print.odin 9.7 KB

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  1. package runtime
  2. _INTEGER_DIGITS :: "0123456789abcdefghijklmnopqrstuvwxyz"
  3. @(private="file")
  4. _INTEGER_DIGITS_VAR := _INTEGER_DIGITS
  5. when !ODIN_DISALLOW_RTTI {
  6. print_any_single :: proc(arg: any) {
  7. x := arg
  8. if loc, ok := x.(Source_Code_Location); ok {
  9. print_caller_location(loc)
  10. return
  11. }
  12. x.id = typeid_base(x.id)
  13. switch v in x {
  14. case typeid: print_typeid(v)
  15. case ^Type_Info: print_type(v)
  16. case string: print_string(v)
  17. case cstring: print_string(string(v))
  18. case []byte: print_string(string(v))
  19. case rune: print_rune(v)
  20. case u8: print_u64(u64(v))
  21. case u16: print_u64(u64(v))
  22. case u16le: print_u64(u64(v))
  23. case u16be: print_u64(u64(v))
  24. case u32: print_u64(u64(v))
  25. case u32le: print_u64(u64(v))
  26. case u32be: print_u64(u64(v))
  27. case u64: print_u64(u64(v))
  28. case u64le: print_u64(u64(v))
  29. case u64be: print_u64(u64(v))
  30. case i8: print_i64(i64(v))
  31. case i16: print_i64(i64(v))
  32. case i16le: print_i64(i64(v))
  33. case i16be: print_i64(i64(v))
  34. case i32: print_i64(i64(v))
  35. case i32le: print_i64(i64(v))
  36. case i32be: print_i64(i64(v))
  37. case i64: print_i64(i64(v))
  38. case i64le: print_i64(i64(v))
  39. case i64be: print_i64(i64(v))
  40. case int: print_int(v)
  41. case uint: print_uint(v)
  42. case uintptr: print_uintptr(v)
  43. case:
  44. ti := type_info_of(x.id)
  45. #partial switch v in ti.variant {
  46. case Type_Info_Pointer:
  47. print_uintptr((^uintptr)(x.data)^)
  48. return
  49. }
  50. print_string("<invalid-value>")
  51. }
  52. }
  53. println_any :: proc(args: ..any) {
  54. loop: for arg, i in args {
  55. if i != 0 {
  56. print_string(" ")
  57. }
  58. print_any_single(arg)
  59. }
  60. print_string("\n")
  61. }
  62. }
  63. encode_rune :: proc "contextless" (c: rune) -> ([4]u8, int) {
  64. r := c
  65. buf: [4]u8
  66. i := u32(r)
  67. mask :: u8(0x3f)
  68. if i <= 1<<7-1 {
  69. buf[0] = u8(r)
  70. return buf, 1
  71. }
  72. if i <= 1<<11-1 {
  73. buf[0] = 0xc0 | u8(r>>6)
  74. buf[1] = 0x80 | u8(r) & mask
  75. return buf, 2
  76. }
  77. // Invalid or Surrogate range
  78. if i > 0x0010ffff ||
  79. (0xd800 <= i && i <= 0xdfff) {
  80. r = 0xfffd
  81. }
  82. if i <= 1<<16-1 {
  83. buf[0] = 0xe0 | u8(r>>12)
  84. buf[1] = 0x80 | u8(r>>6) & mask
  85. buf[2] = 0x80 | u8(r) & mask
  86. return buf, 3
  87. }
  88. buf[0] = 0xf0 | u8(r>>18)
  89. buf[1] = 0x80 | u8(r>>12) & mask
  90. buf[2] = 0x80 | u8(r>>6) & mask
  91. buf[3] = 0x80 | u8(r) & mask
  92. return buf, 4
  93. }
  94. print_string :: proc "contextless" (str: string) -> (n: int) {
  95. n, _ = os_write(transmute([]byte)str)
  96. return
  97. }
  98. print_strings :: proc "contextless" (args: ..string) -> (n: int) {
  99. for str in args {
  100. m, err := os_write(transmute([]byte)str)
  101. n += m
  102. if err != 0 {
  103. break
  104. }
  105. }
  106. return
  107. }
  108. print_byte :: proc "contextless" (b: byte) -> (n: int) {
  109. n, _ = os_write([]byte{b})
  110. return
  111. }
  112. print_encoded_rune :: proc "contextless" (r: rune) {
  113. print_byte('\'')
  114. switch r {
  115. case '\a': print_string("\\a")
  116. case '\b': print_string("\\b")
  117. case '\e': print_string("\\e")
  118. case '\f': print_string("\\f")
  119. case '\n': print_string("\\n")
  120. case '\r': print_string("\\r")
  121. case '\t': print_string("\\t")
  122. case '\v': print_string("\\v")
  123. case:
  124. if r <= 0 {
  125. print_string("\\x00")
  126. } else if r < 32 {
  127. n0, n1 := u8(r) >> 4, u8(r) & 0xf
  128. print_string("\\x")
  129. print_byte(_INTEGER_DIGITS_VAR[n0])
  130. print_byte(_INTEGER_DIGITS_VAR[n1])
  131. } else {
  132. print_rune(r)
  133. }
  134. }
  135. print_byte('\'')
  136. }
  137. print_rune :: proc "contextless" (r: rune) -> int #no_bounds_check {
