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globals.h
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globals.h
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#ifndef GLOBALS_H_
#define GLOBALS_H_
#ifndef _GNU_SOURCE
#define _GNU_SOURCE // needed for PTHREAD_MUTEX_RECURSIVE on some plattforms and maybe other things; do not remove
#endif
#include <stdlib.h>
#include <stdio.h>
#include <stdbool.h>
#include <stdint.h>
#include <stddef.h>
#include <assert.h>
#include <fcntl.h>
#include <sys/ioctl.h>
#include <poll.h>
#include <ctype.h>
#include <sys/types.h>
#include <sys/stat.h>
#include <sys/wait.h>
#include <unistd.h>
#include <sys/mman.h>
#include <stdarg.h>
#include <time.h>
#include <sys/time.h>
#include <limits.h>
#include <pwd.h>
#include <netinet/tcp.h>
#include <sys/socket.h>
#include <netinet/in.h>
#include <arpa/inet.h>
#include <netdb.h>
#include <string.h>
#include <strings.h>
#include <signal.h>
#include <errno.h>
#include <pthread.h>
#include <dirent.h>
#include <termios.h>
#include <inttypes.h>
#include <sys/utsname.h>
#include <sys/sysmacros.h>
/*
* The following hack is taken from Linux: include/linux/kconfig.h
* Original comment follows:
* Getting something that works in C and CPP for an arg that may or may
* not be defined is tricky. Here, if we have "#define CONFIG_BOOGER 1"
* we match on the placeholder define, insert the "0," for arg1 and generate
* the triplet (0, 1, 0). Then the last step cherry picks the 2nd arg (a one).
* When CONFIG_BOOGER is not defined, we generate a (... 1, 0) pair, and when
* the last step cherry picks the 2nd arg, we get a zero.
*/
#define __ARG_PLACEHOLDER_1 0,
#define config_enabled(cfg) _config_enabled(cfg)
#define _config_enabled(value) __config_enabled(__ARG_PLACEHOLDER_##value)
#define __config_enabled(arg1_or_junk) ___config_enabled(arg1_or_junk 1, 0)
#define ___config_enabled(__ignored, val, ...) val
#include "config.h"
#if defined(WITH_SSL) && !defined(WITH_LIBCRYPTO)
# define WITH_LIBCRYPTO 1
#endif
#if defined(__CYGWIN__) || defined(__arm__) || defined(__SH4__) || defined(__MIPS__) || defined(__MIPSEL__) || defined(__powerpc__)
# define CS_LOGFILE "/dev/tty"
#endif
#if defined(__AIX__) || defined(__SGI__) || defined(__OSF__) || defined(__HPUX__) || defined(__SOLARIS__) || defined(__APPLE__)
# define NEED_DAEMON
#endif
#if defined(__AIX__) || defined(__SGI__) || defined(__OSF__) || defined(__HPUX__) || defined(__SOLARIS__) || defined(__CYGWIN__)
# define NO_ENDIAN_H
#endif
#if defined(__AIX__) || defined(__SGI__)
# define socklen_t unsigned long
#endif
#if defined(__SOLARIS__) || defined(__FreeBSD__) || defined(__OpenBSD__)
# define BSD_COMP
#endif
#if defined(__HPUX__)
# define _XOPEN_SOURCE_EXTENDED
#endif
#if (defined(__APPLE__) || defined(__FreeBSD__) || defined(__OpenBSD__)) && !defined(s6_addr32)
#define s6_addr32 __u6_addr.__u6_addr32
#endif
#ifdef __ANDROID__
#ifndef in_port_t
#define in_port_t uint16_t
#endif
#define tcdrain(fd) ioctl(fd, TCSBRK, 1)
#endif
#ifdef __uClinux__
#define fork() 0
#endif
// Prevent warnings about openssl functions. Apple may consider 'openssl'
// deprecated but changing perfectly working portable code just because they
// introduced some proprietary API is not going to happen.
#if defined(__APPLE__)
#define __AVAILABILITY_MACROS_USES_AVAILABILITY 0
#define MAC_OS_X_VERSION_MIN_REQUIRED MAC_OS_X_VERSION_10_6
#endif
#include "cscrypt/aes.h"
#ifdef IPV6SUPPORT
#define IN_ADDR_T struct in6_addr
#define SOCKADDR sockaddr_storage
#define ADDR_ANY in6addr_any
#define DEFAULT_AF AF_INET6
#else
#define IN_ADDR_T in_addr_t
#define SOCKADDR sockaddr_in
#define ADDR_ANY INADDR_ANY
#define DEFAULT_AF AF_INET
#endif
#ifndef NO_ENDIAN_H
#if defined(__APPLE__)
