Port changes from SolidPP

This commit is contained in:
doylet 2025-11-30 21:33:46 +11:00
parent 38c0e7dda0
commit 54d4547e5f
14 changed files with 476 additions and 253 deletions

View File

@ -1,4 +1,4 @@
// Generated by the DN single header generator 2025-11-20 22:39:16
// Generated by the DN single header generator 2025-11-30 21:32:49
#define DN_BASE_INC_CPP
@ -1691,6 +1691,23 @@ DN_API DN_Str8 DN_Str8FromFmtPool(DN_Pool *pool, DN_FMT_ATTRIB char const *fmt,
return result;
}
DN_API DN_Str8x16 DN_Str8x16FromFmt(DN_FMT_ATTRIB char const *fmt, ...)
{
va_list args;
va_start(args, fmt);
DN_Str8x16 result = {};
DN_FmtVAppend(result.data, &result.size, sizeof(result.data), fmt, args);
va_end(args);
return result;
}
DN_API DN_Str8x16 DN_Str8x16FromFmtV(DN_FMT_ATTRIB char const *fmt, va_list args)
{
DN_Str8x16 result = {};
DN_FmtVAppend(result.data, &result.size, sizeof(result.data), fmt, args);
return result;
}
DN_API DN_Str8x32 DN_Str8x32FromFmt(DN_FMT_ATTRIB char const *fmt, ...)
{
va_list args;
@ -5141,9 +5158,12 @@ DN_API void DN_OS_TLSInit(DN_OSTLS *tls, DN_OSTLSInitArgs args)
return;
DN_U64 reserve = args.reserve ? args.reserve : DN_Kilobytes(64);
DN_U64 commit = args.commit ? args.commit : DN_Kilobytes(4);
DN_U64 err_sink_reserve = args.err_sink_reserve ? args.err_sink_reserve : DN_Kilobytes(64);
#if !defined(DN_PLATFORM_EMSCRIPTEN)
DN_U64 commit = args.commit ? args.commit : DN_Kilobytes(4);
DN_U64 err_sink_commit = args.err_sink_commit ? args.err_sink_commit : DN_Kilobytes(4);
#endif
// TODO: We shouldn't have the no alloc track flag here but the initial TLS
// init on OS init happens before CORE init. CORE init is the one responsible
@ -5151,8 +5171,22 @@ DN_API void DN_OS_TLSInit(DN_OSTLS *tls, DN_OSTLSInitArgs args)
for (DN_ForItCArray(it, DN_Arena, tls->arenas)) {
DN_Arena *arena = it.data;
switch (DN_Cast(DN_OSTLSArena) it.index) {
default: *arena = DN_ArenaFromVMem(reserve, commit, DN_ArenaFlags_AllocCanLeak | DN_ArenaFlags_NoAllocTrack); break;
case DN_OSTLSArena_ErrorSink: *arena = DN_ArenaFromVMem(err_sink_reserve, err_sink_commit, DN_ArenaFlags_AllocCanLeak | DN_ArenaFlags_NoAllocTrack); break;
default: {
#if defined(DN_PLATFORM_EMSCRIPTEN)
*arena = DN_ArenaFromHeap(reserve, DN_ArenaFlags_AllocCanLeak | DN_ArenaFlags_NoAllocTrack);
#else
*arena = DN_ArenaFromVMem(reserve, commit, DN_ArenaFlags_AllocCanLeak | DN_ArenaFlags_NoAllocTrack);
#endif
} break;
case DN_OSTLSArena_ErrorSink: {
#if defined(DN_PLATFORM_EMSCRIPTEN)
*arena = DN_ArenaFromHeap(err_sink_reserve, DN_ArenaFlags_AllocCanLeak | DN_ArenaFlags_NoAllocTrack);
#else
*arena = DN_ArenaFromVMem(err_sink_reserve, err_sink_commit, DN_ArenaFlags_AllocCanLeak | DN_ArenaFlags_NoAllocTrack);
#endif
} break;
case DN_OSTLSArena_Count: DN_InvalidCodePath; break;
}
}
@ -7019,6 +7053,10 @@ static DN_U32 DN_OS_MemConvertPageToOSFlags_(DN_U32 protect)
DN_API void *DN_OS_MemReserve(DN_USize size, DN_MemCommit commit, DN_U32 page_flags)
{
#if defined(DN_PLATFORM_EMSCRIPTEN)
DN_InvalidCodePathF("Emscripten does not support virtual memory, you should use DN_OS_MemAlloc");
#endif
unsigned long os_page_flags = DN_OS_MemConvertPageToOSFlags_(page_flags);
if (commit == DN_MemCommit_Yes)
@ -7034,6 +7072,9 @@ DN_API void *DN_OS_MemReserve(DN_USize size, DN_MemCommit commit, DN_U32 page_fl
DN_API bool DN_OS_MemCommit(void *ptr, DN_USize size, DN_U32 page_flags)
{
#if defined(DN_PLATFORM_EMSCRIPTEN)
DN_InvalidCodePathF("Emscripten does not support virtual memory");
#endif
bool result = false;
if (!ptr || size == 0)
return false;
@ -7047,17 +7088,26 @@ DN_API bool DN_OS_MemCommit(void *ptr, DN_USize size, DN_U32 page_flags)
DN_API void DN_OS_MemDecommit(void *ptr, DN_USize size)
{
#if defined(DN_PLATFORM_EMSCRIPTEN)
DN_InvalidCodePathF("Emscripten does not support virtual memory");
#endif
mprotect(ptr, size, PROT_NONE);
madvise(ptr, size, MADV_FREE);
}
DN_API void DN_OS_MemRelease(void *ptr, DN_USize size)
{
#if defined(DN_PLATFORM_EMSCRIPTEN)
DN_InvalidCodePathF("Emscripten does not support virtual memory");
#endif
munmap(ptr, size);
}
DN_API int DN_OS_MemProtect(void *ptr, DN_USize size, DN_U32 page_flags)
{
#if defined(DN_PLATFORM_EMSCRIPTEN)
DN_InvalidCodePathF("Emscripten does not support virtual memory");
#endif
if (!ptr || size == 0)
return 0;
@ -7142,7 +7192,8 @@ DN_API DN_U64 DN_OS_DateUnixTimeSFromLocalDate(DN_Date date)
DN_API DN_U64 DN_OS_DateLocalUnixTimeSFromUnixTimeS(DN_U64 unix_ts_s)
{
struct tm tm_local;
void *ret = localtime_r(&unix_ts_s, &tm_local);
time_t unix_ts = unix_ts_s;
void *ret = localtime_r(&unix_ts, &tm_local);
DN_Assert(ret);
long local_offset_seconds = tm_local.tm_gmtoff;
@ -10972,6 +11023,7 @@ struct DN_Str8
DN_USize size; // The number of bytes in the string
};
struct DN_Str8x16 { char data[16]; DN_USize size; };
struct DN_Str8x32 { char data[32]; DN_USize size; };
struct DN_Str8x64 { char data[64]; DN_USize size; };
struct DN_Str8x128 { char data[128]; DN_USize size; };
@ -13739,6 +13791,8 @@ DN_API DN_Str8 DN_Str8FromFmtArena (DN_Arena *arena, DN
DN_API DN_Str8 DN_Str8FromFmtVArena (DN_Arena *arena, DN_FMT_ATTRIB char const *fmt, va_list args);
DN_API DN_Str8 DN_Str8FromFmtPool (DN_Pool *pool, DN_FMT_ATTRIB char const *fmt, ...);
DN_API DN_Str8 DN_Str8FromByteCountType (DN_ByteCountType type);
DN_API DN_Str8x16 DN_Str8x16FromFmt (DN_FMT_ATTRIB char const *fmt, ...);
DN_API DN_Str8x16 DN_Str8x16FromFmtV (DN_FMT_ATTRIB char const *fmt, va_list args);
DN_API DN_Str8x32 DN_Str8x32FromFmt (DN_FMT_ATTRIB char const *fmt, ...);
DN_API DN_Str8x32 DN_Str8x32FromFmtV (DN_FMT_ATTRIB char const *fmt, va_list args);
DN_API DN_Str8x64 DN_Str8x64FromFmt (DN_FMT_ATTRIB char const *fmt, ...);
@ -18755,11 +18809,6 @@ DN_API DN_F32 DN_V3F32_LengthSq (DN_V3F32 a);
DN_API DN_F32 DN_V3F32_Length (DN_V3F32 a);
DN_API DN_V3F32 DN_V3F32_Normalise (DN_V3F32 a);
DN_U32 const DN_V4_R_MASK_U32 = 0xFF000000;
DN_U32 const DN_V4_G_MASK_U32 = 0x00FF0000;
DN_U32 const DN_V4_B_MASK_U32 = 0x0000FF00;
DN_U32 const DN_V4_A_MASK_U32 = 0x000000FF;
#define DN_V4F32_From1N(x) DN_Literal(DN_V4F32){{(DN_F32)(x), (DN_F32)(x), (DN_F32)(x), (DN_F32)(x)}}
#define DN_V4F32_From4N(x, y, z, w) DN_Literal(DN_V4F32){{(DN_F32)(x), (DN_F32)(y), (DN_F32)(z), (DN_F32)(w)}}
#define DN_V4F32_FromV3And1N(xyz, w) DN_Literal(DN_V4F32){{xyz.x, xyz.y, xyz.z, w}}
@ -19694,19 +19743,19 @@ DN_API DN_V3F32 DN_V3_Normalise(DN_V3F32 a)
DN_API DN_V4F32 DN_V4F32_FromRGBU32(DN_U32 u32)
{
