global: Migrate CONFIG_SYS_FSL* symbols to the CFG_SYS namespace
[platform/kernel/u-boot.git] / arch / arm / cpu / armv8 / fsl-layerscape / fdt.c
1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * Copyright 2014-2015 Freescale Semiconductor, Inc.
4  * Copyright 2020-2021 NXP
5  */
6
7 #include <common.h>
8 #include <clock_legacy.h>
9 #include <efi_loader.h>
10 #include <log.h>
11 #include <asm/cache.h>
12 #include <linux/libfdt.h>
13 #include <fdt_support.h>
14 #include <phy.h>
15 #ifdef CONFIG_FSL_LSCH3
16 #include <asm/arch/fdt.h>
17 #endif
18 #ifdef CONFIG_FSL_ESDHC
19 #include <fsl_esdhc.h>
20 #endif
21 #ifdef CONFIG_SYS_DPAA_FMAN
22 #include <fsl_fman.h>
23 #endif
24 #ifdef CONFIG_MP
25 #include <asm/arch/mp.h>
26 #endif
27 #include <fsl_sec.h>
28 #include <asm/arch-fsl-layerscape/soc.h>
29 #if CONFIG_IS_ENABLED(ARMV8_SEC_FIRMWARE_SUPPORT)
30 #include <asm/armv8/sec_firmware.h>
31 #endif
32 #include <asm/arch/speed.h>
33 #include <fsl_qbman.h>
34
35 int fdt_fixup_phy_connection(void *blob, int offset, phy_interface_t phyc)
36 {
37         const char *conn;
38
39         /* Do NOT apply fixup for backplane modes specified in DT */
40         if (phyc == PHY_INTERFACE_MODE_XGMII) {
41                 conn = fdt_getprop(blob, offset, "phy-connection-type", NULL);
42                 if (is_backplane_mode(conn))
43                         return 0;
44         }
45         return fdt_setprop_string(blob, offset, "phy-connection-type",
46                                          phy_string_for_interface(phyc));
47 }
48
49 #ifdef CONFIG_MP
50 void ft_fixup_cpu(void *blob)
51 {
52         int off;
53         __maybe_unused u64 spin_tbl_addr = (u64)get_spin_tbl_addr();
54         fdt32_t *reg;
55         int addr_cells;
56         u64 val, core_id;
57         u32 mask = cpu_pos_mask();
58         int off_prev = -1;
59
60         off = fdt_path_offset(blob, "/cpus");
61         if (off < 0) {
62                 puts("couldn't find /cpus node\n");
63                 return;
64         }
65
66         fdt_support_default_count_cells(blob, off, &addr_cells, NULL);
67
68         off = fdt_node_offset_by_prop_value(blob, off_prev, "device_type",
69                                             "cpu", 4);
70         while (off != -FDT_ERR_NOTFOUND) {
71                 reg = (fdt32_t *)fdt_getprop(blob, off, "reg", 0);
72                 if (reg) {
73                         core_id = fdt_read_number(reg, addr_cells);
74                         if (!test_bit(id_to_core(core_id), &mask)) {
75                                 fdt_del_node(blob, off);
76                                 off = off_prev;
77                         }
78                 }
79                 off_prev = off;
80                 off = fdt_node_offset_by_prop_value(blob, off_prev,
81                                                     "device_type", "cpu", 4);
82         }
83
84 #if CONFIG_IS_ENABLED(ARMV8_SEC_FIRMWARE_SUPPORT) && \
85         defined(CONFIG_SEC_FIRMWARE_ARMV8_PSCI)
86         int node;
87         u32 psci_ver;
88
89         /* Check the psci version to determine if the psci is supported */
90         psci_ver = sec_firmware_support_psci_version();
91         if (psci_ver == 0xffffffff) {
92                 /* remove psci DT node */
93                 node = fdt_path_offset(blob, "/psci");
94                 if (node >= 0)
95                         goto remove_psci_node;
96
97                 node = fdt_node_offset_by_compatible(blob, -1, "arm,psci");
