502 lines
12 KiB
C
502 lines
12 KiB
C
/*-
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* Copyright (c) 2016 Landon Fuller <landonf@FreeBSD.org>
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* Copyright (c) 2017 The FreeBSD Foundation
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* All rights reserved.
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*
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* Portions of this software were developed by Landon Fuller
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* under sponsorship from the FreeBSD Foundation.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer,
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* without modification.
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* 2. Redistributions in binary form must reproduce at minimum a disclaimer
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* similar to the "NO WARRANTY" disclaimer below ("Disclaimer") and any
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* redistribution must be conditioned upon including a substantially
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* similar Disclaimer requirement for further binary redistribution.
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*
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* NO WARRANTY
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF NONINFRINGEMENT, MERCHANTIBILITY
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* AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL
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* THE COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY,
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* OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
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* IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
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* THE POSSIBILITY OF SUCH DAMAGES.
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*/
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#include <sys/cdefs.h>
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__FBSDID("$FreeBSD$");
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/*
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* BHND CFE NVRAM driver.
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*
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* Provides access to device NVRAM via CFE.
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*/
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#include <sys/param.h>
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#include <sys/kernel.h>
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#include <sys/bus.h>
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#include <sys/limits.h>
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#include <sys/malloc.h>
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#include <sys/module.h>
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#include <sys/systm.h>
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#include <machine/bus.h>
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#include <sys/rman.h>
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#include <machine/resource.h>
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#include <dev/bhnd/bhnd.h>
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#include <dev/cfe/cfe_api.h>
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#include <dev/cfe/cfe_error.h>
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#include <dev/cfe/cfe_ioctl.h>
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#include "bhnd_nvram_if.h"
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#include "bcm_machdep.h"
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#include "bcm_nvram_cfevar.h"
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BHND_NVRAM_IOPS_DEFN(iocfe)
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#define IOCFE_LOG(_io, _fmt, ...) \
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printf("%s/%s: " _fmt, __FUNCTION__, (_io)->dname, ##__VA_ARGS__)
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static int bcm_nvram_iocfe_init(struct bcm_nvram_iocfe *iocfe,
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char *dname);
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/** Known CFE NVRAM device names, in probe order. */
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static char *nvram_cfe_devs[] = {
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"nflash0.nvram", /* NAND */
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"nflash1.nvram",
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"flash0.nvram",
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"flash1.nvram",
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};
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/** Supported CFE NVRAM formats, in probe order. */
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static bhnd_nvram_data_class * const nvram_cfe_fmts[] = {
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&bhnd_nvram_bcm_class,
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&bhnd_nvram_tlv_class
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};
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static int
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bhnd_nvram_cfe_probe(device_t dev)
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{
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struct bcm_platform *bp;
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/* Fetch platform NVRAM I/O context */
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bp = bcm_get_platform();
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if (bp->nvram_io == NULL)
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return (ENXIO);
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KASSERT(bp->nvram_cls != NULL, ("missing NVRAM class"));
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/* Set the device description */
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device_set_desc(dev, bhnd_nvram_data_class_desc(bp->nvram_cls));
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/* Refuse wildcard attachments */
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return (BUS_PROBE_NOWILDCARD);
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}
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static int
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bhnd_nvram_cfe_attach(device_t dev)
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{
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struct bcm_platform *bp;
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struct bhnd_nvram_cfe_softc *sc;
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int error;
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bp = bcm_get_platform();
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KASSERT(bp->nvram_io != NULL, ("missing NVRAM I/O context"));
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KASSERT(bp->nvram_cls != NULL, ("missing NVRAM class"));
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sc = device_get_softc(dev);
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sc->dev = dev;
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error = bhnd_nvram_store_parse_new(&sc->store, bp->nvram_io,
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bp->nvram_cls);
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if (error)
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return (error);
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error = bhnd_service_registry_add(&bp->services, dev,
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BHND_SERVICE_NVRAM, 0);
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if (error) {
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bhnd_nvram_store_free(sc->store);
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return (error);
