fdtvar.h revision 1.65 1 /* $NetBSD: fdtvar.h,v 1.65 2021/01/15 00:38:23 jmcneill Exp $ */
2
3 /*-
4 * Copyright (c) 2015 Jared D. McNeill <jmcneill (at) invisible.ca>
5 * 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 ``AS IS'' AND ANY EXPRESS OR
17 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
21 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
22 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
23 * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
24 * 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 #ifndef _DEV_FDT_FDTVAR_H_
30 #define _DEV_FDT_FDTVAR_H_
31
32 #include <sys/types.h>
33 #include <sys/bus.h>
34 #include <sys/gpio.h>
35 #include <sys/termios.h>
36
37 #include <dev/i2c/i2cvar.h>
38 #include <dev/pwm/pwmvar.h>
39 #include <dev/clk/clk.h>
40
41 #ifdef _KERNEL_OPT
42 #include "audio.h"
43 #endif
44 #if NAUDIO > 0
45 #include <dev/audio/audio_dai.h>
46 #else
47 typedef void *audio_dai_tag_t;
48 #endif
49
50 #include <dev/clock_subr.h>
51
52 #include <dev/ofw/openfirm.h>
53
54 struct fdt_attach_args {
55 const char *faa_name;
56 bus_space_tag_t faa_bst;
57 bus_dma_tag_t faa_dmat;
58 int faa_phandle;
59 int faa_quiet;
60 };
61
62 /* flags for fdtbus_intr_establish */
63 #define FDT_INTR_MPSAFE __BIT(0)
64
65 /* Interrupt trigger types defined by the FDT "interrupts" bindings. */
66 #define FDT_INTR_TYPE_POS_EDGE __BIT(0)
67 #define FDT_INTR_TYPE_NEG_EDGE __BIT(1)
68 #define FDT_INTR_TYPE_DOUBLE_EDGE (FDT_INTR_TYPE_POS_EDGE | \
69 FDT_INTR_TYPE_NEG_EDGE)
70 #define FDT_INTR_TYPE_HIGH_LEVEL __BIT(2)
71 #define FDT_INTR_TYPE_LOW_LEVEL __BIT(3)
72
73 struct fdtbus_interrupt_controller_func {
74 void * (*establish)(device_t, u_int *, int, int,
75 int (*)(void *), void *, const char *);
76 void (*disestablish)(device_t, void *);
77 bool (*intrstr)(device_t, u_int *, char *, size_t);
78 void (*mask)(device_t, void *);
79 void (*unmask)(device_t, void *);
80 };
81
82 struct fdtbus_spi_controller_func {
83 struct spi_controller * (*get_controller)(device_t);
84 };
85
86 struct fdtbus_gpio_controller;
87
88 struct fdtbus_gpio_pin {
89 struct fdtbus_gpio_controller *gp_gc;
90 void *gp_priv;
91 };
92
93 struct fdtbus_gpio_controller_func {
94 void * (*acquire)(device_t, const void *, size_t, int);
95 void (*release)(device_t, void *);
96 int (*read)(device_t, void *, bool);
97 void (*write)(device_t, void *, int, bool);
98 };
99
100 struct fdtbus_pinctrl_controller;
101
102 struct fdtbus_pinctrl_pin {
103 struct fdtbus_pinctrl_controller *pp_pc;
104 void *pp_priv;
105 };
106
107 struct fdtbus_pinctrl_controller_func {
108 int (*set_config)(device_t, const void *, size_t);
109 };
110
111 struct fdtbus_regulator_controller;
112
113 struct fdtbus_regulator {
114 struct fdtbus_regulator_controller *reg_rc;
115 };
116
117 struct fdtbus_regulator_controller_func {
118 int (*acquire)(device_t);
119 void (*release)(device_t);
120 int (*enable)(device_t, bool);
121 int (*set_voltage)(device_t, u_int, u_int);
122 int (*get_voltage)(device_t, u_int *);
123 };
124
125 struct fdtbus_clock_controller_func {
126 struct clk * (*decode)(device_t, int, const void *, size_t);
127 };
128
129 struct fdtbus_reset_controller;
130
131 struct fdtbus_reset {
132 struct fdtbus_reset_controller *rst_rc;
133 void *rst_priv;
134 };
135
136 struct fdtbus_reset_controller_func {
137 void * (*acquire)(device_t, const void *, size_t);
138 void (*release)(device_t, void *);
139 int (*reset_assert)(device_t, void *);
140 int (*reset_deassert)(device_t, void *);
141 };
142
143 struct fdtbus_dai_controller_func {
144 audio_dai_tag_t (*get_tag)(device_t, const void *, size_t);
145 };
146
147 struct fdtbus_dma_controller;
148
