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loki.h
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#ifndef loki_h
#define loki_h
#ifndef LK_NS_BEGIN
# ifdef __cplusplus
# define LK_NS_BEGIN extern "C" {
# define LK_NS_END }
# else
# define LK_NS_BEGIN
# define LK_NS_END
# endif
#endif /* LK_NS_BEGIN */
#ifdef LK_STATIC_API
# ifndef LOKI_IMPLEMENTATION
# define LOKI_IMPLEMENTATION
# endif
# if __GNUC__
# define LK_API static __attribute((unused))
# else
# define LK_API static
# endif
#endif
#if !defined(LK_API) && defined(_WIN32)
# if defined(LOKI_IMPLEMENTATION) || defined(LOKI_MODULE)
# define LK_API __declspec(dllexport)
# else
# define LK_API __declspec(dllimport)
# endif
#endif
#ifndef LK_API
# define LK_API extern
#endif
#ifndef LKMOD_API
# define LKMOD_API LK_API
#endif
#include <stdarg.h>
#include <stddef.h>
#define LK_OK (0)
#define LK_WEAK (1)
#define LK_ERR (-1)
#define LK_TIMEOUT (-2)
#define LK_TYPE_MASK ((unsigned)0x3FFFFFFF)
#define LK_RESPONSE_TYPE ((unsigned)0x80000000)
#ifndef LK_SLOTNAME_LAUNCH
# define LK_SLOTNAME_LAUNCH "on_service_launch"
#endif
#ifndef LK_SLOTNAME_CLOSE
# define LK_SLOTNAME_CLOSE "on_service_close"
#endif
LK_NS_BEGIN
typedef struct lk_State lk_State;
typedef struct lk_Service lk_Service;
typedef struct lk_Slot lk_Slot;
typedef struct lk_Signal lk_Signal;
typedef struct lk_Source lk_Source;
typedef int lk_Handler (lk_State *S, lk_Slot *sender, lk_Signal *sig);
typedef void *lk_Allocf (void *ud, void *ptr, size_t size, size_t osize);
struct lk_Source {
lk_Service *service;
lk_Handler *callback;
lk_Handler *deletor;
void *ud;
unsigned refcount : 31;
unsigned force : 1; /* call source even in req signal */
};
struct lk_Signal {
lk_Source *source;
void *data;
unsigned type : 30;
unsigned isdata : 1; /* data is lk_Data* */
unsigned isack : 1; /* this is a response signal */
};
/* global routines */
LK_API lk_State *lk_newstate (const char *name, lk_Allocf *allocf, void *ud);
LK_API void lk_close (lk_State *S);
LK_API void lk_waitclose (lk_State *S);
LK_API int lk_start (lk_State *S, int threads);
LK_API char *lk_getconfig (lk_State *S, const char *key);
LK_API void lk_setconfig (lk_State *S, const char *key, const char *value);
LK_API int lk_log (lk_State *S, const char *fmt, ...);
LK_API int lk_vlog (lk_State *S, const char *fmt, va_list l);
#define lk_str_(str) # str
#define lk_str(str) lk_str_(str)
#define lk_loc(str) __FILE__ ":" lk_str(__LINE__) ": " str
/* service routines */
LK_API lk_Service *lk_launch (lk_State *S, const char *name, lk_Handler *h, void *ud);
LK_API int lk_retain (lk_Service *svr);
LK_API int lk_release (lk_Service *svr);
LK_API int lk_broadcast (lk_State *S, const char *slot, const lk_Signal *sig);
LK_API lk_Service *lk_self (lk_State *S);
/* message routines */
#define LK_SIGNAL { NULL, NULL, 0, 0, 0 }
#define LK_RESPONSE { NULL, NULL, 0, 0, 1 }
#define lk_serviceslot(slot) ((lk_Slot*)lk_service((lk_Slot*)(slot)))
LK_API lk_Slot *lk_newslot (lk_State *S, const char *name, lk_Handler *h, void *ud);
LK_API lk_Slot *lk_newpoll (lk_State *S, const char *name, lk_Handler *h, void *ud);