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}
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return (error);
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}
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static int
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bhnd_nvram_cfe_resume(device_t dev)
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{
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return (0);
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}
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static int
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bhnd_nvram_cfe_suspend(device_t dev)
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{
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return (0);
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}
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static int
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bhnd_nvram_cfe_detach(device_t dev)
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{
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struct bcm_platform *bp;
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struct bhnd_nvram_cfe_softc *sc;
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int error;
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bp = bcm_get_platform();
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sc = device_get_softc(dev);
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error = bhnd_service_registry_remove(&bp->services, dev,
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BHND_SERVICE_ANY);
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if (error)
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return (error);
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bhnd_nvram_store_free(sc->store);
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return (0);
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}
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static int
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bhnd_nvram_cfe_getvar(device_t dev, const char *name, void *buf, size_t *len,
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bhnd_nvram_type type)
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{
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struct bhnd_nvram_cfe_softc *sc = device_get_softc(dev);
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return (bhnd_nvram_store_getvar(sc->store, name, buf, len, type));
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}
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static int
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bhnd_nvram_cfe_setvar(device_t dev, const char *name, const void *buf,
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size_t len, bhnd_nvram_type type)
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{
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struct bhnd_nvram_cfe_softc *sc = device_get_softc(dev);
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return (bhnd_nvram_store_setvar(sc->store, name, buf, len, type));
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}
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/**
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* Find, open, identify, and initialize an I/O context mapping the CFE NVRAM
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* device.
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*
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* @param[out] iocfe On success, an I/O context mapping the CFE NVRAM
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* device.
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* @param[out] cls On success, the identified NVRAM data format
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* class.
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*
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* @retval 0 success. the caller inherits ownership of @p iocfe.
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* @retval non-zero if no usable CFE NVRAM device can be found, a standard
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* unix error will be returned.
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*/
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int
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bcm_nvram_find_cfedev(struct bcm_nvram_iocfe *iocfe,
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bhnd_nvram_data_class **cls)
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{
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char *dname;
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int devinfo;
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int error, result;
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for (u_int i = 0; i < nitems(nvram_cfe_fmts); i++) {
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*cls = nvram_cfe_fmts[i];
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for (u_int j = 0; j < nitems(nvram_cfe_devs); j++) {
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dname = nvram_cfe_devs[j];
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/* Does the device exist? */
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if ((devinfo = cfe_getdevinfo(dname)) < 0) {
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if (devinfo != CFE_ERR_DEVNOTFOUND) {
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BCM_ERR("cfe_getdevinfo(%s) failed: "
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"%d\n", dname, devinfo);
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}
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continue;
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}
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/* Open for reading */
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if ((error = bcm_nvram_iocfe_init(iocfe, dname)))
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continue;
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/* Probe */
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result = bhnd_nvram_data_probe(*cls, &iocfe->io);
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if (result <= 0) {
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/* Found a supporting NVRAM data class */
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return (0);
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}
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/* Keep searching */
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bhnd_nvram_io_free(&iocfe->io);
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}
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}
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return (ENODEV);
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}
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/**
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* Initialize a new CFE device-backed I/O context.
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*
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* The caller is responsible for releasing all resources held by the returned
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* I/O context via bhnd_nvram_io_free().
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*
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* @param[out] io On success, will be initialized as an I/O context for
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* CFE device @p dname.
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* @param dname The name of the CFE device to be opened for reading.
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*
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* @retval 0 success.
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* @retval non-zero if opening @p dname otherwise fails, a standard unix
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* error will be returned.
