Modify messages using rewrite rules describes how to use macros and templates to format log messages or change the names of logfiles and database tables.
Macros of AxoSyslog lists the different types of macros available in AxoSyslog.
1 - Formatting messages, filenames, directories, and tablenames
The AxoSyslog application can dynamically create filenames, directories, or names of database tables using macros that help you organize your log messages. Macros refer to a property or a part of the log message, for example, the ${HOST} macro refers to the name or IP address of the client that sent the log message, while ${DAY} is the day of the month when the message was received. Using these macros in the path of the destination log files allows you for example, to collect the logs of every host into separate files for every day.
A set of macros can be defined as a template object and used in multiple destinations.
Another use of macros and templates is to customize the format of the syslog message, for example, to add elements of the message header to the message text.
Note
If a message uses the IETF-syslog format (RFC5424), only the text of the message can be customized (that is, the $MESSAGE part of the log), the structure of the header is fixed.
The AxoSyslog application allows you to define message templates, and reference them from every object that can use a template. Templates can include strings, macros (for example, date, the hostname, and so on), and template functions. For example, you can use templates to create standard message formats or filenames. For a list of macros available in AxoSyslog, see Macros of AxoSyslog. Fields from the structured data (SD) part of messages using the new IETF-syslog standard can also be used as macros.
Template objects have a single option called template-escape(), which is disabled by default (template-escape(no)). Enabling escaping causes AxoSyslog to escape the ', ", and backslash characters from the messages. This behavior is useful when the messages are passed to an application that cannot handle escaped characters properly.
Note: Starting with AxoSyslog version 4.5, template-escape(yes) escapes the top-level template function in case of nested template functions.
If you do not want to enable the template-escape() option (which is rarely needed), you can define the template without the enclosing braces.
Terminal window
template <template-name> "<template-expression>";
You can also refer to an existing template from within a template. The result of the referred template will be pasted into the second template.
Terminal window
template first-template "sample-text"; template second-template "The result of the first-template is: $(template first-template)";
If you want to use a template only once, you can define the template inline, for example:
Macros can be included by prefixing the macro name with a $ sign, just like in Bourne compatible shells. Although using braces around macro names is not mandatory, and the "$MESSAGE" and "${MESSAGE}" formats are equivalent, using the "${MESSAGE}" format is recommended for clarity.
Macro names are case-sensitive, that is, "$message" and "$MESSAGE" are not the same.
To use a literal $ character in a template, you have to escape it. In AxoSyslog versions 3.4 and earlier, use a backslash \$. In version 3.5 and later, use $$.
Note
To use a literal @ character in a template, use @@.
Default values for macros can also be specified by appending the :- characters and the default value of the macro. If a message does not contain the field referred to by the macro, or it is empty, the default value will be used when expanding the macro. For example, if a message does not contain a hostname, the following macro can specify a default hostname.
Terminal window
${HOST:-default_hostname}
By default, AxoSyslog sends messages using the following template: ${ISODATE} ${HOST} ${MSGHDR}${MESSAGE}\\n. (The ${MSGHDR}${MESSAGE} part is written together because the ${MSGHDR} macro includes a trailing whitespace.)
Example: Using templates and macros
The following template (t_demo_filetemplate) adds the date of the message and the name of the host sending the message to the beginning of the message text. The template is then used in a file destination: messages sent to this destination (d_file) will use the message format defined in the template.
If you do not want to enable the template-escape() option (which is rarely needed), you can define the template without the enclosing braces. The following two templates are equivalent.
Note
Macros can be used to format messages, and also in the name of destination files or database tables. However, they cannot be used in sources as wildcards, for example, to read messages from files or directories that include a date in their name.
3 - Date-related macros
The macros related to the date of the message (for example: ${ISODATE}, ${HOUR}, and so on) have three further variants each:
S_ prefix, for example, ${S_DATE}: The ${S_DATE} macro represents the date found in the log message, that is, when the message was sent by the original application.
Warning
To use the S_ macros, the keep-timestamp() option must be enabled (this is the default behavior of AxoSyslog).
R_ prefix, for example, ${R_DATE}: ${R_DATE} is the date when AxoSyslog has received the message.
C_ prefix, for example, ${C_DATE}: ${C_DATE} is the current date, that is when AxoSyslog processes the message and resolves the macro.
The ${DATE} macro equals the ${S_DATE} macro.
The values of the date-related macros are calculated using the original timezone information of the message. To convert it to a different timezone, use the time-zone() option. You can set the time-zone() option as a global option, or per destination. For sources, it applies only if the original message does not contain timezone information. Alternatively, you can modify the timezone of the message using timezone-specific rewrite rules. For details, see Rewrite the timezone of a message.
Converting the timezone changes the values of the following date-related macros (macros MSEC and USEC are not changed):
AMPM
DATE
DAY
FULLDATE
HOUR
HOUR12
ISODATE
ISOWEEK
MIN
MONTH
MONTH_ABBREV
MONTH_NAME
MONTH_WEEK
SEC
STAMP
TZ
TZOFFSET
UNIXTIME
WEEK
WEEK_DAY
WEEK_DAY_ABBREV
WEEK_DAY_NAME
YEAR
YEAR_DAY
4 - Hard versus soft macros
Hard macros contain data that is directly derived from the log message, for example, the ${MONTH} macro derives its value from the timestamp. Hard macros are read-only. Soft macros (sometimes also called name-value pairs) are either built-in macros automatically generated from the log message (for example, ${HOST}), or custom user-created macros generated by using the pattern database or a CSV-parser. In contrast to hard macros, soft macros are writable and can be modified within AxoSyslog, for example, using rewrite rules.
Hard and soft macros are rather similar and often treated as equivalent. Macros are most commonly used in filters and templates, which does not modify the value of the macro, so both soft and hard macros can be used. However, it is not possible to change the values of hard macros in rewrite rules or via any other means.
The following macros in AxoSyslog are hard macros and cannot be modified: BSDTAG, CONTEXT_ID, DATE, DAY, FACILITY_NUM, FACILITY, FULLDATE, HOUR, IP-PROTO, ISODATE, ISOWEEK, LEVEL_NUM, LEVEL, MIN, MONTH_ABBREV, MONTH_NAME, MONTH, MONTH_WEEK, PRIORITY, PRI, RCPTID, SDATA, SEC, SEQNUM, SOURCEIP, STAMP, TAG, TAGS, TRANSPORT, TZOFFSET, TZ, UNIXTIME, WEEK_DAY_ABBREV, WEEK_DAY_NAME, WEEK_DAY, WEEK, YEAR_DAY, YEAR.
The following macros can be modified:FULLHOST_FROM, FULLHOST, HOST_FROM, HOST, LEGACY_MSGHDR, MESSAGE, MSG,MSGID, MSGONLY, PID, PROGRAM, SOURCE. Custom values created using rewrite rules or parsers can be modified as well, just like stored matches of regular expressions ($0 … $255).
Note that you can modify the timezone of the message, and change the timezone-related macros that way. For details, see Rewrite the timezone of a message.
5 - Macros of AxoSyslog
The following macros are available in AxoSyslog templates.
Warning
These macros are available when AxoSyslog successfully parses the incoming message as a syslog message, or you use some other parsing method and map the parsed values to these macros.
If you are using the flags(no-parse) option, then syslog message parsing is completely disabled, and the entire incoming message is treated as the ${MESSAGE} part of a syslog message. In this case, AxoSyslog generates a new syslog header (timestamp, host, and so on) automatically. Note that even though flags(no-parse) disables message parsing, some flags can still be used, for example, the no-multi-line flag.
