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mazegame/tools/MSXtk/qrcode/qrcodegen-demo.c
T

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C

/*
* QR Code generator demo (C)
*
* Run this command-line program with no arguments. The program
* computes a demonstration QR Codes and print it to the console.
*
* Copyright (c) Project Nayuki. (MIT License)
* https://www.nayuki.io/page/qr-code-generator-library
*
* Permission is hereby granted, free of charge, to any person obtaining a copy of
* this software and associated documentation files (the "Software"), to deal in
* the Software without restriction, including without limitation the rights to
* use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of
* the Software, and to permit persons to whom the Software is furnished to do so,
* subject to the following conditions:
* - The above copyright notice and this permission notice shall be included in
* all copies or substantial portions of the Software.
* - The Software is provided "as is", without warranty of any kind, express or
* implied, including but not limited to the warranties of merchantability,
* fitness for a particular purpose and noninfringement. In no event shall the
* authors or copyright holders be liable for any claim, damages or other
* liability, whether in an action of contract, tort or otherwise, arising from,
* out of or in connection with the Software or the use or other dealings in the
* Software.
*/
//#include <stdbool.h>
//#include <stddef.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include "qrcode.h"
// Function prototypes
static void doBasicDemo(void);
static void doVarietyDemo(void);
static void doSegmentDemo(void);
static void doMaskDemo(void);
static void printQr(const u8 qrcode[]);
// The main application program.
i16 main(void)
{
doBasicDemo();
doVarietyDemo();
//doSegmentDemo();
//doMaskDemo();
return EXIT_SUCCESS;
}
/*---- Demo suite ----*/
// Creates a single QR Code, then prints it to the console.
static void doBasicDemo(void)
{
// Make and print the QR Code symbol
u8 qrcode[QRCODE_BUFFER_LEN_MAX];
u8 tempBuffer[QRCODE_BUFFER_LEN_MAX];
#if (QRCODE_VERSION_CUSTOM)
QRCode_SetVersion(5, 5);
#endif
{
bool ok = QRCode_EncodeText("MSXgl", tempBuffer, qrcode, QRCODE_ECC_LOW, QRCODE_MASK_AUTO, TRUE);
if (ok)
printQr(qrcode);
}
{
bool ok = QRCode_EncodeText("https://aoineko.org/msxgl", tempBuffer, qrcode, QRCODE_ECC_LOW, QRCODE_MASK_AUTO, TRUE);
if (ok)
printQr(qrcode);
}
{
bool ok = QRCode_EncodeText("https://aoineko.org/msxgl?g=012&c=0123456789ABCDEF", tempBuffer, qrcode, QRCODE_ECC_LOW, QRCODE_MASK_AUTO, TRUE);
if (ok)
printQr(qrcode);
}
}
// Creates a variety of QR Codes that exercise different features of the library, and prints each one to the console.
static void doVarietyDemo(void)
{
{ // Numeric mode encoding (3.33 bits per digit)
u8 qrcode[QRCODE_BUFFER_LEN_MAX];
u8 tempBuffer[QRCODE_BUFFER_LEN_MAX];
bool ok = QRCode_EncodeText("314159265358979323846264338327950288419716939937510", tempBuffer, qrcode,
QRCODE_ECC_MEDIUM, QRCODE_MASK_AUTO, TRUE);
if (ok)
printQr(qrcode);
}
{ // Alphanumeric mode encoding (5.5 bits per character)
u8 qrcode[QRCODE_BUFFER_LEN_MAX];
u8 tempBuffer[QRCODE_BUFFER_LEN_MAX];
