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https://github.com/qmk/qmk_firmware.git
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b829a1d264
* Add fast_timer_t that is 16-bit or 32-bit based on architecture A 16-bit timer will overflow sooner but be faster to compare on AVR. * Avoid 8-bit timer overflows in debounce algorithms Count down remaining elapsed time instead of trying to do 8-bit timer comparisons. Add a "none" implementation that is automatically used if DEBOUNCE is 0 otherwise it will break the _pk/_pr count down. * Avoid unnecessary polling of the entire matrix in sym_eager_pk The matrix only needs to be updated when a debounce timer expires. * Avoid unnecessary polling of the entire matrix in sym_eager_pr The matrix only needs to be updated when a debounce timer expires. The use of the "needed_update" variable is trying to do what "matrix_need_update" was added to fix but didn't work because it only applied when all keys finished debouncing. * Fix sym_defer_g timing inconsistency compared to other debounce algorithms DEBOUNCE=5 should process the key after 5ms, not 6ms * Add debounce tests
224 lines
5.4 KiB
C++
224 lines
5.4 KiB
C++
/* Copyright 2021 Simon Arlott
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*
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* This program 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 2 of the License, or
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* (at your option) any later version.
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*
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* This program 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 program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "gtest/gtest.h"
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#include "debounce_test_common.h"
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TEST_F(DebounceTest, OneKeyShort1) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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{5, {}, {{0, 1, DOWN}}},
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/* 0ms delay (fast scan rate) */
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{5, {{0, 1, UP}}, {}},
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{10, {}, {{0, 1, UP}}},
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});
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runEvents();
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}
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TEST_F(DebounceTest, OneKeyShort2) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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{5, {}, {{0, 1, DOWN}}},
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/* 1ms delay */
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{6, {{0, 1, UP}}, {}},
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{11, {}, {{0, 1, UP}}},
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});
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runEvents();
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}
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TEST_F(DebounceTest, OneKeyShort3) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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{5, {}, {{0, 1, DOWN}}},
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/* 2ms delay */
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{7, {{0, 1, UP}}, {}},
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{12, {}, {{0, 1, UP}}},
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});
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runEvents();
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}
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TEST_F(DebounceTest, OneKeyTooQuick1) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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/* Release key exactly on the debounce time */
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{5, {{0, 1, UP}}, {}},
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});
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runEvents();
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}
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TEST_F(DebounceTest, OneKeyTooQuick2) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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{5, {}, {{0, 1, DOWN}}},
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{6, {{0, 1, UP}}, {}},
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/* Press key exactly on the debounce time */
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{11, {{0, 1, DOWN}}, {}},
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});
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runEvents();
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}
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TEST_F(DebounceTest, OneKeyBouncing1) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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{1, {{0, 1, UP}}, {}},
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{2, {{0, 1, DOWN}}, {}},
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{3, {{0, 1, UP}}, {}},
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{4, {{0, 1, DOWN}}, {}},
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{5, {{0, 1, UP}}, {}},
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{6, {{0, 1, DOWN}}, {}},
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{11, {}, {{0, 1, DOWN}}}, /* 5ms after DOWN at time 7 */
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});
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runEvents();
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}
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TEST_F(DebounceTest, OneKeyBouncing2) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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{5, {}, {{0, 1, DOWN}}},
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{6, {{0, 1, UP}}, {}},
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{7, {{0, 1, DOWN}}, {}},
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{8, {{0, 1, UP}}, {}},
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{9, {{0, 1, DOWN}}, {}},
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{10, {{0, 1, UP}}, {}},
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{15, {}, {{0, 1, UP}}}, /* 5ms after UP at time 10 */
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});
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runEvents();
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}
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TEST_F(DebounceTest, OneKeyLong) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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{5, {}, {{0, 1, DOWN}}},
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{25, {{0, 1, UP}}, {}},
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{30, {}, {{0, 1, UP}}},
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{50, {{0, 1, DOWN}}, {}},
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{55, {}, {{0, 1, DOWN}}},
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});
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runEvents();
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}
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TEST_F(DebounceTest, TwoKeysShort) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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{1, {{0, 2, DOWN}}, {}},
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{6, {}, {{0, 1, DOWN}, {0, 2, DOWN}}},
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{7, {{0, 1, UP}}, {}},
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{8, {{0, 2, UP}}, {}},
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{13, {}, {{0, 1, UP}, {0, 2, UP}}},
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});
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runEvents();
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}
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TEST_F(DebounceTest, TwoKeysSimultaneous1) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}, {0, 2, DOWN}}, {}},
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{5, {}, {{0, 1, DOWN}, {0, 2, DOWN}}},
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{6, {{0, 1, UP}, {0, 2, UP}}, {}},
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{11, {}, {{0, 1, UP}, {0, 2, UP}}},
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});
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runEvents();
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}
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TEST_F(DebounceTest, TwoKeysSimultaneous2) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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{1, {{0, 2, DOWN}}, {}},
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{5, {}, {}},
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{6, {}, {{0, 1, DOWN}, {0, 2, DOWN}}},
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{7, {{0, 1, UP}}, {}},
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{8, {{0, 2, UP}}, {}},
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{13, {}, {{0, 1, UP}, {0, 2, UP}}},
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});
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runEvents();
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}
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TEST_F(DebounceTest, OneKeyDelayedScan1) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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/* Processing is very late */
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{300, {}, {{0, 1, DOWN}}},
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/* Immediately release key */
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{300, {{0, 1, UP}}, {}},
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{305, {}, {{0, 1, UP}}},
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});
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time_jumps_ = true;
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runEvents();
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}
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TEST_F(DebounceTest, OneKeyDelayedScan2) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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/* Processing is very late */
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{300, {}, {{0, 1, DOWN}}},
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/* Release key after 1ms */
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{301, {{0, 1, UP}}, {}},
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{306, {}, {{0, 1, UP}}},
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});
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time_jumps_ = true;
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runEvents();
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}
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TEST_F(DebounceTest, OneKeyDelayedScan3) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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/* Release key before debounce expires */
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{300, {{0, 1, UP}}, {}},
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});
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time_jumps_ = true;
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runEvents();
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}
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TEST_F(DebounceTest, OneKeyDelayedScan4) {
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addEvents({ /* Time, Inputs, Outputs */
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{0, {{0, 1, DOWN}}, {}},
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/* Processing is a bit late */
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{50, {}, {{0, 1, DOWN}}},
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/* Release key after 1ms */
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{51, {{0, 1, UP}}, {}},
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{56, {}, {{0, 1, UP}}},
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});
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time_jumps_ = true;
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runEvents();
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}
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