blob: 75dd07742b4b7d8748f1ec0f3cd0bec4516b2eb3 [file] [log] [blame]
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001#include <sys/socket.h>
2
Thierry FOURNIER6f1fd482015-01-23 14:06:13 +01003#include <lauxlib.h>
4#include <lua.h>
5#include <lualib.h>
6
Cyril Bontédc0306e2015-03-02 00:08:40 +01007#if !defined(LUA_VERSION_NUM) || LUA_VERSION_NUM < 502
8#error "Requires Lua 5.2 or later."
9#endif
10
Thierry FOURNIER380d0932015-01-23 14:27:52 +010011#include <ebpttree.h>
12
13#include <common/cfgparse.h>
14
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +010015#include <types/connection.h>
Thierry FOURNIER380d0932015-01-23 14:27:52 +010016#include <types/hlua.h>
Thierry FOURNIER65f34c62015-02-16 20:11:43 +010017#include <types/proto_tcp.h>
Thierry FOURNIER380d0932015-01-23 14:27:52 +010018#include <types/proxy.h>
19
Thierry FOURNIER55da1652015-01-23 11:36:30 +010020#include <proto/arg.h>
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +010021#include <proto/channel.h>
Thierry FOURNIER9a819e72015-02-16 20:22:55 +010022#include <proto/hdr_idx.h>
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +010023#include <proto/hlua.h>
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +010024#include <proto/obj_type.h>
Thierry FOURNIER83758bb2015-02-04 13:21:04 +010025#include <proto/pattern.h>
Thierry FOURNIERd0fa5382015-02-16 20:14:51 +010026#include <proto/payload.h>
27#include <proto/proto_http.h>
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +010028#include <proto/proto_tcp.h>
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +010029#include <proto/raw_sock.h>
Thierry FOURNIERd0fa5382015-02-16 20:14:51 +010030#include <proto/sample.h>
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +010031#include <proto/server.h>
32#include <proto/session.h>
33#include <proto/ssl_sock.h>
34#include <proto/stream_interface.h>
Thierry FOURNIER9ff7e6e2015-01-23 11:08:20 +010035#include <proto/task.h>
36
Thierry FOURNIER6f1fd482015-01-23 14:06:13 +010037/* Lua uses longjmp to perform yield or throwing errors. This
38 * macro is used only for identifying the function that can
39 * not return because a longjmp is executed.
40 * __LJMP marks a prototype of hlua file that can use longjmp.
41 * WILL_LJMP() marks an lua function that will use longjmp.
42 * MAY_LJMP() marks an lua function that may use longjmp.
43 */
44#define __LJMP
45#define WILL_LJMP(func) func
46#define MAY_LJMP(func) func
47
Thierry FOURNIER380d0932015-01-23 14:27:52 +010048/* The main Lua execution context. */
49struct hlua gL;
50
Thierry FOURNIER9ff7e6e2015-01-23 11:08:20 +010051/* This is the memory pool containing all the signal structs. These
52 * struct are used to store each requiered signal between two tasks.
53 */
54struct pool_head *pool2_hlua_com;
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +010055struct pool_head *pool2_hlua_sleep;
Thierry FOURNIER9ff7e6e2015-01-23 11:08:20 +010056
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +010057/* Used for Socket connection. */
58static struct proxy socket_proxy;
59static struct server socket_tcp;
60#ifdef USE_OPENSSL
61static struct server socket_ssl;
62#endif
63
Thierry FOURNIERa4a0f3d2015-01-23 12:08:30 +010064/* List head of the function called at the initialisation time. */
65struct list hlua_init_functions = LIST_HEAD_INIT(hlua_init_functions);
66
Thierry FOURNIER380d0932015-01-23 14:27:52 +010067/* Store the fast lua context for coroutines. This tree uses the
68 * Lua stack pointer value as indexed entry, and store the associated
69 * hlua context.
70 */
71struct eb_root hlua_ctx = EB_ROOT_UNIQUE;
72
Thierry FOURNIER2ba18a22015-01-23 14:07:08 +010073/* The following variables contains the reference of the different
74 * Lua classes. These references are useful for identify metadata
75 * associated with an object.
76 */
77static int class_core_ref;
Thierry FOURNIER65f34c62015-02-16 20:11:43 +010078static int class_txn_ref;
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +010079static int class_socket_ref;
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +010080static int class_channel_ref;
Thierry FOURNIER2ba18a22015-01-23 14:07:08 +010081
Thierry FOURNIERbd413492015-03-03 16:52:26 +010082/* Global Lua execution timeout. By default Lua, execution linked
83 * with session (actions, sample-fetches and converters) have a
84 * short timeout. Lua linked with tasks doesn't have a timeout
85 * because a task may remain alive during all the haproxy execution.
86 */
87static unsigned int hlua_timeout_session = 4000; /* session timeout. */
88static unsigned int hlua_timeout_task = TICK_ETERNITY; /* task timeout. */
89
Thierry FOURNIERee9f8022015-03-03 17:37:37 +010090/* Interrupts the Lua processing each "hlua_nb_instruction" instructions.
91 * it is used for preventing infinite loops.
92 *
93 * I test the scheer with an infinite loop containing one incrementation
94 * and one test. I run this loop between 10 seconds, I raise a ceil of
95 * 710M loops from one interrupt each 9000 instructions, so I fix the value
96 * to one interrupt each 10 000 instructions.
97 *
98 * configured | Number of
99 * instructions | loops executed
100 * between two | in milions
101 * forced yields |
102 * ---------------+---------------
103 * 10 | 160
104 * 500 | 670
105 * 1000 | 680
106 * 5000 | 700
107 * 7000 | 700
108 * 8000 | 700
109 * 9000 | 710 <- ceil
110 * 10000 | 710
111 * 100000 | 710
112 * 1000000 | 710
113 *
114 */
115static unsigned int hlua_nb_instruction = 10000;
116
Thierry FOURNIER55da1652015-01-23 11:36:30 +0100117/* These functions converts types between HAProxy internal args or
118 * sample and LUA types. Another function permits to check if the
119 * LUA stack contains arguments according with an required ARG_T
120 * format.
121 */
122static int hlua_arg2lua(lua_State *L, const struct arg *arg);
123static int hlua_lua2arg(lua_State *L, int ud, struct arg *arg);
124__LJMP static int hlua_lua2arg_check(lua_State *L, int first, struct arg *argp, unsigned int mask);
125static int hlua_smp2lua(lua_State *L, const struct sample *smp);
126static int hlua_lua2smp(lua_State *L, int ud, struct sample *smp);
127
Thierry FOURNIERe8b9a402015-02-25 18:48:12 +0100128/* Used to check an Lua function type in the stack. It creates and
129 * returns a reference of the function. This function throws an
130 * error if the rgument is not a "function".
131 */
132__LJMP unsigned int hlua_checkfunction(lua_State *L, int argno)
133{
134 if (!lua_isfunction(L, argno)) {
135 const char *msg = lua_pushfstring(L, "function expected, got %s", luaL_typename(L, -1));
136 WILL_LJMP(luaL_argerror(L, argno, msg));
137 }
138 lua_pushvalue(L, argno);
139 return luaL_ref(L, LUA_REGISTRYINDEX);
140}
141
142/* The three following functions are useful for adding entries
143 * in a table. These functions takes a string and respectively an
144 * integer, a string or a function and add it to the table in the
145 * top of the stack.
146 *
147 * These functions throws an error if no more stack size is
148 * available.
149 */
150__LJMP static inline void hlua_class_const_int(lua_State *L, const char *name,
Thierry FOURNIERf90838b2015-03-06 13:48:32 +0100151 int value)
Thierry FOURNIERe8b9a402015-02-25 18:48:12 +0100152{
153 if (!lua_checkstack(L, 2))
154 WILL_LJMP(luaL_error(L, "full stack"));
155 lua_pushstring(L, name);
Thierry FOURNIERf90838b2015-03-06 13:48:32 +0100156 lua_pushinteger(L, value);
Thierry FOURNIERe8b9a402015-02-25 18:48:12 +0100157 lua_settable(L, -3);
158}
159__LJMP static inline void hlua_class_const_str(lua_State *L, const char *name,
160 const char *value)
161{
162 if (!lua_checkstack(L, 2))
163 WILL_LJMP(luaL_error(L, "full stack"));
164 lua_pushstring(L, name);
165 lua_pushstring(L, value);
166 lua_settable(L, -3);
167}
168__LJMP static inline void hlua_class_function(lua_State *L, const char *name,
169 int (*function)(lua_State *L))
170{
171 if (!lua_checkstack(L, 2))
172 WILL_LJMP(luaL_error(L, "full stack"));
173 lua_pushstring(L, name);
174 lua_pushcclosure(L, function, 0);
175 lua_settable(L, -3);
176}
177
178/* This function check the number of arguments available in the
179 * stack. If the number of arguments available is not the same
180 * then <nb> an error is throwed.
181 */
182__LJMP static inline void check_args(lua_State *L, int nb, char *fcn)
183{
184 if (lua_gettop(L) == nb)
185 return;
186 WILL_LJMP(luaL_error(L, "'%s' needs %d arguments", fcn, nb));
187}
188
189/* Return true if the data in stack[<ud>] is an object of
190 * type <class_ref>.
191 */
192static int hlua_udataistype(lua_State *L, int ud, int class_ref)
193{
194 void *p = lua_touserdata(L, ud);
195 if (!p)
196 return 0;
197
198 if (!lua_getmetatable(L, ud))
199 return 0;
200
201 lua_rawgeti(L, LUA_REGISTRYINDEX, class_ref);
202 if (!lua_rawequal(L, -1, -2)) {
203 lua_pop(L, 2);
204 return 0;
205 }
206
207 lua_pop(L, 2);
208 return 1;
209}
210
211/* Return an object of the expected type, or throws an error. */
212__LJMP static void *hlua_checkudata(lua_State *L, int ud, int class_ref)
213{
214 if (!hlua_udataistype(L, ud, class_ref))
215 WILL_LJMP(luaL_argerror(L, 1, NULL));
216 return lua_touserdata(L, ud);
217}
218
219/* This fucntion push an error string prefixed by the file name
220 * and the line number where the error is encountered.
221 */
222static int hlua_pusherror(lua_State *L, const char *fmt, ...)
223{
224 va_list argp;
225 va_start(argp, fmt);
226 luaL_where(L, 1);
227 lua_pushvfstring(L, fmt, argp);
228 va_end(argp);
229 lua_concat(L, 2);
230 return 1;
231}
232
Thierry FOURNIER9ff7e6e2015-01-23 11:08:20 +0100233/* This function register a new signal. "lua" is the current lua
234 * execution context. It contains a pointer to the associated task.
235 * "link" is a list head attached to an other task that must be wake
236 * the lua task if an event occurs. This is useful with external
237 * events like TCP I/O or sleep functions. This funcion allocate
238 * memory for the signal.
239 */
240static int hlua_com_new(struct hlua *lua, struct list *link)
241{
242 struct hlua_com *com = pool_alloc2(pool2_hlua_com);
243 if (!com)
244 return 0;
245 LIST_ADDQ(&lua->com, &com->purge_me);
246 LIST_ADDQ(link, &com->wake_me);
247 com->task = lua->task;
248 return 1;
249}
250
251/* This function purge all the pending signals when the LUA execution
252 * is finished. This prevent than a coprocess try to wake a deleted
253 * task. This function remove the memory associated to the signal.
254 */
255static void hlua_com_purge(struct hlua *lua)
256{
257 struct hlua_com *com, *back;
258
259 /* Delete all pending communication signals. */
260 list_for_each_entry_safe(com, back, &lua->com, purge_me) {
261 LIST_DEL(&com->purge_me);
262 LIST_DEL(&com->wake_me);
263 pool_free2(pool2_hlua_com, com);
264 }
265}
266
267/* This function sends signals. It wakes all the tasks attached
268 * to a list head, and remove the signal, and free the used
269 * memory.
270 */
271static void hlua_com_wake(struct list *wake)
272{
273 struct hlua_com *com, *back;
274
275 /* Wake task and delete all pending communication signals. */
276 list_for_each_entry_safe(com, back, wake, wake_me) {
277 LIST_DEL(&com->purge_me);
278 LIST_DEL(&com->wake_me);
279 task_wakeup(com->task, TASK_WOKEN_MSG);
280 pool_free2(pool2_hlua_com, com);
281 }
282}
283
Thierry FOURNIER55da1652015-01-23 11:36:30 +0100284/* This functions is used with sample fetch and converters. It
285 * converts the HAProxy configuration argument in a lua stack
286 * values.
287 *
288 * It takes an array of "arg", and each entry of the array is
289 * converted and pushed in the LUA stack.
290 */
291static int hlua_arg2lua(lua_State *L, const struct arg *arg)
292{
293 switch (arg->type) {
294 case ARGT_SINT:
295 lua_pushinteger(L, arg->data.sint);
296 break;
297
298 case ARGT_UINT:
299 case ARGT_TIME:
300 case ARGT_SIZE:
Thierry FOURNIERf90838b2015-03-06 13:48:32 +0100301 lua_pushinteger(L, arg->data.sint);
Thierry FOURNIER55da1652015-01-23 11:36:30 +0100302 break;
303
304 case ARGT_STR:
305 lua_pushlstring(L, arg->data.str.str, arg->data.str.len);
306 break;
307
308 case ARGT_IPV4:
309 case ARGT_IPV6:
310 case ARGT_MSK4:
311 case ARGT_MSK6:
312 case ARGT_FE:
313 case ARGT_BE:
314 case ARGT_TAB:
315 case ARGT_SRV:
316 case ARGT_USR:
317 case ARGT_MAP:
318 default:
319 lua_pushnil(L);
320 break;
321 }
322 return 1;
323}
324
325/* This function take one entrie in an LUA stack at the index "ud",
326 * and try to convert it in an HAProxy argument entry. This is useful
327 * with sample fetch wrappers. The input arguments are gived to the
328 * lua wrapper and converted as arg list by thi function.
329 */
330static int hlua_lua2arg(lua_State *L, int ud, struct arg *arg)
331{
332 switch (lua_type(L, ud)) {
333
334 case LUA_TNUMBER:
335 case LUA_TBOOLEAN:
336 arg->type = ARGT_SINT;
337 arg->data.sint = lua_tointeger(L, ud);
338 break;
339
340 case LUA_TSTRING:
341 arg->type = ARGT_STR;
342 arg->data.str.str = (char *)lua_tolstring(L, ud, (size_t *)&arg->data.str.len);
343 break;
344
345 case LUA_TUSERDATA:
346 case LUA_TNIL:
347 case LUA_TTABLE:
348 case LUA_TFUNCTION:
349 case LUA_TTHREAD:
350 case LUA_TLIGHTUSERDATA:
351 arg->type = ARGT_SINT;
352 arg->data.uint = 0;
353 break;
354 }
355 return 1;
356}
357
358/* the following functions are used to convert a struct sample
359 * in Lua type. This useful to convert the return of the
360 * fetchs or converters.
361 */
362static int hlua_smp2lua(lua_State *L, const struct sample *smp)
363{
364 switch (smp->type) {
365 case SMP_T_SINT:
Thierry FOURNIER55da1652015-01-23 11:36:30 +0100366 case SMP_T_BOOL:
367 case SMP_T_UINT:
Thierry FOURNIERf90838b2015-03-06 13:48:32 +0100368 lua_pushinteger(L, smp->data.sint);
Thierry FOURNIER55da1652015-01-23 11:36:30 +0100369 break;
370
371 case SMP_T_BIN:
372 case SMP_T_STR:
373 lua_pushlstring(L, smp->data.str.str, smp->data.str.len);
374 break;
375
376 case SMP_T_METH:
377 switch (smp->data.meth.meth) {
378 case HTTP_METH_OPTIONS: lua_pushstring(L, "OPTIONS"); break;
379 case HTTP_METH_GET: lua_pushstring(L, "GET"); break;
380 case HTTP_METH_HEAD: lua_pushstring(L, "HEAD"); break;
381 case HTTP_METH_POST: lua_pushstring(L, "POST"); break;
382 case HTTP_METH_PUT: lua_pushstring(L, "PUT"); break;
383 case HTTP_METH_DELETE: lua_pushstring(L, "DELETE"); break;
384 case HTTP_METH_TRACE: lua_pushstring(L, "TRACE"); break;
385 case HTTP_METH_CONNECT: lua_pushstring(L, "CONNECT"); break;
386 case HTTP_METH_OTHER:
387 lua_pushlstring(L, smp->data.meth.str.str, smp->data.meth.str.len);
388 break;
389 default:
390 lua_pushnil(L);
391 break;
392 }
393 break;
394
395 case SMP_T_IPV4:
396 case SMP_T_IPV6:
397 case SMP_T_ADDR: /* This type is never used to qualify a sample. */
398 default:
399 lua_pushnil(L);
400 break;
401 }
402 return 1;
403}
404
405/* the following functions are used to convert an Lua type in a
406 * struct sample. This is useful to provide data from a converter
407 * to the LUA code.
408 */
409static int hlua_lua2smp(lua_State *L, int ud, struct sample *smp)
410{
411 switch (lua_type(L, ud)) {
412
413 case LUA_TNUMBER:
414 smp->type = SMP_T_SINT;
415 smp->data.sint = lua_tointeger(L, ud);
416 break;
417
418
419 case LUA_TBOOLEAN:
420 smp->type = SMP_T_BOOL;
421 smp->data.uint = lua_toboolean(L, ud);
422 break;
423
424 case LUA_TSTRING:
425 smp->type = SMP_T_STR;
426 smp->flags |= SMP_F_CONST;
427 smp->data.str.str = (char *)lua_tolstring(L, ud, (size_t *)&smp->data.str.len);
428 break;
429
430 case LUA_TUSERDATA:
431 case LUA_TNIL:
432 case LUA_TTABLE:
433 case LUA_TFUNCTION:
434 case LUA_TTHREAD:
435 case LUA_TLIGHTUSERDATA:
436 smp->type = SMP_T_BOOL;
437 smp->data.uint = 0;
438 break;
439 }
440 return 1;
441}
442
443/* This function check the "argp" builded by another conversion function
444 * is in accord with the expected argp defined by the "mask". The fucntion
445 * returns true or false. It can be adjust the types if there compatibles.
446 */
447__LJMP int hlua_lua2arg_check(lua_State *L, int first, struct arg *argp, unsigned int mask)
448{
449 int min_arg;
450 int idx;
451
452 idx = 0;
453 min_arg = ARGM(mask);
454 mask >>= ARGM_BITS;
455
456 while (1) {
457
458 /* Check oversize. */
459 if (idx >= ARGM_NBARGS && argp[idx].type != ARGT_STOP) {
Cyril Bonté577a36a2015-03-02 00:08:38 +0100460 WILL_LJMP(luaL_argerror(L, first + idx, "Malformed argument mask"));
Thierry FOURNIER55da1652015-01-23 11:36:30 +0100461 }
462
463 /* Check for mandatory arguments. */
464 if (argp[idx].type == ARGT_STOP) {
465 if (idx + 1 < min_arg)
466 WILL_LJMP(luaL_argerror(L, first + idx, "Mandatory argument expected"));
467 return 0;
468 }
469
470 /* Check for exceed the number of requiered argument. */
471 if ((mask & ARGT_MASK) == ARGT_STOP &&
472 argp[idx].type != ARGT_STOP) {
473 WILL_LJMP(luaL_argerror(L, first + idx, "Last argument expected"));
474 }
475
476 if ((mask & ARGT_MASK) == ARGT_STOP &&
477 argp[idx].type == ARGT_STOP) {
478 return 0;
479 }
480
481 /* Compatibility mask. */
482 switch (argp[idx].type) {
483 case ARGT_SINT:
484 switch (mask & ARGT_MASK) {
485 case ARGT_UINT: argp[idx].type = mask & ARGT_MASK; break;
486 case ARGT_TIME: argp[idx].type = mask & ARGT_MASK; break;
487 case ARGT_SIZE: argp[idx].type = mask & ARGT_MASK; break;
488 }
489 break;
490 }
491
492 /* Check for type of argument. */
493 if ((mask & ARGT_MASK) != argp[idx].type) {
494 const char *msg = lua_pushfstring(L, "'%s' expected, got '%s'",
495 arg_type_names[(mask & ARGT_MASK)],
496 arg_type_names[argp[idx].type & ARGT_MASK]);
497 WILL_LJMP(luaL_argerror(L, first + idx, msg));
498 }
499
500 /* Next argument. */
501 mask >>= ARGT_BITS;
502 idx++;
503 }
504}
505
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100506/*
507 * The following functions are used to make correspondance between the the
508 * executed lua pointer and the "struct hlua *" that contain the context.
509 * They run with the tree head "hlua_ctx", they just perform lookup in the
510 * tree.
511 *
512 * - hlua_gethlua : return the hlua context associated with an lua_State.
513 * - hlua_delhlua : remove the association between hlua context and lua_state.
514 * - hlua_sethlua : create the association between hlua context and lua_state.