DN_U8 r = (DN_U8)((u32 & DN_V4_R_MASK_U32) >> 24);
DN_U8 g = (DN_U8)((u32 & DN_V4_G_MASK_U32) >> 16);
DN_U8 b = (DN_U8)((u32 & DN_V4_B_MASK_U32) >> 8);
DN_U8 r = (DN_U8)((u32 & 0x00FF0000) >> 16);
DN_U8 g = (DN_U8)((u32 & 0x0000FF00) >> 8);
DN_U8 b = (DN_U8)((u32 & 0x000000FF) >> 0);
DN_V4F32 result = DN_V4F32_FromRGBU8(r, g, b);
return result;
}
DN_API DN_V4F32 DN_V4F32_FromRGBAU32(DN_U32 u32)
{
DN_U8 r = (DN_U8)((u32 & DN_V4_R_MASK_U32) >> 24);
DN_U8 g = (DN_U8)((u32 & DN_V4_G_MASK_U32) >> 16);
DN_U8 b = (DN_U8)((u32 & DN_V4_B_MASK_U32) >> 8);
DN_U8 a = (DN_U8)((u32 & DN_V4_A_MASK_U32) >> 0);
DN_U8 r = (DN_U8)((u32 & 0xFF000000) >> 24);
DN_U8 g = (DN_U8)((u32 & 0x00FF0000) >> 16);
DN_U8 b = (DN_U8)((u32 & 0x0000FF00) >> 8);
DN_U8 a = (DN_U8)((u32 & 0x000000FF) >> 0);
DN_V4F32 result = DN_V4F32_FromRGBAU8(r, g, b, a);
return result;
}
@ -20652,32 +20701,36 @@ struct DN_BinPack
DN_USize read_index;
};
DN_API void DN_BinPack_U64 (DN_BinPack *pack, DN_BinPackMode mode, DN_U64 *item);
DN_API void DN_BinPack_U32 (DN_BinPack *pack, DN_BinPackMode mode, DN_U32 *item);
DN_API void DN_BinPack_U16 (DN_BinPack *pack, DN_BinPackMode mode, DN_U16 *item);
DN_API void DN_BinPack_U8 (DN_BinPack *pack, DN_BinPackMode mode, DN_U8 *item);
DN_API void DN_BinPack_I64 (DN_BinPack *pack, DN_BinPackMode mode, DN_I64 *item);
DN_API void DN_BinPack_I32 (DN_BinPack *pack, DN_BinPackMode mode, DN_I32 *item);
DN_API void DN_BinPack_I16 (DN_BinPack *pack, DN_BinPackMode mode, DN_I16 *item);
DN_API void DN_BinPack_I8 (DN_BinPack *pack, DN_BinPackMode mode, DN_I8 *item);
DN_API void DN_BinPack_F64 (DN_BinPack *pack, DN_BinPackMode mode, DN_F64 *item);
DN_API void DN_BinPack_F32 (DN_BinPack *pack, DN_BinPackMode mode, DN_F32 *item);
#if defined(DN_MATH_H)
DN_API void DN_BinPack_V2 (DN_BinPack *pack, DN_BinPackMode mode, DN_V2F32 *item);
DN_API void DN_BinPack_V4 (DN_BinPack *pack, DN_BinPackMode mode, DN_V4F32 *item);
DN_API bool DN_BinPackIsEndOfReadStream(DN_BinPack const *pack);
DN_API void DN_BinPackUSize (DN_BinPack *pack, DN_BinPackMode mode, DN_USize *item);
DN_API void DN_BinPackU64 (DN_BinPack *pack, DN_BinPackMode mode, DN_U64 *item);
DN_API void DN_BinPackU32 (DN_BinPack *pack, DN_BinPackMode mode, DN_U32 *item);
DN_API void DN_BinPackU16 (DN_BinPack *pack, DN_BinPackMode mode, DN_U16 *item);
DN_API void DN_BinPackU8 (DN_BinPack *pack, DN_BinPackMode mode, DN_U8 *item);
DN_API void DN_BinPackI64 (DN_BinPack *pack, DN_BinPackMode mode, DN_I64 *item);
DN_API void DN_BinPackI32 (DN_BinPack *pack, DN_BinPackMode mode, DN_I32 *item);
DN_API void DN_BinPackI16 (DN_BinPack *pack, DN_BinPackMode mode, DN_I16 *item);
DN_API void DN_BinPackI8 (DN_BinPack *pack, DN_BinPackMode mode, DN_I8 *item);
DN_API void DN_BinPackF64 (DN_BinPack *pack, DN_BinPackMode mode, DN_F64 *item);
DN_API void DN_BinPackF32 (DN_BinPack *pack, DN_BinPackMode mode, DN_F32 *item);
#if defined (DN_MATH_H)
DN_API void DN_BinPackV2 (DN_BinPack *pack, DN_BinPackMode mode, DN_V2F32 *item);
DN_API void DN_BinPackV4 (DN_BinPack *pack, DN_BinPackMode mode, DN_V4F32 *item);
#endif
DN_API void DN_BinPack_Bool (DN_BinPack *pack, DN_BinPackMode mode, bool *item);
DN_API void DN_BinPack_Str8FromArena (DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, DN_Str8 *string);
DN_API void DN_BinPack_Str8FromPool (DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, DN_Str8 *string);
DN_API void DN_BinPack_BytesFromArena(DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, void **ptr, DN_USize *size);
DN_API void DN_BinPack_BytesFromPool (DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, void **ptr, DN_USize *size);
DN_API void DN_BinPack_CArray (DN_BinPack *pack, DN_BinPackMode mode, void *ptr, DN_USize size);
DN_API DN_Str8 DN_BinPack_Build (DN_BinPack const *pack, DN_Arena *arena);
DN_API void DN_BinPackBool (DN_BinPack *pack, DN_BinPackMode mode, bool *item);
DN_API void DN_BinPackStr8FromArena (DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, DN_Str8 *string);
DN_API void DN_BinPackStr8FromPool (DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, DN_Str8 *string);
DN_API DN_Str8 DN_BinPackStr8FromBuffer (DN_BinPack *pack, DN_BinPackMode mode, char *ptr, DN_USize *size, DN_USize max);
DN_API void DN_BinPackBytesFromArena (DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, void **ptr, DN_USize *size);
DN_API void DN_BinPackBytesFromPool (DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, void **ptr, DN_USize *size);
DN_API void DN_BinPackCArray (DN_BinPack *pack, DN_BinPackMode mode, void *ptr, DN_USize size);
DN_API void DN_BinPackCBuffer (DN_BinPack *pack, DN_BinPackMode mode, char *ptr, DN_USize *size, DN_USize max);
DN_API DN_Str8 DN_BinPackBuild (DN_BinPack const *pack, DN_Arena *arena);
#endif // !defined(DN_BIN_PACK_H)
#endif
DN_API void DN_BinPack_U64(DN_BinPack *pack, DN_BinPackMode mode, DN_U64 *item)
DN_API void DN_BinPackU64(DN_BinPack *pack, DN_BinPackMode mode, DN_U64 *item)
{
DN_U64 const VALUE_MASK = 0b0111'1111;
DN_U8 const CONTINUE_BIT = 0b1000'0000;
@ -20702,7 +20755,7 @@ DN_API void DN_BinPack_U64(DN_BinPack *pack, DN_BinPackMode mode, DN_U64 *item)
}
}
DN_API void DN_BinPack_VarInt_(DN_BinPack *pack, DN_BinPackMode mode, void *item, DN_USize size)
DN_API void DN_BinPackVarInt_(DN_BinPack *pack, DN_BinPackMode mode, void *item, DN_USize size)
{
DN_U64 value = 0;
DN_AssertF(size <= sizeof(value),
@ -20712,81 +20765,92 @@ DN_API void DN_BinPack_VarInt_(DN_BinPack *pack, DN_BinPackMode mode, void *item
if (mode == DN_BinPackMode_Serialise) // Read `item` into U64 `value`
DN_Memcpy(&value, item, size);
DN_BinPack_U64(pack, mode, &value);
DN_BinPackU64(pack, mode, &value);
if (mode == DN_BinPackMode_Deserialise) // Write U64 `value` into `item`
DN_Memcpy(item, &value, size);
}
DN_API void DN_BinPack_U32(DN_BinPack *pack, DN_BinPackMode mode, DN_U32 *item)
DN_API bool DN_BinPackIsEndOfReadStream(DN_BinPack const *pack)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
bool result = pack->read_index == pack->read.size;
return result;
}
DN_API void DN_BinPack_U16(DN_BinPack *pack, DN_BinPackMode mode, DN_U16 *item)
DN_API void DN_BinPackUSize(DN_BinPack *pack, DN_BinPackMode mode, DN_USize *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_U8(DN_BinPack *pack, DN_BinPackMode mode, DN_U8 *item)
DN_API void DN_BinPackU32(DN_BinPack *pack, DN_BinPackMode mode, DN_U32 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_I64(DN_BinPack *pack, DN_BinPackMode mode, DN_I64 *item)
