Commit 451e05e2 authored by Anusha Srivatsa's avatar Anusha Srivatsa

drm/i915/dmc: Introduce DMC_FW_MAIN

This is a prep patch for Pipe DMC plugging.

Add dmc_info struct in intel_dmc to have all common fields
shared between all DMC's in the package.
Add DMC_FW_MAIN(dmc_id 0) to refer to the blob.

v2: Remove dmc_offset and start_mmioaddr from dmc_info struct (Jose)

Cc: Souza, Jose <jose.souza@intel.com>
Signed-off-by: default avatarAnusha Srivatsa <anusha.srivatsa@intel.com>
Reviewed-by: default avatarLucas De Marchi <lucas.demarchi@intel.com>
Link: https://patchwork.freedesktop.org/patch/msgid/20210621191415.29823-2-anusha.srivatsa@intel.com
parent c88e2647
...@@ -239,7 +239,7 @@ struct stepping_info { ...@@ -239,7 +239,7 @@ struct stepping_info {
bool intel_dmc_has_payload(struct drm_i915_private *i915) bool intel_dmc_has_payload(struct drm_i915_private *i915)
{ {
return i915->dmc.dmc_payload; return i915->dmc.dmc_info[DMC_FW_MAIN].payload;
} }
static const struct stepping_info skl_stepping_info[] = { static const struct stepping_info skl_stepping_info[] = {
...@@ -316,7 +316,8 @@ static void gen9_set_dc_state_debugmask(struct drm_i915_private *dev_priv) ...@@ -316,7 +316,8 @@ static void gen9_set_dc_state_debugmask(struct drm_i915_private *dev_priv)
*/ */
void intel_dmc_load_program(struct drm_i915_private *dev_priv) void intel_dmc_load_program(struct drm_i915_private *dev_priv)
{ {
u32 *payload = dev_priv->dmc.dmc_payload; struct intel_dmc *dmc = &dev_priv->dmc;
struct dmc_fw_info *dmc_info = &dmc->dmc_info[DMC_FW_MAIN];
u32 i, fw_size; u32 i, fw_size;
if (!HAS_DMC(dev_priv)) { if (!HAS_DMC(dev_priv)) {
...@@ -325,26 +326,26 @@ void intel_dmc_load_program(struct drm_i915_private *dev_priv) ...@@ -325,26 +326,26 @@ void intel_dmc_load_program(struct drm_i915_private *dev_priv)
return; return;
} }
if (!intel_dmc_has_payload(dev_priv)) { if (!dev_priv->dmc.dmc_info[DMC_FW_MAIN].payload) {
drm_err(&dev_priv->drm, drm_err(&dev_priv->drm,
"Tried to program CSR with empty payload\n"); "Tried to program CSR with empty payload\n");
return; return;
} }
fw_size = dev_priv->dmc.dmc_fw_size; fw_size = dmc_info->dmc_fw_size;
assert_rpm_wakelock_held(&dev_priv->runtime_pm); assert_rpm_wakelock_held(&dev_priv->runtime_pm);
preempt_disable(); preempt_disable();
for (i = 0; i < fw_size; i++) for (i = 0; i < fw_size; i++)
intel_uncore_write_fw(&dev_priv->uncore, DMC_PROGRAM(i), intel_uncore_write_fw(&dev_priv->uncore, DMC_PROGRAM(i),
payload[i]); dmc_info->payload[i]);
preempt_enable(); preempt_enable();
for (i = 0; i < dev_priv->dmc.mmio_count; i++) { for (i = 0; i < dmc_info->mmio_count; i++) {
intel_de_write(dev_priv, dev_priv->dmc.mmioaddr[i], intel_de_write(dev_priv, dmc_info->mmioaddr[i],
dev_priv->dmc.mmiodata[i]); dmc_info->mmiodata[i]);
} }
dev_priv->dmc.dc_state = 0; dev_priv->dmc.dc_state = 0;
...@@ -401,13 +402,14 @@ static u32 parse_dmc_fw_header(struct intel_dmc *dmc, ...@@ -401,13 +402,14 @@ static u32 parse_dmc_fw_header(struct intel_dmc *dmc,
size_t rem_size) size_t rem_size)
{ {
struct drm_i915_private *i915 = container_of(dmc, typeof(*i915), dmc); struct drm_i915_private *i915 = container_of(dmc, typeof(*i915), dmc);
struct dmc_fw_info *dmc_info = &dmc->dmc_info[DMC_FW_MAIN];
unsigned int header_len_bytes, dmc_header_size, payload_size, i; unsigned int header_len_bytes, dmc_header_size, payload_size, i;
