core.odin 18 KB

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  1. // This is the runtime code required by the compiler
  2. // IMPORTANT NOTE(bill): Do not change the order of any of this data
  3. // The compiler relies upon this _exact_ order
  4. //
  5. // Naming Conventions:
  6. // In general, Ada_Case for types and snake_case for values
  7. //
  8. // Package Name: snake_case (but prefer single word)
  9. // Import Name: snake_case (but prefer single word)
  10. // Types: Ada_Case
  11. // Enum Values: Ada_Case
  12. // Procedures: snake_case
  13. // Local Variables: snake_case
  14. // Constant Variables: SCREAMING_SNAKE_CASE
  15. //
  16. // IMPORTANT NOTE(bill): `type_info_of` cannot be used within a
  17. // #shared_global_scope due to the internals of the compiler.
  18. // This could change at a later date if the all these data structures are
  19. // implemented within the compiler rather than in this "preload" file
  20. //
  21. #+no-instrumentation
  22. package runtime
  23. import "base:intrinsics"
  24. // NOTE(bill): This must match the compiler's
  25. Calling_Convention :: enum u8 {
  26. Invalid = 0,
  27. Odin = 1,
  28. Contextless = 2,
  29. CDecl = 3,
  30. Std_Call = 4,
  31. Fast_Call = 5,
  32. None = 6,
  33. Naked = 7,
  34. _ = 8, // reserved
  35. Win64 = 9,
  36. SysV = 10,
  37. }
  38. Type_Info_Enum_Value :: distinct i64
  39. Platform_Endianness :: enum u8 {
  40. Platform = 0,
  41. Little = 1,
  42. Big = 2,
  43. }
  44. // Procedure type to test whether two values of the same type are equal
  45. Equal_Proc :: distinct proc "contextless" (rawptr, rawptr) -> bool
  46. // Procedure type to hash a value, default seed value is 0
  47. Hasher_Proc :: distinct proc "contextless" (data: rawptr, seed: uintptr = 0) -> uintptr
  48. Type_Info_Struct_Soa_Kind :: enum u8 {
  49. None = 0,
  50. Fixed = 1,
  51. Slice = 2,
  52. Dynamic = 3,
  53. }
  54. // Variant Types
  55. Type_Info_Named :: struct {
  56. name: string,
  57. base: ^Type_Info,
  58. pkg: string,
  59. loc: ^Source_Code_Location,
  60. }
  61. Type_Info_Integer :: struct {signed: bool, endianness: Platform_Endianness}
  62. Type_Info_Rune :: struct {}
  63. Type_Info_Float :: struct {endianness: Platform_Endianness}
  64. Type_Info_Complex :: struct {}
  65. Type_Info_Quaternion :: struct {}
  66. Type_Info_String :: struct {is_cstring: bool}
  67. Type_Info_Boolean :: struct {}
  68. Type_Info_Any :: struct {}
  69. Type_Info_Type_Id :: struct {}
  70. Type_Info_Pointer :: struct {
  71. elem: ^Type_Info, // nil -> rawptr
  72. }
  73. Type_Info_Multi_Pointer :: struct {
  74. elem: ^Type_Info,
  75. }
  76. Type_Info_Procedure :: struct {
  77. params: ^Type_Info, // Type_Info_Parameters
  78. results: ^Type_Info, // Type_Info_Parameters
  79. variadic: bool,
  80. convention: Calling_Convention,
  81. }
  82. Type_Info_Array :: struct {
  83. elem: ^Type_Info,
  84. elem_size: int,
  85. count: int,
  86. }
  87. Type_Info_Enumerated_Array :: struct {
  88. elem: ^Type_Info,
