Commit 6a923216 authored by Milton Miller's avatar Milton Miller Committed by Paul Mackerras

[POWERPC] bootwrapper: Add a fatal error helper

Add a macro fatal that calls printf then exit.  User must include stdio.h.

Typically replaces 3 lines with 1, although I added back some whitespace.
Signed-off-by: default avatarMilton Miller <miltonm@bga.com>
Signed-off-by: default avatarPaul Mackerras <paulus@samba.org>
parent 3771f2d9
......@@ -52,18 +52,14 @@ void gunzip_start(struct gunzip_state *state, void *src, int srclen)
int r, flags;
state->s.workspace = state->scratch;
if (zlib_inflate_workspacesize() > sizeof(state->scratch)) {
printf("insufficient scratch space for gunzip\n\r");
exit();
}
if (zlib_inflate_workspacesize() > sizeof(state->scratch))
fatal("insufficient scratch space for gunzip\n\r");
/* skip header */
hdrlen = 10;
flags = hdr[3];
if (hdr[2] != Z_DEFLATED || (flags & RESERVED) != 0) {
printf("bad gzipped data\n\r");
exit();
}
if (hdr[2] != Z_DEFLATED || (flags & RESERVED) != 0)
fatal("bad gzipped data\n\r");
if ((flags & EXTRA_FIELD) != 0)
hdrlen = 12 + hdr[10] + (hdr[11] << 8);
if ((flags & ORIG_NAME) != 0)
......@@ -74,16 +70,12 @@ void gunzip_start(struct gunzip_state *state, void *src, int srclen)
;
if ((flags & HEAD_CRC) != 0)
hdrlen += 2;
if (hdrlen >= srclen) {
printf("gunzip_start: ran out of data in header\n\r");
exit();
}
if (hdrlen >= srclen)
fatal("gunzip_start: ran out of data in header\n\r");
r = zlib_inflateInit2(&state->s, -MAX_WBITS);
if (r != Z_OK) {
printf("inflateInit2 returned %d\n\r", r);
exit();
}
if (r != Z_OK)
fatal("inflateInit2 returned %d\n\r", r);
}
state->s.next_in = src + hdrlen;
......@@ -117,10 +109,8 @@ int gunzip_partial(struct gunzip_state *state, void *dst, int dstlen)
state->s.next_out = dst;
state->s.avail_out = dstlen;
r = zlib_inflate(&state->s, Z_FULL_FLUSH);
if (r != Z_OK && r != Z_STREAM_END) {
printf("inflate returned %d msg: %s\n\r", r, state->s.msg);
exit();
}
if (r != Z_OK && r != Z_STREAM_END)
fatal("inflate returned %d msg: %s\n\r", r, state->s.msg);
len = state->s.next_out - (unsigned char *)dst;
} else {
/* uncompressed image */
......@@ -151,10 +141,8 @@ void gunzip_exactly(struct gunzip_state *state, void *dst, int dstlen)
int len;
len = gunzip_partial(state, dst, dstlen);
if (len < dstlen) {
printf("gunzip_block: ran out of data\n\r");
exit();
}
if (len < dstlen)
fatal("gunzip_block: ran out of data\n\r");
}
/**
......
......@@ -118,10 +118,9 @@ static struct addr_range prep_kernel(void)
gunzip_start(&gzstate, vmlinuz_addr, vmlinuz_size);
gunzip_exactly(&gzstate, elfheader, sizeof(elfheader));
if (!parse_elf64(elfheader, &ei) && !parse_elf32(elfheader, &ei)) {
printf("Error: not a valid PPC32 or PPC64 ELF file!\n\r");
exit();
}
if (!parse_elf64(elfheader, &ei) && !parse_elf32(elfheader, &ei))
fatal("Error: not a valid PPC32 or PPC64 ELF file!\n\r");
if (platform_ops.image_hdr)
platform_ops.image_hdr(elfheader);
......@@ -135,11 +134,9 @@ static struct addr_range prep_kernel(void)
if (platform_ops.vmlinux_alloc) {
addr = platform_ops.vmlinux_alloc(ei.memsize);
} else {
if ((unsigned long)_start < ei.memsize) {
printf("Insufficient memory for kernel at address 0!"
if ((unsigned long)_start < ei.memsize)
fatal("Insufficient memory for kernel at address 0!"
" (_start=%lx)\n\r", _start);
exit();
}
}
/* Finally, gunzip the kernel */
......@@ -189,11 +186,9 @@ static struct addr_range prep_initrd(struct addr_range vmlinux,
printf("Allocating 0x%lx bytes for initrd ...\n\r",
initrd_size);
initrd_addr = (unsigned long)malloc(initrd_size);
if (! initrd_addr) {
printf("Can't allocate memory for initial "
if (! initrd_addr)
fatal("Can't allocate memory for initial "
"ramdisk !\n\r");
exit();
}
printf("Relocating initrd 0x%p <- 0x%p (0x%lx bytes)\n\r",
initrd_addr, old_addr, initrd_size);
memmove((void *)initrd_addr, old_addr, initrd_size);
......@@ -203,10 +198,8 @@ static struct addr_range prep_initrd(struct addr_range vmlinux,
/* Tell the kernel initrd address via device tree */
devp = finddevice("/chosen");
if (! devp) {
printf("Device tree has no chosen node!\n\r");
exit();
}
if (! devp)
fatal("Device tree has no chosen node!\n\r");
initrd_start = (u32)initrd_addr;
initrd_end = (u32)initrd_addr + initrd_size;
......@@ -303,7 +296,6 @@ void start(void *sp)
kentry((unsigned long)initrd.addr, initrd.size,
loader_info.promptr);
/* console closed so printf below may not work */
printf("Error: Linux kernel returned to zImage boot wrapper!\n\r");
exit();
/* console closed so printf in fatal below may not work */
fatal("Error: Linux kernel returned to zImage boot wrapper!\n\r");
}
......@@ -212,10 +212,9 @@ static void *of_vmlinux_alloc(unsigned long size)
{
void *p = malloc(size);
if (!p) {
printf("Can't allocate memory for kernel image!\n\r");
exit();
}
if (!p)
fatal("Can't allocate memory for kernel image!\n\r");
return p;
}
......
......@@ -158,6 +158,8 @@ static inline void exit(void)
platform_ops.exit();
for(;;);
}
#define fatal(args...) { printf(args); exit(); }
#define BSS_STACK(size) \
static char _bss_stack[size]; \
......
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