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#ifndef _BASE_H_
#define _BASE_H_
#include <sys/types.h>
#include <sys/time.h>
#include <sys/stat.h>
#ifdef HAVE_CONFIG_H
#include "config.h"
#endif
#include <limits.h>
#ifdef HAVE_STDINT_H
# include <stdint.h>
#endif
#ifdef HAVE_INTTYPES_H
# include <inttypes.h>
#endif
#include "buffer.h"
#include "array.h"
#include "chunk.h"
#include "keyvalue.h"
#include "settings.h"
#include "fdevent.h"
#include "sys-socket.h"
#include "splaytree.h"
#if defined HAVE_LIBSSL && defined HAVE_OPENSSL_SSL_H
# define USE_OPENSSL
# include <openssl/ssl.h>
#endif
#ifdef HAVE_FAM_H
# include <fam.h>
#endif
#ifndef O_BINARY
# define O_BINARY 0
#endif
#ifndef O_LARGEFILE
# define O_LARGEFILE 0
#endif
#ifndef SIZE_MAX
# ifdef SIZE_T_MAX
# define SIZE_MAX SIZE_T_MAX
# else
# define SIZE_MAX ((size_t)~0)
# endif
#endif
#ifndef SSIZE_MAX
# define SSIZE_MAX ((size_t)~0 >> 1)
#endif
#ifdef __APPLE__
#include <crt_externs.h>
#define environ (* _NSGetEnviron())
#else
extern char **environ;
#endif
/* for solaris 2.5 and NetBSD 1.3.x */
#ifndef HAVE_SOCKLEN_T
typedef int socklen_t;
#endif
/* solaris and NetBSD 1.3.x again */
#if (!defined(HAVE_STDINT_H)) && (!defined(HAVE_INTTYPES_H)) && (!defined(uint32_t))
# define uint32_t u_int32_t
#endif
#ifndef SHUT_WR
# define SHUT_WR 1
#endif
#include "settings.h"
typedef enum { T_CONFIG_UNSET,
T_CONFIG_STRING,
T_CONFIG_SHORT,
T_CONFIG_BOOLEAN,
T_CONFIG_ARRAY,
T_CONFIG_LOCAL,
T_CONFIG_DEPRECATED
} config_values_type_t;
typedef enum { T_CONFIG_SCOPE_UNSET,
T_CONFIG_SCOPE_SERVER,
T_CONFIG_SCOPE_CONNECTION
} config_scope_type_t;
typedef struct {
const char *key;
void *destination;
config_values_type_t type;
config_scope_type_t scope;
} config_values_t;
typedef enum { DIRECT, EXTERNAL } connection_type;
typedef struct {
char *key;
connection_type type;
char *value;
} request_handler;
typedef struct {
char *key;
char *host;
unsigned short port;
int used;
short factor;
} fcgi_connections;
typedef union {
#ifdef HAVE_IPV6
struct sockaddr_in6 ipv6;
#endif
struct sockaddr_in ipv4;
#ifdef HAVE_SYS_UN_H
struct sockaddr_un un;
#endif
struct sockaddr plain;
} sock_addr;
/* fcgi_response_header contains ... */
#define HTTP_STATUS BV(0)
#define HTTP_CONNECTION BV(1)
#define HTTP_CONTENT_LENGTH BV(2)
#define HTTP_DATE BV(3)
#define HTTP_LOCATION BV(4)
typedef struct {
/** HEADER */
/* the request-line */
buffer *request;
buffer *uri;
buffer *orig_uri;
http_method_t http_method;
http_version_t http_version;
buffer *request_line;
/* strings to the header */
buffer *http_host; /* not alloced */
const char *http_range;
const char *http_content_type;
const char *http_if_modified_since;
const char *http_if_none_match;
array *headers;
/* CONTENT */
size_t content_length; /* returned by strtoul() */
/* internal representation */
int accept_encoding;
/* internal */
buffer *pathinfo;
} request;
typedef struct {
off_t content_length;
int keep_alive; /* used by the subrequests in proxy, cgi and fcgi to say the subrequest was keep-alive or not */
array *headers;
enum {
HTTP_TRANSFER_ENCODING_IDENTITY, HTTP_TRANSFER_ENCODING_CHUNKED
} transfer_encoding;
} response;
typedef struct {
buffer *scheme;
buffer *authority;
buffer *path;
buffer *path_raw;
buffer *query;
} request_uri;
typedef struct {
buffer *path;
buffer *basedir; /* path = "(basedir)(.*)" */
buffer *doc_root; /* path = doc_root + rel_path */
buffer *rel_path;
buffer *etag;
} physical;
typedef struct {
buffer *name;
buffer *etag;
struct stat st;
time_t stat_ts;
#ifdef HAVE_FAM_H
int dir_version;
int dir_ndx;
#endif
buffer *content_type;
} stat_cache_entry;
typedef struct {
splay_tree *files; /* the nodes of the tree are stat_cache_entry's */
buffer *dir_name; /* for building the dirname from the filename */
#ifdef HAVE_FAM_H
splay_tree *dirs; /* the nodes of the tree are fam_dir_entry */
FAMConnection *fam;
int fam_fcce_ndx;
#endif
} stat_cache;
typedef struct {
array *mimetypes;
