162306a36Sopenharmony_ci// SPDX-License-Identifier: GPL-2.0
262306a36Sopenharmony_ci#include <linux/moduleloader.h>
362306a36Sopenharmony_ci#include <linux/workqueue.h>
462306a36Sopenharmony_ci#include <linux/netdevice.h>
562306a36Sopenharmony_ci#include <linux/filter.h>
662306a36Sopenharmony_ci#include <linux/bpf.h>
762306a36Sopenharmony_ci#include <linux/cache.h>
862306a36Sopenharmony_ci#include <linux/if_vlan.h>
962306a36Sopenharmony_ci
1062306a36Sopenharmony_ci#include <asm/cacheflush.h>
1162306a36Sopenharmony_ci#include <asm/ptrace.h>
1262306a36Sopenharmony_ci
1362306a36Sopenharmony_ci#include "bpf_jit_64.h"
1462306a36Sopenharmony_ci
1562306a36Sopenharmony_cistatic inline bool is_simm13(unsigned int value)
1662306a36Sopenharmony_ci{
1762306a36Sopenharmony_ci	return value + 0x1000 < 0x2000;
1862306a36Sopenharmony_ci}
1962306a36Sopenharmony_ci
2062306a36Sopenharmony_cistatic inline bool is_simm10(unsigned int value)
2162306a36Sopenharmony_ci{
2262306a36Sopenharmony_ci	return value + 0x200 < 0x400;
2362306a36Sopenharmony_ci}
2462306a36Sopenharmony_ci
2562306a36Sopenharmony_cistatic inline bool is_simm5(unsigned int value)
2662306a36Sopenharmony_ci{
2762306a36Sopenharmony_ci	return value + 0x10 < 0x20;
2862306a36Sopenharmony_ci}
2962306a36Sopenharmony_ci
3062306a36Sopenharmony_cistatic inline bool is_sethi(unsigned int value)
3162306a36Sopenharmony_ci{
3262306a36Sopenharmony_ci	return (value & ~0x3fffff) == 0;
3362306a36Sopenharmony_ci}
3462306a36Sopenharmony_ci
3562306a36Sopenharmony_cistatic void bpf_flush_icache(void *start_, void *end_)
3662306a36Sopenharmony_ci{
3762306a36Sopenharmony_ci	/* Cheetah's I-cache is fully coherent.  */
3862306a36Sopenharmony_ci	if (tlb_type == spitfire) {
3962306a36Sopenharmony_ci		unsigned long start = (unsigned long) start_;
4062306a36Sopenharmony_ci		unsigned long end = (unsigned long) end_;
4162306a36Sopenharmony_ci
4262306a36Sopenharmony_ci		start &= ~7UL;
4362306a36Sopenharmony_ci		end = (end + 7UL) & ~7UL;
4462306a36Sopenharmony_ci		while (start < end) {
4562306a36Sopenharmony_ci			flushi(start);
4662306a36Sopenharmony_ci			start += 32;
4762306a36Sopenharmony_ci		}
4862306a36Sopenharmony_ci	}
4962306a36Sopenharmony_ci}
5062306a36Sopenharmony_ci
5162306a36Sopenharmony_ci#define S13(X)		((X) & 0x1fff)
5262306a36Sopenharmony_ci#define S5(X)		((X) & 0x1f)
5362306a36Sopenharmony_ci#define IMMED		0x00002000
5462306a36Sopenharmony_ci#define RD(X)		((X) << 25)
5562306a36Sopenharmony_ci#define RS1(X)		((X) << 14)
5662306a36Sopenharmony_ci#define RS2(X)		((X))
5762306a36Sopenharmony_ci#define OP(X)		((X) << 30)
5862306a36Sopenharmony_ci#define OP2(X)		((X) << 22)
5962306a36Sopenharmony_ci#define OP3(X)		((X) << 19)
6062306a36Sopenharmony_ci#define COND(X)		(((X) & 0xf) << 25)
6162306a36Sopenharmony_ci#define CBCOND(X)	(((X) & 0x1f) << 25)
6262306a36Sopenharmony_ci#define F1(X)		OP(X)
6362306a36Sopenharmony_ci#define F2(X, Y)	(OP(X) | OP2(Y))
6462306a36Sopenharmony_ci#define F3(X, Y)	(OP(X) | OP3(Y))
6562306a36Sopenharmony_ci#define ASI(X)		(((X) & 0xff) << 5)
6662306a36Sopenharmony_ci
6762306a36Sopenharmony_ci#define CONDN		COND(0x0)
6862306a36Sopenharmony_ci#define CONDE		COND(0x1)
6962306a36Sopenharmony_ci#define CONDLE		COND(0x2)
7062306a36Sopenharmony_ci#define CONDL		COND(0x3)
7162306a36Sopenharmony_ci#define CONDLEU		COND(0x4)
7262306a36Sopenharmony_ci#define CONDCS		COND(0x5)
7362306a36Sopenharmony_ci#define CONDNEG		COND(0x6)
7462306a36Sopenharmony_ci#define CONDVC		COND(0x7)
7562306a36Sopenharmony_ci#define CONDA		COND(0x8)
7662306a36Sopenharmony_ci#define CONDNE		COND(0x9)
7762306a36Sopenharmony_ci#define CONDG		COND(0xa)
7862306a36Sopenharmony_ci#define CONDGE		COND(0xb)
7962306a36Sopenharmony_ci#define CONDGU		COND(0xc)
8062306a36Sopenharmony_ci#define CONDCC		COND(0xd)
8162306a36Sopenharmony_ci#define CONDPOS		COND(0xe)
8262306a36Sopenharmony_ci#define CONDVS		COND(0xf)
8362306a36Sopenharmony_ci
8462306a36Sopenharmony_ci#define CONDGEU		CONDCC
8562306a36Sopenharmony_ci#define CONDLU		CONDCS
8662306a36Sopenharmony_ci
8762306a36Sopenharmony_ci#define WDISP22(X)	(((X) >> 2) & 0x3fffff)
8862306a36Sopenharmony_ci#define WDISP19(X)	(((X) >> 2) & 0x7ffff)
8962306a36Sopenharmony_ci
9062306a36Sopenharmony_ci/* The 10-bit branch displacement for CBCOND is split into two fields */
9162306a36Sopenharmony_cistatic u32 WDISP10(u32 off)
9262306a36Sopenharmony_ci{
9362306a36Sopenharmony_ci	u32 ret = ((off >> 2) & 0xff) << 5;
9462306a36Sopenharmony_ci
9562306a36Sopenharmony_ci	ret |= ((off >> (2 + 8)) & 0x03) << 19;
9662306a36Sopenharmony_ci
9762306a36Sopenharmony_ci	return ret;
9862306a36Sopenharmony_ci}
9962306a36Sopenharmony_ci
10062306a36Sopenharmony_ci#define CBCONDE		CBCOND(0x09)
10162306a36Sopenharmony_ci#define CBCONDLE	CBCOND(0x0a)
10262306a36Sopenharmony_ci#define CBCONDL		CBCOND(0x0b)
10362306a36Sopenharmony_ci#define CBCONDLEU	CBCOND(0x0c)
10462306a36Sopenharmony_ci#define CBCONDCS	CBCOND(0x0d)
10562306a36Sopenharmony_ci#define CBCONDN		CBCOND(0x0e)
10662306a36Sopenharmony_ci#define CBCONDVS	CBCOND(0x0f)
10762306a36Sopenharmony_ci#define CBCONDNE	CBCOND(0x19)
10862306a36Sopenharmony_ci#define CBCONDG		CBCOND(0x1a)
10962306a36Sopenharmony_ci#define CBCONDGE	CBCOND(0x1b)
11062306a36Sopenharmony_ci#define CBCONDGU	CBCOND(0x1c)
11162306a36Sopenharmony_ci#define CBCONDCC	CBCOND(0x1d)
11262306a36Sopenharmony_ci#define CBCONDPOS	CBCOND(0x1e)
11362306a36Sopenharmony_ci#define CBCONDVC	CBCOND(0x1f)
11462306a36Sopenharmony_ci
11562306a36Sopenharmony_ci#define CBCONDGEU	CBCONDCC
11662306a36Sopenharmony_ci#define CBCONDLU	CBCONDCS
11762306a36Sopenharmony_ci
11862306a36Sopenharmony_ci#define ANNUL		(1 << 29)
11962306a36Sopenharmony_ci#define XCC		(1 << 21)
12062306a36Sopenharmony_ci
12162306a36Sopenharmony_ci#define BRANCH		(F2(0, 1) | XCC)
12262306a36Sopenharmony_ci#define CBCOND_OP	(F2(0, 3) | XCC)
12362306a36Sopenharmony_ci
12462306a36Sopenharmony_ci#define BA		(BRANCH | CONDA)
12562306a36Sopenharmony_ci#define BG		(BRANCH | CONDG)
12662306a36Sopenharmony_ci#define BL		(BRANCH | CONDL)
12762306a36Sopenharmony_ci#define BLE		(BRANCH | CONDLE)
12862306a36Sopenharmony_ci#define BGU		(BRANCH | CONDGU)
12962306a36Sopenharmony_ci#define BLEU		(BRANCH | CONDLEU)
13062306a36Sopenharmony_ci#define BGE		(BRANCH | CONDGE)
13162306a36Sopenharmony_ci#define BGEU		(BRANCH | CONDGEU)
13262306a36Sopenharmony_ci#define BLU		(BRANCH | CONDLU)
13362306a36Sopenharmony_ci#define BE		(BRANCH | CONDE)
13462306a36Sopenharmony_ci#define BNE		(BRANCH | CONDNE)
13562306a36Sopenharmony_ci
13662306a36Sopenharmony_ci#define SETHI(K, REG)	\
13762306a36Sopenharmony_ci	(F2(0, 0x4) | RD(REG) | (((K) >> 10) & 0x3fffff))
13862306a36Sopenharmony_ci#define OR_LO(K, REG)	\
13962306a36Sopenharmony_ci	(F3(2, 0x02) | IMMED | RS1(REG) | ((K) & 0x3ff) | RD(REG))
14062306a36Sopenharmony_ci
14162306a36Sopenharmony_ci#define ADD		F3(2, 0x00)
14262306a36Sopenharmony_ci#define AND		F3(2, 0x01)
14362306a36Sopenharmony_ci#define ANDCC		F3(2, 0x11)
14462306a36Sopenharmony_ci#define OR		F3(2, 0x02)
14562306a36Sopenharmony_ci#define XOR		F3(2, 0x03)
14662306a36Sopenharmony_ci#define SUB		F3(2, 0x04)
14762306a36Sopenharmony_ci#define SUBCC		F3(2, 0x14)
14862306a36Sopenharmony_ci#define MUL		F3(2, 0x0a)
14962306a36Sopenharmony_ci#define MULX		F3(2, 0x09)
15062306a36Sopenharmony_ci#define UDIVX		F3(2, 0x0d)
15162306a36Sopenharmony_ci#define DIV		F3(2, 0x0e)
15262306a36Sopenharmony_ci#define SLL		F3(2, 0x25)
15362306a36Sopenharmony_ci#define SLLX		(F3(2, 0x25)|(1<<12))
15462306a36Sopenharmony_ci#define SRA		F3(2, 0x27)
15562306a36Sopenharmony_ci#define SRAX		(F3(2, 0x27)|(1<<12))
15662306a36Sopenharmony_ci#define SRL		F3(2, 0x26)
15762306a36Sopenharmony_ci#define SRLX		(F3(2, 0x26)|(1<<12))
15862306a36Sopenharmony_ci#define JMPL		F3(2, 0x38)
15962306a36Sopenharmony_ci#define SAVE		F3(2, 0x3c)
16062306a36Sopenharmony_ci#define RESTORE		F3(2, 0x3d)
16162306a36Sopenharmony_ci#define CALL		F1(1)
16262306a36Sopenharmony_ci#define BR		F2(0, 0x01)
16362306a36Sopenharmony_ci#define RD_Y		F3(2, 0x28)
16462306a36Sopenharmony_ci#define WR_Y		F3(2, 0x30)
16562306a36Sopenharmony_ci
16662306a36Sopenharmony_ci#define LD32		F3(3, 0x00)
16762306a36Sopenharmony_ci#define LD8		F3(3, 0x01)
16862306a36Sopenharmony_ci#define LD16		F3(3, 0x02)
16962306a36Sopenharmony_ci#define LD64		F3(3, 0x0b)
17062306a36Sopenharmony_ci#define LD64A		F3(3, 0x1b)
17162306a36Sopenharmony_ci#define ST8		F3(3, 0x05)
17262306a36Sopenharmony_ci#define ST16		F3(3, 0x06)
17362306a36Sopenharmony_ci#define ST32		F3(3, 0x04)
17462306a36Sopenharmony_ci#define ST64		F3(3, 0x0e)
17562306a36Sopenharmony_ci
17662306a36Sopenharmony_ci#define CAS		F3(3, 0x3c)
17762306a36Sopenharmony_ci#define CASX		F3(3, 0x3e)
17862306a36Sopenharmony_ci
17962306a36Sopenharmony_ci#define LDPTR		LD64
18062306a36Sopenharmony_ci#define BASE_STACKFRAME	176
18162306a36Sopenharmony_ci
18262306a36Sopenharmony_ci#define LD32I		(LD32 | IMMED)
18362306a36Sopenharmony_ci#define LD8I		(LD8 | IMMED)
18462306a36Sopenharmony_ci#define LD16I		(LD16 | IMMED)
18562306a36Sopenharmony_ci#define LD64I		(LD64 | IMMED)
18662306a36Sopenharmony_ci#define LDPTRI		(LDPTR | IMMED)
18762306a36Sopenharmony_ci#define ST32I		(ST32 | IMMED)
18862306a36Sopenharmony_ci
18962306a36Sopenharmony_cistruct jit_ctx {
19062306a36Sopenharmony_ci	struct bpf_prog		*prog;
19162306a36Sopenharmony_ci	unsigned int		*offset;
19262306a36Sopenharmony_ci	int			idx;
19362306a36Sopenharmony_ci	int			epilogue_offset;
19462306a36Sopenharmony_ci	bool 			tmp_1_used;
19562306a36Sopenharmony_ci	bool 			tmp_2_used;
19662306a36Sopenharmony_ci	bool 			tmp_3_used;
19762306a36Sopenharmony_ci	bool			saw_frame_pointer;
19862306a36Sopenharmony_ci	bool			saw_call;
19962306a36Sopenharmony_ci	bool			saw_tail_call;
20062306a36Sopenharmony_ci	u32			*image;
20162306a36Sopenharmony_ci};
20262306a36Sopenharmony_ci
20362306a36Sopenharmony_ci#define TMP_REG_1	(MAX_BPF_JIT_REG + 0)
20462306a36Sopenharmony_ci#define TMP_REG_2	(MAX_BPF_JIT_REG + 1)
20562306a36Sopenharmony_ci#define TMP_REG_3	(MAX_BPF_JIT_REG + 2)
20662306a36Sopenharmony_ci
20762306a36Sopenharmony_ci/* Map BPF registers to SPARC registers */
20862306a36Sopenharmony_cistatic const int bpf2sparc[] = {
20962306a36Sopenharmony_ci	/* return value from in-kernel function, and exit value from eBPF */
21062306a36Sopenharmony_ci	[BPF_REG_0] = O5,
21162306a36Sopenharmony_ci
21262306a36Sopenharmony_ci	/* arguments from eBPF program to in-kernel function */
21362306a36Sopenharmony_ci	[BPF_REG_1] = O0,
21462306a36Sopenharmony_ci	[BPF_REG_2] = O1,
21562306a36Sopenharmony_ci	[BPF_REG_3] = O2,
21662306a36Sopenharmony_ci	[BPF_REG_4] = O3,
21762306a36Sopenharmony_ci	[BPF_REG_5] = O4,
21862306a36Sopenharmony_ci
21962306a36Sopenharmony_ci	/* callee saved registers that in-kernel function will preserve */
22062306a36Sopenharmony_ci	[BPF_REG_6] = L0,
22162306a36Sopenharmony_ci	[BPF_REG_7] = L1,
22262306a36Sopenharmony_ci	[BPF_REG_8] = L2,
22362306a36Sopenharmony_ci	[BPF_REG_9] = L3,
22462306a36Sopenharmony_ci
22562306a36Sopenharmony_ci	/* read-only frame pointer to access stack */
22662306a36Sopenharmony_ci	[BPF_REG_FP] = L6,
22762306a36Sopenharmony_ci
22862306a36Sopenharmony_ci	[BPF_REG_AX] = G7,
22962306a36Sopenharmony_ci
23062306a36Sopenharmony_ci	/* temporary register for BPF JIT */
23162306a36Sopenharmony_ci	[TMP_REG_1] = G1,
