linux/drivers/fsi/fsi-core.c
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   1/*
   2 * FSI core driver
   3 *
   4 * Copyright (C) IBM Corporation 2016
   5 *
   6 * This program is free software; you can redistribute it and/or modify
   7 * it under the terms of the GNU General Public License version 2 as
   8 * published by the Free Software Foundation.
   9 *
  10 * This program is distributed in the hope that it will be useful,
  11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  13 * GNU General Public License for more details.
  14 */
  15
  16#include <linux/crc4.h>
  17#include <linux/device.h>
  18#include <linux/fsi.h>
  19#include <linux/idr.h>
  20#include <linux/module.h>
  21#include <linux/of.h>
  22#include <linux/slab.h>
  23#include <linux/bitops.h>
  24
  25#include "fsi-master.h"
  26
  27#define CREATE_TRACE_POINTS
  28#include <trace/events/fsi.h>
  29
  30#define FSI_SLAVE_CONF_NEXT_MASK        GENMASK(31, 31)
  31#define FSI_SLAVE_CONF_SLOTS_MASK       GENMASK(23, 16)
  32#define FSI_SLAVE_CONF_SLOTS_SHIFT      16
  33#define FSI_SLAVE_CONF_VERSION_MASK     GENMASK(15, 12)
  34#define FSI_SLAVE_CONF_VERSION_SHIFT    12
  35#define FSI_SLAVE_CONF_TYPE_MASK        GENMASK(11, 4)
  36#define FSI_SLAVE_CONF_TYPE_SHIFT       4
  37#define FSI_SLAVE_CONF_CRC_SHIFT        4
  38#define FSI_SLAVE_CONF_CRC_MASK         GENMASK(3, 0)
  39#define FSI_SLAVE_CONF_DATA_BITS        28
  40
  41#define FSI_PEEK_BASE                   0x410
  42
  43static const int engine_page_size = 0x400;
  44
  45#define FSI_SLAVE_BASE                  0x800
  46
  47/*
  48 * FSI slave engine control register offsets
  49 */
  50#define FSI_SMODE               0x0     /* R/W: Mode register */
  51#define FSI_SISC                0x8     /* R/W: Interrupt condition */
  52#define FSI_SSTAT               0x14    /* R  : Slave status */
  53#define FSI_LLMODE              0x100   /* R/W: Link layer mode register */
  54
  55/*
  56 * SMODE fields
  57 */
  58#define FSI_SMODE_WSC           0x80000000      /* Warm start done */
  59#define FSI_SMODE_ECRC          0x20000000      /* Hw CRC check */
  60#define FSI_SMODE_SID_SHIFT     24              /* ID shift */
  61#define FSI_SMODE_SID_MASK      3               /* ID Mask */
  62#define FSI_SMODE_ED_SHIFT      20              /* Echo delay shift */
  63#define FSI_SMODE_ED_MASK       0xf             /* Echo delay mask */
  64#define FSI_SMODE_SD_SHIFT      16              /* Send delay shift */
  65#define FSI_SMODE_SD_MASK       0xf             /* Send delay mask */
  66#define FSI_SMODE_LBCRR_SHIFT   8               /* Clk ratio shift */
  67#define FSI_SMODE_LBCRR_MASK    0xf             /* Clk ratio mask */
  68
  69/*
  70 * LLMODE fields
  71 */
  72#define FSI_LLMODE_ASYNC        0x1
  73
  74#define FSI_SLAVE_SIZE_23b              0x800000
  75
  76static DEFINE_IDA(master_ida);
  77
  78struct fsi_slave {
  79        struct device           dev;
  80        struct fsi_master       *master;
  81        int                     id;
  82        int                     link;
  83        uint32_t                size;   /* size of slave address space */
  84};
  85
  86#define to_fsi_master(d) container_of(d, struct fsi_master, dev)
  87#define to_fsi_slave(d) container_of(d, struct fsi_slave, dev)
  88
  89static const int slave_retries = 2;
  90static int discard_errors;
  91
  92static int fsi_master_read(struct fsi_master *master, int link,
  93                uint8_t slave_id, uint32_t addr, void *val, size_t size);
  94static int fsi_master_write(struct fsi_master *master, int link,
  95                uint8_t slave_id, uint32_t addr, const void *val, size_t size);
  96static int fsi_master_break(struct fsi_master *master, int link);
  97
  98/*
  99 * fsi_device_read() / fsi_device_write() / fsi_device_peek()
 100 *
 101 * FSI endpoint-device support
 102 *
 103 * Read / write / peek accessors for a client
 104 *
 105 * Parameters:
 106 * dev:  Structure passed to FSI client device drivers on probe().