515 */
516static inline struct hlua *hlua_gethlua(lua_State *L)
517{
518 struct ebpt_node *node;
519
520 node = ebpt_lookup(&hlua_ctx, L);
521 if (!node)
522 return NULL;
523 return ebpt_entry(node, struct hlua, node);
524}
525static inline void hlua_delhlua(struct hlua *hlua)
526{
527 if (hlua->node.key)
528 ebpt_delete(&hlua->node);
529}
530static inline void hlua_sethlua(struct hlua *hlua)
531{
532 hlua->node.key = hlua->T;
533 ebpt_insert(&hlua_ctx, &hlua->node);
534}
535
Thierry FOURNIERc42c1ae2015-03-03 17:17:55 +0100536/* This function just ensure that the yield will be always
537 * returned with a timeout and permit to set some flags
538 */
539__LJMP void hlua_yieldk(lua_State *L, int nresults, int ctx,
Thierry FOURNIERf90838b2015-03-06 13:48:32 +0100540 lua_KFunction k, int timeout, unsigned int flags)
Thierry FOURNIERc42c1ae2015-03-03 17:17:55 +0100541{
542 struct hlua *hlua = hlua_gethlua(L);
543
544 /* Set the wake timeout. If timeout is required, we set
545 * the expiration time.
546 */
Thierry FOURNIERdc9ca962015-03-05 11:16:52 +0100547 hlua->wake_time = tick_first(timeout, hlua->expire);
Thierry FOURNIERc42c1ae2015-03-03 17:17:55 +0100548
Thierry FOURNIER4abd3ae2015-03-03 17:29:06 +0100549 hlua->flags |= flags;
550
Thierry FOURNIERc42c1ae2015-03-03 17:17:55 +0100551 /* Process the yield. */
552 WILL_LJMP(lua_yieldk(L, nresults, ctx, k));
553}
554
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100555/* This function initialises the Lua environment stored in the session.
556 * It must be called at the start of the session. This function creates
557 * an LUA coroutine. It can not be use to crete the main LUA context.
558 */
559int hlua_ctx_init(struct hlua *lua, struct task *task)
560{
561 lua->Mref = LUA_REFNIL;
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +0100562 lua->flags = 0;
Thierry FOURNIER9ff7e6e2015-01-23 11:08:20 +0100563 LIST_INIT(&lua->com);
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100564 lua->T = lua_newthread(gL.T);
565 if (!lua->T) {
566 lua->Tref = LUA_REFNIL;
567 return 0;
568 }
569 hlua_sethlua(lua);
570 lua->Tref = luaL_ref(gL.T, LUA_REGISTRYINDEX);
571 lua->task = task;
572 return 1;
573}
574
575/* Used to destroy the Lua coroutine when the attached session or task
576 * is destroyed. The destroy also the memory context. The struct "lua"
577 * is not freed.
578 */
579void hlua_ctx_destroy(struct hlua *lua)
580{
Thierry FOURNIERa718b292015-03-04 16:48:34 +0100581 if (!lua->T)
582 return;
583
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100584 /* Remove context. */
585 hlua_delhlua(lua);
586
Thierry FOURNIER9ff7e6e2015-01-23 11:08:20 +0100587 /* Purge all the pending signals. */
588 hlua_com_purge(lua);
589
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100590 /* The thread is garbage collected by Lua. */
591 luaL_unref(lua->T, LUA_REGISTRYINDEX, lua->Mref);
592 luaL_unref(gL.T, LUA_REGISTRYINDEX, lua->Tref);
593}
594
595/* This function is used to restore the Lua context when a coroutine
596 * fails. This function copy the common memory between old coroutine
597 * and the new coroutine. The old coroutine is destroyed, and its
598 * replaced by the new coroutine.
599 * If the flag "keep_msg" is set, the last entry of the old is assumed
600 * as string error message and it is copied in the new stack.
601 */
602static int hlua_ctx_renew(struct hlua *lua, int keep_msg)
603{
604 lua_State *T;
605 int new_ref;
606
607 /* Renew the main LUA stack doesn't have sense. */
608 if (lua == &gL)
609 return 0;
610
611 /* Remove context. */
612 hlua_delhlua(lua);
613
614 /* New Lua coroutine. */
615 T = lua_newthread(gL.T);
616 if (!T)
617 return 0;
618
619 /* Copy last error message. */
620 if (keep_msg)
621 lua_xmove(lua->T, T, 1);
622
623 /* Copy data between the coroutines. */
624 lua_rawgeti(lua->T, LUA_REGISTRYINDEX, lua->Mref);
625 lua_xmove(lua->T, T, 1);
626 new_ref = luaL_ref(T, LUA_REGISTRYINDEX); /* Valur poped. */
627
628 /* Destroy old data. */
629 luaL_unref(lua->T, LUA_REGISTRYINDEX, lua->Mref);
630
631 /* The thread is garbage collected by Lua. */
632 luaL_unref(gL.T, LUA_REGISTRYINDEX, lua->Tref);
633
634 /* Fill the struct with the new coroutine values. */
635 lua->Mref = new_ref;
636 lua->T = T;
637 lua->Tref = luaL_ref(gL.T, LUA_REGISTRYINDEX);
638
639 /* Set context. */
640 hlua_sethlua(lua);
641
642 return 1;
643}
644
Thierry FOURNIERee9f8022015-03-03 17:37:37 +0100645void hlua_hook(lua_State *L, lua_Debug *ar)
646{
Thierry FOURNIERcae49c92015-03-06 14:05:24 +0100647 struct hlua *hlua = hlua_gethlua(L);
648
649 /* Lua cannot yield when its returning from a function,
650 * so, we can fix the interrupt hook to 1 instruction,
651 * expecting that the function is finnished.
652 */
653 if (lua_gethookmask(L) & LUA_MASKRET) {
654 lua_sethook(hlua->T, hlua_hook, LUA_MASKCOUNT, 1);
655 return;
656 }
657
658 /* restore the interrupt condition. */
659 lua_sethook(hlua->T, hlua_hook, LUA_MASKCOUNT, hlua_nb_instruction);
660
661 /* If we interrupt the Lua processing in yieldable state, we yield.
662 * If the state is not yieldable, trying yield causes an error.
663 */
664 if (lua_isyieldable(L))
665 WILL_LJMP(hlua_yieldk(L, 0, 0, NULL, TICK_ETERNITY, HLUA_CTRLYIELD));
666
667 /* If we cannot yield, check the timeout. */
668 if (tick_is_expired(hlua->expire, now_ms)) {
669 lua_pushfstring(L, "execution timeout");
670 WILL_LJMP(lua_error(L));
671 }
672
673 /* Try to interrupt the process at the end of the current
674 * unyieldable function.
675 */
676 lua_sethook(hlua->T, hlua_hook, LUA_MASKRET|LUA_MASKCOUNT, hlua_nb_instruction);
Thierry FOURNIERee9f8022015-03-03 17:37:37 +0100677}
678
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100679/* This function start or resumes the Lua stack execution. If the flag
680 * "yield_allowed" if no set and the LUA stack execution returns a yield
681 * The function return an error.
682 *
683 * The function can returns 4 values:
684 * - HLUA_E_OK : The execution is terminated without any errors.
685 * - HLUA_E_AGAIN : The execution must continue at the next associated
686 * task wakeup.
687 * - HLUA_E_ERRMSG : An error has occured, an error message is set in
688 * the top of the stack.
689 * - HLUA_E_ERR : An error has occured without error message.
690 *
691 * If an error occured, the stack is renewed and it is ready to run new
692 * LUA code.
693 */
694static enum hlua_exec hlua_ctx_resume(struct hlua *lua, int yield_allowed)
695{
696 int ret;
697 const char *msg;
698
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +0100699 HLUA_SET_RUN(lua);
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100700
Thierry FOURNIERdc9ca962015-03-05 11:16:52 +0100701 /* If we want to resume the task, then check first the execution timeout.
702 * if it is reached, we can interrupt the Lua processing.
703 */
704 if (tick_is_expired(lua->expire, now_ms))
705 goto timeout_reached;
706
Thierry FOURNIERee9f8022015-03-03 17:37:37 +0100707resume_execution:
708
709 /* This hook interrupts the Lua processing each 'hlua_nb_instruction'
710 * instructions. it is used for preventing infinite loops.
711 */
712 lua_sethook(lua->T, hlua_hook, LUA_MASKCOUNT, hlua_nb_instruction);
713
Thierry FOURNIER1bfc09b2015-03-05 17:10:14 +0100714 /* Remove all flags except the running flags. */
715 lua->flags = HLUA_RUN;
716
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100717 /* Call the function. */
718 ret = lua_resume(lua->T, gL.T, lua->nargs);
719 switch (ret) {
720
721 case LUA_OK:
722 ret = HLUA_E_OK;
723 break;
724
725 case LUA_YIELD:
Thierry FOURNIERdc9ca962015-03-05 11:16:52 +0100726 /* Check if the execution timeout is expired. It it is the case, we
727 * break the Lua execution.
Thierry FOURNIERee9f8022015-03-03 17:37:37 +0100728 */
Thierry FOURNIERdc9ca962015-03-05 11:16:52 +0100729 if (tick_is_expired(lua->expire, now_ms)) {
730
731timeout_reached:
732
733 lua_settop(lua->T, 0); /* Empty the stack. */
734 if (!lua_checkstack(lua->T, 1)) {
735 ret = HLUA_E_ERR;
Thierry FOURNIERee9f8022015-03-03 17:37:37 +0100736 break;
737 }
Thierry FOURNIERdc9ca962015-03-05 11:16:52 +0100738 lua_pushfstring(lua->T, "execution timeout");
739 ret = HLUA_E_ERRMSG;
740 break;
741 }
742 /* Process the forced yield. if the general yield is not allowed or
743 * if no task were associated this the current Lua execution
744 * coroutine, we resume the execution. Else we want to return in the
745 * scheduler and we want to be waked up again, to continue the
746 * current Lua execution. So we schedule our own task.
747 */
748 if (HLUA_IS_CTRLYIELDING(lua)) {
Thierry FOURNIERee9f8022015-03-03 17:37:37 +0100749 if (!yield_allowed || !lua->task)
750 goto resume_execution;
Thierry FOURNIERee9f8022015-03-03 17:37:37 +0100751 task_wakeup(lua->task, TASK_WOKEN_MSG);
Thierry FOURNIERee9f8022015-03-03 17:37:37 +0100752 }
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100753 if (!yield_allowed) {
754 lua_settop(lua->T, 0); /* Empty the stack. */
755 if (!lua_checkstack(lua->T, 1)) {
756 ret = HLUA_E_ERR;
757 break;
758 }
759 lua_pushfstring(lua->T, "yield not allowed");
760 ret = HLUA_E_ERRMSG;
761 break;
762 }
763 ret = HLUA_E_AGAIN;
764 break;
765
766 case LUA_ERRRUN:
Thierry FOURNIERc42c1ae2015-03-03 17:17:55 +0100767 lua->wake_time = TICK_ETERNITY;
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100768 if (!lua_checkstack(lua->T, 1)) {
769 ret = HLUA_E_ERR;
770 break;
771 }
772 msg = lua_tostring(lua->T, -1);
773 lua_settop(lua->T, 0); /* Empty the stack. */
774 lua_pop(lua->T, 1);
775 if (msg)
776 lua_pushfstring(lua->T, "runtime error: %s", msg);
777 else
778 lua_pushfstring(lua->T, "unknown runtime error");
779 ret = HLUA_E_ERRMSG;
780 break;
781
782 case LUA_ERRMEM:
Thierry FOURNIERc42c1ae2015-03-03 17:17:55 +0100783 lua->wake_time = TICK_ETERNITY;
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100784 lua_settop(lua->T, 0); /* Empty the stack. */
785 if (!lua_checkstack(lua->T, 1)) {
786 ret = HLUA_E_ERR;
787 break;
788 }
789 lua_pushfstring(lua->T, "out of memory error");
790 ret = HLUA_E_ERRMSG;
791 break;
792
793 case LUA_ERRERR:
Thierry FOURNIERc42c1ae2015-03-03 17:17:55 +0100794 lua->wake_time = TICK_ETERNITY;
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100795 if (!lua_checkstack(lua->T, 1)) {
796 ret = HLUA_E_ERR;
797 break;
798 }
799 msg = lua_tostring(lua->T, -1);
800 lua_settop(lua->T, 0); /* Empty the stack. */
801 lua_pop(lua->T, 1);
802 if (msg)
803 lua_pushfstring(lua->T, "message handler error: %s", msg);
804 else
805 lua_pushfstring(lua->T, "message handler error");
806 ret = HLUA_E_ERRMSG;
807 break;
808
809 default:
Thierry FOURNIERc42c1ae2015-03-03 17:17:55 +0100810 lua->wake_time = TICK_ETERNITY;
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100811 lua_settop(lua->T, 0); /* Empty the stack. */
812 if (!lua_checkstack(lua->T, 1)) {
813 ret = HLUA_E_ERR;
814 break;
815 }
816 lua_pushfstring(lua->T, "unknonwn error");
817 ret = HLUA_E_ERRMSG;
818 break;
819 }
820
821 switch (ret) {
822 case HLUA_E_AGAIN:
823 break;
824
825 case HLUA_E_ERRMSG:
Thierry FOURNIER9ff7e6e2015-01-23 11:08:20 +0100826 hlua_com_purge(lua);
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100827 hlua_ctx_renew(lua, 1);
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +0100828 HLUA_CLR_RUN(lua);
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100829 break;
830
831 case HLUA_E_ERR:
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +0100832 HLUA_CLR_RUN(lua);
Thierry FOURNIER9ff7e6e2015-01-23 11:08:20 +0100833 hlua_com_purge(lua);
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100834 hlua_ctx_renew(lua, 0);
835 break;
836
837 case HLUA_E_OK:
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +0100838 HLUA_CLR_RUN(lua);
Thierry FOURNIER9ff7e6e2015-01-23 11:08:20 +0100839 hlua_com_purge(lua);
Thierry FOURNIER380d0932015-01-23 14:27:52 +0100840 break;
841 }
842
843 return ret;
844}
845
Thierry FOURNIER83758bb2015-02-04 13:21:04 +0100846/* This function is an LUA binding. It provides a function
847 * for deleting ACL from a referenced ACL file.
848 */
849__LJMP static int hlua_del_acl(lua_State *L)
850{
851 const char *name;
852 const char *key;
853 struct pat_ref *ref;
854
855 MAY_LJMP(check_args(L, 2, "del_acl"));
856
857 name = MAY_LJMP(luaL_checkstring(L, 1));
858 key = MAY_LJMP(luaL_checkstring(L, 2));
859
860 ref = pat_ref_lookup(name);
861 if (!ref)
862 WILL_LJMP(luaL_error(L, "'del_acl': unkown acl file '%s'", name));
863
864 pat_ref_delete(ref, key);
865 return 0;
866}
867
868/* This function is an LUA binding. It provides a function
869 * for deleting map entry from a referenced map file.
870 */
871static int hlua_del_map(lua_State *L)
872{
873 const char *name;
874 const char *key;
875 struct pat_ref *ref;
876
877 MAY_LJMP(check_args(L, 2, "del_map"));
878
879 name = MAY_LJMP(luaL_checkstring(L, 1));
880 key = MAY_LJMP(luaL_checkstring(L, 2));
881
882 ref = pat_ref_lookup(name);
883 if (!ref)
884 WILL_LJMP(luaL_error(L, "'del_map': unkown acl file '%s'", name));
885
886 pat_ref_delete(ref, key);
887 return 0;
888}
889
890/* This function is an LUA binding. It provides a function
891 * for adding ACL pattern from a referenced ACL file.
892 */
893static int hlua_add_acl(lua_State *L)
894{
895 const char *name;
896 const char *key;
897 struct pat_ref *ref;
898
899 MAY_LJMP(check_args(L, 2, "add_acl"));
900
901 name = MAY_LJMP(luaL_checkstring(L, 1));
902 key = MAY_LJMP(luaL_checkstring(L, 2));
903
904 ref = pat_ref_lookup(name);
905 if (!ref)
906 WILL_LJMP(luaL_error(L, "'add_acl': unkown acl file '%s'", name));
907
908 if (pat_ref_find_elt(ref, key) == NULL)
909 pat_ref_add(ref, key, NULL, NULL);
910 return 0;
911}
912
913/* This function is an LUA binding. It provides a function
914 * for setting map pattern and sample from a referenced map
915 * file.
916 */
917static int hlua_set_map(lua_State *L)
918{
919 const char *name;
920 const char *key;
921 const char *value;
922 struct pat_ref *ref;
923
924 MAY_LJMP(check_args(L, 3, "set_map"));
925
926 name = MAY_LJMP(luaL_checkstring(L, 1));
927 key = MAY_LJMP(luaL_checkstring(L, 2));
928 value = MAY_LJMP(luaL_checkstring(L, 3));
929
930 ref = pat_ref_lookup(name);
931 if (!ref)
932 WILL_LJMP(luaL_error(L, "'set_map': unkown map file '%s'", name));
933
934 if (pat_ref_find_elt(ref, key) != NULL)
935 pat_ref_set(ref, key, value, NULL);
936 else
937 pat_ref_add(ref, key, value, NULL);
938 return 0;
939}
940
Thierry FOURNIER65f34c62015-02-16 20:11:43 +0100941/* A class is a lot of memory that contain data. This data can be a table,
942 * an integer or user data. This data is associated with a metatable. This
943 * metatable have an original version registred in the global context with
944 * the name of the object (_G[<name>] = <metable> ).
945 *
946 * A metable is a table that modify the standard behavior of a standard
947 * access to the associated data. The entries of this new metatable are
948 * defined as is:
949 *
950 * http://lua-users.org/wiki/MetatableEvents
951 *
952 * __index
953 *
954 * we access an absent field in a table, the result is nil. This is
955 * true, but it is not the whole truth. Actually, such access triggers
956 * the interpreter to look for an __index metamethod: If there is no
957 * such method, as usually happens, then the access results in nil;
958 * otherwise, the metamethod will provide the result.
959 *
960 * Control 'prototype' inheritance. When accessing "myTable[key]" and
961 * the key does not appear in the table, but the metatable has an __index
962 * property:
963 *
964 * - if the value is a function, the function is called, passing in the
965 * table and the key; the return value of that function is returned as
966 * the result.
967 *
968 * - if the value is another table, the value of the key in that table is
969 * asked for and returned (and if it doesn't exist in that table, but that
970 * table's metatable has an __index property, then it continues on up)
971 *
972 * - Use "rawget(myTable,key)" to skip this metamethod.
973 *
974 * http://www.lua.org/pil/13.4.1.html
975 *
976 * __newindex
977 *
978 * Like __index, but control property assignment.
979 *
980 * __mode - Control weak references. A string value with one or both
981 * of the characters 'k' and 'v' which specifies that the the
982 * keys and/or values in the table are weak references.
983 *
984 * __call - Treat a table like a function. When a table is followed by
985 * parenthesis such as "myTable( 'foo' )" and the metatable has
986 * a __call key pointing to a function, that function is invoked
987 * (passing any specified arguments) and the return value is
988 * returned.
989 *
990 * __metatable - Hide the metatable. When "getmetatable( myTable )" is
991 * called, if the metatable for myTable has a __metatable
992 * key, the value of that key is returned instead of the
993 * actual metatable.
994 *
995 * __tostring - Control string representation. When the builtin
996 * "tostring( myTable )" function is called, if the metatable
997 * for myTable has a __tostring property set to a function,
998 * that function is invoked (passing myTable to it) and the
999 * return value is used as the string representation.
1000 *
1001 * __len - Control table length. When the table length is requested using
1002 * the length operator ( '#' ), if the metatable for myTable has
1003 * a __len key pointing to a function, that function is invoked
1004 * (passing myTable to it) and the return value used as the value
1005 * of "#myTable".
1006 *
1007 * __gc - Userdata finalizer code. When userdata is set to be garbage
1008 * collected, if the metatable has a __gc field pointing to a
1009 * function, that function is first invoked, passing the userdata
1010 * to it. The __gc metamethod is not called for tables.
1011 * (See http://lua-users.org/lists/lua-l/2006-11/msg00508.html)
1012 *
1013 * Special metamethods for redefining standard operators:
1014 * http://www.lua.org/pil/13.1.html
1015 *
1016 * __add "+"
1017 * __sub "-"
1018 * __mul "*"
1019 * __div "/"
1020 * __unm "!"
1021 * __pow "^"
1022 * __concat ".."
1023 *
1024 * Special methods for redfining standar relations
1025 * http://www.lua.org/pil/13.2.html
1026 *
1027 * __eq "=="
1028 * __lt "<"
1029 * __le "<="
1030 */
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001031
1032/*
1033 *
1034 *
1035 * Class Socket
1036 *
1037 *
1038 */
1039
1040__LJMP static struct hlua_socket *hlua_checksocket(lua_State *L, int ud)
1041{
1042 return (struct hlua_socket *)MAY_LJMP(hlua_checkudata(L, ud, class_socket_ref));
1043}
1044
1045/* This function is the handler called for each I/O on the established
1046 * connection. It is used for notify space avalaible to send or data
1047 * received.
