Changes for page Mission Director Guide

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edited by Daniel Turner
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To version 32944.2
edited by Daniel Turner
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Title
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1 -Mission Director Guide
1 +X4:X4 Documentation/X4 Game Design/0 General/Mission Director Guide
Parent
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1 -X Rebirth Wiki.Modding support.WebHome
Content
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1 -The Mission Director (MD) is a subsystem of the game and interprets mission scripts, which are written in an XML-based language. The Mission Director in X Rebirth and X4 is based on the MD in X3: Terran Conflict, with some major changes based on feedback from MD users.
1 +The Mission Director (MD) is a subsystem of the game and interprets mission scripts, which are written in an XML-based language. The Mission Director in X Rebirth and X4 is based on the MD in X3: Terran Conflict, with some major changes based on feedback from MD users.\\
2 2  
3 -An introduction to the original MD can be found in the [[Egosoft forums>>url:http://forum.egosoft.com/viewtopic.php?t=196971]]. There is also a PDF guide for the X3 Mission Director, which is partially used as a template for this document.
3 +An introduction to the original MD can be found in the[[(% style="color: rgb(0,0,153);text-decoration: underline;" %)Egosoft forums>>url:http://forum.egosoft.com/viewtopic.php?t=196971]](%%). There is also a PDF guide for the X3 Mission Director, which is partially used as a template for this document.
4 4  
5 5  This document is primarily supposed to be a guide for MD users (people who use the MD to develop missions or write other MD scripts), not for MD programmers (people who work on the MD engine in C++).
6 6  
7 -{{info}}
8 -The general MD scripting system is the same in XR and X4, so this guide applies to both games. However, each game has its own set of supported script features (i.e. actions, conditions and properties), so in general scripts from different games are not compatible.
9 -{{/info}}
7 +{{{The general MD scripting system is the same in XR and X4, so this guide applies to both games. However, each game has its own set of supported script features (i.e. actions, conditions and properties), so in general scripts from different games are not compatible.}}}
10 10  
9 +(% id="md-scripts" %)
11 11  
11 +
12 12  {{toc/}}
13 13  
14 14  = MD scripts =
... ... @@ -15,14 +15,14 @@
15 15  
16 16  MD scripts are not necessarily missions. An MD file can contain a part of a mission, multiple missions, or no mission at all, as the MD is used for more than just missions.
17 17  
18 -MD files are XML files located in the game folder **md**. All XML files in that folder are loaded at game start. The file names are irrelevant, since the internally used script names are read from the XML root nodes. However, it's recommended to keep file name and internal script name identical to avoid having to look up the names.
18 +MD files are XML files located in the game folder {{code}}md{{/code}}. All XML files in that folder are loaded at game start. The file names are irrelevant, since the internally used script names are read from the XML root nodes. However, it's recommended to keep file name and internal script name identical to avoid having to look up the names.
19 19  
20 -To edit MD scripts, an XML editing tool is needed. Microsoft Visual Studio (if available) or [[Microsoft Visual Web Developer>>url:http://www.microsoft.com/express/vwd/]] (for free) are highly recommended because they have pretty good support for XML schemas (XSD). The provided Mission Director schema files help you create the XML file by displaying all available tags and attributes as you edit the XML.
20 +To edit MD scripts, an XML editing tool is needed. Microsoft Visual Studio (if available) or [[(% style="color: rgb(0,0,153);text-decoration: underline;" %)Microsoft Visual Web Developer>>url:http://www.microsoft.com/express/vwd/]](%%) (for free) are highly recommended because they have pretty good support for XML schemas (XSD). The provided Mission Director schema files help you create the XML file by displaying all available tags and attributes as you edit the XML.
21 21  
22 22  This functionality is only available if the schema files **md.xsd** and **common.xsd** are in the correct folder. If you are editing the XML in the game folder directly, all is well and the files are loaded from the libraries folder. However, if you are editing in a separate folder, copy those XSD files from the libraries folder directly into the folder where your XML files are located.
23 23  
24 24  {{info}}
25 -Even if your script is free of XSD errors, that does not mean that the script syntax is correct. For example, there are XML elements that require at least one of multiple attributes, but this requirement cannot be reflected in a schema (apart from documentation text). Please notice the XSD documentation of the elements and attributes, e.g. displayed via tooltips in Visual Studio / Visual Web Developer. Please also note additional requirements for MD cue attributes in this guide (see [[Conditions>>doc:||anchor="HConditions" style="outline-width: 0px !important; user-select: auto !important;"]]).
25 +Even if your script is free of XSD errors, that does not mean that the script syntax is correct. For example, there are XML elements that require at least one of multiple attributes, but this requirement cannot be reflected in a schema (apart from documentation text). Please notice the XSD documentation of the elements and attributes, e.g. displayed via tooltips in Visual Studio / Visual Web Developer. Please also note additional requirements for MD cue attributes in this guide (see [[xwiki:MediaWiki.X4.X4_DocumentationX4_Game_Design0_GeneralMission_Director_Guide.NULL|Conditions.WebHome]]).
26 26  
27 27  To check for errors, please pay attention to in-game error messages that are produced while your script is imported, and run-time errors while the script runs. The XSD files can help you a lot, but you should not rely on the absence of XSD errors."
28 28  {{/info}}
... ... @@ -33,19 +33,19 @@
33 33  
34 34  To collect all messages in a file, start the game with the following parameters on the command line:
35 35  
36 -{{code language="xml"}}
36 +{{code}}
37 37  -logfile debuglog.txt
38 38  {{/code}}
39 39  
40 40  All messages, including enabled non-error messages, will be written into the log file. You can find it in your personal folder, where your save folder is located. To enable scripting-specific debug messages, add the following to the command line:
41 41  
42 -{{code language="xml"}}
42 +{{code}}
43 43  -debug scripts
44 44  {{/code}}
45 45  
46 -Other debug filters other than "scripts" can be enabled by repeating the -debug command for each filter name, but that is rarely needed for scripting.
46 +Other debug filters other than "scripts" can be enabled by repeating the -debug command for each filter name, but that is rarely needed for scripting.\\
47 47  
48 -The script action <debug_text> can be used to print debug messages from within a script.
48 +The script action <debug_text> can be used to print debug messages from within a script.\\
49 49  
50 50  = MD script structure =
51 51  
... ... @@ -82,11 +82,14 @@
82 82  
83 83  * **Disabled**: The parent cue has not become active yet, so this cue is basically non-existing.
84 84  * **Waiting**: Either this is a root cue, or the parent has become active. The cue is checking its conditions and will become active when they are met.
85 -* **Active**: The cue is about to perform the actions. Child cues have entered the waiting state.
85 +* **Active**: The cue is about to perform the actions. Child cues have entered the waiting state.\\
86 86  
87 +
87 87  * **Complete**: The cue has finished performing its actions.
88 88  * **Cancelled**: The cue has been cancelled. This state cannot normally be reached but only if a cue actively cancels itself or another cue. No condition checks or actions are performed in this cue or any sub-(sub-)cue.
89 89  
91 +\\
92 +
90 90  {{info}}
91 91  There can be a delay between the activation and performing the actions if the <delay> tag is used. In this case, sub-cues will be enter the waiting state before the parent's actions are performed.
92 92  {{/info}}
... ... @@ -153,8 +153,9 @@
153 153  
154 154  If a cue has a <conditions> node without any event, it must have one of the attributes //**onfail**// or //**checkinterval**//.
155 155  
156 -* Use //onfail// if the conditions should be checked only once. The possible attribute values are "//cancel//" and "//complete//". If the conditions are met, the cue will activate and perform the cue actions. Otherwise it's a failure and the cue will be cancelled or completed, based on the onfail attribute. Typically //onfail="cancel"// is used to prevent any further action. //onfail="complete"// can be used to continue with the sub-cues even in case of failure (but skipping the current cue actions).
159 +* Use //onfail// if the conditions should be checked only once. The possible attribute values are "//cancel//" and "//complete//". If the conditions are met, the cue will activate and perform the cue actions. Otherwise it's a failure and the cue will be cancelled or completed, based on the onfail attribute. Typically //onfail="cancel"// is used to prevent any further action. //onfail="complete"// can be used to continue with the sub-cues even in case of failure (but skipping the current cue actions).\\
157 157  
161 +
158 158  * With //checkinterval//, you can specify a constant time interval between condition checks. The conditions will be checked regularly forever until they are met, unless the cue's state is changed explicitly by an external event.
159 159  
160 160  Additionally, you can use the attribute **checktime** to set the time of the first condition check (also possible in combination with //onfail//). The //checktime// can be an expression with variables and is evaluated when the cue is enabled (when the condition checks would normally start ΓÇô for root cues that happens at game start, otherwise after the parent cue becomes active).
... ... @@ -181,11 +181,10 @@
181 181  
182 182  The attributes //onfail//, //checkinterval//, //checktime// are not allowed for cues with event conditions.
183 183  
184 -{{info}}
185 -**Reminder**
186 -When using an XSD-capable editor, it's a great help, but you cannot rely on that alone to verify correctness. Please also check the documentation and look for errors in the game debug output. Concretely, the schema cannot tell whether the above cue attributes are used correctly.
187 -{{/info}}
188 188  
189 +
190 +{{info}}Reminder: When using an XSD-capable editor, it's a great help, but you cannot rely on that alone to verify correctness. Please also check the documentation and look for errors in the game debug output. Concretely, the schema cannot tell whether the above cue attributes are used correctly.{{/info}}
191 +
189 189  == Actions ==
190 190  
191 191  The <actions> node contains the actions that are performed one after another, without any delay inbetween. You can enforce a delay after activation of the cue and actual action performance, using a <delay> node right before the <actions>:
... ... @@ -216,12 +216,14 @@
216 216  <actions>
217 217  {{/code}}
218 218  
222 +
223 +
219 219  {{info}}
220 -Messages printed with <debug_text> are usually only visible when the "scripts" debug filter is enabled, see [[Script debug output>>doc:||anchor="HScriptdebugoutput"]]
225 +Messages printed with <debug_text> are usually only visible when the "scripts" debug filter is enabled, see Script debug output
221 221  {{/info}}
222 222  
223 -Script debug output
224 224  
229 +
225 225  Each child action in a <do_any> node can have a //**weight**// attribute, which can be used to control the random selection of an action node. The default weight of a child node is 1.
226 226  
227 227  Also available is **<do_if>**, which completes the enclosed action(s) only if one provided value is non-null or matches another. Directly after a <do_if> node, you can add one or more **<do_elseif>** nodes to perform additional checks only in case the previous conditions were not met. The node **<do_else>** can be used directly after a <do_if> or a <do_elseif>. It is executed only if none of the conditions are met.
