509 lines
16 KiB
C
509 lines
16 KiB
C
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/* Copyright (C) 2014-2016 by Jacob Alexander
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*
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* This file is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This file is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this file. If not, see <http://www.gnu.org/licenses/>.
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*/
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// ----- Includes -----
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// Compiler Includes
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#include <Lib/MacroLib.h>
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// Project Includes
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#include <led.h>
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#include <print.h>
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// Local Includes
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#include "trigger.h"
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#include "kll.h"
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// ----- Enums -----
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// Bit positions are important, passes (correct key) always trump incorrect key votes
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typedef enum TriggerMacroVote {
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TriggerMacroVote_Release = 0x10, // Correct key
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TriggerMacroVote_PassRelease = 0x18, // Correct key (both pass and release)
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TriggerMacroVote_Pass = 0x8, // Correct key
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TriggerMacroVote_DoNothingRelease = 0x4, // Incorrect key
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TriggerMacroVote_DoNothing = 0x2, // Incorrect key
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TriggerMacroVote_Fail = 0x1, // Incorrect key
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TriggerMacroVote_Invalid = 0x0, // Invalid state
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} TriggerMacroVote;
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typedef enum TriggerMacroEval {
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TriggerMacroEval_DoNothing,
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TriggerMacroEval_DoResult,
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TriggerMacroEval_DoResultAndRemove,
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TriggerMacroEval_Remove,
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} TriggerMacroEval;
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// ----- Generated KLL Variables -----
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extern const Capability CapabilitiesList[];
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extern const TriggerMacro TriggerMacroList[];
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extern TriggerMacroRecord TriggerMacroRecordList[];
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extern const ResultMacro ResultMacroList[];
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// ----- Variables -----
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// Key Trigger List Buffer and Layer Cache
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// The layer cache is set on press only, hold and release events refer to the value set on press
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extern TriggerGuide macroTriggerListBuffer[];
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extern var_uint_t macroTriggerListBufferSize;
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extern var_uint_t macroTriggerListLayerCache[];
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// Pending Trigger Macro Index List
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// * Any trigger macros that need processing from a previous macro processing loop
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// TODO, figure out a good way to scale this array size without wasting too much memory, but not rejecting macros
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// Possibly could be calculated by the KLL compiler
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// XXX It may be possible to calculate the worst case using the KLL compiler
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index_uint_t macroTriggerMacroPendingList[ TriggerMacroNum ] = { 0 };
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index_uint_t macroTriggerMacroPendingListSize = 0;
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// ----- Protected Macro Functions -----
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extern nat_ptr_t *Macro_layerLookup( TriggerGuide *guide, uint8_t latch_expire );
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extern void Macro_appendResultMacroToPendingList( const TriggerMacro *triggerMacro );
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// ----- Functions -----
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// Determine if long ResultMacro (more than 1 seqence element)
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inline uint8_t Macro_isLongResultMacro( const ResultMacro *macro )
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{
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// Check the second sequence combo length
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// If non-zero return non-zero (long sequence)
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// 0 otherwise (short sequence)
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var_uint_t position = 1;
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for ( var_uint_t result = 0; result < macro->guide[0]; result++ )
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position += ResultGuideSize( (ResultGuide*)¯o->guide[ position ] );
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return macro->guide[ position ];
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}
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// Determine if long TriggerMacro (more than 1 sequence element)
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inline uint8_t Macro_isLongTriggerMacro( const TriggerMacro *macro )
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{
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// Check the second sequence combo length
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// If non-zero return non-zero (long sequence)
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// 0 otherwise (short sequence)
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return macro->guide[ macro->guide[0] * TriggerGuideSize + 1 ];
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}
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// Votes on the given key vs. guide, short macros
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inline TriggerMacroVote Macro_evalShortTriggerMacroVote( TriggerGuide *key, TriggerGuide *guide )
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{
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// Depending on key type
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switch ( guide->type )
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{
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// Normal State Type
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case 0x00:
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// For short TriggerMacros completely ignore incorrect keys
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if ( guide->scanCode == key->scanCode )
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{
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switch ( key->state )
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{
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// Correct key, pressed, possible passing
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case 0x01:
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return TriggerMacroVote_Pass;
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// Correct key, held, possible passing or release
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case 0x02:
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return TriggerMacroVote_PassRelease;
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// Correct key, released, possible release
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case 0x03:
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return TriggerMacroVote_Release;
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}
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}