1048 */
1049static void hlua_socket_handler(struct stream_interface *si)
1050{
1051 struct appctx *appctx = objt_appctx(si->end);
1052 struct connection *c = objt_conn(si->ib->cons->end);
1053
1054 /* Wakeup the main session if the client connection is closed. */
1055 if (!c || channel_output_closed(si->ib) || channel_input_closed(si->ob)) {
1056 if (appctx->ctx.hlua.socket) {
1057 appctx->ctx.hlua.socket->s = NULL;
1058 appctx->ctx.hlua.socket = NULL;
1059 }
1060 si_shutw(si);
1061 si_shutr(si);
1062 si->ib->flags |= CF_READ_NULL;
1063 hlua_com_wake(&appctx->ctx.hlua.wake_on_read);
1064 hlua_com_wake(&appctx->ctx.hlua.wake_on_write);
1065 return;
1066 }
1067
1068 if (!(c->flags & CO_FL_CONNECTED))
1069 return;
1070
1071 /* This function is called after the connect. */
1072 appctx->ctx.hlua.connected = 1;
1073
1074 /* Wake the tasks which wants to write if the buffer have avalaible space. */
1075 if (channel_may_recv(si->ob))
1076 hlua_com_wake(&appctx->ctx.hlua.wake_on_write);
1077
1078 /* Wake the tasks which wants to read if the buffer contains data. */
1079 if (channel_is_empty(si->ib))
1080 hlua_com_wake(&appctx->ctx.hlua.wake_on_read);
1081}
1082
1083/* This function is called when the "struct session" is destroyed.
1084 * Remove the link from the object to this session.
1085 * Wake all the pending signals.
1086 */
1087static void hlua_socket_release(struct stream_interface *si)
1088{
1089 struct appctx *appctx = objt_appctx(si->end);
1090
1091 /* Remove my link in the original object. */
1092 if (appctx->ctx.hlua.socket)
1093 appctx->ctx.hlua.socket->s = NULL;
1094
1095 /* Wake all the task waiting for me. */
1096 hlua_com_wake(&appctx->ctx.hlua.wake_on_read);
1097 hlua_com_wake(&appctx->ctx.hlua.wake_on_write);
1098}
1099
1100/* If the garbage collectio of the object is launch, nobody
1101 * uses this object. If the session does not exists, just quit.
1102 * Send the shutdown signal to the session. In some cases,
1103 * pending signal can rest in the read and write lists. destroy
1104 * it.
1105 */
1106__LJMP static int hlua_socket_gc(lua_State *L)
1107{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001108 struct hlua_socket *socket;
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001109 struct appctx *appctx;
1110
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001111 MAY_LJMP(check_args(L, 1, "__gc"));
1112
1113 socket = MAY_LJMP(hlua_checksocket(L, 1));
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001114 if (!socket->s)
1115 return 0;
1116
1117 /* Remove all reference between the Lua stack and the coroutine session. */
1118 appctx = objt_appctx(socket->s->si[0].end);
1119 session_shutdown(socket->s, SN_ERR_KILLED);
1120 socket->s = NULL;
1121 appctx->ctx.hlua.socket = NULL;
1122
1123 return 0;
1124}
1125
1126/* The close function send shutdown signal and break the
1127 * links between the session and the object.
1128 */
1129__LJMP static int hlua_socket_close(lua_State *L)
1130{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001131 struct hlua_socket *socket;
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001132 struct appctx *appctx;
1133
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001134 MAY_LJMP(check_args(L, 1, "close"));
1135
1136 socket = MAY_LJMP(hlua_checksocket(L, 1));
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001137 if (!socket->s)
1138 return 0;
1139
1140 /* Close the session and remove the associated stop task. */
1141 session_shutdown(socket->s, SN_ERR_KILLED);
1142 appctx = objt_appctx(socket->s->si[0].end);
1143 appctx->ctx.hlua.socket = NULL;
1144 socket->s = NULL;
1145
1146 return 0;
1147}
1148
1149/* This Lua function assumes that the stack contain three parameters.
1150 * 1 - USERDATA containing a struct socket
1151 * 2 - INTEGER with values of the macro defined below
1152 * If the integer is -1, we must read at most one line.
1153 * If the integer is -2, we ust read all the data until the
1154 * end of the stream.
1155 * If the integer is positive value, we must read a number of
1156 * bytes corresponding to this value.
1157 */
1158#define HLSR_READ_LINE (-1)
1159#define HLSR_READ_ALL (-2)
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001160__LJMP static int hlua_socket_receive_yield(struct lua_State *L, int status, lua_KContext ctx)
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001161{
1162 struct hlua_socket *socket = MAY_LJMP(hlua_checksocket(L, 1));
1163 int wanted = lua_tointeger(L, 2);
1164 struct hlua *hlua = hlua_gethlua(L);
1165 struct appctx *appctx;
1166 int len;
1167 int nblk;
1168 char *blk1;
1169 int len1;
1170 char *blk2;
1171 int len2;
1172
1173 /* Check if this lua stack is schedulable. */
1174 if (!hlua || !hlua->task)
1175 WILL_LJMP(luaL_error(L, "The 'receive' function is only allowed in "
1176 "'frontend', 'backend' or 'task'"));
1177
1178 /* check for connection closed. If some data where read, return it. */
1179 if (!socket->s)
1180 goto connection_closed;
1181
1182 if (wanted == HLSR_READ_LINE) {
1183
1184 /* Read line. */
1185 nblk = bo_getline_nc(socket->s->si[0].ob, &blk1, &len1, &blk2, &len2);
1186 if (nblk < 0) /* Connection close. */
1187 goto connection_closed;
1188 if (nblk == 0) /* No data avalaible. */
1189 goto connection_empty;
1190 }
1191
1192 else if (wanted == HLSR_READ_ALL) {
1193
1194 /* Read all the available data. */
1195 nblk = bo_getblk_nc(socket->s->si[0].ob, &blk1, &len1, &blk2, &len2);
1196 if (nblk < 0) /* Connection close. */
1197 goto connection_closed;
1198 if (nblk == 0) /* No data avalaible. */
1199 goto connection_empty;
1200 }
1201
1202 else {
1203
1204 /* Read a block of data. */
1205 nblk = bo_getblk_nc(socket->s->si[0].ob, &blk1, &len1, &blk2, &len2);
1206 if (nblk < 0) /* Connection close. */
1207 goto connection_closed;
1208 if (nblk == 0) /* No data avalaible. */
1209 goto connection_empty;
1210
1211 if (len1 > wanted) {
1212 nblk = 1;
1213 len1 = wanted;
1214 } if (nblk == 2 && len1 + len2 > wanted)
1215 len2 = wanted - len1;
1216 }
1217
1218 len = len1;
1219
1220 luaL_addlstring(&socket->b, blk1, len1);
1221 if (nblk == 2) {
1222 len += len2;
1223 luaL_addlstring(&socket->b, blk2, len2);
1224 }
1225
1226 /* Consume data. */
1227 bo_skip(socket->s->si[0].ob, len);
1228
1229 /* Don't wait anything. */
1230 si_update(&socket->s->si[0]);
1231
1232 /* If the pattern reclaim to read all the data
1233 * in the connection, got out.
1234 */
1235 if (wanted == HLSR_READ_ALL)
1236 goto connection_empty;
1237 else if (wanted >= 0 && len < wanted)
1238 goto connection_empty;
1239
1240 /* Return result. */
1241 luaL_pushresult(&socket->b);
1242 return 1;
1243
1244connection_closed:
1245
1246 /* If the buffer containds data. */
1247 if (socket->b.n > 0) {
1248 luaL_pushresult(&socket->b);
1249 return 1;
1250 }
1251 lua_pushnil(L);
1252 lua_pushstring(L, "connection closed.");
1253 return 2;
1254
1255connection_empty:
1256
1257 appctx = objt_appctx(socket->s->si[0].end);
1258 if (!hlua_com_new(hlua, &appctx->ctx.hlua.wake_on_read))
1259 WILL_LJMP(luaL_error(L, "out of memory"));
Thierry FOURNIER4abd3ae2015-03-03 17:29:06 +01001260 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_socket_receive_yield, TICK_ETERNITY, 0));
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001261 return 0;
1262}
1263
1264/* This Lus function gets two parameters. The first one can be string
1265 * or a number. If the string is "*l", the user require one line. If
1266 * the string is "*a", the user require all the content of the stream.
1267 * If the value is a number, the user require a number of bytes equal
1268 * to the value. The default value is "*l" (a line).
1269 *
1270 * This paraeter with a variable type is converted in integer. This
1271 * integer takes this values:
1272 * -1 : read a line
1273 * -2 : read all the stream
1274 * >0 : amount if bytes.
1275 *
1276 * The second parameter is optinal. It contains a string that must be
1277 * concatenated with the read data.
1278 */
1279__LJMP static int hlua_socket_receive(struct lua_State *L)
1280{
1281 int wanted = HLSR_READ_LINE;
1282 const char *pattern;
1283 int type;
1284 char *error;
1285 size_t len;
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001286 struct hlua_socket *socket;
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001287
1288 if (lua_gettop(L) < 1 || lua_gettop(L) > 3)
1289 WILL_LJMP(luaL_error(L, "The 'receive' function requires between 1 and 3 arguments."));
1290
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001291 socket = MAY_LJMP(hlua_checksocket(L, 1));
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001292
1293 /* check for pattern. */
1294 if (lua_gettop(L) >= 2) {
1295 type = lua_type(L, 2);
1296 if (type == LUA_TSTRING) {
1297 pattern = lua_tostring(L, 2);
1298 if (strcmp(pattern, "*a") == 0)
1299 wanted = HLSR_READ_ALL;
1300 else if (strcmp(pattern, "*l") == 0)
1301 wanted = HLSR_READ_LINE;
1302 else {
1303 wanted = strtoll(pattern, &error, 10);
1304 if (*error != '\0')
1305 WILL_LJMP(luaL_error(L, "Unsupported pattern."));
1306 }
1307 }
1308 else if (type == LUA_TNUMBER) {
1309 wanted = lua_tointeger(L, 2);
1310 if (wanted < 0)
1311 WILL_LJMP(luaL_error(L, "Unsupported size."));
1312 }
1313 }
1314
1315 /* Set pattern. */
1316 lua_pushinteger(L, wanted);
1317 lua_replace(L, 2);
1318
1319 /* init bufffer, and fiil it wih prefix. */
1320 luaL_buffinit(L, &socket->b);
1321
1322 /* Check prefix. */
1323 if (lua_gettop(L) >= 3) {
1324 if (lua_type(L, 3) != LUA_TSTRING)
1325 WILL_LJMP(luaL_error(L, "Expect a 'string' for the prefix"));
1326 pattern = lua_tolstring(L, 3, &len);
1327 luaL_addlstring(&socket->b, pattern, len);
1328 }
1329
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001330 return __LJMP(hlua_socket_receive_yield(L, 0, 0));
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001331}
1332
1333/* Write the Lua input string in the output buffer.
1334 * This fucntion returns a yield if no space are available.
1335 */
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001336static int hlua_socket_write_yield(struct lua_State *L,int status, lua_KContext ctx)
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001337{
1338 struct hlua_socket *socket;
1339 struct hlua *hlua = hlua_gethlua(L);
1340 struct appctx *appctx;
1341 size_t buf_len;
1342 const char *buf;
1343 int len;
1344 int send_len;
1345 int sent;
1346
1347 /* Check if this lua stack is schedulable. */
1348 if (!hlua || !hlua->task)
1349 WILL_LJMP(luaL_error(L, "The 'write' function is only allowed in "
1350 "'frontend', 'backend' or 'task'"));
1351
1352 /* Get object */
1353 socket = MAY_LJMP(hlua_checksocket(L, 1));
1354 buf = MAY_LJMP(luaL_checklstring(L, 2, &buf_len));
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001355 sent = MAY_LJMP(luaL_checkinteger(L, 3));
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001356
1357 /* Check for connection close. */
1358 if (!socket->s || channel_output_closed(socket->s->req)) {
1359 lua_pushinteger(L, -1);
1360 return 1;
1361 }
1362
1363 /* Update the input buffer data. */
1364 buf += sent;
1365 send_len = buf_len - sent;
1366
1367 /* All the data are sent. */
1368 if (sent >= buf_len)
1369 return 1; /* Implicitly return the length sent. */
1370
1371 /* Check for avalaible space. */
1372 len = buffer_total_space(socket->s->si[0].ib->buf);
1373 if (len <= 0)
1374 goto hlua_socket_write_yield_return;
1375
1376 /* send data */
1377 if (len < send_len)
1378 send_len = len;
1379 len = bi_putblk(socket->s->si[0].ib, buf+sent, send_len);
1380
1381 /* "Not enough space" (-1), "Buffer too little to contain
1382 * the data" (-2) are not expected because the available length
1383 * is tested.
1384 * Other unknown error are also not expected.
1385 */
1386 if (len <= 0) {
1387 MAY_LJMP(hlua_socket_close(L));
1388 lua_pop(L, 1);
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001389 lua_pushinteger(L, -1);
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001390 return 1;
1391 }
1392
1393 /* update buffers. */
1394 si_update(&socket->s->si[0]);
1395 socket->s->si[0].ib->rex = TICK_ETERNITY;
1396 socket->s->si[0].ob->wex = TICK_ETERNITY;
1397
1398 /* Update length sent. */
1399 lua_pop(L, 1);
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001400 lua_pushinteger(L, sent + len);
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001401
1402 /* All the data buffer is sent ? */
1403 if (sent + len >= buf_len)
1404 return 1;
1405
1406hlua_socket_write_yield_return:
1407 appctx = objt_appctx(socket->s->si[0].end);
1408 if (!hlua_com_new(hlua, &appctx->ctx.hlua.wake_on_write))
1409 WILL_LJMP(luaL_error(L, "out of memory"));
Thierry FOURNIER4abd3ae2015-03-03 17:29:06 +01001410 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_socket_write_yield, TICK_ETERNITY, 0));
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001411 return 0;
1412}
1413
1414/* This function initiate the send of data. It just check the input
1415 * parameters and push an integer in the Lua stack that contain the
1416 * amount of data writed in the buffer. This is used by the function
1417 * "hlua_socket_write_yield" that can yield.
1418 *
1419 * The Lua function gets between 3 and 4 parameters. The first one is
1420 * the associated object. The second is a string buffer. The third is
1421 * a facultative integer that represents where is the buffer position
1422 * of the start of the data that can send. The first byte is the
1423 * position "1". The default value is "1". The fourth argument is a
1424 * facultative integer that represents where is the buffer position
1425 * of the end of the data that can send. The default is the last byte.
1426 */
1427static int hlua_socket_send(struct lua_State *L)
1428{
1429 int i;
1430 int j;
1431 const char *buf;
1432 size_t buf_len;
1433
1434 /* Check number of arguments. */
1435 if (lua_gettop(L) < 2 || lua_gettop(L) > 4)
1436 WILL_LJMP(luaL_error(L, "'send' needs between 2 and 4 arguments"));
1437
1438 /* Get the string. */
1439 buf = MAY_LJMP(luaL_checklstring(L, 2, &buf_len));
1440
1441 /* Get and check j. */
1442 if (lua_gettop(L) == 4) {
1443 j = MAY_LJMP(luaL_checkinteger(L, 4));
1444 if (j < 0)
1445 j = buf_len + j + 1;
1446 if (j > buf_len)
1447 j = buf_len + 1;
1448 lua_pop(L, 1);
1449 }
1450 else
1451 j = buf_len;
1452
1453 /* Get and check i. */
1454 if (lua_gettop(L) == 3) {
1455 i = MAY_LJMP(luaL_checkinteger(L, 3));
1456 if (i < 0)
1457 i = buf_len + i + 1;
1458 if (i > buf_len)
1459 i = buf_len + 1;
1460 lua_pop(L, 1);
1461 } else
1462 i = 1;
1463
1464 /* Check bth i and j. */
1465 if (i > j) {
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001466 lua_pushinteger(L, 0);
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001467 return 1;
1468 }
1469 if (i == 0 && j == 0) {
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001470 lua_pushinteger(L, 0);
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001471 return 1;
1472 }
1473 if (i == 0)
1474 i = 1;
1475 if (j == 0)
1476 j = 1;
1477
1478 /* Pop the string. */
1479 lua_pop(L, 1);
1480
1481 /* Update the buffer length. */
1482 buf += i - 1;
1483 buf_len = j - i + 1;
1484 lua_pushlstring(L, buf, buf_len);
1485
1486 /* This unsigned is used to remember the amount of sent data. */
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001487 lua_pushinteger(L, 0);
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001488
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001489 return MAY_LJMP(hlua_socket_write_yield(L, 0, 0));
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001490}
1491
1492#define SOCKET_INFO_EXPANDED_FORM "[0000:0000:0000:0000:0000:0000:0000:0000]:12345"
1493static char _socket_info_expanded_form[] = SOCKET_INFO_EXPANDED_FORM;
1494#define SOCKET_INFO_MAX_LEN (sizeof(_socket_info_expanded_form))
1495__LJMP static inline int hlua_socket_info(struct lua_State *L, struct sockaddr_storage *addr)
1496{
1497 static char buffer[SOCKET_INFO_MAX_LEN];
1498 int ret;
1499 int len;
1500 char *p;
1501
1502 ret = addr_to_str(addr, buffer+1, SOCKET_INFO_MAX_LEN-1);
1503 if (ret <= 0) {
1504 lua_pushnil(L);
1505 return 1;
1506 }
1507
1508 if (ret == AF_UNIX) {
1509 lua_pushstring(L, buffer+1);
1510 return 1;
1511 }
1512 else if (ret == AF_INET6) {
1513 buffer[0] = '[';
1514 len = strlen(buffer);
1515 buffer[len] = ']';
1516 len++;
1517 buffer[len] = ':';
1518 len++;
1519 p = buffer;
1520 }
1521 else if (ret == AF_INET) {
1522 p = buffer + 1;
1523 len = strlen(p);
1524 p[len] = ':';
1525 len++;
1526 }
1527 else {
1528 lua_pushnil(L);
1529 return 1;
1530 }
1531
1532 if (port_to_str(addr, p + len, SOCKET_INFO_MAX_LEN-1 - len) <= 0) {
1533 lua_pushnil(L);
1534 return 1;
1535 }
1536
1537 lua_pushstring(L, p);
1538 return 1;
1539}
1540
1541/* Returns information about the peer of the connection. */
1542__LJMP static int hlua_socket_getpeername(struct lua_State *L)
1543{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001544 struct hlua_socket *socket;
1545 struct connection *conn;
1546
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001547 MAY_LJMP(check_args(L, 1, "getpeername"));
1548
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001549 socket = MAY_LJMP(hlua_checksocket(L, 1));
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001550
1551 /* Check if the tcp object is avalaible. */
1552 if (!socket->s) {
1553 lua_pushnil(L);
1554 return 1;
1555 }
1556
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001557 conn = objt_conn(socket->s->si[1].end);
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001558 if (!conn) {
1559 lua_pushnil(L);
1560 return 1;
1561 }
1562
1563 if (!(conn->flags & CO_FL_ADDR_TO_SET)) {
1564 unsigned int salen = sizeof(conn->addr.to);
1565 if (getpeername(conn->t.sock.fd, (struct sockaddr *)&conn->addr.to, &salen) == -1) {
1566 lua_pushnil(L);
1567 return 1;
1568 }
1569 conn->flags |= CO_FL_ADDR_TO_SET;
1570 }
1571
1572 return MAY_LJMP(hlua_socket_info(L, &conn->addr.to));
1573}
1574
1575/* Returns information about my connection side. */
1576static int hlua_socket_getsockname(struct lua_State *L)
1577{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001578 struct hlua_socket *socket;
1579 struct connection *conn;
1580
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001581 MAY_LJMP(check_args(L, 1, "getsockname"));
1582
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001583 socket = MAY_LJMP(hlua_checksocket(L, 1));
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001584
1585 /* Check if the tcp object is avalaible. */
1586 if (!socket->s) {
1587 lua_pushnil(L);
1588 return 1;
1589 }
1590
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001591 conn = objt_conn(socket->s->si[1].end);
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001592 if (!conn) {
1593 lua_pushnil(L);
1594 return 1;
1595 }
1596
1597 if (!(conn->flags & CO_FL_ADDR_FROM_SET)) {
1598 unsigned int salen = sizeof(conn->addr.from);
1599 if (getsockname(conn->t.sock.fd, (struct sockaddr *)&conn->addr.from, &salen) == -1) {
1600 lua_pushnil(L);
1601 return 1;
1602 }
1603 conn->flags |= CO_FL_ADDR_FROM_SET;
1604 }
1605
1606 return hlua_socket_info(L, &conn->addr.from);
1607}
1608
1609/* This struct define the applet. */
1610static struct si_applet update_applet = {
1611 .obj_type = OBJ_TYPE_APPLET,
1612 .name = "<LUA_TCP>",
1613 .fct = hlua_socket_handler,
1614 .release = hlua_socket_release,
1615};
1616
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001617__LJMP static int hlua_socket_connect_yield(struct lua_State *L, int status, lua_KContext ctx)
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001618{
1619 struct hlua_socket *socket = MAY_LJMP(hlua_checksocket(L, 1));
1620 struct hlua *hlua = hlua_gethlua(L);
1621 struct appctx *appctx;
1622
1623 /* Check for connection close. */
1624 if (!hlua || !socket->s || channel_output_closed(socket->s->req)) {
1625 lua_pushnil(L);
1626 lua_pushstring(L, "Can't connect");
1627 return 2;
1628 }
1629
1630 appctx = objt_appctx(socket->s->si[0].end);
1631
1632 /* Check for connection established. */
1633 if (appctx->ctx.hlua.connected) {
1634 lua_pushinteger(L, 1);
1635 return 1;
1636 }
1637
1638 if (!hlua_com_new(hlua, &appctx->ctx.hlua.wake_on_write))
1639 WILL_LJMP(luaL_error(L, "out of memory error"));
Thierry FOURNIER4abd3ae2015-03-03 17:29:06 +01001640 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_socket_connect_yield, TICK_ETERNITY, 0));
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001641 return 0;
1642}
1643
1644/* This function fail or initite the connection. */
1645__LJMP static int hlua_socket_connect(struct lua_State *L)
1646{
1647 struct hlua_socket *socket;
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001648 int port;
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001649 const char *ip;
1650 struct connection *conn;
1651
1652 MAY_LJMP(check_args(L, 3, "connect"));
1653
1654 /* Get args. */
1655 socket = MAY_LJMP(hlua_checksocket(L, 1));
1656 ip = MAY_LJMP(luaL_checkstring(L, 2));
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001657 port = MAY_LJMP(luaL_checkinteger(L, 3));
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001658
1659 conn = si_alloc_conn(socket->s->req->cons, 0);
1660 if (!conn)
1661 WILL_LJMP(luaL_error(L, "connect: internal error"));
1662
1663 /* Parse ip address. */
1664 conn->addr.to.ss_family = AF_UNSPEC;
1665 if (!str2ip2(ip, &conn->addr.to, 0))
1666 WILL_LJMP(luaL_error(L, "connect: cannot parse ip address '%s'", ip));
1667
1668 /* Set port. */
1669 if (conn->addr.to.ss_family == AF_INET)
1670 ((struct sockaddr_in *)&conn->addr.to)->sin_port = htons(port);
1671 else if (conn->addr.to.ss_family == AF_INET6)
1672 ((struct sockaddr_in6 *)&conn->addr.to)->sin6_port = htons(port);
1673
1674 /* it is important not to call the wakeup function directly but to
1675 * pass through task_wakeup(), because this one knows how to apply
1676 * priorities to tasks.