98                 if (node >= 0)
99                         goto remove_psci_node;
100
101                 node = fdt_node_offset_by_compatible(blob, -1, "arm,psci-0.2");
102                 if (node >= 0)
103                         goto remove_psci_node;
104
105                 node = fdt_node_offset_by_compatible(blob, -1, "arm,psci-1.0");
106                 if (node >= 0)
107                         goto remove_psci_node;
108
109 remove_psci_node:
110                 if (node >= 0)
111                         fdt_del_node(blob, node);
112         } else {
113                 return;
114         }
115 #endif
116         off = fdt_path_offset(blob, "/cpus");
117         if (off < 0) {
118                 puts("couldn't find /cpus node\n");
119                 return;
120         }
121         fdt_support_default_count_cells(blob, off, &addr_cells, NULL);
122
123         off = fdt_node_offset_by_prop_value(blob, -1, "device_type", "cpu", 4);
124         while (off != -FDT_ERR_NOTFOUND) {
125                 reg = (fdt32_t *)fdt_getprop(blob, off, "reg", 0);
126                 if (reg) {
127                         core_id = fdt_read_number(reg, addr_cells);
128                         if (core_id  == 0 || (is_core_online(core_id))) {
129                                 val = spin_tbl_addr;
130                                 val += id_to_core(core_id) *
131                                        SPIN_TABLE_ELEM_SIZE;
132                                 val = cpu_to_fdt64(val);
133                                 fdt_setprop_string(blob, off, "enable-method",
134                                                    "spin-table");
135                                 fdt_setprop(blob, off, "cpu-release-addr",
136                                             &val, sizeof(val));
137                         } else {
138                                 debug("skipping offline core\n");
139                         }
140                 } else {
141                         puts("Warning: found cpu node without reg property\n");
142                 }
143                 off = fdt_node_offset_by_prop_value(blob, off, "device_type",
144                                                     "cpu", 4);
145         }
146
147         fdt_add_mem_rsv(blob, (uintptr_t)secondary_boot_code_start,
148                         secondary_boot_code_size);
149 #if CONFIG_IS_ENABLED(EFI_LOADER)
150         efi_add_memory_map((uintptr_t)secondary_boot_code_start,
151                            secondary_boot_code_size, EFI_RESERVED_MEMORY_TYPE);
152 #endif
153 }
154 #endif
155
156 void fsl_fdt_disable_usb(void *blob)
157 {
158         int off;
159         /*
160          * SYSCLK is used as a reference clock for USB. When the USB
161          * controller is used, SYSCLK must meet the additional requirement
162          * of 100 MHz.
163          */
164         if (get_board_sys_clk() != 100000000)
165                 fdt_for_each_node_by_compatible(off, blob, -1, "snps,dwc3")
166                         fdt_status_disabled(blob, off);
167 }
168
169 #ifdef CONFIG_HAS_FEATURE_GIC64K_ALIGN
170 static void fdt_fixup_gic(void *blob)
171 {
172         int offset, err;
173         u64 reg[8];
174         struct ccsr_gur __iomem *gur = (void *)(CFG_SYS_FSL_GUTS_ADDR);
175         unsigned int val;
176         struct ccsr_scfg __iomem *scfg = (void *)CFG_SYS_FSL_SCFG_ADDR;
177         int align_64k = 0;
178
