zint/backend/tests/test_rss.c

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2019-09-02 08:09:47 +12:00
/*
libzint - the open source barcode library
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
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Copyright (C) 2019-2024 Robin Stuart <rstuart114@gmail.com>
2019-09-02 08:09:47 +12:00
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions
are met:
1. Redistributions of source code must retain the above copyright
notice, this list of conditions and the following disclaimer.
2. Redistributions in binary form must reproduce the above copyright
notice, this list of conditions and the following disclaimer in the
documentation and/or other materials provided with the distribution.
3. Neither the name of the project nor the names of its contributors
may be used to endorse or promote products derived from this software
without specific prior written permission.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE
FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
SUCH DAMAGE.
*/
/* SPDX-License-Identifier: BSD-3-Clause */
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#include "testcommon.h"
static void test_binary_div_modulo_divisor(const testCtx *const p_ctx) {
int debug = p_ctx->debug;
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struct item {
int symbology;
char *data;
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float w;
float h;
int expected_rows;
int expected_width;
char *expected;
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};
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
static const struct item data[] = {
/* 0*/ { BARCODE_DBAR_OMN, "1234567890123", 100, 30, 1, 96, "010111010010000001001110000000010100001011111010110100011001100101111111110001011011000111000101" },
/* 1*/ { BARCODE_DBAR_OMN, "0000004537076", 100, 30, 1, 96, "010101001000000001000100000000010111111100101010111101111101010101111111110111010100100000000101" },
/* 2*/ { BARCODE_DBAR_OMN, "0000004537077", 100, 30, 1, 96, "010101001000000001000111000000010111111101001010101010110000000101111100000111011111111011010101" },
/* 3*/ { BARCODE_DBAR_OMN, "0000004537078", 100, 30, 1, 96, "010101001000000001000111000000010111111101001010101011010000000101111000000011011111111011010101" },
/* 4*/ { BARCODE_DBAR_OMN, "0000000001596", 100, 30, 1, 96, "010101001000000001001111100000010111111100101010111101111101010101111100000111011111111011010101" },
/* 5*/ { BARCODE_DBAR_OMN, "0000000001597", 100, 30, 1, 96, "010101001000000001011111000000010111111100101010101010110000000101111100000111011111110111010101" },
/* 6*/ { BARCODE_DBAR_OMN, "0000000001598", 100, 30, 1, 96, "010101001000000001011111000000010111111100101010101011010000000101111000000011011111110111010101" },
/* 7*/ { BARCODE_DBAR_OMN, "0000000000000", 100, 30, 1, 96, "010101001000000001000111111110010111111100101010101010110000000101111111110111011111111011010101" },
/* 8*/ { BARCODE_DBAR_OMN, "0000000257117", 100, 30, 1, 96, "010101001000000001001111100000010111111100101010101010110000000101111110000011000111111011010101" },
/* 9*/ { BARCODE_DBAR_OMN, "0000000536592", 100, 30, 1, 96, "010101001000000001000111000000010111111100101010101010110000000101100000000111011101100011110101" },
/* 10*/ { BARCODE_DBAR_OMN, "0000001644132", 100, 30, 1, 96, "010101001000000001001111100000010111111100101010100100001111010101111100000111000001101111010101" },
/* 11*/ { BARCODE_DBAR_OMN, "0000002421052", 100, 30, 1, 96, "010101001000000001011111000000010111111100101010101010110000000101111100000111011100010001101101" },
/* 12*/ { BARCODE_DBAR_OMN, "0000003217955", 100, 30, 1, 96, "010101001000000001000111000000010111111100101010101010110000000101111111000001000000111001010101" },
/* 13*/ { BARCODE_DBAR_OMN, "0000004792584", 100, 30, 1, 96, "010101001000000001000111110000010111111101001010111011111101010101111111110111010110101111111101" },
/* 14*/ { BARCODE_DBAR_OMN, "0000006062184", 100, 30, 1, 96, "010101001000000001000111111110010111111101001010110111111101010101111111110111001010011011111101" },
/* 15*/ { BARCODE_DBAR_OMN, "0000007734882", 100, 30, 1, 96, "010101001000000001000111111110010111111101001010110111000010010101111111000111001010001100111101" },
/* 16*/ { BARCODE_DBAR_OMN, "0000008845782", 100, 30, 1, 96, "010101001000000001011111000000010111111101001010111101111101010101111111000001000010101000011101" },
/* 17*/ { BARCODE_DBAR_OMN, "0000009329661", 100, 30, 1, 96, "010101001000000001001111111000010111111101010010111011111101010101111000000011010110101111111101" },
/* 18*/ { BARCODE_DBAR_OMN, "0000009607386", 100, 30, 1, 96, "010101001000000001011111000000010111111101010010100111001011110101111111110111011100011011110101" },
/* 19*/ { BARCODE_DBAR_OMN, "0000010718286", 100, 30, 1, 96, "010101001000000001000111110000010111111101010010100100001111010101111100000111000001101111010101" },
/* 20*/ { BARCODE_DBAR_OMN, "0000011607006", 100, 30, 1, 96, "010101001000000001000111111110010111111101010010101101000100000101111000000011010011100001101101" },
/* 21*/ { BARCODE_DBAR_OMN, "0004360130997", 100, 30, 1, 96, "010101001000000001000100000000010110010010011110101010110000000101111000000011011111111011010101" },
/* 22*/ { BARCODE_DBAR_OMN, "0004360386504", 100, 30, 1, 96, "010101001000000001000111000000010110010010011110111011111101010101111111100011010110101111111101" },
/* 23*/ { BARCODE_DBAR_OMN, "0009142746747", 100, 30, 1, 96, "010101000100000001000111111110010100111110001010101010110000000101111111000111011101100011110101" },
/* 24*/ { BARCODE_DBAR_OMN, "0012319818547", 100, 30, 1, 96, "010101000100000001000100000000010110001100101000101010110000000101111111000111001100011110010101" },
/* 25*/ { BARCODE_DBAR_OMN, "0013775011335", 100, 30, 1, 96, "010101000100000001000100000000010101001100000110101010110000000101111100000111011111010011100101" },
/* 26*/ { BARCODE_DBAR_OMN, "0018894538190", 100, 30, 1, 96, "010101000010000001000100000000010110100100111100101010110000000101111111110001010001100011110101" },
/* 27*/ { BARCODE_DBAR_OMN, "0021059247735", 100, 30, 1, 96, "010101000010000001000100000000010101000011001100101010110000000101111111100011010110111000001101" },
/* 28*/ { BARCODE_DBAR_OMN, "0024094346235", 100, 30, 1, 96, "010101000001000001000100000000010111010000111010101010110000000101100000000111000110011001101101" },
/* 29*/ { BARCODE_DBAR_OMN, "1995000595035", 100, 30, 1, 96, "010100011011000001001110000000010111010111010000101010110000000101111000000011000110011001101101" },
/* 30*/ { BARCODE_DBAR_OMN, "9999999999999", 100, 30, 1, 96, "010010111011100001000111111110010111101101001110100011111101010101111111000001000111110101011101" },
/* 31*/ { BARCODE_DBAR_OMN_CC, "0000000000000", 100, 30, 5, 100, "0000010010111011100001001110000000010111101101001110110001010111110101111111110001000111110101011101" },
/* 32*/ { BARCODE_DBAR_OMN_CC, "0000729476171", 100, 30, 5, 100, "0000010010111011100001011100000000010111100110100010101010110000000101111111100011011111111011010101" },
/* 33*/ { BARCODE_DBAR_OMN_CC, "0004359674363", 100, 30, 5, 100, "0000010010111011100001011100000000010101110010000100101010110000000101111000000011011101100011110101" },
/* 34*/ { BARCODE_DBAR_OMN_CC, "0009142871421", 100, 30, 5, 100, "0000010010111101000011000111111110010100010111110010101010110000000101111111000111001100011110010101" },
/* 35*/ { BARCODE_DBAR_OMN_CC, "0012319591881", 100, 30, 5, 100, "0000010010111101000011000100000000010101000111010000101010110000000101111111000111011100010001101101" },
/* 36*/ { BARCODE_DBAR_OMN_CC, "6975446373038", 100, 30, 5, 100, "0000010111001110010111001111111000010101000111010000101010110000000101111100000111011111111011010101" },
/* 37*/ { BARCODE_DBAR_OMN_CC, "9999999999999", 100, 30, 5, 100, "0000010110101111011111001111111000010110111100100010100110111001110101111111110001001100110001110101" },
/* 38*/ { BARCODE_DBAR_LTD, "1234567890123", 100, 30, 1, 79, "0100110011110010100010011101011010101100100101001010100101000001110001110100000" },
/* 39*/ { BARCODE_DBAR_LTD, "0000002013570", 100, 30, 1, 79, "0101010101010000001000000111010010110101100101011111111011111101010101010100000" },
/* 40*/ { BARCODE_DBAR_LTD, "0000002013571", 100, 30, 1, 79, "0101010101010000001100000011010101101010001101010101010100000010000001110100000" },
/* 41*/ { BARCODE_DBAR_LTD, "0000002013572", 100, 30, 1, 79, "0101010101010000001100000011010101001011100101010101010100000011000000110100000" },
/* 42*/ { BARCODE_DBAR_LTD, "0000000917879", 100, 30, 1, 79, "0101010101010000001000000111010011010101001101010011011101111101011001110100000" },
/* 43*/ { BARCODE_DBAR_LTD, "0000000000000", 100, 30, 1, 79, "0101010101010000001000000111010111010100100101010101010100000010000001110100000" },
/* 44*/ { BARCODE_DBAR_LTD, "0000000183063", 100, 30, 1, 79, "0101010101010000001000000111011010101001001101000000111000000101010101010100000" },
/* 45*/ { BARCODE_DBAR_LTD, "0000000183064", 100, 30, 1, 79, "0101010101010000001000000111001010101011100101010101010100011110000011110100000" },
/* 46*/ { BARCODE_DBAR_LTD, "0000000820063", 100, 30, 1, 79, "0101010101010000001000000111001010101001101101000001111000111101010101010100000" },
/* 47*/ { BARCODE_DBAR_LTD, "0000000820064", 100, 30, 1, 79, "0101010101010000001000000111011010110100100101010101010101111110001111110100000" },
/* 48*/ { BARCODE_DBAR_LTD, "0000001000775", 100, 30, 1, 79, "0101010101010000001000000111001011010101100101000111111011111101010101010100000" },
/* 49*/ { BARCODE_DBAR_LTD, "0000001000776", 100, 30, 1, 79, "0101010101010000001000000111010111010101000101010101010100000110000011110100000" },
/* 50*/ { BARCODE_DBAR_LTD, "0000001491020", 100, 30, 1, 79, "0101010101010000001000000111001010101011001101000001111000001101010101010100000" },
/* 51*/ { BARCODE_DBAR_LTD, "0000001491021", 100, 30, 1, 79, "0101010101010000001000000111010100101011001101010101010100111110000111110100000" },
/* 52*/ { BARCODE_DBAR_LTD, "0000001979844", 100, 30, 1, 79, "0101010101010000001000000111010101010001101101000011111001111101010101010100000" },
/* 53*/ { BARCODE_DBAR_LTD, "0000001979845", 100, 30, 1, 79, "0101010101010000001000000111010111010010100101010101010100000010000000010100000" },
/* 54*/ { BARCODE_DBAR_LTD, "0000001996938", 100, 30, 1, 79, "0101010101010000001000000111010110101000101101000000001000000101010101010100000" },
/* 55*/ { BARCODE_DBAR_LTD, "0000001996939", 100, 30, 1, 79, "0101010101010000001000000111011011010101000101010101010101111110111111110100000" },
/* 56*/ { BARCODE_DBAR_LTD, "0000012013571", 100, 30, 1, 79, "0101010101011100000010000001010101001010011101000111011110010100110110110100000" },
/* 57*/ { BARCODE_DBAR_LTD, "0368610347973", 100, 30, 1, 79, "0100000011100000010101010101001010101110100101010101010100000010000001110100000" },
/* 58*/ { BARCODE_DBAR_LTD, "0368612361544", 100, 30, 1, 79, "0101010101010001111000001111010100110101001101010101010100000010000001110100000" },
/* 59*/ { BARCODE_DBAR_LTD, "1651255079973", 100, 30, 1, 79, "0100000111100011110101010101010101101100100101010110010010001001100000010100000" },
/* 60*/ { BARCODE_DBAR_LTD, "1651257088544", 100, 30, 1, 79, "0101010101010111111000111111010110100110100101010101010100000010000001110100000" },
/* 61*/ { BARCODE_DBAR_LTD, "1999999999999", 100, 30, 1, 79, "0100111100110110101101111101010101101011000101010000101110001101011110010100000" },
/* 62*/ { BARCODE_DBAR_LTD_CC, "0000000000000", 100, 30, 6, 79, "0101010101010000011000001111010010101101001101010101010100000010000001110100000" },
/* 63*/ { BARCODE_DBAR_LTD_CC, "0000002013571", 100, 30, 6, 79, "0101010101010000011100000111010110101000101101010101010100000010000001110100000" },
/* 64*/ { BARCODE_DBAR_LTD_CC, "0987141101324", 100, 30, 6, 79, "0100000111100000110101010101011010101010001101010101010100000010000001110100000" },
/* 65*/ { BARCODE_DBAR_LTD_CC, "0987143114895", 100, 30, 6, 79, "0101010101010011111000011111010111010101000101010101010100000010000001110100000" },
/* 66*/ { BARCODE_DBAR_LTD_CC, "1971422931828", 100, 30, 6, 79, "0100001111100111110101010101010010101010011101010101010100000010000001110100000" },
/* 67*/ { BARCODE_DBAR_LTD_CC, "1971424945399", 100, 30, 6, 79, "0101010101010000001000000001011010101001001101010101010100000010000001110100000" },
/* 68*/ { BARCODE_DBAR_LTD_CC, "1999999999999", 100, 30, 6, 79, "0100001000000101010100000101011010110100100101010000101110001101011110010100000" },
/* 69*/ { BARCODE_DBAR_LTD, "1651257071912", 100, 30, 1, 79, "0100000111100011110101010101010111010100100101010101010101111110111111110100000" },
/* 70*/ { BARCODE_DBAR_LTD_CC, "0987144605916", 100, 30, 6, 79, "0101010101010011111000011111011010110100100101010101010100111110000111110100000" },
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};
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
const int data_size = ARRAY_SIZE(data);
int i, length, ret;
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
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struct zint_symbol *symbol = NULL;
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char *text;
char escaped[1024];
char cmp_buf[1024];
char cmp_msg[1024];
int do_bwipp = (debug & ZINT_DEBUG_TEST_BWIPP) && testUtilHaveGhostscript(); /* Only do BWIPP test if asked, too slow otherwise */
int do_zxingcpp = (debug & ZINT_DEBUG_TEST_ZXINGCPP) && testUtilHaveZXingCPPDecoder(); /* Only do ZXing-C++ test if asked, too slow otherwise */
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
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testStartSymbol("test_binary_div_modulo_divisor", &symbol);
for (i = 0; i < data_size; i++) {
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if (testContinue(p_ctx, i)) continue;
symbol = ZBarcode_Create();
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assert_nonnull(symbol, "Symbol not created\n");
if (data[i].symbology == BARCODE_DBAR_OMN_CC || data[i].symbology == BARCODE_DBAR_LTD_CC) {
text = "[20]01";
strcpy(symbol->primary, data[i].data);
} else {
text = data[i].data;
}
length = testUtilSetSymbol(symbol, data[i].symbology, -1 /*input_mode*/, -1 /*eci*/, -1 /*option_1*/, -1, -1, -1 /*output_options*/, text, -1, debug);
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ret = ZBarcode_Encode(symbol, (const unsigned char *) text, length);
assert_zero(ret, "i:%d ZBarcode_Encode ret %d != 0 (%s)\n", i, ret, symbol->errtxt);
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if (p_ctx->generate) {
printf(" /*%3d*/ { %s, \"%s\", %.0f, %.0f, %d, %d, ",
i, testUtilBarcodeName(data[i].symbology), data[i].data, data[i].w, data[i].h, symbol->rows, symbol->width);
testUtilModulesPrintRow(symbol, symbol->rows - 1, "", " },\n");
} else {
int width;
assert_equal(symbol->rows, data[i].expected_rows, "i:%d symbol->rows %d != %d\n", i, symbol->rows, data[i].expected_rows);
assert_equal(symbol->width, data[i].expected_width, "i:%d symbol->width %d != %d\n", i, symbol->width, data[i].expected_width);
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ret = testUtilModulesCmpRow(symbol, symbol->rows - 1, data[i].expected, &width);
assert_zero(ret, "i:%d testUtilModulesCmpRow ret %d != 0 width %d row %d\n", i, ret, width, symbol->rows - 1);
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ret = ZBarcode_Buffer_Vector(symbol, 0);
assert_zero(ret, "i:%d ZBarcode_Buffer_Vector ret %d != 0\n", i, ret);
if (do_bwipp && testUtilCanBwipp(i, symbol, -1, -1, -1, debug)) {
ret = testUtilBwipp(i, symbol, -1, -1, -1, text, length, symbol->primary, cmp_buf, sizeof(cmp_buf), NULL);
assert_zero(ret, "i:%d %s testUtilBwipp ret %d != 0\n", i, testUtilBarcodeName(symbol->symbology), ret);
ret = testUtilBwippCmpRow(symbol, symbol->rows - 1, cmp_msg, cmp_buf, data[i].expected);
assert_zero(ret, "i:%d %s testUtilBwippCmp %d != 0 %s\n actual: %s\nexpected: %s\n",
i, testUtilBarcodeName(symbol->symbology), ret, cmp_msg, cmp_buf, data[i].expected);
}
if (do_zxingcpp && testUtilCanZXingCPP(i, symbol, data[i].data, length, debug)) {
int cmp_len, ret_len;
char modules_dump[8192 + 1];
assert_notequal(testUtilModulesDump(symbol, modules_dump, sizeof(modules_dump)), -1, "i:%d testUtilModulesDump == -1\n", i);
ret = testUtilZXingCPP(i, symbol, data[i].data, length, modules_dump, cmp_buf, sizeof(cmp_buf), &cmp_len);
assert_zero(ret, "i:%d %s testUtilZXingCPP ret %d != 0\n", i, testUtilBarcodeName(symbol->symbology), ret);
ret = testUtilZXingCPPCmp(symbol, cmp_msg, cmp_buf, cmp_len, data[i].data, length, NULL /*primary*/, escaped, &ret_len);
assert_zero(ret, "i:%d %s testUtilZXingCPPCmp %d != 0 %s\n actual: %.*s\nexpected: %.*s\n",
i, testUtilBarcodeName(symbol->symbology), ret, cmp_msg, cmp_len, cmp_buf, ret_len, escaped);
}
}
2019-09-02 08:09:47 +12:00
ZBarcode_Delete(symbol);
}
testFinish();
}
/* Replicate examples from GS1 General Specifications 21.0.1 and ISO/IEC 24724:2011 */
static void test_examples(const testCtx *const p_ctx) {
int debug = p_ctx->debug;
struct item {
int symbology;
int input_mode;
int option_2;
int option_3;
char *data;
int ret;
int expected_rows;
int expected_width;
int bwipp_cmp;
char *comment;
char *expected;
};
/* Verified manually against GS1 General Specifications 21.0.1 (GGS) and ISO/IEC 24724:2011, and verified via bwipp_dump.ps against BWIPP */
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
static const struct item data[] = {
/* 0*/ { BARCODE_DBAR_OMN, -1, -1, -1, "0950110153001", 0, 1, 96, 1, "GGS Figure 5.5.2.1.1-1. GS1 DataBar Omnidirectional",
"010000010100000101000111110000010111101101011100100011011101000101100000000111001110110111001101"
},
/* 1*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90614141000015[3202]000150", 0, 1, 151, 1, "GGS Figure 5.5.2.3.1-1. GS1 DataBar Expanded",
"0101100011001100001011111111000010100100010000111101110011100010100010111100000011100111010111111011010100000100000110001111110000101000000100011010010"
},
/* 2*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[01]90614141000015[3202]000150", 0, 5, 102, 1, "GGS Figure 5.5.2.3.2-1. GS1 DataBar Expanded Stacked, same (tec-it separator differs)",
