/* libptouch - functions to help accessing a brother ptouch Copyright (C) 2013-2026 Dominic Radermacher This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License version 3 as published by the Free Software Foundation This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA */ #define _POSIX_C_SOURCE 199309L /* needed for nanosleep() when using -std=c11 */ #include #include /* malloc() */ #include /* memcmp() */ #include /* open() */ #include /* open() */ #include /* open() */ #include /* nanosleep(), struct timespec */ #include /* gettext() */ #include "ptouch.h" #define _(s) gettext(s) /* Print area width in 180 DPI pixels */ /* The 360dpi print-area values (px360) are Brother's documented values for the PT-P900 series and are NOT simply double the 180dpi ones: the 180dpi figures for wide tapes are clamped by those printers' 128-pin printheads, not the actual printable width. Only 36mm has been verified on hardware; the others come from Brother's raster reference. 21mm has no P900 spec value and keeps the doubled figure. calc_tape_px() clamps the result to the printer's max_px, so printers with a narrower printhead stay safe. */ struct _pt_tape_info tape_info[]= { { 4, 24, 48, 0.5}, /* 3.5 mm tape */ { 6, 32, 64, 1.0}, /* 6 mm tape */ { 9, 52, 106, 1.0}, /* 9 mm tape */ {12, 76, 150, 2.0}, /* 12 mm tape */ {18, 120, 234, 3.0}, /* 18 mm tape */ {21, 124, 248, 3.0}, /* 21 mm tape (360dpi value unverified) */ {24, 128, 320, 3.0}, /* 24 mm tape */ {36, 192, 454, 4.5}, /* 36 mm tape */ { 0, 0, 0, 0.0} /* terminating entry */ }; struct _pt_dev_info ptdevs[] = { {0x04f9, 0x2001, "PT-9200DX", 384, 360, FLAG_RASTER_PACKBITS|FLAG_HAS_PRECUT, 0}, /* 360dpi, maximum 128px, max tape width 36mm */ {0x04f9, 0x2002, "PT-9200DX", 384, 360, FLAG_RASTER_PACKBITS|FLAG_HAS_PRECUT, 0}, /* reported by Christian Pauls - either 0x2001 is wrong, or this printer exists with two different IDs */ {0x04f9, 0x203c, "PT-9700PC", 384, 360, FLAG_RASTER_PACKBITS|FLAG_HAS_PRECUT|FLAG_P700_INIT|FLAG_USE_INFO_CMD, 0}, /* 360dpi, max tape width 36mm. FLAG_P700_INIT causes printer to send a status response after rasterstart; flushed in ptouch_rasterstart(). */ {0x04f9, 0x2004, "PT-2300", 112, 180, FLAG_RASTER_PACKBITS|FLAG_HAS_PRECUT, 0}, /* 180dpi, 112px printhead */ {0x04f9, 0x2007, "PT-2420PC", 128, 180, FLAG_RASTER_PACKBITS, 0}, /* 180dpi, 128px, maximum tape width 24mm, must send TIFF compressed pixel data */ //{0x04f9, 0x200d, "PT-3600", 384, 360, FLAG_RASTER_PACKBITS, 0}, {0x04f9, 0x2011, "PT-2450PC", 128, 180, FLAG_RASTER_PACKBITS, 0}, {0x04f9, 0x2019, "PT-1950", 112, 180, FLAG_RASTER_PACKBITS, 0}, /* 180dpi, apparently 112px printhead ?, maximum tape width 18mm - unconfirmed if it works */ {0x04f9, 0x201f, "PT-2700", 128, 180, FLAG_HAS_PRECUT, 0}, {0x04f9, 0x202c, "PT-1230PC", 128, 180, FLAG_NONE, 0}, /* 180dpi, supports tapes up to 12mm - I don't know how much pixels it can print! */ /* Notes about the PT-1230PC: While it is true that this printer supports max 12mm tapes, it apparently expects > 