xref: /openbmc/u-boot/include/fdtdec.h (revision 5be93569)
1 /*
2  * Copyright (c) 2011 The Chromium OS Authors.
3  * SPDX-License-Identifier:	GPL-2.0+
4  */
5 
6 #ifndef __fdtdec_h
7 #define __fdtdec_h
8 
9 /*
10  * This file contains convenience functions for decoding useful and
11  * enlightening information from FDTs. It is intended to be used by device
12  * drivers and board-specific code within U-Boot. It aims to reduce the
13  * amount of FDT munging required within U-Boot itself, so that driver code
14  * changes to support FDT are minimized.
15  */
16 
17 #include <libfdt.h>
18 #include <pci.h>
19 
20 /*
21  * A typedef for a physical address. Note that fdt data is always big
22  * endian even on a litle endian machine.
23  */
24 typedef phys_addr_t fdt_addr_t;
25 typedef phys_size_t fdt_size_t;
26 #ifdef CONFIG_PHYS_64BIT
27 #define FDT_ADDR_T_NONE (-1ULL)
28 #define fdt_addr_to_cpu(reg) be64_to_cpu(reg)
29 #define fdt_size_to_cpu(reg) be64_to_cpu(reg)
30 #else
31 #define FDT_ADDR_T_NONE (-1U)
32 #define fdt_addr_to_cpu(reg) be32_to_cpu(reg)
33 #define fdt_size_to_cpu(reg) be32_to_cpu(reg)
34 #endif
35 
36 /* Information obtained about memory from the FDT */
37 struct fdt_memory {
38 	fdt_addr_t start;
39 	fdt_addr_t end;
40 };
41 
42 #ifdef CONFIG_SPL_BUILD
43 #define SPL_BUILD	1
44 #else
45 #define SPL_BUILD	0
46 #endif
47 
48 /*
49  * Information about a resource. start is the first address of the resource
50  * and end is the last address (inclusive). The length of the resource will
51  * be equal to: end - start + 1.
52  */
53 struct fdt_resource {
54 	fdt_addr_t start;
55 	fdt_addr_t end;
56 };
57 
58 enum fdt_pci_space {
59 	FDT_PCI_SPACE_CONFIG = 0,
60 	FDT_PCI_SPACE_IO = 0x01000000,
61 	FDT_PCI_SPACE_MEM32 = 0x02000000,
62 	FDT_PCI_SPACE_MEM64 = 0x03000000,
63 	FDT_PCI_SPACE_MEM32_PREF = 0x42000000,
64 	FDT_PCI_SPACE_MEM64_PREF = 0x43000000,
65 };
66 
67 #define FDT_PCI_ADDR_CELLS	3
68 #define FDT_PCI_SIZE_CELLS	2
69 #define FDT_PCI_REG_SIZE	\
70 	((FDT_PCI_ADDR_CELLS + FDT_PCI_SIZE_CELLS) * sizeof(u32))
71 
72 /*
73  * The Open Firmware spec defines PCI physical address as follows:
74  *
75  *          bits# 31 .... 24 23 .... 16 15 .... 08 07 .... 00
76  *
77  * phys.hi  cell:  npt000ss   bbbbbbbb   dddddfff   rrrrrrrr
78  * phys.mid cell:  hhhhhhhh   hhhhhhhh   hhhhhhhh   hhhhhhhh
79  * phys.lo  cell:  llllllll   llllllll   llllllll   llllllll
80  *
81  * where:
82  *
83  * n:        is 0 if the address is relocatable, 1 otherwise
84  * p:        is 1 if addressable region is prefetchable, 0 otherwise
85  * t:        is 1 if the address is aliased (for non-relocatable I/O) below 1MB
86  *           (for Memory), or below 64KB (for relocatable I/O)
87  * ss:       is the space code, denoting the address space
88  * bbbbbbbb: is the 8-bit Bus Number
89  * ddddd:    is the 5-bit Device Number
90  * fff:      is the 3-bit Function Number
91  * rrrrrrrr: is the 8-bit Register Number
92  * hhhhhhhh: is a 32-bit unsigned number
93  * llllllll: is a 32-bit unsigned number
94  */
95 struct fdt_pci_addr {
96 	u32	phys_hi;
97 	u32	phys_mid;
98 	u32	phys_lo;
99 };
100 
101 /**
102  * Compute the size of a resource.
103  *
104  * @param res	the resource to operate on
105  * @return the size of the resource
106  */
107 static inline fdt_size_t fdt_resource_size(const struct fdt_resource *res)
108 {
109 	return res->end - res->start + 1;
110 }
111 
112 /**
113  * Compat types that we know about and for which we might have drivers.
114  * Each is named COMPAT_<dir>_<filename> where <dir> is the directory
115  * within drivers.
