builder.odin 6.4 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282
  1. package strings
  2. import "core:mem"
  3. import "core:unicode/utf8"
  4. import "core:strconv"
  5. import "core:io"
  6. Builder_Flush_Proc :: #type proc(b: ^Builder) -> (do_reset: bool)
  7. Builder :: struct {
  8. buf: [dynamic]byte,
  9. }
  10. make_builder_none :: proc(allocator := context.allocator) -> Builder {
  11. return Builder{buf=make([dynamic]byte, allocator)}
  12. }
  13. make_builder_len :: proc(len: int, allocator := context.allocator) -> Builder {
  14. return Builder{buf=make([dynamic]byte, len, allocator)}
  15. }
  16. make_builder_len_cap :: proc(len, cap: int, allocator := context.allocator) -> Builder {
  17. return Builder{buf=make([dynamic]byte, len, cap, allocator)}
  18. }
  19. make_builder :: proc{
  20. make_builder_none,
  21. make_builder_len,
  22. make_builder_len_cap,
  23. }
  24. init_builder_none :: proc(b: ^Builder, allocator := context.allocator) {
  25. b.buf = make([dynamic]byte, allocator)
  26. }
  27. init_builder_len :: proc(b: ^Builder, len: int, allocator := context.allocator) {
  28. b.buf = make([dynamic]byte, len, allocator)
  29. }
  30. init_builder_len_cap :: proc(b: ^Builder, len, cap: int, allocator := context.allocator) {
  31. b.buf = make([dynamic]byte, len, cap, allocator)
  32. }
  33. init_builder :: proc{
  34. init_builder_none,
  35. init_builder_len,
  36. init_builder_len_cap,
  37. }
  38. @(private)
  39. _builder_stream_vtable := &io.Stream_VTable{
  40. impl_write = proc(s: io.Stream, p: []byte) -> (n: int, err: io.Error) {
  41. b := (^Builder)(s.stream_data)
  42. n = write_bytes(b, p)
  43. if n < len(p) {
  44. err = .EOF
  45. }
  46. return
  47. },
  48. impl_write_byte = proc(s: io.Stream, c: byte) -> (err: io.Error) {
  49. b := (^Builder)(s.stream_data)
  50. n := write_byte(b, c)
  51. if n == 0 {
  52. err = .EOF
  53. }
  54. return
  55. },
  56. impl_size = proc(s: io.Stream) -> i64 {
  57. b := (^Builder)(s.stream_data)
  58. return i64(len(b.buf))
  59. },
  60. impl_destroy = proc(s: io.Stream) -> io.Error {
  61. b := (^Builder)(s.stream_data)
  62. delete(b.buf)
  63. return .None
  64. },
  65. }
  66. to_stream :: proc(b: ^Builder) -> io.Stream {
  67. return io.Stream{stream_vtable=_builder_stream_vtable, stream_data=b}
  68. }
  69. to_writer :: proc(b: ^Builder) -> io.Writer {
  70. return io.to_writer(to_stream(b))
  71. }
  72. destroy_builder :: proc(b: ^Builder) {
  73. delete(b.buf)
  74. clear(&b.buf)
  75. }
  76. grow_builder :: proc(b: ^Builder, cap: int) {
  77. reserve(&b.buf, cap)
  78. }
  79. reset_builder :: proc(b: ^Builder) {
  80. clear(&b.buf)
  81. }
  82. builder_from_slice :: proc(backing: []byte) -> Builder {
  83. s := transmute(mem.Raw_Slice)backing
  84. d := mem.Raw_Dynamic_Array{
  85. data = s.data,
  86. len = 0,
  87. cap = s.len,
  88. allocator = mem.nil_allocator(),
  89. }
  90. return Builder{
  91. buf = transmute([dynamic]byte)d,
  92. }
  93. }
  94. to_string :: proc(b: Builder) -> string {
  95. return string(b.buf[:])
  96. }
  97. builder_len :: proc(b: Builder) -> int {
  98. return len(b.buf)
  99. }
  100. builder_cap :: proc(b: Builder) -> int {
  101. return cap(b.buf)
  102. }
  103. builder_space :: proc(b: Builder) -> int {
  104. return max(cap(b.buf), len(b.buf), 0)
  105. }
  106. write_byte :: proc(b: ^Builder, x: byte) -> (n: int) {
  107. n0 := len(b.buf)
  108. append(&b.buf, x)
  109. n1 := len(b.buf)
  110. return n1-n0
  111. }
  112. write_bytes :: proc(b: ^Builder, x: []byte) -> (n: int) {
  113. n0 := len(b.buf)
  114. append(&b.buf, ..x)
  115. n1 := len(b.buf)
  116. return n1-n0
  117. }
  118. write_rune_builder :: proc(b: ^Builder, r: rune) -> (int, io.Error) {
  119. return io.write_rune(to_writer(b), r)
  120. }
  121. write_quoted_rune_builder :: proc(b: ^Builder, r: rune) -> (n: int) {
  122. return write_quoted_rune(to_writer(b), r)