  89. index: ^Type_Info,
  90. elem_size: int,
  91. count: int,
  92. min_value: Type_Info_Enum_Value,
  93. max_value: Type_Info_Enum_Value,
  94. is_sparse: bool,
  95. }
  96. Type_Info_Dynamic_Array :: struct {elem: ^Type_Info, elem_size: int}
  97. Type_Info_Slice :: struct {elem: ^Type_Info, elem_size: int}
  98. Type_Info_Parameters :: struct { // Only used for procedures parameters and results
  99. types: []^Type_Info,
  100. names: []string,
  101. }
  102. Type_Info_Tuple :: Type_Info_Parameters // Will be removed eventually
  103. Type_Info_Struct_Flags :: distinct bit_set[Type_Info_Struct_Flag; u8]
  104. Type_Info_Struct_Flag :: enum u8 {
  105. packed = 0,
  106. raw_union = 1,
  107. no_copy = 2,
  108. align = 3,
  109. }
  110. Type_Info_Struct :: struct {
  111. // Slice these with `field_count`
  112. types: [^]^Type_Info `fmt:"v,field_count"`,
  113. names: [^]string `fmt:"v,field_count"`,
  114. offsets: [^]uintptr `fmt:"v,field_count"`,
  115. usings: [^]bool `fmt:"v,field_count"`,
  116. tags: [^]string `fmt:"v,field_count"`,
  117. field_count: i32,
  118. flags: Type_Info_Struct_Flags,
  119. // These are only set iff this structure is an SOA structure
  120. soa_kind: Type_Info_Struct_Soa_Kind,
  121. soa_len: i32,
  122. soa_base_type: ^Type_Info,
  123. equal: Equal_Proc, // set only when the struct has .Comparable set but does not have .Simple_Compare set
  124. }
  125. Type_Info_Union :: struct {
  126. variants: []^Type_Info,
  127. tag_offset: uintptr,
  128. tag_type: ^Type_Info,
  129. equal: Equal_Proc, // set only when the struct has .Comparable set but does not have .Simple_Compare set
  130. custom_align: bool,
  131. no_nil: bool,
  132. shared_nil: bool,
  133. }
  134. Type_Info_Enum :: struct {
  135. base: ^Type_Info,
  136. names: []string,
  137. values: []Type_Info_Enum_Value,
  138. }
  139. Type_Info_Map :: struct {
  140. key: ^Type_Info,
  141. value: ^Type_Info,
  142. map_info: ^Map_Info,
  143. }
  144. Type_Info_Bit_Set :: struct {
  145. elem: ^Type_Info,
  146. underlying: ^Type_Info, // Possibly nil
  147. lower: i64,
  148. upper: i64,
  149. }
  150. Type_Info_Simd_Vector :: struct {
  151. elem: ^Type_Info,
  152. elem_size: int,
  153. count: int,
  154. }
  155. Type_Info_Relative_Pointer :: struct {
  156. pointer: ^Type_Info, // ^T
  157. base_integer: ^Type_Info,
  158. }
  159. Type_Info_Relative_Multi_Pointer :: struct {
  160. pointer: ^Type_Info, // [^]T
  161. base_integer: ^Type_Info,
  162. }
  163. Type_Info_Matrix :: struct {
  164. elem: ^Type_Info,
  165. elem_size: int,
  166. elem_stride: int, // elem_stride >= row_count
  167. row_count: int,
  168. column_count: int,
  169. // Total element count = column_count * elem_stride
  170. layout: enum u8 {
  171. Column_Major, // array of column vectors
  172. Row_Major, // array of row vectors
  173. },
  174. }
  175. Type_Info_Soa_Pointer :: struct {
  176. elem: ^Type_Info,
  177. }
  178. Type_Info_Bit_Field :: struct {
  179. backing_type: ^Type_Info,
