From 94ac2ab3fff96814d7460a27a0e9d004abbd4128 Mon Sep 17 00:00:00 2001 From: Daniel Baumann Date: Wed, 19 Jun 2024 23:00:37 +0200 Subject: Merging upstream version 6.9.2. Signed-off-by: Daniel Baumann --- drivers/cxl/core/cdat.c | 180 +++++++++++++++++++++++++++++++++++------------- 1 file changed, 131 insertions(+), 49 deletions(-) (limited to 'drivers/cxl/core/cdat.c') diff --git a/drivers/cxl/core/cdat.c b/drivers/cxl/core/cdat.c index fbf167f9d5..bb83867d9f 100644 --- a/drivers/cxl/core/cdat.c +++ b/drivers/cxl/core/cdat.c @@ -9,16 +9,47 @@ #include "cxlmem.h" #include "core.h" #include "cxl.h" +#include "core.h" struct dsmas_entry { struct range dpa_range; u8 handle; - struct access_coordinate coord; + struct access_coordinate coord[ACCESS_COORDINATE_MAX]; int entries; int qos_class; }; +static u32 cdat_normalize(u16 entry, u64 base, u8 type) +{ + u32 value; + + /* + * Check for invalid and overflow values + */ + if (entry == 0xffff || !entry) + return 0; + else if (base > (UINT_MAX / (entry))) + return 0; + + /* + * CDAT fields follow the format of HMAT fields. See table 5 Device + * Scoped Latency and Bandwidth Information Structure in Coherent Device + * Attribute Table (CDAT) Specification v1.01. + */ + value = entry * base; + switch (type) { + case ACPI_HMAT_ACCESS_LATENCY: + case ACPI_HMAT_READ_LATENCY: + case ACPI_HMAT_WRITE_LATENCY: + value = DIV_ROUND_UP(value, 1000); + break; + default: + break; + } + return value; +} + static int cdat_dsmas_handler(union acpi_subtable_headers *header, void *arg, const unsigned long end) { @@ -57,8 +88,8 @@ static int cdat_dsmas_handler(union acpi_subtable_headers *header, void *arg, return 0; } -static void cxl_access_coordinate_set(struct access_coordinate *coord, - int access, unsigned int val) +static void __cxl_access_coordinate_set(struct access_coordinate *coord, + int access, unsigned int val) { switch (access) { case ACPI_HMAT_ACCESS_LATENCY: @@ -84,6 +115,13 @@ static void cxl_access_coordinate_set(struct access_coordinate *coord, } } +static void cxl_access_coordinate_set(struct access_coordinate *coord, + int access, unsigned int val) +{ + for (int i = 0; i < ACCESS_COORDINATE_MAX; i++) + __cxl_access_coordinate_set(&coord[i], access, val); +} + static int cdat_dslbis_handler(union acpi_subtable_headers *header, void *arg, const unsigned long end) { @@ -96,7 +134,6 @@ static int cdat_dslbis_handler(union acpi_subtable_headers *header, void *arg, __le16 le_val; u64 val; u16 len; - int rc; len = le16_to_cpu((__force __le16)hdr->length); if (len != size || (unsigned long)hdr + len > end) { @@ -123,12 +160,10 @@ static int cdat_dslbis_handler(union acpi_subtable_headers *header, void *arg, le_base = (__force __le64)dslbis->entry_base_unit; le_val = (__force __le16)dslbis->entry[0]; - rc = check_mul_overflow(le64_to_cpu(le_base), - le16_to_cpu(le_val), &val); - if (rc) - pr_warn("DSLBIS value overflowed.