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-rw-r--r--arch/arm64/lib/cache_va.c73
-rw-r--r--arch/arm64/lib/psci.c118
-rw-r--r--arch/arm64/lib/system.c46
-rw-r--r--arch/arm64/lib/timer.c48
4 files changed, 285 insertions, 0 deletions
diff --git a/arch/arm64/lib/cache_va.c b/arch/arm64/lib/cache_va.c
new file mode 100644
index 0000000..1fd7804
--- /dev/null
+++ b/arch/arm64/lib/cache_va.c
@@ -0,0 +1,73 @@
+/* SPDX-License-Identifier: GPL-2.0+ */
+/*
+ * cache_va.c - cache maintenance by virtual address, the operations
+ * the manual prescribes for boot handoff: clean to point of
+ * coherency (dc cvac), invalidate (dc ivac), and clean and
+ * invalidate (dc civac), plus icache invalidate by VA to the point
+ * of unification (ic ivau). by VA beats by set and way when the
+ * address range is known, the manual's own guidance, set and way
+ * only for the full flush cases in cache.S.
+ *
+ * Copyright (C) 2026 Bradley Morgan <brads@mainlining.org>
+ */
+
+#include <stdint.h>
+#include <sys/types.h>
+
+#define CACHE_LINE_SHIFT 6 /* 64 byte lines on cortex-a class */
+#define CACHE_LINE_SIZE (1 << CACHE_LINE_SHIFT)
+
+void tb_clean_dcache_range(uintptr_t start, size_t len)
+{
+ uintptr_t line = start & ~(uintptr_t)(CACHE_LINE_SIZE - 1);
+ uintptr_t end = start + len;
+
+ while (line < end) {
+ asm volatile("dc cvac, %0" :: "r" (line) : "memory");
+ line += CACHE_LINE_SIZE;
+ }
+
+ asm volatile("dsb sy" ::: "memory");
+}
+
+void tb_inval_dcache_range(uintptr_t start, size_t len)
+{
+ uintptr_t line = start & ~(uintptr_t)(CACHE_LINE_SIZE - 1);
+ uintptr_t end = start + len;
+
+ while (line < end) {
+ asm volatile("dc ivac, %0" :: "r" (line) : "memory");
+ line += CACHE_LINE_SIZE;
+ }
+
+ asm volatile("dsb sy" ::: "memory");
+}
+
+void tb_clean_inval_dcache_range(uintptr_t start, size_t len)
+{
+ uintptr_t line = start & ~(uintptr_t)(CACHE_LINE_SIZE - 1);
+ uintptr_t end = start + len;
+
+ while (line < end) {
+ asm volatile("dc civac, %0" :: "r" (line) : "memory");
+ line += CACHE_LINE_SIZE;
+ }
+
+ asm volatile("dsb sy" ::: "memory");
+}
+
+void tb_inval_icache_range(uintptr_t start, size_t len)
+{
+ uintptr_t line = start & ~(uintptr_t)(CACHE_LINE_SIZE - 1);
+ uintptr_t end = start + len;
+
+ while (line < end) {
+ asm volatile("ic ivau, %0" :: "r" (line) : "memory");
+ line += CACHE_LINE_SIZE;
+ }
+
+ asm volatile(
+ "dsb ish\n"
+ "isb\n"
+ ::: "memory");
+}
diff --git a/arch/arm64/lib/psci.c b/arch/arm64/lib/psci.c
new file mode 100644
index 0000000..ad5f461
--- /dev/null
+++ b/arch/arm64/lib/psci.c
@@ -0,0 +1,118 @@
+/* SPDX-License-Identifier: GPL-2.0+ */
+/*
+ * psci.c - PSCI 0.2 at EL2, the calls a payload makes to control
+ * cores and the system, per DEN 0022. the call arrives as an HVC
+ * trap at EL2 (EC 0x16), x0 holds the function id, x1 to x3 the
+ * arguments, the return value goes back in x0 and eret resumes the
+ * caller at EL1.
+ *
+ * CPU_ON writes the spin gate of the target core and SEVs, the pen
+ * from start.S does the release. CPU_OFF parks the calling core.
+ * SYSTEM_OFF and SYSTEM_RESET drive the architecture reset domain.
+ *
+ * Copyright (C) 2026 Bradley Morgan <brads@mainlining.org>
+ */
+
+#include <asm/psci.h>
+#include <debug.h>
+
+extern void tb_system_reset(void);
+extern void tb_system_off(void);
+
+/* the gates and stamps from start.S, one per possible core */
+extern unsigned long tb_spin_gates[8];
+extern unsigned char tb_pen_stamps[8];
+
+static uint64_t psci_cpu_on(uint64_t target, uint64_t entry,
+ uint64_t ctx)
+{
+ unsigned long mpidr;
+ int cpu;
+
+ /* affinity 0 only, our gate array indexes cores 0..7 */
+ if (target > 7)
+ return PSCI_RET_INVALID_PARAMS;
+
+ asm volatile("mrs %0, mpidr_el1" : "=r" (mpidr));
+ if ((mpidr & 0xff) == target)
+ return PSCI_RET_ALREADY_ON;
+
+ cpu = (int)target;
+
+ /*
+ * the pen saves no context, CPU_ON per DEN 0022 passes an
+ * entry and a context id. the pen enters with x0 = ctx, the
+ * kernel secondary entry takes x0 as its context pointer.
+ * the gate holds the entry, the stamp array the ctx.