#include <machine/endian.h>
#define __BYTE_ORDER __DARWIN_BYTE_ORDER
#define __BIG_ENDIAN __DARWIN_BIG_ENDIAN
#define __LITTLE_ENDIAN __DARWIN_LITTLE_ENDIAN
#elif defined(__FreeBSD__) || defined(__OpenBSD__)
#include <sys/endian.h>
#define __BYTE_ORDER _BYTE_ORDER
#define __BIG_ENDIAN _BIG_ENDIAN
#define __LITTLE_ENDIAN _LITTLE_ENDIAN
#else
#include <endian.h>
#include <byteswap.h>
#endif
#endif
/* ===========================
* macros
* =========================== */
// Prevent use of unsafe functions (doesn't work for MacOSX)
#if !defined(__APPLE__)
#define strcpy(a,b) UNSAFE_STRCPY_USE_CS_STRNCPY_INSTEAD()
#define sprintf(a,...) UNSAFE_SPRINTF_USE_SNPRINTF_INSTEAD()
#define strtok(a,b,c) UNSAFE_STRTOK_USE_STRTOK_R_INSTEAD()
#define gmtime(a) UNSAFE_GMTIME_NOT_THREADSAFE_USE_CS_GMTIME_R()
#define localtime(a) UNSAFE_LOCALTIME_NOT_THREADSAFE_USE_LOCALTIME_R()
#define asctime(a) UNSAFE_ASCTIME_NOT_THREADSAFE_USE_ASCTIME_R()
#define ctime(a) UNSAFE_CTIME_NOT_THREADSAFE_USE_CS_CTIME_R()
#define gethostbyaddr(a,b,c) UNSAFE_GETHOSTBYADDR_NOT_THREADSAFE_USE_GETADDRINFO()
#define gethostent(a) UNSAFE_GETHOSTENT_NOT_THREADSAFE()
#define getprotobyname(a) UNSAFE_GETPROTOBYNAME_NOT_THREADSAFE_USE_GETPROTOBYNAME_R()
#define getservbyname(a,b) UNSAFE_GETSERVBYNAME_NOT_THREADSAFE_USE_GETSERVBYNAME_R()
#define getservbyport(a,b) UNSAFE_GETSERVBYPORT_NOT_THREADSAFE_USE_GETSERVBYPORT_R()
#define getservent() UNSAFE_GETSERVENT_NOT_THREADSAFE_USE_GETSERVENT_R()
#define getnetbyname(a) UNSAFE_GETNETBYNAME_NOT_THREADSAFE_USE_GETNETBYNAME_R
#define getnetbyaddr(a,b) UNSAFE_GETNETBYADDR_NOT_THREADSAFE_USE_GETNETBYADDR_R
#define getnetent() UNSAFE_GETNETENT_NOT_THREADSAFE_USE_GETNETENT_R
#define getrpcbyname(a) UNSAFE_GETRPCBYNAME_NOT_THREADSAFE_USE_GETRPCBYNAME_R
#define getrpcbynumber(a) UNSAFE_GETRPCBYNUMBER_NOT_THREADSAFE_USE_GETRPCBYNUMBER_R
#define getrpcent() UNSAFE_GETRPCENT_NOT_THREADSAFE_USE_GETRPCENT_R
#define ctermid(a) UNSAFE_CTERMID_NOT_THREADSAFE_USE_CTERMID_R
#define tmpnam(a) UNSAFE_TMPNAM_NOT_THREADSAFE
#define tempnam(a,b) UNSAFE_TEMPNAM_NOT_THREADSAFE
#define getlogin() UNSAFE_GETLOGIN_NOT_THREADSAFE_USE_GETLOGIN_R
#define getpwnam(a) UNSAFE_GETPWNAM_NOT_THREADSAFE_USE_GETPWNAM_R
#define getpwent() UNSAFE_GETPWENT_NOT_THREADSAFE_USE_GETPWENT_R
#define fgetpwent(a) UNSAFE_FGETPWENT_NOT_THREADSAFE_USE_FGETPWENT_R
#ifndef __ANDROID__
#define getpwuid(a) UNSAFE_GETPWUID_NOT_THREADSAFE_USE_GETPWUID_R
#endif
#define getspent() UNSAFE_GETSPENT_NOT_THREADSAFE_USE_GETSPENT_R
#define getspnam(a) UNSAFE_GETSPNAM_NOT_THREADSAFE_USE_GETSPNAM_R
#define fgetspent(a) UNSAFE_FGETSPENT_NOT_THREADSAFE_USE_FGETSPENT_R
#define getgrnam(a) UNSAFE_GETGRNAM_NOT_THREADSAFE_USE_GETGRNAM_R
#define getgrent() UNSAFE_GETGRENT_NOT_THREADSAFE_USE_GETGRENT_R
#define getgrgid(a) UNSAFE_GETGRGID_NOT_THREADSAFE_USE_GETGRGID_R
#define fgetgrent() UNSAFE_FGETGRENT_NOT_THREADSAFE_USE_FGETGRGID_R
#define fcvt(a,b,c,d) UNSAFE_FCVT_NOT_THREADSAFE_AND_DEPRECATED
#define ecvt(a,b,c,d) UNSAFE_ECVT_NOT_THREADSAFE_AND_DEPRECATED
#define gcvt(a,b,c) UNSAFE_GCVT_NOT_THREADSAFE_AND_DEPRECATED
#define strptime(a,b,c) STRPTIME_NOT_EXISTS_ON_SOME_DM500_DB2()
#define ftime(a) FTIME_DEPRECATED()
#define timegm(a) TIMEGM_GNU_SPECIFIC_USE_CS_TIMEGM
#endif
#ifdef UNUSED
#elif __GNUC__ >= 3 || (__GNUC__ == 2 && __GNUC_MINOR__ >= 7)
# define UNUSED(x) UNUSED_ ## x __attribute__((unused))
#elif defined(__LCLINT__)
# define UNUSED(x) /*@unused@*/ x
#else
# define UNUSED(x) x
#endif
#if __GNUC__ >= 3 || (__GNUC__ == 3 && __GNUC_MINOR__ >= 4)
# define MUST_CHECK_RESULT __attribute__((warn_unused_result))
#endif
#ifdef OK
#undef OK
#endif
#ifdef ERROR
#undef ERROR
#endif
#define ARRAY_SIZE(arr) (sizeof(arr) / sizeof((arr)[0]))
