marshal.odin 18 KB

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  1. package encoding_json
  2. import "core:mem"
  3. import "core:math/bits"
  4. import "base:runtime"
  5. import "core:strconv"
  6. import "core:strings"
  7. import "core:reflect"
  8. import "core:io"
  9. import "core:slice"
  10. Marshal_Data_Error :: enum {
  11. None,
  12. Unsupported_Type,
  13. }
  14. Marshal_Error :: union #shared_nil {
  15. Marshal_Data_Error,
  16. io.Error,
  17. }
  18. // careful with MJSON maps & non quotes usage as keys with whitespace will lead to bad results
  19. Marshal_Options :: struct {
  20. // output based on spec
  21. spec: Specification,
  22. // Use line breaks & tabs/spaces
  23. pretty: bool,
  24. // Use spaces for indentation instead of tabs
  25. use_spaces: bool,
  26. // Given use_spaces true, use this many spaces per indent level. 0 means 4 spaces.
  27. spaces: int,
  28. // Output uint as hex in JSON5 & MJSON
  29. write_uint_as_hex: bool,
  30. // If spec is MJSON and this is true, then keys will be quoted.
  31. //
  32. // WARNING: If your keys contain whitespace and this is false, then the
  33. // output will be bad.
  34. mjson_keys_use_quotes: bool,
  35. // If spec is MJSON and this is true, then use '=' as delimiter between
  36. // keys and values, otherwise ':' is used.
  37. mjson_keys_use_equal_sign: bool,
  38. // When outputting a map, sort the output by key.
  39. //
  40. // NOTE: This will temp allocate and sort a list for each map.
  41. sort_maps_by_key: bool,
  42. // Output enum value's name instead of its underlying value.
  43. //
  44. // NOTE: If a name isn't found it'll use the underlying value.
  45. use_enum_names: bool,
  46. // Internal state
  47. indentation: int,
  48. mjson_skipped_first_braces_start: bool,
  49. mjson_skipped_first_braces_end: bool,
  50. }
  51. marshal :: proc(v: any, opt: Marshal_Options = {}, allocator := context.allocator, loc := #caller_location) -> (data: []byte, err: Marshal_Error) {
  52. b := strings.builder_make(allocator, loc)
  53. defer if err != nil {
  54. strings.builder_destroy(&b)
  55. }
  56. // temp guard in case we are sorting map keys, which will use temp allocations
  57. runtime.DEFAULT_TEMP_ALLOCATOR_TEMP_GUARD(ignore = allocator == context.temp_allocator)
  58. opt := opt
  59. marshal_to_builder(&b, v, &opt) or_return
  60. if len(b.buf) != 0 {
  61. data = b.buf[:]
  62. }
  63. return data, nil
  64. }
  65. marshal_to_builder :: proc(b: ^strings.Builder, v: any, opt: ^Marshal_Options) -> Marshal_Error {
  66. return marshal_to_writer(strings.to_writer(b), v, opt)
  67. }
  68. marshal_to_writer :: proc(w: io.Writer, v: any, opt: ^Marshal_Options) -> (err: Marshal_Error) {
  69. if v == nil {
  70. io.write_string(w, "null") or_return
  71. return
  72. }
  73. ti := runtime.type_info_base(type_info_of(v.id))
  74. a := any{v.data, ti.id}
  75. switch info in ti.variant {
  76. case runtime.Type_Info_Named:
  77. unreachable()
  78. case runtime.Type_Info_Integer:
  79. buf: [40]byte
  80. u := cast_any_int_to_u128(a)
  81. s: string
  82. // allow uints to be printed as hex
  83. if opt.write_uint_as_hex && (opt.spec == .JSON5 || opt.spec == .MJSON) {