23262306a36Sopenharmony_ci	[TMP_REG_2] = G2,
23362306a36Sopenharmony_ci	[TMP_REG_3] = G3,
23462306a36Sopenharmony_ci};
23562306a36Sopenharmony_ci
23662306a36Sopenharmony_cistatic void emit(const u32 insn, struct jit_ctx *ctx)
23762306a36Sopenharmony_ci{
23862306a36Sopenharmony_ci	if (ctx->image != NULL)
23962306a36Sopenharmony_ci		ctx->image[ctx->idx] = insn;
24062306a36Sopenharmony_ci
24162306a36Sopenharmony_ci	ctx->idx++;
24262306a36Sopenharmony_ci}
24362306a36Sopenharmony_ci
24462306a36Sopenharmony_cistatic void emit_call(u32 *func, struct jit_ctx *ctx)
24562306a36Sopenharmony_ci{
24662306a36Sopenharmony_ci	if (ctx->image != NULL) {
24762306a36Sopenharmony_ci		void *here = &ctx->image[ctx->idx];
24862306a36Sopenharmony_ci		unsigned int off;
24962306a36Sopenharmony_ci
25062306a36Sopenharmony_ci		off = (void *)func - here;
25162306a36Sopenharmony_ci		ctx->image[ctx->idx] = CALL | ((off >> 2) & 0x3fffffff);
25262306a36Sopenharmony_ci	}
25362306a36Sopenharmony_ci	ctx->idx++;
25462306a36Sopenharmony_ci}
25562306a36Sopenharmony_ci
25662306a36Sopenharmony_cistatic void emit_nop(struct jit_ctx *ctx)
25762306a36Sopenharmony_ci{
25862306a36Sopenharmony_ci	emit(SETHI(0, G0), ctx);
25962306a36Sopenharmony_ci}
26062306a36Sopenharmony_ci
26162306a36Sopenharmony_cistatic void emit_reg_move(u32 from, u32 to, struct jit_ctx *ctx)
26262306a36Sopenharmony_ci{
26362306a36Sopenharmony_ci	emit(OR | RS1(G0) | RS2(from) | RD(to), ctx);
26462306a36Sopenharmony_ci}
26562306a36Sopenharmony_ci
26662306a36Sopenharmony_ci/* Emit 32-bit constant, zero extended. */
26762306a36Sopenharmony_cistatic void emit_set_const(s32 K, u32 reg, struct jit_ctx *ctx)
26862306a36Sopenharmony_ci{
26962306a36Sopenharmony_ci	emit(SETHI(K, reg), ctx);
27062306a36Sopenharmony_ci	emit(OR_LO(K, reg), ctx);
27162306a36Sopenharmony_ci}
27262306a36Sopenharmony_ci
27362306a36Sopenharmony_ci/* Emit 32-bit constant, sign extended. */
27462306a36Sopenharmony_cistatic void emit_set_const_sext(s32 K, u32 reg, struct jit_ctx *ctx)
27562306a36Sopenharmony_ci{
27662306a36Sopenharmony_ci	if (K >= 0) {
27762306a36Sopenharmony_ci		emit(SETHI(K, reg), ctx);
27862306a36Sopenharmony_ci		emit(OR_LO(K, reg), ctx);
27962306a36Sopenharmony_ci	} else {
28062306a36Sopenharmony_ci		u32 hbits = ~(u32) K;
28162306a36Sopenharmony_ci		u32 lbits = -0x400 | (u32) K;
28262306a36Sopenharmony_ci
28362306a36Sopenharmony_ci		emit(SETHI(hbits, reg), ctx);
28462306a36Sopenharmony_ci		emit(XOR | IMMED | RS1(reg) | S13(lbits) | RD(reg), ctx);
28562306a36Sopenharmony_ci	}
28662306a36Sopenharmony_ci}
28762306a36Sopenharmony_ci
28862306a36Sopenharmony_cistatic void emit_alu(u32 opcode, u32 src, u32 dst, struct jit_ctx *ctx)
28962306a36Sopenharmony_ci{
29062306a36Sopenharmony_ci	emit(opcode | RS1(dst) | RS2(src) | RD(dst), ctx);
29162306a36Sopenharmony_ci}
29262306a36Sopenharmony_ci
29362306a36Sopenharmony_cistatic void emit_alu3(u32 opcode, u32 a, u32 b, u32 c, struct jit_ctx *ctx)
29462306a36Sopenharmony_ci{
29562306a36Sopenharmony_ci	emit(opcode | RS1(a) | RS2(b) | RD(c), ctx);
29662306a36Sopenharmony_ci}
29762306a36Sopenharmony_ci
29862306a36Sopenharmony_cistatic void emit_alu_K(unsigned int opcode, unsigned int dst, unsigned int imm,
29962306a36Sopenharmony_ci		       struct jit_ctx *ctx)
30062306a36Sopenharmony_ci{
30162306a36Sopenharmony_ci	bool small_immed = is_simm13(imm);
30262306a36Sopenharmony_ci	unsigned int insn = opcode;
30362306a36Sopenharmony_ci
30462306a36Sopenharmony_ci	insn |= RS1(dst) | RD(dst);
30562306a36Sopenharmony_ci	if (small_immed) {
30662306a36Sopenharmony_ci		emit(insn | IMMED | S13(imm), ctx);
30762306a36Sopenharmony_ci	} else {
30862306a36Sopenharmony_ci		unsigned int tmp = bpf2sparc[TMP_REG_1];
30962306a36Sopenharmony_ci
31062306a36Sopenharmony_ci		ctx->tmp_1_used = true;
31162306a36Sopenharmony_ci
31262306a36Sopenharmony_ci		emit_set_const_sext(imm, tmp, ctx);
31362306a36Sopenharmony_ci		emit(insn | RS2(tmp), ctx);
31462306a36Sopenharmony_ci	}
31562306a36Sopenharmony_ci}
31662306a36Sopenharmony_ci
31762306a36Sopenharmony_cistatic void emit_alu3_K(unsigned int opcode, unsigned int src, unsigned int imm,
31862306a36Sopenharmony_ci			unsigned int dst, struct jit_ctx *ctx)
31962306a36Sopenharmony_ci{
32062306a36Sopenharmony_ci	bool small_immed = is_simm13(imm);
32162306a36Sopenharmony_ci	unsigned int insn = opcode;
32262306a36Sopenharmony_ci
32362306a36Sopenharmony_ci	insn |= RS1(src) | RD(dst);
32462306a36Sopenharmony_ci	if (small_immed) {
32562306a36Sopenharmony_ci		emit(insn | IMMED | S13(imm), ctx);
32662306a36Sopenharmony_ci	} else {
32762306a36Sopenharmony_ci		unsigned int tmp = bpf2sparc[TMP_REG_1];
32862306a36Sopenharmony_ci
32962306a36Sopenharmony_ci		ctx->tmp_1_used = true;
33062306a36Sopenharmony_ci
33162306a36Sopenharmony_ci		emit_set_const_sext(imm, tmp, ctx);
33262306a36Sopenharmony_ci		emit(insn | RS2(tmp), ctx);
33362306a36Sopenharmony_ci	}
33462306a36Sopenharmony_ci}
33562306a36Sopenharmony_ci
33662306a36Sopenharmony_cistatic void emit_loadimm32(s32 K, unsigned int dest, struct jit_ctx *ctx)
33762306a36Sopenharmony_ci{
33862306a36Sopenharmony_ci	if (K >= 0 && is_simm13(K)) {
33962306a36Sopenharmony_ci		/* or %g0, K, DEST */
34062306a36Sopenharmony_ci		emit(OR | IMMED | RS1(G0) | S13(K) | RD(dest), ctx);
34162306a36Sopenharmony_ci	} else {
34262306a36Sopenharmony_ci		emit_set_const(K, dest, ctx);
34362306a36Sopenharmony_ci	}
34462306a36Sopenharmony_ci}
34562306a36Sopenharmony_ci
34662306a36Sopenharmony_cistatic void emit_loadimm(s32 K, unsigned int dest, struct jit_ctx *ctx)
34762306a36Sopenharmony_ci{
34862306a36Sopenharmony_ci	if (is_simm13(K)) {
34962306a36Sopenharmony_ci		/* or %g0, K, DEST */
35062306a36Sopenharmony_ci		emit(OR | IMMED | RS1(G0) | S13(K) | RD(dest), ctx);
35162306a36Sopenharmony_ci	} else {
35262306a36Sopenharmony_ci		emit_set_const(K, dest, ctx);
35362306a36Sopenharmony_ci	}
35462306a36Sopenharmony_ci}
35562306a36Sopenharmony_ci
35662306a36Sopenharmony_cistatic void emit_loadimm_sext(s32 K, unsigned int dest, struct jit_ctx *ctx)
35762306a36Sopenharmony_ci{
35862306a36Sopenharmony_ci	if (is_simm13(K)) {
35962306a36Sopenharmony_ci		/* or %g0, K, DEST */
36062306a36Sopenharmony_ci		emit(OR | IMMED | RS1(G0) | S13(K) | RD(dest), ctx);
36162306a36Sopenharmony_ci	} else {
36262306a36Sopenharmony_ci		emit_set_const_sext(K, dest, ctx);
36362306a36Sopenharmony_ci	}
36462306a36Sopenharmony_ci}
36562306a36Sopenharmony_ci
36662306a36Sopenharmony_cistatic void analyze_64bit_constant(u32 high_bits, u32 low_bits,
36762306a36Sopenharmony_ci				   int *hbsp, int *lbsp, int *abbasp)
36862306a36Sopenharmony_ci{
36962306a36Sopenharmony_ci	int lowest_bit_set, highest_bit_set, all_bits_between_are_set;
37062306a36Sopenharmony_ci	int i;
37162306a36Sopenharmony_ci
37262306a36Sopenharmony_ci	lowest_bit_set = highest_bit_set = -1;
37362306a36Sopenharmony_ci	i = 0;
37462306a36Sopenharmony_ci	do {
37562306a36Sopenharmony_ci		if ((lowest_bit_set == -1) && ((low_bits >> i) & 1))
37662306a36Sopenharmony_ci			lowest_bit_set = i;
37762306a36Sopenharmony_ci		if ((highest_bit_set == -1) && ((high_bits >> (32 - i - 1)) & 1))
37862306a36Sopenharmony_ci			highest_bit_set = (64 - i - 1);
37962306a36Sopenharmony_ci	}  while (++i < 32 && (highest_bit_set == -1 ||
38062306a36Sopenharmony_ci			       lowest_bit_set == -1));
38162306a36Sopenharmony_ci	if (i == 32) {
38262306a36Sopenharmony_ci		i = 0;
38362306a36Sopenharmony_ci		do {
38462306a36Sopenharmony_ci			if (lowest_bit_set == -1 && ((high_bits >> i) & 1))
38562306a36Sopenharmony_ci				lowest_bit_set = i + 32;
38662306a36Sopenharmony_ci			if (highest_bit_set == -1 &&
38762306a36Sopenharmony_ci			    ((low_bits >> (32 - i - 1)) & 1))
38862306a36Sopenharmony_ci				highest_bit_set = 32 - i - 1;
38962306a36Sopenharmony_ci		} while (++i < 32 && (highest_bit_set == -1 ||
39062306a36Sopenharmony_ci				      lowest_bit_set == -1));
39162306a36Sopenharmony_ci	}
39262306a36Sopenharmony_ci
39362306a36Sopenharmony_ci	all_bits_between_are_set = 1;
39462306a36Sopenharmony_ci	for (i = lowest_bit_set; i <= highest_bit_set; i++) {
39562306a36Sopenharmony_ci		if (i < 32) {
39662306a36Sopenharmony_ci			if ((low_bits & (1 << i)) != 0)
39762306a36Sopenharmony_ci				continue;
39862306a36Sopenharmony_ci		} else {
39962306a36Sopenharmony_ci			if ((high_bits & (1 << (i - 32))) != 0)
40062306a36Sopenharmony_ci				continue;
40162306a36Sopenharmony_ci		}
40262306a36Sopenharmony_ci		all_bits_between_are_set = 0;
40362306a36Sopenharmony_ci		break;
40462306a36Sopenharmony_ci	}
40562306a36Sopenharmony_ci	*hbsp = highest_bit_set;
40662306a36Sopenharmony_ci	*lbsp = lowest_bit_set;
40762306a36Sopenharmony_ci	*abbasp = all_bits_between_are_set;
40862306a36Sopenharmony_ci}
40962306a36Sopenharmony_ci
41062306a36Sopenharmony_cistatic unsigned long create_simple_focus_bits(unsigned long high_bits,
41162306a36Sopenharmony_ci					      unsigned long low_bits,
41262306a36Sopenharmony_ci					      int lowest_bit_set, int shift)
41362306a36Sopenharmony_ci{
41462306a36Sopenharmony_ci	long hi, lo;
41562306a36Sopenharmony_ci
41662306a36Sopenharmony_ci	if (lowest_bit_set < 32) {
41762306a36Sopenharmony_ci		lo = (low_bits >> lowest_bit_set) << shift;
41862306a36Sopenharmony_ci		hi = ((high_bits << (32 - lowest_bit_set)) << shift);
41962306a36Sopenharmony_ci	} else {
42062306a36Sopenharmony_ci		lo = 0;
42162306a36Sopenharmony_ci		hi = ((high_bits >> (lowest_bit_set - 32)) << shift);
42262306a36Sopenharmony_ci	}
42362306a36Sopenharmony_ci	return hi | lo;
42462306a36Sopenharmony_ci}
42562306a36Sopenharmony_ci
42662306a36Sopenharmony_cistatic bool const64_is_2insns(unsigned long high_bits,
42762306a36Sopenharmony_ci			      unsigned long low_bits)
42862306a36Sopenharmony_ci{
42962306a36Sopenharmony_ci	int highest_bit_set, lowest_bit_set, all_bits_between_are_set;
43062306a36Sopenharmony_ci
43162306a36Sopenharmony_ci	if (high_bits == 0 || high_bits == 0xffffffff)
43262306a36Sopenharmony_ci		return true;
43362306a36Sopenharmony_ci
43462306a36Sopenharmony_ci	analyze_64bit_constant(high_bits, low_bits,
43562306a36Sopenharmony_ci			       &highest_bit_set, &lowest_bit_set,
43662306a36Sopenharmony_ci			       &all_bits_between_are_set);
43762306a36Sopenharmony_ci
43862306a36Sopenharmony_ci	if ((highest_bit_set == 63 || lowest_bit_set == 0) &&
43962306a36Sopenharmony_ci	    all_bits_between_are_set != 0)
44062306a36Sopenharmony_ci		return true;
44162306a36Sopenharmony_ci
44262306a36Sopenharmony_ci	if (highest_bit_set - lowest_bit_set < 21)
44362306a36Sopenharmony_ci		return true;
44462306a36Sopenharmony_ci
44562306a36Sopenharmony_ci	return false;
44662306a36Sopenharmony_ci}
44762306a36Sopenharmony_ci
44862306a36Sopenharmony_cistatic void sparc_emit_set_const64_quick2(unsigned long high_bits,
44962306a36Sopenharmony_ci					  unsigned long low_imm,
45062306a36Sopenharmony_ci					  unsigned int dest,
45162306a36Sopenharmony_ci					  int shift_count, struct jit_ctx *ctx)
45262306a36Sopenharmony_ci{
45362306a36Sopenharmony_ci	emit_loadimm32(high_bits, dest, ctx);
45462306a36Sopenharmony_ci
45562306a36Sopenharmony_ci	/* Now shift it up into place.  */
45662306a36Sopenharmony_ci	emit_alu_K(SLLX, dest, shift_count, ctx);
45762306a36Sopenharmony_ci
45862306a36Sopenharmony_ci	/* If there is a low immediate part piece, finish up by
45962306a36Sopenharmony_ci	 * putting that in as well.
