xref: /OK3568_Linux_fs/kernel/include/linux/firewire.h (revision 4882a59341e53eb6f0b4789bf948001014eff981)
1*4882a593Smuzhiyun /* SPDX-License-Identifier: GPL-2.0 */
2*4882a593Smuzhiyun #ifndef _LINUX_FIREWIRE_H
3*4882a593Smuzhiyun #define _LINUX_FIREWIRE_H
4*4882a593Smuzhiyun 
5*4882a593Smuzhiyun #include <linux/completion.h>
6*4882a593Smuzhiyun #include <linux/device.h>
7*4882a593Smuzhiyun #include <linux/dma-mapping.h>
8*4882a593Smuzhiyun #include <linux/kernel.h>
9*4882a593Smuzhiyun #include <linux/kref.h>
10*4882a593Smuzhiyun #include <linux/list.h>
11*4882a593Smuzhiyun #include <linux/mutex.h>
12*4882a593Smuzhiyun #include <linux/spinlock.h>
13*4882a593Smuzhiyun #include <linux/sysfs.h>
14*4882a593Smuzhiyun #include <linux/timer.h>
15*4882a593Smuzhiyun #include <linux/types.h>
16*4882a593Smuzhiyun #include <linux/workqueue.h>
17*4882a593Smuzhiyun 
18*4882a593Smuzhiyun #include <linux/atomic.h>
19*4882a593Smuzhiyun #include <asm/byteorder.h>
20*4882a593Smuzhiyun 
21*4882a593Smuzhiyun #define CSR_REGISTER_BASE		0xfffff0000000ULL
22*4882a593Smuzhiyun 
23*4882a593Smuzhiyun /* register offsets are relative to CSR_REGISTER_BASE */
24*4882a593Smuzhiyun #define CSR_STATE_CLEAR			0x0
25*4882a593Smuzhiyun #define CSR_STATE_SET			0x4
26*4882a593Smuzhiyun #define CSR_NODE_IDS			0x8
27*4882a593Smuzhiyun #define CSR_RESET_START			0xc
28*4882a593Smuzhiyun #define CSR_SPLIT_TIMEOUT_HI		0x18
29*4882a593Smuzhiyun #define CSR_SPLIT_TIMEOUT_LO		0x1c
30*4882a593Smuzhiyun #define CSR_CYCLE_TIME			0x200
31*4882a593Smuzhiyun #define CSR_BUS_TIME			0x204
32*4882a593Smuzhiyun #define CSR_BUSY_TIMEOUT		0x210
33*4882a593Smuzhiyun #define CSR_PRIORITY_BUDGET		0x218
34*4882a593Smuzhiyun #define CSR_BUS_MANAGER_ID		0x21c
35*4882a593Smuzhiyun #define CSR_BANDWIDTH_AVAILABLE		0x220
36*4882a593Smuzhiyun #define CSR_CHANNELS_AVAILABLE		0x224
37*4882a593Smuzhiyun #define CSR_CHANNELS_AVAILABLE_HI	0x224
38*4882a593Smuzhiyun #define CSR_CHANNELS_AVAILABLE_LO	0x228
39*4882a593Smuzhiyun #define CSR_MAINT_UTILITY		0x230
40*4882a593Smuzhiyun #define CSR_BROADCAST_CHANNEL		0x234
41*4882a593Smuzhiyun #define CSR_CONFIG_ROM			0x400
42*4882a593Smuzhiyun #define CSR_CONFIG_ROM_END		0x800
43*4882a593Smuzhiyun #define CSR_OMPR			0x900
44*4882a593Smuzhiyun #define CSR_OPCR(i)			(0x904 + (i) * 4)
45*4882a593Smuzhiyun #define CSR_IMPR			0x980
46*4882a593Smuzhiyun #define CSR_IPCR(i)			(0x984 + (i) * 4)
47*4882a593Smuzhiyun #define CSR_FCP_COMMAND			0xB00
48*4882a593Smuzhiyun #define CSR_FCP_RESPONSE		0xD00
49*4882a593Smuzhiyun #define CSR_FCP_END			0xF00
50*4882a593Smuzhiyun #define CSR_TOPOLOGY_MAP		0x1000
51*4882a593Smuzhiyun #define CSR_TOPOLOGY_MAP_END		0x1400
52*4882a593Smuzhiyun #define CSR_SPEED_MAP			0x2000
53*4882a593Smuzhiyun #define CSR_SPEED_MAP_END		0x3000
54*4882a593Smuzhiyun 
55*4882a593Smuzhiyun #define CSR_OFFSET		0x40
