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torvalds
GitHub Repository: torvalds/linux
Path: blob/master/tools/lib/bpf/gen_loader.c
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// SPDX-License-Identifier: (LGPL-2.1 OR BSD-2-Clause)
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/* Copyright (c) 2021 Facebook */
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <errno.h>
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#include <linux/filter.h>
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#include <sys/param.h>
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#include "btf.h"
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#include "bpf.h"
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#include "libbpf.h"
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#include "libbpf_internal.h"
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#include "hashmap.h"
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#include "bpf_gen_internal.h"
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#include "skel_internal.h"
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#include <asm/byteorder.h>
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#include "str_error.h"
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#define MAX_USED_MAPS 64
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#define MAX_USED_PROGS 32
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#define MAX_KFUNC_DESCS 256
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#define MAX_FD_ARRAY_SZ (MAX_USED_MAPS + MAX_KFUNC_DESCS)
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/* The following structure describes the stack layout of the loader program.
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* In addition R6 contains the pointer to context.
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* R7 contains the result of the last sys_bpf command (typically error or FD).
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* R9 contains the result of the last sys_close command.
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*
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* Naming convention:
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* ctx - bpf program context
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* stack - bpf program stack
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* blob - bpf_attr-s, strings, insns, map data.
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* All the bytes that loader prog will use for read/write.
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*/
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struct loader_stack {
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__u32 btf_fd;
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__u32 inner_map_fd;
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__u32 prog_fd[MAX_USED_PROGS];
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};
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#define stack_off(field) \
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(__s16)(-sizeof(struct loader_stack) + offsetof(struct loader_stack, field))
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#define attr_field(attr, field) (attr + offsetof(union bpf_attr, field))
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static int blob_fd_array_off(struct bpf_gen *gen, int index)
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{
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return gen->fd_array + index * sizeof(int);
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}
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static int realloc_insn_buf(struct bpf_gen *gen, __u32 size)
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{
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size_t off = gen->insn_cur - gen->insn_start;
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void *insn_start;
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56
if (gen->error)
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return gen->error;
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if (size > INT32_MAX || off + size > INT32_MAX) {
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gen->error = -ERANGE;
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return -ERANGE;
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}
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insn_start = realloc(gen->insn_start, off + size);
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if (!insn_start) {
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gen->error = -ENOMEM;
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free(gen->insn_start);
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gen->insn_start = NULL;
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return -ENOMEM;
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}
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gen->insn_start = insn_start;
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gen->insn_cur = insn_start + off;
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return 0;
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}
73
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static int realloc_data_buf(struct bpf_gen *gen, __u32 size)
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{
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size_t off = gen->data_cur - gen->data_start;
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void *data_start;
78
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if (gen->error)
80
return gen->error;
81
if (size > INT32_MAX || off + size > INT32_MAX) {
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gen->error = -ERANGE;
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return -ERANGE;
84
}
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data_start = realloc(gen->data_start, off + size);
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if (!data_start) {
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gen->error = -ENOMEM;
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free(gen->data_start);
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gen->data_start = NULL;
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return -ENOMEM;
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}
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gen->data_start = data_start;
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gen->data_cur = data_start + off;
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return 0;
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}
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static void emit(struct bpf_gen *gen, struct bpf_insn insn)
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{
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if (realloc_insn_buf(gen, sizeof(insn)))
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return;
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memcpy(gen->insn_cur, &insn, sizeof(insn));
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gen->insn_cur += sizeof(insn);
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}
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static void emit2(struct bpf_gen *gen, struct bpf_insn insn1, struct bpf_insn insn2)
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{
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emit(gen, insn1);
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emit(gen, insn2);
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}
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static int add_data(struct bpf_gen *gen, const void *data, __u32 size);
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static void emit_sys_close_blob(struct bpf_gen *gen, int blob_off);
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void bpf_gen__init(struct bpf_gen *gen, int log_level, int nr_progs, int nr_maps)
115
{
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size_t stack_sz = sizeof(struct loader_stack), nr_progs_sz;
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int i;
118
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gen->fd_array = add_data(gen, NULL, MAX_FD_ARRAY_SZ * sizeof(int));
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gen->log_level = log_level;
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/* save ctx pointer into R6 */
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emit(gen, BPF_MOV64_REG(BPF_REG_6, BPF_REG_1));
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/* bzero stack */
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emit(gen, BPF_MOV64_REG(BPF_REG_1, BPF_REG_10));
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emit(gen, BPF_ALU64_IMM(BPF_ADD, BPF_REG_1, -stack_sz));
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emit(gen, BPF_MOV64_IMM(BPF_REG_2, stack_sz));
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emit(gen, BPF_MOV64_IMM(BPF_REG_3, 0));
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emit(gen, BPF_EMIT_CALL(BPF_FUNC_probe_read_kernel));
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/* amount of stack actually used, only used to calculate iterations, not stack offset */
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nr_progs_sz = offsetof(struct loader_stack, prog_fd[nr_progs]);
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/* jump over cleanup code */
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emit(gen, BPF_JMP_IMM(BPF_JA, 0, 0,
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/* size of cleanup code below (including map fd cleanup) */
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(nr_progs_sz / 4) * 3 + 2 +
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/* 6 insns for emit_sys_close_blob,
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* 6 insns for debug_regs in emit_sys_close_blob
139
*/
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nr_maps * (6 + (gen->log_level ? 6 : 0))));
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142
/* remember the label where all error branches will jump to */
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gen->cleanup_label = gen->insn_cur - gen->insn_start;
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/* emit cleanup code: close all temp FDs */
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for (i = 0; i < nr_progs_sz; i += 4) {
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emit(gen, BPF_LDX_MEM(BPF_W, BPF_REG_1, BPF_REG_10, -stack_sz + i));
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emit(gen, BPF_JMP_IMM(BPF_JSLE, BPF_REG_1, 0, 1));
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emit(gen, BPF_EMIT_CALL(BPF_FUNC_sys_close));
149
}
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for (i = 0; i < nr_maps; i++)
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emit_sys_close_blob(gen, blob_fd_array_off(gen, i));
152
/* R7 contains the error code from sys_bpf. Copy it into R0 and exit. */
153
emit(gen, BPF_MOV64_REG(BPF_REG_0, BPF_REG_7));
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emit(gen, BPF_EXIT_INSN());
155
}
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157
static int add_data(struct bpf_gen *gen, const void *data, __u32 size)
158
{
159
__u32 size8 = roundup(size, 8);
160
__u64 zero = 0;
161
void *prev;
162
163
if (realloc_data_buf(gen, size8))
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return 0;
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prev = gen->data_cur;
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if (data) {
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memcpy(gen->data_cur, data, size);
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memcpy(gen->data_cur + size, &zero, size8 - size);
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} else {
170
memset(gen->data_cur, 0, size8);
171
}
172
gen->data_cur += size8;
173
return prev - gen->data_start;
174
}
175
176
/* Get index for map_fd/btf_fd slot in reserved fd_array, or in data relative
177
* to start of fd_array. Caller can decide if it is usable or not.