LK_API lk_Slot *lk_slot (lk_State *S, const char *name);
LK_API lk_Slot *lk_current (lk_State *S);
LK_API int lk_wait (lk_State *S, lk_Signal *sig, int waitms);
LK_API void lk_initsource (lk_State *S, lk_Source *src, lk_Handler *h, void *ud);
LK_API void lk_usesource (lk_Source *src);
LK_API void lk_freesource (lk_Source *src);
LK_API void lk_setcallback (lk_State *S, lk_Handler *h, void *ud);
LK_API int lk_emit (lk_Slot *slot, const lk_Signal *sig);
LK_API int lk_emitstring (lk_Slot *slot, unsigned type, const char *s);
LK_API void lk_sethook (lk_Slot *slot, lk_Handler *h, void *ud);
LK_API void lk_setdata (lk_Slot *slot, void *data);
LK_API void *lk_data (lk_Slot *slot);
LK_API const char *lk_name (lk_Slot *slot);
LK_API lk_Service *lk_service (lk_Slot *slot);
LK_API lk_State *lk_state (lk_Slot *slot);
LK_API lk_Handler *lk_slothandler (lk_Slot *slot);
LK_API void lk_setslothandler (lk_Slot *slot, lk_Handler *h);
LK_API lk_Handler *lk_refactor (lk_Slot *slot);
LK_API void lk_setrefactor (lk_Slot *slot, lk_Handler *h);
LK_NS_END
#endif /* loki_h */
/****************************************************************************/
#ifndef lk_utils_h
#define lk_utils_h
#include <string.h>
LK_NS_BEGIN
#define LK_MPOOLPAGESIZE 4096
/* memory management */
#ifndef LK_DEBUG_POOL
# ifdef _NDEBUG
# define LK_DEBUG_POOL(x) /* nothing */
# else
# define LK_DEBUG_POOL(x) x
# endif
#endif
typedef struct lk_MemPool {
void *pages;
void *freed;
size_t size;
LK_DEBUG_POOL(size_t allocated;)
} lk_MemPool;
LK_API void *lk_malloc (lk_State *S, size_t size);
LK_API void *lk_realloc (lk_State *S, void *ptr, size_t size, size_t osize);
LK_API void lk_free (lk_State *S, void *ptr, size_t osize);
LK_API void lk_initpool (lk_MemPool *mpool, size_t size);
LK_API void lk_freepool (lk_State *S, lk_MemPool *mpool);
LK_API void *lk_poolalloc (lk_State *S, lk_MemPool *mpool);
LK_API void lk_poolfree (lk_MemPool *mpool, void *obj);
/* string routines */
typedef struct lk_Data lk_Data;
LK_API lk_Data *lk_newdata (lk_State *S, size_t size);
LK_API size_t lk_deldata (lk_State *S, lk_Data *data);
LK_API size_t lk_usedata (lk_State *S, lk_Data *data);
LK_API size_t lk_len (lk_Data *data);
LK_API size_t lk_size (lk_Data *data);
LK_API void lk_setlen (lk_Data *data, size_t len);
LK_API lk_Data *lk_newstring (lk_State *S, const char *s);
LK_API lk_Data *lk_newlstring (lk_State *S, const char *s, size_t len);
LK_API lk_Data *lk_newvfstring (lk_State *S, const char *fmt, va_list l);
LK_API lk_Data *lk_newfstring (lk_State *S, const char *fmt, ...);
LK_API int lk_emitdata (lk_Slot *slot, unsigned type, lk_Data *data);
LK_API char *lk_strcpy (char *buff, const char *s, size_t len);
LK_API int lk_vsnprintf (char *buff, size_t size, const char *fmt, va_list l);
/* table routines */
typedef struct lk_Entry {
int next;
unsigned hash;
const char *key;
} lk_Entry;
typedef struct lk_Table {
size_t size;
size_t entry_size;
size_t lastfree;
lk_Entry *hash;
} lk_Table;
typedef struct lk_PtrEntry { lk_Entry entry; void *data; } lk_PtrEntry;
#define lk_key(e) (((lk_Entry*)(e))->key)
LK_API void lk_inittable (lk_Table *t, size_t entry_size);
