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kc3-lang/libqrencode/qrencode.c

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  • Author : fukuchi
    Date : 2008-04-17 06:37:46
    Hash : 5600a477
    Message : 3.0.0rc1 is merged to the main trunk.

  • qrencode.c
  • /*
     * qrencode - QR Code encoder
     *
     * Copyright (C) 2006, 2007, 2008 Kentaro Fukuchi <fukuchi@megaui.net>
     *
     * 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 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 <stdio.h>
    #include <stdlib.h>
    #include <string.h>
    #include <errno.h>
    
    #include "qrencode.h"
    #include "qrencode_inner.h"
    #include "qrspec.h"
    #include "mqrspec.h"
    #include "bitstream.h"
    #include "qrinput.h"
    #include "rscode.h"
    #include "split.h"
    #include "mask.h"
    
    /******************************************************************************
     * Raw code
     *****************************************************************************/
    
    static void RSblock_init(RSblock *block, int dl, unsigned char *data, int el)
    {
    	RS *rs;
    
    	block->dataLength = dl;
    	block->data = data;
    	block->eccLength = el;
    	block->ecc = (unsigned char *)malloc(el);
    
    	rs = init_rs(8, 0x11d, 0, 1, el, 255 - dl - el);
    	encode_rs_char(rs, data, block->ecc);
    }
    
    QRRawCode *QRraw_new(QRinput *input)
    {
    	QRRawCode *raw;
    	int *spec;
    	int i;
    	RSblock *rsblock;
    	unsigned char *p;
    
    	p = QRinput_getByteStream(input);
    	if(p == NULL) {
    		return NULL;
    	}
    
    	raw = (QRRawCode *)malloc(sizeof(QRRawCode));
    	raw->datacode = p;
    	spec = QRspec_getEccSpec(input->version, input->level);
    	if(spec == NULL) {
    		free(raw);
    		return NULL;
    	}
    	raw->version = input->version;
    	raw->blocks = QRspec_rsBlockNum(spec);
    	raw->rsblock = (RSblock *)malloc(sizeof(RSblock) * raw->blocks);
    
    	rsblock = raw->rsblock;
    	p = raw->datacode;
    	for(i=0; i<QRspec_rsBlockNum1(spec); i++) {
    		RSblock_init(rsblock, QRspec_rsDataCodes1(spec), p,
    						QRspec_rsEccCodes1(spec));
    		p += QRspec_rsDataCodes1(spec);
    		rsblock++;
    	}
    	for(i=0; i<QRspec_rsBlockNum2(spec); i++) {
    		RSblock_init(rsblock, QRspec_rsDataCodes2(spec), p,
    						QRspec_rsEccCodes2(spec));
    		p += QRspec_rsDataCodes2(spec);
    		rsblock++;
    	}
    
    	raw->b1 = QRspec_rsBlockNum1(spec);
    	raw->dataLength = QRspec_rsBlockNum1(spec) * QRspec_rsDataCodes1(spec)
    					+ QRspec_rsBlockNum2(spec) * QRspec_rsDataCodes2(spec);
    	raw->eccLength = QRspec_rsBlockNum(spec) * QRspec_rsEccCodes1(spec);
    	raw->count = 0;
    
    	free(spec);
    
    	return raw;
    }
    
    /**
     * Return a code (byte).
     * This function can be called iteratively.
     * @param raw raw code.
     * @return code
     */
    unsigned char QRraw_getCode(QRRawCode *raw)
    {
    	int col, row;
    	unsigned char ret;
    
    	if(raw->count < raw->dataLength) {
    		row = raw->count % raw->blocks;
    		col = raw->count / raw->blocks;
    		if(col >= raw->rsblock[row].dataLength) {
    			row += raw->b1;
    		}
    		ret = raw->rsblock[row].data[col];
    	} else if(raw->count < raw->dataLength + raw->eccLength) {
    		row = (raw->count - raw->dataLength) % raw->blocks;
    		col = (raw->count - raw->dataLength) / raw->blocks;
    		ret = raw->rsblock[row].ecc[col];
    	} else {
    		return 0;
    	}
    	raw->count++;
    	return ret;
    }
    
    void QRraw_free(QRRawCode *raw)
    {
    	int i;
    
    	free(raw->datacode);
    	for(i=0; i<raw->blocks; i++) {
    		free(raw->rsblock[i].ecc);
    	}
    	free(raw->rsblock);
    	free(raw);
    }
    