179         val = gur_in32(&gur->svr);
180
181         if (!IS_SVR_DEV(val, SVR_DEV(SVR_LS1043A))) {
182                 align_64k = 1;
183         } else if (SVR_REV(val) != REV1_0) {
184                 val = scfg_in32(&scfg->gic_align) & (0x01 << GIC_ADDR_BIT);
185                 if (!val)
186                         align_64k = 1;
187         }
188
189         offset = fdt_subnode_offset(blob, 0, "interrupt-controller@1400000");
190         if (offset < 0) {
191                 printf("WARNING: fdt_subnode_offset can't find node %s: %s\n",
192                        "interrupt-controller@1400000", fdt_strerror(offset));
193                 return;
194         }
195
196         /* Fixup gic node align with 64K */
197         if (align_64k) {
198                 reg[0] = cpu_to_fdt64(GICD_BASE_64K);
199                 reg[1] = cpu_to_fdt64(GICD_SIZE_64K);
200                 reg[2] = cpu_to_fdt64(GICC_BASE_64K);
201                 reg[3] = cpu_to_fdt64(GICC_SIZE_64K);
202                 reg[4] = cpu_to_fdt64(GICH_BASE_64K);
203                 reg[5] = cpu_to_fdt64(GICH_SIZE_64K);
204                 reg[6] = cpu_to_fdt64(GICV_BASE_64K);
205                 reg[7] = cpu_to_fdt64(GICV_SIZE_64K);
206         } else {
207         /* Fixup gic node align with default */
208                 reg[0] = cpu_to_fdt64(GICD_BASE);
209                 reg[1] = cpu_to_fdt64(GICD_SIZE);
210                 reg[2] = cpu_to_fdt64(GICC_BASE);
211                 reg[3] = cpu_to_fdt64(GICC_SIZE);
212                 reg[4] = cpu_to_fdt64(GICH_BASE);
213                 reg[5] = cpu_to_fdt64(GICH_SIZE);
214                 reg[6] = cpu_to_fdt64(GICV_BASE);
215                 reg[7] = cpu_to_fdt64(GICV_SIZE);
216         }
217
218         err = fdt_setprop(blob, offset, "reg", reg, sizeof(reg));
219         if (err < 0) {
220                 printf("WARNING: fdt_setprop can't set %s from node %s: %s\n",
221                        "reg", "interrupt-controller@1400000",
222                        fdt_strerror(err));
223                 return;
224         }
225
226         return;
227 }
228 #endif
229
230 #ifdef CONFIG_HAS_FEATURE_ENHANCED_MSI
231 static int _fdt_fixup_msi_node(void *blob, const char *name,
232                                   int irq_0, int irq_1, int rev)
233 {
234         int err, offset, len;
235         u32 tmp[4][3];
236         void *p;
237
238         offset = fdt_path_offset(blob, name);
239         if (offset < 0) {
240                 printf("WARNING: fdt_path_offset can't find path %s: %s\n",
241                        name, fdt_strerror(offset));
242                 return 0;
243         }
244
245         /*fixup the property of interrupts*/
246
247         tmp[0][0] = cpu_to_fdt32(0x0);
248         tmp[0][1] = cpu_to_fdt32(irq_0);
249         tmp[0][2] = cpu_to_fdt32(0x4);
250
251         if (rev > REV1_0) {
252                 tmp[1][0] = cpu_to_fdt32(0x0);
253                 tmp[1][1] = cpu_to_fdt32(irq_1);
254                 tmp[1][2] = cpu_to_fdt32(0x4);
255                 tmp[2][0] = cpu_to_fdt32(0x0);
256                 tmp[2][1] = cpu_to_fdt32(irq_1 + 1);
257                 tmp[2][2] = cpu_to_fdt32(0x4);
258                 tmp[3][0] = cpu_to_fdt32(0x0);
259                 tmp[3][1] = cpu_to_fdt32(irq_1 + 2);
260                 tmp[3][2] = cpu_to_fdt32(0x4);
261                 len = sizeof(tmp);
262         } else {
263                 len = sizeof(tmp[0]);
264         }
265