... ... @@ -239,6 +239,7 @@
239 239  {{/info}}
240 240  
241 241  
247 +
242 242  Library cues are written like normal cues, they are also defined in a <cues> node, just with the difference that the XML tag is called library instead of cue:
243 243  
244 244  {{code language="xml"}}
... ... @@ -288,10 +288,13 @@
288 288  </library>
289 289  {{/code}}
290 290  
297 +
291 291  {{warning}}
292 -These examples are definitely **__not__ **examples of good scripting style.
299 +These examples are definitely <u>not</u> examples of good scripting style.
293 293  {{/warning}}
294 294  
302 +
303 +
295 295  So when writing the library, you don't have to worry about name confusion, just use the names of cues in your library and it will work as expected when the library is used. Names of cues that do not belong to the library will not be available in expressions (see Foo in the example above), however, names of other libraries in the file are available when referencing them in the ref attribute.
296 296  
297 297  Notes:
... ... @@ -343,7 +343,7 @@
343 343  
344 344  = Instantiation =
345 345  
346 -One of the possible cue attributes is //**instantiate**//. If you set it to true, this changes what happens when a cue's conditions are met. Normally, if a cue is not instantiated, the cue's actions are run (taking a delay node into account) and the cue is marked as completed. But with **instantiate'//, a// **copy of the cue** (and all its sub-cues) is made when the conditions are met, and it is this copy in which the actions are performed and it is the copy whose status is set to complete when they are finished - this means that the original cue (the so-called **static cue**) remains in the //waiting// state, and if the conditions are met again then the whole thing happens all over again.**
355 +One of the possible cue attributes is //**instantiate**//. If you set it to true, this changes what happens when a cue's conditions are met. Normally, if a cue is (% style="color: rgb(0,0,0);text-decoration: underline;" %)not instantiated, the cue's actions are run (taking a delay node into account) and the cue is marked as completed. But with **instantiate'//, a// **copy of the cue** (and all its sub-cues) is made when the conditions are met, and it is this copy in which the actions are performed and it is the copy whose status is set to complete when they are finished - this means that the original cue (the so-called **static cue**) remains in the //waiting// state, and if the conditions are met again then the whole thing happens all over again.**
347 347  \\An instantiating cue should only be used with conditions that are only going to be met once (or a fairly limited number of times), or with conditions that include an event condition. Instantiation should not be used in a cue which, say, just depends on the game time being greater than a specific value as this will result in a copy of the cue being made after each check interval, which could increase memory usage a lot. The most common use of an instantiated cue is in responding to events such as the player ship changing sector, to react every time that event happens.
348 348  \\Instances that are created via //instantiate// are called **instantiated cues**. But sub-cues of instances are also instances (**sub-instances**) - they are created when they enter the waiting state. An instance is removed again (thereby freeing its memory) when it is complete or cancelled, and when all its instance sub-cues have been removed before. The simplest case is an instantiating cue with no sub-cues: The instance is created, the actions are performed, and the instance is removed immediately on completion. A pitfall could be an instance with a sub-cue that is forever in the waiting state (e.g. waiting for an event from an already destroyed object). It can never be removed, so you should clean up such a cue yourself, e.g. by cancelling it explicitly.
349 349  
... ... @@ -351,16 +351,18 @@
351 351  
352 352  Cancelling a cue with **<cancel_cue>** also cancels all its sub-cues, and cancelling a static cue stops it from instantiating more cues - but it does not cancel its instances. Resetting a cue with **<reset_cue>** resets both sub-cues and instantiated cues, but has the (desired) side effect that condition checks will start again if the parent cue's state allows it. Even a sub-instance that has been reset can return to the //waiting// state. Resetting an instantiated cue will stop it forever, because it is not supposed to be in the //waiting// state (only its static cue is). Resetting will also induce the clean-up reliably, but keep in mind that this is not the case for instance sub-cues.
353 353  
354 -{{info}}
355 -<cancel_cue> and <reset_cue> only take effect after all remaining actions of the current cue are performed. So you can even safely cancel the cue that you are currently in (keyword "'''this'''") or any ancestor cue, and still perform more actions afterwards.
356 -{{/info}}
363 +{{info body="<cancel_cue> and <reset_cue> only take effect after all remaining actions of the current cue are performed. So you can even safely cancel the cue that you are currently in (keyword "/}}
357 357  
358 358  == Access to instances ==
359 359  
367 +
368 +
360 360  {{info}}
361 361  This sub-section requires basic knowledge of script expressions.
362 362  {{/info}}
363 363  
373 +
374 +
364 364  In case of instances with sub-instances, you will often want to access a related instance from the current one. Like in the non-instance case, you can simply write the cue name in an expression to reference that cue. However, you should be aware of the pitfalls that are accompanied by this.
365 365  
366 366  When you use a cue name from the same script in an expression, it will always be resolved to some cue - usually a static cue, even if it is still in the disabled state, but it can also be an instance, if it is "related" to the current one.
... ... @@ -369,7 +369,7 @@
369 369  
370 370  Example chart:
371 371  
372 -[[~[~[image:Mission Director Guide - Instantiation.png~|~|width="800px"~]~]>>attach:ARCHIVE_XRWIKI_Modding_support_Mission_Director_GuideMission_Director_Guide_-_Instantiation.png]]
383 +[[~[~[image:ARCHIVE_XRWIKI_Modding_support_Mission_Director_GuideMission_Director_Guide_-_Instantiation.png~|~|width="800px"~]~]>>attach:ARCHIVE_XRWIKI_Modding_support_Mission_Director_GuideMission_Director_Guide_-_Instantiation.png]]\\
373 373  
374 374  This chart represents a script of 5 cues: Foo, Bar, SubBar, Baz and SubBaz. Continuous arrows denote parent-child relationship. Foo and Baz are instantiating cues (highlighted with red border). The static cues always exist, although static children of instantiating cues can never become active. Instances only exist as long as they are needed.
375 375  
... ... @@ -394,11 +394,11 @@
394 394  
395 395  Some additional common pitfalls with respect to instantiation are listed here. There may be more.
396 396  
397 -* **Conditions with results:** If the instantiating cue has conditions with results, those results are stored in variables - but in the variables of the static cue, not of the instance! So in the <actions> you have to access the variables via the **static **keyword:
408 +* **Conditions with results:** If the instantiating cue has conditions with results, those results are stored in variables - but in the variables of the static cue, not of the instance! So in the <actions> you have to access the variables via the **static **keyword:\\
398 398  
399 -{{code language="xml"}}<debug_text text="static.$foo"/>{{/code}}
400 -It may even be necessary to copy the variables over to the instance because the static variables can be overwritten by the next condition check:
401 -{{code language="xml"}}<set_value name="$foo" exact="static.$foo"/>{{/code}}
410 +(% style="color: rgb(0,0,255);text-decoration: none;" %){{code}}<debug_text text="static.$foo"/>{{/code}}
411 +\\It may even be necessary to copy the variables over to the instance because the static variables can be overwritten by the next condition check:
412 +\\{{code}}<set_value name="$foo" exact="static.$foo"/>{{/code}}
402 402  
403 403  * **Resetting completed/cancelled instances:** As explained above, sub-instances are only created when needed (when going to the //waiting// state) and are destroyed when they are not needed any more (when they are completed or cancelled, including all sub-cues). There are cases in which you want to access cues that don't exist any more - it simply doesn't work. In some cases you are safe: You can be sure that all your ancestors exist, and instantiating cues won't be removed until they are cancelled. In some other cases you simply don't know and have to check if the instance is already (or still) there.
404 404  * **Lifetime of instances:** Do not make assumptions about when an instance is removed! Just looking at it in the Debug Manager keeps it alive for the time being. So, sometimes you could still have a completed instance that wouldn't exist under other circumstances.
... ... @@ -407,12 +407,13 @@
407 407  
408 408  Most of the attribute values in actions and conditions are interpreted as script expressions and parsed accordingly. An expression is a phrase that can be evaluated to a single value. The simplest expressions are actual numeric values and strings, so called **literals:**
409 409  
410 -* {{code language="xml"}}0{{/code}} (integer number)
411 -* {{code language="xml"}}0772{{/code}} (leading 0 means octal integer number)
412 -* {{code language="xml"}}3.14159{{/code}} (floating point number)
413 -* {{code language="xml"}}5e12{{/code}} (float in exponent notation, "times ten to the power of")
414 -* {{code language="xml"}}0xCAFE{{/code}} (hexadecimal integer number)
421 +* {{code}}0{{/code}} (integer number)
422 +* {{code}}0772{{/code}} (leading 0 means octal integer number)
423 +* {{code}}3.14159{{/code}} (floating point number)
424 +* {{code}}5e12{{/code}} (float in exponent notation, "times ten to the power of")
425 +* {{code}}0xCAFE{{/code}} (hexadecimal integer number)
415 415  
427 +
416 416  {{info}}
417 417  Since octal numbers are hardly ever used (usually unknowingly), the parser is will produce a warning if an octal number is encountered."
418 418  {{/info}}
... ... @@ -421,13 +421,13 @@
421 421  
422 422  You can write string literals by putting the string in single quotes:
423 423  
424 -* {{code language="xml"}}'Hello world'{{/code}}
425 -* {{code language="xml"}}''{{/code}} (empty string)
426 -* {{code language="xml"}}'String with a line break\n'{{/code}}
436 +* {{code}}'Hello world'{{/code}}
437 +* {{code}}''{{/code}} (empty string)
438 +* {{code}}'String with a line break\n'{{/code}}
427 427  
440 +
428 428  {{info}}
429 -Since expressions are written in XML attribute values, you have to use the single quotes inside the double quotes for the actual attribute value. To write characters like '''< > " &''' in an expression string (or anywhere else in an XML attribute value), you'll have to escape them as '''&lt; &gt; &quot; &amp;''' respectively. The backslash '''\''' can be used in strings for escape characters like in C/C++. Most important are '''\'''' for a single quote as part of the string, and '''
430 -''' for the backslash itself.
442 +Since expressions are written in XML attribute values, you have to use the single quotes inside the double quotes for the actual attribute value. To write characters like '''< > " &''' in an expression string (or anywhere else in an XML attribute value), you'll have to escape them as '''&lt; &gt; &quot; &amp;''' respectively. The backslash '''\''' can be used in strings for escape characters like in C/C++. Most important are '''\'''' for a single quote as part of the string, and '''\\''' for the backslash itself.
431 431  {{/info}}
432 432  
433 433  == Numeric data types and suffixes ==
... ... @@ -434,12 +434,12 @@
434 434  
435 435  Numbers can have a suffix that determines their numeric type. There are also numerical data types like "money" or "time" which can only be expressed by using an appropriate unit suffix:
436 436  
437 -* {{code language="xml"}}5000000000L{{/code}} (large integer)
438 -* {{code language="xml"}}1f{{/code}} (floating point number, same as 1.0, just 1 would be an integer)
439 -* {{code language="xml"}}1000Cr{{/code}} (Money in Credits, converted to 100000 cents automatically)
440 -* {{code language="xml"}}500m{{/code}} (Length in metres)
441 -* {{code language="xml"}}10s{{/code}} (Time in seconds)
442 -* {{code language="xml"}}1h{{/code}} (Time in hours, which is converted to 3600s automatically)
449 +* {{code}}5000000000L{{/code}} (large integer)
450 +* {{code}}1f{{/code}} (floating point number, same as 1.0, just 1 would be an integer)
451 +* {{code}}1000Cr{{/code}} (Money in Credits, converted to 100000 cents automatically)
452 +* {{code}}500m{{/code}} (Length in metres)
453 +* {{code}}10s{{/code}} (Time in seconds)
454 +* {{code}}1h{{/code}} (Time in hours, which is converted to 3600s automatically)
443 443  
444 444  A space between number and suffix is allowed.
