- Start work on string library
- Dyamically load minimum crt symbols in os backend so we don't need to #include c headers - Some more os calls: - write to stdout (with our string type) - macros for variadic argument lists - Dynamic library loading
This commit is contained in:
parent
98feda0cbb
commit
68d1efb759
8 changed files with 238 additions and 18 deletions
2
build.c
2
build.c
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@ -2,7 +2,7 @@
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///
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// Build config stuff
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#define VERY_DEBUG 0
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#define RUN_TESTS 0
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#define RUN_TESTS 1
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typedef struct Context_Extra {
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int monkee;
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@ -29,13 +29,43 @@ typedef u8 bool;
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#define assert(cond, ...) if (!(cond)) { printf("Assertion failed for condition: " #cond ". Message: " __VA_ARGS__); os_debug_break(); }
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#ifndef max
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#define max(a, b) ((a) > (b) ? (a) : (b))
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#define min(a, b) ((a) < (b) ? (a) : (b))
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#endif
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#define cast(t) (t)
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///
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// inline
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// (Credit to chatgpt, so it might not be 100% correct)
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#ifdef _MSC_VER
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// Microsoft Visual C++
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#define inline __forceinline
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#elif defined(__GNUC__) || defined(__GNUG__)
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// GNU GCC/G++
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#define inline __attribute__((always_inline)) inline
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#elif defined(__clang__)
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// Clang/LLVM
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#define inline __attribute__((always_inline)) inline
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#elif defined(__INTEL_COMPILER) || defined(__ICC)
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// Intel C++ Compiler
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#define inline __forceinline
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#elif defined(__BORLANDC__)
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// Borland C++
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#define inline __inline
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#elif defined(__MINGW32__) || defined(__MINGW64__)
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// MinGW (Minimalist GNU for Windows)
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#define inline __attribute__((always_inline)) inline
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#elif defined(__SUNPRO_C) || defined(__SUNPRO_CC)
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// Oracle Solaris Studio
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#define inline inline __attribute__((always_inline))
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#elif defined(__IBMC__) || defined(__IBMCPP__)
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// IBM XL C/C++ Compiler
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#define inline __attribute__((always_inline)) inline
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#elif defined(__PGI)
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// Portland Group Compiler
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#define inline inline __attribute__((always_inline))
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#else
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// Fallback for unknown compilers
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#define inline inline
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#endif
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typedef struct Nothing {int nothing;} Nothing;
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#ifndef CONTEXT_EXTRA
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@ -164,11 +164,12 @@ void heap_init() {
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}
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void *heap_alloc(u64 size) {
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// #Sync #Speed oof
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os_lock_mutex(heap_mutex);
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if (!heap_initted) heap_init();
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// #Sync #Speed oof
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os_lock_mutex(heap_mutex);
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size += sizeof(Heap_Allocation_Metadata);
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size = (size+HEAP_ALIGNMENT) & ~(HEAP_ALIGNMENT-1);
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@ -262,10 +263,11 @@ void *heap_alloc(u64 size) {
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}
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void heap_dealloc(void *p) {
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// #Sync #Speed oof
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os_lock_mutex(heap_mutex);
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if (!heap_initted) heap_init();
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os_lock_mutex(heap_mutex);
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assert(is_pointer_in_program_memory(p), "Garbage pointer; out of program memory bounds!");
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p = (u8*)p-sizeof(Heap_Allocation_Metadata);
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Heap_Allocation_Metadata *meta = (Heap_Allocation_Metadata*)(p);
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@ -431,3 +433,8 @@ void reset_temporary_storage() {
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has_warned_temporary_storage_overflow = true;
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}
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// So we can do this in code included before this.
