153 lines
5.7 KiB
C
153 lines
5.7 KiB
C
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#include <stddef.h>
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#include <stdint.h>
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#include <stdbool.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include "ftd2xx.h"
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int main(int argc, char* argv[]) {
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FT_STATUS stat;
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FT_HANDLE ft;
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int rv;
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FT_SetVIDPID(0x0403, 0x7fd0);
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stat = FT_Open(0, &ft);
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if (stat) {printf("FT_Open failed\n");return 1;}
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FT_DEVICE dev;
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static const char* devlut[] = {
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"BM","AM","100ax","unk","2232c","232r","2232h","4232h","232h",
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"X-series","4222h0", "4222h12","4222h3","4222prog"};
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stat = FT_GetDeviceInfo(ft, &dev, NULL, NULL, NULL, NULL);
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if (stat) {printf("getdevinfo failed\n");rv=1;goto finish;}
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printf("dev=%d %s\n", dev, devlut[dev]);
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static FT_PROGRAM_DATA pdata;
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// "MUST set signature1 and signature2 before calling FF_EE_Read"
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pdata.Signature1 = 0;
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pdata.Signature2 = 0xffffffff;
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pdata.Manufacturer = malloc(256);
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pdata.ManufacturerId = malloc(256);
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pdata.Description = malloc(256);
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pdata.SerialNumber = malloc(256);
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stat = FT_EE_Read(ft, &pdata);
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if (stat){printf("FT_EE_Read failed\n");rv=1;goto finish;}
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printf("Signature1 = 0x%08x\n", pdata.Signature1);
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printf("Signature2 = 0x%08x\n", pdata.Signature2);
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printf("Version = %04x\n", pdata.Version);
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printf("VendorId = 0x%04x\n", pdata.VendorId);
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printf("ProductId = 0x%04x\n", pdata.ProductId);
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printf("Manufacturer = %s\n", pdata.Manufacturer);
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printf("ManufacturerId = %s\n", pdata.ManufacturerId);
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printf("Description = %s\n", pdata.Description);
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printf("SerialNumber = %s\n", pdata.SerialNumber);
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printf("MaxPower = %d\n", pdata.MaxPower);
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printf("PnP = %d\n", pdata.PnP);
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printf("SelfPowered = %d\n", pdata.SelfPowered);
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printf("RemoteWakeup = %d\n", pdata.RemoteWakeup);
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if (dev== FT_DEVICE_BM)
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{
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/* Rev4 (FT232B) extensions */
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printf("BM:\n");
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printf("---\n");
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printf("\tRev4 = 0x%X\n", pdata.Rev4);
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printf("\tIsoIn = 0x%X\n", pdata.IsoIn);
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printf("\tIsoOut = 0x%X\n", pdata.IsoOut);
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printf("\tPullDownEnable = 0x%X\n", pdata.PullDownEnable);
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printf("\tSerNumEnable = 0x%X\n", pdata.SerNumEnable);
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printf("\tUSBVersionEnable = 0x%X\n", pdata.USBVersionEnable);
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printf("\tUSBVersion = 0x%X\n", pdata.USBVersion);
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}
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if (dev== FT_DEVICE_2232C)
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{
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/* Rev 5 (FT2232C) extensions */
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printf("2232RC:\n");
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printf("-------\n");
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printf("\tRev5 = 0x%X\n", pdata.Rev5);
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printf("\tIsoInA = 0x%X\n", pdata.IsoInA);
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printf("\tIsoInB = 0x%X\n", pdata.IsoInB);
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printf("\tIsoOutA = 0x%X\n", pdata.IsoOutA);
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printf("\tIsoOutB = 0x%X\n", pdata.IsoOutB);
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printf("\tPullDownEnable5 = 0x%X\n", pdata.PullDownEnable5);
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printf("\tSerNumEnable5 = 0x%X\n", pdata.SerNumEnable5);