1677 */
1678 task_wakeup(socket->s->task, TASK_WOKEN_INIT);
1679
Thierry FOURNIER4abd3ae2015-03-03 17:29:06 +01001680 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_socket_connect_yield, TICK_ETERNITY, 0));
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001681
1682 return 0;
1683}
1684
Baptiste Assmann84bb4932015-03-02 21:40:06 +01001685#ifdef USE_OPENSSL
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001686__LJMP static int hlua_socket_connect_ssl(struct lua_State *L)
1687{
1688 struct hlua_socket *socket;
1689
1690 MAY_LJMP(check_args(L, 3, "connect_ssl"));
1691 socket = MAY_LJMP(hlua_checksocket(L, 1));
1692 socket->s->target = &socket_ssl.obj_type;
1693 return MAY_LJMP(hlua_socket_connect(L));
1694}
Baptiste Assmann84bb4932015-03-02 21:40:06 +01001695#endif
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001696
1697__LJMP static int hlua_socket_setoption(struct lua_State *L)
1698{
1699 return 0;
1700}
1701
1702__LJMP static int hlua_socket_settimeout(struct lua_State *L)
1703{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001704 struct hlua_socket *socket;
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001705 int tmout;
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001706
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001707 MAY_LJMP(check_args(L, 2, "settimeout"));
1708
Willy Tarreau80f5fae2015-02-27 16:38:20 +01001709 socket = MAY_LJMP(hlua_checksocket(L, 1));
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01001710 tmout = MAY_LJMP(luaL_checkinteger(L, 2)) * 1000;
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001711
1712 socket->s->req->rto = tmout;
1713 socket->s->req->wto = tmout;
1714 socket->s->rep->rto = tmout;
1715 socket->s->rep->wto = tmout;
1716
1717 return 0;
1718}
1719
1720__LJMP static int hlua_socket_new(lua_State *L)
1721{
1722 struct hlua_socket *socket;
1723 struct appctx *appctx;
1724
1725 /* Check stack size. */
1726 if (!lua_checkstack(L, 2)) {
1727 hlua_pusherror(L, "socket: full stack");
1728 goto out_fail_conf;
1729 }
1730
1731 socket = MAY_LJMP(lua_newuserdata(L, sizeof(*socket)));
1732 memset(socket, 0, sizeof(*socket));
1733
1734 /* Pop a class session metatable and affect it to the userdata. */
1735 lua_rawgeti(L, LUA_REGISTRYINDEX, class_socket_ref);
1736 lua_setmetatable(L, -2);
1737
1738 /*
1739 *
1740 * Get memory for the request.
1741 *
1742 */
1743
1744 socket->s = pool_alloc2(pool2_session);
1745 if (!socket->s) {
1746 hlua_pusherror(L, "socket: out of memory");
1747 goto out_fail_conf;
1748 }
1749
1750 socket->s->task = task_new();
1751 if (!socket->s->task) {
1752 hlua_pusherror(L, "socket: out of memory");
1753 goto out_free_session;
1754 }
1755
1756 socket->s->req = pool_alloc2(pool2_channel);
1757 if (!socket->s->req) {
1758 hlua_pusherror(L, "socket: out of memory");
1759 goto out_fail_req;
1760 }
1761
1762 socket->s->req->buf = pool_alloc2(pool2_buffer);
1763 if (!socket->s->req->buf) {
1764 hlua_pusherror(L, "socket: out of memory");
1765 goto out_fail_req_buf;
1766 }
1767
1768 socket->s->rep = pool_alloc2(pool2_channel);
1769 if (!socket->s->rep) {
1770 hlua_pusherror(L, "socket: out of memory");
1771 goto out_fail_rep;
1772 }
1773
1774 socket->s->rep->buf = pool_alloc2(pool2_buffer);
1775 if (!socket->s->rep->buf) {
1776 hlua_pusherror(L, "socket: out of memory");
1777 goto out_fail_rep_buf;
1778 }
1779
1780 /* Configura empty Lua for the session. */
1781 socket->s->hlua.T = NULL;
1782 socket->s->hlua.Tref = LUA_REFNIL;
1783 socket->s->hlua.Mref = LUA_REFNIL;
1784 socket->s->hlua.nargs = 0;
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +01001785 socket->s->hlua.flags = 0;
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01001786 LIST_INIT(&socket->s->hlua.com);
1787
1788 /* session initialisation. */
1789 session_init_srv_conn(socket->s);
1790
1791 /*
1792 *
1793 * Configure the associated task.
1794 *
1795 */
1796
1797 /* This is the dedicated function to process the session. This function
1798 * is able to establish the conection, process the timeouts, etc ...
1799 */
1800 socket->s->task->process = process_session;
1801
1802 /* Back reference to session. This is used by process_session(). */
1803 socket->s->task->context = socket->s;
1804
1805 /* The priority of the task is normal. */
1806 socket->s->task->nice = 0;
1807
1808 /* Init the next run to eternity. Later in this function, this task is
1809 * waked.
1810 */
1811 socket->s->task->expire = TICK_ETERNITY;
1812
1813 /*
1814 *
1815 * Initialize the attached buffers
1816 *
1817 */
1818 socket->s->req->buf->size = global.tune.bufsize;
1819 socket->s->rep->buf->size = global.tune.bufsize;
1820
1821 /*
1822 *
1823 * Initialize channels.
1824 *
1825 */
1826
1827 /* This function reset the struct. It must be called
1828 * before the configuration.
1829 */
1830 channel_init(socket->s->req);
1831 channel_init(socket->s->rep);
1832
1833 socket->s->req->prod = &socket->s->si[0];
1834 socket->s->req->cons = &socket->s->si[1];
1835
1836 socket->s->rep->prod = &socket->s->si[1];
1837 socket->s->rep->cons = &socket->s->si[0];
1838
1839 socket->s->si[0].ib = socket->s->req;
1840 socket->s->si[0].ob = socket->s->rep;
1841
1842 socket->s->si[1].ib = socket->s->rep;
1843 socket->s->si[1].ob = socket->s->req;
1844
1845 socket->s->req->analysers = 0;
1846 socket->s->req->rto = socket_proxy.timeout.client;
1847 socket->s->req->wto = socket_proxy.timeout.server;
1848 socket->s->req->rex = TICK_ETERNITY;
1849 socket->s->req->wex = TICK_ETERNITY;
1850 socket->s->req->analyse_exp = TICK_ETERNITY;
1851
1852 socket->s->rep->analysers = 0;
1853 socket->s->rep->rto = socket_proxy.timeout.server;
1854 socket->s->rep->wto = socket_proxy.timeout.client;
1855 socket->s->rep->rex = TICK_ETERNITY;
1856 socket->s->rep->wex = TICK_ETERNITY;
1857 socket->s->rep->analyse_exp = TICK_ETERNITY;
1858
1859 /*
1860 *
1861 * Configure the session.
1862 *
1863 */
1864
1865 /* The session dont have listener. The listener is used with real
1866 * proxies.
1867 */
1868 socket->s->listener = NULL;
1869
1870 /* The flags are initialized to 0. Values are setted later. */
1871 socket->s->flags = 0;
1872
1873 /* Assign the configured proxy to the new session. */
1874 socket->s->be = &socket_proxy;
1875 socket->s->fe = &socket_proxy;
1876
1877 /* XXX: Set namy variables */
1878 socket->s->store_count = 0;
1879 memset(socket->s->stkctr, 0, sizeof(socket->s->stkctr));
1880
1881 /* Configure logs. */
1882 socket->s->logs.logwait = 0;
1883 socket->s->logs.level = 0;
1884 socket->s->logs.accept_date = date; /* user-visible date for logging */
1885 socket->s->logs.tv_accept = now; /* corrected date for internal use */
1886 socket->s->do_log = NULL;
1887
1888 /* Function used if an error is occured. */
1889 socket->s->srv_error = default_srv_error;
1890
1891 /* Init the list of buffers. */
1892 LIST_INIT(&socket->s->buffer_wait);
1893
1894 /* Dont configure the unique ID. */
1895 socket->s->uniq_id = 0;
1896 socket->s->unique_id = NULL;
1897
1898 /* XXX: ? */
1899 socket->s->pend_pos = NULL;
1900
1901 /* XXX: See later. */
1902 socket->s->txn.sessid = NULL;
1903 socket->s->txn.srv_cookie = NULL;
1904 socket->s->txn.cli_cookie = NULL;
1905 socket->s->txn.uri = NULL;
1906 socket->s->txn.req.cap = NULL;
1907 socket->s->txn.rsp.cap = NULL;
1908 socket->s->txn.hdr_idx.v = NULL;
1909 socket->s->txn.hdr_idx.size = 0;
1910 socket->s->txn.hdr_idx.used = 0;
1911
1912 /* Configure "left" stream interface as applet. This "si" produce
1913 * and use the data received from the server. The applet is initialized
1914 * and is attached to the stream interface.
1915 */
1916
1917 /* The data producer is already connected. It is the applet. */
1918 socket->s->req->flags = CF_READ_ATTACHED;
1919
1920 channel_auto_connect(socket->s->req); /* don't wait to establish connection */
1921 channel_auto_close(socket->s->req); /* let the producer forward close requests */
1922
1923 si_reset(&socket->s->si[0], socket->s->task);
1924 si_set_state(&socket->s->si[0], SI_ST_EST); /* connection established (resource exists) */
1925
1926 appctx = stream_int_register_handler(&socket->s->si[0], &update_applet);
1927 if (!appctx)
1928 goto out_fail_conn1;
1929 appctx->ctx.hlua.socket = socket;
1930 appctx->ctx.hlua.connected = 0;
1931 LIST_INIT(&appctx->ctx.hlua.wake_on_write);
1932 LIST_INIT(&appctx->ctx.hlua.wake_on_read);
1933
1934 /* Configure "right" stream interface. this "si" is used to connect
1935 * and retrieve data from the server. The connection is initialized
1936 * with the "struct server".
1937 */
1938 si_reset(&socket->s->si[1], socket->s->task);
1939 si_set_state(&socket->s->si[1], SI_ST_INI);
1940 socket->s->si[1].conn_retries = socket_proxy.conn_retries;
1941
1942 /* Force destination server. */
1943 socket->s->flags |= SN_DIRECT | SN_ASSIGNED | SN_ADDR_SET | SN_BE_ASSIGNED;
1944 socket->s->target = &socket_tcp.obj_type;
1945
1946 /* This session is added to te lists of alive sessions. */
1947 LIST_ADDQ(&sessions, &socket->s->list);
1948
1949 /* XXX: I think that this list is used by stats. */
1950 LIST_INIT(&socket->s->back_refs);
1951
1952 /* Update statistics counters. */
1953 socket_proxy.feconn++; /* beconn will be increased later */
1954 jobs++;
1955 totalconn++;
1956
1957 /* Return yield waiting for connection. */
1958 return 1;
1959
1960out_fail_conn1:
1961 pool_free2(pool2_buffer, socket->s->rep->buf);
1962out_fail_rep_buf:
1963 pool_free2(pool2_channel, socket->s->rep);
1964out_fail_rep:
1965 pool_free2(pool2_buffer, socket->s->req->buf);
1966out_fail_req_buf:
1967 pool_free2(pool2_channel, socket->s->req);
1968out_fail_req:
1969 task_free(socket->s->task);
1970out_free_session:
1971 pool_free2(pool2_session, socket->s);
1972out_fail_conf:
1973 WILL_LJMP(lua_error(L));
1974 return 0;
1975}
Thierry FOURNIER65f34c62015-02-16 20:11:43 +01001976
1977/*
1978 *
1979 *
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01001980 * Class Channel
1981 *
1982 *
1983 */
1984
1985/* Returns the struct hlua_channel join to the class channel in the
1986 * stack entry "ud" or throws an argument error.
1987 */
1988__LJMP static struct hlua_channel *hlua_checkchannel(lua_State *L, int ud)
1989{
1990 return (struct hlua_channel *)MAY_LJMP(hlua_checkudata(L, ud, class_channel_ref));
1991}
1992
1993/* Creates new channel object and put it on the top of the stack.
1994 * If the stask does not have a free slots, the function fails
1995 * and returns 0;
1996 */
Thierry FOURNIERbd1f1322015-03-05 17:04:41 +01001997static int hlua_channel_new(lua_State *L, struct session *s, struct channel *channel)
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01001998{
1999 struct hlua_channel *chn;
2000
2001 /* Check stack size. */
2002 if (!lua_checkstack(L, 2))
2003 return 0;
2004
2005 /* NOTE: The allocation never fails. The failure
2006 * throw an error, and the function never returns.
2007 */
2008 chn = lua_newuserdata(L, sizeof(*chn));
2009 chn->chn = channel;
Thierry FOURNIERbd1f1322015-03-05 17:04:41 +01002010 chn->s = s;
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002011
2012 /* Pop a class sesison metatable and affect it to the userdata. */
2013 lua_rawgeti(L, LUA_REGISTRYINDEX, class_channel_ref);
2014 lua_setmetatable(L, -2);
2015
2016 return 1;
2017}
2018
2019/* Duplicate all the data present in the input channel and put it
2020 * in a string LUA variables. Returns -1 and push a nil value in
2021 * the stack if the channel is closed and all the data are consumed,
2022 * returns 0 if no data are available, otherwise it returns the length
2023 * of the builded string.
2024 */
2025static inline int _hlua_channel_dup(struct hlua_channel *chn, lua_State *L)
2026{
2027 char *blk1;
2028 char *blk2;
2029 int len1;
2030 int len2;
2031 int ret;
2032 luaL_Buffer b;
2033
2034 ret = bi_getblk_nc(chn->chn, &blk1, &len1, &blk2, &len2);
2035 if (unlikely(ret == 0))
2036 return 0;
2037
2038 if (unlikely(ret < 0)) {
2039 lua_pushnil(L);
2040 return -1;
2041 }
2042
2043 luaL_buffinit(L, &b);
2044 luaL_addlstring(&b, blk1, len1);
2045 if (unlikely(ret == 2))
2046 luaL_addlstring(&b, blk2, len2);
2047 luaL_pushresult(&b);
2048
2049 if (unlikely(ret == 2))
2050 return len1 + len2;
2051 return len1;
2052}
2053
2054/* "_hlua_channel_dup" wrapper. If no data are available, it returns
2055 * a yield. This function keep the data in the buffer.
2056 */
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002057__LJMP static int hlua_channel_dup_yield(lua_State *L, int status, lua_KContext ctx)
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002058{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002059 struct hlua_channel *chn;
2060
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002061 chn = MAY_LJMP(hlua_checkchannel(L, 1));
2062
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002063 if (_hlua_channel_dup(chn, L) == 0)
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002064 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_channel_dup_yield, TICK_ETERNITY, 0));
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002065 return 1;
2066}
2067
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002068/* Check arguments for the function "hlua_channel_dup_yield". */
2069__LJMP static int hlua_channel_dup(lua_State *L)
2070{
2071 MAY_LJMP(check_args(L, 1, "dup"));
2072 MAY_LJMP(hlua_checkchannel(L, 1));
2073 return MAY_LJMP(hlua_channel_dup_yield(L, 0, 0));
2074}
2075
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002076/* "_hlua_channel_dup" wrapper. If no data are available, it returns
2077 * a yield. This function consumes the data in the buffer. It returns
2078 * a string containing the data or a nil pointer if no data are available
2079 * and the channel is closed.
2080 */
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002081__LJMP static int hlua_channel_get_yield(lua_State *L, int status, lua_KContext ctx)
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002082{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002083 struct hlua_channel *chn;
2084 int ret;
2085
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002086 chn = MAY_LJMP(hlua_checkchannel(L, 1));
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002087
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002088 ret = _hlua_channel_dup(chn, L);
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002089 if (unlikely(ret == 0))
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002090 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_channel_get_yield, TICK_ETERNITY, 0));
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002091
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002092 if (unlikely(ret == -1))
2093 return 1;
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002094
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002095 chn->chn->buf->i -= ret;
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002096 return 1;
2097}
2098
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002099/* Check arguments for the fucntion "hlua_channel_get_yield". */
2100__LJMP static int hlua_channel_get(lua_State *L)
2101{
2102 MAY_LJMP(check_args(L, 1, "get"));
2103 MAY_LJMP(hlua_checkchannel(L, 1));
2104 return MAY_LJMP(hlua_channel_get_yield(L, 0, 0));
2105}
2106
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002107/* This functions consumes and returns one line. If the channel is closed,
2108 * and the last data does not contains a final '\n', the data are returned
2109 * without the final '\n'. When no more data are avalaible, it returns nil
2110 * value.
2111 */
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002112__LJMP static int hlua_channel_getline_yield(lua_State *L, int status, lua_KContext ctx)
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002113{
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002114 char *blk1;
2115 char *blk2;
2116 int len1;
2117 int len2;
2118 int len;
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002119 struct hlua_channel *chn;
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002120 int ret;
2121 luaL_Buffer b;
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002122
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002123 chn = MAY_LJMP(hlua_checkchannel(L, 1));
2124
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002125 ret = bi_getline_nc(chn->chn, &blk1, &len1, &blk2, &len2);
2126 if (ret == 0)
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002127 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_channel_getline_yield, TICK_ETERNITY, 0));
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002128
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002129 if (ret == -1) {
2130 lua_pushnil(L);
2131 return 1;
2132 }
2133
2134 luaL_buffinit(L, &b);
2135 luaL_addlstring(&b, blk1, len1);
2136 len = len1;
2137 if (unlikely(ret == 2)) {
2138 luaL_addlstring(&b, blk2, len2);
2139 len += len2;
2140 }
2141 luaL_pushresult(&b);
2142 buffer_replace2(chn->chn->buf, chn->chn->buf->p, chn->chn->buf->p + len, NULL, 0);
2143 return 1;
2144}
2145
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002146/* Check arguments for the fucntion "hlua_channel_getline_yield". */
2147__LJMP static int hlua_channel_getline(lua_State *L)
2148{
2149 MAY_LJMP(check_args(L, 1, "getline"));
2150 MAY_LJMP(hlua_checkchannel(L, 1));
2151 return MAY_LJMP(hlua_channel_getline_yield(L, 0, 0));
2152}
2153
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002154/* This function takes a string as input, and append it at the
2155 * input side of channel. If the data is too big, but a space
2156 * is probably available after sending some data, the function
2157 * yield. If the data is bigger than the buffer, or if the
2158 * channel is closed, it returns -1. otherwise, it returns the
2159 * amount of data writed.
2160 */
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002161__LJMP static int hlua_channel_append_yield(lua_State *L, int status, lua_KContext ctx)
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002162{
2163 struct hlua_channel *chn = MAY_LJMP(hlua_checkchannel(L, 1));
2164 size_t len;
2165 const char *str = MAY_LJMP(luaL_checklstring(L, 2, &len));
2166 int l = MAY_LJMP(luaL_checkinteger(L, 3));
2167 int ret;
2168 int max;
2169
2170 max = channel_recv_limit(chn->chn) - buffer_len(chn->chn->buf);
2171 if (max > len - l)
2172 max = len - l;
2173
2174 ret = bi_putblk(chn->chn, str+l, max);
2175 if (ret == -2 || ret == -3) {
2176 lua_pushinteger(L, -1);
2177 return 1;
2178 }
2179 if (ret == -1)
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002180 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_channel_append_yield, TICK_ETERNITY, 0));
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002181 l += ret;
2182 lua_pop(L, 1);
2183 lua_pushinteger(L, l);
2184
2185 max = channel_recv_limit(chn->chn) - buffer_len(chn->chn->buf);
2186 if (max == 0 && chn->chn->buf->o == 0) {
2187 /* There are no space avalaible, and the output buffer is empty.
