Replace eeprom->rs232_inversion with eeprom->invert.
[libftdi] / src / ftdi.c
index 011f464..0a6dfb5 100644 (file)
@@ -413,8 +413,8 @@ int ftdi_usb_get_strings(struct ftdi_context * ftdi, struct libusb_device * dev,
     if ((ftdi==NULL) || (dev==NULL))
         return -1;
 
-    if (libusb_open(dev, &ftdi->usb_dev) < 0)
-        ftdi_error_return(-4, "libusb_open() failed");
+    if (ftdi->usb_dev == NULL && libusb_open(dev, &ftdi->usb_dev) < 0)
+            ftdi_error_return(-4, "libusb_open() failed");
 
     if (libusb_get_device_descriptor(dev, &desc) < 0)
         ftdi_error_return(-11, "libusb_get_device_descriptor() failed");
@@ -1018,8 +1018,8 @@ static int ftdi_to_clkbits_AM(int baudrate, unsigned long *encoded_divisor)
     static const char am_adjust_up[8] = {0, 0, 0, 1, 0, 3, 2, 1};
     static const char am_adjust_dn[8] = {0, 0, 0, 1, 0, 1, 2, 3};
     int divisor, best_divisor, best_baud, best_baud_diff;
-    divisor = 24000000 / baudrate;
     int i;
+    divisor = 24000000 / baudrate;
 
     // Round down to supported fraction (AM only)
     divisor -= am_adjust_dn[divisor & 7];
@@ -1393,7 +1393,7 @@ int ftdi_write_data(struct ftdi_context *ftdi, const unsigned char *buf, int siz
     return offset;
 }
 
-static void ftdi_read_data_cb(struct libusb_transfer *transfer)
+static void LIBUSB_CALL ftdi_read_data_cb(struct libusb_transfer *transfer)
 {
     struct ftdi_transfer_control *tc = (struct ftdi_transfer_control *) transfer->user_data;
     struct ftdi_context *ftdi = tc->ftdi;
@@ -1475,7 +1475,7 @@ static void ftdi_read_data_cb(struct libusb_transfer *transfer)
 }
 
 
-static void ftdi_write_data_cb(struct libusb_transfer *transfer)
+static void LIBUSB_CALL ftdi_write_data_cb(struct libusb_transfer *transfer)
 {
     struct ftdi_transfer_control *tc = (struct ftdi_transfer_control *) transfer->user_data;
     struct ftdi_context *ftdi = tc->ftdi;
@@ -3065,6 +3065,7 @@ int ftdi_eeprom_build(struct ftdi_context *ftdi)
             {
                 output[0x1a + j] = eeprom->cbus_function[j];
             }
+            output[0x0b] = eeprom->invert;
             break;
     }
 
@@ -3136,7 +3137,7 @@ static unsigned char bit2type(unsigned char bits)
 */
 int ftdi_eeprom_decode(struct ftdi_context *ftdi, int verbose)
 {
-    unsigned char i, j;
+    int i, j;
     unsigned short checksum, eeprom_checksum, value;
     unsigned char manufacturer_size = 0, product_size = 0, serial_size = 0;
     int eeprom_size;
@@ -3356,8 +3357,6 @@ int ftdi_eeprom_decode(struct ftdi_context *ftdi, int verbose)
     }
     else if (ftdi->type == TYPE_232H)
     {
-        int i;
-
         eeprom->channel_a_type   = buf[0x00] & 0xf;
         eeprom->channel_a_driver = (buf[0x00] & DRIVER_VCPH)?DRIVER_VCP:0;
         eeprom->clock_polarity =  buf[0x01]       & FT1284_CLK_IDLE_STATE;
@@ -3391,6 +3390,8 @@ int ftdi_eeprom_decode(struct ftdi_context *ftdi, int verbose)
         eeprom->group1_drive   = (buf[0x0c] >> 4) & 0x03;
         eeprom->group1_schmitt = (buf[0x0c] >> 4) & IS_SCHMITT;
         eeprom->group1_slew    = (buf[0x0c] >> 4) & SLOW_SLEW;
+
+        eeprom->invert = buf[0xb];
     }
 
