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Comparing Coro/Coro/State.xs (file contents):
Revision 1.240 by root, Sun Jun 29 00:28:17 2008 UTC vs.
Revision 1.285 by root, Mon Nov 17 04:17:20 2008 UTC

4#define PERL_EXT 4#define PERL_EXT
5 5
6#include "EXTERN.h" 6#include "EXTERN.h"
7#include "perl.h" 7#include "perl.h"
8#include "XSUB.h" 8#include "XSUB.h"
9#include "perliol.h"
9 10
10#include "patchlevel.h" 11#include "patchlevel.h"
11 12
12#include <stdio.h> 13#include <stdio.h>
13#include <errno.h> 14#include <errno.h>
45# define BOOT_PAGESIZE (void)0 46# define BOOT_PAGESIZE (void)0
46#endif 47#endif
47 48
48#if CORO_USE_VALGRIND 49#if CORO_USE_VALGRIND
49# include <valgrind/valgrind.h> 50# include <valgrind/valgrind.h>
50# define REGISTER_STACK(cctx,start,end) (cctx)->valgrind_id = VALGRIND_STACK_REGISTER ((start), (end))
51#else
52# define REGISTER_STACK(cctx,start,end)
53#endif 51#endif
54 52
55/* the maximum number of idle cctx that will be pooled */ 53/* the maximum number of idle cctx that will be pooled */
56#define MAX_IDLE_CCTX 8 54static int cctx_max_idle = 4;
57 55
58#define PERL_VERSION_ATLEAST(a,b,c) \ 56#define PERL_VERSION_ATLEAST(a,b,c) \
59 (PERL_REVISION > (a) \ 57 (PERL_REVISION > (a) \
60 || (PERL_REVISION == (a) \ 58 || (PERL_REVISION == (a) \
61 && (PERL_VERSION > (b) \ 59 && (PERL_VERSION > (b) \
80# ifndef IS_PADCONST 78# ifndef IS_PADCONST
81# define IS_PADCONST(v) 0 79# define IS_PADCONST(v) 0
82# endif 80# endif
83#endif 81#endif
84 82
83/* 5.11 */
84#ifndef CxHASARGS
85# define CxHASARGS(cx) (cx)->blk_sub.hasargs
86#endif
87
88/* 5.10.0 */
89#ifndef SvREFCNT_inc_NN
90# define SvREFCNT_inc_NN(sv) SvREFCNT_inc (sv)
91#endif
92
85/* 5.8.8 */ 93/* 5.8.8 */
86#ifndef GV_NOTQUAL 94#ifndef GV_NOTQUAL
87# define GV_NOTQUAL 0 95# define GV_NOTQUAL 0
88#endif 96#endif
89#ifndef newSV 97#ifndef newSV
90# define newSV(l) NEWSV(0,l) 98# define newSV(l) NEWSV(0,l)
91#endif 99#endif
92 100
93/* 5.11 */
94#ifndef CxHASARGS
95# define CxHASARGS(cx) (cx)->blk_sub.hasargs
96#endif
97
98/* 5.8.7 */ 101/* 5.8.7 */
99#ifndef SvRV_set 102#ifndef SvRV_set
100# define SvRV_set(s,v) SvRV(s) = (v) 103# define SvRV_set(s,v) SvRV(s) = (v)
101#endif 104#endif
102 105
113# define CORO_PREFER_PERL_FUNCTIONS 0 116# define CORO_PREFER_PERL_FUNCTIONS 0
114#endif 117#endif
115 118
116/* The next macros try to return the current stack pointer, in an as 119/* The next macros try to return the current stack pointer, in an as
117 * portable way as possible. */ 120 * portable way as possible. */
118#define dSTACKLEVEL volatile char stacklevel 121#if __GNUC__ >= 4
119#define STACKLEVEL ((void *)&stacklevel) 122# define dSTACKLEVEL void *stacklevel = __builtin_frame_address (0)
123#else
124# define dSTACKLEVEL volatile void *stacklevel = (volatile void *)&stacklevel
125#endif
120 126
121#define IN_DESTRUCT (PL_main_cv == Nullcv) 127#define IN_DESTRUCT (PL_main_cv == Nullcv)
122 128
123#if __GNUC__ >= 3 129#if __GNUC__ >= 3
124# define attribute(x) __attribute__(x) 130# define attribute(x) __attribute__(x)
125# define BARRIER __asm__ __volatile__ ("" : : : "memory")
126# define expect(expr,value) __builtin_expect ((expr),(value)) 131# define expect(expr,value) __builtin_expect ((expr),(value))
132# define INLINE static inline
127#else 133#else
128# define attribute(x) 134# define attribute(x)
129# define BARRIER
130# define expect(expr,value) (expr) 135# define expect(expr,value) (expr)
136# define INLINE static
131#endif 137#endif
132 138
133#define expect_false(expr) expect ((expr) != 0, 0) 139#define expect_false(expr) expect ((expr) != 0, 0)
134#define expect_true(expr) expect ((expr) != 0, 1) 140#define expect_true(expr) expect ((expr) != 0, 1)
135 141
136#define NOINLINE attribute ((noinline)) 142#define NOINLINE attribute ((noinline))
137 143
138#include "CoroAPI.h" 144#include "CoroAPI.h"
139 145
140#ifdef USE_ITHREADS 146#ifdef USE_ITHREADS
141static perl_mutex coro_mutex; 147# if CORO_PTHREAD
142# define LOCK do { MUTEX_LOCK (&coro_mutex); } while (0) 148static void *coro_thx;
143# define UNLOCK do { MUTEX_UNLOCK (&coro_mutex); } while (0) 149# endif
144#else
145# define LOCK (void)0
146# define UNLOCK (void)0
147#endif 150#endif
148 151
149/* helper storage struct for Coro::AIO */ 152/* helper storage struct for Coro::AIO */
150struct io_state 153struct io_state
151{ 154{
155 AV *res;
152 int errorno; 156 int errorno;
153 I32 laststype; 157 I32 laststype; /* U16 in 5.10.0 */
154 int laststatval; 158 int laststatval;
155 Stat_t statcache; 159 Stat_t statcache;
156}; 160};
157 161
162static double (*nvtime)(); /* so why doesn't it take void? */
163
164static U32 cctx_gen;
158static size_t coro_stacksize = CORO_STACKSIZE; 165static size_t cctx_stacksize = CORO_STACKSIZE;
159static struct CoroAPI coroapi; 166static struct CoroAPI coroapi;
160static AV *main_mainstack; /* used to differentiate between $main and others */ 167static AV *main_mainstack; /* used to differentiate between $main and others */
161static JMPENV *main_top_env; 168static JMPENV *main_top_env;
162static HV *coro_state_stash, *coro_stash; 169static HV *coro_state_stash, *coro_stash;
163static volatile SV *coro_mortal; /* will be freed after next transfer */ 170static volatile SV *coro_mortal; /* will be freed/thrown after next transfer */
164 171
165static GV *irsgv; /* $/ */ 172static GV *irsgv; /* $/ */
166static GV *stdoutgv; /* *STDOUT */ 173static GV *stdoutgv; /* *STDOUT */
167static SV *rv_diehook; 174static SV *rv_diehook;
168static SV *rv_warnhook; 175static SV *rv_warnhook;
187 CC_TRACE_LINE = 0x10, /* trace each statement */ 194 CC_TRACE_LINE = 0x10, /* trace each statement */
188 CC_TRACE_ALL = CC_TRACE_SUB | CC_TRACE_LINE, 195 CC_TRACE_ALL = CC_TRACE_SUB | CC_TRACE_LINE,
189}; 196};
190 197
191/* this is a structure representing a c-level coroutine */ 198/* this is a structure representing a c-level coroutine */
192typedef struct coro_cctx { 199typedef struct coro_cctx
200{
193 struct coro_cctx *next; 201 struct coro_cctx *next;
194 202
195 /* the stack */ 203 /* the stack */
196 void *sptr; 204 void *sptr;
197 size_t ssize; 205 size_t ssize;
200 void *idle_sp; /* sp of top-level transfer/schedule/cede call */ 208 void *idle_sp; /* sp of top-level transfer/schedule/cede call */
201 JMPENV *idle_te; /* same as idle_sp, but for top_env, TODO: remove once stable */ 209 JMPENV *idle_te; /* same as idle_sp, but for top_env, TODO: remove once stable */
202 JMPENV *top_env; 210 JMPENV *top_env;
203 coro_context cctx; 211 coro_context cctx;
204 212
213 U32 gen;
205#if CORO_USE_VALGRIND 214#if CORO_USE_VALGRIND
206 int valgrind_id; 215 int valgrind_id;
207#endif 216#endif
208 unsigned char flags; 217 unsigned char flags;
209} coro_cctx; 218} coro_cctx;
214 CF_NEW = 0x0004, /* has never been switched to */ 223 CF_NEW = 0x0004, /* has never been switched to */
215 CF_DESTROYED = 0x0008, /* coroutine data has been freed */ 224 CF_DESTROYED = 0x0008, /* coroutine data has been freed */
216}; 225};
217 226
218/* the structure where most of the perl state is stored, overlaid on the cxstack */ 227/* the structure where most of the perl state is stored, overlaid on the cxstack */
219typedef struct { 228typedef struct
229{
220 SV *defsv; 230 SV *defsv;
221 AV *defav; 231 AV *defav;
222 SV *errsv; 232 SV *errsv;
223 SV *irsgv; 233 SV *irsgv;
224#define VAR(name,type) type name; 234#define VAR(name,type) type name;
228 238
229#define SLOT_COUNT ((sizeof (perl_slots) + sizeof (PERL_CONTEXT) - 1) / sizeof (PERL_CONTEXT)) 239#define SLOT_COUNT ((sizeof (perl_slots) + sizeof (PERL_CONTEXT) - 1) / sizeof (PERL_CONTEXT))
230 240
231/* this is a structure representing a perl-level coroutine */ 241/* this is a structure representing a perl-level coroutine */
232struct coro { 242struct coro {
233 /* the c coroutine allocated to this perl coroutine, if any */ 243 /* the C coroutine allocated to this perl coroutine, if any */
234 coro_cctx *cctx; 244 coro_cctx *cctx;
235 245
236 /* process data */ 246 /* state data */
247 struct CoroSLF slf_frame; /* saved slf frame */
237 AV *mainstack; 248 AV *mainstack;
238 perl_slots *slot; /* basically the saved sp */ 249 perl_slots *slot; /* basically the saved sp */
239 250
240 AV *args; /* data associated with this coroutine (initial args) */ 251 AV *args; /* data associated with this coroutine (initial args) */
241 int refcnt; /* coroutines are refcounted, yes */ 252 int refcnt; /* coroutines are refcounted, yes */
242 int flags; /* CF_ flags */ 253 int flags; /* CF_ flags */
243 HV *hv; /* the perl hash associated with this coro, if any */ 254 HV *hv; /* the perl hash associated with this coro, if any */
255 void (*on_destroy)(pTHX_ struct coro *coro);
244 256
245 /* statistics */ 257 /* statistics */
246 int usecount; /* number of transfers to this coro */ 258 int usecount; /* number of transfers to this coro */
247 259
248 /* coro process data */ 260 /* coro process data */
256 struct coro *next, *prev; 268 struct coro *next, *prev;
257}; 269};
258 270
259typedef struct coro *Coro__State; 271typedef struct coro *Coro__State;
260typedef struct coro *Coro__State_or_hashref; 272typedef struct coro *Coro__State_or_hashref;
273
274/* the following variables are effectively part of the perl context */
275/* and get copied between struct coro and these variables */
276/* the mainr easonw e don't support windows process emulation */
277static struct CoroSLF slf_frame; /* the current slf frame */
278static SV *coro_throw;
261 279
262/** Coro ********************************************************************/ 280/** Coro ********************************************************************/
263 281
264#define PRIO_MAX 3 282#define PRIO_MAX 3
265#define PRIO_HIGH 1 283#define PRIO_HIGH 1
269#define PRIO_MIN -4 287#define PRIO_MIN -4
270 288
271/* for Coro.pm */ 289/* for Coro.pm */
272static SV *coro_current; 290static SV *coro_current;
273static SV *coro_readyhook; 291static SV *coro_readyhook;
274static AV *coro_ready [PRIO_MAX-PRIO_MIN+1]; 292static AV *coro_ready [PRIO_MAX - PRIO_MIN + 1];
275static int coro_nready;
276static struct coro *coro_first; 293static struct coro *coro_first;
