489 lines
13 KiB
C
489 lines
13 KiB
C
/* $NetBSD: fdt_intr.c,v 1.26 2020/03/08 08:25:36 skrll Exp $ */
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/*-
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* Copyright (c) 2015-2018 Jared McNeill <jmcneill@invisible.ca>
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* All rights reserved.
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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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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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* IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
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* BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
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* AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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* OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*/
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#include <sys/cdefs.h>
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__KERNEL_RCSID(0, "$NetBSD: fdt_intr.c,v 1.26 2020/03/08 08:25:36 skrll Exp $");
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#include <sys/param.h>
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#include <sys/atomic.h>
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#include <sys/bus.h>
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#include <sys/kmem.h>
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#include <sys/queue.h>
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#include <sys/mutex.h>
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#include <sys/condvar.h>
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#include <libfdt.h>
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#include <dev/fdt/fdtvar.h>
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#include <dev/fdt/fdt_private.h>
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struct fdtbus_interrupt_controller {
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device_t ic_dev;
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int ic_phandle;
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const struct fdtbus_interrupt_controller_func *ic_funcs;
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LIST_ENTRY(fdtbus_interrupt_controller) ic_next;
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};
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static LIST_HEAD(, fdtbus_interrupt_controller) fdtbus_interrupt_controllers =
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LIST_HEAD_INITIALIZER(fdtbus_interrupt_controllers);
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struct fdtbus_interrupt_cookie {
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struct fdtbus_interrupt_controller *c_ic;
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void *c_ih;
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LIST_ENTRY(fdtbus_interrupt_cookie) c_next;
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uint32_t c_refcnt;
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};
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static LIST_HEAD(, fdtbus_interrupt_cookie) fdtbus_interrupt_cookies =
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LIST_HEAD_INITIALIZER(fdtbus_interrupt_cookies);
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static kmutex_t fdtbus_interrupt_cookie_mutex;
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static kcondvar_t fdtbus_interrupt_cookie_wait;
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static bool fdtbus_interrupt_cookies_wanted;
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static const u_int * get_specifier_by_index(int, int, int *);
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static const u_int * get_specifier_from_map(int, const u_int *, int *);
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void
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fdtbus_intr_init(void)
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{
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mutex_init(&fdtbus_interrupt_cookie_mutex, MUTEX_DEFAULT, IPL_HIGH);
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cv_init(&fdtbus_interrupt_cookie_wait, "fdtintr");
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}
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/*
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* Find the interrupt controller for a given node. This function will either
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* return the phandle of the interrupt controller for this node, or the phandle
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* of a node containing an interrupt-map table that can be used to find the
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* real interrupt controller.
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*/
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static int
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fdtbus_get_interrupt_parent(int phandle)
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{
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int iparent = phandle;
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do {
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/*
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* If the node is an interrupt-controller, we are done. Note that
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* a node cannot be an interrupt-controller for itself, so we skip
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* the leaf node here.
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*/
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if (phandle != iparent && of_hasprop(iparent, "interrupt-controller"))
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return iparent;
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/*
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* If the node has an explicit interrupt-parent, follow the reference.
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*/
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if (of_hasprop(iparent, "interrupt-parent"))
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return fdtbus_get_phandle(iparent, "interrupt-parent");
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/*
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* If the node has an interrupt-map, use it. The caller is responsible
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* for parsing the interrupt-map and finding the real interrupt parent.
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*/
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if (phandle != iparent && of_hasprop(iparent, "interrupt-map"))
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return iparent;
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/*
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* Continue searching up the tree.