2188 * in this case, we cannot add more data, so we cannot yield,
2189 * we return the amount of copyied data.
2190 */
2191 return 1;
2192 }
2193 if (l < len)
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002194 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_channel_append_yield, TICK_ETERNITY, 0));
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002195 return 1;
2196}
2197
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002198/* just a wrapper of "hlua_channel_append_yield". It returns the length
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002199 * of the writed string, or -1 if the channel is closed or if the
2200 * buffer size is too little for the data.
2201 */
2202__LJMP static int hlua_channel_append(lua_State *L)
2203{
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002204 size_t len;
2205
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002206 MAY_LJMP(check_args(L, 2, "append"));
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002207 MAY_LJMP(hlua_checkchannel(L, 1));
2208 MAY_LJMP(luaL_checklstring(L, 2, &len));
2209 MAY_LJMP(luaL_checkinteger(L, 3));
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002210 lua_pushinteger(L, 0);
2211
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002212 return MAY_LJMP(hlua_channel_append_yield(L, 0, 0));
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002213}
2214
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002215/* just a wrapper of "hlua_channel_append_yield". This wrapper starts
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002216 * his process by cleaning the buffer. The result is a replacement
2217 * of the current data. It returns the length of the writed string,
2218 * or -1 if the channel is closed or if the buffer size is too
2219 * little for the data.
2220 */
2221__LJMP static int hlua_channel_set(lua_State *L)
2222{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002223 struct hlua_channel *chn;
2224
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002225 MAY_LJMP(check_args(L, 2, "set"));
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002226 chn = MAY_LJMP(hlua_checkchannel(L, 1));
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002227 lua_pushinteger(L, 0);
2228
2229 chn->chn->buf->i = 0;
2230
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002231 return MAY_LJMP(hlua_channel_append_yield(L, 0, 0));
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002232}
2233
2234/* Append data in the output side of the buffer. This data is immediatly
2235 * sent. The fcuntion returns the ammount of data writed. If the buffer
2236 * cannot contains the data, the function yield. The function returns -1
2237 * if the channel is closed.
2238 */
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002239__LJMP static int hlua_channel_send_yield(lua_State *L, int status, lua_KContext ctx)
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002240{
2241 struct hlua_channel *chn = MAY_LJMP(hlua_checkchannel(L, 1));
2242 size_t len;
2243 const char *str = MAY_LJMP(luaL_checklstring(L, 2, &len));
2244 int l = MAY_LJMP(luaL_checkinteger(L, 3));
2245 int max;
Thierry FOURNIERef6a2112015-03-05 17:45:34 +01002246 struct hlua *hlua = hlua_gethlua(L);
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002247
2248 if (unlikely(channel_output_closed(chn->chn))) {
2249 lua_pushinteger(L, -1);
2250 return 1;
2251 }
2252
Thierry FOURNIER3e3a6082015-03-05 17:06:12 +01002253 /* Check if the buffer is avalaible because HAProxy doesn't allocate
2254 * the request buffer if its not required.
2255 */
2256 if (chn->chn->buf->size == 0) {
2257 if (!session_alloc_recv_buffer(chn->s, &chn->chn->buf)) {
2258 chn->chn->prod->flags |= SI_FL_WAIT_ROOM;
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002259 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_channel_send_yield, TICK_ETERNITY, 0));
Thierry FOURNIER3e3a6082015-03-05 17:06:12 +01002260 }
2261 }
2262
Thierry FOURNIERdeb5d732015-03-06 01:07:45 +01002263 /* the writed data will be immediatly sent, so we can check
2264 * the avalaible space without taking in account the reserve.
2265 * The reserve is guaranted for the processing of incoming
2266 * data, because the buffer will be flushed.
2267 */
2268 max = chn->chn->buf->size - buffer_len(chn->chn->buf);
2269
2270 /* If there are no space avalaible, and the output buffer is empty.
2271 * in this case, we cannot add more data, so we cannot yield,
2272 * we return the amount of copyied data.
2273 */
2274 if (max == 0 && chn->chn->buf->o == 0)
2275 return 1;
2276
2277 /* Adjust the real required length. */
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002278 if (max > len - l)
2279 max = len - l;
2280
Thierry FOURNIERdeb5d732015-03-06 01:07:45 +01002281 /* The buffer avalaible size may be not contiguous. This test
2282 * detects a non contiguous buffer and realign it.
2283 */
2284 if (buffer_contig_space(chn->chn->buf) < max)
2285 buffer_slow_realign(chn->chn->buf);
2286
2287 /* Copy input data in the buffer. */
Thierry FOURNIER506e46c2015-03-04 11:44:47 +01002288 max = buffer_replace2(chn->chn->buf, chn->chn->buf->p, chn->chn->buf->p, str+l, max);
Thierry FOURNIERdeb5d732015-03-06 01:07:45 +01002289
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002290 /* buffer replace considers that the input part is filled.
2291 * so, I must forward these new data in the output part.
2292 */
2293 b_adv(chn->chn->buf, max);
2294
2295 l += max;
2296 lua_pop(L, 1);
2297 lua_pushinteger(L, l);
2298
Thierry FOURNIERdeb5d732015-03-06 01:07:45 +01002299 /* If there are no space avalaible, and the output buffer is empty.
2300 * in this case, we cannot add more data, so we cannot yield,
2301 * we return the amount of copyied data.
2302 */
2303 max = chn->chn->buf->size - buffer_len(chn->chn->buf);
2304 if (max == 0 && chn->chn->buf->o == 0)
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002305 return 1;
Thierry FOURNIERdeb5d732015-03-06 01:07:45 +01002306
Thierry FOURNIERef6a2112015-03-05 17:45:34 +01002307 if (l < len) {
2308 /* If we are waiting for space in the response buffer, we
2309 * must set the flag WAKERESWR. This flag required the task
2310 * wake up if any activity is detected on the response buffer.
2311 */
2312 if (chn->chn == chn->s->rep)
2313 HLUA_SET_WAKERESWR(hlua);
Thierry FOURNIER53e08ec2015-03-06 00:35:53 +01002314 else
2315 HLUA_SET_WAKEREQWR(hlua);
2316 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_channel_send_yield, TICK_ETERNITY, 0));
Thierry FOURNIERef6a2112015-03-05 17:45:34 +01002317 }
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002318
2319 return 1;
2320}
2321
2322/* Just a wraper of "_hlua_channel_send". This wrapper permits
2323 * yield the LUA process, and resume it without checking the
2324 * input arguments.
2325 */
2326__LJMP static int hlua_channel_send(lua_State *L)
2327{
2328 MAY_LJMP(check_args(L, 2, "send"));
2329 lua_pushinteger(L, 0);
2330
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002331 return MAY_LJMP(hlua_channel_send_yield(L, 0, 0));
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002332}
2333
2334/* This function forward and amount of butes. The data pass from
2335 * the input side of the buffer to the output side, and can be
2336 * forwarded. This function never fails.
2337 *
2338 * The Lua function takes an amount of bytes to be forwarded in
2339 * imput. It returns the number of bytes forwarded.
2340 */
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002341__LJMP static int hlua_channel_forward_yield(lua_State *L, int status, lua_KContext ctx)
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002342{
2343 struct hlua_channel *chn;
2344 int len;
2345 int l;
2346 int max;
Thierry FOURNIERef6a2112015-03-05 17:45:34 +01002347 struct hlua *hlua = hlua_gethlua(L);
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002348
2349 chn = MAY_LJMP(hlua_checkchannel(L, 1));
2350 len = MAY_LJMP(luaL_checkinteger(L, 2));
2351 l = MAY_LJMP(luaL_checkinteger(L, -1));
2352
2353 max = len - l;
2354 if (max > chn->chn->buf->i)
2355 max = chn->chn->buf->i;
2356 channel_forward(chn->chn, max);
2357 l += max;
2358
2359 lua_pop(L, 1);
2360 lua_pushinteger(L, l);
2361
2362 /* Check if it miss bytes to forward. */
2363 if (l < len) {
2364 /* The the input channel or the output channel are closed, we
2365 * must return the amount of data forwarded.
2366 */
2367 if (channel_input_closed(chn->chn) || channel_output_closed(chn->chn))
2368 return 1;
2369
Thierry FOURNIERef6a2112015-03-05 17:45:34 +01002370 /* If we are waiting for space data in the response buffer, we
2371 * must set the flag WAKERESWR. This flag required the task
2372 * wake up if any activity is detected on the response buffer.
2373 */
2374 if (chn->chn == chn->s->rep)
2375 HLUA_SET_WAKERESWR(hlua);
Thierry FOURNIER53e08ec2015-03-06 00:35:53 +01002376 else
2377 HLUA_SET_WAKEREQWR(hlua);
Thierry FOURNIERef6a2112015-03-05 17:45:34 +01002378
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002379 /* Otherwise, we can yield waiting for new data in the inpout side. */
Thierry FOURNIER4abd3ae2015-03-03 17:29:06 +01002380 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_channel_forward_yield, TICK_ETERNITY, 0));
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002381 }
2382
2383 return 1;
2384}
2385
2386/* Just check the input and prepare the stack for the previous
2387 * function "hlua_channel_forward_yield"
2388 */
2389__LJMP static int hlua_channel_forward(lua_State *L)
2390{
2391 MAY_LJMP(check_args(L, 2, "forward"));
2392 MAY_LJMP(hlua_checkchannel(L, 1));
2393 MAY_LJMP(luaL_checkinteger(L, 2));
2394
2395 lua_pushinteger(L, 0);
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002396 return MAY_LJMP(hlua_channel_forward_yield(L, 0, 0));
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002397}
2398
2399/* Just returns the number of bytes available in the input
2400 * side of the buffer. This function never fails.
2401 */
2402__LJMP static int hlua_channel_get_in_len(lua_State *L)
2403{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002404 struct hlua_channel *chn;
2405
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002406 MAY_LJMP(check_args(L, 1, "get_in_len"));
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002407 chn = MAY_LJMP(hlua_checkchannel(L, 1));
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002408 lua_pushinteger(L, chn->chn->buf->i);
2409 return 1;
2410}
2411
2412/* Just returns the number of bytes available in the output
2413 * side of the buffer. This function never fails.
2414 */
2415__LJMP static int hlua_channel_get_out_len(lua_State *L)
2416{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002417 struct hlua_channel *chn;
2418
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002419 MAY_LJMP(check_args(L, 1, "get_out_len"));
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002420 chn = MAY_LJMP(hlua_checkchannel(L, 1));
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01002421 lua_pushinteger(L, chn->chn->buf->o);
2422 return 1;
2423}
2424
2425
2426/*
2427 *
2428 *
Thierry FOURNIER65f34c62015-02-16 20:11:43 +01002429 * Class TXN
2430 *
2431 *
2432 */
2433
2434/* Returns a struct hlua_session if the stack entry "ud" is
2435 * a class session, otherwise it throws an error.
2436 */
2437__LJMP static struct hlua_txn *hlua_checktxn(lua_State *L, int ud)
2438{
2439 return (struct hlua_txn *)MAY_LJMP(hlua_checkudata(L, ud, class_txn_ref));
2440}
2441
Thierry FOURNIER05c0b8a2015-02-25 11:43:21 +01002442__LJMP static int hlua_setpriv(lua_State *L)
2443{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002444 struct hlua *hlua;
2445
Thierry FOURNIER05c0b8a2015-02-25 11:43:21 +01002446 MAY_LJMP(check_args(L, 2, "set_priv"));
2447
2448 /* It is useles to retrieve the session, but this function
2449 * runs only in a session context.
2450 */
2451 MAY_LJMP(hlua_checktxn(L, 1));
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002452 hlua = hlua_gethlua(L);
Thierry FOURNIER05c0b8a2015-02-25 11:43:21 +01002453
2454 /* Remove previous value. */
2455 if (hlua->Mref != -1)
2456 luaL_unref(L, hlua->Mref, LUA_REGISTRYINDEX);
2457
2458 /* Get and store new value. */
2459 lua_pushvalue(L, 2); /* Copy the element 2 at the top of the stack. */
2460 hlua->Mref = luaL_ref(L, LUA_REGISTRYINDEX); /* pop the previously pushed value. */
2461
2462 return 0;
2463}
2464
2465__LJMP static int hlua_getpriv(lua_State *L)
2466{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002467 struct hlua *hlua;
2468
Thierry FOURNIER05c0b8a2015-02-25 11:43:21 +01002469 MAY_LJMP(check_args(L, 1, "get_priv"));
2470
2471 /* It is useles to retrieve the session, but this function
2472 * runs only in a session context.
2473 */
2474 MAY_LJMP(hlua_checktxn(L, 1));
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002475 hlua = hlua_gethlua(L);
Thierry FOURNIER05c0b8a2015-02-25 11:43:21 +01002476
2477 /* Push configuration index in the stack. */
2478 lua_rawgeti(L, LUA_REGISTRYINDEX, hlua->Mref);
2479
2480 return 1;
2481}
2482
Thierry FOURNIER65f34c62015-02-16 20:11:43 +01002483/* Create stack entry containing a class TXN. This function
2484 * return 0 if the stack does not contains free slots,
2485 * otherwise it returns 1.
2486 */
2487static int hlua_txn_new(lua_State *L, struct session *s, struct proxy *p, void *l7)
2488{
2489 struct hlua_txn *hs;
2490
2491 /* Check stack size. */
2492 if (!lua_checkstack(L, 2))
2493 return 0;
2494
2495 /* NOTE: The allocation never fails. The failure
2496 * throw an error, and the function never returns.
2497 * if the throw is not avalaible, the process is aborted.
2498 */
2499 hs = lua_newuserdata(L, sizeof(struct hlua_txn));
2500 hs->s = s;
2501 hs->p = p;
2502 hs->l7 = l7;
2503
2504 /* Pop a class sesison metatable and affect it to the userdata. */
2505 lua_rawgeti(L, LUA_REGISTRYINDEX, class_txn_ref);
2506 lua_setmetatable(L, -2);
2507
2508 return 1;
2509}
2510
Thierry FOURNIERe94e7742015-02-17 14:59:53 +01002511/* This function returns a channel object associated
2512 * with the request channel. This function never fails,
2513 * however if the stack is full, it throws an error.
2514 */
2515__LJMP static int hlua_txn_req_channel(lua_State *L)
2516{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002517 struct hlua_txn *s;
Thierry FOURNIERe94e7742015-02-17 14:59:53 +01002518
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002519 MAY_LJMP(check_args(L, 1, "req_channel"));
2520 s = MAY_LJMP(hlua_checktxn(L, 1));
Thierry FOURNIERe94e7742015-02-17 14:59:53 +01002521
Thierry FOURNIERbd1f1322015-03-05 17:04:41 +01002522 if (!hlua_channel_new(L, s->s, s->s->req))
Thierry FOURNIERe94e7742015-02-17 14:59:53 +01002523 WILL_LJMP(luaL_error(L, "full stack"));
2524
2525 return 1;
2526}
2527
2528/* This function returns a channel object associated
2529 * with the response channel. This function never fails,
2530 * however if the stack is full, it throws an error.
2531 */
2532__LJMP static int hlua_txn_res_channel(lua_State *L)
2533{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002534 struct hlua_txn *s;
Thierry FOURNIERe94e7742015-02-17 14:59:53 +01002535
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002536 MAY_LJMP(check_args(L, 1, "req_channel"));
2537 s = MAY_LJMP(hlua_checktxn(L, 1));
Thierry FOURNIERe94e7742015-02-17 14:59:53 +01002538
Thierry FOURNIERbd1f1322015-03-05 17:04:41 +01002539 if (!hlua_channel_new(L, s->s, s->s->rep))
Thierry FOURNIERe94e7742015-02-17 14:59:53 +01002540 WILL_LJMP(luaL_error(L, "full stack"));
2541
2542 return 1;
2543}
2544
Thierry FOURNIER893bfa32015-02-17 18:42:34 +01002545/* This function is an Lua binding that send pending data
2546 * to the client, and close the stream interface.
2547 */
2548__LJMP static int hlua_txn_close(lua_State *L)
2549{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002550 struct hlua_txn *s;
Thierry FOURNIER893bfa32015-02-17 18:42:34 +01002551
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002552 MAY_LJMP(check_args(L, 1, "close"));
2553 s = MAY_LJMP(hlua_checktxn(L, 1));
Thierry FOURNIER893bfa32015-02-17 18:42:34 +01002554
2555 channel_abort(s->s->si[0].ib);
2556 channel_auto_close(s->s->si[0].ib);
2557 channel_erase(s->s->si[0].ib);
2558 channel_auto_read(s->s->si[0].ob);
2559 channel_auto_close(s->s->si[0].ob);
2560 channel_shutr_now(s->s->si[0].ob);
2561
2562 return 0;
2563}
2564
Thierry FOURNIERd0fa5382015-02-16 20:14:51 +01002565/* This function is an LUA binding. It is called with each sample-fetch.
2566 * It uses closure argument to store the associated sample-fetch. It
Cyril Bonté928ae5c2015-03-02 00:08:41 +01002567 * returns only one argument or throws an error. An error is thrown
2568 * only if an error is encountered during the argument parsing. If
Thierry FOURNIERd0fa5382015-02-16 20:14:51 +01002569 * the "sample-fetch" function fails, nil is returned.
2570 */
2571__LJMP static int hlua_run_sample_fetch(lua_State *L)
2572{
2573 struct hlua_txn *s;
2574 struct hlua_sample_fetch *f;
Cyril Bonté928ae5c2015-03-02 00:08:41 +01002575 struct arg args[ARGM_NBARGS + 1];
Thierry FOURNIERd0fa5382015-02-16 20:14:51 +01002576 int i;
2577 struct sample smp;
2578
2579 /* Get closure arguments. */
2580 f = (struct hlua_sample_fetch *)lua_touserdata(L, lua_upvalueindex(1));
2581
2582 /* Get traditionnal arguments. */
2583 s = MAY_LJMP(hlua_checktxn(L, 1));
2584
2585 /* Get extra arguments. */
Cyril Bonté928ae5c2015-03-02 00:08:41 +01002586 for (i = 0; i < lua_gettop(L) - 1; i++) {
Thierry FOURNIERd0fa5382015-02-16 20:14:51 +01002587 if (i >= ARGM_NBARGS)
2588 break;
2589 hlua_lua2arg(L, i + 2, &args[i]);
2590 }
2591 args[i].type = ARGT_STOP;
2592
2593 /* Check arguments. */
2594 MAY_LJMP(hlua_lua2arg_check(L, 1, args, f->f->arg_mask));
2595
Cyril Bonté928ae5c2015-03-02 00:08:41 +01002596 /* Run the special args checker. */
2597 if (f->f->val_args && !f->f->val_args(args, NULL)) {
Thierry FOURNIERd0fa5382015-02-16 20:14:51 +01002598 lua_pushfstring(L, "error in arguments");
2599 WILL_LJMP(lua_error(L));
2600 }
2601
2602 /* Initialise the sample. */
2603 memset(&smp, 0, sizeof(smp));
2604
2605 /* Run the sample fetch process. */
2606 if (!f->f->process(s->p, s->s, s->l7, 0, args, &smp, f->f->kw, f->f->private)) {
2607 lua_pushnil(L);
2608 return 1;
2609 }
2610
2611 /* Convert the returned sample in lua value. */
2612 hlua_smp2lua(L, &smp);
2613 return 1;
2614}
2615
Thierry FOURNIER9a819e72015-02-16 20:22:55 +01002616/* This function is an LUA binding. It creates ans returns
2617 * an array of HTTP headers. This function does not fails.
2618 */
2619static int hlua_session_getheaders(lua_State *L)
2620{
2621 struct hlua_txn *s = MAY_LJMP(hlua_checktxn(L, 1));
2622 struct session *sess = s->s;
2623 const char *cur_ptr, *cur_next, *p;
2624 int old_idx, cur_idx;
2625 struct hdr_idx_elem *cur_hdr;
2626 const char *hn, *hv;
2627 int hnl, hvl;
2628
2629 /* Create the table. */
2630 lua_newtable(L);
2631
2632 /* Build array of headers. */
2633 old_idx = 0;
2634 cur_next = sess->req->buf->p + hdr_idx_first_pos(&sess->txn.hdr_idx);
2635
2636 while (1) {
2637 cur_idx = sess->txn.hdr_idx.v[old_idx].next;
2638 if (!cur_idx)
2639 break;
2640 old_idx = cur_idx;
2641
2642 cur_hdr = &sess->txn.hdr_idx.v[cur_idx];
2643 cur_ptr = cur_next;
2644 cur_next = cur_ptr + cur_hdr->len + cur_hdr->cr + 1;
2645
2646 /* Now we have one full header at cur_ptr of len cur_hdr->len,
2647 * and the next header starts at cur_next. We'll check
2648 * this header in the list as well as against the default
2649 * rule.