116  */
117 enum fdt_compat_id {
118 	COMPAT_UNKNOWN,
119 	COMPAT_NVIDIA_TEGRA20_EMC,	/* Tegra20 memory controller */
120 	COMPAT_NVIDIA_TEGRA20_EMC_TABLE, /* Tegra20 memory timing table */
121 	COMPAT_NVIDIA_TEGRA20_NAND,	/* Tegra2 NAND controller */
122 	COMPAT_NVIDIA_TEGRA20_PWM,	/* Tegra 2 PWM controller */
123 	COMPAT_NVIDIA_TEGRA124_DC,	/* Tegra 124 Display controller */
124 	COMPAT_NVIDIA_TEGRA124_SOR,	/* Tegra 124 Serial Output Resource */
125 	COMPAT_NVIDIA_TEGRA124_PMC,	/* Tegra 124 power mgmt controller */
126 	COMPAT_NVIDIA_TEGRA20_DC,	/* Tegra 2 Display controller */
127 	COMPAT_NVIDIA_TEGRA210_SDMMC,	/* Tegra210 SDMMC controller */
128 	COMPAT_NVIDIA_TEGRA124_SDMMC,	/* Tegra124 SDMMC controller */
129 	COMPAT_NVIDIA_TEGRA30_SDMMC,	/* Tegra30 SDMMC controller */
130 	COMPAT_NVIDIA_TEGRA20_SDMMC,	/* Tegra20 SDMMC controller */
131 	COMPAT_NVIDIA_TEGRA124_XUSB_PADCTL,
132 					/* Tegra124 XUSB pad controller */
133 	COMPAT_NVIDIA_TEGRA210_XUSB_PADCTL,
134 					/* Tegra210 XUSB pad controller */
135 	COMPAT_SMSC_LAN9215,		/* SMSC 10/100 Ethernet LAN9215 */
136 	COMPAT_SAMSUNG_EXYNOS5_SROMC,	/* Exynos5 SROMC */
137 	COMPAT_SAMSUNG_S3C2440_I2C,	/* Exynos I2C Controller */
138 	COMPAT_SAMSUNG_EXYNOS5_SOUND,	/* Exynos Sound */
139 	COMPAT_WOLFSON_WM8994_CODEC,	/* Wolfson WM8994 Sound Codec */
140 	COMPAT_GOOGLE_CROS_EC_KEYB,	/* Google CROS_EC Keyboard */
141 	COMPAT_SAMSUNG_EXYNOS_USB_PHY,	/* Exynos phy controller for usb2.0 */
142 	COMPAT_SAMSUNG_EXYNOS5_USB3_PHY,/* Exynos phy controller for usb3.0 */
143 	COMPAT_SAMSUNG_EXYNOS_TMU,	/* Exynos TMU */
144 	COMPAT_SAMSUNG_EXYNOS_FIMD,	/* Exynos Display controller */
145 	COMPAT_SAMSUNG_EXYNOS_MIPI_DSI,	/* Exynos mipi dsi */
146 	COMPAT_SAMSUNG_EXYNOS5_DP,	/* Exynos Display port controller */
147 	COMPAT_SAMSUNG_EXYNOS_DWMMC,	/* Exynos DWMMC controller */
148 	COMPAT_SAMSUNG_EXYNOS_MMC,	/* Exynos MMC controller */
149 	COMPAT_SAMSUNG_EXYNOS_SERIAL,	/* Exynos UART */
150 	COMPAT_MAXIM_MAX77686_PMIC,	/* MAX77686 PMIC */
151 	COMPAT_GENERIC_SPI_FLASH,	/* Generic SPI Flash chip */
152 	COMPAT_MAXIM_98095_CODEC,	/* MAX98095 Codec */
153 	COMPAT_SAMSUNG_EXYNOS5_I2C,	/* Exynos5 High Speed I2C Controller */
154 	COMPAT_SANDBOX_LCD_SDL,		/* Sandbox LCD emulation with SDL */
155 	COMPAT_SAMSUNG_EXYNOS_SYSMMU,	/* Exynos sysmmu */
156 	COMPAT_INTEL_MICROCODE,		/* Intel microcode update */
157 	COMPAT_MEMORY_SPD,		/* Memory SPD information */
158 	COMPAT_INTEL_PANTHERPOINT_AHCI,	/* Intel Pantherpoint AHCI */
159 	COMPAT_INTEL_MODEL_206AX,	/* Intel Model 206AX CPU */
160 	COMPAT_INTEL_GMA,		/* Intel Graphics Media Accelerator */
161 	COMPAT_AMS_AS3722,		/* AMS AS3722 PMIC */
162 	COMPAT_INTEL_ICH_SPI,		/* Intel ICH7/9 SPI controller */
163 	COMPAT_INTEL_QRK_MRC,		/* Intel Quark MRC */
164 	COMPAT_INTEL_X86_PINCTRL,	/* Intel ICH7/9 pin control */
165 	COMPAT_SOCIONEXT_XHCI,		/* Socionext UniPhier xHCI */
166 	COMPAT_INTEL_PCH,		/* Intel PCH */
167 	COMPAT_INTEL_IRQ_ROUTER,	/* Intel Interrupt Router */
168 	COMPAT_ALTERA_SOCFPGA_DWMAC,	/* SoCFPGA Ethernet controller */
169 	COMPAT_ALTERA_SOCFPGA_DWMMC,	/* SoCFPGA DWMMC controller */
170 	COMPAT_INTEL_BAYTRAIL_FSP,	/* Intel Bay Trail FSP */
171 	COMPAT_INTEL_BAYTRAIL_FSP_MDP,	/* Intel FSP memory-down params */
172 
173 	COMPAT_COUNT,
174 };
175 
176 #define MAX_PHANDLE_ARGS 16
177 struct fdtdec_phandle_args {
178 	int node;
179 	int args_count;
180 	uint32_t args[MAX_PHANDLE_ARGS];
181 };
182 
183 /**
184  * fdtdec_parse_phandle_with_args() - Find a node pointed by phandle in a list
185  *
186  * This function is useful to parse lists of phandles and their arguments.
