jit.c 75.0 KB
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/*
J
Jiong Wang 已提交
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 * Copyright (C) 2016-2017 Netronome Systems, Inc.
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 *
 * This software is dual licensed under the GNU General License Version 2,
 * June 1991 as shown in the file COPYING in the top-level directory of this
 * source tree or the BSD 2-Clause License provided below.  You have the
 * option to license this software under the complete terms of either license.
 *
 * The BSD 2-Clause License:
 *
 *     Redistribution and use in source and binary forms, with or
 *     without modification, are permitted provided that the following
 *     conditions are met:
 *
 *      1. Redistributions of source code must retain the above
 *         copyright notice, this list of conditions and the following
 *         disclaimer.
 *
 *      2. Redistributions in binary form must reproduce the above
 *         copyright notice, this list of conditions and the following
 *         disclaimer in the documentation and/or other materials
 *         provided with the distribution.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
 * SOFTWARE.
 */

#define pr_fmt(fmt)	"NFP net bpf: " fmt

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#include <linux/bug.h>
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#include <linux/kernel.h>
#include <linux/bpf.h>
#include <linux/filter.h>
#include <linux/pkt_cls.h>
#include <linux/unistd.h>

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#include "main.h"
#include "../nfp_asm.h"
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/* --- NFP prog --- */
/* Foreach "multiple" entries macros provide pos and next<n> pointers.
 * It's safe to modify the next pointers (but not pos).
 */
#define nfp_for_each_insn_walk2(nfp_prog, pos, next)			\
	for (pos = list_first_entry(&(nfp_prog)->insns, typeof(*pos), l), \
	     next = list_next_entry(pos, l);			\
	     &(nfp_prog)->insns != &pos->l &&			\
	     &(nfp_prog)->insns != &next->l;			\
	     pos = nfp_meta_next(pos),				\
	     next = nfp_meta_next(pos))

#define nfp_for_each_insn_walk3(nfp_prog, pos, next, next2)		\
	for (pos = list_first_entry(&(nfp_prog)->insns, typeof(*pos), l), \
	     next = list_next_entry(pos, l),			\
	     next2 = list_next_entry(next, l);			\
	     &(nfp_prog)->insns != &pos->l &&			\
	     &(nfp_prog)->insns != &next->l &&			\
	     &(nfp_prog)->insns != &next2->l;			\
	     pos = nfp_meta_next(pos),				\
	     next = nfp_meta_next(pos),				\
	     next2 = nfp_meta_next(next))

static bool
nfp_meta_has_prev(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return meta->l.prev != &nfp_prog->insns;
}

static void nfp_prog_push(struct nfp_prog *nfp_prog, u64 insn)
{
	if (nfp_prog->__prog_alloc_len == nfp_prog->prog_len) {
		nfp_prog->error = -ENOSPC;
		return;
	}

	nfp_prog->prog[nfp_prog->prog_len] = insn;
	nfp_prog->prog_len++;
}

static unsigned int nfp_prog_current_offset(struct nfp_prog *nfp_prog)
{
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	return nfp_prog->prog_len;
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}

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static bool
nfp_prog_confirm_current_offset(struct nfp_prog *nfp_prog, unsigned int off)
{
	/* If there is a recorded error we may have dropped instructions;
	 * that doesn't have to be due to translator bug, and the translation
	 * will fail anyway, so just return OK.
	 */
	if (nfp_prog->error)
		return true;
	return !WARN_ON_ONCE(nfp_prog_current_offset(nfp_prog) != off);
}

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/* --- Emitters --- */
static void
__emit_cmd(struct nfp_prog *nfp_prog, enum cmd_tgt_map op,
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	   u8 mode, u8 xfer, u8 areg, u8 breg, u8 size, bool sync, bool indir)
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{
	enum cmd_ctx_swap ctx;
	u64 insn;

	if (sync)
		ctx = CMD_CTX_SWAP;
	else
		ctx = CMD_CTX_NO_SWAP;

	insn =	FIELD_PREP(OP_CMD_A_SRC, areg) |
		FIELD_PREP(OP_CMD_CTX, ctx) |
		FIELD_PREP(OP_CMD_B_SRC, breg) |
		FIELD_PREP(OP_CMD_TOKEN, cmd_tgt_act[op].token) |
		FIELD_PREP(OP_CMD_XFER, xfer) |
		FIELD_PREP(OP_CMD_CNT, size) |
		FIELD_PREP(OP_CMD_SIG, sync) |
		FIELD_PREP(OP_CMD_TGT_CMD, cmd_tgt_act[op].tgt_cmd) |
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		FIELD_PREP(OP_CMD_INDIR, indir) |
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		FIELD_PREP(OP_CMD_MODE, mode);

	nfp_prog_push(nfp_prog, insn);
}

static void
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emit_cmd_any(struct nfp_prog *nfp_prog, enum cmd_tgt_map op, u8 mode, u8 xfer,
	     swreg lreg, swreg rreg, u8 size, bool sync, bool indir)
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{
	struct nfp_insn_re_regs reg;
	int err;

	err = swreg_to_restricted(reg_none(), lreg, rreg, &reg, false);
	if (err) {
		nfp_prog->error = err;
		return;
	}
	if (reg.swap) {
		pr_err("cmd can't swap arguments\n");
		nfp_prog->error = -EFAULT;
		return;
	}
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	if (reg.dst_lmextn || reg.src_lmextn) {
		pr_err("cmd can't use LMextn\n");
		nfp_prog->error = -EFAULT;
		return;
	}
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	__emit_cmd(nfp_prog, op, mode, xfer, reg.areg, reg.breg, size, sync,
		   indir);
}

static void
emit_cmd(struct nfp_prog *nfp_prog, enum cmd_tgt_map op, u8 mode, u8 xfer,
	 swreg lreg, swreg rreg, u8 size, bool sync)
{
	emit_cmd_any(nfp_prog, op, mode, xfer, lreg, rreg, size, sync, false);
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}

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static void
emit_cmd_indir(struct nfp_prog *nfp_prog, enum cmd_tgt_map op, u8 mode, u8 xfer,
	       swreg lreg, swreg rreg, u8 size, bool sync)
{
	emit_cmd_any(nfp_prog, op, mode, xfer, lreg, rreg, size, sync, true);
}

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static void
__emit_br(struct nfp_prog *nfp_prog, enum br_mask mask, enum br_ev_pip ev_pip,
	  enum br_ctx_signal_state css, u16 addr, u8 defer)
{
	u16 addr_lo, addr_hi;
	u64 insn;

	addr_lo = addr & (OP_BR_ADDR_LO >> __bf_shf(OP_BR_ADDR_LO));
	addr_hi = addr != addr_lo;

	insn = OP_BR_BASE |
		FIELD_PREP(OP_BR_MASK, mask) |
		FIELD_PREP(OP_BR_EV_PIP, ev_pip) |
		FIELD_PREP(OP_BR_CSS, css) |
		FIELD_PREP(OP_BR_DEFBR, defer) |
		FIELD_PREP(OP_BR_ADDR_LO, addr_lo) |
		FIELD_PREP(OP_BR_ADDR_HI, addr_hi);

	nfp_prog_push(nfp_prog, insn);
}

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static void
emit_br_relo(struct nfp_prog *nfp_prog, enum br_mask mask, u16 addr, u8 defer,
	     enum nfp_relo_type relo)
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{
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	if (mask == BR_UNC && defer > 2) {
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		pr_err("BUG: branch defer out of bounds %d\n", defer);
		nfp_prog->error = -EFAULT;
		return;
	}
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	__emit_br(nfp_prog, mask,
		  mask != BR_UNC ? BR_EV_PIP_COND : BR_EV_PIP_UNCOND,
		  BR_CSS_NONE, addr, defer);

	nfp_prog->prog[nfp_prog->prog_len - 1] |=
		FIELD_PREP(OP_RELO_TYPE, relo);
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}

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static void
emit_br(struct nfp_prog *nfp_prog, enum br_mask mask, u16 addr, u8 defer)
{
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	emit_br_relo(nfp_prog, mask, addr, defer, RELO_BR_REL);
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}

static void
__emit_immed(struct nfp_prog *nfp_prog, u16 areg, u16 breg, u16 imm_hi,
	     enum immed_width width, bool invert,
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	     enum immed_shift shift, bool wr_both,
	     bool dst_lmextn, bool src_lmextn)
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{
	u64 insn;

	insn = OP_IMMED_BASE |
		FIELD_PREP(OP_IMMED_A_SRC, areg) |
		FIELD_PREP(OP_IMMED_B_SRC, breg) |
		FIELD_PREP(OP_IMMED_IMM, imm_hi) |
		FIELD_PREP(OP_IMMED_WIDTH, width) |
		FIELD_PREP(OP_IMMED_INV, invert) |
		FIELD_PREP(OP_IMMED_SHIFT, shift) |
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		FIELD_PREP(OP_IMMED_WR_AB, wr_both) |
		FIELD_PREP(OP_IMMED_SRC_LMEXTN, src_lmextn) |
		FIELD_PREP(OP_IMMED_DST_LMEXTN, dst_lmextn);
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	nfp_prog_push(nfp_prog, insn);
}

static void
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emit_immed(struct nfp_prog *nfp_prog, swreg dst, u16 imm,
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	   enum immed_width width, bool invert, enum immed_shift shift)
{
	struct nfp_insn_ur_regs reg;
	int err;

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	if (swreg_type(dst) == NN_REG_IMM) {
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		nfp_prog->error = -EFAULT;
		return;
	}

	err = swreg_to_unrestricted(dst, dst, reg_imm(imm & 0xff), &reg);
	if (err) {
		nfp_prog->error = err;
		return;
	}

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	/* Use reg.dst when destination is No-Dest. */
	__emit_immed(nfp_prog,
		     swreg_type(dst) == NN_REG_NONE ? reg.dst : reg.areg,
		     reg.breg, imm >> 8, width, invert, shift,
		     reg.wr_both, reg.dst_lmextn, reg.src_lmextn);
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}

static void
__emit_shf(struct nfp_prog *nfp_prog, u16 dst, enum alu_dst_ab dst_ab,
	   enum shf_sc sc, u8 shift,
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	   u16 areg, enum shf_op op, u16 breg, bool i8, bool sw, bool wr_both,
	   bool dst_lmextn, bool src_lmextn)
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{
	u64 insn;

	if (!FIELD_FIT(OP_SHF_SHIFT, shift)) {
		nfp_prog->error = -EFAULT;
		return;
	}

	if (sc == SHF_SC_L_SHF)
		shift = 32 - shift;

	insn = OP_SHF_BASE |
		FIELD_PREP(OP_SHF_A_SRC, areg) |
		FIELD_PREP(OP_SHF_SC, sc) |
		FIELD_PREP(OP_SHF_B_SRC, breg) |
		FIELD_PREP(OP_SHF_I8, i8) |
		FIELD_PREP(OP_SHF_SW, sw) |
		FIELD_PREP(OP_SHF_DST, dst) |
		FIELD_PREP(OP_SHF_SHIFT, shift) |
		FIELD_PREP(OP_SHF_OP, op) |
		FIELD_PREP(OP_SHF_DST_AB, dst_ab) |
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		FIELD_PREP(OP_SHF_WR_AB, wr_both) |
		FIELD_PREP(OP_SHF_SRC_LMEXTN, src_lmextn) |
		FIELD_PREP(OP_SHF_DST_LMEXTN, dst_lmextn);
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	nfp_prog_push(nfp_prog, insn);
}

static void
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emit_shf(struct nfp_prog *nfp_prog, swreg dst,
	 swreg lreg, enum shf_op op, swreg rreg, enum shf_sc sc, u8 shift)
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{
	struct nfp_insn_re_regs reg;
	int err;

	err = swreg_to_restricted(dst, lreg, rreg, &reg, true);
	if (err) {
		nfp_prog->error = err;
		return;
	}

	__emit_shf(nfp_prog, reg.dst, reg.dst_ab, sc, shift,
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		   reg.areg, op, reg.breg, reg.i8, reg.swap, reg.wr_both,
		   reg.dst_lmextn, reg.src_lmextn);
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}

static void
__emit_alu(struct nfp_prog *nfp_prog, u16 dst, enum alu_dst_ab dst_ab,
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	   u16 areg, enum alu_op op, u16 breg, bool swap, bool wr_both,
	   bool dst_lmextn, bool src_lmextn)
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{
	u64 insn;

	insn = OP_ALU_BASE |
		FIELD_PREP(OP_ALU_A_SRC, areg) |
		FIELD_PREP(OP_ALU_B_SRC, breg) |
		FIELD_PREP(OP_ALU_DST, dst) |
		FIELD_PREP(OP_ALU_SW, swap) |
		FIELD_PREP(OP_ALU_OP, op) |
		FIELD_PREP(OP_ALU_DST_AB, dst_ab) |
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		FIELD_PREP(OP_ALU_WR_AB, wr_both) |
		FIELD_PREP(OP_ALU_SRC_LMEXTN, src_lmextn) |
		FIELD_PREP(OP_ALU_DST_LMEXTN, dst_lmextn);
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	nfp_prog_push(nfp_prog, insn);
}

static void
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emit_alu(struct nfp_prog *nfp_prog, swreg dst,
	 swreg lreg, enum alu_op op, swreg rreg)
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{
	struct nfp_insn_ur_regs reg;
	int err;

	err = swreg_to_unrestricted(dst, lreg, rreg, &reg);
	if (err) {
		nfp_prog->error = err;
		return;
	}

