2 * MUSB OTG driver DMA controller abstraction
4 * Copyright 2005 Mentor Graphics Corporation
5 * Copyright (C) 2005-2006 by Texas Instruments
6 * Copyright (C) 2006-2007 Nokia Corporation
8 * This program is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU General Public License
10 * version 2 as published by the Free Software Foundation.
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13 * WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * General Public License for more details.
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18 * along with this program; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA
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23 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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35 #ifndef __MUSB_DMA_H__
36 #define __MUSB_DMA_H__
41 * DMA Controller Abstraction
43 * DMA Controllers are abstracted to allow use of a variety of different
44 * implementations of DMA, as allowed by the Inventra USB cores. On the
45 * host side, usbcore sets up the DMA mappings and flushes caches; on the
46 * peripheral side, the gadget controller driver does. Responsibilities
47 * of a DMA controller driver include:
49 * - Handling the details of moving multiple USB packets
50 * in cooperation with the Inventra USB core, including especially
51 * the correct RX side treatment of short packets and buffer-full
52 * states (both of which terminate transfers).
54 * - Knowing the correlation between dma channels and the
55 * Inventra core's local endpoint resources and data direction.
57 * - Maintaining a list of allocated/available channels.
59 * - Updating channel status on interrupts,
60 * whether shared with the Inventra core or separate.
63 #define DMA_ADDR_INVALID (~(dma_addr_t)0)
65 #ifdef CONFIG_MUSB_PIO_ONLY
66 #define is_dma_capable() (0)
68 #define is_dma_capable() (1)
71 #if defined(CONFIG_USB_TI_CPPI_DMA) || defined(CONFIG_USB_TI_CPPI41_DMA)
72 #define is_cppi_enabled() 1
74 #define is_cppi_enabled() 0
77 #ifdef CONFIG_USB_TUSB_OMAP_DMA
78 #define tusb_dma_omap() 1
80 #define tusb_dma_omap() 0
83 /* Anomaly 05000456 - USB Receive Interrupt Is Not Generated in DMA Mode 1
84 * Only allow DMA mode 1 to be used when the USB will actually generate the
85 * interrupts we expect.
87 #ifdef CONFIG_BLACKFIN
89 # if !ANOMALY_05000456
95 * DMA channel status ... updated by the dma controller driver whenever that
96 * status changes, and protected by the overall controller spinlock.
98 enum dma_channel_status
{
100 MUSB_DMA_STATUS_UNKNOWN
,
101 /* allocated ... but not busy, no errors */
102 MUSB_DMA_STATUS_FREE
,
103 /* busy ... transactions are active */
104 MUSB_DMA_STATUS_BUSY
,
105 /* transaction(s) aborted due to ... dma or memory bus error */
106 MUSB_DMA_STATUS_BUS_ABORT
,
107 /* transaction(s) aborted due to ... core error or USB fault */
108 MUSB_DMA_STATUS_CORE_ABORT
111 struct dma_controller
;
114 * struct dma_channel - A DMA channel.
115 * @private_data: channel-private data
116 * @max_len: the maximum number of bytes the channel can move in one
117 * transaction (typically representing many USB maximum-sized packets)
118 * @actual_len: how many bytes have been transferred
119 * @status: current channel status (updated e.g. on interrupt)
120 * @desired_mode: true if mode 1 is desired; false if mode 0 is desired
122 * channels are associated with an endpoint for the duration of at least
127 /* FIXME not void* private_data, but a dma_controller * */
130 enum dma_channel_status status
;
136 * dma_channel_status - return status of dma channel
139 * Returns the software's view of the channel status. If that status is BUSY
140 * then it's possible that the hardware has completed (or aborted) a transfer,
141 * so the driver needs to update that status.
143 static inline enum dma_channel_status
144 dma_channel_status(struct dma_channel
*c
)
146 return (is_dma_capable() && c
) ? c
->status
: MUSB_DMA_STATUS_UNKNOWN
;
150 * struct dma_controller - A DMA Controller.
151 * @start: call this to start a DMA controller;
152 * return 0 on success, else negative errno
153 * @stop: call this to stop a DMA controller
154 * return 0 on success, else negative errno
155 * @channel_alloc: call this to allocate a DMA channel
156 * @channel_release: call this to release a DMA channel
157 * @channel_abort: call this to abort a pending DMA transaction,
158 * returning it to FREE (but allocated) state
160 * Controllers manage dma channels.
162 struct dma_controller
{
163 struct dma_channel
*(*channel_alloc
)(struct dma_controller
*,
164 struct musb_hw_ep
*, u8 is_tx
);
165 void (*channel_release
)(struct dma_channel
*);
166 int (*channel_program
)(struct dma_channel
*channel
,
167 u16 maxpacket
, u8 mode
,
170 int (*channel_abort
)(struct dma_channel
*);
171 int (*is_compatible
)(struct dma_channel
*channel
,
173 void *buf
, u32 length
);
176 /* called after channel_program(), may indicate a fault */
177 extern void musb_dma_completion(struct musb
*musb
, u8 epnum
, u8 transmit
);
179 #ifdef CONFIG_MUSB_PIO_ONLY
180 static inline struct dma_controller
*dma_controller_create(struct musb
*m
,
186 static inline void dma_controller_destroy(struct dma_controller
*d
) { }
190 extern struct dma_controller
*dma_controller_create(struct musb
*, void __iomem
*);
192 extern void dma_controller_destroy(struct dma_controller
*);
195 #endif /* __MUSB_DMA_H__ */