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*/
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iparent = OF_parent(iparent);
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} while (iparent > 0);
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return 0;
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}
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static struct fdtbus_interrupt_controller *
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fdtbus_get_interrupt_controller(int phandle)
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{
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struct fdtbus_interrupt_controller * ic;
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LIST_FOREACH(ic, &fdtbus_interrupt_controllers, ic_next) {
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if (ic->ic_phandle == phandle)
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return ic;
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}
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return NULL;
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}
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int
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fdtbus_register_interrupt_controller(device_t dev, int phandle,
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const struct fdtbus_interrupt_controller_func *funcs)
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{
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struct fdtbus_interrupt_controller *ic;
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ic = kmem_alloc(sizeof(*ic), KM_SLEEP);
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ic->ic_dev = dev;
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ic->ic_phandle = phandle;
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ic->ic_funcs = funcs;
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LIST_INSERT_HEAD(&fdtbus_interrupt_controllers, ic, ic_next);
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return 0;
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}
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static struct fdtbus_interrupt_cookie *
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fdtbus_get_interrupt_cookie(void *cookie)
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{
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struct fdtbus_interrupt_cookie *c;
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mutex_enter(&fdtbus_interrupt_cookie_mutex);
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LIST_FOREACH(c, &fdtbus_interrupt_cookies, c_next) {
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if (c->c_ih == cookie) {
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c->c_refcnt++;
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KASSERT(c->c_refcnt > 0);
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break;
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}
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}
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mutex_exit(&fdtbus_interrupt_cookie_mutex);
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return c;
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}
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static void
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fdtbus_put_interrupt_cookie(struct fdtbus_interrupt_cookie *c)
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{
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mutex_enter(&fdtbus_interrupt_cookie_mutex);
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KASSERT(c->c_refcnt > 0);
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c->c_refcnt--;
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if (fdtbus_interrupt_cookies_wanted) {
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fdtbus_interrupt_cookies_wanted = false;
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cv_signal(&fdtbus_interrupt_cookie_wait);
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}
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mutex_exit(&fdtbus_interrupt_cookie_mutex);
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}
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void *
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fdtbus_intr_establish(int phandle, u_int index, int ipl, int flags,
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int (*func)(void *), void *arg)
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{
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const u_int *specifier;
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int ihandle;
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specifier = get_specifier_by_index(phandle, index, &ihandle);
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if (specifier == NULL)
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return NULL;
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return fdtbus_intr_establish_raw(ihandle, specifier, ipl,
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flags, func, arg);
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}
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void *
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fdtbus_intr_establish_byname(int phandle, const char *name, int ipl,
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int flags, int (*func)(void *), void *arg)
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{
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u_int index;
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int err;
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err = fdtbus_get_index(phandle, "interrupt-names", name, &index);
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if (err != 0)
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return NULL;
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return fdtbus_intr_establish(phandle, index, ipl, flags, func, arg);
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}
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void *
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fdtbus_intr_establish_raw(int ihandle, const u_int *specifier, int ipl,
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int flags, int (*func)(void *), void *arg)
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{
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struct fdtbus_interrupt_controller *ic;
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struct fdtbus_interrupt_cookie *c;
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void *ih;
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ic = fdtbus_get_interrupt_controller(ihandle);
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if (ic == NULL) {
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printf("%s: ihandle %d is not a controller\n",__func__,ihandle);
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return NULL;
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}
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c = kmem_zalloc(sizeof(*c), KM_SLEEP);
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c->c_ic = ic;
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mutex_enter(&fdtbus_interrupt_cookie_mutex);
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LIST_INSERT_HEAD(&fdtbus_interrupt_cookies, c, c_next);
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mutex_exit(&fdtbus_interrupt_cookie_mutex);
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/*
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* XXX This leaves a small window where the handler is registered
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* (and thus could be called) before the cookie on the list has a
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* valid lookup key (and thus can be found). This will cause a
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* panic in fdt_intr_mask() if that is called from the handler before
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* this situation is resolved. For now we just cross our fingers
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* and hope that the device won't actually interrupt until we return.
