diff options
| author | hathach <[email protected]> | 2022-03-18 22:22:21 +0700 |
|---|---|---|
| committer | hathach <[email protected]> | 2022-03-18 22:22:21 +0700 |
| commit | ba1185bf28331da718cca38e6598361889fce54d (patch) | |
| tree | 67bd6ac0e6461b1373cdf0b9da91cb1b0dae5231 /examples/host/bare_api/src | |
| parent | 9ae0304b1ecd8d10f96a39c5c88a43d6b7c43681 (diff) | |
implement tuh_edpt_xfer() for non-control
Diffstat (limited to 'examples/host/bare_api/src')
| -rw-r--r-- | examples/host/bare_api/src/main.c | 131 |
1 files changed, 74 insertions, 57 deletions
diff --git a/examples/host/bare_api/src/main.c b/examples/host/bare_api/src/main.c index e2e0f4ff3..06ae03ecb 100644 --- a/examples/host/bare_api/src/main.c +++ b/examples/host/bare_api/src/main.c @@ -40,6 +40,8 @@ //--------------------------------------------------------------------+ void led_blinking_task(void); +static void print_utf16(uint16_t *temp_buf, size_t buf_len); + /*------------- MAIN -------------*/ int main(void) { @@ -65,55 +67,13 @@ int main(void) // English #define LANGUAGE_ID 0x0409 -//uint8_t usb_buf[256] TU_ATTR_ALIGNED(4); -TU_ATTR_ALIGNED(4) tusb_desc_device_t desc_device; -static void _convert_utf16le_to_utf8(const uint16_t *utf16, size_t utf16_len, uint8_t *utf8, size_t utf8_len) { - // TODO: Check for runover. - (void)utf8_len; - // Get the UTF-16 length out of the data itself. - - for (size_t i = 0; i < utf16_len; i++) { - uint16_t chr = utf16[i]; - if (chr < 0x80) { - *utf8++ = chr & 0xff; - } else if (chr < 0x800) { - *utf8++ = (uint8_t)(0xC0 | (chr >> 6 & 0x1F)); - *utf8++ = (uint8_t)(0x80 | (chr >> 0 & 0x3F)); - } else { - // TODO: Verify surrogate. - *utf8++ = (uint8_t)(0xE0 | (chr >> 12 & 0x0F)); - *utf8++ = (uint8_t)(0x80 | (chr >> 6 & 0x3F)); - *utf8++ = (uint8_t)(0x80 | (chr >> 0 & 0x3F)); - } - // TODO: Handle UTF-16 code points that take two entries. - } -} - -// Count how many bytes a utf-16-le encoded string will take in utf-8. -static int _count_utf8_bytes(const uint16_t *buf, size_t len) { - size_t total_bytes = 0; - for (size_t i = 0; i < len; i++) { - uint16_t chr = buf[i]; - if (chr < 0x80) { - total_bytes += 1; - } else if (chr < 0x800) { - total_bytes += 2; - } else { - total_bytes += 3; - } - // TODO: Handle UTF-16 code points that take two entries. - } - return total_bytes; -} - -static void utf16_to_utf8(uint16_t *temp_buf, size_t buf_len) { - size_t utf16_len = ((temp_buf[0] & 0xff) - 2) / sizeof(uint16_t); - size_t utf8_len = _count_utf8_bytes(temp_buf + 1, utf16_len); - _convert_utf16le_to_utf8(temp_buf + 1, utf16_len, (uint8_t *) temp_buf, sizeof(uint16_t) * buf_len); - ((uint8_t*) temp_buf)[utf8_len] = '\0'; -} +//void parse_config_descriptor(uint8_t dev_addr, tusb_desc_configuration_t const* desc_cfg) +//{ +// uint8_t const* desc_end = ((uint8_t const*) desc_cfg) + tu_le16toh(desc_cfg->wTotalLength); +// uint8_t const* p_desc = tu_desc_next(desc_cfg); +//} void print_device_descriptor(tuh_xfer_t* xfer) { @@ -138,33 +98,37 @@ void print_device_descriptor(tuh_xfer_t* xfer) printf(" idProduct 0x%04x\r\n" , desc_device.idProduct); printf(" bcdDevice %04x\r\n" , desc_device.bcdDevice); + // Get String descriptor using Sync API uint16_t temp_buf[128]; printf(" iManufacturer %u " , desc_device.iManufacturer); - if (XFER_RESULT_SUCCESS == tuh_descriptor_get_manufacturer_string_sync(daddr, LANGUAGE_ID, temp_buf, TU_ARRAY_SIZE(temp_buf)) ) + if (XFER_RESULT_SUCCESS == tuh_descriptor_get_manufacturer_string_sync(daddr, LANGUAGE_ID, temp_buf, sizeof(temp_buf)) ) { - utf16_to_utf8(temp_buf, TU_ARRAY_SIZE(temp_buf)); - printf((const