#ifdef WITH_DEBUG
# define call(arg) \
if(arg) \
{ \
cs_log_dbg(D_TRACE, "ERROR, function call %s returns error.",#arg); \
return ERROR; \
}
#else
# define call(arg) \
if(arg) \
{ \
return ERROR; \
}
#endif
// checking if (X) free(X) unneccessary since freeing a null pointer doesnt do anything
#define NULLFREE(X) {if (X) {void *tmpX=X; X=NULL; free(tmpX); }}
#ifdef __CYGWIN__
#define cs_recv(a,b,c,d) cygwin_recv(a,b,c,d)
#else
#define cs_recv(a,b,c,d) recv(a,b,c,d)
#endif
// safe wrappers to pthread functions
#define fprintf_stderr(fmt, params...) fprintf(stderr, fmt, ##params)
#define SAFE_PTHREAD_1ARG(a, b, c) { \
int32_t pter = a(b); \
if(pter != 0) \
{ \
c("FATAL ERROR: %s() failed in %s with error %d %s\n", #a, __func__, pter, strerror(pter)); \
} }
#define SAFE_MUTEX_LOCK(a) SAFE_PTHREAD_1ARG(pthread_mutex_lock, a, cs_log)
#define SAFE_MUTEX_UNLOCK(a) SAFE_PTHREAD_1ARG(pthread_mutex_unlock, a, cs_log)
#define SAFE_COND_SIGNAL(a) SAFE_PTHREAD_1ARG(pthread_cond_signal, a, cs_log)
#define SAFE_COND_BROADCAST(a) SAFE_PTHREAD_1ARG(pthread_cond_broadcast, a, cs_log)
#define SAFE_RWLOCK_RDLOCK(a) SAFE_PTHREAD_1ARG(pthread_rwlock_rdlock, a, cs_log)
#define SAFE_RWLOCK_WRLOCK(a) SAFE_PTHREAD_1ARG(pthread_rwlock_wrlock, a, cs_log)
#define SAFE_RWLOCK_UNLOCK(a) SAFE_PTHREAD_1ARG(pthread_rwlock_unlock, a, cs_log)
#define SAFE_ATTR_INIT(a) SAFE_PTHREAD_1ARG(pthread_attr_init, a, cs_log)
#define SAFE_MUTEXATTR_INIT(a) SAFE_PTHREAD_1ARG(pthread_mutexattr_init, a, cs_log)
#define SAFE_CONDATTR_INIT(a) SAFE_PTHREAD_1ARG(pthread_condattr_init, a, cs_log)
#define SAFE_MUTEX_LOCK_NOLOG(a) SAFE_PTHREAD_1ARG(pthread_mutex_lock, a, fprintf_stderr)
#define SAFE_MUTEX_UNLOCK_NOLOG(a) SAFE_PTHREAD_1ARG(pthread_mutex_unlock, a, fprintf_stderr)
#define SAFE_COND_SIGNAL_NOLOG(a) SAFE_PTHREAD_1ARG(pthread_cond_signal, a, fprintf_stderr)
#define SAFE_MUTEX_UNLOCK_NOLOG(a) SAFE_PTHREAD_1ARG(pthread_mutex_unlock, a, fprintf_stderr)
#define SAFE_ATTR_INIT_NOLOG(a) SAFE_PTHREAD_1ARG(pthread_attr_init, a, fprintf_stderr)
#define SAFE_CONDATTR_INIT_NOLOG(a) SAFE_PTHREAD_1ARG(pthread_condattr_init, a, fprintf_stderr)
#define SAFE_PTHREAD_2ARG(a, b, c, d) { \
int32_t pter = a(b, c); \
if(pter != 0) \
{ \
d("FATAL ERROR: %s() failed in %s with error %d %s\n", #a, __func__, pter, strerror(pter)); \
} }
#define SAFE_COND_WAIT(a,b) SAFE_PTHREAD_2ARG(pthread_cond_wait, a, b, cs_log)
#define SAFE_THREAD_JOIN(a,b) SAFE_PTHREAD_2ARG(pthread_join, a, b, cs_log)
#define SAFE_SETSPECIFIC(a,b) SAFE_PTHREAD_2ARG(pthread_setspecific, a, b, cs_log)
#define SAFE_MUTEXATTR_SETTYPE(a,b) SAFE_PTHREAD_2ARG(pthread_mutexattr_settype, a, b, cs_log)
#define SAFE_MUTEX_INIT(a,b) SAFE_PTHREAD_2ARG(pthread_mutex_init, a, b, cs_log)
#define SAFE_COND_INIT(a,b) SAFE_PTHREAD_2ARG(pthread_cond_init, a, b, cs_log)
#define SAFE_CONDATTR_SETCLOCK(a,b) SAFE_PTHREAD_2ARG(pthread_condattr_setclock, a, b, cs_log)
#define SAFE_MUTEX_INIT_NOLOG(a,b) SAFE_PTHREAD_2ARG(pthread_mutex_init, a, b, fprintf_stderr)
#define SAFE_COND_INIT_NOLOG(a,b) SAFE_PTHREAD_2ARG(pthread_cond_init, a, b, fprintf_stderr)
#define SAFE_THREAD_JOIN_NOLOG(a,b) SAFE_PTHREAD_2ARG(pthread_join, a, b, fprintf_stderr)
#define SAFE_CONDATTR_SETCLOCK_NOLOG(a,b) SAFE_PTHREAD_2ARG(pthread_condattr_setclock, a, b, fprintf_stderr)
#define SAFE_PTHREAD_1ARG_R(a, b, c, d) { \
int32_t pter = a(b); \
if(pter != 0) \
{ \
c("FATAL ERROR: %s() failed in %s (called from %s) with error %d %s\n", #a, __func__, d, pter, strerror(pter)); \
} }
#define SAFE_MUTEX_LOCK_R(a, b) SAFE_PTHREAD_1ARG_R(pthread_mutex_lock, a, cs_log, b)
#define SAFE_MUTEX_UNLOCK_R(a, b) SAFE_PTHREAD_1ARG_R(pthread_mutex_unlock, a, cs_log, b)