/* virtual-servers */
buffer *document_root;
buffer *server_name;
buffer *error_handler;
buffer *server_tag;
buffer *dirlist_encoding;
buffer *errorfile_prefix;
unsigned short max_keep_alive_requests;
unsigned short max_keep_alive_idle;
unsigned short max_read_idle;
unsigned short max_write_idle;
unsigned short use_xattr;
unsigned short follow_symlink;
unsigned short range_requests;
/* debug */
unsigned short log_file_not_found;
unsigned short log_request_header;
unsigned short log_request_handling;
unsigned short log_response_header;
unsigned short log_condition_handling;
/* server wide */
buffer *ssl_pemfile;
buffer *ssl_ca_file;
unsigned short use_ipv6;
unsigned short is_ssl;
unsigned short allow_http11;
unsigned short force_lowercase_filenames; /* if the FS is case-insensitive, force all files to lower-case */
unsigned short max_request_size;
unsigned short kbytes_per_second; /* connection kb/s limit */
/* configside */
unsigned short global_kbytes_per_second; /* */
off_t global_bytes_per_second_cnt;
/* server-wide traffic-shaper
*
* each context has the counter which is inited once
* a second by the global_kbytes_per_second config-var
*
* as soon as global_kbytes_per_second gets below 0
* the connected conns are "offline" a little bit
*
* the problem:
* we somehow have to loose our "we are writable" signal
* on the way.
*
*/
off_t *global_bytes_per_second_cnt_ptr; /* */
#ifdef USE_OPENSSL
SSL_CTX *ssl_ctx;
#endif
} specific_config;
/* the order of the items should be the same as they are processed
* read before write as we use this later */
typedef enum {
CON_STATE_CONNECT,
CON_STATE_REQUEST_START,
CON_STATE_READ,
CON_STATE_REQUEST_END,
CON_STATE_READ_POST,
CON_STATE_HANDLE_REQUEST,
CON_STATE_RESPONSE_START,
CON_STATE_WRITE,
CON_STATE_RESPONSE_END,
CON_STATE_ERROR,
CON_STATE_CLOSE
} connection_state_t;
typedef enum { COND_RESULT_UNSET, COND_RESULT_FALSE, COND_RESULT_TRUE } cond_result_t;
typedef struct {
cond_result_t result;
int patterncount;
int matches[3 * 10];
buffer *comp_value; /* just a pointer */
} cond_cache_t;
typedef struct {
connection_state_t state;
/* timestamps */
time_t read_idle_ts;
time_t close_timeout_ts;
time_t write_request_ts;
time_t connection_start;
time_t request_start;
struct timeval start_tv;
size_t request_count; /* number of requests handled in this connection */
size_t loops_per_request; /* to catch endless loops in a single request
*
* used by mod_rewrite, mod_fastcgi, ... and others
* this is self-protection
*/
int fd; /* the FD for this connection */
int fde_ndx; /* index for the fdevent-handler */
int ndx; /* reverse mapping to server->connection[ndx] */
/* fd states */
int is_readable;
int is_writable;
int keep_alive; /* only request.c can enable it, all other just disable */
int file_started;
int file_finished;
chunkqueue *write_queue; /* a large queue for low-level write ( HTTP response ) [ file, mem ] */
chunkqueue *read_queue; /* a small queue for low-level read ( HTTP request ) [ mem ] */
chunkqueue *request_content_queue; /* takes request-content into tempfile if necessary [ tempfile, mem ]*/
int traffic_limit_reached;
off_t bytes_written; /* used by mod_accesslog, mod_rrd */
off_t bytes_written_cur_second; /* used by mod_accesslog, mod_rrd */
off_t bytes_read; /* used by mod_accesslog, mod_rrd */
off_t bytes_header;
int http_status;
sock_addr dst_addr;
buffer *dst_addr_buf;
/* request */
buffer *parse_request;
unsigned int parsed_response; /* bitfield which contains the important header-fields of the parsed response header */
request request;
request_uri uri;
physical physical;
response response;
size_t header_len;
buffer *authed_user;
array *environment; /* used to pass lighttpd internal stuff to the FastCGI/CGI apps, setenv does that */
/* response */
int got_response;
int in_joblist;
connection_type mode;
void **plugin_ctx; /* plugin connection specific config */
specific_config conf; /* global connection specific config */
cond_cache_t *cond_cache;