char*) temp_buf); + print_utf16(temp_buf, TU_ARRAY_SIZE(temp_buf)); } printf("\r\n"); printf(" iProduct %u " , desc_device.iProduct); - if (XFER_RESULT_SUCCESS == tuh_descriptor_get_product_string_sync(daddr, LANGUAGE_ID, temp_buf, TU_ARRAY_SIZE(temp_buf))) + if (XFER_RESULT_SUCCESS == tuh_descriptor_get_product_string_sync(daddr, LANGUAGE_ID, temp_buf, sizeof(temp_buf))) { - utf16_to_utf8(temp_buf, TU_ARRAY_SIZE(temp_buf)); - printf((const char*) temp_buf); + print_utf16(temp_buf, TU_ARRAY_SIZE(temp_buf)); } printf("\r\n"); printf(" iSerialNumber %u " , desc_device.iSerialNumber); - if (XFER_RESULT_SUCCESS == tuh_descriptor_get_serial_string_sync(daddr, LANGUAGE_ID, temp_buf, TU_ARRAY_SIZE(temp_buf))) + if (XFER_RESULT_SUCCESS == tuh_descriptor_get_serial_string_sync(daddr, LANGUAGE_ID, temp_buf, sizeof(temp_buf))) { - utf16_to_utf8(temp_buf, TU_ARRAY_SIZE(temp_buf)); - printf((const char*) temp_buf); + print_utf16(temp_buf, TU_ARRAY_SIZE(temp_buf)); } printf("\r\n"); printf(" bNumConfigurations %u\r\n" , desc_device.bNumConfigurations); + + // Get configuration descriptor with sync API +// if (XFER_RESULT_SUCCESS == tuh_descriptor_get_configuration_sync(daddr, 0, temp_buf, sizeof(temp_buf)) ) +// { +// parse_config_descriptor(daddr, (tusb_desc_configuration_t*) temp_buf); +// } } // Invoked when device is mounted (configured) @@ -172,7 +136,8 @@ void tuh_mount_cb (uint8_t daddr) { printf("Device attached, address = %d\r\n", daddr); - // Get Device Descriptor using asynchronous API + // Get Device Descriptor sync API + // TODO: invoking control trannsfer now has issue with mounting hub with multiple devices attached, fix later tuh_descriptor_get_device(daddr, &desc_device, 18, print_device_descriptor, 0); } @@ -199,3 +164,55 @@ void led_blinking_task(void) board_led_write(led_state); led_state = 1 - led_state; // toggle } + +//--------------------------------------------------------------------+ +// Helper +//--------------------------------------------------------------------+ + +static void _convert_utf16le_to_utf8(const uint16_t *utf16, size_t utf16_len, uint8_t *utf8, size_t utf8_len) { + // TODO: Check for runover. + (void)utf8_len; + // Get the UTF-16 length out of the data itself. + + for (size_t i = 0; i < utf16_len; i++) { + uint16_t chr = utf16[i]; + if (chr < 0x80) { + *utf8++ = chr & 0xff; + } else if (chr < 0x800) { + *utf8++ = (uint8_t)(0xC0 | (chr >> 6 & 0x1F)); + *utf8++ = (uint8_t)(0x80 | (chr >> 0 & 0x3F)); + } else { + // TODO: Verify surrogate. + *utf8++ = (uint8_t)(0xE0 | (chr >> 12 & 0x0F)); + *utf8++ = (uint8_t)(0x80 | (chr >> 6 & 0x3F)); + *utf8++ = (uint8_t)(0x80 | (chr >> 0 & 0x3F)); + } + // TODO: Handle UTF-16 code points that take two entries. + } +} + +// Count how many bytes a utf-16-le encoded string will take in utf-8. +static int _count_utf8_bytes(const uint16_t *buf, size_t len) { + size_t total_bytes = 0; + for (size_t i = 0; i < len; i++) { + uint16_t chr = buf[i]; + if (chr < 0x80) { + total_bytes += 1; + } else if (chr < 0x800) { + total_bytes += 2; + } else { + total_bytes += 3; + } + // TODO: Handle UTF-16 code points that take two entries. + } + return total_bytes; +} + +static void print_utf16(uint16_t *temp_buf, size_t buf_len) { + size_t utf16_len = ((temp_buf[0] & 0xff) - 2) / sizeof(uint16_t); + size_t utf8_len = _count_utf8_bytes(temp_buf + 1, utf16_len); + _convert_utf16le_to_utf8(temp_buf + 1, utf16_len, (uint8_t *) temp_buf, sizeof(uint16_t) * buf_len); + ((uint8_t*) temp_buf)[utf8_len] = '\0'; + + printf((char*)temp_buf); +} |
