1 1.5 christos /* $NetBSD: bus.h,v 1.5 2021/01/23 19:38:07 christos Exp $ */ 2 1.1 pooka 3 1.1 pooka /*- 4 1.1 pooka * Copyright (c) 1996, 1997, 1998, 2001 The NetBSD Foundation, Inc. 5 1.1 pooka * All rights reserved. 6 1.1 pooka * 7 1.1 pooka * This code is derived from software contributed to The NetBSD Foundation 8 1.1 pooka * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility, 9 1.1 pooka * NASA Ames Research Center. 10 1.1 pooka * 11 1.1 pooka * Redistribution and use in source and binary forms, with or without 12 1.1 pooka * modification, are permitted provided that the following conditions 13 1.1 pooka * are met: 14 1.1 pooka * 1. Redistributions of source code must retain the above copyright 15 1.1 pooka * notice, this list of conditions and the following disclaimer. 16 1.1 pooka * 2. Redistributions in binary form must reproduce the above copyright 17 1.1 pooka * notice, this list of conditions and the following disclaimer in the 18 1.1 pooka * documentation and/or other materials provided with the distribution. 19 1.1 pooka * 20 1.1 pooka * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 21 1.1 pooka * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 22 1.1 pooka * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 23 1.1 pooka * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 24 1.1 pooka * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 25 1.1 pooka * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 26 1.1 pooka * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 27 1.1 pooka * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 28 1.1 pooka * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 29 1.1 pooka * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 30 1.1 pooka * POSSIBILITY OF SUCH DAMAGE. 31 1.1 pooka */ 32 1.1 pooka 33 1.1 pooka #ifndef _EMIPS_BUS_H_ 34 1.1 pooka #define _EMIPS_BUS_H_ 35 1.1 pooka 36 1.1 pooka #include <mips/locore.h> 37 1.1 pooka 38 1.1 pooka /* 39 1.1 pooka * Utility macros; do not use outside this file. 40 1.1 pooka */ 41 1.1 pooka #define __PB_TYPENAME_PREFIX(BITS) ___CONCAT(u_int,BITS) 42 1.1 pooka #define __PB_TYPENAME(BITS) ___CONCAT(__PB_TYPENAME_PREFIX(BITS),_t) 43 1.1 pooka 44 1.1 pooka /* 45 1.1 pooka * Bus address and size types 46 1.1 pooka */ 47 1.1 pooka typedef u_long bus_addr_t; 48 1.1 pooka typedef u_long bus_size_t; 49 1.1 pooka 50 1.3 skrll #define PRIxBUSADDR "lx" 51 1.3 skrll #define PRIxBUSSIZE "lx" 52 1.3 skrll #define PRIuBUSSIZE "lu" 53 1.1 pooka /* 54 1.1 pooka * Access methods for bus resources and address space. 55 1.1 pooka */ 56 1.1 pooka typedef int bus_space_tag_t; 57 1.1 pooka typedef u_long bus_space_handle_t; 58 1.1 pooka 59 1.3 skrll #define PRIxBSH "lx" 60 1.3 skrll 61 1.1 pooka /* 62 1.1 pooka * int bus_space_map(bus_space_tag_t t, bus_addr_t addr, 63 1.1 pooka * bus_size_t size, int flags, bus_space_handle_t *bshp); 64 1.1 pooka * 65 1.1 pooka * Map a region of bus space. 66 1.1 pooka */ 67 1.1 pooka 68 1.1 pooka #define BUS_SPACE_MAP_CACHEABLE 0x01 69 1.1 pooka #define BUS_SPACE_MAP_LINEAR 0x02 70 1.1 pooka #define BUS_SPACE_MAP_PREFETCHABLE 0x04 71 1.1 pooka 72 1.1 pooka int bus_space_map(bus_space_tag_t, bus_addr_t, bus_size_t, 73 1.1 pooka int, bus_space_handle_t *); 74 1.1 pooka 75 1.1 pooka /* 76 1.1 pooka * void bus_space_unmap(bus_space_tag_t t, 77 1.1 pooka * bus_space_handle_t bsh, bus_size_t size); 78 1.1 pooka * 79 1.1 pooka * Unmap a region of bus space. 