This means that the "Keyboard Setup" should now properly reflect the bindings,
except in the theoretical case of one gamefunc being bound more than two keys.
(What was fixed is the one key to many gamefuncs case.)
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That section was only ever read in for little profit and never written
out! Keyboard input is actually dispatched as OSD commands for a good
while, so that old cruft has to go!
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- Remove everything using CONTROL_KeyMapping, which was only written to.
- Remove unused functions, make local ones static.
- Remove private function declarations in _control.h.
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Credit to Plagman for the idea and doing the work on the game side, which is included in this commit.
(Building as C++ will give us features with which we can make improvements and optimizations on the multiplayer code and Polymer.)
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This is done by pressing LShift and
- holding down the left mouse button for scaling, or
- the right mouse button for rotating the highlighted walls/sprites
with respect to a pivot point determined as the center of the bounding box of
all highlighted points.
Note that scaling sectors isn't that easy and the current functionality is very
rudimentary: there's no z scaling, no xrepeat correction, and sprites aren't
touched expect for their position. The user is responsible to maintain map
consistency, for example to prevent wall-lines of the same sector crossing
each other.
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Currently, the FPS determination is based on libvpx's vpxdec.c code, which uses
the FPS provided in the IVF file in one case, and simply sets it to 30 FPS in
the other. For the first case, a "correction" is carried out for something
which the comments suggest to originate from other (old?) VPX encoder versions.
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When LShift is pressed and the mouse is over a linking sprite (as determined by
the tag labeling system), lines are drawn to all other sprites, and pressing
[ or ] will cycle these then. False positives and missed sprites are possible.
Additional changes:
- consider SE 31 and 32's lotag to NOT be linking, since the ACTIVATOR is what
matters. The original maps are inconsistent there.
- When pressing Alt+[ or Alt+] and there are no corruptions, say so instead of
doing [ or ].
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This event is useful in certain circumstances where you want to skip a menu/screen value and the design of the monster switch statement would require the M_ChangeMenu() call to be intercepted or the unwanted screen will flash for a split second.
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These control the maximum difference in height between two sectors that the player will automatically traverse without needing to jump.
The latter controls the special case when the player's sector's lotag is ST_1_ABOVE_WATER or p->spritebridge == 1.
BYTEVERSION bumped.
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* Centralize optimization strategies in Makefile.common. This required moving detection of $(PLATFORM), which makes sense if we work on the paradigm that Makefile.common is for generic compiler setup and Makefile.shared works with libraries and things closer to the engine and game code itself.
* New Makefile variables OPTOPT (Optimization Options) and CUSTOMOPT (Custom Optimizations). OPTOPT by default contains -march, -mtune, etc. Setting this variable from Make invocation will blank these. CUSTOMOPT (Custom Optimizations) works the same but in an additive fashion, overwriting nothing. Technically CUSTOMOPT could stand for (Custom Options) and include any additional parameters sent to both linker and compiler.
* Factor out literal names of the main executables.
* The build process now prints assembler (if NOASM=0) and linker settings in addition to compiler settings.
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This commit also adds the NOTELEPORT sprite flag, which of course prevents sprites from teleporting.
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And hook it up to SE cstat 64 ('1' in mapster32). This disables both lightmaps
and shadow maps for the spotlight; please let me know if you have a usecase
where you want lightmaps but no shadow maps for specific lights.
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Submersion only happens when the upper sector has lotag 1 and its vertical
neighbor has lotag 2 (this can be useful to create non-submergible above-water
sectors). Currently, only the player is handled. On the implementation side,
the water handling code is split into P_Submerge() and P_Emerge() preparing the
"teleportation", and P_FinishWaterChange() for the finalization.
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Initial determination is based purely on distance/volume, and if two qualifying sounds have the same distance/volume the one which started playback first is the one that gets the axe.
Feedback from other developers welcome.
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