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Comparing libcoro/coro.h (file contents):
Revision 1.31 by root, Fri Nov 7 16:39:35 2008 UTC vs.
Revision 1.32 by root, Fri Nov 7 20:12:26 2008 UTC

57 * 2008-04-24 Reinstate CORO_LOSER (had wrong stack adjustments). 57 * 2008-04-24 Reinstate CORO_LOSER (had wrong stack adjustments).
58 * 2008-10-30 Support assembly method on x86 with and without frame pointer. 58 * 2008-10-30 Support assembly method on x86 with and without frame pointer.
59 * 2008-11-03 Use a global asm statement for CORO_ASM, idea by pippijn. 59 * 2008-11-03 Use a global asm statement for CORO_ASM, idea by pippijn.
60 * 2008-11-05 Hopefully fix misaligned stacks with CORO_ASM/SETJMP. 60 * 2008-11-05 Hopefully fix misaligned stacks with CORO_ASM/SETJMP.
61 * 2008-11-07 rbp wasn't saved in CORO_ASM on x86_64. 61 * 2008-11-07 rbp wasn't saved in CORO_ASM on x86_64.
62 * introduce coro_destroy, which is a nop except for pthreads.
63 * speed up CORO_PTHREAD. Do no longer leak threads either.
64 * coro_create now allows one to create source coro_contexts.
62 */ 65 */
63 66
64#ifndef CORO_H 67#ifndef CORO_H
65#define CORO_H 68#define CORO_H
66 69
137/* 140/*
138 * This function creates a new coroutine. Apart from a pointer to an 141 * This function creates a new coroutine. Apart from a pointer to an
139 * uninitialised coro_context, it expects a pointer to the entry function 142 * uninitialised coro_context, it expects a pointer to the entry function
140 * and the single pointer value that is given to it as argument. 143 * and the single pointer value that is given to it as argument.
141 * 144 *
142 * Allocating/deallocating the stack is your own responsibility, so there is 145 * Allocating/deallocating the stack is your own responsibility.
143 * no coro_destroy function. 146 *
147 * As a special case, if coro, arg, sptr and ssize are all zero,
148 * then an "empty" coro_contetx will be created that is suitable
149 * as an initial source for coro_transfer.
150 *
151 * This function is not reentrant, but putting a mutex around it
152 * will work.
144 */ 153 */
145void coro_create (coro_context *ctx, /* an uninitialised coro_context */ 154void coro_create (coro_context *ctx, /* an uninitialised coro_context */
146 coro_func coro, /* the coroutine code to be executed */ 155 coro_func coro, /* the coroutine code to be executed */
147 void *arg, /* a single pointer passed to the coro */ 156 void *arg, /* a single pointer passed to the coro */
148 void *sptr, /* start of stack area */ 157 void *sptr, /* start of stack area */
150 159
151/* 160/*
152 * The following prototype defines the coroutine switching function. It is 161 * The following prototype defines the coroutine switching function. It is
153 * usually implemented as a macro, so watch out. 162 * usually implemented as a macro, so watch out.
154 * 163 *
164 * This function is thread-safe and reentrant.
165 */
166#if 0
155void coro_transfer(coro_context *prev, coro_context *next); 167void coro_transfer (coro_context *prev, coro_context *next);
168#endif
169
170/*
171 * The following prototype defines the coroutine destroy function. It is
172 * usually implemented as a macro, so watch out. It also serves
173 * no purpose unless you want to use the CORO_PTHREAD backend.
156 */ 174 *
175 * This function is thread-safe and reentrant.
176 */
177#if 0
178void coro_destroy (coro_context *ctx);
179#endif
157 180
158/* 181/*
159 * That was it. No other user-visible functions are implemented here. 182 * That was it. No other user-visible functions are implemented here.
160 */ 183 */
161 184
187struct coro_context { 210struct coro_context {
188 ucontext_t uc; 211 ucontext_t uc;
189}; 212};
190 213
191# define coro_transfer(p,n) swapcontext (&((p)->uc), &((n)->uc)) 214# define coro_transfer(p,n) swapcontext (&((p)->uc), &((n)->uc))
215# define coro_destroy(ctx) (void *)(ctx)
192 216
193#elif CORO_SJLJ || CORO_LOSER || CORO_LINUX || CORO_IRIX 217#elif CORO_SJLJ || CORO_LOSER || CORO_LINUX || CORO_IRIX
194 218
195# if defined(CORO_LINUX) && !defined(_GNU_SOURCE) 219# if defined(CORO_LINUX) && !defined(_GNU_SOURCE)
196# define _GNU_SOURCE /* for linux libc */ 220# define _GNU_SOURCE /* for linux libc */
206# define coro_transfer(p,n) do { if (!_setjmp ((p)->env)) _longjmp ((n)->env, 1); } while (0) 230# define coro_transfer(p,n) do { if (!_setjmp ((p)->env)) _longjmp ((n)->env, 1); } while (0)
207# else 231# else
208# define coro_transfer(p,n) do { if (!setjmp ((p)->env)) longjmp ((n)->env, 1); } while (0) 232# define coro_transfer(p,n) do { if (!setjmp ((p)->env)) longjmp ((n)->env, 1); } while (0)
209# endif 233# endif
210 234
235# define coro_destroy(ctx) (void *)(ctx)
236
211#elif CORO_ASM 237#elif CORO_ASM
212 238
213struct coro_context { 239struct coro_context {
214 volatile void **sp; /* must be at offset 0 */ 240 volatile void **sp; /* must be at offset 0 */
215}; 241};
216 242
217void __attribute__ ((__noinline__, __regparm__(2))) 243void __attribute__ ((__noinline__, __regparm__(2)))
218coro_transfer (coro_context *prev, coro_context *next); 244coro_transfer (coro_context *prev, coro_context *next);
219 245
246# define coro_destroy(ctx) (void *)(ctx)
247
220#elif CORO_PTHREAD 248#elif CORO_PTHREAD
221 249
222#include <pthread.h> 250# include <pthread.h>
223 251
224extern pthread_mutex_t coro_mutex; 252extern pthread_mutex_t coro_mutex;
225 253
226struct coro_context { 254struct coro_context {
227 pthread_cond_t c; 255 pthread_cond_t cv;
256 pthread_t id;
228}; 257};
229 258
230void coro_transfer (coro_context *prev, coro_context *next); 259void coro_transfer (coro_context *prev, coro_context *next);
260void coro_destroy (coro_context *ctx);
231 261
232#endif 262#endif
233 263
234#endif 264#endif
235 265

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