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This tree shows the new model. It demonstrates the constructor array in use, for devices that are and are not specified in the dts. It introduces a new generic structure, device_id, analogous to device_path, which can describe all the types of device IDs we have. It shows a way to set up arrays of structs, in the dts, for the constructors, so we avoid ldscript hacks. Signed-off-by: Ronald G. Minnich <rminnich@gmail.com> Acked-by: Stefan Reinauer <stepan@coresystems.de> git-svn-id: svn://coreboot.org/repository/LinuxBIOSv3@233 f3766cd6-281f-0410-b1cd-43a5c92072e9
214 lines
6.9 KiB
C
214 lines
6.9 KiB
C
/*
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include <console/console.h>
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#include <device/device.h>
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#include <device/pci.h>
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//#include <part/hard_reset.h>
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/**
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* Read the resources for the root device,
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* that encompass the resources for the entire system.
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* @param root Pointer to the device structure for the system root device
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*/
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void root_dev_read_resources(struct device * root)
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{
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struct resource *resource;
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/* Initialize the system wide io space constraints */
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resource = new_resource(root, 0);
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resource->base = 0x400;
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resource->size = 0;
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resource->align = 0;
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resource->gran = 0;
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resource->limit = 0xffffUL;
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resource->flags = IORESOURCE_IO;
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compute_allocate_resource(&root->link[0], resource,
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IORESOURCE_IO, IORESOURCE_IO);
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/* Initialize the system wide memory resources constraints */
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resource = new_resource(root, 1);
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resource->base = 0;
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resource->size = 0;
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resource->align = 0;
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resource->gran = 0;
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resource->limit = 0xffffffffUL;
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resource->flags = IORESOURCE_MEM;
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compute_allocate_resource(&root->link[0], resource,
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IORESOURCE_MEM, IORESOURCE_MEM);
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}
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/**
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* @brief Write the resources for every device
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*
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* Write the resources for the root device,
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* and every device under it which are all of the devices.
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* @param root Pointer to the device structure for the system root device
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*/
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void root_dev_set_resources(struct device * root)
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{
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struct bus *bus;
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bus = &root->link[0];
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compute_allocate_resource(bus,
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&root->resource[0], IORESOURCE_IO, IORESOURCE_IO);
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compute_allocate_resource(bus,
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&root->resource[1], IORESOURCE_MEM, IORESOURCE_MEM);
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phase4_assign_resources(bus);
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}
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/**
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* @brief Scan devices on static buses.
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*
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* The enumeration of certain buses is purely static. The existence of
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* devices on those buses can be completely determined at compile time
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* and is specified in the config file. Typical examples are the 'PNP'
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* devices on a legacy ISA/LPC bus. There is no need of probing of any kind,
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* the only thing we have to do is to walk through the bus and
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* enable or disable devices as indicated in the config file.
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*
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* On the other hand, some devices are virtual and their existence is
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* artificial. They can not be probed at run time. One example is the
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* debug device. Those virtual devices have to be listed in the config
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* file under some static bus in order to be enumerated at run time.
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*
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* This function is the default scan_bus() method for the root device and
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* LPC bridges.
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*
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* @param bus Pointer to the device structure which the static buses are attached
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* @param max Maximum bus number currently used before scanning.
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* @return Largest bus number used.
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*/
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static int smbus_max = 0;
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unsigned int scan_static_bus(struct device * busdevice, unsigned int max)
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{
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struct device * child;
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unsigned link;
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printk(BIOS_INFO, "%s for %s(%s)\n", __func__, busdevice->dtsname, dev_path(busdevice));
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for(link = 0; link < busdevice->links; link++) {
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/* for smbus bus enumerate */
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child = busdevice->link[link].children;
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if(child && child->path.type == DEVICE_PATH_I2C) {
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busdevice->link[link].secondary = ++smbus_max;
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}
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for(child = busdevice->link[link].children; child; child = child->sibling) {
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if (child->ops && child->ops->phase3_enable_scan) {
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child->ops->phase3_enable_scan(child);
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}
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/* sigh. Have to enable to scan ... */
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if (child->ops && child->ops->phase5_enable_resources) {
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child->ops->phase5_enable_resources(child);
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}
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if (child->path.type == DEVICE_PATH_I2C) {
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printk(BIOS_DEBUG, "smbus: %s(%s)[%d]->",
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child->dtsname, dev_path(child->bus->dev), child->bus->link );
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}
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printk(BIOS_DEBUG, "%s(%s) %s\n",
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child->dtsname, dev_path(child), child->enabled?"enabled": "disabled");
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}
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}
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for(link = 0; link < busdevice->links; link++) {
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for(child = busdevice->link[link].children; child; child = child->sibling) {
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if (!child->ops || !child->ops->phase3_scan)
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continue;
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printk(BIOS_INFO, "%s(%s) scanning...\n", child->dtsname, dev_path(child));
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max = dev_phase3_scan(child, max);
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}
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}
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printk(BIOS_INFO, "%s for %s(%s) done\n", __func__, busdevice->dtsname, dev_path(busdevice));
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return max;
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}
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/**
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* @brief Enable resources for children devices
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*
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* @param dev the device whos children's resources are to be enabled
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*
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* This function is called by the global enable_resource() indirectly via the
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* device_operation::enable_resources() method of devices.
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*
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* Indirect mutual recursion:
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* enable_childrens_resources() -> enable_resources()
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* enable_resources() -> device_operation::enable_resources()
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* device_operation::enable_resources() -> enable_children_resources()
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*/
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void enable_childrens_resources(struct device * dev)
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{
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unsigned link;
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for(link = 0; link < dev->links; link++) {
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struct device * child;
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for(child = dev->link[link].children; child; child = child->sibling) {
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dev_phase5(child);
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}
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}
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}
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void root_dev_enable_resources(struct device * dev)
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{
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enable_childrens_resources(dev);
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}
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/**
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* @brief Scan root bus for generic systems
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*
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* @param root The root device structure
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* @param max The current bus number scanned so far, usually 0x00
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*
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* This function is the default scan_bus() method of the root device.
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*/
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unsigned int root_dev_scan_bus(struct device * root, unsigned int max)
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{
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return scan_static_bus(root, max);
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}
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void root_dev_init(struct device * root)
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{
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}
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void root_dev_reset(struct bus *bus)
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{
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printk(BIOS_INFO, "Reseting board... NOT! Define hard_reset please\n");
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// hard_reset();
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}
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/**
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* @brief Default device operation for root device
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*
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* This is the default device operation for root devices. These operations
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* should be fully usable as is. If you need something else, set up your own ops
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* in (e.g.) the mainboard, and initialize it in the dts in the mainboard directory.
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*
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*/
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struct device_operations default_dev_ops_root = {
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.phase4_read_resources = root_dev_read_resources,
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.phase4_set_resources = root_dev_set_resources,
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.phase5_enable_resources = root_dev_enable_resources,
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.phase6_init = root_dev_init,
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.phase3_scan = root_dev_scan_bus,
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.reset_bus = root_dev_reset,
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};
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/**
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* @brief The root of device tree.
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*
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* This is the root of the device tree. The device tree is defined in the
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* static.c file and is generated by config tool during compile time.
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*/
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extern struct device dev_root;
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