445 445  
... ... @@ -491,85 +491,87 @@
491 491  (% style="margin-left: 0.0px;" %)
492 492  (((
493 493  |Operator / Delimiter / Constant|Type|Example|Result of example|Description
494 -|null|constant|{{code language="xml"}}null + 1{{/code}}|{{code language="xml"}}1{{/code}}|Null value, see above
495 -|false|constant|{{code language="xml"}}1 == 0{{/code}}|{{code language="xml"}}false{{/code}}|Integer value 0, useful in Boolean expressions
496 -|true|constant|{{code language="xml"}}null == 0{{/code}}|{{code language="xml"}}true{{/code}}|Integer value 1, useful in Boolean expressions
497 -|pi|constant|{{code language="xml"}}2 * pi{{/code}}|{{code language="xml"}}6.2831853rad{{/code}}|π as an angle (same as 180deg)
498 -|()|delimiter|{{code language="xml"}}(2 + 4) * (6 + 1){{/code}}|{{code language="xml"}}42{{/code}}|Parentheses for arithmetic grouping
499 -|[]|delimiter|{{code language="xml"}}[1, 2, 2+1, 'string']{{/code}}|{{code language="xml"}}[1, 2, 3, 'string']{{/code}}|[[List>>doc:||anchor="HLists" style="outline-width: 0px !important; user-select: auto !important;"]] of values
500 -|table[]|delimiter|{{code language="xml"}}table[$foo='bar', {1+1}=40+2]{{/code}}|{{code language="xml"}}table[$foo='bar', {2}=42]{{/code}}|[[Table>>doc:||anchor="HTables" style="outline-width: 0px !important; user-select: auto !important;"]] of values
501 -|{}|delimiter|{{code language="xml"}}{101, 3}{{/code}}|{{code language="xml"}}'Some text'{{/code}}|Text lookup (page ID and text ID) from TextDB
502 -\\(Note: Braces are also used for [[property lookups>>doc:||anchor="HValueproperties" style="outline-width: 0px !important; user-select: auto !important;"]])
503 -|+|unary|{{code language="xml"}}+21 * (+2){{/code}}|{{code language="xml"}}42{{/code}}|Denotes positive number (no effect)
504 -|-|unary|{{code language="xml"}}-(21 * -2){{/code}}|{{code language="xml"}}42{{/code}}|Negates the following number
505 -|not|unary|{{code language="xml"}}not (21 == 42){{/code}}|{{code language="xml"}}true{{/code}}|Yields true if the following expression is false (equal to zero), false otherwise
506 +|null|constant|{{code}}null + 1{{/code}}|{{code}}1{{/code}}|Null value, see above
507 +|false|constant|{{code}}1 == 0{{/code}}|{{code}}false{{/code}}|Integer value 0, useful in Boolean expressions
508 +|true|constant|{{code}}null == 0{{/code}}|{{code}}true{{/code}}|Integer value 1, useful in Boolean expressions
509 +|pi|constant|{{code}}2 * pi{{/code}}|{{code}}6.2831853rad{{/code}}|π as an angle (same as 180deg)
510 +|()|delimiter|{{code}}(2 + 4) * (6 + 1){{/code}}|{{code}}42{{/code}}|Parentheses for arithmetic grouping
511 +|[]|delimiter|{{code}}[1, 2, 2+1, 'string']{{/code}}|{{code}}[1, 2, 3, 'string']{{/code}}|[[List>>xwiki:MediaWiki.NULL.WebHome]] of values
512 +|table[]|delimiter|{{code}}table[$foo='bar', {1+1}=40+2]{{/code}}|{{code}}table[$foo='bar', {2}=42]{{/code}}|[[Table>>xwiki:MediaWiki.NULL.WebHome]] of values
513 +|{}|delimiter|{{code}}{101, 3}{{/code}}|{{code}}'Some text'{{/code}}|Text lookup (page ID and text ID) from TextDB
514 +\\(Note: Braces are also used for [[property lookups>>xwiki:MediaWiki.NULL.WebHome]])
515 +|+|unary|{{code}}+21 * (+2){{/code}}|{{code}}42{{/code}}|Denotes positive number (no effect)
516 +|-|unary|{{code}}-(21 * -2){{/code}}|{{code}}42{{/code}}|Negates the following number
517 +|not|unary|{{code}}not (21 == 42){{/code}}|{{code}}true{{/code}}|Yields true if the following expression is false (equal to zero), false otherwise
506 506  |typeof|unary|
507 -{{code language="xml"}}typeof null{{/code}}
508 -\\{{code language="xml"}}typeof 0{{/code}}
509 -\\{{code language="xml"}}typeof 'Hello world'{{/code}}|
510 -{{code language="xml"}}datatype.null{{/code}}
511 -\\{{code language="xml"}}datatype.integer{{/code}}
512 -\\{{code language="xml"}}datatype.string{{/code}}|Yields the [[data type of the following sub-expression>>MediaWiki.NULL]]
519 +{{code}}typeof null{{/code}}
520 +\\{{code}}typeof 0{{/code}}
521 +\\{{code}}typeof 'Hello world'{{/code}}|
522 +{{code}}datatype.null{{/code}}
523 +\\{{code}}datatype.integer{{/code}}
524 +\\{{code}}datatype.string{{/code}}|Yields the [[data type of the following sub-expression>>xwiki:MediaWiki.NULL.WebHome]]
513 513  |sin|unary|
514 -{{code language="xml"}}sin(30deg){{/code}}
515 -\\{{code language="xml"}}sin(pi){{/code}}|
516 -{{code language="xml"}}0.5{{/code}}
517 -\\{{code language="xml"}}1.0{{/code}}|Sine (function-style, parentheses required)
526 +{{code}}sin(30deg){{/code}}
527 +\\{{code}}sin(pi){{/code}}|
528 +{{code}}0.5{{/code}}
529 +\\{{code}}1.0{{/code}}|Sine (function-style, parentheses required)
518 518  |cos|unary|
519 -{{code language="xml"}}cos(60deg){{/code}}
520 -\\{{code language="xml"}}cos(pi){{/code}}|
521 -{{code language="xml"}}0.5{{/code}}
522 -\\{{code language="xml"}}0.0{{/code}}|Cosine (function-style, parentheses required)
523 -|sqrt|unary|{{code language="xml"}}sqrt(2){{/code}}|{{code language="xml"}}1.414213LF{{/code}}|Square root (function-style, parentheses required)
524 -|exp|unary|{{code language="xml"}}exp(1){{/code}}|{{code language="xml"}}2.71828LF{{/code}}|Exponential function (function-style, parentheses required)
525 -|log|unary|{{code language="xml"}}log(8) / log(2){{/code}}|{{code language="xml"}}3.0LF{{/code}}|Natural logarithm (function-style, parentheses required)
526 -|^|binary|{{code language="xml"}}10 ^ 3{{/code}}|{{code language="xml"}}1000.0LF{{/code}}|Power
527 -|*|binary|{{code language="xml"}}21 * 2{{/code}}|{{code language="xml"}}42{{/code}}|Multiplication
528 -|/|binary|{{code language="xml"}}42 / 1042.0 / 10.0{{/code}}|{{code language="xml"}}44.2{{/code}}|Division
529 -|%|binary|{{code language="xml"}}42 % 10{{/code}}|{{code language="xml"}}2{{/code}}|Modulus (remainder of integer division)
531 +{{code}}cos(60deg){{/code}}
532 +\\{{code}}cos(pi){{/code}}|
533 +{{code}}0.5{{/code}}
534 +\\{{code}}0.0{{/code}}|Cosine (function-style, parentheses required)
535 +|sqrt|unary|{{code}}sqrt(2){{/code}}|{{code}}1.414213LF{{/code}}|Square root (function-style, parentheses required)
536 +|exp|unary|{{code}}exp(1){{/code}}|{{code}}2.71828LF{{/code}}|Exponential function (function-style, parentheses required)
537 +|log|unary|{{code}}log(8) / log(2){{/code}}|{{code}}3.0LF{{/code}}|Natural logarithm (function-style, parentheses required)
538 +|^|binary|{{code}}10 ^ 3{{/code}}|{{code}}1000.0LF{{/code}}|Power
539 +|*|binary|{{code}}21 * 2{{/code}}|{{code}}42{{/code}}|Multiplication
540 +|/|binary|{{code}}42 / 1042.0 / 10.0{{/code}}|{{code}}44.2{{/code}}|Division
541 +|%|binary|{{code}}42 % 10{{/code}}|{{code}}2{{/code}}|Modulus (remainder of integer division)
530 530  |+|binary|
531 -{{code language="xml"}}1 + 1{{/code}}
532 -\\{{code language="xml"}}'Hello' + ' world'{{/code}}|
533 -{{code language="xml"}}2{{/code}}
534 -\\{{code language="xml"}}'Hello world'{{/code}}|
543 +{{code}}1 + 1{{/code}}
544 +\\{{code}}'Hello' + ' world'{{/code}}|
545 +{{code}}2{{/code}}
546 +\\{{code}}'Hello world'{{/code}}|
535 535  Addition
536 536  \\String concatenation
537 -|-|binary|{{code language="xml"}}1 - 1{{/code}}|{{code language="xml"}}0{{/code}}|Subtraction
549 +|-|binary|{{code}}1 - 1{{/code}}|{{code}}0{{/code}}|Subtraction
538 538  |
539 539  lt
540 540  \\< (<)|binary|
541 -{{code language="xml"}}1 lt 3{{/code}}
542 -\\{{code language="xml"}}1 < 3{{/code}}|{{code language="xml"}}true{{/code}}|Less than
553 +{{code}}1 lt 3{{/code}}
554 +\\{{code}}1 &lt; 3{{/code}}|{{code}}true{{/code}}|Less than
543 543  |
544 544  le
545 545  \\<=|binary|
546 -{{code language="xml"}}1 le 3{{/code}}
547 -\\{{code language="xml"}}1 <= 3{{/code}}|{{code language="xml"}}true{{/code}}|Less than or equal to
558 +{{code}}1 le 3{{/code}}
559 +\\{{code}}1 &lt;= 3{{/code}}|{{code}}true{{/code}}|Less than or equal to
548 548  |
549 549  gt
550 550  \\> (>)|binary|
551 -{{code language="xml"}}1 gt 3{{/code}}
552 -\\{{code language="xml"}}1 < 3{{/code}}|{{code language="xml"}}false{{/code}}|Greater than
563 +{{code}}1 gt 3{{/code}}
564 +\\{{code}}1 &gt; 3{{/code}}|{{code}}false{{/code}}|Greater than
553 553  |
554 554  ge
555 555  \\>=|binary|
556 -{{code language="xml"}}1 ge 3{{/code}}
557 -\\{{code language="xml"}}1 <= 3{{/code}}|{{code language="xml"}}false{{/code}}|Greater than or equal to
568 +{{code}}1 ge 3{{/code}}
569 +\\{{code}}1 &gt;= 3{{/code}}|{{code}}false{{/code}}|Greater than or equal to
558 558  |(((
559 -
560 -)))|binary|{{code language="xml"}}1 + 1 == 2.0{{/code}}|{{code language="xml"}}true{{/code}}|Equal to
561 -|~!=|binary|{{code language="xml"}}1 + 1 != 2.0{{/code}}|{{code language="xml"}}false{{/code}}|Not equal to
562 -|and|binary|{{code language="xml"}}true and false{{/code}}|{{code language="xml"}}false{{/code}}|Logical AND (short-circuit semantics)
563 -|or|binary|{{code language="xml"}}true or false{{/code}}|{{code language="xml"}}true{{/code}}|Logical OR (short-circuit semantics)
571 += =
572 +)))|binary|{{code}}1 + 1 == 2.0{{/code}}|{{code}}true{{/code}}|Equal to
573 +|~!=|binary|{{code}}1 + 1 != 2.0{{/code}}|{{code}}false{{/code}}|Not equal to
574 +|and|binary|{{code}}true and false{{/code}}|{{code}}false{{/code}}|Logical AND (short-circuit semantics)
575 +|or|binary|{{code}}true or false{{/code}}|{{code}}true{{/code}}|Logical OR (short-circuit semantics)
564 564  |
565 565  if ... then ...