bool ok = QRCode_EncodeText("DOLLAR-AMOUNT:$39.87 PERCENTAGE:100.00% OPERATIONS:+-*/", tempBuffer, qrcode,
QRCODE_ECC_HIGH, QRCODE_MASK_AUTO, TRUE);
if (ok)
printQr(qrcode);
}
{ // Unicode text as UTF-8
const char *text = "\xE3\x81\x93\xE3\x82\x93\xE3\x81\xAB\xE3\x81\xA1wa\xE3\x80\x81"
"\xE4\xB8\x96\xE7\x95\x8C\xEF\xBC\x81\x20\xCE\xB1\xCE\xB2\xCE\xB3\xCE\xB4";
u8 qrcode[QRCODE_BUFFER_LEN_MAX];
u8 tempBuffer[QRCODE_BUFFER_LEN_MAX];
bool ok = QRCode_EncodeText(text, tempBuffer, qrcode,
QRCODE_ECC_QUARTILE, QRCODE_MASK_AUTO, TRUE);
if (ok)
printQr(qrcode);
}
{ // Moderately large QR Code using longer text (from Lewis Carroll's Alice in Wonderland)
const char *text =
"Alice was beginning to get very tired of sitting by her sister on the bank, "
"and of having nothing to do: once or twice she had peeped into the book her sister was reading, "
"but it had no pictures or conversations in it, 'and what is the use of a book,' thought Alice "
"'without pictures or conversations?' So she was considering in her own mind (as well as she could, "
"for the hot day made her feel very sleepy and stupid), whether the pleasure of making a "
"daisy-chain would be worth the trouble of getting up and picking the daisies, when suddenly "
"a White Rabbit with pink eyes ran close by her.";
u8 qrcode[QRCODE_BUFFER_LEN_MAX];
u8 tempBuffer[QRCODE_BUFFER_LEN_MAX];
bool ok = QRCode_EncodeText(text, tempBuffer, qrcode,
QRCODE_ECC_HIGH, QRCODE_MASK_AUTO, TRUE);
if (ok)
printQr(qrcode);
}
}
//
//// Creates QR Codes with manually specified segments for better compactness.
//static void doSegmentDemo(void) {
// { // Illustration "silver"
// const char *silver0 = "THE SQUARE ROOT OF 2 IS 1.";
// const char *silver1 = "41421356237309504880168872420969807856967187537694807317667973799";
// u8 qrcode[QRCODE_BUFFER_LEN_MAX];
// u8 tempBuffer[QRCODE_BUFFER_LEN_MAX];
// bool ok;
// {
// char *concat = calloc(strlen(silver0) + strlen(silver1) + 1, sizeof(char));
// if (concat == NULL) {
// perror("calloc");
// exit(EXIT_FAILURE);
// }
// strcat(concat, silver0);
// strcat(concat, silver1);
// ok = QRCode_EncodeText(concat, tempBuffer, qrcode, QRCODE_ECC_LOW,
// QRCODE_MASK_AUTO, TRUE);
// if (ok)
// printQr(qrcode);
// free(concat);
// }
// {
// u8 *segBuf0 = malloc(QRCode_CalcSegmentBufferSize(QRCODE_MODE_ALPHANUMERIC, (u16)strlen(silver0)) * sizeof(u8));
// u8 *segBuf1 = malloc(QRCode_CalcSegmentBufferSize(QRCODE_MODE_NUMERIC, (u16)strlen(silver1)) * sizeof(u8));
// if (segBuf0 == NULL || segBuf1 == NULL) {
// perror("malloc");
// exit(EXIT_FAILURE);
// }
// struct QRCode_Segment segs[] = {
// QRCode_MakeAlphanumeric(silver0, segBuf0),
// QRCode_MakeNumeric(silver1, segBuf1),
// };
// ok = QRCode_encodeSegments(segs, sizeof(segs) / sizeof(segs[0]), QRCODE_ECC_LOW, tempBuffer, qrcode);
// free(segBuf0);
// free(segBuf1);
// if (ok)
// printQr(qrcode);
// }
// }
//
// { // Illustration "golden"
// const char *golden0 = "Golden ratio \xCF\x86 = 1.";
// const char *golden1 = "6180339887498948482045868343656381177203091798057628621354486227052604628189024497072072041893911374";
// const char *golden2 = "......";
// u8 qrcode[QRCODE_BUFFER_LEN_MAX];
// u8 tempBuffer[QRCODE_BUFFER_LEN_MAX];
// bool ok;
// {
// char *concat = calloc(strlen(golden0) + strlen(golden1) + strlen(golden2) + 1, sizeof(char));