	__emit_alu(nfp_prog, reg.dst, reg.dst_ab,
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		   reg.areg, op, reg.breg, reg.swap, reg.wr_both,
		   reg.dst_lmextn, reg.src_lmextn);
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}

static void
__emit_ld_field(struct nfp_prog *nfp_prog, enum shf_sc sc,
		u8 areg, u8 bmask, u8 breg, u8 shift, bool imm8,
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		bool zero, bool swap, bool wr_both,
		bool dst_lmextn, bool src_lmextn)
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{
	u64 insn;

	insn = OP_LDF_BASE |
		FIELD_PREP(OP_LDF_A_SRC, areg) |
		FIELD_PREP(OP_LDF_SC, sc) |
		FIELD_PREP(OP_LDF_B_SRC, breg) |
		FIELD_PREP(OP_LDF_I8, imm8) |
		FIELD_PREP(OP_LDF_SW, swap) |
		FIELD_PREP(OP_LDF_ZF, zero) |
		FIELD_PREP(OP_LDF_BMASK, bmask) |
		FIELD_PREP(OP_LDF_SHF, shift) |
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		FIELD_PREP(OP_LDF_WR_AB, wr_both) |
		FIELD_PREP(OP_LDF_SRC_LMEXTN, src_lmextn) |
		FIELD_PREP(OP_LDF_DST_LMEXTN, dst_lmextn);
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	nfp_prog_push(nfp_prog, insn);
}

static void
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emit_ld_field_any(struct nfp_prog *nfp_prog, swreg dst, u8 bmask, swreg src,
		  enum shf_sc sc, u8 shift, bool zero)
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{
	struct nfp_insn_re_regs reg;
	int err;

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	/* Note: ld_field is special as it uses one of the src regs as dst */
	err = swreg_to_restricted(dst, dst, src, &reg, true);
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	if (err) {
		nfp_prog->error = err;
		return;
	}

	__emit_ld_field(nfp_prog, sc, reg.areg, bmask, reg.breg, shift,
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			reg.i8, zero, reg.swap, reg.wr_both,
			reg.dst_lmextn, reg.src_lmextn);
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}

static void
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emit_ld_field(struct nfp_prog *nfp_prog, swreg dst, u8 bmask, swreg src,
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	      enum shf_sc sc, u8 shift)
{
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	emit_ld_field_any(nfp_prog, dst, bmask, src, sc, shift, false);
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}

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static void
__emit_lcsr(struct nfp_prog *nfp_prog, u16 areg, u16 breg, bool wr, u16 addr,
	    bool dst_lmextn, bool src_lmextn)
{
	u64 insn;

	insn = OP_LCSR_BASE |
		FIELD_PREP(OP_LCSR_A_SRC, areg) |
		FIELD_PREP(OP_LCSR_B_SRC, breg) |
		FIELD_PREP(OP_LCSR_WRITE, wr) |
		FIELD_PREP(OP_LCSR_ADDR, addr) |
		FIELD_PREP(OP_LCSR_SRC_LMEXTN, src_lmextn) |
		FIELD_PREP(OP_LCSR_DST_LMEXTN, dst_lmextn);

	nfp_prog_push(nfp_prog, insn);
}

static void emit_csr_wr(struct nfp_prog *nfp_prog, swreg src, u16 addr)
{
	struct nfp_insn_ur_regs reg;
	int err;

	/* This instruction takes immeds instead of reg_none() for the ignored
	 * operand, but we can't encode 2 immeds in one instr with our normal
	 * swreg infra so if param is an immed, we encode as reg_none() and
	 * copy the immed to both operands.
	 */
	if (swreg_type(src) == NN_REG_IMM) {
		err = swreg_to_unrestricted(reg_none(), src, reg_none(), &reg);
		reg.breg = reg.areg;
	} else {
		err = swreg_to_unrestricted(reg_none(), src, reg_imm(0), &reg);
	}
	if (err) {
		nfp_prog->error = err;
		return;
	}

	__emit_lcsr(nfp_prog, reg.areg, reg.breg, true, addr / 4,
		    false, reg.src_lmextn);
}

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static void emit_nop(struct nfp_prog *nfp_prog)
{
	__emit_immed(nfp_prog, UR_REG_IMM, UR_REG_IMM, 0, 0, 0, 0, 0, 0, 0);
}

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/* --- Wrappers --- */
static bool pack_immed(u32 imm, u16 *val, enum immed_shift *shift)
{
	if (!(imm & 0xffff0000)) {
		*val = imm;
		*shift = IMMED_SHIFT_0B;
	} else if (!(imm & 0xff0000ff)) {
		*val = imm >> 8;
		*shift = IMMED_SHIFT_1B;
	} else if (!(imm & 0x0000ffff)) {
		*val = imm >> 16;
		*shift = IMMED_SHIFT_2B;
	} else {
		return false;
	}

	return true;
}

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static void wrp_immed(struct nfp_prog *nfp_prog, swreg dst, u32 imm)
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{
	enum immed_shift shift;
	u16 val;

	if (pack_immed(imm, &val, &shift)) {
		emit_immed(nfp_prog, dst, val, IMMED_WIDTH_ALL, false, shift);
	} else if (pack_immed(~imm, &val, &shift)) {
		emit_immed(nfp_prog, dst, val, IMMED_WIDTH_ALL, true, shift);
	} else {
		emit_immed(nfp_prog, dst, imm & 0xffff, IMMED_WIDTH_ALL,
			   false, IMMED_SHIFT_0B);
		emit_immed(nfp_prog, dst, imm >> 16, IMMED_WIDTH_WORD,
			   false, IMMED_SHIFT_2B);
	}
}

/* ur_load_imm_any() - encode immediate or use tmp register (unrestricted)
 * If the @imm is small enough encode it directly in operand and return
 * otherwise load @imm to a spare register and return its encoding.
 */
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static swreg ur_load_imm_any(struct nfp_prog *nfp_prog, u32 imm, swreg tmp_reg)
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{
	if (FIELD_FIT(UR_REG_IMM_MAX, imm))
		return reg_imm(imm);

	wrp_immed(nfp_prog, tmp_reg, imm);
	return tmp_reg;
}

/* re_load_imm_any() - encode immediate or use tmp register (restricted)
 * If the @imm is small enough encode it directly in operand and return
 * otherwise load @imm to a spare register and return its encoding.
 */
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static swreg re_load_imm_any(struct nfp_prog *nfp_prog, u32 imm, swreg tmp_reg)
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{
	if (FIELD_FIT(RE_REG_IMM_MAX, imm))
		return reg_imm(imm);

	wrp_immed(nfp_prog, tmp_reg, imm);
	return tmp_reg;
}

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static void wrp_nops(struct nfp_prog *nfp_prog, unsigned int count)
{
	while (count--)
		emit_nop(nfp_prog);
}

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Jakub Kicinski 已提交
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static void wrp_mov(struct nfp_prog *nfp_prog, swreg dst, swreg src)
{
	emit_alu(nfp_prog, dst, reg_none(), ALU_OP_NONE, src);
}

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static void wrp_reg_mov(struct nfp_prog *nfp_prog, u16 dst, u16 src)
{
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Jakub Kicinski 已提交
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	wrp_mov(nfp_prog, reg_both(dst), reg_b(src));
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}

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/* wrp_reg_subpart() - load @field_len bytes from @offset of @src, write the
 * result to @dst from low end.
 */
static void
wrp_reg_subpart(struct nfp_prog *nfp_prog, swreg dst, swreg src, u8 field_len,
		u8 offset)
{
	enum shf_sc sc = offset ? SHF_SC_R_SHF : SHF_SC_NONE;
	u8 mask = (1 << field_len) - 1;

	emit_ld_field_any(nfp_prog, dst, mask, src, sc, offset * 8, true);
}

/* NFP has Command Push Pull bus which supports bluk memory operations. */
static int nfp_cpp_memcpy(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	bool descending_seq = meta->ldst_gather_len < 0;
	s16 len = abs(meta->ldst_gather_len);
	swreg src_base, off;
	unsigned int i;
	u8 xfer_num;

	off = re_load_imm_any(nfp_prog, meta->insn.off, imm_b(nfp_prog));
	src_base = reg_a(meta->insn.src_reg * 2);
	xfer_num = round_up(len, 4) / 4;

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	/* Setup PREV_ALU fields to override memory read length. */
	if (len > 32)
		wrp_immed(nfp_prog, reg_none(),
			  CMD_OVE_LEN | FIELD_PREP(CMD_OV_LEN, xfer_num - 1));

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	/* Memory read from source addr into transfer-in registers. */
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	emit_cmd_any(nfp_prog, CMD_TGT_READ32_SWAP, CMD_MODE_32b, 0, src_base,
		     off, xfer_num - 1, true, len > 32);
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	/* Move from transfer-in to transfer-out. */
	for (i = 0; i < xfer_num; i++)
		wrp_mov(nfp_prog, reg_xfer(i), reg_xfer(i));

	off = re_load_imm_any(nfp_prog, meta->paired_st->off, imm_b(nfp_prog));

	if (len <= 8) {
		/* Use single direct_ref write8. */
		emit_cmd(nfp_prog, CMD_TGT_WRITE8_SWAP, CMD_MODE_32b, 0,
			 reg_a(meta->paired_st->dst_reg * 2), off, len - 1,
			 true);
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	} else if (len <= 32 && IS_ALIGNED(len, 4)) {
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		/* Use single direct_ref write32. */
		emit_cmd(nfp_prog, CMD_TGT_WRITE32_SWAP, CMD_MODE_32b, 0,
			 reg_a(meta->paired_st->dst_reg * 2), off, xfer_num - 1,
			 true);
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	} else if (len <= 32) {
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		/* Use single indirect_ref write8. */
		wrp_immed(nfp_prog, reg_none(),
			  CMD_OVE_LEN | FIELD_PREP(CMD_OV_LEN, len - 1));
		emit_cmd_indir(nfp_prog, CMD_TGT_WRITE8_SWAP, CMD_MODE_32b, 0,
			       reg_a(meta->paired_st->dst_reg * 2), off,
			       len - 1, true);
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	} else if (IS_ALIGNED(len, 4)) {
		/* Use single indirect_ref write32. */
		wrp_immed(nfp_prog, reg_none(),
			  CMD_OVE_LEN | FIELD_PREP(CMD_OV_LEN, xfer_num - 1));
		emit_cmd_indir(nfp_prog, CMD_TGT_WRITE32_SWAP, CMD_MODE_32b, 0,
			       reg_a(meta->paired_st->dst_reg * 2), off,
			       xfer_num - 1, true);
	} else if (len <= 40) {
		/* Use one direct_ref write32 to write the first 32-bytes, then
		 * another direct_ref write8 to write the remaining bytes.
		 */
		emit_cmd(nfp_prog, CMD_TGT_WRITE32_SWAP, CMD_MODE_32b, 0,
			 reg_a(meta->paired_st->dst_reg * 2), off, 7,
			 true);

		off = re_load_imm_any(nfp_prog, meta->paired_st->off + 32,
				      imm_b(nfp_prog));
		emit_cmd(nfp_prog, CMD_TGT_WRITE8_SWAP, CMD_MODE_32b, 8,
			 reg_a(meta->paired_st->dst_reg * 2), off, len - 33,
			 true);
	} else {
		/* Use one indirect_ref write32 to write 4-bytes aligned length,
		 * then another direct_ref write8 to write the remaining bytes.
		 */
		u8 new_off;

		wrp_immed(nfp_prog, reg_none(),
			  CMD_OVE_LEN | FIELD_PREP(CMD_OV_LEN, xfer_num - 2));
		emit_cmd_indir(nfp_prog, CMD_TGT_WRITE32_SWAP, CMD_MODE_32b, 0,
			       reg_a(meta->paired_st->dst_reg * 2), off,
			       xfer_num - 2, true);
		new_off = meta->paired_st->off + (xfer_num - 1) * 4;
		off = re_load_imm_any(nfp_prog, new_off, imm_b(nfp_prog));
		emit_cmd(nfp_prog, CMD_TGT_WRITE8_SWAP, CMD_MODE_32b,
			 xfer_num - 1, reg_a(meta->paired_st->dst_reg * 2), off,
			 (len & 0x3) - 1, true);
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	}

	/* TODO: The following extra load is to make sure data flow be identical
	 *  before and after we do memory copy optimization.
	 *
	 *  The load destination register is not guaranteed to be dead, so we
	 *  need to make sure it is loaded with the value the same as before
	 *  this transformation.
	 *
	 *  These extra loads could be removed once we have accurate register
	 *  usage information.
	 */
	if (descending_seq)
		xfer_num = 0;
	else if (BPF_SIZE(meta->insn.code) != BPF_DW)
		xfer_num = xfer_num - 1;
	else
		xfer_num = xfer_num - 2;

	switch (BPF_SIZE(meta->insn.code)) {
	case BPF_B:
		wrp_reg_subpart(nfp_prog, reg_both(meta->insn.dst_reg * 2),
				reg_xfer(xfer_num), 1,
				IS_ALIGNED(len, 4) ? 3 : (len & 3) - 1);
		break;
	case BPF_H:
		wrp_reg_subpart(nfp_prog, reg_both(meta->insn.dst_reg * 2),
				reg_xfer(xfer_num), 2, (len & 3) ^ 2);
		break;
	case BPF_W:
		wrp_mov(nfp_prog, reg_both(meta->insn.dst_reg * 2),
			reg_xfer(0));
		break;
	case BPF_DW:
		wrp_mov(nfp_prog, reg_both(meta->insn.dst_reg * 2),
			reg_xfer(xfer_num));
		wrp_mov(nfp_prog, reg_both(meta->insn.dst_reg * 2 + 1),
			reg_xfer(xfer_num + 1));
		break;
	}

	if (BPF_SIZE(meta->insn.code) != BPF_DW)
		wrp_immed(nfp_prog, reg_both(meta->insn.dst_reg * 2 + 1), 0);

	return 0;
}

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static int
670
data_ld(struct nfp_prog *nfp_prog, swreg offset, u8 dst_gpr, int size)
671 672 673 674 675 676 677
{
	unsigned int i;
	u16 shift, sz;