const u32 *mmioaddr, *mmiodata; const u32 *mmioaddr, *mmiodata;
u32 mmio_count, mmio_count_max; u32 mmio_count, mmio_count_max;
u8 *payload; u8 *payload;
BUILD_BUG_ON(ARRAY_SIZE(dmc->mmioaddr) < DMC_V3_MAX_MMIO_COUNT || BUILD_BUG_ON(ARRAY_SIZE(dmc_info->mmioaddr) < DMC_V3_MAX_MMIO_COUNT ||
ARRAY_SIZE(dmc->mmioaddr) < DMC_V1_MAX_MMIO_COUNT); ARRAY_SIZE(dmc_info->mmioaddr) < DMC_V1_MAX_MMIO_COUNT);
/* /*
* Check if we can access common fields, we will checkc again below * Check if we can access common fields, we will checkc again below
...@@ -469,10 +471,10 @@ static u32 parse_dmc_fw_header(struct intel_dmc *dmc, ...@@ -469,10 +471,10 @@ static u32 parse_dmc_fw_header(struct intel_dmc *dmc,
mmioaddr[i]); mmioaddr[i]);
return 0; return 0;
} }
dmc->mmioaddr[i] = _MMIO(mmioaddr[i]); dmc_info->mmioaddr[i] = _MMIO(mmioaddr[i]);
dmc->mmiodata[i] = mmiodata[i]; dmc_info->mmiodata[i] = mmiodata[i];
} }
dmc->mmio_count = mmio_count; dmc_info->mmio_count = mmio_count;
rem_size -= header_len_bytes; rem_size -= header_len_bytes;
...@@ -485,14 +487,14 @@ static u32 parse_dmc_fw_header(struct intel_dmc *dmc, ...@@ -485,14 +487,14 @@ static u32 parse_dmc_fw_header(struct intel_dmc *dmc,
drm_err(&i915->drm, "DMC FW too big (%u bytes)\n", payload_size); drm_err(&i915->drm, "DMC FW too big (%u bytes)\n", payload_size);
return 0; return 0;
} }
dmc->dmc_fw_size = dmc_header->fw_size; dmc_info->dmc_fw_size = dmc_header->fw_size;
dmc->dmc_payload = kmalloc(payload_size, GFP_KERNEL); dmc_info->payload = kmalloc(payload_size, GFP_KERNEL);
if (!dmc->dmc_payload) if (!dmc_info->payload)
return 0; return 0;
payload = (u8 *)(dmc_header) + header_len_bytes; payload = (u8 *)(dmc_header) + header_len_bytes;
memcpy(dmc->dmc_payload, payload, payload_size); memcpy(dmc_info->payload, payload, payload_size);
return header_len_bytes + payload_size; return header_len_bytes + payload_size;
...@@ -827,5 +829,5 @@ void intel_dmc_ucode_fini(struct drm_i915_private *dev_priv) ...@@ -827,5 +829,5 @@ void intel_dmc_ucode_fini(struct drm_i915_private *dev_priv)
intel_dmc_ucode_suspend(dev_priv); intel_dmc_ucode_suspend(dev_priv);
drm_WARN_ON(&dev_priv->drm, dev_priv->dmc.wakeref); drm_WARN_ON(&dev_priv->drm, dev_priv->dmc.wakeref);
kfree(dev_priv->dmc.dmc_payload); kfree(dev_priv->dmc.dmc_info[DMC_FW_MAIN].payload);
} }
...@@ -16,17 +16,25 @@ struct drm_i915_private; ...@@ -16,17 +16,25 @@ struct drm_i915_private;
#define DMC_VERSION_MAJOR(version) ((version) >> 16) #define DMC_VERSION_MAJOR(version) ((version) >> 16)
#define DMC_VERSION_MINOR(version) ((version) & 0xffff) #define DMC_VERSION_MINOR(version) ((version) & 0xffff)
enum {
DMC_FW_MAIN = 0,
DMC_FW_MAX
};
struct intel_dmc { struct intel_dmc {
struct work_struct work; struct work_struct work;
const char *fw_path; const char *fw_path;
u32 required_version; u32 required_version;
u32 max_fw_size; /* bytes */ u32 max_fw_size; /* bytes */
u32 *dmc_payload;
u32 dmc_fw_size; /* dwords */
u32 version; u32 version;
struct dmc_fw_info {
u32 mmio_count; u32 mmio_count;
i915_reg_t mmioaddr[20]; i915_reg_t mmioaddr[20];
u32 mmiodata[20]; u32 mmiodata[20];
u32 dmc_fw_size; /*dwords */
u32 *payload;
} dmc_info[DMC_FW_MAX];
u32 dc_state; u32 dc_state;
u32 target_dc_state; u32 target_dc_state;
u32 allowed_dc_mask; u32 allowed_dc_mask;
......
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