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1 /* $FreeBSD$ */
2 /*-
3  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
4  *
5  * Copyright (c) 2008 Hans Petter Selasky. All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  *
16  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  */
28 
29 /*
30  * Including this file is mandatory for all USB related c-files in the kernel.
31  */
32 
33 #ifndef _USB_CORE_H_
34 #define	_USB_CORE_H_
35 
36 /*
37  * The following macro will tell if an USB transfer is currently
38  * receiving or transferring data.
39  */
40 #define	USB_GET_DATA_ISREAD(xfer) ((xfer)->flags_int.usb_mode == \
41 	USB_MODE_DEVICE ? (((xfer)->endpointno & UE_DIR_IN) ? 0 : 1) : \
42 	(((xfer)->endpointno & UE_DIR_IN) ? 1 : 0))
43 
44 /* macros */
45 
46 #define	USB_BUS_LOCK(_b)		(void)mtx_lock(&(_b)->bus_mtx)
47 #define	USB_BUS_UNLOCK(_b)		(void)mtx_unlock(&(_b)->bus_mtx)
48 
49 #define	USB_BUS_LOCK_ASSERT(_b, _t)	mtx_assert(&(_b)->bus_mtx, _t)
50 #define	USB_BUS_SPIN_LOCK(_b)		mtx_lock_spin(&(_b)->bus_spin_lock)
51 #define	USB_BUS_SPIN_UNLOCK(_b)		mtx_unlock_spin(&(_b)->bus_spin_lock)
52 #define	USB_BUS_SPIN_LOCK_ASSERT(_b, _t)	mtx_assert(&(_b)->bus_spin_lock, _t)
53 #define	USB_XFER_LOCK(_x)		(void)mtx_lock((_x)->xroot->xfer_mtx)
54 #define	USB_XFER_UNLOCK(_x)		(void)mtx_unlock((_x)->xroot->xfer_mtx)
55 #define	USB_XFER_LOCK_ASSERT(_x, _t)	mtx_assert((_x)->xroot->xfer_mtx, _t)
56 
57 /* helper for converting pointers to integers */
58 #define	USB_P2U(ptr) \
59   ((uintptr_t)(ptr))
60 
61 /* helper for computing offsets */
62 #define	USB_ADD_BYTES(ptr,size) \
63   ((void *)(__DECONST(char *, (ptr)) + (size)))
64 
65 /* debug macro */
66 #define	USB_ASSERT KASSERT
67 
68 /* structure prototypes */
69 
70 struct file;
71 struct usb_bus;
72 struct usb_device;
73 struct usb_device_request;
74 struct usb_page;
75 struct usb_page_cache;
76 struct usb_xfer;
77 struct usb_xfer_root;
78 struct usb_string_lang;
79 
80 /* typedefs */
81 
82 /* structures */
83 
84 /*
85  * The following structure defines a set of internal USB transfer
86  * flags.
87  */
88 struct usb_xfer_flags_int {
89 	enum usb_hc_mode usb_mode;	/* shadow copy of "udev->usb_mode" */
90 	uint16_t control_rem;		/* remainder in bytes */
91 
92 	uint8_t	open:1;			/* set if USB pipe has been opened */
93 	uint8_t	transferring:1;		/* set if an USB transfer is in
94 					 * progress */
95 	uint8_t	did_dma_delay:1;	/* set if we waited for HW DMA */
96 	uint8_t	did_close:1;		/* set if we closed the USB transfer */
97 	uint8_t	draining:1;		/* set if we are draining an USB
98 					 * transfer */
99 	uint8_t	started:1;		/* keeps track of started or stopped */
100 	uint8_t	bandwidth_reclaimed:1;
101 	uint8_t	control_xfr:1;		/* set if control transfer */
102 	uint8_t	control_hdr:1;		/* set if control header should be
103 					 * sent */
104 	uint8_t	control_act:1;		/* set if control transfer is active */
105 	uint8_t	control_stall:1;	/* set if control transfer should be stalled */
106 	uint8_t	control_did_data:1;	/* set if control DATA has been transferred */
107 
108 	uint8_t	short_frames_ok:1;	/* filtered version */
109 	uint8_t	short_xfer_ok:1;	/* filtered version */
110 #if USB_HAVE_BUSDMA
111 	uint8_t	bdma_enable:1;		/* filtered version (only set if
112 					 * hardware supports DMA) */
113 	uint8_t	bdma_no_post_sync:1;	/* set if the USB callback wrapper
114 					 * should not do the BUS-DMA post sync
115 					 * operation */
116 	uint8_t	bdma_setup:1;		/* set if BUS-DMA has been setup */
117 #endif
118 	uint8_t	isochronous_xfr:1;	/* set if isochronous transfer */
119 	uint8_t	curr_dma_set:1;		/* used by USB HC/DC driver */
120 	uint8_t	can_cancel_immed:1;	/* set if USB transfer can be
121 					 * cancelled immediately */
122 	uint8_t	doing_callback:1;	/* set if executing the callback */
123 	uint8_t	maxp_was_clamped:1;	/* set if the max packet size
124 					 * was outside its allowed range */
125 };
126 
127 /*
128  * The following structure defines an USB transfer.