  84. switch i in a {
  85. case u8, u16, u32, u64, u128:
  86. s = strconv.write_bits_128(buf[:], u, 16, info.signed, 8*ti.size, "0123456789abcdef", { .Prefix })
  87. case:
  88. s = strconv.write_bits_128(buf[:], u, 10, info.signed, 8*ti.size, "0123456789", nil)
  89. }
  90. } else {
  91. s = strconv.write_bits_128(buf[:], u, 10, info.signed, 8*ti.size, "0123456789", nil)
  92. }
  93. io.write_string(w, s) or_return
  94. case runtime.Type_Info_Rune:
  95. r := a.(rune)
  96. io.write_byte(w, '"') or_return
  97. io.write_escaped_rune(w, r, '"', true) or_return
  98. io.write_byte(w, '"') or_return
  99. case runtime.Type_Info_Float:
  100. switch f in a {
  101. case f16: io.write_f16(w, f) or_return
  102. case f32: io.write_f32(w, f) or_return
  103. case f64: io.write_f64(w, f) or_return
  104. case: return .Unsupported_Type
  105. }
  106. case runtime.Type_Info_Complex:
  107. r, i: f64
  108. switch z in a {
  109. case complex32: r, i = f64(real(z)), f64(imag(z))
  110. case complex64: r, i = f64(real(z)), f64(imag(z))
  111. case complex128: r, i = f64(real(z)), f64(imag(z))
  112. case: return .Unsupported_Type
  113. }
  114. io.write_byte(w, '[') or_return
  115. io.write_f64(w, r) or_return
  116. io.write_string(w, ", ") or_return
  117. io.write_f64(w, i) or_return
  118. io.write_byte(w, ']') or_return
  119. case runtime.Type_Info_Quaternion:
  120. return .Unsupported_Type
  121. case runtime.Type_Info_String:
  122. switch s in a {
  123. case string: io.write_quoted_string(w, s, '"', nil, true) or_return
  124. case cstring: io.write_quoted_string(w, string(s), '"', nil, true) or_return
  125. }
  126. case runtime.Type_Info_Boolean:
  127. val: bool
  128. switch b in a {
  129. case bool: val = bool(b)
  130. case b8: val = bool(b)
  131. case b16: val = bool(b)
  132. case b32: val = bool(b)
  133. case b64: val = bool(b)
  134. }
  135. io.write_string(w, val ? "true" : "false") or_return
  136. case runtime.Type_Info_Any:
  137. return .Unsupported_Type
  138. case runtime.Type_Info_Type_Id:
  139. return .Unsupported_Type
  140. case runtime.Type_Info_Pointer:
  141. if v.id == typeid_of(Null) {
  142. io.write_string(w, "null") or_return
  143. } else {
  144. return .Unsupported_Type
  145. }
  146. case runtime.Type_Info_Multi_Pointer:
  147. return .Unsupported_Type
  148. case runtime.Type_Info_Soa_Pointer:
  149. return .Unsupported_Type
  150. case runtime.Type_Info_Procedure:
  151. return .Unsupported_Type
  152. case runtime.Type_Info_Parameters:
  153. return .Unsupported_Type
  154. case runtime.Type_Info_Simd_Vector:
  155. return .Unsupported_Type
  156. case runtime.Type_Info_Matrix:
  157. return .Unsupported_Type
  158. case runtime.Type_Info_Bit_Field:
  159. return .Unsupported_Type
  160. case runtime.Type_Info_Array:
  161. opt_write_start(w, opt, '[') or_return
  162. for i in 0..<info.count {
  163. opt_write_iteration(w, opt, i == 0) or_return
  164. data := uintptr(v.data) + uintptr(i*info.elem_size)
  165. marshal_to_writer(w, any{rawptr(data), info.elem.id}, opt) or_return
  166. }
  167. opt_write_end(w, opt, ']') or_return
  168. case runtime.Type_Info_Enumerated_Array:
