dm: Provide a function to scan child FDT nodes
At present only root nodes in the device tree are scanned for devices. But some devices can have children. For example a SPI bus may have several children for each of its chip selects. Add a function which scans subnodes and binds devices for each one. This can be used for the root node scan also, so change it. A device can call this function in its bind() or probe() methods to bind its children. Signed-off-by: Simon Glass <sjg@chromium.org>
This commit is contained in:
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0040b94429
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@ -95,9 +95,13 @@ are provided in test/dm. To run them, try:
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You should see something like this:
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You should see something like this:
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<...U-Boot banner...>
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<...U-Boot banner...>
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Running 17 driver model tests
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Running 18 driver model tests
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Test: dm_test_autobind
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Test: dm_test_autobind
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Test: dm_test_autoprobe
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Test: dm_test_autoprobe
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Test: dm_test_bus_children
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Device 'd-test': seq 3 is in use by 'b-test'
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Device 'c-test@0': seq 0 is in use by 'a-test'
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Device 'c-test@1': seq 1 is in use by 'd-test'
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Test: dm_test_children
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Test: dm_test_children
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Test: dm_test_fdt
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Test: dm_test_fdt
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Device 'd-test': seq 3 is in use by 'b-test'
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Device 'd-test': seq 3 is in use by 'b-test'
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@ -80,29 +80,32 @@ int dm_scan_platdata(bool pre_reloc_only)
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}
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}
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#ifdef CONFIG_OF_CONTROL
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#ifdef CONFIG_OF_CONTROL
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int dm_scan_fdt(const void *blob, bool pre_reloc_only)
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int dm_scan_fdt_node(struct udevice *parent, const void *blob, int offset,
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bool pre_reloc_only)
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{
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{
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int offset = 0;
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int ret = 0, err;
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int ret = 0, err;
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int depth = 0;
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do {
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for (offset = fdt_first_subnode(blob, offset);
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offset = fdt_next_node(blob, offset, &depth);
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offset > 0;
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if (offset > 0 && depth == 1) {
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offset = fdt_next_subnode(blob, offset)) {
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if (pre_reloc_only &&
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if (pre_reloc_only &&
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!fdt_getprop(blob, offset, "u-boot,dm-pre-reloc", NULL))
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!fdt_getprop(blob, offset, "u-boot,dm-pre-reloc", NULL))
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continue;
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continue;
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err = lists_bind_fdt(gd->dm_root, blob, offset);
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err = lists_bind_fdt(parent, blob, offset);
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if (err && !ret)
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if (err && !ret)
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ret = err;
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ret = err;
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}
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}
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} while (offset > 0);
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if (ret)
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if (ret)
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dm_warn("Some drivers failed to bind\n");
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dm_warn("Some drivers failed to bind\n");
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return ret;
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return ret;
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}
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}
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int dm_scan_fdt(const void *blob, bool pre_reloc_only)
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{
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return dm_scan_fdt_node(gd->dm_root, blob, 0, pre_reloc_only);
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}
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#endif
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#endif
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int dm_init_and_scan(bool pre_reloc_only)
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int dm_init_and_scan(bool pre_reloc_only)
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@ -45,6 +45,22 @@ int dm_scan_platdata(bool pre_reloc_only);
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*/
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*/
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int dm_scan_fdt(const void *blob, bool pre_reloc_only);
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int dm_scan_fdt(const void *blob, bool pre_reloc_only);
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/**
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* dm_scan_fdt_node() - Scan the device tree and bind drivers for a node
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*
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* This scans the subnodes of a device tree node and and creates a driver
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* for each one.
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*
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* @parent: Parent device for the devices that will be created
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* @blob: Pointer to device tree blob
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* @offset: Offset of node to scan
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* @pre_reloc_only: If true, bind only drivers with the DM_FLAG_PRE_RELOC
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* flag. If false bind all drivers.