AMPM
Description: Typically used together with the ${HOUR12} macro, ${AMPM} returns the period of the day: AM for hours before mid day and PM for hours after mid day. In reference to a 24-hour clock format, AM is between 00:00-12:00 and PM is between 12:00-24:00. 12AM is midnight. Available in AxoSyslog 3.4 and later.
BSDTAG
Description: Facility/priority information in the format used by the FreeBSD syslogd: a priority number followed by a letter that indicates the facility. The priority number can range from 0 to 7. The facility letter can range from A to Y, where A corresponds to facility number zero (LOG_KERN), B corresponds to facility 1 (LOG_USER), and so on.
Custom macros
Description: CSV parsers and pattern databases can also define macros from the content of the messages, for example, a pattern database rule can extract the username from a login message and create a macro that references the username. For details on using custom macros created with CSV parsers and pattern databases, see parser: Parse and segment structured messages and Using parser results in filters and templates, respectively.
DATE, C_DATE, R_DATE, S_DATE
Description: Date of the message using the BSD-syslog style timestamp format (month/day/hour/minute/second, each expressed in two digits). This is the original syslog time stamp without year information, for example: Jun 13 15:58:00.
Description: The name of the facility (for example, kern) that sent the message. For the list of facility codes, see The PRI message part.
FACILITY_NUM
Description: The numerical code of the facility (for example, 0) that sent the message. For the list of facility codes, see The PRI message part.
FILE_NAME
Description: Name of the log file (including its path) from where AxoSyslog received the message (only available if AxoSyslog received the message from a file or a wildcard-file source). If you need only the path or the filename, use the dirname and basename template functions.
FULLDATE, C_FULLDATE, R_FULLDATE, S_FULLDATE
Description: A nonstandard format for the date of the message using the same format as ${DATE}, but including the year as well, for example: 2006 Jun 13 15:58:00.
Description: The name of the source host where the message originates from.
If the message traverses several hosts and the chain-hostnames() option is on, the first host in the chain is used.
If the keep-hostname() option is disabled (keep-hostname(no)), the value of the ${FULLHOST} macro will be the DNS hostname of the host that sent the message to AxoSyslog (that is, the DNS hostname of the last hop). In this case the ${FULLHOST} and ${FULLHOST_FROM} macros will have the same value.
If the keep-hostname() option is enabled (keep-hostname(yes)), the value of the ${FULLHOST} macro will be the hostname retrieved from the log message. That way the name of the original sender host can be used, even if there are log relays between the sender and the server.
Note
The use-dns(), use-fqdn(), normalize-hostnames(), and dns-cache() options will have no effect if the keep-hostname() option is enabled (keep-hostname(yes)) and the message contains a hostname.
Description: The FQDN of the host that sent the message to AxoSyslog as resolved by AxoSyslog using DNS. If the message traverses several hosts, this is the last host in the chain.
The AxoSyslog application uses the following procedure to determine the value of the $FULLHOST_FROM macro:
The AxoSyslog application takes the IP address of the host sending the message.
If the use-dns() option is enabled, AxoSyslog attempts to resolve the IP address to a hostname. If it succeeds, the returned hostname will be the value of the $FULLHOST_FROM macro. This value will be the FQDN of the host if the use-fqdn() option is enabled, but only the hostname if use-fqdn() is disabled.
If the use-dns() option is disabled, or the address resolution fails, the ${FULLHOST_FROM} macro will return the IP address of the sender host.
Description: The hour of day the message was sent in 12-hour clock format. See also the ${AMPM} macro. 12AM is midnight. Available in AxoSyslog 3.4 and later.
Description: The name of the source host where the message originates from.
If the message traverses several hosts and the chain-hostnames() option is on, the first host in the chain is used.
If the keep-hostname() option is disabled (keep-hostname(no)), the value of the $HOST macro will be the DNS hostname of the host that sent the message to AxoSyslog (that is, the DNS hostname of the last hop). In this case the $HOST and $HOST_FROM macros will have the same value.
If the keep-hostname() option is enabled (keep-hostname(yes)), the value of the $HOST macro will be the hostname retrieved from the log message. That way the name of the original sender host can be used, even if there are log relays between the sender and the server.
Note
The use-dns(), use-fqdn(), normalize-hostnames(), and dns-cache() options will have no effect if the keep-hostname() option is enabled (keep-hostname(yes)) and the message contains a hostname.
Description: The FQDN of the host that sent the message to AxoSyslog as resolved by AxoSyslog using DNS. If the message traverses several hosts, this is the last host in the chain.
The AxoSyslog application uses the following procedure to determine the value of the $HOST_FROM macro:
The AxoSyslog application takes the IP address of the host sending the message.
If the use-dns() option is enabled, AxoSyslog attempts to resolve the IP address to a hostname. If it succeeds, the returned hostname will be the value of the $HOST_FROM macro. This value will be the FQDN of the host if the use-fqdn() option is enabled, but only the hostname if use-fqdn() is disabled.
If the use-dns() option is disabled, or the address resolution fails, the ${HOST_FROM} macro will return the IP address of the sender host.
The IP protocol version used to retrieve or receive the message. Contains either “4” to indicate IPv4 and “6” to indicate IPv6.
ISODATE, C_ISODATE, R_ISODATE, S_ISODATE
Description: Date of the message in the ISO 8601 compatible standard timestamp format (yyyy-mm-ddThh:mm:ss+-ZONE), for example: 2006-06-13T15:58:00.123+01:00. If possible, it is recommended to use ${ISODATE} for timestamping. Note that AxoSyslog can produce fractions of a second (for example, milliseconds) in the timestamp by using the frac-digits() global or per-destination option.
Note
As AxoSyslog is precise up to the microsecond, when the frac-digits() option is set to a value higher than 6, AxoSyslog will truncate the fraction seconds in the timestamps after 6 digits.
ISOWEEK, C_ISOWEEK, R_ISOWEEK, S_ISOWEEK
Description: The number of week according to the ISO 8601 standard. Note that the ${WEEK} macro that has been available in returns a non-standard week number that can differ from the value returned by the ${ISOWEEK} macro.
Description: The priority (also called severity) of the message, represented as a numeric value, for example, 3. For the textual representation of this value, use the ${LEVEL} macro. See PRIORITY or LEVEL for details.
LOGHOST
Description: The hostname of the computer running AxoSyslog.
In version 3.24 and later: the ${LOGHOST} macro returns the fully-qualified domain name (FQDN) only if the use-fqdn() option is set to yes, and the hostname otherwise.
In earlier versions: the ${LOGHOST} macro returns the fully-qualified domain name (FQDN).
MESSAGE
Description: Text contents of the log message without the program name and pid. The program name and the pid together are available in the ${MSGHDR} macro, and separately in the ${PROGRAM} and ${PID} macros.
If you are using the flags(no-parse) option, then syslog message parsing is completely disabled, and the entire incoming message is treated as the ${MESSAGE} part of a syslog message. In this case, AxoSyslog generates a new syslog header (timestamp, host, and so on) automatically. Note that even though flags(no-parse) disables message parsing, some flags can still be used, for example, the no-multi-line flag.
The ${MSG} macro is an alias of the ${MESSAGE} macro: using ${MSG} in AxoSyslog is equivalent to ${MESSAGE}.