"010110001100110000101111111100001010010001000011110111001110001010001011110000001110011101011111101101"
"000001110011001111010000000010100101101110111100001000110001110101110100001010100001100010100000010000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001011111011111001010000001010010111111011100100000000000000000000000000000000000000000000000000000"
"001010100000100000110001111110000101000000100011010010000000000000000000000000000000000000000000000000"
},
/* 3*/ { BARCODE_DBAR_OMN, -1, -1, -1, "2001234567890", 0, 1, 96, 1, "24724:2011 Figure 1 — GS1 DataBar Omnidirectional",
"010100011101000001001111111000010100110110111110110000010010100101100000000111000110110110001101"
},
/* 4*/ { BARCODE_DBAR_OMN, -1, -1, -1, "0441234567890", 0, 1, 96, 1, "24724:2011 Figure 2 — GS1 DataBar Omnidirectional",
"010010001000010001000111000000010101000001100110101100100100000101111110000011000010100011100101"
},
/* 5*/ { BARCODE_DBAR_OMN, -1, -1, -1, "0001234567890", 0, 1, 96, 1, "24724:2011 Figure 4 — GS1 DataBar Truncated",
"010101001000000001001111111000010111001011011110111001010110000101111111000111001100111101110101"
},
/* 6*/ { BARCODE_DBAR_STK, -1, -1, -1, "0001234567890", 0, 3, 50, 1, "24724:2011 Figure 5 — GS1 DataBar Stacked NOTE: Figure 5 separator differs from GGS Figure 5.5.2.1.3-1. which has ends set",
"01010100100000000100111111100001011100101101111010"
"00001010101011111010000000111010100011010010000000"
"10111001010110000101111111000111001100111101110101"
},
/* 7*/ { BARCODE_DBAR_OMNSTK, -1, -1, -1, "0003456789012", 0, 5, 50, 1, "24724:2011 Figure 6 — GS1 DataBar Stacked Omnidirectional",
"01010100100000000100111110000001010011100110011010"
"00001011011111111010000001010100101100011001100000"
"00000101010101010101010101010101010101010101010000"
"00001000100010111010010101010000111101001101110000"
"10110111011101000101100000000111000010110010001101"
},
/* 8*/ { BARCODE_DBAR_LTD, -1, -1, -1, "1501234567890", 0, 1, 79, 1, "24724:2011 Figure 7 — GS1 DataBar Limited",
"0100011001100011011010100111010010101101001101001001011000110111001100110100000"
},
/* 9*/ { BARCODE_DBAR_LTD, -1, -1, -1, "0031234567890", 0, 1, 79, 1, "24724:2011 Figure 8 — (a) GS1 DataBar Limited",
"0101010000010010001000010111001010110110100101011000001010010010110000010100000"
},
/* 10*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]98898765432106[3202]012345[15]991231", 0, 1, 200, 1, "24724:2011 Figure 10 — GS1 DataBar Expanded",
"01001000011000110110111111110000101110000110010100011010000001100010101111110000111010011100000010010100111110111001100011111100001011101100000100100100011110010110001011111111001110001101111010000101"
},
/* 11*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3103]001750", 0, 1, 151, 1, "24724:2011 Figure 11 — GS1 DataBar Expanded",
"0101110010000010011011111111000010111000010011000101011110111001100010111100000011100101110001110111011110101111000110001111110000101011000010011111010"
},
/* 12*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[01]98898765432106[3202]012345[15]991231", 0, 5, 102, 1, "24724:2011 Figure 12 — GS1 DataBar Expanded Stacked symbol",
"010010000110001101101111111100001011100001100101000110100000011000101011111100001110100111000000100101"
"000001111001110010010000000010100100011110011010111001011111100111010100000010100001011000111111010000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000011101000010011100001000000001011100101100001110110110111110010001001010000001010011000100000110000"
"101000010111101100011100111111110100011010011110001001001000001101110100001111110001100111011111001010"
},
/* 13*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[01]95012345678903[3103]000123", 0, 5, 102, 1, "24724:2011 Figure 13 — GS1 DataBar Expanded Stacked",
"010100010001111000101111111100001010111000001100010111000110001001101011110000001110010111000111011101"
"000011101110000111010000000010100101000111110011101000111001110110010100001010100001101000111000100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000000001010000111001010000001010010111011011111100000000000000000000000000000000000000000000000000000"
"001011110101111000110001111110000101000100100000011010000000000000000000000000000000000000000000000000"
},
/* 14*/ { BARCODE_DBAR_LTD, -1, -1, -1, "0009876543210", 0, 1, 79, 1, "24724:2011 Figure F.2 — GS1 DataBar Limited",
"0101010010010011000011000001010110100101100101000100010100010000010010010100000"
},
/* 15*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[10]12A", 0, 1, 102, 1, "24724:2011 Figure F.3 — GS1 DataBar Expanded",
"010100000110100000101111111100001010001000000010110101111100100111001011110000000010011101111111010101"
},
/* 16*/ { BARCODE_DBAR_STK, -1, -1, -1, "0000000000000", 0, 3, 50, 1, "#183 GS1 DataBar Stacked separator alternation; verified manually against tec-it.com",
"01010100100000000100011111111001011111110010101010"
"00000101011111111010100000001010100000001101010000"
"10101010110000000101111111110111011111111011010101"
},
/* 17*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[255]95011015340010123456789", 0, 1, 232, 1, "GGS 2.6.2.1 Example 1",
"0100011000110001011011111111000010100000010101100001100001100111001010111110000001100100001110100001001000011011111010001111110000101001011111100111011001000111100100101111111100111011111001100100110010011100010111100011110000001010"
},
/* 18*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[255]95011015340010123456789[3900]000", 0, 1, 298, 1, "GGS 2.6.2.1 Example 2",
"0101100011111010001011111111000010100001000001001101100001100111001010111110000001100100001110100001001000011011111010001111110000101001011111100111011001000111100100101111111100111011111001100100110010011100010111100011000000001010111111011101000100001000110001101011111111100110011110010010001101"
},
/* 19*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[255]9501101534001[17]160531[3902]050", 0, 1, 281, 1, "GGS 2.6.2.1 Example 3",
"01011001000110011110111111110000101000000101011000011000011001110010101111100000011001000011101000010010000110111110100011111100001010010111111001110111000010010100001011111111001110000100001100110100010000001101001000110000000010111010011110011101110010110001100010111111111001101"
},
/* 20*/ { BARCODE_DBAR_EXPSTK, -1, 3, -1, "[255]9501101534001012345[8111]0500", 0, 5, 151, 1, "GGS 2.6.2.1 Example 4, same (tec-it separator differs)",
"0101100111100011001011111111000010100000010101100001100001100111001010111110000001100100001110100001001000011011111010001111110000101001011111100111010"
"0000011000011100110100000000101001011111101010011110011110011000110101000001010100011011110001011110110111100100000101010000001010010110100000011000000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"0000110111000011011010000000010000100000100111011001100001100100010010100101010100101110110001111001011101100011101110100000000010000000000000000000000"
"1011001000111100100101111111100111011111011000100110011110011011101100011000000001010001001110000110100010011100010001011111111100110100000000000000000"
},
/* 21*/ { BARCODE_DBAR_EXPSTK, -1, 3, -1, "[255]9501101534001[3941]0035", 0, 5, 151, 1, "GGS 2.6.2.1 Example 5, same (tec-it separator differs)",
"0100001101011000011011111111000010100000010101100001100001100111001010111110000001100100001110100001001000011011111010001111110000101001011111100111010"
"0000110010100111100100000000101001011111101010011110011110011000110101000001010100011011110001011110110111100100000101010000001010010110100000011000000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"0000011011111011111010000000010000111100101011111001000100011100111010100001010100000000000000000000000000000000000000000000000000000000000000000000000"
"1010100100000100000101111111100111000011010100000110111011100011000100011110000001010000000000000000000000000000000000000000000000000000000000000000000"
},
/* 22*/ { BARCODE_DBAR_OMN, -1, -1, -1, "0950110153000", 0, 1, 96, 1, "https://www.gs1.org/standards/barcodes/databar, same, verified manually against tec-it",
"010000010100000101000111111110010111101101011100100011011011000101111110000011001110110111001101"
},
/* 23*/ { BARCODE_DBAR_STK, -1, -1, -1, "0950110153000", 0, 3, 50, 1, "https://www.gs1.org/standards/barcodes/databar, same, verified manually against tec-it",
"01000001010000010100011111111001011110110101110010"
"00001100101101101010100001010100100001001010100000"
"10100011011011000101111110000011001110110111001101"
},
/* 24*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[01]09501101530003[17]140704[10]AB-123", 0, 9, 102, 1, "https://www.gs1.org/standards/barcodes/databar, same (tec-it separator differs)",
"010101111100001001101111111100001011100001110110010100000011011010001011111000000110011010000001001101"
"000010000011110110010000000010100100011110001001101011111100100101110100000101010001100101111110110000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000011011001001111100001000000001011011111000110110110110000111110101001010000001010011101110100010000"
"101000100110110000011100111111110100100000111001001001001111000001010100001111110001100010001011100010"
"000011011001001111100001000000001011011111000110110110110000111110101001010000001010011101110100010000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010111101011110010100101010100100111100110010111001001100011111010100000000010000000000000000000000"
"010001000010100001100011000000001011000011001101000110110011100000101011111111100110100000000000000000"
},
/* 25*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]09501101530003[17]140704[10]AB-123", 0, 1, 281, 1, "https://www.gs1.org/standards/barcodes/databar, same, verified manually against tec-it",
"01010111110000100110111111110000101110000111011001010000001101101000101111100000011001101000000100110001110100010001100011111100001010100000111100100100100111000001001011111111001110000011011001000100010000101000011000110000000010110000110011010001101100111000001010111111111001101"
},
/* 26*/ { BARCODE_DBAR_STK, -1, -1, -1, "07010001234567", 0, 3, 50, 1, "https://www.gs1.no/support/standardbibliotek/datafangst/gs1-databar, same, verified manually against tec-it",
"01000100001010000100011100000001011000100110001010"
"00000011010101011010101011111010100111010101010000"
"10111100101110100101100000000111011000001000110101"
},
/* 27*/ { BARCODE_DBAR_OMNSTK, -1, -1, -1, "12380000000008", 0, 5, 50, 1, "Example with finder values 3 & 3; for bottom row see 5.3.2.2, same as BWIPP (tec-it and IDAutomation differ (ie no shift))",
"01011101001000000100010000000001010000001101011010"
"00000010110111111010101010101010101111110010100000"
"00000101010101010101010101010101010101010101010000"
"00001101100011001010000000000100101100111011110000"
"10100010011100110101111111110111010011000100001101"
},
/* 28*/ { BARCODE_DBAR_OMNSTK, -1, -1, -1, "99991234912372", 0, 5, 50, 1, "Example with finder values 8 & 6, same as BWIPP, verified manually against tec-it and IDAutomation",
"01001011101110000101110000000001011111011100101010"
"00000100010001111010001010101010100000100011010000"
"00000101010101010101010101010101010101010101010000"
"00001000100011001010000000010100100001000100100000"
"10100111011100110101111111100011011110111011011101"
},
/* 29*/ { BARCODE_DBAR_OMNSTK, -1, -1, -1, "32219876543217", 0, 5, 50, 1, "Example with finder values 6 & 1, same as BWIPP, verified manually against tec-it and IDAutomation",
"01001011000010001100111000000001011100010101000010"
"00000100111101110010000101010100100011101010110000"
"00000101010101010101010101010101010101010101010000"
"00001110011100101010000010101000110100001000010000"
"10110001100011010101111100000111001011110111100101"
},
/* 30*/ { BARCODE_DBAR_OMNSTK, -1, -1, -1, "32219876543255", 0, 5, 50, 1, "Example with finder values 7 & 7, same as BWIPP, verified manually against tec-it and IDAutomation",
"01001011000010001101111100000001011100010101000010"
"00000100111101110010000010101010100011101010110000"
"00000101010101010101010101010101010101010101010000"
"00000111001110101010000000101010110100001000010000"
"10111000110001010101111111000001001011110111100101"
},
/* 31*/ { BARCODE_DBAR_OMNSTK, -1, -1, -1, "04072912296211", 0, 5, 50, 1, "Example with finder values 7 & 8, same as BWIPP, verified manually against tec-it and IDAutomation",
"01001001000000010101111100000001011111000100101010"
"00000110111111101010000010101010100000111011010000"
"00000101010101010101010101010101010101010101010000"
"00001110100010111010000000001010111010000111010000"
"10110001011101000101111111110001000101111000101101"
},
/* 32*/ { BARCODE_DBAR_OMNSTK, -1, -1, -1, "06666666666666", 0, 5, 50, 1, "Example with finder values 6 & 4, same as BWIPP, verified manually against tec-it and IDAutomation",
"01000100010010000100111000000001011110111100101010"
"00001011101101111010000101010100100001000011010000"
"00000101010101010101010101010101010101010101010000"
"00000100011111001010000101010100101001100001110000"
"10101011100000110101111000000011010110011110000101"
},
/* 33*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[90]12345678901234567", 0, 5, 102, 1, "Example with 7 chars, 1 full row, bottom 3 chars",
"010010100001111000101111111100001010000010001110110100111110001011101011111100001110001111010011000101"
"000001011110000111010000000010100101111101110001001011000001110100010100000010100001110000101100110000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000000100000000101111110110001101011110001110011010100101000000101000010010111000000000000000000000000"
"101110011111111010000001001110010100001110001100101010000111111000111101101000111101000000000000000000"
},
/* 34*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[90]123456789012345678901234567", 0, 9, 102, 1, "Example with 10 chars, 2 full rows, bottom 2 chars",
"010000111100100010101111111100001010001000100000110100111110001011101011111000000110001111010011000101"
"000011000011011101010000000010100101110111011111001011000001110100010100000101010001110000101100110000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010111011100011100001000000001011101111100011010111100011100110101001010000001010000100101110000000"
"101001000100011100011100111111110100010000011100101000011100011001010100001111110001111011010001111010"
"000010111011100011100001000000001011101111100011010111100011100110101001010000001010000100101110000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010000110110001010100001010100100000111010011000000000000000000000000000000000000000000000000000000"
"010001111001001110100011110000001011111000101100100100000000000000000000000000000000000000000000000000"
},
/* 35*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[90]123456789012345678901234567890", 0, 9, 102, 1, "Example with 11 chars, 2 full rows, bottom 3 chars",
"010111011100010001101111111100001010000010001110110100111110001011101011111000000110001111010011000101"
"000000100011101110010000000010100101111101110001001011000001110100010100000101010001110000101100110000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010111011100011100001000000001011101111100011010111100011100110101001010000001010000100101110000000"
"101001000100011100011100111111110100010000011100101000011100011001010100001111110001111011010001111010"
"000010111011100011100001000000001011101111100011010111100011100110101001010000001010000100101110000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010000110110001010100101010100100111000100011011011000110001101110100000000010000000000000000000000"
"010001111001001110100011000000001011000111011100100100111001110010001011111111100110100000000000000000"
},
/* 36*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[91]1234567890123456789012345678901234", 0, 9, 102, 1, "Example with 12 chars, 3 full rows",
"010100010011111001101111111100001011001000010000010100111110001011101011111000000110001111010011000101"
"000011101100000110010000000010100100110111101111101011000001110100010100000101010001110000101100110000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010111011100011100001000000001011101111100011010111100011100110101001010000001010000100101110000000"
"101001000100011100011100111111110100010000011100101000011100011001010100001111110001111011010001111010"
"000010111011100011100001000000001011101111100011010111100011100110101001010000001010000100101110000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010000110110001010100101010100100111000100011011011000110001110110100000000010001101110100001000000"
"010001111001001110100011000000001011000111011100100100111001110001001011111111100110010001011110111101"
},
/* 37*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[91]123456789012345678901234567890123456789012", 0, 13, 102, 1, "Example with 15 chars, 3 full rows, bottom 7 chars",
"010010000111101011101111111100001011100000101100010100111110001011101011110000000010001111010011000101"
"000001111000010100010000000010100100011111010011101011000001110100010100001010101001110000101100110000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010111011100011100001010100001011101111100011010111100011100110101001010000001010000100101110000000"
"101001000100011100011100000011110100010000011100101000011100011001010100001111110001111011010001111010"
"000010111011100011100001010100001011101111100011010111100011100110101001010000001010000100101110000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010000110110001010100001010100100111000100011011011000110001110110100000010100001011110100001000000"
"010001111001001110100011110000001011000111011100100100111001110001001011111100001110100001011110111101"
"000010000110110001010100001010100100111000100011011011000110001110110100000010100001011110100001000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000000100000000101001001111101100011000010000110010100101010100101011111011100100000000000000000000000"
"101110011111111010110110000010011100111101111001101010000000011000100000100011011101000000000000000000"
},
/* 38*/ { BARCODE_DBAR_EXPSTK, -1, 3, -1, "[91]123456789012345678901234567890123456789012", 0, 9, 151, 1, "Example with 15 chars, 2 full rows, bottom 3 chars",