294#define coro_nready coroapi.nready
277 295
278/** lowlevel stuff **********************************************************/ 296/** lowlevel stuff **********************************************************/
279 297
280static SV * 298static SV *
281coro_get_sv (pTHX_ const char *name, int create) 299coro_get_sv (pTHX_ const char *name, int create)
321 Perl_pad_push (aTHX_ padlist, AvFILLp (padlist) + 1, 1); 339 Perl_pad_push (aTHX_ padlist, AvFILLp (padlist) + 1, 1);
322#endif 340#endif
323 newpad = (AV *)AvARRAY (padlist)[AvFILLp (padlist)]; 341 newpad = (AV *)AvARRAY (padlist)[AvFILLp (padlist)];
324 --AvFILLp (padlist); 342 --AvFILLp (padlist);
325 343
326 av_store (newpadlist, 0, SvREFCNT_inc (*av_fetch (padlist, 0, FALSE))); 344 av_store (newpadlist, 0, SvREFCNT_inc_NN (*av_fetch (padlist, 0, FALSE)));
327 av_store (newpadlist, 1, (SV *)newpad); 345 av_store (newpadlist, 1, (SV *)newpad);
328 346
329 return newpadlist; 347 return newpadlist;
330} 348}
331 349
361 379
362 /* casting is fun. */ 380 /* casting is fun. */
363 while (&PL_sv_undef != (SV *)(padlist = (AV *)av_pop (av))) 381 while (&PL_sv_undef != (SV *)(padlist = (AV *)av_pop (av)))
364 free_padlist (aTHX_ padlist); 382 free_padlist (aTHX_ padlist);
365 383
384 SvREFCNT_dec (av); /* sv_magicext increased the refcount */
385
366 return 0; 386 return 0;
367} 387}
368 388
369#define CORO_MAGIC_type_cv PERL_MAGIC_ext 389#define CORO_MAGIC_type_cv PERL_MAGIC_ext
370#define CORO_MAGIC_type_state PERL_MAGIC_ext 390#define CORO_MAGIC_type_state PERL_MAGIC_ext
372static MGVTBL coro_cv_vtbl = { 392static MGVTBL coro_cv_vtbl = {
373 0, 0, 0, 0, 393 0, 0, 0, 0,
374 coro_cv_free 394 coro_cv_free
375}; 395};
376 396
377#define CORO_MAGIC(sv,type) \ 397#define CORO_MAGIC(sv, type) \
378 SvMAGIC (sv) \ 398 expect_true (SvMAGIC (sv)) \
379 ? SvMAGIC (sv)->mg_type == type \ 399 ? expect_true (SvMAGIC (sv)->mg_type == type) \
380 ? SvMAGIC (sv) \ 400 ? SvMAGIC (sv) \
381 : mg_find (sv, type) \ 401 : mg_find (sv, type) \
382 : 0 402 : 0
383 403
384#define CORO_MAGIC_cv(cv) CORO_MAGIC (((SV *)(cv)), CORO_MAGIC_type_cv) 404#define CORO_MAGIC_cv(cv) CORO_MAGIC (((SV *)(cv)), CORO_MAGIC_type_cv)
385#define CORO_MAGIC_state(sv) CORO_MAGIC (((SV *)(sv)), CORO_MAGIC_type_state) 405#define CORO_MAGIC_state(sv) CORO_MAGIC (((SV *)(sv)), CORO_MAGIC_type_state)
386 406
387static struct coro * 407INLINE struct coro *
388SvSTATE_ (pTHX_ SV *coro) 408SvSTATE_ (pTHX_ SV *coro)
389{ 409{
390 HV *stash; 410 HV *stash;
391 MAGIC *mg; 411 MAGIC *mg;
392 412
407 mg = CORO_MAGIC_state (coro); 427 mg = CORO_MAGIC_state (coro);
408 return (struct coro *)mg->mg_ptr; 428 return (struct coro *)mg->mg_ptr;
409} 429}
410 430
411#define SvSTATE(sv) SvSTATE_ (aTHX_ (sv)) 431#define SvSTATE(sv) SvSTATE_ (aTHX_ (sv))
432
433/* fastert than SvSTATE, but expects a coroutine hv */
434INLINE struct coro *
435SvSTATE_hv (SV *sv)
436{
437 MAGIC *mg = expect_true (SvMAGIC (sv)->mg_type == CORO_MAGIC_type_state)
438 ? SvMAGIC (sv)
439 : mg_find (sv, CORO_MAGIC_type_state);
440
441 return (struct coro *)mg->mg_ptr;
442}
443
444#define SvSTATE_current SvSTATE_hv (SvRV (coro_current))
412 445
413/* the next two functions merely cache the padlists */ 446/* the next two functions merely cache the padlists */
414static void 447static void
415get_padlist (pTHX_ CV *cv) 448get_padlist (pTHX_ CV *cv)
416{ 449{
420 if (expect_true (mg && AvFILLp ((av = (AV *)mg->mg_obj)) >= 0)) 453 if (expect_true (mg && AvFILLp ((av = (AV *)mg->mg_obj)) >= 0))
421 CvPADLIST (cv) = (AV *)AvARRAY (av)[AvFILLp (av)--]; 454 CvPADLIST (cv) = (AV *)AvARRAY (av)[AvFILLp (av)--];
422 else 455 else
423 { 456 {
424#if CORO_PREFER_PERL_FUNCTIONS 457#if CORO_PREFER_PERL_FUNCTIONS
425 /* this is probably cleaner, but also slower? */ 458 /* this is probably cleaner? but also slower! */
459 /* in practise, it seems to be less stable */
426 CV *cp = Perl_cv_clone (cv); 460 CV *cp = Perl_cv_clone (cv);
427 CvPADLIST (cv) = CvPADLIST (cp); 461 CvPADLIST (cv) = CvPADLIST (cp);
428 CvPADLIST (cp) = 0; 462 CvPADLIST (cp) = 0;
429 SvREFCNT_dec (cp); 463 SvREFCNT_dec (cp);
430#else 464#else
482 CvPADLIST (cv) = (AV *)POPs; 516 CvPADLIST (cv) = (AV *)POPs;
483 } 517 }
484 518
485 PUTBACK; 519 PUTBACK;
486 } 520 }
521
522 slf_frame = c->slf_frame;
523 coro_throw = c->throw;
487} 524}
488 525
489static void 526static void
490save_perl (pTHX_ Coro__State c) 527save_perl (pTHX_ Coro__State c)
491{ 528{
529 c->throw = coro_throw;
530 c->slf_frame = slf_frame;
531
492 { 532 {
493 dSP; 533 dSP;
494 I32 cxix = cxstack_ix; 534 I32 cxix = cxstack_ix;
495 PERL_CONTEXT *ccstk = cxstack; 535 PERL_CONTEXT *ccstk = cxstack;
496 PERL_SI *top_si = PL_curstackinfo; 536 PERL_SI *top_si = PL_curstackinfo;
563 #undef VAR 603 #undef VAR
564 } 604 }
565} 605}
566 606
567/* 607/*
568 * allocate various perl stacks. This is an exact copy 608 * allocate various perl stacks. This is almost an exact copy
569 * of perl.c:init_stacks, except that it uses less memory 609 * of perl.c:init_stacks, except that it uses less memory
570 * on the (sometimes correct) assumption that coroutines do 610 * on the (sometimes correct) assumption that coroutines do
571 * not usually need a lot of stackspace. 611 * not usually need a lot of stackspace.
572 */ 612 */
573#if CORO_PREFER_PERL_FUNCTIONS 613#if CORO_PREFER_PERL_FUNCTIONS
616 656
617/* 657/*
618 * destroy the stacks, the callchain etc... 658 * destroy the stacks, the callchain etc...
619 */ 659 */
620static void 660static void
621coro_destroy_stacks (pTHX) 661coro_destruct_stacks (pTHX)
622{ 662{
623 while (PL_curstackinfo->si_next) 663 while (PL_curstackinfo->si_next)
624 PL_curstackinfo = PL_curstackinfo->si_next; 664 PL_curstackinfo = PL_curstackinfo->si_next;
625 665
626 while (PL_curstackinfo) 666 while (PL_curstackinfo)
663 #undef VAR 703 #undef VAR
664 } 704 }
665 else 705 else
666 slot = coro->slot; 706 slot = coro->slot;
667 707
708 if (slot)
709 {
668 rss += sizeof (slot->curstackinfo); 710 rss += sizeof (slot->curstackinfo);
669 rss += (slot->curstackinfo->si_cxmax + 1) * sizeof (PERL_CONTEXT); 711 rss += (slot->curstackinfo->si_cxmax + 1) * sizeof (PERL_CONTEXT);
670 rss += sizeof (SV) + sizeof (struct xpvav) + (1 + AvMAX (slot->curstack)) * sizeof (SV *); 712 rss += sizeof (SV) + sizeof (struct xpvav) + (1 + AvMAX (slot->curstack)) * sizeof (SV *);
671 rss += slot->tmps_max * sizeof (SV *); 713 rss += slot->tmps_max * sizeof (SV *);
672 rss += (slot->markstack_max - slot->markstack_ptr) * sizeof (I32); 714 rss += (slot->markstack_max - slot->markstack_ptr) * sizeof (I32);
673 rss += slot->scopestack_max * sizeof (I32); 715 rss += slot->scopestack_max * sizeof (I32);
674 rss += slot->savestack_max * sizeof (ANY); 716 rss += slot->savestack_max * sizeof (ANY);
675 717
676#if !PERL_VERSION_ATLEAST (5,10,0) 718#if !PERL_VERSION_ATLEAST (5,10,0)
677 rss += slot->retstack_max * sizeof (OP *); 719 rss += slot->retstack_max * sizeof (OP *);
678#endif 720#endif
721 }
679 } 722 }
680 723
681 return rss; 724 return rss;
682} 725}
683 726
686static int (*orig_sigelem_get) (pTHX_ SV *sv, MAGIC *mg); 729static int (*orig_sigelem_get) (pTHX_ SV *sv, MAGIC *mg);
687static int (*orig_sigelem_set) (pTHX_ SV *sv, MAGIC *mg); 730static int (*orig_sigelem_set) (pTHX_ SV *sv, MAGIC *mg);
688static int (*orig_sigelem_clr) (pTHX_ SV *sv, MAGIC *mg); 731static int (*orig_sigelem_clr) (pTHX_ SV *sv, MAGIC *mg);
689 732
690/* apparently < 5.8.8 */ 733/* apparently < 5.8.8 */
691#undef MgPV_nolen_const
692#ifndef MgPV_nolen_const 734#ifndef MgPV_nolen_const
693#define MgPV_nolen_const(mg) (((((int)(mg)->mg_len)) == HEf_SVKEY) ? \ 735#define MgPV_nolen_const(mg) (((((int)(mg)->mg_len)) == HEf_SVKEY) ? \
694 SvPV_nolen_const((SV*)((mg)->mg_ptr)) : \ 736 SvPV_nolen((SV*)((mg)->mg_ptr)) : \
695 (const char*)(mg)->mg_ptr) 737 (const char*)(mg)->mg_ptr)
696#endif 738#endif
697 739
698/* 740/*
699 * This overrides the default magic get method of %SIG elements. 741 * This overrides the default magic get method of %SIG elements.
773 815
774 return orig_sigelem_set ? orig_sigelem_set (aTHX_ sv, mg) : 0; 816 return orig_sigelem_set ? orig_sigelem_set (aTHX_ sv, mg) : 0;
775} 817}
776 818
777static void 819static void
820prepare_nop (pTHX_ struct coro_transfer_args *ta)
821{
822 /* kind of mega-hacky, but works */
823 ta->next = ta->prev = (struct coro *)ta;
824}
825
826static int
827slf_check_nop (pTHX_ struct CoroSLF *frame)
828{
829 return 0;
830}
831
832static void NOINLINE /* noinline to keep it out of the transfer fast path */
778coro_setup (pTHX_ struct coro *coro) 833coro_setup (pTHX_ struct coro *coro)
779{ 834{
780 /* 835 /*
781 * emulate part of the perl startup here. 836 * emulate part of the perl startup here.
782 */ 837 */
802 GvSV (PL_defgv) = newSV (0); 857 GvSV (PL_defgv) = newSV (0);
803 GvAV (PL_defgv) = coro->args; coro->args = 0; 858 GvAV (PL_defgv) = coro->args; coro->args = 0;
804 GvSV (PL_errgv) = newSV (0); 859 GvSV (PL_errgv) = newSV (0);
805 GvSV (irsgv) = newSVpvn ("\n", 1); sv_magic (GvSV (irsgv), (SV *)irsgv, PERL_MAGIC_sv, "/", 0); 860 GvSV (irsgv) = newSVpvn ("\n", 1); sv_magic (GvSV (irsgv), (SV *)irsgv, PERL_MAGIC_sv, "/", 0);
806 PL_rs = newSVsv (GvSV (irsgv)); 861 PL_rs = newSVsv (GvSV (irsgv));
807 PL_defoutgv = (GV *)SvREFCNT_inc (stdoutgv); 862 PL_defoutgv = (GV *)SvREFCNT_inc_NN (stdoutgv);
808 863
809 { 864 {
810 dSP; 865 dSP;
811 LOGOP myop; 866 UNOP myop;
812 867
813 Zero (&myop, 1, LOGOP); 868 Zero (&myop, 1, UNOP);
814 myop.op_next = Nullop; 869 myop.op_next = Nullop;
815 myop.op_flags = OPf_WANT_VOID; 870 myop.op_flags = OPf_WANT_VOID;
816 871
817 PUSHMARK (SP); 872 PUSHMARK (SP);
818 XPUSHs (sv_2mortal (av_shift (GvAV (PL_defgv)))); 873 XPUSHs (sv_2mortal (av_shift (GvAV (PL_defgv))));
821 PL_op = PL_ppaddr[OP_ENTERSUB](aTHX); 876 PL_op = PL_ppaddr[OP_ENTERSUB](aTHX);
822 SPAGAIN; 877 SPAGAIN;
823 } 878 }
824 879
825 /* this newly created coroutine might be run on an existing cctx which most 880 /* this newly created coroutine might be run on an existing cctx which most
826 * likely was suspended in set_stacklevel, called from entersub. 881 * likely was suspended in pp_slf, so we have to emulate entering pp_slf here.