56*4882a593Smuzhiyun #define CSR_LEAF		0x80
57*4882a593Smuzhiyun #define CSR_DIRECTORY		0xc0
58*4882a593Smuzhiyun 
59*4882a593Smuzhiyun #define CSR_DESCRIPTOR		0x01
60*4882a593Smuzhiyun #define CSR_VENDOR		0x03
61*4882a593Smuzhiyun #define CSR_HARDWARE_VERSION	0x04
62*4882a593Smuzhiyun #define CSR_UNIT		0x11
63*4882a593Smuzhiyun #define CSR_SPECIFIER_ID	0x12
64*4882a593Smuzhiyun #define CSR_VERSION		0x13
65*4882a593Smuzhiyun #define CSR_DEPENDENT_INFO	0x14
66*4882a593Smuzhiyun #define CSR_MODEL		0x17
67*4882a593Smuzhiyun #define CSR_DIRECTORY_ID	0x20
68*4882a593Smuzhiyun 
69*4882a593Smuzhiyun struct fw_csr_iterator {
70*4882a593Smuzhiyun 	const u32 *p;
71*4882a593Smuzhiyun 	const u32 *end;
72*4882a593Smuzhiyun };
73*4882a593Smuzhiyun 
74*4882a593Smuzhiyun void fw_csr_iterator_init(struct fw_csr_iterator *ci, const u32 *p);
75*4882a593Smuzhiyun int fw_csr_iterator_next(struct fw_csr_iterator *ci, int *key, int *value);
76*4882a593Smuzhiyun int fw_csr_string(const u32 *directory, int key, char *buf, size_t size);
77*4882a593Smuzhiyun 
78*4882a593Smuzhiyun extern struct bus_type fw_bus_type;
79*4882a593Smuzhiyun 
80*4882a593Smuzhiyun struct fw_card_driver;
81*4882a593Smuzhiyun struct fw_node;
82*4882a593Smuzhiyun 
83*4882a593Smuzhiyun struct fw_card {
84*4882a593Smuzhiyun 	const struct fw_card_driver *driver;
85*4882a593Smuzhiyun 	struct device *device;
86*4882a593Smuzhiyun 	struct kref kref;
87*4882a593Smuzhiyun 	struct completion done;
88*4882a593Smuzhiyun 
89*4882a593Smuzhiyun 	int node_id;
90*4882a593Smuzhiyun 	int generation;
91*4882a593Smuzhiyun 	int current_tlabel;
92*4882a593Smuzhiyun 	u64 tlabel_mask;
93*4882a593Smuzhiyun 	struct list_head transaction_list;
94*4882a593Smuzhiyun 	u64 reset_jiffies;
95*4882a593Smuzhiyun 
96*4882a593Smuzhiyun 	u32 split_timeout_hi;
97*4882a593Smuzhiyun 	u32 split_timeout_lo;
98*4882a593Smuzhiyun 	unsigned int split_timeout_cycles;
99*4882a593Smuzhiyun 	unsigned int split_timeout_jiffies;
100*4882a593Smuzhiyun 
101*4882a593Smuzhiyun 	unsigned long long guid;
102*4882a593Smuzhiyun 	unsigned max_receive;
103*4882a593Smuzhiyun 	int link_speed;
104*4882a593Smuzhiyun 	int config_rom_generation;
105*4882a593Smuzhiyun 
106*4882a593Smuzhiyun 	spinlock_t lock; /* Take this lock when handling the lists in
107*4882a593Smuzhiyun 			  * this struct. */
108*4882a593Smuzhiyun 	struct fw_node *local_node;
109*4882a593Smuzhiyun 	struct fw_node *root_node;
110*4882a593Smuzhiyun 	struct fw_node *irm_node;
111*4882a593Smuzhiyun 	u8 color; /* must be u8 to match the definition in struct fw_node */
112*4882a593Smuzhiyun 	int gap_count;
113*4882a593Smuzhiyun 	bool beta_repeaters_present;
114*4882a593Smuzhiyun 
115*4882a593Smuzhiyun 	int index;
116*4882a593Smuzhiyun 	struct list_head link;
117*4882a593Smuzhiyun 
118*4882a593Smuzhiyun 	struct list_head phy_receiver_list;
119*4882a593Smuzhiyun 