buffer *server_name;
/* error-handler */
buffer *error_handler;
int error_handler_saved_status;
int in_error_handler;
void *srv_socket; /* reference to the server-socket (typecast to server_socket) */
#ifdef USE_OPENSSL
SSL *ssl;
int is_ssl_error_want;
#endif
} connection;
typedef struct {
connection **ptr;
size_t size;
size_t used;
} connections;
#ifdef HAVE_IPV6
typedef struct {
int family;
union {
struct in6_addr ipv6;
struct in_addr ipv4;
} addr;
char b2[INET6_ADDRSTRLEN + 1];
time_t ts;
} inet_ntop_cache_type;
#endif
typedef struct {
buffer *uri;
time_t mtime;
int http_status;
} realpath_cache_type;
typedef struct {
time_t mtime; /* the key */
buffer *str; /* a buffer for the string represenation */
} mtime_cache_type;
typedef struct {
void *ptr;
size_t used;
size_t size;
} buffer_plugin;
typedef struct {
unsigned short port;
buffer *bindhost;
buffer *errorlog_file;
unsigned short errorlog_use_syslog;
unsigned short dont_daemonize;
buffer *changeroot;
buffer *username;
buffer *groupname;
buffer *pid_file;
buffer *event_handler;
buffer *modules_dir;
buffer *network_backend;
array *modules;
array *upload_tempdirs;
unsigned short max_worker;
unsigned short max_fds;
unsigned short max_conns;
unsigned short max_request_size;
unsigned short log_request_header_on_error;
unsigned short log_state_handling;
enum { STAT_CACHE_ENGINE_UNSET,
STAT_CACHE_ENGINE_NONE,
STAT_CACHE_ENGINE_SIMPLE,
STAT_CACHE_ENGINE_FAM
} stat_cache_engine;
unsigned short enable_cores;
} server_config;
typedef struct {
sock_addr addr;
int fd;
int fde_ndx;
buffer *ssl_pemfile;
buffer *ssl_ca_file;
unsigned short use_ipv6;
unsigned short is_ssl;
buffer *srv_token;
#ifdef USE_OPENSSL
SSL_CTX *ssl_ctx;
#endif
} server_socket;
typedef struct {
server_socket **ptr;
size_t size;
size_t used;
} server_socket_array;
typedef struct server {
server_socket_array srv_sockets;
/* the errorlog */
int errorlog_fd;
enum { ERRORLOG_STDERR, ERRORLOG_FILE, ERRORLOG_SYSLOG } errorlog_mode;
buffer *errorlog_buf;
fdevents *ev, *ev_ins;
buffer_plugin plugins;
void *plugin_slots;
/* counters */
int con_opened;
int con_read;
int con_written;
int con_closed;
int ssl_is_init;
int max_fds; /* max possible fds */
int cur_fds; /* currently used fds */
int want_fds; /* waiting fds */
int sockets_disabled;
size_t max_conns;
/* buffers */
buffer *parse_full_path;
buffer *response_header;
buffer *response_range;
buffer *tmp_buf;
buffer *tmp_chunk_len;
buffer *empty_string; /* is necessary for cond_match */
buffer *cond_check_buf;
/* caches */
#ifdef HAVE_IPV6
inet_ntop_cache_type inet_ntop_cache[INET_NTOP_CACHE_MAX];
#endif
mtime_cache_type mtime_cache[FILE_CACHE_MAX];
array *split_vals;
/* Timestamps */
time_t cur_ts;
time_t last_generated_date_ts;
time_t last_generated_debug_ts;
time_t startup_ts;
buffer *ts_debug_str;
buffer *ts_date_str;
/* config-file */
array *config;
array *config_touched;
array *config_context;
specific_config **config_storage;
server_config srvconf;
int config_deprecated;
connections *conns;
connections *joblist;
connections *fdwaitqueue;
stat_cache *stat_cache;
/**
* The status array can carry all the status information you want
* the key to the array is <module-prefix>.<name>
* and the values are counters
*
* example:
* fastcgi.backends = 10
* fastcgi.active-backends = 6
* fastcgi.backend.<key>.load = 24
* fastcgi.backend.<key>....
*
* fastcgi.backend.<key>.disconnects = ...
*/
array *status;
fdevent_handler_t event_handler;
int (* network_backend_write)(struct server *srv, connection *con, int fd, chunkqueue *cq);
int (* network_backend_read)(struct server *srv, connection *con, int fd, chunkqueue *cq);
#ifdef USE_OPENSSL
int (* network_ssl_backend_write)(struct server *srv, connection *con, SSL *ssl, chunkqueue *cq);
int (* network_ssl_backend_read)(struct server *srv, connection *con, SSL *ssl, chunkqueue *cq);
#endif
uid_t uid;
gid_t gid;
} server;
#endif
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