80 1.1 pooka */ 81 1.1 pooka 82 1.1 pooka void bus_space_unmap(bus_space_tag_t, bus_space_handle_t, bus_size_t); 83 1.1 pooka 84 1.1 pooka /* 85 1.1 pooka * int bus_space_subregion(bus_space_tag_t t, 86 1.1 pooka * bus_space_handle_t bsh, bus_size_t offset, bus_size_t size, 87 1.1 pooka * bus_space_handle_t *nbshp); 88 1.1 pooka * 89 1.1 pooka * Get a new handle for a subregion of an already-mapped area of bus space. 90 1.1 pooka */ 91 1.1 pooka 92 1.1 pooka int bus_space_subregion(bus_space_tag_t t, bus_space_handle_t bsh, 93 1.1 pooka bus_size_t offset, bus_size_t size, bus_space_handle_t *nbshp); 94 1.1 pooka 95 1.1 pooka /* 96 1.1 pooka * int bus_space_alloc(bus_space_tag_t t, bus_addr_t, rstart, 97 1.1 pooka * bus_addr_t rend, bus_size_t size, bus_size_t align, 98 1.1 pooka * bus_size_t boundary, int flags, bus_addr_t *addrp, 99 1.1 pooka * bus_space_handle_t *bshp); 100 1.1 pooka * 101 1.1 pooka * Allocate a region of bus space. 102 1.1 pooka */ 103 1.1 pooka 104 1.1 pooka int bus_space_alloc(bus_space_tag_t t, bus_addr_t rstart, 105 1.1 pooka bus_addr_t rend, bus_size_t size, bus_size_t align, 106 1.1 pooka bus_size_t boundary, int cacheable, bus_addr_t *addrp, 107 1.1 pooka bus_space_handle_t *bshp); 108 1.1 pooka 109 1.1 pooka /* 110 1.1 pooka * int bus_space_free(bus_space_tag_t t, 111 1.1 pooka * bus_space_handle_t bsh, bus_size_t size); 112 1.1 pooka * 113 1.1 pooka * Free a region of bus space. 114 1.1 pooka */ 115 1.1 pooka 116 1.1 pooka void bus_space_free(bus_space_tag_t t, bus_space_handle_t bsh, 117 1.1 pooka bus_size_t size); 118 1.1 pooka 119 1.1 pooka /* 120 1.1 pooka * void *bus_space_vaddr(bus_space_tag_t, bus_space_handle_t); 121 1.1 pooka * 122 1.1 pooka * Get the kernel virtual address for the mapped bus space. 123 1.1 pooka * Only allowed for regions mapped with BUS_SPACE_MAP_LINEAR. 124 1.1 pooka * (XXX not enforced) 125 1.1 pooka */ 126 1.1 pooka #define bus_space_vaddr(t, h) \ 127 1.1 pooka ((void *)(h)) 128 1.1 pooka 129 1.1 pooka /* 130 1.1 pooka * u_intN_t bus_space_read_N(bus_space_tag_t tag, 131 1.1 pooka * bus_space_handle_t bsh, bus_size_t offset); 132 1.1 pooka * 133 1.1 pooka * Read a 1, 2, 4, or 8 byte quantity from bus space 134 1.1 pooka * described by tag/handle/offset. 135 1.1 pooka */ 136 1.1 pooka 137 1.1 pooka #define bus_space_read_1(t, h, o) \ 138 1.1 pooka ((void) t, (*(volatile u_int8_t *)((h) + (o)))) 139 1.1 pooka 140 1.1 pooka #define bus_space_read_2(t, h, o) \ 141 1.1 pooka ((void) t, (*(volatile u_int16_t *)((h) + (o)))) 142 1.1 pooka 143 1.1 pooka #define bus_space_read_4(t, h, o) \ 144 1.1 pooka ((void) t, (*(volatile u_int32_t *)((h) + (o)))) 145 1.1 pooka 146 1.1 pooka /* 147 1.1 pooka * void bus_space_read_multi_N(bus_space_tag_t tag, 148 1.1 pooka * bus_space_handle_t bsh, bus_size_t offset, 149 1.1 pooka * u_intN_t *addr, size_t count); 150 1.1 pooka * 151 1.1 pooka * Read `count' 1, 2, 4, or 8 byte quantities from bus space 152 1.1 pooka * described by tag/handle/offset and copy into buffer provided. 