     if (verbose)
@@ -3433,14 +3434,14 @@ int ftdi_eeprom_decode(struct ftdi_context *ftdi, int verbose)
                     channel_mode[eeprom->channel_a_type],
                     (eeprom->channel_a_driver)?" VCP":"",
                     (eeprom->high_current_a)?" High Current IO":"");
-        if (ftdi->type >= TYPE_232H)
+        if (ftdi->type == TYPE_232H)
         {
             fprintf(stdout,"FT1284 Mode Clock is idle %s, %s first, %sFlow Control\n",
                     (eeprom->clock_polarity)?"HIGH":"LOW",
                     (eeprom->data_order)?"LSB":"MSB",
                     (eeprom->flow_control)?"":"No ");
         }
-        if ((ftdi->type >= TYPE_2232C) && (ftdi->type != TYPE_R) && (ftdi->type != TYPE_232H))
+        if ((ftdi->type == TYPE_2232H) || (ftdi->type == TYPE_4232H))
             fprintf(stdout,"Channel B has Mode %s%s%s\n",
                     channel_mode[eeprom->channel_b_type],
                     (eeprom->channel_b_driver)?" VCP":"",
@@ -3474,7 +3475,6 @@ int ftdi_eeprom_decode(struct ftdi_context *ftdi, int verbose)
         }
         else if (ftdi->type == TYPE_232H)
         {
-            int i;
             char *cbush_mux[] = {"TRISTATE","RXLED","TXLED", "TXRXLED","PWREN",
                                  "SLEEP","DRIVE_0","DRIVE_1","IOMODE","TXDEN",
                                  "CLK30","CLK15","CLK7_5"
@@ -3496,14 +3496,13 @@ int ftdi_eeprom_decode(struct ftdi_context *ftdi, int verbose)
         }
         else if (ftdi->type == TYPE_230X)
         {
-            int i;
             char *cbush_mux[] = {"TRISTATE","RXLED","TXLED", "TXRXLED","PWREN",
                                  "SLEEP","DRIVE_0","DRIVE_1","IOMODE","TXDEN",
                                  "CLK24","CLK12","CLK6","BAT_DETECT","BAT_DETECT#",
                                  "I2C_TXE#", "I2C_RXF#", "VBUS_SENSE", "BB_WR#",
                                  "BBRD#", "TIME_STAMP", "AWAKE#",
                                 };
-            fprintf(stdout,"IOBUS has %d mA drive%s%s\n",
+            fprintf(stdout,"DBUS has %d mA drive%s%s\n",
                     (eeprom->group0_drive+1) *4,
                     (eeprom->group0_schmitt)?" Schmitt Input":"",
                     (eeprom->group0_slew)?" Slow Slew":"");
@@ -3516,6 +3515,33 @@ int ftdi_eeprom_decode(struct ftdi_context *ftdi, int verbose)
                 if (eeprom->cbus_function[i]<= CBUSH_AWAKE)
                     fprintf(stdout,"CBUS%d Function: %s\n", i, cbush_mux[eeprom->cbus_function[i]]);
             }
+            if(eeprom->invert ) {
+                struct bitnames {
+                    int mask;
+                    char *name;
+                };
+
+                struct bitnames invbitlist[] = {
+                    {INVERT_TXD, "TXD"},
+                    {INVERT_RXD, "RXD"},
+                    {INVERT_RTS, "RTS"},
+                    {INVERT_CTS, "CTS"},
+                    {INVERT_DTR, "DTR"},
+                    {INVERT_DSR, "DSR"},
+                    {INVERT_DCD, "DCD"},
+                    {INVERT_RI, "RI"},
+                    {0, NULL},
+                };
+                int n = 0;
+                printf("Inversion on ");
+                for (i=0; invbitlist[i].mask;i++) {
+                    if(eeprom->invert & invbitlist[i].mask) {
+                        if (n++) printf (",");
+                        printf (" %s", invbitlist[i].name);
+                    }
+                }
+                printf (" Pin%s\n",(n==1)?"":"s");
+            }
         }
 
         if (ftdi->type == TYPE_R)
@@ -3927,6 +3953,8 @@ int ftdi_set_eeprom_value(struct ftdi_context *ftdi, enum ftdi_eeprom_value valu
             break;
         case CHIP_SIZE:
             ftdi_error_return(-2, "EEPROM Value can't be changed");
+            break;
+
         default :
             ftdi_error_return(-1, "Request to unknown EEPROM value");
     }