Provide a way to get BMC revision. Tested=On OCP Delta Lake, function can get BMC revision well. Signed-off-by: Tim Chu <Tim.Chu@quantatw.com> Change-Id: Iaaa4e8bf181a38452b53c83a762c7b648e95e643 Reviewed-on: https://review.coreboot.org/c/coreboot/+/46070 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Jonathan Zhang <jonzhang@fb.com> Reviewed-by: Angel Pons <th3fanbus@gmail.com> Reviewed-by: Arthur Heymans <arthur@aheymans.xyz>
394 lines
9.7 KiB
C
394 lines
9.7 KiB
C
/* SPDX-License-Identifier: GPL-2.0-only */
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/*
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* Place in devicetree.cb:
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*
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* chip drivers/ipmi
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* device pnp ca2.0 on end # IPMI KCS
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* end
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*/
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#include <arch/io.h>
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#include <console/console.h>
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#include <device/device.h>
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#include <device/pnp.h>
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#if CONFIG(HAVE_ACPI_TABLES)
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#include <acpi/acpi.h>
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#include <acpi/acpigen.h>
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#endif
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#if CONFIG(GENERATE_SMBIOS_TABLES)
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#include <smbios.h>
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#endif
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#include <version.h>
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#include <delay.h>
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#include <timer.h>
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#include "ipmi_kcs.h"
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#include "chip.h"
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/* 4 bit encoding */
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static u8 ipmi_revision_major = 0x1;
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static u8 ipmi_revision_minor = 0x0;
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static u8 bmc_revision_major = 0x0;
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static u8 bmc_revision_minor = 0x0;
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static int ipmi_get_device_id(struct device *dev, struct ipmi_devid_rsp *rsp)
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{
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int ret;
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ret = ipmi_kcs_message(dev->path.pnp.port, IPMI_NETFN_APPLICATION, 0,
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IPMI_BMC_GET_DEVICE_ID, NULL, 0, (u8 *)rsp,
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sizeof(*rsp));
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if (ret < sizeof(struct ipmi_rsp) || rsp->resp.completion_code) {
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printk(BIOS_ERR, "IPMI: %s command failed (ret=%d resp=0x%x)\n",
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__func__, ret, rsp->resp.completion_code);
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return 1;
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}
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if (ret != sizeof(*rsp)) {
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printk(BIOS_ERR, "IPMI: %s response truncated\n", __func__);
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return 1;
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}
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return 0;
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}
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static int ipmi_get_bmc_self_test_result(struct device *dev, struct ipmi_selftest_rsp *rsp)
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{
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int ret;
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ret = ipmi_kcs_message(dev->path.pnp.port, IPMI_NETFN_APPLICATION, 0,
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IPMI_BMC_GET_SELFTEST_RESULTS, NULL, 0, (u8 *)rsp,
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sizeof(*rsp));
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if (ret < sizeof(struct ipmi_rsp) || rsp->resp.completion_code) {
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printk(BIOS_ERR, "IPMI: %s command failed (ret=%d resp=0x%x)\n",
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__func__, ret, rsp->resp.completion_code);
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return 1;
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}
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if (ret != sizeof(*rsp)) {
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printk(BIOS_ERR, "IPMI: %s response truncated\n", __func__);
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return 1;
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}
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return 0;
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}
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static void ipmi_kcs_init(struct device *dev)
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{
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struct ipmi_devid_rsp rsp;
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uint32_t man_id = 0, prod_id = 0;
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struct drivers_ipmi_config *conf = NULL;
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struct ipmi_selftest_rsp selftestrsp;
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uint8_t retry_count;
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if (!dev->enabled)
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return;
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printk(BIOS_DEBUG, "IPMI: PNP KCS 0x%x\n", dev->path.pnp.port);
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if (dev->chip_info)
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conf = dev->chip_info;
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/* Get IPMI version for ACPI and SMBIOS */
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if (conf && conf->wait_for_bmc && conf->bmc_boot_timeout) {
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struct stopwatch sw;
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stopwatch_init_msecs_expire(&sw, conf->bmc_boot_timeout * 1000);
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printk(BIOS_INFO, "IPMI: Waiting for BMC...\n");
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while (!stopwatch_expired(&sw)) {
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if (inb(dev->path.pnp.port) != 0xff)
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break;
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mdelay(100);
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}
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if (stopwatch_expired(&sw)) {
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printk(BIOS_INFO, "IPMI: Waiting for BMC timed out\n");
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/* Don't write tables if communication failed */
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dev->enabled = 0;
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return;
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}
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}
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printk(BIOS_INFO, "Get BMC self test result...");
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for (retry_count = 0; retry_count < conf->bmc_boot_timeout; retry_count++) {
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if (!ipmi_get_bmc_self_test_result(dev, &selftestrsp))
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break;
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mdelay(1000);
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}
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switch (selftestrsp.result) {
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case IPMI_APP_SELFTEST_NO_ERROR: /* 0x55 */
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printk(BIOS_DEBUG, "No Error\n");
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break;
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case IPMI_APP_SELFTEST_NOT_IMPLEMENTED: /* 0x56 */
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printk(BIOS_DEBUG, "Function Not Implemented\n");
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break;
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case IPMI_APP_SELFTEST_ERROR: /* 0x57 */
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printk(BIOS_ERR, "BMC: Corrupted or inaccessible data or device\n");