  180. names: [^]string `fmt:"v,field_count"`,
  181. types: [^]^Type_Info `fmt:"v,field_count"`,
  182. bit_sizes: [^]uintptr `fmt:"v,field_count"`,
  183. bit_offsets: [^]uintptr `fmt:"v,field_count"`,
  184. tags: [^]string `fmt:"v,field_count"`,
  185. field_count: int,
  186. }
  187. Type_Info_Flag :: enum u8 {
  188. Comparable = 0,
  189. Simple_Compare = 1,
  190. }
  191. Type_Info_Flags :: distinct bit_set[Type_Info_Flag; u32]
  192. Type_Info :: struct {
  193. size: int,
  194. align: int,
  195. flags: Type_Info_Flags,
  196. id: typeid,
  197. variant: union {
  198. Type_Info_Named,
  199. Type_Info_Integer,
  200. Type_Info_Rune,
  201. Type_Info_Float,
  202. Type_Info_Complex,
  203. Type_Info_Quaternion,
  204. Type_Info_String,
  205. Type_Info_Boolean,
  206. Type_Info_Any,
  207. Type_Info_Type_Id,
  208. Type_Info_Pointer,
  209. Type_Info_Multi_Pointer,
  210. Type_Info_Procedure,
  211. Type_Info_Array,
  212. Type_Info_Enumerated_Array,
  213. Type_Info_Dynamic_Array,
  214. Type_Info_Slice,
  215. Type_Info_Parameters,
  216. Type_Info_Struct,
  217. Type_Info_Union,
  218. Type_Info_Enum,
  219. Type_Info_Map,
  220. Type_Info_Bit_Set,
  221. Type_Info_Simd_Vector,
  222. Type_Info_Relative_Pointer,
  223. Type_Info_Relative_Multi_Pointer,
  224. Type_Info_Matrix,
  225. Type_Info_Soa_Pointer,
  226. Type_Info_Bit_Field,
  227. },
  228. }
  229. // NOTE(bill): This must match the compiler's
  230. Typeid_Kind :: enum u8 {
  231. Invalid,
  232. Integer,
  233. Rune,
  234. Float,
  235. Complex,
  236. Quaternion,
  237. String,
  238. Boolean,
  239. Any,
  240. Type_Id,
  241. Pointer,
  242. Multi_Pointer,
  243. Procedure,
  244. Array,
  245. Enumerated_Array,
  246. Dynamic_Array,
  247. Slice,
  248. Tuple,
  249. Struct,
  250. Union,
  251. Enum,
  252. Map,
  253. Bit_Set,
  254. Simd_Vector,
  255. Relative_Pointer,
  256. Relative_Multi_Pointer,
  257. Matrix,
  258. Soa_Pointer,
  259. Bit_Field,
  260. }
  261. #assert(len(Typeid_Kind) < 32)
  262. Typeid_Bit_Field :: bit_field uintptr {
  263. index: uintptr | 8*size_of(uintptr) - 8,
  264. kind: Typeid_Kind | 5, // Typeid_Kind
  265. named: bool | 1,
  266. special: bool | 1, // signed, cstring, etc
  267. reserved: bool | 1,
  268. }
  269. #assert(size_of(Typeid_Bit_Field) == size_of(uintptr))
  270. // NOTE(bill): only the ones that are needed (not all types)
  271. // This will be set by the compiler
  272. type_table: []^Type_Info
  273. args__: []cstring
  274. when ODIN_OS == .Windows {
  275. // NOTE(Jeroen): If we're a Windows DLL, fwdReason will be populated.
  276. // This tells a DLL if it's first loaded, about to be unloaded, or a thread is joining/exiting.
  277. DLL_Forward_Reason :: enum u32 {
  278. Process_Detach = 0, // About to unload DLL
  279. Process_Attach = 1, // Entry point
  280. Thread_Attach = 2,
  281. Thread_Detach = 3,
  282. }
  283. dll_forward_reason: DLL_Forward_Reason
  284. dll_instance: rawptr
  285. }
  286. // IMPORTANT NOTE(bill): Must be in this order (as the compiler relies upon it)