178
*/
179
static int add_map_fd(struct bpf_gen *gen)
180
{
181
if (gen->nr_maps == MAX_USED_MAPS) {
182
pr_warn("Total maps exceeds %d\n", MAX_USED_MAPS);
183
gen->error = -E2BIG;
184
return 0;
185
}
186
return gen->nr_maps++;
187
}
188
189
static int add_kfunc_btf_fd(struct bpf_gen *gen)
190
{
191
int cur;
192
193
if (gen->nr_fd_array == MAX_KFUNC_DESCS) {
194
cur = add_data(gen, NULL, sizeof(int));
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return (cur - gen->fd_array) / sizeof(int);
196
}
197
return MAX_USED_MAPS + gen->nr_fd_array++;
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}
199
200
static int insn_bytes_to_bpf_size(__u32 sz)
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{
202
switch (sz) {
203
case 8: return BPF_DW;
204
case 4: return BPF_W;
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case 2: return BPF_H;
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case 1: return BPF_B;
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default: return -1;
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}
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}
210
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/* *(u64 *)(blob + off) = (u64)(void *)(blob + data) */
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static void emit_rel_store(struct bpf_gen *gen, int off, int data)
213
{
214
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_0, BPF_PSEUDO_MAP_IDX_VALUE,
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0, 0, 0, data));
216
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_1, BPF_PSEUDO_MAP_IDX_VALUE,
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0, 0, 0, off));
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emit(gen, BPF_STX_MEM(BPF_DW, BPF_REG_1, BPF_REG_0, 0));
219
}
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static void move_blob2blob(struct bpf_gen *gen, int off, int size, int blob_off)
222
{
223
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_2, BPF_PSEUDO_MAP_IDX_VALUE,
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0, 0, 0, blob_off));
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emit(gen, BPF_LDX_MEM(insn_bytes_to_bpf_size(size), BPF_REG_0, BPF_REG_2, 0));
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emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_1, BPF_PSEUDO_MAP_IDX_VALUE,
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0, 0, 0, off));
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emit(gen, BPF_STX_MEM(insn_bytes_to_bpf_size(size), BPF_REG_1, BPF_REG_0, 0));
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}
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static void move_blob2ctx(struct bpf_gen *gen, int ctx_off, int size, int blob_off)
232
{
233
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_1, BPF_PSEUDO_MAP_IDX_VALUE,
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0, 0, 0, blob_off));
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emit(gen, BPF_LDX_MEM(insn_bytes_to_bpf_size(size), BPF_REG_0, BPF_REG_1, 0));
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emit(gen, BPF_STX_MEM(insn_bytes_to_bpf_size(size), BPF_REG_6, BPF_REG_0, ctx_off));
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}
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239
static void move_ctx2blob(struct bpf_gen *gen, int off, int size, int ctx_off,
240
bool check_non_zero)
241
{
242
emit(gen, BPF_LDX_MEM(insn_bytes_to_bpf_size(size), BPF_REG_0, BPF_REG_6, ctx_off));
243
if (check_non_zero)
244
/* If value in ctx is zero don't update the blob.
245
* For example: when ctx->map.max_entries == 0, keep default max_entries from bpf.c
246
*/
247
emit(gen, BPF_JMP_IMM(BPF_JEQ, BPF_REG_0, 0, 3));
248
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_1, BPF_PSEUDO_MAP_IDX_VALUE,
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0, 0, 0, off));
250
emit(gen, BPF_STX_MEM(insn_bytes_to_bpf_size(size), BPF_REG_1, BPF_REG_0, 0));
251
}
252
253
static void move_stack2blob(struct bpf_gen *gen, int off, int size, int stack_off)
254
{
255
emit(gen, BPF_LDX_MEM(insn_bytes_to_bpf_size(size), BPF_REG_0, BPF_REG_10, stack_off));
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emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_1, BPF_PSEUDO_MAP_IDX_VALUE,
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0, 0, 0, off));
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emit(gen, BPF_STX_MEM(insn_bytes_to_bpf_size(size), BPF_REG_1, BPF_REG_0, 0));
259
}
260
261
static void move_stack2ctx(struct bpf_gen *gen, int ctx_off, int size, int stack_off)
262
{
263
emit(gen, BPF_LDX_MEM(insn_bytes_to_bpf_size(size), BPF_REG_0, BPF_REG_10, stack_off));
264
emit(gen, BPF_STX_MEM(insn_bytes_to_bpf_size(size), BPF_REG_6, BPF_REG_0, ctx_off));
265
}
266
267
static void emit_sys_bpf(struct bpf_gen *gen, int cmd, int attr, int attr_size)
268
{
269
emit(gen, BPF_MOV64_IMM(BPF_REG_1, cmd));
270
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_2, BPF_PSEUDO_MAP_IDX_VALUE,
271
0, 0, 0, attr));
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emit(gen, BPF_MOV64_IMM(BPF_REG_3, attr_size));
273
emit(gen, BPF_EMIT_CALL(BPF_FUNC_sys_bpf));
274
/* remember the result in R7 */
275
emit(gen, BPF_MOV64_REG(BPF_REG_7, BPF_REG_0));
276
}
277
278
static bool is_simm16(__s64 value)
279
{
280
return value == (__s64)(__s16)value;
281
}
282
283
static void emit_check_err(struct bpf_gen *gen)
284
{
285
__s64 off = -(gen->insn_cur - gen->insn_start - gen->cleanup_label) / 8 - 1;
286
287
/* R7 contains result of last sys_bpf command.
288
* if (R7 < 0) goto cleanup;
289
*/
290
if (is_simm16(off)) {
291
emit(gen, BPF_JMP_IMM(BPF_JSLT, BPF_REG_7, 0, off));
292
} else {
293
gen->error = -ERANGE;
294
emit(gen, BPF_JMP_IMM(BPF_JA, 0, 0, -1));
295
}
296
}
297
298
/* reg1 and reg2 should not be R1 - R5. They can be R0, R6 - R10 */
299
static void emit_debug(struct bpf_gen *gen, int reg1, int reg2,
300
const char *fmt, va_list args)
301
{
302
char buf[1024];
303
int addr, len, ret;
304
305
if (!gen->log_level)
306
return;
307
ret = vsnprintf(buf, sizeof(buf), fmt, args);
308
if (ret < 1024 - 7 && reg1 >= 0 && reg2 < 0)
309
/* The special case to accommodate common debug_ret():
310
* to avoid specifying BPF_REG_7 and adding " r=%%d" to
311
* prints explicitly.
312
*/
313
strcat(buf, " r=%d");
314
len = strlen(buf) + 1;
315
addr = add_data(gen, buf, len);
316
317
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_1, BPF_PSEUDO_MAP_IDX_VALUE,
318
0, 0, 0, addr));
319
emit(gen, BPF_MOV64_IMM(BPF_REG_2, len));
320
if (reg1 >= 0)
321
emit(gen, BPF_MOV64_REG(BPF_REG_3, reg1));
322
if (reg2 >= 0)
323
emit(gen, BPF_MOV64_REG(BPF_REG_4, reg2));
324
emit(gen, BPF_EMIT_CALL(BPF_FUNC_trace_printk));
325
}
326
327
static void debug_regs(struct bpf_gen *gen, int reg1, int reg2, const char *fmt, ...)
328
{
329
va_list args;
330
331
va_start(args, fmt);
332
emit_debug(gen, reg1, reg2, fmt, args);
333
va_end(args);
334
}
335
336
static void debug_ret(struct bpf_gen *gen, const char *fmt, ...)
