This commit rewrite the 'usb_wrap_ll.h' API as follows:
- All APIs renamed from 'usb_fsls_phy_ll_...()' to 'usb_wrap_ll_...()'
- APIs now match their equivalent counter parts in 'usb_serial_jtag_ll.h'
For targets that only contain a USJ peripheral (and not a DWC OTG), their
'usb_fsls_phy_ll.h' headers only contain a single function
('usb_fsls_phy_ll_int_jtag_enable()') whose feature is already covered by
functions in 'usb_serial_jtag_ll.h'. Thus, this header is redundant.
This commit does the following:
- Remove 'usb_fsls_phy_ll.h' for targets that only contain a USJ peripheral
- Rename 'usb_fsls_phy_[hal|ll].[h|c]' to `usb_wrap_[hal|ll].[h|c]` for targets
that contain a DWC OTG peripheral. This better reflects the underlying peripheral
that the LL header accesses.
This commit renames USB PHY related HAL files from "usb_phy_xxx" to
"usb_fsls_phy_xxx" since they are only designed to support Full-Speed/Low-Speed
Serial USB PHYs. This renmaing is done to accommodate future USB PHYs that use
other PHY interfaces (e.g., UTMI, ULPI etc).
On ESP32-S3 with the default efuse settings, USB PHY is connected to
the USB_SERIAL_JTAG peripheral. If USB OTG peripheral is used for the
console, we need to additionally switch the PHY to USB OTG, otherwise
we won't get any output.
Closes https://github.com/espressif/esp-idf/issues/12437
By using IOMUX instead of GPIO Matrix for UART, it is now possible
on ESP32 boards to use the UART as a wake up source even if it is
not used as a console.
For other boards where this issue was not present, using IOMUX has
the advantage to be faster than using GPIO matrix, so a highest
baudrate can be used
When `DIS_USB_JTAG` eFuse is NOT burned (`False`), it is not possible
to set pins 18 and 19 as GPIOs. This commit solves this by manually
disabling USB JTAG when using pins 18 or 19.
The functions shall use `gpio_hal_iomux_func_sel` instead of
`PIN_FUNC_SELELECT`.