	/* We load the value from the address indicated in @offset and then
	 * shift out the data we don't need.  Note: this is big endian!
	 */
678
	sz = max(size, 4);
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	shift = size < 4 ? 4 - size : 0;

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	emit_cmd(nfp_prog, CMD_TGT_READ8, CMD_MODE_32b, 0,
		 pptr_reg(nfp_prog), offset, sz - 1, true);
683 684 685

	i = 0;
	if (shift)
686
		emit_shf(nfp_prog, reg_both(dst_gpr), reg_none(), SHF_OP_NONE,
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			 reg_xfer(0), SHF_SC_R_SHF, shift * 8);
	else
		for (; i * 4 < size; i++)
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			wrp_mov(nfp_prog, reg_both(dst_gpr + i), reg_xfer(i));
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	if (i < 2)
693
		wrp_immed(nfp_prog, reg_both(dst_gpr + 1), 0);
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	return 0;
}

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static int
data_ld_host_order(struct nfp_prog *nfp_prog, u8 src_gpr, swreg offset,
		   u8 dst_gpr, int size)
{
	unsigned int i;
	u8 mask, sz;

	/* We load the value from the address indicated in @offset and then
	 * mask out the data we don't need.  Note: this is little endian!
	 */
	sz = max(size, 4);
	mask = size < 4 ? GENMASK(size - 1, 0) : 0;

	emit_cmd(nfp_prog, CMD_TGT_READ32_SWAP, CMD_MODE_32b, 0,
		 reg_a(src_gpr), offset, sz / 4 - 1, true);

	i = 0;
	if (mask)
		emit_ld_field_any(nfp_prog, reg_both(dst_gpr), mask,
				  reg_xfer(0), SHF_SC_NONE, 0, true);
	else
		for (; i * 4 < size; i++)
			wrp_mov(nfp_prog, reg_both(dst_gpr + i), reg_xfer(i));

	if (i < 2)
		wrp_immed(nfp_prog, reg_both(dst_gpr + 1), 0);

	return 0;
}

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static int
construct_data_ind_ld(struct nfp_prog *nfp_prog, u16 offset, u16 src, u8 size)
{
	swreg tmp_reg;

	/* Calculate the true offset (src_reg + imm) */
	tmp_reg = ur_load_imm_any(nfp_prog, offset, imm_b(nfp_prog));
	emit_alu(nfp_prog, imm_both(nfp_prog), reg_a(src), ALU_OP_ADD, tmp_reg);

	/* Check packet length (size guaranteed to fit b/c it's u8) */
	emit_alu(nfp_prog, imm_a(nfp_prog),
		 imm_a(nfp_prog), ALU_OP_ADD, reg_imm(size));
	emit_alu(nfp_prog, reg_none(),
		 plen_reg(nfp_prog), ALU_OP_SUB, imm_a(nfp_prog));
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	emit_br_relo(nfp_prog, BR_BLO, BR_OFF_RELO, 0, RELO_BR_GO_ABORT);
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	/* Load data */
	return data_ld(nfp_prog, imm_b(nfp_prog), 0, size);
}

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static int construct_data_ld(struct nfp_prog *nfp_prog, u16 offset, u8 size)
{
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	swreg tmp_reg;

	/* Check packet length */
	tmp_reg = ur_load_imm_any(nfp_prog, offset + size, imm_a(nfp_prog));
	emit_alu(nfp_prog, reg_none(), plen_reg(nfp_prog), ALU_OP_SUB, tmp_reg);
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	emit_br_relo(nfp_prog, BR_BLO, BR_OFF_RELO, 0, RELO_BR_GO_ABORT);
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	/* Load data */
	tmp_reg = re_load_imm_any(nfp_prog, offset, imm_b(nfp_prog));
	return data_ld(nfp_prog, tmp_reg, 0, size);
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}

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static int
data_stx_host_order(struct nfp_prog *nfp_prog, u8 dst_gpr, swreg offset,
		    u8 src_gpr, u8 size)
{
	unsigned int i;

	for (i = 0; i * 4 < size; i++)
		wrp_mov(nfp_prog, reg_xfer(i), reg_a(src_gpr + i));

	emit_cmd(nfp_prog, CMD_TGT_WRITE8_SWAP, CMD_MODE_32b, 0,
		 reg_a(dst_gpr), offset, size - 1, true);

	return 0;
}

static int
data_st_host_order(struct nfp_prog *nfp_prog, u8 dst_gpr, swreg offset,
		   u64 imm, u8 size)
{
	wrp_immed(nfp_prog, reg_xfer(0), imm);
	if (size == 8)
		wrp_immed(nfp_prog, reg_xfer(1), imm >> 32);

	emit_cmd(nfp_prog, CMD_TGT_WRITE8_SWAP, CMD_MODE_32b, 0,
		 reg_a(dst_gpr), offset, size - 1, true);

	return 0;
}

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typedef int
(*lmem_step)(struct nfp_prog *nfp_prog, u8 gpr, u8 gpr_byte, s32 off,
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	     unsigned int size, bool first, bool new_gpr, bool last, bool lm3,
	     bool needs_inc);
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static int
wrp_lmem_load(struct nfp_prog *nfp_prog, u8 dst, u8 dst_byte, s32 off,
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	      unsigned int size, bool first, bool new_gpr, bool last, bool lm3,
	      bool needs_inc)
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{
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	bool should_inc = needs_inc && new_gpr && !last;
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	u32 idx, src_byte;
	enum shf_sc sc;
	swreg reg;
	int shf;
	u8 mask;

	if (WARN_ON_ONCE(dst_byte + size > 4 || off % 4 + size > 4))
		return -EOPNOTSUPP;

	idx = off / 4;

	/* Move the entire word */
	if (size == 4) {
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		wrp_mov(nfp_prog, reg_both(dst),
			should_inc ? reg_lm_inc(3) : reg_lm(lm3 ? 3 : 0, idx));
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		return 0;
	}

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	if (WARN_ON_ONCE(lm3 && idx > RE_REG_LM_IDX_MAX))
		return -EOPNOTSUPP;

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	src_byte = off % 4;

	mask = (1 << size) - 1;
	mask <<= dst_byte;

	if (WARN_ON_ONCE(mask > 0xf))
		return -EOPNOTSUPP;

	shf = abs(src_byte - dst_byte) * 8;
	if (src_byte == dst_byte) {
		sc = SHF_SC_NONE;
	} else if (src_byte < dst_byte) {
		shf = 32 - shf;
		sc = SHF_SC_L_SHF;
	} else {
		sc = SHF_SC_R_SHF;
	}

	/* ld_field can address fewer indexes, if offset too large do RMW.
	 * Because we RMV twice we waste 2 cycles on unaligned 8 byte writes.
	 */
	if (idx <= RE_REG_LM_IDX_MAX) {
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		reg = reg_lm(lm3 ? 3 : 0, idx);
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	} else {
		reg = imm_a(nfp_prog);
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		/* If it's not the first part of the load and we start a new GPR
		 * that means we are loading a second part of the LMEM word into
		 * a new GPR.  IOW we've already looked that LMEM word and
		 * therefore it has been loaded into imm_a().
		 */
		if (first || !new_gpr)
			wrp_mov(nfp_prog, reg, reg_lm(0, idx));
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	}

	emit_ld_field_any(nfp_prog, reg_both(dst), mask, reg, sc, shf, new_gpr);

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	if (should_inc)
		wrp_mov(nfp_prog, reg_none(), reg_lm_inc(3));

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	return 0;
}
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static int
wrp_lmem_store(struct nfp_prog *nfp_prog, u8 src, u8 src_byte, s32 off,
867 868
	       unsigned int size, bool first, bool new_gpr, bool last, bool lm3,
	       bool needs_inc)
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{
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	bool should_inc = needs_inc && new_gpr && !last;
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	u32 idx, dst_byte;
	enum shf_sc sc;
	swreg reg;
	int shf;
	u8 mask;

	if (WARN_ON_ONCE(src_byte + size > 4 || off % 4 + size > 4))
		return -EOPNOTSUPP;

	idx = off / 4;

	/* Move the entire word */
	if (size == 4) {
884 885 886
		wrp_mov(nfp_prog,
			should_inc ? reg_lm_inc(3) : reg_lm(lm3 ? 3 : 0, idx),
			reg_b(src));
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		return 0;
	}

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	if (WARN_ON_ONCE(lm3 && idx > RE_REG_LM_IDX_MAX))
		return -EOPNOTSUPP;

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	dst_byte = off % 4;

	mask = (1 << size) - 1;
	mask <<= dst_byte;

	if (WARN_ON_ONCE(mask > 0xf))
		return -EOPNOTSUPP;

	shf = abs(src_byte - dst_byte) * 8;
	if (src_byte == dst_byte) {
		sc = SHF_SC_NONE;
	} else if (src_byte < dst_byte) {
		shf = 32 - shf;
		sc = SHF_SC_L_SHF;
	} else {
		sc = SHF_SC_R_SHF;
	}

	/* ld_field can address fewer indexes, if offset too large do RMW.
	 * Because we RMV twice we waste 2 cycles on unaligned 8 byte writes.
	 */
	if (idx <= RE_REG_LM_IDX_MAX) {
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		reg = reg_lm(lm3 ? 3 : 0, idx);
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	} else {
		reg = imm_a(nfp_prog);
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		/* Only first and last LMEM locations are going to need RMW,
		 * the middle location will be overwritten fully.
		 */
		if (first || last)
			wrp_mov(nfp_prog, reg, reg_lm(0, idx));
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	}

	emit_ld_field(nfp_prog, reg, mask, reg_b(src), sc, shf);

927 928 929
	if (new_gpr || last) {
		if (idx > RE_REG_LM_IDX_MAX)
			wrp_mov(nfp_prog, reg_lm(0, idx), reg);
930 931
		if (should_inc)
			wrp_mov(nfp_prog, reg_none(), reg_lm_inc(3));
932
	}
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	return 0;
}

static int
mem_op_stack(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
939 940
	     unsigned int size, unsigned int ptr_off, u8 gpr, u8 ptr_gpr,
	     bool clr_gpr, lmem_step step)
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{
942
	s32 off = nfp_prog->stack_depth + meta->insn.off + ptr_off;
943
	bool first = true, last;
944 945
	bool needs_inc = false;
	swreg stack_off_reg;
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	u8 prev_gpr = 255;
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	u32 gpr_byte = 0;
948
	bool lm3 = true;
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	int ret;

951 952 953 954 955 956 957 958 959 960 961 962 963
	if (meta->ptr_not_const) {
		/* Use of the last encountered ptr_off is OK, they all have
		 * the same alignment.  Depend on low bits of value being
		 * discarded when written to LMaddr register.
		 */
		stack_off_reg = ur_load_imm_any(nfp_prog, meta->insn.off,
						stack_imm(nfp_prog));

		emit_alu(nfp_prog, imm_b(nfp_prog),
			 reg_a(ptr_gpr), ALU_OP_ADD, stack_off_reg);

		needs_inc = true;
	} else if (off + size <= 64) {
964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993
		/* We can reach bottom 64B with LMaddr0 */
		lm3 = false;
	} else if (round_down(off, 32) == round_down(off + size - 1, 32)) {
		/* We have to set up a new pointer.  If we know the offset
		 * and the entire access falls into a single 32 byte aligned
		 * window we won't have to increment the LM pointer.
		 * The 32 byte alignment is imporant because offset is ORed in
		 * not added when doing *l$indexN[off].
		 */
		stack_off_reg = ur_load_imm_any(nfp_prog, round_down(off, 32),
						stack_imm(nfp_prog));
		emit_alu(nfp_prog, imm_b(nfp_prog),
			 stack_reg(nfp_prog), ALU_OP_ADD, stack_off_reg);

		off %= 32;
	} else {
		stack_off_reg = ur_load_imm_any(nfp_prog, round_down(off, 4),
						stack_imm(nfp_prog));

		emit_alu(nfp_prog, imm_b(nfp_prog),
			 stack_reg(nfp_prog), ALU_OP_ADD, stack_off_reg);

		needs_inc = true;
	}
	if (lm3) {
		emit_csr_wr(nfp_prog, imm_b(nfp_prog), NFP_CSR_ACT_LM_ADDR3);
		/* For size < 4 one slot will be filled by zeroing of upper. */
		wrp_nops(nfp_prog, clr_gpr && size < 8 ? 2 : 3);
	}

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	if (clr_gpr && size < 8)
		wrp_immed(nfp_prog, reg_both(gpr + 1), 0);

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	while (size) {
		u32 slice_end;
		u8 slice_size;

		slice_size = min(size, 4 - gpr_byte);
		slice_end = min(off + slice_size, round_up(off + 1, 4));
		slice_size = slice_end - off;

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		last = slice_size == size;

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		if (needs_inc)
			off %= 4;

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		ret = step(nfp_prog, gpr, gpr_byte, off, slice_size,
1011
			   first, gpr != prev_gpr, last, lm3, needs_inc);
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		if (ret)
			return ret;

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		prev_gpr = gpr;
1016 1017
		first = false;