337
{
338
va_list args;
339
340
va_start(args, fmt);
341
emit_debug(gen, BPF_REG_7, -1, fmt, args);
342
va_end(args);
343
}
344
345
static void __emit_sys_close(struct bpf_gen *gen)
346
{
347
emit(gen, BPF_JMP_IMM(BPF_JSLE, BPF_REG_1, 0,
348
/* 2 is the number of the following insns
349
* * 6 is additional insns in debug_regs
350
*/
351
2 + (gen->log_level ? 6 : 0)));
352
emit(gen, BPF_MOV64_REG(BPF_REG_9, BPF_REG_1));
353
emit(gen, BPF_EMIT_CALL(BPF_FUNC_sys_close));
354
debug_regs(gen, BPF_REG_9, BPF_REG_0, "close(%%d) = %%d");
355
}
356
357
static void emit_sys_close_stack(struct bpf_gen *gen, int stack_off)
358
{
359
emit(gen, BPF_LDX_MEM(BPF_W, BPF_REG_1, BPF_REG_10, stack_off));
360
__emit_sys_close(gen);
361
}
362
363
static void emit_sys_close_blob(struct bpf_gen *gen, int blob_off)
364
{
365
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_0, BPF_PSEUDO_MAP_IDX_VALUE,
366
0, 0, 0, blob_off));
367
emit(gen, BPF_LDX_MEM(BPF_W, BPF_REG_1, BPF_REG_0, 0));
368
__emit_sys_close(gen);
369
}
370
371
int bpf_gen__finish(struct bpf_gen *gen, int nr_progs, int nr_maps)
372
{
373
int i;
374
375
if (nr_progs < gen->nr_progs || nr_maps != gen->nr_maps) {
376
pr_warn("nr_progs %d/%d nr_maps %d/%d mismatch\n",
377
nr_progs, gen->nr_progs, nr_maps, gen->nr_maps);
378
gen->error = -EFAULT;
379
return gen->error;
380
}
381
emit_sys_close_stack(gen, stack_off(btf_fd));
382
for (i = 0; i < gen->nr_progs; i++)
383
move_stack2ctx(gen,
384
sizeof(struct bpf_loader_ctx) +
385
sizeof(struct bpf_map_desc) * gen->nr_maps +
386
sizeof(struct bpf_prog_desc) * i +
387
offsetof(struct bpf_prog_desc, prog_fd), 4,
388
stack_off(prog_fd[i]));
389
for (i = 0; i < gen->nr_maps; i++)
390
move_blob2ctx(gen,
391
sizeof(struct bpf_loader_ctx) +
392
sizeof(struct bpf_map_desc) * i +
393
offsetof(struct bpf_map_desc, map_fd), 4,
394
blob_fd_array_off(gen, i));
395
emit(gen, BPF_MOV64_IMM(BPF_REG_0, 0));
396
emit(gen, BPF_EXIT_INSN());
397
pr_debug("gen: finish %s\n", errstr(gen->error));
398
if (!gen->error) {
399
struct gen_loader_opts *opts = gen->opts;
400
401
opts->insns = gen->insn_start;
402
opts->insns_sz = gen->insn_cur - gen->insn_start;
403
opts->data = gen->data_start;
404
opts->data_sz = gen->data_cur - gen->data_start;
405
406
/* use target endianness for embedded loader */
407
if (gen->swapped_endian) {
408
struct bpf_insn *insn = (struct bpf_insn *)opts->insns;
409
int insn_cnt = opts->insns_sz / sizeof(struct bpf_insn);
410
411
for (i = 0; i < insn_cnt; i++)
412
bpf_insn_bswap(insn++);
413
}
414
}
415
return gen->error;
416
}
417
418
void bpf_gen__free(struct bpf_gen *gen)
419
{
420
if (!gen)
421
return;
422
free(gen->data_start);
423
free(gen->insn_start);
424
free(gen);
425
}
426
427
/*
428
* Fields of bpf_attr are set to values in native byte-order before being
429
* written to the target-bound data blob, and may need endian conversion.
430
* This macro allows providing the correct value in situ more simply than
431
* writing a separate converter for *all fields* of *all records* included
432
* in union bpf_attr. Note that sizeof(rval) should match the assignment
433
* target to avoid runtime problems.
434
*/
435
#define tgt_endian(rval) ({ \
436
typeof(rval) _val = (rval); \
437
if (gen->swapped_endian) { \
438
switch (sizeof(_val)) { \
439
case 1: break; \
440
case 2: _val = bswap_16(_val); break; \
441
case 4: _val = bswap_32(_val); break; \
442
case 8: _val = bswap_64(_val); break; \
443
default: pr_warn("unsupported bswap size!\n"); \
444
} \
445
} \
446
_val; \
447
})
448
449
void bpf_gen__load_btf(struct bpf_gen *gen, const void *btf_raw_data,
450
__u32 btf_raw_size)
451
{
452
int attr_size = offsetofend(union bpf_attr, btf_log_level);
453
int btf_data, btf_load_attr;
454
union bpf_attr attr;
455
456
memset(&attr, 0, attr_size);
457
btf_data = add_data(gen, btf_raw_data, btf_raw_size);
458
459
attr.btf_size = tgt_endian(btf_raw_size);
460
btf_load_attr = add_data(gen, &attr, attr_size);
461
pr_debug("gen: load_btf: off %d size %d, attr: off %d size %d\n",
462
btf_data, btf_raw_size, btf_load_attr, attr_size);
463
464
/* populate union bpf_attr with user provided log details */
465
move_ctx2blob(gen, attr_field(btf_load_attr, btf_log_level), 4,
466
offsetof(struct bpf_loader_ctx, log_level), false);
467
move_ctx2blob(gen, attr_field(btf_load_attr, btf_log_size), 4,
468
offsetof(struct bpf_loader_ctx, log_size), false);
469
move_ctx2blob(gen, attr_field(btf_load_attr, btf_log_buf), 8,
470
offsetof(struct bpf_loader_ctx, log_buf), false);
471
/* populate union bpf_attr with a pointer to the BTF data */
472
emit_rel_store(gen, attr_field(btf_load_attr, btf), btf_data);
473
/* emit BTF_LOAD command */
474
emit_sys_bpf(gen, BPF_BTF_LOAD, btf_load_attr, attr_size);
475
debug_ret(gen, "btf_load size %d", btf_raw_size);
476
emit_check_err(gen);
477
/* remember btf_fd in the stack, if successful */
478
emit(gen, BPF_STX_MEM(BPF_W, BPF_REG_10, BPF_REG_7, stack_off(btf_fd)));
479
}
480
481
void bpf_gen__map_create(struct bpf_gen *gen,
482
enum bpf_map_type map_type,
483
const char *map_name,
484
__u32 key_size, __u32 value_size, __u32 max_entries,
485
struct bpf_map_create_opts *map_attr, int map_idx)
486
{
487
int attr_size = offsetofend(union bpf_attr, map_extra);
488
bool close_inner_map_fd = false;
489
int map_create_attr, idx;
490
union bpf_attr attr;
491
492
memset(&attr, 0, attr_size);
493
attr.map_type = tgt_endian(map_type);
494
attr.key_size = tgt_endian(key_size);
495
attr.value_size = tgt_endian(value_size);
496
attr.map_flags = tgt_endian(map_attr->map_flags);
497
attr.map_extra = tgt_endian(map_attr->map_extra);
498
if (map_name)
499
libbpf_strlcpy(attr.map_name, map_name, sizeof(attr.map_name));
500
attr.numa_node = tgt_endian(map_attr->numa_node);
501
attr.map_ifindex = tgt_endian(map_attr->map_ifindex);
502
attr.max_entries = tgt_endian(max_entries);
503
attr.btf_key_type_id = tgt_endian(map_attr->btf_key_type_id);
504
attr.btf_value_type_id = tgt_endian(map_attr->btf_value_type_id);
505
506
map_create_attr = add_data(gen, &attr, attr_size);
507
pr_debug("gen: map_create: %s idx %d type %d value_type_id %d, attr: off %d size %d\n",
508
map_name, map_idx, map_type, map_attr->btf_value_type_id,
509
map_create_attr, attr_size);
510
511
if (map_attr->btf_value_type_id)
512
/* populate union bpf_attr with btf_fd saved in the stack earlier */
513
move_stack2blob(gen, attr_field(map_create_attr, btf_fd), 4,
514
stack_off(btf_fd));
515
switch (map_type) {
516
case BPF_MAP_TYPE_ARRAY_OF_MAPS:
517
case BPF_MAP_TYPE_HASH_OF_MAPS:
518
move_stack2blob(gen, attr_field(map_create_attr, inner_map_fd), 4,
519
stack_off(inner_map_fd));
520
close_inner_map_fd = true;
521
break;
522
default:
523
break;
524
}
525
/* conditionally update max_entries */
526
if (map_idx >= 0)
527
move_ctx2blob(gen, attr_field(map_create_attr, max_entries), 4,
528
sizeof(struct bpf_loader_ctx) +
529
sizeof(struct bpf_map_desc) * map_idx +
530
offsetof(struct bpf_map_desc, max_entries),
531
true /* check that max_entries != 0 */);
532
/* emit MAP_CREATE command */
533
emit_sys_bpf(gen, BPF_MAP_CREATE, map_create_attr, attr_size);
534
debug_ret(gen, "map_create %s idx %d type %d value_size %d value_btf_id %d",
535
map_name, map_idx, map_type, value_size,
536
map_attr->btf_value_type_id);
537
emit_check_err(gen);
538
/* remember map_fd in the stack, if successful */
539
if (map_idx < 0) {
540
/* This bpf_gen__map_create() function is called with map_idx >= 0
541
* for all maps that libbpf loading logic tracks.