#define SAFE_COND_SIGNAL_R(a, b) SAFE_PTHREAD_1ARG_R(pthread_cond_signal, a, cs_log, b)
#define SAFE_COND_BROADCAST_R(a, b) SAFE_PTHREAD_1ARG_R(pthread_cond_broadcast, a, cs_log, b)
#define SAFE_CONDATTR_INIT_R(a, b) SAFE_PTHREAD_1ARG_R(pthread_condattr_init, a, cs_log, b)
#define SAFE_MUTEX_LOCK_NOLOG_R(a, b) SAFE_PTHREAD_1ARG_R(pthread_mutex_lock, a, fprintf_stderr, b)
#define SAFE_MUTEX_UNLOCK_NOLOG_R(a, b) SAFE_PTHREAD_1ARG_R(pthread_mutex_unlock, a, fprintf_stderr, b)
#define SAFE_CONDATTR_INIT_NOLOG_R(a, b) SAFE_PTHREAD_1ARG_R(pthread_condattr_init, a, fprintf_stderr, b)
#define SAFE_PTHREAD_2ARG_R(a, b, c, d, e) { \
int32_t pter = a(b, c); \
if(pter != 0) \
{ \
d("FATAL ERROR: %s() failed in %s (called from %s) with error %d %s\n", #a, __func__, e, pter, strerror(pter)); \
} }
#define SAFE_MUTEX_INIT_R(a,b,c) SAFE_PTHREAD_2ARG_R(pthread_mutex_init, a, b, cs_log, c)
#define SAFE_COND_INIT_R(a,b,c) SAFE_PTHREAD_2ARG_R(pthread_cond_init, a, b, cs_log, c)
#define SAFE_CONDATTR_SETCLOCK_R(a,b,c) SAFE_PTHREAD_2ARG(pthread_condattr_setclock, a, b, cs_log, c)
#define SAFE_MUTEX_INIT_NOLOG_R(a,b,c) SAFE_PTHREAD_2ARG_R(pthread_mutex_init, a, b, fprintf_stderr, c)
#define SAFE_COND_INIT_NOLOG_R(a,b,c) SAFE_PTHREAD_2ARG_R(pthread_cond_init, a, b, fprintf_stderr, c)
#define SAFE_CONDATTR_SETCLOCK_NOLOG_R(a,b,c) SAFE_PTHREAD_2ARG(pthread_condattr_setclock, a, b, fprintf_stderr, c)
#define SAFE_COND_TIMEDWAIT(a, b, c) { \
int32_t pter; \
if((c)->tv_nsec < 0) (c)->tv_nsec = 0; \
if((c)->tv_nsec > 999999999) (c)->tv_nsec = 999999999; \
pter = pthread_cond_timedwait(a, b, c); \
if(pter != 0 && pter != ETIMEDOUT) \
{ \
cs_log("FATAL ERROR: pthread_cond_timedwait failed in %s with error %d %s\n", __func__, pter, strerror(pter)); \
} }
#define SAFE_COND_TIMEDWAIT_R(a, b, c, d) { \
int32_t pter; \
if((c)->tv_nsec < 0) (c)->tv_nsec = 0; \
if((c)->tv_nsec > 999999999) (c)->tv_nsec = 999999999; \
pter = pthread_cond_timedwait(a, b, c); \
if(pter != 0 && pter != ETIMEDOUT) \
{ \
cs_log("FATAL ERROR: pthread_cond_timedwait failed in %s (called from %s) with error %d %s\n", __func__, d, pter, strerror(pter)); \
} }
#define SAFE_ATTR_SETSTACKSIZE(a,b) { \
int32_t pter = pthread_attr_setstacksize(a, b); \
if(pter != 0) \
{ \
cs_log("WARNING: pthread_attr_setstacksize() failed in %s with error %d %s\n", __func__, pter, strerror(pter)); \
} }
#define SAFE_ATTR_SETSTACKSIZE_NOLOG(a,b) { \
int32_t pter = pthread_attr_setstacksize(a, b); \
if(pter != 0) \
{ \
fprintf_stderr("WARNING: pthread_attr_setstacksize() failed in %s with error %d %s\n", __func__, pter, strerror(pter)); \
} }
#ifdef NO_PTHREAD_STACKSIZE
#undef SAFE_ATTR_SETSTACKSIZE
#undef SAFE_ATTR_SETSTACKSIZE_NOLOG
#define SAFE_ATTR_SETSTACKSIZE(a,b)
#define SAFE_ATTR_SETSTACKSIZE_NOLOG(a,b)
#endif
#define CHECK_BIT(var,pos) (((var) & (1<<(pos)))? 1 : 0)
/* ===========================
* constants
* =========================== */
#define CS_VERSION "1.20_svn"
#ifndef CS_SVN_VERSION
# define CS_SVN_VERSION "test"
#endif
#ifdef CS_CACHEEX
#ifdef CS_CACHEEX_AIO
#define CS_AIO_VERSION CS_SVN_VERSION
#endif
#endif
#ifndef CS_TARGET
# define CS_TARGET "unknown"
#endif
#ifndef CS_CONFDIR
#define CS_CONFDIR "/usr/local/etc"
#endif
#ifndef CS_LOGFILE
#define CS_LOGFILE "/var/log/oscam.log"
#endif
#define CS_QLEN 128 // size of request queue
#define CS_MAXPROV 32
#define CS_MAXPORTS 32 // max server ports
#define CS_CLIENT_HASHBUCKETS 32
#define CS_SERVICENAME_SIZE 32
#define CS_ECMSTORESIZE 16 // use MD5()
#define CS_EMMSTORESIZE 16 // use MD5()
#define CS_CLIENT_TIMEOUT 5000
#define CS_CLIENT_MAXIDLE 120
#define CS_BIND_TIMEOUT 120
#define CS_DELAY 0
#define CS_ECM_RINGBUFFER_MAX 0x10 // max size for ECM last responsetimes ringbuffer. Keep this set to power of 2 values!