129  */
130 struct usb_xfer {
131 	struct callout timeout_handle;
132 	TAILQ_ENTRY(usb_xfer) wait_entry;	/* used at various places */
133 
134 	struct usb_page_cache *buf_fixup;	/* fixup buffer(s) */
135 	struct usb_xfer_queue *wait_queue;	/* pointer to queue that we
136 						 * are waiting on */
137 	struct usb_page *dma_page_ptr;
138 	struct usb_endpoint *endpoint;	/* our USB endpoint */
139 	struct usb_xfer_root *xroot;	/* used by HC driver */
140 	void   *qh_start[2];		/* used by HC driver */
141 	void   *td_start[2];		/* used by HC driver */
142 	void   *td_transfer_first;	/* used by HC driver */
143 	void   *td_transfer_last;	/* used by HC driver */
144 	void   *td_transfer_cache;	/* used by HC driver */
145 	void   *priv_sc;		/* device driver data pointer 1 */
146 	void   *priv_fifo;		/* device driver data pointer 2 */
147 	void   *local_buffer;
148 	usb_frlength_t *frlengths;
149 	struct usb_page_cache *frbuffers;
150 	usb_callback_t *callback;
151 
152 	usb_frlength_t max_hc_frame_size;
153 	usb_frlength_t max_data_length;
154 	usb_frlength_t sumlen;		/* sum of all lengths in bytes */
155 	usb_frlength_t actlen;		/* actual length in bytes */
156 	usb_timeout_t timeout;		/* milliseconds */
157 
158 	usb_frcount_t max_frame_count;	/* initial value of "nframes" after
159 					 * setup */
160 	usb_frcount_t nframes;		/* number of USB frames to transfer */
161 	usb_frcount_t aframes;		/* actual number of USB frames
162 					 * transferred */
163 	usb_stream_t stream_id;		/* USB3.0 specific field */
164 
165 	uint16_t max_packet_size;
166 	uint16_t max_frame_size;
167 	uint16_t qh_pos;
168 	uint16_t isoc_time_complete;	/* in ms */
169 	usb_timeout_t interval;	/* milliseconds */
170 
171 	uint8_t	address;		/* physical USB address */
172 	uint8_t	endpointno;		/* physical USB endpoint */
173 	uint8_t	max_packet_count;
174 	uint8_t	usb_state;
175 	uint8_t fps_shift;		/* down shift of FPS, 0..3 */
176 
177 	usb_error_t error;
178 
179 	struct usb_xfer_flags flags;
180 	struct usb_xfer_flags_int flags_int;
181 };
182 
183 /* external variables */
184 
185 extern struct mtx usb_ref_lock;
186 extern const struct usb_string_lang usb_string_lang_en;
187 
188 /* typedefs */
189 
190 typedef struct malloc_type *usb_malloc_type;
191 
192 /* prototypes */
193 
194 #endif					/* _USB_CORE_H_ */
195