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		gpr_byte += slice_size;
		if (gpr_byte >= 4) {
			gpr_byte -= 4;
			gpr++;
		}

		size -= slice_size;
		off += slice_size;
	}

	return 0;
}

1031 1032 1033
static void
wrp_alu_imm(struct nfp_prog *nfp_prog, u8 dst, enum alu_op alu_op, u32 imm)
{
1034
	swreg tmp_reg;
1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050

	if (alu_op == ALU_OP_AND) {
		if (!imm)
			wrp_immed(nfp_prog, reg_both(dst), 0);
		if (!imm || !~imm)
			return;
	}
	if (alu_op == ALU_OP_OR) {
		if (!~imm)
			wrp_immed(nfp_prog, reg_both(dst), ~0U);
		if (!imm || !~imm)
			return;
	}
	if (alu_op == ALU_OP_XOR) {
		if (!~imm)
			emit_alu(nfp_prog, reg_both(dst), reg_none(),
1051
				 ALU_OP_NOT, reg_b(dst));
1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148
		if (!imm || !~imm)
			return;
	}

	tmp_reg = ur_load_imm_any(nfp_prog, imm, imm_b(nfp_prog));
	emit_alu(nfp_prog, reg_both(dst), reg_a(dst), alu_op, tmp_reg);
}

static int
wrp_alu64_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
	      enum alu_op alu_op, bool skip)
{
	const struct bpf_insn *insn = &meta->insn;
	u64 imm = insn->imm; /* sign extend */

	if (skip) {
		meta->skip = true;
		return 0;
	}

	wrp_alu_imm(nfp_prog, insn->dst_reg * 2, alu_op, imm & ~0U);
	wrp_alu_imm(nfp_prog, insn->dst_reg * 2 + 1, alu_op, imm >> 32);

	return 0;
}

static int
wrp_alu64_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
	      enum alu_op alu_op)
{
	u8 dst = meta->insn.dst_reg * 2, src = meta->insn.src_reg * 2;

	emit_alu(nfp_prog, reg_both(dst), reg_a(dst), alu_op, reg_b(src));
	emit_alu(nfp_prog, reg_both(dst + 1),
		 reg_a(dst + 1), alu_op, reg_b(src + 1));

	return 0;
}

static int
wrp_alu32_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
	      enum alu_op alu_op, bool skip)
{
	const struct bpf_insn *insn = &meta->insn;

	if (skip) {
		meta->skip = true;
		return 0;
	}

	wrp_alu_imm(nfp_prog, insn->dst_reg * 2, alu_op, insn->imm);
	wrp_immed(nfp_prog, reg_both(insn->dst_reg * 2 + 1), 0);

	return 0;
}

static int
wrp_alu32_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
	      enum alu_op alu_op)
{
	u8 dst = meta->insn.dst_reg * 2, src = meta->insn.src_reg * 2;

	emit_alu(nfp_prog, reg_both(dst), reg_a(dst), alu_op, reg_b(src));
	wrp_immed(nfp_prog, reg_both(meta->insn.dst_reg * 2 + 1), 0);

	return 0;
}

static void
wrp_test_reg_one(struct nfp_prog *nfp_prog, u8 dst, enum alu_op alu_op, u8 src,
		 enum br_mask br_mask, u16 off)
{
	emit_alu(nfp_prog, reg_none(), reg_a(dst), alu_op, reg_b(src));
	emit_br(nfp_prog, br_mask, off, 0);
}

static int
wrp_test_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
	     enum alu_op alu_op, enum br_mask br_mask)
{
	const struct bpf_insn *insn = &meta->insn;

	wrp_test_reg_one(nfp_prog, insn->dst_reg * 2, alu_op,
			 insn->src_reg * 2, br_mask, insn->off);
	wrp_test_reg_one(nfp_prog, insn->dst_reg * 2 + 1, alu_op,
			 insn->src_reg * 2 + 1, br_mask, insn->off);

	return 0;
}

static int
wrp_cmp_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
	    enum br_mask br_mask, bool swap)
{
	const struct bpf_insn *insn = &meta->insn;
	u64 imm = insn->imm; /* sign extend */
	u8 reg = insn->dst_reg * 2;
1149
	swreg tmp_reg;
1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174

	tmp_reg = ur_load_imm_any(nfp_prog, imm & ~0U, imm_b(nfp_prog));
	if (!swap)
		emit_alu(nfp_prog, reg_none(), reg_a(reg), ALU_OP_SUB, tmp_reg);
	else
		emit_alu(nfp_prog, reg_none(), tmp_reg, ALU_OP_SUB, reg_a(reg));

	tmp_reg = ur_load_imm_any(nfp_prog, imm >> 32, imm_b(nfp_prog));
	if (!swap)
		emit_alu(nfp_prog, reg_none(),
			 reg_a(reg + 1), ALU_OP_SUB_C, tmp_reg);
	else
		emit_alu(nfp_prog, reg_none(),
			 tmp_reg, ALU_OP_SUB_C, reg_a(reg + 1));

	emit_br(nfp_prog, br_mask, insn->off, 0);

	return 0;
}

static int
wrp_cmp_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
	    enum br_mask br_mask, bool swap)
{
	const struct bpf_insn *insn = &meta->insn;
1175 1176 1177 1178
	u8 areg, breg;

	areg = insn->dst_reg * 2;
	breg = insn->src_reg * 2;
1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193

	if (swap) {
		areg ^= breg;
		breg ^= areg;
		areg ^= breg;
	}

	emit_alu(nfp_prog, reg_none(), reg_a(areg), ALU_OP_SUB, reg_b(breg));
	emit_alu(nfp_prog, reg_none(),
		 reg_a(areg + 1), ALU_OP_SUB_C, reg_b(breg + 1));
	emit_br(nfp_prog, br_mask, insn->off, 0);

	return 0;
}

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static void wrp_end32(struct nfp_prog *nfp_prog, swreg reg_in, u8 gpr_out)
{
	emit_ld_field(nfp_prog, reg_both(gpr_out), 0xf, reg_in,
		      SHF_SC_R_ROT, 8);
	emit_ld_field(nfp_prog, reg_both(gpr_out), 0x5, reg_a(gpr_out),
		      SHF_SC_R_ROT, 16);
}

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static int adjust_head(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	swreg tmp = imm_a(nfp_prog), tmp_len = imm_b(nfp_prog);
	struct nfp_bpf_cap_adjust_head *adjust_head;
	u32 ret_einval, end;

	adjust_head = &nfp_prog->bpf->adjust_head;

1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231
	/* Optimized version - 5 vs 14 cycles */
	if (nfp_prog->adjust_head_location != UINT_MAX) {
		if (WARN_ON_ONCE(nfp_prog->adjust_head_location != meta->n))
			return -EINVAL;

		emit_alu(nfp_prog, pptr_reg(nfp_prog),
			 reg_a(2 * 2), ALU_OP_ADD, pptr_reg(nfp_prog));
		emit_alu(nfp_prog, plen_reg(nfp_prog),
			 plen_reg(nfp_prog), ALU_OP_SUB, reg_a(2 * 2));
		emit_alu(nfp_prog, pv_len(nfp_prog),
			 pv_len(nfp_prog), ALU_OP_SUB, reg_a(2 * 2));

		wrp_immed(nfp_prog, reg_both(0), 0);
		wrp_immed(nfp_prog, reg_both(1), 0);

		/* TODO: when adjust head is guaranteed to succeed we can
		 * also eliminate the following if (r0 == 0) branch.
		 */

		return 0;
	}

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	ret_einval = nfp_prog_current_offset(nfp_prog) + 14;
	end = ret_einval + 2;

	/* We need to use a temp because offset is just a part of the pkt ptr */
	emit_alu(nfp_prog, tmp,
		 reg_a(2 * 2), ALU_OP_ADD_2B, pptr_reg(nfp_prog));

	/* Validate result will fit within FW datapath constraints */
	emit_alu(nfp_prog, reg_none(),
		 tmp, ALU_OP_SUB, reg_imm(adjust_head->off_min));
	emit_br(nfp_prog, BR_BLO, ret_einval, 0);
	emit_alu(nfp_prog, reg_none(),
		 reg_imm(adjust_head->off_max), ALU_OP_SUB, tmp);
	emit_br(nfp_prog, BR_BLO, ret_einval, 0);

	/* Validate the length is at least ETH_HLEN */
	emit_alu(nfp_prog, tmp_len,
		 plen_reg(nfp_prog), ALU_OP_SUB, reg_a(2 * 2));
	emit_alu(nfp_prog, reg_none(),
		 tmp_len, ALU_OP_SUB, reg_imm(ETH_HLEN));
	emit_br(nfp_prog, BR_BMI, ret_einval, 0);

	/* Load the ret code */
	wrp_immed(nfp_prog, reg_both(0), 0);
	wrp_immed(nfp_prog, reg_both(1), 0);

	/* Modify the packet metadata */
	emit_ld_field(nfp_prog, pptr_reg(nfp_prog), 0x3, tmp, SHF_SC_NONE, 0);

	/* Skip over the -EINVAL ret code (defer 2) */
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	emit_br(nfp_prog, BR_UNC, end, 2);
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	emit_alu(nfp_prog, plen_reg(nfp_prog),
		 plen_reg(nfp_prog), ALU_OP_SUB, reg_a(2 * 2));
	emit_alu(nfp_prog, pv_len(nfp_prog),
		 pv_len(nfp_prog), ALU_OP_SUB, reg_a(2 * 2));

	/* return -EINVAL target */
	if (!nfp_prog_confirm_current_offset(nfp_prog, ret_einval))
		return -EINVAL;

	wrp_immed(nfp_prog, reg_both(0), -22);
	wrp_immed(nfp_prog, reg_both(1), ~0);

	if (!nfp_prog_confirm_current_offset(nfp_prog, end))
		return -EINVAL;

	return 0;
}

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/* --- Callbacks --- */
static int mov_reg64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;
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	u8 dst = insn->dst_reg * 2;
	u8 src = insn->src_reg * 2;

	if (insn->src_reg == BPF_REG_10) {
		swreg stack_depth_reg;
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		stack_depth_reg = ur_load_imm_any(nfp_prog,
						  nfp_prog->stack_depth,
						  stack_imm(nfp_prog));
		emit_alu(nfp_prog, reg_both(dst),
			 stack_reg(nfp_prog), ALU_OP_ADD, stack_depth_reg);
		wrp_immed(nfp_prog, reg_both(dst + 1), 0);
	} else {
		wrp_reg_mov(nfp_prog, dst, src);
		wrp_reg_mov(nfp_prog, dst + 1, src + 1);
	}
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	return 0;
}

static int mov_imm64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	u64 imm = meta->insn.imm; /* sign extend */

	wrp_immed(nfp_prog, reg_both(meta->insn.dst_reg * 2), imm & ~0U);
	wrp_immed(nfp_prog, reg_both(meta->insn.dst_reg * 2 + 1), imm >> 32);

	return 0;
}

static int xor_reg64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu64_reg(nfp_prog, meta, ALU_OP_XOR);
}

static int xor_imm64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu64_imm(nfp_prog, meta, ALU_OP_XOR, !meta->insn.imm);
}

static int and_reg64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu64_reg(nfp_prog, meta, ALU_OP_AND);
}

static int and_imm64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu64_imm(nfp_prog, meta, ALU_OP_AND, !~meta->insn.imm);
}

static int or_reg64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu64_reg(nfp_prog, meta, ALU_OP_OR);
}

static int or_imm64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu64_imm(nfp_prog, meta, ALU_OP_OR, !meta->insn.imm);
}

static int add_reg64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;

	emit_alu(nfp_prog, reg_both(insn->dst_reg * 2),
		 reg_a(insn->dst_reg * 2), ALU_OP_ADD,
		 reg_b(insn->src_reg * 2));
	emit_alu(nfp_prog, reg_both(insn->dst_reg * 2 + 1),
		 reg_a(insn->dst_reg * 2 + 1), ALU_OP_ADD_C,
		 reg_b(insn->src_reg * 2 + 1));

	return 0;
}

static int add_imm64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;
	u64 imm = insn->imm; /* sign extend */

	wrp_alu_imm(nfp_prog, insn->dst_reg * 2, ALU_OP_ADD, imm & ~0U);
	wrp_alu_imm(nfp_prog, insn->dst_reg * 2 + 1, ALU_OP_ADD_C, imm >> 32);

	return 0;
}

static int sub_reg64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;

	emit_alu(nfp_prog, reg_both(insn->dst_reg * 2),
		 reg_a(insn->dst_reg * 2), ALU_OP_SUB,
		 reg_b(insn->src_reg * 2));
	emit_alu(nfp_prog, reg_both(insn->dst_reg * 2 + 1),
		 reg_a(insn->dst_reg * 2 + 1), ALU_OP_SUB_C,
		 reg_b(insn->src_reg * 2 + 1));

	return 0;
}

static int sub_imm64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;
	u64 imm = insn->imm; /* sign extend */

	wrp_alu_imm(nfp_prog, insn->dst_reg * 2, ALU_OP_SUB, imm & ~0U);
	wrp_alu_imm(nfp_prog, insn->dst_reg * 2 + 1, ALU_OP_SUB_C, imm >> 32);

	return 0;
}

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static int neg_reg64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;

	emit_alu(nfp_prog, reg_both(insn->dst_reg * 2), reg_imm(0),
		 ALU_OP_SUB, reg_b(insn->dst_reg * 2));
	emit_alu(nfp_prog, reg_both(insn->dst_reg * 2 + 1), reg_imm(0),
		 ALU_OP_SUB_C, reg_b(insn->dst_reg * 2 + 1));

	return 0;
}

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static int shl_imm64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;
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	u8 dst = insn->dst_reg * 2;