542
* It's called with -1 to create an inner map.
543
*/
544
emit(gen, BPF_STX_MEM(BPF_W, BPF_REG_10, BPF_REG_7,
545
stack_off(inner_map_fd)));
546
} else if (map_idx != gen->nr_maps) {
547
gen->error = -EDOM; /* internal bug */
548
return;
549
} else {
550
/* add_map_fd does gen->nr_maps++ */
551
idx = add_map_fd(gen);
552
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_1, BPF_PSEUDO_MAP_IDX_VALUE,
553
0, 0, 0, blob_fd_array_off(gen, idx)));
554
emit(gen, BPF_STX_MEM(BPF_W, BPF_REG_1, BPF_REG_7, 0));
555
}
556
if (close_inner_map_fd)
557
emit_sys_close_stack(gen, stack_off(inner_map_fd));
558
}
559
560
void bpf_gen__record_attach_target(struct bpf_gen *gen, const char *attach_name,
561
enum bpf_attach_type type)
562
{
563
const char *prefix;
564
int kind, ret;
565
566
btf_get_kernel_prefix_kind(type, &prefix, &kind);
567
gen->attach_kind = kind;
568
ret = snprintf(gen->attach_target, sizeof(gen->attach_target), "%s%s",
569
prefix, attach_name);
570
if (ret >= sizeof(gen->attach_target))
571
gen->error = -ENOSPC;
572
}
573
574
static void emit_find_attach_target(struct bpf_gen *gen)
575
{
576
int name, len = strlen(gen->attach_target) + 1;
577
578
pr_debug("gen: find_attach_tgt %s %d\n", gen->attach_target, gen->attach_kind);
579
name = add_data(gen, gen->attach_target, len);
580
581
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_1, BPF_PSEUDO_MAP_IDX_VALUE,
582
0, 0, 0, name));
583
emit(gen, BPF_MOV64_IMM(BPF_REG_2, len));
584
emit(gen, BPF_MOV64_IMM(BPF_REG_3, gen->attach_kind));
585
emit(gen, BPF_MOV64_IMM(BPF_REG_4, 0));
586
emit(gen, BPF_EMIT_CALL(BPF_FUNC_btf_find_by_name_kind));
587
emit(gen, BPF_MOV64_REG(BPF_REG_7, BPF_REG_0));
588
debug_ret(gen, "find_by_name_kind(%s,%d)",
589
gen->attach_target, gen->attach_kind);
590
emit_check_err(gen);
591
/* if successful, btf_id is in lower 32-bit of R7 and
592
* btf_obj_fd is in upper 32-bit
593
*/
594
}
595
596
void bpf_gen__record_extern(struct bpf_gen *gen, const char *name, bool is_weak,
597
bool is_typeless, bool is_ld64, int kind, int insn_idx)
598
{
599
struct ksym_relo_desc *relo;
600
601
relo = libbpf_reallocarray(gen->relos, gen->relo_cnt + 1, sizeof(*relo));
602
if (!relo) {
603
gen->error = -ENOMEM;
604
return;
605
}
606
gen->relos = relo;
607
relo += gen->relo_cnt;
608
relo->name = name;
609
relo->is_weak = is_weak;
610
relo->is_typeless = is_typeless;
611
relo->is_ld64 = is_ld64;
612
relo->kind = kind;
613
relo->insn_idx = insn_idx;
614
gen->relo_cnt++;
615
}
616
617
/* returns existing ksym_desc with ref incremented, or inserts a new one */
618
static struct ksym_desc *get_ksym_desc(struct bpf_gen *gen, struct ksym_relo_desc *relo)
619
{
620
struct ksym_desc *kdesc;
621
int i;
622
623
for (i = 0; i < gen->nr_ksyms; i++) {
624
kdesc = &gen->ksyms[i];
625
if (kdesc->kind == relo->kind && kdesc->is_ld64 == relo->is_ld64 &&
626
!strcmp(kdesc->name, relo->name)) {
627
kdesc->ref++;
628
return kdesc;
629
}
630
}
631
kdesc = libbpf_reallocarray(gen->ksyms, gen->nr_ksyms + 1, sizeof(*kdesc));
632
if (!kdesc) {
633
gen->error = -ENOMEM;
634
return NULL;
635
}
636
gen->ksyms = kdesc;
637
kdesc = &gen->ksyms[gen->nr_ksyms++];
638
kdesc->name = relo->name;
639
kdesc->kind = relo->kind;
640
kdesc->ref = 1;
641
kdesc->off = 0;
642
kdesc->insn = 0;
643
kdesc->is_ld64 = relo->is_ld64;
644
return kdesc;
645
}
646
647
/* Overwrites BPF_REG_{0, 1, 2, 3, 4, 7}
648
* Returns result in BPF_REG_7
649
*/
650
static void emit_bpf_find_by_name_kind(struct bpf_gen *gen, struct ksym_relo_desc *relo)
651
{
652
int name_off, len = strlen(relo->name) + 1;
653
654
name_off = add_data(gen, relo->name, len);
655
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_1, BPF_PSEUDO_MAP_IDX_VALUE,
656
0, 0, 0, name_off));
657
emit(gen, BPF_MOV64_IMM(BPF_REG_2, len));
658
emit(gen, BPF_MOV64_IMM(BPF_REG_3, relo->kind));
659
emit(gen, BPF_MOV64_IMM(BPF_REG_4, 0));
660
emit(gen, BPF_EMIT_CALL(BPF_FUNC_btf_find_by_name_kind));
661
emit(gen, BPF_MOV64_REG(BPF_REG_7, BPF_REG_0));
662
debug_ret(gen, "find_by_name_kind(%s,%d)", relo->name, relo->kind);
663
}
664
665
/* Overwrites BPF_REG_{0, 1, 2, 3, 4, 7}
666
* Returns result in BPF_REG_7
667
* Returns u64 symbol addr in BPF_REG_9
668
*/
669
static void emit_bpf_kallsyms_lookup_name(struct bpf_gen *gen, struct ksym_relo_desc *relo)
670
{
671
int name_off, len = strlen(relo->name) + 1, res_off;
672
673
name_off = add_data(gen, relo->name, len);
674
res_off = add_data(gen, NULL, 8); /* res is u64 */
675
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_1, BPF_PSEUDO_MAP_IDX_VALUE,
676
0, 0, 0, name_off));
677
emit(gen, BPF_MOV64_IMM(BPF_REG_2, len));
678
emit(gen, BPF_MOV64_IMM(BPF_REG_3, 0));
679
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_4, BPF_PSEUDO_MAP_IDX_VALUE,
680
0, 0, 0, res_off));
681
emit(gen, BPF_MOV64_REG(BPF_REG_7, BPF_REG_4));
682
emit(gen, BPF_EMIT_CALL(BPF_FUNC_kallsyms_lookup_name));
683
emit(gen, BPF_LDX_MEM(BPF_DW, BPF_REG_9, BPF_REG_7, 0));
684
emit(gen, BPF_MOV64_REG(BPF_REG_7, BPF_REG_0));
685
debug_ret(gen, "kallsyms_lookup_name(%s,%d)", relo->name, relo->kind);
686
}
687
688
/* Expects:
689
* BPF_REG_8 - pointer to instruction
690
*
691
* We need to reuse BTF fd for same symbol otherwise each relocation takes a new
692
* index, while kernel limits total kfunc BTFs to 256. For duplicate symbols,
693
* this would mean a new BTF fd index for each entry. By pairing symbol name
694
* with index, we get the insn->imm, insn->off pairing that kernel uses for
695
* kfunc_tab, which becomes the effective limit even though all of them may
696
* share same index in fd_array (such that kfunc_btf_tab has 1 element).