 107 * addr: FSI address of given device.  Client should pass in its base address
 108 *       plus desired offset to access its register space.
 109 * val:  For read/peek this is the value read at the specified address. For
 110 *       write this is value to write to the specified address.
 111 *       The data in val must be FSI bus endian (big endian).
 112 * size: Size in bytes of the operation.  Sizes supported are 1, 2 and 4 bytes.
 113 *       Addresses must be aligned on size boundaries or an error will result.
 114 */
 115int fsi_device_read(struct fsi_device *dev, uint32_t addr, void *val,
 116                size_t size)
 117{
 118        if (addr > dev->size || size > dev->size || addr > dev->size - size)
 119                return -EINVAL;
 120
 121        return fsi_slave_read(dev->slave, dev->addr + addr, val, size);
 122}
 123EXPORT_SYMBOL_GPL(fsi_device_read);
 124
 125int fsi_device_write(struct fsi_device *dev, uint32_t addr, const void *val,
 126                size_t size)
 127{
 128        if (addr > dev->size || size > dev->size || addr > dev->size - size)
 129                return -EINVAL;
 130
 131        return fsi_slave_write(dev->slave, dev->addr + addr, val, size);
 132}
 133EXPORT_SYMBOL_GPL(fsi_device_write);
 134
 135int fsi_device_peek(struct fsi_device *dev, void *val)
 136{
 137        uint32_t addr = FSI_PEEK_BASE + ((dev->unit - 2) * sizeof(uint32_t));
 138
 139        return fsi_slave_read(dev->slave, addr, val, sizeof(uint32_t));
 140}
 141
 142static void fsi_device_release(struct device *_device)
 143{
 144        struct fsi_device *device = to_fsi_dev(_device);
 145
 146        of_node_put(device->dev.of_node);
 147        kfree(device);
 148}
 149
 150static struct fsi_device *fsi_create_device(struct fsi_slave *slave)
 151{
 152        struct fsi_device *dev;
 153
 154        dev = kzalloc(sizeof(*dev), GFP_KERNEL);
 155        if (!dev)
 156                return NULL;
 157
 158        dev->dev.parent = &slave->dev;
 159        dev->dev.bus = &fsi_bus_type;
 160        dev->dev.release = fsi_device_release;
 161
 162        return dev;
 163}
 164
 165/* FSI slave support */
 166static int fsi_slave_calc_addr(struct fsi_slave *slave, uint32_t *addrp,
 167                uint8_t *idp)
 168{
 169        uint32_t addr = *addrp;
 170        uint8_t id = *idp;
 171
 172        if (addr > slave->size)
 173                return -EINVAL;
 174
 175        /* For 23 bit addressing, we encode the extra two bits in the slave
 176         * id (and the slave's actual ID needs to be 0).
 177         */
 178        if (addr > 0x1fffff) {
 179                if (slave->id != 0)
 180                        return -EINVAL;
 181                id = (addr >> 21) & 0x3;
 182                addr &= 0x1fffff;
 183        }
 184
 185        *addrp = addr;
 186        *idp = id;
 187        return 0;
 188}
 189
 190static int fsi_slave_report_and_clear_errors(struct fsi_slave *slave)
 191{
 192        struct fsi_master *master = slave->master;
 193        uint32_t irq, stat;
 194        int rc, link;
 195        uint8_t id;
 196
 197        link = slave->link;
 198        id = slave->id;
 199
 200        rc = fsi_master_read(master, link, id, FSI_SLAVE_BASE + FSI_SISC,
 201                        &irq, sizeof(irq));
 202        if (rc)
 203                return rc;
 204
 205        rc =  fsi_master_read(master, link, id, FSI_SLAVE_BASE + FSI_SSTAT,
 206                        &stat, sizeof(stat));
 207        if (rc)
 208                return rc;
 209
 210        dev_dbg(&slave->dev, "status: 0x%08x, sisc: 0x%08x\n",
 211                        be32_to_cpu(stat), be32_to_cpu(irq));
 212
 213        /* clear interrupts */
 214        return fsi_master_write(master, link, id, FSI_SLAVE_BASE + FSI_SISC,
 215                        &irq, sizeof(irq));
 216}
 217
 218static int fsi_slave_set_smode(struct fsi_master *master, int link, int id);
 219
 220static int fsi_slave_handle_error(struct fsi_slave *slave, bool write,
 221                                  uint32_t addr, size_t size)
 222{
 223        struct fsi_master *master = slave->master;
 224        int rc, link;
 225        uint32_t reg;
 226        uint8_t id;
 227
 228        if (discard_errors)
 229                return -1;
 230
 231        link = slave->link;
 232        id = slave->id;
 233
 234        dev_dbg(&slave->dev, "handling error on %s to 0x%08x[%zd]",
 235                        write ? "write" : "read", addr, size);