266         err = fdt_setprop(blob, offset, "interrupts", tmp, len);
267         if (err < 0) {
268                 printf("WARNING: fdt_setprop can't set %s from node %s: %s\n",
269                        "interrupts", name, fdt_strerror(err));
270                 return 0;
271         }
272
273         /*fixup the property of reg*/
274         p = (char *)fdt_getprop(blob, offset, "reg", &len);
275         if (!p) {
276                 printf("WARNING: fdt_getprop can't get %s from node %s\n",
277                        "reg", name);
278                 return 0;
279         }
280
281         memcpy((char *)tmp, p, len);
282
283         if (rev > REV1_0)
284                 *((u32 *)tmp + 3) = cpu_to_fdt32(0x1000);
285         else
286                 *((u32 *)tmp + 3) = cpu_to_fdt32(0x8);
287
288         err = fdt_setprop(blob, offset, "reg", tmp, len);
289         if (err < 0) {
290                 printf("WARNING: fdt_setprop can't set %s from node %s: %s\n",
291                        "reg", name, fdt_strerror(err));
292                 return 0;
293         }
294
295         /*fixup the property of compatible*/
296         if (rev > REV1_0)
297                 err = fdt_setprop_string(blob, offset, "compatible",
298                                          "fsl,ls1043a-v1.1-msi");
299         else
300                 err = fdt_setprop_string(blob, offset, "compatible",
301                                          "fsl,ls1043a-msi");
302         if (err < 0) {
303                 printf("WARNING: fdt_setprop can't set %s from node %s: %s\n",
304                        "compatible", name, fdt_strerror(err));
305                 return 0;
306         }
307
308         return 1;
309 }
310
311 static int _fdt_fixup_pci_msi(void *blob, const char *name, int rev)
312 {
313         int offset, len, err;
314         void *p;
315         int val;
316         u32 tmp[4][8];
317
318         offset = fdt_path_offset(blob, name);
319         if (offset < 0) {
320                 printf("WARNING: fdt_path_offset can't find path %s: %s\n",
321                        name, fdt_strerror(offset));
322                 return 0;
323         }
324
325         p = (char *)fdt_getprop(blob, offset, "interrupt-map", &len);
326         if (!p || len != sizeof(tmp)) {
327                 printf("WARNING: fdt_getprop can't get %s from node %s\n",
328                        "interrupt-map", name);
329                 return 0;
330         }
331
332         memcpy((char *)tmp, p, len);
333
334         val = fdt32_to_cpu(tmp[0][6]);
335         if (rev == REV1_0) {
336                 tmp[1][6] = cpu_to_fdt32(val + 1);
337                 tmp[2][6] = cpu_to_fdt32(val + 2);
338                 tmp[3][6] = cpu_to_fdt32(val + 3);
339         } else {
340                 tmp[1][6] = cpu_to_fdt32(val);
341                 tmp[2][6] = cpu_to_fdt32(val);
342                 tmp[3][6] = cpu_to_fdt32(val);
343         }
344
345         err = fdt_setprop(blob, offset, "interrupt-map", tmp, sizeof(tmp));
346         if (err < 0) {
347                 printf("WARNING: fdt_setprop can't set %s from node %s: %s.\n",
348                        "interrupt-map", name, fdt_strerror(err));
349                 return 0;
350         }
351         return 1;
352 }
353
354 /* Fixup msi node for ls1043a rev1.1*/
355
356 static void fdt_fixup_msi(void *blob)
357 {
358         struct ccsr_gur __iomem *gur = (void *)(CFG_SYS_FSL_GUTS_ADDR);
359         unsigned int rev;