76px data - the first 32px must be blank. */ {0x04f9, 0x202d, "PT-2430PC", 128, 180, FLAG_NONE, 0}, /* 180dpi, maximum 128px */ {0x04f9, 0x2030, "PT-1230PC (PLite Mode)", 128, 180, FLAG_PLITE, 0}, {0x04f9, 0x2031, "PT-2430PC (PLite Mode)", 128, 180, FLAG_PLITE, 0}, {0x04f9, 0x2041, "PT-2730", 128, 180, FLAG_NONE, 0}, /* 180dpi, maximum 128px, max tape width 24mm - reported to work with some quirks */ /* Notes about the PT-2730: was reported to need 48px whitespace within png-images before content is actually printed - can not check this */ {0x04f9, 0x205e, "PT-H500", 128, 180, FLAG_RASTER_PACKBITS|FLAG_HAS_PRECUT, 0}, /* Note about the PT-H500: was reported by Eike with the remark that it might need some trailing padding */ {0x04f9, 0x205f, "PT-E500", 128, 180, FLAG_RASTER_PACKBITS, 0}, /* Note about the PT-E500: was reported by Jesse Becker with the remark that it also needs some padding (white pixels) */ {0x04f9, 0x2060, "PT-E550W", 128, 180, FLAG_UNSUP_RASTER, 0}, /* Note about the PT-E550W: was reported by Tim Biermann but does not work yet (only prints empty tape with FLAG_RASTER_PACKBITS|FLAG_HAS_PRECUT) */ {0x04f9, 0x2061, "PT-P700", 128, 180, FLAG_RASTER_PACKBITS|FLAG_P700_INIT|FLAG_HAS_PRECUT, 0}, {0x04f9, 0x2062, "PT-P750W", 128, 180, FLAG_RASTER_PACKBITS|FLAG_P700_INIT, 0}, {0x04f9, 0x2064, "PT-P700 (PLite Mode)", 128, 180, FLAG_PLITE, 0}, {0x04f9, 0x2065, "PT-P750W (PLite Mode)", 128, 180, FLAG_PLITE, 0}, {0x04f9, 0x2073, "PT-D450", 128, 180, FLAG_USE_INFO_CMD, 0}, /* Notes about the PT-D450: I'm unsure if print width really is 128px */ {0x04f9, 0x2074, "PT-D600", 128, 180, FLAG_RASTER_PACKBITS, 0}, /* PT-D600 was reported to work, but with some quirks (premature cutting of tape, printing maximum of 73mm length) */ {0x04f9, 0x2085, "PT-P900Wc", 560, 360, FLAG_RASTER_PACKBITS|FLAG_P700_INIT|FLAG_USE_INFO_CMD|FLAG_HAS_PRECUT, -8}, /* PT-P900Wc: 360dpi, 560px printhead (70 bytes/raster line). Verified printing on 36mm laminated tape. Narrower tape widths use Brother's documented 360dpi print areas (see tape_info) but are untested. pin_offset = -8: the print area is centred at pin 272, not the head centre (pin 280) - a constant offset across all tape widths. See the Brother "Software Developer's Manual - Raster Command Reference, PT-P900/P900W/P950NW", section 2.3.5 "Raster line". */ {0x04f9, 0x20af, "PT-P710BT", 128, 180, FLAG_RASTER_PACKBITS|FLAG_HAS_PRECUT, 0}, {0x04f9, 0x20df, "PT-D410", 128, 180, FLAG_USE_INFO_CMD|FLAG_HAS_PRECUT|FLAG_D460BT_MAGIC, 0}, {0x04f9, 0x20e0, "PT-D460BT", 128, 180, FLAG_P700_INIT|FLAG_USE_INFO_CMD|FLAG_HAS_PRECUT|FLAG_D460BT_MAGIC, 0}, {0x04f9, 0x20e1, "PT-D610BT", 128, 180, FLAG_P700_INIT|FLAG_USE_INFO_CMD|FLAG_HAS_PRECUT|FLAG_D460BT_MAGIC, 0}, /* added by Christian, PT-E310BT (aka PT-E310BTVP) requires these flags, otherwise not returning from libusb_bulk_transfer-call */ /* printhead 128px, 180 dpi resolution */ /* 3,5/6/9/12/18 mm TZe Tapes, 12mm and 18mm tested */ /* 5,2/9/11,2 mm HSe heat shrink tubes not tested, probably requiring