return readl_relaxed_poll_timeout(qm->io_base + QM_MB_CMD_SEND_BASE,
val, !((val >> QM_MB_BUSY_SHIFT) &
- 0x1), 10, 1000);
+ 0x1), POLL_PERIOD, POLL_TIMEOUT);
}
/* 128 bit should be written to hardware at one time to trigger a mailbox */
writel(0x1, qm->io_base + QM_MEM_START_INIT);
return readl_relaxed_poll_timeout(qm->io_base + QM_MEM_INIT_DONE, val,
- val & BIT(0), 10, 1000);
+ val & BIT(0), POLL_PERIOD,
+ POLL_TIMEOUT);
}
static u32 qm_get_irq_num_v1(struct hisi_qm *qm)
int ret;
ret = readl_relaxed_poll_timeout(qm->io_base + QM_VFT_CFG_RDY, val,
- val & BIT(0), 10, 1000);
+ val & BIT(0), POLL_PERIOD,
+ POLL_TIMEOUT);
if (ret)
return ret;
writel(0x1, qm->io_base + QM_VFT_CFG_OP_ENABLE);
return readl_relaxed_poll_timeout(qm->io_base + QM_VFT_CFG_RDY, val,
- val & BIT(0), 10, 1000);
+ val & BIT(0), POLL_PERIOD,
+ POLL_TIMEOUT);
}
/* The config should be conducted after qm_dev_mem_reset() */
INIT_QC_COMMON(cqc, qp->cqe_dma, pasid);
if (ver == QM_HW_V1) {
- cqc->dw3 = cpu_to_le32(QM_MK_CQC_DW3_V1(0, 0, 0, 4));
+ cqc->dw3 = cpu_to_le32(QM_MK_CQC_DW3_V1(0, 0, 0,
+ QM_QC_CQE_SIZE));
cqc->w8 = cpu_to_le16(QM_Q_DEPTH - 1);
} else {
- cqc->dw3 = cpu_to_le32(QM_MK_CQC_DW3_V2(4));
+ cqc->dw3 = cpu_to_le32(QM_MK_CQC_DW3_V2(QM_QC_CQE_SIZE));
cqc->w8 = 0;
}
cqc->dw6 = cpu_to_le32(1 << QM_CQ_PHASE_SHIFT | 1 << QM_CQ_FLAG_SHIFT);
writel(0x1, qm->io_base + QM_CACHE_WB_START);
if (readl_relaxed_poll_timeout(qm->io_base + QM_CACHE_WB_DONE,
- val, val & BIT(0), 10, 1000))
+ val, val & BIT(0), POLL_PERIOD,
+ POLL_TIMEOUT))
dev_err(&qm->pdev->dev, "QM writeback sqc cache fail!\n");
}