DN_API void DN_BinPackU16(DN_BinPack *pack, DN_BinPackMode mode, DN_U16 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_I32(DN_BinPack *pack, DN_BinPackMode mode, DN_I32 *item)
DN_API void DN_BinPackU8(DN_BinPack *pack, DN_BinPackMode mode, DN_U8 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_I16(DN_BinPack *pack, DN_BinPackMode mode, DN_I16 *item)
DN_API void DN_BinPackI64(DN_BinPack *pack, DN_BinPackMode mode, DN_I64 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_I8(DN_BinPack *pack, DN_BinPackMode mode, DN_I8 *item)
DN_API void DN_BinPackI32(DN_BinPack *pack, DN_BinPackMode mode, DN_I32 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_F64(DN_BinPack *pack, DN_BinPackMode mode, DN_F64 *item)
DN_API void DN_BinPackI16(DN_BinPack *pack, DN_BinPackMode mode, DN_I16 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_F32(DN_BinPack *pack, DN_BinPackMode mode, DN_F32 *item)
DN_API void DN_BinPackI8(DN_BinPack *pack, DN_BinPackMode mode, DN_I8 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPackF64(DN_BinPack *pack, DN_BinPackMode mode, DN_F64 *item)
{
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPackF32(DN_BinPack *pack, DN_BinPackMode mode, DN_F32 *item)
{
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
#if defined(DN_MATH_H)
DN_API void DN_BinPack_V2(DN_BinPack *pack, DN_BinPackMode mode, DN_V2F32 *item)
DN_API void DN_BinPackV2(DN_BinPack *pack, DN_BinPackMode mode, DN_V2F32 *item)
{
DN_BinPack_F32(pack, mode, &item->x);
DN_BinPack_F32(pack, mode, &item->y);
DN_BinPackF32(pack, mode, &item->x);
DN_BinPackF32(pack, mode, &item->y);
}
DN_API void DN_BinPack_V4(DN_BinPack *pack, DN_BinPackMode mode, DN_V4F32 *item)
DN_API void DN_BinPackV4(DN_BinPack *pack, DN_BinPackMode mode, DN_V4F32 *item)
{
DN_BinPack_F32(pack, mode, &item->x);
DN_BinPack_F32(pack, mode, &item->y);
DN_BinPack_F32(pack, mode, &item->z);
DN_BinPack_F32(pack, mode, &item->w);
DN_BinPackF32(pack, mode, &item->x);
DN_BinPackF32(pack, mode, &item->y);
DN_BinPackF32(pack, mode, &item->z);
DN_BinPackF32(pack, mode, &item->w);
}
#endif
DN_API void DN_BinPack_Bool(DN_BinPack *pack, DN_BinPackMode mode, bool *item)
DN_API void DN_BinPackBool(DN_BinPack *pack, DN_BinPackMode mode, bool *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_Str8FromArena(DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, DN_Str8 *string)
DN_API void DN_BinPackStr8FromArena(DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, DN_Str8 *string)
{
DN_BinPack_VarInt_(pack, mode, &string->size, sizeof(string->size));
DN_BinPackVarInt_(pack, mode, &string->size, sizeof(string->size));
if (mode == DN_BinPackMode_Serialise) {
DN_Str8BuilderAppendBytesCopy(&pack->writer, string->data, string->size);
} else {
@ -20796,9 +20860,9 @@ DN_API void DN_BinPack_Str8FromArena(DN_BinPack *pack, DN_Arena *arena, DN_BinPa
}
}
DN_API void DN_BinPack_Str8FromPool(DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, DN_Str8 *string)
DN_API void DN_BinPackStr8FromPool(DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, DN_Str8 *string)
{
DN_BinPack_VarInt_(pack, mode, &string->size, sizeof(string->size));
DN_BinPackVarInt_(pack, mode, &string->size, sizeof(string->size));
if (mode == DN_BinPackMode_Serialise) {
DN_Str8BuilderAppendBytesCopy(&pack->writer, string->data, string->size);
} else {
@ -20808,25 +20872,32 @@ DN_API void DN_BinPack_Str8FromPool(DN_BinPack *pack, DN_Pool *pool, DN_BinPackM
}
}
DN_API void DN_BinPack_BytesFromArena(DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, void **ptr, DN_USize *size)
DN_API DN_Str8 DN_BinPackStr8FromBuffer(DN_BinPack *pack, DN_BinPackMode mode, char *ptr, DN_USize *size, DN_USize max)
{
DN_BinPackCBuffer(pack, mode, ptr, size, max);
DN_Str8 result = DN_Str8FromPtr(ptr, *size);
return result;
}
DN_API void DN_BinPackBytesFromArena(DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, void **ptr, DN_USize *size)
{
DN_Str8 string = DN_Str8FromPtr(*ptr, *size);
DN_BinPack_Str8FromArena(pack, arena, mode, &string);
DN_BinPackStr8FromArena(pack, arena, mode, &string);
*ptr = string.data;
*size = string.size;
}
DN_API void DN_BinPack_BytesFromPool(DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, void **ptr, DN_USize *size)
DN_API void DN_BinPackBytesFromPool(DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, void **ptr, DN_USize *size)
{
DN_Str8 string = DN_Str8FromPtr(*ptr, *size);
DN_BinPack_Str8FromPool(pack, pool, mode, &string);
DN_BinPackStr8FromPool(pack, pool, mode, &string);
*ptr = string.data;
*size = string.size;
}
DN_API void DN_BinPack_CArray(DN_BinPack *pack, DN_BinPackMode mode, void *ptr, DN_USize size)
DN_API void DN_BinPackCArray(DN_BinPack *pack, DN_BinPackMode mode, void *ptr, DN_USize size)
{
DN_BinPack_VarInt_(pack, mode, &size, sizeof(size));
DN_BinPackVarInt_(pack, mode, &size, sizeof(size));
if (mode == DN_BinPackMode_Serialise) {
DN_Str8BuilderAppendBytesCopy(&pack->writer, ptr, size);
} else {
@ -20837,7 +20908,24 @@ DN_API void DN_BinPack_CArray(DN_BinPack *pack, DN_BinPackMode mode, void *ptr,
}
}
DN_API DN_Str8 DN_BinPack_Build(DN_BinPack const *pack, DN_Arena *arena)
DN_API void DN_BinPackCBuffer(DN_BinPack *pack, DN_BinPackMode mode, char *ptr, DN_USize *size, DN_USize max)
{
if (mode == DN_BinPackMode_Serialise) {
DN_BinPackUSize(pack, mode, size);
DN_Str8BuilderAppendBytesCopy(&pack->writer, ptr, *size);
} else {
DN_U64 size_u64 = 0;
DN_BinPackU64(pack, mode, &size_u64);
DN_Assert(size_u64 < DN_USIZE_MAX);
DN_Assert(size_u64 <= max);
*size = DN_Min(size_u64, max);
DN_Memcpy(ptr, pack->read.data + pack->read_index, *size);
pack->read_index += size_u64;
}
}
DN_API DN_Str8 DN_BinPackBuild(DN_BinPack const *pack, DN_Arena *arena)
{
DN_Str8 result = DN_Str8BuilderBuild(&pack->writer, arena);
return result;
@ -21759,11 +21847,6 @@ DN_API DN_F32 DN_V3F32_LengthSq (DN_V3F32 a);
DN_API DN_F32 DN_V3F32_Length (DN_V3F32 a);
DN_API DN_V3F32 DN_V3F32_Normalise (DN_V3F32 a);
DN_U32 const DN_V4_R_MASK_U32 = 0xFF000000;
DN_U32 const DN_V4_G_MASK_U32 = 0x00FF0000;
DN_U32 const DN_V4_B_MASK_U32 = 0x0000FF00;
DN_U32 const DN_V4_A_MASK_U32 = 0x000000FF;
#define DN_V4F32_From1N(x) DN_Literal(DN_V4F32){{(DN_F32)(x), (DN_F32)(x), (DN_F32)(x), (DN_F32)(x)}}
#define DN_V4F32_From4N(x, y, z, w) DN_Literal(DN_V4F32){{(DN_F32)(x), (DN_F32)(y), (DN_F32)(z), (DN_F32)(w)}}
#define DN_V4F32_FromV3And1N(xyz, w) DN_Literal(DN_V4F32){{xyz.x, xyz.y, xyz.z, w}}