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printf("\tUSBVersionEnable5 = 0x%X\n", pdata.USBVersionEnable5);
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printf("\tUSBVersion5 = 0x%X\n", pdata.USBVersion5);
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printf("\tAIsHighCurrent = 0x%X\n", pdata.AIsHighCurrent);
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printf("\tBIsHighCurrent = 0x%X\n", pdata.BIsHighCurrent);
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printf("\tIFAIsFifo = 0x%X\n", pdata.IFAIsFifo);
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printf("\tIFAIsFifoTar = 0x%X\n", pdata.IFAIsFifoTar);
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printf("\tIFAIsFastSer = 0x%X\n", pdata.IFAIsFastSer);
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printf("\tAIsVCP = 0x%X\n", pdata.AIsVCP);
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printf("\tIFBIsFifo = 0x%X\n", pdata.IFBIsFifo);
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printf("\tIFBIsFifoTar = 0x%X\n", pdata.IFBIsFifoTar);
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printf("\tIFBIsFastSer = 0x%X\n", pdata.IFBIsFastSer);
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printf("\tBIsVCP = 0x%X\n", pdata.BIsVCP);
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}
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if (dev== FT_DEVICE_232R)
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{
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/* Rev 6 (FT232R) extensions */
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printf("232R:\n");
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printf("-----\n");
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printf("\tUseExtOsc = 0x%X\n", pdata.UseExtOsc); // Use External Oscillator
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printf("\tHighDriveIOs = 0x%X\n", pdata.HighDriveIOs); // High Drive I/Os
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printf("\tEndpointSize = 0x%X\n", pdata.EndpointSize); // Endpoint size
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printf("\tPullDownEnableR = 0x%X\n", pdata.PullDownEnableR); // non-zero if pull down enabled
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printf("\tSerNumEnableR = 0x%X\n", pdata.SerNumEnableR); // non-zero if serial number to be used
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printf("\tInvertTXD = 0x%X\n", pdata.InvertTXD); // non-zero if invert TXD
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printf("\tInvertRXD = 0x%X\n", pdata.InvertRXD); // non-zero if invert RXD
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printf("\tInvertRTS = 0x%X\n", pdata.InvertRTS); // non-zero if invert RTS
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printf("\tInvertCTS = 0x%X\n", pdata.InvertCTS); // non-zero if invert CTS
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printf("\tInvertDTR = 0x%X\n", pdata.InvertDTR); // non-zero if invert DTR
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printf("\tInvertDSR = 0x%X\n", pdata.InvertDSR); // non-zero if invert DSR
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printf("\tInvertDCD = 0x%X\n", pdata.InvertDCD); // non-zero if invert DCD
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printf("\tInvertRI = 0x%X\n", pdata.InvertRI); // non-zero if invert RI
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printf("\tCbus0 = 0x%X\n", pdata.Cbus0); // Cbus Mux control
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printf("\tCbus1 = 0x%X\n", pdata.Cbus1); // Cbus Mux control
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printf("\tCbus2 = 0x%X\n", pdata.Cbus2); // Cbus Mux control
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printf("\tCbus3 = 0x%X\n", pdata.Cbus3); // Cbus Mux control
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printf("\tCbus4 = 0x%X\n", pdata.Cbus4); // Cbus Mux control
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printf("\tRIsD2XX = 0x%X\n", pdata.RIsD2XX); // non-zero if using D2XX
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}
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uint32_t uasz, uard;
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stat = FT_EE_UASize(ft, &uasz);
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if (stat) {printf("FT_EE_UASize failed\n");rv=1;goto finish;}
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printf("UASize = 0x%x\n", uasz);
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uint8_t* data = (uint8_t*)malloc(uasz);
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stat = FT_EE_UARead(ft, data, uasz, &uard);
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if (stat) {printf("FT_EE_UARead failed\n");rv=1;goto finish;}
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if (uasz != uard){printf("FT_EE_UARead bad len\n");rv=1;goto finish;}
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FILE* f = fopen("ua.bin", "wb+");
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fwrite(data, 1, uasz, f);
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fclose(f);
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f = fopen("ee.bin", "wb+");
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for (size_t i = 0; ; ++i) {
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uint16_t val;
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stat = FT_ReadEE(ft, (uint32_t)i, &val);
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if (stat) {printf("FT_ReadEE failed at i=%zu (%zu bytes)\n", i, i<<1); break;}
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fwrite(&val, 2, 1, f);
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}
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fclose(f);
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finish:
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FT_Close(ft);
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return rv;
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}
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