1*d18719a4STom Rini /* 2*d18719a4STom Rini * libfdt - Flat Device Tree manipulation 3*d18719a4STom Rini * Copyright (C) 2006 David Gibson, IBM Corporation. 4*d18719a4STom Rini * 5*d18719a4STom Rini * libfdt is dual licensed: you can use it either under the terms of 6*d18719a4STom Rini * the GPL, or the BSD license, at your option. 7*d18719a4STom Rini * 8*d18719a4STom Rini * a) This library is free software; you can redistribute it and/or 9*d18719a4STom Rini * modify it under the terms of the GNU General Public License as 10*d18719a4STom Rini * published by the Free Software Foundation; either version 2 of the 11*d18719a4STom Rini * License, or (at your option) any later version. 12*d18719a4STom Rini * 13*d18719a4STom Rini * This library is distributed in the hope that it will be useful, 14*d18719a4STom Rini * but WITHOUT ANY WARRANTY; without even the implied warranty of 15*d18719a4STom Rini * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 16*d18719a4STom Rini * GNU General Public License for more details. 17*d18719a4STom Rini * 18*d18719a4STom Rini * You should have received a copy of the GNU General Public 19*d18719a4STom Rini * License along with this library; if not, write to the Free 20*d18719a4STom Rini * Software Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, 21*d18719a4STom Rini * MA 02110-1301 USA 22*d18719a4STom Rini * 23*d18719a4STom Rini * Alternatively, 24*d18719a4STom Rini * 25*d18719a4STom Rini * b) Redistribution and use in source and binary forms, with or 26*d18719a4STom Rini * without modification, are permitted provided that the following 27*d18719a4STom Rini * conditions are met: 28*d18719a4STom Rini * 29*d18719a4STom Rini * 1. Redistributions of source code must retain the above 30*d18719a4STom Rini * copyright notice, this list of conditions and the following 31*d18719a4STom Rini * disclaimer. 32*d18719a4STom Rini * 2. Redistributions in binary form must reproduce the above 33*d18719a4STom Rini * copyright notice, this list of conditions and the following 34*d18719a4STom Rini * disclaimer in the documentation and/or other materials 35*d18719a4STom Rini * provided with the distribution. 36*d18719a4STom Rini * 37*d18719a4STom Rini * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND 38*d18719a4STom Rini * CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, 39*d18719a4STom Rini * INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF 40*d18719a4STom Rini * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE 41*d18719a4STom Rini * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR 42*d18719a4STom Rini * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 43*d18719a4STom Rini * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 44*d18719a4STom Rini * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; 45*d18719a4STom Rini * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 46*d18719a4STom Rini * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 47*d18719a4STom Rini * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR 48*d18719a4STom Rini * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, 49*d18719a4STom Rini * EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 50*d18719a4STom Rini */ 51*d18719a4STom Rini #include "libfdt_env.h" 52*d18719a4STom Rini 