View File

@ -1,4 +1,4 @@
// Generated by the DN single header generator 2025-11-20 22:39:16
// Generated by the DN single header generator 2025-11-30 21:32:49
#if !defined(DN_BASE_INC_H)
#define DN_BASE_INC_H
@ -396,6 +396,7 @@ struct DN_Str8
DN_USize size; // The number of bytes in the string
};
struct DN_Str8x16 { char data[16]; DN_USize size; };
struct DN_Str8x32 { char data[32]; DN_USize size; };
struct DN_Str8x64 { char data[64]; DN_USize size; };
struct DN_Str8x128 { char data[128]; DN_USize size; };
@ -3163,6 +3164,8 @@ DN_API DN_Str8 DN_Str8FromFmtArena (DN_Arena *arena, DN
DN_API DN_Str8 DN_Str8FromFmtVArena (DN_Arena *arena, DN_FMT_ATTRIB char const *fmt, va_list args);
DN_API DN_Str8 DN_Str8FromFmtPool (DN_Pool *pool, DN_FMT_ATTRIB char const *fmt, ...);
DN_API DN_Str8 DN_Str8FromByteCountType (DN_ByteCountType type);
DN_API DN_Str8x16 DN_Str8x16FromFmt (DN_FMT_ATTRIB char const *fmt, ...);
DN_API DN_Str8x16 DN_Str8x16FromFmtV (DN_FMT_ATTRIB char const *fmt, va_list args);
DN_API DN_Str8x32 DN_Str8x32FromFmt (DN_FMT_ATTRIB char const *fmt, ...);
DN_API DN_Str8x32 DN_Str8x32FromFmtV (DN_FMT_ATTRIB char const *fmt, va_list args);
DN_API DN_Str8x64 DN_Str8x64FromFmt (DN_FMT_ATTRIB char const *fmt, ...);
@ -8089,6 +8092,7 @@ struct DN_Str8
DN_USize size; // The number of bytes in the string
};
struct DN_Str8x16 { char data[16]; DN_USize size; };
struct DN_Str8x32 { char data[32]; DN_USize size; };
struct DN_Str8x64 { char data[64]; DN_USize size; };
struct DN_Str8x128 { char data[128]; DN_USize size; };
@ -10856,6 +10860,8 @@ DN_API DN_Str8 DN_Str8FromFmtArena (DN_Arena *arena, DN
DN_API DN_Str8 DN_Str8FromFmtVArena (DN_Arena *arena, DN_FMT_ATTRIB char const *fmt, va_list args);
DN_API DN_Str8 DN_Str8FromFmtPool (DN_Pool *pool, DN_FMT_ATTRIB char const *fmt, ...);
DN_API DN_Str8 DN_Str8FromByteCountType (DN_ByteCountType type);
DN_API DN_Str8x16 DN_Str8x16FromFmt (DN_FMT_ATTRIB char const *fmt, ...);
DN_API DN_Str8x16 DN_Str8x16FromFmtV (DN_FMT_ATTRIB char const *fmt, va_list args);
DN_API DN_Str8x32 DN_Str8x32FromFmt (DN_FMT_ATTRIB char const *fmt, ...);
DN_API DN_Str8x32 DN_Str8x32FromFmtV (DN_FMT_ATTRIB char const *fmt, va_list args);
DN_API DN_Str8x64 DN_Str8x64FromFmt (DN_FMT_ATTRIB char const *fmt, ...);
@ -15686,11 +15692,6 @@ DN_API DN_F32 DN_V3F32_LengthSq (DN_V3F32 a);
DN_API DN_F32 DN_V3F32_Length (DN_V3F32 a);
DN_API DN_V3F32 DN_V3F32_Normalise (DN_V3F32 a);
DN_U32 const DN_V4_R_MASK_U32 = 0xFF000000;
DN_U32 const DN_V4_G_MASK_U32 = 0x00FF0000;
DN_U32 const DN_V4_B_MASK_U32 = 0x0000FF00;
DN_U32 const DN_V4_A_MASK_U32 = 0x000000FF;
#define DN_V4F32_From1N(x) DN_Literal(DN_V4F32){{(DN_F32)(x), (DN_F32)(x), (DN_F32)(x), (DN_F32)(x)}}
#define DN_V4F32_From4N(x, y, z, w) DN_Literal(DN_V4F32){{(DN_F32)(x), (DN_F32)(y), (DN_F32)(z), (DN_F32)(w)}}
#define DN_V4F32_FromV3And1N(xyz, w) DN_Literal(DN_V4F32){{xyz.x, xyz.y, xyz.z, w}}
@ -15873,27 +15874,31 @@ struct DN_BinPack
DN_USize read_index;
};
DN_API void DN_BinPack_U64 (DN_BinPack *pack, DN_BinPackMode mode, DN_U64 *item);
DN_API void DN_BinPack_U32 (DN_BinPack *pack, DN_BinPackMode mode, DN_U32 *item);
DN_API void DN_BinPack_U16 (DN_BinPack *pack, DN_BinPackMode mode, DN_U16 *item);
DN_API void DN_BinPack_U8 (DN_BinPack *pack, DN_BinPackMode mode, DN_U8 *item);
DN_API void DN_BinPack_I64 (DN_BinPack *pack, DN_BinPackMode mode, DN_I64 *item);
DN_API void DN_BinPack_I32 (DN_BinPack *pack, DN_BinPackMode mode, DN_I32 *item);
DN_API void DN_BinPack_I16 (DN_BinPack *pack, DN_BinPackMode mode, DN_I16 *item);
DN_API void DN_BinPack_I8 (DN_BinPack *pack, DN_BinPackMode mode, DN_I8 *item);
DN_API void DN_BinPack_F64 (DN_BinPack *pack, DN_BinPackMode mode, DN_F64 *item);
DN_API void DN_BinPack_F32 (DN_BinPack *pack, DN_BinPackMode mode, DN_F32 *item);
#if defined(DN_MATH_H)
DN_API void DN_BinPack_V2 (DN_BinPack *pack, DN_BinPackMode mode, DN_V2F32 *item);
DN_API void DN_BinPack_V4 (DN_BinPack *pack, DN_BinPackMode mode, DN_V4F32 *item);
DN_API bool DN_BinPackIsEndOfReadStream(DN_BinPack const *pack);
DN_API void DN_BinPackUSize (DN_BinPack *pack, DN_BinPackMode mode, DN_USize *item);
DN_API void DN_BinPackU64 (DN_BinPack *pack, DN_BinPackMode mode, DN_U64 *item);
DN_API void DN_BinPackU32 (DN_BinPack *pack, DN_BinPackMode mode, DN_U32 *item);
DN_API void DN_BinPackU16 (DN_BinPack *pack, DN_BinPackMode mode, DN_U16 *item);
DN_API void DN_BinPackU8 (DN_BinPack *pack, DN_BinPackMode mode, DN_U8 *item);
DN_API void DN_BinPackI64 (DN_BinPack *pack, DN_BinPackMode mode, DN_I64 *item);
DN_API void DN_BinPackI32 (DN_BinPack *pack, DN_BinPackMode mode, DN_I32 *item);
DN_API void DN_BinPackI16 (DN_BinPack *pack, DN_BinPackMode mode, DN_I16 *item);
DN_API void DN_BinPackI8 (DN_BinPack *pack, DN_BinPackMode mode, DN_I8 *item);
DN_API void DN_BinPackF64 (DN_BinPack *pack, DN_BinPackMode mode, DN_F64 *item);
DN_API void DN_BinPackF32 (DN_BinPack *pack, DN_BinPackMode mode, DN_F32 *item);
#if defined (DN_MATH_H)
DN_API void DN_BinPackV2 (DN_BinPack *pack, DN_BinPackMode mode, DN_V2F32 *item);
DN_API void DN_BinPackV4 (DN_BinPack *pack, DN_BinPackMode mode, DN_V4F32 *item);
#endif
DN_API void DN_BinPack_Bool (DN_BinPack *pack, DN_BinPackMode mode, bool *item);
DN_API void DN_BinPack_Str8FromArena (DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, DN_Str8 *string);
DN_API void DN_BinPack_Str8FromPool (DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, DN_Str8 *string);
DN_API void DN_BinPack_BytesFromArena(DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, void **ptr, DN_USize *size);
DN_API void DN_BinPack_BytesFromPool (DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, void **ptr, DN_USize *size);
DN_API void DN_BinPack_CArray (DN_BinPack *pack, DN_BinPackMode mode, void *ptr, DN_USize size);
DN_API DN_Str8 DN_BinPack_Build (DN_BinPack const *pack, DN_Arena *arena);
DN_API void DN_BinPackBool (DN_BinPack *pack, DN_BinPackMode mode, bool *item);
DN_API void DN_BinPackStr8FromArena (DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, DN_Str8 *string);
DN_API void DN_BinPackStr8FromPool (DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, DN_Str8 *string);
DN_API DN_Str8 DN_BinPackStr8FromBuffer (DN_BinPack *pack, DN_BinPackMode mode, char *ptr, DN_USize *size, DN_USize max);
DN_API void DN_BinPackBytesFromArena (DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, void **ptr, DN_USize *size);
DN_API void DN_BinPackBytesFromPool (DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, void **ptr, DN_USize *size);
DN_API void DN_BinPackCArray (DN_BinPack *pack, DN_BinPackMode mode, void *ptr, DN_USize size);
DN_API void DN_BinPackCBuffer (DN_BinPack *pack, DN_BinPackMode mode, char *ptr, DN_USize *size, DN_USize max);
DN_API DN_Str8 DN_BinPackBuild (DN_BinPack const *pack, DN_Arena *arena);
#endif // !defined(DN_BIN_PACK_H)
#if !defined(DN_CSV_H)
@ -16248,11 +16253,6 @@ DN_API DN_F32 DN_V3F32_LengthSq (DN_V3F32 a);
DN_API DN_F32 DN_V3F32_Length (DN_V3F32 a);
DN_API DN_V3F32 DN_V3F32_Normalise (DN_V3F32 a);
DN_U32 const DN_V4_R_MASK_U32 = 0xFF000000;
DN_U32 const DN_V4_G_MASK_U32 = 0x00FF0000;
DN_U32 const DN_V4_B_MASK_U32 = 0x0000FF00;
DN_U32 const DN_V4_A_MASK_U32 = 0x000000FF;
#define DN_V4F32_From1N(x) DN_Literal(DN_V4F32){{(DN_F32)(x), (DN_F32)(x), (DN_F32)(x), (DN_F32)(x)}}
#define DN_V4F32_From4N(x, y, z, w) DN_Literal(DN_V4F32){{(DN_F32)(x), (DN_F32)(y), (DN_F32)(z), (DN_F32)(w)}}
#define DN_V4F32_FromV3And1N(xyz, w) DN_Literal(DN_V4F32){{xyz.x, xyz.y, xyz.z, w}}

View File

@ -1686,6 +1686,23 @@ DN_API DN_Str8 DN_Str8FromFmtPool(DN_Pool *pool, DN_FMT_ATTRIB char const *fmt,
return result;
}
DN_API DN_Str8x16 DN_Str8x16FromFmt(DN_FMT_ATTRIB char const *fmt, ...)
{
va_list args;
va_start(args, fmt);
DN_Str8x16 result = {};
DN_FmtVAppend(result.data, &result.size, sizeof(result.data), fmt, args);
va_end(args);
return result;
}
DN_API DN_Str8x16 DN_Str8x16FromFmtV(DN_FMT_ATTRIB char const *fmt, va_list args)
{
DN_Str8x16 result = {};
DN_FmtVAppend(result.data, &result.size, sizeof(result.data), fmt, args);
return result;
}
DN_API DN_Str8x32 DN_Str8x32FromFmt(DN_FMT_ATTRIB char const *fmt, ...)
{
va_list args;