697
*/
698
static void emit_relo_kfunc_btf(struct bpf_gen *gen, struct ksym_relo_desc *relo, int insn)
699
{
700
struct ksym_desc *kdesc;
701
int btf_fd_idx;
702
703
kdesc = get_ksym_desc(gen, relo);
704
if (!kdesc)
705
return;
706
/* try to copy from existing bpf_insn */
707
if (kdesc->ref > 1) {
708
move_blob2blob(gen, insn + offsetof(struct bpf_insn, imm), 4,
709
kdesc->insn + offsetof(struct bpf_insn, imm));
710
move_blob2blob(gen, insn + offsetof(struct bpf_insn, off), 2,
711
kdesc->insn + offsetof(struct bpf_insn, off));
712
goto log;
713
}
714
/* remember insn offset, so we can copy BTF ID and FD later */
715
kdesc->insn = insn;
716
emit_bpf_find_by_name_kind(gen, relo);
717
if (!relo->is_weak)
718
emit_check_err(gen);
719
/* get index in fd_array to store BTF FD at */
720
btf_fd_idx = add_kfunc_btf_fd(gen);
721
if (btf_fd_idx > INT16_MAX) {
722
pr_warn("BTF fd off %d for kfunc %s exceeds INT16_MAX, cannot process relocation\n",
723
btf_fd_idx, relo->name);
724
gen->error = -E2BIG;
725
return;
726
}
727
kdesc->off = btf_fd_idx;
728
/* jump to success case */
729
emit(gen, BPF_JMP_IMM(BPF_JSGE, BPF_REG_7, 0, 3));
730
/* set value for imm, off as 0 */
731
emit(gen, BPF_ST_MEM(BPF_W, BPF_REG_8, offsetof(struct bpf_insn, imm), 0));
732
emit(gen, BPF_ST_MEM(BPF_H, BPF_REG_8, offsetof(struct bpf_insn, off), 0));
733
/* skip success case for ret < 0 */
734
emit(gen, BPF_JMP_IMM(BPF_JA, 0, 0, 10));
735
/* store btf_id into insn[insn_idx].imm */
736
emit(gen, BPF_STX_MEM(BPF_W, BPF_REG_8, BPF_REG_7, offsetof(struct bpf_insn, imm)));
737
/* obtain fd in BPF_REG_9 */
738
emit(gen, BPF_MOV64_REG(BPF_REG_9, BPF_REG_7));
739
emit(gen, BPF_ALU64_IMM(BPF_RSH, BPF_REG_9, 32));
740
/* load fd_array slot pointer */
741
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_0, BPF_PSEUDO_MAP_IDX_VALUE,
742
0, 0, 0, blob_fd_array_off(gen, btf_fd_idx)));
743
/* store BTF fd in slot, 0 for vmlinux */
744
emit(gen, BPF_STX_MEM(BPF_W, BPF_REG_0, BPF_REG_9, 0));
745
/* jump to insn[insn_idx].off store if fd denotes module BTF */
746
emit(gen, BPF_JMP_IMM(BPF_JNE, BPF_REG_9, 0, 2));
747
/* set the default value for off */
748
emit(gen, BPF_ST_MEM(BPF_H, BPF_REG_8, offsetof(struct bpf_insn, off), 0));
749
/* skip BTF fd store for vmlinux BTF */
750
emit(gen, BPF_JMP_IMM(BPF_JA, 0, 0, 1));
751
/* store index into insn[insn_idx].off */
752
emit(gen, BPF_ST_MEM(BPF_H, BPF_REG_8, offsetof(struct bpf_insn, off), btf_fd_idx));
753
log:
754
if (!gen->log_level)
755
return;
756
emit(gen, BPF_LDX_MEM(BPF_W, BPF_REG_7, BPF_REG_8,
757
offsetof(struct bpf_insn, imm)));
758
emit(gen, BPF_LDX_MEM(BPF_H, BPF_REG_9, BPF_REG_8,
759
offsetof(struct bpf_insn, off)));
760
debug_regs(gen, BPF_REG_7, BPF_REG_9, " func (%s:count=%d): imm: %%d, off: %%d",
761
relo->name, kdesc->ref);
762
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_0, BPF_PSEUDO_MAP_IDX_VALUE,
763
0, 0, 0, blob_fd_array_off(gen, kdesc->off)));
764
emit(gen, BPF_LDX_MEM(BPF_W, BPF_REG_9, BPF_REG_0, 0));
765
debug_regs(gen, BPF_REG_9, -1, " func (%s:count=%d): btf_fd",
766
relo->name, kdesc->ref);
767
}
768
769
static void emit_ksym_relo_log(struct bpf_gen *gen, struct ksym_relo_desc *relo,
770
int ref)
771
{
772
if (!gen->log_level)
773
return;
774
emit(gen, BPF_LDX_MEM(BPF_W, BPF_REG_7, BPF_REG_8,
775
offsetof(struct bpf_insn, imm)));
776
emit(gen, BPF_LDX_MEM(BPF_H, BPF_REG_9, BPF_REG_8, sizeof(struct bpf_insn) +
777
offsetof(struct bpf_insn, imm)));
778
debug_regs(gen, BPF_REG_7, BPF_REG_9, " var t=%d w=%d (%s:count=%d): imm[0]: %%d, imm[1]: %%d",
779
relo->is_typeless, relo->is_weak, relo->name, ref);
780
emit(gen, BPF_LDX_MEM(BPF_B, BPF_REG_9, BPF_REG_8, offsetofend(struct bpf_insn, code)));
781
debug_regs(gen, BPF_REG_9, -1, " var t=%d w=%d (%s:count=%d): insn.reg",
782
relo->is_typeless, relo->is_weak, relo->name, ref);
783
}
784
785
/* Expects:
786
* BPF_REG_8 - pointer to instruction
787
*/
788
static void emit_relo_ksym_typeless(struct bpf_gen *gen,
789
struct ksym_relo_desc *relo, int insn)
790
{
791
struct ksym_desc *kdesc;
792
793
kdesc = get_ksym_desc(gen, relo);
794
if (!kdesc)
795
return;
796
/* try to copy from existing ldimm64 insn */
797
if (kdesc->ref > 1) {
798
move_blob2blob(gen, insn + offsetof(struct bpf_insn, imm), 4,
799
kdesc->insn + offsetof(struct bpf_insn, imm));
800
move_blob2blob(gen, insn + sizeof(struct bpf_insn) + offsetof(struct bpf_insn, imm), 4,
801
kdesc->insn + sizeof(struct bpf_insn) + offsetof(struct bpf_insn, imm));
802
goto log;
803
}
804
/* remember insn offset, so we can copy ksym addr later */
805
kdesc->insn = insn;
806
/* skip typeless ksym_desc in fd closing loop in cleanup_relos */
807
kdesc->typeless = true;
808
emit_bpf_kallsyms_lookup_name(gen, relo);
809
emit(gen, BPF_JMP_IMM(BPF_JEQ, BPF_REG_7, -ENOENT, 1));
810
emit_check_err(gen);
811
/* store lower half of addr into insn[insn_idx].imm */
812
emit(gen, BPF_STX_MEM(BPF_W, BPF_REG_8, BPF_REG_9, offsetof(struct bpf_insn, imm)));
813
/* store upper half of addr into insn[insn_idx + 1].imm */
814
emit(gen, BPF_ALU64_IMM(BPF_RSH, BPF_REG_9, 32));
815
emit(gen, BPF_STX_MEM(BPF_W, BPF_REG_8, BPF_REG_9,
816
sizeof(struct bpf_insn) + offsetof(struct bpf_insn, imm)));
817
log:
818