    /******************************************************************************
     * Raw code for Micro QR Code
     *****************************************************************************/
    
    #if 0
    MQRRawCode *MQRraw_new(QRinput *input)
    {
    	MQRRawCode *raw;
    	int i;
    	RSblock *rsblock;
    	unsigned char *p;
    
    	p = QRinput_getByteStream(input);
    	if(p == NULL) {
    		return NULL;
    	}
    
    	raw = (MQRRawCode *)malloc(sizeof(MQRRawCode));
    	raw->datacode = p;
    	raw->version = input->version;
    	raw->rsblock = (RSblock *)malloc(sizeof(RSblock));
    	RSblock_init(raw->rsblock, hoge, p, moge);
    
    
    	raw->dataLength = ;
    	raw->eccLength = ;
    	raw->count = 0;
    
    	return raw;
    }
    #endif
    
    
    /******************************************************************************
     * Frame filling
     *****************************************************************************/
    
    typedef struct {
    	int width;
    	unsigned char *frame;
    	int x, y;
    	int dir;
    	int bit;
    } FrameFiller;
    
    static FrameFiller *FrameFiller_new(int width, unsigned char *frame)
    {
    	FrameFiller *filler;
    
    	filler = (FrameFiller *)malloc(sizeof(FrameFiller));
    	filler->width = width;
    	filler->frame = frame;
    	filler->x = width - 1;
    	filler->y = width - 1;
    	filler->dir = -1;
    	filler->bit = -1;
    
    	return filler;
    }
    
    static unsigned char *FrameFiller_next(FrameFiller *filler)
    {
    	unsigned char *p;
    	int x, y, w;
    
    	if(filler->bit == -1) {
    		filler->bit = 0;
    		return filler->frame + filler->y * filler->width + filler->x;
    	}
    
    	x = filler->x;
    	y = filler->y;
    	p = filler->frame;
    	w = filler->width;
    
    	if(filler->bit == 0) {
    		x--;
    		filler->bit++;
    	} else {
    		x++;
    		y += filler->dir;
    		filler->bit--;
    	}
    
    	if(filler->dir < 0) {
    		if(y < 0) {
    			y = 0;
    			x -= 2;
    			filler->dir = 1;
    			if(x == 6) {
    				x--;
    				y = 9;
    			}
    		}
    	} else {
    		if(y == w) {
    			y = w - 1;
    			x -= 2;
    			filler->dir = -1;
    			if(x == 6) {
    				x--;
    				y -= 8;
    			}
    		}
    	}
    	if(x < 0 || y < 0) return NULL;
    
    	filler->x = x;
    	filler->y = y;
    
    	if(p[y * w + x] & 0x80) {
    		// This tail recursion could be optimized.
    		return FrameFiller_next(filler);
    	}
    	return &p[y * w + x];
    }
    
    #if 0
    unsigned char *FrameFiller_fillerTest(int version)
    {
    	int width, length;
    	unsigned char *frame, *p;
    	FrameFiller *filler;
    	int i, j;
    	unsigned char cl = 1;
    	unsigned char ch = 0;
    
    	width = QRspec_getWidth(version);
    	frame = QRspec_newFrame(version);
    	filler = FrameFiller_new(width, frame);
    	length = QRspec_getDataLength(version, QR_ECLEVEL_L)
    			+ QRspec_getECCLength(version, QR_ECLEVEL_L);
    
    	for(i=0; i<length; i++) {
    		for(j=0; j<8; j++) {
    			p = FrameFiller_next(filler);
    			*p = ch | cl;
    			cl++;
    			if(cl == 9) {
    				cl = 1;
    				ch += 0x10;
    			}
    		}
    	}
    	length = QRspec_getRemainder(version);
    	for(i=0; i<length; i++) {
    		p = FrameFiller_next(filler);
    		*p = 0xa0;
    	}
    	p = FrameFiller_next(filler);
    	free(filler);
    	if(p != NULL) {
    		return NULL;
    	}
    
    	return frame;
    }
    #endif
    
    /******************************************************************************
     * Format information
     *****************************************************************************/
    
    int QRcode_writeFormatInformation(int width, unsigned char *frame, int mask, QRecLevel level)
    {
    	unsigned int format;
    	unsigned char v;
    	int i;
    	int blacks = 0;
    