	if (insn->imm < 32) {
		emit_shf(nfp_prog, reg_both(dst + 1),
			 reg_a(dst + 1), SHF_OP_NONE, reg_b(dst),
			 SHF_SC_R_DSHF, 32 - insn->imm);
		emit_shf(nfp_prog, reg_both(dst),
			 reg_none(), SHF_OP_NONE, reg_b(dst),
			 SHF_SC_L_SHF, insn->imm);
	} else if (insn->imm == 32) {
		wrp_reg_mov(nfp_prog, dst + 1, dst);
		wrp_immed(nfp_prog, reg_both(dst), 0);
	} else if (insn->imm > 32) {
		emit_shf(nfp_prog, reg_both(dst + 1),
			 reg_none(), SHF_OP_NONE, reg_b(dst),
			 SHF_SC_L_SHF, insn->imm - 32);
		wrp_immed(nfp_prog, reg_both(dst), 0);
	}
1429 1430 1431 1432 1433 1434 1435

	return 0;
}

static int shr_imm64(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;
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Jakub Kicinski 已提交
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	u8 dst = insn->dst_reg * 2;

	if (insn->imm < 32) {
		emit_shf(nfp_prog, reg_both(dst),
			 reg_a(dst + 1), SHF_OP_NONE, reg_b(dst),
			 SHF_SC_R_DSHF, insn->imm);
		emit_shf(nfp_prog, reg_both(dst + 1),
			 reg_none(), SHF_OP_NONE, reg_b(dst + 1),
			 SHF_SC_R_SHF, insn->imm);
	} else if (insn->imm == 32) {
		wrp_reg_mov(nfp_prog, dst, dst + 1);
		wrp_immed(nfp_prog, reg_both(dst + 1), 0);
	} else if (insn->imm > 32) {
		emit_shf(nfp_prog, reg_both(dst),
			 reg_none(), SHF_OP_NONE, reg_b(dst + 1),
			 SHF_SC_R_SHF, insn->imm - 32);
		wrp_immed(nfp_prog, reg_both(dst + 1), 0);
	}
1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527

	return 0;
}

static int mov_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;

	wrp_reg_mov(nfp_prog, insn->dst_reg * 2,  insn->src_reg * 2);
	wrp_immed(nfp_prog, reg_both(insn->dst_reg * 2 + 1), 0);

	return 0;
}

static int mov_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;

	wrp_immed(nfp_prog, reg_both(insn->dst_reg * 2), insn->imm);
	wrp_immed(nfp_prog, reg_both(insn->dst_reg * 2 + 1), 0);

	return 0;
}

static int xor_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu32_reg(nfp_prog, meta, ALU_OP_XOR);
}

static int xor_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu32_imm(nfp_prog, meta, ALU_OP_XOR, !~meta->insn.imm);
}

static int and_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu32_reg(nfp_prog, meta, ALU_OP_AND);
}

static int and_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu32_imm(nfp_prog, meta, ALU_OP_AND, !~meta->insn.imm);
}

static int or_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu32_reg(nfp_prog, meta, ALU_OP_OR);
}

static int or_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu32_imm(nfp_prog, meta, ALU_OP_OR, !meta->insn.imm);
}

static int add_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu32_reg(nfp_prog, meta, ALU_OP_ADD);
}

static int add_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu32_imm(nfp_prog, meta, ALU_OP_ADD, !meta->insn.imm);
}

static int sub_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu32_reg(nfp_prog, meta, ALU_OP_SUB);
}

static int sub_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_alu32_imm(nfp_prog, meta, ALU_OP_SUB, !meta->insn.imm);
}

1528 1529 1530 1531 1532 1533 1534 1535 1536 1537
static int neg_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	u8 dst = meta->insn.dst_reg * 2;

	emit_alu(nfp_prog, reg_both(dst), reg_imm(0), ALU_OP_SUB, reg_b(dst));
	wrp_immed(nfp_prog, reg_both(meta->insn.dst_reg * 2 + 1), 0);

	return 0;
}

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static int shl_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;

	if (!insn->imm)
		return 1; /* TODO: zero shift means indirect */

	emit_shf(nfp_prog, reg_both(insn->dst_reg * 2),
		 reg_none(), SHF_OP_NONE, reg_b(insn->dst_reg * 2),
		 SHF_SC_L_SHF, insn->imm);
	wrp_immed(nfp_prog, reg_both(insn->dst_reg * 2 + 1), 0);

	return 0;
}

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static int end_reg32(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;
	u8 gpr = insn->dst_reg * 2;

	switch (insn->imm) {
	case 16:
		emit_ld_field(nfp_prog, reg_both(gpr), 0x9, reg_b(gpr),
			      SHF_SC_R_ROT, 8);
		emit_ld_field(nfp_prog, reg_both(gpr), 0xe, reg_a(gpr),
			      SHF_SC_R_SHF, 16);

		wrp_immed(nfp_prog, reg_both(gpr + 1), 0);
		break;
	case 32:
		wrp_end32(nfp_prog, reg_a(gpr), gpr);
		wrp_immed(nfp_prog, reg_both(gpr + 1), 0);
		break;
	case 64:
		wrp_mov(nfp_prog, imm_a(nfp_prog), reg_b(gpr + 1));

		wrp_end32(nfp_prog, reg_a(gpr), gpr + 1);
		wrp_end32(nfp_prog, imm_a(nfp_prog), gpr);
		break;
	}

	return 0;
}

1582 1583
static int imm_ld8_part2(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
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1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598
	struct nfp_insn_meta *prev = nfp_meta_prev(meta);
	u32 imm_lo, imm_hi;
	u8 dst;

	dst = prev->insn.dst_reg * 2;
	imm_lo = prev->insn.imm;
	imm_hi = meta->insn.imm;

	wrp_immed(nfp_prog, reg_both(dst), imm_lo);

	/* mov is always 1 insn, load imm may be two, so try to use mov */
	if (imm_hi == imm_lo)
		wrp_mov(nfp_prog, reg_both(dst + 1), reg_a(dst));
	else
		wrp_immed(nfp_prog, reg_both(dst + 1), imm_hi);
1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626

	return 0;
}

static int imm_ld8(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	meta->double_cb = imm_ld8_part2;
	return 0;
}

static int data_ld1(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return construct_data_ld(nfp_prog, meta->insn.imm, 1);
}

static int data_ld2(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return construct_data_ld(nfp_prog, meta->insn.imm, 2);
}

static int data_ld4(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return construct_data_ld(nfp_prog, meta->insn.imm, 4);
}

static int data_ind_ld1(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return construct_data_ind_ld(nfp_prog, meta->insn.imm,
1627
				     meta->insn.src_reg * 2, 1);
1628 1629 1630 1631 1632
}

static int data_ind_ld2(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return construct_data_ind_ld(nfp_prog, meta->insn.imm,
1633
				     meta->insn.src_reg * 2, 2);
1634 1635 1636 1637 1638
}

static int data_ind_ld4(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return construct_data_ind_ld(nfp_prog, meta->insn.imm,
1639
				     meta->insn.src_reg * 2, 4);
1640 1641
}

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Jakub Kicinski 已提交
1642 1643
static int
mem_ldx_stack(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
1644
	      unsigned int size, unsigned int ptr_off)
J
Jakub Kicinski 已提交
1645
{
1646
	return mem_op_stack(nfp_prog, meta, size, ptr_off,
1647 1648
			    meta->insn.dst_reg * 2, meta->insn.src_reg * 2,
			    true, wrp_lmem_load);
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1649 1650
}

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1651 1652
static int mem_ldx_skb(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
		       u8 size)
1653
{
1654 1655
	swreg dst = reg_both(meta->insn.dst_reg * 2);

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Jakub Kicinski 已提交
1656
	switch (meta->insn.off) {
1657 1658
	case offsetof(struct __sk_buff, len):
		if (size != FIELD_SIZEOF(struct __sk_buff, len))
J
Jakub Kicinski 已提交
1659
			return -EOPNOTSUPP;
1660 1661
		wrp_mov(nfp_prog, dst, plen_reg(nfp_prog));
		break;
1662 1663
	case offsetof(struct __sk_buff, data):
		if (size != FIELD_SIZEOF(struct __sk_buff, data))
1664 1665 1666
			return -EOPNOTSUPP;
		wrp_mov(nfp_prog, dst, pptr_reg(nfp_prog));
		break;
1667 1668
	case offsetof(struct __sk_buff, data_end):
		if (size != FIELD_SIZEOF(struct __sk_buff, data_end))
1669 1670 1671
			return -EOPNOTSUPP;
		emit_alu(nfp_prog, dst,
			 plen_reg(nfp_prog), ALU_OP_ADD, pptr_reg(nfp_prog));
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1672 1673
		break;
	default:
1674
		return -EOPNOTSUPP;
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	}

	wrp_immed(nfp_prog, reg_both(meta->insn.dst_reg * 2 + 1), 0);
1678

1679 1680 1681
	return 0;
}

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1682 1683
static int mem_ldx_xdp(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
		       u8 size)
1684
{
1685
	swreg dst = reg_both(meta->insn.dst_reg * 2);
1686

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	switch (meta->insn.off) {
1688 1689 1690
	case offsetof(struct xdp_md, data):
		if (size != FIELD_SIZEOF(struct xdp_md, data))
			return -EOPNOTSUPP;
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		wrp_mov(nfp_prog, dst, pptr_reg(nfp_prog));
		break;
1693 1694 1695
	case offsetof(struct xdp_md, data_end):
		if (size != FIELD_SIZEOF(struct xdp_md, data_end))
			return -EOPNOTSUPP;
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		emit_alu(nfp_prog, dst,
			 plen_reg(nfp_prog), ALU_OP_ADD, pptr_reg(nfp_prog));
		break;
	default:
		return -EOPNOTSUPP;
	}
1702

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	wrp_immed(nfp_prog, reg_both(meta->insn.dst_reg * 2 + 1), 0);
1704

1705 1706 1707
	return 0;
}

1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723
static int
mem_ldx_data(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
	     unsigned int size)
{
	swreg tmp_reg;

	tmp_reg = re_load_imm_any(nfp_prog, meta->insn.off, imm_b(nfp_prog));

	return data_ld_host_order(nfp_prog, meta->insn.src_reg * 2, tmp_reg,
				  meta->insn.dst_reg * 2, size);
}

static int
mem_ldx(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
	unsigned int size)
{
1724 1725 1726
	if (meta->ldst_gather_len)
		return nfp_cpp_memcpy(nfp_prog, meta);

1727
	if (meta->ptr.type == PTR_TO_CTX) {
1728
		if (nfp_prog->type == BPF_PROG_TYPE_XDP)
1729 1730 1731 1732 1733 1734 1735 1736
			return mem_ldx_xdp(nfp_prog, meta, size);
		else
			return mem_ldx_skb(nfp_prog, meta, size);
	}

	if (meta->ptr.type == PTR_TO_PACKET)
		return mem_ldx_data(nfp_prog, meta, size);

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	if (meta->ptr.type == PTR_TO_STACK)
1738 1739
		return mem_ldx_stack(nfp_prog, meta, size,
				     meta->ptr.off + meta->ptr.var_off.value);
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1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753
	return -EOPNOTSUPP;
}

static int mem_ldx1(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return mem_ldx(nfp_prog, meta, 1);
}

static int mem_ldx2(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return mem_ldx(nfp_prog, meta, 2);
}

1754 1755
static int mem_ldx4(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
1756 1757 1758 1759 1760 1761
	return mem_ldx(nfp_prog, meta, 4);
}

static int mem_ldx8(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return mem_ldx(nfp_prog, meta, 8);
1762 1763
}

1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778
static int
mem_st_data(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
	    unsigned int size)
{
	u64 imm = meta->insn.imm; /* sign extend */
	swreg off_reg;

	off_reg = re_load_imm_any(nfp_prog, meta->insn.off, imm_b(nfp_prog));

	return data_st_host_order(nfp_prog, meta->insn.dst_reg * 2, off_reg,
				  imm, size);
}

static int mem_st(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
		  unsigned int size)
1779
{
1780 1781 1782
	if (meta->ptr.type == PTR_TO_PACKET)
		return mem_st_data(nfp_prog, meta, size);

1783
	return -EOPNOTSUPP;
1784 1785
}

1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801
static int mem_st1(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return mem_st(nfp_prog, meta, 1);
}

static int mem_st2(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return mem_st(nfp_prog, meta, 2);
}

static int mem_st4(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return mem_st(nfp_prog, meta, 4);
}

static int mem_st8(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
1802
{
1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817
	return mem_st(nfp_prog, meta, 8);
}

static int
mem_stx_data(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
	     unsigned int size)
{
	swreg off_reg;

	off_reg = re_load_imm_any(nfp_prog, meta->insn.off, imm_b(nfp_prog));

	return data_stx_host_order(nfp_prog, meta->insn.dst_reg * 2, off_reg,
				   meta->insn.src_reg * 2, size);
}

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static int
mem_stx_stack(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
1820
	      unsigned int size, unsigned int ptr_off)
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{
1822
	return mem_op_stack(nfp_prog, meta, size, ptr_off,
1823 1824
			    meta->insn.src_reg * 2, meta->insn.dst_reg * 2,
			    false, wrp_lmem_store);
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}

1827 1828 1829 1830 1831 1832 1833
static int
mem_stx(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta,
	unsigned int size)
{
	if (meta->ptr.type == PTR_TO_PACKET)
		return mem_stx_data(nfp_prog, meta, size);

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Jakub Kicinski 已提交
1834
	if (meta->ptr.type == PTR_TO_STACK)
1835 1836
		return mem_stx_stack(nfp_prog, meta, size,
				     meta->ptr.off + meta->ptr.var_off.value);
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Jakub Kicinski 已提交
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1838
	return -EOPNOTSUPP;
1839 1840
}

1841 1842 1843 1844 1845 1846 1847 1848 1849 1850
static int mem_stx1(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return mem_stx(nfp_prog, meta, 1);
}

static int mem_stx2(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return mem_stx(nfp_prog, meta, 2);
}

