skylake: gpio: Add support for setting 1.8V tolerant
Add the voltage tolerance GPIO attribute for configuring I2C/I2S buses that are at 1.8V. This is currently done by passing in a value to FSP but it is needed earlier than FSP if the I2C bus is used in verstage. This does not remove the need for the FSP input parameter, that is still required so FSP doesn't disable what has been set in coreboot. The mainboards that are affected are updated in this commit. This was tested by exercising I2C transactions to the 1.8V codec while in verstage on the google/chell mainboard. Signed-off-by: Duncan Laurie <dlaurie@chromium.org> Change-Id: I93d22c2e3bc0617c87f03c37a8746e22a112cc9c Reviewed-on: https://review.coreboot.org/15103 Reviewed-by: Aaron Durbin <adurbin@chromium.org> Tested-by: build bot (Jenkins)
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@ -192,8 +192,8 @@ static const struct pad_config gpio_table[] = {
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/* I2C2_SCL */ PAD_CFG_NC(GPP_F5),
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/* I2C3_SDA */ PAD_CFG_NC(GPP_F6),
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/* I2C3_SCL */ PAD_CFG_NC(GPP_F7),
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/* I2C4_SDA */ PAD_CFG_NF(GPP_F8, NONE, DEEP, NF1), /* AUDIO1V8_SDA */
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/* I2C4_SCL */ PAD_CFG_NF(GPP_F9, NONE, DEEP, NF1), /* AUDIO1V8_SCL */
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/* I2C4_SDA */ PAD_CFG_NF_1V8(GPP_F8, NONE, DEEP, NF1), /* AUDIO1V8_SDA */
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/* I2C4_SCL */ PAD_CFG_NF_1V8(GPP_F9, NONE, DEEP, NF1), /* AUDIO1V8_SCL */
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/* I2C5_SDA */ PAD_CFG_GPI_APIC(GPP_F10, NONE, PLTRST), /* MIC_INT_L */
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/* I2C5_SCL */ PAD_CFG_GPO(GPP_F11, 0, DEEP),
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/* EMMC_CMD */ PAD_CFG_NF(GPP_F12, NONE, DEEP, NF1),
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@ -189,8 +189,8 @@ static const struct pad_config gpio_table[] = {
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/* I2C2_SCL */ /* GPP_F5 */
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/* I2C3_SDA */ /* GPP_F6 */
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/* I2C3_SCL */ /* GPP_F7 */
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/* I2C4_SDA */ PAD_CFG_NF(GPP_F8, NONE, DEEP, NF1), /* Amplifiers */
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/* I2C4_SCL */ PAD_CFG_NF(GPP_F9, NONE, DEEP, NF1), /* Amplifiers */
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/* I2C4_SDA */ PAD_CFG_NF_1V8(GPP_F8, NONE, DEEP, NF1), /* Amplifiers */
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/* I2C4_SCL */ PAD_CFG_NF_1V8(GPP_F9, NONE, DEEP, NF1), /* Amplifiers */
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/* I2C5_SDA */ PAD_CFG_GPI_APIC(GPP_F10, NONE, DEEP), /* MIC_INT_L */
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/* I2C5_SCL */ /* GPP_F11 */
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/* EMMC_CMD */ PAD_CFG_NF(GPP_F12, NONE, DEEP, NF1),
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@ -184,8 +184,8 @@ static const struct pad_config gpio_table[] = {
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/* I2C2_SCL */ PAD_CFG_NF(GPP_F5, NONE, DEEP, NF1),
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/* I2C3_SDA */ /* GPP_F6 */
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/* I2C3_SCL */ /* GPP_F7 */
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/* I2C4_SDA */ PAD_CFG_NF(GPP_F8, NONE, DEEP, NF1),
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/* I2C4_SCL */ PAD_CFG_NF(GPP_F9, NONE, DEEP, NF1),
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/* I2C4_SDA */ PAD_CFG_NF_1V8(GPP_F8, NONE, DEEP, NF1),
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/* I2C4_SCL */ PAD_CFG_NF_1V8(GPP_F9, NONE, DEEP, NF1),
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/* AUDIO_IRQ */ PAD_CFG_GPI_APIC(GPP_F10, NONE, PLTRST),
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/* I2C5_SCL */ PAD_CFG_NC(GPP_F11),
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/* EMMC_CMD */ PAD_CFG_NF(GPP_F12, NONE, DEEP, NF1),
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@ -193,8 +193,8 @@ static const struct pad_config gpio_table[] = {
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/* I2C2_SCL */ PAD_CFG_NC(GPP_F5),
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/* I2C3_SDA */ PAD_CFG_NC(GPP_F6),
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/* I2C3_SCL */ PAD_CFG_NC(GPP_F7),
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/* I2C4_SDA */ PAD_CFG_NF(GPP_F8, NONE, DEEP, NF1),
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/* I2C4_SDA */ PAD_CFG_NF(GPP_F9, NONE, DEEP, NF1),
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/* I2C4_SDA */ PAD_CFG_NF_1V8(GPP_F8, NONE, DEEP, NF1),
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/* I2C4_SDA */ PAD_CFG_NF_1V8(GPP_F9, NONE, DEEP, NF1),
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/* AUDIO_IRQ */ PAD_CFG_GPI_APIC(GPP_F10, NONE, PLTRST),
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/* AUDIO_IRQ */ PAD_CFG_GPI_ACPI_SCI(GPP_F11, NONE, DEEP, YES),
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/* EMMC_CMD */ PAD_CFG_NF(GPP_F12, NONE, DEEP, NF1),
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@ -305,9 +305,8 @@ static void gpio_configure_pad(const struct pad_config *cfg)
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{
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uint32_t *dw_regs;
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uint32_t reg;
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uint32_t termination;
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uint32_t dw0;
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const uint32_t termination_mask = PAD_TERM_MASK << PAD_TERM_SHIFT;
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uint32_t mask;
