230 lines
6.0 KiB
C
230 lines
6.0 KiB
C
/*
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* Copyright (c) 2021-2022, Arm Limited. All rights reserved.
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*
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* SPDX-License-Identifier: BSD-3-Clause
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*/
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#include <stdint.h>
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#include <stdbool.h>
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#include <common/debug.h>
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#include <common/runtime_svc.h>
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#include <drivers/arm/ethosn.h>
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#include <drivers/delay_timer.h>
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#include <lib/mmio.h>
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#include <lib/utils_def.h>
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#include <plat/arm/common/fconf_ethosn_getter.h>
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/*
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* Number of Arm(R) Ethos(TM)-N NPU (NPU) devices available
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*/
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#define ETHOSN_NUM_DEVICES \
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FCONF_GET_PROPERTY(hw_config, ethosn_config, num_devices)
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#define ETHOSN_GET_DEVICE(dev_idx) \
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FCONF_GET_PROPERTY(hw_config, ethosn_device, dev_idx)
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/* NPU core sec registry address */
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#define ETHOSN_CORE_SEC_REG(core_addr, reg_offset) \
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(core_addr + reg_offset)
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/* Reset timeout in us */
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#define ETHOSN_RESET_TIMEOUT_US U(10 * 1000 * 1000)
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#define ETHOSN_RESET_WAIT_US U(1)
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#define SEC_DEL_REG U(0x0004)
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#define SEC_DEL_VAL U(0x81C)
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#define SEC_DEL_EXCC_MASK U(0x20)
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#define SEC_SECCTLR_REG U(0x0010)
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#define SEC_SECCTLR_VAL U(0x3)
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#define SEC_DEL_ADDR_EXT_REG U(0x201C)
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#define SEC_DEL_ADDR_EXT_VAL U(0x15)
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#define SEC_SYSCTRL0_REG U(0x0018)
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#define SEC_SYSCTRL0_SOFT_RESET U(3U << 29)
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#define SEC_SYSCTRL0_HARD_RESET U(1U << 31)
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#define SEC_MMUSID_REG_BASE U(0x3008)
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#define SEC_MMUSID_OFFSET U(0x1000)
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static bool ethosn_get_device_and_core(uintptr_t core_addr,
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const struct ethosn_device_t **dev_match,
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const struct ethosn_core_t **core_match)
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{
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uint32_t dev_idx;
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uint32_t core_idx;
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for (dev_idx = 0U; dev_idx < ETHOSN_NUM_DEVICES; ++dev_idx) {
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const struct ethosn_device_t *dev = ETHOSN_GET_DEVICE(dev_idx);
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for (core_idx = 0U; core_idx < dev->num_cores; ++core_idx) {
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const struct ethosn_core_t *core = &(dev->cores[core_idx]);
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if (core->addr == core_addr) {
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*dev_match = dev;
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*core_match = core;
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return true;
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}
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}
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}
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WARN("ETHOSN: Unknown core address given to SMC call.\n");
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return false;
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}
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static void ethosn_configure_smmu_streams(const struct ethosn_device_t *device,
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const struct ethosn_core_t *core,
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uint32_t asset_alloc_idx)
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{
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const struct ethosn_main_allocator_t *main_alloc =
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&(core->main_allocator);
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const struct ethosn_asset_allocator_t *asset_alloc =
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&(device->asset_allocators[asset_alloc_idx]);
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const uint32_t streams[9] = {
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main_alloc->firmware.stream_id,
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main_alloc->working_data.stream_id,
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asset_alloc->command_stream.stream_id,
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0U, /* Not used*/
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main_alloc->firmware.stream_id,
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asset_alloc->weight_data.stream_id,
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asset_alloc->buffer_data.stream_id,
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asset_alloc->intermediate_data.stream_id,
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asset_alloc->buffer_data.stream_id
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};
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size_t i;
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for (i = 0U; i < ARRAY_SIZE(streams); ++i) {
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const uintptr_t reg_addr = SEC_MMUSID_REG_BASE +
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(SEC_MMUSID_OFFSET * i);
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mmio_write_32(ETHOSN_CORE_SEC_REG(core->addr, reg_addr),
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streams[i]);
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}
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}
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static void ethosn_delegate_to_ns(uintptr_t core_addr)
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{
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mmio_setbits_32(ETHOSN_CORE_SEC_REG(core_addr, SEC_SECCTLR_REG),
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SEC_SECCTLR_VAL);
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mmio_setbits_32(ETHOSN_CORE_SEC_REG(core_addr, SEC_DEL_REG),
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SEC_DEL_VAL);
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mmio_setbits_32(ETHOSN_CORE_SEC_REG(core_addr, SEC_DEL_ADDR_EXT_REG),
