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https://github.com/zint/zint
synced 2024-11-16 20:57:25 +13:00
Tidy up loose ends
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56e75788c2
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@ -904,10 +904,11 @@ void place_layer_id(char* grid, int size, int layers, int modules, int ecc_level
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int grid_matrix(struct zint_symbol *symbol, unsigned char source[], int length)
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{
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int size, modules, dark, error_number;
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int layers, ecc_level, x, y, i, j, glyph;
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int auto_layers, min_layers, layers, auto_ecc_level, min_ecc_level, ecc_level;
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int x, y, i, j, glyph;
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char binary[9300];
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int data_cw;
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int word[1460];
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int word[1460], data_max;
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#ifndef _MSC_VER
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int utfdata[length + 1];
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@ -962,14 +963,53 @@ int grid_matrix(struct zint_symbol *symbol, unsigned char source[], int length)
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/* Determine the size of the symbol */
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data_cw = strlen(binary) / 7;
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layers = 13;
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auto_layers = 13;
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for(i = 12; i > 0; i--) {
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if(gm_recommend_cw[(i - 1)] >= data_cw) { layers = i; }
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if(gm_recommend_cw[(i - 1)] >= data_cw) { auto_layers = i; }
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}
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min_layers = 13;
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for(i = 12; i > 0; i--) {
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if(gm_max_cw[(i - 1)] >= data_cw) { min_layers = i; }
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}
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ecc_level = 3;
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if(layers == 1) { ecc_level = 5; }
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if((layers == 2) || (layers == 3)) { ecc_level = 4; }
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layers = auto_layers;
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if((symbol->option_2 >= 1) && (symbol->option_2 <= 13)) {
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if(symbol->option_2 > min_layers) {
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layers = symbol->option_2;
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} else {
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layers = min_layers;
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}
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}
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auto_ecc_level = 3;
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if(layers == 1) { auto_ecc_level = 5; }
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if((layers == 2) || (layers == 3)) { auto_ecc_level = 4; }
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min_ecc_level = 1;
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if(layers == 1) { min_ecc_level = 4; }
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if((layers == 2) || (layers == 3)) { min_ecc_level = 2; }
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ecc_level = auto_ecc_level;
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if((symbol->option_1 >= 1) && (symbol->option_1 <= 5)) {
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if(symbol->option_1 > min_ecc_level) {
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ecc_level = symbol->option_1;
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} else {
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ecc_level = min_ecc_level;
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}
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}
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data_max = 1313;
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switch(ecc_level) {
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case 2: data_max = 1167; break;
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case 3: data_max = 1021; break;
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case 4: data_max = 875; break;
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case 5: data_max = 729; break;
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}
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if(data_cw > data_max) {
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strcpy(symbol->errtxt, "Input data too long");
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return ERROR_TOO_LONG;
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}
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gm_add_ecc(binary, data_cw, layers, ecc_level, word);
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size = 6 + (layers * 12);
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@ -37,6 +37,7 @@ static char shift_set[] = {
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};
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static int gm_recommend_cw[] = { 9, 30, 59, 114, 170, 237, 315, 405, 506, 618, 741, 875, 1021 };
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static int gm_max_cw[] = { 11, 40, 79, 146, 218, 305, 405, 521, 650, 794, 953, 1125, 1313 };
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static int gm_total_cw[] = { 18, 50, 98, 162, 242, 338, 450, 578, 722, 882, 1058, 1250, 1458 };
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static int gm_data_codewords[] = {
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@ -357,7 +357,7 @@ int ZBarcode_ValidID(int symbol_id)
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case BARCODE_RSS_EXPSTACK_CC:
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case BARCODE_CHANNEL:
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case BARCODE_CODEONE:
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/* case BARCODE_GRIDMATRIX: */
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case BARCODE_GRIDMATRIX:
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result = 1;
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break;
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}
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43
backend/qr.c
43
backend/qr.c
@ -107,7 +107,7 @@ void define_mode(char mode[], int jisdata[], int length)
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}
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}
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int estimate_binary_length(char mode[], int length)
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int estimate_binary_length(char mode[], int length, int gs1)
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{
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/* Make an estimate (worst case scenario) of how long the binary string will be */
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int i, count = 0;
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@ -115,6 +115,8 @@ int estimate_binary_length(char mode[], int length)
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int a_count = 0;
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int n_count = 0;
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if(gs1) { count += 4; }
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for(i = 0; i < length; i++) {
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if(mode[i] != current) {
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switch(mode[i]) {
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@ -154,14 +156,14 @@ int estimate_binary_length(char mode[], int length)
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return count;
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}
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void qr_binary(int datastream[], int version, int target_binlen, char mode[], int jisdata[], int length)
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void qr_binary(int datastream[], int version, int target_binlen, char mode[], int jisdata[], int length, int gs1)
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{
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/* Convert input data to a binary stream and add padding */
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int position = 0, debug = 0;