// Support for multiple CWs per channel and other encryption algos
#define WITH_EXTENDED_CW 1
#if defined(READER_DRE) || defined(READER_DRECAS) || defined(READER_VIACCESS) || defined(WITH_EMU) \
|| defined(READER_JET) || defined(READER_STREAMGUARD) || defined(READER_TONGFANG)
#define MAX_ECM_SIZE 1024
#define MAX_EMM_SIZE 1024
#else
#define MAX_ECM_SIZE 596
#define MAX_EMM_SIZE 512
#endif
#ifdef WITH_EMU
#define CS_EMMCACHESIZE 1024 // nr of EMMs that EMU reader will cache
#else
#define CS_EMMCACHESIZE 512 // nr of EMMs that each reader will cache
#endif
#define MSGLOGSIZE 64 // size of string buffer for a ecm to return messages
#define D_TRACE 0x0001 // Generate very detailed error/trace messages per routine
#define D_ATR 0x0002 // Debug ATR parsing, dump of ecm, cw
#define D_READER 0x0004 // Debug Reader/Proxy Process
#define D_CLIENT 0x0008 // Debug Client Process
#define D_IFD 0x0010 // Debug IFD+protocol
#define D_DEVICE 0x0020 // Debug Reader I/O
#define D_EMM 0x0040 // Dumps EMM
#define D_DVBAPI 0x0080 // Debug DVBAPI
#define D_LB 0x0100 // Debug Loadbalancer/ECM handler
#define D_CACHEEX 0x0200 // Debug CACHEEX
#define D_CLIENTECM 0x0400 // Debug Client ECMs
#define D_CSP 0x0800 // Debug CSP
#define D_CWC 0x1000 // Debug CWC
#ifdef CS_CACHEEX_AIO
#define D_CW_CACHE 0x2000 // Debug CW Cache
#endif
#define D_ALL_DUMP 0xFFFF // dumps all
#ifdef CS_CACHEEX_AIO
#define MAX_DEBUG_LEVELS 14
#else
#define MAX_DEBUG_LEVELS 13
#endif
/////// phoenix readers which need baudrate setting and timings need to be guarded by OSCam: BEFORE R_MOUSE
#define R_DB2COM1 0x1 // Reader Dbox2 @ com1
#define R_DB2COM2 0x2 // Reader Dbox2 @ com1
#define R_SC8in1 0x3 // Reader Sc8in1 or MCR
#define R_MP35 0x4 // AD-Teknik Multiprogrammer 3.5 and 3.6 (only usb tested)
#define R_MOUSE 0x5 // Reader smartcard mouse
/////// internal readers (Dreambox, Coolstream, IPBox) are all R_INTERNAL, they are determined compile-time
#define R_INTERNAL 0x6 // Reader smartcard intern
/////// readers that do not reed baudrate setting and timings are guarded by reader itself (large buffer built in): AFTER R_SMART
#define R_SMART 0x7 // Smartreader+
#define R_PCSC 0x8 // PCSC
#define R_DRECAS 0x9 // Reader DRECAS
#define R_EMU 0x17 // Reader EMU
/////// proxy readers after R_CS378X
#define R_CAMD35 0x20 // Reader cascading camd 3.5x
#define R_CAMD33 0x21 // Reader cascading camd 3.3x
#define R_NEWCAMD 0x22 // Reader cascading newcamd
#define R_RADEGAST 0x23 // Reader cascading radegast
#define R_CS378X 0x24 // Reader cascading camd 3.5x TCP
#define R_CONSTCW 0x25 // Reader for Constant CW
#define R_CSP 0x26 // Cache CSP
#define R_GHTTP 0x27 // Reader ghttp
#define R_SCAM 0x28 // Reader cascading scam
/////// peer to peer proxy readers after R_CCCAM
#define R_GBOX 0x30 // Reader cascading gbox
#define R_CCCAM 0x35 // Reader cascading cccam
#define R_PANDORA 0x36 // Reader cascading pandora
#define R_SERIAL 0x80 // Reader serial
#define R_IS_NETWORK 0x60
#define R_IS_CASCADING 0xE0
#define is_network_reader(__X) (__X->typ & R_IS_NETWORK)
#define is_cascading_reader(__X) (__X->typ & R_IS_CASCADING)
#define is_smargo_reader(__X) (__X->crdr && strcmp(__X->crdr->desc, "smargo") == 0)
// ECM rc codes:
/////// all found
#define E_FOUND 0
#define E_CACHE1 1
#define E_CACHE2 2
#define E_CACHEEX 3
/////// all notfound, some error or problem
#define E_NOTFOUND 4 // for selection of found, use < E_NOTFOUND
#define E_TIMEOUT 5
#define E_SLEEPING 6
#define E_FAKE 7
#define E_INVALID 8
#define E_CORRUPT 9
#define E_NOCARD 10
#define E_EXPDATE 11
#define E_DISABLED 12
#define E_STOPPED 13 // for selection of error, use <= E_STOPPED and exclude selection of found
#define E_ALREADY_SENT 101
#define E_WAITING 102
#define E_99 99 // this code is undocumented
#define E_UNHANDLED 100 // for selection of unhandled, use >= E_UNHANDLED
#define CS_MAX_MOD 20
#define MOD_CONN_TCP 1
#define MOD_CONN_UDP 2
#define MOD_CONN_NET 3