53*d18719a4STom Rini #include <fdt.h> 54*d18719a4STom Rini #include <libfdt.h> 55*d18719a4STom Rini 56*d18719a4STom Rini #include "libfdt_internal.h" 57*d18719a4STom Rini 58*d18719a4STom Rini static int _fdt_blocks_misordered(const void *fdt, 59*d18719a4STom Rini int mem_rsv_size, int struct_size) 60*d18719a4STom Rini { 61*d18719a4STom Rini return (fdt_off_mem_rsvmap(fdt) < FDT_ALIGN(sizeof(struct fdt_header), 8)) 62*d18719a4STom Rini || (fdt_off_dt_struct(fdt) < 63*d18719a4STom Rini (fdt_off_mem_rsvmap(fdt) + mem_rsv_size)) 64*d18719a4STom Rini || (fdt_off_dt_strings(fdt) < 65*d18719a4STom Rini (fdt_off_dt_struct(fdt) + struct_size)) 66*d18719a4STom Rini || (fdt_totalsize(fdt) < 67*d18719a4STom Rini (fdt_off_dt_strings(fdt) + fdt_size_dt_strings(fdt))); 68*d18719a4STom Rini } 69*d18719a4STom Rini 70*d18719a4STom Rini static int _fdt_rw_check_header(void *fdt) 71*d18719a4STom Rini { 72*d18719a4STom Rini FDT_CHECK_HEADER(fdt); 73*d18719a4STom Rini 74*d18719a4STom Rini if (fdt_version(fdt) < 17) 75*d18719a4STom Rini return -FDT_ERR_BADVERSION; 76*d18719a4STom Rini if (_fdt_blocks_misordered(fdt, sizeof(struct fdt_reserve_entry), 77*d18719a4STom Rini fdt_size_dt_struct(fdt))) 78*d18719a4STom Rini return -FDT_ERR_BADLAYOUT; 79*d18719a4STom Rini if (fdt_version(fdt) > 17) 80*d18719a4STom Rini fdt_set_version(fdt, 17); 81*d18719a4STom Rini 82*d18719a4STom Rini return 0; 83*d18719a4STom Rini } 84*d18719a4STom Rini 85*d18719a4STom Rini #define FDT_RW_CHECK_HEADER(fdt) \ 86*d18719a4STom Rini { \ 87*d18719a4STom Rini int __err; \ 88*d18719a4STom Rini if ((__err = _fdt_rw_check_header(fdt)) != 0) \ 89*d18719a4STom Rini return __err; \ 90*d18719a4STom Rini } 91*d18719a4STom Rini 92*d18719a4STom Rini static inline int _fdt_data_size(void *fdt) 93*d18719a4STom Rini { 94*d18719a4STom Rini return fdt_off_dt_strings(fdt) + fdt_size_dt_strings(fdt); 95*d18719a4STom Rini } 96*d18719a4STom Rini 97*d18719a4STom Rini static int _fdt_splice(void *fdt, void *splicepoint, int oldlen, int newlen) 98*d18719a4STom Rini { 99*d18719a4STom Rini char *p = splicepoint; 100*d18719a4STom Rini char *end = (char *)fdt + _fdt_data_size(fdt); 101*d18719a4STom Rini 102*d18719a4STom Rini if (((p + oldlen) < p) || ((p + oldlen) > end)) 103*d18719a4STom Rini return -FDT_ERR_BADOFFSET; 104*d18719a4STom Rini if ((p < (char *)fdt) || ((end - oldlen + newlen) < (char *)fdt)) 105*d18719a4STom Rini return -FDT_ERR_BADOFFSET; 106*d18719a4STom Rini if ((end - oldlen + newlen) > ((char *)fdt + fdt_totalsize(fdt))) 107*d18719a4STom Rini return -FDT_ERR_NOSPACE; 108*d18719a4STom Rini memmove(p + newlen, p + oldlen, end - p - oldlen); 109*d18719a4STom Rini return 0; 110*d18719a4STom Rini } 111*d18719a4STom Rini 112*d18719a4STom Rini static int _fdt_splice_mem_rsv(void *fdt, struct fdt_reserve_entry *p, 113*d18719a4STom Rini int oldn, int newn) 114*d18719a4STom Rini { 115*d18719a4STom Rini int delta = (newn - oldn) * sizeof(*p); 116*d18719a4STom Rini int err; 117*d18719a4STom Rini err = _fdt_splice(fdt, p, oldn * sizeof(*p), newn * sizeof(*p)); 118*d18719a4STom Rini if (err) 119*d18719a4STom Rini return err; 120*d18719a4STom Rini fdt_set_off_dt_struct(fdt, fdt_off_dt_struct(fdt) + delta); 121*d18719a4STom Rini fdt_set_off_dt_strings(fdt, fdt_off_dt_strings(fdt) + delta); 