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cxl: Disable secondary hash in segment table
This patch simplifies the process of finding a free segment table entry by disabling the secondary hash. This reduces the number of possible entries in the segment table for a given address from 16 to 8. Due to the large segment sizes we use it is extremely unlikely that the secondary hash would ever have been used in practice, so this should not have any negative impacts and may even improve performance due to the reduced number of comparisons that software & hardware need to perform. This patch clears the SC bit in the hardware's state register (CXL_PSL_SR_An) to disable the secondary hash in the hardware since we can no longer fill out entries using it. Signed-off-by: Ian Munsie <imunsie@au1.ibm.com> Reviewed-by: Aneesh Kumar K.V <aneesh.kumar@linux.vnet.ibm.com> Signed-off-by: Michael Ellerman <mpe@ellerman.id.au>
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@ -22,29 +22,19 @@
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#include "cxl.h"
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static struct cxl_sste* find_free_sste(struct cxl_sste *primary_group,
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bool sec_hash,
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struct cxl_sste *secondary_group,
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unsigned int *lru)
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{
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unsigned int i, entry;
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unsigned int entry;
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struct cxl_sste *sste, *group = primary_group;
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for (i = 0; i < 2; i++) {
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for (entry = 0; entry < 8; entry++) {
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sste = group + entry;
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if (!(be64_to_cpu(sste->esid_data) & SLB_ESID_V))
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return sste;
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}
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if (!sec_hash)
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break;
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group = secondary_group;
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for (entry = 0; entry < 8; entry++) {
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sste = group + entry;
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if (!(be64_to_cpu(sste->esid_data) & SLB_ESID_V))
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return sste;
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}
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/* Nothing free, select an entry to cast out */
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if (sec_hash && (*lru & 0x8))
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sste = secondary_group + (*lru & 0x7);
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else
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sste = primary_group + (*lru & 0x7);
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*lru = (*lru + 1) & 0xf;
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sste = primary_group + *lru;
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*lru = (*lru + 1) & 0x7;
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return sste;
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}
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@ -53,22 +43,18 @@ static void cxl_load_segment(struct cxl_context *ctx, struct copro_slb *slb)
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{
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/* mask is the group index, we search primary and secondary here. */
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unsigned int mask = (ctx->sst_size >> 7)-1; /* SSTP0[SegTableSize] */
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bool sec_hash = 1;
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struct cxl_sste *sste;
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unsigned int hash;
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unsigned long flags;
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sec_hash = !!(cxl_p1n_read(ctx->afu, CXL_PSL_SR_An) & CXL_PSL_SR_An_SC);
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if (slb->vsid & SLB_VSID_B_1T)
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hash = (slb->esid >> SID_SHIFT_1T) & mask;
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else /* 256M */
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hash = (slb->esid >> SID_SHIFT) & mask;
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spin_lock_irqsave(&ctx->sste_lock, flags);
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sste = find_free_sste(ctx->sstp + (hash << 3), sec_hash,
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ctx->sstp + ((~hash & mask) << 3), &ctx->sst_lru);
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sste = find_free_sste(ctx->sstp + (hash << 3), &ctx->sst_lru);
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pr_devel("CXL Populating SST[%li]: %#llx %#llx\n",
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sste - ctx->sstp, slb->vsid, slb->esid);
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@ -417,7 +417,7 @@ static int attach_afu_directed(struct cxl_context *ctx, u64 wed, u64 amr)
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ctx->elem->haurp = 0; /* disable */
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ctx->elem->sdr = cpu_to_be64(mfspr(SPRN_SDR1));
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sr = CXL_PSL_SR_An_SC;
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sr = 0;
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if (ctx->master)
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sr |= CXL_PSL_SR_An_MP;
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if (mfspr(SPRN_LPCR) & LPCR_TC)
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@ -508,7 +508,7 @@ static int attach_dedicated(struct cxl_context *ctx, u64 wed, u64 amr)
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u64 sr;
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int rc;
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sr = CXL_PSL_SR_An_SC;
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sr = 0;
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set_endian(sr);
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if (ctx->master)
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sr |= CXL_PSL_SR_An_MP;
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