46062306a36Sopenharmony_ci	 */
46162306a36Sopenharmony_ci	if (low_imm != 0)
46262306a36Sopenharmony_ci		emit(OR | IMMED | RS1(dest) | S13(low_imm) | RD(dest), ctx);
46362306a36Sopenharmony_ci}
46462306a36Sopenharmony_ci
46562306a36Sopenharmony_cistatic void emit_loadimm64(u64 K, unsigned int dest, struct jit_ctx *ctx)
46662306a36Sopenharmony_ci{
46762306a36Sopenharmony_ci	int all_bits_between_are_set, lowest_bit_set, highest_bit_set;
46862306a36Sopenharmony_ci	unsigned int tmp = bpf2sparc[TMP_REG_1];
46962306a36Sopenharmony_ci	u32 low_bits = (K & 0xffffffff);
47062306a36Sopenharmony_ci	u32 high_bits = (K >> 32);
47162306a36Sopenharmony_ci
47262306a36Sopenharmony_ci	/* These two tests also take care of all of the one
47362306a36Sopenharmony_ci	 * instruction cases.
47462306a36Sopenharmony_ci	 */
47562306a36Sopenharmony_ci	if (high_bits == 0xffffffff && (low_bits & 0x80000000))
47662306a36Sopenharmony_ci		return emit_loadimm_sext(K, dest, ctx);
47762306a36Sopenharmony_ci	if (high_bits == 0x00000000)
47862306a36Sopenharmony_ci		return emit_loadimm32(K, dest, ctx);
47962306a36Sopenharmony_ci
48062306a36Sopenharmony_ci	analyze_64bit_constant(high_bits, low_bits, &highest_bit_set,
48162306a36Sopenharmony_ci			       &lowest_bit_set, &all_bits_between_are_set);
48262306a36Sopenharmony_ci
48362306a36Sopenharmony_ci	/* 1) mov	-1, %reg
48462306a36Sopenharmony_ci	 *    sllx	%reg, shift, %reg
48562306a36Sopenharmony_ci	 * 2) mov	-1, %reg
48662306a36Sopenharmony_ci	 *    srlx	%reg, shift, %reg
48762306a36Sopenharmony_ci	 * 3) mov	some_small_const, %reg
48862306a36Sopenharmony_ci	 *    sllx	%reg, shift, %reg
48962306a36Sopenharmony_ci	 */
49062306a36Sopenharmony_ci	if (((highest_bit_set == 63 || lowest_bit_set == 0) &&
49162306a36Sopenharmony_ci	     all_bits_between_are_set != 0) ||
49262306a36Sopenharmony_ci	    ((highest_bit_set - lowest_bit_set) < 12)) {
49362306a36Sopenharmony_ci		int shift = lowest_bit_set;
49462306a36Sopenharmony_ci		long the_const = -1;
49562306a36Sopenharmony_ci
49662306a36Sopenharmony_ci		if ((highest_bit_set != 63 && lowest_bit_set != 0) ||
49762306a36Sopenharmony_ci		    all_bits_between_are_set == 0) {
49862306a36Sopenharmony_ci			the_const =
49962306a36Sopenharmony_ci				create_simple_focus_bits(high_bits, low_bits,
50062306a36Sopenharmony_ci							 lowest_bit_set, 0);
50162306a36Sopenharmony_ci		} else if (lowest_bit_set == 0)
50262306a36Sopenharmony_ci			shift = -(63 - highest_bit_set);
50362306a36Sopenharmony_ci
50462306a36Sopenharmony_ci		emit(OR | IMMED | RS1(G0) | S13(the_const) | RD(dest), ctx);
50562306a36Sopenharmony_ci		if (shift > 0)
50662306a36Sopenharmony_ci			emit_alu_K(SLLX, dest, shift, ctx);
50762306a36Sopenharmony_ci		else if (shift < 0)
50862306a36Sopenharmony_ci			emit_alu_K(SRLX, dest, -shift, ctx);
50962306a36Sopenharmony_ci
51062306a36Sopenharmony_ci		return;
51162306a36Sopenharmony_ci	}
51262306a36Sopenharmony_ci
51362306a36Sopenharmony_ci	/* Now a range of 22 or less bits set somewhere.
51462306a36Sopenharmony_ci	 * 1) sethi	%hi(focus_bits), %reg
51562306a36Sopenharmony_ci	 *    sllx	%reg, shift, %reg
51662306a36Sopenharmony_ci	 * 2) sethi	%hi(focus_bits), %reg
51762306a36Sopenharmony_ci	 *    srlx	%reg, shift, %reg
51862306a36Sopenharmony_ci	 */
51962306a36Sopenharmony_ci	if ((highest_bit_set - lowest_bit_set) < 21) {
52062306a36Sopenharmony_ci		unsigned long focus_bits =
52162306a36Sopenharmony_ci			create_simple_focus_bits(high_bits, low_bits,
52262306a36Sopenharmony_ci						 lowest_bit_set, 10);
52362306a36Sopenharmony_ci
52462306a36Sopenharmony_ci		emit(SETHI(focus_bits, dest), ctx);
52562306a36Sopenharmony_ci
52662306a36Sopenharmony_ci		/* If lowest_bit_set == 10 then a sethi alone could
52762306a36Sopenharmony_ci		 * have done it.
52862306a36Sopenharmony_ci		 */
52962306a36Sopenharmony_ci		if (lowest_bit_set < 10)
53062306a36Sopenharmony_ci			emit_alu_K(SRLX, dest, 10 - lowest_bit_set, ctx);
53162306a36Sopenharmony_ci		else if (lowest_bit_set > 10)
53262306a36Sopenharmony_ci			emit_alu_K(SLLX, dest, lowest_bit_set - 10, ctx);
53362306a36Sopenharmony_ci		return;
53462306a36Sopenharmony_ci	}
53562306a36Sopenharmony_ci
53662306a36Sopenharmony_ci	/* Ok, now 3 instruction sequences.  */
53762306a36Sopenharmony_ci	if (low_bits == 0) {
53862306a36Sopenharmony_ci		emit_loadimm32(high_bits, dest, ctx);
53962306a36Sopenharmony_ci		emit_alu_K(SLLX, dest, 32, ctx);
54062306a36Sopenharmony_ci		return;
54162306a36Sopenharmony_ci	}
54262306a36Sopenharmony_ci
54362306a36Sopenharmony_ci	/* We may be able to do something quick
54462306a36Sopenharmony_ci	 * when the constant is negated, so try that.
54562306a36Sopenharmony_ci	 */
54662306a36Sopenharmony_ci	if (const64_is_2insns((~high_bits) & 0xffffffff,
54762306a36Sopenharmony_ci			      (~low_bits) & 0xfffffc00)) {
54862306a36Sopenharmony_ci		/* NOTE: The trailing bits get XOR'd so we need the
54962306a36Sopenharmony_ci		 * non-negated bits, not the negated ones.
55062306a36Sopenharmony_ci		 */
55162306a36Sopenharmony_ci		unsigned long trailing_bits = low_bits & 0x3ff;
55262306a36Sopenharmony_ci
55362306a36Sopenharmony_ci		if ((((~high_bits) & 0xffffffff) == 0 &&
55462306a36Sopenharmony_ci		     ((~low_bits) & 0x80000000) == 0) ||
55562306a36Sopenharmony_ci		    (((~high_bits) & 0xffffffff) == 0xffffffff &&
55662306a36Sopenharmony_ci		     ((~low_bits) & 0x80000000) != 0)) {
55762306a36Sopenharmony_ci			unsigned long fast_int = (~low_bits & 0xffffffff);
55862306a36Sopenharmony_ci
55962306a36Sopenharmony_ci			if ((is_sethi(fast_int) &&
56062306a36Sopenharmony_ci			     (~high_bits & 0xffffffff) == 0)) {
56162306a36Sopenharmony_ci				emit(SETHI(fast_int, dest), ctx);
56262306a36Sopenharmony_ci			} else if (is_simm13(fast_int)) {
56362306a36Sopenharmony_ci				emit(OR | IMMED | RS1(G0) | S13(fast_int) | RD(dest), ctx);
56462306a36Sopenharmony_ci			} else {
56562306a36Sopenharmony_ci				emit_loadimm64(fast_int, dest, ctx);
56662306a36Sopenharmony_ci			}
56762306a36Sopenharmony_ci		} else {
56862306a36Sopenharmony_ci			u64 n = ((~low_bits) & 0xfffffc00) |
56962306a36Sopenharmony_ci				(((unsigned long)((~high_bits) & 0xffffffff))<<32);
57062306a36Sopenharmony_ci			emit_loadimm64(n, dest, ctx);
57162306a36Sopenharmony_ci		}
57262306a36Sopenharmony_ci
57362306a36Sopenharmony_ci		low_bits = -0x400 | trailing_bits;
57462306a36Sopenharmony_ci
57562306a36Sopenharmony_ci		emit(XOR | IMMED | RS1(dest) | S13(low_bits) | RD(dest), ctx);
57662306a36Sopenharmony_ci		return;
57762306a36Sopenharmony_ci	}
57862306a36Sopenharmony_ci
57962306a36Sopenharmony_ci	/* 1) sethi	%hi(xxx), %reg
58062306a36Sopenharmony_ci	 *    or	%reg, %lo(xxx), %reg
58162306a36Sopenharmony_ci	 *    sllx	%reg, yyy, %reg
58262306a36Sopenharmony_ci	 */
58362306a36Sopenharmony_ci	if ((highest_bit_set - lowest_bit_set) < 32) {
58462306a36Sopenharmony_ci		unsigned long focus_bits =
58562306a36Sopenharmony_ci			create_simple_focus_bits(high_bits, low_bits,
58662306a36Sopenharmony_ci						 lowest_bit_set, 0);
58762306a36Sopenharmony_ci
58862306a36Sopenharmony_ci		/* So what we know is that the set bits straddle the
58962306a36Sopenharmony_ci		 * middle of the 64-bit word.