Note that before AxoSyslog version 3.0, the ${MESSAGE} macro included the program name and the pid. In AxoSyslog 3.0, the ${MESSAGE} macro became equivalent with the ${MSGONLY} macro.
Description: The number of the week in the given month (0-5). The week with numerical value 1 is the first week containing a Monday. The days of month before the first Monday are considered week 0. For example, if a 31-day month begins on a Sunday, then the 1st of the month is week 0, and the end of the month (the 30th and 31st) is week 5.
Description: The mqtt() source automatically sets the ${MQTT_TOPIC} name-value pair for the messages it receives. This is useful when the name of the topic contains MQTT wildcards ($, +, #).
Available in AxoSyslog version 4.7 and later.
MSG
The ${MSG} macro is an alias of the ${MESSAGE} macro, using ${MSG} in AxoSyslog is equivalent to ${MESSAGE}. For details on this macro, see MESSAGE.
MSGHDR
Description: The name and the PID of the program that sent the log message in PROGRAM[PID]: format. Includes a trailing whitespace. Note that the macro returns an empty value if both the PROGRAM and PID fields of the message are empty.
MSGFORMAT
Available in AxoSyslog version 4.8.1 and later.
Description: Stores the original format of the incoming message. Possible values:
raw: AxoSyslog didn’t parse the message, for example, because the no-parse flag was set.
syslog:rfc3164: Syslog message formatted as RFC3164.
syslog:rfc5424: Syslog message formatted as RFC5424.
MSGID
Description: A string specifying the type of the message in IETF-syslog (RFC5424-formatted) messages. For example, a firewall might use the ${MSGID} “TCPIN” for incoming TCP traffic and the ${MSGID} “TCPOUT” for outgoing TCP traffic. By default, AxoSyslog does not specify this value, but uses a dash (-) character instead. If an incoming message includes the ${MSGID} value, it is retained and relayed without modification.
MSGONLY
Description: Message contents without the program name or pid. Starting with AxoSyslog 3.0, the following macros are equivalent: ${MSGONLY}, ${MSG}, ${MESSAGE}. For consistency, use the ${MESSAGE} macro. For details, see MESSAGE.
PEERIP
Available in AxoSyslog 4.11 and later. This macro is available when using the network() or the syslog() source, or when using the Webhook with the proxy_header() option set.
Description: IP address of the host that sent the message to AxoSyslog. In most cases, the ${PEERIP} and ${PEERPORT} values are identical to ${SOURCEIP} and ${SOURCEPORT}. However, when dealing with proxied protocols, ${PEERIP} and ${PEERPORT} contain the proxy’s address and port,
while ${SOURCEIP} and ${SOURCEPORT} contain the original source of the message.
PEERPORT
Available in AxoSyslog 4.11 and later. This macro is available when using the network() or the syslog() source.
Description: The port of the host that sent the message to AxoSyslog. For details, see ${PEERIP}.
PID
Description: The PID of the program sending the message.
PRI
Description: The combined facility and severity value (facility * 8 + severity), encoded as a 2 or 3 digit decimal number as it is present in the <N> header of syslog messages. This encodes both facility and severity, unlike ${LEVEL_NUM}, which is the severity alone. For the facility and severity code tables and the priority formula, see The PRI message part.
PRIORITY or LEVEL
Description: The priority (also called severity or level) of the message as a text label, for example, err, warning, notice, or info. The ${PRIORITY}, ${LEVEL}, and ${SEVERITY} macros are aliases and return the same value. For the numeric representation, use the ${LEVEL_NUM} macro. For what each severity means, see syslog Message Severities.
PROGRAM
Description: The name of the program sending the message. Note that the content of the ${PROGRAM} variable may not be completely trusted as it is provided by the client program that constructed the message.
PROTO
Description: Returns the Assigned Internet Protocol Number of the protocol used on the source from which the message originates: 6 for TCP-based sources, and 17 for UDP-based sources. See also the ${PROTO_NAME macro.
Description: Returns the name of the protocol (tcp or udp) AxoSyslog received the message on, if it was a TCP or UDP based protocol. This corresponds to the values 6 and 17 of the ${PROTO} macro.
RAWMSG
Description: The original message as received from the client. Note that this macro is available only in 3.16 and later, and only if AxoSyslog received the message using the default-network-drivers() source, or the source receiving the message has the store-raw-message flag set.
RAWMSG_SIZE
Available in AxoSyslog version 4.2 and newer.
Description: The original size of the incoming message in bytes. Might not be available for every source driver.
RCPTID
Description: When the use-rcptid global option is set to yes, AxoSyslog automatically assigns a unique reception ID to every received message. You can access this ID and use it in templates via the ${RCPTID} macro. The reception ID is a monotonously increasing 64-bit integer number, that can never be zero (if the counter overflows, it restarts with 1).
RUNID
Description: An ID that changes its value every time AxoSyslog is restarted, but not when reloaded.
SDATA, .SDATA.SDID.SDNAME
Description: The AxoSyslog application automatically parses the STRUCTURED-DATA part of IETF-syslog messages, which can be referenced in macros. The ${SDATA} macro references the entire STRUCTURED-DATA part of the message, while structured data elements can be referenced using the ${.SDATA.SDID.SDNAME} macro.
Note
When using STRUCTURED-DATA macros, consider the following:
When referencing an element of the structured data, the macro must begin with the dot (.) character. For example, ${.SDATA.timeQuality.isSynced}.
The SDID and SDNAME parts of the macro names are case sensitive: ${.SDATA.timeQuality.isSynced} is not the same as ${.SDATA.TIMEQUALITY.ISSYNCED}.
Example: Using SDATA macros
For example, if a log message contains the following structured data: [exampleSDID@0 iut="3" eventSource="Application" eventID="1011"][examplePriority@0 class="high"] you can use macros like: ${.SDATA.exampleSDID@0.eventSource} — this would return the Application string in this case.
Description: The ${SEQNUM} macro contains a sequence number for the log message. The value of the macro depends on the scenario, and can be one of the following:
If AxoSyslog receives a message via the IETF-syslog protocol that includes a sequence ID, this ID is automatically available in the ${SEQNUM} macro.
If the message is a Cisco IOS log message using the extended timestamp format, then AxoSyslog stores the sequence number from the message in this macro. If you forward this message the IETF-syslog protocol, AxoSyslog includes the sequence number received from the Cisco device in the ${.SDATA.meta.sequenceId} part of the message.
Note
To enable sequence numbering of log messages on Cisco devices, use the following command on the device (available in IOS 10.0 and later): service sequence-numbers. For details, see the manual of your Cisco device.
For locally generated messages (that is, for messages that are received from a local source, and not from the network), AxoSyslog calculates a sequence number when sending the message to a destination (it is not calculated for relayed messages).
The sequence number is not global, but per-destination. Essentially, it counts the number of messages sent to the destination.
This sequence number increases by one for every message sent to the destination. It not lost when AxoSyslog is reloaded, but it is reset when AxoSyslog is restarted.
This sequence number is added to every message that uses the IETF-syslog protocol (${.SDATA.meta.sequenceId}), and can be added to BSD-syslog messages using the ${SEQNUM} macro.
Note
If you need a sequence number for every log message that AxoSyslog receives, use the RCPTID macro.
SOURCE
Description: The identifier of the source statement in the AxoSyslog configuration file that received the message. For example, if AxoSyslog received the log message from the source s_local { internal(); }; source statement, the value of the ${SOURCE} macro is s_local. This macro is mainly useful for debugging and troubleshooting purposes.