187  *
188  * Example:
189  *
190  * phandle1: node1 {
191  *	#list-cells = <2>;
192  * }
193  *
194  * phandle2: node2 {
195  *	#list-cells = <1>;
196  * }
197  *
198  * node3 {
199  *	list = <&phandle1 1 2 &phandle2 3>;
200  * }
201  *
202  * To get a device_node of the `node2' node you may call this:
203  * fdtdec_parse_phandle_with_args(blob, node3, "list", "#list-cells", 0, 1,
204  *				  &args);
205  *
206  * (This function is a modified version of __of_parse_phandle_with_args() from
207  * Linux 3.18)
208  *
209  * @blob:	Pointer to device tree
210  * @src_node:	Offset of device tree node containing a list
211  * @list_name:	property name that contains a list
212  * @cells_name:	property name that specifies the phandles' arguments count,
213  *		or NULL to use @cells_count
214  * @cells_count: Cell count to use if @cells_name is NULL
215  * @index:	index of a phandle to parse out
216  * @out_args:	optional pointer to output arguments structure (will be filled)
217  * @return 0 on success (with @out_args filled out if not NULL), -ENOENT if
218  *	@list_name does not exist, a phandle was not found, @cells_name
219  *	could not be found, the arguments were truncated or there were too
220  *	many arguments.
221  *
222  */
223 int fdtdec_parse_phandle_with_args(const void *blob, int src_node,
224 				   const char *list_name,
225 				   const char *cells_name,
226 				   int cell_count, int index,
227 				   struct fdtdec_phandle_args *out_args);
228 
229 /**
230  * Find the next numbered alias for a peripheral. This is used to enumerate
231  * all the peripherals of a certain type.
232  *
233  * Do the first call with *upto = 0. Assuming /aliases/<name>0 exists then
234  * this function will return a pointer to the node the alias points to, and
235  * then update *upto to 1. Next time you call this function, the next node
236  * will be returned.
237  *
238  * All nodes returned will match the compatible ID, as it is assumed that
239  * all peripherals use the same driver.
240  *
241  * @param blob		FDT blob to use
242  * @param name		Root name of alias to search for
243  * @param id		Compatible ID to look for
244  * @return offset of next compatible node, or -FDT_ERR_NOTFOUND if no more
245  */
246 int fdtdec_next_alias(const void *blob, const char *name,
247 		enum fdt_compat_id id, int *upto);
248 
249 /**
250  * Find the compatible ID for a given node.
251  *
252  * Generally each node has at least one compatible string attached to it.
253  * This function looks through our list of known compatible strings and
254  * returns the corresponding ID which matches the compatible string.
255  *
256  * @param blob		FDT blob to use
257  * @param node		Node containing compatible string to find
258  * @return compatible ID, or COMPAT_UNKNOWN if we cannot find a match
259  */
260 enum fdt_compat_id fdtdec_lookup(const void *blob, int node);
261 
262 /**
263  * Find the next compatible node for a peripheral.
264  *
265  * Do the first call with node = 0. This function will return a pointer to
266  * the next compatible node. Next time you call this function, pass the
267  * value returned, and the next node will be provided.
268  *
269  * @param blob		FDT blob to use
270  * @param node		Start node for search
271  * @param id		Compatible ID to look for (enum fdt_compat_id)
272  * @return offset of next compatible node, or -FDT_ERR_NOTFOUND if no more
273  */
274 int fdtdec_next_compatible(const void *blob, int node,
275 		enum fdt_compat_id id);
276 
277 /**
278  * Find the next compatible subnode for a peripheral.
279  *
280  * Do the first call with node set to the parent and depth = 0. This
281  * function will return the offset of the next compatible node. Next time
282  * you call this function, pass the node value returned last time, with
283  * depth unchanged, and the next node will be provided.
284  *
285  * @param blob		FDT blob to use
286  * @param node		Start node for search
287  * @param id		Compatible ID to look for (enum fdt_compat_id)
288  * @param depthp	Current depth (set to 0 before first call)
289  * @return offset of next compatible node, or -FDT_ERR_NOTFOUND if no more
290  */
291 int fdtdec_next_compatible_subnode(const void *blob, int node,
292 		enum fdt_compat_id id, int *depthp);
293 
294 /*
295  * Look up an address property in a node and return the parsed address, and
296  * optionally the parsed size.
297  *
298  * This variant assumes a known and fixed number of cells are used to
299  * represent the address and size.
300  *
301  * You probably don't want to use this function directly except to parse
302  * non-standard properties, and never to parse the "reg" property. Instead,
303  * use one of the "auto" variants below, which automatically honor the
304  * #address-cells and #size-cells properties in the parent node.
305  *
306  * @param blob	FDT blob
307  * @param node	node to examine
308  * @param prop_name	name of property to find
309  * @param index	which address to retrieve from a list of addresses. Often 0.
310  * @param na	the number of cells used to represent an address
311  * @param ns	the number of cells used to represent a size
312  * @param sizep	a pointer to store the size into. Use NULL if not required
313  * @return address, if found, or FDT_ADDR_T_NONE if not
314  */
315 fdt_addr_t fdtdec_get_addr_size_fixed(const void *blob, int node,
316 		const char *prop_name, int index, int na, int ns,
317 		fdt_size_t *sizep);
318 
319 /*
320  * Look up an address property in a node and return the parsed address, and
321  * optionally the parsed size.