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*/
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ih = ic->ic_funcs->establish(ic->ic_dev, __UNCONST(specifier),
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ipl, flags, func, arg);
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if (ih != NULL) {
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atomic_store_release(&c->c_ih, ih);
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} else {
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mutex_enter(&fdtbus_interrupt_cookie_mutex);
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LIST_REMOVE(c, c_next);
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mutex_exit(&fdtbus_interrupt_cookie_mutex);
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kmem_free(c, sizeof(*c));
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}
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return ih;
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}
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void
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fdtbus_intr_disestablish(int phandle, void *cookie)
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{
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struct fdtbus_interrupt_cookie *c;
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if ((c = fdtbus_get_interrupt_cookie(cookie)) == NULL) {
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panic("%s: interrupt handle not valid", __func__);
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}
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const struct fdtbus_interrupt_controller *ic = c->c_ic;
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ic->ic_funcs->disestablish(ic->ic_dev, cookie);
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/*
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* Wait for any dangling references other than ours to
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* drain away.
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*/
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mutex_enter(&fdtbus_interrupt_cookie_mutex);
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while (c->c_refcnt != 1) {
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KASSERT(c->c_refcnt > 0);
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fdtbus_interrupt_cookies_wanted = true;
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cv_wait(&fdtbus_interrupt_cookie_wait,
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&fdtbus_interrupt_cookie_mutex);
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}
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LIST_REMOVE(c, c_next);
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mutex_exit(&fdtbus_interrupt_cookie_mutex);
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kmem_free(c, sizeof(*c));
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}
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void
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fdtbus_intr_mask(int phandle, void *cookie)
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{
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struct fdtbus_interrupt_cookie *c;
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if ((c = fdtbus_get_interrupt_cookie(cookie)) == NULL) {
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panic("%s: interrupt handle not valid", __func__);
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}
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struct fdtbus_interrupt_controller * const ic = c->c_ic;
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if (ic->ic_funcs->mask == NULL) {
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panic("%s: no 'mask' method for %s", __func__,
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device_xname(ic->ic_dev));
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}
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ic->ic_funcs->mask(ic->ic_dev, cookie);
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fdtbus_put_interrupt_cookie(c);
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}
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void
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fdtbus_intr_unmask(int phandle, void *cookie)
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{
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struct fdtbus_interrupt_cookie *c;
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if ((c = fdtbus_get_interrupt_cookie(cookie)) == NULL) {
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panic("%s: interrupt handle not valid", __func__);
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}
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struct fdtbus_interrupt_controller * const ic = c->c_ic;
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if (ic->ic_funcs->unmask == NULL) {
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panic("%s: no 'unmask' method for %s", __func__,
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device_xname(ic->ic_dev));
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}
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ic->ic_funcs->unmask(ic->ic_dev, cookie);
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fdtbus_put_interrupt_cookie(c);
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}
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bool
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fdtbus_intr_str(int phandle, u_int index, char *buf, size_t buflen)
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{
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const u_int *specifier;
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int ihandle;
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specifier = get_specifier_by_index(phandle, index, &ihandle);
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if (specifier == NULL)
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return false;
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return fdtbus_intr_str_raw(ihandle, specifier, buf, buflen);
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}
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bool
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fdtbus_intr_str_raw(int ihandle, const u_int *specifier, char *buf, size_t buflen)
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{
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struct fdtbus_interrupt_controller *ic;
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ic = fdtbus_get_interrupt_controller(ihandle);
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if (ic == NULL)
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return false;
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return ic->ic_funcs->intrstr(ic->ic_dev, __UNCONST(specifier), buf, buflen);
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}
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static int
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find_address_cells(int phandle)
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{
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uint32_t cells;
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if (of_getprop_uint32(phandle, "#address-cells", &cells) != 0)
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cells = 2;
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return cells;
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}
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static int
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find_interrupt_cells(int phandle)
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{
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uint32_t cells;
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while (phandle > 0) {
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if (of_getprop_uint32(phandle, "#interrupt-cells", &cells) == 0)
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return cells;
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phandle = OF_parent(phandle);
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}
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return 0;
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}
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static const u_int *