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return TriggerMacroVote_DoNothing;
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// LED State Type
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case 0x01:
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erro_print("LED State Type - Not implemented...");
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break;
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// Analog State Type
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case 0x02:
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erro_print("Analog State Type - Not implemented...");
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break;
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// Invalid State Type
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default:
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erro_print("Invalid State Type. This is a bug.");
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break;
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}
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// XXX Shouldn't reach here
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return TriggerMacroVote_Invalid;
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}
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// Votes on the given key vs. guide, long macros
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// A long macro is defined as a guide with more than 1 combo
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inline TriggerMacroVote Macro_evalLongTriggerMacroVote( TriggerGuide *key, TriggerGuide *guide )
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{
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// Depending on key type
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switch ( guide->type )
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{
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// Normal State Type
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case 0x00:
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// Depending on the state of the buffered key, make voting decision
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// Incorrect key
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if ( guide->scanCode != key->scanCode )
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{
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switch ( key->state )
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{
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// Wrong key, pressed, fail
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case 0x01:
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return TriggerMacroVote_Fail;
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// Wrong key, held, do not pass (no effect)
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case 0x02:
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return TriggerMacroVote_DoNothing;
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// Wrong key released, fail out if pos == 0
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case 0x03:
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return TriggerMacroVote_DoNothing | TriggerMacroVote_DoNothingRelease;
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}
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}
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// Correct key
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else
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{
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switch ( key->state )
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{
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// Correct key, pressed, possible passing
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case 0x01:
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return TriggerMacroVote_Pass;
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// Correct key, held, possible passing or release
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case 0x02:
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return TriggerMacroVote_PassRelease;
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// Correct key, released, possible release
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case 0x03:
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return TriggerMacroVote_Release;
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}
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}
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break;
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// LED State Type
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case 0x01:
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erro_print("LED State Type - Not implemented...");
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break;
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// Analog State Type
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case 0x02:
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erro_print("Analog State Type - Not implemented...");
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break;
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// Invalid State Type
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default:
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erro_print("Invalid State Type. This is a bug.");
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break;
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}
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// XXX Shouldn't reach here
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return TriggerMacroVote_Invalid;
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}
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// Evaluate/Update TriggerMacro
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TriggerMacroEval Macro_evalTriggerMacro( var_uint_t triggerMacroIndex )
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{
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// Lookup TriggerMacro
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const TriggerMacro *macro = &TriggerMacroList[ triggerMacroIndex ];
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TriggerMacroRecord *record = &TriggerMacroRecordList[ triggerMacroIndex ];
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// Check if macro has finished and should be incremented sequence elements
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if ( record->state == TriggerMacro_Release )
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{
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record->state = TriggerMacro_Waiting;
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record->pos = record->pos + macro->guide[ record->pos ] * TriggerGuideSize + 1;
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}
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// Current Macro position
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var_uint_t pos = record->pos;
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// Length of the combo being processed
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uint8_t comboLength = macro->guide[ pos ] * TriggerGuideSize;
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// If no combo items are left, remove the TriggerMacro from the pending list
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if ( comboLength == 0 )
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{
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return TriggerMacroEval_Remove;
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}
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// Check if this is a long Trigger Macro
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uint8_t longMacro = Macro_isLongTriggerMacro( macro );
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// Iterate through the items in the combo, voting the on the key state
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// If any of the pressed keys do not match, fail the macro
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//
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// The macro is waiting for input when in the TriggerMacro_Waiting state
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// Once all keys have been pressed/held (only those keys), entered TriggerMacro_Press state (passing)
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// Transition to the next combo (if it exists) when a single key is released (TriggerMacro_Release state)
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// On scan after position increment, change to TriggerMacro_Waiting state
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// TODO Add support for system LED states (NumLock, CapsLock, etc.)
