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os: add norm_path and abs_path function (#14435)
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@ -10,7 +10,7 @@ on:
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- "**.md"
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concurrency:
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group: build-other-${{ github.event.pull_request.number || github.sha }}
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group: build-v-apps-and-modules-${{ github.event.pull_request.number || github.sha }}
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cancel-in-progress: true
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jobs:
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@ -1,5 +1,8 @@
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module os
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import strings
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import strings.textscanner
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// Collection of useful functions for manipulation, validation and analysis of system paths.
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// The following functions handle paths depending on the operating system,
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// therefore results may be different for certain operating systems.
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@ -8,6 +11,10 @@ const (
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fslash = `/`
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bslash = `\\`
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dot = `.`
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qmark = `?`
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dot_dot = '..'
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empty = ''
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dot_str = '.'
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)
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// is_abs_path returns `true` if the given `path` is absolute.
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@ -16,11 +23,152 @@ pub fn is_abs_path(path string) bool {
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return false
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}
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$if windows {
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return is_device_path(path) || is_drive_rooted(path) || is_normal_path(path)
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return is_unc_path(path) || is_drive_rooted(path) || is_normal_path(path)
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}
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return path[0] == os.fslash
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}
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// abs_path joins the current working directory
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// with the given `path` (if the `path` is relative)
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// and returns the absolute path representation.
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pub fn abs_path(path string) string {
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wd := getwd()
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if path.len == 0 {
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return wd
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}
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npath := norm_path(path)
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if npath == os.dot_str {
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return wd
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}
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if !is_abs_path(npath) {
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mut sb := strings.new_builder(npath.len)
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sb.write_string(wd)
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sb.write_string(path_separator)
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sb.write_string(npath)
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return norm_path(sb.str())
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}
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return npath
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}
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// norm_path returns the normalized version of the given `path`
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// by resolving backlinks (..), turning forward slashes into
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// back slashes on a Windows system and eliminating:
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// - references to current directories (.)
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// - redundant path separators
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// - the last path separator
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[direct_array_access]
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pub fn norm_path(path string) string {
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if path.len == 0 {
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return '.'
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}
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rooted := is_abs_path(path)
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volume := get_volume(path)
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volume_len := volume.len
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cpath := clean_path(path[volume_len..])
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if cpath.len == 0 && volume_len == 0 {
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return '.'
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}
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spath := cpath.split(path_separator)
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if os.dot_dot !in spath {
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return if volume_len != 0 { volume + cpath } else { cpath }
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}
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// resolve backlinks (..)
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spath_len := spath.len
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mut sb := strings.new_builder(cpath.len)
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if rooted {
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sb.write_string(path_separator)
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}
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mut new_path := []string{cap: spath_len}
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mut backlink_count := 0
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for i := spath_len - 1; i >= 0; i-- {
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part := spath[i]
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if part == os.empty {
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continue
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}
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if part == os.dot_dot {
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backlink_count++
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continue
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}
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if backlink_count != 0 {
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backlink_count--
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continue
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}
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new_path.prepend(part)
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}
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// append backlink(s) to the path if backtracking
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// is not possible and the given path is not rooted
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if backlink_count != 0 && !rooted {
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for i in 0 .. backlink_count {
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sb.write_string(os.dot_dot)
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if new_path.len == 0 && i == backlink_count - 1 {
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break
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}
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sb.write_string(path_separator)
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}
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}
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sb.write_string(new_path.join(path_separator))
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res := sb.str()
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if res.len == 0 {
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if volume_len != 0 {
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return volume
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}
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if !rooted {
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return '.'
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}
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return path_separator
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}
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if volume_len != 0 {
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return volume + res
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}
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return res
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}
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// clean_path returns the "cleaned" version of the given `path`
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// by turning forward slashes into back slashes
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// on a Windows system and eliminating:
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// - references to current directories (.)
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// - redundant separators
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// - the last path separator
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fn clean_path(path string) string {
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if path.len == 0 {
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return ''
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}
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mut sb := strings.new_builder(path.len)
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mut sc := textscanner.new(path)
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for sc.next() != -1 {
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curr := u8(sc.current())
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back := sc.peek_back()
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peek := sc.peek()
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// skip current path separator if last byte was a path separator
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if back != -1 && is_slash(u8(back)) && is_slash(curr) {
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continue
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}
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// skip reference to current dir (.)