 236
 237        /* try a simple clear of error conditions, which may fail if we've lost
 238         * communication with the slave
 239         */
 240        rc = fsi_slave_report_and_clear_errors(slave);
 241        if (!rc)
 242                return 0;
 243
 244        /* send a TERM and retry */
 245        if (master->term) {
 246                rc = master->term(master, link, id);
 247                if (!rc) {
 248                        rc = fsi_master_read(master, link, id, 0,
 249                                        &reg, sizeof(reg));
 250                        if (!rc)
 251                                rc = fsi_slave_report_and_clear_errors(slave);
 252                        if (!rc)
 253                                return 0;
 254                }
 255        }
 256
 257        /* getting serious, reset the slave via BREAK */
 258        rc = fsi_master_break(master, link);
 259        if (rc)
 260                return rc;
 261
 262        rc = fsi_slave_set_smode(master, link, id);
 263        if (rc)
 264                return rc;
 265
 266        return fsi_slave_report_and_clear_errors(slave);
 267}
 268
 269int fsi_slave_read(struct fsi_slave *slave, uint32_t addr,
 270                        void *val, size_t size)
 271{
 272        uint8_t id = slave->id;
 273        int rc, err_rc, i;
 274
 275        rc = fsi_slave_calc_addr(slave, &addr, &id);
 276        if (rc)
 277                return rc;
 278
 279        for (i = 0; i < slave_retries; i++) {
 280                rc = fsi_master_read(slave->master, slave->link,
 281                                id, addr, val, size);
 282                if (!rc)
 283                        break;
 284
 285                err_rc = fsi_slave_handle_error(slave, false, addr, size);
 286                if (err_rc)
 287                        break;
 288        }
 289
 290        return rc;
 291}
 292EXPORT_SYMBOL_GPL(fsi_slave_read);
 293
 294int fsi_slave_write(struct fsi_slave *slave, uint32_t addr,
 295                        const void *val, size_t size)
 296{
 297        uint8_t id = slave->id;
 298        int rc, err_rc, i;
 299
 300        rc = fsi_slave_calc_addr(slave, &addr, &id);
 301        if (rc)
 302                return rc;
 303
 304        for (i = 0; i < slave_retries; i++) {
 305                rc = fsi_master_write(slave->master, slave->link,
 306                                id, addr, val, size);
 307                if (!rc)
 308                        break;
 309
 310                err_rc = fsi_slave_handle_error(slave, true, addr, size);
 311                if (err_rc)
 312                        break;
 313        }
 314
 315        return rc;
 316}
 317EXPORT_SYMBOL_GPL(fsi_slave_write);
 318
 319extern int fsi_slave_claim_range(struct fsi_slave *slave,
 320                uint32_t addr, uint32_t size)
 321{
 322        if (addr + size < addr)
 323                return -EINVAL;
 324
 325        if (addr + size > slave->size)
 326                return -EINVAL;
 327
 328        /* todo: check for overlapping claims */
 329        return 0;
 330}
 331EXPORT_SYMBOL_GPL(fsi_slave_claim_range);
 332
 333extern void fsi_slave_release_range(struct fsi_slave *slave,
 334                uint32_t addr, uint32_t size)
 335{
 336}
 337EXPORT_SYMBOL_GPL(fsi_slave_release_range);
 338
 339static bool fsi_device_node_matches(struct device *dev, struct device_node *np,
 340                uint32_t addr, uint32_t size)
 341{
 342        unsigned int len, na, ns;
 343        const __be32 *prop;
 344        uint32_t psize;
 345
 346        na = of_n_addr_cells(np);
 347        ns = of_n_size_cells(np);
 348
 349        if (na != 1 || ns != 1)
 350                return false;
 351
 352        prop = of_get_property(np, "reg", &len);
 353        if (!prop || len != 8)
 354                return false;
 355
 356        if (of_read_number(prop, 1) != addr)
 357                return false;
 358
 359        psize = of_read_number(prop + 1, 1);
 360        if (psize != size) {
 361                dev_warn(dev,
 362                        "node %s matches probed address, but not size (got 0x%x, expected 0x%x)",
 363                        of_node_full_name(np), psize, size);
 364        }
 365
 366        return true;
 367}
 368
 369/* Find a matching node for the slave engine at @address, using @size bytes
 370 * of space. Returns NULL if not found, or a matching node with refcount
 371 * already incremented.
