update all examples to use unique ID as serial if avaialble
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@@ -42,35 +42,33 @@
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//--------------------------------------------------------------------+
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// Device Descriptors
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//--------------------------------------------------------------------+
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tusb_desc_device_t const desc_device =
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{
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.bLength = sizeof(tusb_desc_device_t),
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.bDescriptorType = TUSB_DESC_DEVICE,
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.bcdUSB = USB_BCD,
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tusb_desc_device_t const desc_device = {
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.bLength = sizeof(tusb_desc_device_t),
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.bDescriptorType = TUSB_DESC_DEVICE,
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.bcdUSB = USB_BCD,
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// Use Interface Association Descriptor (IAD) for CDC
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// As required by USB Specs IAD's subclass must be common class (2) and protocol must be IAD (1)
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.bDeviceClass = TUSB_CLASS_MISC,
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.bDeviceSubClass = MISC_SUBCLASS_COMMON,
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.bDeviceProtocol = MISC_PROTOCOL_IAD,
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// Use Interface Association Descriptor (IAD) for CDC
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// As required by USB Specs IAD's subclass must be common class (2) and protocol must be IAD (1)
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.bDeviceClass = TUSB_CLASS_MISC,
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.bDeviceSubClass = MISC_SUBCLASS_COMMON,
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.bDeviceProtocol = MISC_PROTOCOL_IAD,
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.bMaxPacketSize0 = CFG_TUD_ENDPOINT0_SIZE,
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.bMaxPacketSize0 = CFG_TUD_ENDPOINT0_SIZE,
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.idVendor = USB_VID,
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.idProduct = USB_PID,
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.bcdDevice = 0x0100,
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.idVendor = USB_VID,
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.idProduct = USB_PID,
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.bcdDevice = 0x0100,
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.iManufacturer = 0x01,
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.iProduct = 0x02,
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.iSerialNumber = 0x03,
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.iManufacturer = 0x01,
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.iProduct = 0x02,
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.iSerialNumber = 0x03,
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.bNumConfigurations = 0x01
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.bNumConfigurations = 0x01
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};
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// Invoked when received GET DEVICE DESCRIPTOR
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// Application return pointer to descriptor
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uint8_t const * tud_descriptor_device_cb(void)
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{
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uint8_t const *tud_descriptor_device_cb(void) {
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return (uint8_t const *) &desc_device;
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}
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@@ -78,8 +76,7 @@ uint8_t const * tud_descriptor_device_cb(void)
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// Configuration Descriptor
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//--------------------------------------------------------------------+
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enum
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{
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enum {
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ITF_NUM_CDC = 0,
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ITF_NUM_CDC_DATA,
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ITF_NUM_MSC,
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@@ -96,7 +93,7 @@ enum
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#define EPNUM_MSC_OUT 0x05
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#define EPNUM_MSC_IN 0x85
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#elif CFG_TUSB_MCU == OPT_MCU_SAMG || CFG_TUSB_MCU == OPT_MCU_SAMX7X
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#elif CFG_TUSB_MCU == OPT_MCU_SAMG || CFG_TUSB_MCU == OPT_MCU_SAMX7X
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// SAMG & SAME70 don't support a same endpoint number with different direction IN and OUT
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// e.g EP1 OUT & EP1 IN cannot exist together
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#define EPNUM_CDC_NOTIF 0x81
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@@ -141,67 +138,62 @@ enum
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#define CONFIG_TOTAL_LEN (TUD_CONFIG_DESC_LEN + TUD_CDC_DESC_LEN + TUD_MSC_DESC_LEN)
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// full speed configuration
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uint8_t const desc_fs_configuration[] =
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{
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// Config number, interface count, string index, total length, attribute, power in mA
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TUD_CONFIG_DESCRIPTOR(1, ITF_NUM_TOTAL, 0, CONFIG_TOTAL_LEN, 0x00, 100),
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uint8_t const desc_fs_configuration[] = {
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// Config number, interface count, string index, total length, attribute, power in mA
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TUD_CONFIG_DESCRIPTOR(1, ITF_NUM_TOTAL, 0, CONFIG_TOTAL_LEN, 0x00, 100),
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// Interface number, string index, EP notification address and size, EP data address (out, in) and size.
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TUD_CDC_DESCRIPTOR(ITF_NUM_CDC, 4, EPNUM_CDC_NOTIF, 8, EPNUM_CDC_OUT, EPNUM_CDC_IN, 64),
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// Interface number, string index, EP notification address and size, EP data address (out, in) and size.