322  *
323  * This variant automatically determines the number of cells used to represent
324  * the address and size by parsing the provided parent node's #address-cells
325  * and #size-cells properties.
326  *
327  * @param blob	FDT blob
328  * @param parent	parent node of @node
329  * @param node	node to examine
330  * @param prop_name	name of property to find
331  * @param index	which address to retrieve from a list of addresses. Often 0.
332  * @param sizep	a pointer to store the size into. Use NULL if not required
333  * @return address, if found, or FDT_ADDR_T_NONE if not
334  */
335 fdt_addr_t fdtdec_get_addr_size_auto_parent(const void *blob, int parent,
336 		int node, const char *prop_name, int index, fdt_size_t *sizep);
337 
338 /*
339  * Look up an address property in a node and return the parsed address, and
340  * optionally the parsed size.
341  *
342  * This variant automatically determines the number of cells used to represent
343  * the address and size by parsing the parent node's #address-cells
344  * and #size-cells properties. The parent node is automatically found.
345  *
346  * The automatic parent lookup implemented by this function is slow.
347  * Consequently, fdtdec_get_addr_size_auto_parent() should be used where
348  * possible.
349  *
350  * @param blob	FDT blob
351  * @param parent	parent node of @node
352  * @param node	node to examine
353  * @param prop_name	name of property to find
354  * @param index	which address to retrieve from a list of addresses. Often 0.
355  * @param sizep	a pointer to store the size into. Use NULL if not required
356  * @return address, if found, or FDT_ADDR_T_NONE if not
357  */
358 fdt_addr_t fdtdec_get_addr_size_auto_noparent(const void *blob, int node,
359 		const char *prop_name, int index, fdt_size_t *sizep);
360 
361 /*
362  * Look up an address property in a node and return the parsed address.
363  *
364  * This variant hard-codes the number of cells used to represent the address
365  * and size based on sizeof(fdt_addr_t) and sizeof(fdt_size_t). It also
366  * always returns the first address value in the property (index 0).
367  *
368  * Use of this function is not recommended due to the hard-coding of cell
369  * counts. There is no programmatic validation that these hard-coded values
370  * actually match the device tree content in any way at all. This assumption
371  * can be satisfied by manually ensuring CONFIG_PHYS_64BIT is appropriately
372  * set in the U-Boot build and exercising strict control over DT content to
373  * ensure use of matching #address-cells/#size-cells properties. However, this
374  * approach is error-prone; those familiar with DT will not expect the
375  * assumption to exist, and could easily invalidate it. If the assumption is
376  * invalidated, this function will not report the issue, and debugging will
377  * be required. Instead, use fdtdec_get_addr_size_auto_parent().
378  *
379  * @param blob	FDT blob
380  * @param node	node to examine
381  * @param prop_name	name of property to find
382  * @return address, if found, or FDT_ADDR_T_NONE if not
383  */
384 fdt_addr_t fdtdec_get_addr(const void *blob, int node,
385 		const char *prop_name);
386 
387 /*
388  * Look up an address property in a node and return the parsed address, and
389  * optionally the parsed size.
390  *
391  * This variant hard-codes the number of cells used to represent the address
392  * and size based on sizeof(fdt_addr_t) and sizeof(fdt_size_t). It also
393  * always returns the first address value in the property (index 0).
394  *
395  * Use of this function is not recommended due to the hard-coding of cell
396  * counts. There is no programmatic validation that these hard-coded values
397  * actually match the device tree content in any way at all. This assumption
398  * can be satisfied by manually ensuring CONFIG_PHYS_64BIT is appropriately
399  * set in the U-Boot build and exercising strict control over DT content to
400  * ensure use of matching #address-cells/#size-cells properties. However, this
401  * approach is error-prone; those familiar with DT will not expect the
402  * assumption to exist, and could easily invalidate it. If the assumption is
403  * invalidated, this function will not report the issue, and debugging will
404  * be required. Instead, use fdtdec_get_addr_size_auto_parent().
405  *
406  * @param blob	FDT blob
407  * @param node	node to examine
408  * @param prop_name	name of property to find
409  * @param sizep	a pointer to store the size into. Use NULL if not required
410  * @return address, if found, or FDT_ADDR_T_NONE if not
411  */
412 fdt_addr_t fdtdec_get_addr_size(const void *blob, int node,
413 		const char *prop_name, fdt_size_t *sizep);
414 
415 /**
416  * Look at an address property in a node and return the pci address which
417  * corresponds to the given type in the form of fdt_pci_addr.
418  * The property must hold one fdt_pci_addr with a lengh.
419  *
420  * @param blob		FDT blob
421  * @param node		node to examine
422  * @param type		pci address type (FDT_PCI_SPACE_xxx)
423  * @param prop_name	name of property to find
424  * @param addr		returns pci address in the form of fdt_pci_addr
425  * @return 0 if ok, -ENOENT if the property did not exist, -EINVAL if the
426  *		format of the property was invalid, -ENXIO if the requested
427  *		address type was not found
428  */
429 int fdtdec_get_pci_addr(const void *blob, int node, enum fdt_pci_space type,
430 		const char *prop_name, struct fdt_pci_addr *addr);
431 
432 /**
433  * Look at the compatible property of a device node that represents a PCI
434  * device and extract pci vendor id and device id from it.