    	format =  QRspec_getFormatInfo(mask, level);
    
    	for(i=0; i<8; i++) {
    		if(format & 1) {
    			blacks += 2;
    			v = 0x85;
    		} else {
    			v = 0x84;
    		}
    		frame[width * 8 + width - 1 - i] = v;
    		if(i < 6) {
    			frame[width * i + 8] = v;
    		} else {
    			frame[width * (i + 1) + 8] = v;
    		}
    		format= format >> 1;
    	}
    	for(i=0; i<7; i++) {
    		if(format & 1) {
    			blacks += 2;
    			v = 0x85;
    		} else {
    			v = 0x84;
    		}
    		frame[width * (width - 7 + i) + 8] = v;
    		if(i == 0) {
    			frame[width * 8 + 7] = v;
    		} else {
    			frame[width * 8 + 6 - i] = v;
    		}
    		format= format >> 1;
    	}
    
    	return blacks;
    }
    
    /******************************************************************************
     * QR-code encoding
     *****************************************************************************/
    
    static QRcode *QRcode_new(int version, int width, unsigned char *data)
    {
    	QRcode *qrcode;
    
    	qrcode = (QRcode *)malloc(sizeof(QRcode));
    	qrcode->version = version;
    	qrcode->width = width;
    	qrcode->data = data;
    
    	return qrcode;
    }
    
    void QRcode_free(QRcode *qrcode)
    {
    	if(qrcode == NULL) return;
    
    	if(qrcode->data != NULL) {
    		free(qrcode->data);
    	}
    	free(qrcode);
    }
    
    QRcode *QRcode_encodeMask(QRinput *input, int mask)
    {
    	int width, version;
    	QRRawCode *raw;
    	unsigned char *frame, *masked, *p, code, bit;
    	FrameFiller *filler;
    	int i, j;
    	QRcode *qrcode;
    
    	if(input->version < 0 || input->version > QRSPEC_VERSION_MAX) {
    		errno = EINVAL;
    		return NULL;
    	}
    	if(input->level < QR_ECLEVEL_L || input->level > QR_ECLEVEL_H) {
    		errno = EINVAL;
    		return NULL;
    	}
    
    	raw = QRraw_new(input);
    	if(raw == NULL) return NULL;
    
    	version = raw->version;
    	width = QRspec_getWidth(version);
    	frame = QRspec_newFrame(version);
    	filler = FrameFiller_new(width, frame);
    
    	/* inteleaved data and ecc codes */
    	for(i=0; i<raw->dataLength + raw->eccLength; i++) {
    		code = QRraw_getCode(raw);
    		bit = 0x80;
    		for(j=0; j<8; j++) {
    			p = FrameFiller_next(filler);
    			*p = 0x02 | ((bit & code) != 0);
    			bit = bit >> 1;
    		}
    	}
    	QRraw_free(raw);
    	/* remainder bits */
    	j = QRspec_getRemainder(version);
    	for(i=0; i<j; i++) {
    		p = FrameFiller_next(filler);
    		*p = 0x02;
    	}
    	free(filler);
    	/* masking */
    	if(mask < 0) {
    		masked = Mask_mask(width, frame, input->level);
    	} else {
    		masked = Mask_makeMask(width, frame, mask);
    		QRcode_writeFormatInformation(width, masked, mask, input->level);
    	}
    	qrcode = QRcode_new(version, width, masked);
    
    	free(frame);
    
    	return qrcode;
    }
    
    QRcode *QRcode_encodeInput(QRinput *input)
    {
    	return QRcode_encodeMask(input, -1);
    }
    
    QRcode *QRcode_encodeString8bit(const char *string, int version, QRecLevel level)
    {
    	QRinput *input;
    	QRcode *code;
    
    	input = QRinput_new2(version, level);
    	if(input == NULL) return NULL;
    