View File

@ -178,6 +178,7 @@ struct DN_Str8
DN_USize size; // The number of bytes in the string
};
struct DN_Str8x16 { char data[16]; DN_USize size; };
struct DN_Str8x32 { char data[32]; DN_USize size; };
struct DN_Str8x64 { char data[64]; DN_USize size; };
struct DN_Str8x128 { char data[128]; DN_USize size; };
@ -1017,6 +1018,8 @@ DN_API DN_Str8 DN_Str8FromFmtArena (DN_Arena *arena, DN
DN_API DN_Str8 DN_Str8FromFmtVArena (DN_Arena *arena, DN_FMT_ATTRIB char const *fmt, va_list args);
DN_API DN_Str8 DN_Str8FromFmtPool (DN_Pool *pool, DN_FMT_ATTRIB char const *fmt, ...);
DN_API DN_Str8 DN_Str8FromByteCountType (DN_ByteCountType type);
DN_API DN_Str8x16 DN_Str8x16FromFmt (DN_FMT_ATTRIB char const *fmt, ...);
DN_API DN_Str8x16 DN_Str8x16FromFmtV (DN_FMT_ATTRIB char const *fmt, va_list args);
DN_API DN_Str8x32 DN_Str8x32FromFmt (DN_FMT_ATTRIB char const *fmt, ...);
DN_API DN_Str8x32 DN_Str8x32FromFmtV (DN_FMT_ATTRIB char const *fmt, va_list args);
DN_API DN_Str8x64 DN_Str8x64FromFmt (DN_FMT_ATTRIB char const *fmt, ...);

View File

@ -4,7 +4,7 @@
#include "dn_bin_pack.h"
#endif
DN_API void DN_BinPack_U64(DN_BinPack *pack, DN_BinPackMode mode, DN_U64 *item)
DN_API void DN_BinPackU64(DN_BinPack *pack, DN_BinPackMode mode, DN_U64 *item)
{
DN_U64 const VALUE_MASK = 0b0111'1111;
DN_U8 const CONTINUE_BIT = 0b1000'0000;
@ -29,7 +29,7 @@ DN_API void DN_BinPack_U64(DN_BinPack *pack, DN_BinPackMode mode, DN_U64 *item)
}
}
DN_API void DN_BinPack_VarInt_(DN_BinPack *pack, DN_BinPackMode mode, void *item, DN_USize size)
DN_API void DN_BinPackVarInt_(DN_BinPack *pack, DN_BinPackMode mode, void *item, DN_USize size)
{
DN_U64 value = 0;
DN_AssertF(size <= sizeof(value),
@ -39,81 +39,92 @@ DN_API void DN_BinPack_VarInt_(DN_BinPack *pack, DN_BinPackMode mode, void *item
if (mode == DN_BinPackMode_Serialise) // Read `item` into U64 `value`
DN_Memcpy(&value, item, size);
DN_BinPack_U64(pack, mode, &value);
DN_BinPackU64(pack, mode, &value);
if (mode == DN_BinPackMode_Deserialise) // Write U64 `value` into `item`
DN_Memcpy(item, &value, size);
}
DN_API void DN_BinPack_U32(DN_BinPack *pack, DN_BinPackMode mode, DN_U32 *item)
DN_API bool DN_BinPackIsEndOfReadStream(DN_BinPack const *pack)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
bool result = pack->read_index == pack->read.size;
return result;
}
DN_API void DN_BinPack_U16(DN_BinPack *pack, DN_BinPackMode mode, DN_U16 *item)
DN_API void DN_BinPackUSize(DN_BinPack *pack, DN_BinPackMode mode, DN_USize *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_U8(DN_BinPack *pack, DN_BinPackMode mode, DN_U8 *item)
DN_API void DN_BinPackU32(DN_BinPack *pack, DN_BinPackMode mode, DN_U32 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_I64(DN_BinPack *pack, DN_BinPackMode mode, DN_I64 *item)
DN_API void DN_BinPackU16(DN_BinPack *pack, DN_BinPackMode mode, DN_U16 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_I32(DN_BinPack *pack, DN_BinPackMode mode, DN_I32 *item)
DN_API void DN_BinPackU8(DN_BinPack *pack, DN_BinPackMode mode, DN_U8 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_I16(DN_BinPack *pack, DN_BinPackMode mode, DN_I16 *item)
DN_API void DN_BinPackI64(DN_BinPack *pack, DN_BinPackMode mode, DN_I64 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_I8(DN_BinPack *pack, DN_BinPackMode mode, DN_I8 *item)
DN_API void DN_BinPackI32(DN_BinPack *pack, DN_BinPackMode mode, DN_I32 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_F64(DN_BinPack *pack, DN_BinPackMode mode, DN_F64 *item)
DN_API void DN_BinPackI16(DN_BinPack *pack, DN_BinPackMode mode, DN_I16 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_F32(DN_BinPack *pack, DN_BinPackMode mode, DN_F32 *item)
DN_API void DN_BinPackI8(DN_BinPack *pack, DN_BinPackMode mode, DN_I8 *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPackF64(DN_BinPack *pack, DN_BinPackMode mode, DN_F64 *item)
{
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPackF32(DN_BinPack *pack, DN_BinPackMode mode, DN_F32 *item)
{
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
#if defined(DN_MATH_H)
DN_API void DN_BinPack_V2(DN_BinPack *pack, DN_BinPackMode mode, DN_V2F32 *item)
DN_API void DN_BinPackV2(DN_BinPack *pack, DN_BinPackMode mode, DN_V2F32 *item)
{
DN_BinPack_F32(pack, mode, &item->x);
DN_BinPack_F32(pack, mode, &item->y);
DN_BinPackF32(pack, mode, &item->x);
DN_BinPackF32(pack, mode, &item->y);
}
DN_API void DN_BinPack_V4(DN_BinPack *pack, DN_BinPackMode mode, DN_V4F32 *item)
DN_API void DN_BinPackV4(DN_BinPack *pack, DN_BinPackMode mode, DN_V4F32 *item)
{
DN_BinPack_F32(pack, mode, &item->x);
DN_BinPack_F32(pack, mode, &item->y);
DN_BinPack_F32(pack, mode, &item->z);
DN_BinPack_F32(pack, mode, &item->w);
DN_BinPackF32(pack, mode, &item->x);
DN_BinPackF32(pack, mode, &item->y);
DN_BinPackF32(pack, mode, &item->z);
DN_BinPackF32(pack, mode, &item->w);
}
#endif
DN_API void DN_BinPack_Bool(DN_BinPack *pack, DN_BinPackMode mode, bool *item)
DN_API void DN_BinPackBool(DN_BinPack *pack, DN_BinPackMode mode, bool *item)
{
DN_BinPack_VarInt_(pack, mode, item, sizeof(*item));
DN_BinPackVarInt_(pack, mode, item, sizeof(*item));
}
DN_API void DN_BinPack_Str8FromArena(DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, DN_Str8 *string)
DN_API void DN_BinPackStr8FromArena(DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, DN_Str8 *string)
{
DN_BinPack_VarInt_(pack, mode, &string->size, sizeof(string->size));
DN_BinPackVarInt_(pack, mode, &string->size, sizeof(string->size));
if (mode == DN_BinPackMode_Serialise) {
DN_Str8BuilderAppendBytesCopy(&pack->writer, string->data, string->size);
} else {
@ -123,9 +134,9 @@ DN_API void DN_BinPack_Str8FromArena(DN_BinPack *pack, DN_Arena *arena, DN_BinPa
}
}
DN_API void DN_BinPack_Str8FromPool(DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, DN_Str8 *string)
DN_API void DN_BinPackStr8FromPool(DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, DN_Str8 *string)
{
DN_BinPack_VarInt_(pack, mode, &string->size, sizeof(string->size));
DN_BinPackVarInt_(pack, mode, &string->size, sizeof(string->size));
if (mode == DN_BinPackMode_Serialise) {
DN_Str8BuilderAppendBytesCopy(&pack->writer, string->data, string->size);
} else {
@ -135,25 +146,32 @@ DN_API void DN_BinPack_Str8FromPool(DN_BinPack *pack, DN_Pool *pool, DN_BinPackM
}
}
DN_API void DN_BinPack_BytesFromArena(DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, void **ptr, DN_USize *size)
DN_API DN_Str8 DN_BinPackStr8FromBuffer(DN_BinPack *pack, DN_BinPackMode mode, char *ptr, DN_USize *size, DN_USize max)
{
DN_BinPackCBuffer(pack, mode, ptr, size, max);
DN_Str8 result = DN_Str8FromPtr(ptr, *size);
return result;
}
DN_API void DN_BinPackBytesFromArena(DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, void **ptr, DN_USize *size)
{
DN_Str8 string = DN_Str8FromPtr(*ptr, *size);
DN_BinPack_Str8FromArena(pack, arena, mode, &string);
DN_BinPackStr8FromArena(pack, arena, mode, &string);
*ptr = string.data;
*size = string.size;
}
DN_API void DN_BinPack_BytesFromPool(DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, void **ptr, DN_USize *size)
DN_API void DN_BinPackBytesFromPool(DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, void **ptr, DN_USize *size)
{
DN_Str8 string = DN_Str8FromPtr(*ptr, *size);
DN_BinPack_Str8FromPool(pack, pool, mode, &string);
DN_BinPackStr8FromPool(pack, pool, mode, &string);
*ptr = string.data;
*size = string.size;
}
DN_API void DN_BinPack_CArray(DN_BinPack *pack, DN_BinPackMode mode, void *ptr, DN_USize size)
DN_API void DN_BinPackCArray(DN_BinPack *pack, DN_BinPackMode mode, void *ptr, DN_USize size)
{
DN_BinPack_VarInt_(pack, mode, &size, sizeof(size));
DN_BinPackVarInt_(pack, mode, &size, sizeof(size));
if (mode == DN_BinPackMode_Serialise) {
DN_Str8BuilderAppendBytesCopy(&pack->writer, ptr, size);
} else {
@ -164,7 +182,24 @@ DN_API void DN_BinPack_CArray(DN_BinPack *pack, DN_BinPackMode mode, void *ptr,
}
}
DN_API DN_Str8 DN_BinPack_Build(DN_BinPack const *pack, DN_Arena *arena)
DN_API void DN_BinPackCBuffer(DN_BinPack *pack, DN_BinPackMode mode, char *ptr, DN_USize *size, DN_USize max)
{
if (mode == DN_BinPackMode_Serialise) {
DN_BinPackUSize(pack, mode, size);
DN_Str8BuilderAppendBytesCopy(&pack->writer, ptr, *size);
} else {
DN_U64 size_u64 = 0;
DN_BinPackU64(pack, mode, &size_u64);
DN_Assert(size_u64 < DN_USIZE_MAX);
DN_Assert(size_u64 <= max);
*size = DN_Min(size_u64, max);
DN_Memcpy(ptr, pack->read.data + pack->read_index, *size);
pack->read_index += size_u64;
}
}
DN_API DN_Str8 DN_BinPackBuild(DN_BinPack const *pack, DN_Arena *arena)
{
DN_Str8 result = DN_Str8BuilderBuild(&pack->writer, arena);
return result;

