- LibusbTest updated

- clean target in makefile updated
- ant build file added
- new libusb.a added (CVS Version)

git-svn-id: https://svn.code.sf.net/p/libusbjava/code/trunk@174 94ad28fe-ef68-46b1-9651-e7ae4fcf1c4c
This commit is contained in:
dummyinf
2006-09-25 12:40:21 +00:00
parent 536debfb45
commit 52af0791d4
7 changed files with 208 additions and 79 deletions

View File

@@ -10,18 +10,19 @@
#define snprintf printf
#define ID_PRODUCT 0x1004 //0x8613
#define ID_VENDOR 0x04B4
#define ID_PRODUCT 0x0222
#define ID_VENDOR 0x8235
#define CONFIGURATION 1
#define INTERFACE 0
#define INTERFACE_ 0
#define ALTINTERFACE 0
#define TIMEOUT 2000
#define TIMEOUT 5000
#define OUT_ENDPOINT 0x02
#define IN_ENDPOINT 0x86
#define OUT_ENDPOINT 0x01
#define IN_ENDPOINT 0x82
int verbose = 0;
unsigned char first = true;
void print_endpoint(struct usb_endpoint_descriptor *endpoint)
{
@@ -141,13 +142,16 @@ int print_device(struct usb_device *dev, int level)
int read(struct usb_dev_handle *handle)
{
if (usb_claim_interface(handle, INTERFACE) < 0) {
if (usb_claim_interface(handle, INTERFACE_) < 0) {
printf("error on usb_claim_interface: %s\n", usb_strerror());
return -1;
}
printf("usb_claim_interface successful\n");
if (usb_set_altinterface(handle, ALTINTERFACE) < 0){
printf("usb_set_altinterface failed: %s\n", usb_strerror());
if (first) {
first = false;
if (usb_set_altinterface(handle, ALTINTERFACE) < 0){
printf("usb_set_altinterface failed: %s\n", usb_strerror());
}
}
int size = 512, res;
@@ -162,7 +166,7 @@ int read(struct usb_dev_handle *handle)
}
printf("\n");
usb_release_interface(handle, INTERFACE);
usb_release_interface(handle, INTERFACE_);
}
int write(struct usb_dev_handle *handle)
@@ -183,13 +187,16 @@ int write(struct usb_dev_handle *handle)
data[11] = 0x1F;
// data = {0x33, 0x5B, 0x02, 0x01, 0x00, 0x05, 0x01, 0x03, 0x07, 0x0F, 0x7F, 0x1F};
if (usb_claim_interface(handle, INTERFACE) < 0) {
if (usb_claim_interface(handle, INTERFACE_) < 0) {
printf("error on usb_claim_interface: %s\n", usb_strerror());
return -1;
}
printf("usb_claim_interface successful\n");
if (usb_set_altinterface(handle, ALTINTERFACE) < 0){
printf("usb_set_altinterface failed: %s\n", usb_strerror());
if (first) {
first = false;
if (usb_set_altinterface(handle, ALTINTERFACE) < 0){
printf("usb_set_altinterface failed: %s\n", usb_strerror());
}
}
printf("usb_bulk_write: writing %d bytes: ", size);
for (int i = 0; i < size; ++i) {
@@ -205,7 +212,128 @@ int write(struct usb_dev_handle *handle)
printf("usb_bulk_write: %d bytes written\n", res);
usb_release_interface(handle, INTERFACE);
usb_release_interface(handle, INTERFACE_);
}
int readWrite(struct usb_dev_handle *handle)
{
int size = 512;
char *data = (char *) malloc(size*sizeof(char));
printf("type a string...\n");
scanf("%s", data); // Get a string
if (usb_claim_interface(handle, INTERFACE_) < 0) {
printf("error on usb_claim_interface: %s\n", usb_strerror());
system("PAUSE");
return -1;
}
printf("usb_claim_interface successful\n");
if (first) {
first = false;
if (usb_set_altinterface(handle, ALTINTERFACE) < 0){
printf("usb_set_altinterface failed: %s\n", usb_strerror());
}
}
if (usb_bulk_write(handle, OUT_ENDPOINT, data, strlen(data), 3000) < 0){
printf("usb_bulk_write failed: %s\n", usb_strerror());
system("PAUSE");
return -1;
}
strcpy(data, "12345678901234567890");
printf("%s\n", "read data");
if (usb_bulk_read(handle, IN_ENDPOINT, data, size, 3000) < 0){
printf("usb_bulk_read failed: %s\n", usb_strerror());
}
printf("output %d, %s\n", size, data);
// for (int i = 0; i < size; ++i) {
// printf("%4x ", data[i]);
// }
usb_release_interface(handle, INTERFACE_);
}
int readWriteLoop(struct usb_dev_handle *handle)
{
int NOF_LOOPS = 20;
int size = 12;
char *data = (char *) malloc(size*sizeof(char));
data[0] = 0x33;
data[1] = 0x5B;
data[2] = 0x02;
data[3] = 0x01;
data[4] = 0x00;
data[5] = 0x05;
data[6] = 0x01;
data[7] = 0x03;
data[8] = 0x07;
data[9] = 0x0F;
data[10] = 0x7F;
data[11] = 0x1F;
// data = {0x33, 0x5B, 0x02, 0x01, 0x00, 0x05, 0x01, 0x03, 0x07, 0x0F, 0x7F, 0x1F};
if (usb_claim_interface(handle, INTERFACE_) < 0) {
printf("error on usb_claim_interface: %s\n", usb_strerror());
return -1;
}
printf("usb_claim_interface successful\n");
if (first) {
first = false;
if (usb_set_altinterface(handle, ALTINTERFACE) < 0){