SOURCEIP
Description: IP address of the host that sent the message to AxoSyslog. (That is, the IP address of the host in the ${FULLHOST_FROM} macro.) Please note that when a message traverses several relays, this macro contains the IP of the last relay.
SOURCEPORT
Available in AxoSyslog 4.10 and later.
Description: The source port of the host that sent the message to AxoSyslog.
STAMP, R_STAMP, S_STAMP
Description: A timestamp formatted according to the ts-format() global or per-destination option.
Description: The time elapsed since the AxoSyslog instance was started (that is, the uptime of the AxoSyslog process). The value of this macro is an integer containing the time in 1/100th of the second.
Available in AxoSyslog version 3.4 and later.
TAG
Description: The priority and facility encoded as a 2 digit hexadecimal number.
TAGS
Description: A comma-separated list of the tags assigned to the message.
Note
Note that the tags are not part of the log message and are not automatically transferred from a client to the server. For example, if a client uses a pattern database to tag the messages, the tags are not transferred to the server. A way of transferring the tags is to explicitly add them to the log messages using a template and the ${TAGS} macro, or to add them to the structured metadata part of messages when using the IETF-syslog message format.
When sent as structured metadata, it is possible to reference to the list of tags on the central server, and for example, to add them to a database column.
TRANSPORT
Available in AxoSyslog version 4.5 and later.
AxoSyslog automatically populates this name-value pair with the “transport” mechanism used to retrieve or receive the message. The exact value depends on the source driver that received the message. Currently the following values are implemented:
BSD syslog drivers tcp(), udp() & network()
rfc3164+tls
rfc3164+tcp
rfc3164+udp
rfc3164+proxied-tls
rfc3164+<custom logproto like altp>
UNIX domain drivers unix-dgram(), unix-stream()
unix-stream
unix-dgram
RFC5424-style syslog syslog():
rfc5426: syslog over udp
rfc5425: syslog over tls
rfc6587: syslog over tcp
rfc5424+<custom logproto like altp>: syslog over a logproto plugin
Description: The time-zone as hour offset from GMT, for example: -07:00. In version 1.6.x this used to be -0700 but as ${ISODATE} requires the colon it was added to ${TZOFFSET} as well.
Description: When using a transport that uses TLS, these macros contain information about the peer’s certificate. That way, you can use information from the client certificate in filenames, database values, or as other metadata. If you clients have their own certificates, then these values are unique per client, but unchangeable by the client. The following macros are available in AxoSyslog version 3.9 and later.
.tls.x509_cn: The Common Name of the certificate.
.tls.x509_o: The value of the Organization field.
.tls.x509_ou: The value of the Organization Unit field.
Description: The week number of the year, prefixed with a zero for the first nine weeks of the year. (The first Monday in the year marks the first week.)
5.1 - Example use case: using the $DESTIP, the $DESTPORT, and the $PROTO macros
This section describes scenarios when Axoflow recommends using the $DESTIP, the $DESTPORT, and the $PROTO macros.
Using the $DESTIP, the $DESTPORT, and the $PROTO macros is relevant when multiple sources are configured to receive messages on the AxoSyslog side. In this case, the hostname and IP address on the sender’s side and the AxoSyslog side is the same, and at a later point in the pipeline, AxoSyslog can not by default specify which source received the message. The $DESTIP, the $DESTPORT, and the $PROTO macros solve this issue by specifying the local IP address and local port of the original message source, and the protocol used on the original message source on the AxoSyslog side.
When to use the $DESTIP, the $DESTPORT, and the $PROTO or $PROTO_NAME macros
Axoflow recommends using the $DESTIP, the $DESTPORT, and the $PROTO macros in either of the following scenarios:
Your appliance sends out log messages through both UDP and TCP.
The format of the UDP log messages and the TCP log messages is different, and instead of using complex filters, you want to capture either of them, preferably with the simplest possible filter.
The IP addresses on the sender’s side and the AxoSyslog side are the same, therefore the netmask() option doesn’t work in your configuration.
The hostnames on the sender’s side and the AxoSyslog side are the same, therefore the host() option doesn’t work in your configuration.
Macros: $DESTIP, $DESTPORT, and $PROTO
To solve either of the challenges listed previously, AxoSyslog supports the following macros that you can include in your configuration:
With these configuration settings, the macros will specify the local IP, the local port, and the protocol information of the source from which the message originates as follows:
Terminal window
destip=10.12.15.215 destport=5555proto=17
Starting with version 4.16, you can also use the ${PROTO_NAME} macro, which returns tcp or udp, depending on the protocol used to receive the message.
6 - Using template functions
A template function is a transformation: it modifies the way macros or name-value pairs are expanded. Template functions can be used in template definitions, or when macros are used in the configuration of AxoSyslog. Template functions use the following syntax:
For example, the $(echo) template function simply returns the value of the macro it receives as a parameter, thus $(echo ${HOST}) is equivalent to ${HOST}.
The parameters of template functions are separated by a whitespace character. A template function can have maximum 64 parameters. If you want to use a longer string or multiple macros as a single parameter, enclose the parameter in double-quotes or apostrophes. For example:
Terminal window
$(echo"${HOST}${PROGRAM}${PID}")
Template functions can be nested into each other, so the parameter of a template function can be another template function, like:
Terminal window
$(echo$(echo${HOST}))
For details on the available template functions, see the descriptions of the individual template functions in Template functions of AxoSyslog.
You can define your own template function as a regular configuration object (for example, to reuse the same function in different places in your configuration).
The following template functions are available in AxoSyslog.
base64-encode
Syntax:
$(base64-encode argument)
Description: You can use the base64-encode template function to base64-encode strings and macros. The template function can receive multiple parameters (maximum 64). In this case, AxoSyslog joins the parameters into a single string and encodes this string. For example, $(base64-encode string1 string2) is equivalent to $(base64-encode string1string2).
Available in AxoSyslog version 3.18 and later.
basename
Syntax:
$(basename argument)
Description: Returns the filename from an argument (for example, a macro: $(basename ${FILE_NAME})) that contains a filename with a path. For example, $(basename "/var/log/messages.log") returns messages.log. To extract the path, use the dirname template function.
Available in AxoSyslog version 3.10 and later.
ceil
Syntax:
$(ceil argument)
Description: Rounds a floating-point number upwards to the nearest integer. For example, $(ceil 1.5) is 2, $(ceil -1.5) is -1. See also the floor and round template functions.
Description: The context-lookup template function can search a message context when correlating messages (for example, when you use a pattern database or the grouping-by parser). The context-lookup template function requires a condition (a filter or a string), and returns a specific macro or template of the matching messages (for example, the ${MESSAGE}) as a list. It works similarly to the $(grep) template function, but it escapes its output properly, so that the returned value is a list that can be processed with other template functions that work on lists, for example, $(list-slice).
Example: Using the context-lookup template function
The following example selects the message of the context that has a username name-value pair with the root value, and returns the value of the tags name-value pair.
Terminal window
$(context-lookup ("${username}"=="root")${tags})
To limit the number of matches that the template function returns, use the --max-count option, for example, $(context-lookup --max-count 5 ("${username}" == "root") ${tags}). If you do not want to limit the number of matches, use --max-count 0.
You can to specify multiple name-value pairs as parameters, separated with commas. If multiple messages match the condition of context-lookup, these will be returned also separated by commas. This can be used for example, to collect the email recipients from postfix messages.
Available in AxoSyslog version 3.10 and later.
context-values
Syntax:
$(context-values $name-value1 $name-value2 ...)