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if (back == -1 || is_slash(u8(back))) && curr == os.dot
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&& (peek == -1 || is_slash(u8(peek))) {
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// skip if the next byte is a path separator
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if peek != -1 && is_slash(u8(peek)) {
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sc.skip_n(1)
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}
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continue
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}
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// turn foward slash into a back slash on a Windows system
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$if windows {
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if curr == os.fslash {
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sb.write_u8(os.bslash)
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continue
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}
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}
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sb.write_u8(u8(sc.current()))
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}
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res := sb.str()
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// eliminate the last path separator
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if res.len > 1 && is_slash(res[res.len - 1]) {
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return res[..res.len - 1]
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}
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return res
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}
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// win_volume_len returns the length of the
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// Windows volume/drive from the given `path`.
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fn win_volume_len(path string) int {
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@ -32,7 +180,7 @@ fn win_volume_len(path string) int {
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return 2
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}
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// its UNC path / DOS device path?
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if path.len >= 5 && starts_w_slash_slash(path) && !is_slash(path[2]) {
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if plen >= 5 && starts_w_slash_slash(path) && !is_slash(path[2]) {
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for i := 3; i < plen; i++ {
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if is_slash(path[i]) {
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if i + 1 >= plen || is_slash(path[i + 1]) {
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@ -51,6 +199,20 @@ fn win_volume_len(path string) int {
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return 0
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}
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fn get_volume(path string) string {
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$if !windows {
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return ''
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}
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volume := path[..win_volume_len(path)]
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if volume.len == 0 {
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return ''
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}
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if volume[0] == os.fslash {
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return volume.replace('/', '\\')
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}
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return volume
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}
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fn is_slash(b u8) bool {
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$if windows {
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return b == os.bslash || b == os.fslash
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@ -58,7 +220,7 @@ fn is_slash(b u8) bool {
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return b == os.fslash
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}
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fn is_device_path(path string) bool {
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fn is_unc_path(path string) bool {
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return win_volume_len(path) >= 5 && starts_w_slash_slash(path)
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}
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@ -27,3 +27,103 @@ fn test_is_abs_path() {
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assert !is_abs_path('./')
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assert !is_abs_path('.')
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}
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fn test_clean_path() {
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$if windows {
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assert clean_path(r'\\path\to\files/file.v') == r'\path\to\files\file.v'
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assert clean_path(r'\/\//\/') == '\\'
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assert clean_path(r'./path\\dir/\\./\/\\/file.v\.\\\.') == r'path\dir\file.v'
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assert clean_path(r'\./path/dir\\file.exe') == r'\path\dir\file.exe'
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assert clean_path(r'.') == ''
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assert clean_path(r'./') == ''
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assert clean_path(r'\./') == '\\'
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assert clean_path(r'//\/\/////') == '\\'
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return
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}
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assert clean_path('./../.././././//') == '../..'
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assert clean_path('.') == ''
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assert clean_path('./path/to/file.v//./') == 'path/to/file.v'
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assert clean_path('./') == ''
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assert clean_path('/.') == '/'
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assert clean_path('//path/./to/.///files/file.v///') == '/path/to/files/file.v'
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assert clean_path('path/./to/.///files/.././file.v///') == 'path/to/files/../file.v'
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assert clean_path('\\') == '\\'
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assert clean_path('//////////') == '/'
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}
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fn test_norm_path() {
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$if windows {
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assert norm_path(r'C:/path/to//file.v\\') == r'C:\path\to\file.v'
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assert norm_path(r'C:path\.\..\\\.\to//file.v') == r'C:to\file.v'
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assert norm_path(r'D:path\.\..\..\\\\.\to//dir/..\') == r'D:..\to'
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assert norm_path(r'D:/path\.\..\/..\file.v') == r'D:\file.v'
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assert norm_path(r'') == '.'
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assert norm_path(r'/') == '\\'
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assert norm_path(r'\/') == '\\'
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assert norm_path(r'path\../dir\..') == '.'
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assert norm_path(r'.\.\') == '.'