  287. Source_Code_Location :: struct {
  288. file_path: string,
  289. line, column: i32,
  290. procedure: string,
  291. }
  292. /*
  293. Used by the built-in directory `#load_directory(path: string) -> []Load_Directory_File`
  294. */
  295. Load_Directory_File :: struct {
  296. name: string,
  297. data: []byte, // immutable data
  298. }
  299. Assertion_Failure_Proc :: #type proc(prefix, message: string, loc: Source_Code_Location) -> !
  300. // Allocation Stuff
  301. Allocator_Mode :: enum byte {
  302. Alloc,
  303. Free,
  304. Free_All,
  305. Resize,
  306. Query_Features,
  307. Query_Info,
  308. Alloc_Non_Zeroed,
  309. Resize_Non_Zeroed,
  310. }
  311. Allocator_Mode_Set :: distinct bit_set[Allocator_Mode]
  312. Allocator_Query_Info :: struct {
  313. pointer: rawptr,
  314. size: Maybe(int),
  315. alignment: Maybe(int),
  316. }
  317. Allocator_Error :: enum byte {
  318. None = 0,
  319. Out_Of_Memory = 1,
  320. Invalid_Pointer = 2,
  321. Invalid_Argument = 3,
  322. Mode_Not_Implemented = 4,
  323. }
  324. Allocator_Proc :: #type proc(allocator_data: rawptr, mode: Allocator_Mode,
  325. size, alignment: int,
  326. old_memory: rawptr, old_size: int,
  327. location: Source_Code_Location = #caller_location) -> ([]byte, Allocator_Error)
  328. Allocator :: struct {
  329. procedure: Allocator_Proc,
  330. data: rawptr,
  331. }
  332. Byte :: 1
  333. Kilobyte :: 1024 * Byte
  334. Megabyte :: 1024 * Kilobyte
  335. Gigabyte :: 1024 * Megabyte
  336. Terabyte :: 1024 * Gigabyte
  337. Petabyte :: 1024 * Terabyte
  338. Exabyte :: 1024 * Petabyte
  339. // Logging stuff
  340. Logger_Level :: enum uint {
  341. Debug = 0,
  342. Info = 10,
  343. Warning = 20,
  344. Error = 30,
  345. Fatal = 40,
  346. }
  347. Logger_Option :: enum {
  348. Level,
  349. Date,
  350. Time,
  351. Short_File_Path,
  352. Long_File_Path,
  353. Line,
  354. Procedure,
  355. Terminal_Color,
  356. Thread_Id,
  357. }
  358. Logger_Options :: bit_set[Logger_Option]
  359. Logger_Proc :: #type proc(data: rawptr, level: Logger_Level, text: string, options: Logger_Options, location := #caller_location)
  360. Logger :: struct {
  361. procedure: Logger_Proc,
  362. data: rawptr,
  363. lowest_level: Logger_Level,
  364. options: Logger_Options,
  365. }
  366. Random_Generator_Mode :: enum {
  367. Read,
  368. Reset,
  369. Query_Info,
  370. }
  371. Random_Generator_Query_Info_Flag :: enum u32 {
  372. Cryptographic,
  373. Uniform,
  374. External_Entropy,
  375. Resettable,
  376. }
  377. Random_Generator_Query_Info :: distinct bit_set[Random_Generator_Query_Info_Flag; u32]
  378. Random_Generator_Proc :: #type proc(data: rawptr, mode: Random_Generator_Mode, p: []byte)
  379. Random_Generator :: struct {
  380. procedure: Random_Generator_Proc,
  381. data: rawptr,
  382. }
  383. Context :: struct {
  384. allocator: Allocator,
  385. temp_allocator: Allocator,
  386. assertion_failure_proc: Assertion_Failure_Proc,
  387. logger: Logger,
  388. random_generator: Random_Generator,
  389. user_ptr: rawptr,
  390. user_index: int,
  391. // Internal use only
  392. _internal: rawptr,
  393. }
  394. Raw_String :: struct {
  395. data: [^]byte,
  396. len: int,
  397. }
  398. Raw_Slice :: struct {
  399. data: rawptr,
  400. len: int,
  401. }
  402. Raw_Dynamic_Array :: struct {
  403. data: rawptr,
  404. len: int,
  405. cap: int,
  406. allocator: Allocator,
  407. }
  408. // The raw, type-erased representation of a map.