2650 */
2651
2652 /* look for ': *'. */
2653 hn = cur_ptr;
2654 for (p = cur_ptr; p < cur_ptr + cur_hdr->len && *p != ':'; p++);
2655 if (p >= cur_ptr+cur_hdr->len)
2656 continue;
2657 hnl = p - hn;
2658 p++;
2659 while (p < cur_ptr+cur_hdr->len && ( *p == ' ' || *p == '\t' ))
2660 p++;
2661 if (p >= cur_ptr+cur_hdr->len)
2662 continue;
2663 hv = p;
2664 hvl = cur_ptr+cur_hdr->len-p;
2665
2666 /* Push values in the table. */
2667 lua_pushlstring(L, hn, hnl);
2668 lua_pushlstring(L, hv, hvl);
2669 lua_settable(L, -3);
2670 }
2671
2672 return 1;
2673}
2674
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002675__LJMP static int hlua_sleep_yield(lua_State *L, int status, lua_KContext ctx)
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +01002676{
2677 int wakeup_ms = lua_tointeger(L, -1);
2678 if (now_ms < wakeup_ms)
Thierry FOURNIERd44731f2015-03-04 15:51:09 +01002679 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_sleep_yield, wakeup_ms, 0));
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +01002680 return 0;
2681}
2682
2683__LJMP static int hlua_sleep(lua_State *L)
2684{
2685 unsigned int delay;
Thierry FOURNIERd44731f2015-03-04 15:51:09 +01002686 unsigned int wakeup_ms;
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +01002687
Thierry FOURNIERd44731f2015-03-04 15:51:09 +01002688 MAY_LJMP(check_args(L, 1, "sleep"));
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +01002689
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002690 delay = MAY_LJMP(luaL_checkinteger(L, 1)) * 1000;
Thierry FOURNIERd44731f2015-03-04 15:51:09 +01002691 wakeup_ms = tick_add(now_ms, delay);
2692 lua_pushinteger(L, wakeup_ms);
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +01002693
Thierry FOURNIERd44731f2015-03-04 15:51:09 +01002694 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_sleep_yield, wakeup_ms, 0));
2695 return 0;
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +01002696}
2697
Thierry FOURNIERd44731f2015-03-04 15:51:09 +01002698__LJMP static int hlua_msleep(lua_State *L)
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +01002699{
2700 unsigned int delay;
Thierry FOURNIERd44731f2015-03-04 15:51:09 +01002701 unsigned int wakeup_ms;
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +01002702
Thierry FOURNIERd44731f2015-03-04 15:51:09 +01002703 MAY_LJMP(check_args(L, 1, "msleep"));
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +01002704
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002705 delay = MAY_LJMP(luaL_checkinteger(L, 1));
Thierry FOURNIERd44731f2015-03-04 15:51:09 +01002706 wakeup_ms = tick_add(now_ms, delay);
2707 lua_pushinteger(L, wakeup_ms);
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +01002708
Thierry FOURNIERd44731f2015-03-04 15:51:09 +01002709 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_sleep_yield, wakeup_ms, 0));
2710 return 0;
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +01002711}
2712
Thierry FOURNIER13416fe2015-02-17 15:01:59 +01002713/* This functionis an LUA binding. it permits to give back
2714 * the hand at the HAProxy scheduler. It is used when the
2715 * LUA processing consumes a lot of time.
2716 */
Thierry FOURNIERf90838b2015-03-06 13:48:32 +01002717__LJMP static int hlua_yield_yield(lua_State *L, int status, lua_KContext ctx)
Thierry FOURNIERd44731f2015-03-04 15:51:09 +01002718{
2719 return 0;
2720}
2721
Thierry FOURNIER13416fe2015-02-17 15:01:59 +01002722__LJMP static int hlua_yield(lua_State *L)
2723{
Thierry FOURNIERd44731f2015-03-04 15:51:09 +01002724 WILL_LJMP(hlua_yieldk(L, 0, 0, hlua_yield_yield, TICK_ETERNITY, HLUA_CTRLYIELD));
2725 return 0;
Thierry FOURNIER13416fe2015-02-17 15:01:59 +01002726}
2727
Thierry FOURNIER37196f42015-02-16 19:34:56 +01002728/* This function change the nice of the currently executed
2729 * task. It is used set low or high priority at the current
2730 * task.
2731 */
2732__LJMP static int hlua_setnice(lua_State *L)
2733{
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002734 struct hlua *hlua;
2735 int nice;
Thierry FOURNIER37196f42015-02-16 19:34:56 +01002736
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002737 MAY_LJMP(check_args(L, 1, "set_nice"));
2738 hlua = hlua_gethlua(L);
2739 nice = MAY_LJMP(luaL_checkinteger(L, 1));
Thierry FOURNIER37196f42015-02-16 19:34:56 +01002740
2741 /* If he task is not set, I'm in a start mode. */
2742 if (!hlua || !hlua->task)
2743 return 0;
2744
2745 if (nice < -1024)
2746 nice = -1024;
Willy Tarreau80f5fae2015-02-27 16:38:20 +01002747 else if (nice > 1024)
Thierry FOURNIER37196f42015-02-16 19:34:56 +01002748 nice = 1024;
2749
2750 hlua->task->nice = nice;
2751 return 0;
2752}
2753
Thierry FOURNIER24f33532015-01-23 12:13:00 +01002754/* This function is used as a calback of a task. It is called by the
2755 * HAProxy task subsystem when the task is awaked. The LUA runtime can
2756 * return an E_AGAIN signal, the emmiter of this signal must set a
2757 * signal to wake the task.
2758 */
2759static struct task *hlua_process_task(struct task *task)
2760{
2761 struct hlua *hlua = task->context;
2762 enum hlua_exec status;
2763
2764 /* We need to remove the task from the wait queue before executing
2765 * the Lua code because we don't know if it needs to wait for
2766 * another timer or not in the case of E_AGAIN.
2767 */
2768 task_delete(task);
2769
Thierry FOURNIERbd413492015-03-03 16:52:26 +01002770 /* If it is the first call to the task, we must initialize the
2771 * execution timeouts.
2772 */
2773 if (!HLUA_IS_RUNNING(hlua))
2774 hlua->expire = tick_add(now_ms, hlua_timeout_task);
2775
Thierry FOURNIER24f33532015-01-23 12:13:00 +01002776 /* Execute the Lua code. */
2777 status = hlua_ctx_resume(hlua, 1);
2778
2779 switch (status) {
2780 /* finished or yield */
2781 case HLUA_E_OK:
2782 hlua_ctx_destroy(hlua);
2783 task_delete(task);
2784 task_free(task);
2785 break;
2786
Thierry FOURNIERc42c1ae2015-03-03 17:17:55 +01002787 case HLUA_E_AGAIN: /* co process or timeout wake me later. */
2788 if (hlua->wake_time != TICK_ETERNITY)
2789 task_schedule(task, hlua->wake_time);
Thierry FOURNIER24f33532015-01-23 12:13:00 +01002790 break;
2791
2792 /* finished with error. */
2793 case HLUA_E_ERRMSG:
2794 send_log(NULL, LOG_ERR, "Lua task: %s.", lua_tostring(hlua->T, -1));
2795 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
2796 Alert("Lua task: %s.\n", lua_tostring(hlua->T, -1));
2797 hlua_ctx_destroy(hlua);
2798 task_delete(task);
2799 task_free(task);
2800 break;
2801
2802 case HLUA_E_ERR:
2803 default:
2804 send_log(NULL, LOG_ERR, "Lua task: unknown error.");
2805 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
2806 Alert("Lua task: unknown error.\n");
2807 hlua_ctx_destroy(hlua);
2808 task_delete(task);
2809 task_free(task);
2810 break;
2811 }
2812 return NULL;
2813}
2814
Thierry FOURNIERa4a0f3d2015-01-23 12:08:30 +01002815/* This function is an LUA binding that register LUA function to be
2816 * executed after the HAProxy configuration parsing and before the
2817 * HAProxy scheduler starts. This function expect only one LUA
2818 * argument that is a function. This function returns nothing, but
2819 * throws if an error is encountered.
2820 */
2821__LJMP static int hlua_register_init(lua_State *L)
2822{
2823 struct hlua_init_function *init;
2824 int ref;
2825
2826 MAY_LJMP(check_args(L, 1, "register_init"));
2827
2828 ref = MAY_LJMP(hlua_checkfunction(L, 1));
2829
2830 init = malloc(sizeof(*init));
2831 if (!init)
2832 WILL_LJMP(luaL_error(L, "lua out of memory error."));
2833
2834 init->function_ref = ref;
2835 LIST_ADDQ(&hlua_init_functions, &init->l);
2836 return 0;
2837}
2838
Thierry FOURNIER24f33532015-01-23 12:13:00 +01002839/* This functio is an LUA binding. It permits to register a task
2840 * executed in parallel of the main HAroxy activity. The task is
2841 * created and it is set in the HAProxy scheduler. It can be called
2842 * from the "init" section, "post init" or during the runtime.
2843 *
2844 * Lua prototype:
2845 *
2846 * <none> core.register_task(<function>)
2847 */
2848static int hlua_register_task(lua_State *L)
2849{
2850 struct hlua *hlua;
2851 struct task *task;
2852 int ref;
2853
2854 MAY_LJMP(check_args(L, 1, "register_task"));
2855
2856 ref = MAY_LJMP(hlua_checkfunction(L, 1));
2857
2858 hlua = malloc(sizeof(*hlua));
2859 if (!hlua)
2860 WILL_LJMP(luaL_error(L, "lua out of memory error."));
2861
2862 task = task_new();
2863 task->context = hlua;
2864 task->process = hlua_process_task;
2865
2866 if (!hlua_ctx_init(hlua, task))
2867 WILL_LJMP(luaL_error(L, "lua out of memory error."));
2868
2869 /* Restore the function in the stack. */
2870 lua_rawgeti(hlua->T, LUA_REGISTRYINDEX, ref);
2871 hlua->nargs = 0;
2872
2873 /* Schedule task. */
2874 task_schedule(task, now_ms);
2875
2876 return 0;
2877}
2878
Thierry FOURNIER9be813f2015-02-16 20:21:12 +01002879/* Wrapper called by HAProxy to execute an LUA converter. This wrapper
2880 * doesn't allow "yield" functions because the HAProxy engine cannot
2881 * resume converters.
2882 */
2883static int hlua_sample_conv_wrapper(struct session *session, const struct arg *arg_p,
2884 struct sample *smp, void *private)
2885{
2886 struct hlua_function *fcn = (struct hlua_function *)private;
2887
Thierry FOURNIER05ac4242015-02-27 18:37:27 +01002888 /* In the execution wrappers linked with a session, the
2889 * Lua context can be not initialized. This behavior
2890 * permits to save performances because a systematic
2891 * Lua initialization cause 5% performances loss.
2892 */
2893 if (!session->hlua.T && !hlua_ctx_init(&session->hlua, session->task)) {
2894 send_log(session->be, LOG_ERR, "Lua converter '%s': can't initialize Lua context.", fcn->name);
2895 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
2896 Alert("Lua converter '%s': can't initialize Lua context.\n", fcn->name);
2897 return 0;
2898 }
2899
Thierry FOURNIER9be813f2015-02-16 20:21:12 +01002900 /* If it is the first run, initialize the data for the call. */
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +01002901 if (!HLUA_IS_RUNNING(&session->hlua)) {
Thierry FOURNIER9be813f2015-02-16 20:21:12 +01002902 /* Check stack available size. */
2903 if (!lua_checkstack(session->hlua.T, 1)) {
2904 send_log(session->be, LOG_ERR, "Lua converter '%s': full stack.", fcn->name);
2905 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
2906 Alert("Lua converter '%s': full stack.\n", fcn->name);
2907 return 0;
2908 }
2909
2910 /* Restore the function in the stack. */
2911 lua_rawgeti(session->hlua.T, LUA_REGISTRYINDEX, fcn->function_ref);
2912
2913 /* convert input sample and pust-it in the stack. */
2914 if (!lua_checkstack(session->hlua.T, 1)) {
2915 send_log(session->be, LOG_ERR, "Lua converter '%s': full stack.", fcn->name);
2916 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
2917 Alert("Lua converter '%s': full stack.\n", fcn->name);
2918 return 0;
2919 }
2920 hlua_smp2lua(session->hlua.T, smp);
2921 session->hlua.nargs = 2;
2922
2923 /* push keywords in the stack. */
2924 if (arg_p) {
2925 for (; arg_p->type != ARGT_STOP; arg_p++) {
2926 if (!lua_checkstack(session->hlua.T, 1)) {
2927 send_log(session->be, LOG_ERR, "Lua converter '%s': full stack.", fcn->name);
2928 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
2929 Alert("Lua converter '%s': full stack.\n", fcn->name);
2930 return 0;
2931 }
2932 hlua_arg2lua(session->hlua.T, arg_p);
2933 session->hlua.nargs++;
2934 }
2935 }
2936
Thierry FOURNIERbd413492015-03-03 16:52:26 +01002937 /* We must initialize the execution timeouts. */
2938 session->hlua.expire = tick_add(now_ms, hlua_timeout_session);
2939
Thierry FOURNIER9be813f2015-02-16 20:21:12 +01002940 /* Set the currently running flag. */
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +01002941 HLUA_SET_RUN(&session->hlua);
Thierry FOURNIER9be813f2015-02-16 20:21:12 +01002942 }
2943
2944 /* Execute the function. */
2945 switch (hlua_ctx_resume(&session->hlua, 0)) {
2946 /* finished. */
2947 case HLUA_E_OK:
2948 /* Convert the returned value in sample. */
2949 hlua_lua2smp(session->hlua.T, -1, smp);
2950 lua_pop(session->hlua.T, 1);
2951 return 1;
2952
2953 /* yield. */
2954 case HLUA_E_AGAIN:
2955 send_log(session->be, LOG_ERR, "Lua converter '%s': cannot use yielded functions.", fcn->name);
2956 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
2957 Alert("Lua converter '%s': cannot use yielded functions.\n", fcn->name);
2958 return 0;
2959
2960 /* finished with error. */
2961 case HLUA_E_ERRMSG:
2962 /* Display log. */
2963 send_log(session->be, LOG_ERR, "Lua converter '%s': %s.", fcn->name, lua_tostring(session->hlua.T, -1));
2964 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
2965 Alert("Lua converter '%s': %s.\n", fcn->name, lua_tostring(session->hlua.T, -1));
2966 lua_pop(session->hlua.T, 1);
2967 return 0;
2968
2969 case HLUA_E_ERR:
2970 /* Display log. */
2971 send_log(session->be, LOG_ERR, "Lua converter '%s' returns an unknown error.", fcn->name);
2972 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
2973 Alert("Lua converter '%s' returns an unknown error.\n", fcn->name);
2974
2975 default:
2976 return 0;
2977 }
2978}
2979
Thierry FOURNIERfa0e5dd2015-02-16 20:19:18 +01002980/* Wrapper called by HAProxy to execute a sample-fetch. this wrapper
2981 * doesn't allow "yield" functions because the HAProxy engine cannot
2982 * resume sample-fetches.
2983 */
2984static int hlua_sample_fetch_wrapper(struct proxy *px, struct session *s, void *l7,
2985 unsigned int opt, const struct arg *arg_p,
2986 struct sample *smp, const char *kw, void *private)
2987{
2988 struct hlua_function *fcn = (struct hlua_function *)private;
2989
Thierry FOURNIER05ac4242015-02-27 18:37:27 +01002990 /* In the execution wrappers linked with a session, the
2991 * Lua context can be not initialized. This behavior
2992 * permits to save performances because a systematic
2993 * Lua initialization cause 5% performances loss.
2994 */
2995 if (!s->hlua.T && !hlua_ctx_init(&s->hlua, s->task)) {
2996 send_log(s->be, LOG_ERR, "Lua sample-fetch '%s': can't initialize Lua context.", fcn->name);
2997 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
2998 Alert("Lua sample-fetch '%s': can't initialize Lua context.\n", fcn->name);
2999 return 0;
3000 }
3001
Thierry FOURNIERfa0e5dd2015-02-16 20:19:18 +01003002 /* If it is the first run, initialize the data for the call. */
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +01003003 if (!HLUA_IS_RUNNING(&s->hlua)) {
Thierry FOURNIERfa0e5dd2015-02-16 20:19:18 +01003004 /* Check stack available size. */
3005 if (!lua_checkstack(s->hlua.T, 2)) {
3006 send_log(px, LOG_ERR, "Lua sample-fetch '%s': full stack.", fcn->name);
3007 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
3008 Alert("Lua sample-fetch '%s': full stack.\n", fcn->name);
3009 return 0;
3010 }
3011
3012 /* Restore the function in the stack. */
3013 lua_rawgeti(s->hlua.T, LUA_REGISTRYINDEX, fcn->function_ref);
3014
3015 /* push arguments in the stack. */
3016 if (!hlua_txn_new(s->hlua.T, s, px, l7)) {
3017 send_log(px, LOG_ERR, "Lua sample-fetch '%s': full stack.", fcn->name);
3018 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
3019 Alert("Lua sample-fetch '%s': full stack.\n", fcn->name);
3020 return 0;
3021 }
3022 s->hlua.nargs = 1;
3023
3024 /* push keywords in the stack. */
3025 for (; arg_p && arg_p->type != ARGT_STOP; arg_p++) {
3026 /* Check stack available size. */
3027 if (!lua_checkstack(s->hlua.T, 1)) {
3028 send_log(px, LOG_ERR, "Lua sample-fetch '%s': full stack.", fcn->name);
3029 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
3030 Alert("Lua sample-fetch '%s': full stack.\n", fcn->name);
3031 return 0;
3032 }
3033 if (!lua_checkstack(s->hlua.T, 1)) {
3034 send_log(px, LOG_ERR, "Lua sample-fetch '%s': full stack.", fcn->name);
3035 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
3036 Alert("Lua sample-fetch '%s': full stack.\n", fcn->name);
3037 return 0;
3038 }
3039 hlua_arg2lua(s->hlua.T, arg_p);
3040 s->hlua.nargs++;
3041 }
3042
Thierry FOURNIERbd413492015-03-03 16:52:26 +01003043 /* We must initialize the execution timeouts. */
3044 s->hlua.expire = tick_add(now_ms, hlua_timeout_session);
3045
Thierry FOURNIERfa0e5dd2015-02-16 20:19:18 +01003046 /* Set the currently running flag. */
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +01003047 HLUA_SET_RUN(&s->hlua);
Thierry FOURNIERfa0e5dd2015-02-16 20:19:18 +01003048 }
3049
3050 /* Execute the function. */
3051 switch (hlua_ctx_resume(&s->hlua, 0)) {
3052 /* finished. */
3053 case HLUA_E_OK:
3054 /* Convert the returned value in sample. */
3055 hlua_lua2smp(s->hlua.T, -1, smp);
3056 lua_pop(s->hlua.T, 1);
3057
3058 /* Set the end of execution flag. */
3059 smp->flags &= ~SMP_F_MAY_CHANGE;
3060 return 1;
3061
3062 /* yield. */
3063 case HLUA_E_AGAIN:
3064 send_log(px, LOG_ERR, "Lua sample-fetch '%s': cannot use yielded functions.", fcn->name);
3065 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
3066 Alert("Lua sample-fetch '%s': cannot use yielded functions.\n", fcn->name);
3067 return 0;
3068
3069 /* finished with error. */
3070 case HLUA_E_ERRMSG:
3071 /* Display log. */
3072 send_log(px, LOG_ERR, "Lua sample-fetch '%s': %s.", fcn->name, lua_tostring(s->hlua.T, -1));
3073 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
3074 Alert("Lua sample-fetch '%s': %s.\n", fcn->name, lua_tostring(s->hlua.T, -1));
3075 lua_pop(s->hlua.T, 1);
3076 return 0;
3077
3078 case HLUA_E_ERR:
3079 /* Display log. */
3080 send_log(px, LOG_ERR, "Lua sample-fetch '%s' returns an unknown error.", fcn->name);
3081 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
3082 Alert("Lua sample-fetch '%s': returns an unknown error.\n", fcn->name);
3083
3084 default:
3085 return 0;
3086 }
3087}
3088
Thierry FOURNIER9be813f2015-02-16 20:21:12 +01003089/* This function is an LUA binding used for registering
3090 * "sample-conv" functions. It expects a converter name used
3091 * in the haproxy configuration file, and an LUA function.