435  *
436  * @param blob		FDT blob
437  * @param node		node to examine
438  * @param vendor	vendor id of the pci device
439  * @param device	device id of the pci device
440  * @return 0 if ok, negative on error
441  */
442 int fdtdec_get_pci_vendev(const void *blob, int node,
443 		u16 *vendor, u16 *device);
444 
445 /**
446  * Look at the pci address of a device node that represents a PCI device
447  * and parse the bus, device and function number from it. For some cases
448  * like the bus number encoded in reg property is not correct after pci
449  * enumeration, this function looks through the node's compatible strings
450  * to get these numbers extracted instead.
451  *
452  * @param blob		FDT blob
453  * @param node		node to examine
454  * @param addr		pci address in the form of fdt_pci_addr
455  * @param bdf		returns bus, device, function triplet
456  * @return 0 if ok, negative on error
457  */
458 int fdtdec_get_pci_bdf(const void *blob, int node,
459 		struct fdt_pci_addr *addr, pci_dev_t *bdf);
460 
461 /**
462  * Look at the pci address of a device node that represents a PCI device
463  * and return base address of the pci device's registers.
464  *
465  * @param blob		FDT blob
466  * @param node		node to examine
467  * @param addr		pci address in the form of fdt_pci_addr
468  * @param bar		returns base address of the pci device's registers
469  * @return 0 if ok, negative on error
470  */
471 int fdtdec_get_pci_bar32(const void *blob, int node,
472 		struct fdt_pci_addr *addr, u32 *bar);
473 
474 /**
475  * Look up a 32-bit integer property in a node and return it. The property
476  * must have at least 4 bytes of data. The value of the first cell is
477  * returned.
478  *
479  * @param blob	FDT blob
480  * @param node	node to examine
481  * @param prop_name	name of property to find
482  * @param default_val	default value to return if the property is not found
483  * @return integer value, if found, or default_val if not
484  */
485 s32 fdtdec_get_int(const void *blob, int node, const char *prop_name,
486 		s32 default_val);
487 
488 /**
489  * Unsigned version of fdtdec_get_int. The property must have at least
490  * 4 bytes of data. The value of the first cell is returned.
491  *
492  * @param blob	FDT blob
493  * @param node	node to examine
494  * @param prop_name	name of property to find
495  * @param default_val	default value to return if the property is not found
496  * @return unsigned integer value, if found, or default_val if not
497  */
498 unsigned int fdtdec_get_uint(const void *blob, int node, const char *prop_name,
499 			unsigned int default_val);
500 
501 /**
502  * Get a variable-sized number from a property
503  *
504  * This reads a number from one or more cells.
505  *
506  * @param ptr	Pointer to property
507  * @param cells	Number of cells containing the number
508  * @return the value in the cells
509  */
510 u64 fdtdec_get_number(const fdt32_t *ptr, unsigned int cells);
511 
512 /**
513  * Look up a 64-bit integer property in a node and return it. The property
514  * must have at least 8 bytes of data (2 cells). The first two cells are
515  * concatenated to form a 8 bytes value, where the first cell is top half and
516  * the second cell is bottom half.
517  *
518  * @param blob	FDT blob
519  * @param node	node to examine
520  * @param prop_name	name of property to find
521  * @param default_val	default value to return if the property is not found
522  * @return integer value, if found, or default_val if not
523  */
524 uint64_t fdtdec_get_uint64(const void *blob, int node, const char *prop_name,
525 		uint64_t default_val);
526 
527 /**
528  * Checks whether a node is enabled.
529  * This looks for a 'status' property. If this exists, then returns 1 if
530  * the status is 'ok' and 0 otherwise. If there is no status property,
531  * it returns 1 on the assumption that anything mentioned should be enabled
532  * by default.
533  *
534  * @param blob	FDT blob
535  * @param node	node to examine
536  * @return integer value 0 (not enabled) or 1 (enabled)
537  */
538 int fdtdec_get_is_enabled(const void *blob, int node);
539 
540 /**
541  * Make sure we have a valid fdt available to control U-Boot.
542  *
543  * If not, a message is printed to the console if the console is ready.
544  *
545  * @return 0 if all ok, -1 if not
546  */
547 int fdtdec_prepare_fdt(void);
548 
549 /**
550  * Checks that we have a valid fdt available to control U-Boot.
551 
552  * However, if not then for the moment nothing is done, since this function
553  * is called too early to panic().
554  *
555  * @returns 0
556  */
557 int fdtdec_check_fdt(void);
558 
559 /**
560  * Find the nodes for a peripheral and return a list of them in the correct
561  * order. This is used to enumerate all the peripherals of a certain type.
562  *
563  * To use this, optionally set up a /aliases node with alias properties for
564  * a peripheral. For example, for usb you could have:
565  *
566  * aliases {
567  *		usb0 = "/ehci@c5008000";
568  *		usb1 = "/ehci@c5000000";
569  * };
570  *
571  * Pass "usb" as the name to this function and will return a list of two
572  * nodes offsets: /ehci@c5008000 and ehci@c5000000.
573  *
574  * All nodes returned will match the compatible ID, as it is assumed that
575  * all peripherals use the same driver.
576  *
577  * If no alias node is found, then the node list will be returned in the
578  * order found in the fdt. If the aliases mention a node which doesn't
579  * exist, then this will be ignored. If nodes are found with no aliases,
580  * they will be added in any order.
581  *
582  * If there is a gap in the aliases, then this function return a 0 node at
583  * that position. The return value will also count these gaps.