  409. //
  410. // 32-bytes on 64-bit
  411. // 16-bytes on 32-bit
  412. Raw_Map :: struct {
  413. // A single allocation spanning all keys, values, and hashes.
  414. // {
  415. // k: Map_Cell(K) * (capacity / ks_per_cell)
  416. // v: Map_Cell(V) * (capacity / vs_per_cell)
  417. // h: Map_Cell(H) * (capacity / hs_per_cell)
  418. // }
  419. //
  420. // The data is allocated assuming 64-byte alignment, meaning the address is
  421. // always a multiple of 64. This means we have 6 bits of zeros in the pointer
  422. // to store the capacity. We can store a value as large as 2^6-1 or 63 in
  423. // there. This conveniently is the maximum log2 capacity we can have for a map
  424. // as Odin uses signed integers to represent capacity.
  425. //
  426. // Since the hashes are backed by Map_Hash, which is just a 64-bit unsigned
  427. // integer, the cell structure for hashes is unnecessary because 64/8 is 8 and
  428. // requires no padding, meaning it can be indexed as a regular array of
  429. // Map_Hash directly, though for consistency sake it's written as if it were
  430. // an array of Map_Cell(Map_Hash).
  431. data: uintptr, // 8-bytes on 64-bits, 4-bytes on 32-bits
  432. len: uintptr, // 8-bytes on 64-bits, 4-bytes on 32-bits
  433. allocator: Allocator, // 16-bytes on 64-bits, 8-bytes on 32-bits
  434. }
  435. Raw_Any :: struct {
  436. data: rawptr,
  437. id: typeid,
  438. }
  439. Raw_Cstring :: struct {
  440. data: [^]byte,
  441. }
  442. Raw_Soa_Pointer :: struct {
  443. data: rawptr,
  444. index: int,
  445. }
  446. Raw_Complex32 :: struct {real, imag: f16}
  447. Raw_Complex64 :: struct {real, imag: f32}
  448. Raw_Complex128 :: struct {real, imag: f64}
  449. Raw_Quaternion64 :: struct {imag, jmag, kmag: f16, real: f16}
  450. Raw_Quaternion128 :: struct {imag, jmag, kmag: f32, real: f32}
  451. Raw_Quaternion256 :: struct {imag, jmag, kmag: f64, real: f64}
  452. Raw_Quaternion64_Vector_Scalar :: struct {vector: [3]f16, scalar: f16}
  453. Raw_Quaternion128_Vector_Scalar :: struct {vector: [3]f32, scalar: f32}
  454. Raw_Quaternion256_Vector_Scalar :: struct {vector: [3]f64, scalar: f64}
  455. /*
  456. // Defined internally by the compiler
  457. Odin_OS_Type :: enum int {
  458. Unknown,
  459. Windows,
  460. Darwin,
  461. Linux,
  462. Essence,
  463. FreeBSD,
  464. OpenBSD,
  465. NetBSD,
  466. Haiku,
  467. WASI,
  468. JS,
  469. Orca,
  470. Freestanding,
  471. }
  472. */
  473. Odin_OS_Type :: type_of(ODIN_OS)
  474. /*
  475. // Defined internally by the compiler
  476. Odin_Arch_Type :: enum int {
  477. Unknown,
  478. amd64,
  479. i386,
  480. arm32,
  481. arm64,
  482. wasm32,
  483. wasm64p32,
  484. riscv64,
  485. }
  486. */
  487. Odin_Arch_Type :: type_of(ODIN_ARCH)
  488. Odin_Arch_Types :: bit_set[Odin_Arch_Type]
  489. ALL_ODIN_ARCH_TYPES :: Odin_Arch_Types{
  490. .amd64,
  491. .i386,
  492. .arm32,
  493. .arm64,
  494. .wasm32,
  495. .wasm64p32,
  496. .riscv64,
  497. }
  498. /*
  499. // Defined internally by the compiler
  500. Odin_Build_Mode_Type :: enum int {
  501. Executable,
  502. Dynamic,
  503. Static,