View File

@ -22,26 +22,30 @@ struct DN_BinPack
DN_USize read_index;
};
DN_API void DN_BinPack_U64 (DN_BinPack *pack, DN_BinPackMode mode, DN_U64 *item);
DN_API void DN_BinPack_U32 (DN_BinPack *pack, DN_BinPackMode mode, DN_U32 *item);
DN_API void DN_BinPack_U16 (DN_BinPack *pack, DN_BinPackMode mode, DN_U16 *item);
DN_API void DN_BinPack_U8 (DN_BinPack *pack, DN_BinPackMode mode, DN_U8 *item);
DN_API void DN_BinPack_I64 (DN_BinPack *pack, DN_BinPackMode mode, DN_I64 *item);
DN_API void DN_BinPack_I32 (DN_BinPack *pack, DN_BinPackMode mode, DN_I32 *item);
DN_API void DN_BinPack_I16 (DN_BinPack *pack, DN_BinPackMode mode, DN_I16 *item);
DN_API void DN_BinPack_I8 (DN_BinPack *pack, DN_BinPackMode mode, DN_I8 *item);
DN_API void DN_BinPack_F64 (DN_BinPack *pack, DN_BinPackMode mode, DN_F64 *item);
DN_API void DN_BinPack_F32 (DN_BinPack *pack, DN_BinPackMode mode, DN_F32 *item);
#if defined(DN_MATH_H)
DN_API void DN_BinPack_V2 (DN_BinPack *pack, DN_BinPackMode mode, DN_V2F32 *item);
DN_API void DN_BinPack_V4 (DN_BinPack *pack, DN_BinPackMode mode, DN_V4F32 *item);
DN_API bool DN_BinPackIsEndOfReadStream(DN_BinPack const *pack);
DN_API void DN_BinPackUSize (DN_BinPack *pack, DN_BinPackMode mode, DN_USize *item);
DN_API void DN_BinPackU64 (DN_BinPack *pack, DN_BinPackMode mode, DN_U64 *item);
DN_API void DN_BinPackU32 (DN_BinPack *pack, DN_BinPackMode mode, DN_U32 *item);
DN_API void DN_BinPackU16 (DN_BinPack *pack, DN_BinPackMode mode, DN_U16 *item);
DN_API void DN_BinPackU8 (DN_BinPack *pack, DN_BinPackMode mode, DN_U8 *item);
DN_API void DN_BinPackI64 (DN_BinPack *pack, DN_BinPackMode mode, DN_I64 *item);
DN_API void DN_BinPackI32 (DN_BinPack *pack, DN_BinPackMode mode, DN_I32 *item);
DN_API void DN_BinPackI16 (DN_BinPack *pack, DN_BinPackMode mode, DN_I16 *item);
DN_API void DN_BinPackI8 (DN_BinPack *pack, DN_BinPackMode mode, DN_I8 *item);
DN_API void DN_BinPackF64 (DN_BinPack *pack, DN_BinPackMode mode, DN_F64 *item);
DN_API void DN_BinPackF32 (DN_BinPack *pack, DN_BinPackMode mode, DN_F32 *item);
#if defined (DN_MATH_H)
DN_API void DN_BinPackV2 (DN_BinPack *pack, DN_BinPackMode mode, DN_V2F32 *item);
DN_API void DN_BinPackV4 (DN_BinPack *pack, DN_BinPackMode mode, DN_V4F32 *item);
#endif
DN_API void DN_BinPack_Bool (DN_BinPack *pack, DN_BinPackMode mode, bool *item);
DN_API void DN_BinPack_Str8FromArena (DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, DN_Str8 *string);
DN_API void DN_BinPack_Str8FromPool (DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, DN_Str8 *string);
DN_API void DN_BinPack_BytesFromArena(DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, void **ptr, DN_USize *size);
DN_API void DN_BinPack_BytesFromPool (DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, void **ptr, DN_USize *size);
DN_API void DN_BinPack_CArray (DN_BinPack *pack, DN_BinPackMode mode, void *ptr, DN_USize size);
DN_API DN_Str8 DN_BinPack_Build (DN_BinPack const *pack, DN_Arena *arena);
DN_API void DN_BinPackBool (DN_BinPack *pack, DN_BinPackMode mode, bool *item);
DN_API void DN_BinPackStr8FromArena (DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, DN_Str8 *string);
DN_API void DN_BinPackStr8FromPool (DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, DN_Str8 *string);
DN_API DN_Str8 DN_BinPackStr8FromBuffer (DN_BinPack *pack, DN_BinPackMode mode, char *ptr, DN_USize *size, DN_USize max);
DN_API void DN_BinPackBytesFromArena (DN_BinPack *pack, DN_Arena *arena, DN_BinPackMode mode, void **ptr, DN_USize *size);
DN_API void DN_BinPackBytesFromPool (DN_BinPack *pack, DN_Pool *pool, DN_BinPackMode mode, void **ptr, DN_USize *size);
DN_API void DN_BinPackCArray (DN_BinPack *pack, DN_BinPackMode mode, void *ptr, DN_USize size);
DN_API void DN_BinPackCBuffer (DN_BinPack *pack, DN_BinPackMode mode, char *ptr, DN_USize *size, DN_USize max);
DN_API DN_Str8 DN_BinPackBuild (DN_BinPack const *pack, DN_Arena *arena);
#endif // !defined(DN_BIN_PACK_H)

View File

@ -834,19 +834,19 @@ DN_API DN_V3F32 DN_V3_Normalise(DN_V3F32 a)
DN_API DN_V4F32 DN_V4F32_FromRGBU32(DN_U32 u32)
{
DN_U8 r = (DN_U8)((u32 & DN_V4_R_MASK_U32) >> 24);
DN_U8 g = (DN_U8)((u32 & DN_V4_G_MASK_U32) >> 16);
DN_U8 b = (DN_U8)((u32 & DN_V4_B_MASK_U32) >> 8);
DN_U8 r = (DN_U8)((u32 & 0x00FF0000) >> 16);
DN_U8 g = (DN_U8)((u32 & 0x0000FF00) >> 8);
DN_U8 b = (DN_U8)((u32 & 0x000000FF) >> 0);
DN_V4F32 result = DN_V4F32_FromRGBU8(r, g, b);
return result;
}
DN_API DN_V4F32 DN_V4F32_FromRGBAU32(DN_U32 u32)
{
DN_U8 r = (DN_U8)((u32 & DN_V4_R_MASK_U32) >> 24);
DN_U8 g = (DN_U8)((u32 & DN_V4_G_MASK_U32) >> 16);
DN_U8 b = (DN_U8)((u32 & DN_V4_B_MASK_U32) >> 8);
DN_U8 a = (DN_U8)((u32 & DN_V4_A_MASK_U32) >> 0);
DN_U8 r = (DN_U8)((u32 & 0xFF000000) >> 24);
DN_U8 g = (DN_U8)((u32 & 0x00FF0000) >> 16);
DN_U8 b = (DN_U8)((u32 & 0x0000FF00) >> 8);
DN_U8 a = (DN_U8)((u32 & 0x000000FF) >> 0);
DN_V4F32 result = DN_V4F32_FromRGBAU8(r, g, b, a);
return result;
}

View File

@ -265,11 +265,6 @@ DN_API DN_F32 DN_V3F32_LengthSq (DN_V3F32 a);
DN_API DN_F32 DN_V3F32_Length (DN_V3F32 a);
DN_API DN_V3F32 DN_V3F32_Normalise (DN_V3F32 a);
DN_U32 const DN_V4_R_MASK_U32 = 0xFF000000;
DN_U32 const DN_V4_G_MASK_U32 = 0x00FF0000;
DN_U32 const DN_V4_B_MASK_U32 = 0x0000FF00;
DN_U32 const DN_V4_A_MASK_U32 = 0x000000FF;
#define DN_V4F32_From1N(x) DN_Literal(DN_V4F32){{(DN_F32)(x), (DN_F32)(x), (DN_F32)(x), (DN_F32)(x)}}
#define DN_V4F32_From4N(x, y, z, w) DN_Literal(DN_V4F32){{(DN_F32)(x), (DN_F32)(y), (DN_F32)(z), (DN_F32)(w)}}
#define DN_V4F32_FromV3And1N(xyz, w) DN_Literal(DN_V4F32){{xyz.x, xyz.y, xyz.z, w}}

View File

@ -141,8 +141,7 @@ static int32_t DN_NET_CurlThreadEntryPoint_(DN_OSThread *thread)
}
DN_Assert(req->type == DN_NETRequestType_WS);
DN_Assert(req->response.state == DN_NETResponseState_WSOpen);
DN_Assert(DN_NET_CurlRequestIsInList(curl->thread_request_list, req));
DN_Assert(req->response.state >= DN_NETResponseState_WSOpen && req->response.state <= DN_NETResponseState_WSPong);
DN_USize sent = 0;
CURLcode send_result = curl_ws_send(curl_req->handle, payload.data, payload.size, &sent, 0, curlws_flag);