// if (concat == NULL) {
// perror("calloc");
// exit(EXIT_FAILURE);
// }
// strcat(concat, golden0);
// strcat(concat, golden1);
// strcat(concat, golden2);
// ok = QRCode_EncodeText(concat, tempBuffer, qrcode, QRCODE_ECC_LOW,
// QRCODE_MASK_AUTO, TRUE);
// if (ok)
// printQr(qrcode);
// free(concat);
// }
// {
// u8 *bytes = malloc(strlen(golden0) * sizeof(u8));
// if (bytes == NULL) {
// perror("malloc");
// exit(EXIT_FAILURE);
// }
// for (u16 i = 0, len = (u16)strlen(golden0); i < len; i++)
// bytes[i] = (u8)golden0[i];
// u8 *segBuf0 = malloc(QRCode_CalcSegmentBufferSize(QRCODE_MODE_BYTE, (u16)strlen(golden0)) * sizeof(u8));
// u8 *segBuf1 = malloc(QRCode_CalcSegmentBufferSize(QRCODE_MODE_NUMERIC, (u16)strlen(golden1)) * sizeof(u8));
// u8 *segBuf2 = malloc(QRCode_CalcSegmentBufferSize(QRCODE_MODE_ALPHANUMERIC, (u16)strlen(golden2)) * sizeof(u8));
// if (segBuf0 == NULL || segBuf1 == NULL || segBuf2 == NULL) {
// perror("malloc");
// exit(EXIT_FAILURE);
// }
// struct QRCode_Segment segs[] = {
// QRCode_MakeBytes(bytes, (u16)strlen(golden0), segBuf0),
// QRCode_MakeNumeric(golden1, segBuf1),
// QRCode_MakeAlphanumeric(golden2, segBuf2),
// };
// free(bytes);
// ok = QRCode_encodeSegments(segs, sizeof(segs) / sizeof(segs[0]), QRCODE_ECC_LOW, tempBuffer, qrcode);
// free(segBuf0);
// free(segBuf1);
// free(segBuf2);
// if (ok)
// printQr(qrcode);
// }
// }
//
// { // Illustration "Madoka": kanji, kana, Cyrillic, full-width Latin, Greek characters
// u8 qrcode[QRCODE_BUFFER_LEN_MAX];
// u8 tempBuffer[QRCODE_BUFFER_LEN_MAX];
// bool ok;
// {
// const char *madoka = // Encoded in UTF-8
// "\xE3\x80\x8C\xE9\xAD\x94\xE6\xB3\x95\xE5"
// "\xB0\x91\xE5\xA5\xB3\xE3\x81\xBE\xE3\x81"
// "\xA9\xE3\x81\x8B\xE2\x98\x86\xE3\x83\x9E"
// "\xE3\x82\xAE\xE3\x82\xAB\xE3\x80\x8D\xE3"
// "\x81\xA3\xE3\x81\xA6\xE3\x80\x81\xE3\x80"
// "\x80\xD0\x98\xD0\x90\xD0\x98\xE3\x80\x80"
// "\xEF\xBD\x84\xEF\xBD\x85\xEF\xBD\x93\xEF"
// "\xBD\x95\xE3\x80\x80\xCE\xBA\xCE\xB1\xEF"
// "\xBC\x9F";
// ok = QRCode_EncodeText(madoka, tempBuffer, qrcode, QRCODE_ECC_LOW,
// QRCODE_MASK_AUTO, TRUE);
// if (ok)
// printQr(qrcode);
// }
// {
// const i16 kanjiChars[] = { // Kanji mode encoding (13 bits per character)
// 0x0035, 0x1002, 0x0FC0, 0x0AED, 0x0AD7,
// 0x015C, 0x0147, 0x0129, 0x0059, 0x01BD,
// 0x018D, 0x018A, 0x0036, 0x0141, 0x0144,
// 0x0001, 0x0000, 0x0249, 0x0240, 0x0249,
// 0x0000, 0x0104, 0x0105, 0x0113, 0x0115,
// 0x0000, 0x0208, 0x01FF, 0x0008,
// };
// u16 len = sizeof(kanjiChars) / sizeof(kanjiChars[0]);
// u8 *segBuf = calloc(QRCode_CalcSegmentBufferSize(QRCODE_MODE_KANJI, len), sizeof(u8));
// if (segBuf == NULL) {
// perror("calloc");
// exit(EXIT_FAILURE);
// }
// struct QRCode_Segment seg;
// seg.mode = QRCODE_MODE_KANJI;
// seg.numChars = (i16)len;
// seg.bitLength = 0;
// for (u16 i = 0; i < len; i++) {
// for (i16 j = 12; j >= 0; j--, seg.bitLength++)
// segBuf[seg.bitLength >> 3] |= ((kanjiChars[i] >> j) & 1) << (7 - (seg.bitLength & 7));
// }
// seg.data = segBuf;
// ok = QRCode_encodeSegments(&seg, 1, QRCODE_ECC_LOW, tempBuffer, qrcode);
// free(segBuf);
// if (ok)
// printQr(qrcode);
// }
// }
//}
//
//
//// Creates QR Codes with the same size and contents but different mask patterns.
