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Haptic: DInput's POLAR direction actually matches Linux's direction.
Thanks, Elias! Partially fixes Bugzilla #2686.
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@ -370,7 +370,7 @@ typedef struct _SDL_Haptic SDL_Haptic;
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^
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(1,0) West <----[ HAPTIC ]----> East (-1,0)
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(-1,0) West <----[ HAPTIC ]----> East (1,0)
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v
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@ -395,9 +395,9 @@ typedef struct _SDL_Haptic SDL_Haptic;
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* (X axis, Y axis and Z axis (with 3 axes)). ::SDL_HAPTIC_CARTESIAN uses
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* the first three \c dir parameters. The cardinal directions would be:
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* - North: 0,-1, 0
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* - East: -1, 0, 0
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* - East: 1, 0, 0
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* - South: 0, 1, 0
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* - West: 1, 0, 0
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* - West: -1, 0, 0
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*
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* The Z axis represents the height of the effect if supported, otherwise
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* it's unused. In cartesian encoding (1, 2) would be the same as (2, 4), you
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@ -671,7 +671,7 @@ SDL_SYS_ToDirection(Uint16 *dest, SDL_HapticDirection * src)
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180 deg -> 0x8000 (up)
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270 deg -> 0xC000 (right)
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*/
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tmp = (((18000 + src->dir[0]) % 36000) * 0xFFFF) / 36000; /* convert to range [0,0xFFFF] */
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tmp = ((src->dir[0] % 36000) * 0x8000) / 18000; /* convert to range [0,0xFFFF] */
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*dest = (Uint16) tmp;
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break;
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@ -682,10 +682,10 @@ SDL_SYS_ToDirection(Uint16 *dest, SDL_HapticDirection * src)
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Polar direction, except that we have to add 90 degrees. It is the angle
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from EAST {1,0} towards SOUTH {0,1}.
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--> add 9000
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--> finally add 18000 and convert to [0,0xFFFF] as in case SDL_HAPTIC_POLAR.
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--> finally convert to [0,0xFFFF] as in case SDL_HAPTIC_POLAR.
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*/
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tmp = ((src->dir[0]) + 9000) % 36000; /* Convert to polars */
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tmp = (((18000 + tmp) % 36000) * 0xFFFF) / 36000; /* convert to range [0,0xFFFF] */
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tmp = (tmp * 0x8000) / 18000; /* convert to range [0,0xFFFF] */
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*dest = (Uint16) tmp;
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break;
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@ -699,10 +699,10 @@ SDL_SYS_ToDirection(Uint16 *dest, SDL_HapticDirection * src)
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have the first spherical value. Therefore we proceed as in case
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SDL_HAPTIC_SPHERICAL and add another 9000 to get the polar value.
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--> add 45000 in total
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--> finally add 18000 and convert to [0,0xFFFF] as in case SDL_HAPTIC_POLAR.
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--> finally convert to [0,0xFFFF] as in case SDL_HAPTIC_POLAR.
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*/
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tmp = (((int) (f * 18000. / M_PI)) + 45000) % 36000;
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tmp = (((18000 + tmp) % 36000) * 0xFFFF) / 36000; /* convert to range [0,0xFFFF] */
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tmp = (((Sint32) (f * 18000. / M_PI)) + 45000) % 36000;
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tmp = (tmp * 0x8000) / 18000; /* convert to range [0,0xFFFF] */
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*dest = (Uint16) tmp;
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break;
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