827 * set_stacklevl doesn't do anything on return, but entersub does LEAVE,
828 * so we ENTER here for symmetry
829 */ 882 */
830 ENTER; 883 slf_frame.prepare = prepare_nop; /* provide a nop function for an eventual pp_slf */
831} 884 slf_frame.check = slf_check_nop; /* signal pp_slf to not repeat */
832 885
886 coro_throw = coro->throw;
887}
888
833static void 889static void
834coro_destroy (pTHX_ struct coro *coro) 890coro_destruct (pTHX_ struct coro *coro)
835{ 891{
836 if (!IN_DESTRUCT) 892 if (!IN_DESTRUCT)
837 { 893 {
838 /* restore all saved variables and stuff */ 894 /* restore all saved variables and stuff */
839 LEAVE_SCOPE (0); 895 LEAVE_SCOPE (0);
859 915
860 SvREFCNT_dec (PL_diehook); 916 SvREFCNT_dec (PL_diehook);
861 SvREFCNT_dec (PL_warnhook); 917 SvREFCNT_dec (PL_warnhook);
862 918
863 SvREFCNT_dec (coro->saved_deffh); 919 SvREFCNT_dec (coro->saved_deffh);
864 SvREFCNT_dec (coro->throw); 920 SvREFCNT_dec (coro_throw);
865 921
866 coro_destroy_stacks (aTHX); 922 coro_destruct_stacks (aTHX);
867} 923}
868 924
869static void 925INLINE void
870free_coro_mortal (pTHX) 926free_coro_mortal (pTHX)
871{ 927{
872 if (expect_true (coro_mortal)) 928 if (expect_true (coro_mortal))
873 { 929 {
874 SvREFCNT_dec (coro_mortal); 930 SvREFCNT_dec (coro_mortal);
879static int 935static int
880runops_trace (pTHX) 936runops_trace (pTHX)
881{ 937{
882 COP *oldcop = 0; 938 COP *oldcop = 0;
883 int oldcxix = -2; 939 int oldcxix = -2;
884 struct coro *coro = SvSTATE (coro_current); /* trace cctx is tied to specific coro */ 940 struct coro *coro = SvSTATE_current; /* trace cctx is tied to specific coro */
885 coro_cctx *cctx = coro->cctx; 941 coro_cctx *cctx = coro->cctx;
886 942
887 while ((PL_op = CALL_FPTR (PL_op->op_ppaddr) (aTHX))) 943 while ((PL_op = CALL_FPTR (PL_op->op_ppaddr) (aTHX)))
888 { 944 {
889 PERL_ASYNC_CHECK (); 945 PERL_ASYNC_CHECK ();
908 : cx->blk_gimme == G_SCALAR ? bot + 1 964 : cx->blk_gimme == G_SCALAR ? bot + 1
909 : bot; 965 : bot;
910 966
911 av_extend (av, top - bot); 967 av_extend (av, top - bot);
912 while (bot < top) 968 while (bot < top)
913 av_push (av, SvREFCNT_inc (*bot++)); 969 av_push (av, SvREFCNT_inc_NN (*bot++));
914 970
915 PL_runops = RUNOPS_DEFAULT; 971 PL_runops = RUNOPS_DEFAULT;
916 ENTER; 972 ENTER;
917 SAVETMPS; 973 SAVETMPS;
918 EXTEND (SP, 3); 974 EXTEND (SP, 3);
998 1054
999 TAINT_NOT; 1055 TAINT_NOT;
1000 return 0; 1056 return 0;
1001} 1057}
1002 1058
1059static void
1060prepare_set_stacklevel (struct coro_transfer_args *ta, struct coro_cctx *cctx)
1061{
1062 ta->prev = (struct coro *)cctx;
1063 ta->next = 0;
1064}
1065
1003/* inject a fake call to Coro::State::_cctx_init into the execution */ 1066/* inject a fake call to Coro::State::_cctx_init into the execution */
1004/* _cctx_init should be careful, as it could be called at almost any time */ 1067/* _cctx_init should be careful, as it could be called at almost any time */
1005/* during execution of a perl program */ 1068/* during execution of a perl program */
1069/* also initialises PL_top_env */
1006static void NOINLINE 1070static void NOINLINE
1007cctx_prepare (pTHX_ coro_cctx *cctx) 1071cctx_prepare (pTHX_ coro_cctx *cctx)
1008{ 1072{
1009 dSP; 1073 dSP;
1010 LOGOP myop; 1074 UNOP myop;
1011 1075
1012 PL_top_env = &PL_start_env; 1076 PL_top_env = &PL_start_env;
1013 1077
1014 if (cctx->flags & CC_TRACE) 1078 if (cctx->flags & CC_TRACE)
1015 PL_runops = runops_trace; 1079 PL_runops = runops_trace;
1016 1080
1017 Zero (&myop, 1, LOGOP); 1081 Zero (&myop, 1, UNOP);
1018 myop.op_next = PL_op; 1082 myop.op_next = PL_op;
1019 myop.op_flags = OPf_WANT_VOID | OPf_STACKED; 1083 myop.op_flags = OPf_WANT_VOID | OPf_STACKED;
1020 1084
1021 PUSHMARK (SP); 1085 PUSHMARK (SP);
1022 EXTEND (SP, 2); 1086 EXTEND (SP, 2);
1023 PUSHs (sv_2mortal (newSViv (PTR2IV (cctx)))); 1087 PUSHs (sv_2mortal (newSViv ((IV)cctx)));
1024 PUSHs ((SV *)get_cv ("Coro::State::_cctx_init", FALSE)); 1088 PUSHs ((SV *)get_cv ("Coro::State::_cctx_init", FALSE));
1025 PUTBACK; 1089 PUTBACK;
1026 PL_op = (OP *)&myop; 1090 PL_op = (OP *)&myop;
1027 PL_op = PL_ppaddr[OP_ENTERSUB](aTHX); 1091 PL_op = PL_ppaddr[OP_ENTERSUB](aTHX);
1028 SPAGAIN; 1092 SPAGAIN;
1029} 1093}
1030 1094
1095/* the tail of transfer: execute stuff we can only do after a transfer */
1096INLINE void
1097transfer_tail (pTHX)
1098{
1099 free_coro_mortal (aTHX);
1100}
1101
1031/* 1102/*
1032 * this is a _very_ stripped down perl interpreter ;) 1103 * this is a _very_ stripped down perl interpreter ;)
1033 */ 1104 */
1034static void 1105static void
1035cctx_run (void *arg) 1106cctx_run (void *arg)
1036{ 1107{
1108#ifdef USE_ITHREADS
1109# if CORO_PTHREAD
1110 PERL_SET_CONTEXT (coro_thx);
1111# endif
1112#endif
1113 {
1037 dTHX; 1114 dTHX;
1038 1115
1039 /* cctx_run is the alternative tail of transfer(), so unlock here. */ 1116 /* normally we would need to skip the entersub here */
1040 UNLOCK; 1117 /* not doing so will re-execute it, which is exactly what we want */
1041
1042 /* we now skip the entersub that lead to transfer() */
1043 PL_op = PL_op->op_next; 1118 /* PL_nop = PL_nop->op_next */
1044 1119
1045 /* inject a fake subroutine call to cctx_init */ 1120 /* inject a fake subroutine call to cctx_init */
1046 cctx_prepare (aTHX_ (coro_cctx *)arg); 1121 cctx_prepare (aTHX_ (coro_cctx *)arg);
1047 1122
1123 /* cctx_run is the alternative tail of transfer() */
1124 transfer_tail (aTHX);
1125
1048 /* somebody or something will hit me for both perl_run and PL_restartop */ 1126 /* somebody or something will hit me for both perl_run and PL_restartop */
1049 PL_restartop = PL_op; 1127 PL_restartop = PL_op;
1050 perl_run (PL_curinterp); 1128 perl_run (PL_curinterp);
1051 1129
1052 /* 1130 /*
1053 * If perl-run returns we assume exit() was being called or the coro 1131 * If perl-run returns we assume exit() was being called or the coro
1054 * fell off the end, which seems to be the only valid (non-bug) 1132 * fell off the end, which seems to be the only valid (non-bug)
1055 * reason for perl_run to return. We try to exit by jumping to the 1133 * reason for perl_run to return. We try to exit by jumping to the
1056 * bootstrap-time "top" top_env, as we cannot restore the "main" 1134 * bootstrap-time "top" top_env, as we cannot restore the "main"
1057 * coroutine as Coro has no such concept 1135 * coroutine as Coro has no such concept
1058 */ 1136 */
1059 PL_top_env = main_top_env; 1137 PL_top_env = main_top_env;
1060 JMPENV_JUMP (2); /* I do not feel well about the hardcoded 2 at all */ 1138 JMPENV_JUMP (2); /* I do not feel well about the hardcoded 2 at all */
1139 }
1061} 1140}
1062 1141
1063static coro_cctx * 1142static coro_cctx *
1064cctx_new () 1143cctx_new ()
1065{ 1144{
1066 coro_cctx *cctx; 1145 coro_cctx *cctx;
1146
1147 ++cctx_count;
1148 New (0, cctx, 1, coro_cctx);
1149
1150 cctx->gen = cctx_gen;
1151 cctx->flags = 0;
1152 cctx->idle_sp = 0; /* can be accessed by transfer between cctx_run and set_stacklevel, on throw */
1153
1154 return cctx;
1155}
1156
1157/* create a new cctx only suitable as source */
1158static coro_cctx *
1159cctx_new_empty ()
1160{
1161 coro_cctx *cctx = cctx_new ();
1162
1163 cctx->sptr = 0;
1164 coro_create (&cctx->cctx, 0, 0, 0, 0);
1165
1166 return cctx;
1167}
1168
1169/* create a new cctx suitable as destination/running a perl interpreter */
1170static coro_cctx *
1171cctx_new_run ()
1172{
1173 coro_cctx *cctx = cctx_new ();
1067 void *stack_start; 1174 void *stack_start;
1068 size_t stack_size; 1175 size_t stack_size;
1069 1176
1070 ++cctx_count;
1071
1072 Newz (0, cctx, 1, coro_cctx);
1073
1074#if HAVE_MMAP 1177#if HAVE_MMAP
1075 cctx->ssize = ((coro_stacksize * sizeof (long) + PAGESIZE - 1) / PAGESIZE + CORO_STACKGUARD) * PAGESIZE; 1178 cctx->ssize = ((cctx_stacksize * sizeof (long) + PAGESIZE - 1) / PAGESIZE + CORO_STACKGUARD) * PAGESIZE;
1076 /* mmap supposedly does allocate-on-write for us */ 1179 /* mmap supposedly does allocate-on-write for us */
1077 cctx->sptr = mmap (0, cctx->ssize, PROT_EXEC|PROT_READ|PROT_WRITE, MAP_PRIVATE|MAP_ANONYMOUS, 0, 0); 1180 cctx->sptr = mmap (0, cctx->ssize, PROT_EXEC|PROT_READ|PROT_WRITE, MAP_PRIVATE|MAP_ANONYMOUS, 0, 0);
1078 1181
1079 if (cctx->sptr != (void *)-1) 1182 if (cctx->sptr != (void *)-1)
1080 { 1183 {
1081# if CORO_STACKGUARD 1184 #if CORO_STACKGUARD
1082 mprotect (cctx->sptr, CORO_STACKGUARD * PAGESIZE, PROT_NONE); 1185 mprotect (cctx->sptr, CORO_STACKGUARD * PAGESIZE, PROT_NONE);
1083# endif 1186 #endif
1084 stack_start = CORO_STACKGUARD * PAGESIZE + (char *)cctx->sptr; 1187 stack_start = (char *)cctx->sptr + CORO_STACKGUARD * PAGESIZE;
1085 stack_size = cctx->ssize - CORO_STACKGUARD * PAGESIZE; 1188 stack_size = cctx->ssize - CORO_STACKGUARD * PAGESIZE;
1086 cctx->flags |= CC_MAPPED; 1189 cctx->flags |= CC_MAPPED;
1087 } 1190 }
1088 else 1191 else
1089#endif 1192#endif
1090 { 1193 {
1091 cctx->ssize = coro_stacksize * (long)sizeof (long); 1194 cctx->ssize = cctx_stacksize * (long)sizeof (long);
1092 New (0, cctx->sptr, coro_stacksize, long); 1195 New (0, cctx->sptr, cctx_stacksize, long);
1093 1196
1094 if (!cctx->sptr) 1197 if (!cctx->sptr)
1095 { 1198 {
1096 perror ("FATAL: unable to allocate stack for coroutine"); 1199 perror ("FATAL: unable to allocate stack for coroutine, exiting.");
1097 _exit (EXIT_FAILURE); 1200 _exit (EXIT_FAILURE);
1098 } 1201 }
1099 1202
1100 stack_start = cctx->sptr; 1203 stack_start = cctx->sptr;
1101 stack_size = cctx->ssize; 1204 stack_size = cctx->ssize;
1102 } 1205 }
1103 1206
1104 REGISTER_STACK (cctx, (char *)stack_start, (char *)stack_start + stack_size); 1207 #if CORO_USE_VALGRIND
1208 cctx->valgrind_id = VALGRIND_STACK_REGISTER ((char *)stack_start, (char *)stack_start + stack_size);
1209 #endif
1210
1105 coro_create (&cctx->cctx, cctx_run, (void *)cctx, stack_start, stack_size); 1211 coro_create (&cctx->cctx, cctx_run, (void *)cctx, stack_start, stack_size);
1106 1212
1107 return cctx; 1213 return cctx;
1108} 1214}
1109 1215
1112{ 1218{
1113 if (!cctx) 1219 if (!cctx)
1114 return; 1220 return;
1115 1221
1116 --cctx_count; 1222 --cctx_count;
1223 coro_destroy (&cctx->cctx);
1117 1224
1225 /* coro_transfer creates new, empty cctx's */
1226 if (cctx->sptr)
1227 {
1118#if CORO_USE_VALGRIND 1228 #if CORO_USE_VALGRIND
1119 VALGRIND_STACK_DEREGISTER (cctx->valgrind_id); 1229 VALGRIND_STACK_DEREGISTER (cctx->valgrind_id);
1120#endif 1230 #endif
1121 1231
1122#if HAVE_MMAP 1232#if HAVE_MMAP
1123 if (cctx->flags & CC_MAPPED) 1233 if (cctx->flags & CC_MAPPED)
1124 munmap (cctx->sptr, cctx->ssize); 1234 munmap (cctx->sptr, cctx->ssize);
1125 else 1235 else
1126#endif 1236#endif
1127 Safefree (cctx->sptr); 1237 Safefree (cctx->sptr);
1238 }
1128 1239
1129 Safefree (cctx); 1240 Safefree (cctx);
1130} 1241}
1131 1242
1132/* wether this cctx should be destructed */ 1243/* wether this cctx should be destructed */
1133#define CCTX_EXPIRED(cctx) ((cctx)->ssize < coro_stacksize || ((cctx)->flags & CC_NOREUSE)) 1244#define CCTX_EXPIRED(cctx) ((cctx)->gen != cctx_gen || ((cctx)->flags & CC_NOREUSE))
1134 1245
1135static coro_cctx * 1246static coro_cctx *
1136cctx_get (pTHX) 1247cctx_get (pTHX)
1137{ 1248{
1138 while (expect_true (cctx_first)) 1249 while (expect_true (cctx_first))
1145 return cctx; 1256 return cctx;
1146 1257
