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author | Richard Henderson | 2022-05-09 18:33:53 +0200 |
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committer | Richard Henderson | 2022-05-09 18:33:53 +0200 |
commit | b0c3c60366ed43eb1569eb18c10df6eb993534c3 (patch) | |
tree | 4f3feb4e5a1a0a21b17fc72934b89bf5ab72c8be /hw/acpi/aml-build.c | |
parent | Merge tag 'pull-request-2022-05-09' of https://gitlab.com/thuth/qemu into sta... (diff) | |
parent | hw/acpi/aml-build: Use existing CPU topology to build PPTT table (diff) | |
download | qemu-b0c3c60366ed43eb1569eb18c10df6eb993534c3.tar.gz qemu-b0c3c60366ed43eb1569eb18c10df6eb993534c3.tar.xz qemu-b0c3c60366ed43eb1569eb18c10df6eb993534c3.zip |
Merge tag 'pull-target-arm-20220509' of https://git.linaro.org/people/pmaydell/qemu-arm into staging
target-arm queue:
* MAINTAINERS/.mailmap: update email for Leif Lindholm
* hw/arm: add version information to sbsa-ref machine DT
* Enable new features for -cpu max:
FEAT_Debugv8p2, FEAT_Debugv8p4, FEAT_RAS (minimal version only),
FEAT_IESB, FEAT_CSV2, FEAT_CSV2_2, FEAT_CSV3, FEAT_DGH
* Emulate Cortex-A76
* Emulate Neoverse-N1
* Fix the virt board default NUMA topology
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# gpg: Signature made Mon 09 May 2022 04:57:47 AM PDT
# gpg: using RSA key E1A5C593CD419DE28E8315CF3C2525ED14360CDE
# gpg: issuer "peter.maydell@linaro.org"
# gpg: Good signature from "Peter Maydell <peter.maydell@linaro.org>" [full]
# gpg: aka "Peter Maydell <pmaydell@gmail.com>" [full]
# gpg: aka "Peter Maydell <pmaydell@chiark.greenend.org.uk>" [full]
* tag 'pull-target-arm-20220509' of https://git.linaro.org/people/pmaydell/qemu-arm: (32 commits)
hw/acpi/aml-build: Use existing CPU topology to build PPTT table
hw/arm/virt: Fix CPU's default NUMA node ID
qtest/numa-test: Correct CPU and NUMA association in aarch64_numa_cpu()
hw/arm/virt: Consider SMP configuration in CPU topology
qtest/numa-test: Specify CPU topology in aarch64_numa_cpu()
qapi/machine.json: Add cluster-id
hw/arm: add versioning to sbsa-ref machine DT
target/arm: Define neoverse-n1
target/arm: Define cortex-a76
target/arm: Enable FEAT_DGH for -cpu max
target/arm: Enable FEAT_CSV3 for -cpu max
target/arm: Enable FEAT_CSV2_2 for -cpu max
target/arm: Enable FEAT_CSV2 for -cpu max
target/arm: Enable FEAT_IESB for -cpu max
target/arm: Enable FEAT_RAS for -cpu max
target/arm: Implement ESB instruction
target/arm: Implement virtual SError exceptions
target/arm: Enable SCR and HCR bits for RAS
target/arm: Add minimal RAS registers
target/arm: Enable FEAT_Debugv8p4 for -cpu max
...