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int short_data_block_length, i, scheme;
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char data_block, padbits;
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int current_binlen, current_bytes;
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int toggle;
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int toggle, percent;
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#ifndef _MSC_VER
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char binary[target_binlen * 8];
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@ -170,6 +172,10 @@ void qr_binary(int datastream[], int version, int target_binlen, char mode[], in
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#endif
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strcpy(binary, "");
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if(gs1) {
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concat(binary, "0101"); /* FNC1 */
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}
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if(version <= 9) {
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scheme = 1;
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}
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@ -187,6 +193,8 @@ void qr_binary(int datastream[], int version, int target_binlen, char mode[], in
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printf("\n");
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}
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percent = 0;
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do {
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data_block = mode[position];
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short_data_block_length = 0;
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@ -287,6 +295,10 @@ void qr_binary(int datastream[], int version, int target_binlen, char mode[], in
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for(i = 0; i < short_data_block_length; i++) {
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int byte = jisdata[position + i];
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if(gs1 && (byte == '[')) {
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byte = 0x1d; /* FNC1 */
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}
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if(byte & 0x80) { concat(binary, "1"); } else { concat(binary, "0"); }
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if(byte & 0x40) { concat(binary, "1"); } else { concat(binary, "0"); }
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if(byte & 0x20) { concat(binary, "1"); } else { concat(binary, "0"); }
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@ -335,7 +347,7 @@ void qr_binary(int datastream[], int version, int target_binlen, char mode[], in
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while ( i < short_data_block_length ) {
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int count;
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int first = 0, second = 0, prod;
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first = posn(RHODIUM, (char) jisdata[position + i]);
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count = 1;
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prod = first;
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@ -345,7 +357,7 @@ void qr_binary(int datastream[], int version, int target_binlen, char mode[], in
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count = 2;
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prod = (first * 45) + second;
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}
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switch(count) {
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case 2:
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if(prod & 0x400) { concat(binary, "1"); } else { concat(binary, "0"); }
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@ -365,7 +377,7 @@ void qr_binary(int datastream[], int version, int target_binlen, char mode[], in
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if(debug) { printf("0x%4X ", prod); }
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i += 2;
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i += count;
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};
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if(debug) { printf("\n"); }
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@ -441,7 +453,7 @@ void qr_binary(int datastream[], int version, int target_binlen, char mode[], in
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if(debug) { printf("0x%4X (%d)", prod, prod); }
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i += 3;
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i += count;
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};
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if(debug) { printf("\n"); }
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@ -1053,7 +1065,7 @@ int qr_code(struct zint_symbol *symbol, unsigned char source[], int length)
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{
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int error_number, i, j, glyph, est_binlen;
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int ecc_level, autosize, version, max_cw, target_binlen, blocks, size;
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int bitmask;
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int bitmask, gs1;
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#ifndef _MSC_VER
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int utfdata[length + 1];
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@ -1065,6 +1077,12 @@ int qr_code(struct zint_symbol *symbol, unsigned char source[], int length)
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char* mode = (char *)_alloca(length + 1);
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#endif
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if(symbol->input_mode == GS1_MODE) {
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gs1 = 1;
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} else {
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gs1 = 0;
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}
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switch(symbol->input_mode) {
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case DATA_MODE:
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for(i = 0; i < length; i++) {
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@ -1099,7 +1117,7 @@ int qr_code(struct zint_symbol *symbol, unsigned char source[], int length)
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}
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define_mode(mode, jisdata, length);
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est_binlen = estimate_binary_length(mode, length);
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est_binlen = estimate_binary_length(mode, length, gs1);
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ecc_level = LEVEL_L;
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max_cw = 2956;
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@ -1152,6 +1170,11 @@ int qr_code(struct zint_symbol *symbol, unsigned char source[], int length)
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} else {
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version = autosize;
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}
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/* Ensure maxium error correction capacity */
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if(est_binlen <= qr_data_codewords_M[version - 1]) { ecc_level = LEVEL_M; }
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if(est_binlen <= qr_data_codewords_Q[version - 1]) { ecc_level = LEVEL_Q; }
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if(est_binlen <= qr_data_codewords_H[version - 1]) { ecc_level = LEVEL_H; }
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target_binlen = qr_data_codewords_L[version - 1]; blocks = qr_blocks_L[version - 1];
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switch(ecc_level) {
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@ -1168,7 +1191,7 @@ int qr_code(struct zint_symbol *symbol, unsigned char source[], int length)
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int* fullstream = (int *)_alloca((qr_total_codewords[version - 1] + 1) * sizeof(int));
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#endif
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qr_binary(datastream, version, target_binlen, mode, jisdata, length);
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qr_binary(datastream, version, target_binlen, mode, jisdata, length, gs1);
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add_ecc(fullstream, datastream, version, target_binlen, blocks);
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size = qr_sizes[version - 1];
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