file_util.odin 2.9 KB

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  1. package os2
  2. import "core:mem"
  3. import "core:strconv"
  4. import "core:unicode/utf8"
  5. write_string :: proc(f: ^File, s: string) -> (n: int, err: Error) {
  6. return write(f, transmute([]byte)s)
  7. }
  8. write_byte :: proc(f: ^File, b: byte) -> (n: int, err: Error) {
  9. return write(f, []byte{b})
  10. }
  11. write_rune :: proc(f: ^File, r: rune) -> (n: int, err: Error) {
  12. if r < utf8.RUNE_SELF {
  13. return write_byte(f, byte(r))
  14. }
  15. b: [4]byte
  16. b, n = utf8.encode_rune(r)
  17. return write(f, b[:n])
  18. }
  19. write_encoded_rune :: proc(f: ^File, r: rune) -> (n: int, err: Error) {
  20. wrap :: proc(m: int, merr: Error, n: ^int, err: ^Error) -> bool {
  21. n^ += m
  22. if merr != nil {
  23. err^ = merr
  24. return true
  25. }
  26. return false
  27. }
  28. if wrap(write_byte(f, '\''), &n, &err) { return }
  29. switch r {
  30. case '\a': if wrap(write_string(f, "\\a"), &n, &err) { return }
  31. case '\b': if wrap(write_string(f, "\\b"), &n, &err) { return }
  32. case '\e': if wrap(write_string(f, "\\e"), &n, &err) { return }
  33. case '\f': if wrap(write_string(f, "\\f"), &n, &err) { return }
  34. case '\n': if wrap(write_string(f, "\\n"), &n, &err) { return }
  35. case '\r': if wrap(write_string(f, "\\r"), &n, &err) { return }
  36. case '\t': if wrap(write_string(f, "\\t"), &n, &err) { return }
  37. case '\v': if wrap(write_string(f, "\\v"), &n, &err) { return }
  38. case:
  39. if r < 32 {
  40. if wrap(write_string(f, "\\x"), &n, &err) { return }
  41. b: [2]byte
  42. s := strconv.append_bits(b[:], u64(r), 16, true, 64, strconv.digits, nil)
  43. switch len(s) {
  44. case 0: if wrap(write_string(f, "00"), &n, &err) { return }
  45. case 1: if wrap(write_rune(f, '0'), &n, &err) { return }
  46. case 2: if wrap(write_string(f, s), &n, &err) { return }
  47. }
  48. } else {
  49. if wrap(write_rune(f, r), &n, &err) { return }
  50. }
  51. }
  52. _ = wrap(write_byte(f, '\''), &n, &err)
  53. return
  54. }
  55. write_ptr :: proc(f: ^File, data: rawptr, len: int) -> (n: int, err: Error) {
  56. s := transmute([]byte)mem.Raw_Slice{data, len}
  57. return write(f, s)
  58. }
  59. read_ptr :: proc(f: ^File, data: rawptr, len: int) -> (n: int, err: Error) {
  60. s := transmute([]byte)mem.Raw_Slice{data, len}
  61. return read(f, s)
  62. }
  63. read_entire_file :: proc(name: string, allocator := context.allocator) -> (data: []byte, err: Error) {
  64. f, ferr := open(name)
  65. if ferr != nil {
  66. return nil, ferr
  67. }
  68. defer close(f)
  69. size: int
  70. if size64, err := file_size(f); err == nil {
  71. if i64(int(size64)) != size64 {
  72. size = int(size64)
  73. }
  74. }
  75. size += 1 // for EOF
  76. // TODO(bill): Is this correct logic?
  77. total: int
  78. data = make([]byte, size, allocator) or_return
  79. for {
  80. n: int
  81. n, err = read(f, data[total:])
  82. total += n
  83. if err != nil {
  84. if err == .EOF {
  85. err = nil
  86. }
  87. data = data[:total]
  88. return
  89. }
  90. }
  91. }
  92. write_entire_file :: proc(name: string, data: []byte, perm: File_Mode, truncate := true) -> Error {
  93. flags := O_WRONLY|O_CREATE
  94. if truncate {
  95. flags |= O_TRUNC
  96. }
  97. f, err := open(name, flags, perm)
  98. if err != nil {
  99. return err
  100. }
  101. _, err = write(f, data)
  102. if cerr := close(f); cerr != nil && err == nil {
  103. err = cerr
  104. }
  105. return err
  106. }