"0100100001111010111011111111000010111000001011000101001111100010111010111100000000100011110100110001011110001011011110001111110000101010011000111000010"
"0000011110000101000100000000101001000111110100111010110000011101000101000010101010011100001011001110100001110100100001010000001010010101100111000110000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"0000011000111110111010000101010000111000111011101101110000110110001010100001010100100111000100011011011000110001110110100000010100001011110100001000000"
"1010100111000001000101111000000111000111000100010010001111001001110100011110000001011000111011100100100111001110001001011111100001110100001011110111101"
"0000011000111110111010000101010000111000111011101101110000110110001010100001010100100111000100011011011000110001110110100000010100001011110100001000000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"0000001001110111110101001010101001010011000010000110001101111100100101000000001000000000000000000000000000000000000000000000000000000000000000000000000"
"0101110110001000001000110000000010101100111101111001110010000011011010111111110011101000000000000000000000000000000000000000000000000000000000000000000"
},
/* 39*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[91]ABCDEFGHIJKLMNOPQRSTUVWXYZABCDEFG", 0, 17, 102, 1, "Example with 19 chars, 4 full rows, bottom 3 chars",
"010101111100011101101111111100001011100000101100010101111110011110101011110000000010111000111110010101"
"000010000011100010010000000010100100011111010011101010000001100001010100001010101001000111000001100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000011110000110101100001010100001011001011000011110100001001101111001001010000001010100011100111100000"
"101100001111001010011100000011110100110100111100001011110110010000110100001111110001011100011000010010"
"000011110000110101100001010100001011001011000011110100001001101111001001010000001010100011100111100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001000010000111010100001010100101000010000111001011010111011111110100000010100001100011000010010000"
"010110111101111000100011110000001010111101111000110100101000100000001011111100001110011100111101100101"
"000001000010000111010100001010100101000010000111001011010111011111110100000010100001100011000010010000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010000110111011100010101000001011000011110110100101001111000011001001010101001010011111001010010000"
"101101111001000100011000000111110100111100001001011010110000111100110100000000110001100000110101100010"
"000010000110111011100010101000001011000011110110100101001111000011001001010101001010011111001010010000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010011111000111010001010101010101000111001111011011110100110000110100000000010000000000000000000000"
"010101100000111000100110000000001010111000110000100100001011001111001011111111100110100000000000000000"
},
/* 40*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[91]12345678901234567890123456789012345678901234567890123456789012345678", 0, 21, 102, 1, "Example with 22 chars, 5 full rows, bottom 2 chars",
"010101011110111111101111111100001011001000000101000100111110001011101011110000000010001111010011000101"
"000010100001000000010000000010100100110111111010111011000001110100010100001010101001110000101100110000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010111011100011100001010100001011101111100011010111100011100110101001010000001010000100101110000000"
"101001000100011100011100000011110100010000011100101000011100011001010100001111110001111011010001111010"
"000010111011100011100001010100001011101111100011010111100011100110101001010000001010000100101110000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010000110110001010100001010100100111000100011011011000110001110110100000000100001011110100001000000"
"010001111001001110100011110000001011000111011100100100111001110001001011111111001110100001011110111101"
"000010000110110001010100001010100100111000100011011011000110001110110100000000100001011110100001000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010110011000001100010101000001011101111010001000110000100001100101001010101001010111110111001000000"
"101101001100111110011000000111110100010000101110111001111011110011010100000000110001000001000110111010"
"000010110011000001100010101000001011101111010001000110000100001100101001010101001010111110111001000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000000110001100010010000000101010100000111100110101011011100010001110100000000010001011111010001100000"
"010111001110011101100111111000001011111000011001010100100011101110001011111111100110100000101110011101"
"000000110001100010010000000101010100000111100110101011011100010001110100000000010001011111010001100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001000111010000101000101010101010100001011000110000000000000000000000000000000000000000000000000000"
"001000111000101111010011000000000101011110100111000010000000000000000000000000000000000000000000000000"
},
/* 41*/ { BARCODE_DBAR_EXPSTK, -1, 3, -1, "[91]12345678901234567890123456789012345678901234567890123456789012345678", 0, 13, 151, 1, "Example with 22 chars, 3 full rows, bottom 4 chars",
"0101010111101111111011111111000010110010000001010001001111100010111010111100000000100011110100110001011110001011011110001111110000101010011000111000010"
"0000101000010000000100000000101001001101111110101110110000011101000101000010101010011100001011001110100001110100100001010000001010010101100111000110000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"0000011000111110111010000101010000111000111011101101110000110110001010100001010100100111000100011011011000110001110110100000000100001011110100001000000"
"1010100111000001000101111000000111000111000100010010001111001001110100011110000001011000111011100100100111001110001001011111111001110100001011110111101"
"0000011000111110111010000101010000111000111011101101110000110110001010100001010100100111000100011011011000110001110110100000000100001011110100001000000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"0000001001110111110101001010101001010011000010000110001000101111011101000001010100011000001100110100100011000110001001000000010101010000011110011010000"
"0101110110001000001000110000000010101100111101111001110111010000100010111110000001100111110011001011011100111001110110011111100000101111100001100101010"
"0000001001110111110101001010101001010011000010000110001000101111011101000001010100011000001100110100100011000110001001000000010101010000011110011010000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"0000101110001000111010000000001000101111101000110001110001110100001010001010101010101000010110001100000000000000000000000000000000000000000000000000000"
"1010010001110111000101111111110011010000010111001110001110001011110100110000000001010111101001110000100000000000000000000000000000000000000000000000000"
},
/* 42*/ { BARCODE_DBAR_EXPSTK, -1, 4, -1, "[91]12345678901234567890123456789012345678901234567890123456789012345678", 0, 9, 200, 1, "Example with 22 chars, 2 full rows, bottom 6 chars",
"01010101111011111110111111110000101100100000010100010011111000101110101111000000001000111101001100010111100010110111100011111100001010100110001110000101001110000010001011110000001110001110001000100101"
"00001010000100000001000000001010010011011111101011101100000111010001010000101010100111000010110011101000011101001000010100000010100101011001110001111010110001111101110100001010100001110001110111010000"
"00000101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"00001011001100000110001010100000101110111101000100011000010000110010100101010100101011111011100100010000100001011110100001000000001011011100011000110110110001000111001001010100001010100011011000010000"
"10110100110011111001100000011111010001000010111011100111101111001101010000000011000100000100011011101111011110100001011100111111110100100011100111001001001110111000110100000011110001011100100111100010"
"00001011001100000110001010100000101110111101000100011000010000110010100101010100101011111011100100010000100001011110100001000000001011011100011000110110110001000111001001010100001010100011011000010000"
"00000101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"00000011000110001001000000010101010000011110011010101101110001000111010000000001000101111101000110001110001110100001010001010101010101000010110001100000000000000000000000000000000000000000000000000000"
"01011100111001110110011111100000101111100001100101010010001110111000101111111110011010000010111001110001110001011110100110000000001010111101001110000100000000000000000000000000000000000000000000000000"
},
/* 43*/ { BARCODE_DBAR_EXPSTK, -1, 5, -1, "[91]12345678901234567890123456789012345678901234567890123456789012345678", 0, 9, 249, 1, "Example with 22 chars, 2 full rows, bottom 2 chars",
"010101011110111111101111111100001011001000000101000100111110001011101011110000000010001111010011000101111000101101111000111111000010101001100011100001010011100000100010111100000011100011100010001001000111100100111010001111000000101100011101110010010"
"000010100001000000010000000010100100110111111010111011000001110100010100001010101001110000101100111010000111010010000101000000101001010110011100011110101100011111011101000010101000011100011101110110111000011011000101010000101010010011100010001100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"000010001100011101101000000001000010111101000010000100010011101111101010010101010010100110000100001100010001011110111010000010101000110000011001101001000110001100010010000000101010100000111100110101011011100010001110100000000010001011111010001100000"
"101001110011100010010111111110011101000010111101111011101100010000010001100000000101011001111011110011101110100001000101111100000011001111100110010110111001110011101100111111000001011111000011001010100100011101110001011111111100110100000101110011101"
"000010001100011101101000000001000010111101000010000100010011101111101010010101010010100110000100001100010001011110111010000010101000110000011001101001000110001100010010000000101010100000111100110101011011100010001110100000000010001011111010001100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"000010001110100001010001010101010101000010110001100000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
"010001110001011110100110000000001010111101001110000100000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
},
/* 44*/ { BARCODE_DBAR_EXPSTK, -1, 6, -1, "[91]12345678901234567890123456789012345678901234567890123456789012345678", 0, 5, 298, 1, "Example with 22 chars, 1 full row, bottom 10 chars",
"0101010111101111111011111111000010110010000001010001001111100010111010111100000000100011110100110001011110001011011110001111110000101010011000111000010100111000001000101111000000111000111000100010010001111001001110100011110000001011000111011100100100111001110001001011111111001110100001011110111101"
"0000101000010000000100000000101001001101111110101110110000011101000101000010101010011100001011001110100001110100100001010000001010010101100111000111101011000111110111010000101010000111000111011101101110000110110001010100001010100100111000100011011011000110001110110100000000100001011110100001000000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"0000000100111011111010100101010100101001100001000011000100010111101110100000101010001100000110011010010001100011000100100000001010101000001111001101010110111000100011101000000000100010111110100011000111000111010000101000101010101010100001011000110000000000000000000000000000000000000000000000000000"
"0010111011000100000100011000000001010110011110111100111011101000010001011111000000110011111001100101101110011100111011001111110000010111110000110010101001000111011100010111111111001101000001011100111000111000101111010011000000000101011110100111000010000000000000000000000000000000000000000000000000"
},
/* 45*/ { BARCODE_DBAR_EXPSTK, -1, 7, -1, "[91]12345678901234567890123456789012345678901234567890123456789012345678", 0, 5, 347, 1, "Example with 22 chars, 1 full row, bottom 8 chars",
"01010101111011111110111111110000101100100000010100010011111000101110101111000000001000111101001100010111100010110111100011111100001010100110001110000101001110000010001011110000001110001110001000100100011110010011101000111100000010110001110111001001001110011100010010111111110011101000010111101111011101100010000010001100000000101011001111011110010"
"00001010000100000001000000001010010011011111101011101100000111010001010000101010100111000010110011101000011101001000010100000010100101011001110001111010110001111101110100001010100001110001110111011011100001101100010101000010101001001110001000110110110001100011101101000000001000010111101000010000100010011101111101010010101010010100110000100000000"
"00000101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"00000100010111101110100000101010001100000110011010010001100011000100100000001010101000001111001101010110111000100011101000000000100010111110100011000111000111010000101000101010101010100001011000110000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
"10111011101000010001011111000000110011111001100101101110011100111011001111110000010111110000110010101001000111011100010111111111001101000001011100111000111000101111010011000000000101011110100111000010000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
},
/* 46*/ { BARCODE_DBAR_EXPSTK, -1, 8, -1, "[91]12345678901234567890123456789012345678901234567890123456789012345678", 0, 5, 396, 1, "Example with 22 chars, 1 full row, bottom 6 chars",
"010101011110111111101111111100001011001000000101000100111110001011101011110000000010001111010011000101111000101101111000111111000010101001100011100001010011100000100010111100000011100011100010001001000111100100111010001111000000101100011101110010010011100111000100101111111100111010000101111011110111011000100000100011000000001010110011110111100111011101000010001011111000000110011111001100101101"
"000010100001000000010000000010100100110111111010111011000001110100010100001010101001110000101100111010000111010010000101000000101001010110011100011110101100011111011101000010101000011100011101110110111000011011000101010000101010010011100010001101101100011000111011010000000010000101111010000100001000100111011111010100101010100101001100001000011000100010111101110100000101010001100000110011010000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000000011000110001001000000010101010000011110011010101101110001000111010000000001000101111101000110001110001110100001010001010101010101000010110001100000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
"001011100111001110110011111100000101111100001100101010010001110111000101111111110011010000010111001110001110001011110100110000000001010111101001110000100000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
},
/* 47*/ { BARCODE_DBAR_EXPSTK, -1, 9, -1, "[91]12345678901234567890123456789012345678901234567890123456789012345678", 0, 5, 445, 1, "Example with 22 chars, 1 full row, bottom 4 chars",
"0101010111101111111011111111000010110010000001010001001111100010111010111100000000100011110100110001011110001011011110001111110000101010011000111000010100111000001000101111000000111000111000100010010001111001001110100011110000001011000111011100100100111001110001001011111111001110100001011110111101110110001000001000110000000010101100111101111001110111010000100010111110000001100111110011001011011100111001110110011111100000101111100001100101010"
"0000101000010000000100000000101001001101111110101110110000011101000101000010101010011100001011001110100001110100100001010000001010010101100111000111101011000111110111010000101010000111000111011101101110000110110001010100001010100100111000100011011011000110001110110100000000100001011110100001000010001001110111110101001010101001010011000010000110001000101111011101000001010100011000001100110100100011000110001001000000010101010000011110011010000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"0000101110001000111010000000001000101111101000110001110001110100001010001010101010101000010110001100000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
"1010010001110111000101111111110011010000010111001110001110001011110100110000000001010111101001110000100000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
},
/* 48*/ { BARCODE_DBAR_EXPSTK, -1, 10, -1, "[91]12345678901234567890123456789012345678901234567890123456789012345678", 0, 5, 494, 1, "Example with 22 chars, 1 full row, bottom 2 chars",
"01010101111011111110111111110000101100100000010100010011111000101110101111000000001000111101001100010111100010110111100011111100001010100110001110000101001110000010001011110000001110001110001000100100011110010011101000111100000010110001110111001001001110011100010010111111110011101000010111101111011101100010000010001100000000101011001111011110011101110100001000101111100000011001111100110010110111001110011101100111111000001011111000011001010100100011101110001011111111100110100000101110011101"
"00001010000100000001000000001010010011011111101011101100000111010001010000101010100111000010110011101000011101001000010100000010100101011001110001111010110001111101110100001010100001110001110111011011100001101100010101000010101001001110001000110110110001100011101101000000001000010111101000010000100010011101111101010010101010010100110000100001100010001011110111010000010101000110000011001101001000110001100010010000000101010100000111100110101011011100010001110100000000010001011111010001100000"
"00000101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"00000100011101000010100010101010101010000101100011000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
"00100011100010111101001100000000010101111010011100001000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
},
/* 49*/ { BARCODE_DBAR_EXPSTK, -1, 11, -1, "[91]12345678901234567890123456789012345678901234567890123456789012345678", 0, 1, 543, 1, "Example with 22 chars, 1 row",