153 1.1 pooka */ 154 1.1 pooka 155 1.2 matt #define __EMIPS_bus_space_read_multi(BYTES,BITS) \ 156 1.1 pooka static __inline void __CONCAT(bus_space_read_multi_,BYTES) \ 157 1.2 matt (bus_space_tag_t, bus_space_handle_t, bus_size_t, \ 158 1.2 matt __PB_TYPENAME(BITS) *, size_t); \ 159 1.1 pooka \ 160 1.1 pooka static __inline void \ 161 1.2 matt __CONCAT(bus_space_read_multi_,BYTES)( \ 162 1.2 matt bus_space_tag_t t, \ 163 1.2 matt bus_space_handle_t h, \ 164 1.2 matt bus_size_t o, \ 165 1.2 matt __PB_TYPENAME(BITS) *a, \ 166 1.2 matt size_t c) \ 167 1.1 pooka { \ 168 1.1 pooka \ 169 1.1 pooka while (c--) \ 170 1.1 pooka *a++ = __CONCAT(bus_space_read_,BYTES)(t, h, o); \ 171 1.1 pooka } 172 1.1 pooka 173 1.1 pooka __EMIPS_bus_space_read_multi(1,8) 174 1.1 pooka __EMIPS_bus_space_read_multi(2,16) 175 1.1 pooka __EMIPS_bus_space_read_multi(4,32) 176 1.1 pooka 177 1.1 pooka #undef __EMIPS_bus_space_read_multi 178 1.1 pooka 179 1.1 pooka /* 180 1.1 pooka * void bus_space_read_region_N(bus_space_tag_t tag, 181 1.1 pooka * bus_space_handle_t bsh, bus_size_t offset, 182 1.1 pooka * u_intN_t *addr, size_t count); 183 1.1 pooka * 184 1.1 pooka * Read `count' 1, 2, 4, or 8 byte quantities from bus space 185 1.1 pooka * described by tag/handle and starting at `offset' and copy into 186 1.1 pooka * buffer provided. 187 1.1 pooka */ 188 1.1 pooka 189 1.1 pooka #define __EMIPS_bus_space_read_region(BYTES,BITS) \ 190 1.1 pooka static __inline void __CONCAT(bus_space_read_region_,BYTES) \ 191 1.2 matt (bus_space_tag_t, bus_space_handle_t, bus_size_t, \ 192 1.2 matt __PB_TYPENAME(BITS) *, size_t); \ 193 1.1 pooka \ 194 1.1 pooka static __inline void \ 195 1.2 matt __CONCAT(bus_space_read_region_,BYTES)( \ 196 1.2 matt bus_space_tag_t t, \ 197 1.2 matt bus_space_handle_t h, \ 198 1.2 matt bus_size_t o, \ 199 1.2 matt __PB_TYPENAME(BITS) *a, \ 200 1.2 matt size_t c) \ 201 1.1 pooka { \ 202 1.1 pooka \ 203 1.1 pooka while (c--) { \ 204 1.1 pooka *a++ = __CONCAT(bus_space_read_,BYTES)(t, h, o); \ 205 1.1 pooka o += BYTES; \ 206 1.1 pooka } \ 207 1.1 pooka } 208 1.1 pooka 209 1.1 pooka __EMIPS_bus_space_read_region(1,8) 210 1.1 pooka __EMIPS_bus_space_read_region(2,16) 211 1.1 pooka __EMIPS_bus_space_read_region(4,32) 212 1.1 pooka 213 1.1 pooka #undef __EMIPS_bus_space_read_region 214 1.1 pooka 215 1.1 pooka /* 216 1.1 pooka * void bus_space_write_N(bus_space_tag_t tag, 217 1.1 pooka * bus_space_handle_t bsh, bus_size_t offset, 218 1.1 pooka * u_intN_t value); 219 1.1 pooka * 220 1.1 pooka * Write the 1, 2, 4, or 8 byte value `value' to bus space 221 1.1 pooka * described by tag/handle/offset. 222 1.1 pooka */ 223 1.1 pooka 224 1.1 pooka #define bus_space_write_1(t, h, o, v) \ 225 1.1 pooka do { \ 226 1.1 pooka (void) t; \ 227 1.1 pooka *(volatile u_int8_t *)((h) + (o)) = (v); \ 228 1.1 pooka wbflush(); /* XXX */ \ 229 1.1 pooka } while (0) 230 1.1 pooka 231 1.1 pooka #define bus_space_write_2(t, h, o, v) \ 232 1.1 pooka do { \ 233 1.1 pooka (void) t; \ 234 1.1 pooka *(volatile u_int16_t *)((h) + (o)) = (v); \ 235 1.1 pooka wbflush(); /* XXX */ \ 236 1.1 pooka } while (0) 237 1.1 pooka 238 1.1 pooka #define bus_space_write_4(t, h, o, v) \ 239 1.1 pooka do { \ 240 1.1 pooka (void) t; \ 241 1.1 pooka *(volatile u_int32_t *)((h) + (o)) = (v); \ 242 1.1 pooka wbflush(); /* XXX */ \ 243 1.1 pooka } while (0) 244 1.1 pooka 245 1.1 pooka /* 246 1.1 pooka * void bus_space_write_multi_N(bus_space_tag_t tag, 247 1.1 pooka * bus_space_handle_t bsh, bus_size_t offset, 248 1.1 pooka * const u_intN_t *addr, size_t count); 249 1.1 pooka * 250 1.1 pooka * Write `count' 1, 2, 4, or 8 byte quantities from the buffer 251 1.1 pooka * provided to bus space described by tag/handle/offset. 