149 struct fdtbus_dma {
150 struct fdtbus_dma_controller *dma_dc;
151 void *dma_priv;
152 };
153
154 enum fdtbus_dma_dir {
155 FDT_DMA_READ, /* device -> memory */
156 FDT_DMA_WRITE /* memory -> device */
157 };
158
159 struct fdtbus_dma_opt {
160 int opt_bus_width; /* Bus width */
161 int opt_burst_len; /* Burst length */
162 int opt_swap; /* Enable data swapping */
163 int opt_dblbuf; /* Enable double buffering */
164 int opt_wrap_len; /* Address wrap-around window */
165 };
166
167 struct fdtbus_dma_req {
168 bus_dma_segment_t *dreq_segs; /* Memory */
169 int dreq_nsegs;
170
171 bus_addr_t dreq_dev_phys; /* Device */
172 int dreq_sel; /* Device selector */
173
174 enum fdtbus_dma_dir dreq_dir; /* Transfer direction */
175
176 int dreq_block_irq; /* Enable IRQ at end of block */
177 int dreq_block_multi; /* Enable multiple block transfers */
178 int dreq_flow; /* Enable flow control */
179
180 struct fdtbus_dma_opt dreq_mem_opt; /* Memory options */
181 struct fdtbus_dma_opt dreq_dev_opt; /* Device options */
182 };
183
184 struct fdtbus_dma_controller_func {
185 void * (*acquire)(device_t, const void *, size_t,
186 void (*)(void *), void *);
187 void (*release)(device_t, void *);
188 int (*transfer)(device_t, void *, struct fdtbus_dma_req *);
189 void (*halt)(device_t, void *);
190 };
191
192 struct fdtbus_power_controller;
193
194 struct fdtbus_power_controller_func {
195 void (*reset)(device_t);
196 void (*poweroff)(device_t);
197 };
198
199 struct fdtbus_phy_controller;
200
201 struct fdtbus_phy {
202 struct fdtbus_phy_controller *phy_pc;
203 void *phy_priv;
204 };
205
206 struct fdtbus_phy_controller_func {
207 void * (*acquire)(device_t, const void *, size_t);
208 void (*release)(device_t, void *);
209 int (*enable)(device_t, void *, bool);
210 };
211
212 struct fdtbus_pwm_controller_func {
213 pwm_tag_t (*get_tag)(device_t, const void *, size_t);
214 };
215
216 struct fdtbus_mmc_pwrseq;
217
218 struct fdtbus_mmc_pwrseq_func {
219 void (*pre_power_on)(device_t);
220 void (*post_power_on)(device_t);
221 void (*power_off)(device_t);
222 void (*reset)(device_t);
223 };
224
225 struct syscon;
226
227 struct fdt_console {
228 int (*match)(int);
229 void (*consinit)(struct fdt_attach_args *, u_int);
230 };
231
232 struct fdt_console_info {
233 const struct fdt_console *ops;
234 };
235
236 struct fdt_phandle_data {
237 int phandle;
238 int count;
239 const u_int *values;
240 };
241
242 #define _FDT_CONSOLE_REGISTER(name) \
243 __link_set_add_rodata(fdt_consoles, __CONCAT(name,_consinfo));
244
245 #define FDT_CONSOLE(_name, _ops) \
246 static const struct fdt_console_info __CONCAT(_name,_consinfo) = { \
247 .ops = (_ops) \
248 }; \
249 _FDT_CONSOLE_REGISTER(_name)
250
251 struct fdt_opp_info {
252 const char * opp_compat;
253 bool (*opp_supported)(const int, const int);
254 };
255
256 #define _FDT_OPP_REGISTER(name) \
257 __link_set_add_rodata(fdt_opps, __CONCAT(name,_oppinfo));
258
259 #define FDT_OPP(_name, _compat, _suppfn) \
260 static const struct fdt_opp_info __CONCAT(_name,_oppinfo) = { \
261 .opp_compat = (_compat), \
262 .opp_supported = (_suppfn) \
263 }; \
264 _FDT_OPP_REGISTER(_name)
265
266 TAILQ_HEAD(fdt_conslist, fdt_console_info);
267
268 struct fdt_dma_range {
269 paddr_t dr_sysbase;
270 bus_addr_t dr_busbase;
271 bus_size_t dr_len;
272 };
273
274 int fdtbus_register_interrupt_controller(device_t, int,
275 const struct fdtbus_interrupt_controller_func *);
276 int fdtbus_register_i2c_controller(i2c_tag_t, int);
277 int fdtbus_register_spi_controller(device_t, int,
278 const struct fdtbus_spi_controller_func *);
279 int fdtbus_register_gpio_controller(device_t, int,
280 const struct fdtbus_gpio_controller_func *);