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void push_temp_allocator() {
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if (!temporary_storage_initted) temporary_storage_init();
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push_allocator(temp);
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}
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@ -1,16 +1,14 @@
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#include <stdio.h> // #Cleanup just using this for printf
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#include <stdlib.h>
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#include "base.c"
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#include "string.c"
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#include "os_interface.c"
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#include "memory.c"
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#ifdef OS_WINDOWS
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#include "os_impl_windows.c"
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#elif defined (OS_LINUX)
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@ -24,6 +22,6 @@
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void oogabooga_init(u64 program_memory_size) {
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os_init(program_memory_size);
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heap_init();
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heap_init();
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temporary_storage_init();
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}
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@ -37,6 +37,20 @@ void os_init(u64 program_memory_size) {
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context.allocator = heap_allocator;
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os.crt = os_load_dynamic_library(const_string("msvcrt.dll"));
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assert(os.crt != 0, "Could not load win32 crt library. Might be compiled with non-msvc? #Incomplete #Portability");
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os.crt_vprintf = (Crt_Vprintf_Proc)os_dynamic_library_load_symbol(os.crt, const_string("vprintf"));
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assert(os.crt_vprintf, "Missing vprintf in crt");
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os.crt_printf = (Crt_Printf_Proc)os_dynamic_library_load_symbol(os.crt, const_string("printf"));
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assert(os.crt_printf, "Missing printf in crt");
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os.crt_vsnprintf = (Crt_Vsnprintf_Proc)os_dynamic_library_load_symbol(os.crt, const_string("vsnprintf"));
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assert(os.crt_vsnprintf, "Missing vsnprintf in crt");
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os.crt_memcpy = (Crt_Memcpy_Proc)os_dynamic_library_load_symbol(os.crt, const_string("memcpy"));
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assert(os.crt_memcpy, "Missing memcpy in crt");
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os.crt_memcmp = (Crt_Memcmp_Proc)os_dynamic_library_load_symbol(os.crt, const_string("memcmp"));
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assert(os.crt_memcmp, "Missing crt_memcmp in crt");
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os.crt_memset = (Crt_Memset_Proc)os_dynamic_library_load_symbol(os.crt, const_string("memset"));
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assert(os.crt_memset, "Missing memset in crt");
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}
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bool os_grow_program_memory(u64 new_size) {
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@ -172,3 +186,22 @@ float64 os_get_current_time_in_seconds() {
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}
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return (double)counter.QuadPart / (double)frequency.QuadPart;
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}
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Dynamic_Library_Handle os_load_dynamic_library(string path) {
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return LoadLibraryA(temp_convert_to_null_terminated_string(path));
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}
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void *os_dynamic_library_load_symbol(Dynamic_Library_Handle l, string identifier) {
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return GetProcAddress(l, temp_convert_to_null_terminated_string(identifier));
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}
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void os_unload_dynamic_library(Dynamic_Library_Handle l) {
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FreeLibrary(l);
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}
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void os_write_string_to_stdout(string s) {
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HANDLE win32_stdout = GetStdHandle(STD_OUTPUT_HANDLE);
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if (win32_stdout == INVALID_HANDLE_VALUE) return;
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WriteFile(win32_stdout, s.data, s.count, 0, NULL);
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}
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@ -6,32 +6,111 @@
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typedef HANDLE Mutex_Handle;
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typedef HANDLE Thread_Handle;
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typedef HMODULE Dynamic_Library_Handle;
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#elif defined(__linux__)
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// Include whatever #Incomplete #Portability
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#define OS_LINUX
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typedef SOMETHING Mutex_Handle;
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typedef SOMETHING Thread_Handle;
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typedef SOMETHING Dynamic_Library_Handle;
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#error "Linux is not supported yet";
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#elif defined(__APPLE__) && defined(__MACH__)
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// Include whatever #Incomplete #Portability
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#define OS_MAC
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typedef SOMETHING Mutex_Handle;
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typedef SOMETHING Thread_Handle;
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typedef SOMETHING Dynamic_Library_Handle;
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#error "Mac is not supported yet";
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#else
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#error "Current OS not supported!";
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#endif
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#ifndef max
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#define max(a, b) ((a) > (b) ? (a) : (b))
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#define min(a, b) ((a) < (b) ? (a) : (b))
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#endif
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#define _INTSIZEOF(n) ((sizeof(n) + sizeof(int) - 1) & ~(sizeof(int) - 1))
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#define oogabooga_va_start(ap, v) (ap = (va_list)&v + _INTSIZEOF(v))
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#define oogabooga_va_arg(ap, t) (*(t *)((ap += _INTSIZEOF(t)) - _INTSIZEOF(t)))
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#define oogabooga_va_end(ap) (ap = (va_list)0)
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typedef void* (__cdecl *Crt_Memcpy_Proc) (void*, const void*, size_t);
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typedef int (__cdecl *Crt_Memcmp_Proc) (const void*, const void*, size_t);
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typedef void* (__cdecl *Crt_Memset_Proc) (void*, int, size_t);
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typedef int (__cdecl *Crt_Printf_Proc) (const char*, ...);
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typedef int (__cdecl *Crt_Vprintf_Proc) (const char*, va_list);
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typedef int (__cdecl *Crt_Vsnprintf_Proc) (char*, size_t, const char*, va_list);
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typedef struct Os_Info {
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u64 page_size;
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u64 granularity;
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Dynamic_Library_Handle crt;
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Crt_Memcpy_Proc crt_memcpy;
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Crt_Memcmp_Proc crt_memcmp;
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Crt_Memset_Proc crt_memset;
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Crt_Printf_Proc crt_printf; // #Cleanup remove after we have our own print
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Crt_Vprintf_Proc crt_vprintf; // #Cleanup remove after we have our own print
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Crt_Vsnprintf_Proc crt_vsnprintf;
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} Os_Info;
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Os_Info os;
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inline void* naive_memcpy(void* dest, const void* source, size_t size) {
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for (u64 i = 0; i < (u64)size; i++) ((u8*)dest)[i] = ((u8*)source)[i];