View File

@ -21,7 +21,6 @@ struct DN_NETEmcWSEvent
struct DN_NETEmcCore
{
DN_Pool pool;
DN_NETRequest *request_list; // Current requests being executed
DN_NETRequest *response_list; // Responses received that are to be deqeued via wait for response
DN_NETRequest *free_list; // Request pool that new requests will use before allocating
};
@ -51,6 +50,7 @@ static DN_NETEmcWSEvent *DN_NET_EmcAllocWSEvent_(DN_NETRequest *request)
// NOTE: Allocate the event and attach to the request
DN_NETEmcRequest *emc_request = DN_Cast(DN_NETEmcRequest *) request->context[1];
DN_NETEmcWSEvent *result = DN_ArenaNew(&request->arena, DN_NETEmcWSEvent, DN_ZMem_Yes);
DN_Assert(result);
if (result) {
if (!emc_request->first_event)
emc_request->first_event = result;
@ -63,17 +63,23 @@ static DN_NETEmcWSEvent *DN_NET_EmcAllocWSEvent_(DN_NETRequest *request)
static void DN_NET_EmcOnRequestDone_(DN_NETCore *net, DN_NETRequest *request)
{
// NOTE: This may be call multiple times if we get multiple responses when we yield to the javascript event loop
if (!request->next) {
// NOTE: This may be call multiple times on the same request if we get multiple responses when we
// yield to the javascript event loop, e.g. the application received multiple WS payloads before
// it waited and consequently consumed the response from the payload.
//
// So if the next pointer is already set, then it should be that the request is already enqueued.
DN_NETEmcCore *emc = DN_Cast(DN_NETEmcCore *) net->context;
if (!request->next && !request->prev && request != emc->response_list) {
request->prev = nullptr;
request->next = emc->response_list;
if (emc->response_list)
emc->response_list->prev = request;
emc->response_list = request;
}
DN_OS_SemaphoreIncrement(&net->completion_sem, 1);
DN_OS_SemaphoreIncrement(&request->completion_sem, 1);
}
// TODO: Need to enqueue the results since they can accumulate when you yield to the javascript event loop
static bool DN_NET_EmcWSOnOpen(int eventType, EmscriptenWebSocketOpenEvent const *event, void *user_data)
{
DN_NETRequest *req = DN_Cast(DN_NETRequest *) user_data;
@ -90,10 +96,8 @@ static bool DN_NET_EmcWSOnMessage(int eventType, const EmscriptenWebSocketMessag
DN_NETCore *net = DN_Cast(DN_NETCore *) req->context[0];
DN_NETEmcWSEvent *net_event = DN_NET_EmcAllocWSEvent_(req);
net_event->state = event->isText ? DN_NETResponseState_WSText : DN_NETResponseState_WSBinary;
if (event->numBytes > 0) {
DN_NETEmcCore *emc = DN_Cast(DN_NETEmcCore *) net->context;
net_event->payload = DN_Str8FromPtrPool(&emc->pool, event->data, event->numBytes);
}
if (event->numBytes > 0)
net_event->payload = DN_Str8FromPtrArena(&req->arena, event->data, event->numBytes);
DN_NET_EmcOnRequestDone_(net, req);
return true;
}
@ -112,10 +116,9 @@ static bool DN_NET_EmcWSOnClose(int eventType, EmscriptenWebSocketCloseEvent con
{
DN_NETRequest *req = DN_Cast(DN_NETRequest *) user_data;
DN_NETCore *net = DN_Cast(DN_NETCore *) req->context[0];
DN_NETEmcCore *emc = DN_Cast(DN_NETEmcCore *) net->context;
DN_NETEmcWSEvent *net_event = DN_NET_EmcAllocWSEvent_(req);
net_event->state = DN_NETResponseState_WSClose;
net_event->payload = DN_Str8FromFmtPool(&emc->pool, "Websocket closed '%.*s': (%u) %s (was %s close)", DN_Str8PrintFmt(req->url), event->code, event->reason, event->wasClean ? "clean" : "unclean");
net_event->payload = DN_Str8FromFmtArena(&req->arena, "Websocket closed '%.*s': (%u) %s (was %s close)", DN_Str8PrintFmt(req->url), event->code, event->reason, event->wasClean ? "clean" : "unclean");
DN_NET_EmcOnRequestDone_(net, req);
return true;
}
@ -157,22 +160,38 @@ void DN_NET_EmcDeinit(DN_NETCore *net)
// TODO: Track all the request handles and clean it up
}
DN_NETRequestHandle DN_NET_EmcDoHTTP(DN_NETCore *net, DN_Str8 url, DN_Str8 method, DN_NETDoHTTPArgs const *args)
static DN_NETRequest *DN_NET_EmcAllocRequest_(DN_NETCore *net)
{
// NOTE: Allocate request
DN_NETEmcCore *emc = DN_Cast(DN_NETEmcCore *) net->context;
DN_NETRequest *req = emc->free_list;
if (req) {
DN_NETRequest *result = emc->free_list;
if (result) {
emc->free_list = emc->free_list->next;
req->next = nullptr;
result->next = nullptr;
DN_Assert(result->prev == nullptr);
if (emc->free_list) {
DN_Assert(emc->free_list->prev == nullptr);
}
} else {
req = DN_ArenaNew(&net->arena, DN_NETRequest, DN_ZMem_Yes);
// NOTE: Setup the request's arena here. WASM doesn't have the concept of virtual memory
// so we use malloc to initialise it.
result = DN_ArenaNew(&net->arena, DN_NETRequest, DN_ZMem_Yes);
if (result)
result->arena = DN_ArenaFromHeap(DN_Megabytes(1), DN_ArenaFlags_Nil);
}
DN_NETRequestHandle result = DN_NET_SetupRequest_(req, url, method, args, DN_NETRequestType_HTTP);
// NOTE: Setup some emscripten specific data into our request context
req->context[0] = DN_Cast(DN_UPtr) net;
if (result) {
result->context[0] = DN_Cast(DN_UPtr) net;
}
return result;
}
DN_NETRequestHandle DN_NET_EmcDoHTTP(DN_NETCore *net, DN_Str8 url, DN_Str8 method, DN_NETDoHTTPArgs const *args)
{
DN_NETRequest *req = DN_NET_EmcAllocRequest_(net);
DN_NETRequestHandle result = DN_NET_SetupRequest_(req, url, method, args, DN_NETRequestType_HTTP);
// NOTE: Setup the HTTP request via Emscripten
emscripten_fetch_attr_t fetch_attribs = {};
@ -236,23 +255,12 @@ DN_NETRequestHandle DN_NET_EmcDoHTTP(DN_NETCore *net, DN_Str8 url, DN_Str8 metho
DN_NETRequestHandle DN_NET_EmcDoWS(DN_NETCore *net, DN_Str8 url)
{
DN_Assert(emscripten_websocket_is_supported());
// NOTE: Allocate request
DN_NETEmcCore *emc = DN_Cast(DN_NETEmcCore *) net->context;
DN_NETRequest *req = emc->free_list;
if (req) {
emc->free_list = emc->free_list->next;
req->next = nullptr;
} else {
req = DN_ArenaNew(&net->arena, DN_NETRequest, DN_ZMem_Yes);
}
DN_NETRequest *req = DN_NET_EmcAllocRequest_(net);
DN_NETRequestHandle result = DN_NET_SetupRequest_(req, url, /*method=*/DN_Str8Lit(""), /*args=*/nullptr, DN_NETRequestType_WS);
if (!req)
return result;
// NOTE: Setup some emscripten specific data into our request context
req->context[0] = DN_Cast(DN_UPtr) net;
req->context[1] = DN_Cast(DN_UPtr) DN_ArenaNew(&req->arena, DN_NETEmcRequest, DN_ZMem_Yes);
req->start_response_arena_pos = DN_ArenaPos(&req->arena);
@ -307,44 +315,79 @@ void DN_NET_EmcDoWSSend(DN_NETRequestHandle handle, DN_Str8 data, DN_NETWSSend s
static DN_NETResponse DN_NET_EmcHandleFinishedRequest_(DN_NETCore *net, DN_NETEmcCore *emc, DN_NETRequestHandle handle, DN_NETRequest *request, DN_Arena *arena)
{
// NOTE: Generate the response, copy out the strings into the user given memory
DN_NETEmcRequest *emc_request = DN_Cast(DN_NETEmcRequest *) request->context[1];
DN_NETResponse result = request->response;
bool end_request = true;
bool dequeue_request = true;
if (request->type == DN_NETRequestType_HTTP) {
result.body = DN_Str8FromStr8Arena(arena, result.body);
} else {
// NOTE: Get emscripten contexts
DN_NETEmcRequest *emc_request = DN_Cast(DN_NETEmcRequest *) request->context[1];
DN_NETEmcWSEvent *emc_event = emc_request->first_event;
emc_request->first_event = emc_event->next; // Advance the list pointer
DN_Assert(emc_event);
DN_Assert((emc_event->state >= DN_NETResponseState_WSOpen && emc_event->state <= DN_NETResponseState_WSPong) ||
emc_event->state == DN_NETResponseState_Error);
DN_AssertF((emc_event->state >= DN_NETResponseState_WSOpen && emc_event->state <= DN_NETResponseState_WSPong) || emc_event->state == DN_NETResponseState_Error,
"emc_event=%p", emc_event);
// NOTE: Build the result
result.state = emc_event->state;
result.request = handle;
result.body = DN_Str8FromStr8Arena(arena, emc_event->payload);
// NOTE: Advance the event list
{
if (emc_request->first_event == emc_request->last_event) {
emc_request->last_event = emc_request->last_event->next;
DN_Assert(emc_request->first_event->next == emc_request->last_event);
}
emc_request->first_event = emc_event->next;
// NOTE: Free the payload which is stored in the Emscripten pool
if (emc_event->payload.size) {
DN_PoolDealloc(&emc->pool, emc_event->payload.data);
emc_event->payload = {};
// NOTE: If there's still an event on the request then we do not dequeue the request from the
// response list. The user can still "wait" for a response to read more data from it.
if (emc_request->first_event)
dequeue_request = false;
}
if (result.state != DN_NETResponseState_WSClose)
end_request = false;
}
// NOTE: Deallocate the memory used in the request and reset the string builder
// NOTE: Remove request from the response list which is doubly-linked
if (dequeue_request) {
if (request->prev) {
DN_AssertF(request->prev->next == request, "next=%p vs request=%p", request->prev->next, request);
request->prev->next = request->next;
}
if (request->next) {
DN_AssertF(request->next->prev == request, "prev=%p vs request=%p", request->next->prev, request);
request->next->prev = request->prev;
}
if (request == emc->response_list)
emc->response_list = emc->response_list->next;
request->prev = nullptr;
request->next = nullptr;
DN_Assert(emc_request->first_event == nullptr);
DN_Assert(emc_request->last_event == nullptr);
// NOTE: Deallocate the memory used in the request and reset the string builder (as all
// payload(s) have been read from the request).
if (end_request)
DN_ArenaPopTo(&request->arena, 0);
else
DN_ArenaPopTo(&request->arena, request->start_response_arena_pos);
}
if (end_request) {
DN_NET_EndFinishedRequest_(request);
DN_NETEmcRequest *emc_request = DN_Cast(DN_NETEmcRequest *) request->context[1];
emscripten_websocket_delete(emc_request->socket);
emc_request->socket = 0;
DN_NETEmcCore *emc = DN_Cast(DN_NETEmcCore *) net->context;
request->next = emc->free_list;
request->prev = nullptr;
emc->free_list = request;
}
@ -391,9 +434,6 @@ DN_NETResponse DN_NET_EmcWaitForResponse(DN_NETRequestHandle handle, DN_Arena *a
if (wait != DN_OSSemaphoreWaitResult_Success)
return result;
// NOTE: Remove request from the done list
request_ptr->next = nullptr;
emc->response_list = emc->response_list->next;
result = DN_NET_EmcHandleFinishedRequest_(net, emc, handle, request_ptr, arena);
// NOTE: Decrement the global 'request done' completion semaphore since the user consumed the
@ -414,16 +454,12 @@ DN_NETResponse DN_NET_EmcWaitForAnyResponse(DN_NETCore *net, DN_Arena *arena, DN
if (wait != DN_OSSemaphoreWaitResult_Success)
return result;
// NOTE: Dequeue the request that is done from the done list
DN_AssertF(emc->response_list,
"This should be set otherwise we bumped the completion sem without queueing into the "
"done list or we forgot to wait on the global semaphore after a request finished");
DN_NETRequest *request_ptr = emc->response_list;
DN_Assert(request_ptr == emc->response_list);
request_ptr->next = nullptr;
emc->response_list = emc->response_list->next;
// NOTE: Decrement the request's completion semaphore since the user consumed the global semaphore
DN_NETRequest *request_ptr = emc->response_list;
DN_OSSemaphoreWaitResult net_wait_result = DN_OS_SemaphoreWait(&request_ptr->completion_sem, 0 /*timeout_ms*/);
DN_AssertF(net_wait_result == DN_OSSemaphoreWaitResult_Success, "Wait result was: %zu", DN_Cast(DN_USize) net_wait_result);