  504. Object,
  505. Assembly,
  506. LLVM_IR,
  507. }
  508. */
  509. Odin_Build_Mode_Type :: type_of(ODIN_BUILD_MODE)
  510. /*
  511. // Defined internally by the compiler
  512. Odin_Endian_Type :: enum int {
  513. Unknown,
  514. Little,
  515. Big,
  516. }
  517. */
  518. Odin_Endian_Type :: type_of(ODIN_ENDIAN)
  519. Odin_OS_Types :: bit_set[Odin_OS_Type]
  520. ALL_ODIN_OS_TYPES :: Odin_OS_Types{
  521. .Windows,
  522. .Darwin,
  523. .Linux,
  524. .Essence,
  525. .FreeBSD,
  526. .OpenBSD,
  527. .NetBSD,
  528. .Haiku,
  529. .WASI,
  530. .JS,
  531. .Orca,
  532. .Freestanding,
  533. }
  534. /*
  535. // Defined internally by the compiler
  536. Odin_Platform_Subtarget_Type :: enum int {
  537. Default,
  538. iOS,
  539. }
  540. */
  541. Odin_Platform_Subtarget_Type :: type_of(ODIN_PLATFORM_SUBTARGET)
  542. /*
  543. // Defined internally by the compiler
  544. Odin_Sanitizer_Flag :: enum u32 {
  545. Address = 0,
  546. Memory = 1,
  547. Thread = 2,
  548. }
  549. Odin_Sanitizer_Flags :: distinct bit_set[Odin_Sanitizer_Flag; u32]
  550. ODIN_SANITIZER_FLAGS // is a constant
  551. */
  552. Odin_Sanitizer_Flags :: type_of(ODIN_SANITIZER_FLAGS)
  553. /*
  554. // Defined internally by the compiler
  555. Odin_Optimization_Mode :: enum int {
  556. None = -1,
  557. Minimal = 0,
  558. Size = 1,
  559. Speed = 2,
  560. Aggressive = 3,
  561. }
  562. ODIN_OPTIMIZATION_MODE // is a constant
  563. */
  564. Odin_Optimization_Mode :: type_of(ODIN_OPTIMIZATION_MODE)
  565. /////////////////////////////
  566. // Init Startup Procedures //
  567. /////////////////////////////
  568. // IMPORTANT NOTE(bill): Do not call this unless you want to explicitly set up the entry point and how it gets called
  569. // This is probably only useful for freestanding targets
  570. foreign {
  571. @(link_name="__$startup_runtime")
  572. _startup_runtime :: proc "odin" () ---
  573. @(link_name="__$cleanup_runtime")
  574. _cleanup_runtime :: proc "odin" () ---
  575. }
  576. _cleanup_runtime_contextless :: proc "contextless" () {
  577. context = default_context()
  578. _cleanup_runtime()
  579. }
  580. /////////////////////////////
  581. /////////////////////////////
  582. /////////////////////////////
  583. type_info_base :: proc "contextless" (info: ^Type_Info) -> ^Type_Info {
  584. if info == nil {
  585. return nil
  586. }
  587. base := info
  588. loop: for {
  589. #partial switch i in base.variant {
  590. case Type_Info_Named: base = i.base
  591. case: break loop
  592. }
  593. }
  594. return base
  595. }
  596. type_info_core :: proc "contextless" (info: ^Type_Info) -> ^Type_Info {
  597. if info == nil {
  598. return nil
  599. }
  600. base := info
  601. loop: for {
  602. #partial switch i in base.variant {
  603. case Type_Info_Named: base = i.base
  604. case Type_Info_Enum: base = i.base
  605. case Type_Info_Bit_Field: base = i.backing_type
  606. case: break loop
  607. }
  608. }
  609. return base
  610. }
  611. type_info_base_without_enum :: type_info_core
  612. __type_info_of :: proc "contextless" (id: typeid) -> ^Type_Info #no_bounds_check {
