root/trunk/server/memcached.h @ 619

Revision 619, 12.7 kB (checked in by plindner, 2 years ago)

Switch to unsigned 64-bit increment/decrement counters from Evan Miller and Dusgtin Sallings.

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1/* -*- Mode: C; tab-width: 4; c-basic-offset: 4; indent-tabs-mode: nil -*- */
2/* $Id$ */
3
4#ifdef HAVE_CONFIG_H
5#include "config.h"
6#endif
7
8#include <sys/types.h>
9#include <sys/socket.h>
10#include <sys/time.h>
11#include <netinet/in.h>
12#include <event.h>
13
14#define DATA_BUFFER_SIZE 2048
15#define UDP_READ_BUFFER_SIZE 65536
16#define UDP_MAX_PAYLOAD_SIZE 1400
17#define UDP_HEADER_SIZE 8
18#define MAX_SENDBUF_SIZE (256 * 1024 * 1024)
19
20/** Initial size of list of items being returned by "get". */
21#define ITEM_LIST_INITIAL 200
22
23/** Initial size of the sendmsg() scatter/gather array. */
24#define IOV_LIST_INITIAL 400
25
26/** Initial number of sendmsg() argument structures to allocate. */
27#define MSG_LIST_INITIAL 10
28
29/** High water marks for buffer shrinking */
30#define READ_BUFFER_HIGHWAT 8192
31#define ITEM_LIST_HIGHWAT 400
32#define IOV_LIST_HIGHWAT 600
33#define MSG_LIST_HIGHWAT 100
34
35/* Get a consistent bool type */
36#if HAVE_STDBOOL_H
37# include <stdbool.h>
38#else
39  typedef enum {false = 0, true = 1} bool;
40#endif
41
42#if HAVE_STDINT_H
43# include <stdint.h>
44#else
45 typedef unsigned char             uint8_t;
46#endif
47
48/* unistd.h is here */
49#if HAVE_UNISTD_H
50# include <unistd.h>
51#endif
52
53/** Time relative to server start. Smaller than time_t on 64-bit systems. */
54typedef unsigned int rel_time_t;
55
56struct stats {
57    unsigned int  curr_items;
58    unsigned int  total_items;
59    uint64_t      curr_bytes;
60    unsigned int  curr_conns;
61    unsigned int  total_conns;
62    unsigned int  conn_structs;
63    uint64_t      get_cmds;
64    uint64_t      set_cmds;
65    uint64_t      get_hits;
66    uint64_t      get_misses;
67    uint64_t      evictions;
68    time_t        started;          /* when the process was started */
69    uint64_t      bytes_read;
70    uint64_t      bytes_written;
71};
72
73#define MAX_VERBOSITY_LEVEL 2
74
75struct settings {
76    size_t maxbytes;
77    int maxconns;
78    int port;
79    int udpport;
80    struct in_addr interf;
81    int verbose;
82    rel_time_t oldest_live; /* ignore existing items older than this */
83    bool managed;          /* if 1, a tracker manages virtual buckets */
84    int evict_to_free;
85    char *socketpath;   /* path to unix socket if using local socket */
86    double factor;          /* chunk size growth factor */
87    int chunk_size;
88    int num_threads;        /* number of libevent threads to run */
89    char prefix_delimiter;  /* character that marks a key prefix (for stats) */
90    int detail_enabled;     /* nonzero if we're collecting detailed stats */
91};
92
93extern struct stats stats;
94extern struct settings settings;
95
96#define ITEM_LINKED 1
97#define ITEM_DELETED 2
98
99/* temp */
100#define ITEM_SLABBED 4
101
102typedef struct _stritem {
103    struct _stritem *next;
104    struct _stritem *prev;
105    struct _stritem *h_next;    /* hash chain next */
106    rel_time_t      time;       /* least recent access */
107    rel_time_t      exptime;    /* expire time */
108    int             nbytes;     /* size of data */
109    unsigned short  refcount;
110    uint8_t         nsuffix;    /* length of flags-and-length string */
111    uint8_t         it_flags;   /* ITEM_* above */
112    uint8_t         slabs_clsid;/* which slab class we're in */
113    uint8_t         nkey;       /* key length, w/terminating null and padding */
114    void * end[];
115    /* then null-terminated key */
116    /* then " flags length\r\n" (no terminating null) */
117    /* then data with terminating \r\n (no terminating null; it's binary!) */
118} item;
119
120#define ITEM_key(item) ((char*)&((item)->end[0]))
121
122/* warning: don't use these macros with a function, as it evals its arg twice */
123#define ITEM_suffix(item) ((char*) &((item)->end[0]) + (item)->nkey + 1)
124#define ITEM_data(item) ((char*) &((item)->end[0]) + (item)->nkey + 1 + (item)->nsuffix)
125#define ITEM_ntotal(item) (sizeof(struct _stritem) + (item)->nkey + 1 + (item)->nsuffix + (item)->nbytes)
126
127enum conn_states {
128    conn_listening,  /** the socket which listens for connections */
129    conn_read,       /** reading in a command line */
130    conn_write,      /** writing out a simple response */
131    conn_nread,      /** reading in a fixed number of bytes */
132    conn_swallow,    /** swallowing unnecessary bytes w/o storing */
133    conn_closing,    /** closing this connection */
134    conn_mwrite      /** writing out many items sequentially */
135};
136
137#define NREAD_ADD 1
138#define NREAD_SET 2
139#define NREAD_REPLACE 3
140
141typedef struct {
142    int    sfd;
143    int    state;
144    struct event event;
145    short  ev_flags;
146    short  which;   /** which events were just triggered */
147
148    char   *rbuf;   /** buffer to read commands into */
149    char   *rcurr;  /** but if we parsed some already, this is where we stopped */
150    int    rsize;   /** total allocated size of rbuf */
151    int    rbytes;  /** how much data, starting from rcur, do we have unparsed */
152
153    char   *wbuf;
154    char   *wcurr;
155    int    wsize;
156    int    wbytes;
157    int    write_and_go; /** which state to go into after finishing current write */
158    void   *write_and_free; /** free this memory after finishing writing */
159
160    char   *ritem;  /** when we read in an item's value, it goes here */
161    int    rlbytes;
162
163    /* data for the nread state */
164
165    /**
166     * item is used to hold an item structure created after reading the command
167     * line of set/add/replace commands, but before we finished reading the actual
168     * data. The data is read into ITEM_data(item) to avoid extra copying.
