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authorNikola Valerjev <nikola@ghs.com>2005-12-10 06:59:15 -0500
committerRussell King <rmk+kernel@arm.linux.org.uk>2005-12-10 06:59:15 -0500
commit22f975f4ffa707ea24507f6899bb9f5a1ff034bc (patch)
treeb82d3d97110b8f5c9d80dfca36d38be98498fd5a /arch/arm
parent5b35193f5868da5e63f5b4cfe8fbcf9f10fe65cd (diff)
[ARM] 3200/1: Singlestep over ARM BX and BLX instructions using ptrace fix
Patch from Nikola Valerjev Single stepping an application using ptrace() fails over ARM instructions BX and BLX. Steps to reproduce: Compile and link the following files main.c ----- void foo(); int main() { foo(); return 0; } foo.s ----- .text .globl foo foo: BX LR Using ptrace() functionality, run to main(), and start singlestepping. Singlestep over \"BX LR\" instruction won\'t transfer the control back to main, but run the code to completion. This problems seems to be in the function get_branch_address() in arch/arm/kernel/ptrace.c. The function doesn\'t seem to recognize BX and BLX instructions as branches. BX and BLX instructions can be used to convert from ARM to Thumb mode if the target address has the low bit set. However, they are also perfectly legal in the ARM only mode. Although other things in the kernel seem to indicate that only ARM mode is accepted (and not Thumb), many compilers will generate BX and BLX instructions even when generating ARM only code. Signed-off-by: Nikola Valerjev <nikola@ghs.com> Signed-off-by: Russell King <rmk+kernel@arm.linux.org.uk>
Diffstat (limited to 'arch/arm')
-rw-r--r--arch/arm/kernel/ptrace.c9
1 files changed, 9 insertions, 0 deletions
diff --git a/arch/arm/kernel/ptrace.c b/arch/arm/kernel/ptrace.c
index 9a340e790da5..2b84f78d7b0f 100644
--- a/arch/arm/kernel/ptrace.c
+++ b/arch/arm/kernel/ptrace.c
@@ -242,6 +242,15 @@ get_branch_address(struct task_struct *child, unsigned long pc, unsigned long in
242 */ 242 */
243 long aluop1, aluop2, ccbit; 243 long aluop1, aluop2, ccbit;
244 244
245 if ((insn & 0x0fffffd0) == 0x012fff10) {
246 /*
247 * bx or blx
248 */
249 alt = get_user_reg(child, insn & 15);
250 break;
251 }
252
253
245 if ((insn & 0xf000) != 0xf000) 254 if ((insn & 0xf000) != 0xf000)
246 break; 255 break;
247 256