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TUD_CDC_DESCRIPTOR(ITF_NUM_CDC, 4, EPNUM_CDC_NOTIF, 8, EPNUM_CDC_OUT, EPNUM_CDC_IN, 64),
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// Interface number, string index, EP Out & EP In address, EP size
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TUD_MSC_DESCRIPTOR(ITF_NUM_MSC, 5, EPNUM_MSC_OUT, EPNUM_MSC_IN, 64),
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// Interface number, string index, EP Out & EP In address, EP size
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TUD_MSC_DESCRIPTOR(ITF_NUM_MSC, 5, EPNUM_MSC_OUT, EPNUM_MSC_IN, 64),
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};
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#if TUD_OPT_HIGH_SPEED
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// Per USB specs: high speed capable device must report device_qualifier and other_speed_configuration
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// high speed configuration
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uint8_t const desc_hs_configuration[] =
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{
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// Config number, interface count, string index, total length, attribute, power in mA
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TUD_CONFIG_DESCRIPTOR(1, ITF_NUM_TOTAL, 0, CONFIG_TOTAL_LEN, 0x00, 100),
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uint8_t const desc_hs_configuration[] = {
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// Config number, interface count, string index, total length, attribute, power in mA
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TUD_CONFIG_DESCRIPTOR(1, ITF_NUM_TOTAL, 0, CONFIG_TOTAL_LEN, 0x00, 100),
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// Interface number, string index, EP notification address and size, EP data address (out, in) and size.
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TUD_CDC_DESCRIPTOR(ITF_NUM_CDC, 4, EPNUM_CDC_NOTIF, 8, EPNUM_CDC_OUT, EPNUM_CDC_IN, 512),
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// Interface number, string index, EP notification address and size, EP data address (out, in) and size.
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TUD_CDC_DESCRIPTOR(ITF_NUM_CDC, 4, EPNUM_CDC_NOTIF, 8, EPNUM_CDC_OUT, EPNUM_CDC_IN, 512),
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// Interface number, string index, EP Out & EP In address, EP size
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TUD_MSC_DESCRIPTOR(ITF_NUM_MSC, 5, EPNUM_MSC_OUT, EPNUM_MSC_IN, 512),
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// Interface number, string index, EP Out & EP In address, EP size
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TUD_MSC_DESCRIPTOR(ITF_NUM_MSC, 5, EPNUM_MSC_OUT, EPNUM_MSC_IN, 512),
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};
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// other speed configuration
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uint8_t desc_other_speed_config[CONFIG_TOTAL_LEN];
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// device qualifier is mostly similar to device descriptor since we don't change configuration based on speed
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tusb_desc_device_qualifier_t const desc_device_qualifier =
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{
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.bLength = sizeof(tusb_desc_device_qualifier_t),
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.bDescriptorType = TUSB_DESC_DEVICE_QUALIFIER,
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.bcdUSB = USB_BCD,
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tusb_desc_device_qualifier_t const desc_device_qualifier = {
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.bLength = sizeof(tusb_desc_device_qualifier_t),
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.bDescriptorType = TUSB_DESC_DEVICE_QUALIFIER,
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.bcdUSB = USB_BCD,
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.bDeviceClass = TUSB_CLASS_MISC,
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.bDeviceSubClass = MISC_SUBCLASS_COMMON,
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.bDeviceProtocol = MISC_PROTOCOL_IAD,
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.bDeviceClass = TUSB_CLASS_MISC,
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.bDeviceSubClass = MISC_SUBCLASS_COMMON,
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.bDeviceProtocol = MISC_PROTOCOL_IAD,
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.bMaxPacketSize0 = CFG_TUD_ENDPOINT0_SIZE,
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.bNumConfigurations = 0x01,
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.bReserved = 0x00
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.bMaxPacketSize0 = CFG_TUD_ENDPOINT0_SIZE,
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.bNumConfigurations = 0x01,
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.bReserved = 0x00
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};
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// Invoked when received GET DEVICE QUALIFIER DESCRIPTOR request
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// Application return pointer to descriptor, whose contents must exist long enough for transfer to complete.
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// device_qualifier descriptor describes information about a high-speed capable device that would
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// change if the device were operating at the other speed. If not highspeed capable stall this request.