printf("usb_set_altinterface failed: %s\n", usb_strerror());
}
}
printf("usb_bulk_write: writing %d bytes: ", size);
for (int i = 0; i < size; ++i) {
printf("%3x ", data[i]);
}
printf("\n------------------------\n");
for (int var = 0; var < NOF_LOOPS; ++var) {
int res = usb_bulk_write(handle, OUT_ENDPOINT, data, size, TIMEOUT);
if (res < 0){
printf("usb_bulk_write failed: %s\n", usb_strerror());
return -1;
}
printf("usb_bulk_write: %d bytes written\n", res);
int size = 64;
char *data = (char *) malloc(size*sizeof(char));
res = usb_bulk_read(handle, IN_ENDPOINT, data, size, TIMEOUT);
if (res < 0){
printf("usb_bulk_read failed: %s\n", usb_strerror());
}
printf("usb_bulk_read: %d bytes read: ", res);
for (int i = 0; i < res; ++i) {
printf("%3x ", data[i]);
}
printf("\n");
}
usb_release_interface(handle, INTERFACE_);
}
void logDevices()
{
struct usb_bus *bus;
printf("log devices...\n");
for (bus = usb_get_busses(); bus; bus = bus->next) {
if (bus->root_dev && !verbose)
print_device(bus->root_dev, 0);
else {
struct usb_device *dev;
for (dev = bus->devices; dev; dev = dev->next)
print_device(dev, 0);
}
}
}
int main(int argc, char *argv[])
@@ -216,50 +344,54 @@ int main(int argc, char *argv[])
bool run = true;
// if (argc > 1 && !strcmp(argv[1], "-v"))
// verbose = 1;
verbose = 1;
if (argc > 1 && !strcmp(argv[1], "-v"))
verbose = 1;
usb_set_debug(255);
printf("initialize libraray, find busses and devices\n");
usb_init();
usb_find_busses();
usb_find_devices();
// for (bus = usb_get_busses(); bus; bus = bus->next) {
// if (bus->root_dev && !verbose)
// print_device(bus->root_dev, 0);
// else {
// struct usb_device *dev;
//
// for (dev = bus->devices; dev; dev = dev->next)
// print_device(dev, 0);
// }
// }
if (verbose)
logDevices();
int size = 512;
char *data = (char *) malloc(size*sizeof(char));
printf("Search for device with idVendor 0x%x and idProduct 0x%x\n", ID_VENDOR, ID_PRODUCT);
for (bus = usb_get_busses(); bus; bus = bus->next) {
if (verbose)
printf("Found bus %s\n", bus->dirname);
for (dev = bus->devices; dev; dev = dev->next) {
if (verbose)
printf("Found device with idVendor 0x%x and idProduct 0x%x\n", dev->descriptor.idVendor, dev->descriptor.idProduct);
if ((dev->descriptor.idProduct == ID_PRODUCT) && (dev->descriptor.idVendor == ID_VENDOR)){
printf("Device found\n");
printf("Device found -> open\n");
handle = usb_open(dev);
if (!handle) {
printf("invalid handle: %s\n", usb_strerror());
system("PAUSE");
return -1;
}
printf("Set configuration\n");
if (usb_set_configuration(handle, CONFIGURATION) < 0) {
printf("error on usb_set_configuration: %s\n", usb_strerror());
system("PAUSE");
return -1;
}
printf("Set altinterface\n");
if (first) {
first = false;
if (usb_set_altinterface(handle, ALTINTERFACE) < 0){
printf("usb_set_altinterface failed: %s\n", usb_strerror());
}
}
printf("w=write, r=read, x=exit, t=write+read:\n");
printf("w=write, r=read, x=exit, t=write+read, u=write+read(2), l=r/w loop, z=reset and open\n");
while (run) {
scanf("%s", data);
@@ -279,43 +411,22 @@ int main(int argc, char *argv[])
read(handle);
}
break;
case 'u': // write + read
readWrite(handle);
break;
case 'l': // loop
readWriteLoop(handle);
break;
case 's': // reset first flag (set_altinterface())
first = true;
break;
case 'z': // reset and open
usb_reset(handle);
handle = usb_open(dev);
break;
default:
break;
}
// printf("type a string...\n");
// scanf("%s", data); // Get a string
// if (usb_claim_interface(handle, INTERFACE) < 0) {
// printf("error on usb_claim_interface: %s\n", usb_strerror());
// system("PAUSE");
// return -1;
// }
// printf("usb_claim_interface successful\n");
// if (usb_set_altinterface(handle, ALTINTERFACE) < 0){
// printf("usb_set_altinterface failed: %s\n", usb_strerror());
// }
//
// if (usb_bulk_write(handle, OUT_ENDPOINT, data, strlen(data), 3000) < 0){
// printf("usb_bulk_write failed: %s\n", usb_strerror());
// system("PAUSE");
// return -1;
// }
//
// strcpy(data, "12345678901234567890");
// printf("%s\n", "read data");
// if (usb_bulk_read(handle, IN_ENDPOINT, data, size, 3000) < 0){
// printf("usb_bulk_read failed: %s\n", usb_strerror());
// }
// printf("output %d, %s\n", size, data);
// // for (int i = 0; i < size; ++i) {
// // printf("%4x ", data[i]);
// // }
//
// usb_release_interface(handle, INTERFACE);
// }
//
// usb_close(handle);
}
printf("\ndone\n");
}