584  *
585  * This function checks node properties and will not return nodes which are
586  * marked disabled (status = "disabled").
587  *
588  * @param blob		FDT blob to use
589  * @param name		Root name of alias to search for
590  * @param id		Compatible ID to look for
591  * @param node_list	Place to put list of found nodes
592  * @param maxcount	Maximum number of nodes to find
593  * @return number of nodes found on success, FTD_ERR_... on error
594  */
595 int fdtdec_find_aliases_for_id(const void *blob, const char *name,
596 			enum fdt_compat_id id, int *node_list, int maxcount);
597 
598 /*
599  * This function is similar to fdtdec_find_aliases_for_id() except that it
600  * adds to the node_list that is passed in. Any 0 elements are considered
601  * available for allocation - others are considered already used and are
602  * skipped.
603  *
604  * You can use this by calling fdtdec_find_aliases_for_id() with an
605  * uninitialised array, then setting the elements that are returned to -1,
606  * say, then calling this function, perhaps with a different compat id.
607  * Any elements you get back that are >0 are new nodes added by the call
608  * to this function.
609  *
610  * Note that if you have some nodes with aliases and some without, you are
611  * sailing close to the wind. The call to fdtdec_find_aliases_for_id() with
612  * one compat_id may fill in positions for which you have aliases defined
613  * for another compat_id. When you later call *this* function with the second
614  * compat_id, the alias positions may already be used. A debug warning may
615  * be generated in this case, but it is safest to define aliases for all
616  * nodes when you care about the ordering.
617  */
618 int fdtdec_add_aliases_for_id(const void *blob, const char *name,
619 			enum fdt_compat_id id, int *node_list, int maxcount);
620 
621 /**
622  * Get the alias sequence number of a node
623  *
624  * This works out whether a node is pointed to by an alias, and if so, the
625  * sequence number of that alias. Aliases are of the form <base><num> where
626  * <num> is the sequence number. For example spi2 would be sequence number
627  * 2.
628  *
629  * @param blob		Device tree blob (if NULL, then error is returned)
630  * @param base		Base name for alias (before the underscore)
631  * @param node		Node to look up
632  * @param seqp		This is set to the sequence number if one is found,
633  *			but otherwise the value is left alone
634  * @return 0 if a sequence was found, -ve if not
635  */
636 int fdtdec_get_alias_seq(const void *blob, const char *base, int node,
637 			 int *seqp);
638 
639 /**
640  * Get a property from the /chosen node
641  *
642  * @param blob		Device tree blob (if NULL, then NULL is returned)
643  * @param name		Property name to look up
644  * @return Value of property, or NULL if it does not exist
645  */
646 const char *fdtdec_get_chosen_prop(const void *blob, const char *name);
647 
648 /**
649  * Get the offset of the given /chosen node
650  *
651  * This looks up a property in /chosen containing the path to another node,
652  * then finds the offset of that node.
653  *
654  * @param blob		Device tree blob (if NULL, then error is returned)
655  * @param name		Property name, e.g. "stdout-path"
656  * @return Node offset referred to by that chosen node, or -ve FDT_ERR_...
657  */
658 int fdtdec_get_chosen_node(const void *blob, const char *name);
659 
660 /*
661  * Get the name for a compatible ID
662  *
663  * @param id		Compatible ID to look for
664  * @return compatible string for that id
665  */
666 const char *fdtdec_get_compatible(enum fdt_compat_id id);
667 
668 /* Look up a phandle and follow it to its node. Then return the offset
669  * of that node.
670  *
671  * @param blob		FDT blob
672  * @param node		node to examine
673  * @param prop_name	name of property to find
674  * @return node offset if found, -ve error code on error
675  */
676 int fdtdec_lookup_phandle(const void *blob, int node, const char *prop_name);
677 
678 /**
679  * Look up a property in a node and return its contents in an integer
680  * array of given length. The property must have at least enough data for
681  * the array (4*count bytes). It may have more, but this will be ignored.
682  *
683  * @param blob		FDT blob
684  * @param node		node to examine
685  * @param prop_name	name of property to find
686  * @param array		array to fill with data
687  * @param count		number of array elements
688  * @return 0 if ok, or -FDT_ERR_NOTFOUND if the property is not found,
689  *		or -FDT_ERR_BADLAYOUT if not enough data
690  */
691 int fdtdec_get_int_array(const void *blob, int node, const char *prop_name,
692 		u32 *array, int count);
693 
694 /**
695  * Look up a property in a node and return its contents in an integer
696  * array of given length. The property must exist but may have less data that
697  * expected (4*count bytes). It may have more, but this will be ignored.
698  *
699  * @param blob		FDT blob
700  * @param node		node to examine
701  * @param prop_name	name of property to find
702  * @param array		array to fill with data
703  * @param count		number of array elements
704  * @return number of array elements if ok, or -FDT_ERR_NOTFOUND if the
705  *		property is not found
706  */
707 int fdtdec_get_int_array_count(const void *blob, int node,
708 			       const char *prop_name, u32 *array, int count);
709 
710 /**
711  * Look up a property in a node and return a pointer to its contents as a
712  * unsigned int array of given length. The property must have at least enough
713  * data for the array ('count' cells). It may have more, but this will be
714  * ignored. The data is not copied.
715  *
716  * Note that you must access elements of the array with fdt32_to_cpu(),
717  * since the elements will be big endian even on a little endian machine.