"010101011110111111101111111100001011001000000101000100111110001011101011110000000010001111010011000101111000101101111000111111000010101001100011100001010011100000100010111100000011100011100010001001000111100100111010001111000000101100011101110010010011100111000100101111111100111010000101111011110111011000100000100011000000001010110011110111100111011101000010001011111000000110011111001100101101110011100111011001111110000010111110000110010101001000111011100010111111111001101000001011100111000111000101111010011000000000101011110100111000010"
},
/* 50*/ { BARCODE_DBAR_EXPSTK, -1, 1, -1, "[91]1234567890123456789012345678901234567890123456789012345678901", 0, 37, 53, 1, "",
"01011100010111111010111111110000101100100000010100010"
"00000011101000000101000000001010010011011111101010000"
"00000101010101010101010101010101010101010101010100000"
"00001000001110100010100001010101001110000101100110000"
"10100111110001011101011110000000010001111010011000101"
"00001000001110100010100001010101001110000101100110000"
"00000101010101010101010101010101010101010101010100000"
"00000001110100100001010000001010010101100111000110000"
"01011110001011011110001111110000101010011000111000010"
"00000001110100100001010000001010010101100111000110000"
"00000101010101010101010101010101010101010101010100000"
"00000110001111101110100001010100001110001110111010000"
"10101001110000010001011110000001110001110001000100101"
"00000110001111101110100001010100001110001110111010000"
"00000101010101010101010101010101010101010101010100000"
"00001000011011000101010000101010010011100010001100000"
"01000111100100111010001111000000101100011101110010010"
"00001000011011000101010000101010010011100010001100000"
"00000101010101010101010101010101010101010101010100000"
"00001000110001110110100000010100001011110100001000000"
"10100111001110001001011111100001110100001011110111101"
"00001000110001110110100000010100001011110100001000000"
"00000101010101010101010101010101010101010101010100000"
"00000010011101111101010010101010010100110000100000000"
"01011101100010000010001100000000101011001111011110010"
"00000010011101111101010010101010010100110000100000000"
"00000101010101010101010101010101010101010101010100000"
"00000100010111101110100000101010001100000110011010000"
"10111011101000010001011111000000110011111001100101101"
"00000100010111101110100000101010001100000110011010000"
"00000101010101010101010101010101010101010101010100000"
"00000011000110001001000101010101010000011110011010000"
"01011100111001110110011000000000101111100001100101010"
"00000011000110001001000101010101010000011110011010000"
"00000101010101010101010101010101010101010101010100000"
"00001011100010001110100000000010001110111010001100000"
"10100100011101110001011111111100110001000101110011101"
},
/* 51*/ { BARCODE_DBAR_EXPSTK, -1, 1, -1, "[91]12345678901234567890123456789012345678901234567890123456789012345678", 0, 41, 53, 1, "Example with 22 chars, 11 rows",
"01010101111011111110111111110000101100100000010100010"
"00001010000100000001000000001010010011011111101010000"
"00000101010101010101010101010101010101010101010100000"
"00001000001110100010100001010101001110000101100110000"
"10100111110001011101011110000000010001111010011000101"
"00001000001110100010100001010101001110000101100110000"
"00000101010101010101010101010101010101010101010100000"
"00000001110100100001010000001010010101100111000110000"
"01011110001011011110001111110000101010011000111000010"
"00000001110100100001010000001010010101100111000110000"
"00000101010101010101010101010101010101010101010100000"
"00000110001111101110100001010100001110001110111010000"
"10101001110000010001011110000001110001110001000100101"
"00000110001111101110100001010100001110001110111010000"
"00000101010101010101010101010101010101010101010100000"
"00001000011011000101010000101010010011100010001100000"
"01000111100100111010001111000000101100011101110010010"
"00001000011011000101010000101010010011100010001100000"
"00000101010101010101010101010101010101010101010100000"
"00001000110001110110100000000100001011110100001000000"
"10100111001110001001011111111001110100001011110111101"
"00001000110001110110100000000100001011110100001000000"
"00000101010101010101010101010101010101010101010100000"
"00000010011101111101010010101010010100110000100000000"
"01011101100010000010001100000000101011001111011110010"
"00000010011101111101010010101010010100110000100000000"
"00000101010101010101010101010101010101010101010100000"
"00000100010111101110100000101010001100000110011010000"
"10111011101000010001011111000000110011111001100101101"
"00000100010111101110100000101010001100000110011010000"
"00000101010101010101010101010101010101010101010100000"
"00000011000110001001000000010101010000011110011010000"
"01011100111001110110011111100000101111100001100101010"
"00000011000110001001000000010101010000011110011010000"
"00000101010101010101010101010101010101010101010100000"
"00001011100010001110100000000010001011111010001100000"
"10100100011101110001011111111100110100000101110011101"
"00001011100010001110100000000010001011111010001100000"
"00000101010101010101010101010101010101010101010100000"
"00001000111010000101000101010101010100001011000110000"
"01000111000101111010011000000000101011110100111000010"
},
/* 52*/ { BARCODE_DBAR_EXPSTK, -1, 6, -1, "[01]98898765432106[3202]012345[15]991231[3203]001234[17]010203", 0, 5, 298, 1, "#200 Daniel Gredler mostly empty last row, 16 chars, 2 rows, bottom row 4 chars",
"0100011101110001011011111111000010110000100101111101101000000110001010111100000000101001110000001001010011111011100110001111110000101110101000011000011010011100011000101111000000111001111000111101010111110010110000100011110000001010110010000010000111011111000100101011111100001110011110011000100101"
"0000100010001110100100000000101001001111011010000010010111111001110101000010101010010110001111110110101100000100011001010000001010010001010111100111100101100011100111010000101010000110000111000010101000001101001111010100001010100101001101111101111000100000111011010100000010100001100001100111010000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"0000110000010010011000010000000010111110011010001001111010011011100010010101010010101110100011111000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
"1010001111101101100111001111111101000001100101110110000101100100011101000000001100010001011100000110100000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
},
/* 53*/ { BARCODE_DBAR_EXPSTK, -1, 3, -1, "[01]98898765432106[3202]012345[15]991231[3203]001234[17]010203", 0, 9, 151, 1, "#200 16 chars, 3 rows, bottom row 4 chars",
"0100011101110001011011111111000010110000100101111101101000000110001010111100000000101001110000001001010011111011100110001111110000101110101000011000010"
"0000100010001110100100000000101001001111011010000010010111111001110101000010101010010110001111110110101100000100011001010000001010010001010111100110000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"0000101100011100111010000101010000110000111000010101000001101001111010100001010100101001101111101111000100000111011010100000010100001100001100111010000"
"1011010011100011000101111000000111001111000111101010111110010110000100011110000001010110010000010000111011111000100101011111100001110011110011000100101"
"0000101100011100111010000101010000110000111000010101000001101001111010100001010100101001101111101111000100000111011010100000010100001100001100111010000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"0000011111000101110101001010101001000111011001011110010001011001111101000000001000011001001000001100000000000000000000000000000000000000000000000000000"
"0101100000111010001000110000000010111000100110100001101110100110000010111111110011100110110111110001010000000000000000000000000000000000000000000000000"
},
/* 54*/ { BARCODE_DBAR_EXPSTK, -1, 4, -1, "[01]98898765432106[3202]012345[15]991231[3203]001234[17]010203", 0, 5, 200, 1, "#200 16 chars, 2 full rows",
"01000111011100010110111111110000101100001001011111011010000001100010101111000000001010011100000010010100111110111001100011111100001011101010000110000110100111000110001011110000001110011110001111010101"
"00001000100011101001000000001010010011110110100000100101111110011101010000101010100101100011111101101011000001000110010100000010100100010101111001111001011000111001110100001010100001100001110000100000"
"00000101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"00001100000100100110000100000000101111100110100010011110100110111000100101010100101011101000111110010110111001100001100001010000001010110111000001000111101111101100101001010100001010111100101100000000"
"10100011111011011001110011111111010000011001011101100001011001000111010000000011000100010111000001101001000110011110011100001111110101001000111110111000010000010011010100000011110001000011010011111010"
},
/* 55*/ { BARCODE_DBAR_EXPSTK, -1, 5, -1, "[01]98898765432106[3202]012345[15]991231[3203]001234[17]010203", 0, 5, 249, 1, "#200 16 chars, 2 rows, bottom row 6 chars",
"010001110111000101101111111100001011000010010111110110100000011000101011110000000010100111000000100101001111101110011000111111000010111010100001100001101001110001100010111100000011100111100011110101011111001011000010001111000000101011001000001000010"
"000010001000111010010000000010100100111101101000001001011111100111010100001010101001011000111111011010110000010001100101000000101001000101011110011110010110001110011101000010101000011000011100001010100000110100111101010000101010010100110111110110000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"000001000001110110101000000101000011000011001110110100111110001011101010010101010010001110110010111100100010110011111010000000010000110010010000011000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
"101110111110001001010111111000011100111100110001001011000001110100010001100000000101110001001101000011011101001100000101111111100111001101101111100010100000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
},
/* 56*/ { BARCODE_DBAR_EXPSTK, -1, 7, -1, "[01]98898765432106[3202]012345[15]991231[3203]001234[17]010203", 0, 5, 347, 1, "#200 16 chars, 2 rows, bottom row 2 chars",
"01000111011100010110111111110000101100001001011111011010000001100010101111000000001010011100000010010100111110111001100011111100001011101010000110000110100111000110001011110000001110011110001111010101111100101100001000111100000010101100100000100001110111110001001010111111000011100111100110001001011000001110100010001100000000101110001001101000010"
"00001000100011101001000000001010010011110110100000100101111110011101010000101010100101100011111101101011000001000110010100000010100100010101111001111001011000111001110100001010100001100001110000101010000011010011110101000010101001010011011111011110001000001110110101000000101000011000011001110110100111110001011101010010101010010001110110010110000"
"00000101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"00001000101100111110100000000100001100100100000110000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
"10110111010011000001011111111001110011011011111000101000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000"
},
/* 57*/ { BARCODE_DBAR_EXPSTK, -1, 8, -1, "[01]98898765432106[3202]012345[15]991231[3203]001234[17]010203", 0, 1, 396, 1, "#200 16 chars, 1 row",
"010001110111000101101111111100001011000010010111110110100000011000101011110000000010100111000000100101001111101110011000111111000010111010100001100001101001110001100010111100000011100111100011110101011111001011000010001111000000101011001000001000011101111100010010101111110000111001111001100010010110000011101000100011000000001011100010011010000110111010011000001011111111001110011011011111000101"
},
/* 58*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]00012345678905[10]ABC123", 0, 1, 232, 1, "24724:2011 7.2.5.4.1, encoding method 1 '1'",
"0100011000001011011011111111000010110011000010111101011110011011111010111110000001100010110000110111000111101101011110001111110000101110001100100001010011101111110110101111111100111001011011111101110011011100101111100011110000001010"
},
/* 59*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3103]001750", 0, 1, 151, 1, "24724:2011 7.2.5.4.2, encoding method 3 '0100'",
"0101110010000010011011111111000010111000010011000101011110111001100010111100000011100101110001110111011110101111000110001111110000101011000010011111010"
},
/* 60*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3103]032767", 0, 1, 151, 1, "Encoding method 3 '0100' with weight = 32767",
"0101001000111000011011111111000010111000010011000101011110111001100010111100000011100101110001110111011110111011000110001111110000101101111101110111010"
},
/* 61*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3103]032768", 0, 1, 200, 1, "Possible encoding method 3 '0100' but weight > 32767 so encoding method 7 '0111000' with dummy date",
"01001100000101001110111111110000101000110111000010010111100110111110101111110000111000101100001101110001111011010111100011111100001011000110100110000110100000100110001011111111001110011001111010000101"
},
/* 62*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3202]000156", 0, 1, 151, 1, "24724:2011 7.2.5.4.3, encoding method 4 '0101'",
"0101001000111100001011111111000010100111000100001101011110111001100010111100000011100101110001110111011110101111000110001111110000101100001000001010010"
},
/* 63*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3202]009999", 0, 1, 151, 1, "Encoding method 4 '0101' with weight = 9999",
"0101110001000100011011111111000010100111000100001101011110111001100010111100000011100101110001110111011110110100011110001111110000101100111110010001010"
},
/* 64*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3202]010000", 0, 1, 200, 1, "Possible encoding method 4 '0101' but weight > 9999 so encoding method 8 with dummy date",
"01001000101110000110111111110000101110100011000010010111100110111110101111110000111000101100001101110001111011010111100011111100001010000011101001100111101101001110001011111111001110011001111010000101"
},
/* 65*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3203]022767", 0, 1, 151, 1, "Encoding method 4 '0101' with weight = 22767",
"0101110010011000001011111111000010100111000100001101011110111001100010111100000011100101110001110111011110111011000110001111110000101101111101110111010"
},
/* 66*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3203]022768", 0, 1, 200, 1, "Possible encoding method 4 '0101' but weight > 22767 so encoding method 8 with dummy date",
"01000110111000100010111111110000101110100011000010010111100110111110101111110000111000101100001101110001111011010111100011111100001010011100010110000100001101000001101011111111001110011001111010000101"
},
/* 67*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3922]795", 0, 1, 183, 1, "24724:2011 7.2.5.4.5, encoding method 5 '01100XX', no following AIs",
"010110000010001011101111111100001010011100000101100101111001101111101011111100001110001011000011011100011110110101111000111111000010100111101110100001100011011100100010111111110011101"
},
/* 68*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3922]795[20]01", 0, 1, 200, 1, "Encoding method 5 '01100XX' with following AI",
"01000110110000110010111111110000101111000100001010010111100110111110101111110000111000101100001101110001111011010111100011111100001010011110111010000110001110001011001011111111001110100111110001110101"
},
/* 69*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3932]0081234", 0, 1, 200, 1, "24724:2011 7.2.5.4.6, encoding method 6 '01101XX', no following AIs",
"01001110000101100010111111110000101110100000110010010111100110111110101111110000111000101100001101110001111011010111100011111100001011000011010111100100111110001011101011111111001110001101111001011101"
},
/* 70*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3932]0081234[20]01", 0, 1, 232, 1, "Encoding method 6 '01101XX' with following AI",
"0100001101000100111011111111000010110000101000111001011110011011111010111110000001100010110000110111000111101101011110001111110000101100001101011110010011111000101110101111111100111000100110011110010011101111001000100011110000001010"
},
/* 71*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3932]A401234", ZINT_WARN_NONCOMPLIANT, 1, 232, 0, "Possible encoding method 6 '01101XX' but invalid currency code so encoding method 1; BWIPP no check (craps out)",
"0100011000010011011011111111000010100100011111001101011110011011111010111110000001100010110000110111000111101101011110001111110000101100011001111001010001011011000000101111111100111001101011111110110001111001001110100011110000001010"
},
/* 72*/ { BARCODE_DBAR_EXP, GS1NOCHECK_MODE, -1, -1, "[01]90012345678908[3932]A401234", 0, 1, 232, 0, "Possible encoding method 6 '01101XX' but invalid currency code so encoding method 1; BWIPP no check (craps out)",
"0100011000010011011011111111000010100100011111001101011110011011111010111110000001100010110000110111000111101101011110001111110000101100011001111001010001011011000000101111111100111001101011111110110001111001001110100011110000001010"
},
/* 73*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3102]099999[11]201209", 0, 1, 200, 1, "Encoding method 7 '0111000' with weight <= 99999 and valid date",
"01000101111001000010111111110000101000110111000010010111100110111110101111110000111000101100001101110001111011010111100011111100001010111100100001000100000011100101001011111111001110010000100100011101"
},
/* 74*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3102]099999", 0, 1, 200, 1, "Encoding method 7 '0111000' with weight <= 99999 but no date",
"01000111011000010010111111110000101000110111000010010111100110111110101111110000111000101100001101110001111011010111100011111100001010111100100001000110100100011000001011111111001110011001111010000101"
},
/* 75*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3102]100000[11]201209", 0, 1, 281, 1, "Possible encoding method 7 '0111000' but weight > 99999 so encoding method 1",
"01010011110001110010111111110000101001000111110011010111100110111110101111100000011000101100001101110001111011010111100011111100001010010110001110000110010000011110101011111111001110000011100110101100001001110100011000110000000010100101100000100001011100011001111010111111111001101"
},
/* 76*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3102]099999[11]200000", ZINT_WARN_NONCOMPLIANT, 1, 281, 0, "Possible encoding method 7 '0111000' with weight <= 99999 but date invalid so encoding method 1; BWIPP requires `dontlint` (GS1NOCHECK_MODE)",