  613. MASK :: 1<<(8*size_of(typeid) - 8) - 1
  614. data := transmute(uintptr)id
  615. n := int(data & MASK)
  616. if n < 0 || n >= len(type_table) {
  617. n = 0
  618. }
  619. return type_table[n]
  620. }
  621. when !ODIN_NO_RTTI {
  622. typeid_base :: proc "contextless" (id: typeid) -> typeid {
  623. ti := type_info_of(id)
  624. ti = type_info_base(ti)
  625. return ti.id
  626. }
  627. typeid_core :: proc "contextless" (id: typeid) -> typeid {
  628. ti := type_info_core(type_info_of(id))
  629. return ti.id
  630. }
  631. typeid_base_without_enum :: typeid_core
  632. }
  633. debug_trap :: intrinsics.debug_trap
  634. trap :: intrinsics.trap
  635. read_cycle_counter :: intrinsics.read_cycle_counter
  636. default_logger_proc :: proc(data: rawptr, level: Logger_Level, text: string, options: Logger_Options, location := #caller_location) {
  637. // Nothing
  638. }
  639. default_logger :: proc() -> Logger {
  640. return Logger{default_logger_proc, nil, Logger_Level.Debug, nil}
  641. }
  642. default_context :: proc "contextless" () -> Context {
  643. c: Context
  644. __init_context(&c)
  645. return c
  646. }
  647. @private
  648. __init_context_from_ptr :: proc "contextless" (c: ^Context, other: ^Context) {
  649. if c == nil {
  650. return
  651. }
  652. c^ = other^
  653. __init_context(c)
  654. }
  655. @private
  656. __init_context :: proc "contextless" (c: ^Context) {
  657. if c == nil {
  658. return
  659. }
  660. // NOTE(bill): Do not initialize these procedures with a call as they are not defined with the "contextless" calling convention
  661. c.allocator.procedure = default_allocator_proc
  662. c.allocator.data = nil
  663. c.temp_allocator.procedure = default_temp_allocator_proc
  664. when !NO_DEFAULT_TEMP_ALLOCATOR {
  665. c.temp_allocator.data = &global_default_temp_allocator_data
  666. }
  667. when !ODIN_DISABLE_ASSERT {
  668. c.assertion_failure_proc = default_assertion_failure_proc
  669. }
  670. c.logger.procedure = default_logger_proc
  671. c.logger.data = nil
  672. c.random_generator.procedure = default_random_generator_proc
  673. c.random_generator.data = nil
  674. }
  675. default_assertion_failure_proc :: proc(prefix, message: string, loc: Source_Code_Location) -> ! {
  676. default_assertion_contextless_failure_proc(prefix, message, loc)
  677. }
  678. default_assertion_contextless_failure_proc :: proc "contextless" (prefix, message: string, loc: Source_Code_Location) -> ! {
  679. when ODIN_OS == .Freestanding {
  680. // Do nothing
  681. } else {
  682. when ODIN_OS != .Orca && !ODIN_DISABLE_ASSERT {
  683. print_caller_location(loc)
  684. print_string(" ")
  685. }
  686. print_string(prefix)
  687. if len(message) > 0 {
  688. print_string(": ")
  689. print_string(message)
  690. }
  691. when ODIN_OS == .Orca {
  692. assert_fail(
  693. cstring(raw_data(loc.file_path)),
  694. cstring(raw_data(loc.procedure)),
  695. loc.line,
  696. "",
  697. cstring(raw_data(orca_stderr_buffer[:orca_stderr_buffer_idx])),
  698. )
  699. } else {
  700. print_byte('\n')
  701. }
  702. }
  703. trap()
  704. }