1147 cctx_destroy (cctx); 1258 cctx_destroy (cctx);
1148 } 1259 }
1149 1260
1150 return cctx_new (); 1261 return cctx_new_run ();
1151} 1262}
1152 1263
1153static void 1264static void
1154cctx_put (coro_cctx *cctx) 1265cctx_put (coro_cctx *cctx)
1155{ 1266{
1267 assert (("FATAL: cctx_put called on non-initialised cctx in Coro (please report)", cctx->sptr));
1268
1156 /* free another cctx if overlimit */ 1269 /* free another cctx if overlimit */
1157 if (expect_false (cctx_idle >= MAX_IDLE_CCTX)) 1270 if (expect_false (cctx_idle >= cctx_max_idle))
1158 { 1271 {
1159 coro_cctx *first = cctx_first; 1272 coro_cctx *first = cctx_first;
1160 cctx_first = first->next; 1273 cctx_first = first->next;
1161 --cctx_idle; 1274 --cctx_idle;
1162 1275
1171/** coroutine switching *****************************************************/ 1284/** coroutine switching *****************************************************/
1172 1285
1173static void 1286static void
1174transfer_check (pTHX_ struct coro *prev, struct coro *next) 1287transfer_check (pTHX_ struct coro *prev, struct coro *next)
1175{ 1288{
1289 /* TODO: throwing up here is considered harmful */
1290
1176 if (expect_true (prev != next)) 1291 if (expect_true (prev != next))
1177 { 1292 {
1178 if (expect_false (!(prev->flags & (CF_RUNNING | CF_NEW)))) 1293 if (expect_false (!(prev->flags & (CF_RUNNING | CF_NEW))))
1179 croak ("Coro::State::transfer called with non-running/new prev Coro::State, but can only transfer from running or new states"); 1294 croak ("Coro::State::transfer called with non-running/new prev Coro::State, but can only transfer from running or new states,");
1180 1295
1181 if (expect_false (next->flags & CF_RUNNING)) 1296 if (expect_false (next->flags & CF_RUNNING))
1182 croak ("Coro::State::transfer called with running next Coro::State, but can only transfer to inactive states"); 1297 croak ("Coro::State::transfer called with running next Coro::State, but can only transfer to inactive states,");
1183 1298
1184 if (expect_false (next->flags & CF_DESTROYED)) 1299 if (expect_false (next->flags & CF_DESTROYED))
1185 croak ("Coro::State::transfer called with destroyed next Coro::State, but can only transfer to inactive states"); 1300 croak ("Coro::State::transfer called with destroyed next Coro::State, but can only transfer to inactive states,");
1186 1301
1187#if !PERL_VERSION_ATLEAST (5,10,0) 1302#if !PERL_VERSION_ATLEAST (5,10,0)
1188 if (expect_false (PL_lex_state != LEX_NOTPARSING)) 1303 if (expect_false (PL_lex_state != LEX_NOTPARSING))
1189 croak ("Coro::State::transfer called while parsing, but this is not supported in your perl version"); 1304 croak ("Coro::State::transfer called while parsing, but this is not supported in your perl version,");
1190#endif 1305#endif
1191 } 1306 }
1192} 1307}
1193 1308
1194/* always use the TRANSFER macro */ 1309/* always use the TRANSFER macro */
1195static void NOINLINE 1310static void NOINLINE /* noinline so we have a fixed stackframe */
1196transfer (pTHX_ struct coro *prev, struct coro *next, int force_cctx) 1311transfer (pTHX_ struct coro *prev, struct coro *next, int force_cctx)
1197{ 1312{
1198 dSTACKLEVEL; 1313 dSTACKLEVEL;
1199 static volatile int has_throw;
1200 1314
1201 /* sometimes transfer is only called to set idle_sp */ 1315 /* sometimes transfer is only called to set idle_sp */
1202 if (expect_false (!next)) 1316 if (expect_false (!next))
1203 { 1317 {
1204 ((coro_cctx *)prev)->idle_sp = STACKLEVEL; 1318 ((coro_cctx *)prev)->idle_sp = (void *)stacklevel;
1205 assert (((coro_cctx *)prev)->idle_te = PL_top_env); /* just for the side-effect when asserts are enabled */ 1319 assert (((coro_cctx *)prev)->idle_te = PL_top_env); /* just for the side-effect when asserts are enabled */
1206 } 1320 }
1207 else if (expect_true (prev != next)) 1321 else if (expect_true (prev != next))
1208 { 1322 {
1209 coro_cctx *prev__cctx; 1323 coro_cctx *prev__cctx;
1210 1324
1211 if (expect_false (prev->flags & CF_NEW)) 1325 if (expect_false (prev->flags & CF_NEW))
1212 { 1326 {
1213 /* create a new empty context */ 1327 /* create a new empty/source context */
1214 Newz (0, prev->cctx, 1, coro_cctx); 1328 prev->cctx = cctx_new_empty ();
1215 prev->flags &= ~CF_NEW; 1329 prev->flags &= ~CF_NEW;
1216 prev->flags |= CF_RUNNING; 1330 prev->flags |= CF_RUNNING;
1217 } 1331 }
1218 1332
1219 prev->flags &= ~CF_RUNNING; 1333 prev->flags &= ~CF_RUNNING;
1220 next->flags |= CF_RUNNING; 1334 next->flags |= CF_RUNNING;
1221
1222 LOCK;
1223 1335
1224 /* first get rid of the old state */ 1336 /* first get rid of the old state */
1225 save_perl (aTHX_ prev); 1337 save_perl (aTHX_ prev);
1226 1338
1227 if (expect_false (next->flags & CF_NEW)) 1339 if (expect_false (next->flags & CF_NEW))
1234 else 1346 else
1235 load_perl (aTHX_ next); 1347 load_perl (aTHX_ next);
1236 1348
1237 prev__cctx = prev->cctx; 1349 prev__cctx = prev->cctx;
1238 1350
1239 /* possibly "free" the cctx */ 1351 /* possibly untie and reuse the cctx */
1240 if (expect_true ( 1352 if (expect_true (
1241 prev__cctx->idle_sp == STACKLEVEL 1353 prev__cctx->idle_sp == (void *)stacklevel
1242 && !(prev__cctx->flags & CC_TRACE) 1354 && !(prev__cctx->flags & CC_TRACE)
1243 && !force_cctx 1355 && !force_cctx
1244 )) 1356 ))
1245 { 1357 {
1246 /* I assume that STACKLEVEL is a stronger indicator than PL_top_env changes */ 1358 /* I assume that stacklevel is a stronger indicator than PL_top_env changes */
1247 assert (("ERROR: current top_env must equal previous top_env", PL_top_env == prev__cctx->idle_te)); 1359 assert (("FATAL: current top_env must equal previous top_env in Coro (please report)", PL_top_env == prev__cctx->idle_te));
1248 1360
1249 prev->cctx = 0; 1361 prev->cctx = 0;
1250 1362
1251 /* if the cctx is about to be destroyed we need to make sure we won't see it in cctx_get */ 1363 /* if the cctx is about to be destroyed we need to make sure we won't see it in cctx_get */
1252 /* without this the next cctx_get might destroy the prev__cctx while still in use */ 1364 /* without this the next cctx_get might destroy the prev__cctx while still in use */
1259 1371
1260 ++next->usecount; 1372 ++next->usecount;
1261 1373
1262 if (expect_true (!next->cctx)) 1374 if (expect_true (!next->cctx))
1263 next->cctx = cctx_get (aTHX); 1375 next->cctx = cctx_get (aTHX);
1264
1265 has_throw = !!next->throw;
1266 1376
1267 if (expect_false (prev__cctx != next->cctx)) 1377 if (expect_false (prev__cctx != next->cctx))
1268 { 1378 {
1269 prev__cctx->top_env = PL_top_env; 1379 prev__cctx->top_env = PL_top_env;
1270 PL_top_env = next->cctx->top_env; 1380 PL_top_env = next->cctx->top_env;
1271 coro_transfer (&prev__cctx->cctx, &next->cctx->cctx); 1381 coro_transfer (&prev__cctx->cctx, &next->cctx->cctx);
1272 } 1382 }
1273 1383
1274 free_coro_mortal (aTHX); 1384 transfer_tail (aTHX);
1275 UNLOCK;
1276
1277 if (expect_false (has_throw))
1278 {
1279 struct coro *coro = SvSTATE (coro_current);
1280
1281 if (coro->throw)
1282 {
1283 SV *exception = coro->throw;
1284 coro->throw = 0;
1285 sv_setsv (ERRSV, exception);
1286 croak (0);
1287 }
1288 }
1289 } 1385 }
1290} 1386}
1291
1292struct transfer_args
1293{
1294 struct coro *prev, *next;
1295};
1296 1387
1297#define TRANSFER(ta, force_cctx) transfer (aTHX_ (ta).prev, (ta).next, (force_cctx)) 1388#define TRANSFER(ta, force_cctx) transfer (aTHX_ (ta).prev, (ta).next, (force_cctx))
1298#define TRANSFER_CHECK(ta) transfer_check (aTHX_ (ta).prev, (ta).next) 1389#define TRANSFER_CHECK(ta) transfer_check (aTHX_ (ta).prev, (ta).next)
1299 1390
1300/** high level stuff ********************************************************/ 1391/** high level stuff ********************************************************/
1302static int 1393static int
1303coro_state_destroy (pTHX_ struct coro *coro) 1394coro_state_destroy (pTHX_ struct coro *coro)
1304{ 1395{
1305 if (coro->flags & CF_DESTROYED) 1396 if (coro->flags & CF_DESTROYED)
1306 return 0; 1397 return 0;
1398
1399 if (coro->on_destroy)
1400 coro->on_destroy (aTHX_ coro);
1307 1401
1308 coro->flags |= CF_DESTROYED; 1402 coro->flags |= CF_DESTROYED;
1309 1403
1310 if (coro->flags & CF_READY) 1404 if (coro->flags & CF_READY)
1311 { 1405 {
1312 /* reduce nready, as destroying a ready coro effectively unreadies it */ 1406 /* reduce nready, as destroying a ready coro effectively unreadies it */
1313 /* alternative: look through all ready queues and remove the coro */ 1407 /* alternative: look through all ready queues and remove the coro */
1314 LOCK;
1315 --coro_nready; 1408 --coro_nready;
1316 UNLOCK;
1317 } 1409 }
1318 else 1410 else
1319 coro->flags |= CF_READY; /* make sure it is NOT put into the readyqueue */ 1411 coro->flags |= CF_READY; /* make sure it is NOT put into the readyqueue */
1320 1412
1321 if (coro->mainstack && coro->mainstack != main_mainstack) 1413 if (coro->mainstack && coro->mainstack != main_mainstack)
1322 { 1414 {
1323 struct coro temp; 1415 struct coro temp;
1324 1416
1325 if (coro->flags & CF_RUNNING) 1417 assert (("FATAL: tried to destroy currently running coroutine (please report)", !(coro->flags & CF_RUNNING)));
1326 croak ("FATAL: tried to destroy currently running coroutine");
1327 1418
1328 save_perl (aTHX_ &temp); 1419 save_perl (aTHX_ &temp);
1329 load_perl (aTHX_ coro); 1420 load_perl (aTHX_ coro);
1330 1421
1331 coro_destroy (aTHX_ coro); 1422 coro_destruct (aTHX_ coro);
1332 1423
1333 load_perl (aTHX_ &temp); 1424 load_perl (aTHX_ &temp);
1334 1425
1335 coro->slot = 0; 1426 coro->slot = 0;
1336 } 1427 }
1382# define MGf_DUP 0 1473# define MGf_DUP 0
1383#endif 1474#endif
1384}; 1475};
1385 1476
1386static void 1477static void
1387prepare_transfer (pTHX_ struct transfer_args *ta, SV *prev_sv, SV *next_sv) 1478prepare_transfer (pTHX_ struct coro_transfer_args *ta, SV *prev_sv, SV *next_sv)
1388{ 1479{
1389 ta->prev = SvSTATE (prev_sv); 1480 ta->prev = SvSTATE (prev_sv);
1390 ta->next = SvSTATE (next_sv); 1481 ta->next = SvSTATE (next_sv);
1391 TRANSFER_CHECK (*ta); 1482 TRANSFER_CHECK (*ta);
1392} 1483}
1393 1484
1394static void 1485static void
1395api_transfer (SV *prev_sv, SV *next_sv) 1486api_transfer (pTHX_ SV *prev_sv, SV *next_sv)
1396{ 1487{
1397 dTHX;
1398 struct transfer_args ta; 1488 struct coro_transfer_args ta;
1399 1489
1400 prepare_transfer (aTHX_ &ta, prev_sv, next_sv); 1490 prepare_transfer (aTHX_ &ta, prev_sv, next_sv);
1401 TRANSFER (ta, 1); 1491 TRANSFER (ta, 1);
1402} 1492}
1403 1493
1404/** Coro ********************************************************************/ 1494/** Coro ********************************************************************/
1405 1495
1406static void 1496INLINE void
1407coro_enq (pTHX_ SV *coro_sv) 1497coro_enq (pTHX_ struct coro *coro)
1408{ 1498{
1409 av_push (coro_ready [SvSTATE (coro_sv)->prio - PRIO_MIN], coro_sv); 1499 av_push (coro_ready [coro->prio - PRIO_MIN], SvREFCNT_inc_NN (coro->hv));
1410} 1500}
1411 1501
1412static SV * 1502INLINE SV *
1413coro_deq (pTHX) 1503coro_deq (pTHX)
1414{ 1504{
1415 int prio; 1505 int prio;
1416 1506
1417 for (prio = PRIO_MAX - PRIO_MIN + 1; --prio >= 0; ) 1507 for (prio = PRIO_MAX - PRIO_MIN + 1; --prio >= 0; )
1420 1510
1421 return 0; 1511 return 0;
1422} 1512}
1423 1513
1424static int 1514static int
1425api_ready (SV *coro_sv) 1515api_ready (pTHX_ SV *coro_sv)