+ */
+ tb_spin_gates[cpu] = entry;
+ tb_pen_stamps[cpu] = (unsigned char)(ctx & 0xff);
+
+ /* make the gate write visible before the wake, D1-2255 */
+ asm volatile("dsb sy");
+ asm volatile("sev");
+
+ dprintf(ALWAYS, "psci: cpu_on %llu -> %llx\n",
+ (unsigned long long)target,
+ (unsigned long long)entry);
+
+ return PSCI_RET_SUCCESS;
+}
+
+extern void park_ret(void);
+
+static uint64_t psci_cpu_off(void)
+{
+ unsigned long mpidr;
+ int cpu;
+
+ asm volatile("mrs %0, mpidr_el1" : "=r" (mpidr));
+ cpu = (int)(mpidr & 0xff);
+
+ if (cpu > 7)
+ return PSCI_RET_NOT_SUPPORTED;
+
+ /* clear our own gate and go back to the pen */
+ tb_spin_gates[cpu] = 0;
+
+ dprintf(ALWAYS, "psci: cpu_off %d\n", cpu);
+
+ asm volatile(
+ "dsb sy\n"
+ "b park_ret\n"
+ );
+
+ return PSCI_RET_INTERNAL_FAIL; /* not reached */
+}
+
+/*
+ * the asm vector calls this with the caller x0-x3 still in place,
+ * function id in x0, arguments in x1-x3, the return lands in x0.
+ */
+uint64_t tb_psci_dispatch(uint64_t fn, uint64_t x1, uint64_t x2,
+ uint64_t x3)
+{
+ switch (fn) {
+ case PSCI_FN_VERSION:
+ return PSCI_VERSION_0_2;
+
+ case PSCI_FN_CPU_ON:
+ return psci_cpu_on(x1, x2, x3);
+
+ case PSCI_FN_CPU_OFF:
+ return psci_cpu_off();
+
+ case PSCI_FN_SYSTEM_OFF:
+ dprintf(ALWAYS, "psci: system off\n");
+ tb_system_off();
+ return PSCI_RET_SUCCESS;
+
+ case PSCI_FN_SYSTEM_RESET:
+ dprintf(ALWAYS, "psci: system reset\n");
+ tb_system_reset();
+ return PSCI_RET_INTERNAL_FAIL; /* not reached */
+
+ default:
+ return PSCI_RET_NOT_SUPPORTED;
+ }
+}
diff --git a/arch/arm64/lib/system.c b/arch/arm64/lib/system.c
new file mode 100644
index 0000000..4e227f6
--- /dev/null
+++ b/arch/arm64/lib/system.c
@@ -0,0 +1,46 @@
+/* SPDX-License-Identifier: GPL-2.0+ */
+/*
+ * system.c - system power control, the PSCI SYSTEM_OFF and
+ * SYSTEM_RESET backends. off parks the core in WFI forever, the
+ * manual's low power entry (D1-2255). reset drives the PE reset
+ * domain: RMR_EL2 reset request with the system reset bit, RR bit 1,
+ * followed by a barrier pair so the request retires before anything
+ * else observes the core.
+ *
+ * On real hardware a SoC also needs a watchdog or PMIC write for a
+ * full board reset, that is board territory, the arch part is this.
+ *
+ * Copyright (C) 2026 Bradley Morgan <brads@mainlining.org>
+ */
+
+#include <debug.h>
+#include <stdint.h>
+
+void tb_system_off(void)
+{
+ dprintf(ALWAYS, "system off\n");
+
+ for (;;) {
+ asm volatile("wfi");
+ }
+}
+
+void tb_system_reset(void)
+{
+ uint64_t rmr;
+
+ dprintf(ALWAYS, "system reset\n");
+
+ asm volatile("mrs %0, rmr_el2" : "=r" (rmr));
+ rmr |= (1 << 1); /* RR, request reset */
+ asm volatile(
+ "msr rmr_el2, %0\n"
+ "dsb sy\n"
+ "isb\n"
+ :: "r" (rmr));
+
+ /* if the reset domain ignores us, park */
+ for (;;) {
+ asm volatile("wfi");
+ }
+}
diff --git a/arch/arm64/lib/timer.c b/arch/arm64/lib/timer.c
new file mode 100644
index 0000000..605cd18
--- /dev/null
+++ b/arch/arm64/lib/timer.c
@@ -0,0 +1,48 @@
+/* SPDX-License-Identifier: GPL-2.0+ */
+/*
+ * timer.c - generic timer delays, the system counter from D10. the
+ * counter is a fixed frequency free running counter, CNTFRQ_EL0
+ * carries the frequency, CNTVCT_EL0 the 64 bit count. delays are a
+ * busy wait on the counter, no interrupts needed, microsecond and
+ * millisecond granularity.
+ *
+ * CNTVCT_EL0 is the virtual counter view; at EL2 with no offset
+ * configured it is the physical count. the read is not speculative
+ * and needs an isb to serialize against subsequent counter reads
+ * per the counter access rules.
+ *
+ * Copyright (C) 2026 Bradley Morgan <brads@mainlining.org>
+ */
+
+#include <stdint.h>
+
+static uint64_t read_cntfrq(void)
+{
+ uint64_t v;
+
+ asm volatile("mrs %0, cntfrq_el0" : "=r" (v));
+ return v;
+}
+
+static uint64_t read_counter(void)
+{
+ uint64_t v;
+
+ asm volatile("isb\nmrs %0, cntvct_el0" : "=r" (v));
+ return v;
+}
+
+void tb_udelay(uint32_t us)
+{
+ uint64_t freq = read_cntfrq();
+ uint64_t start = read_counter();
+ uint64_t ticks = (uint64_t)us * freq / 1000000ULL;
+
+ while (read_counter() - start < ticks)
+ ;
+}
+
+void tb_mdelay(uint32_t ms)
+{
+ tb_udelay(ms * 1000);
+}