718  *
719  * @param blob		FDT blob
720  * @param node		node to examine
721  * @param prop_name	name of property to find
722  * @param count		number of array elements
723  * @return pointer to array if found, or NULL if the property is not
724  *		found or there is not enough data
725  */
726 const u32 *fdtdec_locate_array(const void *blob, int node,
727 			       const char *prop_name, int count);
728 
729 /**
730  * Look up a boolean property in a node and return it.
731  *
732  * A boolean properly is true if present in the device tree and false if not
733  * present, regardless of its value.
734  *
735  * @param blob	FDT blob
736  * @param node	node to examine
737  * @param prop_name	name of property to find
738  * @return 1 if the properly is present; 0 if it isn't present
739  */
740 int fdtdec_get_bool(const void *blob, int node, const char *prop_name);
741 
742 /**
743  * Look in the FDT for a config item with the given name and return its value
744  * as a 32-bit integer. The property must have at least 4 bytes of data. The
745  * value of the first cell is returned.
746  *
747  * @param blob		FDT blob to use
748  * @param prop_name	Node property name
749  * @param default_val	default value to return if the property is not found
750  * @return integer value, if found, or default_val if not
751  */
752 int fdtdec_get_config_int(const void *blob, const char *prop_name,
753 		int default_val);
754 
755 /**
756  * Look in the FDT for a config item with the given name
757  * and return whether it exists.
758  *
759  * @param blob		FDT blob
760  * @param prop_name	property name to look up
761  * @return 1, if it exists, or 0 if not
762  */
763 int fdtdec_get_config_bool(const void *blob, const char *prop_name);
764 
765 /**
766  * Look in the FDT for a config item with the given name and return its value
767  * as a string.
768  *
769  * @param blob          FDT blob
770  * @param prop_name     property name to look up
771  * @returns property string, NULL on error.
772  */
773 char *fdtdec_get_config_string(const void *blob, const char *prop_name);
774 
775 /*
776  * Look up a property in a node and return its contents in a byte
777  * array of given length. The property must have at least enough data for
778  * the array (count bytes). It may have more, but this will be ignored.
779  *
780  * @param blob		FDT blob
781  * @param node		node to examine
782  * @param prop_name	name of property to find
783  * @param array		array to fill with data
784  * @param count		number of array elements
785  * @return 0 if ok, or -FDT_ERR_MISSING if the property is not found,
786  *		or -FDT_ERR_BADLAYOUT if not enough data
787  */
788 int fdtdec_get_byte_array(const void *blob, int node, const char *prop_name,
789 		u8 *array, int count);
790 
791 /**
792  * Look up a property in a node and return a pointer to its contents as a
793  * byte array of given length. The property must have at least enough data
794  * for the array (count bytes). It may have more, but this will be ignored.
795  * The data is not copied.
796  *
797  * @param blob		FDT blob
798  * @param node		node to examine
799  * @param prop_name	name of property to find
800  * @param count		number of array elements
801  * @return pointer to byte array if found, or NULL if the property is not
802  *		found or there is not enough data
803  */
804 const u8 *fdtdec_locate_byte_array(const void *blob, int node,
805 			     const char *prop_name, int count);
806 
807 /**
808  * Look up a property in a node which contains a memory region address and
809  * size. Then return a pointer to this address.
810  *
811  * The property must hold one address with a length. This is only tested on
812  * 32-bit machines.
813  *
814  * @param blob		FDT blob
815  * @param node		node to examine
816  * @param prop_name	name of property to find
817  * @param basep		Returns base address of region
818  * @param size		Returns size of region
819  * @return 0 if ok, -1 on error (property not found)
820  */
821 int fdtdec_decode_region(const void *blob, int node, const char *prop_name,
822 			 fdt_addr_t *basep, fdt_size_t *sizep);
823 
824 enum fmap_compress_t {
825 	FMAP_COMPRESS_NONE,
826 	FMAP_COMPRESS_LZO,
827 };
828 
829 enum fmap_hash_t {
830 	FMAP_HASH_NONE,
831 	FMAP_HASH_SHA1,
832 	FMAP_HASH_SHA256,
833 };
834 
835 /* A flash map entry, containing an offset and length */
836 struct fmap_entry {
837 	uint32_t offset;
838 	uint32_t length;
839 	uint32_t used;			/* Number of bytes used in region */
840 	enum fmap_compress_t compress_algo;	/* Compression type */
841 	enum fmap_hash_t hash_algo;		/* Hash algorithm */
842 	const uint8_t *hash;			/* Hash value */
843 	int hash_size;				/* Hash size */
844 };
845 
846 /**
847  * Read a flash entry from the fdt
848  *
849  * @param blob		FDT blob
850  * @param node		Offset of node to read
851  * @param name		Name of node being read
852  * @param entry		Place to put offset and size of this node
853  * @return 0 if ok, -ve on error
854  */
855 int fdtdec_read_fmap_entry(const void *blob, int node, const char *name,
856 			   struct fmap_entry *entry);
857 
858 /**
859  * Obtain an indexed resource from a device property.
860  *
861  * @param fdt		FDT blob
862  * @param node		node to examine
863  * @param property	name of the property to parse
864  * @param index		index of the resource to retrieve
865  * @param res		returns the resource
866  * @return 0 if ok, negative on error
867  */
868 int fdt_get_resource(const void *fdt, int node, const char *property,
869 		     unsigned int index, struct fdt_resource *res);
870 
871 /**
872  * Obtain a named resource from a device property.