120*4882a593Smuzhiyun 	struct delayed_work br_work; /* bus reset job */
121*4882a593Smuzhiyun 	bool br_short;
122*4882a593Smuzhiyun 
123*4882a593Smuzhiyun 	struct delayed_work bm_work; /* bus manager job */
124*4882a593Smuzhiyun 	int bm_retries;
125*4882a593Smuzhiyun 	int bm_generation;
126*4882a593Smuzhiyun 	int bm_node_id;
127*4882a593Smuzhiyun 	bool bm_abdicate;
128*4882a593Smuzhiyun 
129*4882a593Smuzhiyun 	bool priority_budget_implemented;	/* controller feature */
130*4882a593Smuzhiyun 	bool broadcast_channel_auto_allocated;	/* controller feature */
131*4882a593Smuzhiyun 
132*4882a593Smuzhiyun 	bool broadcast_channel_allocated;
133*4882a593Smuzhiyun 	u32 broadcast_channel;
134*4882a593Smuzhiyun 	__be32 topology_map[(CSR_TOPOLOGY_MAP_END - CSR_TOPOLOGY_MAP) / 4];
135*4882a593Smuzhiyun 
136*4882a593Smuzhiyun 	__be32 maint_utility_register;
137*4882a593Smuzhiyun };
138*4882a593Smuzhiyun 
fw_card_get(struct fw_card * card)139*4882a593Smuzhiyun static inline struct fw_card *fw_card_get(struct fw_card *card)
140*4882a593Smuzhiyun {
141*4882a593Smuzhiyun 	kref_get(&card->kref);
142*4882a593Smuzhiyun 
143*4882a593Smuzhiyun 	return card;
144*4882a593Smuzhiyun }
145*4882a593Smuzhiyun 
146*4882a593Smuzhiyun void fw_card_release(struct kref *kref);
147*4882a593Smuzhiyun 
fw_card_put(struct fw_card * card)148*4882a593Smuzhiyun static inline void fw_card_put(struct fw_card *card)
149*4882a593Smuzhiyun {
150*4882a593Smuzhiyun 	kref_put(&card->kref, fw_card_release);
151*4882a593Smuzhiyun }
152*4882a593Smuzhiyun 
153*4882a593Smuzhiyun struct fw_attribute_group {
154*4882a593Smuzhiyun 	struct attribute_group *groups[2];
155*4882a593Smuzhiyun 	struct attribute_group group;
156*4882a593Smuzhiyun 	struct attribute *attrs[13];
157*4882a593Smuzhiyun };
158*4882a593Smuzhiyun 
159*4882a593Smuzhiyun enum fw_device_state {
160*4882a593Smuzhiyun 	FW_DEVICE_INITIALIZING,
161*4882a593Smuzhiyun 	FW_DEVICE_RUNNING,
162*4882a593Smuzhiyun 	FW_DEVICE_GONE,
163*4882a593Smuzhiyun 	FW_DEVICE_SHUTDOWN,
164*4882a593Smuzhiyun };
165*4882a593Smuzhiyun 
166*4882a593Smuzhiyun /*
167*4882a593Smuzhiyun  * Note, fw_device.generation always has to be read before fw_device.node_id.
168*4882a593Smuzhiyun  * Use SMP memory barriers to ensure this.  Otherwise requests will be sent
169*4882a593Smuzhiyun  * to an outdated node_id if the generation was updated in the meantime due
170*4882a593Smuzhiyun  * to a bus reset.
171*4882a593Smuzhiyun  *
172*4882a593Smuzhiyun  * Likewise, fw-core will take care to update .node_id before .generation so
173*4882a593Smuzhiyun  * that whenever fw_device.generation is current WRT the actual bus generation,
174*4882a593Smuzhiyun  * fw_device.node_id is guaranteed to be current too.
175*4882a593Smuzhiyun  *
176*4882a593Smuzhiyun  * The same applies to fw_device.card->node_id vs. fw_device.generation.