  169. index_type := reflect.type_info_base(info.index)
  170. enum_type := index_type.variant.(reflect.Type_Info_Enum)
  171. opt_write_start(w, opt, '{') or_return
  172. for i in 0..<info.count {
  173. value := cast(runtime.Type_Info_Enum_Value)i
  174. index, found := slice.linear_search(enum_type.values, value)
  175. if !found {
  176. continue
  177. }
  178. opt_write_iteration(w, opt, i == 0) or_return
  179. opt_write_key(w, opt, enum_type.names[index]) or_return
  180. data := uintptr(v.data) + uintptr(i*info.elem_size)
  181. marshal_to_writer(w, any{rawptr(data), info.elem.id}, opt) or_return
  182. }
  183. opt_write_end(w, opt, '}') or_return
  184. case runtime.Type_Info_Dynamic_Array:
  185. opt_write_start(w, opt, '[') or_return
  186. array := cast(^mem.Raw_Dynamic_Array)v.data
  187. for i in 0..<array.len {
  188. opt_write_iteration(w, opt, i == 0) or_return
  189. data := uintptr(array.data) + uintptr(i*info.elem_size)
  190. marshal_to_writer(w, any{rawptr(data), info.elem.id}, opt) or_return
  191. }
  192. opt_write_end(w, opt, ']') or_return
  193. case runtime.Type_Info_Slice:
  194. opt_write_start(w, opt, '[') or_return
  195. slice := cast(^mem.Raw_Slice)v.data
  196. for i in 0..<slice.len {
  197. opt_write_iteration(w, opt, i == 0) or_return
  198. data := uintptr(slice.data) + uintptr(i*info.elem_size)
  199. marshal_to_writer(w, any{rawptr(data), info.elem.id}, opt) or_return
  200. }
  201. opt_write_end(w, opt, ']') or_return
  202. case runtime.Type_Info_Map:
  203. m := (^mem.Raw_Map)(v.data)
  204. opt_write_start(w, opt, '{') or_return
  205. if m != nil {
  206. if info.map_info == nil {
  207. return .Unsupported_Type
  208. }
  209. map_cap := uintptr(runtime.map_cap(m^))
  210. ks, vs, hs, _, _ := runtime.map_kvh_data_dynamic(m^, info.map_info)
  211. if !opt.sort_maps_by_key {
  212. i := 0
  213. for bucket_index in 0..<map_cap {
  214. runtime.map_hash_is_valid(hs[bucket_index]) or_continue
  215. opt_write_iteration(w, opt, i == 0) or_return
  216. i += 1
  217. key := rawptr(runtime.map_cell_index_dynamic(ks, info.map_info.ks, bucket_index))
  218. value := rawptr(runtime.map_cell_index_dynamic(vs, info.map_info.vs, bucket_index))
  219. // check for string type
  220. {
  221. kv := any{key, info.key.id}
  222. kti := runtime.type_info_base(type_info_of(kv.id))
  223. ka := any{kv.data, kti.id}
  224. name: string
  225. #partial switch info in kti.variant {
  226. case runtime.Type_Info_String:
  227. switch s in ka {
  228. case string: name = s
  229. case cstring: name = string(s)
  230. }
  231. opt_write_key(w, opt, name) or_return
  232. case runtime.Type_Info_Integer:
  233. buf: [40]byte
  234. u := cast_any_int_to_u128(ka)
  235. name = strconv.write_bits_128(buf[:], u, 10, info.signed, 8*kti.size, "0123456789", nil)
  236. opt_write_key(w, opt, name) or_return
  237. case: return .Unsupported_Type
  238. }
  239. }
  240. marshal_to_writer(w, any{value, info.value.id}, opt) or_return
  241. }
  242. } else {
  243. Entry :: struct {
  244. key: string,
  245. value: any,
  246. }
  247. // If we are sorting the map by key, then we temp alloc an array
  248. // and sort it, then output the result.