\n"); + val = cdat_normalize(le16_to_cpu(le_val), le64_to_cpu(le_base), + dslbis->data_type); - cxl_access_coordinate_set(&dent->coord, dslbis->data_type, val); + cxl_access_coordinate_set(dent->coord, dslbis->data_type, val); return 0; } @@ -149,38 +184,31 @@ static int cxl_cdat_endpoint_process(struct cxl_port *port, int rc; rc = cdat_table_parse(ACPI_CDAT_TYPE_DSMAS, cdat_dsmas_handler, - dsmas_xa, port->cdat.table); + dsmas_xa, port->cdat.table, port->cdat.length); rc = cdat_table_parse_output(rc); if (rc) return rc; rc = cdat_table_parse(ACPI_CDAT_TYPE_DSLBIS, cdat_dslbis_handler, - dsmas_xa, port->cdat.table); + dsmas_xa, port->cdat.table, port->cdat.length); return cdat_table_parse_output(rc); } static int cxl_port_perf_data_calculate(struct cxl_port *port, struct xarray *dsmas_xa) { - struct access_coordinate ep_c; - struct access_coordinate coord[ACCESS_COORDINATE_MAX]; + struct access_coordinate ep_c[ACCESS_COORDINATE_MAX]; struct dsmas_entry *dent; int valid_entries = 0; unsigned long index; int rc; - rc = cxl_endpoint_get_perf_coordinates(port, &ep_c); + rc = cxl_endpoint_get_perf_coordinates(port, ep_c); if (rc) { dev_dbg(&port->dev, "Failed to retrieve ep perf coordinates.\n"); return rc; } - rc = cxl_hb_get_perf_coordinates(port, coord); - if (rc) { - dev_dbg(&port->dev, "Failed to retrieve hb perf coordinates.\n"); - return rc; - } - struct cxl_root *cxl_root __free(put_cxl_root) = find_cxl_root(port); if (!cxl_root) @@ -192,18 +220,10 @@ static int cxl_port_perf_data_calculate(struct cxl_port *port, xa_for_each(dsmas_xa, index, dent) { int qos_class; - cxl_coordinates_combine(&dent->coord, &dent->coord, &ep_c); - /* - * Keeping the host bridge coordinates separate from the dsmas - * coordinates in order to allow calculation of access class - * 0 and 1 for region later. - */ - cxl_coordinates_combine(&coord[ACCESS_COORDINATE_LOCAL], - &coord[ACCESS_COORDINATE_LOCAL], - &dent->coord); + cxl_coordinates_combine(dent->coord, dent->coord, ep_c); dent->entries = 1; rc = cxl_root->ops->qos_class(cxl_root, - &coord[ACCESS_COORDINATE_LOCAL], + &dent->coord[ACCESS_COORDINATE_CPU], 1, &qos_class); if (rc != 1) continue; @@ -221,14 +241,17 @@ static int cxl_port_perf_data_calculate(struct cxl_port *port, static void update_perf_entry(struct device *dev, struct dsmas_entry *dent, struct cxl_dpa_perf *dpa_perf) { + for (int i = 0; i < ACCESS_COORDINATE_MAX; i++) + dpa_perf->coord[i] = dent->coord[i]; dpa_perf->dpa_range = dent->dpa_range; - dpa_perf->coord = dent->coord; dpa_perf->qos_class = dent->qos_class; dev_dbg(dev, "DSMAS: dpa: %#llx qos: %d read_bw: %d write_bw %d read_lat: %d write_lat: %d\n", dent->dpa_range.start, dpa_perf->qos_class, - dent->coord.read_bandwidth, dent->coord.write_bandwidth, - dent->coord.read_latency, dent->coord.write_latency); + dent->coord[ACCESS_COORDINATE_CPU].read_bandwidth, + dent->coord[ACCESS_COORDINATE_CPU].write_bandwidth, + dent->coord[ACCESS_COORDINATE_CPU].read_latency, + dent->coord[ACCESS_COORDINATE_CPU].write_latency); } static void cxl_memdev_set_qos_class(struct cxl_dev_state *cxlds, @@ -460,17 +483,16 @@ static int cdat_sslbis_handler(union acpi_subtable_headers *header, void *arg, le_base = (__force __le64)tbl->sslbis_header.entry_base_unit; le_val = (__force __le16)tbl->entries[i].latency_or_bandwidth; - - if (check_mul_overflow(le64_to_cpu(le_base), - le16_to_cpu(le_val), &val)) - dev_warn(dev, "SSLBIS value overflowed!