360
361         rev = gur_in32(&gur->svr);
362
363         if (!IS_SVR_DEV(rev, SVR_DEV(SVR_LS1043A)))
364                 return;
365
366         rev = SVR_REV(rev);
367
368         _fdt_fixup_msi_node(blob, "/soc/msi-controller1@1571000",
369                             116, 111, rev);
370         _fdt_fixup_msi_node(blob, "/soc/msi-controller2@1572000",
371                             126, 121, rev);
372         _fdt_fixup_msi_node(blob, "/soc/msi-controller3@1573000",
373                             160, 155, rev);
374
375         _fdt_fixup_pci_msi(blob, "/soc/pcie@3400000", rev);
376         _fdt_fixup_pci_msi(blob, "/soc/pcie@3500000", rev);
377         _fdt_fixup_pci_msi(blob, "/soc/pcie@3600000", rev);
378 }
379 #endif
380
381 #if CONFIG_IS_ENABLED(ARMV8_SEC_FIRMWARE_SUPPORT)
382 /* Remove JR node used by SEC firmware */
383 void fdt_fixup_remove_jr(void *blob)
384 {
385         int jr_node, addr_cells, len;
386         int crypto_node = fdt_path_offset(blob, "crypto");
387         u64 jr_offset, used_jr;
388         fdt32_t *reg;
389
390         used_jr = sec_firmware_used_jobring_offset();
391         fdt_support_default_count_cells(blob, crypto_node, &addr_cells, NULL);
392
393         jr_node = fdt_node_offset_by_compatible(blob, crypto_node,
394                                                 "fsl,sec-v4.0-job-ring");
395
396         while (jr_node != -FDT_ERR_NOTFOUND) {
397                 reg = (fdt32_t *)fdt_getprop(blob, jr_node, "reg", &len);
398                 if (reg) {
399                         jr_offset = fdt_read_number(reg, addr_cells);
400                         if (jr_offset == used_jr) {
401                                 fdt_del_node(blob, jr_node);
402                                 break;
403                         }
404                 }
405                 jr_node = fdt_node_offset_by_compatible(blob, jr_node,
406                                                         "fsl,sec-v4.0-job-ring");
407         }
408 }
409 #endif
410
411 #ifdef CONFIG_ARCH_LS1028A
412 static void fdt_disable_multimedia(void *blob, unsigned int svr)
413 {
414         int off;
415
416         if (IS_MULTIMEDIA_EN(svr))
417                 return;
418
419         /* Disable eDP/LCD node */
420         off = fdt_node_offset_by_compatible(blob, -1, "arm,mali-dp500");
421         if (off != -FDT_ERR_NOTFOUND)
422                 fdt_status_disabled(blob, off);
423
424         /* Disable GPU node */
425         off = fdt_node_offset_by_compatible(blob, -1, "vivante,gc");
426         if (off != -FDT_ERR_NOTFOUND)
427                 fdt_status_disabled(blob, off);
428 }
429 #endif
430
431 #ifdef CONFIG_PCIE_ECAM_GENERIC
432 __weak void fdt_fixup_ecam(void *blob)
433 {
434 }
435 #endif
436
437 /*
438  * If it is a non-E part the crypto is disabled on the following SoCs:
439  *  - LS1043A
440  *  - LS1088A
441  *  - LS2080A
442  *  - LS2088A
443  * and their personalities.
444  *
445  * On all other SoCs just the export-controlled ciphers are disabled, that
446  * means that the following is still working:
447  *  - hashing (using MDHA - message digest hash accelerator)
448  *  - random number generation (using RNG4)
449  *  - cyclic redundancy checking (using CRCA)
450  *  - runtime integrity checker (RTIC)
451  *
452  * The linux driver will figure out what is available and what is not.
453  * Therefore, we just remove the crypto node on the SoCs which have no crypto
454  * support at all.