View File

@ -42,7 +42,7 @@ DN_MSVC_WARNING_DISABLE(6262) // Function uses '29804' bytes of stack. Consider
int main(int, char**)
{
DN_Core core = {};
DN_Init(&core, DN_InitFlags_LogAllFeatures, nullptr);
DN_Init(&core, DN_InitFlags_LogAllFeatures | DN_InitFlags_OS, nullptr);
DN_Tests_RunSuite(DN_TestsPrint_Yes);
return 0;
}

View File

@ -28,6 +28,10 @@ static DN_U32 DN_OS_MemConvertPageToOSFlags_(DN_U32 protect)
DN_API void *DN_OS_MemReserve(DN_USize size, DN_MemCommit commit, DN_U32 page_flags)
{
#if defined(DN_PLATFORM_EMSCRIPTEN)
DN_InvalidCodePathF("Emscripten does not support virtual memory, you should use DN_OS_MemAlloc");
#endif
unsigned long os_page_flags = DN_OS_MemConvertPageToOSFlags_(page_flags);
if (commit == DN_MemCommit_Yes)
@ -43,6 +47,9 @@ DN_API void *DN_OS_MemReserve(DN_USize size, DN_MemCommit commit, DN_U32 page_fl
DN_API bool DN_OS_MemCommit(void *ptr, DN_USize size, DN_U32 page_flags)
{
#if defined(DN_PLATFORM_EMSCRIPTEN)
DN_InvalidCodePathF("Emscripten does not support virtual memory");
#endif
bool result = false;
if (!ptr || size == 0)
return false;
@ -56,17 +63,26 @@ DN_API bool DN_OS_MemCommit(void *ptr, DN_USize size, DN_U32 page_flags)
DN_API void DN_OS_MemDecommit(void *ptr, DN_USize size)
{
#if defined(DN_PLATFORM_EMSCRIPTEN)
DN_InvalidCodePathF("Emscripten does not support virtual memory");
#endif
mprotect(ptr, size, PROT_NONE);
madvise(ptr, size, MADV_FREE);
}
DN_API void DN_OS_MemRelease(void *ptr, DN_USize size)
{
#if defined(DN_PLATFORM_EMSCRIPTEN)
DN_InvalidCodePathF("Emscripten does not support virtual memory");
#endif
munmap(ptr, size);
}
DN_API int DN_OS_MemProtect(void *ptr, DN_USize size, DN_U32 page_flags)
{
#if defined(DN_PLATFORM_EMSCRIPTEN)
DN_InvalidCodePathF("Emscripten does not support virtual memory");
#endif
if (!ptr || size == 0)
return 0;
@ -151,7 +167,8 @@ DN_API DN_U64 DN_OS_DateUnixTimeSFromLocalDate(DN_Date date)
DN_API DN_U64 DN_OS_DateLocalUnixTimeSFromUnixTimeS(DN_U64 unix_ts_s)
{
struct tm tm_local;
void *ret = localtime_r(&unix_ts_s, &tm_local);
time_t unix_ts = unix_ts_s;
void *ret = localtime_r(&unix_ts, &tm_local);
DN_Assert(ret);
long local_offset_seconds = tm_local.tm_gmtoff;

View File

@ -32,9 +32,12 @@ DN_API void DN_OS_TLSInit(DN_OSTLS *tls, DN_OSTLSInitArgs args)
return;
DN_U64 reserve = args.reserve ? args.reserve : DN_Kilobytes(64);
DN_U64 commit = args.commit ? args.commit : DN_Kilobytes(4);
DN_U64 err_sink_reserve = args.err_sink_reserve ? args.err_sink_reserve : DN_Kilobytes(64);
#if !defined(DN_PLATFORM_EMSCRIPTEN)
DN_U64 commit = args.commit ? args.commit : DN_Kilobytes(4);
DN_U64 err_sink_commit = args.err_sink_commit ? args.err_sink_commit : DN_Kilobytes(4);
#endif
// TODO: We shouldn't have the no alloc track flag here but the initial TLS
// init on OS init happens before CORE init. CORE init is the one responsible
@ -42,8 +45,22 @@ DN_API void DN_OS_TLSInit(DN_OSTLS *tls, DN_OSTLSInitArgs args)
for (DN_ForItCArray(it, DN_Arena, tls->arenas)) {
DN_Arena *arena = it.data;
switch (DN_Cast(DN_OSTLSArena) it.index) {
default: *arena = DN_ArenaFromVMem(reserve, commit, DN_ArenaFlags_AllocCanLeak | DN_ArenaFlags_NoAllocTrack); break;
case DN_OSTLSArena_ErrorSink: *arena = DN_ArenaFromVMem(err_sink_reserve, err_sink_commit, DN_ArenaFlags_AllocCanLeak | DN_ArenaFlags_NoAllocTrack); break;
default: {
#if defined(DN_PLATFORM_EMSCRIPTEN)
*arena = DN_ArenaFromHeap(reserve, DN_ArenaFlags_AllocCanLeak | DN_ArenaFlags_NoAllocTrack);
#else
*arena = DN_ArenaFromVMem(reserve, commit, DN_ArenaFlags_AllocCanLeak | DN_ArenaFlags_NoAllocTrack);
#endif
} break;
case DN_OSTLSArena_ErrorSink: {
#if defined(DN_PLATFORM_EMSCRIPTEN)
*arena = DN_ArenaFromHeap(err_sink_reserve, DN_ArenaFlags_AllocCanLeak | DN_ArenaFlags_NoAllocTrack);
#else
*arena = DN_ArenaFromVMem(err_sink_reserve, err_sink_commit, DN_ArenaFlags_AllocCanLeak | DN_ArenaFlags_NoAllocTrack);
#endif
} break;
case DN_OSTLSArena_Count: DN_InvalidCodePath; break;
}
}

View File

@ -1,2 +1,19 @@
// raddbg 0.9.25 project file
recent_file: path: "Source/OS/dn_os_w32.cpp"
target:
{
executable: "Build/dn_unit_tests_msvc.exe"
working_directory: "Build/"
enabled: 1
}
debug_info:
{
path: "C:/Home/Code/DN/Build/dn_unit_tests_msvc.pdb"
timestamp: 66199776062119
}
debug_info:
{
path: "C:/Home/Cloud/Dev/Win/msvc/msvc_host_x64_target_x64/14.41.17.11/VC/Tools/MSVC/14.41.34120/bin/Hostx64/x64/clang_rt.asan_dynamic-x86_64.pdb"
timestamp: 66163731918117
}