extension of struct _pt_tape_info */ {0x04f9, 0x2201, "PT-E310BT", 128, 180, FLAG_P700_INIT|FLAG_USE_INFO_CMD|FLAG_D460BT_MAGIC, 0}, {0x04f9, 0x2203, "PT-E560BT", 128, 180, FLAG_P700_INIT|FLAG_USE_INFO_CMD|FLAG_D460BT_MAGIC, 0, 10}, {0,0,"",0,0,0,0} }; int ptouch_open(ptouch_dev *ptdev) { libusb_device **devs; libusb_device *dev; libusb_device_handle *handle = NULL; struct libusb_device_descriptor desc; ssize_t cnt; int r,i=0; if ((*ptdev=malloc(sizeof(struct _ptouch_dev))) == NULL) { fprintf(stderr, _("out of memory\n")); return -1; } if (((*ptdev)->devinfo=malloc(sizeof(struct _pt_dev_info))) == NULL) { fprintf(stderr, _("out of memory\n")); return -1; } if (((*ptdev)->status=malloc(sizeof(struct _ptouch_stat))) == NULL) { fprintf(stderr, _("out of memory\n")); return -1; } if ((libusb_init(NULL)) < 0) { fprintf(stderr, _("libusb_init() failed\n")); return -1; } // libusb_set_debug(NULL, 3); if ((cnt=libusb_get_device_list(NULL, &devs)) < 0) { return -1; } while ((dev=devs[i++]) != NULL) { if ((r=libusb_get_device_descriptor(dev, &desc)) < 0) { fprintf(stderr, _("failed to get device descriptor")); libusb_free_device_list(devs, 1); return -1; } for (int k=0; ptdevs[k].vid > 0; ++k) { if ((desc.idVendor == ptdevs[k].vid) && (desc.idProduct == ptdevs[k].pid) && (ptdevs[k].flags >= 0)) { fprintf(stderr, _("%s found on USB bus %d, device %d\n"), ptdevs[k].name, libusb_get_bus_number(dev), libusb_get_device_address(dev)); if (ptdevs[k].flags & FLAG_PLITE) { printf("Printer is in P-Lite Mode, which is unsupported\n\n"); printf("Turn off P-Lite mode by changing switch from position EL to position E\n"); printf("or by pressing the PLite button for ~ 2 seconds (or consult the manual)\n"); return -1; } if (ptdevs[k].flags & FLAG_UNSUP_RASTER) { printf("Unfortunately, that printer currently is unsupported (it has a different raster data transfer)\n"); return -1; } if ((r=libusb_open(dev, &handle)) != 0) { fprintf(stderr, _("libusb_open error :%s\n"), libusb_error_name(r)); return -1; } libusb_free_device_list(devs, 1); if ((r=libusb_kernel_driver_active(handle, 0)) == 1) { if ((r=libusb_detach_kernel_driver(handle, 0)) != 0) { fprintf(stderr, _("error while detaching kernel driver: %s\n"), libusb_error_name(r)); } } if ((r=libusb_claim_interface(handle, 0)) != 0) { fprintf(stderr, _("interface claim error: %s\n"), libusb_error_name(r)); return -1; } (*ptdev)->h=handle; (*ptdev)->devinfo->dpi=ptdevs[k].dpi; (*ptdev)->devinfo->max_px=ptdevs[k].max_px; (*ptdev)->devinfo->flags=ptdevs[k].flags; (*ptdev)->devinfo->pin_offset=ptdevs[k].pin_offset; return 0; } } } fprintf(stderr, _("No P-Touch printer found on USB (remember to put switch to position E)\n")); libusb_free_device_list(devs, 1); return -1; } int ptouch_close(ptouch_dev ptdev) { if (!ptdev) { return -1; } libusb_release_interface(ptdev->h, 0); libusb_close(ptdev->h); return 0; } int ptouch_send(ptouch_dev ptdev, uint8_t *data, size_t len) { int r, tx; if (!ptdev) { fprintf(stderr, _("debug: called ptouch_send() with NULL ptdev\n")); return -1; } if (len > 128) { return -1; } if ((r=libusb_bulk_transfer(ptdev->h, 0x02, data, (int)len, &tx, 0)) != 0) { fprintf(stderr, _("write error: %s\n"), libusb_error_name(r)); return -1; } if (tx != (int)len) { fprintf(stderr, _("write error: could send only %i of %ld bytes\n"), tx, len); return -1; } return 0; } int ptouch_init(ptouch_dev ptdev) { /* first invalidate, then send init command */ uint8_t cmd[102]; memset(cmd, 0, 100); cmd[100] = 0x1b; /* ESC */ cmd[101] = 0x40; /* @ */ return ptouch_send(ptdev, (uint8_t *)cmd, sizeof(cmd)); } /* Sends some magic commands to enable chaining on the PT-D460BT. These should go out right before magic commands. */ int ptouch_send_d460bt_chain(ptouch_dev ptdev) { uint8_t cmd[] = "\x1b\x69\x4b\x00"; return ptouch_send(ptdev, (uint8_t *)cmd, sizeof(cmd)); } /* Sends some magic commands to make prints work on the PT-D460BT. These should go out after info_cmd and right before the raster data. */ int ptouch_send_d460bt_magic(ptouch_dev ptdev) { /* 1B 69 64 {n1} {n2} {n3} {n4} */ uint8_t cmd[7]; /* n1 and n2 are the length margin/spacing, in px? (uint16_t value, little endian) */ /* A value of 0x06 is equivalent to the width margin on 6mm tape */ /* A value of 0x01 adds barely any margin, suitable for image printing */ /* The default for P-Touch software is 0x0e */ /* n3 must be 0x4D or the print gets corrupted! */ /* n4 seems to be ignored or reserved. */ memcpy(cmd, "\x1b\x69\x64\x01\x00\x4d\x00", 7); return ptouch_send(ptdev, (uint8_t *)cmd, sizeof(cmd)); } int ptouch_enable_packbits(ptouch_dev ptdev) { /* 4D 00 = disable compression */ char cmd[] = "M\x02"; /* 4D 02 = enable packbits compression mode */ return ptouch_send(ptdev, (uint8_t *)cmd, strlen(cmd)); } /* print information command */ int ptouch_info_cmd(ptouch_dev ptdev, int size_x) { if (!ptdev) { fprintf(stderr, _("debug: called ptouch_info_cmd() with NULL ptdev\n")); return -1; } /* 1B 69 7A {n1} {n2} {n3} {n4} {n5} {n6} {n7} {n8} {n9} {n10} */ uint8_t cmd[] = "\x1b\x69\x7a\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00"; /* {n3}: Media width (mm) {n4}: Media length (mm) For the media of width 24 mm, specify as n3 = 18h and n4 = 00h. n4 is normally 00h, regardless of the paper length. */ cmd[5] = ptdev->status->media_width; /* {n5} -{n8}: Raster number n8*256*256*256 + n7*256*256 + n6*256 + n5 */ cmd[7] = (uint8_t) size_x & 0xff; cmd[8] = (uint8_t) (size_x >> 8) & 0xff; cmd[9] = (uint8_t) (size_x >> 16) & 0xff; cmd[10] = (uint8_t) (size_x >> 24) & 0xff; if ((ptdev->devinfo->flags & FLAG_D460BT_MAGIC) == FLAG_D460BT_MAGIC) { /* n9 is set to 2 in order to feed the last of the label and properly stop printing. */ cmd[11] = (uint8_t) 0x02; } return ptouch_send(ptdev, cmd, sizeof(cmd)-1); } /* If set, printer will prompt to cut blank tape before finishing the print. If not set, printer will print normally with a big blank space on the label. The printer ignores this value if the print is very short. */ /* 0x80 horizontally mirrors the print */ int ptouch_send_precut_cmd(ptouch_dev