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dw_regs = gpio_dw_regs(cfg->pad);
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@ -318,10 +317,16 @@ static void gpio_configure_pad(const struct pad_config *cfg)
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write32(&dw_regs[0], dw0);
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reg = read32(&dw_regs[1]);
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reg &= ~termination_mask;
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termination = cfg->attrs;
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termination &= termination_mask;
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reg |= termination;
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/* Apply termination field */
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mask = PAD_TERM_MASK << PAD_TERM_SHIFT;
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reg &= ~mask;
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reg |= cfg->attrs & mask;
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/* Apply voltage tolerance field */
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mask = PAD_TOL_MASK << PAD_TOL_SHIFT;
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reg &= ~mask;
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reg |= cfg->attrs & mask;
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write32(&dw_regs[1], reg);
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gpio_handle_pad_mode(cfg);
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@ -329,7 +334,7 @@ static void gpio_configure_pad(const struct pad_config *cfg)
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if ((dw0 & PAD_FIELD(GPIROUTSMI, MASK)) == PAD_FIELD(GPIROUTSMI, YES))
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gpi_enable_smi(cfg->pad);
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if(gpio_debug)
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if (gpio_debug)
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printk(BIOS_DEBUG,
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"Write Pad: Base(%p) - conf0 = %x conf1= %x pad # = %d\n",
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&dw_regs[0], dw0, reg, cfg->pad);
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@ -108,6 +108,12 @@ void gpio_configure_pads(const struct pad_config *cfgs, size_t num);
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_PAD_CFG(pad_, term_, \
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_DW0_VALS(rst_, RAW, NO, LEVEL, NO, NO, NO, NO, NO, NO, func_, NO, NO))
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/* Native 1.8V tolerant pad, only applies to some pads like I2C/I2S. */
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#define PAD_CFG_NF_1V8(pad_, term_, rst_, func_) \
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_PAD_CFG_ATTRS(pad_, term_, \
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_DW0_VALS(rst_, RAW, NO, LEVEL, NO, NO, \
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NO, NO, NO, NO, func_, NO, NO), PAD_FIELD(PAD_TOL, 1V8))
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/* Unused PINS will be controlled by GPIO controller (PMODE = GPIO) and
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GPIO TX/RX will be disabled. */
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#define PAD_CFG_NC(pad_) \
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@ -149,9 +155,9 @@ void gpio_configure_pads(const struct pad_config *cfgs, size_t num);
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NO, NO, YES, NO, GPIO, NO, YES), PAD_FIELD(HOSTSW, ACPI))
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/*
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* The 'attrs' field carries the termination in bits 13:10 to match up with
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* thd DW1 pad configuration register. Additionally, other attributes can
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* be applied such as the ones below. Bit allocation matters.
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* The 'attrs' field carries the termination in bits 13:10 and tolerance in bit
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* 25 to match up with thd DW1 pad configuration register. Additionally, other
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* attributes can be applied such as the ones below. Bit allocation matters.
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*/
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#define HOSTSW_SHIFT 0
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#define HOSTSW_MASK 1
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@ -160,7 +166,7 @@ void gpio_configure_pads(const struct pad_config *cfgs, size_t num);
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struct pad_config {
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uint16_t pad;
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uint16_t attrs;
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uint32_t attrs;
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uint32_t dw0;
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};
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@ -495,6 +495,11 @@
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#define PAD_TERM_20K_PU 12
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#define PAD_TERM_667_PU 13
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#define PAD_TERM_NATIVE 15
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/* TOL - voltage tolerance */
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#define PAD_TOL_SHIFT 25
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#define PAD_TOL_MASK 0x1
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#define PAD_TOL_3V3 0 /* 3.3V default */
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#define PAD_TOL_1V8 1 /* 1.8V tolerant */
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#define GPI_GPE_STS_OFFSET 0x140
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#define GPI_GPE_EN_OFFSET 0x160
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