 372 */
 373static struct device_node *fsi_device_find_of_node(struct fsi_device *dev)
 374{
 375        struct device_node *parent, *np;
 376
 377        parent = dev_of_node(&dev->slave->dev);
 378        if (!parent)
 379                return NULL;
 380
 381        for_each_child_of_node(parent, np) {
 382                if (fsi_device_node_matches(&dev->dev, np,
 383                                        dev->addr, dev->size))
 384                        return np;
 385        }
 386
 387        return NULL;
 388}
 389
 390static int fsi_slave_scan(struct fsi_slave *slave)
 391{
 392        uint32_t engine_addr;
 393        uint32_t conf;
 394        int rc, i;
 395
 396        /*
 397         * scan engines
 398         *
 399         * We keep the peek mode and slave engines for the core; so start
 400         * at the third slot in the configuration table. We also need to
 401         * skip the chip ID entry at the start of the address space.
 402         */
 403        engine_addr = engine_page_size * 3;
 404        for (i = 2; i < engine_page_size / sizeof(uint32_t); i++) {
 405                uint8_t slots, version, type, crc;
 406                struct fsi_device *dev;
 407
 408                rc = fsi_slave_read(slave, (i + 1) * sizeof(conf),
 409                                &conf, sizeof(conf));
 410                if (rc) {
 411                        dev_warn(&slave->dev,
 412                                "error reading slave registers\n");
 413                        return -1;
 414                }
 415                conf = be32_to_cpu(conf);
 416
 417                crc = crc4(0, conf, 32);
 418                if (crc) {
 419                        dev_warn(&slave->dev,
 420                                "crc error in slave register at 0x%04x\n",
 421                                i);
 422                        return -1;
 423                }
 424
 425                slots = (conf & FSI_SLAVE_CONF_SLOTS_MASK)
 426                        >> FSI_SLAVE_CONF_SLOTS_SHIFT;
 427                version = (conf & FSI_SLAVE_CONF_VERSION_MASK)
 428                        >> FSI_SLAVE_CONF_VERSION_SHIFT;
 429                type = (conf & FSI_SLAVE_CONF_TYPE_MASK)
 430                        >> FSI_SLAVE_CONF_TYPE_SHIFT;
 431
 432                /*
 433                 * Unused address areas are marked by a zero type value; this
 434                 * skips the defined address areas
 435                 */
 436                if (type != 0 && slots != 0) {
 437
 438                        /* create device */
 439                        dev = fsi_create_device(slave);
 440                        if (!dev)
 441                                return -ENOMEM;
 442
 443                        dev->slave = slave;
 444                        dev->engine_type = type;
 445                        dev->version = version;
 446                        dev->unit = i;
 447                        dev->addr = engine_addr;
 448                        dev->size = slots * engine_page_size;
 449
 450                        dev_dbg(&slave->dev,
 451                        "engine[%i]: type %x, version %x, addr %x size %x\n",
 452                                        dev->unit, dev->engine_type, version,
 453                                        dev->addr, dev->size);
 454
 455                        dev_set_name(&dev->dev, "%02x:%02x:%02x:%02x",
 456                                        slave->master->idx, slave->link,
 457                                        slave->id, i - 2);
 458                        dev->dev.of_node = fsi_device_find_of_node(dev);
 459
 460                        rc = device_register(&dev->dev);
 461                        if (rc) {
 462                                dev_warn(&slave->dev, "add failed: %d\n", rc);
 463                                put_device(&dev->dev);
 464                        }
 465                }
 466
 467                engine_addr += slots * engine_page_size;
 468
 469                if (!(conf & FSI_SLAVE_CONF_NEXT_MASK))
 470                        break;
 471        }
 472
 473        return 0;
 474}
 475
 476static ssize_t fsi_slave_sysfs_raw_read(struct file *file,
 477                struct kobject *kobj, struct bin_attribute *attr, char *buf,
 478                loff_t off, size_t count)
 479{
 480        struct fsi_slave *slave = to_fsi_slave(kobj_to_dev(kobj));
 481        size_t total_len, read_len;
 482        int rc;
 483
 484        if (off < 0)
 485                return -EINVAL;
 486
 487        if (off > 0xffffffff || count > 0xffffffff || off + count > 0xffffffff)
 488                return -EINVAL;
 489
 490        for (total_len = 0; total_len < count; total_len += read_len) {
 491                read_len = min_t(size_t, count, 4);