566 566  \\if ... then ... else ...|ternary|
567 -{{code language="xml"}}if 1 == 2 then 'F'{{/code}}
568 -\\{{code language="xml"}}if 1 == 2 then 'F' else 'T'{{/code}}|
569 -{{code language="xml"}}null{{/code}}
570 -\\{{code language="xml"}}'T'{{/code}}|Conditional operator ("inline if")
579 +{{code}}if 1 == 2 then 'F'{{/code}}
580 +\\{{code}}if 1 == 2 then 'F' else 'T'{{/code}}|
581 +{{code}}null{{/code}}
582 +\\{{code}}'T'{{/code}}|Conditional operator ("inline if")
571 571  )))
572 572  
585 +
586 +
573 573  === Operator precedence rules ===
574 574  
575 575  You can group sub-expressions using parentheses, but if you don't, the following order of operations is applied, so that 5-1+2*3 == 10 as you would expect. The order is the same as in the table above, but there are operators with the same precedence - these are applied from left to right.
... ... @@ -584,6 +584,9 @@
584 584  * or
585 585  * if/then/else (lowest precedence)
586 586  
601 +(% id="type-conversion" %)
602 +
603 +
587 587  === Type conversion ===
588 588  
589 589  When a binary arithmetic operator is used on numbers of different types, they will be converted to a suitable output type. The resulting type depends on whether a unit data type is involved (types that are not plain integers or floats). The following cases may occur:
... ... @@ -598,21 +598,23 @@
598 598  
599 599  There is a way to convert a number into a different type manually: You append the corresponding suffix to a sub-expression in parentheses, like this:
600 600  
601 -* {{code language="xml"}}(1 + 1)f{{/code}} ⟹ {{code language="xml"}}2f{{/code}} ⟹ {{code language="xml"}}2.0{{/code}}
602 -* {{code language="xml"}}(1h) m / (180deg) i{{/code}} ⟹ {{code language="xml"}}(3600s) m / (3.14rad) i{{/code}} ⟹ {{code language="xml"}}3600m / 3{{/code}} ⟹ {{code language="xml"}}1200m{{/code}}
618 +* {{code}}(1 + 1)f{{/code}} ⟹ {{code}}2f{{/code}} ⟹ {{code}}2.0{{/code}}
619 +* {{code}}(1h) m / (180deg) i{{/code}} ⟹ {{code}}(3600s) m / (3.14rad) i{{/code}} ⟹ {{code}}3600m / 3{{/code}} ⟹ {{code}}1200m{{/code}}
603 603  
604 -When converting to a non-default unit type, this means you interpret the number as in the given units: "{{code language="xml"}}(1km + 500m)h{{/code}}" means that you interpret 1500m as 1500 hours, so the resulting value will be 1500x3600 seconds. (As stated above, the default unit for a length is metres.)
621 +When converting to a non-default unit type, this means you interpret the number as in the given units: "{{code}}(1km + 500m)h{{/code}}" means that you interpret 1500m as 1500 hours, so the resulting value will be 1500x3600 seconds. (As stated above, the default unit for a length is metres.)
605 605  
606 606  The division operation will be an integer division (rounding towards zero) if both operands are integers (see the example in the table above). So if you want to get a floating point result, you have to make sure that at least one of the operands is a floating point type.
607 607  
608 608  Every data type can be combined with a string with the + operator, and will be converted to a string representation. That way you can also concatenate strings and numbers:
609 609  
610 -* {{code language="xml"}}'One plus one is equal to ' + (1+1) + '.'{{/code}} ⟹ {{code language="xml"}}'One plus one is equal to 2.'{{/code}}
611 -* {{code language="xml"}}'One plus one is not equal to ' + 1 + 1 + '.'{{/code}} ⟹ {{code language="xml"}}'One plus one is not equal to 11.'{{/code}}
627 +* {{code}}'One plus one is equal to ' + (1+1) + '.'{{/code}} ⟹ {{code}}'One plus one is equal to 2.'{{/code}}
628 +* {{code}}'One plus one is not equal to ' + 1 + 1 + '.'{{/code}} ⟹ {{code}}'One plus one is not equal to 11.'{{/code}}
612 612  
613 613  As you can see, operators of the same precedence (+ in this case) are always evaluated from left to right.
614 614  
632 +(% id="boolean-operators" %)
615 615  
634 +
616 616  === Boolean operators ===
617 617  
618 618  Some additional notes on Boolean operators (such as and, or, not, ==):
... ... @@ -621,21 +621,24 @@
621 621  * Values of any type can be used as Boolean operands, e.g. for "and". They will be interpreted as "true" if they are **non-zero** or **non-numeric**.
622 622  * != and == can be used with any data types, even non-numeric ones. When comparing two numeric values, they are converted using the rules above. Values of non-numeric types are never equal to null, or to any other numbers.
623 623  * "and" and "or" use short-circuit semantics: The right side of the operation can be skipped if the left side already determines the outcome of the operation
624 -** Example:{{code language="xml"}} false and $foo{{/code}} ⟹ {{code language="xml"}}false{{/code}} (the value of $foo is not checked at all)
643 +** Example:{{code}} false and $foo{{/code}} ⟹ {{code}}false{{/code}} (the value of $foo is not checked at all)
625 625  * Unlike != and ==, the comparison operators <, <=, >, >= are only supported **for numeric values**, **difficulty levels**, and **attention levels**. Comparing other non-numeric values will result in an error and an undefined result.
626 -* <, <=, >, >= cannot be used in XML directly, so lt, le, gt, ge are provided as alternatives. In some cases you won't have to use them, though - using [[range checks>>MediaWiki.NULL]] with additional XML attributes can be more readable.
645 +* <, <=, >, >= cannot be used in XML directly, so lt, le, gt, ge are provided as alternatives. In some cases you won't have to use them, though - using [[range checks>>xwiki:MediaWiki.NULL.WebHome]] with additional XML attributes can be more readable.
627 627  
647 +
628 628  (% id="categorybroken_macroanchorstrings-and-formatting" %)== Strings and formatting==
629 629  
650 +(% id="categorybroken_macroanchorstrings-and-formatting" %)
630 630  
652 +
631 631  {{{==}}}
632 632  
633 633  You can concatenate string literals using the + operator, but there is also a printf-like formatting syntax, which is easier to use than concatenating lots of small pieces:
634 634  
635 -* {{code language="xml"}}'The %1 %2 %3 jumps over the %5 %4'.['quick', 'brown', 'fox', 'dog', 'lazy']{{/code}}
636 -* {{code language="xml"}}'%1 + %2 = %3'.[$a, $b, $a + $b]{{/code}}
657 +* {{code}}'The %1 %2 %3 jumps over the %5 %4'.['quick', 'brown', 'fox', 'dog', 'lazy']{{/code}}
658 +* {{code}}'%1 + %2 = %3'.[$a, $b, $a + $b]{{/code}}
637 637  
638 -See also the section about [[value properties>>MediaWiki.NULL]].
660 +See also the section about [[value properties>>xwiki:MediaWiki.NULL.WebHome]].
639 639  
640 640  Instead of ΓÇÿ%1 %2 %3', you can also use ΓÇÿ%s %s %s', which is also compatible with Lua string formatting in the UI system. However, this should only be used if you are sure that the order is the same in all supported languages. If you want to make translators aware that they can change the order of parameters, you should prefer '%1 %2 %3'.
641 641  \\To get a percent character in the result string, use '%%' in the format string.
... ... @@ -643,9 +643,9 @@
643 643  \\**[New as of X Rebirth 4.0]**
644 644  \\ With the formatting syntax above, it is even possible to control how the parameter is formatted, using modifiers between "%" and the parameter specifier ("s" or the parameter number):
645 645  
646 -* {{code language="xml"}}'%,s'.[12345678]{{/code}} ⟹ {{code language="xml"}}'12,345,678'{{/code}} (the "," modifier shows a number with thousands separators, correctly localised)
647 -* {{code language="xml"}}'%.3s'.[123.4]{{/code}} ⟹ {{code language="xml"}}'123.400'{{/code}} (show 3 fractional digits, rounding half away from zero - decimal point correctly localised)
648 -* {{code language="xml"}}'%,.1s'.[12345.67]'{{/code}} ⟹ {{code language="xml"}}'12,345.7'{{/code}} (combination of the above)
668 +* {{code}}'%,s'.[12345678]{{/code}} ⟹ {{code}}'12,345,678'{{/code}} (the "," modifier shows a number with thousands separators, correctly localised)
669 +* {{code}}'%.3s'.[123.4]{{/code}} ⟹ {{code}}'123.400'{{/code}} (show 3 fractional digits, rounding half away from zero - decimal point correctly localised)
670 +* {{code}}'%,.1s'.[12345.67]'{{/code}} ⟹ {{code}}'12,345.7'{{/code}} (combination of the above)
649 649  
650 650  Additional remarks:
651 651  
... ... @@ -653,20 +653,28 @@
653 653  * If "," is used without "." then any fractional digits are discarded.
