/* MD_Parola - Library for modular scrolling text and Effects See header file for comments Copyright (C) 2013 Marco Colli. All rights reserved. This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. This library is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details. You should have received a copy of the GNU Lesser General Public License along with this library; if not, write to the Free Software Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include /** * \file * \brief Implements diagonal scroll effect */ #if ENA_SCR_DIA void MD_PZone::effectDiag(bool bUp, bool bLeft, bool bIn) // Scroll the display diagonally up or down, left or right, depending on the selected effect { if (bIn) // incoming { switch (_fsmState) { case INITIALISE: PRINT_STATE("I DIAG"); _nextPos = COL_SIZE - 1; // the position in the animation _MX->control(_zoneStart, _zoneEnd, MD_MAX72XX::WRAPAROUND, MD_MAX72XX::MD_OFF); _fsmState = PUT_CHAR; // fall through to next state case GET_FIRST_CHAR: case GET_NEXT_CHAR: case PUT_CHAR: case PAUSE: PRINT_STATE("I DIAG"); zoneClear(); commonPrint(); // scroll each column of the display so that the message appears to be animated // Note: Directions are reversed here because we start with the message in the // middle position thru commonPrint() and to see it animated moving DOWN we // need to scroll it UP, and vice versa. if (bLeft) { for (int16_t j = _nextPos; j <= ZONE_END_COL(_zoneEnd); j++) // for each column { uint8_t c = _MX->getColumn(j); for (int8_t i = _nextPos; i > 0; i--) { c = (bUp ? c << 1 : c >> 1); if (_inverted) c |= (bUp ? 0x01 : 0x80); } _MX->setColumn(j - _nextPos, c); } // clear last few columns to the left of the text displayed for (int16_t j = 0; j < _nextPos; j++) _MX->setColumn(ZONE_END_COL(_zoneEnd) - j, EMPTY_BAR); } else // going right { for (int16_t j = ZONE_END_COL(_zoneEnd) - _nextPos + 1; j >= ZONE_START_COL(_zoneStart); j--) // for each column { uint8_t c = _MX->getColumn(j); for (int8_t i = _nextPos; i > 0; i--) { c = (bUp ? c << 1 : c >> 1); if (_inverted) c |= (bUp ? 0x01 : 0x80); } _MX->setColumn(j + _nextPos, c); } // clear last few columns to the right of the text displayed for (int16_t j = 0; j < _nextPos; j++) _MX->setColumn(ZONE_START_COL(_zoneStart) + j, EMPTY_BAR); } // check if we have finished if (_nextPos == 0) _fsmState = PAUSE; _nextPos--; break; default: PRINT_STATE("I DIAG"); _fsmState = PAUSE; } } else // exiting { switch (_fsmState) { case PAUSE: case INITIALISE: PRINT_STATE("O DIAG"); _nextPos = 0; _fsmState = PUT_CHAR; // fall through to next state case GET_FIRST_CHAR: case GET_NEXT_CHAR: case PUT_CHAR: PRINT_STATE("O DIAG"); if (bLeft) { for (int16_t j = ZONE_END_COL(_zoneEnd) - 1; j >= ZONE_START_COL(_zoneStart); j--) // for each column { uint8_t c = _MX->getColumn(j); c = (bUp ? c >> 1 : c << 1); if (_inverted) c |= (bUp ? 0x80 : 0x01); _MX->setColumn(j + 1, c); } } else // going right { for (int16_t j = ZONE_START_COL(_zoneStart) + 1; j <= ZONE_END_COL(_zoneEnd); j++) // for each column { uint8_t c = _MX->getColumn(j); c = (bUp ? c >> 1 : c << 1); if (_inverted) c |= (bUp ? 0x80 : 0x01); _MX->setColumn(j - 1, c); } } _MX->setColumn((bLeft ? ZONE_START_COL(_zoneStart) : ZONE_END_COL(_zoneEnd)), EMPTY_BAR); // fill in the end // check if we have finished if (_nextPos == COL_SIZE - 1) _fsmState = END; _nextPos++; break; default: PRINT_STATE("O DIAG"); _fsmState = END; break; } } } #endif