ptdev, int precut) { char cmd[] = "\x1b\x69\x4d\x00"; if (precut) { cmd[3] = 0x40; } return ptouch_send(ptdev, (uint8_t *)cmd, sizeof(cmd)-1); } int ptouch_rasterstart(ptouch_dev ptdev) { if (!ptdev) { fprintf(stderr, _("debug: called ptouch_rasterstart() with NULL ptdev\n")); return -1; } /* 1B 69 52 01 = Select graphics transfer mode = Raster */ char cmd[] = "\x1b\x69\x52\x01"; /* 1B 69 61 01 = switch mode (0=esc/p, 1=raster mode) */ char cmd2[] = "\x1b\x69\x61\x01"; if (ptdev->devinfo->flags & FLAG_P700_INIT) { int r = ptouch_send(ptdev, (uint8_t *)cmd2, strlen(cmd2)); if (r != 0) { return r; } /* Printer sends a status response after entering raster mode; flush it so subsequent raster writes don't block. */ uint8_t buf[32]; int tx = 0; libusb_bulk_transfer(ptdev->h, 0x81, buf, sizeof(buf), &tx, 1000); return 0; } /* else */ return ptouch_send(ptdev, (uint8_t *)cmd, strlen(cmd)); } /* print an empty line */ int ptouch_lf(ptouch_dev ptdev) { char cmd[]="\x5a"; return ptouch_send(ptdev, (uint8_t *)cmd, strlen(cmd)); } /* print and advance tape, but do not cut */ int ptouch_ff(ptouch_dev ptdev) { char cmd[]="\x0c"; return ptouch_send(ptdev, (uint8_t *)cmd, strlen(cmd)); } /* finish print and either cut or leave tape in machine */ int ptouch_finalize(ptouch_dev ptdev, int chain) { if (!ptdev) { fprintf(stderr, _("debug: called ptouch_finalize() with NULL ptdev\n")); return -1; } char cmd_eject[]="\x1a"; /* Print command with feeding */ char cmd_chain[]="\x0c"; /* Print command (no cut) */ // The D460BT devices use a leading packet to indicate chaining instead. char *cmd = (chain && (!(ptdev->devinfo->flags & FLAG_D460BT_MAGIC))) ? cmd_chain : cmd_eject; return ptouch_send(ptdev, (uint8_t *)cmd, 1); } void ptouch_rawstatus(uint8_t raw[32]) { fprintf(stderr, _("debug: dumping raw status bytes\n")); for (int i=0; i<32; ++i) { fprintf(stderr, "0x%02x ", raw[i]); if (((i+1) % 16) == 0) { fprintf(stderr, "\n"); } } fprintf(stderr, "\n"); return; } int ptouch_getstatus(ptouch_dev ptdev, int timeout) { char cmd[]="\x1biS"; /* 1B 69 53 = ESC i S = Status info request */ uint8_t buf[32] = {}; int r, tx=0, tries=0, maxtries=timeout*10; struct timespec w; if (!ptdev) { fprintf(stderr, _("debug: called ptouch_getstatus() with NULL ptdev\n")); return -1; } ptouch_send(ptdev, (uint8_t *)cmd, strlen(cmd)); while (tx == 0) { w.tv_sec=0; w.tv_nsec=100000000; /* 0.1 sec */ r=nanosleep(&w, NULL); if ((r=libusb_bulk_transfer(ptdev->h, 0x81, buf, 32, &tx, 0)) != 0) { fprintf(stderr, _("read error: %s\n"), libusb_error_name(r)); return -1; } ++tries; if (timeout && tries > maxtries) { fprintf(stderr, _("timeout (%i sec) while waiting for status response\n"), timeout); return -1; } } if (tx == 32) { if (buf[0]==0x80 && buf[1]==0x20) { memcpy(ptdev->status, buf, 32); ptdev->tape_width_px = ptouch_calc_tape_px(ptdev, buf[10]); if (ptdev->tape_width_px == 0) { fprintf(stderr, _("unknown tape width of %imm, please report this.