1426{ 1516{
1427 dTHX;
1428 struct coro *coro; 1517 struct coro *coro;
1429 SV *sv_hook; 1518 SV *sv_hook;
1430 void (*xs_hook)(void); 1519 void (*xs_hook)(void);
1431 1520
1432 if (SvROK (coro_sv)) 1521 if (SvROK (coro_sv))
1437 if (coro->flags & CF_READY) 1526 if (coro->flags & CF_READY)
1438 return 0; 1527 return 0;
1439 1528
1440 coro->flags |= CF_READY; 1529 coro->flags |= CF_READY;
1441 1530
1442 LOCK;
1443
1444 sv_hook = coro_nready ? 0 : coro_readyhook; 1531 sv_hook = coro_nready ? 0 : coro_readyhook;
1445 xs_hook = coro_nready ? 0 : coroapi.readyhook; 1532 xs_hook = coro_nready ? 0 : coroapi.readyhook;
1446 1533
1447 coro_enq (aTHX_ SvREFCNT_inc (coro_sv)); 1534 coro_enq (aTHX_ coro);
1448 ++coro_nready; 1535 ++coro_nready;
1449 1536
1450 UNLOCK;
1451
1452 if (sv_hook) 1537 if (sv_hook)
1453 { 1538 {
1454 dSP; 1539 dSP;
1455 1540
1456 ENTER; 1541 ENTER;
1470 1555
1471 return 1; 1556 return 1;
1472} 1557}
1473 1558
1474static int 1559static int
1475api_is_ready (SV *coro_sv) 1560api_is_ready (pTHX_ SV *coro_sv)
1476{ 1561{
1477 dTHX;
1478 return !!(SvSTATE (coro_sv)->flags & CF_READY); 1562 return !!(SvSTATE (coro_sv)->flags & CF_READY);
1479} 1563}
1480 1564
1481static void 1565INLINE void
1482prepare_schedule (pTHX_ struct transfer_args *ta) 1566prepare_schedule (pTHX_ struct coro_transfer_args *ta)
1483{ 1567{
1484 SV *prev_sv, *next_sv; 1568 SV *prev_sv, *next_sv;
1485 1569
1486 for (;;) 1570 for (;;)
1487 { 1571 {
1488 LOCK;
1489 next_sv = coro_deq (aTHX); 1572 next_sv = coro_deq (aTHX);
1490 1573
1491 /* nothing to schedule: call the idle handler */ 1574 /* nothing to schedule: call the idle handler */
1492 if (expect_false (!next_sv)) 1575 if (expect_false (!next_sv))
1493 { 1576 {
1494 dSP; 1577 dSP;
1495 UNLOCK;
1496 1578
1497 ENTER; 1579 ENTER;
1498 SAVETMPS; 1580 SAVETMPS;
1499 1581
1500 PUSHMARK (SP); 1582 PUSHMARK (SP);
1505 FREETMPS; 1587 FREETMPS;
1506 LEAVE; 1588 LEAVE;
1507 continue; 1589 continue;
1508 } 1590 }
1509 1591
1510 ta->next = SvSTATE (next_sv); 1592 ta->next = SvSTATE_hv (next_sv);
1511 1593
1512 /* cannot transfer to destroyed coros, skip and look for next */ 1594 /* cannot transfer to destroyed coros, skip and look for next */
1513 if (expect_false (ta->next->flags & CF_DESTROYED)) 1595 if (expect_false (ta->next->flags & CF_DESTROYED))
1514 { 1596 {
1515 UNLOCK;
1516 SvREFCNT_dec (next_sv); 1597 SvREFCNT_dec (next_sv);
1517 /* coro_nready is already taken care of by destroy */ 1598 /* coro_nready has already been taken care of by destroy */
1518 continue; 1599 continue;
1519 } 1600 }
1520 1601
1521 --coro_nready; 1602 --coro_nready;
1522 UNLOCK;
1523 break; 1603 break;
1524 } 1604 }
1525 1605
1526 /* free this only after the transfer */ 1606 /* free this only after the transfer */
1527 prev_sv = SvRV (coro_current); 1607 prev_sv = SvRV (coro_current);
1528 ta->prev = SvSTATE (prev_sv); 1608 ta->prev = SvSTATE_hv (prev_sv);
1529 TRANSFER_CHECK (*ta); 1609 TRANSFER_CHECK (*ta);
1530 assert (ta->next->flags & CF_READY); 1610 assert (("FATAL: next coroutine isn't marked as ready in Coro (please report)", ta->next->flags & CF_READY));
1531 ta->next->flags &= ~CF_READY; 1611 ta->next->flags &= ~CF_READY;
1532 SvRV_set (coro_current, next_sv); 1612 SvRV_set (coro_current, next_sv);
1533 1613
1534 LOCK;
1535 free_coro_mortal (aTHX); 1614 free_coro_mortal (aTHX);
1536 coro_mortal = prev_sv; 1615 coro_mortal = prev_sv;
1537 UNLOCK;
1538} 1616}
1539 1617
1540static void 1618INLINE void
1541prepare_cede (pTHX_ struct transfer_args *ta) 1619prepare_cede (pTHX_ struct coro_transfer_args *ta)
1542{ 1620{
1543 api_ready (coro_current); 1621 api_ready (aTHX_ coro_current);
1544 prepare_schedule (aTHX_ ta); 1622 prepare_schedule (aTHX_ ta);
1545} 1623}
1546 1624
1625INLINE void
1626prepare_cede_notself (pTHX_ struct coro_transfer_args *ta)
1627{
1628 SV *prev = SvRV (coro_current);
1629
1630 if (coro_nready)
1631 {
1632 prepare_schedule (aTHX_ ta);
1633 api_ready (aTHX_ prev);
1634 }
1635 else
1636 prepare_nop (aTHX_ ta);
1637}
1638
1639static void
1640api_schedule (pTHX)
1641{
1642 struct coro_transfer_args ta;
1643
1644 prepare_schedule (aTHX_ &ta);
1645 TRANSFER (ta, 1);
1646}
1647
1547static int 1648static int
1548prepare_cede_notself (pTHX_ struct transfer_args *ta) 1649api_cede (pTHX)
1549{ 1650{
1550 if (coro_nready) 1651 struct coro_transfer_args ta;
1551 { 1652
1552 SV *prev = SvRV (coro_current);
1553 prepare_schedule (aTHX_ ta); 1653 prepare_cede (aTHX_ &ta);
1554 api_ready (prev); 1654
1655 if (expect_true (ta.prev != ta.next))
1656 {
1657 TRANSFER (ta, 1);
1555 return 1; 1658 return 1;
1556 } 1659 }
1557 else 1660 else
1558 return 0; 1661 return 0;
1559} 1662}
1560 1663
1561static void
1562api_schedule (void)
1563{
1564 dTHX;
1565 struct transfer_args ta;
1566
1567 prepare_schedule (aTHX_ &ta);
1568 TRANSFER (ta, 1);
1569}
1570
1571static int 1664static int
1572api_cede (void) 1665api_cede_notself (pTHX)
1573{ 1666{
1574 dTHX; 1667 if (coro_nready)
1668 {
1575 struct transfer_args ta; 1669 struct coro_transfer_args ta;
1576 1670
1577 prepare_cede (aTHX_ &ta); 1671 prepare_cede_notself (aTHX_ &ta);
1578
1579 if (expect_true (ta.prev != ta.next))
1580 {
1581 TRANSFER (ta, 1); 1672 TRANSFER (ta, 1);
1582 return 1; 1673 return 1;
1583 } 1674 }
1584 else 1675 else
1585 return 0; 1676 return 0;
1586} 1677}
1587 1678
1588static int 1679static void
1589api_cede_notself (void)
1590{
1591 dTHX;
1592 struct transfer_args ta;
1593
1594 if (prepare_cede_notself (aTHX_ &ta))
1595 {
1596 TRANSFER (ta, 1);
1597 return 1;
1598 }
1599 else
1600 return 0;
1601}
1602
1603static void
1604api_trace (SV *coro_sv, int flags) 1680api_trace (pTHX_ SV *coro_sv, int flags)
1605{ 1681{
1606 dTHX;
1607 struct coro *coro = SvSTATE (coro_sv); 1682 struct coro *coro = SvSTATE (coro_sv);
1608 1683
1609 if (flags & CC_TRACE) 1684 if (flags & CC_TRACE)
1610 { 1685 {
1611 if (!coro->cctx) 1686 if (!coro->cctx)
1612 coro->cctx = cctx_new (); 1687 coro->cctx = cctx_new_run ();
1613 else if (!(coro->cctx->flags & CC_TRACE)) 1688 else if (!(coro->cctx->flags & CC_TRACE))
1614 croak ("cannot enable tracing on coroutine with custom stack"); 1689 croak ("cannot enable tracing on coroutine with custom stack,");
1615 1690
1616 coro->cctx->flags |= CC_NOREUSE | (flags & (CC_TRACE | CC_TRACE_ALL)); 1691 coro->cctx->flags |= CC_NOREUSE | (flags & (CC_TRACE | CC_TRACE_ALL));
1617 } 1692 }
1618 else if (coro->cctx && coro->cctx->flags & CC_TRACE) 1693 else if (coro->cctx && coro->cctx->flags & CC_TRACE)
1619 { 1694 {
1624 else 1699 else
1625 coro->slot->runops = RUNOPS_DEFAULT; 1700 coro->slot->runops = RUNOPS_DEFAULT;
1626 } 1701 }
1627} 1702}
1628 1703
1704/*****************************************************************************/
1705/* PerlIO::cede */
1706
1707typedef struct
1708{
1709 PerlIOBuf base;
1710 NV next, every;
1711} PerlIOCede;
1712
1713static IV
1714PerlIOCede_pushed (pTHX_ PerlIO *f, const char *mode, SV *arg, PerlIO_funcs *tab)
1715{
1716 PerlIOCede *self = PerlIOSelf (f, PerlIOCede);
1717
1718 self->every = SvCUR (arg) ? SvNV (arg) : 0.01;
1719 self->next = nvtime () + self->every;
1720
1721 return PerlIOBuf_pushed (aTHX_ f, mode, Nullsv, tab);
1722}
1723
1724static SV *
1725PerlIOCede_getarg (pTHX_ PerlIO *f, CLONE_PARAMS *param, int flags)
1726{
1727 PerlIOCede *self = PerlIOSelf (f, PerlIOCede);
1728
1729 return newSVnv (self->every);
1730}
1731
1732static IV
1733PerlIOCede_flush (pTHX_ PerlIO *f)
1734{
1735 PerlIOCede *self = PerlIOSelf (f, PerlIOCede);
1736 double now = nvtime ();
1737
1738 if (now >= self->next)
1739 {
1740 api_cede (aTHX);
1741 self->next = now + self->every;
1742 }
1743
1744 return PerlIOBuf_flush (aTHX_ f);
1745}
1746
1747static PerlIO_funcs PerlIO_cede =
1748{
1749 sizeof(PerlIO_funcs),
1750 "cede",
1751 sizeof(PerlIOCede),
1752 PERLIO_K_DESTRUCT | PERLIO_K_RAW,
1753 PerlIOCede_pushed,
1754 PerlIOBuf_popped,
1755 PerlIOBuf_open,
1756 PerlIOBase_binmode,
1757 PerlIOCede_getarg,
1758 PerlIOBase_fileno,
1759 PerlIOBuf_dup,
1760 PerlIOBuf_read,
1761 PerlIOBuf_unread,
1762 PerlIOBuf_write,
1763 PerlIOBuf_seek,
1764 PerlIOBuf_tell,
1765 PerlIOBuf_close,
1766 PerlIOCede_flush,
1767 PerlIOBuf_fill,
1768 PerlIOBase_eof,
1769 PerlIOBase_error,
1770 PerlIOBase_clearerr,
1771 PerlIOBase_setlinebuf,
1772 PerlIOBuf_get_base,
1773 PerlIOBuf_bufsiz,
1774 PerlIOBuf_get_ptr,
1775 PerlIOBuf_get_cnt,
1776 PerlIOBuf_set_ptrcnt,
1777};
1778
1779/*****************************************************************************/
1780
1781static UNOP slf_restore; /* restore stack as entersub did, for first-re-run */
1782static const CV *slf_cv;
1783static SV **slf_argv;
1784static int slf_argc, slf_arga; /* count, allocated */
1785static I32 slf_ax; /* top of stack, for restore */
1786
1787/* this restores the stack in the case we patched the entersub, to */
1788/* recreate the stack frame as perl will on following calls */
1789/* since entersub cleared the stack */
1790static OP *
1791pp_restore (pTHX)
1792{
1793 int i;
1794 SV **SP = PL_stack_base + slf_ax;
1795
1796 PUSHMARK (SP);
1797
1798 EXTEND (SP, slf_argc + 1);
1799
1800 for (i = 0; i < slf_argc; ++i)
1801 PUSHs (sv_2mortal (slf_argv [i]));
1802
1803 PUSHs ((SV *)CvGV (slf_cv));
1804
1805 RETURNOP (slf_restore.op_first);
1806}
1807
1808static void
1809slf_prepare_set_stacklevel (pTHX_ struct coro_transfer_args *ta)
1810{
1811 prepare_set_stacklevel (ta, (struct coro_cctx *)slf_frame.data);
1812}
1813
1814static void
1815slf_init_set_stacklevel (pTHX_ struct CoroSLF *frame, CV *cv, SV **arg, int items)
1816{
1817 assert (("FATAL: set_stacklevel needs the coro cctx as sole argument", items == 1));
1818
1819 frame->prepare = slf_prepare_set_stacklevel;
1820 frame->check = slf_check_nop;
1821 frame->data = (void *)SvIV (arg [0]);
1822}
1823
1824static void
1825slf_prepare_transfer (pTHX_ struct coro_transfer_args *ta)
1826{
1827 SV **arg = (SV **)slf_frame.data;
1828
1829 prepare_transfer (aTHX_ ta, arg [0], arg [1]);
1830}
1831
1832static void
1833slf_init_transfer (pTHX_ struct CoroSLF *frame, CV *cv, SV **arg, int items)
1834{
1835 if (items != 2)
1836 croak ("Coro::State::transfer (prev, next) expects two arguments, not %d,", items);
1837
1838 frame->prepare = slf_prepare_transfer;
1839 frame->check = slf_check_nop;
1840 frame->data = (void *)arg; /* let's hope it will stay valid */
1841}
1842
1843static void
1844slf_init_schedule (pTHX_ struct CoroSLF *frame, CV *cv, SV **arg, int items)
1845{
1846 frame->prepare = prepare_schedule;
1847 frame->check = slf_check_nop;
1848}
1849
1850static void
1851slf_init_cede (pTHX_ struct CoroSLF *frame, CV *cv, SV **arg, int items)
1852{
1853 frame->prepare = prepare_cede;
1854 frame->check = slf_check_nop;
1855}
1856
1857static void
1858slf_init_cede_notself (pTHX_ struct CoroSLF *frame, CV *cv, SV **arg, int items)
1859{
1860 frame->prepare = prepare_cede_notself;
1861 frame->check = slf_check_nop;
1862}
1863
1864/* we hijack an hopefully unused CV flag for our purposes */
1865#define CVf_SLF 0x4000
1866
1867/*
1868 * these not obviously related functions are all rolled into one
1869 * function to increase chances that they all will call transfer with the same
1870 * stack offset
1871 * SLF stands for "schedule-like-function".