281 int fdtbus_register_pinctrl_config(device_t, int,
282 const struct fdtbus_pinctrl_controller_func *);
283 int fdtbus_register_regulator_controller(device_t, int,
284 const struct fdtbus_regulator_controller_func *);
285 int fdtbus_register_clock_controller(device_t, int,
286 const struct fdtbus_clock_controller_func *);
287 int fdtbus_register_reset_controller(device_t, int,
288 const struct fdtbus_reset_controller_func *);
289 int fdtbus_register_dai_controller(device_t, int,
290 const struct fdtbus_dai_controller_func *);
291 int fdtbus_register_dma_controller(device_t, int,
292 const struct fdtbus_dma_controller_func *);
293 int fdtbus_register_power_controller(device_t, int,
294 const struct fdtbus_power_controller_func *);
295 int fdtbus_register_phy_controller(device_t, int,
296 const struct fdtbus_phy_controller_func *);
297 int fdtbus_register_pwm_controller(device_t, int,
298 const struct fdtbus_pwm_controller_func *);
299 int fdtbus_register_mmc_pwrseq(device_t, int,
300 const struct fdtbus_mmc_pwrseq_func *);
301 int fdtbus_register_syscon(device_t, int, struct syscon *);
302
303 void fdtbus_set_decoderegprop(bool);
304
305 int fdtbus_get_reg(int, u_int, bus_addr_t *, bus_size_t *);
306 int fdtbus_get_reg_byname(int, const char *, bus_addr_t *,
307 bus_size_t *);
308 int fdtbus_get_reg64(int, u_int, uint64_t *, uint64_t *);
309 int fdtbus_get_addr_cells(int);
310 int fdtbus_get_size_cells(int);
311 uint64_t fdtbus_get_cells(const uint8_t *, int);
312 int fdtbus_get_phandle(int, const char *);
313 int fdtbus_get_phandle_with_data(int, const char *, const char *,
314 int, struct fdt_phandle_data *);
315 int fdtbus_get_phandle_from_native(int);
316 i2c_tag_t fdtbus_get_i2c_tag(int);
317 i2c_tag_t fdtbus_i2c_acquire(int, const char *);
318 void * fdtbus_intr_establish(int, u_int, int, int,
319 int (*func)(void *), void *arg);
320 void * fdtbus_intr_establish_byname(int, const char *, int, int,
321 int (*func)(void *), void *arg);
322 void * fdtbus_intr_establish_raw(int, const u_int *, int, int,
323 int (*func)(void *), void *arg);
324 void fdtbus_intr_mask(int, void *);
325 void fdtbus_intr_unmask(int, void *);
326 void fdtbus_intr_disestablish(int, void *);
327 bool fdtbus_intr_str(int, u_int, char *, size_t);
328 bool fdtbus_intr_str_raw(int, const u_int *, char *, size_t);
329 int fdtbus_gpio_count(int, const char *);
330 struct fdtbus_gpio_pin *fdtbus_gpio_acquire(int, const char *, int);
331 struct fdtbus_gpio_pin *fdtbus_gpio_acquire_index(int, const char *, int, int);
332 void fdtbus_gpio_release(struct fdtbus_gpio_pin *);
333 int fdtbus_gpio_read(struct fdtbus_gpio_pin *);
334 void fdtbus_gpio_write(struct fdtbus_gpio_pin *, int);
335 int fdtbus_gpio_read_raw(struct fdtbus_gpio_pin *);
336 void fdtbus_gpio_write_raw(struct fdtbus_gpio_pin *, int);
337 audio_dai_tag_t fdtbus_dai_acquire(int, const char *);
338 audio_dai_tag_t fdtbus_dai_acquire_index(int, const char *, int);
339 pwm_tag_t fdtbus_pwm_acquire(int, const char *);
340 pwm_tag_t fdtbus_pwm_acquire_index(int, const char *, int);
341 int fdtbus_pinctrl_set_config_index(int, u_int);
342 int fdtbus_pinctrl_set_config(int, const char *);
343 bool fdtbus_pinctrl_has_config(int, const char *);
344 const char * fdtbus_pinctrl_parse_function(int);
345 const void * fdtbus_pinctrl_parse_pins(int, int *);
346 const char * fdtbus_pinctrl_parse_groups(int, int *);
347 const u_int * fdtbus_pinctrl_parse_pinmux(int, int *);
348 int fdtbus_pinctrl_parse_bias(int, int *);
349 int fdtbus_pinctrl_parse_drive(int);
350 int fdtbus_pinctrl_parse_drive_strength(int);
351 int fdtbus_pinctrl_parse_input_output(int, int *);
352 struct fdtbus_regulator *fdtbus_regulator_acquire(int, const char *);