 492                read_len -= off & 0x3;
 493
 494                rc = fsi_slave_read(slave, off, buf + total_len, read_len);
 495                if (rc)
 496                        return rc;
 497
 498                off += read_len;
 499        }
 500
 501        return count;
 502}
 503
 504static ssize_t fsi_slave_sysfs_raw_write(struct file *file,
 505                struct kobject *kobj, struct bin_attribute *attr,
 506                char *buf, loff_t off, size_t count)
 507{
 508        struct fsi_slave *slave = to_fsi_slave(kobj_to_dev(kobj));
 509        size_t total_len, write_len;
 510        int rc;
 511
 512        if (off < 0)
 513                return -EINVAL;
 514
 515        if (off > 0xffffffff || count > 0xffffffff || off + count > 0xffffffff)
 516                return -EINVAL;
 517
 518        for (total_len = 0; total_len < count; total_len += write_len) {
 519                write_len = min_t(size_t, count, 4);
 520                write_len -= off & 0x3;
 521
 522                rc = fsi_slave_write(slave, off, buf + total_len, write_len);
 523                if (rc)
 524                        return rc;
 525
 526                off += write_len;
 527        }
 528
 529        return count;
 530}
 531
 532static const struct bin_attribute fsi_slave_raw_attr = {
 533        .attr = {
 534                .name = "raw",
 535                .mode = 0600,
 536        },
 537        .size = 0,
 538        .read = fsi_slave_sysfs_raw_read,
 539        .write = fsi_slave_sysfs_raw_write,
 540};
 541
 542static ssize_t fsi_slave_sysfs_term_write(struct file *file,
 543                struct kobject *kobj, struct bin_attribute *attr,
 544                char *buf, loff_t off, size_t count)
 545{
 546        struct fsi_slave *slave = to_fsi_slave(kobj_to_dev(kobj));
 547        struct fsi_master *master = slave->master;
 548
 549        if (!master->term)
 550                return -ENODEV;
 551
 552        master->term(master, slave->link, slave->id);
 553        return count;
 554}
 555
 556static const struct bin_attribute fsi_slave_term_attr = {
 557        .attr = {
 558                .name = "term",
 559                .mode = 0200,
 560        },
 561        .size = 0,
 562        .write = fsi_slave_sysfs_term_write,
 563};
 564
 565/* Encode slave local bus echo delay */
 566static inline uint32_t fsi_smode_echodly(int x)
 567{
 568        return (x & FSI_SMODE_ED_MASK) << FSI_SMODE_ED_SHIFT;
 569}
 570
 571/* Encode slave local bus send delay */
 572static inline uint32_t fsi_smode_senddly(int x)
 573{
 574        return (x & FSI_SMODE_SD_MASK) << FSI_SMODE_SD_SHIFT;
 575}
 576
 577/* Encode slave local bus clock rate ratio */
 578static inline uint32_t fsi_smode_lbcrr(int x)
 579{
 580        return (x & FSI_SMODE_LBCRR_MASK) << FSI_SMODE_LBCRR_SHIFT;
 581}
 582
 583/* Encode slave ID */
 584static inline uint32_t fsi_smode_sid(int x)
 585{
 586        return (x & FSI_SMODE_SID_MASK) << FSI_SMODE_SID_SHIFT;
 587}
 588
 589static uint32_t fsi_slave_smode(int id)
 590{
 591        return FSI_SMODE_WSC | FSI_SMODE_ECRC
 592                | fsi_smode_sid(id)
 593                | fsi_smode_echodly(0xf) | fsi_smode_senddly(0xf)
 594                | fsi_smode_lbcrr(0x8);
 595}
 596
 597static int fsi_slave_set_smode(struct fsi_master *master, int link, int id)
 598{
 599        uint32_t smode;
 600
 601        /* set our smode register with the slave ID field to 0; this enables
 602         * extended slave addressing
 603         */
 604        smode = fsi_slave_smode(id);
 605        smode = cpu_to_be32(smode);
 606
 607        return fsi_master_write(master, link, id, FSI_SLAVE_BASE + FSI_SMODE,
 608                        &smode, sizeof(smode));
 609}
 610
 611static void fsi_slave_release(struct device *dev)
 612{
 613        struct fsi_slave *slave = to_fsi_slave(dev);
 614
 615        of_node_put(dev->of_node);
 616        kfree(slave);
 617}
 618
 619static bool fsi_slave_node_matches(struct device_node *np,
 620                int link, uint8_t id)
 621{
 622        unsigned int len, na, ns;
 623        const __be32 *prop;
 624
 625        na = of_n_addr_cells(np);
 626        ns = of_n_size_cells(np);
 627
 628        /* Ensure we have the correct format for addresses and sizes in
 629         * reg properties
 630         */
 631        if (na != 2 || ns != 0)
 632                return false;
 633
 634        prop = of_get_property(np, "reg", &len);
 635        if (!prop || len != 8)
 636                return false;
 637
 638        return (of_read_number(prop, 1) == link) &&
 639                (of_read_number(prop + 1, 1) == id);
 640}
 641
 642/* Find a matching node for the slave at (link, id). Returns NULL if none
 643 * found, or a matching node with refcount already incremented.
