firmware: qcom: scm: Use atomic SCM for cold boot
This patch changes the cold_set_boot_addr function to use atomic SCM calls. cold_set_boot_addr required adding qcom_scm_call_atomic2 to support the two arguments going to the smc call. Using atomic removes the need for memory allocation and instead places all arguments in registers. Signed-off-by: Andy Gross <andy.gross@linaro.org> Reviewed-by: Stephen Boyd <sboyd@codeaurora.org> Acked-by: Bjorn Andersson <bjorn.andersson@linaro.org>
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@ -342,6 +342,41 @@ static s32 qcom_scm_call_atomic1(u32 svc, u32 cmd, u32 arg1)
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return r0;
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}
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/**
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* qcom_scm_call_atomic2() - Send an atomic SCM command with two arguments
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* @svc_id: service identifier
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* @cmd_id: command identifier
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* @arg1: first argument
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* @arg2: second argument
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*
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* This shall only be used with commands that are guaranteed to be
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* uninterruptable, atomic and SMP safe.
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*/
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static s32 qcom_scm_call_atomic2(u32 svc, u32 cmd, u32 arg1, u32 arg2)
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{
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int context_id;
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register u32 r0 asm("r0") = SCM_ATOMIC(svc, cmd, 2);
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register u32 r1 asm("r1") = (u32)&context_id;
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register u32 r2 asm("r2") = arg1;
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register u32 r3 asm("r3") = arg2;
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asm volatile(
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__asmeq("%0", "r0")
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__asmeq("%1", "r0")
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__asmeq("%2", "r1")
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__asmeq("%3", "r2")
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__asmeq("%4", "r3")
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#ifdef REQUIRES_SEC
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".arch_extension sec\n"
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#endif
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"smc #0 @ switch to secure world\n"
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: "=r" (r0)
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: "r" (r0), "r" (r1), "r" (r2), "r" (r3)
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);
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return r0;
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}
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u32 qcom_scm_get_version(void)
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{
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int context_id;
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@ -378,22 +413,6 @@ u32 qcom_scm_get_version(void)
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}
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EXPORT_SYMBOL(qcom_scm_get_version);
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/*
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* Set the cold/warm boot address for one of the CPU cores.
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*/
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static int qcom_scm_set_boot_addr(u32 addr, int flags)
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{
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struct {
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__le32 flags;
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__le32 addr;
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} cmd;
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cmd.addr = cpu_to_le32(addr);
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cmd.flags = cpu_to_le32(flags);
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return qcom_scm_call(QCOM_SCM_SVC_BOOT, QCOM_SCM_BOOT_ADDR,
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&cmd, sizeof(cmd), NULL, 0);
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}
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/**
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* qcom_scm_set_cold_boot_addr() - Set the cold boot address for cpus
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* @entry: Entry point function for the cpus
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@ -423,7 +442,8 @@ int __qcom_scm_set_cold_boot_addr(void *entry, const cpumask_t *cpus)
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set_cpu_present(cpu, false);
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}
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return qcom_scm_set_boot_addr(virt_to_phys(entry), flags);
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return qcom_scm_call_atomic2(QCOM_SCM_SVC_BOOT, QCOM_SCM_BOOT_ADDR,
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flags, virt_to_phys(entry));
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}
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/**
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@ -439,6 +459,10 @@ int __qcom_scm_set_warm_boot_addr(void *entry, const cpumask_t *cpus)
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int ret;
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int flags = 0;
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int cpu;
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struct {
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__le32 flags;
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__le32 addr;
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} cmd;
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/*
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* Reassign only if we are switching from hotplug entry point
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@ -454,7 +478,10 @@ int __qcom_scm_set_warm_boot_addr(void *entry, const cpumask_t *cpus)
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if (!flags)
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return 0;
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ret = qcom_scm_set_boot_addr(virt_to_phys(entry), flags);
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cmd.addr = cpu_to_le32(virt_to_phys(entry));
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cmd.flags = cpu_to_le32(flags);
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ret = qcom_scm_call(QCOM_SCM_SVC_BOOT, QCOM_SCM_BOOT_ADDR,
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&cmd, sizeof(cmd), NULL, 0);
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if (!ret) {
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for_each_cpu(cpu, cpus)
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qcom_scm_wb[cpu].entry = entry;
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