  138. RUNE_SELF :: 0x80
  139. if r < RUNE_SELF {
  140. return print_byte(byte(r))
  141. }
  142. b, n := encode_rune(r)
  143. m, _ := os_write(b[:n])
  144. return m
  145. }
  146. print_u64 :: proc "contextless" (x: u64) #no_bounds_check {
  147. a: [129]byte
  148. i := len(a)
  149. b := u64(10)
  150. u := x
  151. for u >= b {
  152. i -= 1; a[i] = _INTEGER_DIGITS_VAR[u % b]
  153. u /= b
  154. }
  155. i -= 1; a[i] = _INTEGER_DIGITS_VAR[u % b]
  156. os_write(a[i:])
  157. }
  158. print_i64 :: proc "contextless" (x: i64) #no_bounds_check {
  159. b :: i64(10)
  160. u := x
  161. neg := u < 0
  162. u = abs(u)
  163. a: [129]byte
  164. i := len(a)
  165. for u >= b {
  166. i -= 1; a[i] = _INTEGER_DIGITS_VAR[u % b]
  167. u /= b
  168. }
  169. i -= 1; a[i] = _INTEGER_DIGITS_VAR[u % b]
  170. if neg {
  171. i -= 1; a[i] = '-'
  172. }
  173. os_write(a[i:])
  174. }
  175. print_uint :: proc "contextless" (x: uint) { print_u64(u64(x)) }
  176. print_uintptr :: proc "contextless" (x: uintptr) { print_u64(u64(x)) }
  177. print_int :: proc "contextless" (x: int) { print_i64(i64(x)) }
  178. print_caller_location :: proc "contextless" (using loc: Source_Code_Location) {
  179. print_string(file_path)
  180. when ODIN_ERROR_POS_STYLE == .Default {
  181. print_byte('(')
  182. print_u64(u64(line))
  183. print_byte(':')
  184. print_u64(u64(column))
  185. print_byte(')')
  186. } else when ODIN_ERROR_POS_STYLE == .Unix {
  187. print_byte(':')
  188. print_u64(u64(line))
  189. print_byte(':')
  190. print_u64(u64(column))
  191. print_byte(':')
  192. } else {
  193. #panic("unhandled ODIN_ERROR_POS_STYLE")
  194. }
  195. }
  196. print_typeid :: proc "contextless" (id: typeid) {
  197. when ODIN_DISALLOW_RTTI {
  198. if id == nil {
  199. print_string("nil")
  200. } else {
  201. print_string("<unknown type>")
  202. }
  203. } else {
  204. if id == nil {
  205. print_string("nil")
  206. } else {
  207. ti := type_info_of(id)
  208. print_type(ti)
  209. }
  210. }
  211. }
  212. print_type :: proc "contextless" (ti: ^Type_Info) {
  213. if ti == nil {
  214. print_string("nil")
  215. return
  216. }
  217. switch info in ti.variant {
  218. case Type_Info_Named:
  219. print_string(info.name)
  220. case Type_Info_Integer:
  221. switch ti.id {
  222. case int: print_string("int")
  223. case uint: print_string("uint")
  224. case uintptr: print_string("uintptr")
  225. case:
  226. print_byte('i' if info.signed else 'u')
  227. print_u64(u64(8*ti.size))
  228. }
  229. case Type_Info_Rune:
  230. print_string("rune")
  231. case Type_Info_Float:
  232. print_byte('f')
  233. print_u64(u64(8*ti.size))
  234. case Type_Info_Complex:
  235. print_string("complex")
  236. print_u64(u64(8*ti.size))
  237. case Type_Info_Quaternion:
  238. print_string("quaternion")
  239. print_u64(u64(8*ti.size))
  240. case Type_Info_String:
  241. print_string("string")
  242. case Type_Info_Boolean:
  243. switch ti.id {
  244. case bool: print_string("bool")
  245. case:
  246. print_byte('b')
  247. print_u64(u64(8*ti.size))
  248. }
  249. case Type_Info_Any:
  250. print_string("any")
  251. case Type_Info_Type_Id:
  252. print_string("typeid")
  253. case Type_Info_Pointer:
  254. if info.elem == nil {
  255. print_string("rawptr")
  256. } else {
  257. print_string("^")
  258. print_type(info.elem)
  259. }
  260. case Type_Info_Multi_Pointer:
  261. print_string("[^]")
  262. print_type(info.elem)
  263. case Type_Info_Soa_Pointer:
  264. print_string("#soa ^")
  265. print_type(info.elem)
  266. case Type_Info_Procedure:
  267. print_string("proc")
  268. if info.params == nil {
  269. print_string("()")
  270. } else {
  271. t := info.params.variant.(Type_Info_Parameters)
  272. print_byte('(')
  273. for t, i in t.types {
  274. if i > 0 { print_string(", ") }
  275. print_type(t)
  276. }
  277. print_string(")")
  278. }
  279. if info.results != nil {