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* @return 0 if OK, -ve on error
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*/
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int dm_scan_fdt_node(struct udevice *parent, const void *blob, int offset,
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bool pre_reloc_only);
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/**
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/**
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* dm_init_and_scan() - Initialise Driver Model structures and scan for devices
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* dm_init_and_scan() - Initialise Driver Model structures and scan for devices
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*
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*
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@ -155,6 +155,15 @@ int testfdt_ping(struct udevice *dev, int pingval, int *pingret);
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int dm_check_operations(struct dm_test_state *dms, struct udevice *dev,
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int dm_check_operations(struct dm_test_state *dms, struct udevice *dev,
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uint32_t base, struct dm_test_priv *priv);
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uint32_t base, struct dm_test_priv *priv);
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/**
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* dm_check_devices() - check the devices respond to operations correctly
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*
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* @dms: Overall test state
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* @num_devices: Number of test devices to check
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* @return 0 if OK, -ve on error
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*/
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int dm_check_devices(struct dm_test_state *dms, int num_devices);
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/**
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/**
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* dm_test_main() - Run all the tests
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* dm_test_main() - Run all the tests
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*
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*
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@ -17,6 +17,7 @@ enum uclass_id {
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UCLASS_DEMO,
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UCLASS_DEMO,
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UCLASS_TEST,
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UCLASS_TEST,
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UCLASS_TEST_FDT,
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UCLASS_TEST_FDT,
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UCLASS_TEST_BUS,
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/* U-Boot uclasses start here */
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/* U-Boot uclasses start here */
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UCLASS_GPIO, /* Bank of general-purpose I/O pins */
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UCLASS_GPIO, /* Bank of general-purpose I/O pins */
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@ -5,6 +5,7 @@
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#
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#
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obj-$(CONFIG_CMD_DM) += cmd_dm.o
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obj-$(CONFIG_CMD_DM) += cmd_dm.o
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obj-$(CONFIG_DM_TEST) += bus.o
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obj-$(CONFIG_DM_TEST) += test-driver.o
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obj-$(CONFIG_DM_TEST) += test-driver.o
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obj-$(CONFIG_DM_TEST) += test-fdt.o
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obj-$(CONFIG_DM_TEST) += test-fdt.o
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obj-$(CONFIG_DM_TEST) += test-main.o
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obj-$(CONFIG_DM_TEST) += test-main.o
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63
test/dm/bus.c
Normal file
63
test/dm/bus.c
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@ -0,0 +1,63 @@
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/*
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* Copyright (c) 2014 Google, Inc
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*
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* SPDX-License-Identifier: GPL-2.0+
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*/
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#include <common.h>
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#include <dm.h>
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#include <dm/root.h>
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#include <dm/test.h>
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#include <dm/ut.h>
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#include <dm/util.h>
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DECLARE_GLOBAL_DATA_PTR;
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static int testbus_drv_probe(struct udevice *dev)
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{
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return dm_scan_fdt_node(dev, gd->fdt_blob, dev->of_offset, false);
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}
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static const struct udevice_id testbus_ids[] = {
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{
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.compatible = "denx,u-boot-test-bus",
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.data = DM_TEST_TYPE_FIRST },
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{ }
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};
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U_BOOT_DRIVER(testbus_drv) = {
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.name = "testbus_drv",
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.of_match = testbus_ids,
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.id = UCLASS_TEST_BUS,
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.probe = testbus_drv_probe,
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.priv_auto_alloc_size = sizeof(struct dm_test_priv),
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.platdata_auto_alloc_size = sizeof(struct dm_test_pdata),
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};
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UCLASS_DRIVER(testbus) = {
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.name = "testbus",
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.id = UCLASS_TEST_BUS,
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};
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/* Test that we can probe for children */
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static int dm_test_bus_children(struct dm_test_state *dms)
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{
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int num_devices = 4;
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struct udevice *bus;
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struct uclass *uc;
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ut_assertok(uclass_get(UCLASS_TEST_FDT, &uc));
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ut_asserteq(num_devices, list_count_items(&uc->dev_head));
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/* Probe the bus, which should yield 3 more devices */
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ut_assertok(uclass_get_device(UCLASS_TEST_BUS, 0, &bus));
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num_devices += 3;
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ut_assertok(uclass_get(UCLASS_TEST_FDT, &uc));
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ut_asserteq(num_devices, list_count_items(&uc->dev_head));
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ut_assert(!dm_check_devices(dms, num_devices));
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return 0;
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}
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DM_TEST(dm_test_bus_children, DM_TESTF_SCAN_PDATA | DM_TESTF_SCAN_FDT);
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@ -91,37 +91,17 @@ UCLASS_DRIVER(testfdt) = {
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.id = UCLASS_TEST_FDT,
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.id = UCLASS_TEST_FDT,
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};
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};
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/* Test that FDT-based binding works correctly */
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int dm_check_devices(struct dm_test_state *dms, int num_devices)
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static int dm_test_fdt(struct dm_test_state *dms)
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{
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{
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const int num_drivers = 4;
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struct udevice *dev;
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struct udevice *dev;
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struct uclass *uc;
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int ret;
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int ret;
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int i;
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int i;
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ret = dm_scan_fdt(gd->fdt_blob, false);
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ut_assert(!ret);
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ret = uclass_get(UCLASS_TEST_FDT, &uc);
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ut_assert(!ret);
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/* These are num_drivers compatible root-level device tree nodes */
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ut_asserteq(num_drivers, list_count_items(&uc->dev_head));
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/* Each should have no platdata / priv */
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for (i = 0; i < num_drivers; i++) {
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ret = uclass_find_device(UCLASS_TEST_FDT, i, &dev);
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ut_assert(!ret);
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ut_assert(!dev_get_priv(dev));
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ut_assert(!dev->platdata);
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}
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/*
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/*
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* Now check that the ping adds are what we expect. This is using the
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* Now check that the ping adds are what we expect. This is using the
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* ping-add property in each node.