Description: The context-values template function returns a list of every occurrence of the specified name-value pairs from the entire context. For example, if the context contains multiple messages, the $(context-values ${HOST}) template function will return a comma-separated list of the ${HOST} values that appear in the context.
Available in AxoSyslog version 3.10 and later.
dirname
Syntax:
$(dirname argument)
Description: Returns the path (without the filename) from an argument (for example, a macro: $(basename ${FILE_NAME}) that contains a filename with a path. For example, $(dirname "/var/log/messages.log") returns /var/log path. To extract the filename, use the basename template function.
Available in AxoSyslog version 3.10 and later.
echo
Syntax:
$(echo argument)
Description: Returns the value of its argument. Using $(echo ${HOST}) is equivalent to ${HOST}.
env
Syntax:
$(env <environment-variable>)
Description: Returns the value of the specified environment variable. Available in AxoSyslog 3.5 and later.
explode
Syntax:
$(explode <separator> <string1> <string2> ...)
Description: Turns a string separated by a specific character into a list. You can also use the implode template function, which turns a list into a string combining the pieces together with a separator. Available in AxoSyslog 3.21 and later.
Example: Using the explode template function
The following configuration example turns strings into a list. If there are several strings, AxoSyslog looks for a separator within each individual string. For example, string 2 is separated as string, 2 in the example below:
Configuration
Result
$(explode ';' string1;string 2;string3;string4)
"string1,string,2,string3,string4"
Enclose the strings in double-quotes or apostrophes and string 2 is separated as shown below:
Description: Runs the filter expression on each element of a given list, and returns only those list elements that meet the requirements of the filter expression. The current value is referred by $_, similarly to the map template function.
Note
You can use macros, logical expressions, and template functions inside the expression.
Available in AxoSyslog version 3.30 and later.
Example: using the filter template function in your configuration
When used in configuration as seen in the example, the filter template function filters even numbers from an input list of 0, 1, 2 and 3:
<filter-expression>: Mandatory parameter. The <filter-expression> parameter can be:
a comparison
a filter
a logical expression built from filters (using and, or, and not)
Note
When using the <filter-expression> parameter, you can refer other template functions, or use macros.
To refer to the variable bound to the current element of the list, use $_ macro.
The following examples illustrate several ways that you can use a single filter, or a logical expression built from several filters.
Terminal window
('1'=='1')('$_' le '1')('$(% $_ 2)' eq '0')('$_' le '1') and ('$(% $_ 2)' eq '0')
list: Mandatory parameter. A AxoSyslog list.
format-cef-extension
AxoSyslog version 3.8 includes a new template function (format-cef-extension) to format name-value pairs as ArcSight Common Event Format extensions. Note that the template function only formats the selected name-value pairs, it does not provide any mapping. There is no special support for creating the prefix part of a Common Event Format (CEF) message. Note that the order of the elements is random. For details on the CEF extension escaping rules format, see the ArcSight Common Event Format.
You can use the value-pairs that AxoSyslog stores about the log message as CEF fields. Using value-pairs, you can:
select which value-pairs to use as CEF fields,
add custom value-pairs as CEF fields,
rename value-pairs, and so on.
For details, see Structuring macros, metadata, and other value-pairs. Note that the syntax of format-* template functions is different from the syntax of value-pairs(): these template functions use a syntax similar to command lines.
Using the format-cef-extension template function has the following prerequisites:
Set the on-error global option to drop-property, otherwise if the name of a name-value pair includes an invalid character, AxoSyslog drops the entire message. (Key name in CEF extensions can contain only the A-Z, a-z and 0-9 characters.)
Terminal window
options { on-error("drop-property");};
The log messages must be encoded in UTF-8. Use the encoding() option or the validate-utf8 flag in the message source.
Example: Using the format-cef-extension template function
The following example selects every available information about the log message, except for the date-related macros (R_* and S_*), selects the .SDATA.meta.sequenceId macro, and defines a new value-pair called MSGHDR that contains the program name and PID of the application that sent the log message (since you will use the template-function in a template, you must escape the double-quotes).
Description: Formats the message into Splunk Common Information Model (CIM) format. Applications that can receive messages in CIM format include Kibana, logstash, and Splunk. Applications that can be configured to log into CIM format include nflog and the Suricata IDS engine.
Note
To use the format-cim() template function, AxoSyslog must be compiled with JSON support. To see if your AxoSyslog binary was compiled with JSON support, execute the syslog-ng --version command.
Description: The $(format-date) template function takes a timestamp in the DATETIME representation and formats it according to an strftime() format string. The DATETIME representation is a UNIX timestamp formatted as a decimal number, with an optional fractional part, where the seconds and the fraction of seconds are separated by a dot.
If the timestamp argument is missing, the timestamp of the message is used.
Options:
--time-zone <TZstring>: Override timezone of the original timestamp
For example: $(format-date --time-zone PST8PDT %Y-%m-%dT%H:%M:%S 1667500613) corresponds to the following format and sets the timezone to Pacific Standard Time, Daylight Saving: “2022-11-03T11:36:53”
The following is a sample log message in EWMM format.
Terminal window
<34>1 2026-10-11T22:14:15+00:00 my-host @syslog-ng - - - {"PROGRAM":"su","MESSAGE":"'su root' failed for lonvick on /dev/pts/8","HOST":"mymachine","HOST_FROM":"my-host","._TAGS":[".source.s_network"]}
Note
To use this template function, the scl.conf file must be included in your AxoSyslog configuration:
Terminal window
@include "scl.conf"
format-flat-json
Syntax:$(format-flat-json parameters)
Description: The format-flat-json template function is identical to the format-json template function, but nested JSON objects are flattened in the output. If you have to forward your log messages in JSON format, but the receiving application cannot handle nested JSON objects, use the format-flat-json template function.
Example: Flattened JSON output
The following example shows the difference between nested and flattened JSON objects.
The output of $(format-json a.b.c=1) is a nested JSON object (whitespace added for better readability):
Terminal window
{"a": {"b": {"c": "1"}}}
The output of $(format-flat-json a.b.c=1) is a flattened JSON object (whitespace added for better readability):
Terminal window
{"a.b.c": "1"}
For details on formatting log messages into JSON format, see format-json.
format-gelf
Syntax:$(format-gelf)
Description: Available in AxoSyslog 3.13 and later.
You can use the Graylog Extended Log Format (GELF) template together with the graylog2() destination to send syslog messages to Graylog. GELF is the native data format of Graylog.
Example: Using the format-gelf template function
The following configuration example shows how you can use the format-gelf template:
Description: The format-json template function receives value-pairs as parameters and converts them into JavaScript Object Notation (JSON) format. Including the template function in a message template allows you to store selected information about a log message (that is, its content, macros, or other metadata) in JSON format. Note that the input log message does not have to be in JSON format to use format-json, you can reformat any incoming message as JSON.
You can use the value-pairs that AxoSyslog stores about the log message as JSON fields. Using value-pairs, you can:
select which value-pairs to use as JSON fields,
add custom value-pairs as JSON fields,
rename value-pairs, and so on.
If the value-pair includes type information format-json can propagate it to the next component of the log path. For details, see Structuring macros, metadata, and other value-pairs. Note that the syntax of format-json is different from the syntax of value-pairs(): format-json uses a syntax similar to command lines.
Note
Prior to version 4.0, AxoSyslog handled every data as strings, and allowed you to convert the strings into other types of data that only certain destinations data formats supported.