1872 */
1873static OP *
1874pp_slf (pTHX)
1875{
1876 I32 checkmark; /* mark SP to see how many elements check has pushed */
1877
1878 /* set up the slf frame, unless it has already been set-up */
1879 /* the latter happens when a new coro has been started */
1880 /* or when a new cctx was attached to an existing coroutine */
1881 if (expect_true (!slf_frame.prepare))
1882 {
1883 /* first iteration */
1884 dSP;
1885 SV **arg = PL_stack_base + TOPMARK + 1;
1886 int items = SP - arg; /* args without function object */
1887 SV *gv = *sp;
1888
1889 /* do a quick consistency check on the "function" object, and if it isn't */
1890 /* for us, divert to the real entersub */
1891 if (SvTYPE (gv) != SVt_PVGV || !(CvFLAGS (GvCV (gv)) & CVf_SLF))
1892 return PL_ppaddr[OP_ENTERSUB](aTHX);
1893
1894 if (!(PL_op->op_flags & OPf_STACKED))
1895 {
1896 /* ampersand-form of call, use @_ instead of stack */
1897 AV *av = GvAV (PL_defgv);
1898 arg = AvARRAY (av);
1899 items = AvFILLp (av) + 1;
1900 }
1901
1902 /* now call the init function, which needs to set up slf_frame */
1903 ((coro_slf_cb)CvXSUBANY (GvCV (gv)).any_ptr)
1904 (aTHX_ &slf_frame, GvCV (gv), arg, items);
1905
1906 /* pop args */
1907 SP = PL_stack_base + POPMARK;
1908
1909 PUTBACK;
1910 }
1911
1912 /* now that we have a slf_frame, interpret it! */
1913 /* we use a callback system not to make the code needlessly */
1914 /* complicated, but so we can run multiple perl coros from one cctx */
1915
1916 do
1917 {
1918 struct coro_transfer_args ta;
1919
1920 slf_frame.prepare (aTHX_ &ta);
1921 TRANSFER (ta, 0);
1922
1923 checkmark = PL_stack_sp - PL_stack_base;
1924 }
1925 while (slf_frame.check (aTHX_ &slf_frame));
1926
1927 slf_frame.prepare = 0; /* invalidate the frame, we are done processing it */
1928
1929 /* return value handling - mostly like entersub */
1930 {
1931 dSP;
1932 SV **bot = PL_stack_base + checkmark;
1933 int gimme = GIMME_V;
1934
1935 /* make sure we put something on the stack in scalar context */
1936 if (gimme == G_SCALAR)
1937 {
1938 if (sp == bot)
1939 XPUSHs (&PL_sv_undef);
1940
1941 SP = bot + 1;
1942 }
1943
1944 PUTBACK;
1945 }
1946
1947 /* exception handling */
1948 if (expect_false (coro_throw))
1949 {
1950 SV *exception = sv_2mortal (coro_throw);
1951
1952 coro_throw = 0;
1953 sv_setsv (ERRSV, exception);
1954 croak (0);
1955 }
1956
1957 return NORMAL;
1958}
1959
1960static void
1961api_execute_slf (pTHX_ CV *cv, coro_slf_cb init_cb, I32 ax)
1962{
1963 int i;
1964 SV **arg = PL_stack_base + ax;
1965 int items = PL_stack_sp - arg + 1;
1966
1967 assert (("FATAL: SLF call with illegal CV value", !CvANON (cv)));
1968
1969 if (PL_op->op_ppaddr != PL_ppaddr [OP_ENTERSUB]
1970 && PL_op->op_ppaddr != pp_slf)
1971 croak ("FATAL: Coro SLF calls can only be made normally, not via goto or any other means, caught");
1972
1973 CvFLAGS (cv) |= CVf_SLF;
1974 CvXSUBANY (cv).any_ptr = (void *)init_cb;
1975 slf_cv = cv;
1976
1977 /* we patch the op, and then re-run the whole call */
1978 /* we have to put the same argument on the stack for this to work */
1979 /* and this will be done by pp_restore */
1980 slf_restore.op_next = (OP *)&slf_restore;
1981 slf_restore.op_type = OP_CUSTOM;
1982 slf_restore.op_ppaddr = pp_restore;
1983 slf_restore.op_first = PL_op;
1984
1985 slf_ax = ax - 1; /* undo the ax++ inside dAXMARK */
1986
1987 if (items > slf_arga)
1988 {
1989 slf_arga = items;
1990 free (slf_argv);
1991 slf_argv = malloc (slf_arga * sizeof (SV *));
1992 }
1993
1994 slf_argc = items;
1995
1996 for (i = 0; i < items; ++i)
1997 slf_argv [i] = SvREFCNT_inc (arg [i]);
1998
1999 PL_op->op_ppaddr = pp_slf;
2000 PL_op->op_type = OP_CUSTOM; /* maybe we should leave it at entersub? */
2001
2002 PL_op = (OP *)&slf_restore;
2003}
2004
2005/*****************************************************************************/
2006
2007static void
2008coro_semaphore_adjust (pTHX_ AV *av, IV adjust)
2009{
2010 SV *count_sv = AvARRAY (av)[0];
2011 IV count = SvIVX (count_sv);
2012
2013 count += adjust;
2014 SvIVX (count_sv) = count;
2015
2016 /* now wake up as many waiters as are expected to lock */
2017 while (count > 0 && AvFILLp (av) > 0)
2018 {
2019 SV *cb;
2020
2021 /* swap first two elements so we can shift a waiter */
2022 AvARRAY (av)[0] = AvARRAY (av)[1];
2023 AvARRAY (av)[1] = count_sv;
2024 cb = av_shift (av);
2025
2026 if (SvOBJECT (cb))
2027 api_ready (aTHX_ cb);
2028 else
2029 croak ("callbacks not yet supported");
2030
2031 SvREFCNT_dec (cb);
2032
2033 --count;
2034 }
2035}
2036
2037static void
2038coro_semaphore_on_destroy (pTHX_ struct coro *coro)
2039{
2040 /* call $sem->adjust (0) to possibly wake up some other waiters */
2041 coro_semaphore_adjust (aTHX_ (AV *)coro->slf_frame.data, 0);
2042}
2043
2044static int
2045slf_check_semaphore_down (pTHX_ struct CoroSLF *frame)
2046{
2047 AV *av = (AV *)frame->data;
2048 SV *count_sv = AvARRAY (av)[0];
2049
2050 if (SvIVX (count_sv) > 0)
2051 {
2052 SvSTATE_current->on_destroy = 0;
2053 SvIVX (count_sv) = SvIVX (count_sv) - 1;
2054 return 0;
2055 }
2056 else
2057 {
2058 int i;
2059 /* if we were woken up but can't down, we look through the whole */
2060 /* waiters list and only add us if we aren't in there already */
2061 /* this avoids some degenerate memory usage cases */
2062
2063 for (i = 1; i <= AvFILLp (av); ++i)
2064 if (AvARRAY (av)[i] == SvRV (coro_current))
2065 return 1;
2066
2067 av_push (av, SvREFCNT_inc (SvRV (coro_current)));
2068 return 1;
2069 }
2070}
2071
2072static void
2073slf_init_semaphore_down (pTHX_ struct CoroSLF *frame, CV *cv, SV **arg, int items)
2074{
2075 AV *av = (AV *)SvRV (arg [0]);
2076
2077 if (SvIVX (AvARRAY (av)[0]) > 0)
2078 {
2079 frame->data = (void *)av;
2080 frame->prepare = prepare_nop;
2081 SvSTATE_current->on_destroy = coro_semaphore_on_destroy;
2082 }
2083 else
2084 {
2085 av_push (av, SvREFCNT_inc (SvRV (coro_current)));
2086
2087 frame->data = (void *)sv_2mortal (SvREFCNT_inc ((SV *)av));
2088 frame->prepare = prepare_schedule;
2089
2090 /* to avoid race conditions when a woken-up coro gets terminated */
2091 /* we arrange for a temporary on_destroy that calls adjust (0) */
2092 assert (!SvSTATE_current->on_destroy);//D
2093 SvSTATE_current->on_destroy = coro_semaphore_on_destroy;
2094 }
2095
2096 frame->check = slf_check_semaphore_down;
2097
2098}
2099
2100/*****************************************************************************/
2101
2102#define GENSUB_ARG CvXSUBANY (cv).any_ptr
2103
2104/* create a closure from XS, returns a code reference */
2105/* the arg can be accessed via GENSUB_ARG from the callback */
2106/* the callback must use dXSARGS/XSRETURN */
2107static SV *
2108gensub (pTHX_ void (*xsub)(pTHX_ CV *), void *arg)
2109{
2110 CV *cv = (CV *)NEWSV (0, 0);
2111
2112 sv_upgrade ((SV *)cv, SVt_PVCV);
2113
2114 CvANON_on (cv);
2115 CvISXSUB_on (cv);
2116 CvXSUB (cv) = xsub;
2117 GENSUB_ARG = arg;
2118
2119 return newRV_noinc ((SV *)cv);
2120}
2121
2122/*****************************************************************************/
2123
1629MODULE = Coro::State PACKAGE = Coro::State PREFIX = api_ 2124MODULE = Coro::State PACKAGE = Coro::State PREFIX = api_
1630 2125
1631PROTOTYPES: DISABLE 2126PROTOTYPES: DISABLE
1632 2127
1633BOOT: 2128BOOT:
1634{ 2129{
1635#ifdef USE_ITHREADS 2130#ifdef USE_ITHREADS
1636 MUTEX_INIT (&coro_mutex); 2131# if CORO_PTHREAD
2132 coro_thx = PERL_GET_CONTEXT;
2133# endif
1637#endif 2134#endif
1638 BOOT_PAGESIZE; 2135 BOOT_PAGESIZE;
1639 2136
1640 irsgv = gv_fetchpv ("/" , GV_ADD|GV_NOTQUAL, SVt_PV); 2137 irsgv = gv_fetchpv ("/" , GV_ADD|GV_NOTQUAL, SVt_PV);
1641 stdoutgv = gv_fetchpv ("STDOUT", GV_ADD|GV_NOTQUAL, SVt_PVIO); 2138 stdoutgv = gv_fetchpv ("STDOUT", GV_ADD|GV_NOTQUAL, SVt_PVIO);
1659 main_top_env = PL_top_env; 2156 main_top_env = PL_top_env;
1660 2157
1661 while (main_top_env->je_prev) 2158 while (main_top_env->je_prev)
1662 main_top_env = main_top_env->je_prev; 2159 main_top_env = main_top_env->je_prev;
1663 2160
2161 {
2162 SV *slf = sv_2mortal (newSViv (PTR2IV (pp_slf)));
2163
2164 if (!PL_custom_op_names) PL_custom_op_names = newHV ();
2165 hv_store_ent (PL_custom_op_names, slf,
2166 newSVpv ("coro_slf", 0), 0);
2167
2168 if (!PL_custom_op_descs) PL_custom_op_descs = newHV ();
2169 hv_store_ent (PL_custom_op_descs, slf,
2170 newSVpv ("coro schedule like function", 0), 0);
2171 }
2172
1664 coroapi.ver = CORO_API_VERSION; 2173 coroapi.ver = CORO_API_VERSION;
1665 coroapi.rev = CORO_API_REVISION; 2174 coroapi.rev = CORO_API_REVISION;
2175
1666 coroapi.transfer = api_transfer; 2176 coroapi.transfer = api_transfer;
2177
2178 coroapi.sv_state = SvSTATE_;
2179 coroapi.execute_slf = api_execute_slf;
2180 coroapi.prepare_nop = prepare_nop;
2181 coroapi.prepare_schedule = prepare_schedule;
2182 coroapi.prepare_cede = prepare_cede;
2183 coroapi.prepare_cede_notself = prepare_cede_notself;
2184
2185 {
2186 SV **svp = hv_fetch (PL_modglobal, "Time::NVtime", 12, 0);
2187
2188 if (!svp) croak ("Time::HiRes is required");
2189 if (!SvIOK (*svp)) croak ("Time::NVtime isn't a function pointer");
2190
2191 nvtime = INT2PTR (double (*)(), SvIV (*svp));
2192 }
1667 2193
1668 assert (("PRIO_NORMAL must be 0", !PRIO_NORMAL)); 2194 assert (("PRIO_NORMAL must be 0", !PRIO_NORMAL));
1669} 2195}
1670 2196
1671SV * 2197SV *
1695 av_push (coro->args, newSVsv (ST (i))); 2221 av_push (coro->args, newSVsv (ST (i)));
1696} 2222}
1697 OUTPUT: 2223 OUTPUT:
1698 RETVAL 2224 RETVAL
1699 2225
1700# these not obviously related functions are all rolled into the same xs
1701# function to increase chances that they all will call transfer with the same
1702# stack offset
1703void 2226void
1704_set_stacklevel (...) 2227_set_stacklevel (...)