3092 */
3093__LJMP static int hlua_register_converters(lua_State *L)
3094{
3095 struct sample_conv_kw_list *sck;
3096 const char *name;
3097 int ref;
3098 int len;
3099 struct hlua_function *fcn;
3100
3101 MAY_LJMP(check_args(L, 2, "register_converters"));
3102
3103 /* First argument : converter name. */
3104 name = MAY_LJMP(luaL_checkstring(L, 1));
3105
3106 /* Second argument : lua function. */
3107 ref = MAY_LJMP(hlua_checkfunction(L, 2));
3108
3109 /* Allocate and fill the sample fetch keyword struct. */
3110 sck = malloc(sizeof(struct sample_conv_kw_list) +
3111 sizeof(struct sample_conv) * 2);
3112 if (!sck)
3113 WILL_LJMP(luaL_error(L, "lua out of memory error."));
3114 fcn = malloc(sizeof(*fcn));
3115 if (!fcn)
3116 WILL_LJMP(luaL_error(L, "lua out of memory error."));
3117
3118 /* Fill fcn. */
3119 fcn->name = strdup(name);
3120 if (!fcn->name)
3121 WILL_LJMP(luaL_error(L, "lua out of memory error."));
3122 fcn->function_ref = ref;
3123
3124 /* List head */
3125 sck->list.n = sck->list.p = NULL;
3126
3127 /* converter keyword. */
3128 len = strlen("lua.") + strlen(name) + 1;
3129 sck->kw[0].kw = malloc(len);
3130 if (!sck->kw[0].kw)
3131 WILL_LJMP(luaL_error(L, "lua out of memory error."));
3132
3133 snprintf((char *)sck->kw[0].kw, len, "lua.%s", name);
3134 sck->kw[0].process = hlua_sample_conv_wrapper;
3135 sck->kw[0].arg_mask = ARG5(0,STR,STR,STR,STR,STR);
3136 sck->kw[0].val_args = NULL;
3137 sck->kw[0].in_type = SMP_T_STR;
3138 sck->kw[0].out_type = SMP_T_STR;
3139 sck->kw[0].private = fcn;
3140
3141 /* End of array. */
3142 memset(&sck->kw[1], 0, sizeof(struct sample_conv));
3143
3144 /* Register this new converter */
3145 sample_register_convs(sck);
3146
3147 return 0;
3148}
3149
Thierry FOURNIERfa0e5dd2015-02-16 20:19:18 +01003150/* This fucntion is an LUA binding used for registering
3151 * "sample-fetch" functions. It expects a converter name used
3152 * in the haproxy configuration file, and an LUA function.
3153 */
3154__LJMP static int hlua_register_fetches(lua_State *L)
3155{
3156 const char *name;
3157 int ref;
3158 int len;
3159 struct sample_fetch_kw_list *sfk;
3160 struct hlua_function *fcn;
3161
3162 MAY_LJMP(check_args(L, 2, "register_fetches"));
3163
3164 /* First argument : sample-fetch name. */
3165 name = MAY_LJMP(luaL_checkstring(L, 1));
3166
3167 /* Second argument : lua function. */
3168 ref = MAY_LJMP(hlua_checkfunction(L, 2));
3169
3170 /* Allocate and fill the sample fetch keyword struct. */
3171 sfk = malloc(sizeof(struct sample_fetch_kw_list) +
3172 sizeof(struct sample_fetch) * 2);
3173 if (!sfk)
3174 WILL_LJMP(luaL_error(L, "lua out of memory error."));
3175 fcn = malloc(sizeof(*fcn));
3176 if (!fcn)
3177 WILL_LJMP(luaL_error(L, "lua out of memory error."));
3178
3179 /* Fill fcn. */
3180 fcn->name = strdup(name);
3181 if (!fcn->name)
3182 WILL_LJMP(luaL_error(L, "lua out of memory error."));
3183 fcn->function_ref = ref;
3184
3185 /* List head */
3186 sfk->list.n = sfk->list.p = NULL;
3187
3188 /* sample-fetch keyword. */
3189 len = strlen("lua.") + strlen(name) + 1;
3190 sfk->kw[0].kw = malloc(len);
3191 if (!sfk->kw[0].kw)
3192 return luaL_error(L, "lua out of memory error.");
3193
3194 snprintf((char *)sfk->kw[0].kw, len, "lua.%s", name);
3195 sfk->kw[0].process = hlua_sample_fetch_wrapper;
3196 sfk->kw[0].arg_mask = ARG5(0,STR,STR,STR,STR,STR);
3197 sfk->kw[0].val_args = NULL;
3198 sfk->kw[0].out_type = SMP_T_STR;
3199 sfk->kw[0].use = SMP_USE_HTTP_ANY;
3200 sfk->kw[0].val = 0;
3201 sfk->kw[0].private = fcn;
3202
3203 /* End of array. */
3204 memset(&sfk->kw[1], 0, sizeof(struct sample_fetch));
3205
3206 /* Register this new fetch. */
3207 sample_register_fetches(sfk);
3208
3209 return 0;
3210}
3211
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +01003212/* global {tcp|http}-request parser. Return 1 in succes case, else return 0. */
3213static int hlua_parse_rule(const char **args, int *cur_arg, struct proxy *px,
3214 struct hlua_rule **rule_p, char **err)
3215{
3216 struct hlua_rule *rule;
3217
3218 /* Memory for the rule. */
3219 rule = malloc(sizeof(*rule));
3220 if (!rule) {
3221 memprintf(err, "out of memory error");
3222 return 0;
3223 }
3224 *rule_p = rule;
3225
3226 /* The requiered arg is a function name. */
3227 if (!args[*cur_arg]) {
3228 memprintf(err, "expect Lua function name");
3229 return 0;
3230 }
3231
3232 /* Lookup for the symbol, and check if it is a function. */
3233 lua_getglobal(gL.T, args[*cur_arg]);
3234 if (lua_isnil(gL.T, -1)) {
3235 lua_pop(gL.T, 1);
3236 memprintf(err, "Lua function '%s' not found", args[*cur_arg]);
3237 return 0;
3238 }
3239 if (!lua_isfunction(gL.T, -1)) {
3240 lua_pop(gL.T, 1);
3241 memprintf(err, "'%s' is not a function", args[*cur_arg]);
3242 return 0;
3243 }
3244
3245 /* Reference the Lua function and store the reference. */
3246 rule->fcn.function_ref = luaL_ref(gL.T, LUA_REGISTRYINDEX);
3247 rule->fcn.name = strdup(args[*cur_arg]);
3248 if (!rule->fcn.name) {
3249 memprintf(err, "out of memory error.");
3250 return 0;
3251 }
3252 (*cur_arg)++;
3253
3254 /* TODO: later accept arguments. */
3255 rule->args = NULL;
3256
3257 return 1;
3258}
3259
3260/* This function is a wrapper to execute each LUA function declared
3261 * as an action wrapper during the initialisation period. This function
3262 * return 1 if the processing is finished (with oe without error) and
3263 * return 0 if the function must be called again because the LUA
3264 * returns a yield.
3265 */
3266static int hlua_request_act_wrapper(struct hlua_rule *rule, struct proxy *px,
3267 struct session *s, struct http_txn *http_txn,
3268 unsigned int analyzer)
3269{
3270 char **arg;
3271
Thierry FOURNIER05ac4242015-02-27 18:37:27 +01003272 /* In the execution wrappers linked with a session, the
3273 * Lua context can be not initialized. This behavior
3274 * permits to save performances because a systematic
3275 * Lua initialization cause 5% performances loss.
3276 */
3277 if (!s->hlua.T && !hlua_ctx_init(&s->hlua, s->task)) {
3278 send_log(px, LOG_ERR, "Lua action '%s': can't initialize Lua context.", rule->fcn.name);
3279 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
3280 Alert("Lua action '%s': can't initialize Lua context.\n", rule->fcn.name);
3281 return 0;
3282 }
3283
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +01003284 /* If it is the first run, initialize the data for the call. */
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +01003285 if (!HLUA_IS_RUNNING(&s->hlua)) {
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +01003286 /* Check stack available size. */
3287 if (!lua_checkstack(s->hlua.T, 1)) {
3288 send_log(px, LOG_ERR, "Lua function '%s': full stack.", rule->fcn.name);
3289 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
3290 Alert("Lua function '%s': full stack.\n", rule->fcn.name);
3291 return 0;
3292 }
3293
3294 /* Restore the function in the stack. */
3295 lua_rawgeti(s->hlua.T, LUA_REGISTRYINDEX, rule->fcn.function_ref);
3296
3297 /* Create and and push object session in the stack. */
3298 if (!hlua_txn_new(s->hlua.T, s, px, http_txn)) {
3299 send_log(px, LOG_ERR, "Lua function '%s': full stack.", rule->fcn.name);
3300 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
3301 Alert("Lua function '%s': full stack.\n", rule->fcn.name);
3302 return 0;
3303 }
3304 s->hlua.nargs = 1;
3305
3306 /* push keywords in the stack. */
3307 for (arg = rule->args; arg && *arg; arg++) {
3308 if (!lua_checkstack(s->hlua.T, 1)) {
3309 send_log(px, LOG_ERR, "Lua function '%s': full stack.", rule->fcn.name);
3310 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
3311 Alert("Lua function '%s': full stack.\n", rule->fcn.name);
3312 return 0;
3313 }
3314 lua_pushstring(s->hlua.T, *arg);
3315 s->hlua.nargs++;
3316 }
3317
Thierry FOURNIERbd413492015-03-03 16:52:26 +01003318 /* We must initialize the execution timeouts. */
3319 s->hlua.expire = tick_add(now_ms, hlua_timeout_session);
3320
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +01003321 /* Set the currently running flag. */
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +01003322 HLUA_SET_RUN(&s->hlua);
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +01003323 }
3324
3325 /* Execute the function. */
3326 switch (hlua_ctx_resume(&s->hlua, 1)) {
3327 /* finished. */
3328 case HLUA_E_OK:
3329 return 1;
3330
3331 /* yield. */
3332 case HLUA_E_AGAIN:
Thierry FOURNIERc42c1ae2015-03-03 17:17:55 +01003333 /* Set timeout in the required channel. */
3334 if (s->hlua.wake_time != TICK_ETERNITY) {
3335 if (analyzer & (AN_REQ_INSPECT_FE|AN_REQ_HTTP_PROCESS_FE))
3336 s->req->analyse_exp = s->hlua.wake_time;
3337 else if (analyzer & (AN_RES_INSPECT|AN_RES_HTTP_PROCESS_BE))
3338 s->rep->analyse_exp = s->hlua.wake_time;
3339 }
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +01003340 /* Some actions can be wake up when a "write" event
3341 * is detected on a response channel. This is useful
3342 * only for actions targetted on the requests.
3343 */
Thierry FOURNIERef6a2112015-03-05 17:45:34 +01003344 if (HLUA_IS_WAKERESWR(&s->hlua)) {
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +01003345 s->rep->flags |= CF_WAKE_WRITE;
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +01003346 }
Thierry FOURNIERcd9084f2015-03-07 15:11:09 +01003347 if ((analyzer & (AN_REQ_INSPECT_FE|AN_REQ_HTTP_PROCESS_FE)))
3348 s->rep->analysers |= analyzer;
Thierry FOURNIER53e08ec2015-03-06 00:35:53 +01003349 if (HLUA_IS_WAKEREQWR(&s->hlua))
3350 s->req->flags |= CF_WAKE_WRITE;
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +01003351 return 0;
3352
3353 /* finished with error. */
3354 case HLUA_E_ERRMSG:
3355 /* Display log. */
3356 send_log(px, LOG_ERR, "Lua function '%s': %s.", rule->fcn.name, lua_tostring(s->hlua.T, -1));
3357 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
3358 Alert("Lua function '%s': %s.\n", rule->fcn.name, lua_tostring(s->hlua.T, -1));
3359 lua_pop(s->hlua.T, 1);
3360 return 1;
3361
3362 case HLUA_E_ERR:
3363 /* Display log. */
3364 send_log(px, LOG_ERR, "Lua function '%s' return an unknown error.", rule->fcn.name);
3365 if (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE))
3366 Alert("Lua function '%s' return an unknown error.\n", rule->fcn.name);
3367
3368 default:
3369 return 1;
3370 }
3371}
3372
3373/* Lua execution wrapper for "tcp-request". This function uses
3374 * "hlua_request_act_wrapper" for executing the LUA code.
3375 */
3376int hlua_tcp_req_act_wrapper(struct tcp_rule *tcp_rule, struct proxy *px,
3377 struct session *s)
3378{
3379 return hlua_request_act_wrapper((struct hlua_rule *)tcp_rule->act_prm.data,
3380 px, s, NULL, AN_REQ_INSPECT_FE);
3381}
3382
3383/* Lua execution wrapper for "tcp-response". This function uses
3384 * "hlua_request_act_wrapper" for executing the LUA code.
3385 */
3386int hlua_tcp_res_act_wrapper(struct tcp_rule *tcp_rule, struct proxy *px,
3387 struct session *s)
3388{
3389 return hlua_request_act_wrapper((struct hlua_rule *)tcp_rule->act_prm.data,
3390 px, s, NULL, AN_RES_INSPECT);
3391}
3392
3393/* Lua execution wrapper for http-request.
3394 * This function uses "hlua_request_act_wrapper" for executing
3395 * the LUA code.
3396 */
3397int hlua_http_req_act_wrapper(struct http_req_rule *rule, struct proxy *px,
3398 struct session *s, struct http_txn *http_txn)
3399{
3400 return hlua_request_act_wrapper((struct hlua_rule *)rule->arg.data, px,
3401 s, http_txn, AN_REQ_HTTP_PROCESS_FE);
3402}
3403
3404/* Lua execution wrapper for http-response.
3405 * This function uses "hlua_request_act_wrapper" for executing
3406 * the LUA code.
3407 */
3408int hlua_http_res_act_wrapper(struct http_res_rule *rule, struct proxy *px,
3409 struct session *s, struct http_txn *http_txn)
3410{
3411 return hlua_request_act_wrapper((struct hlua_rule *)rule->arg.data, px,
3412 s, http_txn, AN_RES_HTTP_PROCESS_BE);
3413}
3414
3415/* tcp-request <*> configuration wrapper. */
3416static int tcp_req_action_register_lua(const char **args, int *cur_arg, struct proxy *px,
3417 struct tcp_rule *rule, char **err)
3418{
3419 if (!hlua_parse_rule(args, cur_arg, px, (struct hlua_rule **)&rule->act_prm.data, err))
Thierry FOURNIER893bfa32015-02-17 18:42:34 +01003420 return 0;
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +01003421 rule->action = TCP_ACT_CUSTOM;
3422 rule->action_ptr = hlua_tcp_req_act_wrapper;
3423 return 1;
3424}
3425
3426/* tcp-response <*> configuration wrapper. */
3427static int tcp_res_action_register_lua(const char **args, int *cur_arg, struct proxy *px,
3428 struct tcp_rule *rule, char **err)
3429{
3430 if (!hlua_parse_rule(args, cur_arg, px, (struct hlua_rule **)&rule->act_prm.data, err))
Thierry FOURNIER893bfa32015-02-17 18:42:34 +01003431 return 0;
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +01003432 rule->action = TCP_ACT_CUSTOM;
3433 rule->action_ptr = hlua_tcp_res_act_wrapper;
3434 return 1;
3435}
3436
3437/* http-request <*> configuration wrapper. */
3438static int http_req_action_register_lua(const char **args, int *cur_arg, struct proxy *px,
3439 struct http_req_rule *rule, char **err)
3440{
3441 if (!hlua_parse_rule(args, cur_arg, px, (struct hlua_rule **)&rule->arg.data, err))
3442 return -1;
3443 rule->action = HTTP_REQ_ACT_CUSTOM_CONT;
3444 rule->action_ptr = hlua_http_req_act_wrapper;
3445 return 1;
3446}
3447
3448/* http-response <*> configuration wrapper. */
3449static int http_res_action_register_lua(const char **args, int *cur_arg, struct proxy *px,
3450 struct http_res_rule *rule, char **err)
3451{
3452 if (!hlua_parse_rule(args, cur_arg, px, (struct hlua_rule **)&rule->arg.data, err))
3453 return -1;
3454 rule->action = HTTP_RES_ACT_CUSTOM_CONT;
3455 rule->action_ptr = hlua_http_res_act_wrapper;
3456 return 1;
3457}
3458
Thierry FOURNIERbd413492015-03-03 16:52:26 +01003459static int hlua_read_timeout(char **args, int section_type, struct proxy *curpx,
3460 struct proxy *defpx, const char *file, int line,
3461 char **err, unsigned int *timeout)
3462{
3463 const char *error;
3464
3465 error = parse_time_err(args[1], timeout, TIME_UNIT_MS);
3466 if (error && *error != '\0') {
3467 memprintf(err, "%s: invalid timeout", args[0]);
3468 return -1;
3469 }
3470 return 0;
3471}
3472
3473static int hlua_session_timeout(char **args, int section_type, struct proxy *curpx,
3474 struct proxy *defpx, const char *file, int line,
3475 char **err)
3476{
3477 return hlua_read_timeout(args, section_type, curpx, defpx,
3478 file, line, err, &hlua_timeout_session);
3479}
3480
3481static int hlua_task_timeout(char **args, int section_type, struct proxy *curpx,
3482 struct proxy *defpx, const char *file, int line,
3483 char **err)
3484{
3485 return hlua_read_timeout(args, section_type, curpx, defpx,
3486 file, line, err, &hlua_timeout_task);
3487}
3488
Thierry FOURNIERee9f8022015-03-03 17:37:37 +01003489static int hlua_forced_yield(char **args, int section_type, struct proxy *curpx,
3490 struct proxy *defpx, const char *file, int line,
3491 char **err)
3492{
3493 char *error;
3494
3495 hlua_nb_instruction = strtoll(args[1], &error, 10);
3496 if (*error != '\0') {
3497 memprintf(err, "%s: invalid number", args[0]);
3498 return -1;
3499 }
3500 return 0;
3501}
3502
Thierry FOURNIER6c9b52c2015-01-23 15:57:06 +01003503/* This function is called by the main configuration key "lua-load". It loads and
3504 * execute an lua file during the parsing of the HAProxy configuration file. It is
3505 * the main lua entry point.
3506 *
3507 * This funtion runs with the HAProxy keywords API. It returns -1 if an error is
3508 * occured, otherwise it returns 0.
3509 *
3510 * In some error case, LUA set an error message in top of the stack. This function
3511 * returns this error message in the HAProxy logs and pop it from the stack.