\n"), buf[10]); } return 0; } } if (tx == 16) { fprintf(stderr, _("got only 16 bytes... wondering what they are:\n")); ptouch_rawstatus(buf); } if (tx != 32) { fprintf(stderr, _("read error: got %i instead of 32 bytes\n"), tx); return -1; } fprintf(stderr, _("strange status:\n")); ptouch_rawstatus(buf); fprintf(stderr, _("trying to flush junk\n")); if ((r=libusb_bulk_transfer(ptdev->h, 0x81, buf, 32, &tx, 0)) != 0) { fprintf(stderr, _("read error: %s\n"), libusb_error_name(r)); return -1; } fprintf(stderr, _("got another %i bytes. now try again\n"), tx); return -1; } int ptouch_get_dpi(ptouch_dev ptdev) { if (!ptdev) { fprintf(stderr, _("debug: called ptouch_get_dpi() with NULL ptdev\n")); return 0; } return ptdev->devinfo->dpi; } int ptouch_calc_tape_px(ptouch_dev ptdev, const uint8_t tape_width_mm) { if (!ptdev) { fprintf(stderr, _("debug: called ptouch_cal_tape_width() with NULL ptdev\n")); return 0; } int tape_width_px = 0; for (int i=0; tape_info[i].mm > 0; ++i) { if (tape_info[i].mm == tape_width_mm) { if (ptdev->devinfo->dpi == 180) { tape_width_px = tape_info[i].px; } else if (ptdev->devinfo->dpi == 360) { tape_width_px = tape_info[i].px360; } else { fprintf(stderr, _("printer with %d dpi not supported\n"), ptdev->devinfo->dpi); } } } /* Never print wider than the physical printhead. This also keeps 360dpi printers with a narrower head (e.g. PT-9200DX, 384px) safe when the tape's printable area exceeds what they can drive. */ if (tape_width_px > ptdev->devinfo->max_px) { tape_width_px = ptdev->devinfo->max_px; } return tape_width_px; } /* TODO: The actual number of maximum lines should be calculated according to printer resolution, tapewidth and fontsize */ /* printer resolution is planned to be taken into account when calculating tape_width in px */ int ptouch_get_max_lines(ptouch_dev ptdev, int fontsize_px) { if (!ptdev) { fprintf(stderr, _("debug: called ptouch_get_max_lines() with NULL ptdev\n")); return 0; } if (fontsize_px <= 0) { fprintf(stderr, _("debug: called ptouch_get_max_lines() with invalid fontsize_px\n")); return 0; } fprintf(stderr, _("debug: calculated max lines %d \n"), ptdev->tape_width_px / fontsize_px); return 4; } size_t ptouch_get_tape_width(ptouch_dev ptdev) { if (!ptdev) { fprintf(stderr, _("debug: called ptouch_get_tape_width() with NULL ptdev\n")); return 0; } return ptdev->tape_width_px; } size_t ptouch_get_max_width(ptouch_dev ptdev) { if (!ptdev) { fprintf(stderr, _("debug: called ptouch_get_max_width() with NULL ptdev\n")); return 0; } return ptdev->devinfo->max_px; } int ptouch_sendraster(ptouch_dev ptdev, uint8_t *data, size_t len) { /* Must hold a full raster line (max_px/8 bytes) plus up to 4 header bytes. ptouch_send() caps a packet at 128 bytes, so this is the largest a packet can ever be. */ uint8_t buf[128]; int rc; if (!ptdev) { fprintf(stderr, _("debug: called ptouch_sendraster() with NULL ptdev\n")); return -1; } if (len > (size_t)(ptdev->devinfo->max_px / 8)) { return -1; } buf[0]=0x47; if (ptdev->devinfo->flags & FLAG_RASTER_PACKBITS) { /* Fake compression by encoding a single uncompressed