654 654  * "." must be followed by a single digit (0-9). In case of ".0" any fractional digits are discarded (rounding towards zero, not half away from zero).
655 655  
656 -{{info}}
657 -There are also special methods to [[NULL|format money values and time values]] using the "formatted" property.
658 -{{/info}}
659 659  
679 +{{info body="There are also special methods to [[NULL|format money values and time values]] using the "/}}
680 +
681 +
682 +
683 +\\
684 +
685 +(% id="categorybroken_macroanchorlists" %)
686 +
687 +
660 660  == Lists ==
661 661  
662 -Another example for a non-numeric value is a list: It is an ordered collection of other arbitrary values (called array or vector in other languages). It can be constructed within an expression using the [[~[~] syntax>>MediaWiki.NULL]]. It may also be generated by special actions and conditions, and there are actions that can [[insert or remove values>>MediaWiki.NULL]].
690 +Another example for a non-numeric value is a list: It is an ordered collection of other arbitrary values (called array or vector in other languages). It can be constructed within an expression using the [[~[~] syntax>>xwiki:MediaWiki.NULL.WebHome]]. It may also be generated by special actions and conditions, and there are actions that can [[insert or remove values>>xwiki:MediaWiki.NULL.WebHome]].
663 663  
664 -A list can contain values of arbitrary data types, even mixed in the same list - so a list can actually contain other lists. However, some of the things that you can do with lists require that all contained elements are of a certain type. The contents of a list can be accessed via properties, see the section about [[value properties>>MediaWiki.NULL]]. Lists can be empty, these are written as "[ ]".
692 +A list can contain values of arbitrary data types, even mixed in the same list - so a list can actually contain other lists. However, some of the things that you can do with lists require that all contained elements are of a certain type. The contents of a list can be accessed via properties, see the section about [[value properties>>xwiki:MediaWiki.NULL.WebHome]]. Lists can be empty, these are written as "[ ]".
665 665  
666 666  {{info}}
667 667  When accessing a list's elements, the numbering is '''1-based''', so the first element has number 1. This is intuitive but different from 0-based numbering in most programming languages."
668 668  {{/info}}
669 669  
698 +
699 +
670 670  Lists are stored in variables as references, so multiple variables can refer to the same **shared list**: If you change a shared list through a variable, e.g. by changing the value of an element, you change it as well for all other variables. However, the operators == and != can also be used on two distinct lists to compare their elements.
671 671  
672 672  {{info}}
... ... @@ -677,29 +677,43 @@
677 677  If you know the index, simply use <remove_value/> e.g. <remove_value name="$List.{$List.count}"/>
678 678  {{/info}}
679 679  
710 +
711 +
712 +\\
713 +
680 680  (% id="categorybroken_macroanchortables" %)
715 +
716 +
681 681  == Tables ==
682 682  
683 -Tables are associative arrays - they are like lists, but you can assign values to (almost) arbitrary keys, not just to index numbers. A table is constructed within an expression using the [[table~[~] syntax>>MediaWiki.NULL]]. See the section about [[value properties>>MediaWiki.NULL]] for how to access the contents of a table. [[Creating and removing entries>>MediaWiki.NULL]] works similarly to lists, but instead of inserting, you simply assign a value to a table key. If the key does not exist yet, it will be created.
719 +Tables are associative arrays - they are like lists, but you can assign values to (almost) arbitrary keys, not just to index numbers. A table is constructed within an expression using the [[table~[~] syntax>>xwiki:MediaWiki.NULL.WebHome]]. See the section about [[value properties>>xwiki:MediaWiki.NULL.WebHome]] for how to access the contents of a table. [[Creating and removing entries>>xwiki:MediaWiki.NULL.WebHome]] works similarly to lists, but instead of inserting, you simply assign a value to a table key. If the key does not exist yet, it will be created.\\
684 684  
685 685  Almost all values are allowed as table keys, but there are a few exceptions:
686 686  
687 687  * Strings must start with '$', like variables
688 688  * null cannot be used as table key (but the number 0 is valid)
689 -* Lists, tables, groups and buildplans cannot be used as table keys
725 +* Lists, tables, groups and buildplans cannot be used as table keys\\
690 690  
727 +
691 691  These restrictions only apply to the keys, there are no restrictions for values that you assign to them. For example:
692 692  
693 -* {{code language="xml"}}table[]{{/code}} ⟹ creates an empty table
694 -* {{code language="xml"}}table[{0} = null]{{/code}} ⟹ creates a table that maps the number 0 to null
730 +* {{code}}table[]{{/code}} ⟹ creates an empty table
731 +* {{code}}table[{0} = null]{{/code}} ⟹ creates a table that maps the number 0 to null\\
695 695  
696 -* {{code language="xml"}}table[{'$foo'} = 'bar']{{/code}} ⟹ a table that maps the string '$foo' to the string 'bar'
697 -* {{code language="xml"}}table[$foo = 'bar']{{/code}} ⟹ exactly the same, just a shorter notation for string keys
698 -* {{code language="xml"}}table[foo = 'bar']{{/code}} ⟹ error, 'foo' does not start with a '$'
699 -* {{code language="xml"}}table[{1} = [], {2} = table[]] {{/code}} ⟹ a table that maps 1 to an empty list and 2 to an empty table
700 700  
701 -Just like lists, tables are stored as references, so it's possible that multiple variables reference the same table (see above).
734 +* {{code}}table[{'$foo'} = 'bar']{{/code}} ⟹ a table that maps the string '$foo' to the string 'bar'
735 +* {{code}}table[$foo = 'bar']{{/code}} ⟹ exactly the same, just a shorter notation for string keys
736 +* {{code}}table[foo = 'bar']{{/code}} ⟹ error, 'foo' does not start with a '$'
737 +* {{code}}table[{1} = [], {2} = table[]] {{/code}} ⟹ a table that maps 1 to an empty list and 2 to an empty table\\
702 702  
739 +
740 +Just like lists, tables are stored as references, so it's possible that multiple variables reference the same table (see above).\\
741 +
742 +\\
743 +
744 +(% id="categorybroken_macroanchorvalue-properties" %)
745 +
746 +
703 703  == Value properties ==
704 704  
705 705  Properties are a crucial concept in script expressions. In the previous sections you have seen mostly constant expressions, which are already evaluated when they are parsed at game start. For reading and writing variables and evaluating the game's state, properties are used.
... ... @@ -717,25 +717,28 @@
717 717  
718 718  You can look up a property by appending a dot and the key in curly braces:
719 719  
720 -* {{code language="xml"}}[100, 200, 300, 400].{1}{{/code}} ⟹ 100 (reading the first element)
721 -* {{code language="xml"}}[100, 200, ['Hello ', 'world']] .{3}.{2}{{/code}} ⟹ 'world' (second element of the inner list, which is the third element of the outer list)
722 -* {{code language="xml"}}[].{'count'}{{/code}} ⟹ 0
723 -* {{code language="xml"}}table[{21} = 42].{21}{{/code}} ⟹ 42
764 +* {{code}}[100, 200, 300, 400].{1}{{/code}} ⟹ 100 (reading the first element)
765 +* {{code}}[100, 200, ['Hello ', 'world']] .{3}.{2}{{/code}} ⟹ 'world' (second element of the inner list, which is the third element of the outer list)
766 +* {{code}}[].{'count'}{{/code}} ⟹ 0
767 +* {{code}}table[{21} = 42].{21}{{/code}} ⟹ 42\\
724 724  
769 +
725 725  In most cases the property key is a fixed string, like "name" or "class". You can write this like above:
726 726  
727 -* {{code language="xml"}}[42].{'count'}{{/code}}
728 -* {{code language="xml"}}$ship.{'name'}{{/code}}
729 -* {{code language="xml"}}$ship.{'class'}{{/code}}
730 -* {{code language="xml"}}table[$foo='bar'].{'$foo'}{{/code}}
772 +* {{code}}[42].{'count'}{{/code}}
773 +* {{code}}$ship.{'name'}{{/code}}
774 +* {{code}}$ship.{'class'}{{/code}}
775 +* {{code}}table[$foo='bar'].{'$foo'}{{/code}}\\
731 731  
777 +
732 732  But it is easier just to write the property key without braces, which is equivalent:
733 733  
734 -* {{code language="xml"}}[0].count{{/code}}
735 -* {{code language="xml"}}$ship.name{{/code}}
736 -* {{code language="xml"}}$ship.class{{/code}}
737 -* {{code language="xml"}}table[$foo='bar'].$foo{{/code}}
780 +* {{code}}[0].count{{/code}}
781 +* {{code}}$ship.name{{/code}}
782 +* {{code}}$ship.class{{/code}}
783 +* {{code}}table[$foo='bar'].$foo{{/code}}\\
738 738  
785 +
739 739  (In this case, $ship is a variable. All variables start with a "$", so they cannot be confused with keywords.)
740 740  
741 741  A list has even more properties:
... ... @@ -744,19 +744,19 @@
744 744  
745 745  **min'** and '**max'** return the minimum or maximum (all elements have to be numeric)
746 746  
747 -* {{code language="xml"}}[1, 6, 8].min{{/code}} ⟹ 1
794 +* {{code}}[1, 6, 8].min{{/code}} ⟹ 1
748 748  
749 749  **average'** returns the average (but all element types have to be compatible)
750 750  
751 -* {{code language="xml"}}[1, 6, 8].average{{/code}} ⟹ 5
798 +* {{code}}[1, 6, 8].average{{/code}} ⟹ 5
752 752  
753 753  **indexof'** is followed by another property, and the index of the first occurence of that key in the list is returned, or 0 if it's not in the list
754 754  
755 -* {{code language="xml"}}[1, 6, 8].indexof.{8}{{/code}} ⟹ 3
802 +* {{code}}[1, 6, 8].indexof.{8}{{/code}} ⟹ 3
756 756  
757 757  **clone'** creates a shallow copy of the list (i.e. lists that are contained as elements in the list are not copied, only the reference to them)
758 758  
759 -* {{code language="xml"}}[1, 6, 8].clone{{/code}} ⟹ {{code language="xml"}}[1, 6, 8]{{/code}}
806 +* {{code}}[1, 6, 8].clone{{/code}} ⟹ {{code}}[1, 6, 8]{{/code}}
760 760  
761 761  A table has different properties:
762 762  
... ... @@ -763,40 +763,53 @@
763 763  * '**clone'** creates a shallow copy of the table
764 764  * '**keys'** allows you to access data about the table's keys
765 765  
766 -However, 'keys' alone will not give you a result. 'keys' must be followed by another keyword to retrieve the desired information, for example:
813 +However, 'keys' alone will not give you a result. 'keys' must be followed by another keyword to retrieve the desired information, for example:\\
767 767  
768 768  
769 769  
770 -* {{code language="xml"}}$table.keys.list{{/code}}: Yields a list of all keys in the table (reliably sorted by key if all keys are numeric)
817 +* {{code}}$table.keys.list{{/code}}: Yields a list of all keys in the table (reliably sorted by key if all keys are numeric)\\
771 771  
772 -* {{code language="xml"}}$table.keys.sorted{{/code}}: Yields a list of all keys in the table, sorted by their associated values (which requires that all values are numeric)
773 -* {{code language="xml"}}$table.keys.random{{/code}}: A randomly chosen key (which requires that the table is non-empty)
774 774  
820 +* {{code}}$table.keys.sorted{{/code}}: Yields a list of all keys in the table, sorted by their associated values (which requires that all values are numeric)
821 +* {{code}}$table.keys.random{{/code}}: A randomly chosen key (which requires that the table is non-empty)
822 +
823 +
775 775  {{info}}
776 -The string formatting syntax that you have seen [[NULL|above]] is also based on the property system. You basically pass a list as property key to a string. Braces around the brackets are not required, so 'foo'.[...] is just a convenient alternative notation for 'foo'.{[...]}.