455  */
456 static bool crypto_is_disabled(unsigned int svr)
457 {
458         if (IS_E_PROCESSOR(svr))
459                 return false;
460
461         if (IS_SVR_DEV(svr, SVR_DEV(SVR_LS1043A)))
462                 return true;
463
464         if (IS_SVR_DEV(svr, SVR_DEV(SVR_LS1088A)))
465                 return true;
466
467         if (IS_SVR_DEV(svr, SVR_DEV(SVR_LS2080A)))
468                 return true;
469
470         if (IS_SVR_DEV(svr, SVR_DEV(SVR_LS2088A)))
471                 return true;
472
473         return false;
474 }
475
476 #ifdef CONFIG_FSL_PFE
477 void pfe_set_firmware_in_fdt(void *blob, int pfenode, void *pfw, char *pename,
478                              unsigned int len)
479 {
480         int rc, fwnode;
481         unsigned int phandle;
482         char subnode_str[32], prop_str[32], phandle_str[32], s[64];
483
484         sprintf(subnode_str, "pfe-%s-firmware", pename);
485         sprintf(prop_str, "fsl,pfe-%s-firmware", pename);
486         sprintf(phandle_str, "fsl,%s-firmware", pename);
487
488         /*Add PE FW to fdt.*/
489         /* Increase the size of the fdt to make room for the node. */
490         rc = fdt_increase_size(blob, len);
491         if (rc < 0) {
492                 printf("Unable to make room for %s firmware: %s\n", pename,
493                        fdt_strerror(rc));
494                 return;
495         }
496
497         /* Create the firmware node. */
498         fwnode = fdt_add_subnode(blob, pfenode, subnode_str);
499         if (fwnode < 0) {
500                 fdt_get_path(blob, pfenode, s, sizeof(s));
501                 printf("Could not add firmware node to %s: %s\n", s,
502                        fdt_strerror(fwnode));
503                 return;
504         }
505
506         rc = fdt_setprop_string(blob, fwnode, "compatible", prop_str);
507         if (rc < 0) {
508                 fdt_get_path(blob, fwnode, s, sizeof(s));
509                 printf("Could not add compatible property to node %s: %s\n", s,
510                        fdt_strerror(rc));
511                 return;
512         }
513
514         rc = fdt_setprop_u32(blob, fwnode, "length", len);
515         if (rc < 0) {
516                 fdt_get_path(blob, fwnode, s, sizeof(s));
517                 printf("Could not add compatible property to node %s: %s\n", s,
518                        fdt_strerror(rc));
519                 return;
520         }
521
522         /*create phandle and set the property*/
523         phandle = fdt_create_phandle(blob, fwnode);
524         if (!phandle) {
525                 fdt_get_path(blob, fwnode, s, sizeof(s));
526                 printf("Could not add phandle property to node %s: %s\n", s,
527                        fdt_strerror(rc));
528                 return;
529         }
530
531         rc = fdt_setprop(blob, fwnode, phandle_str, pfw, len);
532         if (rc < 0) {
533                 fdt_get_path(blob, fwnode, s, sizeof(s));
534                 printf("Could not add firmware property to node %s: %s\n", s,
535                        fdt_strerror(rc));
536                 return;
537         }
538 }
539
540 void fdt_fixup_pfe_firmware(void *blob)
541 {
542         int pfenode;
543         unsigned int len_class = 0, len_tmu = 0, len_util = 0;
544         const char *p;
545         void *pclassfw, *ptmufw, *putilfw;
546
547         /* The first PFE we find, will contain the actual firmware. */
548         pfenode = fdt_node_offset_by_compatible(blob, -1, "fsl,pfe");
549         if (pfenode < 0)
550                 /* Exit silently if there are no PFE devices */
551                 return;
552
553         /* If we already have a firmware node, then also exit silently. */
554         if (fdt_node_offset_by_compatible(blob, -1,
555                                           "fsl,pfe-class-firmware") > 0)
556                 return;
557
558         /* If the environment variable is not set, then exit silently */
559         p = env_get("class_elf_firmware");
560         if (!p)
561                 return;
562