177*4882a593Smuzhiyun  *
178*4882a593Smuzhiyun  * fw_device.config_rom and fw_device.config_rom_length may be accessed during
179*4882a593Smuzhiyun  * the lifetime of any fw_unit belonging to the fw_device, before device_del()
180*4882a593Smuzhiyun  * was called on the last fw_unit.  Alternatively, they may be accessed while
181*4882a593Smuzhiyun  * holding fw_device_rwsem.
182*4882a593Smuzhiyun  */
183*4882a593Smuzhiyun struct fw_device {
184*4882a593Smuzhiyun 	atomic_t state;
185*4882a593Smuzhiyun 	struct fw_node *node;
186*4882a593Smuzhiyun 	int node_id;
187*4882a593Smuzhiyun 	int generation;
188*4882a593Smuzhiyun 	unsigned max_speed;
189*4882a593Smuzhiyun 	struct fw_card *card;
190*4882a593Smuzhiyun 	struct device device;
191*4882a593Smuzhiyun 
192*4882a593Smuzhiyun 	struct mutex client_list_mutex;
193*4882a593Smuzhiyun 	struct list_head client_list;
194*4882a593Smuzhiyun 
195*4882a593Smuzhiyun 	const u32 *config_rom;
196*4882a593Smuzhiyun 	size_t config_rom_length;
197*4882a593Smuzhiyun 	int config_rom_retries;
198*4882a593Smuzhiyun 	unsigned is_local:1;
199*4882a593Smuzhiyun 	unsigned max_rec:4;
200*4882a593Smuzhiyun 	unsigned cmc:1;
201*4882a593Smuzhiyun 	unsigned irmc:1;
202*4882a593Smuzhiyun 	unsigned bc_implemented:2;
203*4882a593Smuzhiyun 
204*4882a593Smuzhiyun 	work_func_t workfn;
205*4882a593Smuzhiyun 	struct delayed_work work;
206*4882a593Smuzhiyun 	struct fw_attribute_group attribute_group;
207*4882a593Smuzhiyun };
208*4882a593Smuzhiyun 
fw_device(struct device * dev)209*4882a593Smuzhiyun static inline struct fw_device *fw_device(struct device *dev)
210*4882a593Smuzhiyun {
211*4882a593Smuzhiyun 	return container_of(dev, struct fw_device, device);
212*4882a593Smuzhiyun }
213*4882a593Smuzhiyun 
fw_device_is_shutdown(struct fw_device * device)214*4882a593Smuzhiyun static inline int fw_device_is_shutdown(struct fw_device *device)
215*4882a593Smuzhiyun {
216*4882a593Smuzhiyun 	return atomic_read(&device->state) == FW_DEVICE_SHUTDOWN;
217*4882a593Smuzhiyun }
218*4882a593Smuzhiyun 
219*4882a593Smuzhiyun int fw_device_enable_phys_dma(struct fw_device *device);
220*4882a593Smuzhiyun 
221*4882a593Smuzhiyun /*
222*4882a593Smuzhiyun  * fw_unit.directory must not be accessed after device_del(&fw_unit.device).