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return dest;
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}
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inline void* memcpy(void* dest, const void* source, size_t size) {
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if (!os.crt_memcpy) return naive_memcpy(dest, source, size);
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return os.crt_memcpy(dest, source, size);
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}
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inline int naive_memcmp(const void* a, const void* b, size_t amount) {
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// I don't understand the return value of memcmp but I also dont care
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for (u64 i = 0; i < (u64)amount; i++) {
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if (((u8*)a)[i] != ((u8*)b)[i]) return -1;
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}
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return 0;
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}
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inline int memcmp(const void* a, const void* b, size_t amount) {
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if (!os.crt_memcmp) return naive_memcmp(a, b, amount);
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return os.crt_memcmp(a, b, amount);
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}
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inline void* naive_memset(void* dest, int value, size_t amount) {
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for (u64 i = 0; i < (u64)amount; i++) ((u8*)dest)[i] = (u8)value;
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return dest;
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}
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inline void* memset(void* dest, int value, size_t amount) {
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if (!os.crt_memset) return naive_memset(dest, value, amount);
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return os.crt_memset(dest, value, amount);
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}
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inline int printf(const char* fmt, ...) {
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char fast_buffer[8196];
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char *large_buffer = 0;
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va_list args;
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oogabooga_va_start(args, fmt);
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int r = vprintf(fmt, args);
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oogabooga_va_end(args);
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return r;
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}
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void os_write_string_to_stdout(string s);
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inline int vprintf(const char* fmt, va_list args) {
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if (os.crt_vprintf) return os.crt_vprintf(fmt, args);
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else {
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os_write_string_to_stdout(cstr(fmt));
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os_write_string_to_stdout(cstr(" <crt_vprintf is not loaded so we cannot vprintf.>"));
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return 0;
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}
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}
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inline int vsnprintf(char* buffer, size_t n, const char* fmt, va_list args) {
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os.crt_vsnprintf(buffer, n, fmt, args);
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}
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void* program_memory = 0;
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u64 program_memory_size = 0;
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u64 os_get_current_cycle_count();
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float64 os_get_current_time_in_seconds();
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///
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///
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// Dynamic Libraries
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///
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Dynamic_Library_Handle os_load_dynamic_library(string path);
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void *os_dynamic_library_load_symbol(Dynamic_Library_Handle l, string identifier);
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void os_unload_dynamic_library(Dynamic_Library_Handle l);
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///
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///
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// IO
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///
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void os_write_string_to_stdout(string s);
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45
oogabooga/string.c
Normal file
45
oogabooga/string.c
Normal file
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void * memcpy (void *,const void *,size_t);
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typedef struct string {
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u8 *data;
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u64 count;
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} string;
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void push_temp_allocator();
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#define cstr const_string
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#define const_string(s) (string){ (u8*)s, length_of_null_terminated_string(s) }
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inline u64 length_of_null_terminated_string(const char* cstring) {
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u64 len = 0;
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while (*cstring != 0) {
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len += 1;
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cstring += 1;
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}
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return len;
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}
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// context.allocator !
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string string_concat(string left, string right) {
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string result;
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result.count = left.count + right.count;
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result.data = cast(u8*)alloc(result.count);
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memcpy(result.data, left.data, left.count);
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memcpy(result.data+left.count, right.data, right.count);
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return result;
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}
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// context.allocator !
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char *convert_to_null_terminated_string(string s) {
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char *cstring = cast(char*)alloc(s.count+1);
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memcpy(cstring, s.data, s.count);
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cstring[s.count] = 0;
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return cstring;
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}
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char *temp_convert_to_null_terminated_string(string s) {
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push_temp_allocator();
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char *c = convert_to_null_terminated_string(s);
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pop_allocator();
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return c;
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}
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@ -221,6 +221,11 @@ void test_allocator_threaded(Thread *t) {
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}
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}
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void test_strings() {
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string s = (string){ (u8*)"Ooga booga", length_of_null_terminated_string("Ooga booga") };
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string a = const_string("Ooga booga");
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}
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void oogabooga_run_tests() {
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printf("Testing allocator...\n");
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test_allocator(true);
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test_threads();
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printf("OK!\n");
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printf("Testing strings...\n");
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test_strings();
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printf("OK!\n");
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printf("Thread bombing allocator...\n");
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Thread* threads[100];
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for (int i = 0; i < 100; i++) {
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Reference in a new issue