1705 ALIAS: 2228 CODE:
1706 Coro::State::transfer = 1 2229 CORO_EXECUTE_SLF_XS (slf_init_set_stacklevel);
1707 Coro::schedule = 2
1708 Coro::cede = 3
1709 Coro::cede_notself = 4
1710 CODE:
1711{
1712 struct transfer_args ta;
1713 2230
1714 PUTBACK; 2231void
1715 switch (ix) 2232transfer (...)
1716 { 2233 PROTOTYPE: $$
1717 case 0: 2234 CODE:
1718 ta.prev = (struct coro *)INT2PTR (coro_cctx *, SvIV (ST (0))); 2235 CORO_EXECUTE_SLF_XS (slf_init_transfer);
1719 ta.next = 0;
1720 break;
1721
1722 case 1:
1723 if (items != 2)
1724 croak ("Coro::State::transfer (prev,next) expects two arguments, not %d", items);
1725
1726 prepare_transfer (aTHX_ &ta, ST (0), ST (1));
1727 break;
1728
1729 case 2:
1730 prepare_schedule (aTHX_ &ta);
1731 break;
1732
1733 case 3:
1734 prepare_cede (aTHX_ &ta);
1735 break;
1736
1737 case 4:
1738 if (!prepare_cede_notself (aTHX_ &ta))
1739 XSRETURN_EMPTY;
1740
1741 break;
1742 }
1743 SPAGAIN;
1744
1745 BARRIER;
1746 PUTBACK;
1747 TRANSFER (ta, 0);
1748 SPAGAIN; /* might be the sp of a different coroutine now */
1749 /* be extra careful not to ever do anything after TRANSFER */
1750}
1751 2236
1752bool 2237bool
1753_destroy (SV *coro_sv) 2238_destroy (SV *coro_sv)
1754 CODE: 2239 CODE:
1755 RETVAL = coro_state_destroy (aTHX_ SvSTATE (coro_sv)); 2240 RETVAL = coro_state_destroy (aTHX_ SvSTATE (coro_sv));
1762 CODE: 2247 CODE:
1763 _exit (code); 2248 _exit (code);
1764 2249
1765int 2250int
1766cctx_stacksize (int new_stacksize = 0) 2251cctx_stacksize (int new_stacksize = 0)
2252 PROTOTYPE: ;$
1767 CODE: 2253 CODE:
1768 RETVAL = coro_stacksize; 2254 RETVAL = cctx_stacksize;
1769 if (new_stacksize) 2255 if (new_stacksize)
2256 {
1770 coro_stacksize = new_stacksize; 2257 cctx_stacksize = new_stacksize;
2258 ++cctx_gen;
2259 }
1771 OUTPUT: 2260 OUTPUT:
1772 RETVAL 2261 RETVAL
1773 2262
1774int 2263int
2264cctx_max_idle (int max_idle = 0)
2265 PROTOTYPE: ;$
2266 CODE:
2267 RETVAL = cctx_max_idle;
2268 if (max_idle > 1)
2269 cctx_max_idle = max_idle;
2270 OUTPUT:
2271 RETVAL
2272
2273int
1775cctx_count () 2274cctx_count ()
2275 PROTOTYPE:
1776 CODE: 2276 CODE:
1777 RETVAL = cctx_count; 2277 RETVAL = cctx_count;
1778 OUTPUT: 2278 OUTPUT:
1779 RETVAL 2279 RETVAL
1780 2280
1781int 2281int
1782cctx_idle () 2282cctx_idle ()
2283 PROTOTYPE:
1783 CODE: 2284 CODE:
1784 RETVAL = cctx_idle; 2285 RETVAL = cctx_idle;
1785 OUTPUT: 2286 OUTPUT:
1786 RETVAL 2287 RETVAL
1787 2288
1788void 2289void
1789list () 2290list ()
2291 PROTOTYPE:
1790 PPCODE: 2292 PPCODE:
1791{ 2293{
1792 struct coro *coro; 2294 struct coro *coro;
1793 for (coro = coro_first; coro; coro = coro->next) 2295 for (coro = coro_first; coro; coro = coro->next)
1794 if (coro->hv) 2296 if (coro->hv)
1799call (Coro::State coro, SV *coderef) 2301call (Coro::State coro, SV *coderef)
1800 ALIAS: 2302 ALIAS:
1801 eval = 1 2303 eval = 1
1802 CODE: 2304 CODE:
1803{ 2305{
1804 if (coro->mainstack) 2306 if (coro->mainstack && ((coro->flags & CF_RUNNING) || coro->slot))
1805 { 2307 {
1806 struct coro temp; 2308 struct coro temp;
1807 2309
1808 if (!(coro->flags & CF_RUNNING)) 2310 if (!(coro->flags & CF_RUNNING))
1809 { 2311 {
1853 RETVAL = boolSV (coro->flags & ix); 2355 RETVAL = boolSV (coro->flags & ix);
1854 OUTPUT: 2356 OUTPUT:
1855 RETVAL 2357 RETVAL
1856 2358
1857void 2359void
2360throw (Coro::State self, SV *throw = &PL_sv_undef)
2361 PROTOTYPE: $;$
2362 CODE:
2363{
2364 struct coro *current = SvSTATE_current;
2365 SV **throwp = self == current ? &coro_throw : &self->throw;
2366 SvREFCNT_dec (*throwp);
2367 *throwp = SvOK (throw) ? newSVsv (throw) : 0;
2368}
2369
2370void
1858api_trace (SV *coro, int flags = CC_TRACE | CC_TRACE_SUB) 2371api_trace (SV *coro, int flags = CC_TRACE | CC_TRACE_SUB)
2372 PROTOTYPE: $;$
2373 C_ARGS: aTHX_ coro, flags
1859 2374
1860SV * 2375SV *
1861has_cctx (Coro::State coro) 2376has_cctx (Coro::State coro)
1862 PROTOTYPE: $ 2377 PROTOTYPE: $
1863 CODE: 2378 CODE:
1871 CODE: 2386 CODE:
1872 RETVAL = (coro->cctx ? coro->cctx->flags : 0) & CC_TRACE_ALL; 2387 RETVAL = (coro->cctx ? coro->cctx->flags : 0) & CC_TRACE_ALL;
1873 OUTPUT: 2388 OUTPUT:
1874 RETVAL 2389 RETVAL
1875 2390
1876IV 2391UV
1877rss (Coro::State coro) 2392rss (Coro::State coro)
1878 PROTOTYPE: $ 2393 PROTOTYPE: $
1879 ALIAS: 2394 ALIAS:
1880 usecount = 1 2395 usecount = 1
1881 CODE: 2396 CODE:
1887 OUTPUT: 2402 OUTPUT:
1888 RETVAL 2403 RETVAL
1889 2404
1890void 2405void
1891force_cctx () 2406force_cctx ()
2407 PROTOTYPE:
1892 CODE: 2408 CODE:
1893 struct coro *coro = SvSTATE (coro_current);
1894 coro->cctx->idle_sp = 0; 2409 SvSTATE_current->cctx->idle_sp = 0;
2410
2411void
2412swap_defsv (Coro::State self)
2413 PROTOTYPE: $
2414 ALIAS:
2415 swap_defav = 1
2416 CODE:
2417 if (!self->slot)
2418 croak ("cannot swap state with coroutine that has no saved state,");
2419 else
2420 {
2421 SV **src = ix ? (SV **)&GvAV (PL_defgv) : &GvSV (PL_defgv);
2422 SV **dst = ix ? (SV **)&self->slot->defav : (SV **)&self->slot->defsv;
2423
2424 SV *tmp = *src; *src = *dst; *dst = tmp;
2425 }
1895 2426
1896MODULE = Coro::State PACKAGE = Coro 2427MODULE = Coro::State PACKAGE = Coro
1897 2428
1898BOOT: 2429BOOT:
1899{ 2430{
1917 2448
1918 for (i = PRIO_MAX - PRIO_MIN + 1; i--; ) 2449 for (i = PRIO_MAX - PRIO_MIN + 1; i--; )
1919 coro_ready[i] = newAV (); 2450 coro_ready[i] = newAV ();
1920 2451
1921 { 2452 {
1922 SV *sv = perl_get_sv ("Coro::API", TRUE); 2453 SV *sv = coro_get_sv (aTHX_ "Coro::API", TRUE);
1923 perl_get_sv ("Coro::API", TRUE); /* silence 5.10 warning */
1924 2454
1925 coroapi.schedule = api_schedule; 2455 coroapi.schedule = api_schedule;
1926 coroapi.cede = api_cede; 2456 coroapi.cede = api_cede;
1927 coroapi.cede_notself = api_cede_notself; 2457 coroapi.cede_notself = api_cede_notself;
1928 coroapi.ready = api_ready; 2458 coroapi.ready = api_ready;
1929 coroapi.is_ready = api_is_ready; 2459 coroapi.is_ready = api_is_ready;
1930 coroapi.nready = &coro_nready; 2460 coroapi.nready = coro_nready;
1931 coroapi.current = coro_current; 2461 coroapi.current = coro_current;
1932 2462
1933 GCoroAPI = &coroapi; 2463 GCoroAPI = &coroapi;
1934 sv_setiv (sv, (IV)&coroapi); 2464 sv_setiv (sv, (IV)&coroapi);
1935 SvREADONLY_on (sv); 2465 SvREADONLY_on (sv);
1936 } 2466 }
1937} 2467}
2468
2469void
2470schedule (...)
2471 CODE:
2472 CORO_EXECUTE_SLF_XS (slf_init_schedule);
2473
2474void
2475cede (...)
2476 CODE:
2477 CORO_EXECUTE_SLF_XS (slf_init_cede);
2478
2479void
2480cede_notself (...)
2481 CODE:
2482 CORO_EXECUTE_SLF_XS (slf_init_cede_notself);
1938 2483
1939void 2484void
1940_set_current (SV *current) 2485_set_current (SV *current)
1941 PROTOTYPE: $ 2486 PROTOTYPE: $
1942 CODE: 2487 CODE:
1943 SvREFCNT_dec (SvRV (coro_current)); 2488 SvREFCNT_dec (SvRV (coro_current));
1944 SvRV_set (coro_current, SvREFCNT_inc (SvRV (current))); 2489 SvRV_set (coro_current, SvREFCNT_inc_NN (SvRV (current)));
1945 2490
1946void 2491void
1947_set_readyhook (SV *hook) 2492_set_readyhook (SV *hook)
1948 PROTOTYPE: $ 2493 PROTOTYPE: $
1949 CODE: 2494 CODE:
1950 LOCK;
1951 SvREFCNT_dec (coro_readyhook); 2495 SvREFCNT_dec (coro_readyhook);
1952 coro_readyhook = SvOK (hook) ? newSVsv (hook) : 0; 2496 coro_readyhook = SvOK (hook) ? newSVsv (hook) : 0;
1953 UNLOCK;
1954 2497
1955int 2498int
1956prio (Coro::State coro, int newprio = 0) 2499prio (Coro::State coro, int newprio = 0)
2500 PROTOTYPE: $;$
1957 ALIAS: 2501 ALIAS:
1958 nice = 1 2502 nice = 1
1959 CODE: 2503 CODE:
1960{ 2504{
1961 RETVAL = coro->prio; 2505 RETVAL = coro->prio;
1976 2520
1977SV * 2521SV *
1978ready (SV *self) 2522ready (SV *self)
1979 PROTOTYPE: $ 2523 PROTOTYPE: $
1980 CODE: 2524 CODE:
1981 RETVAL = boolSV (api_ready (self)); 2525 RETVAL = boolSV (api_ready (aTHX_ self));
1982 OUTPUT: 2526 OUTPUT:
1983 RETVAL 2527 RETVAL
1984 2528
1985int 2529int
1986nready (...) 2530nready (...)