223*4882a593Smuzhiyun  */
224*4882a593Smuzhiyun struct fw_unit {
225*4882a593Smuzhiyun 	struct device device;
226*4882a593Smuzhiyun 	const u32 *directory;
227*4882a593Smuzhiyun 	struct fw_attribute_group attribute_group;
228*4882a593Smuzhiyun };
229*4882a593Smuzhiyun 
fw_unit(struct device * dev)230*4882a593Smuzhiyun static inline struct fw_unit *fw_unit(struct device *dev)
231*4882a593Smuzhiyun {
232*4882a593Smuzhiyun 	return container_of(dev, struct fw_unit, device);
233*4882a593Smuzhiyun }
234*4882a593Smuzhiyun 
fw_unit_get(struct fw_unit * unit)235*4882a593Smuzhiyun static inline struct fw_unit *fw_unit_get(struct fw_unit *unit)
236*4882a593Smuzhiyun {
237*4882a593Smuzhiyun 	get_device(&unit->device);
238*4882a593Smuzhiyun 
239*4882a593Smuzhiyun 	return unit;
240*4882a593Smuzhiyun }
241*4882a593Smuzhiyun 
fw_unit_put(struct fw_unit * unit)242*4882a593Smuzhiyun static inline void fw_unit_put(struct fw_unit *unit)
243*4882a593Smuzhiyun {
244*4882a593Smuzhiyun 	put_device(&unit->device);
245*4882a593Smuzhiyun }
246*4882a593Smuzhiyun 
fw_parent_device(struct fw_unit * unit)247*4882a593Smuzhiyun static inline struct fw_device *fw_parent_device(struct fw_unit *unit)
248*4882a593Smuzhiyun {
249*4882a593Smuzhiyun 	return fw_device(unit->device.parent);
250*4882a593Smuzhiyun }
251*4882a593Smuzhiyun 
252*4882a593Smuzhiyun struct ieee1394_device_id;
253*4882a593Smuzhiyun 
254*4882a593Smuzhiyun struct fw_driver {
255*4882a593Smuzhiyun 	struct device_driver driver;
256*4882a593Smuzhiyun 	int (*probe)(struct fw_unit *unit, const struct ieee1394_device_id *id);
257*4882a593Smuzhiyun 	/* Called when the parent device sits through a bus reset. */
258*4882a593Smuzhiyun 	void (*update)(struct fw_unit *unit);
259*4882a593Smuzhiyun 	void (*remove)(struct fw_unit *unit);
260*4882a593Smuzhiyun 	const struct ieee1394_device_id *id_table;
261*4882a593Smuzhiyun };
262*4882a593Smuzhiyun 
263*4882a593Smuzhiyun struct fw_packet;
264*4882a593Smuzhiyun struct fw_request;
265*4882a593Smuzhiyun 
266*4882a593Smuzhiyun typedef void (*fw_packet_callback_t)(struct fw_packet *packet,
267*4882a593Smuzhiyun 				     struct fw_card *card, int status);
268*4882a593Smuzhiyun typedef void (*fw_transaction_callback_t)(struct fw_card *card, int rcode,
269*4882a593Smuzhiyun 					  void *data, size_t length,
270*4882a593Smuzhiyun 					  void *callback_data);
271*4882a593Smuzhiyun /*
272*4882a593Smuzhiyun  * This callback handles an inbound request subaction.  It is called in
273*4882a593Smuzhiyun  * RCU read-side context, therefore must not sleep.
274*4882a593Smuzhiyun  *
275*4882a593Smuzhiyun  * The callback should not initiate outbound request subactions directly.
276*4882a593Smuzhiyun  * Otherwise there is a danger of recursion of inbound and outbound
277*4882a593Smuzhiyun  * transactions from and to the local node.
278*4882a593Smuzhiyun  *
279*4882a593Smuzhiyun  * The callback is responsible that either fw_send_response() or kfree()
280*4882a593Smuzhiyun  * is called on the @request, except for FCP registers for which the core
281*4882a593Smuzhiyun  * takes care of that.
282*4882a593Smuzhiyun  */
283*4882a593Smuzhiyun typedef void (*fw_address_callback_t)(struct fw_card *card,
284*4882a593Smuzhiyun 				      struct fw_request *request,
285*4882a593Smuzhiyun 				      int tcode, int destination, int source,
286*4882a593Smuzhiyun 				      int generation,
287*4882a593Smuzhiyun 				      unsigned long long offset,
288*4882a593Smuzhiyun 				      void *data, size_t length,
289*4882a593Smuzhiyun 				      void *callback_data);
290*4882a593Smuzhiyun 
291*4882a593Smuzhiyun struct fw_packet {
292*4882a593Smuzhiyun 	int speed;
293*4882a593Smuzhiyun 	int generation;
294*4882a593Smuzhiyun 	u32 header[4];
295*4882a593Smuzhiyun 	size_t header_length;
296*4882a593Smuzhiyun 	void *payload;
297*4882a593Smuzhiyun 	size_t payload_length;
298*4882a593Smuzhiyun 	dma_addr_t payload_bus;
299*4882a593Smuzhiyun 	bool payload_mapped;
300*4882a593Smuzhiyun 	u32 timestamp;
301*4882a593Smuzhiyun 
302*4882a593Smuzhiyun 	/*
303*4882a593Smuzhiyun 	 * This callback is called when the packet transmission has completed.