  280. print_string(" -> ")
  281. print_type(info.results)
  282. }
  283. case Type_Info_Parameters:
  284. count := len(info.names)
  285. if count != 1 { print_byte('(') }
  286. for name, i in info.names {
  287. if i > 0 { print_string(", ") }
  288. t := info.types[i]
  289. if len(name) > 0 {
  290. print_string(name)
  291. print_string(": ")
  292. }
  293. print_type(t)
  294. }
  295. if count != 1 { print_string(")") }
  296. case Type_Info_Array:
  297. print_byte('[')
  298. print_u64(u64(info.count))
  299. print_byte(']')
  300. print_type(info.elem)
  301. case Type_Info_Enumerated_Array:
  302. if info.is_sparse {
  303. print_string("#sparse")
  304. }
  305. print_byte('[')
  306. print_type(info.index)
  307. print_byte(']')
  308. print_type(info.elem)
  309. case Type_Info_Dynamic_Array:
  310. print_string("[dynamic]")
  311. print_type(info.elem)
  312. case Type_Info_Slice:
  313. print_string("[]")
  314. print_type(info.elem)
  315. case Type_Info_Map:
  316. print_string("map[")
  317. print_type(info.key)
  318. print_byte(']')
  319. print_type(info.value)
  320. case Type_Info_Struct:
  321. switch info.soa_kind {
  322. case .None: // Ignore
  323. case .Fixed:
  324. print_string("#soa[")
  325. print_u64(u64(info.soa_len))
  326. print_byte(']')
  327. print_type(info.soa_base_type)
  328. return
  329. case .Slice:
  330. print_string("#soa[]")
  331. print_type(info.soa_base_type)
  332. return
  333. case .Dynamic:
  334. print_string("#soa[dynamic]")
  335. print_type(info.soa_base_type)
  336. return
  337. }
  338. print_string("struct ")
  339. if info.is_packed { print_string("#packed ") }
  340. if info.is_raw_union { print_string("#raw_union ") }
  341. if info.custom_align {
  342. print_string("#align ")
  343. print_u64(u64(ti.align))
  344. print_byte(' ')
  345. }
  346. print_byte('{')
  347. for name, i in info.names {
  348. if i > 0 { print_string(", ") }
  349. print_string(name)
  350. print_string(": ")
  351. print_type(info.types[i])
  352. }
  353. print_byte('}')
  354. case Type_Info_Union:
  355. print_string("union ")
  356. if info.custom_align {
  357. print_string("#align ")
  358. print_u64(u64(ti.align))
  359. }
  360. if info.no_nil {
  361. print_string("#no_nil ")
  362. }
  363. print_byte('{')
  364. for variant, i in info.variants {
  365. if i > 0 { print_string(", ") }
  366. print_type(variant)
  367. }
  368. print_string("}")
  369. case Type_Info_Enum:
  370. print_string("enum ")
  371. print_type(info.base)
  372. print_string(" {")
  373. for name, i in info.names {
  374. if i > 0 { print_string(", ") }
  375. print_string(name)
  376. }
  377. print_string("}")
  378. case Type_Info_Bit_Set:
  379. print_string("bit_set[")
  380. #partial switch elem in type_info_base(info.elem).variant {
  381. case Type_Info_Enum:
  382. print_type(info.elem)
  383. case Type_Info_Rune:
  384. print_encoded_rune(rune(info.lower))
  385. print_string("..")
  386. print_encoded_rune(rune(info.upper))
  387. case:
  388. print_i64(info.lower)
  389. print_string("..")
  390. print_i64(info.upper)
  391. }
  392. if info.underlying != nil {
  393. print_string("; ")
  394. print_type(info.underlying)
  395. }
  396. print_byte(']')
  397. case Type_Info_Simd_Vector:
  398. print_string("#simd[")
  399. print_u64(u64(info.count))
  400. print_byte(']')
  401. print_type(info.elem)
  402. case Type_Info_Relative_Pointer:
  403. print_string("#relative(")
  404. print_type(info.base_integer)
  405. print_string(") ")
  406. print_type(info.pointer)
  407. case Type_Info_Relative_Slice:
  408. print_string("#relative(")
  409. print_type(info.base_integer)
  410. print_string(") ")
  411. print_type(info.slice)
  412. case Type_Info_Matrix:
  413. print_string("matrix[")
  414. print_u64(u64(info.row_count))
  415. print_string(", ")
  416. print_u64(u64(info.column_count))
  417. print_string("]")
  418. print_type(info.elem)
  419. }
  420. }