353 void fdtbus_regulator_release(struct fdtbus_regulator *);
354 int fdtbus_regulator_enable(struct fdtbus_regulator *);
355 int fdtbus_regulator_disable(struct fdtbus_regulator *);
356 int fdtbus_regulator_set_voltage(struct fdtbus_regulator *,
357 u_int, u_int);
358 int fdtbus_regulator_get_voltage(struct fdtbus_regulator *,
359 u_int *);
360 int fdtbus_regulator_supports_voltage(struct fdtbus_regulator *,
361 u_int, u_int);
362 struct syscon * fdtbus_syscon_acquire(int, const char *);
363 struct syscon * fdtbus_syscon_lookup(int);
364
365 struct fdtbus_dma *fdtbus_dma_get(int, const char *, void (*)(void *), void *);
366 struct fdtbus_dma *fdtbus_dma_get_index(int, u_int, void (*)(void *),
367 void *);
368 void fdtbus_dma_put(struct fdtbus_dma *);
369 int fdtbus_dma_transfer(struct fdtbus_dma *,
370 struct fdtbus_dma_req *);
371 void fdtbus_dma_halt(struct fdtbus_dma *);
372
373 struct clk * fdtbus_clock_get(int, const char *);
374 struct clk * fdtbus_clock_get_index(int, u_int);
375 struct clk * fdtbus_clock_byname(const char *);
376 void fdtbus_clock_assign(int);
377 u_int fdtbus_clock_count(int, const char *);
378 int fdtbus_clock_enable(int, const char *, bool);
379 int fdtbus_clock_enable_index(int, u_int, bool);
380
381 struct fdtbus_reset *fdtbus_reset_get(int, const char *);
382 struct fdtbus_reset *fdtbus_reset_get_index(int, u_int);
383 void fdtbus_reset_put(struct fdtbus_reset *);
384 int fdtbus_reset_assert(struct fdtbus_reset *);
385 int fdtbus_reset_deassert(struct fdtbus_reset *);
386
387 struct fdtbus_phy *fdtbus_phy_get(int, const char *);
388 struct fdtbus_phy *fdtbus_phy_get_index(int, u_int);
389 void fdtbus_phy_put(struct fdtbus_phy *);
390 device_t fdtbus_phy_device(struct fdtbus_phy *);
391 int fdtbus_phy_enable(struct fdtbus_phy *, bool);
392
393 struct fdtbus_mmc_pwrseq *fdtbus_mmc_pwrseq_get(int);
394 void fdtbus_mmc_pwrseq_pre_power_on(struct fdtbus_mmc_pwrseq *);
395 void fdtbus_mmc_pwrseq_post_power_on(struct fdtbus_mmc_pwrseq *);
396 void fdtbus_mmc_pwrseq_power_off(struct fdtbus_mmc_pwrseq *);
397 void fdtbus_mmc_pwrseq_reset(struct fdtbus_mmc_pwrseq *);
398
399 int fdtbus_todr_attach(device_t, int, todr_chip_handle_t);
400
401 void fdtbus_power_reset(void);
402 void fdtbus_power_poweroff(void);
403
404 device_t fdtbus_attach_i2cbus(device_t, int, i2c_tag_t, cfprint_t);
405 device_t fdtbus_attach_spibus(device_t, int, cfprint_t);
406
407 bool fdtbus_init(const void *);
408 const void * fdtbus_get_data(void);
409 int fdtbus_phandle2offset(int);
410 int fdtbus_offset2phandle(int);
411 bool fdtbus_get_path(int, char *, size_t);
412
413 const struct fdt_console *fdtbus_get_console(void);
414
415 const char * fdtbus_get_stdout_path(void);
416 int fdtbus_get_stdout_phandle(void);
417 int fdtbus_get_stdout_speed(void);
418 tcflag_t fdtbus_get_stdout_flags(void);
419
420 bool fdtbus_status_okay(int);
421
422 const void * fdtbus_get_prop(int, const char *, int *);
423 const char * fdtbus_get_string(int, const char *);
424 const char * fdtbus_get_string_index(int, const char *, u_int);
425 int fdtbus_get_index(int, const char *, const char *, u_int *);
426
427 void fdt_add_bus(device_t, int, struct fdt_attach_args *);
428 void fdt_add_bus_match(device_t, int, struct fdt_attach_args *,
429 bool (*)(void *, int), void *);
430 void fdt_add_child(device_t, int, struct fdt_attach_args *, u_int);
431
432 void fdt_remove_byhandle(int);
433 void fdt_remove_bycompat(const char *[]);
434 int fdt_find_with_property(const char *, int *);
435 int fdtbus_print(void *, const char *);
436
437 bus_dma_tag_t fdtbus_dma_tag_create(int, const struct fdt_dma_range *,
438 u_int);
439
440 #endif /* _DEV_FDT_FDTVAR_H_ */
441