LK_API void lk_copytable (lk_State *S, lk_Table *t, const lk_Table *other);
LK_API void lk_freetable (lk_State *S, lk_Table *t);
LK_API size_t lk_resizetable (lk_State *S, lk_Table *t, size_t len);
LK_API lk_Entry *lk_newkey (lk_State *S, lk_Table *t, lk_Entry *entry);
LK_API lk_Entry *lk_gettable (lk_Table *t, const char *key);
LK_API lk_Entry *lk_settable (lk_State *S, lk_Table *t, const char *key);
LK_API int lk_nextentry (lk_Table *t, lk_Entry **pentry);
LK_NS_END
#endif /* lk_utils_h */
#ifndef lk_thread_h
#define lk_thread_h
#ifdef _WIN32
#ifndef WIN32_LEAN_AND_MEAN
# define WIN32_LEAN_AND_MEAN
#endif
# include <Windows.h>
# include <process.h>
typedef DWORD lk_TlsKey;
typedef CRITICAL_SECTION lk_Lock;
typedef HANDLE lk_Event;
typedef HANDLE lk_Thread;
#define lk_inittls(key) ((*(key) = TlsAlloc()) != TLS_OUT_OF_INDEXES)
#define lk_freetls(key) TlsFree(key)
#define lk_gettls(key) TlsGetValue(key)
#define lk_settls(key, p) TlsSetValue((key),(p))
#define lk_initlock(lock) (InitializeCriticalSection(lock), 1)
#define lk_freelock(lock) DeleteCriticalSection(&(lock))
#define lk_lock(lock) EnterCriticalSection(&(lock))
#define lk_unlock(lock) LeaveCriticalSection(&(lock))
#define lk_initevent(evt) ((*(evt)=CreateEvent(NULL,FALSE,FALSE,NULL))!=NULL)
#define lk_freeevent(evt) CloseHandle(evt)
#define lk_signal(evt) SetEvent(evt)
#define lk_waitthread(t) (WaitForSingleObject((t), INFINITE),(void)lk_freethread(t))
#define lk_freethread(t) ((void)CloseHandle(t))
#else /* POSIX systems */
#include <unistd.h>
#include <limits.h>
#include <pthread.h>
#include <sys/time.h>
typedef pthread_key_t lk_TlsKey;
typedef pthread_mutex_t lk_Lock;
typedef pthread_cond_t lk_Event;
typedef pthread_t lk_Thread;
#define lk_inittls(key) (pthread_key_create((key), NULL) == 0)
#define lk_freetls(key) pthread_key_delete(key)
#define lk_gettls(key) pthread_getspecific(key)
#define lk_settls(key, p) pthread_setspecific((key), (p))
#define lk_initlock(lock) (pthread_mutex_init(lock, NULL) == 0)
#define lk_freelock(lock) pthread_mutex_destroy(&(lock))
#define lk_lock(lock) pthread_mutex_lock(&(lock))
#define lk_unlock(lock) pthread_mutex_unlock(&(lock))
#define lk_initevent(evt) (pthread_cond_init((evt), NULL) == 0)
#define lk_freeevent(evt) pthread_cond_destroy(&(evt))
#define lk_signal(evt) pthread_cond_signal(&(evt))
#define lk_waitthread(t) pthread_join((t),NULL)
#define lk_freethread(t) pthread_cancel(t)
#endif
LK_NS_BEGIN
typedef void lk_ThreadHandler (void *args);
LK_API int lk_initthread (lk_Thread *t, lk_ThreadHandler *h, void *ud);
LK_API int lk_cpucount (void);
LK_API int lk_waitevent (lk_Event *evt, lk_Lock *lock, int waitms);
LK_NS_END
#endif /* lk_thread_h */
#ifndef lk_queue_h
#define lk_queue_h
#define lkQ_entry(T) T *next
#define lkQ_type(T) struct { T *first; T **plast; }
#define lkQ_init(h) ((h)->plast = &(h)->first, (h)->first = NULL)
#define lkQ_clear(h, n) ((n) = (h)->first, lkQ_init(h))
#define lkQ_empty(h) ((h)->first == NULL)
#define lkQ_merge(h, nh) ((void)((nh)->first && \
((void)(!(h)->first && ((h)->first = (nh)->first)), \
((h)->plast = (nh)->plast))))
#define lkQ_enqueue(h, n) (*(h)->plast = (n), \