252 1.1 pooka */ 253 1.1 pooka 254 1.1 pooka #define __EMIPS_bus_space_write_multi(BYTES,BITS) \ 255 1.1 pooka static __inline void __CONCAT(bus_space_write_multi_,BYTES) \ 256 1.2 matt (bus_space_tag_t, bus_space_handle_t, bus_size_t, \ 257 1.2 matt __PB_TYPENAME(BITS) *, size_t); \ 258 1.1 pooka \ 259 1.1 pooka static __inline void \ 260 1.2 matt __CONCAT(bus_space_write_multi_,BYTES)( \ 261 1.2 matt bus_space_tag_t t, \ 262 1.2 matt bus_space_handle_t h, \ 263 1.2 matt bus_size_t o, \ 264 1.2 matt __PB_TYPENAME(BITS) *a, \ 265 1.2 matt size_t c) \ 266 1.1 pooka { \ 267 1.1 pooka \ 268 1.1 pooka while (c--) \ 269 1.1 pooka __CONCAT(bus_space_write_,BYTES)(t, h, o, *a++); \ 270 1.1 pooka } 271 1.1 pooka 272 1.1 pooka __EMIPS_bus_space_write_multi(1,8) 273 1.1 pooka __EMIPS_bus_space_write_multi(2,16) 274 1.1 pooka __EMIPS_bus_space_write_multi(4,32) 275 1.1 pooka 276 1.1 pooka #undef __EMIPS_bus_space_write_multi 277 1.1 pooka 278 1.1 pooka /* 279 1.1 pooka * void bus_space_write_region_N(bus_space_tag_t tag, 280 1.1 pooka * bus_space_handle_t bsh, bus_size_t offset, 281 1.1 pooka * const u_intN_t *addr, size_t count); 282 1.1 pooka * 283 1.1 pooka * Write `count' 1, 2, 4, or 8 byte quantities from the buffer provided 284 1.1 pooka * to bus space described by tag/handle starting at `offset'. 285 1.1 pooka */ 286 1.1 pooka 287 1.1 pooka #define __EMIPS_bus_space_write_region(BYTES,BITS) \ 288 1.1 pooka static __inline void __CONCAT(bus_space_write_region_,BYTES) \ 289 1.2 matt (bus_space_tag_t, bus_space_handle_t, bus_size_t, \ 290 1.2 matt __PB_TYPENAME(BITS) *, size_t); \ 291 1.1 pooka \ 292 1.1 pooka static __inline void \ 293 1.2 matt __CONCAT(bus_space_write_region_,BYTES)( \ 294 1.2 matt bus_space_tag_t t, \ 295 1.2 matt bus_space_handle_t h, \ 296 1.2 matt bus_size_t o, \ 297 1.2 matt __PB_TYPENAME(BITS) *a, \ 298 1.2 matt size_t c) \ 299 1.1 pooka { \ 300 1.1 pooka \ 301 1.1 pooka while (c--) { \ 302 1.1 pooka __CONCAT(bus_space_write_,BYTES)(t, h, o, *a++); \ 303 1.1 pooka o += BYTES; \ 304 1.1 pooka } \ 305 1.1 pooka } 306 1.1 pooka 307 1.1 pooka __EMIPS_bus_space_write_region(1,8) 308 1.1 pooka __EMIPS_bus_space_write_region(2,16) 309 1.1 pooka __EMIPS_bus_space_write_region(4,32) 310 1.1 pooka 311 1.1 pooka #undef __EMIPS_bus_space_write_region 312 1.1 pooka 313 1.1 pooka /* 314 1.1 pooka * void bus_space_set_multi_N(bus_space_tag_t tag, 315 1.1 pooka * bus_space_handle_t bsh, bus_size_t offset, u_intN_t val, 316 1.1 pooka * size_t count); 317 1.1 pooka * 318 1.1 pooka * Write the 1, 2, 4, or 8 byte value `val' to bus space described 319 1.1 pooka * by tag/handle/offset `count' times. 320 1.1 pooka */ 321 1.1 pooka 322 1.1 pooka #define __EMIPS_bus_space_set_multi(BYTES,BITS) \ 323 1.1 pooka static __inline void __CONCAT(bus_space_set_multi_,BYTES) \ 324 1.2 matt (bus_space_tag_t, bus_space_handle_t, bus_size_t, \ 325 1.1 pooka __PB_TYPENAME(BITS), size_t); \ 326 1.1 pooka \ 327 1.1 pooka static __inline void \ 328 1.2 matt __CONCAT(bus_space_set_multi_,BYTES)( \ 329 1.2 matt bus_space_tag_t t, \ 330 1.2 matt bus_space_handle_t h, \ 331 1.2 matt bus_size_t o, \ 332 1.2 matt __PB_TYPENAME(BITS) v, \ 333 1.2 matt size_t c) \ 334 1.1 pooka { \ 335 1.1 pooka \ 336 1.1 pooka while (c--) \ 337 1.1 pooka __CONCAT(bus_space_write_,BYTES)(t, h, o, v); \ 338 1.1 pooka } 339 1.1 pooka 340 1.1 pooka __EMIPS_bus_space_set_multi(1,8) 341 1.1 pooka __EMIPS_bus_space_set_multi(2,16) 342 1.1 pooka __EMIPS_bus_space_set_multi(4,32) 343 1.1 pooka 344 1.1 pooka #undef __EMIPS_bus_space_set_multi 345 1.1 pooka 346 1.1 pooka /* 347 1.1 pooka * void bus_space_set_region_N(bus_space_tag_t tag, 348 1.1 pooka * bus_space_handle_t bsh, bus_size_t offset, u_intN_t val, 349 1.1 pooka * size_t count); 350 1.1 pooka * 351 1.1 pooka * Write `count' 1, 2, 4, or 8 byte value `val' to bus space described 352 1.1 pooka * by tag/handle starting at `offset'. 353 1.1 pooka */ 354 1.1 pooka 355 1.2 matt #define __EMIPS_bus_space_set_region(BYTES,BITS) \ 356 1.1 pooka static __inline void __CONCAT(bus_space_set_region_,BYTES) \ 357 1.2 matt (bus_space_tag_t, bus_space_handle_t, bus_size_t, \ 358 1.1 pooka __PB_TYPENAME(BITS), size_t); \ 359 1.1 pooka \ 360 1.1 pooka static __inline void \ 361 1.2 matt __CONCAT(bus_space_set_region_,BYTES)( \ 362 1.2 matt bus_space_tag_t t, \ 363 1.2 matt bus_space_handle_t h, \ 364 1.2 matt bus_size_t o, \ 365 1.2 matt __PB_TYPENAME(BITS) v, \ 366 1.2 matt size_t c) \ 367 1.1 pooka { \ 368 1.1 pooka \ 369 1.1 pooka while (c--) { \ 370 1.1 pooka __CONCAT(bus_space_write_,BYTES)(t, h, o, v); \ 371 1.1 pooka o += BYTES; \ 372 1.1 pooka } \ 373 1.1 pooka } 374 1.1 pooka 375 1.1 pooka __EMIPS_bus_space_set_region(1,8) 376 1.1 pooka __EMIPS_bus_space_set_region(2,16) 377 1.1 pooka __EMIPS_bus_space_set_region(4,32) 378 1.1 pooka 379 1.1 pooka #undef __EMIPS_bus_space_set_region 380 1.1 pooka 381 1.1 pooka /* 382 1.1 pooka * void bus_space_copy_region_N(bus_space_tag_t tag, 383 1.1 pooka * bus_space_handle_t bsh1, bus_size_t off1, 384 1.1 pooka * bus_space_handle_t bsh2, bus_size_t off2, 385 1.1 pooka * bus_size_t count); 386 1.1 pooka * 387 1.1 pooka * Copy `count' 1, 2, 4, or 8 byte values from bus space starting 388 1.1 pooka * at tag/bsh1/off1 to bus space starting at tag/bsh2/off2. 389 1.1 pooka */ 390 1.1 pooka 391 1.1 pooka #define __EMIPS_copy_region(BYTES) \ 392 1.1 pooka static __inline void __CONCAT(bus_space_copy_region_,BYTES) \ 393 1.2 matt (bus_space_tag_t, \ 394 1.1 pooka bus_space_handle_t bsh1, bus_size_t off1, \ 395 1.1 pooka bus_space_handle_t bsh2, bus_size_t off2, \ 396 1.1 pooka bus_size_t count); \ 397 1.1 pooka \ 398 1.1 pooka static __inline void \ 399 1.2 matt __CONCAT(bus_space_copy_region_,BYTES)( \ 400 1.2 matt bus_space_tag_t t, \ 401 1.2 matt bus_space_handle_t h1, \ 402 1.2 matt bus_size_t o1, \ 403 1.2 matt bus_space_handle_t h2, \ 404 1.2 matt bus_size_t o2, \ 405 1.2 matt bus_size_t c) \ 406 1.1 pooka { \ 407 1.1 pooka bus_size_t o; \ 408 1.1 pooka \ 409 1.1 pooka if ((h1 + o1) >= (h2 + o2)) { \ 410 1.1 pooka /* src after dest: copy forward */ \ 411 1.1 pooka for (o = 0; c != 0; c--, o += BYTES) \ 412 1.1 pooka __CONCAT(bus_space_write_,BYTES)(t, h2, o2 + o, \ 413 1.1 pooka __CONCAT(bus_space_read_,BYTES)(t, h1, o1 + o)); \ 414 1.1 pooka } else { \ 415 1.1 pooka /* dest after src: copy backwards */ \ 416 1.1 pooka for (o = (c - 1) * BYTES; c != 0; c--, o -= BYTES) \ 417 1.1 pooka __CONCAT(bus_space_write_,BYTES)(t, h2, o2 + o, \ 418 1.1 pooka __CONCAT(bus_space_read_,BYTES)(t, h1, o1 + o)); \ 419 1.1 pooka } \ 420 1.1 pooka } 421 1.1 pooka 422 1.1 pooka __EMIPS_copy_region(1) 423 1.1 pooka __EMIPS_copy_region(2) 424 1.1 pooka __EMIPS_copy_region(4) 425 1.1 pooka 426 1.1 pooka #undef __EMIPS_copy_region 427 1.1 pooka 428 1.1 pooka /* 429 1.1 pooka * Bus read/write barrier methods. 