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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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48863ce594
DMA behavior is linked to descriptor management: -descriptor mechanism (Tx for example, but it is exactly the same for RX): -useful registers: -DMA_CH#_TxDesc_Ring_Len: length of transmit descriptor ring -DMA_CH#_TxDesc_List_Address: start address of the ring -DMA_CH#_TxDesc_Tail_Pointer: address of the last descriptor to send + 1. -DMA_CH#_TxDesc_Current_App_TxDesc: address of the current descriptor -The descriptor Tail Pointer register contains the pointer to the descriptor address (N). The base address and the current descriptor decide the address of the current descriptor that the DMA can process. The descriptors up to one location less than the one indicated by the descriptor tail pointer (N-1) are owned by the DMA. The DMA continues to process the descriptors until the following condition occurs: "current descriptor pointer == Descriptor Tail pointer" Then the DMA goes into suspend mode. The application must perform a write to descriptor tail pointer register and update the tail pointer to have the following condition and to start a new transfer: "current descriptor pointer < Descriptor tail pointer" The DMA automatically wraps around the base address when the end of ring is reached. Up to 8 DMA could be use but currently we only use one (channel0) Signed-off-by: Alexandre TORGUE <alexandre.torgue@st.com> Signed-off-by: Giuseppe Cavallaro <peppe.cavallaro@st.com> Signed-off-by: David S. Miller <davem@davemloft.net>
203 lines
7.1 KiB
C
203 lines
7.1 KiB
C
/*
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* DWMAC4 DMA Header file.
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*
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*
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* Copyright (C) 2007-2015 STMicroelectronics Ltd
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* Author: Alexandre Torgue <alexandre.torgue@st.com>
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*/
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#ifndef __DWMAC4_DMA_H__
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#define __DWMAC4_DMA_H__
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/* Define the max channel number used for tx (also rx).
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* dwmac4 accepts up to 8 channels for TX (and also 8 channels for RX
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*/
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#define DMA_CHANNEL_NB_MAX 1
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#define DMA_BUS_MODE 0x00001000
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#define DMA_SYS_BUS_MODE 0x00001004
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#define DMA_STATUS 0x00001008
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#define DMA_DEBUG_STATUS_0 0x0000100c
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#define DMA_DEBUG_STATUS_1 0x00001010
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#define DMA_DEBUG_STATUS_2 0x00001014
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#define DMA_AXI_BUS_MODE 0x00001028
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/* DMA Bus Mode bitmap */
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#define DMA_BUS_MODE_SFT_RESET BIT(0)
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/* DMA SYS Bus Mode bitmap */
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#define DMA_BUS_MODE_SPH BIT(24)
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#define DMA_BUS_MODE_PBL BIT(16)
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#define DMA_BUS_MODE_PBL_SHIFT 16
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#define DMA_BUS_MODE_RPBL_SHIFT 16
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#define DMA_BUS_MODE_MB BIT(14)
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#define DMA_BUS_MODE_FB BIT(0)
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/* DMA Interrupt top status */
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#define DMA_STATUS_MAC BIT(17)
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#define DMA_STATUS_MTL BIT(16)
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#define DMA_STATUS_CHAN7 BIT(7)
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#define DMA_STATUS_CHAN6 BIT(6)
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#define DMA_STATUS_CHAN5 BIT(5)
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#define DMA_STATUS_CHAN4 BIT(4)
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#define DMA_STATUS_CHAN3 BIT(3)
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#define DMA_STATUS_CHAN2 BIT(2)
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#define DMA_STATUS_CHAN1 BIT(1)
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#define DMA_STATUS_CHAN0 BIT(0)
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/* DMA debug status bitmap */
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#define DMA_DEBUG_STATUS_TS_MASK 0xf
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#define DMA_DEBUG_STATUS_RS_MASK 0xf
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/* DMA AXI bitmap */
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#define DMA_AXI_EN_LPI BIT(31)
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#define DMA_AXI_LPI_XIT_FRM BIT(30)
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#define DMA_AXI_WR_OSR_LMT GENMASK(27, 24)
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#define DMA_AXI_WR_OSR_LMT_SHIFT 24
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#define DMA_AXI_RD_OSR_LMT GENMASK(19, 16)
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#define DMA_AXI_RD_OSR_LMT_SHIFT 16