1851 1852
static int mem_stx4(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
1853 1854
	return mem_stx(nfp_prog, meta, 4);
}
1855

1856 1857 1858
static int mem_stx8(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return mem_stx(nfp_prog, meta, 8);
1859 1860
}

1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871
static int jump(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	emit_br(nfp_prog, BR_UNC, meta->insn.off, 0);

	return 0;
}

static int jeq_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;
	u64 imm = insn->imm; /* sign extend */
1872 1873 1874 1875
	swreg or1, or2, tmp_reg;

	or1 = reg_a(insn->dst_reg * 2);
	or2 = reg_b(insn->dst_reg * 2 + 1);
1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898

	if (imm & ~0U) {
		tmp_reg = ur_load_imm_any(nfp_prog, imm & ~0U, imm_b(nfp_prog));
		emit_alu(nfp_prog, imm_a(nfp_prog),
			 reg_a(insn->dst_reg * 2), ALU_OP_XOR, tmp_reg);
		or1 = imm_a(nfp_prog);
	}

	if (imm >> 32) {
		tmp_reg = ur_load_imm_any(nfp_prog, imm >> 32, imm_b(nfp_prog));
		emit_alu(nfp_prog, imm_b(nfp_prog),
			 reg_a(insn->dst_reg * 2 + 1), ALU_OP_XOR, tmp_reg);
		or2 = imm_b(nfp_prog);
	}

	emit_alu(nfp_prog, reg_none(), or1, ALU_OP_OR, or2);
	emit_br(nfp_prog, BR_BEQ, insn->off, 0);

	return 0;
}

static int jgt_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
1899
	return wrp_cmp_imm(nfp_prog, meta, BR_BLO, true);
1900 1901 1902 1903
}

static int jge_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
1904
	return wrp_cmp_imm(nfp_prog, meta, BR_BHS, false);
1905 1906
}

1907 1908
static int jlt_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
1909
	return wrp_cmp_imm(nfp_prog, meta, BR_BLO, false);
1910 1911 1912 1913
}

static int jle_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
1914
	return wrp_cmp_imm(nfp_prog, meta, BR_BHS, true);
1915 1916
}

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Nic Viljoen 已提交
1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935 1936
static int jsgt_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_cmp_imm(nfp_prog, meta, BR_BLT, true);
}

static int jsge_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_cmp_imm(nfp_prog, meta, BR_BGE, false);
}

static int jslt_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_cmp_imm(nfp_prog, meta, BR_BLT, false);
}

static int jsle_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_cmp_imm(nfp_prog, meta, BR_BGE, true);
}

1937 1938 1939 1940
static int jset_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;
	u64 imm = insn->imm; /* sign extend */
1941
	swreg tmp_reg;
1942 1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968

	if (!imm) {
		meta->skip = true;
		return 0;
	}

	if (imm & ~0U) {
		tmp_reg = ur_load_imm_any(nfp_prog, imm & ~0U, imm_b(nfp_prog));
		emit_alu(nfp_prog, reg_none(),
			 reg_a(insn->dst_reg * 2), ALU_OP_AND, tmp_reg);
		emit_br(nfp_prog, BR_BNE, insn->off, 0);
	}

	if (imm >> 32) {
		tmp_reg = ur_load_imm_any(nfp_prog, imm >> 32, imm_b(nfp_prog));
		emit_alu(nfp_prog, reg_none(),
			 reg_a(insn->dst_reg * 2 + 1), ALU_OP_AND, tmp_reg);
		emit_br(nfp_prog, BR_BNE, insn->off, 0);
	}

	return 0;
}

static int jne_imm(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;
	u64 imm = insn->imm; /* sign extend */
1969
	swreg tmp_reg;
1970 1971 1972 1973 1974

	if (!imm) {
		emit_alu(nfp_prog, reg_none(), reg_a(insn->dst_reg * 2),
			 ALU_OP_OR, reg_b(insn->dst_reg * 2 + 1));
		emit_br(nfp_prog, BR_BNE, insn->off, 0);
1975
		return 0;
1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007
	}

	tmp_reg = ur_load_imm_any(nfp_prog, imm & ~0U, imm_b(nfp_prog));
	emit_alu(nfp_prog, reg_none(),
		 reg_a(insn->dst_reg * 2), ALU_OP_XOR, tmp_reg);
	emit_br(nfp_prog, BR_BNE, insn->off, 0);

	tmp_reg = ur_load_imm_any(nfp_prog, imm >> 32, imm_b(nfp_prog));
	emit_alu(nfp_prog, reg_none(),
		 reg_a(insn->dst_reg * 2 + 1), ALU_OP_XOR, tmp_reg);
	emit_br(nfp_prog, BR_BNE, insn->off, 0);

	return 0;
}

static int jeq_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	const struct bpf_insn *insn = &meta->insn;

	emit_alu(nfp_prog, imm_a(nfp_prog), reg_a(insn->dst_reg * 2),
		 ALU_OP_XOR, reg_b(insn->src_reg * 2));
	emit_alu(nfp_prog, imm_b(nfp_prog), reg_a(insn->dst_reg * 2 + 1),
		 ALU_OP_XOR, reg_b(insn->src_reg * 2 + 1));
	emit_alu(nfp_prog, reg_none(),
		 imm_a(nfp_prog), ALU_OP_OR, imm_b(nfp_prog));
	emit_br(nfp_prog, BR_BEQ, insn->off, 0);

	return 0;
}

static int jgt_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
2008
	return wrp_cmp_reg(nfp_prog, meta, BR_BLO, true);
2009 2010 2011 2012
}

static int jge_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
2013
	return wrp_cmp_reg(nfp_prog, meta, BR_BHS, false);
2014 2015
}

2016 2017
static int jlt_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
2018
	return wrp_cmp_reg(nfp_prog, meta, BR_BLO, false);
2019 2020 2021 2022
}

static int jle_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
2023
	return wrp_cmp_reg(nfp_prog, meta, BR_BHS, true);
2024 2025
}

N
Nic Viljoen 已提交
2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045
static int jsgt_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_cmp_reg(nfp_prog, meta, BR_BLT, true);
}

static int jsge_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_cmp_reg(nfp_prog, meta, BR_BGE, false);
}

static int jslt_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_cmp_reg(nfp_prog, meta, BR_BLT, false);
}

static int jsle_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_cmp_reg(nfp_prog, meta, BR_BGE, true);
}

2046 2047 2048 2049 2050 2051 2052 2053 2054 2055
static int jset_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_test_reg(nfp_prog, meta, ALU_OP_AND, BR_BNE);
}

static int jne_reg(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	return wrp_test_reg(nfp_prog, meta, ALU_OP_XOR, BR_BNE);
}

2056 2057 2058
static int call(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
	switch (meta->insn.imm) {
2059 2060
	case BPF_FUNC_xdp_adjust_head:
		return adjust_head(nfp_prog, meta);
2061 2062 2063 2064 2065 2066
	default:
		WARN_ONCE(1, "verifier allowed unsupported function\n");
		return -EOPNOTSUPP;
	}
}

2067 2068
static int goto_out(struct nfp_prog *nfp_prog, struct nfp_insn_meta *meta)
{
2069
	emit_br_relo(nfp_prog, BR_UNC, BR_OFF_RELO, 0, RELO_BR_GO_OUT);
2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086

	return 0;
}

static const instr_cb_t instr_cb[256] = {
	[BPF_ALU64 | BPF_MOV | BPF_X] =	mov_reg64,
	[BPF_ALU64 | BPF_MOV | BPF_K] =	mov_imm64,
	[BPF_ALU64 | BPF_XOR | BPF_X] =	xor_reg64,
	[BPF_ALU64 | BPF_XOR | BPF_K] =	xor_imm64,
	[BPF_ALU64 | BPF_AND | BPF_X] =	and_reg64,
	[BPF_ALU64 | BPF_AND | BPF_K] =	and_imm64,
	[BPF_ALU64 | BPF_OR | BPF_X] =	or_reg64,
	[BPF_ALU64 | BPF_OR | BPF_K] =	or_imm64,
	[BPF_ALU64 | BPF_ADD | BPF_X] =	add_reg64,
	[BPF_ALU64 | BPF_ADD | BPF_K] =	add_imm64,
	[BPF_ALU64 | BPF_SUB | BPF_X] =	sub_reg64,
	[BPF_ALU64 | BPF_SUB | BPF_K] =	sub_imm64,
2087
	[BPF_ALU64 | BPF_NEG] =		neg_reg64,
2088 2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099 2100 2101
	[BPF_ALU64 | BPF_LSH | BPF_K] =	shl_imm64,
	[BPF_ALU64 | BPF_RSH | BPF_K] =	shr_imm64,
	[BPF_ALU | BPF_MOV | BPF_X] =	mov_reg,
	[BPF_ALU | BPF_MOV | BPF_K] =	mov_imm,
	[BPF_ALU | BPF_XOR | BPF_X] =	xor_reg,
	[BPF_ALU | BPF_XOR | BPF_K] =	xor_imm,
	[BPF_ALU | BPF_AND | BPF_X] =	and_reg,
	[BPF_ALU | BPF_AND | BPF_K] =	and_imm,
	[BPF_ALU | BPF_OR | BPF_X] =	or_reg,
	[BPF_ALU | BPF_OR | BPF_K] =	or_imm,
	[BPF_ALU | BPF_ADD | BPF_X] =	add_reg,
	[BPF_ALU | BPF_ADD | BPF_K] =	add_imm,
	[BPF_ALU | BPF_SUB | BPF_X] =	sub_reg,
	[BPF_ALU | BPF_SUB | BPF_K] =	sub_imm,
2102
	[BPF_ALU | BPF_NEG] =		neg_reg,
2103
	[BPF_ALU | BPF_LSH | BPF_K] =	shl_imm,
2104
	[BPF_ALU | BPF_END | BPF_X] =	end_reg32,
2105 2106 2107 2108 2109 2110 2111
	[BPF_LD | BPF_IMM | BPF_DW] =	imm_ld8,
	[BPF_LD | BPF_ABS | BPF_B] =	data_ld1,
	[BPF_LD | BPF_ABS | BPF_H] =	data_ld2,
	[BPF_LD | BPF_ABS | BPF_W] =	data_ld4,
	[BPF_LD | BPF_IND | BPF_B] =	data_ind_ld1,
	[BPF_LD | BPF_IND | BPF_H] =	data_ind_ld2,
	[BPF_LD | BPF_IND | BPF_W] =	data_ind_ld4,
2112 2113
	[BPF_LDX | BPF_MEM | BPF_B] =	mem_ldx1,
	[BPF_LDX | BPF_MEM | BPF_H] =	mem_ldx2,
2114
	[BPF_LDX | BPF_MEM | BPF_W] =	mem_ldx4,
2115
	[BPF_LDX | BPF_MEM | BPF_DW] =	mem_ldx8,
2116 2117
	[BPF_STX | BPF_MEM | BPF_B] =	mem_stx1,
	[BPF_STX | BPF_MEM | BPF_H] =	mem_stx2,
2118
	[BPF_STX | BPF_MEM | BPF_W] =	mem_stx4,
2119 2120 2121 2122 2123
	[BPF_STX | BPF_MEM | BPF_DW] =	mem_stx8,
	[BPF_ST | BPF_MEM | BPF_B] =	mem_st1,
	[BPF_ST | BPF_MEM | BPF_H] =	mem_st2,
	[BPF_ST | BPF_MEM | BPF_W] =	mem_st4,
	[BPF_ST | BPF_MEM | BPF_DW] =	mem_st8,
2124 2125 2126 2127
	[BPF_JMP | BPF_JA | BPF_K] =	jump,
	[BPF_JMP | BPF_JEQ | BPF_K] =	jeq_imm,
	[BPF_JMP | BPF_JGT | BPF_K] =	jgt_imm,
	[BPF_JMP | BPF_JGE | BPF_K] =	jge_imm,
2128 2129
	[BPF_JMP | BPF_JLT | BPF_K] =	jlt_imm,
	[BPF_JMP | BPF_JLE | BPF_K] =	jle_imm,
N
Nic Viljoen 已提交
2130 2131 2132 2133
	[BPF_JMP | BPF_JSGT | BPF_K] =  jsgt_imm,
	[BPF_JMP | BPF_JSGE | BPF_K] =  jsge_imm,
	[BPF_JMP | BPF_JSLT | BPF_K] =  jslt_imm,
	[BPF_JMP | BPF_JSLE | BPF_K] =  jsle_imm,
2134 2135 2136 2137 2138
	[BPF_JMP | BPF_JSET | BPF_K] =	jset_imm,
	[BPF_JMP | BPF_JNE | BPF_K] =	jne_imm,
	[BPF_JMP | BPF_JEQ | BPF_X] =	jeq_reg,
	[BPF_JMP | BPF_JGT | BPF_X] =	jgt_reg,
	[BPF_JMP | BPF_JGE | BPF_X] =	jge_reg,
2139 2140
	[BPF_JMP | BPF_JLT | BPF_X] =	jlt_reg,
	[BPF_JMP | BPF_JLE | BPF_X] =	jle_reg,
N
Nic Viljoen 已提交
2141 2142 2143 2144
	[BPF_JMP | BPF_JSGT | BPF_X] =  jsgt_reg,
	[BPF_JMP | BPF_JSGE | BPF_X] =  jsge_reg,
	[BPF_JMP | BPF_JSLT | BPF_X] =  jslt_reg,
	[BPF_JMP | BPF_JSLE | BPF_X] =  jsle_reg,
2145 2146
	[BPF_JMP | BPF_JSET | BPF_X] =	jset_reg,
	[BPF_JMP | BPF_JNE | BPF_X] =	jne_reg,
2147
	[BPF_JMP | BPF_CALL] =		call,
2148 2149 2150 2151 2152 2153
	[BPF_JMP | BPF_EXIT] =		goto_out,
};

