mb/google/geralt: Implement SKU ID and RAM code

- Retrieve the SKU ID for Geralt via CBI interface. If that failed
  (or no data found), fall back to ADC channels for SKU ID.
- The RAM code is implemented by the resistor straps that we can read
  and decode from ADC.

TEST=build pass
BUG=b:236331724

Signed-off-by: Bo-Chen Chen <rex-bc.chen@mediatek.com>
Change-Id: I31626e44bd873a3866c9bd1d511b476737f15a20
Reviewed-on: https://review.coreboot.org/c/coreboot/+/66275
Reviewed-by: Yu-Ping Wu <yupingso@google.com>
Tested-by: build bot (Jenkins) <no-reply@coreboot.org>
This commit is contained in:
Rex-BC Chen 2022-07-25 19:52:14 +08:00 committed by Felix Held
parent f9009dde54
commit 07c91d55db
3 changed files with 94 additions and 0 deletions

View file

@ -23,6 +23,7 @@ config BOARD_SPECIFIC_OPTIONS
select COMMONLIB_STORAGE_MMC
select EC_GOOGLE_CHROMEEC
select EC_GOOGLE_CHROMEEC_BOARDID
select EC_GOOGLE_CHROMEEC_SKUID
select EC_GOOGLE_CHROMEEC_SPI
select I2C_TPM if VBOOT
select MAINBOARD_HAS_TPM2 if VBOOT

View file

@ -11,6 +11,7 @@ romstage-y += chromeos.c
romstage-y += romstage.c
ramstage-y += memlayout.ld
ramstage-y += boardid.c
ramstage-y += chromeos.c
ramstage-y += mainboard.c
ramstage-y += regulator.c

View file

@ -0,0 +1,92 @@
/* SPDX-License-Identifier: GPL-2.0-only */
#include <assert.h>
#include <boardid.h>
#include <console/console.h>
#include <ec/google/chromeec/ec.h>
#include <soc/auxadc.h>
/* board_id is provided by ec/google/chromeec/ec_boardid.c */
#define ADC_LEVELS 12
enum {
/* RAM IDs */
RAM_ID_LOW_CHANNEL = 2,
RAM_ID_HIGH_CHANNEL = 3,
/* SKU IDs */
SKU_ID_LOW_CHANNEL = 4,
SKU_ID_HIGH_CHANNEL = 5,
};
static const unsigned int ram_voltages[ADC_LEVELS] = {
/* ID : Voltage (unit: uV) */
[0] = 74300,
[1] = 211700,
[2] = 318800,
[3] = 428600,
[4] = 541700,
[5] = 665800,
[6] = 781400,
[7] = 900000,
[8] = 1023100,
[9] = 1137000,
[10] = 1240000,
[11] = 1342600,
};
static const unsigned int *adc_voltages[] = {
[RAM_ID_LOW_CHANNEL] = ram_voltages,
[RAM_ID_HIGH_CHANNEL] = ram_voltages,
[SKU_ID_LOW_CHANNEL] = ram_voltages,
[SKU_ID_HIGH_CHANNEL] = ram_voltages,
};
static uint32_t get_adc_index(unsigned int channel)
{
unsigned int value = auxadc_get_voltage_uv(channel);
assert(channel < ARRAY_SIZE(adc_voltages));
const unsigned int *voltages = adc_voltages[channel];
assert(voltages);
/* Find the closest voltage */
uint32_t id;
for (id = 0; id < ADC_LEVELS - 1; id++)
if (value < (voltages[id] + voltages[id + 1]) / 2)
break;
printk(BIOS_DEBUG, "ADC[%u]: Raw value=%u ID=%u\n", channel, value, id);
return id;
}
uint32_t sku_id(void)
{
static uint32_t cached_sku_code = BOARD_ID_INIT;
if (cached_sku_code == BOARD_ID_INIT) {
cached_sku_code = google_chromeec_get_board_sku();
if (cached_sku_code == CROS_SKU_UNKNOWN) {
printk(BIOS_WARNING, "Failed to get SKU code from EC\n");
cached_sku_code = (get_adc_index(SKU_ID_HIGH_CHANNEL) << 4 |
get_adc_index(SKU_ID_LOW_CHANNEL));
}
printk(BIOS_DEBUG, "SKU Code: %#02x\n", cached_sku_code);
}
return cached_sku_code;
}
uint32_t ram_code(void)
{
static uint32_t cached_ram_code = BOARD_ID_INIT;
if (cached_ram_code == BOARD_ID_INIT) {
cached_ram_code = (get_adc_index(RAM_ID_HIGH_CHANNEL) << 4 |
get_adc_index(RAM_ID_LOW_CHANNEL));
printk(BIOS_DEBUG, "RAM Code: %#02x\n", cached_ram_code);
}
return cached_ram_code;
}