122*d18719a4STom Rini return 0; 123*d18719a4STom Rini } 124*d18719a4STom Rini 125*d18719a4STom Rini static int _fdt_splice_struct(void *fdt, void *p, 126*d18719a4STom Rini int oldlen, int newlen) 127*d18719a4STom Rini { 128*d18719a4STom Rini int delta = newlen - oldlen; 129*d18719a4STom Rini int err; 130*d18719a4STom Rini 131*d18719a4STom Rini if ((err = _fdt_splice(fdt, p, oldlen, newlen))) 132*d18719a4STom Rini return err; 133*d18719a4STom Rini 134*d18719a4STom Rini fdt_set_size_dt_struct(fdt, fdt_size_dt_struct(fdt) + delta); 135*d18719a4STom Rini fdt_set_off_dt_strings(fdt, fdt_off_dt_strings(fdt) + delta); 136*d18719a4STom Rini return 0; 137*d18719a4STom Rini } 138*d18719a4STom Rini 139*d18719a4STom Rini static int _fdt_splice_string(void *fdt, int newlen) 140*d18719a4STom Rini { 141*d18719a4STom Rini void *p = (char *)fdt 142*d18719a4STom Rini + fdt_off_dt_strings(fdt) + fdt_size_dt_strings(fdt); 143*d18719a4STom Rini int err; 144*d18719a4STom Rini 145*d18719a4STom Rini if ((err = _fdt_splice(fdt, p, 0, newlen))) 146*d18719a4STom Rini return err; 147*d18719a4STom Rini 148*d18719a4STom Rini fdt_set_size_dt_strings(fdt, fdt_size_dt_strings(fdt) + newlen); 149*d18719a4STom Rini return 0; 150*d18719a4STom Rini } 151*d18719a4STom Rini 152*d18719a4STom Rini static int _fdt_find_add_string(void *fdt, const char *s) 153*d18719a4STom Rini { 154*d18719a4STom Rini char *strtab = (char *)fdt + fdt_off_dt_strings(fdt); 155*d18719a4STom Rini const char *p; 156*d18719a4STom Rini char *new; 157*d18719a4STom Rini int len = strlen(s) + 1; 158*d18719a4STom Rini int err; 159*d18719a4STom Rini 160*d18719a4STom Rini p = _fdt_find_string(strtab, fdt_size_dt_strings(fdt), s); 161*d18719a4STom Rini if (p) 162*d18719a4STom Rini /* found it */ 163*d18719a4STom Rini return (p - strtab); 164*d18719a4STom Rini 165*d18719a4STom Rini new = strtab + fdt_size_dt_strings(fdt); 166*d18719a4STom Rini err = _fdt_splice_string(fdt, len); 167*d18719a4STom Rini if (err) 168*d18719a4STom Rini return err; 169*d18719a4STom Rini 170*d18719a4STom Rini memcpy(new, s, len); 171*d18719a4STom Rini return (new - strtab); 172*d18719a4STom Rini } 173*d18719a4STom Rini 174*d18719a4STom Rini int fdt_add_mem_rsv(void *fdt, uint64_t address, uint64_t size) 175*d18719a4STom Rini { 176*d18719a4STom Rini struct fdt_reserve_entry *re; 177*d18719a4STom Rini int err; 178*d18719a4STom Rini 179*d18719a4STom Rini FDT_RW_CHECK_HEADER(fdt); 180*d18719a4STom Rini 181*d18719a4STom Rini re = _fdt_mem_rsv_w(fdt, fdt_num_mem_rsv(fdt)); 182*d18719a4STom Rini err = _fdt_splice_mem_rsv(fdt, re, 0, 1); 183*d18719a4STom Rini if (err) 184*d18719a4STom Rini return err; 185*d18719a4STom Rini 186*d18719a4STom Rini re->address = cpu_to_fdt64(address); 187*d18719a4STom Rini re->size = cpu_to_fdt64(size); 188*d18719a4STom Rini return 0; 189*d18719a4STom Rini } 190*d18719a4STom Rini 191*d18719a4STom Rini int fdt_del_mem_rsv(void *fdt, int n) 192*d18719a4STom Rini { 193*d18719a4STom Rini struct fdt_reserve_entry *re = _fdt_mem_rsv_w(fdt, n); 194*d18719a4STom Rini 195*d18719a4STom Rini FDT_RW_CHECK_HEADER(fdt); 196*d18719a4STom Rini 197*d18719a4STom Rini if (n >= fdt_num_mem_rsv(fdt)) 198*d18719a4STom Rini return -FDT_ERR_NOTFOUND; 199*d18719a4STom Rini 200*d18719a4STom Rini return _fdt_splice_mem_rsv(fdt, re, 1, 0); 201*d18719a4STom Rini } 202*d18719a4STom Rini 203*d18719a4STom Rini static int _fdt_resize_property(void *fdt, int nodeoffset, const char *name, 204*d18719a4STom Rini int len, struct fdt_property **prop) 205*d18719a4STom Rini { 206*d18719a4STom Rini int oldlen; 207*d18719a4STom Rini int err; 208*d18719a4STom Rini 209*d18719a4STom Rini *prop = fdt_get_property_w(fdt, nodeoffset, name, &oldlen); 210*d18719a4STom Rini if (! (*prop)) 211*d18719a4STom Rini return oldlen; 212*d18719a4STom Rini 213*d18719a4STom Rini if ((err = _fdt_splice_struct(fdt, (*prop)->data, FDT_TAGALIGN(oldlen), 214*d18719a4STom Rini FDT_TAGALIGN(len)))) 215*d18719a4STom Rini return err; 216*d18719a4STom Rini 217*d18719a4STom Rini (*prop)->len = cpu_to_fdt32(len); 218*d18719a4STom Rini return 0; 219*d18719a4STom Rini } 220*d18719a4STom Rini 221*d18719a4STom Rini static int _fdt_add_property(void *fdt, int nodeoffset, const char *name, 222*d18719a4STom Rini int len, struct fdt_property **prop) 223*d18719a4STom Rini { 224*d18719a4STom Rini int proplen; 225*d18719a4STom Rini int nextoffset; 226*d18719a4STom Rini int namestroff; 227*d18719a4STom Rini int err; 228*d18719a4STom Rini 229*d18719a4STom Rini if ((nextoffset = _fdt_check_node_offset(fdt, nodeoffset)) < 0) 230*d18719a4STom Rini return nextoffset; 231*d18719a4STom Rini 232*d18719a4STom Rini namestroff = _fdt_find_add_string(fdt, name); 233*d18719a4STom Rini if (namestroff < 0) 234*d18719a4STom Rini return namestroff; 235*d18719a4STom Rini 236*d18719a4STom Rini *prop = _fdt_offset_ptr_w(fdt, nextoffset); 237*d18719a4STom Rini proplen = sizeof(**prop) + FDT_TAGALIGN(len); 238*d18719a4STom Rini 239*d18719a4STom Rini err = _fdt_splice_struct(fdt, *prop, 0, proplen); 240*d18719a4STom Rini if (err) 241*d18719a4STom Rini return err; 242*d18719a4STom Rini 243*d18719a4STom Rini (*prop)->tag = cpu_to_fdt32(FDT_PROP); 244*d18719a4STom Rini (*prop)->nameoff = cpu_to_fdt32(namestroff); 245*d18719a4STom Rini (*prop)->len = cpu_to_fdt32(len); 246*d18719a4STom Rini return 0; 247*d18719a4STom Rini } 248*d18719a4STom Rini 249*d18719a4STom Rini int fdt_set_name(void *fdt, int nodeoffset, const char *name) 250*d18719a4STom Rini { 251*d18719a4STom Rini char *namep; 252*d18719a4STom Rini int oldlen, newlen; 253*d18719a4STom Rini int err; 254*d18719a4STom Rini 255*d18719a4STom Rini FDT_RW_CHECK_HEADER(fdt); 256*d18719a4STom Rini 257*d18719a4STom Rini namep = (char *)(uintptr_t)fdt_get_name(fdt, nodeoffset, &oldlen); 258*d18719a4STom Rini if (!namep) 259*d18719a4STom Rini return oldlen; 260*d18719a4STom Rini 261*d18719a4STom Rini newlen = strlen(name); 262*d18719a4STom Rini 263*d18719a4STom Rini err = _fdt_splice_struct(fdt, namep, FDT_TAGALIGN(oldlen+1), 264*d18719a4STom Rini FDT_TAGALIGN(newlen+1)); 265*d18719a4STom Rini if (err) 266*d18719a4STom Rini return err; 267*d18719a4STom Rini 268*d18719a4STom Rini memcpy(namep, name, newlen+1); 269*d18719a4STom Rini return 0; 270*d18719a4STom Rini } 271*d18719a4STom Rini 272*d18719a4STom Rini int fdt_setprop(void *fdt, int nodeoffset, const char *name, 273*d18719a4STom Rini const void *val, int len) 274*d18719a4STom Rini { 275*d18719a4STom Rini struct fdt_property *prop; 276*d18719a4STom Rini int err; 277*d18719a4STom Rini 278*d18719a4STom Rini