304*4882a593Smuzhiyun 	 * For successful transmission, the status code is the ack received
305*4882a593Smuzhiyun 	 * from the destination.  Otherwise it is one of the juju-specific
306*4882a593Smuzhiyun 	 * rcodes:  RCODE_SEND_ERROR, _CANCELLED, _BUSY, _GENERATION, _NO_ACK.
307*4882a593Smuzhiyun 	 * The callback can be called from tasklet context and thus
308*4882a593Smuzhiyun 	 * must never block.
309*4882a593Smuzhiyun 	 */
310*4882a593Smuzhiyun 	fw_packet_callback_t callback;
311*4882a593Smuzhiyun 	int ack;
312*4882a593Smuzhiyun 	struct list_head link;
313*4882a593Smuzhiyun 	void *driver_data;
314*4882a593Smuzhiyun };
315*4882a593Smuzhiyun 
316*4882a593Smuzhiyun struct fw_transaction {
317*4882a593Smuzhiyun 	int node_id; /* The generation is implied; it is always the current. */
318*4882a593Smuzhiyun 	int tlabel;
319*4882a593Smuzhiyun 	struct list_head link;
320*4882a593Smuzhiyun 	struct fw_card *card;
321*4882a593Smuzhiyun 	bool is_split_transaction;
322*4882a593Smuzhiyun 	struct timer_list split_timeout_timer;
323*4882a593Smuzhiyun 
324*4882a593Smuzhiyun 	struct fw_packet packet;
325*4882a593Smuzhiyun 
326*4882a593Smuzhiyun 	/*
327*4882a593Smuzhiyun 	 * The data passed to the callback is valid only during the
328*4882a593Smuzhiyun 	 * callback.
329*4882a593Smuzhiyun 	 */
330*4882a593Smuzhiyun 	fw_transaction_callback_t callback;
331*4882a593Smuzhiyun 	void *callback_data;
332*4882a593Smuzhiyun };
333*4882a593Smuzhiyun 
334*4882a593Smuzhiyun struct fw_address_handler {
335*4882a593Smuzhiyun 	u64 offset;
336*4882a593Smuzhiyun 	u64 length;
337*4882a593Smuzhiyun 	fw_address_callback_t address_callback;
338*4882a593Smuzhiyun 	void *callback_data;
339*4882a593Smuzhiyun 	struct list_head link;
340*4882a593Smuzhiyun };
341*4882a593Smuzhiyun 
342*4882a593Smuzhiyun struct fw_address_region {
343*4882a593Smuzhiyun 	u64 start;
344*4882a593Smuzhiyun 	u64 end;
345*4882a593Smuzhiyun };
346*4882a593Smuzhiyun 
347*4882a593Smuzhiyun extern const struct fw_address_region fw_high_memory_region;
348*4882a593Smuzhiyun 
349*4882a593Smuzhiyun int fw_core_add_address_handler(struct fw_address_handler *handler,
350*4882a593Smuzhiyun 				const struct fw_address_region *region);
351*4882a593Smuzhiyun void fw_core_remove_address_handler(struct fw_address_handler *handler);
352*4882a593Smuzhiyun void fw_send_response(struct fw_card *card,
353*4882a593Smuzhiyun 		      struct fw_request *request, int rcode);
354*4882a593Smuzhiyun int fw_get_request_speed(struct fw_request *request);
355*4882a593Smuzhiyun void fw_send_request(struct fw_card *card, struct fw_transaction *t,
356*4882a593Smuzhiyun 		     int tcode, int destination_id, int generation, int speed,
357*4882a593Smuzhiyun 		     unsigned long long offset, void *payload, size_t length,
358*4882a593Smuzhiyun 		     fw_transaction_callback_t callback, void *callback_data);
359*4882a593Smuzhiyun int fw_cancel_transaction(struct fw_card *card,
360*4882a593Smuzhiyun 			  struct fw_transaction *transaction);
361*4882a593Smuzhiyun int fw_run_transaction(struct fw_card *card, int tcode, int destination_id,
362*4882a593Smuzhiyun 		       int generation, int speed, unsigned long long offset,
363*4882a593Smuzhiyun 		       void *payload, size_t length);