    	QRinput_append(input, QR_MODE_8, strlen(string), (unsigned char *)string);
    	code = QRcode_encodeInput(input);
    	QRinput_free(input);
    
    	return code;
    }
    
    QRcode *QRcode_encodeString(const char *string, int version, QRecLevel level, QRencodeMode hint, int casesensitive)
    {
    	QRinput *input;
    	QRcode *code;
    	int ret;
    
    	if(hint != QR_MODE_8 && hint != QR_MODE_KANJI) {
    		errno = EINVAL;
    		return NULL;
    	}
    
    	input = QRinput_new2(version, level);
    	if(input == NULL) return NULL;
    
    	ret = Split_splitStringToQRinput(string, input, hint, casesensitive);
    	if(ret < 0) {
    		QRinput_free(input);
    		return NULL;
    	}
    
    	code = QRcode_encodeInput(input);
    	QRinput_free(input);
    
    	return code;
    }
    
    /******************************************************************************
     * Structured QR-code encoding
     *****************************************************************************/
    
    static QRcode_List *QRcode_List_newEntry(void)
    {
    	QRcode_List *entry;
    
    	entry = (QRcode_List *)malloc(sizeof(QRcode_List));
    	if(entry == NULL) return NULL;
    
    	entry->next = NULL;
    	entry->code = NULL;
    
    	return entry;
    }
    
    static void QRcode_List_freeEntry(QRcode_List *entry)
    {
    	if(entry->code != NULL) QRcode_free(entry->code);
    	free(entry);
    }
    
    void QRcode_List_free(QRcode_List *qrlist)
    {
    	QRcode_List *list = qrlist, *next;
    
    	while(list != NULL) {
    		next = list->next;
    		QRcode_List_freeEntry(list);
    		list = next;
    	}
    }
    
    int QRcode_List_size(QRcode_List *qrlist)
    {
    	QRcode_List *list = qrlist;
    	int size = 0;
    
    	while(list != NULL) {
    		size++;
    		list = list->next;
    	}
    
    	return size;
    }
    
    #if 0
    static unsigned char QRcode_parity(const char *str, int size)
    {
    	unsigned char parity = 0;
    	int i;
    
    	for(i=0; i<size; i++) {
    		parity ^= str[i];
    	}
    
    	return parity;
    }
    #endif
    
    QRcode_List *QRcode_encodeStructuredInput(QRinput_Struct *s)
    {
    	QRcode_List *head = NULL;
    	QRcode_List *tail = NULL;
    	QRinput_InputList *list = s->head;
    
    	while(list != NULL) {
    		if(head == NULL) {
    			head = QRcode_List_newEntry();
    			tail = head;
    		} else {
    			tail->next = QRcode_List_newEntry();
    			tail = tail->next;
    		}
    		tail->code = QRcode_encodeInput(list->input);
    		if(tail->code == NULL) {
    			QRcode_List_free(head);
    			return NULL;
    		}
    		list = list->next;
    	}
    
    	return head;
    }
    
    static QRcode_List *QRcode_encodeInputToStructured(QRinput *input)
    {
    	QRinput_Struct *s;
    	QRcode_List *codes;
    
    	s = QRinput_splitQRinputToStruct(input);
    	if(s == NULL) return NULL;
    
    	codes = QRcode_encodeStructuredInput(s);
    	QRinput_Struct_free(s);
    
    	return codes;
    }
    
    QRcode_List *QRcode_encodeString8bitStructured(const char *string, int version, QRecLevel level)
    {
    	QRinput *input;
    	QRcode_List *codes;
    	int ret;
    
    	if(version <= 0) return NULL;
    
    	input = QRinput_new2(version, level);
    	if(input == NULL) return NULL;
    
    	ret = QRinput_append(input, QR_MODE_8, strlen(string), (unsigned char *)string);
    	if(ret < 0) {
    		QRinput_free(input);
    		return NULL;
    	}
    	codes = QRcode_encodeInputToStructured(input);
    	QRinput_free(input);
    
    	return codes;
    }
    
    QRcode_List *QRcode_encodeStringStructured(const char *string, int version, QRecLevel level, QRencodeMode hint, int casesensitive)
    {
    	QRinput *input;
    	QRcode_List *codes;
    	int ret;
    
    	if(version <= 0) return NULL;
    	if(hint != QR_MODE_8 && hint != QR_MODE_KANJI) {
    		return NULL;
    	}
    
    	input = QRinput_new2(version, level);
    	if(input == NULL) return NULL;
    
    	ret = Split_splitStringToQRinput(string, input, hint, casesensitive);
    	if(ret < 0) {
    		QRinput_free(input);
    		return NULL;
    	}
    	codes = QRcode_encodeInputToStructured(input);
    	QRinput_free(input);
    
    	return codes;
    }