FDT_RW_CHECK_HEADER(fdt); 279*d18719a4STom Rini 280*d18719a4STom Rini err = _fdt_resize_property(fdt, nodeoffset, name, len, &prop); 281*d18719a4STom Rini if (err == -FDT_ERR_NOTFOUND) 282*d18719a4STom Rini err = _fdt_add_property(fdt, nodeoffset, name, len, &prop); 283*d18719a4STom Rini if (err) 284*d18719a4STom Rini return err; 285*d18719a4STom Rini 286*d18719a4STom Rini if (len) 287*d18719a4STom Rini memcpy(prop->data, val, len); 288*d18719a4STom Rini return 0; 289*d18719a4STom Rini } 290*d18719a4STom Rini 291*d18719a4STom Rini int fdt_appendprop(void *fdt, int nodeoffset, const char *name, 292*d18719a4STom Rini const void *val, int len) 293*d18719a4STom Rini { 294*d18719a4STom Rini struct fdt_property *prop; 295*d18719a4STom Rini int err, oldlen, newlen; 296*d18719a4STom Rini 297*d18719a4STom Rini FDT_RW_CHECK_HEADER(fdt); 298*d18719a4STom Rini 299*d18719a4STom Rini prop = fdt_get_property_w(fdt, nodeoffset, name, &oldlen); 300*d18719a4STom Rini if (prop) { 301*d18719a4STom Rini newlen = len + oldlen; 302*d18719a4STom Rini err = _fdt_splice_struct(fdt, prop->data, 303*d18719a4STom Rini FDT_TAGALIGN(oldlen), 304*d18719a4STom Rini FDT_TAGALIGN(newlen)); 305*d18719a4STom Rini if (err) 306*d18719a4STom Rini return err; 307*d18719a4STom Rini prop->len = cpu_to_fdt32(newlen); 308*d18719a4STom Rini memcpy(prop->data + oldlen, val, len); 309*d18719a4STom Rini } else { 310*d18719a4STom Rini err = _fdt_add_property(fdt, nodeoffset, name, len, &prop); 311*d18719a4STom Rini if (err) 312*d18719a4STom Rini return err; 313*d18719a4STom Rini memcpy(prop->data, val, len); 314*d18719a4STom Rini } 315*d18719a4STom Rini return 0; 316*d18719a4STom Rini } 317*d18719a4STom Rini 318*d18719a4STom Rini int fdt_delprop(void *fdt, int nodeoffset, const char *name) 319*d18719a4STom Rini { 320*d18719a4STom Rini struct fdt_property *prop; 321*d18719a4STom Rini int len, proplen; 322*d18719a4STom Rini 323*d18719a4STom Rini FDT_RW_CHECK_HEADER(fdt); 324*d18719a4STom Rini 325*d18719a4STom Rini prop = fdt_get_property_w(fdt, nodeoffset, name, &len); 326*d18719a4STom Rini if (! prop) 327*d18719a4STom Rini return len; 328*d18719a4STom Rini 329*d18719a4STom Rini proplen = sizeof(*prop) + FDT_TAGALIGN(len); 330*d18719a4STom Rini return _fdt_splice_struct(fdt, prop, proplen, 0); 331*d18719a4STom Rini } 332*d18719a4STom Rini 333*d18719a4STom Rini int fdt_add_subnode_namelen(void *fdt, int parentoffset, 334*d18719a4STom Rini const char *name, int namelen) 335*d18719a4STom Rini { 336*d18719a4STom Rini struct fdt_node_header *nh; 337*d18719a4STom Rini int offset, nextoffset; 338*d18719a4STom Rini int nodelen; 339*d18719a4STom Rini int err; 340*d18719a4STom Rini uint32_t tag; 341*d18719a4STom Rini fdt32_t *endtag; 342*d18719a4STom Rini 343*d18719a4STom Rini FDT_RW_CHECK_HEADER(fdt); 344*d18719a4STom Rini 345*d18719a4STom Rini offset = fdt_subnode_offset_namelen(fdt, parentoffset, name, namelen); 346*d18719a4STom Rini if (offset >= 0) 347*d18719a4STom Rini return -FDT_ERR_EXISTS; 348*d18719a4STom Rini else if (offset != -FDT_ERR_NOTFOUND) 349*d18719a4STom Rini return offset; 350*d18719a4STom Rini 351*d18719a4STom Rini /* Try to place the new node after the parent's properties */ 352*d18719a4STom Rini fdt_next_tag(fdt, parentoffset, &nextoffset); /* skip the BEGIN_NODE */ 353*d18719a4STom Rini do { 354*d18719a4STom Rini offset = nextoffset; 355*d18719a4STom Rini tag = fdt_next_tag(fdt, offset, &nextoffset); 356*d18719a4STom Rini } while ((tag == FDT_PROP) || (tag == FDT_NOP)); 357*d18719a4STom Rini 358*d18719a4STom Rini nh = _fdt_offset_ptr_w(fdt, offset); 359*d18719a4STom Rini nodelen = sizeof(*nh) + FDT_TAGALIGN(namelen+1) + FDT_TAGSIZE; 360*d18719a4STom Rini 361*d18719a4STom Rini err = _fdt_splice_struct(fdt, nh, 0, nodelen); 362*d18719a4STom Rini if (err) 363*d18719a4STom Rini return err; 364*d18719a4STom Rini 365*d18719a4STom Rini nh->tag = cpu_to_fdt32(FDT_BEGIN_NODE); 366*d18719a4STom Rini memset(nh->name, 0, FDT_TAGALIGN(namelen+1)); 367*d18719a4STom Rini memcpy(nh->name, name, namelen); 368*d18719a4STom Rini endtag = (fdt32_t *)((char *)nh + nodelen - FDT_TAGSIZE); 369*d18719a4STom Rini *endtag = cpu_to_fdt32(FDT_END_NODE); 370*d18719a4STom Rini 371*d18719a4STom Rini return offset; 372*d18719a4STom Rini } 373*d18719a4STom Rini 374*d18719a4STom Rini int fdt_add_subnode(void *fdt, int parentoffset, const char *name) 375*d18719a4STom Rini { 376*d18719a4STom Rini return fdt_add_subnode_namelen(fdt, parentoffset, name, strlen(name)); 377*d18719a4STom Rini } 378*d18719a4STom Rini 379*d18719a4STom Rini int fdt_del_node(void *fdt, int nodeoffset) 380*d18719a4STom Rini { 381*d18719a4STom Rini int endoffset; 382*d18719a4STom Rini 383*d18719a4STom Rini FDT_RW_CHECK_HEADER(fdt); 384*d18719a4STom Rini 385*d18719a4STom Rini endoffset = _fdt_node_end_offset(fdt, nodeoffset); 386*d18719a4STom Rini if (endoffset < 0) 387*d18719a4STom Rini return endoffset; 388*d18719a4STom Rini 389*d18719a4STom Rini return _fdt_splice_struct(fdt, _fdt_offset_ptr_w(fdt, nodeoffset), 390*d18719a4STom Rini endoffset - nodeoffset, 0); 391*d18719a4STom Rini } 392*d18719a4STom Rini 393*d18719a4STom Rini static void _fdt_packblocks(const char *old, char *new, 394*d18719a4STom Rini int mem_rsv_size, int struct_size) 395*d18719a4STom Rini { 396*d18719a4STom Rini int mem_rsv_off, struct_off, strings_off; 397*d18719a4STom Rini 398*d18719a4STom Rini mem_rsv_off = FDT_ALIGN(sizeof(struct fdt_header), 8); 399*d18719a4STom Rini struct_off = mem_rsv_off + mem_rsv_size; 400*d18719a4STom Rini strings_off = struct_off + struct_size; 401*d18719a4STom Rini 402*d18719a4STom Rini memmove(new + mem_rsv_off, old + fdt_off_mem_rsvmap(old), mem_rsv_size); 403*d18719a4STom Rini fdt_set_off_mem_rsvmap(new, mem_rsv_off); 404*d18719a4STom Rini 405*d18719a4STom Rini memmove(new + struct_off, old + fdt_off_dt_struct(old), struct_size); 406*d18719a4STom Rini fdt_set_off_dt_struct(new, struct_off); 407*d18719a4STom Rini fdt_set_size_dt_struct(new, struct_size); 408*d18719a4STom Rini 409*d18719a4STom Rini memmove(new + strings_off, old + fdt_off_dt_strings(old), 410*d18719a4STom Rini fdt_size_dt_strings(old)); 411*d18719a4STom Rini fdt_set_off_dt_strings(new, strings_off); 412*d18719a4STom Rini fdt_set_size_dt_strings(new, fdt_size_dt_strings(old)); 413*d18719a4STom Rini } 414*d18719a4STom Rini 415*d18719a4STom Rini int fdt_open_into(const void *fdt, void *buf, int bufsize) 416*d18719a4STom Rini { 417*d18719a4STom Rini int err; 418*d18719a4STom Rini int mem_rsv_size, struct_size; 419*d18719a4STom Rini int newsize; 420*d18719a4STom Rini