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*/
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static int
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bcm_nvram_iocfe_init(struct bcm_nvram_iocfe *iocfe, char *dname)
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{
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nvram_info_t nvram_info;
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int cerr, devinfo, dtype, rlen;
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int64_t nv_offset;
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u_int nv_size;
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bool req_blk_erase;
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int error;
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iocfe->io.iops = &bhnd_nvram_iocfe_ops;
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iocfe->dname = dname;
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/* Try to open the device */
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iocfe->fd = cfe_open(dname);
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if (iocfe->fd <= 0) {
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IOCFE_LOG(iocfe, "cfe_open() failed: %d\n", iocfe->fd);
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return (ENXIO);
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}
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/* Try to fetch device info */
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if ((devinfo = cfe_getdevinfo(iocfe->dname)) < 0) {
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IOCFE_LOG(iocfe, "cfe_getdevinfo() failed: %d\n", devinfo);
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error = ENXIO;
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goto failed;
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}
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/* Verify device type */
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dtype = devinfo & CFE_DEV_MASK;
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switch (dtype) {
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case CFE_DEV_FLASH:
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case CFE_DEV_NVRAM:
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/* Valid device type */
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break;
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default:
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IOCFE_LOG(iocfe, "unknown device type: %d\n", dtype);
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error = ENXIO;
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goto failed;
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}
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/* Try to fetch nvram info from CFE */
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cerr = cfe_ioctl(iocfe->fd, IOCTL_NVRAM_GETINFO,
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(unsigned char *)&nvram_info, sizeof(nvram_info), &rlen, 0);
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if (cerr == CFE_OK) {
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/* Sanity check the result; must not be a negative integer */
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if (nvram_info.nvram_size < 0 ||
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nvram_info.nvram_offset < 0)
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{
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IOCFE_LOG(iocfe, "invalid NVRAM layout (%d/%d)\n",
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nvram_info.nvram_size, nvram_info.nvram_offset);
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error = ENXIO;
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goto failed;
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}
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nv_offset = nvram_info.nvram_offset;
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nv_size = nvram_info.nvram_size;
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req_blk_erase = (nvram_info.nvram_eraseflg != 0);
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} else if (cerr != CFE_OK && cerr != CFE_ERR_INV_COMMAND) {
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IOCFE_LOG(iocfe, "IOCTL_NVRAM_GETINFO failed: %d\n", cerr);
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error = ENXIO;
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goto failed;
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}
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/* Fall back on flash info.
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*
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* This is known to be required on the Asus RT-N53 (CFE 5.70.55.33,
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* BBP 1.0.37, BCM5358UB0), where IOCTL_NVRAM_GETINFO returns
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* CFE_ERR_INV_COMMAND.
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*/
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if (cerr == CFE_ERR_INV_COMMAND) {
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flash_info_t fi;
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cerr = cfe_ioctl(iocfe->fd, IOCTL_FLASH_GETINFO,
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(unsigned char *)&fi, sizeof(fi), &rlen, 0);
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if (cerr != CFE_OK) {
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IOCFE_LOG(iocfe, "IOCTL_FLASH_GETINFO failed %d\n",
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cerr);
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error = ENXIO;
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goto failed;
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}
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nv_offset = 0x0;
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nv_size = fi.flash_size;
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req_blk_erase = !(fi.flash_flags & FLASH_FLAG_NOERASE);
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}
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/* Verify that the full NVRAM layout can be represented via size_t */
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if (nv_size > SIZE_MAX || SIZE_MAX - nv_size < nv_offset) {
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IOCFE_LOG(iocfe, "invalid NVRAM layout (%#x/%#jx)\n",
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nv_size, (intmax_t)nv_offset);
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error = ENXIO;
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goto failed;
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}
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iocfe->offset = nv_offset;
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iocfe->size = nv_size;
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iocfe->req_blk_erase = req_blk_erase;
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return (CFE_OK);
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failed:
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if (iocfe->fd >= 0)
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cfe_close(iocfe->fd);
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return (error);
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}
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static void
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bhnd_nvram_iocfe_free(struct bhnd_nvram_io *io)
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{
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struct bcm_nvram_iocfe *iocfe = (struct bcm_nvram_iocfe *)io;
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/* CFE I/O instances are statically allocated; we do not need to free
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* the instance itself */
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cfe_close(iocfe->fd);
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}
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static size_t
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bhnd_nvram_iocfe_getsize(struct bhnd_nvram_io *io)