430 1.1 pooka * 431 1.1 pooka * void bus_space_barrier(bus_space_tag_t tag, 432 1.1 pooka * bus_space_handle_t bsh, bus_size_t offset, 433 1.1 pooka * bus_size_t len, int flags); 434 1.1 pooka * 435 1.1 pooka * On the MIPS, we just flush the write buffer. 436 1.1 pooka */ 437 1.1 pooka #define bus_space_barrier(t, h, o, l, f) \ 438 1.1 pooka ((void)((void)(t), (void)(h), (void)(o), (void)(l), (void)(f), \ 439 1.1 pooka wbflush())) 440 1.1 pooka #define BUS_SPACE_BARRIER_READ 0x01 /* force read barrier */ 441 1.1 pooka #define BUS_SPACE_BARRIER_WRITE 0x02 /* force write barrier */ 442 1.1 pooka 443 1.1 pooka #undef __PB_TYPENAME_PREFIX 444 1.1 pooka #undef __PB_TYPENAME 445 1.1 pooka 446 1.1 pooka #define BUS_SPACE_ALIGNED_POINTER(p, t) ALIGNED_POINTER(p, t) 447 1.1 pooka 448 1.1 pooka /* 449 1.1 pooka * Flags used in various bus DMA methods. 450 1.1 pooka */ 451 1.1 pooka #define BUS_DMA_WAITOK 0x000 /* safe to sleep (pseudo-flag) */ 452 1.1 pooka #define BUS_DMA_NOWAIT 0x001 /* not safe to sleep */ 453 1.1 pooka #define BUS_DMA_ALLOCNOW 0x002 /* perform resource allocation now */ 454 1.1 pooka #define BUS_DMA_COHERENT 0x004 /* hint: map memory DMA coherent */ 455 1.1 pooka #define BUS_DMA_STREAMING 0x008 /* hint: sequential, unidirectional */ 456 1.1 pooka #define BUS_DMA_BUS1 0x010 /* placeholders for bus functions... */ 457 1.1 pooka #define BUS_DMA_BUS2 0x020 458 1.1 pooka #define BUS_DMA_BUS3 0x040 459 1.1 pooka #define BUS_DMA_BUS4 0x080 460 1.1 pooka #define BUS_DMA_READ 0x100 /* mapping is device -> memory only */ 461 1.1 pooka #define BUS_DMA_WRITE 0x200 /* mapping is memory -> device only */ 462 1.1 pooka #define BUS_DMA_NOCACHE 0x400 /* hint: map non-cached memory */ 463 1.1 pooka 464 1.1 pooka #define EMIPS_DMAMAP_COHERENT 0x10000 /* no cache flush necessary on sync */ 465 1.1 pooka 466 1.1 pooka /* Forwards needed by prototypes below. */ 467 1.1 pooka struct mbuf; 468 1.1 pooka struct uio; 469 1.1 pooka 470 1.1 pooka /* 471 1.1 pooka * Operations performed by bus_dmamap_sync(). 472 1.1 pooka */ 473 1.1 pooka #define BUS_DMASYNC_PREREAD 0x01 /* pre-read synchronization */ 474 1.1 pooka #define BUS_DMASYNC_POSTREAD 0x02 /* post-read synchronization */ 475 1.1 pooka #define BUS_DMASYNC_PREWRITE 0x04 /* pre-write synchronization */ 476 1.1 pooka #define BUS_DMASYNC_POSTWRITE 0x08 /* post-write synchronization */ 477 1.1 pooka 478 1.1 pooka typedef struct emips_bus_dma_tag *bus_dma_tag_t; 479 1.1 pooka typedef struct emips_bus_dmamap *bus_dmamap_t; 480 1.1 pooka 481 1.1 pooka #define BUS_DMA_TAG_VALID(t) ((t) != (bus_dma_tag_t)0) 482 1.1 pooka 483 1.1 pooka /* 484 1.1 pooka * bus_dma_segment_t 485 1.1 pooka * 486 1.1 pooka * Describes a single contiguous DMA transaction. Values 487 1.1 pooka * are suitable for programming into DMA registers. 488 1.1 pooka */ 489 1.1 pooka struct emips_bus_dma_segment { 490 1.1 pooka bus_addr_t ds_addr; /* DMA address */ 491 1.1 pooka bus_size_t ds_len; /* length of transfer */ 492 1.1 pooka bus_addr_t _ds_vaddr; /* virtual address, 0 if invalid */ 493 1.1 pooka }; 494 1.1 pooka typedef struct emips_bus_dma_segment bus_dma_segment_t; 495 1.1 pooka 496 1.1 pooka /* 497 1.1 pooka * bus_dma_tag_t 498 1.1 pooka * 499 1.1 pooka * A machine-dependent opaque type describing the implementation of 500 1.1 pooka * DMA for a given bus. 501 1.1 pooka */ 502 1.1 pooka 503 1.1 pooka struct emips_bus_dma_tag { 504 1.1 pooka /* 505 1.1 pooka * DMA mapping methods. 