825 +The string formatting syntax that you have seen [[xwiki:MediaWiki.X4.X4_DocumentationX4_Game_Design0_GeneralMission_Director_Guide.NULL|above.WebHome]] is also based on the property system. You basically pass a list as property key to a string. Braces around the brackets are not required, so 'foo'.[...] is just a convenient alternative notation for 'foo'.{[...]}.
777 777  {{/info}}
778 778  
779 -=== (% id="lookup-tests-and-suppressing-errors" %)Lookup tests and suppressing errors(%%) ===
780 780  
829 +
830 +(% id="lookup-tests-and-suppressing-errors" %)=== Lookup tests and suppressing errors
831 +
832 +
833 +{{{===}}}
834 +
781 781  If you look up a property that does not exist, there will be an error, and the result will be null. To test whether a property exists, you can append a question mark "?" to the lookup, which yields true or false:
782 782  
783 -* {{code language="xml"}}$list.{5}{{/code}} ⟹ The fifth element of a list - however, if $list has less than 5 elements (and if it's also not a table with the key 5), there will be an error
784 -* {{code language="xml"}}$list.{5}?{{/code}} ⟹ true if $list exists and has the property 5, false otherwise
785 -* {{code language="xml"}}$table.$key?{{/code}} ⟹ Analogously, true if $table exists and has the string property '$key'
837 +* {{code}}$list.{5}{{/code}} ⟹ The fifth element of a list - however, if $list has less than 5 elements (and if it's also not a table with the key 5), there will be an error
838 +* {{code}}$list.{5}?{{/code}} ⟹ true if $list exists and has the property 5, false otherwise
839 +* {{code}}$table.$key?{{/code}} ⟹ Analogously, true if $table exists and has the string property '$key'\\
786 786  
841 +
787 787  The question mark can even be applied to variables:
788 788  
789 -* {{code language="xml"}}$list{{/code}} ⟹ The value stored under the name $list, or an error if there is no such variable
790 -* {{code language="xml"}}$list?{{/code}} ⟹ true if the variable exists, false otherwise
844 +* {{code}}$list{{/code}} ⟹ The value stored under the name $list, or an error if there is no such variable
845 +* {{code}}$list?{{/code}} ⟹ true if the variable exists, false otherwise
791 791  
792 792  To look up the value of a property although it may not exist, you can use the at-sign "@" as prefix:
793 793  
794 -* {{code language="xml"}}@$list.{5}{{/code}} ⟹ The result of the $list lookup if $list exists and has the property 5, otherwise null (without error message)
795 -* {{code language="xml"}}@$list{{/code}} ⟹ The list if this variable exists, null otherwise
796 -* {{code language="xml"}}@$list.{5}.{1}{{/code}} ⟹ The first element of the fifth element of $list, if it exists, null otherwise
849 +* {{code}}@$list.{5}{{/code}} ⟹ The result of the $list lookup if $list exists and has the property 5, otherwise null (without error message)
850 +* {{code}}@$list{{/code}} ⟹ The list if this variable exists, null otherwise
851 +* {{code}}@$list.{5}.{1}{{/code}} ⟹ The first element of the fifth element of $list, if it exists, null otherwise
797 797  
798 798  As you can see, an error is already prevented if any link in the property chain does not exist. But use the @ prefix with care, since error messages are really helpful for detecting problems in your scripts. The @ prefix only suppresses property-related error messages and does not change any in-game behaviour.
799 799  
855 +\\
856 +
857 +(% id="static-lookups" %)
858 +
859 +
800 800  === Static lookups ===
801 801  
802 802  There are a few data types which are basically enumerations: They only consist of a set of named values, e.g. the "class" data type, which is used for the component classes that exist in the game. For all these static enumeration classes there is a lookup value of the same name, from which you can get the named values as properties by their name. So for the type "class", there is a value "class" that can be used to access the classes.
... ... @@ -805,6 +805,10 @@
805 805  
806 806  (% style="margin-left: 0.0px;" %)
807 807  (((
868 +\\
869 +
870 +
871 +
808 808  |Data type (= value name)|Examples|Description
809 809  |class|
810 810  class.ship
... ... @@ -825,11 +825,11 @@
825 825  |profile|
826 826  profile.flat
827 827  \\profile.increasing
828 -\\profile.bell|Probability distribution profile (see [[random ranges>>MediaWiki.NULL]])
892 +\\profile.bell|Probability distribution profile (see [[random ranges>>xwiki:MediaWiki.NULL.WebHome]])
829 829  |cuestate|
830 830  cuestate.waiting
831 831  \\cuestate.active
832 -\\cuestate.complete|[[Cue states>>MediaWiki.NULL]]
896 +\\cuestate.complete|[[Cue states>>xwiki:MediaWiki.NULL.WebHome]]
833 833  |level|
834 834  level.easy
835 835  \\level.medium
... ... @@ -849,8 +849,6 @@
849 849  \\faction.argongovernment|Factions
850 850  )))
851 851  
852 -{{id name="typeof" /}}
853 -
854 854  {{info}}
855 855  With the ''typeof'' operator you can get the datatype of any expression and compare it with what you expect, for example:
856 856  
... ... @@ -865,6 +865,13 @@
865 865  There is also the datatype "tag" with the lookup name "tag" - however, this is not an enumeration type. Looking up a value by name never fails, you actually create a tag value for a given name if it does not exist. For example, if you have a typo, like "tag.mision" instead of "tag.mission", there won't be an error because any name is valid for a tag, and the tag "mision" is created on its first use."
866 866  {{/info}}
867 867  
930 +\\
931 +
932 +
933 +
934 +(% id="player-properties" %)
935 +
936 +
868 868  === Player properties ===
869 869  
870 870  You can access many player-related game properties via the keyword "player":
... ... @@ -872,15 +872,18 @@
872 872  * player.**name**: The player's name
873 873  * player.**age**: The passed in-game time since game start
874 874  * player.**money**: The money in the player's account
875 -* player.**ship**: The ship the player is currently on (not necessarily the player's ship), or null if the player is on a station
944 +* player.**ship**: The ship the player is currently on (not necessarily the player's ship), or null if the player is on a station\\
876 876  
946 +
877 877  * player.**primaryship**: The player's own ship (but the player is not necessarily on board)
878 -* player.**entity**: The actual player object
948 +* player.**entity**: The actual player object\\
879 879  
950 +
880 880  * player.**zone**, player.**sector**, player.**cluster**, player.**galaxy**: Location of the player entity
881 881  * player.**copilot**: The co-pilot NPC
882 882  
883 883  The game consists of objects of different classes (zones, ships, stations, NPCs). They have the common datatype "component", however, they have different properties, e.g. NPCs have the property "race", but ships don't.
955 +\\
884 884  
885 885  === Safe properties ===
886 886  
... ... @@ -895,21 +895,27 @@
895 895  
896 896  These properties will not cause errors when used on "null" or on a destroyed object (which may still be accessible from scripts in some cases), and produce null or false as results, respectively. (The keyword "available" is used for trades, not for objects. Trades can also become invalid.) However, when using such a property on a different data type like a number, there will still be an error.
897 897  
898 -=== (% id="categorybroken_macroanchormoney-and-time-formatting" %)Money and time formatting(%%) ===
970 +(% id="categorybroken_macroanchormoney-and-time-formatting" %)=== Money and time formatting
899 899  
972 +
973 +{{{===}}}
974 +
900 900  **[New as of X Rebirth 4.0]**
901 -\\Numbers don't have any properties, except for money and time: They have a "**formatted**" property, which allows you to get a custom string representation with more advanced options than the [[generic formatting method>>MediaWiki.NULL]] for numbers.
976 +\\Numbers don't have any properties, except for money and time: They have a "**formatted**" property, which allows you to get a custom string representation with more advanced options than the [[generic formatting method>>xwiki:MediaWiki.NULL.WebHome]] for numbers.
902 902  
903 -* {{code language="xml"}}$money.formatted.{'formatstring'}{{/code}}
904 -* {{code language="xml"}}$money.formatted.default{{/code}} (using default format string '%s')
978 +* {{code}}$money.formatted.{'formatstring'}{{/code}}
979 +* {{code}}$money.formatted.default{{/code}} (using default format string '%s')\\
905 905  
906 -* {{code language="xml"}}$time.formatted.{'formatstring'}{{/code}}
907 -* {{code language="xml"}}$time.formatted.default{{/code}} (using default format string '%T')
908 908  
982 +* {{code}}$time.formatted.{'formatstring'}{{/code}}
983 +* {{code}}$time.formatted.default{{/code}} (using default format string '%T')
984 +
909 909  In scripts, money is stored in cents, not Credits. The formatted representation always shows the value in Credits, including thousands separators.
910 910  
911 -When formatting the money value, any specifier (such as '%s') in the format string is replaced by the money value, so usually the format string only consists of this one specifier. The following modifiers can be used between '%' and the specifier character, to enable formatting options:
987 +When formatting the money value, any specifier (such as '%s') in the format string is replaced by the money value, so usually the format string only consists of this one specifier. The following modifiers can be used between '%' and the specifier character, to enable formatting options:\\
912 912  
989 +
990 +
913 913  |1-9|Truncation|To enable truncation, specify the number of relevant digits that should be displayed. If the money string is too long, it can be truncated and a metric unit prefix (e.g. k = kilo) is appended. (All digits are shown unless truncation is enabled.)
914 914  |c|Colouring|If truncation is enabled, the metric unit prefixes (e.g. k, M, G) can be coloured when displayed on the screen, using the escape sequence '\033C'.