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/* Don't write tables if communication failed */
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dev->enabled = 0;
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break;
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case IPMI_APP_SELFTEST_FATAL_HW_ERROR: /* 0x58 */
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printk(BIOS_ERR, "BMC: Fatal Hardware Error\n");
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/* Don't write tables if communication failed */
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dev->enabled = 0;
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break;
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case IPMI_APP_SELFTEST_RESERVED: /* 0xFF */
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printk(BIOS_DEBUG, "Reserved\n");
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break;
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default: /* Other Device Specific Hardware Error */
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printk(BIOS_ERR, "BMC: Device Specific Error\n");
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/* Don't write tables if communication failed */
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dev->enabled = 0;
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break;
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}
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if (!ipmi_get_device_id(dev, &rsp)) {
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/* Queried the IPMI revision from BMC */
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ipmi_revision_minor = IPMI_IPMI_VERSION_MINOR(rsp.ipmi_version);
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ipmi_revision_major = IPMI_IPMI_VERSION_MAJOR(rsp.ipmi_version);
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bmc_revision_major = rsp.fw_rev1;
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bmc_revision_minor = rsp.fw_rev2;
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memcpy(&man_id, rsp.manufacturer_id,
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sizeof(rsp.manufacturer_id));
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memcpy(&prod_id, rsp.product_id, sizeof(rsp.product_id));
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printk(BIOS_INFO, "IPMI: Found man_id 0x%06x, prod_id 0x%04x\n",
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man_id, prod_id);
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printk(BIOS_INFO, "IPMI: Version %01x.%01x\n",
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ipmi_revision_major, ipmi_revision_minor);
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} else {
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/* Don't write tables if communication failed */
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dev->enabled = 0;
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}
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}
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#if CONFIG(HAVE_ACPI_TABLES)
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static uint32_t uid_cnt = 0;
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static unsigned long
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ipmi_write_acpi_tables(const struct device *dev, unsigned long current,
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struct acpi_rsdp *rsdp)
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{
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struct drivers_ipmi_config *conf = NULL;
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struct acpi_spmi *spmi;
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s8 gpe_interrupt = -1;
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u32 apic_interrupt = 0;
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acpi_addr_t addr = {
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.space_id = ACPI_ADDRESS_SPACE_IO,
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.access_size = ACPI_ACCESS_SIZE_BYTE_ACCESS,
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.addrl = dev->path.pnp.port,
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.bit_width = 8,
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};
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switch (CONFIG_IPMI_KCS_REGISTER_SPACING) {
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case 4:
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addr.bit_offset = 32;
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break;
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case 16:
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addr.bit_offset = 128;
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break;
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default:
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printk(BIOS_ERR, "IPMI: Unsupported register spacing for SPMI\n");
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/* fall through */
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case 1:
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addr.bit_offset = 8;
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break;
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}
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current = ALIGN_UP(current, 8);
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printk(BIOS_DEBUG, "ACPI: * SPMI at %lx\n", current);
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spmi = (struct acpi_spmi *)current;
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if (dev->chip_info)
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conf = dev->chip_info;
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if (conf) {
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if (conf->have_gpe)
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gpe_interrupt = conf->gpe_interrupt;
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if (conf->have_apic)
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apic_interrupt = conf->apic_interrupt;
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}
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/* Use command to get UID from ipmi_ssdt */
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acpi_create_ipmi(dev, spmi, (ipmi_revision_major << 8) |
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(ipmi_revision_minor << 4), &addr,
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IPMI_INTERFACE_KCS, gpe_interrupt, apic_interrupt,
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conf->uid);
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acpi_add_table(rsdp, spmi);
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current += spmi->header.length;
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return current;
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}
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static void ipmi_ssdt(const struct device *dev)
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{
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const char *scope = acpi_device_scope(dev);
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struct drivers_ipmi_config *conf = NULL;
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if (!scope) {
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printk(BIOS_ERR, "IPMI: Missing ACPI scope for %s\n",
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dev_path(dev));
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return;
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}
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if (dev->chip_info)
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conf = dev->chip_info;
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/* Use command to pass UID to ipmi_write_acpi_tables */
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conf->uid = uid_cnt++;
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/* write SPMI device */
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acpigen_write_scope(scope);
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acpigen_write_device("SPMI");
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acpigen_write_name_string("_HID", "IPI0001");
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acpigen_write_name_unicode("_STR", "IPMI_KCS");
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acpigen_write_name_byte("_UID", conf->uid);
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acpigen_write_STA(0xf);
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acpigen_write_name("_CRS");
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acpigen_write_resourcetemplate_header();
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acpigen_write_io16(dev->path.pnp.port, dev->path.pnp.port, 1, 1, 1);
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acpigen_write_io16(dev->path.pnp.port + CONFIG_IPMI_KCS_REGISTER_SPACING,
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dev->path.pnp.port + CONFIG_IPMI_KCS_REGISTER_SPACING, 1, 1, 1);
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if (conf) {
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// FIXME: is that correct?