Starting with AxoSyslog 4.0, each name-value pair is a (name, type, value) triplet, and several components of AxoSyslog have typing support. For details, see Components that support data types.
Example: Using the format-json template function
The following example selects every available information about the log message, except for the date-related macros (R_* and S_*), selects the .SDATA.meta.sequenceId macro, and defines a new value-pair called MSGHDR that contains the program name and PID of the application that sent the log message (since you will use the template-function in a template, you must escape the double-quotes).
In the case of syslog-ng macros starting with a dot (for example, “.SDATA.meta.sequenceID”), format-json replaces the dot with an underscore character (for example, {"_SDATA":{"meta":{"sequenceId":"55555"}}}).
To retain the starting dot, use the --leave-initial-dot flag, for example:
If you have to forward your log messages in JSON format, but the receiving application cannot handle nested JSON objects, use the format-flat-json template function. For details, see format-flat-json.
format-welf
This template function converts value-pairs into the WebTrends Enhanced Log file Format (WELF). The WELF format is a comma-separated list of name=value elements. Note that the order of the elements is random. If the value contains whitespace, it is enclosed in double-quotes, for example, name="value". For details on the WELF format, see https://www3.trustwave.com/support/kb/article.aspx?id=10899.
To select which value-pairs to convert, use the command-line syntax of the value-pairs() option. For details on selecting value-pairs, see value-pairs().
Example: Using the format-welf() template function
The following example selects every available information about the log message, except for the date-related macros (R_* and S_*), selects the .SDATA.meta.sequenceId macro, and defines a new value-pair called MSGHDR that contains the program name and PID of the application that sent the log message (since you will use the template-function in a template, you must escape the double-quotes).
This template function is deprecated. Use geoip2 instead.
Syntax:$(geoip <IPv4-address>)
Description: This template function returns the 2-letter country code of any IPv4 address or host. IPv6 addresses are not supported. Currently only the 2-letter codes are supported, and only from the default database. For example, $(geoip $HOST)
Note
This template function is available only if AxoSyslog has been compiled with the --enable-geoip compiling option.
Description: This template function extracts specific fields from the mmdb database using the --field parameter. If you omit this parameter, it returns the 2-letter country code of any IPv4/IPv6 address or host.
Note
This template function is available only if AxoSyslog has been compiled with geoip2 support. To enable it, use the --enable-geoip compiling option.
Starting with version 3.24, AxoSyslog tries to automatically detect the location of the database. If that is successful, the database() option is not mandatory.
getent
Syntax:$(getent)
Description: Available in AxoSyslog 3.13 and later.
You can use the getent template function to look up entries from the Name Service Switch libraries, such as, passwd, services, or protocols.
The following databases are supported:
passwd
Use this database to query data related to a user. Specify the user by either username or user ID. You can query the following data: username, user ID, group ID, GECOS field, home directory, or user shell.
The queried data is optional. When you do not query any data, the default behavior applies, which is as follows: user ID is returned for username, or username is returned for user ID.
Username $(getent passwd testuser) returns user ID 1000.
User ID $(getent passwd 1000) returns username testuser.
group
Use this database to query group-related data. The group can be specified using either group ID or group name. You can query the following data: group name, group ID, and members.
Terminal window
$(getent group adm name)$(getent group adm gid)$(getent group adm members)
The queried data is optional. The default behavior is as follows: group ID is returned for group name, or group name is returned for user ID.
Group name $(getent group adm) returns group ID 4.
Group ID $(getent group 4) returns group name adm.
protocols
Use this database to translate protocol name to protocol ID, or protocol ID to protocol string.
Terminal window
$(getent protocols tcp)$(getent protocols 6)
services
Use this database to translate service name to service ID, or service ID to service name.
Terminal window
$(getent services http)$(getent services 80)
graphite-output
Syntax:$(graphite-output parameters)
Description: Available in AxoSyslog 3.6 and later. This template function converts value-pairs from the incoming message to the Graphite plain text protocol format.
For details on selecting value-pairs in AxoSyslog and for possibilities to specify which information to convert to Graphite plain text protocol format, see Structuring macros, metadata, and other value-pairs. Note that the syntax of graphite-output is different from the syntax of value-pairs(): graphite-output uses a the command-line syntax used in the format-json template function.
Example: Using the graphite-output template function
The following configuration example shows, how to send value-pairs with names starting with “vmstat.” to Graphite running on localhost, port 2003:
Description: The grep template function can search a message context when correlating messages (for example, when you use a pattern database or the grouping-by parser). The context-lookup template function requires a condition (a filter or a string), and returns a specific macro or template of the matching message (for example, the ${MESSAGE} field of the message).
Example: Using the grep template function
The following example selects the message of the context that has a username name-value pair with the root value, and returns the value of the auth_method name-value pair.
Terminal window
$(grep ("${username}"=="root")${auth_method})
You can to specify multiple name-value pairs as parameters, separated with commas. If multiple messages match the condition of grep, these will be returned also separated by commas. This can be used for example, to collect the email recipients from postfix messages.
hash
Syntax:$(<method> [opts] $arg1 $arg2 $arg3...)
Options:--length N, -l N
Truncate the hash to the first N characters.
Description: Calculates a hash of the string or macro received as argument using the specified hashing method. If you specify multiple arguments, effectively you receive the hash of the first argument salted with the subsequent arguments.
<method> can be one of md5, md4, sha1, sha256, sha512 and “hash”, which is equivalent to md5. Macros are expected as arguments, and they are concatenated without the use of additional characters.
The md4 <method> is deprecated.
This template function can be used for anonymizing sensitive parts of the log message (for example, username) that were parsed out using PatternDB before storing or forwarding the message. This way, the ability of correlating messages along this value is retained.
Also, using this template, quasi-unique IDs can be generated for data, using the --length option. This way, IDs will be shorter than a regular hash, but there is a very small possibility of them not being as unique as a non-truncated hash.
Note
These template functions are available only if AxoSyslog has been compiled with the --enable-ssl compile option and the tfhash module has been loaded.
By default, AxoSyslog loads every available module. For details, see Loading modules.
Example: Using the $(hash) template function
The following example calculates the SHA1 hash of the hostname of the message:
Terminal window
$(sha1 $HOST)
The following example calculates the SHA256 hash of the hostname, using the salted string to salt the result:
Terminal window
$(sha1 $HOST salted)
To use shorter hashes, set the --length:
Terminal window
$(sha1 --length 6$HOST)
To replace the hostname with its hash, use a rewrite rule:
Description: Returns the value of the <true template> parameter if the <condition> is true. If the <condition> is false, the value of <false template> is returned.
Example: Using pattern databases and the if template function
The following example returns violation if the username name-value pair of a message is root, and system otherwise.
Terminal window
$(if("${username}"=="root")"violation""system")
This can be used to set the class of a message in pattern database rules based on the condition.
Since template functions can be embedded into each other, it is possible to use another template function as the template of the first one. For example, the following expression returns root if the username is root, admin if the username is joe, and normal user otherwise.
Description: Turns a list into a string combining the pieces together with a separator. You can also use the explode template function, which turns a string separated by a specific character into a list. Available in AxoSyslog 3.21 and later.
Example: Using the implode template function
The following configuration example shows how you can use the implode template to turn a list into a string:
Description: This template function makes it possible to write multi-line log messages into a file. The first line is written like a regular message, subsequent lines are indented with a tab, in compliance with RFC822.