emit_ksym_relo_log(gen, relo, kdesc->ref);
819
}
820
821
static __u32 src_reg_mask(struct bpf_gen *gen)
822
{
823
#if defined(__LITTLE_ENDIAN_BITFIELD) /* src_reg,dst_reg,... */
824
return gen->swapped_endian ? 0xf0 : 0x0f;
825
#elif defined(__BIG_ENDIAN_BITFIELD) /* dst_reg,src_reg,... */
826
return gen->swapped_endian ? 0x0f : 0xf0;
827
#else
828
#error "Unsupported bit endianness, cannot proceed"
829
#endif
830
}
831
832
/* Expects:
833
* BPF_REG_8 - pointer to instruction
834
*/
835
static void emit_relo_ksym_btf(struct bpf_gen *gen, struct ksym_relo_desc *relo, int insn)
836
{
837
struct ksym_desc *kdesc;
838
__u32 reg_mask;
839
840
kdesc = get_ksym_desc(gen, relo);
841
if (!kdesc)
842
return;
843
/* try to copy from existing ldimm64 insn */
844
if (kdesc->ref > 1) {
845
move_blob2blob(gen, insn + sizeof(struct bpf_insn) + offsetof(struct bpf_insn, imm), 4,
846
kdesc->insn + sizeof(struct bpf_insn) + offsetof(struct bpf_insn, imm));
847
move_blob2blob(gen, insn + offsetof(struct bpf_insn, imm), 4,
848
kdesc->insn + offsetof(struct bpf_insn, imm));
849
/* jump over src_reg adjustment if imm (btf_id) is not 0, reuse BPF_REG_0 from move_blob2blob
850
* If btf_id is zero, clear BPF_PSEUDO_BTF_ID flag in src_reg of ld_imm64 insn
851
*/
852
emit(gen, BPF_JMP_IMM(BPF_JNE, BPF_REG_0, 0, 3));
853
goto clear_src_reg;
854
}
855
/* remember insn offset, so we can copy BTF ID and FD later */
856
kdesc->insn = insn;
857
emit_bpf_find_by_name_kind(gen, relo);
858
if (!relo->is_weak)
859
emit_check_err(gen);
860
/* jump to success case */
861
emit(gen, BPF_JMP_IMM(BPF_JSGE, BPF_REG_7, 0, 3));
862
/* set values for insn[insn_idx].imm, insn[insn_idx + 1].imm as 0 */
863
emit(gen, BPF_ST_MEM(BPF_W, BPF_REG_8, offsetof(struct bpf_insn, imm), 0));
864
emit(gen, BPF_ST_MEM(BPF_W, BPF_REG_8, sizeof(struct bpf_insn) + offsetof(struct bpf_insn, imm), 0));
865
/* skip success case for ret < 0 */
866
emit(gen, BPF_JMP_IMM(BPF_JA, 0, 0, 4));
867
/* store btf_id into insn[insn_idx].imm */
868
emit(gen, BPF_STX_MEM(BPF_W, BPF_REG_8, BPF_REG_7, offsetof(struct bpf_insn, imm)));
869
/* store btf_obj_fd into insn[insn_idx + 1].imm */
870
emit(gen, BPF_ALU64_IMM(BPF_RSH, BPF_REG_7, 32));
871
emit(gen, BPF_STX_MEM(BPF_W, BPF_REG_8, BPF_REG_7,
872
sizeof(struct bpf_insn) + offsetof(struct bpf_insn, imm)));
873
/* skip src_reg adjustment */
874
emit(gen, BPF_JMP_IMM(BPF_JA, 0, 0, 3));
875
clear_src_reg:
876
/* clear bpf_object__relocate_data's src_reg assignment, otherwise we get a verifier failure */
877
reg_mask = src_reg_mask(gen);
878
emit(gen, BPF_LDX_MEM(BPF_B, BPF_REG_9, BPF_REG_8, offsetofend(struct bpf_insn, code)));
879
emit(gen, BPF_ALU32_IMM(BPF_AND, BPF_REG_9, reg_mask));
880
emit(gen, BPF_STX_MEM(BPF_B, BPF_REG_8, BPF_REG_9, offsetofend(struct bpf_insn, code)));
881
882
emit_ksym_relo_log(gen, relo, kdesc->ref);
883
}
884
885
void bpf_gen__record_relo_core(struct bpf_gen *gen,
886
const struct bpf_core_relo *core_relo)
887
{
888
struct bpf_core_relo *relos;
889
890
relos = libbpf_reallocarray(gen->core_relos, gen->core_relo_cnt + 1, sizeof(*relos));
891
if (!relos) {
892
gen->error = -ENOMEM;
893
return;
894
}
895
gen->core_relos = relos;
896
relos += gen->core_relo_cnt;
897
memcpy(relos, core_relo, sizeof(*relos));
898
gen->core_relo_cnt++;
899
}
900
901
static void emit_relo(struct bpf_gen *gen, struct ksym_relo_desc *relo, int insns)
902
{
903
int insn;
904
905
pr_debug("gen: emit_relo (%d): %s at %d %s\n",
906
relo->kind, relo->name, relo->insn_idx, relo->is_ld64 ? "ld64" : "call");
907
insn = insns + sizeof(struct bpf_insn) * relo->insn_idx;
908
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_8, BPF_PSEUDO_MAP_IDX_VALUE, 0, 0, 0, insn));
909
if (relo->is_ld64) {
910
if (relo->is_typeless)
911
emit_relo_ksym_typeless(gen, relo, insn);
912
else
913
emit_relo_ksym_btf(gen, relo, insn);
914
} else {
915
emit_relo_kfunc_btf(gen, relo, insn);
916
}
917
}
918
919
static void emit_relos(struct bpf_gen *gen, int insns)
920
{
921
int i;
922
923
for (i = 0; i < gen->relo_cnt; i++)
924
emit_relo(gen, gen->relos + i, insns);
925
}
926
927
static void cleanup_core_relo(struct bpf_gen *gen)
928
{
929
if (!gen->core_relo_cnt)
930
return;
931
free(gen->core_relos);
932
gen->core_relo_cnt = 0;
933
gen->core_relos = NULL;
934
}
935
936
static void cleanup_relos(struct bpf_gen *gen, int insns)
937
{
938
struct ksym_desc *kdesc;
939
int i, insn;
940
941
for (i = 0; i < gen->nr_ksyms; i++) {
942
kdesc = &gen->ksyms[i];
943
/* only close fds for typed ksyms and kfuncs */
944
if (kdesc->is_ld64 && !kdesc->typeless) {
945
/* close fd recorded in insn[insn_idx + 1].imm */
946
insn = kdesc->insn;
947
insn += sizeof(struct bpf_insn) + offsetof(struct bpf_insn, imm);
948
emit_sys_close_blob(gen, insn);
949
} else if (!kdesc->is_ld64) {
950
emit_sys_close_blob(gen, blob_fd_array_off(gen, kdesc->off));
951
if (kdesc->off < MAX_FD_ARRAY_SZ)
952
gen->nr_fd_array--;
953
}
954
}
955
if (gen->nr_ksyms) {
956
free(gen->ksyms);
957
gen->nr_ksyms = 0;
958
gen->ksyms = NULL;
959
}
960
if (gen->relo_cnt) {
961
free(gen->relos);
962
gen->relo_cnt = 0;
963
gen->relos = NULL;
964
}
965
cleanup_core_relo(gen);
966
}
967
968
/* Convert func, line, and core relo info blobs to target endianness */