(h)->plast = &(n)->next, (n)->next = NULL)
#define lkQ_dequeue(h, n) ((n) = (h)->first, (void)((n) && (n)->next ? \
((h)->first = (n)->next) : lkQ_init(h)))
#endif /* lk_queue_h */
#ifndef lk_context_h
#define lk_context_h
#include <setjmp.h>
#ifndef LK_ENABLE_PCALL
# define lk_throw(S,c) (void)(c)
# define lk_try(S,c,a) do { a; } while (0)
# define lk_JmpBuf int /* dummy variable */
#elif defined(__cplusplus) && !defined(LK_USE_LONGJMP)
# define lk_throw(S,c) throw(c)
# define lk_try(S,c,a) do { try { a; } catch(lk_Context *c) {} } while (0)
# define lk_JmpBuf int /* dummy variable */
#elif _WIN32 /* ISO C handling with long jumps */
# define lk_throw(S,c) longjmp((c)->b, 1)
# define lk_try(S,c,a) do { if (setjmp((c)->b) == 0) { a; } } while (0)
# define lk_JmpBuf jmp_buf
#else /* in POSIX, try _longjmp/_setjmp (more efficient) */
# define lk_throw(L,c) _longjmp((c)->b, 1)
# define lk_try(L,c,a) do { if (_setjmp((c)->b) == 0) { a; } } while (0)
# define lk_JmpBuf jmp_buf
#endif
LK_NS_BEGIN
typedef int lk_DeferHandler (lk_State *S, void *ud);
typedef struct lk_Defer {
lkQ_entry(struct lk_Defer);
lk_DeferHandler *h;
void *ud;
} lk_Defer;
typedef struct lk_Context {
struct lk_Context *prev;
lk_State *S;
lk_Slot *current;
lk_Defer *defers;
void *userdata;
lk_JmpBuf b;
int retcode; /* error code */
} lk_Context;
LK_API lk_Context *lk_context (lk_State *S);
LK_API void *lk_userdata (lk_State *S);
LK_API void lk_pushcontext (lk_State *S, lk_Context *ctx, lk_Slot *slot);
LK_API void lk_popcontext (lk_State *S, lk_Context *ctx);
LK_API int lk_discard (lk_State *S);
LK_API int lk_defer (lk_State *S, lk_DeferHandler *h, void *ud);
LK_NS_END
#endif /* lk_context_h */
/****************************************************************************/
#if defined(LOKI_IMPLEMENTATION) && !defined(lk_implemented)
#define lk_implemented
#include <assert.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#ifndef LK_NAME
# define LK_NAME "root"
#endif /* LK_NAME */
#define LK_MAX_THREADS 32
#define LK_MAX_NAMESIZE 32
#define LK_MAX_SLOTNAME 63
#define LK_HASHLIMIT 5
#define LK_MIN_HASHSIZE 8
#define LK_MAX_SIZET (~(size_t)0u - 100)
#define LK_MAX_DATASIZE ((size_t)(1<<24)-100)
#define LK_SMALLPIECE_LEN (sizeof(lk_Entry)*LK_MIN_HASHSIZE)
LK_NS_BEGIN
/* structures */
typedef struct lk_Poll lk_Poll;
typedef struct lk_SignalNode {
lkQ_entry(struct lk_SignalNode);
lk_Slot *sender;
lk_Slot *recipient;
lk_Signal data;
} lk_SignalNode;
struct lk_Slot {
char name[LK_MAX_SLOTNAME];
unsigned char flags;
lk_State *S;
lk_Service *service;
void *userdata;
lk_Handler *handler;
lk_Handler *refactor;
lk_Handler *hookf;
void *hook_ud;
lk_Source *source;
lk_SignalNode *current;
lkQ_entry(lk_Slot); /* all slots in same service */
};
struct lk_Poll {
lk_Slot slot;
lk_Thread thread;
lk_Event event;
lk_Lock lock;
lkQ_type(lk_SignalNode) signals;
};
struct lk_Service {
lk_Slot slot;
lk_Slot *slots;
lk_Lock lock;
unsigned pending;
lkQ_entry(lk_Service);
lkQ_type(lk_SignalNode) signals;
};
struct lk_State {
lk_Service root;
int nservices;
int nthreads;
lk_Table slot_names;
lk_Slot *logger;