//static void doMaskDemo(void) {
// { // Project Nayuki URL
// u8 qrcode[QRCODE_BUFFER_LEN_MAX];
// u8 tempBuffer[QRCODE_BUFFER_LEN_MAX];
// bool ok;
//
// ok = QRCode_EncodeText("https://www.nayuki.io/", tempBuffer, qrcode,
// QRCODE_ECC_HIGH, QRCODE_MASK_AUTO, TRUE);
// if (ok)
// printQr(qrcode);
//
// ok = QRCode_EncodeText("https://www.nayuki.io/", tempBuffer, qrcode,
// QRCODE_ECC_HIGH, QRCODE_MASK_3, TRUE);
// if (ok)
// printQr(qrcode);
// }
//
// { // Chinese text as UTF-8
// const char *text =
// "\xE7\xB6\xAD\xE5\x9F\xBA\xE7\x99\xBE\xE7\xA7\x91\xEF\xBC\x88\x57\x69\x6B\x69\x70"
// "\x65\x64\x69\x61\xEF\xBC\x8C\xE8\x81\x86\xE8\x81\xBD\x69\x2F\xCB\x8C\x77\xC9\xAA"
// "\x6B\xE1\xB5\xBB\xCB\x88\x70\x69\xCB\x90\x64\x69\x2E\xC9\x99\x2F\xEF\xBC\x89\xE6"
// "\x98\xAF\xE4\xB8\x80\xE5\x80\x8B\xE8\x87\xAA\xE7\x94\xB1\xE5\x85\xA7\xE5\xAE\xB9"
// "\xE3\x80\x81\xE5\x85\xAC\xE9\x96\x8B\xE7\xB7\xA8\xE8\xBC\xAF\xE4\xB8\x94\xE5\xA4"
// "\x9A\xE8\xAA\x9E\xE8\xA8\x80\xE7\x9A\x84\xE7\xB6\xB2\xE8\xB7\xAF\xE7\x99\xBE\xE7"
// "\xA7\x91\xE5\x85\xA8\xE6\x9B\xB8\xE5\x8D\x94\xE4\xBD\x9C\xE8\xA8\x88\xE7\x95\xAB";
// u8 qrcode[QRCODE_BUFFER_LEN_MAX];
// u8 tempBuffer[QRCODE_BUFFER_LEN_MAX];
// bool ok;
//
// ok = QRCode_EncodeText(text, tempBuffer, qrcode,
// QRCODE_ECC_MEDIUM, QRCODE_MASK_0, TRUE);
// if (ok)
// printQr(qrcode);
//
// ok = QRCode_EncodeText(text, tempBuffer, qrcode,
// QRCODE_ECC_MEDIUM, QRCODE_MASK_1, TRUE);
// if (ok)
// printQr(qrcode);
//
// ok = QRCode_EncodeText(text, tempBuffer, qrcode,
// QRCODE_ECC_MEDIUM, QRCODE_MASK_5, TRUE);
// if (ok)
// printQr(qrcode);
//
// ok = QRCode_EncodeText(text, tempBuffer, qrcode,
// QRCODE_ECC_MEDIUM, QRCODE_MASK_7, TRUE);
// if (ok)
// printQr(qrcode);
// }
//}
/*---- Utilities ----*/
// Prints the given QR Code to the console.
static void printQr(const u8 qrcode[])
{
u8 size = QRCode_GetSize(qrcode);
u8 ver = QRCode_GetVersion(qrcode);
printf("Size: %i; Version:%i\n", size, ver);
i16 border = 4;
for (i16 y = -border; y < size + border; y++)
{
for (i16 x = -border; x < size + border; x++)
{
char chr = QRCode_GetModule(qrcode, x, y) ? 219 : ' ';
printf("%c%c", chr, chr);
}
fputs("\n", stdout);
}
fputs("\n", stdout);
}