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273 lines
6.6 KiB
V
273 lines
6.6 KiB
V
import os
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struct Point {
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x f64
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y f64
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z f64
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}
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struct Extended_Point {
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a f64
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b f64
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c f64
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d f64
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e f64
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f f64
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g f64
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h f64
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i f64
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}
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enum Color {
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red
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green
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blue
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}
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[flag]
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enum Permissions {
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read
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write
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execute
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}
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const (
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unit_point = Point{1.0, 1.0, 1.0}
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another_point = Point{0.25, 2.25, 6.25}
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extended_point = Extended_Point{1.0, 2.0, 3.0, 4.0, 5.0, 6.0, 7.0, 8.0, 9.0}
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another_byte = byte(123)
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another_color = Color.red
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another_permission = Permissions.read | .write
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)
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const (
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tfolder = os.join_path(os.temp_dir(), 'os_file_test')
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tfile = os.join_path(tfolder, 'test_file')
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)
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fn testsuite_begin() ? {
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os.rmdir_all(tfolder) or {}
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assert !os.is_dir(tfolder)
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os.mkdir_all(tfolder) ?
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os.chdir(tfolder)
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assert os.is_dir(tfolder)
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}
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fn testsuite_end() ? {
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os.chdir(os.wd_at_startup)
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os.rmdir_all(tfolder) ?
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assert !os.is_dir(tfolder)
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}
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// test_read_eof_last_read_partial_buffer_fill tests that when reading a file
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// the end-of-file is detected and results in a none error being returned. This
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// test simulates file reading where the end-of-file is reached inside an fread
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// containing data.
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fn test_read_eof_last_read_partial_buffer_fill() ? {
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mut f := os.open_file(tfile, 'w') ?
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bw := []byte{len: 199, init: 5}
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f.write(bw) ?
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f.close()
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f = os.open_file(tfile, 'r') ?
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mut br := []byte{len: 100}
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// Read first 100 bytes of 199 byte file, should fill buffer with no error.
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n0 := f.read(mut br) ?
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assert n0 == 100
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// Read remaining 99 bytes of 199 byte file, should fill buffer with no
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// error, even though end-of-file was reached.
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n1 := f.read(mut br) ?
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assert n1 == 99
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// Read again, end-of-file was previously reached so should return none
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// error.
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if _ := f.read(mut br) {
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// This is not intended behavior because the read function should
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// not return a number of bytes read when end-of-file is reached.
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assert false
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} else {
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// Expect none to have been returned when end-of-file.
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assert err is none
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}
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f.close()
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}
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// test_read_eof_last_read_full_buffer_fill tests that when reading a file the
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// end-of-file is detected and results in a none error being returned. This test
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// simulates file reading where the end-of-file is reached at the beinning of an
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// fread that returns no data.
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fn test_read_eof_last_read_full_buffer_fill() ? {
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mut f := os.open_file(tfile, 'w') ?
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bw := []byte{len: 200, init: 5}
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f.write(bw) ?
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f.close()
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f = os.open_file(tfile, 'r') ?
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mut br := []byte{len: 100}
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// Read first 100 bytes of 200 byte file, should fill buffer with no error.
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n0 := f.read(mut br) ?
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assert n0 == 100
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// Read remaining 100 bytes of 200 byte file, should fill buffer with no
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// error. The end-of-file isn't reached yet, but there is no more data.
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n1 := f.read(mut br) ?
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assert n1 == 100
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// Read again, end-of-file was previously reached so should return none
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// error.
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if _ := f.read(mut br) {
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// This is not intended behavior because the read function should
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// not return a number of bytes read when end-of-file is reached.
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assert false
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} else {
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// Expect none to have been returned when end-of-file.
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assert err is none
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}
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f.close()
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}
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fn test_write_struct() ? {
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os.rm(tfile) or {} // FIXME This is a workaround for macos, because the file isn't truncated when open with 'w'
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size_of_point := int(sizeof(Point))
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mut f := os.open_file(tfile, 'w') ?
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f.write_struct(another_point) ?
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f.close()
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x := os.read_file(tfile) ?
