}
struct text_poke_loc {
- void *addr;
+ s32 rel_addr; /* addr := _stext + rel_addr */
s32 rel32;
u8 opcode;
const u8 text[POKE_MAX_OPCODE_SIZE];
int nr_entries;
} bp_patching;
+static inline void *text_poke_addr(struct text_poke_loc *tp)
+{
+ return _stext + tp->rel_addr;
+}
+
static int notrace patch_cmp(const void *key, const void *elt)
{
struct text_poke_loc *tp = (struct text_poke_loc *) elt;
- if (key < tp->addr)
+ if (key < text_poke_addr(tp))
return -1;
- if (key > tp->addr)
+ if (key > text_poke_addr(tp))
return 1;
return 0;
}
return 0;
} else {
tp = bp_patching.vec;
- if (tp->addr != ip)
+ if (text_poke_addr(tp) != ip)
return 0;
}
* First step: add a int3 trap to the address that will be patched.
*/
for (i = 0; i < nr_entries; i++)
- text_poke(tp[i].addr, &int3, sizeof(int3));
+ text_poke(text_poke_addr(&tp[i]), &int3, sizeof(int3));
on_each_cpu(do_sync_core, NULL, 1);
int len = text_opcode_size(tp[i].opcode);
if (len - sizeof(int3) > 0) {
- text_poke((char *)tp[i].addr + sizeof(int3),
+ text_poke(text_poke_addr(&tp[i]) + sizeof(int3),
(const char *)tp[i].text + sizeof(int3),
len - sizeof(int3));
do_sync++;
if (tp[i].text[0] == INT3_INSN_OPCODE)
continue;
- text_poke(tp[i].addr, tp[i].text, sizeof(int3));
+ text_poke(text_poke_addr(&tp[i]), tp[i].text, sizeof(int3));
do_sync++;
}
BUG_ON(!insn_complete(&insn));
BUG_ON(len != insn.length);
- tp->addr = addr;
+ tp->rel_addr = addr - (void *)_stext;
tp->opcode = insn.opcode.bytes[0];
switch (tp->opcode) {
return true;
tp = &tp_vec[tp_vec_nr - 1];
- if ((unsigned long)tp->addr > (unsigned long)addr)
+ if ((unsigned long)text_poke_addr(tp) > (unsigned long)addr)
return true;
return false;