3512 */
3513static int hlua_load(char **args, int section_type, struct proxy *curpx,
3514 struct proxy *defpx, const char *file, int line,
3515 char **err)
3516{
3517 int error;
3518
3519 /* Just load and compile the file. */
3520 error = luaL_loadfile(gL.T, args[1]);
3521 if (error) {
3522 memprintf(err, "error in lua file '%s': %s", args[1], lua_tostring(gL.T, -1));
3523 lua_pop(gL.T, 1);
3524 return -1;
3525 }
3526
3527 /* If no syntax error where detected, execute the code. */
3528 error = lua_pcall(gL.T, 0, LUA_MULTRET, 0);
3529 switch (error) {
3530 case LUA_OK:
3531 break;
3532 case LUA_ERRRUN:
3533 memprintf(err, "lua runtime error: %s\n", lua_tostring(gL.T, -1));
3534 lua_pop(gL.T, 1);
3535 return -1;
3536 case LUA_ERRMEM:
3537 memprintf(err, "lua out of memory error\n");
3538 return -1;
3539 case LUA_ERRERR:
3540 memprintf(err, "lua message handler error: %s\n", lua_tostring(gL.T, -1));
3541 lua_pop(gL.T, 1);
3542 return -1;
3543 case LUA_ERRGCMM:
3544 memprintf(err, "lua garbage collector error: %s\n", lua_tostring(gL.T, -1));
3545 lua_pop(gL.T, 1);
3546 return -1;
3547 default:
3548 memprintf(err, "lua unknonwn error: %s\n", lua_tostring(gL.T, -1));
3549 lua_pop(gL.T, 1);
3550 return -1;
3551 }
3552
3553 return 0;
3554}
3555
3556/* configuration keywords declaration */
3557static struct cfg_kw_list cfg_kws = {{ },{
Thierry FOURNIERbd413492015-03-03 16:52:26 +01003558 { CFG_GLOBAL, "lua-load", hlua_load },
3559 { CFG_GLOBAL, "tune.lua.session-timeout", hlua_session_timeout },
3560 { CFG_GLOBAL, "tune.lua.task-timeout", hlua_task_timeout },
Thierry FOURNIERee9f8022015-03-03 17:37:37 +01003561 { CFG_GLOBAL, "tune.lua.forced-yield", hlua_forced_yield },
Thierry FOURNIER6c9b52c2015-01-23 15:57:06 +01003562 { 0, NULL, NULL },
3563}};
3564
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +01003565static struct http_req_action_kw_list http_req_kws = {"lua", { }, {
3566 { "lua", http_req_action_register_lua },
3567 { NULL, NULL }
3568}};
3569
3570static struct http_res_action_kw_list http_res_kws = {"lua", { }, {
3571 { "lua", http_res_action_register_lua },
3572 { NULL, NULL }
3573}};
3574
3575static struct tcp_action_kw_list tcp_req_cont_kws = {"lua", { }, {
3576 { "lua", tcp_req_action_register_lua },
3577 { NULL, NULL }
3578}};
3579
3580static struct tcp_action_kw_list tcp_res_cont_kws = {"lua", { }, {
3581 { "lua", tcp_res_action_register_lua },
3582 { NULL, NULL }
3583}};
3584
Thierry FOURNIERa4a0f3d2015-01-23 12:08:30 +01003585int hlua_post_init()
3586{
3587 struct hlua_init_function *init;
3588 const char *msg;
3589 enum hlua_exec ret;
3590
3591 list_for_each_entry(init, &hlua_init_functions, l) {
3592 lua_rawgeti(gL.T, LUA_REGISTRYINDEX, init->function_ref);
3593 ret = hlua_ctx_resume(&gL, 0);
3594 switch (ret) {
3595 case HLUA_E_OK:
3596 lua_pop(gL.T, -1);
3597 return 1;
3598 case HLUA_E_AGAIN:
3599 Alert("lua init: yield not allowed.\n");
3600 return 0;
3601 case HLUA_E_ERRMSG:
3602 msg = lua_tostring(gL.T, -1);
3603 Alert("lua init: %s.\n", msg);
3604 return 0;
3605 case HLUA_E_ERR:
3606 default:
3607 Alert("lua init: unknown runtime error.\n");
3608 return 0;
3609 }
3610 }
3611 return 1;
3612}
3613
Thierry FOURNIER6f1fd482015-01-23 14:06:13 +01003614void hlua_init(void)
3615{
Thierry FOURNIER2ba18a22015-01-23 14:07:08 +01003616 int i;
Thierry FOURNIERd0fa5382015-02-16 20:14:51 +01003617 int idx;
3618 struct sample_fetch *sf;
3619 struct hlua_sample_fetch *hsf;
3620 char *p;
Willy Tarreau80f5fae2015-02-27 16:38:20 +01003621#ifdef USE_OPENSSL
3622 char *args[4];
3623 struct srv_kw *kw;
3624 int tmp_error;
3625 char *error;
3626#endif
Thierry FOURNIER2ba18a22015-01-23 14:07:08 +01003627
Thierry FOURNIER9ff7e6e2015-01-23 11:08:20 +01003628 /* Initialise com signals pool session. */
3629 pool2_hlua_com = create_pool("hlua_com", sizeof(struct hlua_com), MEM_F_SHARED);
3630
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +01003631 /* Initialise sleep pool. */
3632 pool2_hlua_sleep = create_pool("hlua_sleep", sizeof(struct hlua_sleep), MEM_F_SHARED);
3633
Thierry FOURNIER6c9b52c2015-01-23 15:57:06 +01003634 /* Register configuration keywords. */
3635 cfg_register_keywords(&cfg_kws);
3636
Thierry FOURNIER258d8aa2015-02-16 20:23:40 +01003637 /* Register custom HTTP rules. */
3638 http_req_keywords_register(&http_req_kws);
3639 http_res_keywords_register(&http_res_kws);
3640 tcp_req_cont_keywords_register(&tcp_req_cont_kws);
3641 tcp_res_cont_keywords_register(&tcp_res_cont_kws);
3642
Thierry FOURNIER380d0932015-01-23 14:27:52 +01003643 /* Init main lua stack. */
3644 gL.Mref = LUA_REFNIL;
Thierry FOURNIERa097fdf2015-03-03 15:17:35 +01003645 gL.flags = 0;
Thierry FOURNIER9ff7e6e2015-01-23 11:08:20 +01003646 LIST_INIT(&gL.com);
Thierry FOURNIER380d0932015-01-23 14:27:52 +01003647 gL.T = luaL_newstate();
3648 hlua_sethlua(&gL);
3649 gL.Tref = LUA_REFNIL;
3650 gL.task = NULL;
3651
3652 /* Initialise lua. */
3653 luaL_openlibs(gL.T);
Thierry FOURNIER2ba18a22015-01-23 14:07:08 +01003654
3655 /*
3656 *
3657 * Create "core" object.
3658 *
3659 */
3660
3661 /* This integer entry is just used as base value for the object "core". */
3662 lua_pushinteger(gL.T, 0);
3663
3664 /* Create and fill the metatable. */
3665 lua_newtable(gL.T);
3666
3667 /* Create and fill the __index entry. */
3668 lua_pushstring(gL.T, "__index");
3669 lua_newtable(gL.T);
3670
3671 /* Push the loglevel constants. */
Willy Tarreau80f5fae2015-02-27 16:38:20 +01003672 for (i = 0; i < NB_LOG_LEVELS; i++)
Thierry FOURNIER2ba18a22015-01-23 14:07:08 +01003673 hlua_class_const_int(gL.T, log_levels[i], i);
3674
Thierry FOURNIERa4a0f3d2015-01-23 12:08:30 +01003675 /* Register special functions. */
3676 hlua_class_function(gL.T, "register_init", hlua_register_init);
Thierry FOURNIER24f33532015-01-23 12:13:00 +01003677 hlua_class_function(gL.T, "register_task", hlua_register_task);
Thierry FOURNIERfa0e5dd2015-02-16 20:19:18 +01003678 hlua_class_function(gL.T, "register_fetches", hlua_register_fetches);
Thierry FOURNIER9be813f2015-02-16 20:21:12 +01003679 hlua_class_function(gL.T, "register_converters", hlua_register_converters);
Thierry FOURNIER13416fe2015-02-17 15:01:59 +01003680 hlua_class_function(gL.T, "yield", hlua_yield);
Thierry FOURNIER37196f42015-02-16 19:34:56 +01003681 hlua_class_function(gL.T, "set_nice", hlua_setnice);
Thierry FOURNIER5b8608f2015-02-16 19:43:25 +01003682 hlua_class_function(gL.T, "sleep", hlua_sleep);
3683 hlua_class_function(gL.T, "msleep", hlua_msleep);
Thierry FOURNIER83758bb2015-02-04 13:21:04 +01003684 hlua_class_function(gL.T, "add_acl", hlua_add_acl);
3685 hlua_class_function(gL.T, "del_acl", hlua_del_acl);
3686 hlua_class_function(gL.T, "set_map", hlua_set_map);
3687 hlua_class_function(gL.T, "del_map", hlua_del_map);
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01003688 hlua_class_function(gL.T, "tcp", hlua_socket_new);
Thierry FOURNIERa4a0f3d2015-01-23 12:08:30 +01003689
Thierry FOURNIER2ba18a22015-01-23 14:07:08 +01003690 /* Store the table __index in the metable. */
3691 lua_settable(gL.T, -3);
3692
3693 /* Register previous table in the registry with named entry. */
3694 lua_pushvalue(gL.T, -1); /* Copy the -1 entry and push it on the stack. */
3695 lua_setfield(gL.T, LUA_REGISTRYINDEX, CLASS_CORE); /* register class session. */
3696
3697 /* Register previous table in the registry with reference. */
3698 lua_pushvalue(gL.T, -1); /* Copy the -1 entry and push it on the stack. */
3699 class_core_ref = luaL_ref(gL.T, LUA_REGISTRYINDEX); /* reference class session. */
3700
3701 /* Create new object with class Core. */
3702 lua_setmetatable(gL.T, -2);
3703 lua_setglobal(gL.T, "core");
Thierry FOURNIER65f34c62015-02-16 20:11:43 +01003704
3705 /*
3706 *
Thierry FOURNIER5a6d3fd2015-02-09 16:38:34 +01003707 * Register class Channel
3708 *
3709 */
3710
3711 /* Create and fill the metatable. */
3712 lua_newtable(gL.T);
3713
3714 /* Create and fille the __index entry. */
3715 lua_pushstring(gL.T, "__index");
3716 lua_newtable(gL.T);
3717
3718 /* Register . */
3719 hlua_class_function(gL.T, "get", hlua_channel_get);
3720 hlua_class_function(gL.T, "dup", hlua_channel_dup);
3721 hlua_class_function(gL.T, "getline", hlua_channel_getline);
3722 hlua_class_function(gL.T, "set", hlua_channel_set);
3723 hlua_class_function(gL.T, "append", hlua_channel_append);
3724 hlua_class_function(gL.T, "send", hlua_channel_send);
3725 hlua_class_function(gL.T, "forward", hlua_channel_forward);
3726 hlua_class_function(gL.T, "get_in_len", hlua_channel_get_in_len);
3727 hlua_class_function(gL.T, "get_out_len", hlua_channel_get_out_len);
3728
3729 lua_settable(gL.T, -3);
3730
3731 /* Register previous table in the registry with reference and named entry. */
3732 lua_pushvalue(gL.T, -1); /* Copy the -1 entry and push it on the stack. */
3733 lua_setfield(gL.T, LUA_REGISTRYINDEX, CLASS_CHANNEL); /* register class session. */
3734 class_channel_ref = luaL_ref(gL.T, LUA_REGISTRYINDEX); /* reference class session. */
3735
3736 /*
3737 *
Thierry FOURNIER65f34c62015-02-16 20:11:43 +01003738 * Register class TXN
3739 *
3740 */
3741
3742 /* Create and fill the metatable. */
3743 lua_newtable(gL.T);
3744
3745 /* Create and fille the __index entry. */
3746 lua_pushstring(gL.T, "__index");
3747 lua_newtable(gL.T);
3748
Thierry FOURNIERd0fa5382015-02-16 20:14:51 +01003749 /* Browse existing fetches and create the associated
3750 * object method.
3751 */
3752 sf = NULL;
3753 while ((sf = sample_fetch_getnext(sf, &idx)) != NULL) {
3754
3755 /* Dont register the keywork if the arguments check function are
3756 * not safe during the runtime.
3757 */
3758 if ((sf->val_args != NULL) &&
3759 (sf->val_args != val_payload_lv) &&
3760 (sf->val_args != val_hdr))
3761 continue;
3762
3763 /* gL.Tua doesn't support '.' and '-' in the function names, replace it
3764 * by an underscore.
3765 */
3766 strncpy(trash.str, sf->kw, trash.size);
3767 trash.str[trash.size - 1] = '\0';
3768 for (p = trash.str; *p; p++)
3769 if (*p == '.' || *p == '-' || *p == '+')
3770 *p = '_';
3771
3772 /* Register the function. */
3773 lua_pushstring(gL.T, trash.str);
3774 hsf = lua_newuserdata(gL.T, sizeof(struct hlua_sample_fetch));
3775 hsf->f = sf;
3776 lua_pushcclosure(gL.T, hlua_run_sample_fetch, 1);
3777 lua_settable(gL.T, -3);
3778 }
3779
Thierry FOURNIER05c0b8a2015-02-25 11:43:21 +01003780 /* Register Lua functions. */
Thierry FOURNIER9a819e72015-02-16 20:22:55 +01003781 hlua_class_function(gL.T, "get_headers", hlua_session_getheaders);
Thierry FOURNIER05c0b8a2015-02-25 11:43:21 +01003782 hlua_class_function(gL.T, "set_priv", hlua_setpriv);
3783 hlua_class_function(gL.T, "get_priv", hlua_getpriv);
Thierry FOURNIERe94e7742015-02-17 14:59:53 +01003784 hlua_class_function(gL.T, "req_channel", hlua_txn_req_channel);
3785 hlua_class_function(gL.T, "res_channel", hlua_txn_res_channel);
Thierry FOURNIER893bfa32015-02-17 18:42:34 +01003786 hlua_class_function(gL.T, "close", hlua_txn_close);
Thierry FOURNIER05c0b8a2015-02-25 11:43:21 +01003787
Thierry FOURNIER65f34c62015-02-16 20:11:43 +01003788 lua_settable(gL.T, -3);
3789
3790 /* Register previous table in the registry with reference and named entry. */
3791 lua_pushvalue(gL.T, -1); /* Copy the -1 entry and push it on the stack. */
3792 lua_setfield(gL.T, LUA_REGISTRYINDEX, CLASS_TXN); /* register class session. */
3793 class_txn_ref = luaL_ref(gL.T, LUA_REGISTRYINDEX); /* reference class session. */
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01003794
3795 /*
3796 *
3797 * Register class Socket
3798 *
3799 */
3800
3801 /* Create and fill the metatable. */
3802 lua_newtable(gL.T);
3803
3804 /* Create and fille the __index entry. */
3805 lua_pushstring(gL.T, "__index");
3806 lua_newtable(gL.T);
3807
Baptiste Assmann84bb4932015-03-02 21:40:06 +01003808#ifdef USE_OPENSSL
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01003809 hlua_class_function(gL.T, "connect_ssl", hlua_socket_connect_ssl);
Baptiste Assmann84bb4932015-03-02 21:40:06 +01003810#endif
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01003811 hlua_class_function(gL.T, "connect", hlua_socket_connect);
3812 hlua_class_function(gL.T, "send", hlua_socket_send);
3813 hlua_class_function(gL.T, "receive", hlua_socket_receive);
3814 hlua_class_function(gL.T, "close", hlua_socket_close);
3815 hlua_class_function(gL.T, "getpeername", hlua_socket_getpeername);
3816 hlua_class_function(gL.T, "getsockname", hlua_socket_getsockname);
3817 hlua_class_function(gL.T, "setoption", hlua_socket_setoption);
3818 hlua_class_function(gL.T, "settimeout", hlua_socket_settimeout);
3819
3820 lua_settable(gL.T, -3); /* Push the last 2 entries in the table at index -3 */
3821
3822 /* Register the garbage collector entry. */
3823 lua_pushstring(gL.T, "__gc");
3824 lua_pushcclosure(gL.T, hlua_socket_gc, 0);
3825 lua_settable(gL.T, -3); /* Push the last 2 entries in the table at index -3 */
3826
3827 /* Register previous table in the registry with reference and named entry. */
3828 lua_pushvalue(gL.T, -1); /* Copy the -1 entry and push it on the stack. */
3829 lua_pushvalue(gL.T, -1); /* Copy the -1 entry and push it on the stack. */
3830 lua_setfield(gL.T, LUA_REGISTRYINDEX, CLASS_SOCKET); /* register class socket. */
3831 class_socket_ref = luaL_ref(gL.T, LUA_REGISTRYINDEX); /* reference class socket. */
3832
3833 /* Proxy and server configuration initialisation. */
3834 memset(&socket_proxy, 0, sizeof(socket_proxy));
3835 init_new_proxy(&socket_proxy);
3836 socket_proxy.parent = NULL;
3837 socket_proxy.last_change = now.tv_sec;
3838 socket_proxy.id = "LUA-SOCKET";
3839 socket_proxy.cap = PR_CAP_FE | PR_CAP_BE;
3840 socket_proxy.maxconn = 0;
3841 socket_proxy.accept = NULL;
3842 socket_proxy.options2 |= PR_O2_INDEPSTR;
3843 socket_proxy.srv = NULL;
3844 socket_proxy.conn_retries = 0;
3845 socket_proxy.timeout.connect = 5000; /* By default the timeout connection is 5s. */
3846
3847 /* Init TCP server: unchanged parameters */
3848 memset(&socket_tcp, 0, sizeof(socket_tcp));
3849 socket_tcp.next = NULL;
3850 socket_tcp.proxy = &socket_proxy;
3851 socket_tcp.obj_type = OBJ_TYPE_SERVER;
3852 LIST_INIT(&socket_tcp.actconns);
3853 LIST_INIT(&socket_tcp.pendconns);
3854 socket_tcp.state = SRV_ST_RUNNING; /* early server setup */
3855 socket_tcp.last_change = 0;
3856 socket_tcp.id = "LUA-TCP-CONN";
3857 socket_tcp.check.state &= ~CHK_ST_ENABLED; /* Disable health checks. */
3858 socket_tcp.agent.state &= ~CHK_ST_ENABLED; /* Disable health checks. */
3859 socket_tcp.pp_opts = 0; /* Remove proxy protocol. */
3860
3861 /* XXX: Copy default parameter from default server,
3862 * but the default server is not initialized.
3863 */
3864 socket_tcp.maxqueue = socket_proxy.defsrv.maxqueue;
3865 socket_tcp.minconn = socket_proxy.defsrv.minconn;
3866 socket_tcp.maxconn = socket_proxy.defsrv.maxconn;
3867 socket_tcp.slowstart = socket_proxy.defsrv.slowstart;
3868 socket_tcp.onerror = socket_proxy.defsrv.onerror;
3869 socket_tcp.onmarkeddown = socket_proxy.defsrv.onmarkeddown;
3870 socket_tcp.onmarkedup = socket_proxy.defsrv.onmarkedup;
3871 socket_tcp.consecutive_errors_limit = socket_proxy.defsrv.consecutive_errors_limit;
3872 socket_tcp.uweight = socket_proxy.defsrv.iweight;
3873 socket_tcp.iweight = socket_proxy.defsrv.iweight;
3874
3875 socket_tcp.check.status = HCHK_STATUS_INI;
3876 socket_tcp.check.rise = socket_proxy.defsrv.check.rise;
3877 socket_tcp.check.fall = socket_proxy.defsrv.check.fall;
3878 socket_tcp.check.health = socket_tcp.check.rise; /* socket, but will fall down at first failure */
3879 socket_tcp.check.server = &socket_tcp;
3880
3881 socket_tcp.agent.status = HCHK_STATUS_INI;
3882 socket_tcp.agent.rise = socket_proxy.defsrv.agent.rise;
3883 socket_tcp.agent.fall = socket_proxy.defsrv.agent.fall;
3884 socket_tcp.agent.health = socket_tcp.agent.rise; /* socket, but will fall down at first failure */
3885 socket_tcp.agent.server = &socket_tcp;
3886
3887 socket_tcp.xprt = &raw_sock;
3888
3889#ifdef USE_OPENSSL
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01003890 /* Init TCP server: unchanged parameters */
3891 memset(&socket_ssl, 0, sizeof(socket_ssl));
3892 socket_ssl.next = NULL;
3893 socket_ssl.proxy = &socket_proxy;
3894 socket_ssl.obj_type = OBJ_TYPE_SERVER;
3895 LIST_INIT(&socket_ssl.actconns);
3896 LIST_INIT(&socket_ssl.pendconns);
3897 socket_ssl.state = SRV_ST_RUNNING; /* early server setup */
3898 socket_ssl.last_change = 0;
3899 socket_ssl.id = "LUA-SSL-CONN";
3900 socket_ssl.check.state &= ~CHK_ST_ENABLED; /* Disable health checks. */
3901 socket_ssl.agent.state &= ~CHK_ST_ENABLED; /* Disable health checks. */
3902 socket_ssl.pp_opts = 0; /* Remove proxy protocol. */
3903
3904 /* XXX: Copy default parameter from default server,
3905 * but the default server is not initialized.
3906 */
3907 socket_ssl.maxqueue = socket_proxy.defsrv.maxqueue;
3908 socket_ssl.minconn = socket_proxy.defsrv.minconn;
3909 socket_ssl.maxconn = socket_proxy.defsrv.maxconn;
3910 socket_ssl.slowstart = socket_proxy.defsrv.slowstart;
3911 socket_ssl.onerror = socket_proxy.defsrv.onerror;
3912 socket_ssl.onmarkeddown = socket_proxy.defsrv.onmarkeddown;
3913 socket_ssl.onmarkedup = socket_proxy.defsrv.onmarkedup;
3914 socket_ssl.consecutive_errors_limit = socket_proxy.defsrv.consecutive_errors_limit;
3915 socket_ssl.uweight = socket_proxy.defsrv.iweight;
3916 socket_ssl.iweight = socket_proxy.defsrv.iweight;
3917
3918 socket_ssl.check.status = HCHK_STATUS_INI;
3919 socket_ssl.check.rise = socket_proxy.defsrv.check.rise;
3920 socket_ssl.check.fall = socket_proxy.defsrv.check.fall;
3921 socket_ssl.check.health = socket_ssl.check.rise; /* socket, but will fall down at first failure */
3922 socket_ssl.check.server = &socket_ssl;
3923
3924 socket_ssl.agent.status = HCHK_STATUS_INI;
3925 socket_ssl.agent.rise = socket_proxy.defsrv.agent.rise;
3926 socket_ssl.agent.fall = socket_proxy.defsrv.agent.fall;
3927 socket_ssl.agent.health = socket_ssl.agent.rise; /* socket, but will fall down at first failure */
3928 socket_ssl.agent.server = &socket_ssl;
3929
3930 socket_ssl.xprt = &raw_sock;
3931
3932 args[0] = "ssl";
3933 args[1] = "verify";
3934 args[2] = "none";
3935 args[3] = NULL;
3936
Willy Tarreau80f5fae2015-02-27 16:38:20 +01003937 for (idx = 0; idx < 3; idx++) {
Thierry FOURNIER7e7ac322015-02-16 19:27:16 +01003938 if ((kw = srv_find_kw(args[idx])) != NULL) { /* Maybe it's registered server keyword */
3939 /*
3940 *
3941 * If the keyword is not known, we can search in the registered
3942 * server keywords. This is usefull to configure special SSL
3943 * features like client certificates and ssl_verify.
3944 *
3945 */
3946 tmp_error = kw->parse(args, &idx, &socket_proxy, &socket_ssl, &error);
3947 if (tmp_error != 0) {
3948 fprintf(stderr, "INTERNAL ERROR: %s\n", error);
3949 abort(); /* This must be never arrives because the command line
3950 not editable by the user. */
3951 }
3952 idx += kw->skip;
3953 }
3954 }
3955
3956 /* Initialize SSL server. */
3957 if (socket_ssl.xprt == &ssl_sock) {
3958 socket_ssl.use_ssl = 1;
3959 ssl_sock_prepare_srv_ctx(&socket_ssl, &socket_proxy);
3960 }
3961#endif
Thierry FOURNIER6f1fd482015-01-23 14:06:13 +01003962}