969
static void info_blob_bswap(struct bpf_gen *gen, int func_info, int line_info,
970
int core_relos, struct bpf_prog_load_opts *load_attr)
971
{
972
struct bpf_func_info *fi = gen->data_start + func_info;
973
struct bpf_line_info *li = gen->data_start + line_info;
974
struct bpf_core_relo *cr = gen->data_start + core_relos;
975
int i;
976
977
for (i = 0; i < load_attr->func_info_cnt; i++)
978
bpf_func_info_bswap(fi++);
979
980
for (i = 0; i < load_attr->line_info_cnt; i++)
981
bpf_line_info_bswap(li++);
982
983
for (i = 0; i < gen->core_relo_cnt; i++)
984
bpf_core_relo_bswap(cr++);
985
}
986
987
void bpf_gen__prog_load(struct bpf_gen *gen,
988
enum bpf_prog_type prog_type, const char *prog_name,
989
const char *license, struct bpf_insn *insns, size_t insn_cnt,
990
struct bpf_prog_load_opts *load_attr, int prog_idx)
991
{
992
int func_info_tot_sz = load_attr->func_info_cnt *
993
load_attr->func_info_rec_size;
994
int line_info_tot_sz = load_attr->line_info_cnt *
995
load_attr->line_info_rec_size;
996
int core_relo_tot_sz = gen->core_relo_cnt *
997
sizeof(struct bpf_core_relo);
998
int prog_load_attr, license_off, insns_off, func_info, line_info, core_relos;
999
int attr_size = offsetofend(union bpf_attr, core_relo_rec_size);
1000
union bpf_attr attr;
1001
1002
memset(&attr, 0, attr_size);
1003
/* add license string to blob of bytes */
1004
license_off = add_data(gen, license, strlen(license) + 1);
1005
/* add insns to blob of bytes */
1006
insns_off = add_data(gen, insns, insn_cnt * sizeof(struct bpf_insn));
1007
pr_debug("gen: prog_load: prog_idx %d type %d insn off %d insns_cnt %zd license off %d\n",
1008
prog_idx, prog_type, insns_off, insn_cnt, license_off);
1009
1010
/* convert blob insns to target endianness */
1011
if (gen->swapped_endian) {
1012
struct bpf_insn *insn = gen->data_start + insns_off;
1013
int i;
1014
1015
for (i = 0; i < insn_cnt; i++, insn++)
1016
bpf_insn_bswap(insn);
1017
}
1018
1019
attr.prog_type = tgt_endian(prog_type);
1020
attr.expected_attach_type = tgt_endian(load_attr->expected_attach_type);
1021
attr.attach_btf_id = tgt_endian(load_attr->attach_btf_id);
1022
attr.prog_ifindex = tgt_endian(load_attr->prog_ifindex);
1023
attr.kern_version = 0;
1024
attr.insn_cnt = tgt_endian((__u32)insn_cnt);
1025
attr.prog_flags = tgt_endian(load_attr->prog_flags);
1026
1027
attr.func_info_rec_size = tgt_endian(load_attr->func_info_rec_size);
1028
attr.func_info_cnt = tgt_endian(load_attr->func_info_cnt);
1029
func_info = add_data(gen, load_attr->func_info, func_info_tot_sz);
1030
pr_debug("gen: prog_load: func_info: off %d cnt %d rec size %d\n",
1031
func_info, load_attr->func_info_cnt,
1032
load_attr->func_info_rec_size);
1033
1034
attr.line_info_rec_size = tgt_endian(load_attr->line_info_rec_size);
1035
attr.line_info_cnt = tgt_endian(load_attr->line_info_cnt);
1036
line_info = add_data(gen, load_attr->line_info, line_info_tot_sz);
1037
pr_debug("gen: prog_load: line_info: off %d cnt %d rec size %d\n",
1038
line_info, load_attr->line_info_cnt,
1039
load_attr->line_info_rec_size);
1040
1041
attr.core_relo_rec_size = tgt_endian((__u32)sizeof(struct bpf_core_relo));
1042
attr.core_relo_cnt = tgt_endian(gen->core_relo_cnt);
1043
core_relos = add_data(gen, gen->core_relos, core_relo_tot_sz);
1044
pr_debug("gen: prog_load: core_relos: off %d cnt %d rec size %zd\n",
1045
core_relos, gen->core_relo_cnt,
1046
sizeof(struct bpf_core_relo));
1047
1048
/* convert all info blobs to target endianness */
1049
if (gen->swapped_endian)
1050
info_blob_bswap(gen, func_info, line_info, core_relos, load_attr);
1051
1052
libbpf_strlcpy(attr.prog_name, prog_name, sizeof(attr.prog_name));
1053
prog_load_attr = add_data(gen, &attr, attr_size);
1054
pr_debug("gen: prog_load: attr: off %d size %d\n",
1055
prog_load_attr, attr_size);
1056
1057
/* populate union bpf_attr with a pointer to license */
1058
emit_rel_store(gen, attr_field(prog_load_attr, license), license_off);
1059
1060
/* populate union bpf_attr with a pointer to instructions */
1061
emit_rel_store(gen, attr_field(prog_load_attr, insns), insns_off);
1062
1063
/* populate union bpf_attr with a pointer to func_info */
1064
emit_rel_store(gen, attr_field(prog_load_attr, func_info), func_info);
1065
1066
/* populate union bpf_attr with a pointer to line_info */
1067
emit_rel_store(gen, attr_field(prog_load_attr, line_info), line_info);
1068
1069
/* populate union bpf_attr with a pointer to core_relos */
1070
emit_rel_store(gen, attr_field(prog_load_attr, core_relos), core_relos);
1071
1072
/* populate union bpf_attr fd_array with a pointer to data where map_fds are saved */
1073
emit_rel_store(gen, attr_field(prog_load_attr, fd_array), gen->fd_array);
1074
1075
/* populate union bpf_attr with user provided log details */
1076
move_ctx2blob(gen, attr_field(prog_load_attr, log_level), 4,
1077
offsetof(struct bpf_loader_ctx, log_level), false);
1078
move_ctx2blob(gen, attr_field(prog_load_attr, log_size), 4,
1079
offsetof(struct bpf_loader_ctx, log_size), false);
1080
move_ctx2blob(gen, attr_field(prog_load_attr, log_buf), 8,
1081
offsetof(struct bpf_loader_ctx, log_buf), false);
1082
/* populate union bpf_attr with btf_fd saved in the stack earlier */
