intel_gvt_sanitize_options(dev_priv);
}
+static int intel_dimm_num_devices(const struct dram_dimm_info *dimm)
+{
+ return dimm->ranks * 64 / (dimm->width ?: 1);
+}
+
/* Returns total GB for the whole DIMM */
static int skl_get_dimm_size(u16 val)
{
}
static bool
-skl_is_16gb_dimm(u8 ranks, u8 size, u8 width)
+skl_is_16gb_dimm(const struct dram_dimm_info *dimm)
{
- if (ranks == 1 && width == 8 && size == 16)
- return true;
- else if (ranks == 2 && width == 8 && size == 32)
- return true;
- else if (ranks == 1 && width == 16 && size == 8)
- return true;
- else if (ranks == 2 && width == 16 && size == 16)
- return true;
-
- return false;
+ /* Convert total GB to Gb per DRAM device */
+ return 8 * dimm->size / (intel_dimm_num_devices(dimm) ?: 1) == 16;
}
static int
else
ch->ranks = 1;
- ch->is_16gb_dimm = skl_is_16gb_dimm(ch->l_info.ranks, ch->l_info.size,
- ch->l_info.width) ||
- skl_is_16gb_dimm(ch->s_info.ranks, ch->s_info.size,
- ch->s_info.width);
+ ch->is_16gb_dimm =
+ skl_is_16gb_dimm(&ch->l_info) ||
+ skl_is_16gb_dimm(&ch->s_info);
DRM_DEBUG_KMS("(size:width:ranks) L(%uGB:X%u:%u) S(%uGB:X%u:%u)\n",
ch->l_info.size, ch->l_info.width, ch->l_info.ranks,
sprintf(bandwidth_str, "unknown");
DRM_DEBUG_KMS("DRAM bandwidth:%s, total-channels: %u\n",
bandwidth_str, dram_info->num_channels);
- DRM_DEBUG_KMS("DRAM ranks: %u, 16GB-dimm:%s\n",
+ DRM_DEBUG_KMS("DRAM ranks: %u, 16Gb DIMMs: %s\n",
dram_info->ranks, yesno(dram_info->is_16gb_dimm));
}