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
Diffstat (limited to 'hw/acpi/aml-build.c')
-rw-r--r-- | hw/acpi/aml-build.c | 111 |
1 files changed, 48 insertions, 63 deletions
diff --git a/hw/acpi/aml-build.c b/hw/acpi/aml-build.c index 4086879ebf..e6bfac95c7 100644 --- a/hw/acpi/aml-build.c +++ b/hw/acpi/aml-build.c @@ -2002,86 +2002,71 @@ void build_pptt(GArray *table_data, BIOSLinker *linker, MachineState *ms, const char *oem_id, const char *oem_table_id) { MachineClass *mc = MACHINE_GET_CLASS(ms); - GQueue *list = g_queue_new(); - guint pptt_start = table_data->len; - guint parent_offset; - guint length, i; - int uid = 0; - int socket; + CPUArchIdList *cpus = ms->possible_cpus; + int64_t socket_id = -1, cluster_id = -1, core_id = -1; + uint32_t socket_offset = 0, cluster_offset = 0, core_offset = 0; + uint32_t pptt_start = table_data->len; + int n; AcpiTable table = { .sig = "PPTT", .rev = 2, .oem_id = oem_id, .oem_table_id = oem_table_id }; acpi_table_begin(&table, table_data); - for (socket = 0; socket < ms->smp.sockets; socket++) { - g_queue_push_tail(list, - GUINT_TO_POINTER(table_data->len - pptt_start)); - build_processor_hierarchy_node( - table_data, - /* - * Physical package - represents the boundary - * of a physical package - */ - (1 << 0), - 0, socket, NULL, 0); - } - - if (mc->smp_props.clusters_supported) { - length = g_queue_get_length(list); - for (i = 0; i < length; i++) { - int cluster; - - parent_offset = GPOINTER_TO_UINT(g_queue_pop_head(list)); - for (cluster = 0; cluster < ms->smp.clusters; cluster++) { - g_queue_push_tail(list, - GUINT_TO_POINTER(table_data->len - pptt_start)); - build_processor_hierarchy_node( - table_data, - (0 << 0), /* not a physical package */ - parent_offset, cluster, NULL, 0); - } + /* + * This works with the assumption that cpus[n].props.*_id has been + * sorted from top to down levels in mc->possible_cpu_arch_ids(). + * Otherwise, the unexpected and duplicated containers will be + * created. + */ + for (n = 0; n < cpus->len; n++) { + if (cpus->cpus[n].props.socket_id != socket_id) { + assert(cpus->cpus[n].props.socket_id > socket_id); + socket_id = cpus->cpus[n].props.socket_id; + cluster_id = -1; + core_id = -1; + socket_offset = table_data->len - pptt_start; + build_processor_hierarchy_node(table_data, + (1 << 0), /* Physical package */ + 0, socket_id, NULL, 0); } - } - length = g_queue_get_length(list); - for (i = 0; i < length; i++) { - int core; - - parent_offset = GPOINTER_TO_UINT(g_queue_pop_head(list)); - for (core = 0; core < ms->smp.cores; core++) { - if (ms->smp.threads > 1) { - g_queue_push_tail(list, - GUINT_TO_POINTER(table_data->len - pptt_start)); - build_processor_hierarchy_node( - table_data, - (0 << 0), /* not a physical package */ - parent_offset, core, NULL, 0); - } else { - build_processor_hierarchy_node( - table_data, - (1 << 1) | /* ACPI Processor ID valid */ - (1 << 3), /* Node is a Leaf */ - parent_offset, uid++, NULL, 0); + if (mc->smp_props.clusters_supported) { + if (cpus->cpus[n].props.cluster_id != cluster_id) { + assert(cpus->cpus[n].props.cluster_id > cluster_id); + cluster_id = cpus->cpus[n].props.cluster_id; + core_id = -1; + cluster_offset = table_data->len - pptt_start; + build_processor_hierarchy_node(table_data, + (0 << 0), /* Not a physical package */ + socket_offset, cluster_id, NULL, 0); } + } else { + cluster_offset = socket_offset; } - } - length = g_queue_get_length(list); - for (i = 0; i < length; i++) { - int thread; + if (ms->smp.threads == 1) { + build_processor_hierarchy_node(table_data, + (1 << 1) | /* ACPI Processor ID valid */ + (1 << 3), /* Node is a Leaf */ + cluster_offset, n, NULL, 0); + } else { + if (cpus->cpus[n].props.core_id != core_id) { + assert(cpus->cpus[n].props.core_id > core_id); + core_id = cpus->cpus[n].props.core_id; + core_offset = table_data->len - pptt_start; + build_processor_hierarchy_node(table_data, + (0 << 0), /* Not a physical package */ + cluster_offset, core_id, NULL, 0); + } - parent_offset = GPOINTER_TO_UINT(g_queue_pop_head(list)); - for (thread = 0; thread < ms->smp.threads; thread++) { - build_processor_hierarchy_node( - table_data, + build_processor_hierarchy_node(table_data, (1 << 1) | /* ACPI Processor ID valid */ (1 << 2) | /* Processor is a Thread */ (1 << 3), /* Node is a Leaf */ - parent_offset, uid++, NULL, 0); + core_offset, n, NULL, 0); } } - g_queue_free(list); acpi_table_end(linker, &table); } |