lk_Lock lock;
lkQ_type(lk_Service) main_queue;
lk_Event queue_event;
lk_Lock queue_lock;
lk_MemPool services;
lk_MemPool slots;
lk_MemPool polls;
lk_MemPool defers;
lk_MemPool signals;
lk_MemPool sources;
lk_MemPool smallpieces;
lk_Lock pool_lock;
lk_Table config;
lk_Lock config_lock;
lk_Allocf *allocf;
void *alloc_ud;
lk_TlsKey tls_index;
lk_Thread threads[LK_MAX_THREADS];
};
/* memory management */
#ifndef va_copy
# ifdef __va_copy
# define va_copy __va_copy
# else
# define va_copy(a,b) (*(a)=*(b))
# endif
#endif
struct lk_Data {
unsigned size : 24;
unsigned len : 24;
unsigned refcount : 16;
};
LK_API size_t lk_len (lk_Data *data) { return data-- ? data->len : 0; }
LK_API size_t lk_size (lk_Data *data) { return data-- ? data->size : 0; }
LK_API void lk_setlen(lk_Data *data, size_t len)
{ if (data--) data->len = len < data->size ? (unsigned)len : data->size; }
static void *lkM_outofmemory (void)
{ fprintf(stderr, "out of memory\n"); abort(); return NULL; }
LK_API lk_Data *lk_newstring (lk_State *S, const char *s)
{ return lk_newlstring(S, s, strlen(s)); }
LK_API int lk_vsnprintf (char *buff, size_t size, const char *fmt, va_list l) {
#if !defined(_WIN32) || defined(__MINGW32__)
return vsnprintf(buff, size, fmt, l);
#else
int count = -1;
if (size != 0) {
va_list nl;
va_copy(nl, l);
count = _vsnprintf_s(buff, size, _TRUNCATE, fmt, nl);
va_end(nl);
}
if (count == -1) count = _vscprintf(fmt, l);
return count;
#endif
}
LK_API char *lk_strcpy (char *buff, const char *s, size_t len) {
size_t srclen = strlen(s);
if (srclen >= len - 1) {
memcpy(buff, s, len-1);
buff[len-1] = '\0';
}
else {
memcpy(buff, s, srclen);
memset(buff+srclen, 0, len-srclen);
}
return buff;
}
LK_API void *lk_malloc (lk_State *S, size_t size) {
void *newptr;
if (size > LK_SMALLPIECE_LEN)
newptr = S->allocf(S->alloc_ud, NULL, size, 0);
else {
lk_lock(S->pool_lock);
newptr = lk_poolalloc(S, &S->smallpieces);
lk_unlock(S->pool_lock);
}
if (newptr == NULL) return lkM_outofmemory();
return newptr;
}
LK_API void *lk_realloc (lk_State *S, void *ptr, size_t size, size_t osize) {
void *newptr;
if (osize <= LK_SMALLPIECE_LEN && size <= LK_SMALLPIECE_LEN)
return ptr;
else if (osize > LK_SMALLPIECE_LEN) {
newptr = S->allocf(S->alloc_ud, ptr, size, osize);
if (newptr == NULL) return lkM_outofmemory();
}
else {
newptr = lk_malloc(S, size);
memcpy(newptr, ptr, osize);
lk_free(S, ptr, osize);
}
return newptr;
}
LK_API void lk_free (lk_State *S, void *ptr, size_t osize) {
void *newptr = NULL;
if (ptr == NULL) return;
if (osize > LK_SMALLPIECE_LEN)
newptr = S->allocf(S->alloc_ud, ptr, 0, osize);
else {
lk_lock(S->pool_lock);
lk_poolfree(&S->smallpieces, ptr);
lk_unlock(S->pool_lock);
}
assert(newptr == NULL);
}
LK_API void lk_initpool (lk_MemPool *mpool, size_t size) {
const size_t sp = sizeof(void*);
assert(((sp - 1) & sp) == 0);
mpool->pages = NULL;
mpool->freed = NULL;
if (size < sp) size = sp;
if (size % sp != 0) size = (size + sp - 1) & ~(sp - 1);
mpool->size = size;
LK_DEBUG_POOL(mpool->allocated = 0);
assert(LK_MPOOLPAGESIZE / size > 2);
}
LK_API void lk_freepool (lk_State *S, lk_MemPool *mpool) {