  123. }
  124. @(private)
  125. _write_byte :: proc(w: io.Writer, c: byte) -> int {
  126. err := io.write_byte(w, c)
  127. return 1 if err == nil else 0
  128. }
  129. write_quoted_rune :: proc(w: io.Writer, r: rune) -> (n: int) {
  130. quote := byte('\'')
  131. n += _write_byte(w, quote)
  132. buf, width := utf8.encode_rune(r)
  133. if width == 1 && r == utf8.RUNE_ERROR {
  134. n += _write_byte(w, '\\')
  135. n += _write_byte(w, 'x')
  136. n += _write_byte(w, DIGITS_LOWER[buf[0]>>4])
  137. n += _write_byte(w, DIGITS_LOWER[buf[0]&0xf])
  138. } else {
  139. i, _ := io.write_escaped_rune(w, r, quote)
  140. n += i
  141. }
  142. n += _write_byte(w, quote)
  143. return
  144. }
  145. write_string :: proc{
  146. write_string_builder,
  147. write_string_writer,
  148. }
  149. write_string_builder :: proc(b: ^Builder, s: string) -> (n: int) {
  150. return write_string_writer(to_writer(b), s)
  151. }
  152. write_string_writer :: proc(w: io.Writer, s: string) -> (n: int) {
  153. n, _ = io.write(w, transmute([]byte)s)
  154. return
  155. }
  156. pop_byte :: proc(b: ^Builder) -> (r: byte) {
  157. if len(b.buf) == 0 {
  158. return 0
  159. }
  160. r = b.buf[len(b.buf)-1]
  161. d := cast(^mem.Raw_Dynamic_Array)&b.buf
  162. d.len = max(d.len-1, 0)
  163. return
  164. }
  165. pop_rune :: proc(b: ^Builder) -> (r: rune, width: int) {
  166. r, width = utf8.decode_last_rune(b.buf[:])
  167. d := cast(^mem.Raw_Dynamic_Array)&b.buf
  168. d.len = max(d.len-width, 0)
  169. return
  170. }
  171. @(private)
  172. DIGITS_LOWER := "0123456789abcdefx"
  173. write_quoted_string :: proc{
  174. write_quoted_string_builder,
  175. write_quoted_string_writer,
  176. }
  177. write_quoted_string_builder :: proc(b: ^Builder, str: string, quote: byte = '"') -> (n: int) {
  178. n, _ = io.write_quoted_string(to_writer(b), str, quote)
  179. return
  180. }
  181. @(deprecated="prefer io.write_quoted_string")
  182. write_quoted_string_writer :: proc(w: io.Writer, str: string, quote: byte = '"') -> (n: int) {
  183. n, _ = io.write_quoted_string(w, str, quote)
  184. return
  185. }
  186. write_encoded_rune :: proc{
  187. write_encoded_rune_builder,
  188. write_encoded_rune_writer,
  189. }
  190. write_encoded_rune_builder :: proc(b: ^Builder, r: rune, write_quote := true) -> (n: int) {
  191. n, _ = io.write_encoded_rune(to_writer(b), r, write_quote)
  192. return
  193. }
  194. @(deprecated="prefer io.write_encoded_rune")
  195. write_encoded_rune_writer :: proc(w: io.Writer, r: rune, write_quote := true) -> (n: int) {
  196. n, _ = io.write_encoded_rune(w, r, write_quote)
  197. return
  198. }
  199. write_escaped_rune :: proc{
  200. write_escaped_rune_builder,
  201. write_escaped_rune_writer,
  202. }
  203. write_escaped_rune_builder :: proc(b: ^Builder, r: rune, quote: byte, html_safe := false) -> (n: int) {
  204. n, _ = io.write_escaped_rune(to_writer(b), r, quote, html_safe)
  205. return
  206. }
  207. @(deprecated="prefer io.write_escaped_rune")
  208. write_escaped_rune_writer :: proc(w: io.Writer, r: rune, quote: byte, html_safe := false) -> (n: int) {
  209. n, _ = io.write_escaped_rune(w, r, quote, html_safe)
  210. return
  211. }
  212. write_u64 :: proc(b: ^Builder, i: u64, base: int = 10) -> (n: int) {
  213. buf: [32]byte
  214. s := strconv.append_bits(buf[:], i, base, false, 64, strconv.digits, nil)
  215. return write_string(b, s)
  216. }
  217. write_i64 :: proc(b: ^Builder, i: i64, base: int = 10) -> (n: int) {
  218. buf: [32]byte
  219. s := strconv.append_bits(buf[:], u64(i), base, true, 64, strconv.digits, nil)
  220. return write_string(b, s)
  221. }
  222. write_uint :: proc(b: ^Builder, i: uint, base: int = 10) -> (n: int) {
  223. return write_u64(b, u64(i), base)
  224. }
  225. write_int :: proc(b: ^Builder, i: int, base: int = 10) -> (n: int) {
  226. return write_i64(b, i64(i), base)
  227. }