  249. sorted := make([dynamic]Entry, 0, map_cap, context.temp_allocator)
  250. for bucket_index in 0..<map_cap {
  251. runtime.map_hash_is_valid(hs[bucket_index]) or_continue
  252. key := rawptr(runtime.map_cell_index_dynamic(ks, info.map_info.ks, bucket_index))
  253. value := rawptr(runtime.map_cell_index_dynamic(vs, info.map_info.vs, bucket_index))
  254. name: string
  255. // check for string type
  256. {
  257. kv := any{key, info.key.id}
  258. kti := runtime.type_info_base(type_info_of(kv.id))
  259. ka := any{kv.data, kti.id}
  260. #partial switch info in kti.variant {
  261. case runtime.Type_Info_String:
  262. switch s in ka {
  263. case string: name = s
  264. case cstring: name = string(s)
  265. }
  266. case: return .Unsupported_Type
  267. }
  268. }
  269. append(&sorted, Entry { key = name, value = any{value, info.value.id}})
  270. }
  271. slice.sort_by(sorted[:], proc(i, j: Entry) -> bool { return i.key < j.key })
  272. for s, i in sorted {
  273. opt_write_iteration(w, opt, i == 0) or_return
  274. opt_write_key(w, opt, s.key) or_return
  275. marshal_to_writer(w, s.value, opt) or_return
  276. }
  277. }
  278. }
  279. opt_write_end(w, opt, '}') or_return
  280. case runtime.Type_Info_Struct:
  281. is_omitempty :: proc(v: any) -> bool {
  282. v := v
  283. if v == nil {
  284. return true
  285. }
  286. ti := runtime.type_info_core(type_info_of(v.id))
  287. #partial switch info in ti.variant {
  288. case runtime.Type_Info_String:
  289. switch x in v {
  290. case string: return x == ""
  291. case cstring: return x == nil || x == ""
  292. case string16: return x == ""
  293. case cstring16: return x == nil || x == ""
  294. }
  295. case runtime.Type_Info_Any:
  296. return v.(any) == nil
  297. case runtime.Type_Info_Type_Id:
  298. return v.(typeid) == nil
  299. case runtime.Type_Info_Pointer,
  300. runtime.Type_Info_Multi_Pointer,
  301. runtime.Type_Info_Procedure:
  302. return (^rawptr)(v.data)^ == nil
  303. case runtime.Type_Info_Dynamic_Array:
  304. return (^runtime.Raw_Dynamic_Array)(v.data).len == 0
  305. case runtime.Type_Info_Slice:
  306. return (^runtime.Raw_Slice)(v.data).len == 0
  307. case runtime.Type_Info_Union,
  308. runtime.Type_Info_Bit_Set,
  309. runtime.Type_Info_Soa_Pointer:
  310. return reflect.is_nil(v)
  311. case runtime.Type_Info_Map:
  312. return (^runtime.Raw_Map)(v.data).len == 0
  313. }
  314. return false
  315. }
  316. marshal_struct_fields :: proc(w: io.Writer, v: any, opt: ^Marshal_Options) -> (err: Marshal_Error) {
  317. ti := runtime.type_info_base(type_info_of(v.id))
  318. info := ti.variant.(runtime.Type_Info_Struct)
  319. first_iteration := true
  320. for name, i in info.names[:info.field_count] {
  321. omitempty := false
  322. json_name, extra := json_name_from_tag_value(reflect.struct_tag_get(reflect.Struct_Tag(info.tags[i]), "json"))
  323. if json_name == "-" {
  324. continue
  325. }
  326. for flag in strings.split_iterator(&extra, ",") {
  327. switch flag {
  328. case "omitempty":
  329. omitempty = true
  330. }
  331. }
  332. id := info.types[i].id
  333. data := rawptr(uintptr(v.data) + info.offsets[i])
  334. the_value := any{data, id}
  335. if omitempty && is_omitempty(the_value) {
  336. continue
  337. }
  338. opt_write_iteration(w, opt, first_iteration) or_return
  339. first_iteration = false
  340. if json_name != "" {
  341. opt_write_key(w, opt, json_name) or_return
  342. } else {
  343. // Marshal the fields of 'using _: T' fields directly into the parent struct
  344. if info.usings[i] && name == "_" {
  345. marshal_struct_fields(w, the_value, opt) or_return
  346. continue
  347. } else {
  348. opt_write_key(w, opt, name) or_return
  349. }
  350. }