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#define DMA_AXI_OSR_MAX 0xf
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#define DMA_AXI_MAX_OSR_LIMIT ((DMA_AXI_OSR_MAX << DMA_AXI_WR_OSR_LMT_SHIFT) | \
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(DMA_AXI_OSR_MAX << DMA_AXI_RD_OSR_LMT_SHIFT))
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#define DMA_SYS_BUS_MB BIT(14)
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#define DMA_AXI_1KBBE BIT(13)
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#define DMA_SYS_BUS_AAL BIT(12)
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#define DMA_AXI_BLEN256 BIT(7)
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#define DMA_AXI_BLEN128 BIT(6)
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#define DMA_AXI_BLEN64 BIT(5)
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#define DMA_AXI_BLEN32 BIT(4)
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#define DMA_AXI_BLEN16 BIT(3)
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#define DMA_AXI_BLEN8 BIT(2)
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#define DMA_AXI_BLEN4 BIT(1)
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#define DMA_SYS_BUS_FB BIT(0)
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#define DMA_BURST_LEN_DEFAULT (DMA_AXI_BLEN256 | DMA_AXI_BLEN128 | \
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DMA_AXI_BLEN64 | DMA_AXI_BLEN32 | \
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DMA_AXI_BLEN16 | DMA_AXI_BLEN8 | \
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DMA_AXI_BLEN4)
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#define DMA_AXI_BURST_LEN_MASK 0x000000FE
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/* Following DMA defines are chanels oriented */
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#define DMA_CHAN_BASE_ADDR 0x00001100
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#define DMA_CHAN_BASE_OFFSET 0x80
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#define DMA_CHANX_BASE_ADDR(x) (DMA_CHAN_BASE_ADDR + \
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(x * DMA_CHAN_BASE_OFFSET))
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#define DMA_CHAN_REG_NUMBER 17
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#define DMA_CHAN_CONTROL(x) DMA_CHANX_BASE_ADDR(x)
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#define DMA_CHAN_TX_CONTROL(x) (DMA_CHANX_BASE_ADDR(x) + 0x4)
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#define DMA_CHAN_RX_CONTROL(x) (DMA_CHANX_BASE_ADDR(x) + 0x8)
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#define DMA_CHAN_TX_BASE_ADDR(x) (DMA_CHANX_BASE_ADDR(x) + 0x14)
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#define DMA_CHAN_RX_BASE_ADDR(x) (DMA_CHANX_BASE_ADDR(x) + 0x1c)
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#define DMA_CHAN_TX_END_ADDR(x) (DMA_CHANX_BASE_ADDR(x) + 0x20)
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#define DMA_CHAN_RX_END_ADDR(x) (DMA_CHANX_BASE_ADDR(x) + 0x28)
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#define DMA_CHAN_TX_RING_LEN(x) (DMA_CHANX_BASE_ADDR(x) + 0x2c)
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#define DMA_CHAN_RX_RING_LEN(x) (DMA_CHANX_BASE_ADDR(x) + 0x30)
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#define DMA_CHAN_INTR_ENA(x) (DMA_CHANX_BASE_ADDR(x) + 0x34)
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#define DMA_CHAN_RX_WATCHDOG(x) (DMA_CHANX_BASE_ADDR(x) + 0x38)
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#define DMA_CHAN_SLOT_CTRL_STATUS(x) (DMA_CHANX_BASE_ADDR(x) + 0x3c)
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#define DMA_CHAN_CUR_TX_DESC(x) (DMA_CHANX_BASE_ADDR(x) + 0x44)
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#define DMA_CHAN_CUR_RX_DESC(x) (DMA_CHANX_BASE_ADDR(x) + 0x4c)
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#define DMA_CHAN_CUR_TX_BUF_ADDR(x) (DMA_CHANX_BASE_ADDR(x) + 0x54)
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#define DMA_CHAN_CUR_RX_BUF_ADDR(x) (DMA_CHANX_BASE_ADDR(x) + 0x5c)
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#define DMA_CHAN_STATUS(x) (DMA_CHANX_BASE_ADDR(x) + 0x60)
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/* DMA Control X */
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#define DMA_CONTROL_MSS_MASK GENMASK(13, 0)
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/* DMA Tx Channel X Control register defines */
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#define DMA_CONTROL_TSE BIT(12)
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#define DMA_CONTROL_OSP BIT(4)
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#define DMA_CONTROL_ST BIT(0)
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/* DMA Rx Channel X Control register defines */
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#define DMA_CONTROL_SR BIT(0)
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/* Interrupt status per channel */
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#define DMA_CHAN_STATUS_REB GENMASK(21, 19)
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#define DMA_CHAN_STATUS_REB_SHIFT 19
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#define DMA_CHAN_STATUS_TEB GENMASK(18, 16)
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#define DMA_CHAN_STATUS_TEB_SHIFT 16
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#define DMA_CHAN_STATUS_NIS BIT(15)
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#define DMA_CHAN_STATUS_AIS BIT(14)
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#define DMA_CHAN_STATUS_CDE BIT(13)
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#define DMA_CHAN_STATUS_FBE BIT(12)
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#define DMA_CHAN_STATUS_ERI BIT(11)
