mirror of
https://github.com/trezor/trezor-firmware.git
synced 2024-12-20 21:38:26 +00:00
130 lines
4.9 KiB
C
130 lines
4.9 KiB
C
/*
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* Copyright (c) Jan Pochyla, SatoshiLabs
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*
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* Licensed under TREZOR License
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* see LICENSE file for details
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*/
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#include <stddef.h>
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typedef struct __attribute__((packed)) {
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uint8_t bFunctionLength;
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uint8_t bDescriptorType;
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uint8_t bDescriptorSubtype;
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uint16_t bcdCDC;
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} usb_vcp_header_descriptor_t;
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typedef struct __attribute__((packed)) {
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uint8_t bFunctionLength;
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uint8_t bDescriptorType;
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uint8_t bDescriptorSubtype;
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uint8_t bmCapabilities;
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uint8_t bDataInterface;
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} usb_vcp_cm_descriptor_t;
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typedef struct __attribute__((packed)) {
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uint8_t bFunctionLength;
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uint8_t bDescriptorType;
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uint8_t bDescriptorSubtype;
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uint8_t bmCapabilities;
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} usb_vcp_acm_descriptor_t;
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typedef struct __attribute__((packed)) {
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uint8_t bFunctionLength;
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uint8_t bDescriptorType;
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uint8_t bDescriptorSubtype;
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uint8_t bControlInterface;
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uint8_t bSubordinateInterface0;
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} usb_vcp_union_descriptor_t;
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typedef struct __attribute__((packed)) {
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usb_interface_assoc_descriptor_t assoc;
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usb_interface_descriptor_t iface_cdc;
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usb_vcp_header_descriptor_t fheader; // Class-Specific Descriptor Header Format
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usb_vcp_cm_descriptor_t fcm; // Call Management Functional Descriptor
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usb_vcp_acm_descriptor_t facm; // Abstract Control Management Functional Descriptor
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usb_vcp_union_descriptor_t funion; // Union Interface Functional Descriptor
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usb_endpoint_descriptor_t ep_cmd;
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usb_interface_descriptor_t iface_data;
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usb_endpoint_descriptor_t ep_in;
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usb_endpoint_descriptor_t ep_out;
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} usb_vcp_descriptor_block_t;
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typedef struct __attribute__((packed)) {
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uint32_t dwDTERate;
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uint8_t bCharFormat; // usb_cdc_line_coding_bCharFormat_t
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uint8_t bParityType; // usb_cdc_line_coding_bParityType_t
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uint8_t bDataBits;
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} usb_cdc_line_coding_t;
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typedef enum {
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USB_CDC_1_STOP_BITS = 0,
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USB_CDC_1_5_STOP_BITS = 1,
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USB_CDC_2_STOP_BITS = 2,
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} usb_cdc_line_coding_bCharFormat_t;
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typedef enum {
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USB_CDC_NO_PARITY = 0,
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USB_CDC_ODD_PARITY = 1,
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USB_CDC_EVEN_PARITY = 2,
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USB_CDC_MARK_PARITY = 3,
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USB_CDC_SPACE_PARITY = 4,
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} usb_cdc_line_coding_bParityType_t;
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/* usb_vcp_info_t contains all information for setting up a VCP interface. All
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* passed pointers need to live at least until the interface is disabled
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* (usb_stop is called). */
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typedef struct {
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uint8_t *tx_packet; // Buffer for one packet, with length of at least max_packet_len bytes
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uint8_t *tx_buffer; // Buffer for IN EP ring buffer, with length of at least tx_buffer_len bytes
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uint8_t *rx_packet; // Buffer for one packet, with length of at least max_packet_len bytes
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uint8_t *rx_buffer; // Buffer for OUT EP ring buffer, with length of at least rx_buffer_len bytes
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size_t tx_buffer_len; // Length of tx_buffer, needs to be a power of 2
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size_t rx_buffer_len; // Length of rx_buffer, needs to be a power of 2
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void (*rx_intr_fn)(void); // Callback called from usb_vcp_class_data_out IRQ handler if rx_intr_byte matches
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uint8_t rx_intr_byte; // Value matched against every received byte
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uint8_t iface_num; // Address of this VCP interface
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uint8_t data_iface_num; // Address of data interface of the VCP interface association
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uint8_t ep_cmd; // Address of IN CMD endpoint (with the highest bit set)
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uint8_t ep_in; // Address of IN endpoint (with the highest bit set)
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uint8_t ep_out; // Address of OUT endpoint
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uint8_t polling_interval; // In units of 1ms
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uint8_t max_packet_len; // Length of the biggest packet, and of tx_packet and rx_packet
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} usb_vcp_info_t;
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/* usb_rbuf_t is used internally for the RX/TX buffering. */
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typedef struct {
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size_t cap;
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volatile size_t read;
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volatile size_t write;
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uint8_t *buf;
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} usb_rbuf_t;
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/* usb_vcp_state_t encapsulates all state used by enabled VCP interface. It
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* needs to be completely initialized in usb_vcp_add and reset in
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* usb_vcp_class_init. See usb_vcp_info_t for details of the configuration
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* fields. */
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typedef struct {
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const usb_vcp_descriptor_block_t *desc_block;
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usb_rbuf_t rx_ring;
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usb_rbuf_t tx_ring;
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uint8_t *rx_packet;
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uint8_t *tx_packet;
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void (*rx_intr_fn)(void);
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uint8_t rx_intr_byte;
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uint8_t ep_cmd;
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uint8_t ep_in;
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uint8_t ep_out;
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uint8_t max_packet_len;
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uint8_t ep_in_is_idle; // Set to 1 after IN endpoint gets idle
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} usb_vcp_state_t;
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secbool __wur usb_vcp_add(const usb_vcp_info_t *vcp_info);
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secbool __wur usb_vcp_can_read(uint8_t iface_num);
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secbool __wur usb_vcp_can_write(uint8_t iface_num);
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int __wur usb_vcp_read(uint8_t iface_num, uint8_t *buf, uint32_t len);
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int __wur usb_vcp_write(uint8_t iface_num, const uint8_t *buf, uint32_t len);
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int __wur usb_vcp_read_blocking(uint8_t iface_num, uint8_t *buf, uint32_t len, int timeout);
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int __wur usb_vcp_write_blocking(uint8_t iface_num, const uint8_t *buf, uint32_t len, int timeout);
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