"01011001110001001110111111110000101001000111110011010111100110111110101111100000011000101100001101110001111011010111100011111100001010010110001110000110010011110100001011111111001110110011100010111100001001110100011000110000000010101100001000000101010111101111110010111111111001101"
},
/* 77*/ { BARCODE_DBAR_EXP, GS1NOCHECK_MODE, -1, -1, "[01]90012345678908[3102]099999[11]200000", 0, 1, 281, 1, "Possible encoding method 7 '0111000' with weight <= 99999 but date invalid so encoding method 1",
"01011001110001001110111111110000101001000111110011010111100110111110101111100000011000101100001101110001111011010111100011111100001010010110001110000110010011110100001011111111001110110011100010111100001001110100011000110000000010101100001000000101010111101111110010111111111001101"
},
/* 78*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3201]099999[11]201209", 0, 1, 200, 1, "Encoding method 8 '0111001' with weight <= 99999 and valid date",
"01001000001101001110111111110000101110100011000010010111100110111110101111110000111000101100001101110001111011010111100011111100001011000100001101100111010111001110001011111111001110010000100100011101"
},
/* 79*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3201]099999", 0, 1, 200, 1, "Encoding method 8 '0111001' with weight <= 99999 but no date",
"01000101110010000110111111110000101110100011000010010111100110111110101111110000111000101100001101110001111011010111100011111100001011000100001101100111010000111011101011111111001110011001111010000101"
},
/* 80*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3201]100000[11]201209", 0, 1, 281, 1, "Possible encoding method 8 '0111001' but weight > 99999 so encoding method 1",
"01011101100011000110111111110000101001000111110011010111100110111110101111100000011000101100001101110001111011010111100011111100001011101010000110000111011110001100101011111111001110000011100110101100001001110100011000110000000010100101100000100001011100011001111010111111111001101"
},
/* 81*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3201]099999[11]000000", ZINT_WARN_NONCOMPLIANT, 1, 281, 0, "Possible encoding method 8 '0111001' but date invalid so encoding method 1; BWIPP requires `dontlint` (GS1NOCHECK_MODE)",
"01011110100001001110111111110000101001000111110011010111100110111110101111100000011000101100001101110001111011010111100011111100001011101010000110000111000011110101101011111111001110110011100010111100001110100001011000110000000010101100001000000101010111101111110010111111111001101"
},
/* 82*/ { BARCODE_DBAR_EXP, GS1NOCHECK_MODE, -1, -1, "[01]90012345678908[3201]099999[11]000000", 0, 1, 281, 1, "Possible encoding method 8 '0111001' but date invalid so encoding method 1",
"01011110100001001110111111110000101001000111110011010111100110111110101111100000011000101100001101110001111011010111100011111100001011101010000110000111000011110101101011111111001110110011100010111100001110100001011000110000000010101100001000000101010111101111110010111111111001101"
},
/* 83*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3100]099999[13]201209", 0, 1, 200, 1, "Encoding method 9 '0111010' with weight <= 99999 and valid date",
"01001000001101001110111111110000101111001010000010010111100110111110101111110000111000101100001101110001111011010111100011111100001011000111000001010111010000110110001011111111001110010000100100011101"
},
/* 84*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3204]099999[13]201209", 0, 1, 200, 1, "Encoding method 10 '0111011' with weight <= 99999 and valid date",
"01001000111000010110111111110000101100101000001110010111100110111110101111110000111000101100001101110001111011010111100011111100001010011101000011110101110000101111101011111111001110010000100100011101"
},
/* 85*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3103]012233[15]991231", 0, 1, 200, 1, "24724:2011 7.2.5.4.4, encoding method 11 '0111100' with weight <= 99999 and valid date",
"01001100000100111010111111110000101011100100000110010111100110111110101111110000111000101100001101110001111011010111100011111100001011000011010110000111001100110001001011111111001110001101111010000101"
},
/* 86*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3205]099999[15]201209", 0, 1, 200, 1, "Encoding method 12 '0111101' with weight <= 99999 and valid date",
"01001110000010011010111111110000101000001101110100010111100110111110101111110000111000101100001101110001111011010111100011111100001011110011010001100101001100011000001011111111001110010000100100011101"
},
/* 87*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3105]099999[17]201209", 0, 1, 200, 1, "Encoding method 13 '0111110' with weight <= 99999 and valid date",
"01000111010000110010111111110000101110000100110100010111100110111110101111110000111000101100001101110001111011010111100011111100001011110011010001100101001100011000001011111111001110010000100100011101"
},
/* 88*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]90012345678908[3200]099999[17]201209", 0, 1, 200, 1, "Encoding method 14 '0111111' with weight <= 99999 and valid date",
"01001110000010100110111111110000101111000100010100010111100110111110101111110000111000101100001101110001111011010111100011111100001011000111000001010111010000110110001011111111001110010000100100011101"
},
/* 89*/ { BARCODE_DBAR_EXPSTK, -1, 4, -1, "[8110]106141416543213500110000310123196000", 0, 5, 200, 1, "North American Coupon Application Guideline (NACAG) Figure 1 (& Appendix C: Example 6)",
"01001100101110001110111111110000101000001101000001010111100110111000101111100000011011010001000000110000111100001010100011111100001010000010101111000111010000011001101011111111001110000001101101000101"
"00000011010001110001000000001010010111110010111110101000011001000111010000010101000100101110111111001111000011110101010100000010100101111101010000111000101111100110010100000000100001111110010010110000"
"00000101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"00000100010110000110100000001010101010111100111101110010110001110011101000000000100010000011010010000100011110111011001000101010101010011101111111010000000000000000000000000000000000000000000000000000"
"00100011101001111001001111110000010101000011000010001101001110001100010111111111001101111100101101111011100001000100110011000000000101100010000000101010000000000000000000000000000000000000000000000000"
},
/* 90*/ { BARCODE_DBAR_EXPSTK, -1, -1, 2, "[8110]106141416543213500110000310123196000", 0, 5, 200, 1, "NACAG Figure 1 (& Appendix C: Example 6) specifying max rows",
"01001100101110001110111111110000101000001101000001010111100110111000101111100000011011010001000000110000111100001010100011111100001010000010101111000111010000011001101011111111001110000001101101000101"
"00000011010001110001000000001010010111110010111110101000011001000111010000010101000100101110111111001111000011110101010100000010100101111101010000111000101111100110010100000000100001111110010010110000"
"00000101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"00000100010110000110100000001010101010111100111101110010110001110011101000000000100010000011010010000100011110111011001000101010101010011101111111010000000000000000000000000000000000000000000000000000"
"00100011101001111001001111110000010101000011000010001101001110001100010111111111001101111100101101111011100001000100110011000000000101100010000000101010000000000000000000000000000000000000000000000000"
},
/* 91*/ { BARCODE_DBAR_EXPSTK, -1, 3, -1, "[8110]10614141011111275110111", 0, 5, 151, 1, "NACAG Figure 3",
"0101011110011100001011111111000010100000110100000101011110011011100010111110000001101101000100000011000011100001101010001111110000101010000011000111010"
"0000100001100011110100000000101001011111001011111010100001100100011101000001010100010010111011111100111100011110010101010000001010010101111100111000000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"0000001000100001011010000000010000111001101101100001100111100100100010100001010100100001101011111000000000000000000000000000000000000000000000000000000"
"1011110111011110100101111111100111000110010010011110011000011011011100011110000001011110010100000100100000000000000000000000000000000000000000000000000"
},
/* 92*/ { BARCODE_DBAR_EXPSTK, -1, -1, 2, "[8110]10614141011111275110111", 0, 5, 151, 1, "NACAG Figure 3 specifying max rows",
"0101011110011100001011111111000010100000110100000101011110011011100010111110000001101101000100000011000011100001101010001111110000101010000011000111010"
"0000100001100011110100000000101001011111001011111010100001100100011101000001010100010010111011111100111100011110010101010000001010010101111100111000000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"0000001000100001011010000000010000111001101101100001100111100100100010100001010100100001101011111000000000000000000000000000000000000000000000000000000"
"1011110111011110100101111111100111000110010010011110011000011011011100011110000001011110010100000100100000000000000000000000000000000000000000000000000"
},
/* 93*/ { BARCODE_DBAR_EXPSTK, -1, 6, -1, "[8110]106141410222223100110222111101231023456721104561045678991201", 0, 5, 298, 1, "NACAG Figure 4",
"0100101111101001111011111111000010110010000011001101011110011011100010111100000000101101000100000011000011100001101010001111110000101011000011100001010111000011011110101111000000111010011111000101110001110110011001100011110000001011100110000101000110101111110111001011111111001110011010011100001101"
"0000010000010110000100000000101001001101111100110010100001100100011101000010101010010010111011111100111100011110010101010000001010010100111100011110101000111100100001010000101010000101100000111010001110001001100110010100001010100100011001111010111001010000001000110100000000100001100101100011110000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"0000011010011011100010100101010100100111000100000101010000111000110010100000101010001111000101110100011001110001101000100000001010101011011110000111010111110001101011101000000000100011110100100010000110101100111000001000101010101000000000000000000000000000000000000000000000000000000000000000000000"
"0010000101100100011100011000000001011000111011111010101111000111001101011111000000110000111010001011100110001110010111001111110000010100100001111000101000001110010100010111111111001100001011011101111001010011000111110011000000000101000000000000000000000000000000000000000000000000000000000000000000"
},
/* 94*/ { BARCODE_DBAR_EXPSTK, -1, -1, 2, "[8110]106141410222223100110222111101231023456721104561045678991201", 0, 5, 298, 1, "NACAG Figure 4, specifying max rows",
"0100101111101001111011111111000010110010000011001101011110011011100010111100000000101101000100000011000011100001101010001111110000101011000011100001010111000011011110101111000000111010011111000101110001110110011001100011110000001011100110000101000110101111110111001011111111001110011010011100001101"
"0000010000010110000100000000101001001101111100110010100001100100011101000010101010010010111011111100111100011110010101010000001010010100111100011110101000111100100001010000101010000101100000111010001110001001100110010100001010100100011001111010111001010000001000110100000000100001100101100011110000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"0000011010011011100010100101010100100111000100000101010000111000110010100000101010001111000101110100011001110001101000100000001010101011011110000111010111110001101011101000000000100011110100100010000110101100111000001000101010101000000000000000000000000000000000000000000000000000000000000000000000"
"0010000101100100011100011000000001011000111011111010101111000111001101011111000000110000111010001011100110001110010111001111110000010100100001111000101000001110010100010111111111001100001011011101111001010011000111110011000000000101000000000000000000000000000000000000000000000000000000000000000000"
},
/* 95*/ { BARCODE_DBAR_EXPSTK, -1, 5, -1, "[8110]1061414165432131501101201211014092110256100126663101231", 0, 5, 249, 1, "NACAG Appendix C: Example 1",
"010111101100011011101111111100001011001000001100110101111001101110001011110000000010110100010000001100001111000010101000111111000010100000101011110001110100000110011010111100000011101001111000101111000111011001001110001111000000101011001000001110010"
"000000010011100100010000000010100100110111110011001010000110010001110100001010101001001011101111110011110000111101010101000000101001011111010100001110001011111001100101000010101000010110000111010000111000100110110001010000101010010100110111110000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"000001110000100101101000000101000011110100100011100111100001001101001010010101010010011111110101101100010010110011111010000010101000111101010000010001110001001100110010001010101010100011000111001011000010011010000010100000000010000000000000000000000"
"101110001111011010010111111000011100001011011100011000011110110010110001100000000101100000001010010011101101001100000101111100000011000010101111101110001110110011001100110000000001011100111000110100111101100101111101011111111100110100000000000000000"
},
/* 96*/ { BARCODE_DBAR_EXPSTK, -1, -1, 2, "[8110]1061414165432131501101201211014092110256100126663101231", 0, 5, 249, 1, "NACAG Appendix C: Example 1, specifying max row",
"010111101100011011101111111100001011001000001100110101111001101110001011110000000010110100010000001100001111000010101000111111000010100000101011110001110100000110011010111100000011101001111000101111000111011001001110001111000000101011001000001110010"
"000000010011100100010000000010100100110111110011001010000110010001110100001010101001001011101111110011110000111101010101000000101001011111010100001110001011111001100101000010101000010110000111010000111000100110110001010000101010010100110111110000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"000001110000100101101000000101000011110100100011100111100001001101001010010101010010011111110101101100010010110011111010000010101000111101010000010001110001001100110010001010101010100011000111001011000010011010000010100000000010000000000000000000000"
"101110001111011010010111111000011100001011011100011000011110110010110001100000000101100000001010010011101101001100000101111100000011000010101111101110001110110011001100110000000001011100111000110100111101100101111101011111111100110100000000000000000"
},
/* 97*/ { BARCODE_DBAR_EXPSTK, -1, 4, -1, "[8110]106141410012342501106501013085093101231", 0, 5, 200, 1, "NACAG Appendix C: Example 2",
"01001100101110001110111111110000101000001101000001010111100110111000101111100000011011010001000000110000111000011010100011111100001010000110011000110111001110000010101011111111001110011110010001100101"
"00000011010001110001000000001010010111110010111110101000011001000111010000010101000100101110111111001111000111100101010100000010100101111001100111001000110001111101010100000000100001100001101110010000"
"00000101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"00000100100001001110100000001010101011111101001011110000110001001011101000000000100010111000110010000111011001101000001000101010101010011011001000010000000000000000000000000000000000000000000000000000"
"00100011011110110001001111110000010100000010110100001111001110110100010111111111001101000111001101111000100110010111110011000000000101100100110111100010000000000000000000000000000000000000000000000000"
},
/* 98*/ { BARCODE_DBAR_EXPSTK, -1, 5, -1, "[8110]106141410012471011076011110850921108609310123191000", 0, 5, 249, 1, "NACAG Appendix C: Example 3",
"010101111101111000101111111100001010000011000101000101111001101110001011110000000010110100010000001100001110000110101000111111000010100001100110001101001000010000111010111100000011100011100011011001011100001001101110001111000000101001100010000111010"
"000010000010000111010000000010100101111100111010111010000110010001110100001010101001001011101111110011110001111001010101000000101001011110011001110010110111101111000101000010101000011100011100100110100011110110010001010000101010010110011101111000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"000010000001000010101000000101000011110111011110110111101101011100001010010101010010101000011111011101111101110011001010000010101000101001111001110001000001100110001010000000101010100111111101101000000000000000000000000000000000000000000000000000000"
"101001111110111101010111111000011100001000100001001000010010100011110001100000000101010111100000100010000010001100110101111100000011010110000110001110111110011001110100111111000001011000000010010100100000000000000000000000000000000000000000000000000"
},
/* 99*/ { BARCODE_DBAR_EXPSTK, -1, 6, -1, "[8110]106141411234562891101201212085010048000214025610048000310123191000", 0, 5, 298, 1, "NACAG Appendix C: Example 4",
"0100111111001110101011111111000010100000110001010001011110011011100010111100000000101101000100000011000011100001101010001111110000101010011000111000010101110001000000101111000000111001000001001110010011000011011101100011110000001010000010010110000100011001011000001011111111001110001110101100111101"
"0000000000110001010100000000101001011111001110101110100001100100011101000010101010010010111011111100111100011110010101010000001010010101100111000111101010001110111111010000101010000110111110110001101100111100100010010100001010100101111101101001111011100110100111110100000000100001110001010011000000"
"0000010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"0000001110011100111010100101010100101001111011111101000100011101100010100000101010001110110010001000010111101100001110100000001010101000011101111010110010111110001001101000000000100011100001011000010111001010111000001000101010101010001111001001100000000000000000000000000000000000000000000000000000"
"0010110001100011000100011000000001010110000100000010111011100010011101011111000000110001001101110111101000010011110001001111110000010111100010000101001101000001110110010111111111001100011110100111101000110101000111110011000000000101110000110110011010000000000000000000000000000000000000000000000000"
},
/*100*/ { BARCODE_DBAR_EXPSTK, -1, 5, -1, "[8110]1061414154321031501101201211014092110256100126663101231", 0, 5, 249, 1, "NACAG Appendix C: Example 5",