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uint8_t const* tud_descriptor_device_qualifier_cb(void)
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{
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return (uint8_t const*) &desc_device_qualifier;
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uint8_t const *tud_descriptor_device_qualifier_cb(void) {
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return (uint8_t const *) &desc_device_qualifier;
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}
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// Invoked when received GET OTHER SEED CONFIGURATION DESCRIPTOR request
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// Application return pointer to descriptor, whose contents must exist long enough for transfer to complete
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// Configuration descriptor in the other speed e.g if high speed then this is for full speed and vice versa
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uint8_t const* tud_descriptor_other_speed_configuration_cb(uint8_t index)
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{
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uint8_t const *tud_descriptor_other_speed_configuration_cb(uint8_t index) {
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(void) index; // for multiple configurations
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// if link speed is high return fullspeed config, and vice versa
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@@ -221,13 +213,12 @@ uint8_t const* tud_descriptor_other_speed_configuration_cb(uint8_t index)
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// Invoked when received GET CONFIGURATION DESCRIPTOR
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// Application return pointer to descriptor
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// Descriptor contents must exist long enough for transfer to complete
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uint8_t const * tud_descriptor_configuration_cb(uint8_t index)
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{
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uint8_t const *tud_descriptor_configuration_cb(uint8_t index) {
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(void) index; // for multiple configurations
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#if TUD_OPT_HIGH_SPEED
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// Although we are highspeed, host may be fullspeed.
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return (tud_speed_get() == TUSB_SPEED_HIGH) ? desc_hs_configuration : desc_fs_configuration;
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return (tud_speed_get() == TUSB_SPEED_HIGH) ? desc_hs_configuration : desc_fs_configuration;
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#else
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return desc_fs_configuration;
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#endif
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@@ -246,57 +237,55 @@ enum {
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};
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// array of pointer to string descriptors
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char const* string_desc_arr [] =
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{
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(const char[]) { 0x09, 0x04 }, // 0: is supported language is English (0x0409)
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"TinyUSB", // 1: Manufacturer
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"TinyUSB Device", // 2: Product
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"123456789012", // 3: Serials, should use chip ID
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"TinyUSB CDC", // 4: CDC Interface
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"TinyUSB MSC", // 5: MSC Interface
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char const *string_desc_arr[] = {
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(const char[]) { 0x09, 0x04 }, // 0: is supported language is English (0x0409)
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"TinyUSB", // 1: Manufacturer
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"TinyUSB Device", // 2: Product
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NULL, // 3: Serials will use unique ID if possible
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"TinyUSB CDC", // 4: CDC Interface
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"TinyUSB MSC", // 5: MSC Interface
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};
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static uint16_t _desc_str[32+1];
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static uint16_t _desc_str[32 + 1];
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// Invoked when received GET STRING DESCRIPTOR request
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// Application return pointer to descriptor, whose contents must exist long enough for transfer to complete
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uint16_t const* tud_descriptor_string_cb(uint8_t index, uint16_t langid)
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{
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uint16_t const *tud_descriptor_string_cb(uint8_t index, uint16_t langid) {
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(void) langid;
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size_t chr_count;
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switch(index) {
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switch ( index ) {
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case STRID_LANGID:
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memcpy(&_desc_str[1], string_desc_arr[0], 2);
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chr_count = 1;
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break;
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case STRID_SERIAL:
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chr_count = board_usb_get_serial(_desc_str+1, 32);
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chr_count = board_usb_get_serial(_desc_str + 1, 32);
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break;
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default:
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// Note: the 0xEE index string is a Microsoft OS 1.0 Descriptors.
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// https://docs.microsoft.com/en-us/windows-hardware/drivers/usbcon/microsoft-defined-usb-descriptors
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if ( !(index < sizeof(string_desc_arr)/sizeof(string_desc_arr[0])) ) return NULL;
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if ( !(index < sizeof(string_desc_arr) / sizeof(string_desc_arr[0])) ) return NULL;
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const char* str = string_desc_arr[index];
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const char *str = string_desc_arr[index];
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// Cap at max char
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chr_count = strlen(str);
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if ( chr_count > 31 ) chr_count = 31;
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size_t const max_count = sizeof(_desc_str) / sizeof(_desc_str[0]) - 1; // -1 for string type
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if ( chr_count > max_count ) chr_count = max_count;
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// Convert ASCII string into UTF-16
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for(size_t i=0; i<chr_count; i++) {
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_desc_str[1+i] = str[i];
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for ( size_t i = 0; i < chr_count; i++ ) {
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_desc_str[1 + i] = str[i];
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}
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break;
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}
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// first byte is length (including header), second byte is string type
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_desc_str[0] = (uint16_t) ((TUSB_DESC_STRING << 8 ) | (2*chr_count + 2));
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_desc_str[0] = (uint16_t) ((TUSB_DESC_STRING << 8) | (2 * chr_count + 2));
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return _desc_str;
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}
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