\n"); + val = cdat_normalize(le16_to_cpu(le_val), le64_to_cpu(le_base), + sslbis->data_type); xa_for_each(&port->dports, index, dport) { if (dsp_id == ACPI_CDAT_SSLBIS_ANY_PORT || - dsp_id == dport->port_id) - cxl_access_coordinate_set(&dport->sw_coord, + dsp_id == dport->port_id) { + cxl_access_coordinate_set(dport->coord, sslbis->data_type, val); + } } } @@ -485,13 +507,28 @@ void cxl_switch_parse_cdat(struct cxl_port *port) return; rc = cdat_table_parse(ACPI_CDAT_TYPE_SSLBIS, cdat_sslbis_handler, - port, port->cdat.table); + port, port->cdat.table, port->cdat.length); rc = cdat_table_parse_output(rc); if (rc) dev_dbg(&port->dev, "Failed to parse SSLBIS: %d\n", rc); } EXPORT_SYMBOL_NS_GPL(cxl_switch_parse_cdat, CXL); +static void __cxl_coordinates_combine(struct access_coordinate *out, + struct access_coordinate *c1, + struct access_coordinate *c2) +{ + if (c1->write_bandwidth && c2->write_bandwidth) + out->write_bandwidth = min(c1->write_bandwidth, + c2->write_bandwidth); + out->write_latency = c1->write_latency + c2->write_latency; + + if (c1->read_bandwidth && c2->read_bandwidth) + out->read_bandwidth = min(c1->read_bandwidth, + c2->read_bandwidth); + out->read_latency = c1->read_latency + c2->read_latency; +} + /** * cxl_coordinates_combine - Combine the two input coordinates * @@ -503,15 +540,60 @@ void cxl_coordinates_combine(struct access_coordinate *out, struct access_coordinate *c1, struct access_coordinate *c2) { - if (c1->write_bandwidth && c2->write_bandwidth) - out->write_bandwidth = min(c1->write_bandwidth, - c2->write_bandwidth); - out->write_latency = c1->write_latency + c2->write_latency; - - if (c1->read_bandwidth && c2->read_bandwidth) - out->read_bandwidth = min(c1->read_bandwidth, - c2->read_bandwidth); - out->read_latency = c1->read_latency + c2->read_latency; + for (int i = 0; i < ACCESS_COORDINATE_MAX; i++) + __cxl_coordinates_combine(&out[i], &c1[i], &c2[i]); } MODULE_IMPORT_NS(CXL); + +void cxl_region_perf_data_calculate(struct cxl_region *cxlr, + struct cxl_endpoint_decoder *cxled) +{ + struct cxl_memdev *cxlmd = cxled_to_memdev(cxled); + struct cxl_dev_state *cxlds = cxlmd->cxlds; + struct cxl_memdev_state *mds = to_cxl_memdev_state(cxlds); + struct range dpa = { + .start = cxled->dpa_res->start, + .end = cxled->dpa_res->end, + }; + struct cxl_dpa_perf *perf; + + switch (cxlr->mode) { + case CXL_DECODER_RAM: + perf = &mds->ram_perf; + break; + case CXL_DECODER_PMEM: + perf = &mds->pmem_perf; + break; + default: + return; + } + + lockdep_assert_held(&cxl_dpa_rwsem); + + if (!range_contains(&perf->dpa_range, &dpa)) + return; + + for (int i = 0; i < ACCESS_COORDINATE_MAX; i++) { + /* Get total bandwidth and the worst latency for the cxl region */ + cxlr->coord[i].read_latency = max_t(unsigned int, + cxlr->coord[i].read_latency, + perf->coord[i].read_latency); + cxlr->coord[i].write_latency = max_t(unsigned int, + cxlr->coord[i].write_latency, + perf->coord[i].write_latency); + cxlr->coord[i].read_bandwidth += perf->coord[i].read_bandwidth; + cxlr->coord[i].write_bandwidth += perf->coord[i].write_bandwidth; + } +} + +int cxl_update_hmat_access_coordinates(int nid, struct cxl_region *cxlr, + enum access_coordinate_class access) +{ + return hmat_update_target_coordinates(nid, &cxlr->coord[access], access); +} + +bool cxl_need_node_perf_attrs_update(int nid) +{ + return !acpi_node_backed_by_real_pxm(nid); +} -- cgit v1.2.3