Now that we have a secure data section and space to store per-CPU target
PC address, switch to it instead of storing the target PC on the stack.
Also save clobbered r4-r7 registers on the stack and restore them on
return in psci_cpu_on for Tegra, i.MX7, and LS102xA platforms.
Signed-off-by: Chen-Yu Tsai <wens@csie.org>
Signed-off-by: Hans de Goede <hdegoede@redhat.com>
@ r2 = target PC
.globl psci_cpu_on
psci_cpu_on:
- push {lr}
+ push {r4, r5, r6, lr}
@ Clear and Get the correct CPU number
@ r1 = 0xf01
- and r1, r1, #0xff
+ and r4, r1, #0xff
- mov r0, r1
- bl psci_get_cpu_stack_top
- str r2, [r0]
- dsb
+ mov r0, r4
+ mov r1, r2
+ bl psci_save_target_pc
+ mov r1, r4
@ Get DCFG base address
movw r4, #(CONFIG_SYS_FSL_GUTS_ADDR & 0xffff)
@ Return
mov r0, #ARM_PSCI_RET_SUCCESS
- pop {lr}
+ pop {r4, r5, r6, lr}
bx lr
.globl psci_cpu_off
.globl psci_cpu_on
psci_cpu_on:
- push {lr}
+ push {r4, r5, lr}
+ mov r4, r0
+ mov r5, r1
mov r0, r1
- bl psci_get_cpu_stack_top
- str r2, [r0]
- dsb
+ mov r1, r2
+ bl psci_save_target_pc
+ mov r0, r4
+ mov r1, r5
ldr r2, =psci_cpu_entry
bl imx_cpu_on
- pop {pc}
+ pop {r4, r5, pc}
.globl psci_cpu_off
psci_cpu_off:
bl _nonsec_init
bl psci_get_cpu_id @ CPU ID => r0
- bl psci_get_cpu_stack_top @ stack top => r0
- ldr r0, [r0] @ target PC at stack top
+ bl psci_get_target_pc @ target PC => r0
b _do_nonsec_entry
ENDPROC(psci_cpu_entry)
(struct sunxi_cpucfg_reg *)SUNXI_CPUCFG_BASE;
u32 cpu = (mpidr & 0x3);
- /* store target PC at target CPU stack top */
- writel(pc, psci_get_cpu_stack_top(cpu));
- DSB;
+ /* store target PC */
+ psci_save_target_pc(cpu, pc);
/* Set secondary core power on PC */
writel((u32)&psci_cpu_entry, &cpucfg->priv0);
ENDPROC(psci_cpu_off)
ENTRY(psci_cpu_on)
- push {lr}
+ push {r4, r5, r6, lr}
+ mov r4, r1
mov r0, r1
- bl psci_get_cpu_stack_top @ get stack top of target CPU
- str r2, [r0] @ store target PC at stack top
- dsb
+ mov r1, r2
+ bl psci_save_target_pc @ store target PC
+ mov r1, r4
ldr r6, =TEGRA_RESET_EXCEPTION_VECTOR
ldr r5, =psci_cpu_entry
str r5, [r6, r2]
mov r0, #ARM_PSCI_RET_SUCCESS @ Return PSCI_RET_SUCCESS
- pop {pc}
+ pop {r4, r5, r6, pc}
ENDPROC(psci_cpu_on)
.popsection