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-rw-r--r--linux-user/aarch64/target_prctl.h160
-rw-r--r--linux-user/aarch64/target_signal.h18
-rw-r--r--linux-user/aarch64/target_syscall.h24
3 files changed, 160 insertions, 42 deletions
diff --git a/linux-user/aarch64/target_prctl.h b/linux-user/aarch64/target_prctl.h
new file mode 100644
index 0000000000..3f5a5d3933
--- /dev/null
+++ b/linux-user/aarch64/target_prctl.h
@@ -0,0 +1,160 @@
+/*
+ * AArch64 specific prctl functions for linux-user
+ *
+ * SPDX-License-Identifier: GPL-2.0-or-later
+ */
+#ifndef AARCH64_TARGET_PRCTL_H
+#define AARCH64_TARGET_PRCTL_H
+
+static abi_long do_prctl_get_vl(CPUArchState *env)
+{
+    ARMCPU *cpu = env_archcpu(env);
+    if (cpu_isar_feature(aa64_sve, cpu)) {
+        return ((cpu->env.vfp.zcr_el[1] & 0xf) + 1) * 16;
+    }
+    return -TARGET_EINVAL;
+}
+#define do_prctl_get_vl do_prctl_get_vl
+
+static abi_long do_prctl_set_vl(CPUArchState *env, abi_long arg2)
+{
+    /*
+     * We cannot support either PR_SVE_SET_VL_ONEXEC or PR_SVE_VL_INHERIT.
+     * Note the kernel definition of sve_vl_valid allows for VQ=512,
+     * i.e. VL=8192, even though the current architectural maximum is VQ=16.
+     */
+    if (cpu_isar_feature(aa64_sve, env_archcpu(env))
+        && arg2 >= 0 && arg2 <= 512 * 16 && !(arg2 & 15)) {
+        ARMCPU *cpu = env_archcpu(env);
+        uint32_t vq, old_vq;
+
+        old_vq = (env->vfp.zcr_el[1] & 0xf) + 1;
+        vq = MAX(arg2 / 16, 1);
+        vq = MIN(vq, cpu->sve_max_vq);
+
+        if (vq < old_vq) {
+            aarch64_sve_narrow_vq(env, vq);
+        }
+        env->vfp.zcr_el[1] = vq - 1;
+        arm_rebuild_hflags(env);
+        return vq * 16;
+    }
+    return -TARGET_EINVAL;
+}
+#define do_prctl_set_vl do_prctl_set_vl
+
+static abi_long do_prctl_reset_keys(CPUArchState *env, abi_long arg2)
+{
+    ARMCPU *cpu = env_archcpu(env);
+
+    if (cpu_isar_feature(aa64_pauth, cpu)) {
+        int all = (PR_PAC_APIAKEY | PR_PAC_APIBKEY |
+                   PR_PAC_APDAKEY | PR_PAC_APDBKEY | PR_PAC_APGAKEY);
+        int ret = 0;
+        Error *err = NULL;
+
+        if (arg2 == 0) {
+            arg2 = all;
+        } else if (arg2 & ~all) {
+            return -TARGET_EINVAL;
+        }
+        if (arg2 & PR_PAC_APIAKEY) {
+            ret |= qemu_guest_getrandom(&env->keys.apia,
+                                        sizeof(ARMPACKey), &err);
+        }
+        if (arg2 & PR_PAC_APIBKEY) {
+            ret |= qemu_guest_getrandom(&env->keys.apib,
+                                        sizeof(ARMPACKey), &err);
+        }
+        if (arg2 & PR_PAC_APDAKEY) {
+            ret |= qemu_guest_getrandom(&env->keys.apda,
+                                        sizeof(ARMPACKey), &err);
+        }
+        if (arg2 & PR_PAC_APDBKEY) {
+            ret |= qemu_guest_getrandom(&env->keys.apdb,
+                                        sizeof(ARMPACKey), &err);
+        }
+        if (arg2 & PR_PAC_APGAKEY) {
+            ret |= qemu_guest_getrandom(&env->keys.apga,
+                                        sizeof(ARMPACKey), &err);
+        }
+        if (ret != 0) {
+            /*
+             * Some unknown failure in the crypto.  The best
+             * we can do is log it and fail the syscall.
+             * The real syscall cannot fail this way.
+             */
+            qemu_log_mask(LOG_UNIMP, "PR_PAC_RESET_KEYS: Crypto failure: %s",
+                          error_get_pretty(err));
+            error_free(err);
+            return -TARGET_EIO;
+        }
+        return 0;
+    }
+    return -TARGET_EINVAL;
+}
+#define do_prctl_reset_keys do_prctl_reset_keys
+
+static abi_long do_prctl_set_tagged_addr_ctrl(CPUArchState *env, abi_long arg2)
+{
+    abi_ulong valid_mask = PR_TAGGED_ADDR_ENABLE;
+    ARMCPU *cpu = env_archcpu(env);
+
+    if (cpu_isar_feature(aa64_mte, cpu)) {
+        valid_mask |= PR_MTE_TCF_MASK;
+        valid_mask |= PR_MTE_TAG_MASK;
+    }
+
+    if (arg2 & ~valid_mask) {
+        return -TARGET_EINVAL;
+    }
+    env->tagged_addr_enable = arg2 & PR_TAGGED_ADDR_ENABLE;
+
+    if (cpu_isar_feature(aa64_mte, cpu)) {
+        switch (arg2 & PR_MTE_TCF_MASK) {
+        case PR_MTE_TCF_NONE:
+        case PR_MTE_TCF_SYNC:
+        case PR_MTE_TCF_ASYNC:
+            break;
+        default:
+            return -EINVAL;
+        }
+
+        /*
+         * Write PR_MTE_TCF to SCTLR_EL1[TCF0].
+         * Note that the syscall values are consistent with hw.
+         */
+        env->cp15.sctlr_el[1] =
+            deposit64(env->cp15.sctlr_el[1], 38, 2, arg2 >> PR_MTE_TCF_SHIFT);
+
+        /*
+         * Write PR_MTE_TAG to GCR_EL1[Exclude].
+         * Note that the syscall uses an include mask,
+         * and hardware uses an exclude mask -- invert.
+         */
+        env->cp15.gcr_el1 =
+            deposit64(env->cp15.gcr_el1, 0, 16, ~arg2 >> PR_MTE_TAG_SHIFT);
+        arm_rebuild_hflags(env);
+    }
+    return 0;
+}
+#define do_prctl_set_tagged_addr_ctrl do_prctl_set_tagged_addr_ctrl
+
+static abi_long do_prctl_get_tagged_addr_ctrl(CPUArchState *env)
+{
+    ARMCPU *cpu = env_archcpu(env);
+    abi_long ret = 0;
+
+    if (env->tagged_addr_enable) {
+        ret |= PR_TAGGED_ADDR_ENABLE;
+    }
+    if (cpu_isar_feature(aa64_mte, cpu)) {
+        /* See do_prctl_set_tagged_addr_ctrl. */
+        ret |= extract64(env->cp15.sctlr_el[1], 38, 2) << PR_MTE_TCF_SHIFT;
+        ret = deposit64(ret, PR_MTE_TAG_SHIFT, 16, ~env->cp15.gcr_el1);
+    }
+    return ret;
+}
+#define do_prctl_get_tagged_addr_ctrl do_prctl_get_tagged_addr_ctrl
+
+#endif /* AARCH64_TARGET_PRCTL_H */
diff --git a/linux-user/aarch64/target_signal.h b/linux-user/aarch64/target_signal.h
index 7580d99403..40e399d990 100644
--- a/linux-user/aarch64/target_signal.h
+++ b/linux-user/aarch64/target_signal.h
@@ -1,24 +1,6 @@
 #ifndef AARCH64_TARGET_SIGNAL_H
 #define AARCH64_TARGET_SIGNAL_H
 