const size_t offset = LK_MPOOLPAGESIZE - sizeof(void*);
LK_DEBUG_POOL(assert(mpool->allocated == 0));
while (mpool->pages != NULL) {
void *next = *(void**)((char*)mpool->pages + offset);
lk_free(S, mpool->pages, LK_MPOOLPAGESIZE);
mpool->pages = next;
}
lk_initpool(mpool, mpool->size);
}
LK_API void *lk_poolalloc (lk_State *S, lk_MemPool *mpool) {
void *obj = mpool->freed;
LK_DEBUG_POOL(++mpool->allocated);
if (obj == NULL) {
const size_t offset = LK_MPOOLPAGESIZE - sizeof(void*);
void *end, *newpage = lk_malloc(S, LK_MPOOLPAGESIZE);
*(void**)((char*)newpage + offset) = mpool->pages;
mpool->pages = newpage;
end = (char*)newpage + (offset/mpool->size-1)*mpool->size;
while (end != newpage) {
*(void**)end = mpool->freed;
mpool->freed = end;
end = (char*)end - mpool->size;
}
return end;
}
mpool->freed = *(void**)obj;
return obj;
}
LK_API void lk_poolfree (lk_MemPool *mpool, void *obj) {
LK_DEBUG_POOL(--mpool->allocated);
LK_DEBUG_POOL(assert((signed)mpool->allocated >= 0));
*(void**)obj = mpool->freed;
mpool->freed = obj;
}
LK_API lk_Data *lk_newdata (lk_State *S, size_t size) {
size_t rawlen = sizeof(lk_Data) + size;
lk_Data *data = (lk_Data*)lk_malloc(S, rawlen);
assert(size < LK_MAX_DATASIZE);
data->size = (unsigned)size;
data->len = 0;
data->refcount = 0;
if (rawlen <= LK_SMALLPIECE_LEN)
data->size = LK_SMALLPIECE_LEN - sizeof(lk_Data);
return data + 1;
}
LK_API size_t lk_usedata (lk_State *S, lk_Data *data) {
size_t refcount;
if (data-- == NULL) return 0;
lk_lock(S->lock);
refcount = ++data->refcount;
lk_unlock(S->lock);
return refcount;
}
LK_API size_t lk_deldata (lk_State *S, lk_Data *data) {
size_t refcount = 0;
if (data-- == NULL) return 0;
lk_lock(S->lock);
if (data->refcount > 1) refcount = --data->refcount;
lk_unlock(S->lock);
if (refcount == 0) lk_free(S, data, data->size + sizeof(lk_Data));
return refcount;
}
LK_API lk_Data *lk_newlstring (lk_State *S, const char *s, size_t len) {
lk_Data *data = lk_newdata(S, len+1);
memcpy(data, s, len);
((char*)data)[len] = '\0';
lk_setlen(data, len);
return data;
}
LK_API lk_Data *lk_newvfstring (lk_State *S, const char *fmt, va_list l) {
va_list nl;
lk_Data *data;
int len;
va_copy(nl, l);
len = lk_vsnprintf(NULL, 0, fmt, nl);
va_end(nl);
if (len <= 0) return NULL;
data = lk_newdata(S, len+1);
lk_vsnprintf((char*)data, len+1, fmt, l);
lk_setlen(data, len);
return data;
}
LK_API lk_Data *lk_newfstring (lk_State *S, const char *fmt, ...) {
lk_Data *data;
va_list l;
va_start(l, fmt);
data = lk_newvfstring(S, fmt, l);
va_end(l);
return data;
}
/* hashtable routines */
#define lk_offset(lhs, rhs) ((int)((char*)(lhs) - (char*)(rhs)))
#define lk_index(lhs, rhs) ((lk_Entry*)((char*)(lhs) + (rhs)))
LK_API void lk_inittable (lk_Table *t, size_t entry_size)
{ memset(t, 0, sizeof(*t)); t->entry_size = entry_size; }
LK_API void lk_freetable (lk_State *S, lk_Table *t)
{ lk_free(S, t->hash, t->size*t->entry_size); lk_inittable(t, t->entry_size); }
static size_t lkH_hashsize (lk_Table *t, size_t len) {
size_t newsize = LK_MIN_HASHSIZE;
const size_t maxsize = LK_MAX_SIZET/2/t->entry_size;
while (newsize < maxsize && newsize < len)
newsize <<= 1;
assert(newsize < maxsize);