#define MOD_CONN_SERIAL 4
#define MOD_NO_CONN 8
#define EMM_UNIQUE 1
#define EMM_SHARED 2
#define EMM_GLOBAL 4
#define EMM_UNKNOWN 8
// Listener Types
#define LIS_CAMD33TCP 1
#define LIS_CAMD35UDP 2
#define LIS_CAMD35TCP 4
#define LIS_NEWCAMD 8
#define LIS_CCCAM 16
#define LIS_GBOX 32
#define LIS_RADEGAST 64
#define LIS_DVBAPI 128
#define LIS_CONSTCW 256
#define LIS_SERIAL 1024
#define LIS_CSPUDP 2048
#define LIS_SCAM 4096
// EMM types:
#define UNKNOWN 0
#define UNIQUE 1
#define SHARED 2
#define GLOBAL 3
#define NCD_AUTO 0
#define NCD_524 1
#define NCD_525 2
// moved from reader-common.h
#define UNKNOWN 0
#define CARD_NEED_INIT 1
#define CARD_INSERTED 2
#define CARD_FAILURE 3
#define NO_CARD 4
#define READER_DEVICE_ERROR 5
// moved from stats
#define DEFAULT_REOPEN_SECONDS 30
#define DEFAULT_MIN_ECM_COUNT 5
#define DEFAULT_MAX_ECM_COUNT 500
#define DEFAULT_NBEST 1
#define DEFAULT_NFB 1
#define DEFAULT_RETRYLIMIT 0
#define DEFAULT_LB_MODE 0
#define DEFAULT_LB_STAT_CLEANUP 336
#define DEFAULT_UPDATEINTERVAL 120
#define DEFAULT_LB_AUTO_BETATUNNEL 1
#define DEFAULT_LB_AUTO_BETATUNNEL_MODE 0
#define DEFAULT_LB_AUTO_BETATUNNEL_PREFER_BETA 50
#define DEFAULT_MAX_CACHE_TIME 15
#define DEFAULT_MAX_HITCACHE_TIME 15
#define DEFAULT_LB_AUTO_TIMEOUT 0
#define DEFAULT_LB_AUTO_TIMEOUT_P 30
#define DEFAULT_LB_AUTO_TIMEOUT_T 300
enum {E1_GLOBAL = 0, E1_USER, E1_READER, E1_SERVER, E1_LSERVER};
// LB blocking events:
enum {E2_GLOBAL = 0, E2_GROUP, E2_CAID, E2_IDENT, E2_CLASS, E2_CHID, E2_QUEUE, E2_OFFLINE,
E2_SID, E2_CCCAM_NOCARD,
// From here only LB nonblocking events:
E2_CCCAM_NOK1, E2_CCCAM_NOK2, E2_CCCAM_LOOP, E2_WRONG_CHKSUM, E2_RATELIMIT
};
#define LB_NONBLOCK_E2_FIRST E2_CCCAM_NOK1
#define CTA_RES_LEN 512
#define MAX_ATR_LEN 33 // max. ATR length
#define MAX_HIST 15 // max. number of historical characters
#define MAX_SIDBITS 64 // max services
#define SIDTABBITS uint64_t // 64bit type for services, if a system does not support this type,
// please use a define and define it as uint32_t / MAX_SIDBITS 32
#define BAN_UNKNOWN 1 // Failban mask for anonymous/ unknown contact
#define BAN_DISABLED 2 // Failban mask for Disabled user
#define BAN_SLEEPING 4 // Failban mask for sleeping user
#define BAN_DUPLICATE 8 // Failban mask for duplicate user
#define MAX_HTTP_DYNDNS 3 // maximum allowed Dyndns addresses for webif access
#define CHECK_WAKEUP 1
#define CHECK_ANTICASCADER 2
#define CHECK_ECMCACHE 3
#define AVAIL_CHECK_CONNECTED 0
#define AVAIL_CHECK_LOADBALANCE 1
#define ECM_FMT_LEN 109 // 64
#define CXM_FMT_LEN 209 // 160
#define LB_MAX_STAT_TIME 10
#if defined(__APPLE__) || defined(__FreeBSD__) || defined(__OpenBSD__)
#define OSCAM_SIGNAL_WAKEUP SIGCONT
#else
#define OSCAM_SIGNAL_WAKEUP SIGRTMAX-2
#endif
#define READER_ACTIVE 0x01
#define READER_FALLBACK 0x02
#define READER_LOCAL 0x04
#define READER_CACHEEX 0x08
#define REQUEST_SENT 0x10
#define REQUEST_ANSWERED 0x20
#define CW_MODE_ONE_CW 0
#define CW_MODE_MULTIPLE_CW 1
#define CW_TYPE_VIDEO 0
#define CW_TYPE_AUDIO 1
#define CW_TYPE_DATA 2
#define CW_ALGO_CSA 0
#define CW_ALGO_DES 1
#define CW_ALGO_AES128 2
#define CW_ALGO_MODE_ECB 0
#define CW_ALGO_MODE_CBC 1
#define SIZE_SHORTDAY 8
#define MAXALLOWEDTF 1001 // 10 allowed time frame slots for everyday + all [(3 + 1 + 10*(12) + 1)*8]
extern const char *shortDay[SIZE_SHORTDAY];
extern const char *weekdstr;
/* ===========================
* Default Values
* =========================== */
#define DEFAULT_INACTIVITYTIMEOUT 0
#define DEFAULT_TCP_RECONNECT_TIMEOUT 30
#define DEFAULT_NCD_KEEPALIVE 0
#define DEFAULT_CC_MAXHOPS 10
#define DEFAULT_CC_RESHARE -1 // Use global cfg
#define DEFAULT_CC_IGNRSHR -1 // Use global cfg
#define DEFAULT_CC_STEALTH -1 // Use global cfg
#define DEFAULT_CC_KEEPALIVE 1
#define DEFAULT_CC_RECONNECT 12000
#define DEFAULT_CC_RECV_TIMEOUT 2000
#define DEFAULT_AC_USERS -1 // Use global cfg
#define DEFAULT_AC_PENALTY -1 // Use global cfg
// Return MPEG section length