59062306a36Sopenharmony_ci		 */
59162306a36Sopenharmony_ci		sparc_emit_set_const64_quick2(focus_bits, 0, dest,
59262306a36Sopenharmony_ci					      lowest_bit_set, ctx);
59362306a36Sopenharmony_ci		return;
59462306a36Sopenharmony_ci	}
59562306a36Sopenharmony_ci
59662306a36Sopenharmony_ci	/* 1) sethi	%hi(high_bits), %reg
59762306a36Sopenharmony_ci	 *    or	%reg, %lo(high_bits), %reg
59862306a36Sopenharmony_ci	 *    sllx	%reg, 32, %reg
59962306a36Sopenharmony_ci	 *    or	%reg, low_bits, %reg
60062306a36Sopenharmony_ci	 */
60162306a36Sopenharmony_ci	if (is_simm13(low_bits) && ((int)low_bits > 0)) {
60262306a36Sopenharmony_ci		sparc_emit_set_const64_quick2(high_bits, low_bits,
60362306a36Sopenharmony_ci					      dest, 32, ctx);
60462306a36Sopenharmony_ci		return;
60562306a36Sopenharmony_ci	}
60662306a36Sopenharmony_ci
60762306a36Sopenharmony_ci	/* Oh well, we tried... Do a full 64-bit decomposition.  */
60862306a36Sopenharmony_ci	ctx->tmp_1_used = true;
60962306a36Sopenharmony_ci
61062306a36Sopenharmony_ci	emit_loadimm32(high_bits, tmp, ctx);
61162306a36Sopenharmony_ci	emit_loadimm32(low_bits, dest, ctx);
61262306a36Sopenharmony_ci	emit_alu_K(SLLX, tmp, 32, ctx);
61362306a36Sopenharmony_ci	emit(OR | RS1(dest) | RS2(tmp) | RD(dest), ctx);
61462306a36Sopenharmony_ci}
61562306a36Sopenharmony_ci
61662306a36Sopenharmony_cistatic void emit_branch(unsigned int br_opc, unsigned int from_idx, unsigned int to_idx,
61762306a36Sopenharmony_ci			struct jit_ctx *ctx)
61862306a36Sopenharmony_ci{
61962306a36Sopenharmony_ci	unsigned int off = to_idx - from_idx;
62062306a36Sopenharmony_ci
62162306a36Sopenharmony_ci	if (br_opc & XCC)
62262306a36Sopenharmony_ci		emit(br_opc | WDISP19(off << 2), ctx);
62362306a36Sopenharmony_ci	else
62462306a36Sopenharmony_ci		emit(br_opc | WDISP22(off << 2), ctx);
62562306a36Sopenharmony_ci}
62662306a36Sopenharmony_ci
62762306a36Sopenharmony_cistatic void emit_cbcond(unsigned int cb_opc, unsigned int from_idx, unsigned int to_idx,
62862306a36Sopenharmony_ci			const u8 dst, const u8 src, struct jit_ctx *ctx)
62962306a36Sopenharmony_ci{
63062306a36Sopenharmony_ci	unsigned int off = to_idx - from_idx;
63162306a36Sopenharmony_ci
63262306a36Sopenharmony_ci	emit(cb_opc | WDISP10(off << 2) | RS1(dst) | RS2(src), ctx);
63362306a36Sopenharmony_ci}
63462306a36Sopenharmony_ci
63562306a36Sopenharmony_cistatic void emit_cbcondi(unsigned int cb_opc, unsigned int from_idx, unsigned int to_idx,
63662306a36Sopenharmony_ci			 const u8 dst, s32 imm, struct jit_ctx *ctx)
63762306a36Sopenharmony_ci{
63862306a36Sopenharmony_ci	unsigned int off = to_idx - from_idx;
63962306a36Sopenharmony_ci
64062306a36Sopenharmony_ci	emit(cb_opc | IMMED | WDISP10(off << 2) | RS1(dst) | S5(imm), ctx);
64162306a36Sopenharmony_ci}
64262306a36Sopenharmony_ci
64362306a36Sopenharmony_ci#define emit_read_y(REG, CTX)	emit(RD_Y | RD(REG), CTX)
64462306a36Sopenharmony_ci#define emit_write_y(REG, CTX)	emit(WR_Y | IMMED | RS1(REG) | S13(0), CTX)
64562306a36Sopenharmony_ci
64662306a36Sopenharmony_ci#define emit_cmp(R1, R2, CTX)				\
64762306a36Sopenharmony_ci	emit(SUBCC | RS1(R1) | RS2(R2) | RD(G0), CTX)
64862306a36Sopenharmony_ci
64962306a36Sopenharmony_ci#define emit_cmpi(R1, IMM, CTX)				\
65062306a36Sopenharmony_ci	emit(SUBCC | IMMED | RS1(R1) | S13(IMM) | RD(G0), CTX)
65162306a36Sopenharmony_ci
65262306a36Sopenharmony_ci#define emit_btst(R1, R2, CTX)				\
65362306a36Sopenharmony_ci	emit(ANDCC | RS1(R1) | RS2(R2) | RD(G0), CTX)
65462306a36Sopenharmony_ci
65562306a36Sopenharmony_ci#define emit_btsti(R1, IMM, CTX)			\
65662306a36Sopenharmony_ci	emit(ANDCC | IMMED | RS1(R1) | S13(IMM) | RD(G0), CTX)
65762306a36Sopenharmony_ci
65862306a36Sopenharmony_cistatic int emit_compare_and_branch(const u8 code, const u8 dst, u8 src,
65962306a36Sopenharmony_ci				   const s32 imm, bool is_imm, int branch_dst,
66062306a36Sopenharmony_ci				   struct jit_ctx *ctx)
66162306a36Sopenharmony_ci{
66262306a36Sopenharmony_ci	bool use_cbcond = (sparc64_elf_hwcap & AV_SPARC_CBCOND) != 0;
66362306a36Sopenharmony_ci	const u8 tmp = bpf2sparc[TMP_REG_1];
66462306a36Sopenharmony_ci
66562306a36Sopenharmony_ci	branch_dst = ctx->offset[branch_dst];
66662306a36Sopenharmony_ci
66762306a36Sopenharmony_ci	if (!is_simm10(branch_dst - ctx->idx) ||
66862306a36Sopenharmony_ci	    BPF_OP(code) == BPF_JSET)
66962306a36Sopenharmony_ci		use_cbcond = false;
67062306a36Sopenharmony_ci
67162306a36Sopenharmony_ci	if (is_imm) {
67262306a36Sopenharmony_ci		bool fits = true;
67362306a36Sopenharmony_ci
67462306a36Sopenharmony_ci		if (use_cbcond) {
67562306a36Sopenharmony_ci			if (!is_simm5(imm))
67662306a36Sopenharmony_ci				fits = false;
67762306a36Sopenharmony_ci		} else if (!is_simm13(imm)) {
67862306a36Sopenharmony_ci			fits = false;
67962306a36Sopenharmony_ci		}
68062306a36Sopenharmony_ci		if (!fits) {
68162306a36Sopenharmony_ci			ctx->tmp_1_used = true;
68262306a36Sopenharmony_ci			emit_loadimm_sext(imm, tmp, ctx);
68362306a36Sopenharmony_ci			src = tmp;
68462306a36Sopenharmony_ci			is_imm = false;
68562306a36Sopenharmony_ci		}
68662306a36Sopenharmony_ci	}
68762306a36Sopenharmony_ci
68862306a36Sopenharmony_ci	if (!use_cbcond) {
68962306a36Sopenharmony_ci		u32 br_opcode;
69062306a36Sopenharmony_ci
69162306a36Sopenharmony_ci		if (BPF_OP(code) == BPF_JSET) {
69262306a36Sopenharmony_ci			if (is_imm)
69362306a36Sopenharmony_ci				emit_btsti(dst, imm, ctx);
69462306a36Sopenharmony_ci			else
69562306a36Sopenharmony_ci				emit_btst(dst, src, ctx);
69662306a36Sopenharmony_ci		} else {
69762306a36Sopenharmony_ci			if (is_imm)
69862306a36Sopenharmony_ci				emit_cmpi(dst, imm, ctx);
69962306a36Sopenharmony_ci			else
70062306a36Sopenharmony_ci				emit_cmp(dst, src, ctx);
70162306a36Sopenharmony_ci		}
70262306a36Sopenharmony_ci		switch (BPF_OP(code)) {
70362306a36Sopenharmony_ci		case BPF_JEQ:
70462306a36Sopenharmony_ci			br_opcode = BE;
70562306a36Sopenharmony_ci			break;
70662306a36Sopenharmony_ci		case BPF_JGT:
70762306a36Sopenharmony_ci			br_opcode = BGU;
70862306a36Sopenharmony_ci			break;
70962306a36Sopenharmony_ci		case BPF_JLT:
71062306a36Sopenharmony_ci			br_opcode = BLU;
71162306a36Sopenharmony_ci			break;
71262306a36Sopenharmony_ci		case BPF_JGE:
71362306a36Sopenharmony_ci			br_opcode = BGEU;
71462306a36Sopenharmony_ci			break;
71562306a36Sopenharmony_ci		case BPF_JLE:
71662306a36Sopenharmony_ci			br_opcode = BLEU;
71762306a36Sopenharmony_ci			break;
71862306a36Sopenharmony_ci		case BPF_JSET:
71962306a36Sopenharmony_ci		case BPF_JNE:
72062306a36Sopenharmony_ci			br_opcode = BNE;
72162306a36Sopenharmony_ci			break;
72262306a36Sopenharmony_ci		case BPF_JSGT:
72362306a36Sopenharmony_ci			br_opcode = BG;
72462306a36Sopenharmony_ci			break;
72562306a36Sopenharmony_ci		case BPF_JSLT:
72662306a36Sopenharmony_ci			br_opcode = BL;
72762306a36Sopenharmony_ci			break;
72862306a36Sopenharmony_ci		case BPF_JSGE:
72962306a36Sopenharmony_ci			br_opcode = BGE;
73062306a36Sopenharmony_ci			break;
73162306a36Sopenharmony_ci		case BPF_JSLE:
73262306a36Sopenharmony_ci			br_opcode = BLE;
73362306a36Sopenharmony_ci			break;
73462306a36Sopenharmony_ci		default:
73562306a36Sopenharmony_ci			/* Make sure we dont leak kernel information to the
73662306a36Sopenharmony_ci			 * user.
73762306a36Sopenharmony_ci			 */
73862306a36Sopenharmony_ci			return -EFAULT;
73962306a36Sopenharmony_ci		}
74062306a36Sopenharmony_ci		emit_branch(br_opcode, ctx->idx, branch_dst, ctx);
74162306a36Sopenharmony_ci		emit_nop(ctx);
74262306a36Sopenharmony_ci	} else {
74362306a36Sopenharmony_ci		u32 cbcond_opcode;
74462306a36Sopenharmony_ci
74562306a36Sopenharmony_ci		switch (BPF_OP(code)) {
74662306a36Sopenharmony_ci		case BPF_JEQ:
74762306a36Sopenharmony_ci			cbcond_opcode = CBCONDE;
74862306a36Sopenharmony_ci			break;
74962306a36Sopenharmony_ci		case BPF_JGT:
75062306a36Sopenharmony_ci			cbcond_opcode = CBCONDGU;
75162306a36Sopenharmony_ci			break;
75262306a36Sopenharmony_ci		case BPF_JLT:
75362306a36Sopenharmony_ci			cbcond_opcode = CBCONDLU;
75462306a36Sopenharmony_ci			break;
75562306a36Sopenharmony_ci		case BPF_JGE:
75662306a36Sopenharmony_ci			cbcond_opcode = CBCONDGEU;
75762306a36Sopenharmony_ci			break;
75862306a36Sopenharmony_ci		case BPF_JLE:
75962306a36Sopenharmony_ci			cbcond_opcode = CBCONDLEU;
76062306a36Sopenharmony_ci			break;
76162306a36Sopenharmony_ci		case BPF_JNE:
76262306a36Sopenharmony_ci			cbcond_opcode = CBCONDNE;
76362306a36Sopenharmony_ci			break;
76462306a36Sopenharmony_ci		case BPF_JSGT:
76562306a36Sopenharmony_ci			cbcond_opcode = CBCONDG;
76662306a36Sopenharmony_ci			break;
76762306a36Sopenharmony_ci		case BPF_JSLT:
76862306a36Sopenharmony_ci			cbcond_opcode = CBCONDL;
76962306a36Sopenharmony_ci			break;
77062306a36Sopenharmony_ci		case BPF_JSGE:
77162306a36Sopenharmony_ci			cbcond_opcode = CBCONDGE;
77262306a36Sopenharmony_ci			break;
77362306a36Sopenharmony_ci		case BPF_JSLE:
77462306a36Sopenharmony_ci			cbcond_opcode = CBCONDLE;
77562306a36Sopenharmony_ci			break;
77662306a36Sopenharmony_ci		default:
77762306a36Sopenharmony_ci			/* Make sure we dont leak kernel information to the
77862306a36Sopenharmony_ci			 * user.