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// TODO Add support for analog key states
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// TODO Add support for 0x00 Key state (not pressing a key, not all that useful in general)
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// TODO Add support for Press/Hold/Release differentiation when evaluating (not sure if useful)
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TriggerMacroVote overallVote = TriggerMacroVote_Invalid;
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for ( uint8_t comboItem = pos + 1; comboItem < pos + comboLength + 1; comboItem += TriggerGuideSize )
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{
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// Assign TriggerGuide element (key type, state and scancode)
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TriggerGuide *guide = (TriggerGuide*)(¯o->guide[ comboItem ]);
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TriggerMacroVote vote = TriggerMacroVote_Invalid;
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// Iterate through the key buffer, comparing to each key in the combo
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for ( var_uint_t key = 0; key < macroTriggerListBufferSize; key++ )
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{
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// Lookup key information
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TriggerGuide *keyInfo = ¯oTriggerListBuffer[ key ];
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// If vote is a pass (>= 0x08, no more keys in the combo need to be looked at)
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// Also mask all of the non-passing votes
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vote |= longMacro
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? Macro_evalLongTriggerMacroVote( keyInfo, guide )
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: Macro_evalShortTriggerMacroVote( keyInfo, guide );
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if ( vote >= TriggerMacroVote_Pass )
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{
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vote &= TriggerMacroVote_Release | TriggerMacroVote_PassRelease | TriggerMacroVote_Pass;
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break;
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}
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}
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// If no pass vote was found after scanning all of the keys
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// Fail the combo, if this is a short macro (long macros already will have a fail vote)
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if ( !longMacro && vote < TriggerMacroVote_Pass )
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vote |= TriggerMacroVote_Fail;
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// After voting, append to overall vote
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overallVote |= vote;
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}
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// If no pass vote was found after scanning the entire combo
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// And this is the first position in the combo, just remove it (nothing important happened)
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if ( longMacro && overallVote & TriggerMacroVote_DoNothingRelease && pos == 0 )
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overallVote |= TriggerMacroVote_Fail;
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// Decide new state of macro after voting
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// Fail macro, remove from pending list
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if ( overallVote & TriggerMacroVote_Fail )
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{
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return TriggerMacroEval_Remove;
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}
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// Do nothing, incorrect key is being held or released
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else if ( overallVote & TriggerMacroVote_DoNothing && longMacro )
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{
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// Just doing nothing :)
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}
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// If ready for transition and in Press state, set to Waiting and increment combo position
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// Position is incremented (and possibly remove the macro from the pending list) on the next iteration
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else if ( overallVote & TriggerMacroVote_Release && record->state == TriggerMacro_Press )
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{
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record->state = TriggerMacro_Release;
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// If this is the last combo in the sequence, remove from the pending list
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if ( macro->guide[ record->pos + macro->guide[ record->pos ] * TriggerGuideSize + 1 ] == 0 )
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return TriggerMacroEval_DoResultAndRemove;
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}
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// If passing and in Waiting state, set macro state to Press
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else if ( overallVote & TriggerMacroVote_Pass
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&& ( record->state == TriggerMacro_Waiting || record->state == TriggerMacro_Press ) )
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{
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record->state = TriggerMacro_Press;
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// If in press state, and this is the final combo, send request for ResultMacro
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// Check to see if the result macro only has a single element
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// If this result macro has more than 1 key, only send once
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// TODO Add option to have long macro repeat rate
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if ( macro->guide[ pos + comboLength + 1 ] == 0 )
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{
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// Long result macro (more than 1 combo)
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if ( Macro_isLongResultMacro( &ResultMacroList[ macro->result ] ) )
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{
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// Only ever trigger result once, on press
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if ( overallVote == TriggerMacroVote_Pass )
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{
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return TriggerMacroEval_DoResultAndRemove;
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}
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}
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// Short result macro
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else
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{
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// Only trigger result once, on press, if long trigger (more than 1 combo)
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if ( Macro_isLongTriggerMacro( macro ) )
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{
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return TriggerMacroEval_DoResultAndRemove;
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}