169     */
170
171    void   *item;     /* for commands set/add/replace  */
172    int    item_comm; /* which one is it: set/add/replace */
173
174    /* data for the swallow state */
175    int    sbytes;    /* how many bytes to swallow */
176
177    /* data for the mwrite state */
178    struct iovec *iov;
179    int    iovsize;   /* number of elements allocated in iov[] */
180    int    iovused;   /* number of elements used in iov[] */
181
182    struct msghdr *msglist;
183    int    msgsize;   /* number of elements allocated in msglist[] */
184    int    msgused;   /* number of elements used in msglist[] */
185    int    msgcurr;   /* element in msglist[] being transmitted now */
186    int    msgbytes;  /* number of bytes in current msg */
187
188    item   **ilist;   /* list of items to write out */
189    int    isize;
190    item   **icurr;
191    int    ileft;
192
193    /* data for UDP clients */
194    bool   udp;       /* is this is a UDP "connection" */
195    int    request_id; /* Incoming UDP request ID, if this is a UDP "connection" */
196    struct sockaddr request_addr; /* Who sent the most recent request */
197    socklen_t request_addr_size;
198    unsigned char *hdrbuf; /* udp packet headers */
199    int    hdrsize;   /* number of headers' worth of space is allocated */
200
201    int    binary;    /* are we in binary mode */
202    int    bucket;    /* bucket number for the next command, if running as
203                         a managed instance. -1 (_not_ 0) means invalid. */
204    int    gen;       /* generation requested for the bucket */
205} conn;
206
207/* number of virtual buckets for a managed instance */
208#define MAX_BUCKETS 32768
209
210/* current time of day (updated periodically) */
211extern volatile rel_time_t current_time;
212
213/* temporary hack */
214/* #define assert(x) if(!(x)) { printf("assert failure: %s\n", #x); pre_gdb(); }
215   void pre_gdb (); */
216
217/*
218 * Functions
219 */
220
221conn *do_conn_from_freelist();
222bool do_conn_add_to_freelist(conn *c);
223char *do_defer_delete(item *item, time_t exptime);
224void do_run_deferred_deletes(void);
225char *do_add_delta(item *item, const bool incr, const int64_t delta, char *buf);
226int do_store_item(item *item, int comm);
227conn *conn_new(const int sfd, const int init_state, const int event_flags, const int read_buffer_size, const bool is_udp, struct event_base *base);
228
229
230#include "stats.h"
231#include "slabs.h"
232#include "assoc.h"
233#include "items.h"
234
235
236/*
237 * In multithreaded mode, we wrap certain functions with lock management and
238 * replace the logic of some other functions. All wrapped functions have
239 * "mt_" and "do_" variants. In multithreaded mode, the plain version of a
240 * function is #define-d to the "mt_" variant, which often just grabs a
241 * lock and calls the "do_" function. In singlethreaded mode, the "do_"
242 * function is called directly.
243 *
244 * Functions such as the libevent-related calls that need to do cross-thread
245 * communication in multithreaded mode (rather than actually doing the work
246 * in the current thread) are called via "dispatch_" frontends, which are
247 * also #define-d to directly call the underlying code in singlethreaded mode.