  351. marshal_to_writer(w, the_value, opt) or_return
  352. }
  353. return
  354. }
  355. opt_write_start(w, opt, '{') or_return
  356. marshal_struct_fields(w, v, opt) or_return
  357. opt_write_end(w, opt, '}') or_return
  358. case runtime.Type_Info_Union:
  359. if len(info.variants) == 0 || v.data == nil {
  360. io.write_string(w, "null") or_return
  361. return nil
  362. }
  363. tag_ptr := uintptr(v.data) + info.tag_offset
  364. tag_any := any{rawptr(tag_ptr), info.tag_type.id}
  365. tag: i64 = -1
  366. switch i in tag_any {
  367. case u8: tag = i64(i)
  368. case i8: tag = i64(i)
  369. case u16: tag = i64(i)
  370. case i16: tag = i64(i)
  371. case u32: tag = i64(i)
  372. case i32: tag = i64(i)
  373. case u64: tag = i64(i)
  374. case i64: tag = i64(i)
  375. case: panic("Invalid union tag type")
  376. }
  377. if !info.no_nil {
  378. if tag == 0 {
  379. io.write_string(w, "null") or_return
  380. return nil
  381. }
  382. tag -= 1
  383. }
  384. id := info.variants[tag].id
  385. return marshal_to_writer(w, any{v.data, id}, opt)
  386. case runtime.Type_Info_Enum:
  387. if !opt.use_enum_names || len(info.names) == 0 {
  388. return marshal_to_writer(w, any{v.data, info.base.id}, opt)
  389. } else {
  390. name, found := reflect.enum_name_from_value_any(v)
  391. if found {
  392. return marshal_to_writer(w, name, opt)
  393. } else {
  394. return marshal_to_writer(w, any{v.data, info.base.id}, opt)
  395. }
  396. }
  397. case runtime.Type_Info_Bit_Set:
  398. is_bit_set_different_endian_to_platform :: proc(ti: ^runtime.Type_Info) -> bool {
  399. if ti == nil {
  400. return false
  401. }
  402. t := runtime.type_info_base(ti)
  403. #partial switch info in t.variant {
  404. case runtime.Type_Info_Integer:
  405. switch info.endianness {
  406. case .Platform: return false
  407. case .Little: return ODIN_ENDIAN != .Little
  408. case .Big: return ODIN_ENDIAN != .Big
  409. }
  410. }
  411. return false
  412. }
  413. bit_data: u64
  414. bit_size := u64(8*ti.size)
  415. do_byte_swap := is_bit_set_different_endian_to_platform(info.underlying)
  416. switch bit_size {
  417. case 0: bit_data = 0
  418. case 8:
  419. x := (^u8)(v.data)^
  420. bit_data = u64(x)
  421. case 16:
  422. x := (^u16)(v.data)^
  423. if do_byte_swap {
  424. x = bits.byte_swap(x)
  425. }
  426. bit_data = u64(x)
  427. case 32:
  428. x := (^u32)(v.data)^
  429. if do_byte_swap {
  430. x = bits.byte_swap(x)
  431. }
  432. bit_data = u64(x)
  433. case 64:
  434. x := (^u64)(v.data)^
  435. if do_byte_swap {
  436. x = bits.byte_swap(x)
  437. }
  438. bit_data = u64(x)
  439. case: panic("unknown bit_size size")
  440. }
  441. io.write_u64(w, bit_data) or_return
  442. }
  443. return
  444. }
  445. // write key as quoted string or with optional quotes in mjson
  446. opt_write_key :: proc(w: io.Writer, opt: ^Marshal_Options, name: string) -> (err: io.Error) {
  447. switch opt.spec {
  448. case .JSON, .JSON5:
  449. io.write_quoted_string(w, name) or_return
  450. io.write_string(w, ": " if opt.pretty else ":") or_return
  451. case .MJSON:
  452. if opt.mjson_keys_use_quotes {
  453. io.write_quoted_string(w, name) or_return
  454. } else {
  455. io.write_string(w, name) or_return
  456. }
  457. if opt.mjson_keys_use_equal_sign {
  458. io.write_string(w, " = " if opt.pretty else "=") or_return
  459. } else {
  460. io.write_string(w, ": " if opt.pretty else ":") or_return
  461. }
  462. }
  463. return
  464. }
  465. // insert start byte and increase indentation on pretty
  466. opt_write_start :: proc(w: io.Writer, opt: ^Marshal_Options, c: byte) -> (err: io.Error) {
  467. // Skip MJSON starting braces. We make sure to only do this for c == '{',
  468. // skipping a starting '[' is not allowed.