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{
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struct bcm_nvram_iocfe *iocfe = (struct bcm_nvram_iocfe *)io;
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return (iocfe->size);
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}
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static int
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bhnd_nvram_iocfe_setsize(struct bhnd_nvram_io *io, size_t size)
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{
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/* unsupported */
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return (ENODEV);
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}
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static int
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bhnd_nvram_iocfe_read_ptr(struct bhnd_nvram_io *io, size_t offset,
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const void **ptr, size_t nbytes, size_t *navail)
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{
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/* unsupported */
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return (ENODEV);
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}
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static int
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bhnd_nvram_iocfe_write_ptr(struct bhnd_nvram_io *io, size_t offset,
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void **ptr, size_t nbytes, size_t *navail)
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{
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/* unsupported */
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return (ENODEV);
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}
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static int
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bhnd_nvram_iocfe_write(struct bhnd_nvram_io *io, size_t offset, void *buffer,
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size_t nbytes)
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{
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/* unsupported */
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return (ENODEV);
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}
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static int
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bhnd_nvram_iocfe_read(struct bhnd_nvram_io *io, size_t offset, void *buffer,
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size_t nbytes)
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{
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struct bcm_nvram_iocfe *iocfe;
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size_t remain;
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int64_t cfe_offset;
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int nr, nreq;
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iocfe = (struct bcm_nvram_iocfe *)io;
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/* Determine (and validate) the base CFE offset */
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#if (SIZE_MAX > INT64_MAX)
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if (iocfe->offset > INT64_MAX || offset > INT64_MAX)
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return (ENXIO);
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#endif
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if (INT64_MAX - offset < iocfe->offset)
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return (ENXIO);
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cfe_offset = iocfe->offset + offset;
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/* Verify that cfe_offset + nbytes is representable */
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if (INT64_MAX - cfe_offset < nbytes)
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return (ENXIO);
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/* Perform the read */
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for (remain = nbytes; remain > 0;) {
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void *p;
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size_t nread;
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int64_t cfe_noff;
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nread = (nbytes - remain);
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cfe_noff = cfe_offset + nread;
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p = ((uint8_t *)buffer + nread);
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nreq = ummin(INT_MAX, remain);
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nr = cfe_readblk(iocfe->fd, cfe_noff, p, nreq);
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if (nr < 0) {
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IOCFE_LOG(iocfe, "cfe_readblk() failed: %d\n", nr);
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return (ENXIO);
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}
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/* Check for unexpected short read */
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if (nr == 0 && remain > 0) {
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/* If the request fits entirely within the CFE
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* device range, we shouldn't hit EOF */
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if (remain < iocfe->size &&
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iocfe->size - remain > offset)
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{
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IOCFE_LOG(iocfe, "cfe_readblk() returned "
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"unexpected short read (%d/%d)\n", nr,
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nreq);
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return (ENXIO);
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}
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}
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if (nr == 0)
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break;
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remain -= nr;
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}
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/* Check for short read */
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if (remain > 0)
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return (ENXIO);
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return (0);
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}
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static device_method_t bhnd_nvram_cfe_methods[] = {
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/* Device interface */
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DEVMETHOD(device_probe, bhnd_nvram_cfe_probe),
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DEVMETHOD(device_attach, bhnd_nvram_cfe_attach),
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DEVMETHOD(device_resume, bhnd_nvram_cfe_resume),
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DEVMETHOD(device_suspend, bhnd_nvram_cfe_suspend),
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DEVMETHOD(device_detach, bhnd_nvram_cfe_detach),
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/* NVRAM interface */
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DEVMETHOD(bhnd_nvram_getvar, bhnd_nvram_cfe_getvar),
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DEVMETHOD(bhnd_nvram_setvar, bhnd_nvram_cfe_setvar),
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DEVMETHOD_END
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};
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DEFINE_CLASS_0(bhnd_nvram, bhnd_nvram_cfe, bhnd_nvram_cfe_methods,
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sizeof(struct bhnd_nvram_cfe_softc));
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EARLY_DRIVER_MODULE(bhnd_nvram_cfe, nexus, bhnd_nvram_cfe,
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bhnd_nvram_devclass, NULL, NULL, BUS_PASS_BUS + BUS_PASS_ORDER_EARLY);
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