915 915  |.|Cents|Usually money values have no cent part, since cents are not used in accounts or trades. However, single ware prices can have a non-zero cent part. (Cents are not displayed if money is truncated)
... ... @@ -924,38 +924,48 @@
924 924  * %G: Credits (truncated) in Giga format
925 925  * %T: Credits (truncated) in Tera format
926 926  * %Cr: Localised "Cr" string
927 -* %%: A % sign
1005 +* %%: A % sign\\
928 928  
929 -Examples:
930 930  
931 -* {{code language="xml"}}(1234Cr).formatted.{'%s'}{{/code}}⟹{{code language="xml"}}'1,234'{{/code}}
932 -* {{code language="xml"}}(1234Cr).formatted.default{{/code}}⟹{{code language="xml"}}'1,234'{{/code}} (same as {'%s'})
933 -* {{code language="xml"}}(1234Cr).formatted.{'%.s %Cr'}{{/code}}⟹{{code language="xml"}}'1,234.00 Cr'{{/code}}
934 -* {{code language="xml"}}(1234Cr).formatted.{'%1s'}{{/code}}⟹{{code language="xml"}}'1 k'{{/code}} (rounding towards zero)
935 -* {{code language="xml"}}(1234Cr).formatted.{'%cM'}{{/code}}⟹{{code language="xml"}}'0 M'{{/code}}
1008 +Examples:\\
936 936  
937 -For documentation of time format strings, see the Lua function ConvertTimeString() in the [[MediaWiki.ARCHIVE.XRWIKIModding_supportUI_Modding_supportLua_function_overview]].
938 938  
1011 +
1012 +* {{code}}(1234Cr).formatted.{'%s'}{{/code}}⟹{{code}}'1,234'{{/code}}
1013 +* {{code}}(1234Cr).formatted.default{{/code}}⟹{{code}}'1,234'{{/code}} (same as {'%s'})
1014 +* {{code}}(1234Cr).formatted.{'%.s %Cr'}{{/code}}⟹{{code}}'1,234.00 Cr'{{/code}}
1015 +* {{code}}(1234Cr).formatted.{'%1s'}{{/code}}⟹{{code}}'1 k'{{/code}} (rounding towards zero)
1016 +* {{code}}(1234Cr).formatted.{'%cM'}{{/code}}⟹{{code}}'0 M'{{/code}}
1017 +
1018 +For documentation of time format strings, see the Lua function ConvertTimeString() in the [[xwiki:MediaWiki.ARCHIVE.XRWIKIModding_supportUI_Modding_supportLua_function_overview.WebHome]].
1019 +
939 939  Examples:
940 940  
941 -* {{code language="xml"}}(151s).formatted.{'%T'}{{/code}} ⟹ {{code language="xml"}}'00:02:31'{{/code}}
942 -* {{code language="xml"}}(151s).formatted.default{{/code}} ⟹ {{code language="xml"}}'00:02:31'{{/code}} (same as {'%T'})
943 -* {{code language="xml"}}(151s).formatted.{'%.3T'}{{/code}} ⟹ {{code language="xml"}}'00:02:31.000'{{/code}}
944 -* {{code language="xml"}}(151s).formatted.{'%h:%M'}{{/code}} ⟹ {{code language="xml"}}'0:02'{{/code}}
1022 +* {{code}}(151s).formatted.{'%T'}{{/code}} ⟹ {{code}}'00:02:31'{{/code}}
1023 +* {{code}}(151s).formatted.default{{/code}} ⟹ {{code}}'00:02:31'{{/code}} (same as {'%T'})
1024 +* {{code}}(151s).formatted.{'%.3T'}{{/code}} ⟹ {{code}}'00:02:31.000'{{/code}}
1025 +* {{code}}(151s).formatted.{'%h:%M'}{{/code}} ⟹ {{code}}'0:02'{{/code}}
945 945  
1027 +(% id="complete-property-documentation" %)
1028 +
1029 +
946 946  === Complete property documentation ===
947 947  
948 948  To access the script property documentation that is included in the game, you can extract the required files from the game's catalog files using the [[X Catalog Tool>>url:https://forum.egosoft.com/viewtopic.php?t=363625]]. Extract the HTML file __scriptproperties.html__ in the game's root folder, and all files in the "libraries" sub-folder. For resolving text references in the browser automatically, also extract 0001-L044.xml in the "t" sub-folder.
949 949  
950 -The raw documentation data is located in libraries/scriptproperties.xml, but it is recommended to open scriptproperties.html in a browser.
1034 +The raw documentation data is located in libraries/scriptproperties.xml, but it is recommended to open scriptproperties.html in a browser.\\
951 951  
1036 +
1037 +
952 952  {{info}}
953 953  scriptproperties.html has to load files from different folders, which modern browsers do not allow by default for security reasons. In order to open scriptproperties.html, the following is required:
954 954  
955 955  * Firefox: On the about:config page, the value of "security.fileuri.strict_origin_policy" has to be changed to "false".
956 -* Chrome: The Chrome launcher has to be started with the command-line parameter --allow-file-access-from-files--
1042 +* Chrome: The Chrome launcher has to be started with the command-line parameter --allow-file-access-from-files
957 957  {{/info}}
958 958  
1045 +
1046 +
959 959  This provides you with a complete list of all supported "base keywords" and properties. To filter in this list, you can enter an expression in the text field:
960 960  
961 961  * Enter the beginning of a base keyword
... ... @@ -964,14 +964,30 @@
964 964  * After the dot, you can enter a property name
965 965  * You can also enter a dot (".") as first character to search globally for a property
966 966  
1055 +\\
1056 +
1057 +
1058 +
967 967  {{info}}
968 968  The documentation contains some data types that are no real script data types, but which are useful for documentation purposes. For example, ships and stations are both of datatype "component", but have different properties based on their component class.
969 969  {{/info}}
970 970  
1063 +
1064 +
1065 +\\
1066 +
1067 +(% id="md-refreshing-and-patching" %)
1068 +
1069 +
971 971  = MD refreshing and patching =
972 972  
973 973  When a saved game is loaded, the saved MD state is restored, but also all MD files are reloaded and changes in them are applied to the MD state. This is called "refresh". It is also possible to refresh the MD at run-time using the command "refreshmd" on the in-game command line. This is a convenient way to update MD scripts while the game is already running.
974 974  
1074 +\\
1075 +
1076 +(% id="details-and-restrictions" %)
1077 +
1078 +
975 975  == Details and restrictions ==
976 976  
977 977  Here are some noteworthy facts about refreshing scripts and cues, and the restrictions:
... ... @@ -991,6 +991,10 @@
991 991  * Changing instantiate="false" to "true" turns the cue into "waiting" state if it was active or complete before.
992 992  * Changing instantiate="true" to "false" removes all instantiated cues and their descendants.
993 993  
1098 +\\
1099 +
1100 +
1101 +
994 994  {{warning}}
995 995  Be aware that completed instances can be auto-deleted, and so added sub-cues will not become active in such a case.
996 996  {{/warning}}
... ... @@ -999,18 +999,19 @@
999 999  When adding a variable in a new MD script version and using that variable in multiple places, be aware that the variable doesn't exist yet in older savegames. You may have to check the existence of the variable before accessing it, or add some patch logic that initiailses the variable after loading the savegame, if necessary.
1000 1000  {{/warning}}
1001 1001  
1110 +
1111 +
1112 +\\
1113 +
1114 +(% id="patching" %)
1115 +
1116 +
1002 1002  == Patching ==
1003 1003  
1004 1004  Cues can have **<patch>** elements with actions that will be performed when an old savegame is loaded. To control which savegames should be affected, you can add a //**version **//attribute to the <cue> node and a //**sinceversion**// attribute in the patch. When a cue is loaded from a savegame that has an older version than //sinceversion//, the <patch> actions will be performed immediately after loading.
1005 1005  
1006 -{{code language="xml"}}
1007 - <cue [...] version="42">
1008 - <conditions> [...] </conditions>
1009 - <actions> [...] </actions>
1010 - <patch sinceversion="42">
1011 - [patch actions]
1012 - </patch>
1013 - </cue>
1121 +{{code}}
1122 +<cue [...] version="42"> <conditions> [...] </conditions> <actions> [...] </actions> <patch sinceversion="42"> [patch actions] </patch></cue>
1014 1014  {{/code}}
1015 1015  
1016 1016  The patch actions are only performed if the cue is in a certain state, "complete" by default. Use the //**state**// attribute to change this requirement. For more information, see the XML schema documentation of the <patch> element.
... ... @@ -1021,27 +1021,34 @@
1021 1021  The <patch> elements will be ignored when refreshing the MD at run-time. They only affect loaded savegames."
1022 1022  {{/info}}
1023 1023  
1133 +
1134 +
1135 +\\
1136 +
1137 +(% id="common-attribute-groups" %)
1138 +
1139 +
1024 1024  = Common attribute groups =
1025 1025  
1026 1026  There are many commonly used actions and conditions which share groups of attributes. The most important ones are explained here.
1027 1027  
1144 +\\
1145 +
1146 +(% id="categorybroken_macroanchorvalue-comparisons" %)
1147 +
1148 +
1028 1028  == Value comparisons ==
1029 1029  
1030 1030  There are many conditions and conditional actions that require a value comparison, for example the condition <check_value>:
1031 1031  
1032 -{{code language="xml"}}
1033 - <check_value value="$ware == ware.silicon and $amount != 0"/>
1153 +{{code}}
1154 +<check_value value="$ware == ware.silicon and $amount != 0"/>
1034 1034  {{/code}}
1035 1035  
1036 1036  In the value attribute you specify a boolean expression, and if it is true (that is, not equal to zero), the condition is met. This is a special case: This condition and all other nodes that support a value comparison allows you to specify an upper limit, a lower limit, a number range, or a list of allowed values. Examples:
1037 1037  
1038 -{{code language="xml"}}
1039 - <check_value value="FooCue.state" exact="cuestate.complete"/>
1040 - <check_value value="$foo.count" min="5"/>
1041 - <check_value value="$foo" max="player.age + 1min"/>
1042 - <check_value value="player.money" min="300Cr" max="600Cr"/>
1043 - <check_value value="$method" list="[killmethod.hitbymissile, killmethod.collected]"/>
1044 - <check_value value="$attention" min="attention.visible"/>
1159 +{{code}}
1160 +<check_value value="FooCue.state" exact="cuestate.complete"/><check_value value="$foo.count" min="5"/><check_value value="$foo" max="player.age + 1min"/><check_value value="player.money" min="300Cr" max="600Cr"/><check_value value="$method" list="[killmethod.hitbymissile, killmethod.collected]"/><check_value value="$attention" min="attention.visible"/>
1045 1045  {{/code}}
1046 1046  
1047 1047  {{info}}
... ... @@ -1048,25 +1048,31 @@
1048 1048  Values of most enumeration types cannot be compared via ''min'' or ''max'' (also not via lt, gt, etc.). The only data types that can be used with ''min'' and ''max'' are numbers and the enumeration types ''level'' and ''attention'' (see Boolean operators). The ''exact'' attribute can be used with any type, and is equivalent to using the == operator."