/* --- Assembler logic --- */
static int nfp_fixup_branches(struct nfp_prog *nfp_prog)
{
2154
	struct nfp_insn_meta *meta, *jmp_dst;
J
Jiong Wang 已提交
2155
	u32 idx, br_idx;
2156

J
Jiong Wang 已提交
2157
	list_for_each_entry(meta, &nfp_prog->insns, l) {
2158 2159
		if (meta->skip)
			continue;
2160 2161
		if (meta->insn.code == (BPF_JMP | BPF_CALL))
			continue;
2162 2163 2164
		if (BPF_CLASS(meta->insn.code) != BPF_JMP)
			continue;

2165
		if (list_is_last(&meta->l, &nfp_prog->insns))
2166
			br_idx = nfp_prog->last_bpf_off;
2167
		else
2168
			br_idx = list_next_entry(meta, l)->off - 1;
J
Jiong Wang 已提交
2169

2170 2171 2172 2173 2174 2175
		if (!nfp_is_br(nfp_prog->prog[br_idx])) {
			pr_err("Fixup found block not ending in branch %d %02x %016llx!!\n",
			       br_idx, meta->insn.code, nfp_prog->prog[br_idx]);
			return -ELOOP;
		}
		/* Leave special branches for later */
2176 2177
		if (FIELD_GET(OP_RELO_TYPE, nfp_prog->prog[br_idx]) !=
		    RELO_BR_REL)
2178 2179
			continue;

2180 2181
		if (!meta->jmp_dst) {
			pr_err("Non-exit jump doesn't have destination info recorded!!\n");
2182 2183 2184
			return -ELOOP;
		}

2185
		jmp_dst = meta->jmp_dst;
2186

2187
		if (jmp_dst->skip) {
2188 2189 2190 2191
			pr_err("Branch landing on removed instruction!!\n");
			return -ELOOP;
		}

2192
		for (idx = meta->off; idx <= br_idx; idx++) {
2193 2194
			if (!nfp_is_br(nfp_prog->prog[idx]))
				continue;
2195
			br_set_offset(&nfp_prog->prog[idx], jmp_dst->off);
2196 2197 2198 2199 2200 2201 2202 2203
		}
	}

	return 0;
}

static void nfp_intro(struct nfp_prog *nfp_prog)
{
2204 2205 2206
	wrp_immed(nfp_prog, plen_reg(nfp_prog), GENMASK(13, 0));
	emit_alu(nfp_prog, plen_reg(nfp_prog),
		 plen_reg(nfp_prog), ALU_OP_AND, pv_len(nfp_prog));
2207 2208
}

2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225
static void nfp_outro_tc_da(struct nfp_prog *nfp_prog)
{
	/* TC direct-action mode:
	 *   0,1   ok        NOT SUPPORTED[1]
	 *   2   drop  0x22 -> drop,  count as stat1
	 *   4,5 nuke  0x02 -> drop
	 *   7  redir  0x44 -> redir, count as stat2
	 *   * unspec  0x11 -> pass,  count as stat0
	 *
	 * [1] We can't support OK and RECLASSIFY because we can't tell TC
	 *     the exact decision made.  We are forced to support UNSPEC
	 *     to handle aborts so that's the only one we handle for passing
	 *     packets up the stack.
	 */
	/* Target for aborts */
	nfp_prog->tgt_abort = nfp_prog_current_offset(nfp_prog);

2226
	emit_br_relo(nfp_prog, BR_UNC, BR_OFF_RELO, 2, RELO_BR_NEXT_PKT);
2227

J
Jakub Kicinski 已提交
2228
	wrp_mov(nfp_prog, reg_a(0), NFP_BPF_ABI_FLAGS);
2229 2230 2231 2232 2233 2234 2235 2236
	emit_ld_field(nfp_prog, reg_a(0), 0xc, reg_imm(0x11), SHF_SC_L_SHF, 16);

	/* Target for normal exits */
	nfp_prog->tgt_out = nfp_prog_current_offset(nfp_prog);

	/* if R0 > 7 jump to abort */
	emit_alu(nfp_prog, reg_none(), reg_imm(7), ALU_OP_SUB, reg_b(0));
	emit_br(nfp_prog, BR_BLO, nfp_prog->tgt_abort, 0);
J
Jakub Kicinski 已提交
2237
	wrp_mov(nfp_prog, reg_a(0), NFP_BPF_ABI_FLAGS);
2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252

	wrp_immed(nfp_prog, reg_b(2), 0x41221211);
	wrp_immed(nfp_prog, reg_b(3), 0x41001211);

	emit_shf(nfp_prog, reg_a(1),
		 reg_none(), SHF_OP_NONE, reg_b(0), SHF_SC_L_SHF, 2);

	emit_alu(nfp_prog, reg_none(), reg_a(1), ALU_OP_OR, reg_imm(0));
	emit_shf(nfp_prog, reg_a(2),
		 reg_imm(0xf), SHF_OP_AND, reg_b(2), SHF_SC_R_SHF, 0);

	emit_alu(nfp_prog, reg_none(), reg_a(1), ALU_OP_OR, reg_imm(0));
	emit_shf(nfp_prog, reg_b(2),
		 reg_imm(0xf), SHF_OP_AND, reg_b(3), SHF_SC_R_SHF, 0);

2253
	emit_br_relo(nfp_prog, BR_UNC, BR_OFF_RELO, 2, RELO_BR_NEXT_PKT);
2254 2255 2256 2257 2258 2259

	emit_shf(nfp_prog, reg_b(2),
		 reg_a(2), SHF_OP_OR, reg_b(2), SHF_SC_L_SHF, 4);
	emit_ld_field(nfp_prog, reg_a(0), 0xc, reg_b(2), SHF_SC_L_SHF, 16);
}

2260 2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271
static void nfp_outro_xdp(struct nfp_prog *nfp_prog)
{
	/* XDP return codes:
	 *   0 aborted  0x82 -> drop,  count as stat3
	 *   1    drop  0x22 -> drop,  count as stat1
	 *   2    pass  0x11 -> pass,  count as stat0
	 *   3      tx  0x44 -> redir, count as stat2
	 *   * unknown  0x82 -> drop,  count as stat3
	 */
	/* Target for aborts */
	nfp_prog->tgt_abort = nfp_prog_current_offset(nfp_prog);

2272
	emit_br_relo(nfp_prog, BR_UNC, BR_OFF_RELO, 2, RELO_BR_NEXT_PKT);
2273

J
Jakub Kicinski 已提交
2274
	wrp_mov(nfp_prog, reg_a(0), NFP_BPF_ABI_FLAGS);
2275 2276 2277 2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292
	emit_ld_field(nfp_prog, reg_a(0), 0xc, reg_imm(0x82), SHF_SC_L_SHF, 16);

	/* Target for normal exits */
	nfp_prog->tgt_out = nfp_prog_current_offset(nfp_prog);

	/* if R0 > 3 jump to abort */
	emit_alu(nfp_prog, reg_none(), reg_imm(3), ALU_OP_SUB, reg_b(0));
	emit_br(nfp_prog, BR_BLO, nfp_prog->tgt_abort, 0);

	wrp_immed(nfp_prog, reg_b(2), 0x44112282);

	emit_shf(nfp_prog, reg_a(1),
		 reg_none(), SHF_OP_NONE, reg_b(0), SHF_SC_L_SHF, 3);

	emit_alu(nfp_prog, reg_none(), reg_a(1), ALU_OP_OR, reg_imm(0));
	emit_shf(nfp_prog, reg_b(2),
		 reg_imm(0xff), SHF_OP_AND, reg_b(2), SHF_SC_R_SHF, 0);

2293
	emit_br_relo(nfp_prog, BR_UNC, BR_OFF_RELO, 2, RELO_BR_NEXT_PKT);
2294

J
Jakub Kicinski 已提交
2295
	wrp_mov(nfp_prog, reg_a(0), NFP_BPF_ABI_FLAGS);
2296 2297 2298
	emit_ld_field(nfp_prog, reg_a(0), 0xc, reg_b(2), SHF_SC_L_SHF, 16);
}

2299 2300
static void nfp_outro(struct nfp_prog *nfp_prog)
{
2301 2302
	switch (nfp_prog->type) {
	case BPF_PROG_TYPE_SCHED_CLS:
2303 2304
		nfp_outro_tc_da(nfp_prog);
		break;
2305
	case BPF_PROG_TYPE_XDP:
2306 2307
		nfp_outro_xdp(nfp_prog);
		break;
2308 2309
	default:
		WARN_ON(1);
2310 2311 2312 2313 2314 2315
	}
}

static int nfp_translate(struct nfp_prog *nfp_prog)
{
	struct nfp_insn_meta *meta;
2316
	int err;
2317 2318 2319 2320 2321 2322 2323 2324 2325 2326 2327 2328 2329 2330 2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343

	nfp_intro(nfp_prog);
	if (nfp_prog->error)
		return nfp_prog->error;

	list_for_each_entry(meta, &nfp_prog->insns, l) {
		instr_cb_t cb = instr_cb[meta->insn.code];

		meta->off = nfp_prog_current_offset(nfp_prog);

		if (meta->skip) {
			nfp_prog->n_translated++;
			continue;
		}

		if (nfp_meta_has_prev(nfp_prog, meta) &&
		    nfp_meta_prev(meta)->double_cb)
			cb = nfp_meta_prev(meta)->double_cb;
		if (!cb)
			return -ENOENT;
		err = cb(nfp_prog, meta);
		if (err)
			return err;

		nfp_prog->n_translated++;
	}

J
Jiong Wang 已提交
2344 2345
	nfp_prog->last_bpf_off = nfp_prog_current_offset(nfp_prog) - 1;

2346 2347 2348 2349
	nfp_outro(nfp_prog);
	if (nfp_prog->error)
		return nfp_prog->error;

2350
	wrp_nops(nfp_prog, NFP_USTORE_PREFETCH_WINDOW);
2351 2352 2353
	if (nfp_prog->error)
		return nfp_prog->error;

2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371 2372 2373 2374 2375 2376 2377 2378 2379 2380 2381 2382 2383 2384 2385 2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402 2403 2404 2405 2406 2407 2408 2409 2410 2411 2412 2413
	return nfp_fixup_branches(nfp_prog);
}

/* --- Optimizations --- */
static void nfp_bpf_opt_reg_init(struct nfp_prog *nfp_prog)
{
	struct nfp_insn_meta *meta;

	list_for_each_entry(meta, &nfp_prog->insns, l) {
		struct bpf_insn insn = meta->insn;

		/* Programs converted from cBPF start with register xoring */
		if (insn.code == (BPF_ALU64 | BPF_XOR | BPF_X) &&
		    insn.src_reg == insn.dst_reg)
			continue;

		/* Programs start with R6 = R1 but we ignore the skb pointer */
		if (insn.code == (BPF_ALU64 | BPF_MOV | BPF_X) &&
		    insn.src_reg == 1 && insn.dst_reg == 6)
			meta->skip = true;

		/* Return as soon as something doesn't match */
		if (!meta->skip)
			return;
	}
}

/* Remove masking after load since our load guarantees this is not needed */
static void nfp_bpf_opt_ld_mask(struct nfp_prog *nfp_prog)
{
	struct nfp_insn_meta *meta1, *meta2;
	const s32 exp_mask[] = {
		[BPF_B] = 0x000000ffU,
		[BPF_H] = 0x0000ffffU,
		[BPF_W] = 0xffffffffU,
	};

	nfp_for_each_insn_walk2(nfp_prog, meta1, meta2) {
		struct bpf_insn insn, next;

		insn = meta1->insn;
		next = meta2->insn;

		if (BPF_CLASS(insn.code) != BPF_LD)
			continue;
		if (BPF_MODE(insn.code) != BPF_ABS &&
		    BPF_MODE(insn.code) != BPF_IND)
			continue;

		if (next.code != (BPF_ALU64 | BPF_AND | BPF_K))
			continue;

		if (!exp_mask[BPF_SIZE(insn.code)])
			continue;
		if (exp_mask[BPF_SIZE(insn.code)] != next.imm)
			continue;

		if (next.src_reg || next.dst_reg)
			continue;

2414 2415 2416
		if (meta2->flags & FLAG_INSN_IS_JUMP_DST)
			continue;

2417 2418 2419 2420 2421 2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443 2444 2445 2446 2447 2448 2449 2450 2451 2452
		meta2->skip = true;
	}
}

static void nfp_bpf_opt_ld_shift(struct nfp_prog *nfp_prog)
{
	struct nfp_insn_meta *meta1, *meta2, *meta3;

	nfp_for_each_insn_walk3(nfp_prog, meta1, meta2, meta3) {
		struct bpf_insn insn, next1, next2;

		insn = meta1->insn;
		next1 = meta2->insn;
		next2 = meta3->insn;

		if (BPF_CLASS(insn.code) != BPF_LD)
			continue;
		if (BPF_MODE(insn.code) != BPF_ABS &&
		    BPF_MODE(insn.code) != BPF_IND)
			continue;
		if (BPF_SIZE(insn.code) != BPF_W)
			continue;

		if (!(next1.code == (BPF_LSH | BPF_K | BPF_ALU64) &&
		      next2.code == (BPF_RSH | BPF_K | BPF_ALU64)) &&
		    !(next1.code == (BPF_RSH | BPF_K | BPF_ALU64) &&
		      next2.code == (BPF_LSH | BPF_K | BPF_ALU64)))
			continue;

		if (next1.src_reg || next1.dst_reg ||
		    next2.src_reg || next2.dst_reg)
			continue;

		if (next1.imm != 0x20 || next2.imm != 0x20)
			continue;