1083
move_stack2blob(gen, attr_field(prog_load_attr, prog_btf_fd), 4,
1084
stack_off(btf_fd));
1085
if (gen->attach_kind) {
1086
emit_find_attach_target(gen);
1087
/* populate union bpf_attr with btf_id and btf_obj_fd found by helper */
1088
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_0, BPF_PSEUDO_MAP_IDX_VALUE,
1089
0, 0, 0, prog_load_attr));
1090
emit(gen, BPF_STX_MEM(BPF_W, BPF_REG_0, BPF_REG_7,
1091
offsetof(union bpf_attr, attach_btf_id)));
1092
emit(gen, BPF_ALU64_IMM(BPF_RSH, BPF_REG_7, 32));
1093
emit(gen, BPF_STX_MEM(BPF_W, BPF_REG_0, BPF_REG_7,
1094
offsetof(union bpf_attr, attach_btf_obj_fd)));
1095
}
1096
emit_relos(gen, insns_off);
1097
/* emit PROG_LOAD command */
1098
emit_sys_bpf(gen, BPF_PROG_LOAD, prog_load_attr, attr_size);
1099
debug_ret(gen, "prog_load %s insn_cnt %d", attr.prog_name, attr.insn_cnt);
1100
/* successful or not, close btf module FDs used in extern ksyms and attach_btf_obj_fd */
1101
cleanup_relos(gen, insns_off);
1102
if (gen->attach_kind) {
1103
emit_sys_close_blob(gen,
1104
attr_field(prog_load_attr, attach_btf_obj_fd));
1105
gen->attach_kind = 0;
1106
}
1107
emit_check_err(gen);
1108
/* remember prog_fd in the stack, if successful */
1109
emit(gen, BPF_STX_MEM(BPF_W, BPF_REG_10, BPF_REG_7,
1110
stack_off(prog_fd[gen->nr_progs])));
1111
gen->nr_progs++;
1112
}
1113
1114
void bpf_gen__map_update_elem(struct bpf_gen *gen, int map_idx, void *pvalue,
1115
__u32 value_size)
1116
{
1117
int attr_size = offsetofend(union bpf_attr, flags);
1118
int map_update_attr, value, key;
1119
union bpf_attr attr;
1120
int zero = 0;
1121
1122
memset(&attr, 0, attr_size);
1123
1124
value = add_data(gen, pvalue, value_size);
1125
key = add_data(gen, &zero, sizeof(zero));
1126
1127
/* if (map_desc[map_idx].initial_value) {
1128
* if (ctx->flags & BPF_SKEL_KERNEL)
1129
* bpf_probe_read_kernel(value, value_size, initial_value);
1130
* else
1131
* bpf_copy_from_user(value, value_size, initial_value);
1132
* }
1133
*/
1134
emit(gen, BPF_LDX_MEM(BPF_DW, BPF_REG_3, BPF_REG_6,
1135
sizeof(struct bpf_loader_ctx) +
1136
sizeof(struct bpf_map_desc) * map_idx +
1137
offsetof(struct bpf_map_desc, initial_value)));
1138
emit(gen, BPF_JMP_IMM(BPF_JEQ, BPF_REG_3, 0, 8));
1139
emit2(gen, BPF_LD_IMM64_RAW_FULL(BPF_REG_1, BPF_PSEUDO_MAP_IDX_VALUE,
1140
0, 0, 0, value));
1141
emit(gen, BPF_MOV64_IMM(BPF_REG_2, value_size));
1142
emit(gen, BPF_LDX_MEM(BPF_W, BPF_REG_0, BPF_REG_6,
1143
offsetof(struct bpf_loader_ctx, flags)));
1144
emit(gen, BPF_JMP_IMM(BPF_JSET, BPF_REG_0, BPF_SKEL_KERNEL, 2));
1145
emit(gen, BPF_EMIT_CALL(BPF_FUNC_copy_from_user));
1146
emit(gen, BPF_JMP_IMM(BPF_JA, 0, 0, 1));
1147
emit(gen, BPF_EMIT_CALL(BPF_FUNC_probe_read_kernel));
1148
1149
map_update_attr = add_data(gen, &attr, attr_size);
1150
pr_debug("gen: map_update_elem: idx %d, value: off %d size %d, attr: off %d size %d\n",
1151
map_idx, value, value_size, map_update_attr, attr_size);
1152
move_blob2blob(gen, attr_field(map_update_attr, map_fd), 4,
1153
blob_fd_array_off(gen, map_idx));
1154
emit_rel_store(gen, attr_field(map_update_attr, key), key);
1155
emit_rel_store(gen, attr_field(map_update_attr, value), value);
1156
/* emit MAP_UPDATE_ELEM command */
1157
emit_sys_bpf(gen, BPF_MAP_UPDATE_ELEM, map_update_attr, attr_size);
1158
debug_ret(gen, "update_elem idx %d value_size %d", map_idx, value_size);
1159
emit_check_err(gen);
1160
}
1161
1162
void bpf_gen__populate_outer_map(struct bpf_gen *gen, int outer_map_idx, int slot,
1163
int inner_map_idx)
1164
{
1165
int attr_size = offsetofend(union bpf_attr, flags);
1166
int map_update_attr, key;
1167
union bpf_attr attr;
1168
int tgt_slot;
1169
1170
memset(&attr, 0, attr_size);
1171
1172
tgt_slot = tgt_endian(slot);
1173
key = add_data(gen, &tgt_slot, sizeof(tgt_slot));
1174
1175
map_update_attr = add_data(gen, &attr, attr_size);
1176
pr_debug("gen: populate_outer_map: outer %d key %d inner %d, attr: off %d size %d\n",
1177
outer_map_idx, slot, inner_map_idx, map_update_attr, attr_size);
1178
move_blob2blob(gen, attr_field(map_update_attr, map_fd), 4,
1179
blob_fd_array_off(gen, outer_map_idx));
1180
emit_rel_store(gen, attr_field(map_update_attr, key), key);
1181
emit_rel_store(gen, attr_field(map_update_attr, value),
1182
blob_fd_array_off(gen, inner_map_idx));
1183
1184
/* emit MAP_UPDATE_ELEM command */
1185
emit_sys_bpf(gen, BPF_MAP_UPDATE_ELEM, map_update_attr, attr_size);
1186
debug_ret(gen, "populate_outer_map outer %d key %d inner %d",
1187
outer_map_idx, slot, inner_map_idx);
1188
emit_check_err(gen);
1189
}
1190
1191
void bpf_gen__map_freeze(struct bpf_gen *gen, int map_idx)
1192
{
1193
int attr_size = offsetofend(union bpf_attr, map_fd);
1194
int map_freeze_attr;
1195
union bpf_attr attr;
1196
1197
memset(&attr, 0, attr_size);
1198
map_freeze_attr = add_data(gen, &attr, attr_size);
1199
pr_debug("gen: map_freeze: idx %d, attr: off %d size %d\n",
1200
map_idx, map_freeze_attr, attr_size);
1201
move_blob2blob(gen, attr_field(map_freeze_attr, map_fd), 4,
1202
blob_fd_array_off(gen, map_idx));
1203
/* emit MAP_FREEZE command */
1204
emit_sys_bpf(gen, BPF_MAP_FREEZE, map_freeze_attr, attr_size);
1205
debug_ret(gen, "map_freeze");
1206
emit_check_err(gen);
1207
}
1208
1209