return newsize < maxsize ? newsize : 0;
}
static size_t lkH_countsize (lk_Table *t) {
size_t i, size = t->size * t->entry_size;
size_t count = 0;
for (i = 0; i < size; i += t->entry_size) {
lk_Entry *e = lk_index(t->hash, i);
if (e->key != NULL) ++count;
}
return count;
}
static lk_Entry *lkH_mainposition (lk_Table *t, unsigned hash) {
assert((t->size & (t->size - 1)) == 0);
return lk_index(t->hash, (hash & (t->size - 1))*t->entry_size);
}
static unsigned lkH_calchash (const char *s, size_t len) {
size_t l1;
size_t step = (len >> LK_HASHLIMIT) + 1;
unsigned h = (unsigned)len;
for (l1 = len; l1 >= step; l1 -= step)
h ^= (h<<5) + (h>>2) + (unsigned char)s[l1 - 1];
return h;
}
static lk_Entry *lkH_get (lk_Table *t, const char *key, unsigned hash) {
lk_Entry *e = lkH_mainposition(t, hash);
for (;;) {
if (e->key && (e->hash == hash && strcmp(e->key, key) == 0))
return e;
if (e->next == 0) return NULL;
e = lk_index(e, e->next);
}
}
LK_API size_t lk_resizetable (lk_State *S, lk_Table *t, size_t len) {
size_t i, size = t->size*t->entry_size;
lk_Table nt = *t;
nt.size = lkH_hashsize(t, len);
if (nt.size == 0) return 0;
nt.lastfree = nt.size*nt.entry_size;
nt.hash = (lk_Entry*)lk_malloc(S, nt.lastfree);
memset(nt.hash, 0, nt.lastfree);
for (i = 0; i < size; i += t->entry_size) {
lk_Entry *olde = lk_index(t->hash, i);
lk_Entry *newe = lk_newkey(S, &nt, olde);
assert(newe != NULL);
if (newe != NULL && t->entry_size > sizeof(lk_Entry))
memcpy(newe + 1, olde + 1, t->entry_size - sizeof(lk_Entry));
}
lk_free(S, t->hash, size);
*t = nt;
return t->size;
}
LK_API void lk_copytable (lk_State *S, lk_Table *nt, const lk_Table *t) {
size_t size = t->size*t->entry_size;
*nt = *t;
nt->hash = (lk_Entry*)lk_malloc(S, size);
memcpy(nt->hash, t->hash, size);
}
LK_API lk_Entry *lk_gettable (lk_Table *t, const char *key) {
if (t->size == 0 || key == NULL) return NULL;
return lkH_get(t, key, lkH_calchash(key, strlen(key)));
}
LK_API lk_Entry *lk_settable (lk_State *S, lk_Table *t, const char *key) {
lk_Entry e, *ret;
if (key == NULL) return NULL;
e.key = key;
e.hash = lkH_calchash(key, strlen(key));
if (t->size != 0 && (ret = lkH_get(t, key, e.hash)) != NULL)
return ret;
return lk_newkey(S, t, &e);
}
LK_API lk_Entry *lk_newkey (lk_State *S, lk_Table *t, lk_Entry *entry) {
lk_Entry *mp;
if (entry->key == NULL ||
(t->size == 0 && lk_resizetable(S, t, LK_MIN_HASHSIZE) == 0))
return NULL;
redo:
mp = lkH_mainposition(t, entry->hash);
if (mp->key != NULL) {
lk_Entry *f = NULL, *othern;
while (t->lastfree > 0) {
lk_Entry *e = lk_index(t->hash, t->lastfree -= t->entry_size);
if (e->key == NULL && e->next == 0) { f = e; break; }
}
if (f == NULL) {
if (lk_resizetable(S, t, lkH_countsize(t)*2) == 0) return NULL;
goto redo; /* return lkH_newkey(t, entry); */
}
othern = lkH_mainposition(t, mp->hash);
if (othern != mp) {
lk_Entry *next;
while ((next = lk_index(othern, othern->next)) != mp)
othern = next;
othern->next = lk_offset(f, othern);
memcpy(f, mp, t->entry_size);
if (mp->next != 0) f->next += lk_offset(mp, f), mp->next = 0;
}
else {
if (mp->next != 0) f->next = lk_offset(mp, f) + mp->next;