Example: Using the indent-multi-line template function
The following example writes multi-line messages into a text file.
Description: Converts the specified IPv4 address to its numeric representation. The numerical value of an IPv4 address is calculated by treating the IP address as a 4-byte hexadecimal value. For example, the 192.168.1.1 address equals to: 192=C0, 168=A8, 1=01, 1=01, or C0A80101, which is 3232235777 in decimal representation.
Note
This template function is available only if the convertfuncs module has been loaded.
By default, AxoSyslog loads every available module. For details, see Loading modules.
List manipulation
The list-* template functions allow you to manipulate comma-separated lists. Such lists represent a simple array type in AxoSyslog. Note the following about formatting lists:
Values are separated by commas, for example, "item1","item2","item3". The single-element list is an element without a comma.
You can use shell-like quotation to embed commas, for example, "item1","ite\\,m2","item3".
Empty values are skipped (except if they are quoted)
These template functions return a well-formed list, properly encoding and quoting all elements. If a template function returns a single element, all quotation is decoded and the value contains the literal value.
Starting with AxoSyslog version 3.10, the following list-related template functions are available. Certain functions allow you to reference an element using its number: note that the list index starts with zero, so the index of the first element is 0, the second element is 1, and so on.
Description: Returns a list and appends the values of the specified name-value pairs to the end of the list. You can also append elements to an empty list, for example, $(list-append '' 'element-to-add')
Description: This template function creates (concatenates) a list of the values it receives as parameter. The values can be single values (for example, ${HOST}) or lists.
For example, the value of the $(list-concat ${HOST}, ${PROGRAM}, ${PID}) is a comma-separated list.
You can concatenate existing lists into a single list using:
Terminal window
$(list-concat ${list1}${list2})
list-count
Syntax:$(list-count ${list} )
Description: Returns the number of elements in the list.
list-head
Syntax:$(list-head ${list} )
Description: Returns the first element of the list, unquoted.
list-nth
Syntax:$(list-nth <index-number> ${list} )
Description: Returns the nth element of the list, unquoted. Note that the list index starts with zero, so (list-nth 1 ${list} ) returns the second element, and so on.
list-search
Syntax:$(list-search [OPTIONS] <pattern> ${list})
Description: The list-search template function searches the elements of ${list} starting at the specified start_index, then returns the index of the first match of <pattern> within ${list}`.
Note
Indexing is 0-based. If <pattern> is not found, the function returns an empty string.
Options:
--mode MODE: Matching mode, with the following possible values: literal (default), prefix, substring, glob, pcre
--start-index N: Skips N elements in the ${list}
list-slice
Syntax:$(list-slice <from>:<to> ${list} )
Description: Returns the specified subset of the list. Note that the list index starts with zero, for example, $(list-slice 1:2 ${list} ) returns the second and third element of the list, and so on.
You can omit the from or to index if you want to start the subset from the beginning or end of the list, for example: 3: returns the list starting with the 4th element, while :3 returns the first four elements.
Negative numbers select an element from the end of the list, for example, -3: returns the last three element of the list.
list-tail
Syntax:$(list-tail ${list} )
Description: Returns the list without the first element. For example, if the ${mylist} list contains the one, two, three elements, then $(list-tail ${mylist} ) returns two, three.
length
Syntax:$(length "<macro>")
Description: Returns the length of the macro in characters, for example, the length of the message. For example, the following filter selects messages that are shorter than 16 characters:
Terminal window
f_short { match ('-', value ("$(if($(length "${MESSAGE}") <= 16) "-" "+")"));};
lowercase
Syntax:$(lowercase "<macro>")
Description: Returns the lowercase version of the specified string or macro. For example, the following example uses the lowercase version of the hostname in a directory name:
Description: These template functions allow you to manipulate numbers, that is, to perform addition (+), substraction (-), multiplication (*), division (/), and modulus (%). All of them require two numeric arguments. The result is NaN (Not-a-Number) if the parameters are not numbers, cannot be parsed, or if a division by zero would occur. For example, to add the value of two macros, use the following template function:
Terminal window
$(+ "${<MACRO1>}""${<MACRO2>}");
Starting with AxoSyslog version 3.22 and later, the numerical operators support floating-point values. They behave like the operators in the C programming language:
If both operands are integers, they return an integer.
If any of the operands is a floating-point number, they return a floating-point result.
For example:
Terminal window
$(/ 3 2)# Both operands are integers, so the result is 1# One of the operands is a floating point number, so the result is also floating-point$(/ 3.0 2)# = 1.500000$(/ 3 2.0)# = 1.500000$(/ 3.0 2.0)# = 1.500000
To round floating-point numbers, you can use the ceil, floor, and round template functions.
When you are correlating messages and a name-value pair contains numerical values in the messages, you can calculate the lowest (min), highest (max), total (sum), and mean (average) values. These calculations process every message of the correlation context. For details on message correlation, see Correlating log messages. For example, if the messages of the context have a .myfields.load name-value pair, you can find the highest load value using the following template function.
Terminal window
$(max ${.myfields.load})
or
Syntax:$(or <macro1> <macro2>)
Description: This template function returns the first non-empty argument.
Description: This template function returns the value of its first parameter (a string or macro), prepended with a string. This string is <width> long, and repeats the character or string set in the third parameter. If you use a single character, it is added >times. If you use a string, it is repeated until its length reaches <width>>The default padding character is ’ ’ (space). For example:
Example: Using the padding template function
If the value of the ${MESSAGE} macro is mymessage, then the output of the padding() template function is the following:
Description: This template function enables you to write a custom template function in Python. You can define a Python block in your AxoSyslog configuration file, define one or more Python functions in it, and use the methods as template functions. If you use a Python block, AxoSyslog embeds a Python interpreter to process the messages.
The following points apply to using Python blocks in AxoSyslog in general:
Python parsers and template functions are available in AxoSyslog version 3.10 and later.
Python destinations and sources are available in AxoSyslog version 3.18 and later.
Supported Python versions: 2.7 and 3.4+ (if you are using pre-built binaries, check the dependencies of the package to find out which Python version it was compiled with).
The Python block must be a top-level block in the AxoSyslog configuration file.
If you store the Python code in a separate Python file and only include it in the AxoSyslog configuration file, make sure that the PYTHONPATH environment variable includes the path to the Python file, and export the PYTHON_PATH environment variable. For example, if you start AxoSyslog manually from a terminal and you store your Python files in the /opt/syslog-ng/etc directory, use the following command: export PYTHONPATH=/opt/syslog-ng/etc.
In production, when AxoSyslog starts on boot, you must configure your startup script to include the Python path. The exact method depends on your operating system. For recent Red Hat Enterprise Linux, Fedora, and CentOS distributions that use systemd, the systemctl command sources the /etc/sysconfig/syslog-ng file before starting AxoSyslog. (On openSUSE and SLES, /etc/sysconfig/syslog file.) Append the following line to the end of this file: PYTHONPATH="<path-to-your-python-file>", for example, PYTHONPATH="/opt/syslog-ng/etc".
The Python object is initiated every time when AxoSyslog is started or reloaded.
Warning
If you reload AxoSyslog, existing Python objects are destroyed, therefore the context and state information of Python blocks is lost. Log rotation and updating the configuration of AxoSyslog typically involves a reload.
The Python block can contain multiple Python functions.
Using Python code in AxoSyslog can significantly decrease the performance of AxoSyslog, especially if the Python code is slow. In general, the features of AxoSyslog are implemented in C, and are faster than implementations of the same or similar features in Python.