248 */
249#ifdef USE_THREADS
250
251void thread_init(int nthreads, struct event_base *main_base);
252int  dispatch_event_add(int thread, conn *c);
253void dispatch_conn_new(int sfd, int init_state, int event_flags, int read_buffer_size, int is_udp);
254
255/* Lock wrappers for cache functions that are called from main loop. */
256char *mt_add_delta(item *item, const int incr, const int64_t delta, char *buf);
257void mt_assoc_move_next_bucket(void);
258conn *mt_conn_from_freelist(void);
259bool  mt_conn_add_to_freelist(conn *c);
260char *mt_defer_delete(item *it, time_t exptime);
261int   mt_is_listen_thread(void);
262item *mt_item_alloc(char *key, size_t nkey, int flags, rel_time_t exptime, int nbytes);
263char *mt_item_cachedump(const unsigned int slabs_clsid, const unsigned int limit, unsigned int *bytes);
264void  mt_item_flush_expired(void);
265item *mt_item_get_notedeleted(const char *key, const size_t nkey, bool *delete_locked);
266int   mt_item_link(item *it);
267void  mt_item_remove(item *it);
268int   mt_item_replace(item *it, item *new_it);
269char *mt_item_stats(int *bytes);
270char *mt_item_stats_sizes(int *bytes);
271void  mt_item_unlink(item *it);
272void  mt_item_update(item *it);
273void  mt_run_deferred_deletes(void);
274void *mt_slabs_alloc(size_t size);
275void  mt_slabs_free(void *ptr, size_t size);
276int   mt_slabs_reassign(unsigned char srcid, unsigned char dstid);
277char *mt_slabs_stats(int *buflen);
278void  mt_stats_lock(void);
279void  mt_stats_unlock(void);
280int   mt_store_item(item *item, int comm);
281
282
283# define add_delta(x,y,z,a)          mt_add_delta(x,y,z,a)
284# define assoc_move_next_bucket()    mt_assoc_move_next_bucket()
285# define conn_from_freelist()        mt_conn_from_freelist()
286# define conn_add_to_freelist(x)     mt_conn_add_to_freelist(x)
287# define defer_delete(x,y)           mt_defer_delete(x,y)
288# define is_listen_thread()          mt_is_listen_thread()
289# define item_alloc(x,y,z,a,b)       mt_item_alloc(x,y,z,a,b)
290# define item_cachedump(x,y,z)       mt_item_cachedump(x,y,z)
291# define item_flush_expired()        mt_item_flush_expired()
292# define item_get_notedeleted(x,y,z) mt_item_get_notedeleted(x,y,z)
293# define item_link(x)                mt_item_link(x)
294# define item_remove(x)              mt_item_remove(x)
295# define item_replace(x,y)           mt_item_replace(x,y)
296# define item_stats(x)               mt_item_stats(x)
297# define item_stats_sizes(x)         mt_item_stats_sizes(x)
298# define item_update(x)              mt_item_update(x)
299# define item_unlink(x)              mt_item_unlink(x)
300# define run_deferred_deletes()      mt_run_deferred_deletes()
301# define slabs_alloc(x)              mt_slabs_alloc(x)
302# define slabs_free(x,y)             mt_slabs_free(x,y)
303# define slabs_reassign(x,y)         mt_slabs_reassign(x,y)
304# define slabs_stats(x)              mt_slabs_stats(x)
305# define store_item(x,y)             mt_store_item(x,y)
306
307# define STATS_LOCK()                mt_stats_lock()
308# define STATS_UNLOCK()              mt_stats_unlock()
309
310#else /* !USE_THREADS */
311
312# define add_delta(x,y,z,a)          do_add_delta(x,y,z,a)
313# define assoc_move_next_bucket()    do_assoc_move_next_bucket()
314# define conn_from_freelist()        do_conn_from_freelist()
315# define conn_add_to_freelist(x)     do_conn_add_to_freelist(x)
316# define defer_delete(x,y)           do_defer_delete(x,y)
317# define dispatch_conn_new(x,y,z,a,b) conn_new(x,y,z,a,b,main_base)
318# define dispatch_event_add(t,c)     event_add(&(c)->event, 0)
319# define is_listen_thread()          1
320# define item_alloc(x,y,z,a,b)       do_item_alloc(x,y,z,a,b)
321# define item_cachedump(x,y,z)       do_item_cachedump(x,y,z)
322# define item_flush_expired()        do_item_flush_expired()
323# define item_get_notedeleted(x,y,z) do_item_get_notedeleted(x,y,z)
324# define item_link(x)                do_item_link(x)
325# define item_remove(x)              do_item_remove(x)
326# define item_replace(x,y)           do_item_replace(x,y)
327# define item_stats(x)               do_item_stats(x)
328# define item_stats_sizes(x)         do_item_stats_sizes(x)
329# define item_unlink(x)              do_item_unlink(x)
330# define item_update(x)              do_item_update(x)
331# define run_deferred_deletes()      do_run_deferred_deletes()
332# define slabs_alloc(x)              do_slabs_alloc(x)
333# define slabs_free(x,y)             do_slabs_free(x,y)
334# define slabs_reassign(x,y)         do_slabs_reassign(x,y)
335# define slabs_stats(x)              do_slabs_stats(x)
336# define store_item(x,y)             do_store_item(x,y)
337# define thread_init(x,y)            0
338
339# define STATS_LOCK()                /**/
340# define STATS_UNLOCK()              /**/
341
342#endif /* !USE_THREADS */
343
344
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