873  *
874  * Look up the index of the name in a list of strings and return the resource
875  * at that index.
876  *
877  * @param fdt		FDT blob
878  * @param node		node to examine
879  * @param property	name of the property to parse
880  * @param prop_names	name of the property containing the list of names
881  * @param name		the name of the entry to look up
882  * @param res		returns the resource
883  */
884 int fdt_get_named_resource(const void *fdt, int node, const char *property,
885 			   const char *prop_names, const char *name,
886 			   struct fdt_resource *res);
887 
888 /**
889  * Decode a named region within a memory bank of a given type.
890  *
891  * This function handles selection of a memory region. The region is
892  * specified as an offset/size within a particular type of memory.
893  *
894  * The properties used are:
895  *
896  *	<mem_type>-memory<suffix> for the name of the memory bank
897  *	<mem_type>-offset<suffix> for the offset in that bank
898  *
899  * The property value must have an offset and a size. The function checks
900  * that the region is entirely within the memory bank.5
901  *
902  * @param blob		FDT blob
903  * @param node		Node containing the properties (-1 for /config)
904  * @param mem_type	Type of memory to use, which is a name, such as
905  *			"u-boot" or "kernel".
906  * @param suffix	String to append to the memory/offset
907  *			property names
908  * @param basep		Returns base of region
909  * @param sizep		Returns size of region
910  * @return 0 if OK, -ive on error
911  */
912 int fdtdec_decode_memory_region(const void *blob, int node,
913 				const char *mem_type, const char *suffix,
914 				fdt_addr_t *basep, fdt_size_t *sizep);
915 
916 /* Display timings from linux include/video/display_timing.h */
917 enum display_flags {
918 	DISPLAY_FLAGS_HSYNC_LOW		= 1 << 0,
919 	DISPLAY_FLAGS_HSYNC_HIGH	= 1 << 1,
920 	DISPLAY_FLAGS_VSYNC_LOW		= 1 << 2,
921 	DISPLAY_FLAGS_VSYNC_HIGH	= 1 << 3,
922 
923 	/* data enable flag */
924 	DISPLAY_FLAGS_DE_LOW		= 1 << 4,
925 	DISPLAY_FLAGS_DE_HIGH		= 1 << 5,
926 	/* drive data on pos. edge */
927 	DISPLAY_FLAGS_PIXDATA_POSEDGE	= 1 << 6,
928 	/* drive data on neg. edge */
929 	DISPLAY_FLAGS_PIXDATA_NEGEDGE	= 1 << 7,
930 	DISPLAY_FLAGS_INTERLACED	= 1 << 8,
931 	DISPLAY_FLAGS_DOUBLESCAN	= 1 << 9,
932 	DISPLAY_FLAGS_DOUBLECLK		= 1 << 10,
933 };
934 
935 /*
936  * A single signal can be specified via a range of minimal and maximal values
937  * with a typical value, that lies somewhere inbetween.
938  */
939 struct timing_entry {
940 	u32 min;
941 	u32 typ;
942 	u32 max;
943 };
944 
945 /*
946  * Single "mode" entry. This describes one set of signal timings a display can
947  * have in one setting. This struct can later be converted to struct videomode
948  * (see include/video/videomode.h). As each timing_entry can be defined as a
949  * range, one struct display_timing may become multiple struct videomodes.
950  *
951  * Example: hsync active high, vsync active low
952  *
953  *				    Active Video
954  * Video  ______________________XXXXXXXXXXXXXXXXXXXXXX_____________________
955  *	  |<- sync ->|<- back ->|<----- active ----->|<- front ->|<- sync..
956  *	  |	     |	 porch  |		     |	 porch	 |
957  *
958  * HSync _|¯¯¯¯¯¯¯¯¯¯|___________________________________________|¯¯¯¯¯¯¯¯¯
959  *
960  * VSync ¯|__________|¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯¯|_________
961  */
962 struct display_timing {
963 	struct timing_entry pixelclock;
964 
965 	struct timing_entry hactive;		/* hor. active video */
966 	struct timing_entry hfront_porch;	/* hor. front porch */
967 	struct timing_entry hback_porch;	/* hor. back porch */
968 	struct timing_entry hsync_len;		/* hor. sync len */
969 
970 	struct timing_entry vactive;		/* ver. active video */
971 	struct timing_entry vfront_porch;	/* ver. front porch */
972 	struct timing_entry vback_porch;	/* ver. back porch */
973 	struct timing_entry vsync_len;		/* ver. sync len */
974 
975 	enum display_flags flags;		/* display flags */
976 };
977 
978 /**
979  * fdtdec_decode_display_timing() - decode display timings
980  *
981  * Decode display timings from the supplied 'display-timings' node.
982  * See doc/device-tree-bindings/video/display-timing.txt for binding
983  * information.
984  *
985  * @param blob		FDT blob
986  * @param node		'display-timing' node containing the timing subnodes
987  * @param index		Index number to read (0=first timing subnode)
988  * @param config	Place to put timings
989  * @return 0 if OK, -FDT_ERR_NOTFOUND if not found
990  */
991 int fdtdec_decode_display_timing(const void *blob, int node, int index,
992 				 struct display_timing *config);
993 /**
994  * Set up the device tree ready for use
995  */
996 int fdtdec_setup(void);
997 
998 #endif
999