"010100111111010011101111111100001011001000001100110101111001101110001011110000000010110100010000001100001111000010101000111111000010101100100000001001100011101011000010111100000011101001111000101111000111011001001110001111000000101011001000001110010"
"000011000000101100010000000010100100110111110011001010000110010001110100001010101001001011101111110011110000111101010101000000101001010011011111110110011100010100111101000010101000010110000111010000111000100110110001010000101010010100110111110000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010100000"
"000001110000100101101000000101000011110100100011100111100001001101001010010101010010011111110101101100010010110011111010000010101000111101010000010001110001001100110010001010101010100011000111001011000010011010000010100000000010000000000000000000000"
"101110001111011010010111111000011100001011011100011000011110110010110001100000000101100000001010010011101101001100000101111100000011000010101111101110001110110011001100110000000001011100111000110100111101100101111101011111111100110100000000000000000"
},
};
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
const int data_size = ARRAY_SIZE(data);
int i, length, ret;
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
struct zint_symbol *symbol = NULL;
char escaped[4096];
char cmp_buf[16384];
char cmp_msg[1024];
int do_bwipp = (debug & ZINT_DEBUG_TEST_BWIPP) && testUtilHaveGhostscript(); /* Only do BWIPP test if asked, too slow otherwise */
int do_zxingcpp = (debug & ZINT_DEBUG_TEST_ZXINGCPP) && testUtilHaveZXingCPPDecoder(); /* Only do ZXing-C++ test if asked, too slow otherwise */
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
testStartSymbol("test_examples", &symbol);
for (i = 0; i < data_size; i++) {
if (testContinue(p_ctx, i)) continue;
symbol = ZBarcode_Create();
assert_nonnull(symbol, "Symbol not created\n");
length = testUtilSetSymbol(symbol, data[i].symbology, data[i].input_mode, -1 /*eci*/, -1 /*option_1*/, data[i].option_2, data[i].option_3, -1 /*output_options*/, data[i].data, -1, debug);
ret = ZBarcode_Encode(symbol, (const unsigned char *) data[i].data, length);
assert_equal(ret, data[i].ret, "i:%d ZBarcode_Encode ret %d != %d (%s)\n", i, ret, data[i].ret, symbol->errtxt);
if (p_ctx->generate) {
printf(" /*%3d*/ { %s, %s, %d, %d, \"%s\", %d, %d, %d, %d, \"%s\",\n",
i, testUtilBarcodeName(symbol->symbology), testUtilInputModeName(data[i].input_mode),
data[i].option_2, data[i].option_3,
data[i].data, data[i].ret, symbol->rows, symbol->width, data[i].bwipp_cmp, data[i].comment);
testUtilModulesPrint(symbol, " ", "\n");
printf(" },\n");
} else {
int width, row;
assert_equal(symbol->rows, data[i].expected_rows, "i:%d %s symbol->rows %d != %d (%s)\n", i, testUtilBarcodeName(data[i].symbology), symbol->rows, data[i].expected_rows, data[i].data);
assert_equal(symbol->width, data[i].expected_width, "i:%d %s symbol->width %d != %d (%s)\n", i, testUtilBarcodeName(data[i].symbology), symbol->width, data[i].expected_width, data[i].data);
ret = testUtilModulesCmp(symbol, data[i].expected, &width, &row);
assert_zero(ret, "i:%d %s testUtilModulesCmp ret %d != 0 width %d row %d (%s)\n", i, testUtilBarcodeName(data[i].symbology), ret, width, row, data[i].data);
if (do_bwipp && testUtilCanBwipp(i, symbol, -1, data[i].option_2, data[i].option_3, debug)) {
if (!data[i].bwipp_cmp) {
if (debug & ZINT_DEBUG_TEST_PRINT) printf("i:%d %s not BWIPP compatible (%s)\n", i, testUtilBarcodeName(symbol->symbology), data[i].comment);
} else {
ret = testUtilBwipp(i, symbol, -1, data[i].option_2, data[i].option_3, data[i].data, length, NULL, cmp_buf, sizeof(cmp_buf), NULL);
assert_zero(ret, "i:%d %s testUtilBwipp ret %d != 0\n", i, testUtilBarcodeName(symbol->symbology), ret);
ret = testUtilBwippCmp(symbol, cmp_msg, cmp_buf, data[i].expected);
assert_zero(ret, "i:%d %s testUtilBwippCmp %d != 0 %s\n actual: %s\nexpected: %s\n",
i, testUtilBarcodeName(symbol->symbology), ret, cmp_msg, cmp_buf, data[i].expected);
}
}
if (do_zxingcpp && testUtilCanZXingCPP(i, symbol, data[i].data, length, debug)) {
int cmp_len, ret_len;
char modules_dump[8192 + 1];
assert_notequal(testUtilModulesDump(symbol, modules_dump, sizeof(modules_dump)), -1, "i:%d testUtilModulesDump == -1\n", i);
ret = testUtilZXingCPP(i, symbol, data[i].data, length, modules_dump, cmp_buf, sizeof(cmp_buf), &cmp_len);
assert_zero(ret, "i:%d %s testUtilZXingCPP ret %d != 0\n", i, testUtilBarcodeName(symbol->symbology), ret);
ret = testUtilZXingCPPCmp(symbol, cmp_msg, cmp_buf, cmp_len, data[i].data, length, NULL /*primary*/, escaped, &ret_len);
assert_zero(ret, "i:%d %s testUtilZXingCPPCmp %d != 0 %s\n actual: %.*s\nexpected: %.*s\n",
i, testUtilBarcodeName(symbol->symbology), ret, cmp_msg, cmp_len, cmp_buf, ret_len, escaped);
}
}
ZBarcode_Delete(symbol);
}
testFinish();
}
/* Test general-purpose data compaction */
static void test_general_field(const testCtx *const p_ctx) {
int debug = p_ctx->debug;
struct item {
int symbology;
char *data;
int expected_rows;
int expected_width;
char *comment;
char *expected;
};
/* Verified via bwipp_dump.ps against BWIPP and manually against tec-it.com (some separators differ from tec-it.com where noted) */
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
static const struct item data[] = {
/* 0*/ { BARCODE_DBAR_EXP, "[91]1", 1, 102, "Single numeric",
"010100000001000101101111111100001011001000010000010110111110101100001011110000000010101111100001011101"
},
/* 1*/ { BARCODE_DBAR_EXP, "[91]12", 1, 102, "2 numerics",
"010010000010000101101111111100001011001000010000010101111100101110001011110000000010101111100001011101"
},
/* 2*/ { BARCODE_DBAR_EXP, "[91]123", 1, 102, "Odd-numbered numeric",
"010100000110000100101111111100001011001000010000010100011111010111001011110000000010000011000110100101"
},
/* 3*/ { BARCODE_DBAR_EXP, "[91]1234", 1, 102, "Even-numbered numeric",
"010110010000001000101111111100001011001000010000010100111110001011101011110000000010001101111001011101"
},
/* 4*/ { BARCODE_DBAR_EXP, "[91]A1234567C", 1, 183, "Alphanumeric followed by 7 digits and alphanumeric",
"010100000111001001101111111100001011000001000101110101111110111101001011111100001110100110111110111100001111010110011000111111000010110001000001101101110111101111010010111111110011101"
},
/* 5*/ { BARCODE_DBAR_EXP, "[91]A123456C", 1, 151, "Alphanumeric followed by 6 digits and alphanumeric",
"0101100111001000001011111111000010110010000100000101011111101111010010111100000011101001101111101111000011110101100110001111110000101000100011000111010"
},
/* 6*/ { BARCODE_DBAR_EXP, "[91]A12345B", 1, 151, "Alphanumeric followed by 5 digits and alphanumeric",
"0101111001000001001011111111000010110010000100000101011111101111010010111100000011100000010111001001010000111101000010001111110000101100000001001010010"
},
/* 7*/ { BARCODE_DBAR_EXP, "[91]A1234567", 1, 151, "Alphanumeric followed by 7 digits, terminating",
"0101100100011100001011111111000010110010000100000101011111101111010010111100000011101001101111101111000011110110100110001111110000101101011110111100010"
},
/* 8*/ { BARCODE_DBAR_EXP, "[91]A123456", 1, 134, "Alphanumeric followed by 6 digits, terminating",
"01000101001100000010111111110000101100000100010111010111111011110100101111000000111010011011111011110000111101011001100011111100001010"
},
/* 9*/ { BARCODE_DBAR_EXP, "[91]A12345", 1, 134, "Alphanumeric followed by 5 digits, terminating",
"01000110010100000010111111110000101100000100010111010111111011110100101111000000111010011011111011110000101100111110100011111100001010"
},
/*10*/ { BARCODE_DBAR_EXP, "[91]A1234", 1, 134, "Alphanumeric followed by 4 digits, terminating",
"01011101000010000110111111110000101100000100010111010111111011110100101111000000111010011011111011110001101111100100100011111100001010"
},
/*11*/ { BARCODE_DBAR_EXP, "[91]A123", 1, 134, "Alphanumeric followed by 3 digits, terminating",
"01000010110010000010111111110000101100000100010111010111111011110100101111000000111000000101110010010001000010000101100011111100001010"
},
/*12*/ { BARCODE_DBAR_EXP, "[91]a1234ABCDEFGb", 1, 249, "ISO-646 followed by 11 non-ISO-646 non-terminating, starting 4 digits",
"010000100011100110101111111100001011001000010000010101101111110011101011111000000110000110110100011100001110000101011000111111000010100111000010110001000000100110110010111111110011101000001110010001010011011111100110001111000000101110111010011000010"
},
/*13*/ { BARCODE_DBAR_EXP, "[91]a1234ABCDEFb", 1, 249, "ISO-646 followed by 10 non-ISO-646 non-terminating, starting 4 digits",
"010111010001110001101111111100001011001000010000010101101111110011101011111000000110000110110100011100001110000101011000111111000010100111000010110001000000100110110010111111110011101000001110010001001100011011100110001111000000101101000111001110010"
},
/*14*/ { BARCODE_DBAR_EXP, "[91]a1234ABCDEF", 1, 232, "ISO-646 followed by 10 non-ISO-646 terminating, starting 4 digits",
"0100001011010000111011111111000010110000010001011101011011111100111010111110000001100001101101000111000011100001010110001111110000101001110000101100010000001001101100101111111100111010000011100100010011100111000101100011110000001010"
},
/*15*/ { BARCODE_DBAR_EXP, "[91]a1234ABCDEb", 1, 232, "ISO-646 followed by 9 non-ISO-646 non-terminating, starting 4 digits",
"0100001011011000011011111111000010110000010001011101011011111100111010111110000001100100011100100111011110010111110010001111110000101111100011001010010110001000011110101111111100111011100101111000110111001000011110100011110000001010"
},
/*16*/ { BARCODE_DBAR_EXP, "[91]a1234ABCDE", 1, 200, "ISO-646 followed by 9 non-ISO-646 terminating, starting 4 digits",
"01001000011000111010111111110000101100100001000001010110111111001110101111110000111000011011010001110000111000010101100011111100001010011100001011000100000010011011001011111111001110010011100000100101"
},
/*17*/ { BARCODE_DBAR_EXP, "[91]aABCDEF12345b", 1, 249, "ISO-646 followed by 11 non-ISO-646 non-terminating, starting 6 letters",
"010000100010100111101111111100001011001000010000010101101111110011101011111000000110100001110001011100010000010100011000111111000010111101000100100001100111010000110010111111110011101000001110011011000100000110101110001111000000101011110010001110010"
},
/*18*/ { BARCODE_DBAR_EXP, "[91]aABCDEF1234b", 1, 249, "ISO-646 followed by 10 non-ISO-646 non-terminating, starting 6 letters",
"010110111100110000101111111100001011001000010000010101101111110011101011111000000110100001110001011100010000010100011000111111000010111101000100100001100111010000110010111111110011101000001110011011000100001001110110001111000000101111110110110001010"
},
/*19*/ { BARCODE_DBAR_EXP, "[91]aABCDE12345b", 1, 249, "ISO-646 followed by 10 non-ISO-646 non-terminating, starting 5 letters",
"010000100010011011101111111100001011001000010000010101101111110011101011111000000110100001110001011100010000010100011000111111000010111101000100100001100100001110011010111111110011100110110010000111000101111000101110001111000000101111011001101000010"
},
/*20*/ { BARCODE_DBAR_EXP, "[91]aABCDE1234", 1, 200, "ISO-646 followed by 10 non-ISO-646 terminating, starting 5 letters",
"01000101100011100010111111110000101100100001000001010110111111001110101111110000111010000111000101110001000001010001100011111100001011110100010010000110000100101111001011111111001110010010001110011101"
},
/*21*/ { BARCODE_DBAR_EXP, "[91]aABCDE1234b", 1, 232, "ISO-646 followed by 9 non-ISO-646 non-terminating, starting 5 letters",
"0100010000110011011011111111000010110000010001011101011011111100111010111110000001100001000110110111010000010110000010001111110000101000011101001100011001000011100110101111111100111011001100100001110111001000011110100011110000001010"
},
/*22*/ { BARCODE_DBAR_EXP, "[91]aABCDE1234", 1, 200, "ISO-646 followed by 9 non-ISO-646 terminating, starting 5 letters",
"01000101100011100010111111110000101100100001000001010110111111001110101111110000111010000111000101110001000001010001100011111100001011110100010010000110000100101111001011111111001110010010001110011101"
},
/*23*/ { BARCODE_DBAR_EXPSTK, "[91]1", 1, 102, "Single numeric",
"010100000001000101101111111100001011001000010000010110111110101100001011110000000010101111100001011101"
},
/*24*/ { BARCODE_DBAR_EXPSTK, "[91]12", 1, 102, "2 numerics",
"010010000010000101101111111100001011001000010000010101111100101110001011110000000010101111100001011101"
},
/*25*/ { BARCODE_DBAR_EXPSTK, "[91]123", 1, 102, "Odd-numbered numeric",
"010100000110000100101111111100001011001000010000010100011111010111001011110000000010000011000110100101"
},
/*26*/ { BARCODE_DBAR_EXPSTK, "[91]1234", 1, 102, "Even-numbered numeric",
"010110010000001000101111111100001011001000010000010100111110001011101011110000000010001101111001011101"
},
/*27*/ { BARCODE_DBAR_EXPSTK, "[91]A1234567C", 5, 102, "Alphanumeric followed by 7 digits and alphanumeric **NOTE** bottom separator differs from tec-it, same as BWIPP",
"010100000111001001101111111100001011000001000101110101111110111101001011111100001110100110111110111101"
"000011111000110110010000000010100100111110111010001010000001000010110100000010100001011001000001000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000000100000000101101000010000100010010011111011100100101000000101001100101000011000000000000000000000"
"101110011111111010010111101111011101101100000100011010000111111000110011010111100001000000000000000000"
},
/*28*/ { BARCODE_DBAR_EXPSTK, "[91]A123456C", 5, 102, "Alphanumeric followed by 6 digits and alphanumeric **NOTE** bottom separator differs from tec-it, same as BWIPP",
"010110011100100000101111111100001011001000010000010101111110111101001011110000001110100110111110111101"
"000001100011011111010000000010100100110111101111101010000001000010110100001010100001011001000001000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001100001010011001010000001010010111011100111000000000000000000000000000000000000000000000000000000"
"001000011110101100110001111110000101000100011000111010000000000000000000000000000000000000000000000000"
},
/*29*/ { BARCODE_DBAR_EXPSTK, "[91]A12345B", 5, 102, "Alphanumeric followed by 5 digits and alphanumeric **NOTE** ditto",
"010111100100000100101111111100001011001000010000010101111110111101001011110000001110000001011100100101"
"000000011011111011010000000010100100110111101111101010000001000010110100001010100001111110100011010000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001111000010111101010000001010010011111110110100000000000000000000000000000000000000000000000000000"
"001010000111101000010001111110000101100000001001010010000000000000000000000000000000000000000000000000"
},
/*30*/ { BARCODE_DBAR_EXPSTK, "[91]A1234567", 5, 102, "Alphanumeric followed by 7 digits, terminating **NOTE** ditto",
"010110010001110000101111111100001011001000010000010101111110111101001011110000001110100110111110111101"
"000001101110001111010000000010100100110111101111101010000001000010110100001010100001011001000001000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001100001001011001010000001010010010100001000010000000000000000000000000000000000000000000000000000"
"001000011110110100110001111110000101101011110111100010000000000000000000000000000000000000000000000000"
},
/*31*/ { BARCODE_DBAR_EXPSTK, "[91]A123456", 5, 102, "Alphanumeric followed by 6 digits, terminating **NOTE** ditto",
"010100001100111000101111111100001011001000010000010101111110111101001011110000001110100110111110111101"
"000011110011000111010000000010100100110111101111101010000001000010110100001010100001011001000001000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001100001010011001010000001010010011101011111110000000000000000000000000000000000000000000000000000"
"001000011110101100110001111110000101100010100000001010000000000000000000000000000000000000000000000000"
},
/*32*/ { BARCODE_DBAR_EXPSTK, "[91]A12345", 5, 102, "Alphanumeric followed by 5 digits, terminating **NOTE** ditto",
"010100100011000011101111111100001011001000010000010101111110111101001011110000001110100110111110111101"
"000011011100111100010000000010100100110111101111101010000001000010110100001010100001011001000001000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001101001100000101010000001010010011101011111110000000000000000000000000000000000000000000000000000"
"001000010110011111010001111110000101100010100000001010000000000000000000000000000000000000000000000000"
},
/*33*/ { BARCODE_DBAR_EXPSTK, "[91]A1234", 5, 102, "Alphanumeric followed by 4 digits, terminating **NOTE** ditto",
"010111000010010001101111111100001011001000010000010101111110111101001011110000001110100110111110111101"
"000000111101101110010000000010100100110111101111101010000001000010110100001010100001011001000001000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001001000001101101010000001010010000111011101110000000000000000000000000000000000000000000000000000"
"001000110111110010010001111110000101111000100010001010000000000000000000000000000000000000000000000000"
},
/*34*/ { BARCODE_DBAR_EXPSTK, "[91]A123", 5, 102, "Alphanumeric followed by 3 digits, terminating **NOTE** ditto",
"010110000100111000101111111100001011001000010000010101111110111101001011110000001110000001011100100101"
"000001111011000111010000000010100100110111101111101010000001000010110100001010100001111110100011010000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001011110111101001010000001010010101111100001010000000000000000000000000000000000000000000000000000"
"001000100001000010110001111110000101010000011110100010000000000000000000000000000000000000000000000000"
},
/*35*/ { BARCODE_DBAR_EXPSTK, "[91]a1234ABCDEFGb", 9, 102, "ISO-646 followed by 11 non-ISO-646 non-terminating, starting 4 digits **NOTE** separators differ from tec-it, same as BWIPP",
"010000100011100110101111111100001011001000010000010101101111110011101011111000000110000110110100011101"
"000011011100011001010000000010100100110111101111101010010000001100010100000101010001111001001011100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000011011000111110100001000000001011001001101111110111001011110001101001010000001010010101111000110000"