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* ping-add property in each node.
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*/
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*/
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for (i = 0; i < num_drivers; i++) {
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for (i = 0; i < num_devices; i++) {
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uint32_t base;
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uint32_t base;
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ret = uclass_get_device(UCLASS_TEST_FDT, i, &dev);
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ret = uclass_get_device(UCLASS_TEST_FDT, i, &dev);
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@ -144,6 +124,37 @@ static int dm_test_fdt(struct dm_test_state *dms)
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return 0;
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return 0;
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}
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}
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/* Test that FDT-based binding works correctly */
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static int dm_test_fdt(struct dm_test_state *dms)
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{
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const int num_devices = 4;
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struct udevice *dev;
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struct uclass *uc;
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int ret;
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int i;
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ret = dm_scan_fdt(gd->fdt_blob, false);
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ut_assert(!ret);
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ret = uclass_get(UCLASS_TEST_FDT, &uc);
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ut_assert(!ret);
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/* These are num_devices compatible root-level device tree nodes */
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ut_asserteq(num_devices, list_count_items(&uc->dev_head));
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/* Each should have no platdata / priv */
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for (i = 0; i < num_devices; i++) {
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ret = uclass_find_device(UCLASS_TEST_FDT, i, &dev);
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ut_assert(!ret);
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ut_assert(!dev_get_priv(dev));
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ut_assert(!dev->platdata);
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}
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ut_assertok(dm_check_devices(dms, num_devices));
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return 0;
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}
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DM_TEST(dm_test_fdt, 0);
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DM_TEST(dm_test_fdt, 0);
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static int dm_test_fdt_pre_reloc(struct dm_test_state *dms)
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static int dm_test_fdt_pre_reloc(struct dm_test_state *dms)
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@ -187,7 +198,10 @@ static int dm_test_fdt_uclass_seq(struct dm_test_state *dms)
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ut_asserteq(-ENODEV, uclass_find_device_by_seq(UCLASS_TEST_FDT, 7,
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ut_asserteq(-ENODEV, uclass_find_device_by_seq(UCLASS_TEST_FDT, 7,
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true, &dev));
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true, &dev));
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/* Note that c-test is not probed since it is not a top-level node */
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/*
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* Note that c-test nodes are not probed since it is not a top-level
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* node
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*/
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ut_assertok(uclass_get_device_by_seq(UCLASS_TEST_FDT, 3, &dev));
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ut_assertok(uclass_get_device_by_seq(UCLASS_TEST_FDT, 3, &dev));
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ut_asserteq_str("b-test", dev->name);
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ut_asserteq_str("b-test", dev->name);
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@ -236,12 +250,11 @@ static int dm_test_fdt_offset(struct dm_test_state *dms)
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node, &dev));
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node, &dev));
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/* This is not a top level node so should not be probed */
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/* This is not a top level node so should not be probed */
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node = fdt_path_offset(blob, "/some-bus/c-test");
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node = fdt_path_offset(blob, "/some-bus/c-test@5");
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ut_assert(node > 0);
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ut_assert(node > 0);
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ut_asserteq(-ENODEV, uclass_get_device_by_of_offset(UCLASS_TEST_FDT,
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ut_asserteq(-ENODEV, uclass_get_device_by_of_offset(UCLASS_TEST_FDT,
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node, &dev));
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node, &dev));
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return 0;
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return 0;
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}
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}
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DM_TEST(dm_test_fdt_offset, DM_TESTF_SCAN_PDATA | DM_TESTF_SCAN_FDT);
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DM_TEST(dm_test_fdt_offset, DM_TESTF_SCAN_PDATA | DM_TESTF_SCAN_FDT);
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some-bus {
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some-bus {
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#address-cells = <1>;
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#address-cells = <1>;
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#size-cells = <0>;
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#size-cells = <0>;
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compatible = "denx,u-boot-test-bus";
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reg = <3>;
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reg = <3>;
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ping-expect = <4>;
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ping-expect = <4>;
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ping-add = <4>;
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ping-add = <4>;
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c-test {
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c-test@5 {
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compatible = "denx,u-boot-fdt-test";
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compatible = "denx,u-boot-fdt-test";
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reg = <5>;
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reg = <5>;
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ping-expect = <5>;
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ping-add = <5>;
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ping-add = <5>;
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};
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};
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c-test@0 {
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compatible = "denx,u-boot-fdt-test";
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reg = <0>;
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ping-expect = <6>;
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ping-add = <6>;
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};
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c-test@1 {
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compatible = "denx,u-boot-fdt-test";
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reg = <1>;
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ping-expect = <7>;
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ping-add = <7>;
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};
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};
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};
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d-test {
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d-test {
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Block a user