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// Otherwise, trigger result continuously
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else
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{
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return TriggerMacroEval_DoResult;
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}
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}
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}
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}
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// Otherwise, just remove the macro on key release
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// One more result has to be called to indicate to the ResultMacro that the key transitioned to the release state
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else if ( overallVote & TriggerMacroVote_Release )
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{
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return TriggerMacroEval_DoResultAndRemove;
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}
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// If this is a short macro, just remove it
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// The state can be rebuilt on the next iteration
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if ( !longMacro )
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return TriggerMacroEval_Remove;
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return TriggerMacroEval_DoNothing;
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}
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// Update pending trigger list
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inline void Macro_updateTriggerMacroPendingList()
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{
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// Iterate over the macroTriggerListBuffer to add any new Trigger Macros to the pending list
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for ( var_uint_t key = 0; key < macroTriggerListBufferSize; key++ )
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{
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// TODO LED States
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// TODO Analog Switches
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// Only add TriggerMacro to pending list if key was pressed (not held, released or off)
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if ( macroTriggerListBuffer[ key ].state == 0x00 && macroTriggerListBuffer[ key ].state != 0x01 )
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continue;
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// TODO Analog
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// If this is a release case, indicate to layer lookup for possible latch expiry
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uint8_t latch_expire = macroTriggerListBuffer[ key ].state == 0x03;
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// Lookup Trigger List
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nat_ptr_t *triggerList = Macro_layerLookup( ¯oTriggerListBuffer[ key ], latch_expire );
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// If there was an error during lookup, skip
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if ( triggerList == 0 )
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continue;
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// Number of Triggers in list
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nat_ptr_t triggerListSize = triggerList[0];
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// Iterate over triggerList to see if any TriggerMacros need to be added
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// First item is the number of items in the TriggerList
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for ( var_uint_t macro = 1; macro < triggerListSize + 1; macro++ )
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{
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// Lookup trigger macro index
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var_uint_t triggerMacroIndex = triggerList[ macro ];
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// Iterate over macroTriggerMacroPendingList to see if any macro in the scancode's
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// triggerList needs to be added
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var_uint_t pending = 0;
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for ( ; pending < macroTriggerMacroPendingListSize; pending++ )
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{
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// Stop scanning if the trigger macro index is found in the pending list
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if ( macroTriggerMacroPendingList[ pending ] == triggerMacroIndex )
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break;
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}
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// If the triggerMacroIndex (macro) was not found in the macroTriggerMacroPendingList
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// Add it to the list
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if ( pending == macroTriggerMacroPendingListSize )
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{
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macroTriggerMacroPendingList[ macroTriggerMacroPendingListSize++ ] = triggerMacroIndex;
|
||
|
|
||
|
// Reset macro position
|
||
|
TriggerMacroRecordList[ triggerMacroIndex ].pos = 0;
|
||
|
TriggerMacroRecordList[ triggerMacroIndex ].state = TriggerMacro_Waiting;
|
||
|
}
|
||
|
}
|
||
|
}
|
||
|
}
|
||
|
|
||
|
|
||
|
|
||
|
void Trigger_state( uint8_t type, uint8_t state, uint8_t index )
|
||
|
{
|
||
|
}
|
||
|
|
||
|
|
||
|
uint8_t Trigger_update( uint8_t type, uint8_t state, uint8_t index )
|
||
|
{
|
||
|
return 0;
|
||
|
}
|
||
|
|
||
|
|
||
|
void Trigger_setup()
|
||
|
{
|
||
|
// Initialize TriggerMacro states
|
||
|
for ( var_uint_t macro = 0; macro < TriggerMacroNum; macro++ )
|
||
|
{
|
||
|
TriggerMacroRecordList[ macro ].pos = 0;
|
||
|
TriggerMacroRecordList[ macro ].state = TriggerMacro_Waiting;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
|
||
|
void Trigger_process()
|
||
|
{
|
||
|
// Update pending trigger list, before processing TriggerMacros
|
||
|
Macro_updateTriggerMacroPendingList();
|
||
|
|
||
|
// Tail pointer for macroTriggerMacroPendingList
|
||
|
// Macros must be explicitly re-added
|
||
|
var_uint_t macroTriggerMacroPendingListTail = 0;
|
||
|
|
||
|
// Iterate through the pending TriggerMacros, processing each of them
|
||
|
for ( var_uint_t macro = 0; macro < macroTriggerMacroPendingListSize; macro++ )
|
||
|
{
|
||
|
switch ( Macro_evalTriggerMacro( macroTriggerMacroPendingList[ macro ] ) )
|
||
|
{
|
||
|
// Trigger Result Macro (purposely falling through)
|
||
|
case TriggerMacroEval_DoResult:
|
||
|
// Append ResultMacro to PendingList
|
||
|
Macro_appendResultMacroToPendingList( &TriggerMacroList[ macroTriggerMacroPendingList[ macro ] ] );
|
||
|
|
||
|
default:
|
||
|
macroTriggerMacroPendingList[ macroTriggerMacroPendingListTail++ ] = macroTriggerMacroPendingList[ macro ];
|
||
|
break;
|
||
|
|
||
|
// Trigger Result Macro and Remove (purposely falling through)
|
||
|
case TriggerMacroEval_DoResultAndRemove:
|
||
|
// Append ResultMacro to PendingList
|
||
|
Macro_appendResultMacroToPendingList( &TriggerMacroList[ macroTriggerMacroPendingList[ macro ] ] );
|
||
|
|
||
|
// Remove Macro from Pending List, nothing to do, removing by default
|
||
|
case TriggerMacroEval_Remove:
|
||
|
break;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
// Update the macroTriggerMacroPendingListSize with the tail pointer
|
||
|
macroTriggerMacroPendingListSize = macroTriggerMacroPendingListTail;
|
||
|
}
|
||
|
|