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if (conf->have_apic)
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acpigen_write_irq(1 << conf->apic_interrupt);
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}
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acpigen_write_resourcetemplate_footer();
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acpigen_write_method("_IFT", 0);
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acpigen_write_return_byte(1); // KCS
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acpigen_pop_len();
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acpigen_write_method("_SRV", 0);
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acpigen_write_return_integer((ipmi_revision_major << 8) |
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(ipmi_revision_minor << 4));
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acpigen_pop_len();
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acpigen_pop_len(); /* pop device */
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acpigen_pop_len(); /* pop scope */
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}
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#endif
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void ipmi_bmc_version(uint8_t *ipmi_bmc_major_revision, uint8_t *ipmi_bmc_minor_revision)
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{
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if (!bmc_revision_major || !bmc_revision_minor) {
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printk(BIOS_ERR, "IPMI: BMC revision missing\n");
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*ipmi_bmc_major_revision = 0;
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*ipmi_bmc_minor_revision = 0;
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} else {
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*ipmi_bmc_major_revision = bmc_revision_major;
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*ipmi_bmc_minor_revision = bmc_revision_minor;
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}
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}
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#if CONFIG(GENERATE_SMBIOS_TABLES)
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static int ipmi_smbios_data(struct device *dev, int *handle,
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unsigned long *current)
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{
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struct drivers_ipmi_config *conf = NULL;
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u8 nv_storage = 0xff;
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u8 i2c_address = 0;
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u8 register_spacing;
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int len = 0;
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if (dev->chip_info)
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conf = dev->chip_info;
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if (conf) {
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if (conf->have_nv_storage)
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nv_storage = conf->nv_storage_device_address;
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i2c_address = conf->bmc_i2c_address;
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}
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switch (CONFIG_IPMI_KCS_REGISTER_SPACING) {
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case 4:
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register_spacing = 1 << 6;
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break;
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case 16:
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register_spacing = 2 << 6;
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break;
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default:
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printk(BIOS_ERR, "IPMI: Unsupported register spacing for SMBIOS\n");
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/* fall through */
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case 1:
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register_spacing = 0 << 6;
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break;
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}
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// add IPMI Device Information
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len += smbios_write_type38(
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current, handle,
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SMBIOS_BMC_INTERFACE_KCS,
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ipmi_revision_minor | (ipmi_revision_major << 4),
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i2c_address, // I2C address
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nv_storage, // NV storage
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dev->path.pnp.port | 1, // IO interface
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register_spacing,
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0); // no IRQ
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return len;
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}
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#endif
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static void ipmi_set_resources(struct device *dev)
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{
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struct resource *res;
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for (res = dev->resource_list; res; res = res->next) {
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if (!(res->flags & IORESOURCE_ASSIGNED))
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continue;
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res->flags |= IORESOURCE_STORED;
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report_resource_stored(dev, res, "");
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}
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}
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static void ipmi_read_resources(struct device *dev)
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{
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struct resource *res = new_resource(dev, 0);
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res->base = dev->path.pnp.port;
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res->size = 2;
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res->flags = IORESOURCE_IO | IORESOURCE_ASSIGNED | IORESOURCE_FIXED;
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}
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static struct device_operations ops = {
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.read_resources = ipmi_read_resources,
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.set_resources = ipmi_set_resources,
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.init = ipmi_kcs_init,
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#if CONFIG(HAVE_ACPI_TABLES)
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.write_acpi_tables = ipmi_write_acpi_tables,
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.acpi_fill_ssdt = ipmi_ssdt,
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#endif
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#if CONFIG(GENERATE_SMBIOS_TABLES)
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.get_smbios_data = ipmi_smbios_data,
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#endif
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};
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static void enable_dev(struct device *dev)
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{
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if (dev->path.type != DEVICE_PATH_PNP)
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printk(BIOS_ERR, "%s: Unsupported device type\n",
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dev_path(dev));
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else if (dev->path.pnp.port & 1)
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printk(BIOS_ERR, "%s: Base address needs to be aligned to 2\n",
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dev_path(dev));
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else
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dev->ops = &ops;
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}
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struct chip_operations drivers_ipmi_ops = {
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CHIP_NAME("IPMI KCS")
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.enable_dev = enable_dev,
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};
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