1049 1049  {{/info}}
1050 1050  
1167 +
1168 +
1169 +\\
1170 +
1171 +(% id="categorybroken_macroanchorrandom-ranges" %)
1172 +
1173 +
1051 1051  == Random ranges ==
1052 1052  
1053 1053  If an action requires a value, e.g. when you set a variable to a value, you can have some randomisation. To specify an exact value, e.g. in <set_value>, you can write this:
1054 1054  
1055 -{{code language="xml"}}
1056 - <set_value name="$race" exact="race.teladi"/>
1178 +{{code}}
1179 +<set_value name="$race" exact="race.teladi"/>
1057 1057  {{/code}}
1058 1058  
1059 1059  To select a random element from a list, this syntax can be used:
1060 1060  
1061 -{{code language="xml"}}
1062 - <set_value name="$prime" list="[2, 3, 5, 7, 11]"/>
1184 +{{code}}
1185 +<set_value name="$prime" list="[2, 3, 5, 7, 11]"/>
1063 1063  {{/code}}
1064 1064  
1065 1065  To get a random number within a given range, you can use min/max:
1066 1066  
1067 -{{code language="xml"}}
1068 - <set_value name="$foo" min="-20" max="20"/>
1069 - <set_value name="$timeout" max="20s"/>
1190 +{{code}}
1191 +<set_value name="$foo" min="-20" max="20"/><set_value name="$timeout" max="20s"/>
1070 1070  {{/code}}
1071 1071  
1072 1072  min and max have to be compatible number types. Enumeration types are not allowed, not even level and attention. The min attribute is optional and defaults to 0 (of the number type used in max).
... ... @@ -1073,21 +1073,27 @@
1073 1073  
1074 1074  You can select one of 5 different probability distribution profiles for the random range, "flat" being the default (all values in the range are equally likely). If you select another profile, e.g. "increasing" to make higher numbers more likely, you also have to specify a scale value (integer) that is greater or equal to 2. Higher scale values result in higher peaks in the distribution profiles (probable values become even more probable).
1075 1075  
1076 -{{code language="xml"}}
1077 - <set_value name="$foo" min="-20" max="20" profile="profile.increasing" scale="4"/>
1198 +{{code}}
1199 +<set_value name="$foo" min="-20" max="20" profile="profile.increasing" scale="4"/>
1078 1078  {{/code}}
1079 1079  
1202 +(% style="color: rgb(0,0,255);text-decoration: none;" %)
1203 +\\
1080 1080  
1081 1081  = Variables and namespaces =
1082 1082  
1083 1083  As you have seen above, you can easily access variables by writing their name (including $ prefix) in an expression. Namespaces define in which cue the variables are actually stored (and from which cue they are read).
1084 1084  
1209 +(% style="color: rgb(0,0,255);text-decoration: none;" %)
1210 +
1211 +\\\\
1212 +
1085 1085  == Creating and removing variables ==
1086 1086  
1087 -You can create variables with certain actions and conditions, such as the <set_value> action:
1215 +{{{You can create variables with certain actions and conditions, such as the <set_value> action:}}}
1088 1088  
1089 -{{code language="xml"}}
1090 - <set_value name="$foo" exact="$bar + 1" />
1217 +{{code}}
1218 +<set_value name="$foo" exact="$bar + 1" />
1091 1091  {{/code}}
1092 1092  
1093 1093  <set_value> also exists as a "condition", which can be useful if you want to pass information about the conditions to the actions, that would otherwise be lost - like in a complex <check_any> event condition, where you want to create a variable only if you are in a certain check branch. (Other pseudo-conditions are <remove_value> and <debug_text>.)
... ... @@ -1094,21 +1094,18 @@
1094 1094  
1095 1095  The default operation of <set_value> is "**set**", but there are more: "**add**", "**subtract**", and "**insert**". //add// and //subtract// change the value of an existing variable, which is created as 0 if it didn't exist before. If neither //min//, //max// nor //exact// attribute is provided, an exact value of 1 is assumed.
1096 1096  
1097 -{{code language="xml"}}
1098 - <set_value name="$foo" operation="add" />
1225 +{{code}}
1226 +<set_value name="$foo" operation="add" />
1099 1099  {{/code}}
1100 1100  
1101 1101  The trick is that <set_value> not only works on variables, but also on list elements and table keys:
1102 1102  
1103 -{{code language="xml"}}
1104 - <set_value name="$list.{1}" exact="42" />
1105 - <set_value name="$table.$foo" exact="42" />
1106 -{{/code}}
1231 +{{code}}<set_value name="$list.{1}" exact="42" /><set_value name="$table.$foo" exact="42" />{{/code}}\\
1107 1107  
1108 1108  The operation //insert// is special, and it only works on lists. It inserts the value at the specified position (note that the position beyond the last element is also valid here):
1109 1109  
1110 -{{code language="xml"}}
1111 - <set_value name="$list.{1}" exact="42" operation="insert" />
1235 +{{code}}
1236 +<set_value name="$list.{1}" exact="42" operation="insert" />
1112 1112  {{/code}}
1113 1113  
1114 1114  This shifts the positions of all following elements up by one. If min/max/exact are missing, the default value is null for insertions, not 1 like in other cases.
... ... @@ -1115,9 +1115,8 @@
1115 1115  
1116 1116  Appending is easier than that. The following actions are equivalent:
1117 1117  
1118 -{{code language="xml"}}
1119 - <set_value name="$list.{$list.count + 1}" exact="42" operation="insert" />
1120 - <append_to_list name="$list" exact="42" />
1243 +{{code}}
1244 +<set_value name="$list.{$list.count + 1}" exact="42" operation="insert" /><append_to_list name="$list" exact="42" />
1121 1121  {{/code}}
1122 1122  
1123 1123  Inserting at a position below 1 or above $list.count + 1 is not possible.
... ... @@ -1124,33 +1124,32 @@
1124 1124  
1125 1125  To remove variables or list/table entries, use <remove_value>:
1126 1126  
1127 -{{code language="xml"}}
1128 - <remove_value name="$foo" />
1129 - <remove_value name="$list.{1}" />
1130 - <remove_value name="$table.$foo" />
1131 -{{/code}}
1251 +{{code}}<remove_value name="$foo" /><remove_value name="$list.{1}" /><remove_value name="$table.$foo" />{{/code}}\\
1132 1132  
1133 1133  Removing an entry from a list shifts all following elements down by one. If you want to clear an entry without removing it from the list, just use <set_value> instead.
1134 1134  
1255 +(% style="color: rgb(0,0,255);text-decoration: none;" %)
1135 1135  
1257 +\\\\
1258 +
1136 1136  == Accessing remote variables ==
1137 1137  
1138 1138  You can also read and write variables in other cues by using the variable name as property key:
1139 1139  
1140 -{{code language="xml"}}
1141 - <set_value name="OtherCue.$foo" min="0.0" max="1.0" />
1142 - <set_value name="md.OtherScript.YetAnotherCue.$bar" exact="OtherCue.$foo" />
1263 +{{code}}
1264 +<set_value name="OtherCue.$foo" min="0.0" max="1.0" /><set_value name="md.OtherScript.YetAnotherCue.$bar" exact="OtherCue.$foo" />
1143 1143  {{/code}}
1144 1144  
1145 1145  Instead of referencing a cue by name, you could also reference it via a keyword or another variable:
1146 1146  
1147 -{{code language="xml"}}
1148 - <set_value name="static.$counter" operation="add" />
1149 - <set_value name="parent.$foo" exact="42" />
1150 - <set_value name="this.$bar" exact="parent" />
1151 - <set_value name="$baz" exact="this.$bar.$foo" />
1269 +{{code}}
1270 +<set_value name="static.$counter" operation="add" /><set_value name="parent.$foo" exact="42" /><set_value name="this.$bar" exact="parent" /><set_value name="$baz" exact="this.$bar.$foo" />
1152 1152  {{/code}}
1153 1153  
1273 +(% style="color: rgb(0,0,255);text-decoration: none;" %)
1274 +
1275 +\\\\
1276 +
1154 1154  == Namespaces ==
1155 1155  
1156 1156  In the examples above, a variable was written to and read from the "this" cue. This can be necessary: the expression "$foo" may be different from the expression "this.$foo". The reason for that are namespaces.
... ... @@ -1157,16 +1157,8 @@
1157 1157  
1158 1158  Consider this case:
1159 1159  
1160 -{{code language="xml"}}
1161 -<cue name="Root">
1162 - <actions>
1163 - <set_value name="$foo" />
1164 - </actions>
1165 - <cues>
1166 - <cue name="SubCue"> [...]
1167 - </cue>
1168 - </cues>
1169 -</cue>
1283 +{{code}}
1284 +<cue name="Root"> <actions> <set_value name="$foo" /> </actions> <cues> <cue name="SubCue"> [...] </cue> </cues></cue>
1170 1170  {{/code}}
1171 1171  
1172 1172  When the root cue creates $foo, the variable is stored in the Root cue directly. But SubCue and its descendants will also need access to $foo. Of course they could write "parent.$foo" or "Root.$foo", but since it's very common to have a single location for most variables in the whole cue tree, the easy solution is to write just "$foo" - because variable names are looked up in the **namespace cue**, which is the root by default. Also newly created variables end up in the namespace, and not in "this" cue.
... ... @@ -1173,6 +1173,9 @@
1173 1173  
1174 1174  You can also use the keyword "**namespace**" in expressions to get the namespace cue.
1175 1175  
1291 +(% id="defining-a-cues-namespace" %)
1292 +
1293 +
1176 1176  === Defining a cue's namespace ===
1177 1177  
1178 1178  When writing a cue, you can specify what the namespace of the cue should be, by adding the //**namespace**// attribute. The following values are possible:
... ... @@ -1181,13 +1181,12 @@
1181 1181  * **static**: Same as "this", but when instantiated, use the static cue: $foo == static.$foo
1182 1182  * **default**: The namespace is inherited from the parent cue. The default for root cues and for libraries is the same as "static".
1183 1183  
1302 +(% style="color: rgb(0,0,255);text-decoration: none;" %)
1303 +
1304 +
1305 +
1184 1184  {{warning}}
1185 1185  Although in general the expression "$foo == namespace.$foo" is true, there is one exception: When library parameters are evaluated in the referencing cue, variables are resolved using the parent's namespace. However, the referencing cue creates a new namespace, so the namespace keyword already points to the library, not to the parent's namespace. Example:
1186 1186  
1187 -{{code language="xml"}}
1188 -<cue name="LibRef" ref="Lib">
1189 - <cke:param name="Param1" value="$foo" ></cke:param> <!-- $foo from parent namespace -->
1190 - <cke:param name="Param2" value="namespace.$foo" ></cke:param> <!-- LibRef.$foo (error) -->
1191 -</cue>
1192 -{{/code}}
1309 +<code><cue name="LibRef" ref="Lib"> <param name="Param1" value="$foo" /> <!-- $foo from parent namespace --> <param name="Param2" value="namespace.$foo" /> <!-- LibRef.$foo (error) --></cue></code>
1193 1193  {{/warning}}
Mission Director Guide - Instantiation.png
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