/* The unique hardware address list */ static LIST_HEAD(io_range_list); static DEFINE_MUTEX(io_range_mutex);
/** * logic_pio_register_range - register logical PIO range for a host * @new_range: pointer to the IO range to be registered. * * Returns 0 on success, the error code in case of failure. * If the range already exists, -EEXIST will be returned, which should be * considered a success. * * Register a new IO range node in the IO range list.
*/ int logic_pio_register_range(struct logic_pio_hwaddr *new_range)
{ struct logic_pio_hwaddr *range;
resource_size_t start;
resource_size_t end;
resource_size_t mmio_end = 0;
resource_size_t iio_sz = MMIO_UPPER_LIMIT; int ret = 0;
start = new_range->hw_start;
end = new_range->hw_start + new_range->size;
mutex_lock(&io_range_mutex);
list_for_each_entry(range, &io_range_list, list) { if (range->fwnode == new_range->fwnode) { /* range already there */
ret = -EEXIST; goto end_register;
} if (range->flags == LOGIC_PIO_CPU_MMIO &&
new_range->flags == LOGIC_PIO_CPU_MMIO) { /* for MMIO ranges we need to check for overlap */ if (start >= range->hw_start + range->size ||
end < range->hw_start) {
mmio_end = range->io_start + range->size;
} else {
ret = -EFAULT; goto end_register;
}
} elseif (range->flags == LOGIC_PIO_INDIRECT &&
new_range->flags == LOGIC_PIO_INDIRECT) {
iio_sz += range->size;
}
}
/* range not registered yet, check for available space */ if (new_range->flags == LOGIC_PIO_CPU_MMIO) { if (mmio_end + new_range->size - 1 > MMIO_UPPER_LIMIT) { /* if it's too big check if 64K space can be reserved */ if (mmio_end + SZ_64K - 1 > MMIO_UPPER_LIMIT) {
ret = -E2BIG; goto end_register;
}
new_range->size = SZ_64K;
pr_warn("Requested IO range too big, new size set to 64K\n");
}
new_range->io_start = mmio_end;
} elseif (new_range->flags == LOGIC_PIO_INDIRECT) { if (iio_sz + new_range->size - 1 > IO_SPACE_LIMIT) {
ret = -E2BIG; goto end_register;
}
new_range->io_start = iio_sz;
} else { /* invalid flag */
ret = -EINVAL; goto end_register;
}
/** * logic_pio_unregister_range - unregister a logical PIO range for a host * @range: pointer to the IO range which has been already registered. * * Unregister a previously-registered IO range node.
*/ void logic_pio_unregister_range(struct logic_pio_hwaddr *range)
{
mutex_lock(&io_range_mutex);
list_del_rcu(&range->list);
mutex_unlock(&io_range_mutex);
synchronize_rcu();
}
/** * find_io_range_by_fwnode - find logical PIO range for given FW node * @fwnode: FW node handle associated with logical PIO range * * Returns pointer to node on success, NULL otherwise. * * Traverse the io_range_list to find the registered node for @fwnode.
*/ struct logic_pio_hwaddr *find_io_range_by_fwnode(conststruct fwnode_handle *fwnode)
{ struct logic_pio_hwaddr *range, *found_range = NULL;
/* Return a registered range given an input PIO token */ staticstruct logic_pio_hwaddr *find_io_range(unsignedlong pio)
{ struct logic_pio_hwaddr *range, *found_range = NULL;
if (!found_range)
pr_err("PIO entry token 0x%lx invalid\n", pio);
return found_range;
}
/** * logic_pio_to_hwaddr - translate logical PIO to HW address * @pio: logical PIO value * * Returns HW address if valid, ~0 otherwise. * * Translate the input logical PIO to the corresponding hardware address. * The input PIO should be unique in the whole logical PIO space.
*/
resource_size_t logic_pio_to_hwaddr(unsignedlong pio)
{ struct logic_pio_hwaddr *range;
range = find_io_range(pio); if (range) return range->hw_start + pio - range->io_start;
return (resource_size_t)~0;
}
/** * logic_pio_trans_hwaddr - translate HW address to logical PIO * @fwnode: FW node reference for the host * @addr: Host-relative HW address * @size: size to translate * * Returns Logical PIO value if successful, ~0UL otherwise
*/ unsignedlong logic_pio_trans_hwaddr(conststruct fwnode_handle *fwnode,
resource_size_t addr, resource_size_t size)
{ struct logic_pio_hwaddr *range;
range = find_io_range_by_fwnode(fwnode); if (!range || range->flags == LOGIC_PIO_CPU_MMIO) {
pr_err("IO range not found or invalid\n"); return ~0UL;
} if (range->size < size) {
pr_err("resource size %pa cannot fit in IO range size %pa\n",
&size, &range->size); return ~0UL;
} return addr - range->hw_start + range->io_start;
}
Die Informationen auf dieser Webseite wurden
nach bestem Wissen sorgfältig zusammengestellt. Es wird jedoch weder Vollständigkeit, noch Richtigkeit,
noch Qualität der bereit gestellten Informationen zugesichert.
Bemerkung:
Die farbliche Syntaxdarstellung und die Messung sind noch experimentell.