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SEC_DEL_ADDR_EXT_VAL);
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}
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static int ethosn_is_sec(uintptr_t core_addr)
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{
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if ((mmio_read_32(ETHOSN_CORE_SEC_REG(core_addr, SEC_DEL_REG))
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& SEC_DEL_EXCC_MASK) != 0U) {
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return 0;
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}
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return 1;
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}
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static bool ethosn_reset(uintptr_t core_addr, int hard_reset)
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{
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unsigned int timeout;
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const uintptr_t sysctrl0_reg =
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ETHOSN_CORE_SEC_REG(core_addr, SEC_SYSCTRL0_REG);
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const uint32_t reset_val = (hard_reset != 0) ? SEC_SYSCTRL0_HARD_RESET
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: SEC_SYSCTRL0_SOFT_RESET;
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mmio_write_32(sysctrl0_reg, reset_val);
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/* Wait for reset to complete */
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for (timeout = 0U; timeout < ETHOSN_RESET_TIMEOUT_US;
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timeout += ETHOSN_RESET_WAIT_US) {
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if ((mmio_read_32(sysctrl0_reg) & reset_val) == 0U) {
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break;
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}
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udelay(ETHOSN_RESET_WAIT_US);
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}
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return timeout < ETHOSN_RESET_TIMEOUT_US;
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}
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uintptr_t ethosn_smc_handler(uint32_t smc_fid,
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u_register_t core_addr,
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u_register_t asset_alloc_idx,
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u_register_t x3,
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u_register_t x4,
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void *cookie,
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void *handle,
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u_register_t flags)
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{
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int hard_reset = 0;
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const struct ethosn_device_t *device = NULL;
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const struct ethosn_core_t *core = NULL;
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const uint32_t fid = smc_fid & FUNCID_NUM_MASK;
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/* Only SiP fast calls are expected */
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if ((GET_SMC_TYPE(smc_fid) != SMC_TYPE_FAST) ||
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(GET_SMC_OEN(smc_fid) != OEN_SIP_START)) {
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SMC_RET1(handle, SMC_UNK);
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}
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/* Truncate parameters to 32-bits for SMC32 */
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if (GET_SMC_CC(smc_fid) == SMC_32) {
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core_addr &= 0xFFFFFFFF;
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asset_alloc_idx &= 0xFFFFFFFF;
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x3 &= 0xFFFFFFFF;
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x4 &= 0xFFFFFFFF;
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}
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if (!is_ethosn_fid(smc_fid) ||
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(fid < ETHOSN_FNUM_VERSION || fid > ETHOSN_FNUM_SOFT_RESET)) {
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WARN("ETHOSN: Unknown SMC call: 0x%x\n", smc_fid);
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SMC_RET1(handle, SMC_UNK);
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}
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/* Commands that do not require a valid core address */
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switch (fid) {
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case ETHOSN_FNUM_VERSION:
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SMC_RET2(handle, ETHOSN_VERSION_MAJOR, ETHOSN_VERSION_MINOR);
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}
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if (!ethosn_get_device_and_core(core_addr, &device, &core)) {
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SMC_RET1(handle, ETHOSN_UNKNOWN_CORE_ADDRESS);
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}
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/* Commands that require a valid core address */
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switch (fid) {
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case ETHOSN_FNUM_IS_SEC:
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SMC_RET1(handle, ethosn_is_sec(core->addr));
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}
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if (!device->has_reserved_memory &&
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asset_alloc_idx >= device->num_allocators) {
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WARN("ETHOSN: Unknown asset allocator index given to SMC call.\n");
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SMC_RET1(handle, ETHOSN_UNKNOWN_ALLOCATOR_IDX);
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}
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/* Commands that require a valid device, core and asset allocator */
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switch (fid) {
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case ETHOSN_FNUM_HARD_RESET:
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hard_reset = 1;
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/* Fallthrough */
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case ETHOSN_FNUM_SOFT_RESET:
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if (!ethosn_reset(core->addr, hard_reset)) {
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SMC_RET1(handle, ETHOSN_FAILURE);
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}
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if (!device->has_reserved_memory) {
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ethosn_configure_smmu_streams(device, core,
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asset_alloc_idx);
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}
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ethosn_delegate_to_ns(core->addr);
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SMC_RET1(handle, ETHOSN_SUCCESS);
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default:
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WARN("ETHOSN: Unimplemented SMC call: 0x%x\n", fid);
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SMC_RET1(handle, SMC_UNK);
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}
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}
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