563         pclassfw = (void *)hextoul(p, NULL);
564         if (!pclassfw)
565                 return;
566
567         p = env_get("class_elf_size");
568         if (!p)
569                 return;
570         len_class = hextoul(p, NULL);
571
572         /* If the environment variable is not set, then exit silently */
573         p = env_get("tmu_elf_firmware");
574         if (!p)
575                 return;
576
577         ptmufw = (void *)hextoul(p, NULL);
578         if (!ptmufw)
579                 return;
580
581         p = env_get("tmu_elf_size");
582         if (!p)
583                 return;
584         len_tmu = hextoul(p, NULL);
585
586         if (len_class == 0 || len_tmu == 0) {
587                 printf("PFE FW corrupted. CLASS FW size %d, TMU FW size %d\n",
588                        len_class, len_tmu);
589                 return;
590         }
591
592         /*Add CLASS FW to fdt.*/
593         pfe_set_firmware_in_fdt(blob, pfenode, pclassfw, "class", len_class);
594
595         /*Add TMU FW to fdt.*/
596         pfe_set_firmware_in_fdt(blob, pfenode, ptmufw, "tmu", len_tmu);
597
598         /* Util PE firmware is handled separately as it is not a usual case*/
599         p = env_get("util_elf_firmware");
600         if (!p)
601                 return;
602
603         putilfw = (void *)hextoul(p, NULL);
604         if (!putilfw)
605                 return;
606
607         p = env_get("util_elf_size");
608         if (!p)
609                 return;
610         len_util = hextoul(p, NULL);
611
612         if (len_util) {
613                 printf("PFE Util PE firmware is not added to FDT.\n");
614                 return;
615         }
616
617         pfe_set_firmware_in_fdt(blob, pfenode, putilfw, "util", len_util);
618 }
619 #endif
620
621 void ft_cpu_setup(void *blob, struct bd_info *bd)
622 {
623         struct ccsr_gur __iomem *gur = (void *)(CFG_SYS_FSL_GUTS_ADDR);
624         unsigned int svr = gur_in32(&gur->svr);
625
626         /* delete crypto node if not on an E-processor */
627         if (crypto_is_disabled(svr))
628                 fdt_fixup_crypto_node(blob, 0);
629 #if CONFIG_SYS_FSL_SEC_COMPAT >= 4
630         else {
631                 ccsr_sec_t __iomem *sec;
632
633 #if CONFIG_IS_ENABLED(ARMV8_SEC_FIRMWARE_SUPPORT)
634                 fdt_fixup_remove_jr(blob);
635                 fdt_fixup_kaslr(blob);
636 #endif
637
638                 sec = (void __iomem *)CFG_SYS_FSL_SEC_ADDR;
639                 fdt_fixup_crypto_node(blob, sec_in32(&sec->secvid_ms));
640         }
641 #endif
642
643 #ifdef CONFIG_MP
644         ft_fixup_cpu(blob);
645 #endif
646
647 #ifdef CONFIG_SYS_NS16550
648         do_fixup_by_compat_u32(blob, "fsl,ns16550",
649                                "clock-frequency", CONFIG_SYS_NS16550_CLK, 1);
650 #endif
651
652         do_fixup_by_path_u32(blob, "/sysclk", "clock-frequency",
653                              get_board_sys_clk(), 1);
654
655 #ifdef CONFIG_GIC_V3_ITS
656         ls_gic_rd_tables_init(blob);
657 #endif
658
659 #if defined(CONFIG_PCIE_LAYERSCAPE) || defined(CONFIG_PCIE_LAYERSCAPE_GEN4)
660         ft_pci_setup(blob, bd);
661 #endif
662
663 #ifdef CONFIG_FSL_ESDHC
664         fdt_fixup_esdhc(blob, bd);
665 #endif
666
667 #ifdef CONFIG_SYS_DPAA_QBMAN
668         fdt_fixup_bportals(blob);
669         fdt_fixup_qportals(blob);
670         do_fixup_by_compat_u32(blob, "fsl,qman",
671                                "clock-frequency", get_qman_freq(), 1);
672 #endif
673
674 #ifdef CONFIG_FMAN_ENET
675         fdt_fixup_fman_firmware(blob);
676 #endif
677 #ifdef CONFIG_FSL_PFE
678         fdt_fixup_pfe_firmware(blob);
679 #endif
680 #ifndef CONFIG_ARCH_LS1012A
681         fsl_fdt_disable_usb(blob);
682 #endif
683 #ifdef CONFIG_HAS_FEATURE_GIC64K_ALIGN
684         fdt_fixup_gic(blob);
685 #endif
686 #ifdef CONFIG_HAS_FEATURE_ENHANCED_MSI
687         fdt_fixup_msi(blob);
688 #endif
689 #ifdef CONFIG_ARCH_LS1028A
690         fdt_disable_multimedia(blob, svr);
691 #endif
692 #ifdef CONFIG_PCIE_ECAM_GENERIC
693         fdt_fixup_ecam(blob);
694 #endif
695 }