77962306a36Sopenharmony_ci			 */
78062306a36Sopenharmony_ci			return -EFAULT;
78162306a36Sopenharmony_ci		}
78262306a36Sopenharmony_ci		cbcond_opcode |= CBCOND_OP;
78362306a36Sopenharmony_ci		if (is_imm)
78462306a36Sopenharmony_ci			emit_cbcondi(cbcond_opcode, ctx->idx, branch_dst,
78562306a36Sopenharmony_ci				     dst, imm, ctx);
78662306a36Sopenharmony_ci		else
78762306a36Sopenharmony_ci			emit_cbcond(cbcond_opcode, ctx->idx, branch_dst,
78862306a36Sopenharmony_ci				    dst, src, ctx);
78962306a36Sopenharmony_ci	}
79062306a36Sopenharmony_ci	return 0;
79162306a36Sopenharmony_ci}
79262306a36Sopenharmony_ci
79362306a36Sopenharmony_ci/* Just skip the save instruction and the ctx register move.  */
79462306a36Sopenharmony_ci#define BPF_TAILCALL_PROLOGUE_SKIP	32
79562306a36Sopenharmony_ci#define BPF_TAILCALL_CNT_SP_OFF		(STACK_BIAS + 128)
79662306a36Sopenharmony_ci
79762306a36Sopenharmony_cistatic void build_prologue(struct jit_ctx *ctx)
79862306a36Sopenharmony_ci{
79962306a36Sopenharmony_ci	s32 stack_needed = BASE_STACKFRAME;
80062306a36Sopenharmony_ci
80162306a36Sopenharmony_ci	if (ctx->saw_frame_pointer || ctx->saw_tail_call) {
80262306a36Sopenharmony_ci		struct bpf_prog *prog = ctx->prog;
80362306a36Sopenharmony_ci		u32 stack_depth;
80462306a36Sopenharmony_ci
80562306a36Sopenharmony_ci		stack_depth = prog->aux->stack_depth;
80662306a36Sopenharmony_ci		stack_needed += round_up(stack_depth, 16);
80762306a36Sopenharmony_ci	}
80862306a36Sopenharmony_ci
80962306a36Sopenharmony_ci	if (ctx->saw_tail_call)
81062306a36Sopenharmony_ci		stack_needed += 8;
81162306a36Sopenharmony_ci
81262306a36Sopenharmony_ci	/* save %sp, -176, %sp */
81362306a36Sopenharmony_ci	emit(SAVE | IMMED | RS1(SP) | S13(-stack_needed) | RD(SP), ctx);
81462306a36Sopenharmony_ci
81562306a36Sopenharmony_ci	/* tail_call_cnt = 0 */
81662306a36Sopenharmony_ci	if (ctx->saw_tail_call) {
81762306a36Sopenharmony_ci		u32 off = BPF_TAILCALL_CNT_SP_OFF;
81862306a36Sopenharmony_ci
81962306a36Sopenharmony_ci		emit(ST32 | IMMED | RS1(SP) | S13(off) | RD(G0), ctx);
82062306a36Sopenharmony_ci	} else {
82162306a36Sopenharmony_ci		emit_nop(ctx);
82262306a36Sopenharmony_ci	}
82362306a36Sopenharmony_ci	if (ctx->saw_frame_pointer) {
82462306a36Sopenharmony_ci		const u8 vfp = bpf2sparc[BPF_REG_FP];
82562306a36Sopenharmony_ci
82662306a36Sopenharmony_ci		emit(ADD | IMMED | RS1(FP) | S13(STACK_BIAS) | RD(vfp), ctx);
82762306a36Sopenharmony_ci	} else {
82862306a36Sopenharmony_ci		emit_nop(ctx);
82962306a36Sopenharmony_ci	}
83062306a36Sopenharmony_ci
83162306a36Sopenharmony_ci	emit_reg_move(I0, O0, ctx);
83262306a36Sopenharmony_ci	emit_reg_move(I1, O1, ctx);
83362306a36Sopenharmony_ci	emit_reg_move(I2, O2, ctx);
83462306a36Sopenharmony_ci	emit_reg_move(I3, O3, ctx);
83562306a36Sopenharmony_ci	emit_reg_move(I4, O4, ctx);
83662306a36Sopenharmony_ci	/* If you add anything here, adjust BPF_TAILCALL_PROLOGUE_SKIP above. */
83762306a36Sopenharmony_ci}
83862306a36Sopenharmony_ci
83962306a36Sopenharmony_cistatic void build_epilogue(struct jit_ctx *ctx)
84062306a36Sopenharmony_ci{
84162306a36Sopenharmony_ci	ctx->epilogue_offset = ctx->idx;
84262306a36Sopenharmony_ci
84362306a36Sopenharmony_ci	/* ret (jmpl %i7 + 8, %g0) */
84462306a36Sopenharmony_ci	emit(JMPL | IMMED | RS1(I7) | S13(8) | RD(G0), ctx);
84562306a36Sopenharmony_ci
84662306a36Sopenharmony_ci	/* restore %i5, %g0, %o0 */
84762306a36Sopenharmony_ci	emit(RESTORE | RS1(bpf2sparc[BPF_REG_0]) | RS2(G0) | RD(O0), ctx);
84862306a36Sopenharmony_ci}
84962306a36Sopenharmony_ci
85062306a36Sopenharmony_cistatic void emit_tail_call(struct jit_ctx *ctx)
85162306a36Sopenharmony_ci{
85262306a36Sopenharmony_ci	const u8 bpf_array = bpf2sparc[BPF_REG_2];
85362306a36Sopenharmony_ci	const u8 bpf_index = bpf2sparc[BPF_REG_3];
85462306a36Sopenharmony_ci	const u8 tmp = bpf2sparc[TMP_REG_1];
85562306a36Sopenharmony_ci	u32 off;
85662306a36Sopenharmony_ci
85762306a36Sopenharmony_ci	ctx->saw_tail_call = true;
85862306a36Sopenharmony_ci
85962306a36Sopenharmony_ci	off = offsetof(struct bpf_array, map.max_entries);
86062306a36Sopenharmony_ci	emit(LD32 | IMMED | RS1(bpf_array) | S13(off) | RD(tmp), ctx);
86162306a36Sopenharmony_ci	emit_cmp(bpf_index, tmp, ctx);
86262306a36Sopenharmony_ci#define OFFSET1 17
86362306a36Sopenharmony_ci	emit_branch(BGEU, ctx->idx, ctx->idx + OFFSET1, ctx);
86462306a36Sopenharmony_ci	emit_nop(ctx);
86562306a36Sopenharmony_ci
86662306a36Sopenharmony_ci	off = BPF_TAILCALL_CNT_SP_OFF;
86762306a36Sopenharmony_ci	emit(LD32 | IMMED | RS1(SP) | S13(off) | RD(tmp), ctx);
86862306a36Sopenharmony_ci	emit_cmpi(tmp, MAX_TAIL_CALL_CNT, ctx);
86962306a36Sopenharmony_ci#define OFFSET2 13
87062306a36Sopenharmony_ci	emit_branch(BGEU, ctx->idx, ctx->idx + OFFSET2, ctx);
87162306a36Sopenharmony_ci	emit_nop(ctx);
87262306a36Sopenharmony_ci
87362306a36Sopenharmony_ci	emit_alu_K(ADD, tmp, 1, ctx);
87462306a36Sopenharmony_ci	off = BPF_TAILCALL_CNT_SP_OFF;
87562306a36Sopenharmony_ci	emit(ST32 | IMMED | RS1(SP) | S13(off) | RD(tmp), ctx);
87662306a36Sopenharmony_ci
87762306a36Sopenharmony_ci	emit_alu3_K(SLL, bpf_index, 3, tmp, ctx);
87862306a36Sopenharmony_ci	emit_alu(ADD, bpf_array, tmp, ctx);
87962306a36Sopenharmony_ci	off = offsetof(struct bpf_array, ptrs);
88062306a36Sopenharmony_ci	emit(LD64 | IMMED | RS1(tmp) | S13(off) | RD(tmp), ctx);
88162306a36Sopenharmony_ci
88262306a36Sopenharmony_ci	emit_cmpi(tmp, 0, ctx);
88362306a36Sopenharmony_ci#define OFFSET3 5
88462306a36Sopenharmony_ci	emit_branch(BE, ctx->idx, ctx->idx + OFFSET3, ctx);
88562306a36Sopenharmony_ci	emit_nop(ctx);
88662306a36Sopenharmony_ci
88762306a36Sopenharmony_ci	off = offsetof(struct bpf_prog, bpf_func);
88862306a36Sopenharmony_ci	emit(LD64 | IMMED | RS1(tmp) | S13(off) | RD(tmp), ctx);
88962306a36Sopenharmony_ci
89062306a36Sopenharmony_ci	off = BPF_TAILCALL_PROLOGUE_SKIP;
89162306a36Sopenharmony_ci	emit(JMPL | IMMED | RS1(tmp) | S13(off) | RD(G0), ctx);
89262306a36Sopenharmony_ci	emit_nop(ctx);
89362306a36Sopenharmony_ci}
89462306a36Sopenharmony_ci
89562306a36Sopenharmony_cistatic int build_insn(const struct bpf_insn *insn, struct jit_ctx *ctx)
89662306a36Sopenharmony_ci{
89762306a36Sopenharmony_ci	const u8 code = insn->code;
89862306a36Sopenharmony_ci	const u8 dst = bpf2sparc[insn->dst_reg];
89962306a36Sopenharmony_ci	const u8 src = bpf2sparc[insn->src_reg];
90062306a36Sopenharmony_ci	const int i = insn - ctx->prog->insnsi;
90162306a36Sopenharmony_ci	const s16 off = insn->off;
90262306a36Sopenharmony_ci	const s32 imm = insn->imm;
90362306a36Sopenharmony_ci
90462306a36Sopenharmony_ci	if (insn->src_reg == BPF_REG_FP)
90562306a36Sopenharmony_ci		ctx->saw_frame_pointer = true;
90662306a36Sopenharmony_ci
90762306a36Sopenharmony_ci	switch (code) {
90862306a36Sopenharmony_ci	/* dst = src */
90962306a36Sopenharmony_ci	case BPF_ALU | BPF_MOV | BPF_X:
91062306a36Sopenharmony_ci		emit_alu3_K(SRL, src, 0, dst, ctx);
91162306a36Sopenharmony_ci		if (insn_is_zext(&insn[1]))
91262306a36Sopenharmony_ci			return 1;
91362306a36Sopenharmony_ci		break;
91462306a36Sopenharmony_ci	case BPF_ALU64 | BPF_MOV | BPF_X:
91562306a36Sopenharmony_ci		emit_reg_move(src, dst, ctx);
91662306a36Sopenharmony_ci		break;
91762306a36Sopenharmony_ci	/* dst = dst OP src */
91862306a36Sopenharmony_ci	case BPF_ALU | BPF_ADD | BPF_X:
91962306a36Sopenharmony_ci	case BPF_ALU64 | BPF_ADD | BPF_X:
92062306a36Sopenharmony_ci		emit_alu(ADD, src, dst, ctx);
92162306a36Sopenharmony_ci		goto do_alu32_trunc;
92262306a36Sopenharmony_ci	case BPF_ALU | BPF_SUB | BPF_X:
92362306a36Sopenharmony_ci	case BPF_ALU64 | BPF_SUB | BPF_X:
92462306a36Sopenharmony_ci		emit_alu(SUB, src, dst, ctx);
92562306a36Sopenharmony_ci		goto do_alu32_trunc;
92662306a36Sopenharmony_ci	case BPF_ALU | BPF_AND | BPF_X:
92762306a36Sopenharmony_ci	case BPF_ALU64 | BPF_AND | BPF_X:
92862306a36Sopenharmony_ci		emit_alu(AND, src, dst, ctx);
92962306a36Sopenharmony_ci		goto do_alu32_trunc;
93062306a36Sopenharmony_ci	case BPF_ALU | BPF_OR | BPF_X:
93162306a36Sopenharmony_ci	case BPF_ALU64 | BPF_OR | BPF_X:
93262306a36Sopenharmony_ci		emit_alu(OR, src, dst, ctx);
93362306a36Sopenharmony_ci		goto do_alu32_trunc;
93462306a36Sopenharmony_ci	case BPF_ALU | BPF_XOR | BPF_X:
93562306a36Sopenharmony_ci	case BPF_ALU64 | BPF_XOR | BPF_X:
93662306a36Sopenharmony_ci		emit_alu(XOR, src, dst, ctx);
93762306a36Sopenharmony_ci		goto do_alu32_trunc;
93862306a36Sopenharmony_ci	case BPF_ALU | BPF_MUL | BPF_X:
93962306a36Sopenharmony_ci		emit_alu(MUL, src, dst, ctx);
94062306a36Sopenharmony_ci		goto do_alu32_trunc;
94162306a36Sopenharmony_ci	case BPF_ALU64 | BPF_MUL | BPF_X:
94262306a36Sopenharmony_ci		emit_alu(MULX, src, dst, ctx);
94362306a36Sopenharmony_ci		break;
94462306a36Sopenharmony_ci	case BPF_ALU | BPF_DIV | BPF_X:
94562306a36Sopenharmony_ci		emit_write_y(G0, ctx);
94662306a36Sopenharmony_ci		emit_alu(DIV, src, dst, ctx);
94762306a36Sopenharmony_ci		if (insn_is_zext(&insn[1]))
94862306a36Sopenharmony_ci			return 1;
94962306a36Sopenharmony_ci		break;
95062306a36Sopenharmony_ci	case BPF_ALU64 | BPF_DIV | BPF_X:
95162306a36Sopenharmony_ci		emit_alu(UDIVX, src, dst, ctx);
95262306a36Sopenharmony_ci		break;
95362306a36Sopenharmony_ci	case BPF_ALU | BPF_MOD | BPF_X: {
95462306a36Sopenharmony_ci		const u8 tmp = bpf2sparc[TMP_REG_1];
95562306a36Sopenharmony_ci
95662306a36Sopenharmony_ci		ctx->tmp_1_used = true;
95762306a36Sopenharmony_ci
95862306a36Sopenharmony_ci		emit_write_y(G0, ctx);
95962306a36Sopenharmony_ci		emit_alu3(DIV, dst, src, tmp, ctx);
96062306a36Sopenharmony_ci		emit_alu3(MULX, tmp, src, tmp, ctx);
96162306a36Sopenharmony_ci		emit_alu3(SUB, dst, tmp, dst, ctx);
96262306a36Sopenharmony_ci		goto do_alu32_trunc;
96362306a36Sopenharmony_ci	}
96462306a36Sopenharmony_ci	case BPF_ALU64 | BPF_MOD | BPF_X: {
96562306a36Sopenharmony_ci		const u8 tmp = bpf2sparc[TMP_REG_1];
96662306a36Sopenharmony_ci
96762306a36Sopenharmony_ci		ctx->tmp_1_used = true;
96862306a36Sopenharmony_ci
96962306a36Sopenharmony_ci		emit_alu3(UDIVX, dst, src, tmp, ctx);
97062306a36Sopenharmony_ci		emit_alu3(MULX, tmp, src, tmp, ctx);
97162306a36Sopenharmony_ci		emit_alu3(SUB, dst, tmp, dst, ctx);
97262306a36Sopenharmony_ci		break;
97362306a36Sopenharmony_ci	}
97462306a36Sopenharmony_ci	case BPF_ALU | BPF_LSH | BPF_X:
97562306a36Sopenharmony_ci		emit_alu(SLL, src, dst, ctx);
97662306a36Sopenharmony_ci		goto do_alu32_trunc;
97762306a36Sopenharmony_ci	case BPF_ALU64 | BPF_LSH | BPF_X:
97862306a36Sopenharmony_ci		emit_alu(SLLX, src, dst, ctx);
97962306a36Sopenharmony_ci		break;
98062306a36Sopenharmony_ci	case BPF_ALU | BPF_RSH | BPF_X:
98162306a36Sopenharmony_ci		emit_alu(SRL, src, dst, ctx);
98262306a36Sopenharmony_ci		if (insn_is_zext(&insn[1]))
98362306a36Sopenharmony_ci			return 1;
98462306a36Sopenharmony_ci		break;
98562306a36Sopenharmony_ci	case BPF_ALU64 | BPF_RSH | BPF_X:
98662306a36Sopenharmony_ci		emit_alu(SRLX, src, dst, ctx);
98762306a36Sopenharmony_ci		break;
98862306a36Sopenharmony_ci	case BPF_ALU | BPF_ARSH | BPF_X:
98962306a36Sopenharmony_ci		emit_alu(SRA, src, dst, ctx);
99062306a36Sopenharmony_ci		goto do_alu32_trunc;
99162306a36Sopenharmony_ci	case BPF_ALU64 | BPF_ARSH | BPF_X:
99262306a36Sopenharmony_ci		emit_alu(SRAX, src, dst, ctx);
99362306a36Sopenharmony_ci		break;
99462306a36Sopenharmony_ci
99562306a36Sopenharmony_ci	/* dst = -dst */
99662306a36Sopenharmony_ci	case BPF_ALU | BPF_NEG:
99762306a36Sopenharmony_ci	case BPF_ALU64 | BPF_NEG:
99862306a36Sopenharmony_ci		emit(SUB | RS1(0) | RS2(dst) | RD(dst), ctx);
99962306a36Sopenharmony_ci		goto do_alu32_trunc;
100062306a36Sopenharmony_ci
100162306a36Sopenharmony_ci	case BPF_ALU | BPF_END | BPF_FROM_BE:
100262306a36Sopenharmony_ci		switch (imm) {
100362306a36Sopenharmony_ci		case 16:
100462306a36Sopenharmony_ci			emit_alu_K(SLL, dst, 16, ctx);
100562306a36Sopenharmony_ci			emit_alu_K(SRL, dst, 16, ctx);
100662306a36Sopenharmony_ci			if (insn_is_zext(&insn[1]))
100762306a36Sopenharmony_ci				return 1;
100862306a36Sopenharmony_ci			break;
100962306a36Sopenharmony_ci		case 32:
101062306a36Sopenharmony_ci			if (!ctx->prog->aux->verifier_zext)
101162306a36Sopenharmony_ci				emit_alu_K(SRL, dst, 0, ctx);
101262306a36Sopenharmony_ci			break;
101362306a36Sopenharmony_ci		case 64:
101462306a36Sopenharmony_ci			/* nop */
101562306a36Sopenharmony_ci			break;
101662306a36Sopenharmony_ci
101762306a36Sopenharmony_ci		}
101862306a36Sopenharmony_ci		break;
101962306a36Sopenharmony_ci
102062306a36Sopenharmony_ci	/* dst = BSWAP##imm(dst) */
102162306a36Sopenharmony_ci	case BPF_ALU | BPF_END | BPF_FROM_LE: {
102262306a36Sopenharmony_ci		const u8 tmp = bpf2sparc[TMP_REG_1];
102362306a36Sopenharmony_ci		const u8 tmp2 = bpf2sparc[TMP_REG_2];
102462306a36Sopenharmony_ci
102562306a36Sopenharmony_ci		ctx->tmp_1_used = true;
102662306a36Sopenharmony_ci		switch (imm) {
102762306a36Sopenharmony_ci		case 16:
102862306a36Sopenharmony_ci			emit_alu3_K(AND, dst, 0xff, tmp, ctx);
102962306a36Sopenharmony_ci			emit_alu3_K(SRL, dst, 8, dst, ctx);
103062306a36Sopenharmony_ci			emit_alu3_K(AND, dst, 0xff, dst, ctx);
103162306a36Sopenharmony_ci			emit_alu3_K(SLL, tmp, 8, tmp, ctx);
103262306a36Sopenharmony_ci			emit_alu(OR, tmp, dst, ctx);
103362306a36Sopenharmony_ci			if (insn_is_zext(&insn[1]))
103462306a36Sopenharmony_ci				return 1;
103562306a36Sopenharmony_ci			break;
103662306a36Sopenharmony_ci
103762306a36Sopenharmony_ci		case 32:
103862306a36Sopenharmony_ci			ctx->tmp_2_used = true;
103962306a36Sopenharmony_ci			emit_alu3_K(SRL, dst, 24, tmp, ctx);	/* tmp  = dst >> 24 */
104062306a36Sopenharmony_ci			emit_alu3_K(SRL, dst, 16, tmp2, ctx);	/* tmp2 = dst >> 16 */
104162306a36Sopenharmony_ci			emit_alu3_K(AND, tmp2, 0xff, tmp2, ctx);/* tmp2 = tmp2 & 0xff */
104262306a36Sopenharmony_ci			emit_alu3_K(SLL, tmp2, 8, tmp2, ctx);	/* tmp2 = tmp2 << 8 */
104362306a36Sopenharmony_ci			emit_alu(OR, tmp2, tmp, ctx);		/* tmp  = tmp | tmp2 */
104462306a36Sopenharmony_ci			emit_alu3_K(SRL, dst, 8, tmp2, ctx);	/* tmp2 = dst >> 8 */
104562306a36Sopenharmony_ci			emit_alu3_K(AND, tmp2, 0xff, tmp2, ctx);/* tmp2 = tmp2 & 0xff */
104662306a36Sopenharmony_ci			emit_alu3_K(SLL, tmp2, 16, tmp2, ctx);	/* tmp2 = tmp2 << 16 */
104762306a36Sopenharmony_ci			emit_alu(OR, tmp2, tmp, ctx);		/* tmp  = tmp | tmp2 */
104862306a36Sopenharmony_ci			emit_alu3_K(AND, dst, 0xff, dst, ctx);	/* dst	= dst & 0xff */
104962306a36Sopenharmony_ci			emit_alu3_K(SLL, dst, 24, dst, ctx);	/* dst  = dst << 24 */
105062306a36Sopenharmony_ci			emit_alu(OR, tmp, dst, ctx);		/* dst  = dst | tmp */
105162306a36Sopenharmony_ci			if (insn_is_zext(&insn[1]))
105262306a36Sopenharmony_ci				return 1;
105362306a36Sopenharmony_ci			break;
105462306a36Sopenharmony_ci
105562306a36Sopenharmony_ci		case 64:
105662306a36Sopenharmony_ci			emit_alu3_K(ADD, SP, STACK_BIAS + 128, tmp, ctx);
105762306a36Sopenharmony_ci			emit(ST64 | RS1(tmp) | RS2(G0) | RD(dst), ctx);
105862306a36Sopenharmony_ci			emit(LD64A | ASI(ASI_PL) | RS1(tmp) | RS2(G0) | RD(dst), ctx);
105962306a36Sopenharmony_ci			break;
106062306a36Sopenharmony_ci		}
106162306a36Sopenharmony_ci		break;
106262306a36Sopenharmony_ci	}
106362306a36Sopenharmony_ci	/* dst = imm */
106462306a36Sopenharmony_ci	case BPF_ALU | BPF_MOV | BPF_K:
106562306a36Sopenharmony_ci		emit_loadimm32(imm, dst, ctx);
106662306a36Sopenharmony_ci		if (insn_is_zext(&insn[1]))
106762306a36Sopenharmony_ci			return 1;
106862306a36Sopenharmony_ci		break;
106962306a36Sopenharmony_ci	case BPF_ALU64 | BPF_MOV | BPF_K:
107062306a36Sopenharmony_ci		emit_loadimm_sext(imm, dst, ctx);
107162306a36Sopenharmony_ci		break;
107262306a36Sopenharmony_ci	/* dst = dst OP imm */
107362306a36Sopenharmony_ci	case BPF_ALU | BPF_ADD | BPF_K:
107462306a36Sopenharmony_ci	case BPF_ALU64 | BPF_ADD | BPF_K:
107562306a36Sopenharmony_ci		emit_alu_K(ADD, dst, imm, ctx);
107662306a36Sopenharmony_ci		goto do_alu32_trunc;
107762306a36Sopenharmony_ci	case BPF_ALU | BPF_SUB | BPF_K:
107862306a36Sopenharmony_ci	case BPF_ALU64 | BPF_SUB | BPF_K:
107962306a36Sopenharmony_ci		emit_alu_K(SUB, dst, imm, ctx);
108062306a36Sopenharmony_ci		goto do_alu32_trunc;
108162306a36Sopenharmony_ci	case BPF_ALU | BPF_AND | BPF_K:
108262306a36Sopenharmony_ci	case BPF_ALU64 | BPF_AND | BPF_K:
108362306a36Sopenharmony_ci		emit_alu_K(AND, dst, imm, ctx);
108462306a36Sopenharmony_ci		goto do_alu32_trunc;
108562306a36Sopenharmony_ci	case BPF_ALU | BPF_OR | BPF_K:
108662306a36Sopenharmony_ci	case BPF_ALU64 | BPF_OR | BPF_K:
108762306a36Sopenharmony_ci		emit_alu_K(OR, dst, imm, ctx);
108862306a36Sopenharmony_ci		goto do_alu32_trunc;
108962306a36Sopenharmony_ci	case BPF_ALU | BPF_XOR | BPF_K:
109062306a36Sopenharmony_ci	case BPF_ALU64 | BPF_XOR | BPF_K:
109162306a36Sopenharmony_ci		emit_alu_K(XOR, dst, imm, ctx);
109262306a36Sopenharmony_ci		goto do_alu32_trunc;
109362306a36Sopenharmony_ci	case BPF_ALU | BPF_MUL | BPF_K:
109462306a36Sopenharmony_ci		emit_alu_K(MUL, dst, imm, ctx);
109562306a36Sopenharmony_ci		goto do_alu32_trunc;
109662306a36Sopenharmony_ci	case BPF_ALU64 | BPF_MUL | BPF_K:
109762306a36Sopenharmony_ci		emit_alu_K(MULX, dst, imm, ctx);
109862306a36Sopenharmony_ci		break;
109962306a36Sopenharmony_ci	case BPF_ALU | BPF_DIV | BPF_K:
110062306a36Sopenharmony_ci		if (imm == 0)
110162306a36Sopenharmony_ci			return -EINVAL;
110262306a36Sopenharmony_ci
110362306a36Sopenharmony_ci		emit_write_y(G0, ctx);
110462306a36Sopenharmony_ci		emit_alu_K(DIV, dst, imm, ctx);
110562306a36Sopenharmony_ci		goto do_alu32_trunc;
110662306a36Sopenharmony_ci	case BPF_ALU64 | BPF_DIV | BPF_K:
110762306a36Sopenharmony_ci		if (imm == 0)
110862306a36Sopenharmony_ci			return -EINVAL;
110962306a36Sopenharmony_ci
111062306a36Sopenharmony_ci		emit_alu_K(UDIVX, dst, imm, ctx);
111162306a36Sopenharmony_ci		break;
111262306a36Sopenharmony_ci	case BPF_ALU64 | BPF_MOD | BPF_K:
111362306a36Sopenharmony_ci	case BPF_ALU | BPF_MOD | BPF_K: {
111462306a36Sopenharmony_ci		const u8 tmp = bpf2sparc[TMP_REG_2];
111562306a36Sopenharmony_ci		unsigned int div;
111662306a36Sopenharmony_ci
111762306a36Sopenharmony_ci		if (imm == 0)
111862306a36Sopenharmony_ci			return -EINVAL;
111962306a36Sopenharmony_ci
112062306a36Sopenharmony_ci		div = (BPF_CLASS(code) == BPF_ALU64) ? UDIVX : DIV;
112162306a36Sopenharmony_ci
112262306a36Sopenharmony_ci		ctx->tmp_2_used = true;
112362306a36Sopenharmony_ci
112462306a36Sopenharmony_ci		if (BPF_CLASS(code) != BPF_ALU64)
112562306a36Sopenharmony_ci			emit_write_y(G0, ctx);
112662306a36Sopenharmony_ci		if (is_simm13(imm)) {
112762306a36Sopenharmony_ci			emit(div | IMMED | RS1(dst) | S13(imm) | RD(tmp), ctx);
112862306a36Sopenharmony_ci			emit(MULX | IMMED | RS1(tmp) | S13(imm) | RD(tmp), ctx);
112962306a36Sopenharmony_ci			emit(SUB | RS1(dst) | RS2(tmp) | RD(dst), ctx);
113062306a36Sopenharmony_ci		} else {
113162306a36Sopenharmony_ci			const u8 tmp1 = bpf2sparc[TMP_REG_1];
113262306a36Sopenharmony_ci
113362306a36Sopenharmony_ci			ctx->tmp_1_used = true;
113462306a36Sopenharmony_ci
113562306a36Sopenharmony_ci			emit_set_const_sext(imm, tmp1, ctx);
113662306a36Sopenharmony_ci			emit(div | RS1(dst) | RS2(tmp1) | RD(tmp), ctx);
113762306a36Sopenharmony_ci			emit(MULX | RS1(tmp) | RS2(tmp1) | RD(tmp), ctx);
113862306a36Sopenharmony_ci			emit(SUB | RS1(dst) | RS2(tmp) | RD(dst), ctx);
113962306a36Sopenharmony_ci		}
114062306a36Sopenharmony_ci		goto do_alu32_trunc;
114162306a36Sopenharmony_ci	}
114262306a36Sopenharmony_ci	case BPF_ALU | BPF_LSH | BPF_K:
114362306a36Sopenharmony_ci		emit_alu_K(SLL, dst, imm, ctx);
114462306a36Sopenharmony_ci		goto do_alu32_trunc;
114562306a36Sopenharmony_ci	case BPF_ALU64 | BPF_LSH | BPF_K:
114662306a36Sopenharmony_ci		emit_alu_K(SLLX, dst, imm, ctx);
114762306a36Sopenharmony_ci		break;
114862306a36Sopenharmony_ci	case BPF_ALU | BPF_RSH | BPF_K:
114962306a36Sopenharmony_ci		emit_alu_K(SRL, dst, imm, ctx);
115062306a36Sopenharmony_ci		if (insn_is_zext(&insn[1]))
115162306a36Sopenharmony_ci			return 1;
115262306a36Sopenharmony_ci		break;
115362306a36Sopenharmony_ci	case BPF_ALU64 | BPF_RSH | BPF_K:
115462306a36Sopenharmony_ci		emit_alu_K(SRLX, dst, imm, ctx);
115562306a36Sopenharmony_ci		break;
115662306a36Sopenharmony_ci	case BPF_ALU | BPF_ARSH | BPF_K:
115762306a36Sopenharmony_ci		emit_alu_K(SRA, dst, imm, ctx);
115862306a36Sopenharmony_ci		goto do_alu32_trunc;
115962306a36Sopenharmony_ci	case BPF_ALU64 | BPF_ARSH | BPF_K:
116062306a36Sopenharmony_ci		emit_alu_K(SRAX, dst, imm, ctx);
116162306a36Sopenharmony_ci		break;
116262306a36Sopenharmony_ci
116362306a36Sopenharmony_ci	do_alu32_trunc:
116462306a36Sopenharmony_ci		if (BPF_CLASS(code) == BPF_ALU &&
116562306a36Sopenharmony_ci		    !ctx->prog->aux->verifier_zext)
116662306a36Sopenharmony_ci			emit_alu_K(SRL, dst, 0, ctx);
116762306a36Sopenharmony_ci		break;
116862306a36Sopenharmony_ci
116962306a36Sopenharmony_ci	/* JUMP off */
117062306a36Sopenharmony_ci	case BPF_JMP | BPF_JA:
117162306a36Sopenharmony_ci		emit_branch(BA, ctx->idx, ctx->offset[i + off], ctx);
117262306a36Sopenharmony_ci		emit_nop(ctx);
117362306a36Sopenharmony_ci		break;
117462306a36Sopenharmony_ci	/* IF (dst COND src) JUMP off */
117562306a36Sopenharmony_ci	case BPF_JMP | BPF_JEQ | BPF_X:
117662306a36Sopenharmony_ci	case BPF_JMP | BPF_JGT | BPF_X:
117762306a36Sopenharmony_ci	case BPF_JMP | BPF_JLT | BPF_X:
117862306a36Sopenharmony_ci	case BPF_JMP | BPF_JGE | BPF_X:
117962306a36Sopenharmony_ci	case BPF_JMP | BPF_JLE | BPF_X:
118062306a36Sopenharmony_ci	case BPF_JMP | BPF_JNE | BPF_X:
118162306a36Sopenharmony_ci	case BPF_JMP | BPF_JSGT | BPF_X:
118262306a36Sopenharmony_ci	case BPF_JMP | BPF_JSLT | BPF_X:
118362306a36Sopenharmony_ci	case BPF_JMP | BPF_JSGE | BPF_X:
118462306a36Sopenharmony_ci	case BPF_JMP | BPF_JSLE | BPF_X:
118562306a36Sopenharmony_ci	case BPF_JMP | BPF_JSET | BPF_X: {
118662306a36Sopenharmony_ci		int err;
118762306a36Sopenharmony_ci
118862306a36Sopenharmony_ci		err = emit_compare_and_branch(code, dst, src, 0, false, i + off, ctx);
118962306a36Sopenharmony_ci		if (err)
119062306a36Sopenharmony_ci			return err;
119162306a36Sopenharmony_ci		break;
119262306a36Sopenharmony_ci	}
119362306a36Sopenharmony_ci	/* IF (dst COND imm) JUMP off */
119462306a36Sopenharmony_ci	case BPF_JMP | BPF_JEQ | BPF_K:
119562306a36Sopenharmony_ci	case BPF_JMP | BPF_JGT | BPF_K:
119662306a36Sopenharmony_ci	case BPF_JMP | BPF_JLT | BPF_K:
119762306a36Sopenharmony_ci	case BPF_JMP | BPF_JGE | BPF_K:
119862306a36Sopenharmony_ci	case BPF_JMP | BPF_JLE | BPF_K:
119962306a36Sopenharmony_ci	case BPF_JMP | BPF_JNE | BPF_K:
120062306a36Sopenharmony_ci	case BPF_JMP | BPF_JSGT | BPF_K:
120162306a36Sopenharmony_ci	case BPF_JMP | BPF_JSLT | BPF_K:
120262306a36Sopenharmony_ci	case BPF_JMP | BPF_JSGE | BPF_K:
120362306a36Sopenharmony_ci	case BPF_JMP | BPF_JSLE | BPF_K:
120462306a36Sopenharmony_ci	case BPF_JMP | BPF_JSET | BPF_K: {
120562306a36Sopenharmony_ci		int err;
120662306a36Sopenharmony_ci
120762306a36Sopenharmony_ci		err = emit_compare_and_branch(code, dst, 0, imm, true, i + off, ctx);
120862306a36Sopenharmony_ci		if (err)
120962306a36Sopenharmony_ci			return err;
121062306a36Sopenharmony_ci		break;
121162306a36Sopenharmony_ci	}
121262306a36Sopenharmony_ci
121362306a36Sopenharmony_ci	/* function call */
121462306a36Sopenharmony_ci	case BPF_JMP | BPF_CALL:
121562306a36Sopenharmony_ci	{
121662306a36Sopenharmony_ci		u8 *func = ((u8 *)__bpf_call_base) + imm;
121762306a36Sopenharmony_ci
121862306a36Sopenharmony_ci		ctx->saw_call = true;
121962306a36Sopenharmony_ci
122062306a36Sopenharmony_ci		emit_call((u32 *)func, ctx);
122162306a36Sopenharmony_ci		emit_nop(ctx);
122262306a36Sopenharmony_ci
122362306a36Sopenharmony_ci		emit_reg_move(O0, bpf2sparc[BPF_REG_0], ctx);
122462306a36Sopenharmony_ci		break;
122562306a36Sopenharmony_ci	}
122662306a36Sopenharmony_ci
122762306a36Sopenharmony_ci	/* tail call */
122862306a36Sopenharmony_ci	case BPF_JMP | BPF_TAIL_CALL:
122962306a36Sopenharmony_ci		emit_tail_call(ctx);
123062306a36Sopenharmony_ci		break;
123162306a36Sopenharmony_ci
123262306a36Sopenharmony_ci	/* function return */
123362306a36Sopenharmony_ci	case BPF_JMP | BPF_EXIT:
123462306a36Sopenharmony_ci		/* Optimization: when last instruction is EXIT,
123562306a36Sopenharmony_ci		   simply fallthrough to epilogue. */
123662306a36Sopenharmony_ci		if (i == ctx->prog->len - 1)
123762306a36Sopenharmony_ci			break;
123862306a36Sopenharmony_ci		emit_branch(BA, ctx->idx, ctx->epilogue_offset, ctx);
123962306a36Sopenharmony_ci		emit_nop(ctx);
124062306a36Sopenharmony_ci		break;
124162306a36Sopenharmony_ci
124262306a36Sopenharmony_ci	/* dst = imm64 */
124362306a36Sopenharmony_ci	case BPF_LD | BPF_IMM | BPF_DW:
124462306a36Sopenharmony_ci	{
124562306a36Sopenharmony_ci		const struct bpf_insn insn1 = insn[1];
124662306a36Sopenharmony_ci		u64 imm64;
124762306a36Sopenharmony_ci
124862306a36Sopenharmony_ci		imm64 = (u64)insn1.imm << 32 | (u32)imm;
124962306a36Sopenharmony_ci		emit_loadimm64(imm64, dst, ctx);
125062306a36Sopenharmony_ci
125162306a36Sopenharmony_ci		return 1;
125262306a36Sopenharmony_ci	}
125362306a36Sopenharmony_ci
125462306a36Sopenharmony_ci	/* LDX: dst = *(size *)(src + off) */
125562306a36Sopenharmony_ci	case BPF_LDX | BPF_MEM | BPF_W:
125662306a36Sopenharmony_ci	case BPF_LDX | BPF_MEM | BPF_H:
125762306a36Sopenharmony_ci	case BPF_LDX | BPF_MEM | BPF_B:
125862306a36Sopenharmony_ci	case BPF_LDX | BPF_MEM | BPF_DW: {
125962306a36Sopenharmony_ci		const u8 tmp = bpf2sparc[TMP_REG_1];
126062306a36Sopenharmony_ci		u32 opcode = 0, rs2;
126162306a36Sopenharmony_ci
126262306a36Sopenharmony_ci		ctx->tmp_1_used = true;
126362306a36Sopenharmony_ci		switch (BPF_SIZE(code)) {
126462306a36Sopenharmony_ci		case BPF_W:
126562306a36Sopenharmony_ci			opcode = LD32;
126662306a36Sopenharmony_ci			break;
126762306a36Sopenharmony_ci		case BPF_H:
126862306a36Sopenharmony_ci			opcode = LD16;
126962306a36Sopenharmony_ci			break;
127062306a36Sopenharmony_ci		case BPF_B:
127162306a36Sopenharmony_ci			opcode = LD8;
127262306a36Sopenharmony_ci			break;
127362306a36Sopenharmony_ci		case BPF_DW:
127462306a36Sopenharmony_ci			opcode = LD64;
127562306a36Sopenharmony_ci			break;
127662306a36Sopenharmony_ci		}
127762306a36Sopenharmony_ci
127862306a36Sopenharmony_ci		if (is_simm13(off)) {
127962306a36Sopenharmony_ci			opcode |= IMMED;
128062306a36Sopenharmony_ci			rs2 = S13(off);
128162306a36Sopenharmony_ci		} else {
128262306a36Sopenharmony_ci			emit_loadimm(off, tmp, ctx);
128362306a36Sopenharmony_ci			rs2 = RS2(tmp);
128462306a36Sopenharmony_ci		}
128562306a36Sopenharmony_ci		emit(opcode | RS1(src) | rs2 | RD(dst), ctx);
128662306a36Sopenharmony_ci		if (opcode != LD64 && insn_is_zext(&insn[1]))
128762306a36Sopenharmony_ci			return 1;
128862306a36Sopenharmony_ci		break;
128962306a36Sopenharmony_ci	}
129062306a36Sopenharmony_ci	/* speculation barrier */
129162306a36Sopenharmony_ci	case BPF_ST | BPF_NOSPEC:
129262306a36Sopenharmony_ci		break;
129362306a36Sopenharmony_ci	/* ST: *(size *)(dst + off) = imm */
129462306a36Sopenharmony_ci	case BPF_ST | BPF_MEM | BPF_W:
129562306a36Sopenharmony_ci	case BPF_ST | BPF_MEM | BPF_H:
129662306a36Sopenharmony_ci	case BPF_ST | BPF_MEM | BPF_B:
129762306a36Sopenharmony_ci	case BPF_ST | BPF_MEM | BPF_DW: {
129862306a36Sopenharmony_ci		const u8 tmp = bpf2sparc[TMP_REG_1];
129962306a36Sopenharmony_ci		const u8 tmp2 = bpf2sparc[TMP_REG_2];
130062306a36Sopenharmony_ci		u32 opcode = 0, rs2;
130162306a36Sopenharmony_ci
130262306a36Sopenharmony_ci		if (insn->dst_reg == BPF_REG_FP)
130362306a36Sopenharmony_ci			ctx->saw_frame_pointer = true;
130462306a36Sopenharmony_ci
130562306a36Sopenharmony_ci		ctx->tmp_2_used = true;
130662306a36Sopenharmony_ci		emit_loadimm(imm, tmp2, ctx);
130762306a36Sopenharmony_ci
130862306a36Sopenharmony_ci		switch (BPF_SIZE(code)) {
130962306a36Sopenharmony_ci		case BPF_W:
131062306a36Sopenharmony_ci			opcode = ST32;
131162306a36Sopenharmony_ci			break;
131262306a36Sopenharmony_ci		case BPF_H:
131362306a36Sopenharmony_ci			opcode = ST16;
131462306a36Sopenharmony_ci			break;
131562306a36Sopenharmony_ci		case BPF_B:
131662306a36Sopenharmony_ci			opcode = ST8;
131762306a36Sopenharmony_ci			break;
131862306a36Sopenharmony_ci		case BPF_DW:
131962306a36Sopenharmony_ci			opcode = ST64;
132062306a36Sopenharmony_ci			break;
132162306a36Sopenharmony_ci		}
132262306a36Sopenharmony_ci
132362306a36Sopenharmony_ci		if (is_simm13(off)) {
132462306a36Sopenharmony_ci			opcode |= IMMED;
132562306a36Sopenharmony_ci			rs2 = S13(off);
132662306a36Sopenharmony_ci		} else {
132762306a36Sopenharmony_ci			ctx->tmp_1_used = true;
132862306a36Sopenharmony_ci			emit_loadimm(off, tmp, ctx);
132962306a36Sopenharmony_ci			rs2 = RS2(tmp);
133062306a36Sopenharmony_ci		}
133162306a36Sopenharmony_ci		emit(opcode | RS1(dst) | rs2 | RD(tmp2), ctx);
133262306a36Sopenharmony_ci		break;
133362306a36Sopenharmony_ci	}
133462306a36Sopenharmony_ci
133562306a36Sopenharmony_ci	/* STX: *(size *)(dst + off) = src */
133662306a36Sopenharmony_ci	case BPF_STX | BPF_MEM | BPF_W:
133762306a36Sopenharmony_ci	case BPF_STX | BPF_MEM | BPF_H:
133862306a36Sopenharmony_ci	case BPF_STX | BPF_MEM | BPF_B:
133962306a36Sopenharmony_ci	case BPF_STX | BPF_MEM | BPF_DW: {
134062306a36Sopenharmony_ci		const u8 tmp = bpf2sparc[TMP_REG_1];
134162306a36Sopenharmony_ci		u32 opcode = 0, rs2;
134262306a36Sopenharmony_ci
134362306a36Sopenharmony_ci		if (insn->dst_reg == BPF_REG_FP)
134462306a36Sopenharmony_ci			ctx->saw_frame_pointer = true;
134562306a36Sopenharmony_ci
134662306a36Sopenharmony_ci		switch (BPF_SIZE(code)) {
134762306a36Sopenharmony_ci		case BPF_W:
134862306a36Sopenharmony_ci			opcode = ST32;
134962306a36Sopenharmony_ci			break;
135062306a36Sopenharmony_ci		case BPF_H:
135162306a36Sopenharmony_ci			opcode = ST16;
135262306a36Sopenharmony_ci			break;
135362306a36Sopenharmony_ci		case BPF_B:
135462306a36Sopenharmony_ci			opcode = ST8;
135562306a36Sopenharmony_ci			break;
135662306a36Sopenharmony_ci		case BPF_DW:
135762306a36Sopenharmony_ci			opcode = ST64;
135862306a36Sopenharmony_ci			break;
135962306a36Sopenharmony_ci		}
136062306a36Sopenharmony_ci		if (is_simm13(off)) {
136162306a36Sopenharmony_ci			opcode |= IMMED;
136262306a36Sopenharmony_ci			rs2 = S13(off);
136362306a36Sopenharmony_ci		} else {
136462306a36Sopenharmony_ci			ctx->tmp_1_used = true;
136562306a36Sopenharmony_ci			emit_loadimm(off, tmp, ctx);
136662306a36Sopenharmony_ci			rs2 = RS2(tmp);
136762306a36Sopenharmony_ci		}
136862306a36Sopenharmony_ci		emit(opcode | RS1(dst) | rs2 | RD(src), ctx);
136962306a36Sopenharmony_ci		break;
137062306a36Sopenharmony_ci	}
137162306a36Sopenharmony_ci
137262306a36Sopenharmony_ci	case BPF_STX | BPF_ATOMIC | BPF_W: {
137362306a36Sopenharmony_ci		const u8 tmp = bpf2sparc[TMP_REG_1];
137462306a36Sopenharmony_ci		const u8 tmp2 = bpf2sparc[TMP_REG_2];
137562306a36Sopenharmony_ci		const u8 tmp3 = bpf2sparc[TMP_REG_3];
137662306a36Sopenharmony_ci
137762306a36Sopenharmony_ci		if (insn->imm != BPF_ADD) {
137862306a36Sopenharmony_ci			pr_err_once("unknown atomic op %02x\n", insn->imm);
137962306a36Sopenharmony_ci			return -EINVAL;
138062306a36Sopenharmony_ci		}
138162306a36Sopenharmony_ci
138262306a36Sopenharmony_ci		/* lock *(u32 *)(dst + off) += src */
138362306a36Sopenharmony_ci
138462306a36Sopenharmony_ci		if (insn->dst_reg == BPF_REG_FP)
138562306a36Sopenharmony_ci			ctx->saw_frame_pointer = true;
138662306a36Sopenharmony_ci
138762306a36Sopenharmony_ci		ctx->tmp_1_used = true;
138862306a36Sopenharmony_ci		ctx->tmp_2_used = true;
138962306a36Sopenharmony_ci		ctx->tmp_3_used = true;
139062306a36Sopenharmony_ci		emit_loadimm(off, tmp, ctx);
139162306a36Sopenharmony_ci		emit_alu3(ADD, dst, tmp, tmp, ctx);
139262306a36Sopenharmony_ci
139362306a36Sopenharmony_ci		emit(LD32 | RS1(tmp) | RS2(G0) | RD(tmp2), ctx);
139462306a36Sopenharmony_ci		emit_alu3(ADD, tmp2, src, tmp3, ctx);
139562306a36Sopenharmony_ci		emit(CAS | ASI(ASI_P) | RS1(tmp) | RS2(tmp2) | RD(tmp3), ctx);
139662306a36Sopenharmony_ci		emit_cmp(tmp2, tmp3, ctx);
139762306a36Sopenharmony_ci		emit_branch(BNE, 4, 0, ctx);
139862306a36Sopenharmony_ci		emit_nop(ctx);
139962306a36Sopenharmony_ci		break;
140062306a36Sopenharmony_ci	}
140162306a36Sopenharmony_ci	/* STX XADD: lock *(u64 *)(dst + off) += src */
140262306a36Sopenharmony_ci	case BPF_STX | BPF_ATOMIC | BPF_DW: {
140362306a36Sopenharmony_ci		const u8 tmp = bpf2sparc[TMP_REG_1];
140462306a36Sopenharmony_ci		const u8 tmp2 = bpf2sparc[TMP_REG_2];
140562306a36Sopenharmony_ci		const u8 tmp3 = bpf2sparc[TMP_REG_3];