"101000100111000001011100111111110100110110010000001000110100001110010100001111110001101010000111000010"
"000011011000111110100001000000001011001001101111110111001011110001101001010000001010010101111000110000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000011001000000110010100001010100100010001011001100000000000000000000000000000000000000000000000000000"
"010100110111111001100011110000001011101110100110000100000000000000000000000000000000000000000000000000"
},
/*36*/ { BARCODE_DBAR_EXPSTK, "[91]a1234ABCDEFb", 9, 102, "ISO-646 followed by 10 non-ISO-646 non-terminating, starting 4 digits **NOTE** top separator differs from tec-it, same as BWIPP",
"010111010001110001101111111100001011001000010000010101101111110011101011111000000110000110110100011101"
"000000101110001110010000000010100100110111101111101010010000001100010100000101010001111001001011100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000011011000111110100001000000001011001001101111110111001011110001101001010000001010010101111000110000"
"101000100111000001011100111111110100110110010000001000110100001110010100001111110001101010000111000010"
"000011011000111110100001000000001011001001101111110111001011110001101001010000001010010101111000110000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000000111001000110010100001010100100101110001100000000000000000000000000000000000000000000000000000000"
"010011000110111001100011110000001011010001110011100100000000000000000000000000000000000000000000000000"
},
/*37*/ { BARCODE_DBAR_EXPSTK, "[91]a1234ABCDEF", 9, 102, "ISO-646 followed by 10 non-ISO-646 terminating, starting 4 digits **NOTE** separators differ from tec-it, same as BWIPP",
"010110111001000011101111111100001011001000010000010101101111110011101011111000000110000110110100011101"
"000001000110111100010000000010100100110111101111101010010000001100010100000101010001111001001011100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000011011000111110100001000000001011001001101111110111001011110001101001010000001010010101111000110000"
"101000100111000001011100111111110100110110010000001000110100001110010100001111110001101010000111000010"
"000011011000111110100001000000001011001001101111110111001011110001101001010000001010010101111000110000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000000011000111010010100001010100101011111000010100000000000000000000000000000000000000000000000000000"
"010011100111000101100011110000001010100000111101000100000000000000000000000000000000000000000000000000"
},
/*38*/ { BARCODE_DBAR_EXPSTK, "[91]a1234ABCDEb", 9, 102, "ISO-646 followed by 9 non-ISO-646 non-terminating, starting 4 digits **NOTE** ditto",
"010110111001100001101111111100001011001000010000010101101111110011101011111000000110010001110010011101"
"000001000110011110010000000010100100110111101111101010010000001100010100000101010001101110001101100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000011100001011000100001000000001010000111101110010110101100111000001001010000001010110000010110000000"
"101100011110100111011100111111110101111000010001101001010011000111110100001111110001001111101001111010"
"000011100001011000100001000000001010000111101110010110101100111000001001010000001010110000010110000000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000000110111100001010100001010100101011111000010100000000000000000000000000000000000000000000000000000"
"010111001000011110100011110000001010100000111101000100000000000000000000000000000000000000000000000000"
},
/*39*/ { BARCODE_DBAR_EXPSTK, "[91]a1234ABCDE", 5, 102, "ISO-646 followed by 9 non-ISO-646 terminating, starting 4 digits **NOTE** bottom separator differs from tec-it, same as BWIPP",
"010010000110001110101111111100001011001000010000010101101111110011101011111100001110000110110100011101"
"000001111001110001010000000010100100110111101111101010010000001100010100000010100001111001001011100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010111110001101100001000000001011001001101111110111001011110001101001010000001010010101111000110000"
"101001000001110010011100111111110100110110010000001000110100001110010100001111110001101010000111000010"
},
/*40*/ { BARCODE_DBAR_EXPSTK, "[91]aABCDEF12345b", 9, 102, "ISO-646 followed by 11 non-ISO-646 non-terminating, starting 6 letters **NOTE** top separator differs from tec-it, same as BWIPP",
"010000100010100111101111111100001011001000010000010101101111110011101011111000000110100001110001011101"
"000011011101011000010000000010100100110111101111101010010000001100010100000101010001011110001110100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010011000111110100001000000001011001111010001100111101101110100001001010000001010011101011111010000"
"101101100111000001011100111111110100110000101110011000010010001011110100001111110001100010100000100010"
"000010011000111110100001000000001011001111010001100111101101110100001001010000001010011101011111010000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010111110010100010100001010100101000011011100000000000000000000000000000000000000000000000000000000"
"010001000001101011100011110000001010111100100011100100000000000000000000000000000000000000000000000000"
},
/*41*/ { BARCODE_DBAR_EXPSTK, "[91]aABCDEF1234b", 9, 102, "ISO-646 followed by 10 non-ISO-646 non-terminating, starting 6 letters **NOTE** separators differ from tec-it, same as BWIPP",
"010110111100110000101111111100001011001000010000010101101111110011101011111000000110100001110001011101"
"000001000011001111010000000010100100110111101111101010010000001100010100000101010001011110001110100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010011000111110100001000000001011001111010001100111101101110100001001010000001010011101011111010000"
"101101100111000001011100111111110100110000101110011000010010001011110100001111110001100010100000100010"
"000010011000111110100001000000001011001111010001100111101101110100001001010000001010011101011111010000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010111101100010010100001010100100000010010011100000000000000000000000000000000000000000000000000000"
"010001000010011101100011110000001011111101101100010100000000000000000000000000000000000000000000000000"
},
/*42*/ { BARCODE_DBAR_EXPSTK, "[91]aABCDE12345b", 9, 102, "ISO-646 followed by 10 non-ISO-646 non-terminating, starting 5 letters **NOTE** ditto",
"010000100010011011101111111100001011001000010000010101101111110011101011111000000110100001110001011101"
"000011011101100100010000000010100100110111101111101010010000001100010100000101010001011110001110100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001111011001001100001000000001010011000111101100111101101110100001001010000001010011101011111010000"
"101110000100110110011100111111110101100111000010011000010010001011110100001111110001100010100000100010"
"000001111011001001100001000000001010011000111101100111101101110100001001010000001010011101011111010000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000010100001110100010100001010100100001001100101100000000000000000000000000000000000000000000000000000"
"010001011110001011100011110000001011110110011010000100000000000000000000000000000000000000000000000000"
},
/*43*/ { BARCODE_DBAR_EXPSTK, "[91]aABCDE1234", 5, 102, "ISO-646 followed by 10 non-ISO-646 terminating, starting 5 letters **NOTE** bottom separator differs from tec-it, same as BWIPP",
"010001011000111000101111111100001011001000010000010101101111110011101011111100001110100001110001011101"
"000010100111000111010000000010100100110111101111101010010000001100010100000010100001011110001110100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001100011101101100001000000001011000010110111100111101101110100001001010000001010011101011111010000"
"101110011100010010011100111111110100111101001000011000010010001011110100001111110001100010100000100010"
},
/*44*/ { BARCODE_DBAR_EXPSTK, "[91]aABCDE1234b", 9, 102, "ISO-646 followed by 9 non-ISO-646 non-terminating, starting 5 letters **NOTE** separators differ from tec-it, same as BWIPP",
"010000100001110110101111111100001011001000010000010101101111110011101011111000000110000100011011011101"
"000011011110001001010000000010100100110111101111101010010000001100010100000101010001111011100100100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001111011001100100001000000001010011000111101100111001101000111101001010000001010111110010111110000"
"101110000100110011011100111111110101100111000010011000110010111000010100001111110001000001101000001010"
"000001111011001100100001000000001010011000111101100111001101000111101001010000001010111110010111110000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000000110111100001010100001010100101011111000010100000000000000000000000000000000000000000000000000000"
"010111001000011110100011110000001010100000111101000100000000000000000000000000000000000000000000000000"
},
/*45*/ { BARCODE_DBAR_EXPSTK, "[91]aABCDE1234", 5, 102, "ISO-646 followed by 9 non-ISO-646 terminating, starting 5 letters **NOTE** bottom separator differs from tec-it, same as BWIPP",
"010001011000111000101111111100001011001000010000010101101111110011101011111100001110100001110001011101"
"000010100111000111010000000010100100110111101111101010010000001100010100000010100001011110001110100000"
"000001010101010101010101010101010101010101010101010101010101010101010101010101010101010101010101010000"
"000001100011101101100001000000001011000010110111100111101101110100001001010000001010011101011111010000"
"101110011100010010011100111111110100111101001000011000010010001011110100001111110001100010100000100010"
},
};
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
const int data_size = ARRAY_SIZE(data);
int i, length, ret;
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
struct zint_symbol *symbol = NULL;
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
testStartSymbol("test_general_field", &symbol);
for (i = 0; i < data_size; i++) {
if (testContinue(p_ctx, i)) continue;
symbol = ZBarcode_Create();
assert_nonnull(symbol, "Symbol not created\n");
length = testUtilSetSymbol(symbol, data[i].symbology, -1 /*input_mode*/, -1 /*eci*/, -1 /*option_1*/, -1, -1, -1 /*output_options*/, data[i].data, -1, debug);
ret = ZBarcode_Encode(symbol, (const unsigned char *) data[i].data, length);
assert_zero(ret, "i:%d ZBarcode_Encode ret %d != 0 (%s)\n", i, ret, symbol->errtxt);
if (p_ctx->generate) {
printf(" /*%2d*/ { %s, \"%s\", %d, %d, %d, \"%s\",\n",
i, testUtilBarcodeName(symbol->symbology), data[i].data, ret, symbol->rows, symbol->width, data[i].comment);
testUtilModulesPrint(symbol, " ", "\n");
printf(" },\n");
} else {
int width, row;
assert_equal(symbol->rows, data[i].expected_rows, "i:%d %s symbol->rows %d != %d (%s)\n", i, testUtilBarcodeName(data[i].symbology), symbol->rows, data[i].expected_rows, data[i].data);
assert_equal(symbol->width, data[i].expected_width, "i:%d %s symbol->width %d != %d (%s)\n", i, testUtilBarcodeName(data[i].symbology), symbol->width, data[i].expected_width, data[i].data);
ret = testUtilModulesCmp(symbol, data[i].expected, &width, &row);
assert_zero(ret, "i:%d %s testUtilModulesCmp ret %d != 0 width %d row %d (%s)\n", i, testUtilBarcodeName(data[i].symbology), ret, width, row, data[i].data);
}
ZBarcode_Delete(symbol);
}
testFinish();
}
static void test_binary_buffer_size(const testCtx *const p_ctx) {
int debug = p_ctx->debug;
struct item {
int input_mode;
char *data;
int ret;
int expected_rows;
int expected_width;
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
char *expected_errtxt;
char *comment;
};
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
static const struct item data[] = {
/* 0*/ { -1, "[91]1", 0, 1, 102, "", "Minimum digit" },
/* 1*/ { -1, "[91]+", 0, 1, 102, "", "Minimum ISO-646" },
/* 2*/ { -1, "[00]123456789012345675[00]123456789012345675[00]123456789012345675[91]12345678", 0, 1, 543, "", "70 == any AIs max" },
/* 3*/ { -1, "[00]123456789012345675[00]123456789012345675[00]123456789012345675[91]1234567890", ZINT_ERROR_TOO_LONG, 0, 0, "Error 387: Input too long, requires 22 symbol characters (maximum 21)", "71 > any AIs max" },
/* 4*/ { GS1NOCHECK_MODE, "[00]123456789012345675[00]123456789012345675[00]123456789012345675[91]123456789", ZINT_ERROR_TOO_LONG, 0, 0, "Error 387: Input too long, requires 22 symbol characters (maximum 21)", "No check doesn't affect limit" },
/* 5*/ { -1, "[01]12345678901231[00]123456789012345675[00]123456789012345675[91]1234567890123456", 0, 1, 543, "", "74 == 01 + other AIs max" },
/* 6*/ { -1, "[01]12345678901231[00]123456789012345675[00]123456789012345675[91]12345678901234567", ZINT_ERROR_TOO_LONG, 0, 0, "Error 387: Input too long, requires 22 symbol characters (maximum 21)", "75 > 01 + other AIs max" },
/* 7*/ { GS1NOCHECK_MODE, "[01]12345678901231[00]123456789012345675[00]123456789012345675[91]12345678901234567", ZINT_ERROR_TOO_LONG, 0, 0, "Error 387: Input too long, requires 22 symbol characters (maximum 21)", "No check doesn't affect limit" },
/* 8*/ { -1, "[01]92345678901237[3920]123456789012345[00]123456789012345675[91]1234567890123456789", 0, 1, 543, "", "77 (incl. FNC1 after 3920) == 01 + 392x + other AIs max" },
/* 9*/ { -1, "[01]92345678901237[3920]123456789012345[00]123456789012345675[91]12345678901234567890", ZINT_ERROR_TOO_LONG, 0, 0, "Error 378: Processed input length 78 too long (maximum 77)", "78 > 01 + 392x + other AIs max" },
/* 10*/ { GS1NOCHECK_MODE, "[01]92345678901237[3920]123456789012345[00]123456789012345675[91]12345678901234567890", ZINT_ERROR_TOO_LONG, 0, 0, "Error 378: Processed input length 78 too long (maximum 77)", "No check doesn't affect limit" },
/* 11*/ { -1, "[00]123456789012345675[00]123456789012345675[00]123456789012345675[91]123456789012345", ZINT_ERROR_TOO_LONG, 0, 0, "Error 387: Input too long, requires 23 symbol characters (maximum 21)", "Reduced length 77" },
};
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
const int data_size = ARRAY_SIZE(data);
int i, length, ret;
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
struct zint_symbol *symbol = NULL;
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
testStartSymbol("test_binary_buffer_size", &symbol);
for (i = 0; i < data_size; i++) {
if (testContinue(p_ctx, i)) continue;
symbol = ZBarcode_Create();
assert_nonnull(symbol, "Symbol not created\n");
length = testUtilSetSymbol(symbol, BARCODE_DBAR_EXP, data[i].input_mode, -1 /*eci*/, -1 /*option_1*/, -1, -1, -1 /*output_options*/, data[i].data, -1, debug);
ret = ZBarcode_Encode(symbol, (const unsigned char *) data[i].data, length);
assert_equal(ret, data[i].ret, "i:%d ZBarcode_Encode ret %d != %d (%s)\n", i, ret, data[i].ret, symbol->errtxt);
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
assert_equal(symbol->errtxt[0] == '\0', ret == 0, "i:%d symbol->errtxt not %s (%s)\n", i, ret ? "set" : "empty", symbol->errtxt);
if (p_ctx->generate) {
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
printf(" /*%3d*/ { %s, \"%s\", %s, %d, %d, \"%s\", \"%s\" },\n",
i, testUtilInputModeName(data[i].input_mode), data[i].data, testUtilErrorName(ret), symbol->rows,
symbol->width, symbol->errtxt, data[i].comment);
} else {
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
assert_zero(strcmp(symbol->errtxt, data[i].expected_errtxt), "i:%d strcmp(%s, %s) != 0\n", i, symbol->errtxt, data[i].expected_errtxt);
assert_equal(symbol->rows, data[i].expected_rows, "i:%d symbol->rows %d != %d (%s)\n", i, symbol->rows, data[i].expected_rows, data[i].data);
assert_equal(symbol->width, data[i].expected_width, "i:%d symbol->width %d != %d (%s)\n", i, symbol->width, data[i].expected_width, data[i].data);
}
ZBarcode_Delete(symbol);
}
testFinish();
}
static void test_hrt(const testCtx *const p_ctx) {
int debug = p_ctx->debug;
struct item {
int symbology;
int input_mode;
char *data;
int ret;
char *expected;
};
/* s/\/\*[ 0-9]*\*\//\=printf("\/\*%3d*\/", line(".") - line("'<")): */
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
static const struct item data[] = {
/* 0*/ { BARCODE_DBAR_OMN, -1, "1234567890123", 0, "(01)12345678901231" },
/* 1*/ { BARCODE_DBAR_OMN, -1, "12345678901231", 0, "(01)12345678901231" },
/* 4*/ { BARCODE_DBAR_OMN, -1, "1000000000009", 0, "(01)10000000000090" },
/* 5*/ { BARCODE_DBAR_LTD, -1, "1341056790138", 0, "(01)13410567901384" },
/* 6*/ { BARCODE_DBAR_LTD, -1, "13410567901384", 0, "(01)13410567901384" },
/* 9*/ { BARCODE_DBAR_EXP, -1, "[01]12345678901231", 0, "(01)12345678901231" }, /* See test_hrt() in "test_gs1.c" for full HRT tests */
/* 10*/ { BARCODE_DBAR_STK, -1, "12345678901231", 0, "" }, /* No HRT for stacked */
/* 11*/ { BARCODE_DBAR_OMNSTK, -1, "10000000000090", 0, "" },
/* 12*/ { BARCODE_DBAR_EXPSTK, -1, "[01]12345678901231", 0, "" },
};
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
const int data_size = ARRAY_SIZE(data);
int i, length, ret;
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
struct zint_symbol *symbol = NULL;
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
testStartSymbol("test_hrt", &symbol);
for (i = 0; i < data_size; i++) {
if (testContinue(p_ctx, i)) continue;
symbol = ZBarcode_Create();
assert_nonnull(symbol, "Symbol not created\n");
length = testUtilSetSymbol(symbol, data[i].symbology, data[i].input_mode, -1 /*eci*/, -1 /*option_1*/, -1, -1, -1 /*output_options*/, data[i].data, -1, debug);
ret = ZBarcode_Encode(symbol, (const unsigned char *) data[i].data, length);
assert_equal(ret, data[i].ret, "i:%d ZBarcode_Encode ret %d != %d (%s)\n", i, data[i].ret, ret, symbol->errtxt);
assert_zero(strcmp((const char *) symbol->text, data[i].expected), "i:%d strcmp(%s, %s) != 0\n", i, symbol->text, data[i].expected);
ZBarcode_Delete(symbol);
}
testFinish();
}
static void test_input(const testCtx *const p_ctx) {
int debug = p_ctx->debug;
struct item {
int symbology;
int input_mode;
int option_2;
int option_3;
char *data;
int ret;
int expected_rows;
int expected_width;
char *expected_errtxt;
};
/* s/\/\*[ 0-9]*\*\//\=printf("\/\*%3d*\/", line(".") - line("'<")): */
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
static const struct item data[] = {
/* 0*/ { BARCODE_DBAR_OMN, -1, -1, -1, "1234567890123", 0, 1, 96, "" },