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get_specifier_from_map(int phandle, const u_int *interrupt_spec, int *piphandle)
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{
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const u_int *result = NULL;
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int len, resid;
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const u_int *data = fdtbus_get_prop(phandle, "interrupt-map", &len);
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if (data == NULL || len <= 0)
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return NULL;
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resid = len;
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/* child unit address: #address-cells prop of child bus node */
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const int cua_cells = find_address_cells(phandle);
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/* child interrupt specifier: #interrupt-cells of the nexus node */
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const int cis_cells = find_interrupt_cells(phandle);
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/* Offset (in cells) from map entry to child unit address specifier */
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const u_int cua_off = 0;
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/* Offset (in cells) from map entry to child interrupt specifier */
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const u_int cis_off = cua_off + cua_cells;
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/* Offset (in cells) from map entry to interrupt parent phandle */
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const u_int ip_off = cis_off + cis_cells;
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/* Offset (in cells) from map entry to parent unit specifier */
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const u_int pus_off = ip_off + 1;
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const u_int *p = (const u_int *)data;
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while (resid > 0) {
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/* Interrupt parent phandle */
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const u_int iparent = fdtbus_get_phandle_from_native(be32toh(p[ip_off]));
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/* parent unit specifier: #address-cells of the interrupt parent */
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const u_int pus_cells = find_address_cells(iparent);
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/* parent interrupt specifier: #interrupt-cells of the interrupt parent */
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const u_int pis_cells = find_interrupt_cells(iparent);
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/* Offset (in cells) from map entry to parent interrupt specifier */
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const u_int pis_off = pus_off + pus_cells;
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#ifdef FDT_INTR_DEBUG
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printf(" intr map (len %d):", pis_off + pis_cells);
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for (int i = 0; i < pis_off + pis_cells; i++)
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printf(" %08x", p[i]);
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printf("\n");
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#endif
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if (memcmp(&p[cis_off], interrupt_spec, cis_cells * 4) == 0) {
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#ifdef FDT_INTR_DEBUG
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const int slen = pus_cells + pis_cells;
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printf(" intr map match iparent %08x slen %d:", iparent, slen);
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for (int i = 0; i < slen; i++)
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printf(" %08x", p[pus_off + i]);
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printf("\n");
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#endif
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result = &p[pus_off];
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*piphandle = iparent;
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goto done;
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}
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/* Determine the length of the entry and skip that many
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* 32 bit words
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*/
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const u_int reclen = pis_off + pis_cells;
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resid -= reclen * sizeof(u_int);
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p += reclen;
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}
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done:
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return result;
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}
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static const u_int *
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get_specifier_from_extended(int phandle, int pindex, int *piphandle)
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{
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const u_int *result = NULL;
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struct fdt_phandle_data data;
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if (fdtbus_get_phandle_with_data(phandle, "interrupts-extended",
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"#interrupt-cells", pindex, &data) == 0) {
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*piphandle = data.phandle;
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result = data.values;
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}
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return result;
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}
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static const u_int *
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get_specifier_by_index(int phandle, int pindex, int *piphandle)
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{
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const u_int *node_specifier;
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int interrupt_parent, interrupt_cells, len;
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if (of_hasprop(phandle, "interrupts-extended"))
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return get_specifier_from_extended(phandle, pindex, piphandle);
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interrupt_parent = fdtbus_get_interrupt_parent(phandle);
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if (interrupt_parent <= 0)
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return NULL;
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node_specifier = fdtbus_get_prop(phandle, "interrupts", &len);
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if (node_specifier == NULL)
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return NULL;
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interrupt_cells = find_interrupt_cells(interrupt_parent);
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if (interrupt_cells <= 0)
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return NULL;
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const u_int spec_length = len / 4;
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const u_int nintr = spec_length / interrupt_cells;
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if (pindex >= nintr)
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return NULL;
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node_specifier += (interrupt_cells * pindex);
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if (of_hasprop(interrupt_parent, "interrupt-map"))
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return get_specifier_from_map(interrupt_parent, node_specifier, piphandle);
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*piphandle = interrupt_parent;
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return node_specifier;
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}
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