Validate and lint the Python code before using it. The AxoSyslog application does not do any of this.
Python error messages are available in the internal() source of AxoSyslog.
You can access the name-value pairs of AxoSyslog directly through a message object or a dictionary.
To help debugging and troubleshooting your Python code, you can send log messages to the internal() source of AxoSyslog. For details, see Logging from your Python code.
The following points apply to Python parsers.
The first argument in the definition of the Python function is the actual log message. This is implicitly passed to the function, you do not have to use it in the template function.
The value of the template function is return value of the Python function.
To reference a name-value pair or a macro in the Python function, use the dot-notation. For example, if the first argument in the definition of the function is called log-message, the value of the HOST macro is log-message.HOST, and so on.
You can define new name-value pairs in the Python function. For example, if the first argument in the definition of the function is called log-message, you can create a new name-value pair like this: log_message["new-macro-name"]="value". This is useful when you parse a part of the message from Python, or lookup a value based on data extracted from the log message.
The following example creates a Python template function called resolve_host that receives an IP address as an argument, and attempts to resolve it into a hostname.
Description: Replaces the delimiter character with a new one. For example, the following example replaces the tabulators (\\t) in the message with semicolons (;):
Terminal window
$(replace-delimiter "\t"";""${MESSAGE}")
Available in AxoSyslog 3.5 and later.
round
Syntax:$(round argument)
Description: Rounds a floating-point number to the nearest integer. For example, $(round 1.5) is 2. See also the ceil and floor template functions.
This template function has an optional second argument that sets the precision of rounding. The default is 0 (output a natural number), but values up to 20 are accepted. For example, $(round 2.123456 4) is 2.1235.
Description: This file replaces the special characters in macro values, for example, it can replace the slash (/) characters in a filename with the underscore (_) character. If you specify multiple arguments, they will be concatenated using the / character, so they can be used as separate directory levels when used in filenames.
The function has the following options:
--ctrl-chars or -c
Filter control characters (characters that have an ASCII code of 32 or lower). This option is used by default.
--invalid-chars <characterlist> or -i <characterlist>
The list of characters to be replaced with underscores (_). The default list contains the / character. The following example replaces the \ and @ characters, so for example, fo\o@bar becomes foobar:
Terminal window
$(sanitize -i \@$PROGRAM)
--no-ctrl-chars or -C
Do not filter the control characters (characters that have an ASCII code of 32 or lower).
--replacement <replacement-character> or -r <replacement-character>
The character used to replace invalid characters. By default, this is the underscore (_). The following example replaces invalid characters with colons instead of underscores, so for example, foo/bar becomes foo;bar:
Terminal window
$(sanitize -r ;$PROGRAM)
Example: Using the sanitize template function
The following example uses the sanitize function on two macros, and the results are used as directory names in a file destination.
This is equivalent to file("/var/log/$HOST/$PROGRAM/messages");, but any slashes in the values of the $HOST and $PROGRAM macros are replaced with underscores.
stardate
Syntax:$(stardate [option] "<date-in-unixtime>")
Description: Converts a date in UNIXTIME (for example, ${UNIXTIME}) into stardate, displaying the year and the progress of the year in a number of digits (YYYY.NNN). You can set the number of digits using the --digits option, for example:
Terminal window
$(stardate --digits 2"${R_UNIXTIME}")
strip
Syntax:$(strip "<macro>")
Description: Deletes whitespaces from the beginning and the end of a macro. You can specify multiple macros separated with whitespace in a single template function, for example:
Description: This function extracts a substring of a string.
argument The string to extract the substring from, for example, "${MESSAGE}"
offset Specifies where the substring begins (in characters). 0 means to start from the beginning of the string, 5 means to skip the first 5 characters of the string, and so on. Use negative numbers to specify where to start from the end of the string, for example, -1 means the last character, -5 means to start five characters before the end of the string.
lengthOptional parameter: The number of characters to extract. If not specified, the substring will be extracted from the offset to the end of the string. Use negative numbers to stop the substring before the end of the string, for example, -5 means the substring ends five characters before the end of the string.
Example: Using the substr template function
Skip the first 15 characters of the message, and select the rest:
Terminal window
$(substr "${MESSAGE}""15");
Select characters 16-30 of the message (15 characters with offset 15):
Terminal window
$(substr "${MESSAGE}""15""15");
Select the last 15 characters of the message:
Terminal window
$(substr "${MESSAGE}""-15");
A template that converts the message to RFC3164 (BSD-syslog) format and truncates the messages to 1023 characters:
If you do not set the value-if-set and value-if-unset arguments, the $(tag) template function acts as a boolean and expands to 0 or 1, depending on whether the message has the specified tag set.
If the value-if-set and value-if-unset arguments are set, $(tag) returns a string: the second argument (<value-if-set>) if the message has <tag>, and the third argument (<value-if-unset>) if the message doesn’t have <tag>.
Description: This template function looks up the in the configuration and uses that to format its result. The referenced template can be static or dynamic. For static templates, AxoSyslog resolves the template when it starts, or when the configuration is reloaded. For dynamic templates, the results are resolved runtime (for dynamic templates, the template name contains at least one ‘$’ character). For example, the name of the template to be invoked can be extracted from the message, or from a name-value pair set using the add-contextual-data() feature.
For dynamic templates, you can set an optional second template. This second template will be the results of the template function if resolving the dynamic template fails for some reason. For example:
Description: Returns the uppercase version of the specified string or macro. For example, the following example uses the uppercase version of the hostname in a directory name:
Description: You can use the url-decode template function to decode url-encoded strings and macros. For example, $(url-decode %3C%3E) yields <>. The url-decode` can receive multiple parameters (maximum 64). In this case, each parameter is decoded separately, and simply concatenated.
Available in AxoSyslog version 3.18 and later.
url-encode
Syntax:$(url-encode ${MESSAGE})
Description: The url-encode template function escapes strings for use as URI path or query parameter segments or form encoded HTTP POST data. All input characters that are not a-z, A-Z, 0-9, ‘-’, ‘.’, ‘_’ or ‘~’ are converted to their “URL escaped” version.
Available in AxoSyslog version 3.18 and later. (In version 3.16-3.17, this template function was called urlencode.)
uuid
Syntax:$(uuid)
Description: Generates a Universally Unique IDentifier (UUID) that complies with RFC4122. That way, an UUID can be added to the message soon after it is received, so messages stored in multiple destinations can be identified. For example, when storing messages in a database and also in files, the UUID can be used to find a particular message both in the database and the files.
To generate a UUID, you can use a rewrite rule to create a new value-pair for the message.
Example: Using Universally Unique Identifiers
The following example adds a value-pair called MESSAGE_UUID to the message using a rewrite rule and a template.
This template function is available only if the tfuuid module has been loaded.
By default, AxoSyslog loads every available module. For details, see Loading modules.
8 - Modifying the on-the-wire message format
Macros, templates, and template functions allow you to fully customize the format of the message. This flexibility makes it possible to use AxoSyslog in some unexpected way if needed, for example, to emulate simple, plain-text protocols. The following example shows you how to send LPUSH commands to a Redis server.
Note
The purpose of this example is to demonstrate the flexibility of AxoSyslog. A dedicated Redis destination is available in AxoSyslog version 3.5. For details, see redis: Store name-value pairs in Redis.
The following template is a valid LPUSH command in accordance with the Redis protocol, and puts the $MESSAGE into a separate list for every $PROGRAM: