feat(inventory): Phase 1 - scan and validate UPC barcodes #1

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lyrathorpe wants to merge 54 commits from feat/inventory-phase1-scan into main
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/* /*
* scan.c - Phase 1 barcode diagnostic: decoded laser over the serial port. * scan.c - Phase 1 barcode diagnostic: keyboard / scan-key route.
* *
* The Workabout MX integral laser powered up and gave a good-read LED on * A working on-device demo triggers the laser from the keyboard scan key, so
* TTY:D, i.e. it is a DECODED scanner that emits ASCII over the serial port - * the system arms the scanner and delivers the decode via the scan-key path -
* no BAR: decoder LDD needed. The earlier TTY:D read returned nothing because * not via an app-opened TTY:D or BAR: channel (both of which gave us nothing).
* the port's default handshake sets P_OBEY_DSR, and the I/O Devices Reference * This build opens NOTHING and simply reads the keyboard, echoing every key
* states that if the remote device does not assert DSR, an outstanding P_FREAD * code. If the decoded barcode is injected as keystrokes (a "wedge"), it will
* is suspended. The laser does not drive DSR, so the read blocked forever. * appear here.
* *
* This build opens TTY:D, applies a P_SRCHAR config at 9600/8/1 with P_OBEY_DSR * Test order:
* cleared (P_IGN_CTS only, so reads are not gated on modem lines), forces DTR * 1. Press normal keys ('1' = 49, '2' = 50, ...) to confirm the read works.
* active, then dumps every byte of each read so the decoded UPC format is seen. * 2. Press the scan key and scan a barcode - watch for the digits.
* * Esc (27) quits.
* Blocking I/O; exit via the System screen.
*/ */
#include <plib.h> #include <plib.h>
#include <p_serial.h>
GLDEF_C INT main(VOID) GLDEF_C INT main(VOID)
{ {
VOID *chan; INT c, cnt;
P_SRCHAR ser;
UBYTE buf[64];
UBYTE ctrl[2];
INT err, n, i;
err = p_open(&chan, "TTY:D", (UINT)-1); p_printf("Keyboard/scan-key test.\n");
p_printf("open TTY:D: %d\n", err); p_printf("Press keys; press the scan key and scan a barcode.\n");
if (err < 0) { p_printf("Esc (27) quits.\n\n");
p_printf("Press a key to exit.\n");
p_getch();
return 1;
}
/* 9600 baud, 8 data bits, 1 stop, no parity; do NOT obey DSR/DCD (only cnt = 0;
ignore CTS) so a scanner that leaves the modem lines idle can be read. */
ser.tbaud = P_BAUD_9600;
ser.rbaud = P_BAUD_9600;
ser.frame = P_DATA_8;
ser.parity = 0;
ser.hand = P_IGN_CTS;
ser.xon = 0x11;
ser.xoff = 0x13;
ser.flags = 0;
ser.tmask = 0;
err = p_iow(chan, P_FSET, &ser);
p_printf("config 9600/8/1: %d\n", err);
/* Force DTR (the scanner enable line) active. Opening already drives it,
but make it explicit. ctrl[0] is the read-back of input lines. */
ctrl[0] = 0;
ctrl[1] = P_SRDTR_ON;
err = p_iow(chan, P_FCTRL, ctrl);
p_printf("assert DTR: %d\n", err);
p_printf("\nScan a barcode. System screen to exit.\n\n");
/* Read ONE byte per call: with tmask=0 a multi-byte P_FREAD waits for the
full requested count and would block on a short scan. Streaming single
bytes returns each character as it arrives, whatever the terminator. */
for (;;) { for (;;) {
n = p_read(chan, buf, 1); c = p_getch();
if (n < 0) { cnt++;
p_printf("<err %d>", n); p_printf(" %d", c);
continue; if (c == 13 || c == 10)
}
if (n == 0)
continue;
i = buf[0];
p_printf(" %d", i);
if (i == 13 || i == 10)
p_printf(" <EOL>\n"); p_printf(" <EOL>\n");
if (c == 27)
break;
} }
p_printf("\n%d keys read.\n", cnt);
return 0;
} }