1988 CODE: 2532 CODE:
1989 RETVAL = coro_nready; 2533 RETVAL = coro_nready;
1990 OUTPUT: 2534 OUTPUT:
1991 RETVAL 2535 RETVAL
1992 2536
1993void
1994throw (Coro::State self, SV *throw = &PL_sv_undef)
1995 PROTOTYPE: $;$
1996 CODE:
1997 SvREFCNT_dec (self->throw);
1998 self->throw = SvOK (throw) ? newSVsv (throw) : 0;
1999
2000void
2001swap_defsv (Coro::State self)
2002 PROTOTYPE: $
2003 ALIAS:
2004 swap_defav = 1
2005 CODE:
2006 if (!self->slot)
2007 croak ("cannot swap state with coroutine that has no saved state");
2008 else
2009 {
2010 SV **src = ix ? (SV **)&GvAV (PL_defgv) : &GvSV (PL_defgv);
2011 SV **dst = ix ? (SV **)&self->slot->defav : (SV **)&self->slot->defsv;
2012
2013 SV *tmp = *src; *src = *dst; *dst = tmp;
2014 }
2015
2016# for async_pool speedup 2537# for async_pool speedup
2017void 2538void
2018_pool_1 (SV *cb) 2539_pool_1 (SV *cb)
2019 CODE: 2540 CODE:
2020{ 2541{
2021 struct coro *coro = SvSTATE (coro_current);
2022 HV *hv = (HV *)SvRV (coro_current); 2542 HV *hv = (HV *)SvRV (coro_current);
2543 struct coro *coro = SvSTATE_hv ((SV *)hv);
2023 AV *defav = GvAV (PL_defgv); 2544 AV *defav = GvAV (PL_defgv);
2024 SV *invoke = hv_delete (hv, "_invoke", sizeof ("_invoke") - 1, 0); 2545 SV *invoke = hv_delete (hv, "_invoke", sizeof ("_invoke") - 1, 0);
2025 AV *invoke_av; 2546 AV *invoke_av;
2026 int i, len; 2547 int i, len;
2027 2548
2032 SvREFCNT_dec (old); 2553 SvREFCNT_dec (old);
2033 croak ("\3async_pool terminate\2\n"); 2554 croak ("\3async_pool terminate\2\n");
2034 } 2555 }
2035 2556
2036 SvREFCNT_dec (coro->saved_deffh); 2557 SvREFCNT_dec (coro->saved_deffh);
2037 coro->saved_deffh = SvREFCNT_inc ((SV *)PL_defoutgv); 2558 coro->saved_deffh = SvREFCNT_inc_NN ((SV *)PL_defoutgv);
2038 2559
2039 hv_store (hv, "desc", sizeof ("desc") - 1, 2560 hv_store (hv, "desc", sizeof ("desc") - 1,
2040 newSVpvn ("[async_pool]", sizeof ("[async_pool]") - 1), 0); 2561 newSVpvn ("[async_pool]", sizeof ("[async_pool]") - 1), 0);
2041 2562
2042 invoke_av = (AV *)SvRV (invoke); 2563 invoke_av = (AV *)SvRV (invoke);
2046 2567
2047 if (len > 0) 2568 if (len > 0)
2048 { 2569 {
2049 av_fill (defav, len - 1); 2570 av_fill (defav, len - 1);
2050 for (i = 0; i < len; ++i) 2571 for (i = 0; i < len; ++i)
2051 av_store (defav, i, SvREFCNT_inc (AvARRAY (invoke_av)[i + 1])); 2572 av_store (defav, i, SvREFCNT_inc_NN (AvARRAY (invoke_av)[i + 1]));
2052 } 2573 }
2053
2054 SvREFCNT_dec (invoke);
2055} 2574}
2056 2575
2057void 2576void
2058_pool_2 (SV *cb) 2577_pool_2 (SV *cb)
2059 CODE: 2578 CODE:
2060{ 2579{
2061 struct coro *coro = SvSTATE (coro_current); 2580 HV *hv = (HV *)SvRV (coro_current);
2581 struct coro *coro = SvSTATE_hv ((SV *)hv);
2062 2582
2063 sv_setsv (cb, &PL_sv_undef); 2583 sv_setsv (cb, &PL_sv_undef);
2064 2584
2065 SvREFCNT_dec ((SV *)PL_defoutgv); PL_defoutgv = (GV *)coro->saved_deffh; 2585 SvREFCNT_dec ((SV *)PL_defoutgv); PL_defoutgv = (GV *)coro->saved_deffh;
2066 coro->saved_deffh = 0; 2586 coro->saved_deffh = 0;
2067 2587
2068 if (coro_rss (aTHX_ coro) > SvIV (sv_pool_rss) 2588 if (coro_rss (aTHX_ coro) > SvUV (sv_pool_rss)
2069 || av_len (av_async_pool) + 1 >= SvIV (sv_pool_size)) 2589 || av_len (av_async_pool) + 1 >= SvIV (sv_pool_size))
2070 { 2590 {
2071 SV *old = PL_diehook; 2591 SV *old = PL_diehook;
2072 PL_diehook = 0; 2592 PL_diehook = 0;
2073 SvREFCNT_dec (old); 2593 SvREFCNT_dec (old);
2074 croak ("\3async_pool terminate\2\n"); 2594 croak ("\3async_pool terminate\2\n");
2075 } 2595 }
2076 2596
2077 av_clear (GvAV (PL_defgv)); 2597 av_clear (GvAV (PL_defgv));
2078 hv_store ((HV *)SvRV (coro_current), "desc", sizeof ("desc") - 1, 2598 hv_store (hv, "desc", sizeof ("desc") - 1,
2079 newSVpvn ("[async_pool idle]", sizeof ("[async_pool idle]") - 1), 0); 2599 newSVpvn ("[async_pool idle]", sizeof ("[async_pool idle]") - 1), 0);
2080 2600
2081 coro->prio = 0; 2601 coro->prio = 0;
2082 2602
2083 if (coro->cctx && (coro->cctx->flags & CC_TRACE)) 2603 if (coro->cctx && (coro->cctx->flags & CC_TRACE))
2084 api_trace (coro_current, 0); 2604 api_trace (aTHX_ coro_current, 0);
2085 2605
2086 av_push (av_async_pool, newSVsv (coro_current)); 2606 av_push (av_async_pool, newSVsv (coro_current));
2087} 2607}
2088 2608
2089 2609
2090MODULE = Coro::State PACKAGE = Coro::AIO 2610MODULE = Coro::State PACKAGE = Coro::AIO
2091 2611
2092SV * 2612void
2093_get_state () 2613_get_state (SV *self)
2614 PROTOTYPE: $
2094 CODE: 2615 PPCODE:
2095{ 2616{
2096 struct io_state *data; 2617 AV *defav = GvAV (PL_defgv);
2097 2618 AV *av = newAV ();
2619 int i;
2098 RETVAL = newSV (sizeof (struct io_state)); 2620 SV *data_sv = newSV (sizeof (struct io_state));
2099 data = (struct io_state *)SvPVX (RETVAL); 2621 struct io_state *data = (struct io_state *)SvPVX (data_sv);
2100 SvCUR_set (RETVAL, sizeof (struct io_state)); 2622 SvCUR_set (data_sv, sizeof (struct io_state));
2101 SvPOK_only (RETVAL); 2623 SvPOK_only (data_sv);
2102 2624
2103 data->errorno = errno; 2625 data->errorno = errno;
2104 data->laststype = PL_laststype; 2626 data->laststype = PL_laststype;
2105 data->laststatval = PL_laststatval; 2627 data->laststatval = PL_laststatval;
2106 data->statcache = PL_statcache; 2628 data->statcache = PL_statcache;
2629
2630 av_extend (av, AvFILLp (defav) + 1 + 1);
2631
2632 for (i = 0; i <= AvFILLp (defav); ++i)
2633 av_push (av, SvREFCNT_inc_NN (AvARRAY (defav)[i]));
2634
2635 av_push (av, data_sv);
2636
2637 XPUSHs (sv_2mortal (newRV_noinc ((SV *)av)));
2638
2639 api_ready (aTHX_ self);
2107} 2640}
2108 OUTPUT:
2109 RETVAL
2110 2641
2111void 2642void
2112_set_state (char *data_) 2643_set_state (SV *state)
2113 PROTOTYPE: $ 2644 PROTOTYPE: $
2114 CODE: 2645 PPCODE:
2115{ 2646{
2116 struct io_state *data = (void *)data_; 2647 AV *av = (AV *)SvRV (state);
2648 struct io_state *data = (struct io_state *)SvPVX (AvARRAY (av)[AvFILLp (av)]);
2649 int i;
2117 2650
2118 errno = data->errorno; 2651 errno = data->errorno;
2119 PL_laststype = data->laststype; 2652 PL_laststype = data->laststype;
2120 PL_laststatval = data->laststatval; 2653 PL_laststatval = data->laststatval;
2121 PL_statcache = data->statcache; 2654 PL_statcache = data->statcache;
2655
2656 EXTEND (SP, AvFILLp (av));
2657 for (i = 0; i < AvFILLp (av); ++i)
2658 PUSHs (sv_2mortal (SvREFCNT_inc_NN (AvARRAY (av)[i])));
2122} 2659}
2123 2660
2124 2661
2125MODULE = Coro::State PACKAGE = Coro::AnyEvent 2662MODULE = Coro::State PACKAGE = Coro::AnyEvent
2126 2663
2127BOOT: 2664BOOT:
2128 sv_activity = coro_get_sv (aTHX_ "Coro::AnyEvent::ACTIVITY", TRUE); 2665 sv_activity = coro_get_sv (aTHX_ "Coro::AnyEvent::ACTIVITY", TRUE);
2129 2666
2130SV * 2667void
2131_schedule (...) 2668_schedule (...)
2132 PROTOTYPE: @
2133 CODE: 2669 CODE:
2134{ 2670{
2135 static int incede; 2671 static int incede;
2136 2672
2137 api_cede_notself (); 2673 api_cede_notself (aTHX);
2138 2674
2139 ++incede; 2675 ++incede;
2140 while (coro_nready >= incede && api_cede ()) 2676 while (coro_nready >= incede && api_cede (aTHX))
2141 ; 2677 ;
2142 2678
2143 sv_setsv (sv_activity, &PL_sv_undef); 2679 sv_setsv (sv_activity, &PL_sv_undef);
2144 if (coro_nready >= incede) 2680 if (coro_nready >= incede)
2145 { 2681 {
2150 } 2686 }
2151 2687
2152 --incede; 2688 --incede;
2153} 2689}
2154 2690
2691
2692MODULE = Coro::State PACKAGE = PerlIO::cede
2693
2694BOOT:
2695 PerlIO_define_layer (aTHX_ &PerlIO_cede);
2696
2697MODULE = Coro::State PACKAGE = Coro::Semaphore
2698
2699SV *
2700new (SV *klass, SV *count_ = 0)
2701 CODE:
2702{
2703 /* a semaphore contains a counter IV in $sem->[0] and any waiters after that */
2704 AV *av = newAV ();
2705 av_push (av, newSViv (count_ && SvOK (count_) ? SvIV (count_) : 1));
2706 RETVAL = sv_bless (newRV_noinc ((SV *)av), GvSTASH (CvGV (cv)));
2707}
2708 OUTPUT:
2709 RETVAL
2710
2711SV *
2712count (SV *self)
2713 CODE:
2714 RETVAL = newSVsv (AvARRAY ((AV *)SvRV (self))[0]);
2715 OUTPUT:
2716 RETVAL
2717
2718void
2719up (SV *self, int adjust = 1)
2720 ALIAS:
2721 adjust = 1
2722 CODE:
2723 coro_semaphore_adjust (aTHX_ (AV *)SvRV (self), ix ? adjust : 1);
2724
2725void
2726down (SV *self)
2727 CODE:
2728 CORO_EXECUTE_SLF_XS (slf_init_semaphore_down);
2729
2730void
2731try (SV *self)
2732 PPCODE:
2733{
2734 AV *av = (AV *)SvRV (self);
2735 SV *count_sv = AvARRAY (av)[0];
2736 IV count = SvIVX (count_sv);
2737
2738 if (count > 0)
2739 {
2740 --count;
2741 SvIVX (count_sv) = count;
2742 XSRETURN_YES;
2743 }
2744 else
2745 XSRETURN_NO;
2746}
2747
2748void
2749waiters (SV *self)
2750 CODE:
2751{
2752 AV *av = (AV *)SvRV (self);
2753
2754 if (GIMME_V == G_SCALAR)
2755 XPUSHs (sv_2mortal (newSVsv (AvARRAY (av)[0])));
2756 else
2757 {
2758 int i;
2759 EXTEND (SP, AvFILLp (av) + 1 - 1);
2760 for (i = 1; i <= AvFILLp (av); ++i)
2761 PUSHs (newSVsv (AvARRAY (av)[i]));
2762 }
2763}
2764

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