 644 */
 645static struct device_node *fsi_slave_find_of_node(struct fsi_master *master,
 646                int link, uint8_t id)
 647{
 648        struct device_node *parent, *np;
 649
 650        parent = dev_of_node(&master->dev);
 651        if (!parent)
 652                return NULL;
 653
 654        for_each_child_of_node(parent, np) {
 655                if (fsi_slave_node_matches(np, link, id))
 656                        return np;
 657        }
 658
 659        return NULL;
 660}
 661
 662static int fsi_slave_init(struct fsi_master *master, int link, uint8_t id)
 663{
 664        uint32_t chip_id, llmode;
 665        struct fsi_slave *slave;
 666        uint8_t crc;
 667        int rc;
 668
 669        /* Currently, we only support single slaves on a link, and use the
 670         * full 23-bit address range
 671         */
 672        if (id != 0)
 673                return -EINVAL;
 674
 675        rc = fsi_master_read(master, link, id, 0, &chip_id, sizeof(chip_id));
 676        if (rc) {
 677                dev_dbg(&master->dev, "can't read slave %02x:%02x %d\n",
 678                                link, id, rc);
 679                return -ENODEV;
 680        }
 681        chip_id = be32_to_cpu(chip_id);
 682
 683        crc = crc4(0, chip_id, 32);
 684        if (crc) {
 685                dev_warn(&master->dev, "slave %02x:%02x invalid chip id CRC!\n",
 686                                link, id);
 687                return -EIO;
 688        }
 689
 690        dev_dbg(&master->dev, "fsi: found chip %08x at %02x:%02x:%02x\n",
 691                        chip_id, master->idx, link, id);
 692
 693        rc = fsi_slave_set_smode(master, link, id);
 694        if (rc) {
 695                dev_warn(&master->dev,
 696                                "can't set smode on slave:%02x:%02x %d\n",
 697                                link, id, rc);
 698                return -ENODEV;
 699        }
 700
 701        /* If we're behind a master that doesn't provide a self-running bus
 702         * clock, put the slave into async mode
 703         */
 704        if (master->flags & FSI_MASTER_FLAG_SWCLOCK) {
 705                llmode = cpu_to_be32(FSI_LLMODE_ASYNC);
 706                rc = fsi_master_write(master, link, id,
 707                                FSI_SLAVE_BASE + FSI_LLMODE,
 708                                &llmode, sizeof(llmode));
 709                if (rc)
 710                        dev_warn(&master->dev,
 711                                "can't set llmode on slave:%02x:%02x %d\n",
 712                                link, id, rc);
 713        }
 714
 715        /* We can communicate with a slave; create the slave device and
 716         * register.