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pcopy := unsafe { &byte(memdup(&another_point, size_of_point)) }
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y := unsafe { pcopy.vstring_with_len(size_of_point) }
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assert x == y
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$if debug {
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eprintln(x.bytes())
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eprintln(y.bytes())
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}
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}
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fn test_write_struct_at() ? {
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mut f := os.open_file(tfile, 'w') ?
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f.write_struct(extended_point) ?
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f.write_struct_at(another_point, 3) ?
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f.close()
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f = os.open_file(tfile, 'r') ?
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mut p := Point{}
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f.read_struct_at(mut p, 3) ?
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f.close()
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assert p == another_point
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}
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fn test_read_struct() ? {
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mut f := os.open_file(tfile, 'w') ?
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f.write_struct(another_point) ?
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f.close()
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f = os.open_file(tfile, 'r') ?
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mut p := Point{}
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f.read_struct(mut p) ?
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f.close()
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assert p == another_point
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}
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fn test_read_struct_at() ? {
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mut f := os.open_file(tfile, 'w') ?
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f.write([byte(1), 2, 3]) ?
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f.write_struct(another_point) ?
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f.close()
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f = os.open_file(tfile, 'r') ?
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mut p := Point{}
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f.read_struct_at(mut p, 3) ?
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f.close()
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assert p == another_point
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}
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fn test_write_raw() ? {
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os.rm(tfile) or {} // FIXME This is a workaround for macos, because the file isn't truncated when open with 'w'
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size_of_point := int(sizeof(Point))
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mut f := os.open_file(tfile, 'w') ?
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f.write_raw(another_point) ?
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f.close()
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x := os.read_file(tfile) ?
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pcopy := unsafe { &byte(memdup(&another_point, size_of_point)) }
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y := unsafe { pcopy.vstring_with_len(size_of_point) }
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assert x == y
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$if debug {
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eprintln(x.bytes())
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eprintln(y.bytes())
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}
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}
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fn test_write_raw_at() ? {
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mut f := os.open_file(tfile, 'w') ?
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f.write_raw(extended_point) ?
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f.write_raw_at(another_point, 3) ?
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f.close()
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f = os.open_file(tfile, 'r') ?
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mut p := Point{}
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f.read_struct_at(mut p, 3) ?
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f.close()
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assert p == another_point
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}
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fn test_write_raw_at_negative_pos() ? {
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mut f := os.open_file(tfile, 'w') ?
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if _ := f.write_raw_at(another_point, -1) {
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assert false
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}
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f.write_raw_at(another_point, -234) or { assert err.msg == 'Invalid argument' }
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f.close()
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}
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fn test_read_raw() ? {
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mut f := os.open_file(tfile, 'w') ?
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f.write_raw(another_point) ?
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f.write_raw(another_byte) ?
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f.write_raw(another_color) ?
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f.write_raw(another_permission) ?
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f.close()
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f = os.open_file(tfile, 'r') ?
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p := f.read_raw<Point>() ?
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b := f.read_raw<byte>() ?
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c := f.read_raw<Color>() ?
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x := f.read_raw<Permissions>() ?
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f.close()
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assert p == another_point
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assert b == another_byte
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assert c == another_color
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assert x == another_permission
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}
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fn test_read_raw_at() ? {
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mut f := os.open_file(tfile, 'w') ?
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f.write([byte(1), 2, 3]) ?
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f.write_raw(another_point) ?
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f.write_raw(another_byte) ?
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f.write_raw(another_color) ?
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f.write_raw(another_permission) ?
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f.close()
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f = os.open_file(tfile, 'r') ?
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mut at := 3
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p := f.read_raw_at<Point>(at) ?
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at += int(sizeof(Point))
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b := f.read_raw_at<byte>(at) ?
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at += int(sizeof(byte))
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c := f.read_raw_at<Color>(at) ?
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at += int(sizeof(Color))
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x := f.read_raw_at<Permissions>(at) ?
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at += int(sizeof(Permissions))
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f.close()
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assert p == another_point
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assert b == another_byte
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assert c == another_color
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assert x == another_permission
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}
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fn test_read_raw_at_negative_pos() ? {
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mut f := os.open_file(tfile, 'r') ?
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if _ := f.read_raw_at<Point>(-1) {
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assert false
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}
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f.read_raw_at<Point>(-234) or { assert err.msg == 'Invalid argument' }
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f.close()
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}
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