#define SCT_LEN(sct) (3+((sct[1]&0x0f)<<8)+sct[2])
// Used by readers
#define MAX_LEN 256
#define NO_CAID_VALUE 0xfffe
#define NO_PROVID_VALUE 0xfffffe
#define NO_SRVID_VALUE 0xfffe
// If NULL return empty string
#define ESTR(x) ((x) ? (x) : "")
#ifndef MAX
#define MAX(a,b) ((a) > (b) ? (a) : (b))
#endif
#ifndef MIN
#define MIN(a,b) ((a) < (b) ? (a) : (b))
#endif
/*
See: http://stackoverflow.com/questions/10269685/kernels-container-of-any-way-to-make-it-iso-conforming
http://www.kroah.com/log/linux/container_of.html
*/
#define container_of(ptr, type, member) \
((type *) ((char *) (ptr) - offsetof(type, member) + \
(&((type *) 0)->member == (ptr)) * 0))
/* ===========================
* global structures
* =========================== */
struct timeb
{
time_t time;
int64_t millitm;
};
typedef struct cs_mutexlock
{
int32_t timeout;
pthread_mutex_t lock;
pthread_cond_t writecond, readcond;
const char *name;
int8_t flag;
int16_t writelock, readlock;
} CS_MUTEX_LOCK;
#include "oscam-llist.h"
typedef struct s_caidvaluetab_data
{
uint16_t caid;
uint16_t value;
} CAIDVALUETAB_DATA;
typedef struct s_caidvaluetab
{
int32_t cvnum;
CAIDVALUETAB_DATA *cvdata;
} CAIDVALUETAB;
typedef struct s_classtab
{
uint8_t an;
uint8_t bn;
uint8_t *aclass;
uint8_t *bclass;
} CLASSTAB;
typedef struct s_caidtab_data
{
uint16_t caid;
uint16_t mask;
uint16_t cmap;
} CAIDTAB_DATA;
typedef struct s_caidtab
{
int32_t ctnum;
CAIDTAB_DATA *ctdata;
} CAIDTAB;
typedef struct s_tuntab_data
{
uint16_t bt_caidfrom;
uint16_t bt_caidto;
uint16_t bt_srvid;
} TUNTAB_DATA;
typedef struct s_tuntab
{
int32_t ttnum;
TUNTAB_DATA *ttdata;
} TUNTAB;
typedef struct s_sidtab
{
char label[64];
#ifdef CS_CACHEEX_AIO
uint8_t disablecrccws_only_for_exception;
uint8_t no_wait_time;
uint8_t lg_only_exception;
#endif
uint16_t num_caid;
uint16_t num_provid;
uint16_t num_srvid;
uint16_t *caid;
uint32_t *provid;
uint16_t *srvid;
struct s_sidtab *next;
} SIDTAB;
typedef struct s_filter
{
uint16_t caid;
uint8_t nprids;
uint32_t prids[CS_MAXPROV];
} FILTER;
typedef struct s_ftab
{
int32_t nfilts;
FILTER *filts;
} FTAB;
typedef struct s_ncd_ftab
{
int32_t nfilts;
FILTER filts[16];
} NCD_FTAB;
struct ncd_port
{
bool ncd_key_is_set;
uint8_t ncd_key[14];
NCD_FTAB ncd_ftab;
};
typedef struct s_port
{
int32_t fd;
int32_t s_port;
struct ncd_port *ncd; // newcamd specific settings
} PORT;
typedef struct s_ptab
{
int32_t nports;
PORT ports[CS_MAXPORTS];
} PTAB;
typedef struct aes_entry
{
uint16_t keyid;
uint16_t caid;
uint32_t ident;
uint8_t plainkey[16];
AES_KEY key;
struct aes_entry *next;
} AES_ENTRY;
struct aes_keys
{
AES_KEY aeskey_encrypt; // encryption key needed by monitor and used by camd33, camd35
AES_KEY aeskey_decrypt; // decryption key needed by monitor and used by camd33, camd35
};
struct s_ecm
{
uint8_t ecmd5[CS_ECMSTORESIZE];
uint8_t cw[16];
uint16_t caid;
uint64_t grp;
struct s_reader *reader;
int32_t rc;
time_t time;
};
struct s_emmstat
{
uint8_t emmd5[CS_EMMSTORESIZE];
uint8_t type;
int32_t count;
struct timeb firstwritten;
struct timeb lastwritten;
};
struct s_emmcache
{
uint8_t emmd5[CS_EMMSTORESIZE];
uint8_t type;
uint16_t len;
uint8_t emm[MAX_EMM_SIZE];
struct timeb firstseen;
struct timeb lastseen;
};
struct s_csystem_emm_filter
{
uint8_t type;
uint8_t enabled;
uint8_t filter[16];
uint8_t mask[16];
};
typedef struct v_ban // Failban listmember
{
int32_t v_count;
IN_ADDR_T v_ip;
int32_t v_port;
struct timeb v_time;
bool acosc_entry;
int32_t acosc_penalty_dur;
char *info;
} V_BAN;
typedef struct s_cacheex_stat_entry // Cacheex stats listmember
{
int32_t cache_count;
time_t cache_last;
uint16_t cache_caid;
uint16_t cache_srvid;
uint32_t cache_prid;
int8_t cache_direction; // 0 = push / 1 = got
#ifdef CS_CACHEEX_AIO
int32_t cache_count_lg;
#endif
} S_CACHEEX_STAT_ENTRY;
typedef struct s_entitlement // contains entitlement Info
{
uint64_t id; // the element ID
uint32_t type; // enumerator for tier,chid whatever