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assert norm_path(r'G:.\.\dir\././\.\.\\\\///to/././\file.v/./\\') == r'G:dir\to\file.v'
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assert norm_path(r'G:\..\..\.\.\file.v\\\.') == r'G:\file.v'
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assert norm_path(r'\\Server\share\\\dir/..\file.v\./.') == r'\\Server\share\file.v'
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assert norm_path(r'\\.\device\\\dir/to/./file.v\.') == r'\\.\device\dir\to\file.v'
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assert norm_path(r'C:dir/../dir2/../../../file.v') == r'C:..\..\file.v'
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assert norm_path(r'\\.\C:\\\Users/\Documents//..') == r'\\.\C:\Users'
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assert norm_path(r'\\.\C:\Users') == r'\\.\C:\Users'
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assert norm_path(r'\\') == '\\'
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assert norm_path(r'//') == '\\'
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assert norm_path(r'\\\') == '\\'
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assert norm_path(r'.') == '.'
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assert norm_path(r'\\Server') == '\\Server'
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assert norm_path(r'\\Server\') == '\\Server'
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return
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}
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assert norm_path('/path/././../to/file//file.v/.') == '/to/file/file.v'
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assert norm_path('path/././to/files/../../file.v/.') == 'path/file.v'
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assert norm_path('path/././/../../to/file.v/.') == '../to/file.v'
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assert norm_path('/path/././/../..///.././file.v/././') == '/file.v'
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assert norm_path('path/././//../../../to/dir//.././file.v/././') == '../../to/file.v'
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assert norm_path('path/../dir/..') == '.'
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assert norm_path('../dir/..') == '..'
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assert norm_path('/../dir/..') == '/'
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assert norm_path('//././dir/../files/././/file.v') == '/files/file.v'
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assert norm_path('/\\../dir/////////.') == '/\\../dir'
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assert norm_path('/home/') == '/home'
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assert norm_path('/home/////./.') == '/home'
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assert norm_path('...') == '...'
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}
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fn test_abs_path() {
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wd := getwd()
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wd_w_sep := wd + path_separator
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$if windows {
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assert abs_path('path/to/file.v') == '${wd_w_sep}path\\to\\file.v'
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assert abs_path('path/to/file.v') == '${wd_w_sep}path\\to\\file.v'
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assert abs_path('/') == r'\'
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assert abs_path(r'C:\path\to\files\file.v') == r'C:\path\to\files\file.v'
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assert abs_path(r'C:\/\path\.\to\../files\file.v\.\\\.\') == r'C:\path\files\file.v'
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assert abs_path(r'\\Host\share\files\..\..\.') == r'\\Host\share\'
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assert abs_path(r'\\.\HardDiskvolume2\files\..\..\.') == r'\\.\HardDiskvolume2\'
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assert abs_path(r'\\?\share') == r'\\?\share'
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assert abs_path(r'\\.\') == r'\'
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assert abs_path(r'G:/\..\\..\.\.\file.v\\.\.\\\\') == r'G:\file.v'
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assert abs_path('files') == '${wd_w_sep}files'
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assert abs_path('') == wd
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assert abs_path('.') == wd
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assert abs_path('files/../file.v') == '${wd_w_sep}file.v'
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assert abs_path('///') == r'\'
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assert abs_path('/path/to/file.v') == r'\path\to\file.v'
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assert abs_path('D:/') == r'D:\'
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assert abs_path(r'\\.\HardiskVolume6') == r'\\.\HardiskVolume6'
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return
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}
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assert abs_path('/') == '/'
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assert abs_path('.') == wd
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assert abs_path('files') == '${wd_w_sep}files'
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assert abs_path('') == wd
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assert abs_path('files/../file.v') == '${wd_w_sep}file.v'
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assert abs_path('///') == '/'
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assert abs_path('/path/to/file.v') == '/path/to/file.v'
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assert abs_path('/path/to/file.v/../..') == '/path'
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assert abs_path('path/../file.v/..') == wd
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assert abs_path('///') == '/'
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}
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@ -270,7 +270,7 @@ pub fn (b &Builder) import_graph() &depgraph.DepGraph {
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deps << 'builtin'
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if b.pref.backend == .c {
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// TODO JavaScript backend doesn't handle os for now
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if b.pref.is_vsh && p.mod.name !in ['os', 'dl'] {
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if b.pref.is_vsh && p.mod.name !in ['os', 'dl', 'strings.textscanner'] {
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deps << 'os'
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}
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}
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