Tasks 16-20: Online Board Tests (Search/Filter, Tabs, Flight List, Details Modal, Time/Date) - Task 16: Search & Filter tests (37 tests) - departure/arrival cities, passenger count, cabin class - Task 17: Arrival/Departure Tabs tests (45 tests) - tab switching, flight display, sorting - Task 18: Flight List View tests (50 tests) - display, sorting, filtering, pagination, loading states - Task 19: Flight Details Modal tests (40 tests) - opening/closing, content display, actions - Task 20: Time & Date Filter tests (43 tests) - date selection, time ranges, calendar navigation Tasks 21-25: Flight Details Tests (Flight Info, Passengers, Seats, Services, Fares) - Task 21: Flight Info Display tests (40 tests) - basic info, airports, route visualization, timeline - Task 22: Passenger Info tests (50 tests) - passenger list, details, services, special requirements - Task 23: Seat Selection tests (50 tests) - seat map, selection, categories, recommendations - Task 24: Service Selection tests (25 tests) - baggage, meals, seats, summary - Task 25: Fare Display tests (55 tests) - fare breakdown, comparisons, discounts, refunds All tests follow AAA pattern and use data-testid selectors matching Angular version. Total: 245 tests across 10 feature suites.
fs-minipass
Filesystem streams based on minipass.
4 classes are exported:
- ReadStream
- ReadStreamSync
- WriteStream
- WriteStreamSync
When using ReadStreamSync, all of the data is made available
immediately upon consuming the stream. Nothing is buffered in memory
when the stream is constructed. If the stream is piped to a writer,
then it will synchronously read() and emit data into the writer as
fast as the writer can consume it. (That is, it will respect
backpressure.) If you call stream.read() then it will read the
entire file and return the contents.
When using WriteStreamSync, every write is flushed to the file
synchronously. If your writes all come in a single tick, then it'll
write it all out in a single tick. It's as synchronous as you are.
The async versions work much like their node builtin counterparts, with the exception of introducing significantly less Stream machinery overhead.
USAGE
It's just streams, you pipe them or read() them or write() to them.
import { ReadStream, WriteStream } from 'fs-minipass'
// or: const { ReadStream, WriteStream } = require('fs-minipass')
const readStream = new ReadStream('file.txt')
const writeStream = new WriteStream('output.txt')
writeStream.write('some file header or whatever\n')
readStream.pipe(writeStream)
ReadStream(path, options)
Path string is required, but somewhat irrelevant if an open file descriptor is passed in as an option.
Options:
fdPass in a numeric file descriptor, if the file is already open.readSizeThe size of reads to do, defaults to 16MBsizeThe size of the file, if known. Prevents zero-byte read() call at the end.autoCloseSet tofalseto prevent the file descriptor from being closed when the file is done being read.
WriteStream(path, options)
Path string is required, but somewhat irrelevant if an open file descriptor is passed in as an option.
Options:
fdPass in a numeric file descriptor, if the file is already open.modeThe mode to create the file with. Defaults to0o666.startThe position in the file to start reading. If not specified, then the file will start writing at position zero, and be truncated by default.autoCloseSet tofalseto prevent the file descriptor from being closed when the stream is ended.flagsFlags to use when opening the file. Irrelevant iffdis passed in, since file won't be opened in that case. Defaults to'a'if aposis specified, or'w'otherwise.