run */ buf[1] = (uint8_t)(len + 1); buf[2] = 0; buf[3] = (uint8_t)(len - 1); memcpy(buf + 4, data, len); rc = ptouch_send(ptdev, buf, len + 4); } else { buf[1] = (uint8_t)len; buf[2] = 0; memcpy(buf + 3, data, len); rc = ptouch_send(ptdev, buf, len + 3); } return rc; } void ptouch_list_supported() { const int columns = 5; printf("Supported printers (some might have quirks)\n"); int col=0; for (int i=0; ptdevs[i].vid > 0; ++i) { if ((ptdevs[i].flags & FLAG_PLITE) != FLAG_PLITE) { printf("%s", ptdevs[i].name); if (strlen(ptdevs[i].name) < 8) { printf("\t"); } printf("%c", (col < (columns - 1))?'\t':'\n'); ++col; col = (col % columns); } } printf("\n"); return; } const char* pt_mediatype(const uint8_t media_type) { switch (media_type) { case 0x00: return "No media"; break; case 0x01: return "Laminated tape"; break; case 0x03: return "Non-laminated tape"; break; case 0x04: return "Fabric tape"; break; case 0x11: return "Heat-shrink tube"; break; // Seems wrong, should be 0x17 case 0x13: return "Flexi tape"; break; case 0x14: return "Flexible ID tape"; break; case 0x15: return "Satin tape"; break; case 0x17: return "Heat-shrink tube"; break; case 0xff: return "Incompatible tape"; break; default: return "unknown"; } } const char* pt_tapecolor(const uint8_t tape_color) { switch (tape_color) { case 0x01: return "White"; break; case 0x02: return "Other"; break; case 0x03: return "Clear"; break; case 0x04: return "Red"; break; case 0x05: return "Blue"; break; case 0x06: return "Yellow"; break; case 0x07: return "Green"; break; case 0x08: return "Black"; break; case 0x09: return "Clear"; break; case 0x20: return "Matte White"; break; case 0x21: return "Matte Clear"; break; case 0x22: return "Matte Silver"; break; case 0x23: return "Satin Gold"; break; case 0x24: return "Satin Silver"; break; case 0x30: return "Blue (TZe-5[345]5)"; break; case 0x31: return "Red (TZe-435)"; break; case 0x40: return "Fluorescent Orange"; break; case 0x41: return "Fluorescent Yellow"; break; case 0x50: return "Berry Pink (TZe-MQP35)"; break; case 0x51: return "Light Gray (TZe-MQL35)"; break; case 0x52: return "Lime Green (TZe-MQG35)"; break; case 0x60: return "Yellow"; break; case 0x61: return "Pink"; break; case 0x62: return "Blue"; break; case 0x70: return "Heat-shrink Tube"; break; case 0x71: return "Heat-shrink Tube white"; break; case 0x90: return "White(Flex. ID)"; break; case 0x91: return "Yellow(Flex. ID)"; break; case 0xf0: return "Cleaning"; break; case 0xf1: return "Stencil"; break; case 0xff: return "Incompatible"; break; default: return "unknown"; } } const char* pt_textcolor(const uint8_t text_color) { switch (text_color) { case 0x01: return "White"; break; case 0x02: return "Other"; break; case 0x04: return "Red"; break; case 0x05: return "Blue"; break; case 0x08: return "Black"; break; case 0x0a: return "Gold"; break; case 0x62: return "Blue(F)"; break; case 0xf0: return "Cleaning"; break; case 0xf1: return "Stencil"; break; case 0xff: return "Incompatible"; break; default: return "unknown"; } }