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201 lines
4.9 KiB
201 lines
4.9 KiB
/* |
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* clock.c: |
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* Demo of the 128x64 graphics based LCD driver. |
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* This is designed to drive the parallel interface LCD drivers |
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* based on the popular 12864H controller chip. |
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* |
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* This test program assumes the following: |
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* (Which is currently hard-wired into the driver) |
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* |
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* GPIO 0-7 is connected to display data pins 0-7. |
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* GPIO 10 is CS1 |
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* GPIO 11 is CS2 |
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* GPIO 12 is STROBE |
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* GPIO 10 is RS |
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* |
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* Copyright (c) 2012-2013 Gordon Henderson. |
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*********************************************************************** |
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* This file is part of wiringPi: |
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* https://projects.drogon.net/raspberry-pi/wiringpi/ |
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* |
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* wiringPi is free software: you can redistribute it and/or modify |
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* it under the terms of the GNU Lesser 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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* wiringPi 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 Lesser General Public License for more details. |
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* |
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* You should have received a copy of the GNU Lesser General Public License |
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* along with wiringPi. If not, see <http://www.gnu.org/licenses/>. |
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*********************************************************************** |
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*/ |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <stdint.h> |
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#include <unistd.h> |
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#include <string.h> |
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#include <errno.h> |
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#include <time.h> |
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#include <math.h> |
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#include <wiringPi.h> |
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#include <lcd128x64.h> |
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#ifndef TRUE |
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# define TRUE (1==1) |
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# define FALSE (1==2) |
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#endif |
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double clockRadius ; |
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double thickness, barLen ; |
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int maxX, maxY ; |
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double rads (double degs) |
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{ |
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return degs * M_PI / 180.0 ; |
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} |
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void drawClockHands (void) |
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{ |
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time_t t ; |
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struct tm *now ; |
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double angle, p, x0, y0, x1, y1 ; |
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int h24, h, m, s ; |
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char text [20] ; |
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time (&t) ; |
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now = localtime (&t) ; |
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h24 = now->tm_hour ; |
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m = now->tm_min ; |
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s = now->tm_sec ; |
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h = h24 ; |
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if (h > 12) |
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h -= 12 ; |
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// Hour hand |
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angle = h * 30 + m * 0.5 ; |
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x0 = sin (rads (angle)) * (clockRadius * 0.75) ; |
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y0 = cos (rads (angle)) * (clockRadius * 0.75) ; |
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for (p = -3.0 ; p <= 3.0 ; p += 0.2) |
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{ |
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x1 = sin (rads (angle + p)) * (clockRadius * 0.7) ; |
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y1 = cos (rads (angle + p)) * (clockRadius * 0.7) ; |
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lcd128x64line (0, 0, x1, y1, 1) ; |
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lcd128x64lineTo (x0, y0, 1) ; |
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} |
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// Minute hand |
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angle = m * 6 ; |
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x0 = sin (rads (angle)) * (clockRadius * 0.9) ; |
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y0 = cos (rads (angle)) * (clockRadius * 0.9) ; |
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for (p = -1.0 ; p <= 1.0 ; p += 0.2) |
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{ |
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x1 = sin (rads (angle + p)) * (clockRadius * 0.85) ; |
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y1 = cos (rads (angle + p)) * (clockRadius * 0.85) ; |
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lcd128x64line (0, 0, x1, y1, 1) ; |
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lcd128x64lineTo (x0, y0, 1) ; |
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} |
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// Second hand |
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angle = s * 6 ; |
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x0 = sin (rads (angle)) * (clockRadius * 0.2) ; |
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y0 = cos (rads (angle)) * (clockRadius * 0.2) ; |
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x1 = sin (rads (angle)) * (clockRadius * 0.95) ; |
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y1 = cos (rads (angle)) * (clockRadius * 0.95) ; |
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lcd128x64line (0 - x0, 0 - y0, x1, y1, 1) ; |
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lcd128x64circle (0, 0, clockRadius * 0.1, 0, 1) ; |
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lcd128x64circle (0, 0, clockRadius * 0.05, 1, 1) ; |
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// Text: |
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sprintf (text, "%02d:%02d:%02d", h24, m, s) ; |
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lcd128x64puts (32, 24, text, 0, 1) ; |
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sprintf (text, "%2d/%2d/%2d", now->tm_mday, now->tm_mon + 1, now->tm_year - 100) ; |
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lcd128x64puts (32, -23, text, 0, 1) ; |
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} |
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void drawClockFace (void) |
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{ |
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int m ; |
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double d, px1, py1, px2, py2 ; |
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lcd128x64clear (0) ; |
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lcd128x64circle (0,0, clockRadius, 1, TRUE) ; |
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lcd128x64circle (0,0, clockRadius - thickness, 0, TRUE) ; |
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// The four big indicators for 12,15,30 and 45 |
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lcd128x64rectangle (- 3, clockRadius - barLen, 3, clockRadius, 1, TRUE) ; // 12 |
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lcd128x64rectangle (clockRadius - barLen, 3, clockRadius, -3, 1, TRUE) ; // 3 |
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lcd128x64rectangle (- 3, -clockRadius + barLen, 3, -clockRadius, 1, TRUE) ; // 6 |
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lcd128x64rectangle (-clockRadius + barLen, 3, -clockRadius, -3, 1, TRUE) ; // 9 |
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// Smaller 5 and 1 minute ticks |
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for (m = 0 ; m < 60 ; ++m) |
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{ |
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px1 = sin (rads (m * 6)) * clockRadius ; |
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py1 = cos (rads (m * 6)) * clockRadius ; |
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if ((m % 5) == 0) |
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d = barLen ; |
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else |
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d = barLen / 2.0 ; |
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px2 = sin (rads (m * 6)) * (clockRadius - d) ; |
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py2 = cos (rads (m * 6)) * (clockRadius - d) ; |
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lcd128x64line (px1, py1, px2, py2, 1) ; |
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} |
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} |
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void setup (void) |
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{ |
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lcd128x64getScreenSize (&maxX, &maxY) ; |
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clockRadius = maxY / 2 - 1 ; |
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thickness = maxX / 48 ; |
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barLen = thickness * 4 ; |
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lcd128x64setOrigin (32, 32) ; |
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} |
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/* |
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*********************************************************************** |
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* The main program |
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*********************************************************************** |
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*/ |
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int main (int argc, char *argv []) |
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{ |
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time_t now ; |
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wiringPiSetup () ; |
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lcd128x64setup () ; |
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setup () ; |
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for (;;) |
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{ |
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drawClockFace () ; |
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drawClockHands () ; |
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lcd128x64update () ; |
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now = time (NULL) ; |
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while (time (NULL) == now) |
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delay (10) ; |
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} |
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return 0 ; |
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}
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