 717         */
 718        slave = kzalloc(sizeof(*slave), GFP_KERNEL);
 719        if (!slave)
 720                return -ENOMEM;
 721
 722        slave->master = master;
 723        slave->dev.parent = &master->dev;
 724        slave->dev.of_node = fsi_slave_find_of_node(master, link, id);
 725        slave->dev.release = fsi_slave_release;
 726        slave->link = link;
 727        slave->id = id;
 728        slave->size = FSI_SLAVE_SIZE_23b;
 729
 730        dev_set_name(&slave->dev, "slave@%02x:%02x", link, id);
 731        rc = device_register(&slave->dev);
 732        if (rc < 0) {
 733                dev_warn(&master->dev, "failed to create slave device: %d\n",
 734                                rc);
 735                put_device(&slave->dev);
 736                return rc;
 737        }
 738
 739        rc = device_create_bin_file(&slave->dev, &fsi_slave_raw_attr);
 740        if (rc)
 741                dev_warn(&slave->dev, "failed to create raw attr: %d\n", rc);
 742
 743        rc = device_create_bin_file(&slave->dev, &fsi_slave_term_attr);
 744        if (rc)
 745                dev_warn(&slave->dev, "failed to create term attr: %d\n", rc);
 746
 747        rc = fsi_slave_scan(slave);
 748        if (rc)
 749                dev_dbg(&master->dev, "failed during slave scan with: %d\n",
 750                                rc);
 751
 752        return rc;
 753}
 754
 755/* FSI master support */
 756static int fsi_check_access(uint32_t addr, size_t size)
 757{
 758        if (size == 4) {
 759                if (addr & 0x3)
 760                        return -EINVAL;
 761        } else if (size == 2) {
 762                if (addr & 0x1)
 763                        return -EINVAL;
 764        } else if (size != 1)
 765                return -EINVAL;
 766
 767        return 0;
 768}
 769
 770static int fsi_master_read(struct fsi_master *master, int link,
 771                uint8_t slave_id, uint32_t addr, void *val, size_t size)
 772{
 773        int rc;
 774
 775        trace_fsi_master_read(master, link, slave_id, addr, size);
 776
 777        rc = fsi_check_access(addr, size);
 778        if (!rc)
 779                rc = master->read(master, link, slave_id, addr, val, size);
 780
 781        trace_fsi_master_rw_result(master, link, slave_id, addr, size,
 782                        false, val, rc);
 783
 784        return rc;
 785}
 786
 787static int fsi_master_write(struct fsi_master *master, int link,
 788                uint8_t slave_id, uint32_t addr, const void *val, size_t size)
 789{
 790        int rc;
 791
 792        trace_fsi_master_write(master, link, slave_id, addr, size, val);
 793
 794        rc = fsi_check_access(addr, size);
 795        if (!rc)
 796                rc = master->write(master, link, slave_id, addr, val, size);
 797
 798        trace_fsi_master_rw_result(master, link, slave_id, addr, size,
 799                        true, val, rc);
 800
 801        return rc;
 802}
 803
 804static int fsi_master_link_enable(struct fsi_master *master, int link)
 805{
 806        if (master->link_enable)
 807                return master->link_enable(master, link);
 808
 809        return 0;
 810}
 811
 812/*
 813 * Issue a break command on this link
 814 */
 815static int fsi_master_break(struct fsi_master *master, int link)
 816{
 817        trace_fsi_master_break(master, link);
 818
 819        if (master->send_break)
 820                return master->send_break(master, link);
 821
 822        return 0;
 823}
 824
 825static int fsi_master_scan(struct fsi_master *master)
 826{
 827        int link, rc;
 828
 829        for (link = 0; link < master->n_links; link++) {
 830                rc = fsi_master_link_enable(master, link);
 831                if (rc) {
 832                        dev_dbg(&master->dev,
 833                                "enable link %d failed: %d\n", link, rc);
 834                        continue;
 835                }
 836                rc = fsi_master_break(master, link);
 837                if (rc) {
 838                        dev_dbg(&master->dev,
 839                                "break to link %d failed: %d\n", link, rc);
 840                        continue;
 841                }
 842
 843                fsi_slave_init(master, link, 0);
 844        }
 845
 846        return 0;
 847}
 848
 849static int fsi_slave_remove_device(struct device *dev, void *arg)
 850{
 851        device_unregister(dev);
 852        return 0;
 853}
 854
 855static int fsi_master_remove_slave(struct device *dev, void *arg)
 856{
 857        device_for_each_child(dev, NULL, fsi_slave_remove_device);
 858        device_unregister(dev);