364*4882a593Smuzhiyun const char *fw_rcode_string(int rcode);
365*4882a593Smuzhiyun 
fw_stream_packet_destination_id(int tag,int channel,int sy)366*4882a593Smuzhiyun static inline int fw_stream_packet_destination_id(int tag, int channel, int sy)
367*4882a593Smuzhiyun {
368*4882a593Smuzhiyun 	return tag << 14 | channel << 8 | sy;
369*4882a593Smuzhiyun }
370*4882a593Smuzhiyun 
371*4882a593Smuzhiyun void fw_schedule_bus_reset(struct fw_card *card, bool delayed,
372*4882a593Smuzhiyun 			   bool short_reset);
373*4882a593Smuzhiyun 
374*4882a593Smuzhiyun struct fw_descriptor {
375*4882a593Smuzhiyun 	struct list_head link;
376*4882a593Smuzhiyun 	size_t length;
377*4882a593Smuzhiyun 	u32 immediate;
378*4882a593Smuzhiyun 	u32 key;
379*4882a593Smuzhiyun 	const u32 *data;
380*4882a593Smuzhiyun };
381*4882a593Smuzhiyun 
382*4882a593Smuzhiyun int fw_core_add_descriptor(struct fw_descriptor *desc);
383*4882a593Smuzhiyun void fw_core_remove_descriptor(struct fw_descriptor *desc);
384*4882a593Smuzhiyun 
385*4882a593Smuzhiyun /*
386*4882a593Smuzhiyun  * The iso packet format allows for an immediate header/payload part
387*4882a593Smuzhiyun  * stored in 'header' immediately after the packet info plus an
388*4882a593Smuzhiyun  * indirect payload part that is pointer to by the 'payload' field.
389*4882a593Smuzhiyun  * Applications can use one or the other or both to implement simple
390*4882a593Smuzhiyun  * low-bandwidth streaming (e.g. audio) or more advanced
391*4882a593Smuzhiyun  * scatter-gather streaming (e.g. assembling video frame automatically).
392*4882a593Smuzhiyun  */
393*4882a593Smuzhiyun struct fw_iso_packet {
394*4882a593Smuzhiyun 	u16 payload_length;	/* Length of indirect payload		*/
395*4882a593Smuzhiyun 	u32 interrupt:1;	/* Generate interrupt on this packet	*/
396*4882a593Smuzhiyun 	u32 skip:1;		/* tx: Set to not send packet at all	*/
397*4882a593Smuzhiyun 				/* rx: Sync bit, wait for matching sy	*/
398*4882a593Smuzhiyun 	u32 tag:2;		/* tx: Tag in packet header		*/
399*4882a593Smuzhiyun 	u32 sy:4;		/* tx: Sy in packet header		*/
400*4882a593Smuzhiyun 	u32 header_length:8;	/* Length of immediate header		*/
401*4882a593Smuzhiyun 	u32 header[0];		/* tx: Top of 1394 isoch. data_block	*/
402*4882a593Smuzhiyun };
403*4882a593Smuzhiyun 
404*4882a593Smuzhiyun #define FW_ISO_CONTEXT_TRANSMIT			0
405*4882a593Smuzhiyun #define FW_ISO_CONTEXT_RECEIVE			1
406*4882a593Smuzhiyun #define FW_ISO_CONTEXT_RECEIVE_MULTICHANNEL	2
407*4882a593Smuzhiyun 
408*4882a593Smuzhiyun #define FW_ISO_CONTEXT_MATCH_TAG0	 1
409*4882a593Smuzhiyun #define FW_ISO_CONTEXT_MATCH_TAG1	 2
410*4882a593Smuzhiyun #define FW_ISO_CONTEXT_MATCH_TAG2	 4
411*4882a593Smuzhiyun #define FW_ISO_CONTEXT_MATCH_TAG3	 8
412*4882a593Smuzhiyun #define FW_ISO_CONTEXT_MATCH_ALL_TAGS	15
413*4882a593Smuzhiyun 
414*4882a593Smuzhiyun /*
415*4882a593Smuzhiyun  * An iso buffer is just a set of pages mapped for DMA in the
416*4882a593Smuzhiyun  * specified direction.  Since the pages are to be used for DMA, they
417*4882a593Smuzhiyun  * are not mapped into the kernel virtual address space.  We store the
418*4882a593Smuzhiyun  * DMA address in the page private. The helper function
419*4882a593Smuzhiyun  * fw_iso_buffer_map() will map the pages into a given vma.
420*4882a593Smuzhiyun  */
421*4882a593Smuzhiyun struct fw_iso_buffer {
422*4882a593Smuzhiyun 	enum dma_data_direction direction;
423*4882a593Smuzhiyun 	struct page **pages;
424*4882a593Smuzhiyun 	int page_count;
425*4882a593Smuzhiyun 	int page_count_mapped;
426*4882a593Smuzhiyun };
427*4882a593Smuzhiyun 
428*4882a593Smuzhiyun int fw_iso_buffer_init(struct fw_iso_buffer *buffer, struct fw_card *card,
429*4882a593Smuzhiyun 		       int page_count, enum dma_data_direction direction);
430*4882a593Smuzhiyun void fw_iso_buffer_destroy(struct fw_iso_buffer *buffer, struct fw_card *card);
431*4882a593Smuzhiyun size_t fw_iso_buffer_lookup(struct fw_iso_buffer *buffer, dma_addr_t completed);
432*4882a593Smuzhiyun 
433*4882a593Smuzhiyun struct fw_iso_context;
434*4882a593Smuzhiyun typedef void (*fw_iso_callback_t)(struct fw_iso_context *context,
435*4882a593Smuzhiyun 				  u32 cycle, size_t header_length,
436*4882a593Smuzhiyun 				  void *header, void *data);
437*4882a593Smuzhiyun typedef void (*fw_iso_mc_callback_t)(struct fw_iso_context *context,
438*4882a593Smuzhiyun 				     dma_addr_t completed, void *data);
439*4882a593Smuzhiyun struct fw_iso_context {
440*4882a593Smuzhiyun 	struct fw_card *card;
441*4882a593Smuzhiyun 	int type;
442*4882a593Smuzhiyun 	int channel;
443*4882a593Smuzhiyun 	int speed;
444*4882a593Smuzhiyun 	bool drop_overflow_headers;
445*4882a593Smuzhiyun 	size_t header_size;
446*4882a593Smuzhiyun 	union {
447*4882a593Smuzhiyun 		fw_iso_callback_t sc;
448*4882a593Smuzhiyun 		fw_iso_mc_callback_t mc;
449*4882a593Smuzhiyun 	} callback;
450*4882a593Smuzhiyun 	void *callback_data;
451*4882a593Smuzhiyun };
452*4882a593Smuzhiyun 
453*4882a593Smuzhiyun struct fw_iso_context *fw_iso_context_create(struct fw_card *card,
454*4882a593Smuzhiyun 		int type, int channel, int speed, size_t header_size,
455*4882a593Smuzhiyun 		fw_iso_callback_t callback, void *callback_data);
456*4882a593Smuzhiyun int fw_iso_context_set_channels(struct fw_iso_context *ctx, u64 *channels);
457*4882a593Smuzhiyun int fw_iso_context_queue(struct fw_iso_context *ctx,
458*4882a593Smuzhiyun 			 struct fw_iso_packet *packet,
459*4882a593Smuzhiyun 			 struct fw_iso_buffer *buffer,
460*4882a593Smuzhiyun 			 unsigned long payload);
461*4882a593Smuzhiyun void fw_iso_context_queue_flush(struct fw_iso_context *ctx);
462*4882a593Smuzhiyun int fw_iso_context_flush_completions(struct fw_iso_context *ctx);
463*4882a593Smuzhiyun int fw_iso_context_start(struct fw_iso_context *ctx,
464*4882a593Smuzhiyun 			 int cycle, int sync, int tags);
465*4882a593Smuzhiyun int fw_iso_context_stop(struct fw_iso_context *ctx);
466*4882a593Smuzhiyun void fw_iso_context_destroy(struct fw_iso_context *ctx);
467*4882a593Smuzhiyun void fw_iso_resource_manage(struct fw_card *card, int generation,
468*4882a593Smuzhiyun 			    u64 channels_mask, int *channel, int *bandwidth,
469*4882a593Smuzhiyun 			    bool allocate);
470*4882a593Smuzhiyun 
471*4882a593Smuzhiyun extern struct workqueue_struct *fw_workqueue;
472*4882a593Smuzhiyun 
473*4882a593Smuzhiyun #endif /* _LINUX_FIREWIRE_H */
474