else assert(f->next == 0);
mp->next = lk_offset(f, mp), mp = f;
}
}
mp->key = entry->key;
mp->hash = entry->hash;
if (t->entry_size > sizeof(lk_Entry))
memset(mp + 1, 0, t->entry_size - sizeof(lk_Entry));
return mp;
}
LK_API int lk_nextentry (lk_Table *t, lk_Entry **pentry) {
const size_t size = t->size * t->entry_size;
ptrdiff_t i = *pentry == NULL ? 0 :
((char*)*pentry - (char*)t->hash) + t->entry_size;
assert(i >= 0 && (size_t)i <= size);
for (; (size_t)i < size; i += t->entry_size) {
lk_Entry *e = lk_index(t->hash, i);
if (e->key != NULL) { *pentry = e; return 1; }
}
*pentry = NULL;
return 0;
}
/* context routines */
LK_API lk_Context *lk_context (lk_State *S)
{ return S ? (lk_Context*)lk_gettls(S->tls_index) : NULL; }
LK_API void *lk_userdata (lk_State *S)
{ lk_Context *ctx = lk_context(S); return ctx ? ctx->userdata : NULL; }
static void lkC_calldefers (lk_State *S, lk_Context *ctx) {
if (ctx->defers != NULL) {
lk_Defer *defers = ctx->defers;
while (defers != NULL) {
lk_Defer *next = defers->next;
defers->h(S, defers->ud);
defers = next;
}
lk_lock(S->pool_lock);
while (defers != NULL) {
lk_Defer *next = defers->next;
lk_poolfree(&S->defers, defers);
defers = next;
}
lk_unlock(S->pool_lock);
ctx->defers = NULL;
}
}
LK_API void lk_pushcontext (lk_State *S, lk_Context *ctx, lk_Slot *slot) {
ctx->prev = lk_context(S);
ctx->S = S;
ctx->current = slot;
ctx->defers = NULL;
ctx->userdata = slot ? slot->userdata : NULL;
ctx->retcode = LK_OK;
lk_settls(S->tls_index, ctx);
}
LK_API void lk_popcontext (lk_State *S, lk_Context *ctx) {
if (ctx == NULL) return;
lkC_calldefers(S, ctx);
lk_settls(S->tls_index, ctx->prev);
}
LK_API int lk_discard (lk_State *S) {
lk_Context *ctx = lk_context(S);
if (ctx == NULL) {
fprintf(stderr, "unproected errors\n");
abort();
}
lkC_calldefers(S, ctx);
ctx->retcode = LK_ERR;
lk_throw(S, ctx);
return LK_ERR;
}
LK_API int lk_defer (lk_State *S, lk_DeferHandler *h, void *ud) {
lk_Context *ctx = lk_context(S);
lk_Defer *defer;
if (ctx == NULL)
return LK_ERR;
lk_lock(S->pool_lock);
defer = (lk_Defer*)lk_poolalloc(S, &S->defers);
lk_unlock(S->pool_lock);
defer->h = h;
defer->ud = ud;
defer->next = ctx->defers;
ctx->defers = defer;
return LK_OK;
}
/* thread routines */
typedef struct lk_ThreadContext {
lk_ThreadHandler *h;
void *ud;
} lk_ThreadContext;
#ifdef _WIN32
static unsigned __stdcall lkT_worker (void *lpParameter) {
lk_ThreadContext ctx = *(lk_ThreadContext*)lpParameter;
free(lpParameter);
ctx.h(ctx.ud);
return 0;
}
LK_API int lk_initthread (lk_Thread *t, lk_ThreadHandler *h, void *ud) {
lk_ThreadContext *ctx = (lk_ThreadContext*)malloc(sizeof(lk_ThreadContext));
if (ctx == NULL) return 0;
ctx->h = h;
ctx->ud = ud;
*t = (HANDLE)_beginthreadex(NULL, 0, lkT_worker, ctx, 0, NULL);
return *t != NULL;
}
LK_API int lk_waitevent (lk_Event *evt, lk_Lock *lock, int waitms) {
DWORD ret;
lk_unlock(*lock);
ret = WaitForSingleObject(*evt, waitms < 0 ? INFINITE : (DWORD)waitms);
lk_lock(*lock);
return ret != WAIT_FAILED ? LK_OK : LK_ERR;
}
#else
#include <errno.h>
static void *lkT_worker (void *ud) {
lk_ThreadContext ctx = *(lk_ThreadContext*)ud;
free(ud);
ctx.h(ctx.ud);