// 0="", 1="Package", 2="PPV-Event", 3="chid", 4="tier", 5 = "class", 6 = "PBM". 7 = "seca-admin"
uint16_t caid; // the caid of element
uint32_t provid; // the provid of element
uint32_t class; // the class needed for some systems
time_t start; // startdate
time_t end; // enddate
#ifdef WITH_EMU
bool isKey;
bool isData;
char name[8];
uint8_t *key;
uint32_t keyLength;
#endif
} S_ENTITLEMENT;
struct s_client;
struct ecm_request_t;
struct emm_packet_t;
struct s_ecm_answer;
struct demux_s;
#define DEFAULT_MODULE_BUFSIZE 1024
struct s_module
{
const char *desc;
int8_t type;
int8_t large_ecm_support;
int16_t listenertype;
//int32_t s_port;
IN_ADDR_T s_ip;
uint16_t bufsize;
void *(*s_handler)(struct s_client *, uint8_t *, int32_t);
void (*s_init)(struct s_client *);
int32_t (*recv)(struct s_client *, uint8_t *, int32_t);
void (*send_dcw)(struct s_client *, struct ecm_request_t *);
void (*cleanup)(struct s_client *);
int32_t (*c_recv_chk)(struct s_client *, uint8_t *, int32_t *, uint8_t *, int32_t);
int32_t (*c_init)(struct s_client *);
int32_t (*c_send_ecm)(struct s_client *, struct ecm_request_t *);
int32_t (*c_send_emm)(struct emm_packet_t *);
int32_t (*c_available)(struct s_reader *, int32_t, struct ecm_request_t *); // Schlocke: available check for load-balancing,
// params:
// rdr (reader to check)
// int32_t checktype (0=return connected, 1=return loadbalance-avail) return int
void (*c_idle)(void); // Schlocke: called when reader is idle
void (*s_idle)(struct s_client *);
void (*s_peer_idle)(struct s_client *);
void (*c_card_info)(void); // Schlocke: request card infos
int32_t (*c_capmt)(struct s_client *, struct demux_s *);
#ifdef CS_CACHEEX
int32_t (*c_cache_push)(struct s_client *, struct ecm_request_t *); // Cache push
int32_t (*c_cache_push_chk)(struct s_client *, struct ecm_request_t *); // Cache push Node Check, 0=no push
#endif
int32_t c_port;
PTAB ptab;
int32_t num;
};
struct s_ATR;
struct s_cardreader_settings
{
uint32_t ETU;
uint32_t EGT;
uint8_t P;
uint32_t I;
uint32_t F;
uint32_t Fi;
uint8_t Di;
uint8_t Ni;
uint32_t WWT;
uint32_t BGT;
uint8_t D;
};
struct s_cardreader
{
const char *desc;
int32_t (*reader_init)(struct s_reader *);
int32_t (*get_status)(struct s_reader *, int *);
int32_t (*activate)(struct s_reader *, struct s_ATR *);
int32_t (*transmit)(struct s_reader *, uint8_t *sent, uint32_t size, uint32_t expectedlen, uint32_t delay, uint32_t timeout);
int32_t (*receive)(struct s_reader *, uint8_t *data, uint32_t size, uint32_t delay, uint32_t timeout);
int32_t (*lock_init)(struct s_reader *);
void (*lock)(struct s_reader *);
void (*unlock)(struct s_reader *);
int32_t (*close)(struct s_reader *);
int32_t (*set_parity)(struct s_reader *, uint8_t parity);
int32_t (*write_settings)(struct s_reader *, struct s_cardreader_settings *s);
int32_t (*set_protocol)(struct s_reader *, uint8_t *params, uint32_t *length, uint32_t len_request);
int32_t (*set_baudrate)(struct s_reader *, uint32_t baud); // set only for readers which need baudrate setting and timings need to be guarded by OSCam
int32_t (*card_write)(struct s_reader *pcsc_reader, const uint8_t *buf, uint8_t *cta_res, uint16_t *cta_lr, int32_t l);
void (*display_msg)(struct s_reader *, char *msg);
int32_t (*do_reset)(struct s_reader *, struct s_ATR *, int32_t (*rdr_activate_card)(struct s_reader *, struct s_ATR *, uint16_t deprecated), int32_t (*rdr_get_cardsystem)(struct s_reader *, struct s_ATR *));
bool (*set_DTS_RTS)(struct s_reader *, int32_t *dtr, int32_t *rts);
int32_t typ; // fixme: workaround, remove when all old code is converted
int8_t max_clock_speed; // 1 for reader->typ > R_MOUSE
int8_t need_inverse; // 0 = reader does inversing; 1 = inversing done by oscam
//io_serial config
int8_t flush;
int8_t read_written; // 1 = written bytes has to read from device
bool skip_extra_atr_parsing;
bool skip_t1_command_retries;
bool skip_setting_ifsc;
};
struct s_cardsystem
{
const char *desc;
const uint16_t *caids;