-/* this struct defines a stack used during syscall handling */
-
-typedef struct target_sigaltstack {
-    abi_ulong ss_sp;
-    abi_int ss_flags;
-    abi_ulong ss_size;
-} target_stack_t;
-
-
-/*
- * sigaltstack controls
- */
-#define TARGET_SS_ONSTACK 1
-#define TARGET_SS_DISABLE 2
-
-#define TARGET_MINSIGSTKSZ 2048
-#define TARGET_SIGSTKSZ 8192
-
 #include "../generic/signal.h"
 
 #define TARGET_SEGV_MTEAERR  8  /* Asynchronous ARM MTE error */
diff --git a/linux-user/aarch64/target_syscall.h b/linux-user/aarch64/target_syscall.h
index 76f6c3391d..a98f568ab4 100644
--- a/linux-user/aarch64/target_syscall.h
+++ b/linux-user/aarch64/target_syscall.h
@@ -15,32 +15,8 @@ struct target_pt_regs {
 #endif
 #define UNAME_MINIMUM_RELEASE "3.8.0"
 #define TARGET_CLONE_BACKWARDS
-#define TARGET_MINSIGSTKSZ       2048
 #define TARGET_MCL_CURRENT 1
 #define TARGET_MCL_FUTURE  2
 #define TARGET_MCL_ONFAULT 4
 
-#define TARGET_PR_SVE_SET_VL  50
-#define TARGET_PR_SVE_GET_VL  51
-
-#define TARGET_PR_PAC_RESET_KEYS 54
-# define TARGET_PR_PAC_APIAKEY   (1 << 0)
-# define TARGET_PR_PAC_APIBKEY   (1 << 1)
-# define TARGET_PR_PAC_APDAKEY   (1 << 2)
-# define TARGET_PR_PAC_APDBKEY   (1 << 3)
-# define TARGET_PR_PAC_APGAKEY   (1 << 4)
-
-#define TARGET_PR_SET_TAGGED_ADDR_CTRL 55
-#define TARGET_PR_GET_TAGGED_ADDR_CTRL 56
-# define TARGET_PR_TAGGED_ADDR_ENABLE  (1UL << 0)
-/* MTE tag check fault modes */
-# define TARGET_PR_MTE_TCF_SHIFT       1
-# define TARGET_PR_MTE_TCF_NONE        (0UL << TARGET_PR_MTE_TCF_SHIFT)
-# define TARGET_PR_MTE_TCF_SYNC        (1UL << TARGET_PR_MTE_TCF_SHIFT)
-# define TARGET_PR_MTE_TCF_ASYNC       (2UL << TARGET_PR_MTE_TCF_SHIFT)
-# define TARGET_PR_MTE_TCF_MASK        (3UL << TARGET_PR_MTE_TCF_SHIFT)
-/* MTE tag inclusion mask */
-# define TARGET_PR_MTE_TAG_SHIFT       3
-# define TARGET_PR_MTE_TAG_MASK        (0xffffUL << TARGET_PR_MTE_TAG_SHIFT)
-
 #endif /* AARCH64_TARGET_SYSCALL_H */