 859        return 0;
 860}
 861
 862static void fsi_master_unscan(struct fsi_master *master)
 863{
 864        device_for_each_child(&master->dev, NULL, fsi_master_remove_slave);
 865}
 866
 867int fsi_master_rescan(struct fsi_master *master)
 868{
 869        fsi_master_unscan(master);
 870        return fsi_master_scan(master);
 871}
 872EXPORT_SYMBOL_GPL(fsi_master_rescan);
 873
 874static ssize_t master_rescan_store(struct device *dev,
 875                struct device_attribute *attr, const char *buf, size_t count)
 876{
 877        struct fsi_master *master = to_fsi_master(dev);
 878        int rc;
 879
 880        rc = fsi_master_rescan(master);
 881        if (rc < 0)
 882                return rc;
 883
 884        return count;
 885}
 886
 887static DEVICE_ATTR(rescan, 0200, NULL, master_rescan_store);
 888
 889static ssize_t master_break_store(struct device *dev,
 890                struct device_attribute *attr, const char *buf, size_t count)
 891{
 892        struct fsi_master *master = to_fsi_master(dev);
 893
 894        fsi_master_break(master, 0);
 895
 896        return count;
 897}
 898
 899static DEVICE_ATTR(break, 0200, NULL, master_break_store);
 900
 901int fsi_master_register(struct fsi_master *master)
 902{
 903        int rc;
 904        struct device_node *np;
 905
 906        if (!master)
 907                return -EINVAL;
 908
 909        master->idx = ida_simple_get(&master_ida, 0, INT_MAX, GFP_KERNEL);
 910        dev_set_name(&master->dev, "fsi%d", master->idx);
 911
 912        rc = device_register(&master->dev);
 913        if (rc) {
 914                ida_simple_remove(&master_ida, master->idx);
 915                return rc;
 916        }
 917
 918        rc = device_create_file(&master->dev, &dev_attr_rescan);
 919        if (rc) {
 920                device_unregister(&master->dev);
 921                ida_simple_remove(&master_ida, master->idx);
 922                return rc;
 923        }
 924
 925        rc = device_create_file(&master->dev, &dev_attr_break);
 926        if (rc) {
 927                device_unregister(&master->dev);
 928                ida_simple_remove(&master_ida, master->idx);
 929                return rc;
 930        }
 931
 932        np = dev_of_node(&master->dev);
 933        if (!of_property_read_bool(np, "no-scan-on-init"))
 934                fsi_master_scan(master);
 935
 936        return 0;
 937}
 938EXPORT_SYMBOL_GPL(fsi_master_register);
 939
 940void fsi_master_unregister(struct fsi_master *master)
 941{
 942        if (master->idx >= 0) {
 943                ida_simple_remove(&master_ida, master->idx);
 944                master->idx = -1;
 945        }
 946
 947        fsi_master_unscan(master);
 948        device_unregister(&master->dev);
 949}
 950EXPORT_SYMBOL_GPL(fsi_master_unregister);
 951
 952/* FSI core & Linux bus type definitions */
 953
 954static int fsi_bus_match(struct device *dev, struct device_driver *drv)
 955{
 956        struct fsi_device *fsi_dev = to_fsi_dev(dev);
 957        struct fsi_driver *fsi_drv = to_fsi_drv(drv);
 958        const struct fsi_device_id *id;
 959
 960        if (!fsi_drv->id_table)
 961                return 0;
 962
 963        for (id = fsi_drv->id_table; id->engine_type; id++) {
 964                if (id->engine_type != fsi_dev->engine_type)
 965                        continue;
 966                if (id->version == FSI_VERSION_ANY ||
 967                                id->version == fsi_dev->version)
 968                        return 1;
 969        }
 970
 971        return 0;
 972}
 973
 974int fsi_driver_register(struct fsi_driver *fsi_drv)
 975{
 976        if (!fsi_drv)
 977                return -EINVAL;
 978        if (!fsi_drv->id_table)
 979                return -EINVAL;
 980
 981        return driver_register(&fsi_drv->drv);
 982}
 983EXPORT_SYMBOL_GPL(fsi_driver_register);
 984
 985void fsi_driver_unregister(struct fsi_driver *fsi_drv)
 986{
 987        driver_unregister(&fsi_drv->drv);
 988}
 989EXPORT_SYMBOL_GPL(fsi_driver_unregister);
 990
 991struct bus_type fsi_bus_type = {
 992        .name           = "fsi",
 993        .match          = fsi_bus_match,
 994};
 995EXPORT_SYMBOL_GPL(fsi_bus_type);
 996
 997static int __init fsi_init(void)
 998{
 999        return bus_register(&fsi_bus_type);
1000}
1001postcore_initcall(fsi_init);
1002
1003static void fsi_exit(void)
1004{
1005        bus_unregister(&fsi_bus_type);
1006}
1007module_exit(fsi_exit);
1008module_param(discard_errors, int, 0664);
1009MODULE_LICENSE("GPL");
1010MODULE_PARM_DESC(discard_errors, "Don't invoke error handling on bus accesses");
1011