soc/intel/xeon_sp: Add memory type check utils
FSP memory type representations change across Xeon-SP SoCs. This patch adds type check utils to abstract the differences. TEST=intel/archercity CRB Change-Id: I2f5f3c0f16dc50bc739146e46afce2e5fbf4f62c Signed-off-by: Shuo Liu <shuo.liu@intel.com> Signed-off-by: Jincheng Li <jincheng.li@intel.com> Reviewed-on: https://review.coreboot.org/c/coreboot/+/80632 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Lean Sheng Tan <sheng.tan@9elements.com>
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@ -121,3 +121,18 @@ void get_iiostack_info(struct iiostack_resource *info)
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}
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}
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}
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}
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}
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}
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bool is_memtype_reserved(uint16_t mem_type)
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{
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return !!(mem_type & MEM_TYPE_RESERVED);
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}
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bool is_memtype_non_volatile(uint16_t mem_type)
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{
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return !(mem_type & MEMTYPE_VOLATILE_MASK);
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}
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bool is_memtype_processor_attached(uint16_t mem_type)
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{
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return true;
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}
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@ -19,6 +19,10 @@ bool soc_cpu_is_enabled(const size_t idx);
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void set_bios_init_completion(void);
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void set_bios_init_completion(void);
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uint8_t soc_get_iio_ioapicid(int socket, int stack);
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uint8_t soc_get_iio_ioapicid(int socket, int stack);
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bool is_memtype_non_volatile(uint16_t mem_type);
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bool is_memtype_reserved(uint16_t mem_type);
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bool is_memtype_processor_attached(uint16_t mem_type);
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struct iiostack_resource {
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struct iiostack_resource {
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uint8_t no_of_stacks;
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uint8_t no_of_stacks;
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STACK_RES res[CONFIG_MAX_SOCKET * MAX_IIO_STACK];
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STACK_RES res[CONFIG_MAX_SOCKET * MAX_IIO_STACK];
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@ -195,3 +195,18 @@ uint8_t soc_get_iio_ioapicid(int socket, int stack)
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}
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}
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return ioapic_id;
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return ioapic_id;
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}
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}
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bool is_memtype_reserved(uint16_t mem_type)
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{
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return !!(mem_type & MEM_TYPE_RESERVED);
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}
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bool is_memtype_non_volatile(uint16_t mem_type)
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{
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return !(mem_type & MEMTYPE_VOLATILE_MASK);
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}
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bool is_memtype_processor_attached(uint16_t mem_type)
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{
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return true;
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}
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@ -167,3 +167,24 @@ void soc_set_mrc_cold_boot_flag(bool cold_boot_required)
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cmos_write(new_mrc_status, CMOS_OFFSET_MRC_STATUS);
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cmos_write(new_mrc_status, CMOS_OFFSET_MRC_STATUS);
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}
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}
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bool is_memtype_reserved(uint16_t mem_type)
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{
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return !!(mem_type & MEM_TYPE_RESERVED);
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}
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bool is_memtype_non_volatile(uint16_t mem_type)
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{
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return !(mem_type & MEMTYPE_VOLATILE_MASK);
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}
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bool is_memtype_processor_attached(uint16_t mem_type)
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{
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/*
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* Refer to the definition of MEM_TYPE enum type in
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* vendorcode/intel/fsp/fsp2_0/sapphirerapids_sp/MemoryMapDataHob.h,
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* values less than MemTypeCxlAccVolatileMem represents
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* processor attached memory
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*/
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return (mem_type < MemTypeCxlAccVolatileMem);
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}
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@ -99,19 +99,17 @@ static unsigned int get_srat_memory_entries(acpi_srat_mem_t *srat_mem)
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"ElementSize: 0x%x, type: %d, reserved: %d\n",
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"ElementSize: 0x%x, type: %d, reserved: %d\n",
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e, addr, mem_element->BaseAddress, size,
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e, addr, mem_element->BaseAddress, size,
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mem_element->ElementSize, mem_element->Type,
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mem_element->ElementSize, mem_element->Type,
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(mem_element->Type & MEM_TYPE_RESERVED));
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is_memtype_reserved(mem_element->Type));
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assert(mmap_index < MAX_ACPI_MEMORY_AFFINITY_COUNT);
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assert(mmap_index < MAX_ACPI_MEMORY_AFFINITY_COUNT);
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/* skip reserved memory region */
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/* skip reserved memory region */
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if (mem_element->Type & MEM_TYPE_RESERVED)
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if (is_memtype_reserved(mem_element->Type))
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continue;
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continue;
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#if CONFIG(SOC_INTEL_SAPPHIRERAPIDS_SP)
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/* skip all non processor attached memory regions */
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/* Skip all non processor attached memory regions */
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if (CONFIG(SOC_INTEL_HAS_CXL) &&
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/* In other words, skip all the types >= MemTypeCxlAccVolatileMem */
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(!is_memtype_processor_attached(mem_element->Type)))
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if (mem_element->Type >= MemTypeCxlAccVolatileMem)
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continue;
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continue;
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#endif
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/* skip if this address is already added */
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/* skip if this address is already added */
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bool skip = false;
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bool skip = false;
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@ -134,7 +132,7 @@ static unsigned int get_srat_memory_entries(acpi_srat_mem_t *srat_mem)
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srat_mem[mmap_index].length_high = (uint32_t)(size >> 32);
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srat_mem[mmap_index].length_high = (uint32_t)(size >> 32);
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srat_mem[mmap_index].proximity_domain = mem_element->SocketId;
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srat_mem[mmap_index].proximity_domain = mem_element->SocketId;
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srat_mem[mmap_index].flags = ACPI_SRAT_MEMORY_ENABLED;
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srat_mem[mmap_index].flags = ACPI_SRAT_MEMORY_ENABLED;
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if ((mem_element->Type & MEMTYPE_VOLATILE_MASK) == 0)
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if (is_memtype_non_volatile(mem_element->Type))
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srat_mem[mmap_index].flags |= ACPI_SRAT_MEMORY_NONVOLATILE;
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srat_mem[mmap_index].flags |= ACPI_SRAT_MEMORY_NONVOLATILE;
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++mmap_index;
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++mmap_index;
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}
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}
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