140662306a36Sopenharmony_ci
140762306a36Sopenharmony_ci		if (insn->imm != BPF_ADD) {
140862306a36Sopenharmony_ci			pr_err_once("unknown atomic op %02x\n", insn->imm);
140962306a36Sopenharmony_ci			return -EINVAL;
141062306a36Sopenharmony_ci		}
141162306a36Sopenharmony_ci
141262306a36Sopenharmony_ci		if (insn->dst_reg == BPF_REG_FP)
141362306a36Sopenharmony_ci			ctx->saw_frame_pointer = true;
141462306a36Sopenharmony_ci
141562306a36Sopenharmony_ci		ctx->tmp_1_used = true;
141662306a36Sopenharmony_ci		ctx->tmp_2_used = true;
141762306a36Sopenharmony_ci		ctx->tmp_3_used = true;
141862306a36Sopenharmony_ci		emit_loadimm(off, tmp, ctx);
141962306a36Sopenharmony_ci		emit_alu3(ADD, dst, tmp, tmp, ctx);
142062306a36Sopenharmony_ci
142162306a36Sopenharmony_ci		emit(LD64 | RS1(tmp) | RS2(G0) | RD(tmp2), ctx);
142262306a36Sopenharmony_ci		emit_alu3(ADD, tmp2, src, tmp3, ctx);
142362306a36Sopenharmony_ci		emit(CASX | ASI(ASI_P) | RS1(tmp) | RS2(tmp2) | RD(tmp3), ctx);
142462306a36Sopenharmony_ci		emit_cmp(tmp2, tmp3, ctx);
142562306a36Sopenharmony_ci		emit_branch(BNE, 4, 0, ctx);
142662306a36Sopenharmony_ci		emit_nop(ctx);
142762306a36Sopenharmony_ci		break;
142862306a36Sopenharmony_ci	}
142962306a36Sopenharmony_ci
143062306a36Sopenharmony_ci	default:
143162306a36Sopenharmony_ci		pr_err_once("unknown opcode %02x\n", code);
143262306a36Sopenharmony_ci		return -EINVAL;
143362306a36Sopenharmony_ci	}
143462306a36Sopenharmony_ci
143562306a36Sopenharmony_ci	return 0;
143662306a36Sopenharmony_ci}
143762306a36Sopenharmony_ci
143862306a36Sopenharmony_cistatic int build_body(struct jit_ctx *ctx)
143962306a36Sopenharmony_ci{
144062306a36Sopenharmony_ci	const struct bpf_prog *prog = ctx->prog;
144162306a36Sopenharmony_ci	int i;
144262306a36Sopenharmony_ci
144362306a36Sopenharmony_ci	for (i = 0; i < prog->len; i++) {
144462306a36Sopenharmony_ci		const struct bpf_insn *insn = &prog->insnsi[i];
144562306a36Sopenharmony_ci		int ret;
144662306a36Sopenharmony_ci
144762306a36Sopenharmony_ci		ret = build_insn(insn, ctx);
144862306a36Sopenharmony_ci
144962306a36Sopenharmony_ci		if (ret > 0) {
145062306a36Sopenharmony_ci			i++;
145162306a36Sopenharmony_ci			ctx->offset[i] = ctx->idx;
145262306a36Sopenharmony_ci			continue;
145362306a36Sopenharmony_ci		}
145462306a36Sopenharmony_ci		ctx->offset[i] = ctx->idx;
145562306a36Sopenharmony_ci		if (ret)
145662306a36Sopenharmony_ci			return ret;
145762306a36Sopenharmony_ci	}
145862306a36Sopenharmony_ci	return 0;
145962306a36Sopenharmony_ci}
146062306a36Sopenharmony_ci
146162306a36Sopenharmony_cistatic void jit_fill_hole(void *area, unsigned int size)
146262306a36Sopenharmony_ci{
146362306a36Sopenharmony_ci	u32 *ptr;
146462306a36Sopenharmony_ci	/* We are guaranteed to have aligned memory. */
146562306a36Sopenharmony_ci	for (ptr = area; size >= sizeof(u32); size -= sizeof(u32))
146662306a36Sopenharmony_ci		*ptr++ = 0x91d02005; /* ta 5 */
146762306a36Sopenharmony_ci}
146862306a36Sopenharmony_ci
146962306a36Sopenharmony_cibool bpf_jit_needs_zext(void)
147062306a36Sopenharmony_ci{
147162306a36Sopenharmony_ci	return true;
147262306a36Sopenharmony_ci}
147362306a36Sopenharmony_ci
147462306a36Sopenharmony_cistruct sparc64_jit_data {
147562306a36Sopenharmony_ci	struct bpf_binary_header *header;
147662306a36Sopenharmony_ci	u8 *image;
147762306a36Sopenharmony_ci	struct jit_ctx ctx;
147862306a36Sopenharmony_ci};
147962306a36Sopenharmony_ci
148062306a36Sopenharmony_cistruct bpf_prog *bpf_int_jit_compile(struct bpf_prog *prog)
148162306a36Sopenharmony_ci{
148262306a36Sopenharmony_ci	struct bpf_prog *tmp, *orig_prog = prog;
148362306a36Sopenharmony_ci	struct sparc64_jit_data *jit_data;
148462306a36Sopenharmony_ci	struct bpf_binary_header *header;
148562306a36Sopenharmony_ci	u32 prev_image_size, image_size;
148662306a36Sopenharmony_ci	bool tmp_blinded = false;
148762306a36Sopenharmony_ci	bool extra_pass = false;
148862306a36Sopenharmony_ci	struct jit_ctx ctx;
148962306a36Sopenharmony_ci	u8 *image_ptr;
149062306a36Sopenharmony_ci	int pass, i;
149162306a36Sopenharmony_ci
149262306a36Sopenharmony_ci	if (!prog->jit_requested)
149362306a36Sopenharmony_ci		return orig_prog;
149462306a36Sopenharmony_ci
149562306a36Sopenharmony_ci	tmp = bpf_jit_blind_constants(prog);
149662306a36Sopenharmony_ci	/* If blinding was requested and we failed during blinding,
149762306a36Sopenharmony_ci	 * we must fall back to the interpreter.
149862306a36Sopenharmony_ci	 */
149962306a36Sopenharmony_ci	if (IS_ERR(tmp))
150062306a36Sopenharmony_ci		return orig_prog;
150162306a36Sopenharmony_ci	if (tmp != prog) {
150262306a36Sopenharmony_ci		tmp_blinded = true;
150362306a36Sopenharmony_ci		prog = tmp;
150462306a36Sopenharmony_ci	}
150562306a36Sopenharmony_ci
150662306a36Sopenharmony_ci	jit_data = prog->aux->jit_data;
150762306a36Sopenharmony_ci	if (!jit_data) {
150862306a36Sopenharmony_ci		jit_data = kzalloc(sizeof(*jit_data), GFP_KERNEL);
150962306a36Sopenharmony_ci		if (!jit_data) {
151062306a36Sopenharmony_ci			prog = orig_prog;
151162306a36Sopenharmony_ci			goto out;
151262306a36Sopenharmony_ci		}
151362306a36Sopenharmony_ci		prog->aux->jit_data = jit_data;
151462306a36Sopenharmony_ci	}
151562306a36Sopenharmony_ci	if (jit_data->ctx.offset) {
151662306a36Sopenharmony_ci		ctx = jit_data->ctx;
151762306a36Sopenharmony_ci		image_ptr = jit_data->image;
151862306a36Sopenharmony_ci		header = jit_data->header;
151962306a36Sopenharmony_ci		extra_pass = true;
152062306a36Sopenharmony_ci		image_size = sizeof(u32) * ctx.idx;
152162306a36Sopenharmony_ci		prev_image_size = image_size;
152262306a36Sopenharmony_ci		pass = 1;
152362306a36Sopenharmony_ci		goto skip_init_ctx;
152462306a36Sopenharmony_ci	}
152562306a36Sopenharmony_ci
152662306a36Sopenharmony_ci	memset(&ctx, 0, sizeof(ctx));
152762306a36Sopenharmony_ci	ctx.prog = prog;
152862306a36Sopenharmony_ci
152962306a36Sopenharmony_ci	ctx.offset = kmalloc_array(prog->len, sizeof(unsigned int), GFP_KERNEL);
153062306a36Sopenharmony_ci	if (ctx.offset == NULL) {
153162306a36Sopenharmony_ci		prog = orig_prog;
153262306a36Sopenharmony_ci		goto out_off;
153362306a36Sopenharmony_ci	}
153462306a36Sopenharmony_ci
153562306a36Sopenharmony_ci	/* Longest sequence emitted is for bswap32, 12 instructions.  Pre-cook
153662306a36Sopenharmony_ci	 * the offset array so that we converge faster.
153762306a36Sopenharmony_ci	 */
153862306a36Sopenharmony_ci	for (i = 0; i < prog->len; i++)
153962306a36Sopenharmony_ci		ctx.offset[i] = i * (12 * 4);
154062306a36Sopenharmony_ci
154162306a36Sopenharmony_ci	prev_image_size = ~0U;
154262306a36Sopenharmony_ci	for (pass = 1; pass < 40; pass++) {
154362306a36Sopenharmony_ci		ctx.idx = 0;
154462306a36Sopenharmony_ci
154562306a36Sopenharmony_ci		build_prologue(&ctx);
154662306a36Sopenharmony_ci		if (build_body(&ctx)) {
154762306a36Sopenharmony_ci			prog = orig_prog;
154862306a36Sopenharmony_ci			goto out_off;
154962306a36Sopenharmony_ci		}
155062306a36Sopenharmony_ci		build_epilogue(&ctx);
155162306a36Sopenharmony_ci
155262306a36Sopenharmony_ci		if (bpf_jit_enable > 1)
155362306a36Sopenharmony_ci			pr_info("Pass %d: size = %u, seen = [%c%c%c%c%c%c]\n", pass,
155462306a36Sopenharmony_ci				ctx.idx * 4,
155562306a36Sopenharmony_ci				ctx.tmp_1_used ? '1' : ' ',
155662306a36Sopenharmony_ci				ctx.tmp_2_used ? '2' : ' ',
155762306a36Sopenharmony_ci				ctx.tmp_3_used ? '3' : ' ',
155862306a36Sopenharmony_ci				ctx.saw_frame_pointer ? 'F' : ' ',
155962306a36Sopenharmony_ci				ctx.saw_call ? 'C' : ' ',
156062306a36Sopenharmony_ci				ctx.saw_tail_call ? 'T' : ' ');
156162306a36Sopenharmony_ci
156262306a36Sopenharmony_ci		if (ctx.idx * 4 == prev_image_size)
156362306a36Sopenharmony_ci			break;
156462306a36Sopenharmony_ci		prev_image_size = ctx.idx * 4;
156562306a36Sopenharmony_ci		cond_resched();
156662306a36Sopenharmony_ci	}
156762306a36Sopenharmony_ci
156862306a36Sopenharmony_ci	/* Now we know the actual image size. */
156962306a36Sopenharmony_ci	image_size = sizeof(u32) * ctx.idx;
157062306a36Sopenharmony_ci	header = bpf_jit_binary_alloc(image_size, &image_ptr,
157162306a36Sopenharmony_ci				      sizeof(u32), jit_fill_hole);
157262306a36Sopenharmony_ci	if (header == NULL) {
157362306a36Sopenharmony_ci		prog = orig_prog;
157462306a36Sopenharmony_ci		goto out_off;
157562306a36Sopenharmony_ci	}
157662306a36Sopenharmony_ci
157762306a36Sopenharmony_ci	ctx.image = (u32 *)image_ptr;
157862306a36Sopenharmony_ciskip_init_ctx:
157962306a36Sopenharmony_ci	ctx.idx = 0;
158062306a36Sopenharmony_ci
158162306a36Sopenharmony_ci	build_prologue(&ctx);
158262306a36Sopenharmony_ci
158362306a36Sopenharmony_ci	if (build_body(&ctx)) {
158462306a36Sopenharmony_ci		bpf_jit_binary_free(header);
158562306a36Sopenharmony_ci		prog = orig_prog;
158662306a36Sopenharmony_ci		goto out_off;
158762306a36Sopenharmony_ci	}
158862306a36Sopenharmony_ci
158962306a36Sopenharmony_ci	build_epilogue(&ctx);
159062306a36Sopenharmony_ci
159162306a36Sopenharmony_ci	if (ctx.idx * 4 != prev_image_size) {
159262306a36Sopenharmony_ci		pr_err("bpf_jit: Failed to converge, prev_size=%u size=%d\n",
159362306a36Sopenharmony_ci		       prev_image_size, ctx.idx * 4);
159462306a36Sopenharmony_ci		bpf_jit_binary_free(header);
159562306a36Sopenharmony_ci		prog = orig_prog;
159662306a36Sopenharmony_ci		goto out_off;
159762306a36Sopenharmony_ci	}
159862306a36Sopenharmony_ci
159962306a36Sopenharmony_ci	if (bpf_jit_enable > 1)
160062306a36Sopenharmony_ci		bpf_jit_dump(prog->len, image_size, pass, ctx.image);
160162306a36Sopenharmony_ci
160262306a36Sopenharmony_ci	bpf_flush_icache(header, (u8 *)header + header->size);
160362306a36Sopenharmony_ci
160462306a36Sopenharmony_ci	if (!prog->is_func || extra_pass) {
160562306a36Sopenharmony_ci		bpf_jit_binary_lock_ro(header);
160662306a36Sopenharmony_ci	} else {
160762306a36Sopenharmony_ci		jit_data->ctx = ctx;
160862306a36Sopenharmony_ci		jit_data->image = image_ptr;
160962306a36Sopenharmony_ci		jit_data->header = header;
161062306a36Sopenharmony_ci	}
161162306a36Sopenharmony_ci
161262306a36Sopenharmony_ci	prog->bpf_func = (void *)ctx.image;
161362306a36Sopenharmony_ci	prog->jited = 1;
161462306a36Sopenharmony_ci	prog->jited_len = image_size;
161562306a36Sopenharmony_ci
161662306a36Sopenharmony_ci	if (!prog->is_func || extra_pass) {
161762306a36Sopenharmony_ci		bpf_prog_fill_jited_linfo(prog, ctx.offset);
161862306a36Sopenharmony_ciout_off:
161962306a36Sopenharmony_ci		kfree(ctx.offset);
162062306a36Sopenharmony_ci		kfree(jit_data);
162162306a36Sopenharmony_ci		prog->aux->jit_data = NULL;
162262306a36Sopenharmony_ci	}
162362306a36Sopenharmony_ciout:
162462306a36Sopenharmony_ci	if (tmp_blinded)
162562306a36Sopenharmony_ci		bpf_jit_prog_release_other(prog, prog == orig_prog ?
162662306a36Sopenharmony_ci					   tmp : orig_prog);
162762306a36Sopenharmony_ci	return prog;
162862306a36Sopenharmony_ci}
1629