const char *fdtstart = fdt; 421*d18719a4STom Rini const char *fdtend = fdtstart + fdt_totalsize(fdt); 422*d18719a4STom Rini char *tmp; 423*d18719a4STom Rini 424*d18719a4STom Rini FDT_CHECK_HEADER(fdt); 425*d18719a4STom Rini 426*d18719a4STom Rini mem_rsv_size = (fdt_num_mem_rsv(fdt)+1) 427*d18719a4STom Rini * sizeof(struct fdt_reserve_entry); 428*d18719a4STom Rini 429*d18719a4STom Rini if (fdt_version(fdt) >= 17) { 430*d18719a4STom Rini struct_size = fdt_size_dt_struct(fdt); 431*d18719a4STom Rini } else { 432*d18719a4STom Rini struct_size = 0; 433*d18719a4STom Rini while (fdt_next_tag(fdt, struct_size, &struct_size) != FDT_END) 434*d18719a4STom Rini ; 435*d18719a4STom Rini if (struct_size < 0) 436*d18719a4STom Rini return struct_size; 437*d18719a4STom Rini } 438*d18719a4STom Rini 439*d18719a4STom Rini if (!_fdt_blocks_misordered(fdt, mem_rsv_size, struct_size)) { 440*d18719a4STom Rini /* no further work necessary */ 441*d18719a4STom Rini err = fdt_move(fdt, buf, bufsize); 442*d18719a4STom Rini if (err) 443*d18719a4STom Rini return err; 444*d18719a4STom Rini fdt_set_version(buf, 17); 445*d18719a4STom Rini fdt_set_size_dt_struct(buf, struct_size); 446*d18719a4STom Rini fdt_set_totalsize(buf, bufsize); 447*d18719a4STom Rini return 0; 448*d18719a4STom Rini } 449*d18719a4STom Rini 450*d18719a4STom Rini /* Need to reorder */ 451*d18719a4STom Rini newsize = FDT_ALIGN(sizeof(struct fdt_header), 8) + mem_rsv_size 452*d18719a4STom Rini + struct_size + fdt_size_dt_strings(fdt); 453*d18719a4STom Rini 454*d18719a4STom Rini if (bufsize < newsize) 455*d18719a4STom Rini return -FDT_ERR_NOSPACE; 456*d18719a4STom Rini 457*d18719a4STom Rini /* First attempt to build converted tree at beginning of buffer */ 458*d18719a4STom Rini tmp = buf; 459*d18719a4STom Rini /* But if that overlaps with the old tree... */ 460*d18719a4STom Rini if (((tmp + newsize) > fdtstart) && (tmp < fdtend)) { 461*d18719a4STom Rini /* Try right after the old tree instead */ 462*d18719a4STom Rini tmp = (char *)(uintptr_t)fdtend; 463*d18719a4STom Rini if ((tmp + newsize) > ((char *)buf + bufsize)) 464*d18719a4STom Rini return -FDT_ERR_NOSPACE; 465*d18719a4STom Rini } 466*d18719a4STom Rini 467*d18719a4STom Rini _fdt_packblocks(fdt, tmp, mem_rsv_size, struct_size); 468*d18719a4STom Rini memmove(buf, tmp, newsize); 469*d18719a4STom Rini 470*d18719a4STom Rini fdt_set_magic(buf, FDT_MAGIC); 471*d18719a4STom Rini fdt_set_totalsize(buf, bufsize); 472*d18719a4STom Rini fdt_set_version(buf, 17); 473*d18719a4STom Rini fdt_set_last_comp_version(buf, 16); 474*d18719a4STom Rini fdt_set_boot_cpuid_phys(buf, fdt_boot_cpuid_phys(fdt)); 475*d18719a4STom Rini 476*d18719a4STom Rini return 0; 477*d18719a4STom Rini } 478*d18719a4STom Rini 479*d18719a4STom Rini int fdt_pack(void *fdt) 480*d18719a4STom Rini { 481*d18719a4STom Rini int mem_rsv_size; 482*d18719a4STom Rini 483*d18719a4STom Rini FDT_RW_CHECK_HEADER(fdt); 484*d18719a4STom Rini 485*d18719a4STom Rini mem_rsv_size = (fdt_num_mem_rsv(fdt)+1) 486*d18719a4STom Rini * sizeof(struct fdt_reserve_entry); 487*d18719a4STom Rini _fdt_packblocks(fdt, fdt, mem_rsv_size, fdt_size_dt_struct(fdt)); 488*d18719a4STom Rini fdt_set_totalsize(fdt, _fdt_data_size(fdt)); 489*d18719a4STom Rini 490*d18719a4STom Rini return 0; 491*d18719a4STom Rini } 492