506 1.1 pooka */ 507 1.1 pooka int (*_dmamap_create)(bus_dma_tag_t, bus_size_t, int, 508 1.1 pooka bus_size_t, bus_size_t, int, bus_dmamap_t *); 509 1.1 pooka void (*_dmamap_destroy)(bus_dma_tag_t, bus_dmamap_t); 510 1.1 pooka int (*_dmamap_load)(bus_dma_tag_t, bus_dmamap_t, void *, 511 1.1 pooka bus_size_t, struct proc *, int); 512 1.1 pooka int (*_dmamap_load_mbuf)(bus_dma_tag_t, bus_dmamap_t, 513 1.1 pooka struct mbuf *, int); 514 1.1 pooka int (*_dmamap_load_uio)(bus_dma_tag_t, bus_dmamap_t, 515 1.1 pooka struct uio *, int); 516 1.1 pooka int (*_dmamap_load_raw)(bus_dma_tag_t, bus_dmamap_t, 517 1.1 pooka bus_dma_segment_t *, int, bus_size_t, int); 518 1.1 pooka void (*_dmamap_unload)(bus_dma_tag_t, bus_dmamap_t); 519 1.1 pooka void (*_dmamap_sync)(bus_dma_tag_t, bus_dmamap_t, 520 1.1 pooka bus_addr_t, bus_size_t, int); 521 1.1 pooka 522 1.1 pooka /* 523 1.1 pooka * DMA memory utility functions. 524 1.1 pooka */ 525 1.1 pooka int (*_dmamem_alloc)(bus_dma_tag_t, bus_size_t, bus_size_t, 526 1.1 pooka bus_size_t, bus_dma_segment_t *, int, int *, int); 527 1.1 pooka void (*_dmamem_free)(bus_dma_tag_t, 528 1.1 pooka bus_dma_segment_t *, int); 529 1.1 pooka int (*_dmamem_map)(bus_dma_tag_t, bus_dma_segment_t *, 530 1.1 pooka int, size_t, void **, int); 531 1.1 pooka void (*_dmamem_unmap)(bus_dma_tag_t, void *, size_t); 532 1.1 pooka paddr_t (*_dmamem_mmap)(bus_dma_tag_t, bus_dma_segment_t *, 533 1.1 pooka int, off_t, int, int); 534 1.1 pooka }; 535 1.1 pooka 536 1.1 pooka #define bus_dmamap_create(t, s, n, m, b, f, p) \ 537 1.1 pooka (*(t)->_dmamap_create)((t), (s), (n), (m), (b), (f), (p)) 538 1.1 pooka #define bus_dmamap_destroy(t, p) \ 539 1.1 pooka (*(t)->_dmamap_destroy)((t), (p)) 540 1.1 pooka #define bus_dmamap_load(t, m, b, s, p, f) \ 541 1.1 pooka (*(t)->_dmamap_load)((t), (m), (b), (s), (p), (f)) 542 1.1 pooka #define bus_dmamap_load_mbuf(t, m, b, f) \ 543 1.1 pooka (*(t)->_dmamap_load_mbuf)((t), (m), (b), (f)) 544 1.1 pooka #define bus_dmamap_load_uio(t, m, u, f) \ 545 1.1 pooka (*(t)->_dmamap_load_uio)((t), (m), (u), (f)) 546 1.1 pooka #define bus_dmamap_load_raw(t, m, sg, n, s, f) \ 547 1.1 pooka (*(t)->_dmamap_load_raw)((t), (m), (sg), (n), (s), (f)) 548 1.1 pooka #define bus_dmamap_unload(t, p) \ 549 1.1 pooka (*(t)->_dmamap_unload)((t), (p)) 550 1.1 pooka #define bus_dmamap_sync(t, p, o, l, ops) \ 551 1.1 pooka (*(t)->_dmamap_sync)((t), (p), (o), (l), (ops)) 552 1.1 pooka 553 1.1 pooka #define bus_dmamem_alloc(t, s, a, b, sg, n, r, f) \ 554 1.1 pooka (*(t)->_dmamem_alloc)((t), (s), (a), (b), (sg), (n), (r), (f)) 555 1.1 pooka #define bus_dmamem_free(t, sg, n) \ 556 1.1 pooka (*(t)->_dmamem_free)((t), (sg), (n)) 557 1.1 pooka #define bus_dmamem_map(t, sg, n, s, k, f) \ 558 1.1 pooka (*(t)->_dmamem_map)((t), (sg), (n), (s), (k), (f)) 559 1.1 pooka #define bus_dmamem_unmap(t, k, s) \ 560 1.1 pooka (*(t)->_dmamem_unmap)((t), (k), (s)) 561 1.1 pooka #define bus_dmamem_mmap(t, sg, n, o, p, f) \ 562 1.1 pooka (*(t)->_dmamem_mmap)((t), (sg), (n), (o), (p), (f)) 563 1.1 pooka 564 1.1 pooka #define bus_dmatag_subregion(t, mna, mxa, nt, f) EOPNOTSUPP 565 1.1 pooka #define bus_dmatag_destroy(t) 566 1.1 pooka 567 1.1 pooka /* 568 1.1 pooka * bus_dmamap_t 569 1.1 pooka * 570 1.1 pooka * Describes a DMA mapping. 