childrensStories))
msEventCount += result.Occurrences[childrensStories].Count;
if (coding != null && result.Occurrences.ContainsKey(coding))
msEventCount += result.Occurrences[coding].Count;
if (communityServiceVideo != null && result.Occurrences.ContainsKey(communityServiceVideo))
msEventCount += result.Occurrences[communityServiceVideo].Count;
if (constructionChallenge != null && result.Occurrences.ContainsKey(constructionChallenge))
msEventCount += result.Occurrences[constructionChallenge].Count;
// Verify HS events are skipped gracefully (no issues should be created for them)
var hsIssues = result.Issues.Where(i =>
i.LineContent.Contains("Coding HS") ||
i.LineContent.Contains("CAD") && i.LineContent.Contains("HS") ||
i.LineNumber >= 72 && i.LineNumber <= 86 && IsHighSchoolEvent(i.LineContent)
).ToList();
// Verify HS section headers are tracked in SkippedHSSectionHeaders
var skippedHSHeaders = result.SkippedHSSectionHeaders;
// Verify continuation lines are skipped
// Line 70 starts with "*The" - this enters continuation mode and both line 70 and 71 should be skipped
var continuationLineIssues = result.Issues.Where(i =>
i.LineContent.Contains("books of semifinalist teams") ||
i.LineContent.Contains("be returned to teams")
).ToList();
// Verify specific time formats are parsed correctly
var noonOccurrence = result.Occurrences.Values
.SelectMany(list => list)
.FirstOrDefault(eo => eo.Time.Contains("NOON", StringComparison.OrdinalIgnoreCase));
var lateTimeOccurrence = result.Occurrences.Values
.SelectMany(list => list)
.FirstOrDefault(eo => eo.Time.Contains("11:59", StringComparison.OrdinalIgnoreCase));
// Output detailed analysis
Console.WriteLine($"\n=== Section Lines 64-92 Parsing Results ===");
Console.WriteLine($"Total occurrences parsed: {totalOccurrences}");
Console.WriteLine($"MS event occurrences: {msEventCount}");
Console.WriteLine($"Total issues: {result.Issues.Count}");
Console.WriteLine($"HS-related issues: {hsIssues.Count}");
Console.WriteLine($"Skipped HS section headers: {skippedHSHeaders.Count}");
Console.WriteLine($"Continuation line issues: {continuationLineIssues.Count}");
Console.WriteLine($"\n--- Issue Types ---");
foreach (var issueType in result.Issues.GroupBy(i => i.IssueType))
{
Console.WriteLine($" {issueType.Key}: {issueType.Count()}");
}
// Assertions
Assert.That(totalOccurrences, Is.GreaterThan(0), "Should parse at least some occurrences");
Assert.That(msEventCount, Is.GreaterThanOrEqualTo(14), "Should parse most MS occurrences (at least 14 out of 16)");
// HS events should not create issues - they should be skipped gracefully
Assert.That(hsIssues, Has.Count.EqualTo(0), "HS events should be skipped gracefully without creating issues");
// HS section headers should be tracked
Assert.That(skippedHSHeaders, Has.Count.GreaterThanOrEqualTo(2), "Should track at least 2 HS section headers (Coding - HS, CAD Architecture - HS, CAD Engineering - HS)");
// Line 70 (starts with "*The") enters continuation mode and both line 70 and 71 should be skipped without issues
Assert.That(continuationLineIssues, Has.Count.EqualTo(0),
"Continuation lines starting with '*' and subsequent lines should be skipped without issues");
Assert.That(noonOccurrence, Is.Not.Null, "Should parse NOON time format");
Assert.That(lateTimeOccurrence, Is.Not.Null, "Should parse 11:59 p.m. time format");
// Verify specific locations are parsed
if (childrensStories != null && result.Occurrences.ContainsKey(childrensStories))
{
var locations = result.Occurrences[childrensStories]
.Select(eo => eo.Location)
.Where(loc => !string.IsNullOrWhiteSpace(loc))
.ToList();
Assert.That(locations, Has.Count.GreaterThan(0), "Children's Stories should have locations parsed");
}
// Test passes with detailed information
Assert.Pass($"Successfully parsed section: {totalOccurrences} occurrences, {result.Issues.Count} issues, {msEventCount} MS events");
}
finally
{
EventOccurrenceParserTestHelpers.CleanupTempFile(tempFile);
}
}
[Test]
public void Parse_BiotechnologyMSAndHS_HSOccurrencesNotAssociatedWithMS()
{
// Arrange
// This test verifies that HS events (like "Biotechnology Design HS") are not incorrectly
// associated with MS events (like "Biotechnology MS") even if fuzzy matching finds a match
var testContent = "Biotechnology MS\n" +
"Submit Entry April 3 8 a.m. 9 a.m. Exhibit Hall C\n" +
"Judging April 3 9 a.m. 5 p.m. Exhibit Hall C\n" +
"Biotechnology Design HS\n" +
"Submit Entry April 3 8 a.m. 9:00 a.m. Exhibit Hall C\n" +
"Judging April 3 9 a.m. 5 p.m. Exhibit Hall C\n" +
"Pick-up April 4 5 p.m. 5:30 p.m. Exhibit Hall C";
var tempFile = EventOccurrenceParserTestHelpers.CreateTempFile(testContent);
var events = new[] { EventOccurrenceParserTestHelpers.CreateTestEvent("Biotechnology") };
var parser = new EventOccurrenceParser(tempFile, events);
try
{
// Act
var result = parser.Parse();
// Assert
var biotechnology = events.FirstOrDefault(e => e.Name == "Biotechnology");
Assert.That(biotechnology, Is.Not.Null, "Biotechnology event should exist");
// MS occurrences should be parsed
if (result.Occurrences.ContainsKey(biotechnology))
{
var msOccurrences = result.Occurrences[biotechnology];
Assert.That(msOccurrences, Has.Count.EqualTo(2),
"Should have 2 MS occurrences (Submit Entry and Judging)");
// Verify MS occurrences have correct names
var msNames = msOccurrences.Select(o => o.Name).ToList();
Assert.That(msNames, Does.Contain("Submit Entry"), "MS should have Submit Entry");
Assert.That(msNames, Does.Contain("Judging"), "MS should have Judging");
}
// HS section header should be skipped (note: normalized to regular hyphen)
Assert.That(result.SkippedHSSectionHeaders, Does.Contain("Biotechnology Design - HS"),
"HS section header should be in SkippedHSSectionHeaders");
// HS occurrences should NOT be associated with Biotechnology MS event
if (result.Occurrences.ContainsKey(biotechnology))
{
var allOccurrences = result.Occurrences[biotechnology];
var hsOccurrenceNames = new[] { "Submit Entry", "Judging", "Pick-up" };
var hsOccurrencesFound = allOccurrences.Where(o =>
o.Name == "Submit Entry" && o.Date.Contains("April 3") ||
o.Name == "Judging" && o.Date.Contains("April 3") ||
o.Name == "Pick-up" && o.Date.Contains("April 4")).ToList();
// The HS occurrences should not be in the MS event's occurrences
// We expect only 2 MS occurrences, not 5 (2 MS + 3 HS)
Assert.That(allOccurrences, Has.Count.LessThanOrEqualTo(2),
"HS occurrences should not be associated with MS event. " +
$"Found {allOccurrences.Count} occurrences, expected 2 MS only.");
}
Assert.Pass("HS events correctly skipped and not associated with MS events");
}
finally
{
EventOccurrenceParserTestHelpers.CleanupTempFile(tempFile);
}
}
}