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
/* 1*/ { BARCODE_DBAR_OMN, -1, -1, -1, "123456789012A", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 381: Invalid character at position 13 in input (digits only)" },
/* 2*/ { BARCODE_DBAR_OMN, GS1NOCHECK_MODE, -1, -1, "123456789012A", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 381: Invalid character at position 13 in input (digits only)" },
/* 3*/ { BARCODE_DBAR_OMN, -1, -1, -1, "12345678901234", ZINT_ERROR_INVALID_CHECK, -1, -1, "Error 388: Invalid check digit '4', expecting '1'" },
/* 4*/ { BARCODE_DBAR_OMN, GS1NOCHECK_MODE, -1, -1, "12345678901234", ZINT_ERROR_INVALID_CHECK, -1, -1, "Error 388: Invalid check digit '4', expecting '1'" }, /* Still checked */
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
/* 5*/ { BARCODE_DBAR_OMN, -1, -1, -1, "123456789012315", ZINT_ERROR_TOO_LONG, -1, -1, "Error 380: Input length 15 too long (maximum 14)" },
/* 6*/ { BARCODE_DBAR_OMN, GS1NOCHECK_MODE, -1, -1, "123456789012315", ZINT_ERROR_TOO_LONG, -1, -1, "Error 380: Input length 15 too long (maximum 14)" },
/* 7*/ { BARCODE_DBAR_LTD, -1, -1, -1, "1234567890123", 0, 1, 79, "" },
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
/* 8*/ { BARCODE_DBAR_LTD, -1, -1, -1, "123456789012A", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 383: Invalid character at position 13 in input (digits only)" },
/* 9*/ { BARCODE_DBAR_LTD, GS1NOCHECK_MODE, -1, -1, "123456789012A", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 383: Invalid character at position 13 in input (digits only)" },
/* 10*/ { BARCODE_DBAR_LTD, -1, -1, -1, "12345678901235", ZINT_ERROR_INVALID_CHECK, -1, -1, "Error 389: Invalid check digit '5', expecting '1'" },
/* 11*/ { BARCODE_DBAR_LTD, GS1NOCHECK_MODE, -1, -1, "12345678901235", ZINT_ERROR_INVALID_CHECK, -1, -1, "Error 389: Invalid check digit '5', expecting '1'" }, /* Still checked */
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
/* 12*/ { BARCODE_DBAR_LTD, -1, -1, -1, "123456789012315", ZINT_ERROR_TOO_LONG, -1, -1, "Error 382: Input length 15 too long (maximum 14)" },
/* 13*/ { BARCODE_DBAR_LTD, GS1NOCHECK_MODE, -1, -1, "123456789012315", ZINT_ERROR_TOO_LONG, -1, -1, "Error 382: Input length 15 too long (maximum 14)" },
/* 14*/ { BARCODE_DBAR_LTD, -1, -1, -1, "2234567890123", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 384: Input value out of range (0 to 1999999999999)" },
/* 15*/ { BARCODE_DBAR_LTD, GS1NOCHECK_MODE, -1, -1, "2234567890123", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 384: Input value out of range (0 to 1999999999999)" },
/* 16*/ { BARCODE_DBAR_LTD, -1, -1, -1, "22345678901238", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 384: Input value out of range (0 to 1999999999999)" },
/* 17*/ { BARCODE_DBAR_LTD, GS1NOCHECK_MODE, -1, -1, "22345678901238", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 384: Input value out of range (0 to 1999999999999)" },
/* 18*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]12345678901234", ZINT_WARN_NONCOMPLIANT, 1, 134, "Warning 261: AI (01) position 14: Bad checksum '4', expected '1'" },
/* 19*/ { BARCODE_DBAR_EXP, GS1NOCHECK_MODE, -1, -1, "[01]12345678901234", 0, 1, 134, "" },
/* 20*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]12345678901231", 0, 1, 134, "" },
/* 21*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]1234567890123A", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 385: Invalid character in Compressed Field data (digits only)" },
/* 22*/ { BARCODE_DBAR_EXP, GS1NOCHECK_MODE, -1, -1, "[01]1234567890123A", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 385: Invalid character in Compressed Field data (digits only)" },
/* 23*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]123456789012315", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 259: Invalid data length for AI (01)" },
/* 24*/ { BARCODE_DBAR_EXP, GS1NOCHECK_MODE, -1, -1, "[01]123456789012315", 0, 1, 151, "" },
/* 25*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]12345678901234", ZINT_WARN_NONCOMPLIANT, 1, 134, "Warning 261: AI (01) position 14: Bad checksum '4', expected '1'" },
/* 26*/ { BARCODE_DBAR_EXP, GS1NOCHECK_MODE, -1, -1, "[01]12345678901234", 0, 1, 134, "" },
/* 27*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]12345678901231[91]!\"%&'()*+,-./:;<=>?_ ", ZINT_WARN_NONCOMPLIANT, 1, 526, "Warning 261: AI (91) position 21: Invalid CSET 82 character ' '" }, /* ISOIEC punc */
/* 28*/ { BARCODE_DBAR_EXP, GS1NOCHECK_MODE, -1, -1, "[01]12345678901231[91]!\"%&'()*+,-./:;<=>?_ ", 0, 1, 526, "" },
/* 29*/ { BARCODE_DBAR_EXP, -1, -1, -1, "[01]12345678901231[91]!\"%&'()*+,-./:;<=>?_", 0, 1, 494, "" }, /* ISOIEC punc less space */
/* 30*/ { BARCODE_DBAR_EXP, GS1NOCHECK_MODE, -1, -1, "[01]12345678901231[91]!\"%&'()*+,-./:;<=>?_", 0, 1, 494, "" },
/* 31*/ { BARCODE_DBAR_STK, -1, -1, -1, "1234567890123", 0, 3, 50, "" },
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
/* 32*/ { BARCODE_DBAR_STK, GS1NOCHECK_MODE, -1, -1, "123456789012A", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 381: Invalid character at position 13 in input (digits only)" },
/* 33*/ { BARCODE_DBAR_STK, -1, -1, -1, "123456789012A", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 381: Invalid character at position 13 in input (digits only)" },
/* 34*/ { BARCODE_DBAR_STK, GS1NOCHECK_MODE, -1, -1, "123456789012A", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 381: Invalid character at position 13 in input (digits only)" },
/* 35*/ { BARCODE_DBAR_STK, -1, -1, -1, "12345678901235", ZINT_ERROR_INVALID_CHECK, -1, -1, "Error 388: Invalid check digit '5', expecting '1'" },
/* 36*/ { BARCODE_DBAR_STK, GS1NOCHECK_MODE, -1, -1, "12345678901235", ZINT_ERROR_INVALID_CHECK, -1, -1, "Error 388: Invalid check digit '5', expecting '1'" }, /* Still checked */
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
/* 37*/ { BARCODE_DBAR_STK, -1, -1, -1, "123456789012315", ZINT_ERROR_TOO_LONG, -1, -1, "Error 380: Input length 15 too long (maximum 14)" },
/* 38*/ { BARCODE_DBAR_STK, GS1NOCHECK_MODE, -1, -1, "123456789012315", ZINT_ERROR_TOO_LONG, -1, -1, "Error 380: Input length 15 too long (maximum 14)" },
/* 39*/ { BARCODE_DBAR_OMNSTK, -1, -1, -1, "1234567890123", 0, 5, 50, "" },
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
/* 40*/ { BARCODE_DBAR_OMNSTK, -1, -1, -1, "123456789012A", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 381: Invalid character at position 13 in input (digits only)" },
/* 41*/ { BARCODE_DBAR_OMNSTK, GS1NOCHECK_MODE, -1, -1, "123456789012A", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 381: Invalid character at position 13 in input (digits only)" },
/* 42*/ { BARCODE_DBAR_OMNSTK, -1, -1, -1, "12345678901236", ZINT_ERROR_INVALID_CHECK, -1, -1, "Error 388: Invalid check digit '6', expecting '1'" },
/* 43*/ { BARCODE_DBAR_OMNSTK, GS1NOCHECK_MODE, -1, -1, "12345678901236", ZINT_ERROR_INVALID_CHECK, -1, -1, "Error 388: Invalid check digit '6', expecting '1'" }, /* Still checked */
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
/* 44*/ { BARCODE_DBAR_OMNSTK, -1, -1, -1, "123456789012315", ZINT_ERROR_TOO_LONG, -1, -1, "Error 380: Input length 15 too long (maximum 14)" },
/* 45*/ { BARCODE_DBAR_OMNSTK, GS1NOCHECK_MODE, -1, -1, "123456789012315", ZINT_ERROR_TOO_LONG, -1, -1, "Error 380: Input length 15 too long (maximum 14)" },
/* 46*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[01]12345678901234", ZINT_WARN_NONCOMPLIANT, 5, 102, "Warning 261: AI (01) position 14: Bad checksum '4', expected '1'" },
/* 47*/ { BARCODE_DBAR_EXPSTK, GS1NOCHECK_MODE, -1, -1, "[01]12345678901234", 0, 5, 102, "" },
/* 48*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[01]12345678901231", 0, 5, 102, "" },
/* 49*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[01]1234567890123A", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 385: Invalid character in Compressed Field data (digits only)" },
/* 50*/ { BARCODE_DBAR_EXPSTK, GS1NOCHECK_MODE, -1, -1, "[01]1234567890123A", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 385: Invalid character in Compressed Field data (digits only)" },
/* 51*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[01]123456789012315", ZINT_ERROR_INVALID_DATA, -1, -1, "Error 259: Invalid data length for AI (01)" },
/* 52*/ { BARCODE_DBAR_EXPSTK, GS1NOCHECK_MODE, -1, -1, "[01]123456789012315", 0, 5, 102, "" },
/* 53*/ { BARCODE_DBAR_EXPSTK, -1, 12, -1, "[01]12345678901231", 0, 5, 102, "" }, /* Cols > 11 ignored */
/* 54*/ { BARCODE_DBAR_EXPSTK, -1, -1, 12, "[01]12345678901231", 0, 5, 102, "" }, /* Rows > 11 ignored */
/* 55*/ { BARCODE_DBAR_EXPSTK, -1, 1, -1, "[01]12345678901231", 0, 9, 53, "" },
/* 56*/ { BARCODE_DBAR_EXPSTK, -1, 2, -1, "[01]12345678901231", 0, 5, 102, "" },
/* 57*/ { BARCODE_DBAR_EXPSTK, -1, 3, -1, "[01]12345678901231", 0, 1, 134, "" },
/* 58*/ { BARCODE_DBAR_EXPSTK, -1, 4, -1, "[01]12345678901231", 0, 1, 134, "" },
/* 59*/ { BARCODE_DBAR_EXPSTK, -1, -1, 2, "[01]12345678901231", 0, 5, 102, "" },
/* 60*/ { BARCODE_DBAR_EXPSTK, -1, -1, 3, "[01]12345678901231", 0, 5, 102, "" },
/* 61*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[8110]106141416543213500110000310123196000", 0, 13, 102, "" },
/* 62*/ { BARCODE_DBAR_EXPSTK, -1, 1, -1, "[8110]106141416543213500110000310123196000", 0, 25, 53, "" },
/* 63*/ { BARCODE_DBAR_EXPSTK, -1, 2, -1, "[8110]106141416543213500110000310123196000", 0, 13, 102, "" },
/* 64*/ { BARCODE_DBAR_EXPSTK, -1, 3, -1, "[8110]106141416543213500110000310123196000", 0, 9, 151, "" },
/* 65*/ { BARCODE_DBAR_EXPSTK, -1, 4, -1, "[8110]106141416543213500110000310123196000", 0, 5, 200, "" },
/* 66*/ { BARCODE_DBAR_EXPSTK, -1, 5, -1, "[8110]106141416543213500110000310123196000", 0, 5, 249, "" },
/* 67*/ { BARCODE_DBAR_EXPSTK, -1, -1, 2, "[8110]106141416543213500110000310123196000", 0, 5, 200, "" },
/* 68*/ { BARCODE_DBAR_EXPSTK, -1, -1, 3, "[8110]106141416543213500110000310123196000", 0, 9, 151, "" },
/* 69*/ { BARCODE_DBAR_EXPSTK, -1, -1, 4, "[8110]106141416543213500110000310123196000", 0, 13, 102, "" },
/* 70*/ { BARCODE_DBAR_EXPSTK, -1, -1, 5, "[8110]106141416543213500110000310123196000", 0, 13, 102, "" },
/* 71*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[91]123456789012345678901", 0, 9, 102, "" },
/* 72*/ { BARCODE_DBAR_EXPSTK, -1, 1, -1, "[91]123456789012345678901", 0, 17, 53, "" },
/* 73*/ { BARCODE_DBAR_EXPSTK, -1, 2, -1, "[91]123456789012345678901", 0, 9, 102, "" },
/* 74*/ { BARCODE_DBAR_EXPSTK, -1, 3, -1, "[91]123456789012345678901", 0, 5, 151, "" },
/* 75*/ { BARCODE_DBAR_EXPSTK, -1, 4, -1, "[91]123456789012345678901", 0, 5, 200, "" },
/* 76*/ { BARCODE_DBAR_EXPSTK, -1, -1, 2, "[91]123456789012345678901", 0, 5, 151, "" },
/* 77*/ { BARCODE_DBAR_EXPSTK, -1, -1, 3, "[91]123456789012345678901", 0, 9, 102, "" },
/* 78*/ { BARCODE_DBAR_EXPSTK, -1, -1, 4, "[91]123456789012345678901", 0, 9, 102, "" },
/* 79*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[91]123456789012345678901", 0, 9, 102, "" },
/* 80*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[91]1234567890123456789012345678901234567890123456789", 0, 17, 102, "" },
/* 81*/ { BARCODE_DBAR_EXPSTK, -1, 1, -1, "[91]1234567890123456789012345678901234567890123456789", 0, 33, 53, "" },
/* 82*/ { BARCODE_DBAR_EXPSTK, -1, 2, -1, "[91]1234567890123456789012345678901234567890123456789", 0, 17, 102, "" },
/* 83*/ { BARCODE_DBAR_EXPSTK, -1, 3, -1, "[91]1234567890123456789012345678901234567890123456789", 0, 9, 151, "" },
/* 84*/ { BARCODE_DBAR_EXPSTK, -1, 4, -1, "[91]1234567890123456789012345678901234567890123456789", 0, 9, 200, "" },
/* 85*/ { BARCODE_DBAR_EXPSTK, -1, 4, -1, "[91]1234567890123456789012345678901234567890123456789", 0, 9, 200, "" },
/* 86*/ { BARCODE_DBAR_EXPSTK, -1, 5, -1, "[91]1234567890123456789012345678901234567890123456789", 0, 5, 249, "" },
/* 87*/ { BARCODE_DBAR_EXPSTK, -1, 6, -1, "[91]1234567890123456789012345678901234567890123456789", 0, 5, 298, "" },
/* 88*/ { BARCODE_DBAR_EXPSTK, -1, 7, -1, "[91]1234567890123456789012345678901234567890123456789", 0, 5, 347, "" },
/* 89*/ { BARCODE_DBAR_EXPSTK, -1, 8, -1, "[91]1234567890123456789012345678901234567890123456789", 0, 5, 396, "" },
/* 90*/ { BARCODE_DBAR_EXPSTK, -1, 9, -1, "[91]1234567890123456789012345678901234567890123456789", 0, 1, 428, "" },
/* 91*/ { BARCODE_DBAR_EXPSTK, -1, -1, 2, "[91]1234567890123456789012345678901234567890123456789", 0, 5, 249, "" },
/* 92*/ { BARCODE_DBAR_EXPSTK, -1, -1, 3, "[91]1234567890123456789012345678901234567890123456789", 0, 9, 151, "" },
/* 93*/ { BARCODE_DBAR_EXPSTK, -1, -1, 4, "[91]1234567890123456789012345678901234567890123456789", 0, 9, 151, "" },
/* 94*/ { BARCODE_DBAR_EXPSTK, -1, -1, 5, "[91]1234567890123456789012345678901234567890123456789", 0, 17, 102, "" },
/* 95*/ { BARCODE_DBAR_EXPSTK, -1, -1, 6, "[91]1234567890123456789012345678901234567890123456789", 0, 17, 102, "" },
/* 96*/ { BARCODE_DBAR_EXPSTK, -1, -1, -1, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 21, 102, "" },
/* 97*/ { BARCODE_DBAR_EXPSTK, -1, 1, -1, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 41, 53, "" },
/* 98*/ { BARCODE_DBAR_EXPSTK, -1, 2, -1, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 21, 102, "" },
/* 99*/ { BARCODE_DBAR_EXPSTK, -1, 3, -1, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 13, 151, "" },
/*100*/ { BARCODE_DBAR_EXPSTK, -1, 4, -1, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 9, 200, "" },
/*101*/ { BARCODE_DBAR_EXPSTK, -1, 5, -1, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 9, 249, "" },
/*102*/ { BARCODE_DBAR_EXPSTK, -1, 6, -1, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 5, 298, "" },
/*103*/ { BARCODE_DBAR_EXPSTK, -1, 7, -1, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 5, 347, "" },
/*104*/ { BARCODE_DBAR_EXPSTK, -1, -1, 1, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 21, 102, "" },
/*105*/ { BARCODE_DBAR_EXPSTK, -1, -1, 2, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 5, 298, "" },
/*106*/ { BARCODE_DBAR_EXPSTK, -1, -1, 3, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 9, 200, "" },
/*107*/ { BARCODE_DBAR_EXPSTK, -1, -1, 4, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 13, 151, "" },
/*108*/ { BARCODE_DBAR_EXPSTK, -1, -1, 5, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 13, 151, "" },
/*109*/ { BARCODE_DBAR_EXPSTK, -1, -1, 6, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 21, 102, "" },
/*110*/ { BARCODE_DBAR_EXPSTK, -1, -1, 7, "[91]12345678901234567890123456789012345678901234567890123456789012", 0, 21, 102, "" },
};
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
const int data_size = ARRAY_SIZE(data);
int i, length, ret;
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
struct zint_symbol *symbol = NULL;
CODE128: reduce extended latch cut-off from 5 to 4 for better encodation in certain cases (and no pessimizations found so far), props lyngklip (BWIPP); fix extended char latching when exactly 3 extended chars at end; count code set C (not digits) in loop deciding when to shift/latch to extended for better estimate AZTEC: return warning if ECC < 5% (due to bit-stuffing when version given); return error if > 22 layers (Zint 26) for Reader Initialisation symbol requested for better error message AZTEC/HANXIN/QRCODE: consolidate different ECC data size tables into one indexed by ECC DBAR_EXP: check for reduced length <= 77 up front for better error message HANXIN: use `malloc()` rather than `z_alloca()` for large binary array QRCODE: `ecc_level` now 0-based (not 1-based) MICROQR: consolidate different version end routines into one `microqr_end()` and use new `microqr_data` table to simplify code MICROPDF417: use table for max codewords per column library: centralize all error messages using new `errtxt()`, `errtxtf()`, `errtxt_adj()` funcs that protect `symbol->errtxt` from overflow, & try to make error messages more consistent thru-out, adding more feedback info to many, & use positional args "%n$" in prep for l10n (maybe); `is_sane/is_sane_lookup()` -> `not_sane/not_sane_lookup()`, returning 1-based position (zero on failure) instead of bool; `long` ints -> plain `int` (except those dealing with `ftell()`, `fread()` etc) as depend on int being 32-bits already GUI: in "grpDATF.ui" use "PlainText" rather than "RichText" for tracker ratio examples as height of text messing up sometimes manual: clarify Codablock-F length maximum & add examples docs: README: pandoc 3.5, Ubuntu 24.04 CMake: use "-Wpedantic" for Clang only as GNU complains about `errtxtf()` positional args "%n$"
2024-10-28 10:33:33 +13:00
testStartSymbol("test_input", &symbol);
for (i = 0; i < data_size; i++) {
if (testContinue(p_ctx, i)) continue;
symbol = ZBarcode_Create();
assert_nonnull(symbol, "Symbol not created\n");
length = testUtilSetSymbol(symbol, data[i].symbology, data[i].input_mode, -1 /*eci*/, -1 /*option_1*/, data[i].option_2, data[i].option_3, -1 /*output_options*/, data[i].data, -1, debug);
ret = ZBarcode_Encode(symbol, (const unsigned char *) data[i].data, length);
assert_equal(ret, data[i].ret, "i:%d ZBarcode_Encode ret %d != %d (%s)\n", i, ret, data[i].ret, symbol->errtxt);
assert_zero(strcmp(symbol->errtxt, data[i].expected_errtxt), "i:%d strcmp(%s, %s) != 0\n", i, symbol->errtxt, data[i].expected_errtxt);
if (ret < ZINT_ERROR) {
assert_equal(symbol->rows, data[i].expected_rows, "i:%d symbol->rows %d != %d (symbol->width %d)\n", i, symbol->rows, data[i].expected_rows, symbol->width);
assert_equal(symbol->width, data[i].expected_width, "i:%d symbol->width %d != %d\n", i, symbol->width, data[i].expected_width);
}
ZBarcode_Delete(symbol);
}
testFinish();
}
int main(int argc, char *argv[]) {
testFunction funcs[] = { /* name, func */
{ "test_binary_div_modulo_divisor", test_binary_div_modulo_divisor },
{ "test_examples", test_examples },
{ "test_general_field", test_general_field },
{ "test_binary_buffer_size", test_binary_buffer_size },
{ "test_hrt", test_hrt },
{ "test_input", test_input },
};
testRun(argc, argv, funcs, ARRAY_SIZE(funcs));
2019-09-02 08:09:47 +12:00
testReport();
return 0;
}
/* vim: set ts=4 sw=4 et : */