2453 2454 2455 2456
		if (meta2->flags & FLAG_INSN_IS_JUMP_DST ||
		    meta3->flags & FLAG_INSN_IS_JUMP_DST)
			continue;

2457 2458 2459 2460 2461
		meta2->skip = true;
		meta3->skip = true;
	}
}

2462 2463 2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479 2480 2481 2482 2483 2484 2485 2486 2487 2488 2489 2490 2491 2492 2493 2494 2495 2496 2497 2498 2499 2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572 2573 2574 2575 2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628 2629 2630 2631 2632 2633 2634 2635 2636 2637 2638 2639 2640 2641 2642 2643 2644 2645 2646 2647 2648 2649 2650 2651 2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665 2666 2667 2668 2669 2670 2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696 2697
/* load/store pair that forms memory copy sould look like the following:
 *
 *   ld_width R, [addr_src + offset_src]
 *   st_width [addr_dest + offset_dest], R
 *
 * The destination register of load and source register of store should
 * be the same, load and store should also perform at the same width.
 * If either of addr_src or addr_dest is stack pointer, we don't do the
 * CPP optimization as stack is modelled by registers on NFP.
 */
static bool
curr_pair_is_memcpy(struct nfp_insn_meta *ld_meta,
		    struct nfp_insn_meta *st_meta)
{
	struct bpf_insn *ld = &ld_meta->insn;
	struct bpf_insn *st = &st_meta->insn;

	if (!is_mbpf_load(ld_meta) || !is_mbpf_store(st_meta))
		return false;

	if (ld_meta->ptr.type != PTR_TO_PACKET)
		return false;

	if (st_meta->ptr.type != PTR_TO_PACKET)
		return false;

	if (BPF_SIZE(ld->code) != BPF_SIZE(st->code))
		return false;

	if (ld->dst_reg != st->src_reg)
		return false;

	/* There is jump to the store insn in this pair. */
	if (st_meta->flags & FLAG_INSN_IS_JUMP_DST)
		return false;

	return true;
}

/* Currently, we only support chaining load/store pairs if:
 *
 *  - Their address base registers are the same.
 *  - Their address offsets are in the same order.
 *  - They operate at the same memory width.
 *  - There is no jump into the middle of them.
 */
static bool
curr_pair_chain_with_previous(struct nfp_insn_meta *ld_meta,
			      struct nfp_insn_meta *st_meta,
			      struct bpf_insn *prev_ld,
			      struct bpf_insn *prev_st)
{
	u8 prev_size, curr_size, prev_ld_base, prev_st_base, prev_ld_dst;
	struct bpf_insn *ld = &ld_meta->insn;
	struct bpf_insn *st = &st_meta->insn;
	s16 prev_ld_off, prev_st_off;

	/* This pair is the start pair. */
	if (!prev_ld)
		return true;

	prev_size = BPF_LDST_BYTES(prev_ld);
	curr_size = BPF_LDST_BYTES(ld);
	prev_ld_base = prev_ld->src_reg;
	prev_st_base = prev_st->dst_reg;
	prev_ld_dst = prev_ld->dst_reg;
	prev_ld_off = prev_ld->off;
	prev_st_off = prev_st->off;

	if (ld->dst_reg != prev_ld_dst)
		return false;

	if (ld->src_reg != prev_ld_base || st->dst_reg != prev_st_base)
		return false;

	if (curr_size != prev_size)
		return false;

	/* There is jump to the head of this pair. */
	if (ld_meta->flags & FLAG_INSN_IS_JUMP_DST)
		return false;

	/* Both in ascending order. */
	if (prev_ld_off + prev_size == ld->off &&
	    prev_st_off + prev_size == st->off)
		return true;

	/* Both in descending order. */
	if (ld->off + curr_size == prev_ld_off &&
	    st->off + curr_size == prev_st_off)
		return true;

	return false;
}

/* Return TRUE if cross memory access happens. Cross memory access means
 * store area is overlapping with load area that a later load might load
 * the value from previous store, for this case we can't treat the sequence
 * as an memory copy.
 */
static bool
cross_mem_access(struct bpf_insn *ld, struct nfp_insn_meta *head_ld_meta,
		 struct nfp_insn_meta *head_st_meta)
{
	s16 head_ld_off, head_st_off, ld_off;

	/* Different pointer types does not overlap. */
	if (head_ld_meta->ptr.type != head_st_meta->ptr.type)
		return false;

	/* load and store are both PTR_TO_PACKET, check ID info.  */
	if (head_ld_meta->ptr.id != head_st_meta->ptr.id)
		return true;

	/* Canonicalize the offsets. Turn all of them against the original
	 * base register.
	 */
	head_ld_off = head_ld_meta->insn.off + head_ld_meta->ptr.off;
	head_st_off = head_st_meta->insn.off + head_st_meta->ptr.off;
	ld_off = ld->off + head_ld_meta->ptr.off;

	/* Ascending order cross. */
	if (ld_off > head_ld_off &&
	    head_ld_off < head_st_off && ld_off >= head_st_off)
		return true;

	/* Descending order cross. */
	if (ld_off < head_ld_off &&
	    head_ld_off > head_st_off && ld_off <= head_st_off)
		return true;

	return false;
}

/* This pass try to identify the following instructoin sequences.
 *
 *   load R, [regA + offA]
 *   store [regB + offB], R
 *   load R, [regA + offA + const_imm_A]
 *   store [regB + offB + const_imm_A], R
 *   load R, [regA + offA + 2 * const_imm_A]
 *   store [regB + offB + 2 * const_imm_A], R
 *   ...
 *
 * Above sequence is typically generated by compiler when lowering
 * memcpy. NFP prefer using CPP instructions to accelerate it.
 */
static void nfp_bpf_opt_ldst_gather(struct nfp_prog *nfp_prog)
{
	struct nfp_insn_meta *head_ld_meta = NULL;
	struct nfp_insn_meta *head_st_meta = NULL;
	struct nfp_insn_meta *meta1, *meta2;
	struct bpf_insn *prev_ld = NULL;
	struct bpf_insn *prev_st = NULL;
	u8 count = 0;

	nfp_for_each_insn_walk2(nfp_prog, meta1, meta2) {
		struct bpf_insn *ld = &meta1->insn;
		struct bpf_insn *st = &meta2->insn;

		/* Reset record status if any of the following if true:
		 *   - The current insn pair is not load/store.
		 *   - The load/store pair doesn't chain with previous one.
		 *   - The chained load/store pair crossed with previous pair.
		 *   - The chained load/store pair has a total size of memory
		 *     copy beyond 128 bytes which is the maximum length a
		 *     single NFP CPP command can transfer.
		 */
		if (!curr_pair_is_memcpy(meta1, meta2) ||
		    !curr_pair_chain_with_previous(meta1, meta2, prev_ld,
						   prev_st) ||
		    (head_ld_meta && (cross_mem_access(ld, head_ld_meta,
						       head_st_meta) ||
				      head_ld_meta->ldst_gather_len >= 128))) {
			if (!count)
				continue;

			if (count > 1) {
				s16 prev_ld_off = prev_ld->off;
				s16 prev_st_off = prev_st->off;
				s16 head_ld_off = head_ld_meta->insn.off;

				if (prev_ld_off < head_ld_off) {
					head_ld_meta->insn.off = prev_ld_off;
					head_st_meta->insn.off = prev_st_off;
					head_ld_meta->ldst_gather_len =
						-head_ld_meta->ldst_gather_len;
				}

				head_ld_meta->paired_st = &head_st_meta->insn;
				head_st_meta->skip = true;
			} else {
				head_ld_meta->ldst_gather_len = 0;
			}

			/* If the chain is ended by an load/store pair then this
			 * could serve as the new head of the the next chain.
			 */
			if (curr_pair_is_memcpy(meta1, meta2)) {
				head_ld_meta = meta1;
				head_st_meta = meta2;
				head_ld_meta->ldst_gather_len =
					BPF_LDST_BYTES(ld);
				meta1 = nfp_meta_next(meta1);
				meta2 = nfp_meta_next(meta2);
				prev_ld = ld;
				prev_st = st;
				count = 1;
			} else {
				head_ld_meta = NULL;
				head_st_meta = NULL;
				prev_ld = NULL;
				prev_st = NULL;
				count = 0;
			}

			continue;
		}

		if (!head_ld_meta) {
			head_ld_meta = meta1;
			head_st_meta = meta2;
		} else {
			meta1->skip = true;
			meta2->skip = true;
		}

		head_ld_meta->ldst_gather_len += BPF_LDST_BYTES(ld);
		meta1 = nfp_meta_next(meta1);
		meta2 = nfp_meta_next(meta2);
		prev_ld = ld;
		prev_st = st;
		count++;
	}
}

2698 2699 2700 2701 2702 2703
static int nfp_bpf_optimize(struct nfp_prog *nfp_prog)
{
	nfp_bpf_opt_reg_init(nfp_prog);

	nfp_bpf_opt_ld_mask(nfp_prog);
	nfp_bpf_opt_ld_shift(nfp_prog);
2704
	nfp_bpf_opt_ldst_gather(nfp_prog);
2705 2706 2707 2708

	return 0;
}

2709
static int nfp_bpf_ustore_calc(u64 *prog, unsigned int len)
2710
{
2711
	__le64 *ustore = (__force __le64 *)prog;
2712 2713
	int i;

2714
	for (i = 0; i < len; i++) {
2715 2716
		int err;

2717
		err = nfp_ustore_check_valid_no_ecc(prog[i]);
2718 2719 2720
		if (err)
			return err;

2721
		ustore[i] = cpu_to_le64(nfp_ustore_calc_ecc_insn(prog[i]));
2722 2723 2724 2725 2726
	}

	return 0;
}

2727 2728 2729 2730 2731 2732 2733 2734 2735 2736 2737 2738 2739 2740
static void nfp_bpf_prog_trim(struct nfp_prog *nfp_prog)
{
	void *prog;

	prog = kvmalloc_array(nfp_prog->prog_len, sizeof(u64), GFP_KERNEL);
	if (!prog)
		return;

	nfp_prog->__prog_alloc_len = nfp_prog->prog_len * sizeof(u64);
	memcpy(prog, nfp_prog->prog, nfp_prog->__prog_alloc_len);
	kvfree(nfp_prog->prog);
	nfp_prog->prog = prog;
}

2741
int nfp_bpf_jit(struct nfp_prog *nfp_prog)
2742 2743 2744 2745 2746
{
	int ret;

	ret = nfp_bpf_optimize(nfp_prog);
	if (ret)
2747
		return ret;
2748 2749 2750 2751 2752

	ret = nfp_translate(nfp_prog);
	if (ret) {
		pr_err("Translation failed with error %d (translated: %u)\n",
		       ret, nfp_prog->n_translated);
2753
		return -EINVAL;
2754 2755
	}

2756 2757
	nfp_bpf_prog_trim(nfp_prog);

2758
	return ret;
2759
}
2760 2761 2762 2763 2764 2765 2766 2767 2768 2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780 2781 2782

void nfp_bpf_jit_prepare(struct nfp_prog *nfp_prog, unsigned int cnt)
{
	struct nfp_insn_meta *meta;

	/* Another pass to record jump information. */
	list_for_each_entry(meta, &nfp_prog->insns, l) {
		u64 code = meta->insn.code;

		if (BPF_CLASS(code) == BPF_JMP && BPF_OP(code) != BPF_EXIT &&
		    BPF_OP(code) != BPF_CALL) {
			struct nfp_insn_meta *dst_meta;
			unsigned short dst_indx;

			dst_indx = meta->n + 1 + meta->insn.off;
			dst_meta = nfp_bpf_goto_meta(nfp_prog, meta, dst_indx,
						     cnt);

			meta->jmp_dst = dst_meta;
			dst_meta->flags |= FLAG_INSN_IS_JUMP_DST;
		}
	}
}
2783 2784 2785 2786 2787 2788 2789 2790 2791 2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2805 2806 2807 2808 2809 2810 2811 2812 2813 2814 2815 2816 2817 2818 2819 2820 2821 2822 2823 2824 2825 2826 2827 2828 2829 2830

void *nfp_bpf_relo_for_vnic(struct nfp_prog *nfp_prog, struct nfp_bpf_vnic *bv)
{
	unsigned int i;
	u64 *prog;
	int err;

	prog = kmemdup(nfp_prog->prog, nfp_prog->prog_len * sizeof(u64),
		       GFP_KERNEL);
	if (!prog)
		return ERR_PTR(-ENOMEM);

	for (i = 0; i < nfp_prog->prog_len; i++) {
		enum nfp_relo_type special;

		special = FIELD_GET(OP_RELO_TYPE, prog[i]);
		switch (special) {
		case RELO_NONE:
			continue;
		case RELO_BR_REL:
			br_add_offset(&prog[i], bv->start_off);
			break;
		case RELO_BR_GO_OUT:
			br_set_offset(&prog[i],
				      nfp_prog->tgt_out + bv->start_off);
			break;
		case RELO_BR_GO_ABORT:
			br_set_offset(&prog[i],
				      nfp_prog->tgt_abort + bv->start_off);
			break;
		case RELO_BR_NEXT_PKT:
			br_set_offset(&prog[i], bv->tgt_done);
			break;
		}

		prog[i] &= ~OP_RELO_TYPE;
	}

	err = nfp_bpf_ustore_calc(prog, nfp_prog->prog_len);
	if (err)
		goto err_free_prog;

	return prog;

err_free_prog:
	kfree(prog);
	return ERR_PTR(err);
}