  469. if opt.spec == .MJSON && !opt.mjson_skipped_first_braces_start && opt.indentation == 0 && c == '{' {
  470. opt.mjson_skipped_first_braces_start = true
  471. return
  472. }
  473. io.write_byte(w, c) or_return
  474. opt.indentation += 1
  475. if opt.pretty {
  476. io.write_byte(w, '\n') or_return
  477. }
  478. return
  479. }
  480. // insert comma separation and write indentations
  481. opt_write_iteration :: proc(w: io.Writer, opt: ^Marshal_Options, first_iteration: bool) -> (err: io.Error) {
  482. switch opt.spec {
  483. case .JSON, .JSON5:
  484. if !first_iteration {
  485. io.write_byte(w, ',') or_return
  486. if opt.pretty {
  487. io.write_byte(w, '\n') or_return
  488. }
  489. }
  490. opt_write_indentation(w, opt) or_return
  491. case .MJSON:
  492. if !first_iteration {
  493. // on pretty no commas necessary
  494. if opt.pretty {
  495. io.write_byte(w, '\n') or_return
  496. } else {
  497. // comma separation necessary for non pretty output!
  498. io.write_byte(w, ',') or_return
  499. }
  500. }
  501. opt_write_indentation(w, opt) or_return
  502. }
  503. return
  504. }
  505. // decrease indent, write spacing and insert end byte
  506. opt_write_end :: proc(w: io.Writer, opt: ^Marshal_Options, c: byte) -> (err: io.Error) {
  507. if opt.spec == .MJSON && opt.mjson_skipped_first_braces_start && !opt.mjson_skipped_first_braces_end && opt.indentation == 0 && c == '}' {
  508. opt.mjson_skipped_first_braces_end = true
  509. return
  510. }
  511. opt.indentation -= 1
  512. if opt.pretty {
  513. io.write_byte(w, '\n') or_return
  514. opt_write_indentation(w, opt) or_return
  515. }
  516. io.write_byte(w, c) or_return
  517. return
  518. }
  519. // writes current indentation level based on options
  520. opt_write_indentation :: proc(w: io.Writer, opt: ^Marshal_Options) -> (err: io.Error) {
  521. if !opt.pretty {
  522. return
  523. }
  524. if opt.use_spaces {
  525. spaces := opt.spaces == 0 ? 4 : opt.spaces
  526. for _ in 0..<opt.indentation * spaces {
  527. io.write_byte(w, ' ') or_return
  528. }
  529. } else {
  530. for _ in 0..<opt.indentation {
  531. io.write_byte(w, '\t') or_return
  532. }
  533. }
  534. return
  535. }
  536. @(private)
  537. cast_any_int_to_u128 :: proc(any_int_value: any) -> u128 {
  538. u: u128 = 0
  539. switch i in any_int_value {
  540. case i8: u = u128(i)
  541. case i16: u = u128(i)
  542. case i32: u = u128(i)
  543. case i64: u = u128(i)
  544. case i128: u = u128(i)
  545. case int: u = u128(i)
  546. case u8: u = u128(i)
  547. case u16: u = u128(i)
  548. case u32: u = u128(i)
  549. case u64: u = u128(i)
  550. case u128: u = u128(i)
  551. case uint: u = u128(i)
  552. case uintptr: u = u128(i)
  553. case i16le: u = u128(i)
  554. case i32le: u = u128(i)
  555. case i64le: u = u128(i)
  556. case u16le: u = u128(i)
  557. case u32le: u = u128(i)
  558. case u64le: u = u128(i)
  559. case u128le: u = u128(i)
  560. case i16be: u = u128(i)
  561. case i32be: u = u128(i)
  562. case i64be: u = u128(i)
  563. case u16be: u = u128(i)
  564. case u32be: u = u128(i)
  565. case u64be: u = u128(i)
  566. case u128be: u = u128(i)
  567. }
  568. return u
  569. }