void fdt_init(void *blob)
{
int err;
+ int bufsize;
dt_ops.finddevice = fdt_wrapper_finddevice;
dt_ops.getprop = fdt_wrapper_getprop;
/* Make sure the dt blob is the right version and so forth */
fdt = blob;
- err = fdt_open_into(fdt, fdt, fdt_totalsize(blob));
- if (err == -FDT_ERR_NOSPACE) {
- int bufsize = fdt_totalsize(fdt) + 4;
- buf = malloc(bufsize);
- err = fdt_open_into(fdt, buf, bufsize);
- }
+ bufsize = fdt_totalsize(fdt) + 4;
+ buf = malloc(bufsize);
+ if(!buf)
+ fatal("malloc failed. can't relocate the device tree\n\r");
+
+ err = fdt_open_into(fdt, buf, bufsize);
if (err != 0)
fatal("fdt_init(): %s\n\r", fdt_strerror(err));
- if (buf)
- fdt = buf;
+ fdt = buf;
}
if (platform_ops.vmlinux_alloc) {
addr = platform_ops.vmlinux_alloc(ei.memsize);
} else {
- if ((unsigned long)_start < ei.memsize)
+ /*
+ * Check if the kernel image (without bss) would overwrite the
+ * bootwrapper. The device tree has been moved in fdt_init()
+ * to an area allocated with malloc() (somewhere past _end).
+ */
+ if ((unsigned long)_start < ei.loadsize)
fatal("Insufficient memory for kernel at address 0!"
- " (_start=%p)\n\r", _start);
+ " (_start=%p, uncomressed size=%08x)\n\r",
+ _start, ei.loadsize);
+
+ if ((unsigned long)_end < ei.memsize)
+ fatal("The final kernel image would overwrite the "
+ "device tree\n\r");
}
/* Finally, gunzip the kernel */