571 1.1 pooka */ 572 1.1 pooka struct emips_bus_dmamap { 573 1.1 pooka /* 574 1.1 pooka * PRIVATE MEMBERS: not for use my machine-independent code. 575 1.1 pooka */ 576 1.1 pooka bus_size_t _dm_size; /* largest DMA transfer mappable */ 577 1.1 pooka int _dm_segcnt; /* number of segs this map can map */ 578 1.1 pooka bus_size_t _dm_maxmaxsegsz; /* fixed largest possible segment */ 579 1.1 pooka bus_size_t _dm_boundary; /* don't cross this */ 580 1.1 pooka int _dm_flags; /* misc. flags */ 581 1.1 pooka struct vmspace *_dm_vmspace; /* vmspace that owns the mapping */ 582 1.1 pooka 583 1.1 pooka /* 584 1.1 pooka * PUBLIC MEMBERS: these are used by machine-independent code. 585 1.1 pooka */ 586 1.1 pooka bus_size_t dm_maxsegsz; /* largest possible segment */ 587 1.1 pooka bus_size_t dm_mapsize; /* size of the mapping */ 588 1.1 pooka int dm_nsegs; /* # valid segments in mapping */ 589 1.1 pooka bus_dma_segment_t dm_segs[1]; /* segments; variable length */ 590 1.1 pooka }; 591 1.1 pooka 592 1.1 pooka #ifdef _EMIPS_BUS_DMA_PRIVATE 593 1.1 pooka void emips_bus_dma_init(void); 594 1.1 pooka 595 1.1 pooka int _bus_dmamap_create(bus_dma_tag_t, bus_size_t, int, bus_size_t, 596 1.1 pooka bus_size_t, int, bus_dmamap_t *); 597 1.1 pooka void _bus_dmamap_destroy(bus_dma_tag_t, bus_dmamap_t); 598 1.1 pooka int _bus_dmamap_load(bus_dma_tag_t, bus_dmamap_t, void *, 599 1.1 pooka bus_size_t, struct proc *, int); 600 1.1 pooka int _bus_dmamap_load_mbuf(bus_dma_tag_t, bus_dmamap_t, 601 1.1 pooka struct mbuf *, int); 602 1.1 pooka int _bus_dmamap_load_uio(bus_dma_tag_t, bus_dmamap_t, 603 1.1 pooka struct uio *, int); 604 1.1 pooka int _bus_dmamap_load_raw(bus_dma_tag_t, bus_dmamap_t, 605 1.1 pooka bus_dma_segment_t *, int, bus_size_t, int); 606 1.1 pooka void _bus_dmamap_unload(bus_dma_tag_t, bus_dmamap_t); 607 1.1 pooka void _bus_dmamap_sync_r3k(bus_dma_tag_t, bus_dmamap_t, bus_addr_t, 608 1.1 pooka bus_size_t, int); 609 1.1 pooka void _bus_dmamap_sync_r4k(bus_dma_tag_t, bus_dmamap_t, bus_addr_t, 610 1.1 pooka bus_size_t, int); 611 1.1 pooka 612 1.1 pooka int _bus_dmamem_alloc(bus_dma_tag_t tag, bus_size_t size, 613 1.1 pooka bus_size_t alignment, bus_size_t boundary, 614 1.1 pooka bus_dma_segment_t *segs, int nsegs, int *rsegs, int flags); 615 1.1 pooka void _bus_dmamem_free(bus_dma_tag_t tag, bus_dma_segment_t *segs, 616 1.1 pooka int nsegs); 617 1.1 pooka int _bus_dmamem_map(bus_dma_tag_t tag, bus_dma_segment_t *segs, 618 1.1 pooka int nsegs, size_t size, void **kvap, int flags); 619 1.1 pooka void _bus_dmamem_unmap(bus_dma_tag_t tag, void *kva, 620 1.1 pooka size_t size); 621 1.1 pooka paddr_t _bus_dmamem_mmap(bus_dma_tag_t tag, bus_dma_segment_t *segs, 622 1.1 pooka int nsegs, off_t off, int prot, int flags); 623 1.1 pooka 624 1.1 pooka int _bus_dmamem_alloc_range(bus_dma_tag_t tag, bus_size_t size, 625 1.1 pooka bus_size_t alignment, bus_size_t boundary, 626 1.1 pooka bus_dma_segment_t *segs, int nsegs, int *rsegs, int flags, 627 1.1 pooka vaddr_t low, vaddr_t high); 628 1.1 pooka 629 1.1 pooka extern struct emips_bus_dma_tag emips_default_bus_dma_tag; 630 1.1 pooka #endif /* _EMIPS_BUS_DMA_PRIVATE */ 631 1.1 pooka 632 1.1 pooka #endif /* !_EMIPS_BUS_H_ */ 633