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#define DMA_CHAN_STATUS_ETI BIT(10)
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#define DMA_CHAN_STATUS_RWT BIT(9)
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#define DMA_CHAN_STATUS_RPS BIT(8)
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#define DMA_CHAN_STATUS_RBU BIT(7)
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#define DMA_CHAN_STATUS_RI BIT(6)
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#define DMA_CHAN_STATUS_TBU BIT(2)
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#define DMA_CHAN_STATUS_TPS BIT(1)
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#define DMA_CHAN_STATUS_TI BIT(0)
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/* Interrupt enable bits per channel */
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#define DMA_CHAN_INTR_ENA_NIE BIT(16)
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#define DMA_CHAN_INTR_ENA_AIE BIT(15)
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#define DMA_CHAN_INTR_ENA_NIE_4_10 BIT(15)
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#define DMA_CHAN_INTR_ENA_AIE_4_10 BIT(14)
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#define DMA_CHAN_INTR_ENA_CDE BIT(13)
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#define DMA_CHAN_INTR_ENA_FBE BIT(12)
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#define DMA_CHAN_INTR_ENA_ERE BIT(11)
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#define DMA_CHAN_INTR_ENA_ETE BIT(10)
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#define DMA_CHAN_INTR_ENA_RWE BIT(9)
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#define DMA_CHAN_INTR_ENA_RSE BIT(8)
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#define DMA_CHAN_INTR_ENA_RBUE BIT(7)
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#define DMA_CHAN_INTR_ENA_RIE BIT(6)
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#define DMA_CHAN_INTR_ENA_TBUE BIT(2)
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#define DMA_CHAN_INTR_ENA_TSE BIT(1)
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#define DMA_CHAN_INTR_ENA_TIE BIT(0)
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#define DMA_CHAN_INTR_NORMAL (DMA_CHAN_INTR_ENA_NIE | \
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DMA_CHAN_INTR_ENA_RIE | \
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DMA_CHAN_INTR_ENA_TIE)
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#define DMA_CHAN_INTR_ABNORMAL (DMA_CHAN_INTR_ENA_AIE | \
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DMA_CHAN_INTR_ENA_FBE)
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/* DMA default interrupt mask for 4.00 */
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#define DMA_CHAN_INTR_DEFAULT_MASK (DMA_CHAN_INTR_NORMAL | \
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DMA_CHAN_INTR_ABNORMAL)
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#define DMA_CHAN_INTR_NORMAL_4_10 (DMA_CHAN_INTR_ENA_NIE_4_10 | \
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DMA_CHAN_INTR_ENA_RIE | \
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DMA_CHAN_INTR_ENA_TIE)
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#define DMA_CHAN_INTR_ABNORMAL_4_10 (DMA_CHAN_INTR_ENA_AIE_4_10 | \
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DMA_CHAN_INTR_ENA_FBE)
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/* DMA default interrupt mask for 4.10a */
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#define DMA_CHAN_INTR_DEFAULT_MASK_4_10 (DMA_CHAN_INTR_NORMAL_4_10 | \
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DMA_CHAN_INTR_ABNORMAL_4_10)
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/* channel 0 specific fields */
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#define DMA_CHAN0_DBG_STAT_TPS GENMASK(15, 12)
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#define DMA_CHAN0_DBG_STAT_TPS_SHIFT 12
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#define DMA_CHAN0_DBG_STAT_RPS GENMASK(11, 8)
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#define DMA_CHAN0_DBG_STAT_RPS_SHIFT 8
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int dwmac4_dma_reset(void __iomem *ioaddr);
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void dwmac4_enable_dma_transmission(void __iomem *ioaddr, u32 tail_ptr);
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void dwmac4_enable_dma_irq(void __iomem *ioaddr);
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void dwmac410_enable_dma_irq(void __iomem *ioaddr);
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void dwmac4_disable_dma_irq(void __iomem *ioaddr);
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void dwmac4_dma_start_tx(void __iomem *ioaddr);
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void dwmac4_dma_stop_tx(void __iomem *ioaddr);
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void dwmac4_dma_start_rx(void __iomem *ioaddr);
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void dwmac4_dma_stop_rx(void __iomem *ioaddr);
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int dwmac4_dma_interrupt(void __iomem *ioaddr,
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struct stmmac_extra_stats *x);
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void dwmac4_set_rx_ring_len(void __iomem *ioaddr, u32 len);
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void dwmac4_set_tx_ring_len(void __iomem *ioaddr, u32 len);
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void dwmac4_set_rx_tail_ptr(void __iomem *ioaddr, u32 tail_ptr, u32 chan);
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void dwmac4_set_tx_tail_ptr(void __iomem *ioaddr, u32 tail_ptr, u32 chan);
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#endif /* __DWMAC4_DMA_H__ */
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