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clk: imx7d: create clocks behind rawnand clock gate
The rawnand clock gate gates two clocks, NAND_USDHC_BUS_CLK_ROOT and NAND_CLK_ROOT. However, the gate has been in the chain of the latter only. This does not allow to use the NAND_USDHC_BUS_CLK_ROOT only, e.g. as required by APBH-Bridge-DMA. Add new clocks which represent the clock after the gate, and use a shared clock gate to correctly model the hardware. Signed-off-by: Stefan Agner <stefan@agner.ch> Tested-by: Fabio Estevam <fabio.estevam@nxp.com> Acked-by: Han Xu <han.xu@nxp.com> Signed-off-by: Stephen Boyd <sboyd@codeaurora.org>
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@ -25,6 +25,7 @@
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static u32 share_count_sai1;
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static u32 share_count_sai2;
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static u32 share_count_sai3;
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static u32 share_count_nand;
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static struct clk_div_table test_div_table[] = {
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{ .val = 3, .div = 1, },
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@ -748,7 +749,7 @@ static void __init imx7d_clocks_init(struct device_node *ccm_node)
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clks[IMX7D_ENET2_TIME_ROOT_DIV] = imx_clk_divider2("enet2_time_post_div", "enet2_time_pre_div", base + 0xa880, 0, 6);
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clks[IMX7D_ENET_PHY_REF_ROOT_DIV] = imx_clk_divider2("enet_phy_ref_post_div", "enet_phy_ref_pre_div", base + 0xa900, 0, 6);
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clks[IMX7D_EIM_ROOT_DIV] = imx_clk_divider2("eim_post_div", "eim_pre_div", base + 0xa980, 0, 6);
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clks[IMX7D_NAND_ROOT_DIV] = imx_clk_divider2("nand_post_div", "nand_pre_div", base + 0xaa00, 0, 6);
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clks[IMX7D_NAND_ROOT_CLK] = imx_clk_divider2("nand_root_clk", "nand_pre_div", base + 0xaa00, 0, 6);
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clks[IMX7D_QSPI_ROOT_DIV] = imx_clk_divider2("qspi_post_div", "qspi_pre_div", base + 0xaa80, 0, 6);
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clks[IMX7D_USDHC1_ROOT_DIV] = imx_clk_divider2("usdhc1_post_div", "usdhc1_pre_div", base + 0xab00, 0, 6);
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clks[IMX7D_USDHC2_ROOT_DIV] = imx_clk_divider2("usdhc2_post_div", "usdhc2_pre_div", base + 0xab80, 0, 6);
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@ -825,7 +826,8 @@ static void __init imx7d_clocks_init(struct device_node *ccm_node)
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clks[IMX7D_ENET2_TIME_ROOT_CLK] = imx_clk_gate4("enet2_time_root_clk", "enet2_time_post_div", base + 0x4510, 0);
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clks[IMX7D_ENET_PHY_REF_ROOT_CLK] = imx_clk_gate4("enet_phy_ref_root_clk", "enet_phy_ref_post_div", base + 0x4520, 0);
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clks[IMX7D_EIM_ROOT_CLK] = imx_clk_gate4("eim_root_clk", "eim_post_div", base + 0x4160, 0);
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clks[IMX7D_NAND_ROOT_CLK] = imx_clk_gate4("nand_root_clk", "nand_post_div", base + 0x4140, 0);
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clks[IMX7D_NAND_RAWNAND_CLK] = imx_clk_gate2_shared2("nand_rawnand_clk", "nand_root_clk", base + 0x4140, 0, &share_count_nand);
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clks[IMX7D_NAND_USDHC_BUS_RAWNAND_CLK] = imx_clk_gate2_shared2("nand_usdhc_rawnand_clk", "nand_usdhc_root_clk", base + 0x4140, 0, &share_count_nand);
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clks[IMX7D_QSPI_ROOT_CLK] = imx_clk_gate4("qspi_root_clk", "qspi_post_div", base + 0x4150, 0);
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clks[IMX7D_USDHC1_ROOT_CLK] = imx_clk_gate4("usdhc1_root_clk", "usdhc1_post_div", base + 0x46c0, 0);
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clks[IMX7D_USDHC2_ROOT_CLK] = imx_clk_gate4("usdhc2_root_clk", "usdhc2_post_div", base + 0x46d0, 0);
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@ -450,5 +450,7 @@
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#define IMX7D_CLK_ARM 437
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#define IMX7D_CKIL 438
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#define IMX7D_OCOTP_CLK 439
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#define IMX7D_CLK_END 440
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#define IMX7D_NAND_RAWNAND_CLK 440
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#define IMX7D_NAND_USDHC_BUS_RAWNAND_CLK 441
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#define IMX7D_CLK_END 442
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#endif /* __DT_BINDINGS_CLOCK_IMX7D_H */
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